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i=0;"-"===e[0]&&i++,16===t?this._parseHex(e,i):this._parseBase(e,t,i),"-"===e[0]&&(this.negative=1),this.strip(),"le"===r&&this._initArray(this.toArray(),t,r)},o.prototype._initNumber=function(e,t,r){e<0&&(this.negative=1,e=-e),e<67108864?(this.words=[67108863&e],this.length=1):e<4503599627370496?(this.words=[67108863&e,e/67108864&67108863],this.length=2):(n(e<9007199254740992),this.words=[67108863&e,e/67108864&67108863,1],this.length=3),"le"===r&&this._initArray(this.toArray(),t,r)},o.prototype._initArray=function(e,t,r){if(n("number"==typeof e.length),e.length<=0)return this.words=[0],this.length=1,this;this.length=Math.ceil(e.length/3),this.words=new Array(this.length);for(var i=0;i=0;i-=3)s=e[i]|e[i-1]<<8|e[i-2]<<16,this.words[o]|=s<>>26-a&67108863,(a+=24)>=26&&(a-=26,o++);else if("le"===r)for(i=0,o=0;i>>26-a&67108863,(a+=24)>=26&&(a-=26,o++);return this.strip()},o.prototype._parseHex=function(e,t){this.length=Math.ceil((e.length-t)/6),this.words=new Array(this.length);for(var r=0;r=t;r-=6)i=s(e,r,r+6),this.words[n]|=i<>>26-o&4194303,(o+=24)>=26&&(o-=26,n++);r+6!==t&&(i=s(e,t,r+6),this.words[n]|=i<>>26-o&4194303),this.strip()},o.prototype._parseBase=function(e,t,r){this.words=[0],this.length=1;for(var n=0,i=1;i<=67108863;i*=t)n++;n--,i=i/t|0;for(var o=e.length-r,s=o%n,f=Math.min(o,o-s)+r,c=0,h=r;h1&&0===this.words[this.length-1];)this.length--;return this._normSign()},o.prototype._normSign=function(){return 1===this.length&&0===this.words[0]&&(this.negative=0),this},o.prototype.inspect=function(){return(this.red?""};var 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me=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(me>>>26)|0,me&=67108863,n=Math.imul(m,N),i=Math.imul(m,H),i=i+Math.imul(g,N)|0,o=Math.imul(g,H),n=n+Math.imul(l,V)|0,i=i+Math.imul(l,K)|0,i=i+Math.imul(b,V)|0,o=o+Math.imul(b,K)|0,n=n+Math.imul(u,X)|0,i=i+Math.imul(u,Y)|0,i=i+Math.imul(d,X)|0,o=o+Math.imul(d,Y)|0;var ge=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(ge>>>26)|0,ge&=67108863,n=Math.imul(w,N),i=Math.imul(w,H),i=i+Math.imul(_,N)|0,o=Math.imul(_,H),n=n+Math.imul(m,V)|0,i=i+Math.imul(m,K)|0,i=i+Math.imul(g,V)|0,o=o+Math.imul(g,K)|0,n=n+Math.imul(l,X)|0,i=i+Math.imul(l,Y)|0,i=i+Math.imul(b,X)|0,o=o+Math.imul(b,Y)|0,n=n+Math.imul(u,Z)|0,i=i+Math.imul(u,G)|0,i=i+Math.imul(d,Z)|0,o=o+Math.imul(d,G)|0;var ve=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(ve>>>26)|0,ve&=67108863,n=Math.imul(k,N),i=Math.imul(k,H),i=i+Math.imul(M,N)|0,o=Math.imul(M,H),n=n+Math.imul(w,V)|0,i=i+Math.imul(w,K)|0,i=i+Math.imul(_,V)|0,o=o+Math.imul(_,K)|0,n=n+Math.imul(m,X)|0,i=i+Math.imul(m,Y)|0,i=i+Math.imul(g,X)|0,o=o+Math.imul(g,Y)|0,n=n+Math.imul(l,Z)|0,i=i+Math.imul(l,G)|0,i=i+Math.imul(b,Z)|0,o=o+Math.imul(b,G)|0,n=n+Math.imul(u,Q)|0,i=i+Math.imul(u,ee)|0,i=i+Math.imul(d,Q)|0,o=o+Math.imul(d,ee)|0;var we=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(we>>>26)|0,we&=67108863,n=Math.imul(A,N),i=Math.imul(A,H),i=i+Math.imul(x,N)|0,o=Math.imul(x,H),n=n+Math.imul(k,V)|0,i=i+Math.imul(k,K)|0,i=i+Math.imul(M,V)|0,o=o+Math.imul(M,K)|0,n=n+Math.imul(w,X)|0,i=i+Math.imul(w,Y)|0,i=i+Math.imul(_,X)|0,o=o+Math.imul(_,Y)|0,n=n+Math.imul(m,Z)|0,i=i+Math.imul(m,G)|0,i=i+Math.imul(g,Z)|0,o=o+Math.imul(g,G)|0,n=n+Math.imul(l,Q)|0,i=i+Math.imul(l,ee)|0,i=i+Math.imul(b,Q)|0,o=o+Math.imul(b,ee)|0,n=n+Math.imul(u,re)|0,i=i+Math.imul(u,ne)|0,i=i+Math.imul(d,re)|0,o=o+Math.imul(d,ne)|0;var _e=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(_e>>>26)|0,_e&=67108863,n=Math.imul(I,N),i=Math.imul(I,H),i=i+Math.imul(B,N)|0,o=Math.imul(B,H),n=n+Math.imul(A,V)|0,i=i+Math.imul(A,K)|0,i=i+Math.imul(x,V)|0,o=o+Math.imul(x,K)|0,n=n+Math.imul(k,X)|0,i=i+Math.imul(k,Y)|0,i=i+Math.imul(M,X)|0,o=o+Math.imul(M,Y)|0,n=n+Math.imul(w,Z)|0,i=i+Math.imul(w,G)|0,i=i+Math.imul(_,Z)|0,o=o+Math.imul(_,G)|0,n=n+Math.imul(m,Q)|0,i=i+Math.imul(m,ee)|0,i=i+Math.imul(g,Q)|0,o=o+Math.imul(g,ee)|0,n=n+Math.imul(l,re)|0,i=i+Math.imul(l,ne)|0,i=i+Math.imul(b,re)|0,o=o+Math.imul(b,ne)|0,n=n+Math.imul(u,oe)|0,i=i+Math.imul(u,se)|0,i=i+Math.imul(d,oe)|0,o=o+Math.imul(d,se)|0;var Se=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Se>>>26)|0,Se&=67108863,n=Math.imul(O,N),i=Math.imul(O,H),i=i+Math.imul(C,N)|0,o=Math.imul(C,H),n=n+Math.imul(I,V)|0,i=i+Math.imul(I,K)|0,i=i+Math.imul(B,V)|0,o=o+Math.imul(B,K)|0,n=n+Math.imul(A,X)|0,i=i+Math.imul(A,Y)|0,i=i+Math.imul(x,X)|0,o=o+Math.imul(x,Y)|0,n=n+Math.imul(k,Z)|0,i=i+Math.imul(k,G)|0,i=i+Math.imul(M,Z)|0,o=o+Math.imul(M,G)|0,n=n+Math.imul(w,Q)|0,i=i+Math.imul(w,ee)|0,i=i+Math.imul(_,Q)|0,o=o+Math.imul(_,ee)|0,n=n+Math.imul(m,re)|0,i=i+Math.imul(m,ne)|0,i=i+Math.imul(g,re)|0,o=o+Math.imul(g,ne)|0,n=n+Math.imul(l,oe)|0,i=i+Math.imul(l,se)|0,i=i+Math.imul(b,oe)|0,o=o+Math.imul(b,se)|0,n=n+Math.imul(u,fe)|0,i=i+Math.imul(u,ce)|0,i=i+Math.imul(d,fe)|0,o=o+Math.imul(d,ce)|0;var ke=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(ke>>>26)|0,ke&=67108863,n=Math.imul(P,N),i=Math.imul(P,H),i=i+Math.imul(D,N)|0,o=Math.imul(D,H),n=n+Math.imul(O,V)|0,i=i+Math.imul(O,K)|0,i=i+Math.imul(C,V)|0,o=o+Math.imul(C,K)|0,n=n+Math.imul(I,X)|0,i=i+Math.imul(I,Y)|0,i=i+Math.imul(B,X)|0,o=o+Math.imul(B,Y)|0,n=n+Math.imul(A,Z)|0,i=i+Math.imul(A,G)|0,i=i+Math.imul(x,Z)|0,o=o+Math.imul(x,G)|0,n=n+Math.imul(k,Q)|0,i=i+Math.imul(k,ee)|0,i=i+Math.imul(M,Q)|0,o=o+Math.imul(M,ee)|0,n=n+Math.imul(w,re)|0,i=i+Math.imul(w,ne)|0,i=i+Math.imul(_,re)|0,o=o+Math.imul(_,ne)|0,n=n+Math.imul(m,oe)|0,i=i+Math.imul(m,se)|0,i=i+Math.imul(g,oe)|0,o=o+Math.imul(g,se)|0,n=n+Math.imul(l,fe)|0,i=i+Math.imul(l,ce)|0,i=i+Math.imul(b,fe)|0,o=o+Math.imul(b,ce)|0,n=n+Math.imul(u,ue)|0,i=i+Math.imul(u,de)|0,i=i+Math.imul(d,ue)|0,o=o+Math.imul(d,de)|0;var Me=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Me>>>26)|0,Me&=67108863,n=Math.imul(L,N),i=Math.imul(L,H),i=i+Math.imul(U,N)|0,o=Math.imul(U,H),n=n+Math.imul(P,V)|0,i=i+Math.imul(P,K)|0,i=i+Math.imul(D,V)|0,o=o+Math.imul(D,K)|0,n=n+Math.imul(O,X)|0,i=i+Math.imul(O,Y)|0,i=i+Math.imul(C,X)|0,o=o+Math.imul(C,Y)|0,n=n+Math.imul(I,Z)|0,i=i+Math.imul(I,G)|0,i=i+Math.imul(B,Z)|0,o=o+Math.imul(B,G)|0,n=n+Math.imul(A,Q)|0,i=i+Math.imul(A,ee)|0,i=i+Math.imul(x,Q)|0,o=o+Math.imul(x,ee)|0,n=n+Math.imul(k,re)|0,i=i+Math.imul(k,ne)|0,i=i+Math.imul(M,re)|0,o=o+Math.imul(M,ne)|0,n=n+Math.imul(w,oe)|0,i=i+Math.imul(w,se)|0,i=i+Math.imul(_,oe)|0,o=o+Math.imul(_,se)|0,n=n+Math.imul(m,fe)|0,i=i+Math.imul(m,ce)|0,i=i+Math.imul(g,fe)|0,o=o+Math.imul(g,ce)|0,n=n+Math.imul(l,ue)|0,i=i+Math.imul(l,de)|0,i=i+Math.imul(b,ue)|0,o=o+Math.imul(b,de)|0,n=n+Math.imul(u,le)|0,i=i+Math.imul(u,be)|0,i=i+Math.imul(d,le)|0,o=o+Math.imul(d,be)|0;var Ee=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Ee>>>26)|0,Ee&=67108863,n=Math.imul(L,V),i=Math.imul(L,K),i=i+Math.imul(U,V)|0,o=Math.imul(U,K),n=n+Math.imul(P,X)|0,i=i+Math.imul(P,Y)|0,i=i+Math.imul(D,X)|0,o=o+Math.imul(D,Y)|0,n=n+Math.imul(O,Z)|0,i=i+Math.imul(O,G)|0,i=i+Math.imul(C,Z)|0,o=o+Math.imul(C,G)|0,n=n+Math.imul(I,Q)|0,i=i+Math.imul(I,ee)|0,i=i+Math.imul(B,Q)|0,o=o+Math.imul(B,ee)|0,n=n+Math.imul(A,re)|0,i=i+Math.imul(A,ne)|0,i=i+Math.imul(x,re)|0,o=o+Math.imul(x,ne)|0,n=n+Math.imul(k,oe)|0,i=i+Math.imul(k,se)|0,i=i+Math.imul(M,oe)|0,o=o+Math.imul(M,se)|0,n=n+Math.imul(w,fe)|0,i=i+Math.imul(w,ce)|0,i=i+Math.imul(_,fe)|0,o=o+Math.imul(_,ce)|0,n=n+Math.imul(m,ue)|0,i=i+Math.imul(m,de)|0,i=i+Math.imul(g,ue)|0,o=o+Math.imul(g,de)|0,n=n+Math.imul(l,le)|0,i=i+Math.imul(l,be)|0,i=i+Math.imul(b,le)|0,o=o+Math.imul(b,be)|0;var Ae=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Ae>>>26)|0,Ae&=67108863,n=Math.imul(L,X),i=Math.imul(L,Y),i=i+Math.imul(U,X)|0,o=Math.imul(U,Y),n=n+Math.imul(P,Z)|0,i=i+Math.imul(P,G)|0,i=i+Math.imul(D,Z)|0,o=o+Math.imul(D,G)|0,n=n+Math.imul(O,Q)|0,i=i+Math.imul(O,ee)|0,i=i+Math.imul(C,Q)|0,o=o+Math.imul(C,ee)|0,n=n+Math.imul(I,re)|0,i=i+Math.imul(I,ne)|0,i=i+Math.imul(B,re)|0,o=o+Math.imul(B,ne)|0,n=n+Math.imul(A,oe)|0,i=i+Math.imul(A,se)|0,i=i+Math.imul(x,oe)|0,o=o+Math.imul(x,se)|0,n=n+Math.imul(k,fe)|0,i=i+Math.imul(k,ce)|0,i=i+Math.imul(M,fe)|0,o=o+Math.imul(M,ce)|0,n=n+Math.imul(w,ue)|0,i=i+Math.imul(w,de)|0,i=i+Math.imul(_,ue)|0,o=o+Math.imul(_,de)|0,n=n+Math.imul(m,le)|0,i=i+Math.imul(m,be)|0,i=i+Math.imul(g,le)|0,o=o+Math.imul(g,be)|0;var xe=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(xe>>>26)|0,xe&=67108863,n=Math.imul(L,Z),i=Math.imul(L,G),i=i+Math.imul(U,Z)|0,o=Math.imul(U,G),n=n+Math.imul(P,Q)|0,i=i+Math.imul(P,ee)|0,i=i+Math.imul(D,Q)|0,o=o+Math.imul(D,ee)|0,n=n+Math.imul(O,re)|0,i=i+Math.imul(O,ne)|0,i=i+Math.imul(C,re)|0,o=o+Math.imul(C,ne)|0,n=n+Math.imul(I,oe)|0,i=i+Math.imul(I,se)|0,i=i+Math.imul(B,oe)|0,o=o+Math.imul(B,se)|0,n=n+Math.imul(A,fe)|0,i=i+Math.imul(A,ce)|0,i=i+Math.imul(x,fe)|0,o=o+Math.imul(x,ce)|0,n=n+Math.imul(k,ue)|0,i=i+Math.imul(k,de)|0,i=i+Math.imul(M,ue)|0,o=o+Math.imul(M,de)|0,n=n+Math.imul(w,le)|0,i=i+Math.imul(w,be)|0,i=i+Math.imul(_,le)|0,o=o+Math.imul(_,be)|0;var Te=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Te>>>26)|0,Te&=67108863,n=Math.imul(L,Q),i=Math.imul(L,ee),i=i+Math.imul(U,Q)|0,o=Math.imul(U,ee),n=n+Math.imul(P,re)|0,i=i+Math.imul(P,ne)|0,i=i+Math.imul(D,re)|0,o=o+Math.imul(D,ne)|0,n=n+Math.imul(O,oe)|0,i=i+Math.imul(O,se)|0,i=i+Math.imul(C,oe)|0,o=o+Math.imul(C,se)|0,n=n+Math.imul(I,fe)|0,i=i+Math.imul(I,ce)|0,i=i+Math.imul(B,fe)|0,o=o+Math.imul(B,ce)|0,n=n+Math.imul(A,ue)|0,i=i+Math.imul(A,de)|0,i=i+Math.imul(x,ue)|0,o=o+Math.imul(x,de)|0,n=n+Math.imul(k,le)|0,i=i+Math.imul(k,be)|0,i=i+Math.imul(M,le)|0,o=o+Math.imul(M,be)|0;var Ie=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Ie>>>26)|0,Ie&=67108863,n=Math.imul(L,re),i=Math.imul(L,ne),i=i+Math.imul(U,re)|0,o=Math.imul(U,ne),n=n+Math.imul(P,oe)|0,i=i+Math.imul(P,se)|0,i=i+Math.imul(D,oe)|0,o=o+Math.imul(D,se)|0,n=n+Math.imul(O,fe)|0,i=i+Math.imul(O,ce)|0,i=i+Math.imul(C,fe)|0,o=o+Math.imul(C,ce)|0,n=n+Math.imul(I,ue)|0,i=i+Math.imul(I,de)|0,i=i+Math.imul(B,ue)|0,o=o+Math.imul(B,de)|0,n=n+Math.imul(A,le)|0,i=i+Math.imul(A,be)|0,i=i+Math.imul(x,le)|0,o=o+Math.imul(x,be)|0;var Be=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Be>>>26)|0,Be&=67108863,n=Math.imul(L,oe),i=Math.imul(L,se),i=i+Math.imul(U,oe)|0,o=Math.imul(U,se),n=n+Math.imul(P,fe)|0,i=i+Math.imul(P,ce)|0,i=i+Math.imul(D,fe)|0,o=o+Math.imul(D,ce)|0,n=n+Math.imul(O,ue)|0,i=i+Math.imul(O,de)|0,i=i+Math.imul(C,ue)|0,o=o+Math.imul(C,de)|0,n=n+Math.imul(I,le)|0,i=i+Math.imul(I,be)|0,i=i+Math.imul(B,le)|0,o=o+Math.imul(B,be)|0;var Re=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Re>>>26)|0,Re&=67108863,n=Math.imul(L,fe),i=Math.imul(L,ce),i=i+Math.imul(U,fe)|0,o=Math.imul(U,ce),n=n+Math.imul(P,ue)|0,i=i+Math.imul(P,de)|0,i=i+Math.imul(D,ue)|0,o=o+Math.imul(D,de)|0,n=n+Math.imul(O,le)|0,i=i+Math.imul(O,be)|0,i=i+Math.imul(C,le)|0,o=o+Math.imul(C,be)|0;var Oe=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Oe>>>26)|0,Oe&=67108863,n=Math.imul(L,ue),i=Math.imul(L,de),i=i+Math.imul(U,ue)|0,o=Math.imul(U,de),n=n+Math.imul(P,le)|0,i=i+Math.imul(P,be)|0,i=i+Math.imul(D,le)|0,o=o+Math.imul(D,be)|0;var Ce=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Ce>>>26)|0,Ce&=67108863,n=Math.imul(L,le),i=Math.imul(L,be),i=i+Math.imul(U,le)|0,o=Math.imul(U,be);var je=(c+n|0)+((8191&i)<<13)|0;return c=(o+(i>>>13)|0)+(je>>>26)|0,je&=67108863,f[0]=ye,f[1]=me,f[2]=ge,f[3]=ve,f[4]=we,f[5]=_e,f[6]=Se,f[7]=ke,f[8]=Me,f[9]=Ee,f[10]=Ae,f[11]=xe,f[12]=Te,f[13]=Ie,f[14]=Be,f[15]=Re,f[16]=Oe,f[17]=Ce,f[18]=je,0!==c&&(f[19]=c,r.length++),r};Math.imul||(M=c),o.prototype.mulTo=function(e,t){var r=this.length+e.length;return 10===this.length&&10===e.length?M(this,e,t):r<63?c(this,e,t):r<1024?h(this,e,t):u(this,e,t)},d.prototype.makeRBT=function(e){for(var t=new Array(e),r=o.prototype._countBits(e)-1,n=0;n>=1;return n},d.prototype.permute=function(e,t,r,n,i,o){for(var s=0;s>>=1)i++;return 1<>>=13,r[2*s+1]=8191&o,o>>>=13;for(s=2*t;s>=26,t+=i/67108864|0,t+=o>>>26,this.words[r]=67108863&o}return 0!==t&&(this.words[r]=t,this.length++),this},o.prototype.muln=function(e){return this.clone().imuln(e)},o.prototype.sqr=function(){return this.mul(this)},o.prototype.isqr=function(){return this.imul(this.clone())},o.prototype.pow=function(e){var t=f(e);if(0===t.length)return new o(1);for(var r=this,n=0;n=0);var t,r=e%26,i=(e-r)/26,o=67108863>>>26-r<<26-r;if(0!==r){var s=0;for(t=0;t>>26-r}s&&(this.words[t]=s,this.length++)}if(0!==i){for(t=this.length-1;t>=0;t--)this.words[t+i]=this.words[t];for(t=0;t=0);var i;i=t?(t-t%26)/26:0;var o=e%26,s=Math.min((e-o)/26,this.length),a=67108863^67108863>>>o<s)for(this.length-=s,c=0;c=0&&(0!==h||c>=i);c--){var u=0|this.words[c];this.words[c]=h<<26-o|u>>>o,h=u&a}return f&&0!==h&&(f.words[f.length++]=h),0===this.length&&(this.words[0]=0,this.length=1),this.strip()},o.prototype.ishrn=function(e,t,r){return n(0===this.negative),this.iushrn(e,t,r)},o.prototype.shln=function(e){return this.clone().ishln(e)},o.prototype.ushln=function(e){return this.clone().iushln(e)},o.prototype.shrn=function(e){return this.clone().ishrn(e)},o.prototype.ushrn=function(e){return this.clone().iushrn(e)},o.prototype.testn=function(e){n("number"==typeof e&&e>=0);var t=e%26,r=(e-t)/26,i=1<=0);var t=e%26,r=(e-t)/26;if(n(0===this.negative,"imaskn works only with positive numbers"),this.length<=r)return this;if(0!==t&&r++,this.length=Math.min(r,this.length),0!==t){var i=67108863^67108863>>>t<=67108864;t++)this.words[t]-=67108864,t===this.length-1?this.words[t+1]=1:this.words[t+1]++;return this.length=Math.max(this.length,t+1),this},o.prototype.isubn=function(e){if(n("number"==typeof e),n(e<67108864),e<0)return this.iaddn(-e);if(0!==this.negative)return this.negative=0,this.iaddn(e),this.negative=1,this;if(this.words[0]-=e,1===this.length&&this.words[0]<0)this.words[0]=-this.words[0],this.negative=1;else for(var t=0;t>26)-(f/67108864|0),this.words[i+r]=67108863&s}for(;i>26,this.words[i+r]=67108863&s;if(0===a)return this.strip();for(n(-1===a),a=0,i=0;i>26,this.words[i]=67108863&s;return this.negative=1,this.strip()},o.prototype._wordDiv=function(e,t){var r=this.length-e.length,n=this.clone(),i=e,s=0|i.words[i.length-1];0!==(r=26-this._countBits(s))&&(i=i.ushln(r),n.iushln(r),s=0|i.words[i.length-1]);var a,f=n.length-i.length;if("mod"!==t){a=new o(null),a.length=f+1,a.words=new Array(a.length);for(var c=0;c=0;u--){var d=67108864*(0|n.words[i.length+u])+(0|n.words[i.length+u-1]);for(d=Math.min(d/s|0,67108863),n._ishlnsubmul(i,d,u);0!==n.negative;)d--,n.negative=0,n._ishlnsubmul(i,1,u),n.isZero()||(n.negative^=1);a&&(a.words[u]=d)}return a&&a.strip(),n.strip(),"div"!==t&&0!==r&&n.iushrn(r),{div:a||null,mod:n}},o.prototype.divmod=function(e,t,r){if(n(!e.isZero()),this.isZero())return{div:new o(0),mod:new o(0)};var i,s,a;return 0!==this.negative&&0===e.negative?(a=this.neg().divmod(e,t),"mod"!==t&&(i=a.div.neg()),"div"!==t&&(s=a.mod.neg(),r&&0!==s.negative&&s.iadd(e)),{div:i,mod:s}):0===this.negative&&0!==e.negative?(a=this.divmod(e.neg(),t),"mod"!==t&&(i=a.div.neg()),{div:i,mod:a.mod}):0!=(this.negative&e.negative)?(a=this.neg().divmod(e.neg(),t),"div"!==t&&(s=a.mod.neg(),r&&0!==s.negative&&s.isub(e)),{div:a.div,mod:s}):e.length>this.length||this.cmp(e)<0?{div:new 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i=[14,0,4,15,13,7,1,4,2,14,15,2,11,13,8,1,3,10,10,6,6,12,12,11,5,9,9,5,0,3,7,8,4,15,1,12,14,8,8,2,13,4,6,9,2,1,11,7,15,5,12,11,9,3,7,14,3,10,10,0,5,6,0,13,15,3,1,13,8,4,14,7,6,15,11,2,3,8,4,14,9,12,7,0,2,1,13,10,12,6,0,9,5,11,10,5,0,13,14,8,7,10,11,1,10,3,4,15,13,4,1,2,5,11,8,6,12,7,6,12,9,0,3,5,2,14,15,9,10,13,0,7,9,0,14,9,6,3,3,4,15,6,5,10,1,2,13,8,12,5,7,14,11,12,4,11,2,15,8,1,13,1,6,10,4,13,9,0,8,6,15,9,3,8,0,7,11,4,1,15,2,14,12,3,5,11,10,5,14,2,7,12,7,13,13,8,14,11,3,5,0,6,6,15,9,0,10,3,1,4,2,7,8,2,5,12,11,1,12,10,4,14,15,9,10,3,6,15,9,0,0,6,12,10,11,1,7,13,13,8,15,9,1,4,3,5,14,11,5,12,2,7,8,2,4,14,2,14,12,11,4,2,1,12,7,4,10,7,11,13,6,1,8,5,5,0,3,15,15,10,13,3,0,9,14,8,9,6,4,11,2,8,1,12,11,7,10,1,13,14,7,2,8,13,15,6,9,15,12,0,5,9,6,10,3,4,0,5,14,3,12,10,1,15,10,4,15,2,9,7,2,12,6,9,8,5,0,6,13,1,3,13,4,14,14,0,7,11,5,3,11,8,9,4,14,3,15,2,5,12,2,9,8,5,12,15,3,10,7,11,0,14,4,1,10,7,1,6,13,0,11,8,6,13,4,13,11,0,2,11,14,7,15,4,0,9,8,1,13,10,3,14,12,3,9,5,7,12,5,2,10,15,6,8,1,6,1,6,4,11,11,13,13,8,12,1,3,4,7,10,14,7,10,9,15,5,6,0,8,15,0,14,5,2,9,3,2,12,13,1,2,15,8,13,4,8,6,10,15,3,11,7,1,4,10,12,9,5,3,6,14,11,5,0,0,14,12,9,7,2,7,2,11,1,4,14,1,7,9,4,12,10,14,8,2,13,0,15,6,12,10,9,13,0,15,3,3,5,5,6,8,11];t.substitute=function(e,t){for(var r=0,n=0;n<4;n++){var o=e>>>18-6*n&63,s=i[64*n+o];r<<=4,r|=s}for(var n=0;n<4;n++){var o=t>>>18-6*n&63,s=i[256+64*n+o];r<<=4,r|=s}return r>>>0};var o=[16,25,12,11,3,20,4,15,31,17,9,6,27,14,1,22,30,24,8,18,0,5,29,23,13,19,2,26,10,21,28,7];t.permute=function(e){for(var t=0,r=0;r>>o[r]&1;return t>>>0},t.padSplit=function(e,t,r){for(var n=e.toString(2);n.length0?this.redN=null:(this._maxwellTrick=!0,this.redN=this.n.toRed(this.red))}function i(e,t){this.curve=e,this.type=t,this.precomputed=null}var o=r(2),s=r(3),a=s.utils,f=a.getNAF,c=a.getJSF,h=a.assert;e.exports=n,n.prototype.point=function(){throw new Error("Not implemented")},n.prototype.validate=function(){throw new Error("Not implemented")},n.prototype._fixedNafMul=function(e,t){h(e.precomputed);var r=e._getDoubles(),n=f(t,1),i=(1<=s;t--)a=(a<<1)+n[t];o.push(a)}for(var c=this.jpoint(null,null,null),u=this.jpoint(null,null,null),d=i;d>0;d--){for(var s=0;s=0;a--){for(var t=0;a>=0&&0===o[a];a--)t++;if(a>=0&&t++,s=s.dblp(t),a<0)break;var c=o[a];h(0!==c),s="affine"===e.type?c>0?s.mixedAdd(i[c-1>>1]):s.mixedAdd(i[-c-1>>1].neg()):c>0?s.add(i[c-1>>1]):s.add(i[-c-1>>1].neg())}return"affine"===e.type?s.toP():s},n.prototype._wnafMulAdd=function(e,t,r,n,i){for(var o=this._wnafT1,s=this._wnafT2,a=this._wnafT3,h=0,u=0;u=1;u-=2){var l=u-1,b=u;if(1===o[l]&&1===o[b]){var y=[t[l],null,null,t[b]];0===t[l].y.cmp(t[b].y)?(y[1]=t[l].add(t[b]),y[2]=t[l].toJ().mixedAdd(t[b].neg())):0===t[l].y.cmp(t[b].y.redNeg())?(y[1]=t[l].toJ().mixedAdd(t[b]),y[2]=t[l].add(t[b].neg())):(y[1]=t[l].toJ().mixedAdd(t[b]),y[2]=t[l].toJ().mixedAdd(t[b].neg()));var m=[-3,-1,-5,-7,0,7,5,1,3],g=c(r[l],r[b]);h=Math.max(g[0].length,h),a[l]=new Array(h),a[b]=new Array(h);for(var v=0;v=0;u--){for(var M=0;u>=0;){for(var E=!0,v=0;v=0&&M++,S=S.dblp(M),u<0)break;for(var v=0;v0?d=s[v][A-1>>1]:A<0&&(d=s[v][-A-1>>1].neg()),S="affine"===d.type?S.mixedAdd(d):S.add(d))}}for(var u=0;u=Math.ceil((e.bitLength()+1)/t.step)},i.prototype._getDoubles=function(e,t){if(this.precomputed&&this.precomputed.doubles)return this.precomputed.doubles;for(var r=[this],n=this,i=0;i":""},i.prototype.isInfinity=function(){return 0===this.x.cmpn(0)&&0===this.y.cmp(this.z)},i.prototype._extDbl=function(){var e=this.x.redSqr(),t=this.y.redSqr(),r=this.z.redSqr();r=r.redIAdd(r);var n=this.curve._mulA(e),i=this.x.redAdd(this.y).redSqr().redISub(e).redISub(t),o=n.redAdd(t),s=o.redSub(r),a=n.redSub(t),f=i.redMul(s),c=o.redMul(a),h=i.redMul(a),u=s.redMul(o);return this.curve.point(f,c,u,h)},i.prototype._projDbl=function(){var e,t,r,n=this.x.redAdd(this.y).redSqr(),i=this.x.redSqr(),o=this.y.redSqr();if(this.curve.twisted){var s=this.curve._mulA(i),a=s.redAdd(o);if(this.zOne)e=n.redSub(i).redSub(o).redMul(a.redSub(this.curve.two)),t=a.redMul(s.redSub(o)),r=a.redSqr().redSub(a).redSub(a);else{var f=this.z.redSqr(),c=a.redSub(f).redISub(f);e=n.redSub(i).redISub(o).redMul(c),t=a.redMul(s.redSub(o)),r=a.redMul(c)}}else{var s=i.redAdd(o),f=this.curve._mulC(this.c.redMul(this.z)).redSqr(),c=s.redSub(f).redSub(f);e=this.curve._mulC(n.redISub(s)).redMul(c),t=this.curve._mulC(s).redMul(i.redISub(o)),r=s.redMul(c)}return this.curve.point(e,t,r)},i.prototype.dbl=function(){return this.isInfinity()?this:this.curve.extended?this._extDbl():this._projDbl()},i.prototype._extAdd=function(e){var t=this.y.redSub(this.x).redMul(e.y.redSub(e.x)),r=this.y.redAdd(this.x).redMul(e.y.redAdd(e.x)),n=this.t.redMul(this.curve.dd).redMul(e.t),i=this.z.redMul(e.z.redAdd(e.z)),o=r.redSub(t),s=i.redSub(n),a=i.redAdd(n),f=r.redAdd(t),c=o.redMul(s),h=a.redMul(f),u=o.redMul(f),d=s.redMul(a);return this.curve.point(c,h,d,u)},i.prototype._projAdd=function(e){var t,r,n=this.z.redMul(e.z),i=n.redSqr(),o=this.x.redMul(e.x),s=this.y.redMul(e.y),a=this.curve.d.redMul(o).redMul(s),f=i.redSub(a),c=i.redAdd(a),h=this.x.redAdd(this.y).redMul(e.x.redAdd(e.y)).redISub(o).redISub(s),u=n.redMul(f).redMul(h);return this.curve.twisted?(t=n.redMul(c).redMul(s.redSub(this.curve._mulA(o))),r=f.redMul(c)):(t=n.redMul(c).redMul(s.redSub(o)),r=this.curve._mulC(f).redMul(c)),this.curve.point(u,t,r)},i.prototype.add=function(e){return this.isInfinity()?e:e.isInfinity()?this:this.curve.extended?this._extAdd(e):this._projAdd(e)},i.prototype.mul=function(e){return this._hasDoubles(e)?this.curve._fixedNafMul(this,e):this.curve._wnafMul(this,e)},i.prototype.mulAdd=function(e,t,r){return this.curve._wnafMulAdd(1,[this,t],[e,r],2,!1)},i.prototype.jmulAdd=function(e,t,r){return this.curve._wnafMulAdd(1,[this,t],[e,r],2,!0)},i.prototype.normalize=function(){if(this.zOne)return this;var e=this.z.redInvm();return this.x=this.x.redMul(e),this.y=this.y.redMul(e),this.t&&(this.t=this.t.redMul(e)),this.z=this.curve.one,this.zOne=!0,this},i.prototype.neg=function(){return this.curve.point(this.x.redNeg(),this.y,this.z,this.t&&this.t.redNeg())},i.prototype.getX=function(){return this.normalize(),this.x.fromRed()},i.prototype.getY=function(){return this.normalize(),this.y.fromRed()},i.prototype.eq=function(e){return this===e||0===this.getX().cmp(e.getX())&&0===this.getY().cmp(e.getY())},i.prototype.eqXToP=function(e){var t=e.toRed(this.curve.red).redMul(this.z);if(0===this.x.cmp(t))return!0;for(var r=e.clone(),n=this.curve.redN.redMul(this.z);;){if(r.iadd(this.curve.n),r.cmp(this.curve.p)>=0)return!1;if(t.redIAdd(n),0===this.x.cmp(t))return!0}return!1},i.prototype.toP=i.prototype.normalize,i.prototype.mixedAdd=i.prototype.add},function(e,t,r){"use strict";function n(e){f.call(this,"mont",e),this.a=new s(e.a,16).toRed(this.red),this.b=new s(e.b,16).toRed(this.red),this.i4=new s(4).toRed(this.red).redInvm(),this.two=new s(2).toRed(this.red),this.a24=this.i4.redMul(this.a.redAdd(this.two))}function i(e,t,r){f.BasePoint.call(this,e,"projective"),null===t&&null===r?(this.x=this.curve.one,this.z=this.curve.zero):(this.x=new s(t,16),this.z=new s(r,16),this.x.red||(this.x=this.x.toRed(this.curve.red)),this.z.red||(this.z=this.z.toRed(this.curve.red)))}var o=r(26),s=r(2),a=r(1),f=o.base,c=r(3),h=c.utils;a(n,f),e.exports=n,n.prototype.validate=function(e){var t=e.normalize().x,r=t.redSqr(),n=r.redMul(t).redAdd(r.redMul(this.a)).redAdd(t);return 0===n.redSqrt().redSqr().cmp(n)},a(i,f.BasePoint),n.prototype.decodePoint=function(e,t){return this.point(h.toArray(e,t),1)},n.prototype.point=function(e,t){return new i(this,e,t)},n.prototype.pointFromJSON=function(e){return i.fromJSON(this,e)},i.prototype.precompute=function(){},i.prototype._encode=function(){return this.getX().toArray("be",this.curve.p.byteLength())},i.fromJSON=function(e,t){return new i(e,t[0],t[1]||e.one)},i.prototype.inspect=function(){return this.isInfinity()?"":""},i.prototype.isInfinity=function(){return 0===this.z.cmpn(0)},i.prototype.dbl=function(){var e=this.x.redAdd(this.z),t=e.redSqr(),r=this.x.redSub(this.z),n=r.redSqr(),i=t.redSub(n),o=t.redMul(n),s=i.redMul(n.redAdd(this.curve.a24.redMul(i)));return this.curve.point(o,s)},i.prototype.add=function(){throw new Error("Not supported on Montgomery curve")},i.prototype.diffAdd=function(e,t){var r=this.x.redAdd(this.z),n=this.x.redSub(this.z),i=e.x.redAdd(e.z),o=e.x.redSub(e.z),s=o.redMul(r),a=i.redMul(n),f=t.z.redMul(s.redAdd(a).redSqr()),c=t.x.redMul(s.redISub(a).redSqr());return this.curve.point(f,c)},i.prototype.mul=function(e){for(var t=e.clone(),r=this,n=this.curve.point(null,null),i=this,o=[];0!==t.cmpn(0);t.iushrn(1))o.push(t.andln(1));for(var s=o.length-1;s>=0;s--)0===o[s]?(r=r.diffAdd(n,i),n=n.dbl()):(n=r.diffAdd(n,i),r=r.dbl());return n},i.prototype.mulAdd=function(){throw new Error("Not supported on Montgomery curve")},i.prototype.jumlAdd=function(){throw new Error("Not supported on Montgomery curve")},i.prototype.eq=function(e){return 0===this.getX().cmp(e.getX())},i.prototype.normalize=function(){return this.x=this.x.redMul(this.z.redInvm()),this.z=this.curve.one,this},i.prototype.getX=function(){return this.normalize(),this.x.fromRed()}},function(e,t,r){"use strict";function n(e){h.call(this,"short",e),this.a=new f(e.a,16).toRed(this.red),this.b=new f(e.b,16).toRed(this.red),this.tinv=this.two.redInvm(),this.zeroA=0===this.a.fromRed().cmpn(0),this.threeA=0===this.a.fromRed().sub(this.p).cmpn(-3),this.endo=this._getEndomorphism(e),this._endoWnafT1=new Array(4),this._endoWnafT2=new Array(4)}function i(e,t,r,n){h.BasePoint.call(this,e,"affine"),null===t&&null===r?(this.x=null,this.y=null,this.inf=!0):(this.x=new f(t,16),this.y=new f(r,16),n&&(this.x.forceRed(this.curve.red),this.y.forceRed(this.curve.red)),this.x.red||(this.x=this.x.toRed(this.curve.red)),this.y.red||(this.y=this.y.toRed(this.curve.red)),this.inf=!1)}function o(e,t,r,n){h.BasePoint.call(this,e,"jacobian"),null===t&&null===r&&null===n?(this.x=this.curve.one,this.y=this.curve.one,this.z=new f(0)):(this.x=new f(t,16),this.y=new f(r,16),this.z=new f(n,16)),this.x.red||(this.x=this.x.toRed(this.curve.red)),this.y.red||(this.y=this.y.toRed(this.curve.red)),this.z.red||(this.z=this.z.toRed(this.curve.red)),this.zOne=this.z===this.curve.one}var s=r(26),a=r(3),f=r(2),c=r(1),h=s.base,u=a.utils.assert;c(n,h),e.exports=n,n.prototype._getEndomorphism=function(e){if(this.zeroA&&this.g&&this.n&&1===this.p.modn(3)){var t,r;if(e.beta)t=new f(e.beta,16).toRed(this.red);else{var n=this._getEndoRoots(this.p);t=n[0].cmp(n[1])<0?n[0]:n[1],t=t.toRed(this.red)}if(e.lambda)r=new f(e.lambda,16);else{var i=this._getEndoRoots(this.n);0===this.g.mul(i[0]).x.cmp(this.g.x.redMul(t))?r=i[0]:(r=i[1],u(0===this.g.mul(r).x.cmp(this.g.x.redMul(t))))}var o;return o=e.basis?e.basis.map(function(e){return{a:new f(e.a,16),b:new f(e.b,16)}}):this._getEndoBasis(r),{beta:t,lambda:r,basis:o}}},n.prototype._getEndoRoots=function(e){var t=e===this.p?this.red:f.mont(e),r=new f(2).toRed(t).redInvm(),n=r.redNeg(),i=new f(3).toRed(t).redNeg().redSqrt().redMul(r);return[n.redAdd(i).fromRed(),n.redSub(i).fromRed()]},n.prototype._getEndoBasis=function(e){for(var t,r,n,i,o,s,a,c,h,u=this.n.ushrn(Math.floor(this.n.bitLength()/2)),d=e,p=this.n.clone(),l=new f(1),b=new f(0),y=new f(0),m=new f(1),g=0;0!==d.cmpn(0);){var v=p.div(d);c=p.sub(v.mul(d)),h=y.sub(v.mul(l));var w=m.sub(v.mul(b));if(!n&&c.cmp(u)<0)t=a.neg(),r=l,n=c.neg(),i=h;else if(n&&2==++g)break;a=c,p=d,d=c,y=l,l=h,m=b,b=w}o=c.neg(),s=h;var _=n.sqr().add(i.sqr());return o.sqr().add(s.sqr()).cmp(_)>=0&&(o=t,s=r),n.negative&&(n=n.neg(),i=i.neg()),o.negative&&(o=o.neg(),s=s.neg()),[{a:n,b:i},{a:o,b:s}]},n.prototype._endoSplit=function(e){var t=this.endo.basis,r=t[0],n=t[1],i=n.b.mul(e).divRound(this.n),o=r.b.neg().mul(e).divRound(this.n),s=i.mul(r.a),a=o.mul(n.a),f=i.mul(r.b),c=o.mul(n.b);return{k1:e.sub(s).sub(a),k2:f.add(c).neg()}},n.prototype.pointFromX=function(e,t){e=new f(e,16),e.red||(e=e.toRed(this.red));var r=e.redSqr().redMul(e).redIAdd(e.redMul(this.a)).redIAdd(this.b),n=r.redSqrt();if(0!==n.redSqr().redSub(r).cmp(this.zero))throw new Error("invalid point");var i=n.fromRed().isOdd();return(t&&!i||!t&&i)&&(n=n.redNeg()),this.point(e,n)},n.prototype.validate=function(e){if(e.inf)return!0;var t=e.x,r=e.y,n=this.a.redMul(t),i=t.redSqr().redMul(t).redIAdd(n).redIAdd(this.b);return 0===r.redSqr().redISub(i).cmpn(0)},n.prototype._endoWnafMulAdd=function(e,t,r){for(var n=this._endoWnafT1,i=this._endoWnafT2,o=0;o":""},i.prototype.isInfinity=function(){return this.inf},i.prototype.add=function(e){if(this.inf)return e;if(e.inf)return this;if(this.eq(e))return this.dbl();if(this.neg().eq(e))return this.curve.point(null,null);if(0===this.x.cmp(e.x))return this.curve.point(null,null);var t=this.y.redSub(e.y);0!==t.cmpn(0)&&(t=t.redMul(this.x.redSub(e.x).redInvm()));var r=t.redSqr().redISub(this.x).redISub(e.x),n=t.redMul(this.x.redSub(r)).redISub(this.y);return this.curve.point(r,n)},i.prototype.dbl=function(){if(this.inf)return this;var e=this.y.redAdd(this.y);if(0===e.cmpn(0))return this.curve.point(null,null);var t=this.curve.a,r=this.x.redSqr(),n=e.redInvm(),i=r.redAdd(r).redIAdd(r).redIAdd(t).redMul(n),o=i.redSqr().redISub(this.x.redAdd(this.x)),s=i.redMul(this.x.redSub(o)).redISub(this.y);return this.curve.point(o,s)},i.prototype.getX=function(){return this.x.fromRed()},i.prototype.getY=function(){return this.y.fromRed()},i.prototype.mul=function(e){return e=new f(e,16),this._hasDoubles(e)?this.curve._fixedNafMul(this,e):this.curve.endo?this.curve._endoWnafMulAdd([this],[e]):this.curve._wnafMul(this,e)},i.prototype.mulAdd=function(e,t,r){var n=[this,t],i=[e,r];return this.curve.endo?this.curve._endoWnafMulAdd(n,i):this.curve._wnafMulAdd(1,n,i,2)},i.prototype.jmulAdd=function(e,t,r){var n=[this,t],i=[e,r];return this.curve.endo?this.curve._endoWnafMulAdd(n,i,!0):this.curve._wnafMulAdd(1,n,i,2,!0)},i.prototype.eq=function(e){return this===e||this.inf===e.inf&&(this.inf||0===this.x.cmp(e.x)&&0===this.y.cmp(e.y))},i.prototype.neg=function(e){if(this.inf)return this;var t=this.curve.point(this.x,this.y.redNeg());if(e&&this.precomputed){var r=this.precomputed,n=function(e){return e.neg()};t.precomputed={naf:r.naf&&{wnd:r.naf.wnd,points:r.naf.points.map(n)},doubles:r.doubles&&{step:r.doubles.step,points:r.doubles.points.map(n)}}}return t},i.prototype.toJ=function(){return this.inf?this.curve.jpoint(null,null,null):this.curve.jpoint(this.x,this.y,this.curve.one)},c(o,h.BasePoint),n.prototype.jpoint=function(e,t,r){return new o(this,e,t,r)},o.prototype.toP=function(){if(this.isInfinity())return this.curve.point(null,null);var e=this.z.redInvm(),t=e.redSqr(),r=this.x.redMul(t),n=this.y.redMul(t).redMul(e);return this.curve.point(r,n)},o.prototype.neg=function(){return this.curve.jpoint(this.x,this.y.redNeg(),this.z)},o.prototype.add=function(e){if(this.isInfinity())return e;if(e.isInfinity())return this;var t=e.z.redSqr(),r=this.z.redSqr(),n=this.x.redMul(t),i=e.x.redMul(r),o=this.y.redMul(t.redMul(e.z)),s=e.y.redMul(r.redMul(this.z)),a=n.redSub(i),f=o.redSub(s);if(0===a.cmpn(0))return 0!==f.cmpn(0)?this.curve.jpoint(null,null,null):this.dbl();var c=a.redSqr(),h=c.redMul(a),u=n.redMul(c),d=f.redSqr().redIAdd(h).redISub(u).redISub(u),p=f.redMul(u.redISub(d)).redISub(o.redMul(h)),l=this.z.redMul(e.z).redMul(a);return this.curve.jpoint(d,p,l)},o.prototype.mixedAdd=function(e){if(this.isInfinity())return e.toJ();if(e.isInfinity())return this;var t=this.z.redSqr(),r=this.x,n=e.x.redMul(t),i=this.y,o=e.y.redMul(t).redMul(this.z),s=r.redSub(n),a=i.redSub(o);if(0===s.cmpn(0))return 0!==a.cmpn(0)?this.curve.jpoint(null,null,null):this.dbl();var f=s.redSqr(),c=f.redMul(s),h=r.redMul(f),u=a.redSqr().redIAdd(c).redISub(h).redISub(h),d=a.redMul(h.redISub(u)).redISub(i.redMul(c)),p=this.z.redMul(s);return this.curve.jpoint(u,d,p)},o.prototype.dblp=function(e){if(0===e)return this;if(this.isInfinity())return this;if(!e)return this.dbl();if(this.curve.zeroA||this.curve.threeA){for(var t=this,r=0;r=0)return!1;if(r.redIAdd(i),0===this.x.cmp(r))return!0}return!1},o.prototype.inspect=function(){return this.isInfinity()?"":""},o.prototype.isInfinity=function(){return 0===this.z.cmpn(0)}},function(e,t,r){"use strict";function n(e){"short"===e.type?this.curve=new a.curve.short(e):"edwards"===e.type?this.curve=new a.curve.edwards(e):this.curve=new a.curve.mont(e),this.g=this.curve.g,this.n=this.curve.n,this.hash=e.hash,f(this.g.validate(),"Invalid curve"),f(this.g.mul(this.n).isInfinity(),"Invalid curve, G*N != O")}function i(e,t){Object.defineProperty(o,e,{configurable:!0,enumerable:!0,get:function(){var r=new n(t);return Object.defineProperty(o,e,{configurable:!0,enumerable:!0,value:r}),r}})}var o=t,s=r(7),a=r(3),f=a.utils.assert;o.PresetCurve=n,i("p192",{type:"short",prime:"p192",p:"ffffffff ffffffff ffffffff fffffffe ffffffff ffffffff",a:"ffffffff ffffffff ffffffff fffffffe ffffffff fffffffc",b:"64210519 e59c80e7 0fa7e9ab 72243049 feb8deec c146b9b1",n:"ffffffff ffffffff ffffffff 99def836 146bc9b1 b4d22831",hash:s.sha256,gRed:!1,g:["188da80e b03090f6 7cbf20eb 43a18800 f4ff0afd 82ff1012","07192b95 ffc8da78 631011ed 6b24cdd5 73f977a1 1e794811"]}),i("p224",{type:"short",prime:"p224",p:"ffffffff ffffffff ffffffff ffffffff 00000000 00000000 00000001",a:"ffffffff ffffffff ffffffff fffffffe ffffffff ffffffff fffffffe",b:"b4050a85 0c04b3ab f5413256 5044b0b7 d7bfd8ba 270b3943 2355ffb4",n:"ffffffff ffffffff ffffffff ffff16a2 e0b8f03e 13dd2945 5c5c2a3d",hash:s.sha256,gRed:!1,g:["b70e0cbd 6bb4bf7f 321390b9 4a03c1d3 56c21122 343280d6 115c1d21","bd376388 b5f723fb 4c22dfe6 cd4375a0 5a074764 44d58199 85007e34"]}),i("p256",{type:"short",prime:null,p:"ffffffff 00000001 00000000 00000000 00000000 ffffffff ffffffff ffffffff",a:"ffffffff 00000001 00000000 00000000 00000000 ffffffff ffffffff fffffffc",b:"5ac635d8 aa3a93e7 b3ebbd55 769886bc 651d06b0 cc53b0f6 3bce3c3e 27d2604b",n:"ffffffff 00000000 ffffffff ffffffff bce6faad a7179e84 f3b9cac2 fc632551",hash:s.sha256,gRed:!1,g:["6b17d1f2 e12c4247 f8bce6e5 63a440f2 77037d81 2deb33a0 f4a13945 d898c296","4fe342e2 fe1a7f9b 8ee7eb4a 7c0f9e16 2bce3357 6b315ece cbb64068 37bf51f5"]}),i("p384",{type:"short",prime:null,p:"ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff fffffffe ffffffff 00000000 00000000 ffffffff",a:"ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff fffffffe ffffffff 00000000 00000000 fffffffc",b:"b3312fa7 e23ee7e4 988e056b e3f82d19 181d9c6e fe814112 0314088f 5013875a c656398d 8a2ed19d 2a85c8ed d3ec2aef",n:"ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff c7634d81 f4372ddf 581a0db2 48b0a77a ecec196a ccc52973",hash:s.sha384,gRed:!1,g:["aa87ca22 be8b0537 8eb1c71e f320ad74 6e1d3b62 8ba79b98 59f741e0 82542a38 5502f25d bf55296c 3a545e38 72760ab7","3617de4a 96262c6f 5d9e98bf 9292dc29 f8f41dbd 289a147c e9da3113 b5f0b8c0 0a60b1ce 1d7e819d 7a431d7c 90ea0e5f"]}),i("p521",{type:"short",prime:null,p:"000001ff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff",a:"000001ff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff fffffffc",b:"00000051 953eb961 8e1c9a1f 929a21a0 b68540ee a2da725b 99b315f3 b8b48991 8ef109e1 56193951 ec7e937b 1652c0bd 3bb1bf07 3573df88 3d2c34f1 ef451fd4 6b503f00",n:"000001ff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff fffffffa 51868783 bf2f966b 7fcc0148 f709a5d0 3bb5c9b8 899c47ae bb6fb71e 91386409",hash:s.sha512,gRed:!1,g:["000000c6 858e06b7 0404e9cd 9e3ecb66 2395b442 9c648139 053fb521 f828af60 6b4d3dba a14b5e77 efe75928 fe1dc127 a2ffa8de 3348b3c1 856a429b f97e7e31 c2e5bd66","00000118 39296a78 9a3bc004 5c8a5fb4 2c7d1bd9 98f54449 579b4468 17afbd17 273e662c 97ee7299 5ef42640 c550b901 3fad0761 353c7086 a272c240 88be9476 9fd16650"]}),i("curve25519",{type:"mont",prime:"p25519",p:"7fffffffffffffff ffffffffffffffff ffffffffffffffff ffffffffffffffed",a:"76d06",b:"1",n:"1000000000000000 0000000000000000 14def9dea2f79cd6 5812631a5cf5d3ed",hash:s.sha256,gRed:!1,g:["9"]}),i("ed25519",{type:"edwards",prime:"p25519",p:"7fffffffffffffff ffffffffffffffff ffffffffffffffff ffffffffffffffed",a:"-1",c:"1",d:"52036cee2b6ffe73 8cc740797779e898 00700a4d4141d8ab 75eb4dca135978a3",n:"1000000000000000 0000000000000000 14def9dea2f79cd6 5812631a5cf5d3ed",hash:s.sha256,gRed:!1,g:["216936d3cd6e53fec0a4e231fdd6dc5c692cc7609525a7b2c9562d608f25d51a","6666666666666666666666666666666666666666666666666666666666666658"]});var c;try{c=r(154)}catch(e){c=void 0}i("secp256k1",{type:"short",prime:"k256",p:"ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff fffffffe fffffc2f",a:"0",b:"7",n:"ffffffff ffffffff ffffffff fffffffe baaedce6 af48a03b bfd25e8c d0364141",h:"1",hash:s.sha256,beta:"7ae96a2b657c07106e64479eac3434e99cf0497512f58995c1396c28719501ee",lambda:"5363ad4cc05c30e0a5261c028812645a122e22ea20816678df02967c1b23bd72",basis:[{a:"3086d221a7d46bcde86c90e49284eb15",b:"-e4437ed6010e88286f547fa90abfe4c3"},{a:"114ca50f7a8e2f3f657c1108d9d44cfd8",b:"3086d221a7d46bcde86c90e49284eb15"}],gRed:!1,g:["79be667ef9dcbbac55a06295ce870b07029bfcdb2dce28d959f2815b16f81798","483ada7726a3c4655da4fbfc0e1108a8fd17b448a68554199c47d08ffb10d4b8",c]})},function(e,t,r){"use strict";function n(e){if(!(this instanceof n))return new n(e);"string"==typeof e&&(f(s.curves.hasOwnProperty(e),"Unknown curve "+e),e=s.curves[e]),e instanceof s.curves.PresetCurve&&(e={curve:e}),this.curve=e.curve.curve,this.n=this.curve.n,this.nh=this.n.ushrn(1),this.g=this.curve.g,this.g=e.curve.g,this.g.precompute(e.curve.n.bitLength()+1),this.hash=e.hash||e.curve.hash}var i=r(2),o=r(162),s=r(3),a=s.utils,f=a.assert,c=r(149),h=r(150);e.exports=n,n.prototype.keyPair=function(e){return new c(this,e)},n.prototype.keyFromPrivate=function(e,t){return c.fromPrivate(this,e,t)},n.prototype.keyFromPublic=function(e,t){return c.fromPublic(this,e,t)},n.prototype.genKeyPair=function(e){e||(e={});for(var t=new o({hash:this.hash,pers:e.pers,persEnc:e.persEnc||"utf8",entropy:e.entropy||s.rand(this.hash.hmacStrength),entropyEnc:e.entropy&&e.entropyEnc||"utf8",nonce:this.n.toArray()}),r=this.n.byteLength(),n=this.n.sub(new i(2));;){var a=new i(t.generate(r));if(!(a.cmp(n)>0))return a.iaddn(1),this.keyFromPrivate(a)}},n.prototype._truncateToN=function(e,t){var r=8*e.byteLength()-this.n.bitLength();return r>0&&(e=e.ushrn(r)),!t&&e.cmp(this.n)>=0?e.sub(this.n):e},n.prototype.sign=function(e,t,r,n){"object"==typeof r&&(n=r,r=null),n||(n={}),t=this.keyFromPrivate(t,r),e=this._truncateToN(new i(e,16));for(var s=this.n.byteLength(),a=t.getPrivate().toArray("be",s),f=e.toArray("be",s),c=new o({hash:this.hash,entropy:a,nonce:f,pers:n.pers,persEnc:n.persEnc||"utf8"}),u=this.n.sub(new i(1)),d=0;!0;d++){var p=n.k?n.k(d):new i(c.generate(this.n.byteLength()));if(p=this._truncateToN(p,!0),!(p.cmpn(1)<=0||p.cmp(u)>=0)){var l=this.g.mul(p);if(!l.isInfinity()){var b=l.getX(),y=b.umod(this.n);if(0!==y.cmpn(0)){var m=p.invm(this.n).mul(y.mul(t.getPrivate()).iadd(e));if(m=m.umod(this.n),0!==m.cmpn(0)){var g=(l.getY().isOdd()?1:0)|(0!==b.cmp(y)?2:0);return n.canonical&&m.cmp(this.nh)>0&&(m=this.n.sub(m),g^=1),new h({r:y,s:m,recoveryParam:g})}}}}}},n.prototype.verify=function(e,t,r,n){e=this._truncateToN(new i(e,16)),r=this.keyFromPublic(r,n),t=new h(t,"hex");var o=t.r,s=t.s;if(o.cmpn(1)<0||o.cmp(this.n)>=0)return!1;if(s.cmpn(1)<0||s.cmp(this.n)>=0)return!1;var a=s.invm(this.n),f=a.mul(e).umod(this.n),c=a.mul(o).umod(this.n);if(!this.curve._maxwellTrick){var u=this.g.mulAdd(f,r.getPublic(),c);return!u.isInfinity()&&0===u.getX().umod(this.n).cmp(o)}var u=this.g.jmulAdd(f,r.getPublic(),c);return!u.isInfinity()&&u.eqXToP(o)},n.prototype.recoverPubKey=function(e,t,r,n){f((3&r)===r,"The recovery param is more than two bits"),t=new h(t,n);var o=this.n,s=new i(e),a=t.r,c=t.s,u=1&r,d=r>>1;if(a.cmp(this.curve.p.umod(this.curve.n))>=0&&d)throw new Error("Unable to find sencond key candinate");a=d?this.curve.pointFromX(a.add(this.curve.n),u):this.curve.pointFromX(a,u);var p=t.r.invm(o),l=o.sub(s).mul(p).umod(o),b=c.mul(p).umod(o);return this.g.mulAdd(l,a,b)},n.prototype.getKeyRecoveryParam=function(e,t,r,n){if(t=new h(t,n),null!==t.recoveryParam)return t.recoveryParam;for(var i=0;i<4;i++){var o;try{o=this.recoverPubKey(e,t,i)}catch(e){continue}if(o.eq(r))return i}throw new Error("Unable to find valid recovery factor")}},function(e,t,r){"use strict";function n(e,t){this.ec=e,this.priv=null,this.pub=null,t.priv&&this._importPrivate(t.priv,t.privEnc),t.pub&&this._importPublic(t.pub,t.pubEnc)}var i=r(2),o=r(3),s=o.utils,a=s.assert;e.exports=n,n.fromPublic=function(e,t,r){return t instanceof n?t:new n(e,{pub:t,pubEnc:r})},n.fromPrivate=function(e,t,r){return t instanceof n?t:new n(e,{priv:t,privEnc:r})},n.prototype.validate=function(){var e=this.getPublic();return e.isInfinity()?{result:!1,reason:"Invalid public key"}:e.validate()?e.mul(this.ec.curve.n).isInfinity()?{result:!0,reason:null}:{result:!1,reason:"Public key * N != O"}:{result:!1,reason:"Public key is not a point"}},n.prototype.getPublic=function(e,t){return"string"==typeof e&&(t=e,e=null),this.pub||(this.pub=this.ec.g.mul(this.priv)),t?this.pub.encode(t,e):this.pub},n.prototype.getPrivate=function(e){return"hex"===e?this.priv.toString(16,2):this.priv},n.prototype._importPrivate=function(e,t){this.priv=new i(e,t||16),this.priv=this.priv.umod(this.ec.curve.n)},n.prototype._importPublic=function(e,t){if(e.x||e.y)return"mont"===this.ec.curve.type?a(e.x,"Need x coordinate"):"short"!==this.ec.curve.type&&"edwards"!==this.ec.curve.type||a(e.x&&e.y,"Need both x and y coordinate"),void(this.pub=this.ec.curve.point(e.x,e.y));this.pub=this.ec.curve.decodePoint(e,t)},n.prototype.derive=function(e){return e.mul(this.priv).getX()},n.prototype.sign=function(e,t,r){return this.ec.sign(e,this,t,r)},n.prototype.verify=function(e,t){return this.ec.verify(e,t,this)},n.prototype.inspect=function(){return""}},function(e,t,r){"use strict";function n(e,t){if(e instanceof n)return e;this._importDER(e,t)||(u(e.r&&e.s,"Signature without r or s"),this.r=new f(e.r,16),this.s=new f(e.s,16),void 0===e.recoveryParam?this.recoveryParam=null:this.recoveryParam=e.recoveryParam)}function i(){this.place=0}function o(e,t){var r=e[t.place++];if(!(128&r))return r;for(var n=15&r,i=0,o=0,s=t.place;o>>3);for(e.push(128|r);--r;)e.push(t>>>(r<<3)&255);e.push(t)}var f=r(2),c=r(3),h=c.utils,u=h.assert;e.exports=n,n.prototype._importDER=function(e,t){e=h.toArray(e,t);var r=new i;if(48!==e[r.place++])return!1;if(o(e,r)+r.place!==e.length)return!1;if(2!==e[r.place++])return!1;var n=o(e,r),s=e.slice(r.place,n+r.place);if(r.place+=n,2!==e[r.place++])return!1;var a=o(e,r);if(e.length!==a+r.place)return!1;var c=e.slice(r.place,a+r.place);return 0===s[0]&&128&s[1]&&(s=s.slice(1)),0===c[0]&&128&c[1]&&(c=c.slice(1)),this.r=new f(s),this.s=new f(c),this.recoveryParam=null,!0},n.prototype.toDER=function(e){var t=this.r.toArray(),r=this.s.toArray();for(128&t[0]&&(t=[0].concat(t)),128&r[0]&&(r=[0].concat(r)),t=s(t),r=s(r);!(r[0]||128&r[1]);)r=r.slice(1);var n=[2];a(n,t.length),n=n.concat(t),n.push(2),a(n,r.length);var i=n.concat(r),o=[48];return a(o,i.length),o=o.concat(i),h.encode(o,e)}},function(e,t,r){"use strict";function n(e){if(a("ed25519"===e,"only tested with ed25519 so far"),!(this instanceof n))return new n(e);var e=o.curves[e].curve;this.curve=e,this.g=e.g,this.g.precompute(e.n.bitLength()+1),this.pointClass=e.point().constructor,this.encodingLength=Math.ceil(e.n.bitLength()/8),this.hash=i.sha512}var i=r(7),o=r(3),s=o.utils,a=s.assert,f=s.parseBytes,c=r(152),h=r(153);e.exports=n,n.prototype.sign=function(e,t){e=f(e);var r=this.keyFromSecret(t),n=this.hashInt(r.messagePrefix(),e),i=this.g.mul(n),o=this.encodePoint(i),s=this.hashInt(o,r.pubBytes(),e).mul(r.priv()),a=n.add(s).umod(this.curve.n);return this.makeSignature({R:i,S:a,Rencoded:o})},n.prototype.verify=function(e,t,r){e=f(e),t=this.makeSignature(t);var n=this.keyFromPublic(r),i=this.hashInt(t.Rencoded(),n.pubBytes(),e),o=this.g.mul(t.S());return t.R().add(n.pub().mul(i)).eq(o)},n.prototype.hashInt=function(){for(var e=this.hash(),t=0;t=0;){var o;if(i.isOdd()){var s=i.andln(n-1);o=s>(n>>1)-1?(n>>1)-s:s,i.isubn(o)}else o=0;r.push(o);for(var a=0!==i.cmpn(0)&&0===i.andln(n-1)?t+1:1,f=1;f0||t.cmpn(-i)>0;){var o=e.andln(3)+n&3,s=t.andln(3)+i&3;3===o&&(o=-1),3===s&&(s=-1);var a;if(0==(1&o))a=0;else{var f=e.andln(7)+n&7;a=3!==f&&5!==f||2!==s?o:-o}r[0].push(a);var c;if(0==(1&s))c=0;else{var f=t.andln(7)+i&7;c=3!==f&&5!==f||2!==o?s:-s}r[1].push(c),2*n===a+1&&(n=1-n),2*i===c+1&&(i=1-i),e.iushrn(1),t.iushrn(1)}return r}function o(e,t,r){var n="_"+t;e.prototype[t]=function(){return void 0!==this[n]?this[n]:this[n]=r.call(this)}}function s(e){return"string"==typeof e?f.toArray(e,"hex"):e}function a(e){return new c(e,"hex","le")}var 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if(2==e)t=1;else if(32==e)t=5;else{if(4!=e)return this.toRadix(e);t=2}var r,n=(1<0)for(f>f)>0&&(i=!0,o=a(r));s>=0;)f>(f+=this.DB-t)):(r=this[s]>>(f-=t)&n,f<=0&&(f+=this.DB,--s)),r>0&&(i=!0),i&&(o+=a(r));return i?o:"0"}function b(){var e=n();return r.ZERO.subTo(this,e),e}function y(){return this.s<0?this.negate():this}function m(e){var t=this.s-e.s;if(0!=t)return t;var r=this.t;if(0!=(t=r-e.t))return this.s<0?-t:t;for(;--r>=0;)if(0!=(t=this[r]-e[r]))return t;return 0}function g(e){var t,r=1;return 0!=(t=e>>>16)&&(e=t,r+=16),0!=(t=e>>8)&&(e=t,r+=8),0!=(t=e>>4)&&(e=t,r+=4),0!=(t=e>>2)&&(e=t,r+=2),0!=(t=e>>1)&&(e=t,r+=1),r}function v(){return this.t<=0?0:this.DB*(this.t-1)+g(this[this.t-1]^this.s&this.DM)}function w(e,t){var r;for(r=this.t-1;r>=0;--r)t[r+e]=this[r];for(r=e-1;r>=0;--r)t[r]=0;t.t=this.t+e,t.s=this.s}function _(e,t){for(var r=e;r=0;--r)t[r+s+1]=this[r]>>i|a,a=(this[r]&o)<=0;--r)t[r]=0;t[s]=a,t.t=this.t+s+1,t.s=this.s,t.clamp()}function k(e,t){t.s=this.s;var r=Math.floor(e/this.DB);if(r>=this.t)return void(t.t=0);var n=e%this.DB,i=this.DB-n,o=(1<>n;for(var s=r+1;s>n;n>0&&(t[this.t-r-1]|=(this.s&o)<>=this.DB;if(e.t>=this.DB;n+=this.s}else{for(n+=this.s;r>=this.DB;n-=e.s}t.s=n<0?-1:0,n<-1?t[r++]=this.DV+n:n>0&&(t[r++]=n),t.t=r,t.clamp()}function E(e,t){var n=this.abs(),i=e.abs(),o=n.t;for(t.t=o+i.t;--o>=0;)t[o]=0;for(o=0;o=0;)e[r]=0;for(r=0;r=t.DV&&(e[r+t.t]-=t.DV,e[r+t.t+1]=1)}e.t>0&&(e[e.t-1]+=t.am(r,t[r],e,2*r,0,1)),e.s=0,e.clamp()}function x(e,t,i){var o=e.abs();if(!(o.t<=0)){var s=this.abs();if(s.t0?(o.lShiftTo(h,a),s.lShiftTo(h,i)):(o.copyTo(a),s.copyTo(i));var u=a.t,d=a[u-1];if(0!=d){var p=d*(1<1?a[u-2]>>this.F2:0),l=this.FV/p,b=(1<=0&&(i[i.t++]=1,i.subTo(w,i)),r.ONE.dlShiftTo(u,w),w.subTo(a,a);a.t=0;){var _=i[--m]==d?this.DM:Math.floor(i[m]*l+(i[m-1]+y)*b);if((i[m]+=a.am(0,_,i,v,0,u))<_)for(a.dlShiftTo(v,w),i.subTo(w,i);i[m]<--_;)i.subTo(w,i)}null!=t&&(i.drShiftTo(u,t),f!=c&&r.ZERO.subTo(t,t)),i.t=u,i.clamp(),h>0&&i.rShiftTo(h,i),f<0&&r.ZERO.subTo(i,i)}}}function T(e){var t=n();return this.abs().divRemTo(e,null,t),this.s<0&&t.compareTo(r.ZERO)>0&&e.subTo(t,t),t}function I(e){this.m=e}function B(e){return e.s<0||e.compareTo(this.m)>=0?e.mod(this.m):e}function R(e){return e}function O(e){e.divRemTo(this.m,null,e)}function C(e,t,r){e.multiplyTo(t,r),this.reduce(r)}function j(e,t){e.squareTo(t),this.reduce(t)}function P(){if(this.t<1)return 0;var e=this[0];if(0==(1&e))return 0;var t=3&e;return t=t*(2-(15&e)*t)&15,t=t*(2-(255&e)*t)&255,t=t*(2-((65535&e)*t&65535))&65535,t=t*(2-e*t%this.DV)%this.DV,t>0?this.DV-t:-t}function D(e){this.m=e,this.mp=e.invDigit(),this.mpl=32767&this.mp,this.mph=this.mp>>15,this.um=(1<0&&this.m.subTo(t,t),t}function L(e){var t=n();return e.copyTo(t),this.reduce(t),t}function U(e){for(;e.t<=this.mt2;)e[e.t++]=0;for(var t=0;t>15)*this.mpl&this.um)<<15)&e.DM;for(r=t+this.m.t,e[r]+=this.m.am(0,n,e,t,0,this.m.t);e[r]>=e.DV;)e[r]-=e.DV,e[++r]++}e.clamp(),e.drShiftTo(this.m.t,e),e.compareTo(this.m)>=0&&e.subTo(this.m,e)}function z(e,t){e.squareTo(t),this.reduce(t)}function N(e,t,r){e.multiplyTo(t,r),this.reduce(r)}function H(){return 0==(this.t>0?1&this[0]:this.s)}function F(e,t){if(e>4294967295||e<1)return r.ONE;var i=n(),o=n(),s=t.convert(this),a=g(e)-1;for(s.copyTo(i);--a>=0;)if(t.sqrTo(i,o),(e&1<0)t.mulTo(o,s,i);else{var f=i;i=o,o=f}return t.revert(i)}function V(e,t){var r;return r=e<256||t.isEven()?new I(t):new D(t),this.exp(e,r)}function K(){var e=n();return this.copyTo(e),e}function W(){if(this.s<0){if(1==this.t)return this[0]-this.DV;if(0==this.t)return-1}else{if(1==this.t)return this[0];if(0==this.t)return 0}return(this[1]&(1<<32-this.DB)-1)<>24}function Y(){return 0==this.t?this.s:this[0]<<16>>16}function 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Array,o=7&e;i.length=1+(e>>3),t.nextBytes(i),o>0?i[0]&=(1<0)for(n>n)!=(this.s&this.DM)>>n&&(t[i++]=r|this.s<=0;)n<8?(r=(this[e]&(1<>(n+=this.DB-8)):(r=this[e]>>(n-=8)&255,n<=0&&(n+=this.DB,--e)),0!=(128&r)&&(r|=-256),0==i&&(128&this.s)!=(128&r)&&++i,(i>0||r!=this.s)&&(t[i++]=r);return t}function te(e){return 0==this.compareTo(e)}function re(e){return this.compareTo(e)<0?this:e}function ne(e){return this.compareTo(e)>0?this:e}function ie(e,t,r){var n,i,o=Math.min(e.t,this.t);for(n=0;n>=16,t+=16),0==(255&e)&&(e>>=8,t+=8),0==(15&e)&&(e>>=4,t+=4),0==(3&e)&&(e>>=2,t+=2),0==(1&e)&&++t,t}function me(){for(var e=0;e=this.t?0!=this.s:0!=(this[t]&1<>=this.DB;if(e.t>=this.DB;n+=this.s}else{for(n+=this.s;r>=this.DB;n+=e.s}t.s=n<0?-1:0,n>0?t[r++]=n:n<-1&&(t[r++]=this.DV+n),t.t=r,t.clamp()}function Ae(e){var t=n();return this.addTo(e,t),t}function xe(e){var t=n();return this.subTo(e,t),t}function Te(e){var t=n();return this.multiplyTo(e,t),t}function Ie(){var e=n();return this.squareTo(e),e}function 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Ke(e){for(e.drShiftTo(this.m.t-1,this.r2),e.t>this.m.t+1&&(e.t=this.m.t+1,e.clamp()),this.mu.multiplyUpperTo(this.r2,this.m.t+1,this.q3),this.m.multiplyLowerTo(this.q3,this.m.t+1,this.r2);e.compareTo(this.r2)<0;)e.dAddOffset(1,this.m.t+1);for(e.subTo(this.r2,e);e.compareTo(this.m)>=0;)e.subTo(this.m,e)}function We(e,t){e.squareTo(t),this.reduce(t)}function Xe(e,t,r){e.multiplyTo(t,r),this.reduce(r)}function Ye(e,t){var r,i,o=e.bitLength(),s=u(1);if(o<=0)return s;r=o<18?1:o<48?3:o<144?4:o<768?5:6,i=o<8?new I(t):t.isEven()?new He(t):new D(t);var a=new Array,f=3,c=r-1,h=(1<1){var d=n();for(i.sqrTo(a[1],d);f<=h;)a[f]=n(),i.mulTo(d,a[f-2],a[f]),f+=2}var 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r=0;r=t;r-=6)i=s(e,r,r+6),this.words[n]|=i<>>26-o&4194303,(o+=24)>=26&&(o-=26,n++);r+6!==t&&(i=s(e,t,r+6),this.words[n]|=i<>>26-o&4194303),this.strip()},o.prototype._parseBase=function(e,t,r){this.words=[0],this.length=1;for(var n=0,i=1;i<=67108863;i*=t)n++;n--,i=i/t|0;for(var o=e.length-r,s=o%n,f=Math.min(o,o-s)+r,c=0,h=r;h1&&0===this.words[this.length-1];)this.length--;return this._normSign()},o.prototype._normSign=function(){return 1===this.length&&0===this.words[0]&&(this.negative=0),this},o.prototype.inspect=function(){return(this.red?""};var 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o=0,s=0;s>26,this.words[s]=67108863&t;for(;0!==o&&s>26,this.words[s]=67108863&t;if(0===o&&s>>13,p=0|s[1],l=8191&p,b=p>>>13,y=0|s[2],g=8191&y,m=y>>>13,v=0|s[3],w=8191&v,_=v>>>13,S=0|s[4],k=8191&S,M=S>>>13,E=0|s[5],A=8191&E,x=E>>>13,T=0|s[6],I=8191&T,B=T>>>13,O=0|s[7],R=8191&O,C=O>>>13,j=0|s[8],P=8191&j,D=j>>>13,q=0|s[9],L=8191&q,U=q>>>13,N=0|a[0],z=8191&N,F=N>>>13,H=0|a[1],K=8191&H,W=H>>>13,V=0|a[2],X=8191&V,Y=V>>>13,J=0|a[3],Z=8191&J,$=J>>>13,G=0|a[4],Q=8191&G,ee=G>>>13,te=0|a[5],re=8191&te,ne=te>>>13,ie=0|a[6],oe=8191&ie,se=ie>>>13,ae=0|a[7],fe=8191&ae,ce=ae>>>13,he=0|a[8],ue=8191&he,de=he>>>13,pe=0|a[9],le=8191&pe,be=pe>>>13;r.negative=e.negative^t.negative,r.length=19,n=Math.imul(u,z),i=Math.imul(u,F),i=i+Math.imul(d,z)|0,o=Math.imul(d,F);var ye=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(ye>>>26)|0,ye&=67108863,n=Math.imul(l,z),i=Math.imul(l,F),i=i+Math.imul(b,z)|0,o=Math.imul(b,F),n=n+Math.imul(u,K)|0,i=i+Math.imul(u,W)|0,i=i+Math.imul(d,K)|0,o=o+Math.imul(d,W)|0;var ge=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(ge>>>26)|0,ge&=67108863,n=Math.imul(g,z),i=Math.imul(g,F),i=i+Math.imul(m,z)|0,o=Math.imul(m,F),n=n+Math.imul(l,K)|0,i=i+Math.imul(l,W)|0,i=i+Math.imul(b,K)|0,o=o+Math.imul(b,W)|0,n=n+Math.imul(u,X)|0,i=i+Math.imul(u,Y)|0,i=i+Math.imul(d,X)|0,o=o+Math.imul(d,Y)|0;var me=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(me>>>26)|0,me&=67108863,n=Math.imul(w,z),i=Math.imul(w,F),i=i+Math.imul(_,z)|0,o=Math.imul(_,F),n=n+Math.imul(g,K)|0,i=i+Math.imul(g,W)|0,i=i+Math.imul(m,K)|0,o=o+Math.imul(m,W)|0,n=n+Math.imul(l,X)|0,i=i+Math.imul(l,Y)|0,i=i+Math.imul(b,X)|0,o=o+Math.imul(b,Y)|0,n=n+Math.imul(u,Z)|0,i=i+Math.imul(u,$)|0,i=i+Math.imul(d,Z)|0,o=o+Math.imul(d,$)|0;var ve=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(ve>>>26)|0,ve&=67108863,n=Math.imul(k,z),i=Math.imul(k,F),i=i+Math.imul(M,z)|0,o=Math.imul(M,F),n=n+Math.imul(w,K)|0,i=i+Math.imul(w,W)|0,i=i+Math.imul(_,K)|0,o=o+Math.imul(_,W)|0,n=n+Math.imul(g,X)|0,i=i+Math.imul(g,Y)|0,i=i+Math.imul(m,X)|0,o=o+Math.imul(m,Y)|0,n=n+Math.imul(l,Z)|0,i=i+Math.imul(l,$)|0,i=i+Math.imul(b,Z)|0,o=o+Math.imul(b,$)|0,n=n+Math.imul(u,Q)|0,i=i+Math.imul(u,ee)|0,i=i+Math.imul(d,Q)|0,o=o+Math.imul(d,ee)|0;var we=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(we>>>26)|0,we&=67108863,n=Math.imul(A,z),i=Math.imul(A,F),i=i+Math.imul(x,z)|0,o=Math.imul(x,F),n=n+Math.imul(k,K)|0,i=i+Math.imul(k,W)|0,i=i+Math.imul(M,K)|0,o=o+Math.imul(M,W)|0,n=n+Math.imul(w,X)|0,i=i+Math.imul(w,Y)|0,i=i+Math.imul(_,X)|0,o=o+Math.imul(_,Y)|0,n=n+Math.imul(g,Z)|0,i=i+Math.imul(g,$)|0,i=i+Math.imul(m,Z)|0,o=o+Math.imul(m,$)|0,n=n+Math.imul(l,Q)|0,i=i+Math.imul(l,ee)|0,i=i+Math.imul(b,Q)|0,o=o+Math.imul(b,ee)|0,n=n+Math.imul(u,re)|0,i=i+Math.imul(u,ne)|0,i=i+Math.imul(d,re)|0,o=o+Math.imul(d,ne)|0;var _e=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(_e>>>26)|0,_e&=67108863,n=Math.imul(I,z),i=Math.imul(I,F),i=i+Math.imul(B,z)|0,o=Math.imul(B,F),n=n+Math.imul(A,K)|0,i=i+Math.imul(A,W)|0,i=i+Math.imul(x,K)|0,o=o+Math.imul(x,W)|0,n=n+Math.imul(k,X)|0,i=i+Math.imul(k,Y)|0,i=i+Math.imul(M,X)|0,o=o+Math.imul(M,Y)|0,n=n+Math.imul(w,Z)|0,i=i+Math.imul(w,$)|0,i=i+Math.imul(_,Z)|0,o=o+Math.imul(_,$)|0,n=n+Math.imul(g,Q)|0,i=i+Math.imul(g,ee)|0,i=i+Math.imul(m,Q)|0,o=o+Math.imul(m,ee)|0,n=n+Math.imul(l,re)|0,i=i+Math.imul(l,ne)|0,i=i+Math.imul(b,re)|0,o=o+Math.imul(b,ne)|0,n=n+Math.imul(u,oe)|0,i=i+Math.imul(u,se)|0,i=i+Math.imul(d,oe)|0,o=o+Math.imul(d,se)|0;var Se=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Se>>>26)|0,Se&=67108863,n=Math.imul(R,z),i=Math.imul(R,F),i=i+Math.imul(C,z)|0,o=Math.imul(C,F),n=n+Math.imul(I,K)|0,i=i+Math.imul(I,W)|0,i=i+Math.imul(B,K)|0,o=o+Math.imul(B,W)|0,n=n+Math.imul(A,X)|0,i=i+Math.imul(A,Y)|0,i=i+Math.imul(x,X)|0,o=o+Math.imul(x,Y)|0,n=n+Math.imul(k,Z)|0,i=i+Math.imul(k,$)|0,i=i+Math.imul(M,Z)|0,o=o+Math.imul(M,$)|0,n=n+Math.imul(w,Q)|0,i=i+Math.imul(w,ee)|0,i=i+Math.imul(_,Q)|0,o=o+Math.imul(_,ee)|0,n=n+Math.imul(g,re)|0,i=i+Math.imul(g,ne)|0,i=i+Math.imul(m,re)|0,o=o+Math.imul(m,ne)|0,n=n+Math.imul(l,oe)|0,i=i+Math.imul(l,se)|0,i=i+Math.imul(b,oe)|0,o=o+Math.imul(b,se)|0,n=n+Math.imul(u,fe)|0,i=i+Math.imul(u,ce)|0,i=i+Math.imul(d,fe)|0,o=o+Math.imul(d,ce)|0;var ke=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(ke>>>26)|0,ke&=67108863,n=Math.imul(P,z),i=Math.imul(P,F),i=i+Math.imul(D,z)|0,o=Math.imul(D,F),n=n+Math.imul(R,K)|0,i=i+Math.imul(R,W)|0,i=i+Math.imul(C,K)|0,o=o+Math.imul(C,W)|0,n=n+Math.imul(I,X)|0,i=i+Math.imul(I,Y)|0,i=i+Math.imul(B,X)|0,o=o+Math.imul(B,Y)|0,n=n+Math.imul(A,Z)|0,i=i+Math.imul(A,$)|0,i=i+Math.imul(x,Z)|0,o=o+Math.imul(x,$)|0,n=n+Math.imul(k,Q)|0,i=i+Math.imul(k,ee)|0,i=i+Math.imul(M,Q)|0,o=o+Math.imul(M,ee)|0,n=n+Math.imul(w,re)|0,i=i+Math.imul(w,ne)|0,i=i+Math.imul(_,re)|0,o=o+Math.imul(_,ne)|0,n=n+Math.imul(g,oe)|0,i=i+Math.imul(g,se)|0,i=i+Math.imul(m,oe)|0,o=o+Math.imul(m,se)|0,n=n+Math.imul(l,fe)|0,i=i+Math.imul(l,ce)|0,i=i+Math.imul(b,fe)|0,o=o+Math.imul(b,ce)|0,n=n+Math.imul(u,ue)|0,i=i+Math.imul(u,de)|0,i=i+Math.imul(d,ue)|0,o=o+Math.imul(d,de)|0;var Me=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Me>>>26)|0,Me&=67108863,n=Math.imul(L,z),i=Math.imul(L,F),i=i+Math.imul(U,z)|0,o=Math.imul(U,F),n=n+Math.imul(P,K)|0,i=i+Math.imul(P,W)|0,i=i+Math.imul(D,K)|0,o=o+Math.imul(D,W)|0,n=n+Math.imul(R,X)|0,i=i+Math.imul(R,Y)|0,i=i+Math.imul(C,X)|0,o=o+Math.imul(C,Y)|0,n=n+Math.imul(I,Z)|0,i=i+Math.imul(I,$)|0,i=i+Math.imul(B,Z)|0,o=o+Math.imul(B,$)|0,n=n+Math.imul(A,Q)|0,i=i+Math.imul(A,ee)|0,i=i+Math.imul(x,Q)|0,o=o+Math.imul(x,ee)|0,n=n+Math.imul(k,re)|0,i=i+Math.imul(k,ne)|0,i=i+Math.imul(M,re)|0,o=o+Math.imul(M,ne)|0,n=n+Math.imul(w,oe)|0,i=i+Math.imul(w,se)|0,i=i+Math.imul(_,oe)|0,o=o+Math.imul(_,se)|0,n=n+Math.imul(g,fe)|0,i=i+Math.imul(g,ce)|0,i=i+Math.imul(m,fe)|0,o=o+Math.imul(m,ce)|0,n=n+Math.imul(l,ue)|0,i=i+Math.imul(l,de)|0,i=i+Math.imul(b,ue)|0,o=o+Math.imul(b,de)|0,n=n+Math.imul(u,le)|0,i=i+Math.imul(u,be)|0,i=i+Math.imul(d,le)|0,o=o+Math.imul(d,be)|0;var Ee=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Ee>>>26)|0,Ee&=67108863,n=Math.imul(L,K),i=Math.imul(L,W),i=i+Math.imul(U,K)|0,o=Math.imul(U,W),n=n+Math.imul(P,X)|0,i=i+Math.imul(P,Y)|0,i=i+Math.imul(D,X)|0,o=o+Math.imul(D,Y)|0,n=n+Math.imul(R,Z)|0,i=i+Math.imul(R,$)|0,i=i+Math.imul(C,Z)|0,o=o+Math.imul(C,$)|0,n=n+Math.imul(I,Q)|0,i=i+Math.imul(I,ee)|0,i=i+Math.imul(B,Q)|0,o=o+Math.imul(B,ee)|0,n=n+Math.imul(A,re)|0,i=i+Math.imul(A,ne)|0,i=i+Math.imul(x,re)|0,o=o+Math.imul(x,ne)|0,n=n+Math.imul(k,oe)|0,i=i+Math.imul(k,se)|0,i=i+Math.imul(M,oe)|0,o=o+Math.imul(M,se)|0,n=n+Math.imul(w,fe)|0,i=i+Math.imul(w,ce)|0,i=i+Math.imul(_,fe)|0,o=o+Math.imul(_,ce)|0,n=n+Math.imul(g,ue)|0,i=i+Math.imul(g,de)|0,i=i+Math.imul(m,ue)|0,o=o+Math.imul(m,de)|0,n=n+Math.imul(l,le)|0,i=i+Math.imul(l,be)|0,i=i+Math.imul(b,le)|0,o=o+Math.imul(b,be)|0;var Ae=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Ae>>>26)|0,Ae&=67108863,n=Math.imul(L,X),i=Math.imul(L,Y),i=i+Math.imul(U,X)|0,o=Math.imul(U,Y),n=n+Math.imul(P,Z)|0,i=i+Math.imul(P,$)|0,i=i+Math.imul(D,Z)|0,o=o+Math.imul(D,$)|0,n=n+Math.imul(R,Q)|0,i=i+Math.imul(R,ee)|0,i=i+Math.imul(C,Q)|0,o=o+Math.imul(C,ee)|0,n=n+Math.imul(I,re)|0,i=i+Math.imul(I,ne)|0,i=i+Math.imul(B,re)|0,o=o+Math.imul(B,ne)|0,n=n+Math.imul(A,oe)|0,i=i+Math.imul(A,se)|0,i=i+Math.imul(x,oe)|0,o=o+Math.imul(x,se)|0,n=n+Math.imul(k,fe)|0,i=i+Math.imul(k,ce)|0,i=i+Math.imul(M,fe)|0,o=o+Math.imul(M,ce)|0,n=n+Math.imul(w,ue)|0,i=i+Math.imul(w,de)|0,i=i+Math.imul(_,ue)|0,o=o+Math.imul(_,de)|0,n=n+Math.imul(g,le)|0,i=i+Math.imul(g,be)|0,i=i+Math.imul(m,le)|0,o=o+Math.imul(m,be)|0;var xe=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(xe>>>26)|0,xe&=67108863,n=Math.imul(L,Z),i=Math.imul(L,$),i=i+Math.imul(U,Z)|0,o=Math.imul(U,$),n=n+Math.imul(P,Q)|0,i=i+Math.imul(P,ee)|0,i=i+Math.imul(D,Q)|0,o=o+Math.imul(D,ee)|0,n=n+Math.imul(R,re)|0,i=i+Math.imul(R,ne)|0,i=i+Math.imul(C,re)|0,o=o+Math.imul(C,ne)|0,n=n+Math.imul(I,oe)|0,i=i+Math.imul(I,se)|0,i=i+Math.imul(B,oe)|0,o=o+Math.imul(B,se)|0,n=n+Math.imul(A,fe)|0,i=i+Math.imul(A,ce)|0,i=i+Math.imul(x,fe)|0,o=o+Math.imul(x,ce)|0,n=n+Math.imul(k,ue)|0,i=i+Math.imul(k,de)|0,i=i+Math.imul(M,ue)|0,o=o+Math.imul(M,de)|0,n=n+Math.imul(w,le)|0,i=i+Math.imul(w,be)|0,i=i+Math.imul(_,le)|0,o=o+Math.imul(_,be)|0;var Te=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Te>>>26)|0,Te&=67108863,n=Math.imul(L,Q),i=Math.imul(L,ee),i=i+Math.imul(U,Q)|0,o=Math.imul(U,ee),n=n+Math.imul(P,re)|0,i=i+Math.imul(P,ne)|0,i=i+Math.imul(D,re)|0,o=o+Math.imul(D,ne)|0,n=n+Math.imul(R,oe)|0,i=i+Math.imul(R,se)|0,i=i+Math.imul(C,oe)|0,o=o+Math.imul(C,se)|0,n=n+Math.imul(I,fe)|0,i=i+Math.imul(I,ce)|0,i=i+Math.imul(B,fe)|0,o=o+Math.imul(B,ce)|0,n=n+Math.imul(A,ue)|0,i=i+Math.imul(A,de)|0,i=i+Math.imul(x,ue)|0,o=o+Math.imul(x,de)|0,n=n+Math.imul(k,le)|0,i=i+Math.imul(k,be)|0,i=i+Math.imul(M,le)|0,o=o+Math.imul(M,be)|0;var Ie=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Ie>>>26)|0,Ie&=67108863,n=Math.imul(L,re),i=Math.imul(L,ne),i=i+Math.imul(U,re)|0,o=Math.imul(U,ne),n=n+Math.imul(P,oe)|0,i=i+Math.imul(P,se)|0,i=i+Math.imul(D,oe)|0,o=o+Math.imul(D,se)|0,n=n+Math.imul(R,fe)|0,i=i+Math.imul(R,ce)|0,i=i+Math.imul(C,fe)|0,o=o+Math.imul(C,ce)|0,n=n+Math.imul(I,ue)|0,i=i+Math.imul(I,de)|0,i=i+Math.imul(B,ue)|0,o=o+Math.imul(B,de)|0,n=n+Math.imul(A,le)|0,i=i+Math.imul(A,be)|0,i=i+Math.imul(x,le)|0,o=o+Math.imul(x,be)|0;var Be=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Be>>>26)|0,Be&=67108863,n=Math.imul(L,oe),i=Math.imul(L,se),i=i+Math.imul(U,oe)|0,o=Math.imul(U,se),n=n+Math.imul(P,fe)|0,i=i+Math.imul(P,ce)|0,i=i+Math.imul(D,fe)|0,o=o+Math.imul(D,ce)|0,n=n+Math.imul(R,ue)|0,i=i+Math.imul(R,de)|0,i=i+Math.imul(C,ue)|0,o=o+Math.imul(C,de)|0,n=n+Math.imul(I,le)|0,i=i+Math.imul(I,be)|0,i=i+Math.imul(B,le)|0,o=o+Math.imul(B,be)|0;var Oe=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Oe>>>26)|0,Oe&=67108863,n=Math.imul(L,fe),i=Math.imul(L,ce),i=i+Math.imul(U,fe)|0,o=Math.imul(U,ce),n=n+Math.imul(P,ue)|0,i=i+Math.imul(P,de)|0,i=i+Math.imul(D,ue)|0,o=o+Math.imul(D,de)|0,n=n+Math.imul(R,le)|0,i=i+Math.imul(R,be)|0,i=i+Math.imul(C,le)|0,o=o+Math.imul(C,be)|0;var Re=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Re>>>26)|0,Re&=67108863,n=Math.imul(L,ue),i=Math.imul(L,de),i=i+Math.imul(U,ue)|0,o=Math.imul(U,de),n=n+Math.imul(P,le)|0,i=i+Math.imul(P,be)|0,i=i+Math.imul(D,le)|0,o=o+Math.imul(D,be)|0;var Ce=(c+n|0)+((8191&i)<<13)|0;c=(o+(i>>>13)|0)+(Ce>>>26)|0,Ce&=67108863,n=Math.imul(L,le),i=Math.imul(L,be),i=i+Math.imul(U,le)|0,o=Math.imul(U,be);var je=(c+n|0)+((8191&i)<<13)|0;return 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browser")},0)},onOpen:function(e){setTimeout(function(){e("unsupported browser")},0)}}}();e.exports&&(e.exports=t)}),qt={extractOrigin:function(e){/^https?:\/\//.test(e)||(e=window.location.href);var t=/^(https?:\/\/[-_a-zA-Z.0-9:]+)/.exec(e);return t?t[1]:e}};ie.prototype.calculatePosition=function(e){var t=e.width||500,r=e.height||600,n=ct.getWindow(),i=void 0!==n.screenX?n.screenX:n.screenLeft,o=void 0!==n.screenY?n.screenY:n.screenTop,s=void 0!==n.outerWidth?n.outerWidth:n.document.body.clientWidth,a=void 0!==n.outerHeight?n.outerHeight:n.document.body.clientHeight;return{width:t,height:r,left:e.left||i+(s-t)/2,top:e.top||o+(a-r)/2}},ie.prototype.preload=function(e){var t=this,r=ct.getWindow(),n=this.calculatePosition(e.popupOptions||{}),i=ft.merge(n).with(e.popupOptions),o=e.url||"about:blank",s=De(i,{encode:!1,delimiter:","});return this._current_popup&&!this._current_popup.closed?this._current_popup:(this._current_popup=r.open(o,"auth0_signup_popup",s),this._current_popup.kill=function(){this.close(),t._current_popup=null},this._current_popup)},ie.prototype.load=function(e,t,r,n){var i=this,o=this.calculatePosition(r.popupOptions||{}),s=ft.merge(o).with(r.popupOptions),a=ft.merge({url:e,relay_url:t,window_features:De(s,{delimiter:",",encode:!1}),popup:this._current_popup}).with(r),f=Dt.open(a,function(e,t){if(!e||"SyntaxError"!==e.name)return i._current_popup=null,n(e,t)});return f.focus(),f},oe.prototype.buildPopupHandler=function(){var e=this.baseOptions.plugins.get("popup.getPopupHandler");return e?e.getPopupHandler():new ie},oe.prototype.preload=function(e){e=e||{};var t=this.buildPopupHandler();return t.preload(e),t},oe.prototype.getPopupHandler=function(e,t){return e.popupHandler?e.popupHandler:t?this.preload(e):this.buildPopupHandler()},oe.prototype.callback=function(e){var t=this,r=ct.getWindow(),n=(e=e||{}).popupOrigin||this.baseOptions.popupOrigin||ct.getOrigin();r.opener?Dt.onOpen(function(r,i,o){if(r!==n)return o({error:"origin_mismatch",error_description:"The popup's origin ("+r+") should match the `popupOrigin` parameter ("+n+")."});t.webAuth.parseHash(e||{},function(e,t){return o(e||t)})}):r.doPost=function(e){r.parent&&r.parent.postMessage(e,n)}},oe.prototype.authorize=function(e,t){var r,n,i={},o=this.baseOptions.plugins.get("popup.authorize"),s=ft.merge(this.baseOptions,["clientID","scope","domain","audience","tenant","responseType","redirectUri","_csrf","state","_intstate","nonce"]).with(ft.blacklist(e,["popupHandler"]));return st.check(s,{type:"object",message:"options parameter is not valid"},{responseType:{type:"string",message:"responseType option is required"}}),n=be(this.baseOptions.rootUrl,"relay.html"),e.owp?s.owp=!0:(i.origin=qt.extractOrigin(s.redirectUri),n=s.redirectUri),e.popupOptions&&(i.popupOptions=ft.pick(e.popupOptions,["width","height","top","left"])),o&&(s=o.processParams(s)),(s=this.transactionManager.process(s)).scope=s.scope||"openid profile email",delete s.domain,r=this.client.buildAuthorizeUrl(s),this.getPopupHandler(e).load(r,n,i,I(t,{keepOriginalCasing:!0}))},oe.prototype.loginWithCredentials=function(e,t){e.realm=e.realm||e.connection,e.popup=!0,e=ft.merge(this.baseOptions,["redirectUri","responseType","state","nonce"]).with(ft.blacklist(e,["popupHandler","connection"])),e=this.transactionManager.process(e),this.crossOriginAuthentication.login(e,t)},oe.prototype.passwordlessVerify=function(e,t){var r=this;return this.client.passwordless.verify(ft.blacklist(e,["popupHandler"]),function(n){if(n)return t(n);e.username=e.phoneNumber||e.email,e.password=e.verificationCode,delete e.email,delete e.phoneNumber,delete e.verificationCode,delete e.type,r.client.loginWithResourceOwner(e,t)})},oe.prototype.signupAndLogin=function(e,t){var r=this;return this.client.dbConnection.signup(e,function(n){if(n)return t(n);r.loginWithCredentials(e,t)})},se.create=function(e){return new se(e)},se.prototype.login=function(e,t){this.handler=new Q({auth0:this.auth0,url:this.authenticationUrl,eventListenerType:e?"message":"load",callback:this.getCallbackHandler(t,e),timeout:this.timeout,eventValidator:this.getEventValidator(),timeoutCallback:function(){t(null,"#error=timeout&error_description=Timeout+during+authentication+renew.")},usePostMessage:e||!1}),this.handler.init()},se.prototype.getEventValidator=function(){var e=this;return{isValid:function(t){switch(t.event.type){case"message":return t.event.origin===e.postMessageOrigin&&t.event.source===e.handler.iframe.contentWindow&&(!1===e.postMessageDataType||t.event.data.type&&t.event.data.type===e.postMessageDataType);case"load":if("about:"===t.sourceObject.contentWindow.location.protocol)return!1;default:return!0}}}},se.prototype.getCallbackHandler=function(e,t){return function(r){var n;n=t?"object"==typeof r.event.data&&r.event.data.hash?r.event.data.hash:r.event.data:r.sourceObject.contentWindow.location.hash,e(null,n)}},ae.prototype.login=function(e,t){var r,n;return r=be(this.baseOptions.rootUrl,"usernamepassword","login"),e.username=e.username||e.email,e=ft.blacklist(e,["email"]),n=ft.merge(this.baseOptions,["clientID","redirectUri","tenant","responseType","responseMode","scope","audience"]).with(e),n=this.transactionManager.process(n),n=ft.toSnakeCase(n,["auth0Client"]),this.request.post(r).send(n).end(I(t))},ae.prototype.callback=function(e){var t,r=ct.getDocument();(t=r.createElement("div")).innerHTML=e,r.body.appendChild(t).children[0].submit()},fe.prototype.login=function(e,t){if(ct.getWindow().location.host!==this.baseOptions.domain)throw new Error("This method is meant to be used only inside the Universal Login Page.");var r,n=ft.merge(this.baseOptions,["clientID","redirectUri","tenant","responseType","responseMode","scope","audience","_csrf","state","_intstate","nonce"]).with(e);return st.check(n,{type:"object",message:"options parameter is not valid"},{responseType:{type:"string",message:"responseType option is required"}}),(r=new ae(this.baseOptions)).login(n,function(e,n){return e?t(e):r.callback(n)})},fe.prototype.signupAndLogin=function(e,t){var r=this;return r.client.client.dbConnection.signup(e,function(n){return n?t(n):r.login(e,t)})},fe.prototype.getSSOData=function(e,t){var r,n="";return"function"==typeof e&&(t=e,e=!1),st.check(e,{type:"boolean",message:"withActiveDirectories parameter is not valid"}),st.check(t,{type:"function",message:"cb parameter is not valid"}),e&&(n="?"+De({ldaps:1,client_id:this.baseOptions.clientID})),r=be(this.baseOptions.rootUrl,"user","ssodata",n),this.request.get(r,{noHeaders:!0}).withCredentials().end(I(t))},ce.prototype.parseHash=function(e,t){var r,n;t||"function"!=typeof e?e=e||{}:(t=e,e={});var i=ct.getWindow(),o=void 0===e.hash?i.location.hash:e.hash;if(o=o.replace(/^#?\/?/,""),(r=Pe(o)).hasOwnProperty("error"))return n=ut.buildResponse(r.error,r.error_description),r.state&&(n.state=r.state),t(n);if(!r.hasOwnProperty("access_token")&&!r.hasOwnProperty("id_token")&&!r.hasOwnProperty("refresh_token"))return t(null,null);var s=(this.baseOptions.responseType||e.responseType||"").split(" ");return s.length>0&&-1!==s.indexOf("token")&&!r.hasOwnProperty("access_token")?t(ut.buildResponse("invalid_hash","response_type contains `token`, but the parsed hash does not contain an `access_token` property")):s.length>0&&-1!==s.indexOf("id_token")&&!r.hasOwnProperty("id_token")?t(ut.buildResponse("invalid_hash","response_type contains `id_token`, but the parsed hash does not contain an `id_token` property")):this.validateAuthenticationResponse(e,r,t)},ce.prototype.validateAuthenticationResponse=function(e,t,r){var n=this;e.__enableIdPInitiatedLogin=e.__enableIdPInitiatedLogin||e.__enableImpersonation;var i=t.state,o=this.transactionManager.getStoredTransaction(i),s=e.state||o&&o.state||null,a=s===i;if((i||s||!e.__enableIdPInitiatedLogin)&&!a)return r({error:"invalid_token",errorDescription:"`state` does not match."});var f=e.nonce||o&&o.nonce||null,c=e.state||o&&o.appState||null,h=function(e,i){if(e)return r(e);var s;return o&&o.lastUsedConnection&&(i&&(s=i.sub),n.ssodataStorage.set(o.lastUsedConnection,s)),r(null,function(e,t,r){return{accessToken:e.access_token||null,idToken:e.id_token||null,idTokenPayload:r||null,appState:t||null,refreshToken:e.refresh_token||null,state:e.state||null,expiresIn:e.expires_in?parseInt(e.expires_in,10):null,tokenType:e.token_type||null,scope:e.scope||null}}(t,c,i))};return t.id_token?this.validateToken(t.id_token,f,function(e,r){if(!e)return t.access_token&&r.at_hash?(new Z).validateAccessToken(t.access_token,"RS256",r.at_hash,function(e){return e?h(ut.invalidToken(e.message)):h(null,r)}):h(null,r);if("invalid_token"!==e.error||"Nonce does not match."===e.errorDescription)return h(e);var i=(new Z).decode(t.id_token);return"HS256"!==i.header.alg?h(e):(i.payload.nonce||null)!==f?h({error:"invalid_token",errorDescription:"Nonce does not match."}):t.access_token?n.client.userInfo(t.access_token,function(e,t){return e?h(e):h(null,t)}):h({error:"invalid_token",description:"The id_token cannot be validated because it was signed with the HS256 algorithm and public clients (like a browser) can’t store secrets. Please read the associated doc for possible ways to fix this. Read more: https://auth0.com/docs/errors/libraries/auth0-js/invalid-token#parsing-an-hs256-signed-id-token-without-an-access-token"})}):h(null,null)},ce.prototype.validateToken=function(e,t,r){new Z({issuer:this.baseOptions.token_issuer,jwksURI:this.baseOptions.jwksURI,audience:this.baseOptions.clientID,leeway:this.baseOptions.leeway||0,__disableExpirationCheck:this.baseOptions.__disableExpirationCheck}).verify(e,t,function(e,t){if(e)return r(ut.invalidToken(e.message));r(null,t)})},ce.prototype.renewAuth=function(e,t){var r=!!e.usePostMessage,n=e.postMessageDataType||!1,i=e.postMessageOrigin||ct.getWindow().origin,o=e.timeout,s=this,a=ft.merge(this.baseOptions,["clientID","redirectUri","responseType","scope","audience","_csrf","state","_intstate","nonce"]).with(e);a.responseType=a.responseType||"token",a.responseMode=a.responseMode||"fragment",a=this.transactionManager.process(a),st.check(a,{type:"object",message:"options parameter is not valid"}),st.check(t,{type:"function",message:"cb parameter is not valid"}),a.prompt="none",a=ft.blacklist(a,["usePostMessage","tenant","postMessageDataType","postMessageOrigin"]),se.create({authenticationUrl:this.client.buildAuthorizeUrl(a),postMessageDataType:n,postMessageOrigin:i,timeout:o}).login(r,function(e,r){if("object"==typeof r)return t(e,r);s.parseHash({hash:r},t)})},ce.prototype.checkSession=function(e,t){var r=ft.merge(this.baseOptions,["clientID","responseType","redirectUri","scope","audience","_csrf","state","_intstate","nonce"]).with(e);return"code"===r.responseType?t({error:"error",error_description:"responseType can't be `code`"}):(e.nonce||(r=this.transactionManager.process(r)),r.redirectUri?(st.check(r,{type:"object",message:"options parameter is not valid"}),st.check(t,{type:"function",message:"cb parameter is not valid"}),r=ft.blacklist(r,["usePostMessage","tenant","postMessageDataType"]),void this.webMessageHandler.run(r,I(t,{forceLegacyError:!0,ignoreCasing:!0}))):t({error:"error",error_description:"redirectUri can't be empty"}))},ce.prototype.changePassword=function(e,t){return this.client.dbConnection.changePassword(e,t)},ce.prototype.passwordlessStart=function(e,t){var r=ft.merge(this.baseOptions,["responseType","responseMode","redirectUri","scope","audience","_csrf","state","_intstate","nonce"]).with(e.authParams);return e.authParams=this.transactionManager.process(r),this.client.passwordless.start(e,t)},ce.prototype.signup=function(e,t){return this.client.dbConnection.signup(e,t)},ce.prototype.authorize=function(e){var t=ft.merge(this.baseOptions,["clientID","responseType","responseMode","redirectUri","scope","audience","_csrf","state","_intstate","nonce"]).with(e);st.check(t,{type:"object",message:"options parameter is not valid"},{responseType:{type:"string",message:"responseType option is required"}}),(t=this.transactionManager.process(t)).scope=t.scope||"openid profile email",ct.redirect(this.client.buildAuthorizeUrl(t))},ce.prototype.signupAndAuthorize=function(e,t){var r=this;return this.client.dbConnection.signup(ft.blacklist(e,["popupHandler"]),function(n){if(n)return t(n);e.realm=e.connection,e.username||(e.username=e.email),r.client.login(e,t)})},ce.prototype.login=function(e,t){var r=ft.merge(this.baseOptions,["clientID","responseType","redirectUri","scope","audience","_csrf","state","_intstate","nonce"]).with(e);r=this.transactionManager.process(r),ct.getWindow().location.host===this.baseOptions.domain?(r.connection=r.realm,delete r.realm,this._universalLogin.login(r,t)):this.crossOriginAuthentication.login(r,t)},ce.prototype.passwordlessLogin=function(e,t){var r=ft.merge(this.baseOptions,["clientID","responseType","redirectUri","scope","audience","_csrf","state","_intstate","nonce"]).with(e);if(r=this.transactionManager.process(r),ct.getWindow().location.host===this.baseOptions.domain)this.passwordlessVerify(r,t);else{var n=ft.extend({credentialType:"http://auth0.com/oauth/grant-type/passwordless/otp",realm:r.connection,username:r.email||r.phoneNumber,otp:r.verificationCode},ft.blacklist(r,["connection","email","phoneNumber","verificationCode"]));this.crossOriginAuthentication.login(n,t)}},ce.prototype.crossOriginAuthenticationCallback=function(){this.crossOriginVerification()},ce.prototype.crossOriginVerification=function(){this.crossOriginAuthentication.callback()},ce.prototype.logout=function(e){ct.redirect(this.client.buildLogoutUrl(e))},ce.prototype.passwordlessVerify=function(e,t){var r=this,n=ft.merge(this.baseOptions,["clientID","responseType","responseMode","redirectUri","scope","audience","_csrf","state","_intstate","nonce"]).with(e);return st.check(n,{type:"object",message:"options parameter is not valid"},{responseType:{type:"string",message:"responseType option is required"}}),n=this.transactionManager.process(n),this.client.passwordless.verify(n,function(e){return e?t(e):ct.redirect(r.client.passwordless.buildVerifyUrl(n))})},he.prototype.buildVerifyUrl=function(e){var t,r;return st.check(e,{type:"object",message:"options parameter is not valid"},{connection:{type:"string",message:"connection option is required"},verificationCode:{type:"string",message:"verificationCode option is required"},phoneNumber:{optional:!1,type:"string",message:"phoneNumber option is required",condition:function(e){return!e.email}},email:{optional:!1,type:"string",message:"email option is required",condition:function(e){return!e.phoneNumber}}}),t=ft.merge(this.baseOptions,["clientID","responseType","responseMode","redirectUri","scope","audience","_csrf","state","_intstate","protocol","nonce"]).with(e),this.baseOptions._sendTelemetry&&(t.auth0Client=this.request.getTelemetryData()),t=ft.toSnakeCase(t,["auth0Client"]),r=De(t),be(this.baseOptions.rootUrl,"passwordless","verify_redirect","?"+r)},he.prototype.start=function(e,t){var r,n;return st.check(e,{type:"object",message:"options parameter is not valid"},{connection:{type:"string",message:"connection option is required"},send:{type:"string",message:"send option is required",values:["link","code"],value_message:"send is not valid ([link, code])"},phoneNumber:{optional:!0,type:"string",message:"phoneNumber option is required",condition:function(e){return"code"===e.send||!e.email}},email:{optional:!0,type:"string",message:"email option is required",condition:function(e){return"link"===e.send||!e.phoneNumber}},authParams:{optional:!0,type:"object",message:"authParams option is required"}}),st.check(t,{type:"function",message:"cb parameter is not valid"}),r=be(this.baseOptions.rootUrl,"passwordless","start"),(n=ft.merge(this.baseOptions,["clientID","responseType","redirectUri","scope"]).with(e)).scope&&(n.authParams=n.authParams||{},n.authParams.scope=n.scope),n.redirectUri&&(n.authParams=n.authParams||{},n.authParams.redirect_uri=n.redirectUri),n.responseType&&(n.authParams=n.authParams||{},n.authParams.response_type=n.responseType),delete n.redirectUri,delete n.responseType,delete n.scope,n=ft.toSnakeCase(n,["auth0Client","authParams"]),this.request.post(r).send(n).end(I(t))},he.prototype.verify=function(e,t){var r,n;return st.check(e,{type:"object",message:"options parameter is not valid"},{connection:{type:"string",message:"connection option is required"},verificationCode:{type:"string",message:"verificationCode option is required"},phoneNumber:{optional:!1,type:"string",message:"phoneNumber option is required",condition:function(e){return!e.email}},email:{optional:!1,type:"string",message:"email option is required",condition:function(e){return!e.phoneNumber}}}),st.check(t,{type:"function",message:"cb parameter is not valid"}),n=ft.pick(e,["connection","verificationCode","phoneNumber","email","auth0Client"]),n=ft.toSnakeCase(n,["auth0Client"]),r=be(this.baseOptions.rootUrl,"passwordless","verify"),this.request.post(r).send(n).end(I(t))},ue.prototype.signup=function(e,t){var r,n,i;return st.check(e,{type:"object",message:"options parameter is not valid"},{connection:{type:"string",message:"connection option is required"},email:{type:"string",message:"email option is required"},password:{type:"string",message:"password option is required"}}),st.check(t,{type:"function",message:"cb parameter is not valid"}),r=be(this.baseOptions.rootUrl,"dbconnections","signup"),i=(n=ft.merge(this.baseOptions,["clientID"]).with(e)).user_metadata||n.userMetadata,n=ft.blacklist(n,["scope","userMetadata","user_metadata"]),n=ft.toSnakeCase(n,["auth0Client"]),i&&(n.user_metadata=i),this.request.post(r).send(n).end(I(t))},ue.prototype.changePassword=function(e,t){var r,n;return st.check(e,{type:"object",message:"options parameter is not valid"},{connection:{type:"string",message:"connection option is required"},email:{type:"string",message:"email option is required"}}),st.check(t,{type:"function",message:"cb parameter is not valid"}),r=be(this.baseOptions.rootUrl,"dbconnections","change_password"),n=ft.merge(this.baseOptions,["clientID"]).with(e,["email","connection"]),n=ft.toSnakeCase(n,["auth0Client"]),this.request.post(r).send(n).end(I(t))},de.prototype.buildAuthorizeUrl=function(e){var t,r;return st.check(e,{type:"object",message:"options parameter is not valid"}),t=ft.merge(this.baseOptions,["clientID","responseType","responseMode","redirectUri","scope","audience"]).with(e),st.check(t,{type:"object",message:"options parameter is not valid"},{clientID:{type:"string",message:"clientID option is required"},redirectUri:{optional:!0,type:"string",message:"redirectUri option is required"},responseType:{type:"string",message:"responseType option is required"},nonce:{type:"string",message:"nonce option is required",condition:function(e){return-1===e.responseType.indexOf("code")&&-1!==e.responseType.indexOf("id_token")}},scope:{optional:!0,type:"string",message:"scope option is required"},audience:{optional:!0,type:"string",message:"audience option is required"}}),this.baseOptions._sendTelemetry&&(t.auth0Client=this.request.getTelemetryData()),t.connection_scope&&st.isArray(t.connection_scope)&&(t.connection_scope=t.connection_scope.join(",")),t=ft.blacklist(t,["username","popupOptions","domain","tenant","timeout","appState"]),t=ft.toSnakeCase(t,["auth0Client"]),t=lt.oauthAuthorizeParams(this.warn,t),r=De(t),be(this.baseOptions.rootUrl,"authorize","?"+r)},de.prototype.buildLogoutUrl=function(e){var t,r;return st.check(e,{optional:!0,type:"object",message:"options parameter is not valid"}),t=ft.merge(this.baseOptions,["clientID"]).with(e||{}),this.baseOptions._sendTelemetry&&(t.auth0Client=this.request.getTelemetryData()),t=ft.toSnakeCase(t,["auth0Client","returnTo"]),r=De(ft.blacklist(t,["federated"])),e&&void 0!==e.federated&&!1!==e.federated&&"false"!==e.federated&&(r+="&federated"),be(this.baseOptions.rootUrl,"v2","logout","?"+r)},de.prototype.loginWithDefaultDirectory=function(e,t){return st.check(e,{type:"object",message:"options parameter is not valid"},{username:{type:"string",message:"username option is required"},password:{type:"string",message:"password option is required"},scope:{optional:!0,type:"string",message:"scope option is required"},audience:{optional:!0,type:"string",message:"audience option is required"}}),e.grantType="password",this.oauthToken(e,t)},de.prototype.login=function(e,t){return st.check(e,{type:"object",message:"options parameter is not valid"},{username:{type:"string",message:"username option is required"},password:{type:"string",message:"password option is required"},realm:{type:"string",message:"realm option is required"},scope:{optional:!0,type:"string",message:"scope option is required"},audience:{optional:!0,type:"string",message:"audience option is required"}}),e.grantType="http://auth0.com/oauth/grant-type/password-realm",this.oauthToken(e,t)},de.prototype.oauthToken=function(e,t){var r,n;return st.check(e,{type:"object",message:"options parameter is not valid"}),st.check(t,{type:"function",message:"cb parameter is not valid"}),r=be(this.baseOptions.rootUrl,"oauth","token"),n=ft.merge(this.baseOptions,["clientID","scope","audience"]).with(e),st.check(n,{type:"object",message:"options parameter is not valid"},{clientID:{type:"string",message:"clientID option is required"},grantType:{type:"string",message:"grantType option is required"},scope:{optional:!0,type:"string",message:"scope option is required"},audience:{optional:!0,type:"string",message:"audience option is required"}}),n=ft.toSnakeCase(n,["auth0Client"]),n=lt.oauthTokenParams(this.warn,n),this.request.post(r).send(n).end(I(t))},de.prototype.loginWithResourceOwner=function(e,t){var r,n;return st.check(e,{type:"object",message:"options parameter is not valid"},{username:{type:"string",message:"username option is required"},password:{type:"string",message:"password option is required"},connection:{type:"string",message:"connection option is required"},scope:{optional:!0,type:"string",message:"scope option is required"}}),st.check(t,{type:"function",message:"cb parameter is not valid"}),r=be(this.baseOptions.rootUrl,"oauth","ro"),n=ft.merge(this.baseOptions,["clientID","scope"]).with(e,["username","password","scope","connection","device"]),(n=ft.toSnakeCase(n,["auth0Client"])).grant_type=n.grant_type||"password",this.request.post(r).send(n).end(I(t))},de.prototype.getSSOData=function(e,t){if(this.auth0||(this.auth0=new ce(this.baseOptions)),ct.getWindow().location.host===this.baseOptions.domain)return this.auth0._universalLogin.getSSOData(e,t);"function"==typeof e&&(t=e),st.check(t,{type:"function",message:"cb parameter is not valid"});var r=this.baseOptions.clientID,n=this.ssodataStorage.get()||{};this.auth0.checkSession({responseType:"token id_token",scope:"openid profile email",connection:n.lastUsedConnection,timeout:5e3},function(e,i){return e?"login_required"===e.error?t(null,{sso:!1}):("consent_required"===e.error&&(e.error_description="Consent required. When using `getSSOData`, the user has to be authenticated with the following scope: `openid profile email`."),t(e,{sso:!1})):n.lastUsedSub&&n.lastUsedSub!==i.idTokenPayload.sub?t(e,{sso:!1}):t(null,{lastUsedConnection:{name:n.lastUsedConnection},lastUsedUserID:i.idTokenPayload.sub,lastUsedUsername:i.idTokenPayload.email||i.idTokenPayload.name,lastUsedClientID:r,sessionClients:[r],sso:!0})})},de.prototype.userInfo=function(e,t){var r;return st.check(e,{type:"string",message:"accessToken parameter is not valid"}),st.check(t,{type:"function",message:"cb parameter is not valid"}),r=be(this.baseOptions.rootUrl,"userinfo"),this.request.get(r).set("Authorization","Bearer "+e).end(I(t,{ignoreCasing:!0}))},de.prototype.delegation=function(e,t){var r,n;return st.check(e,{type:"object",message:"options parameter is not valid"},{grant_type:{type:"string",message:"grant_type option is required"}}),st.check(t,{type:"function",message:"cb parameter is not 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Lt={Authentication:de,Management:pe,WebAuth:ce,version:it};t.default=Lt}.call(t,r(7),r(63).setImmediate)},function(e,t,r){var n=r(146),i=r(147);e.exports=function(e){return n.isAvailable(function(t){return t?e(null,new n):e(null,new i)})}},function(e,t,r){function n(e){return e.toString("base64").replace(/\+/g,"-").replace(/\//g,"_").replace(/=/g,"")}function i(e){return o.createHash("sha256").update(e).digest()}var o=r(92);t.generateProofKey=function(){var e=n(o.randomBytes(32));return{codeVerifier:e,codeChallenge:n(i(e))}},t.generateState=function(){return n(o.randomBytes(32))}},function(e,t){function r(){}r.clean=function(){r.current=function(){return!1},r.isClosing=!1},r.closing=function(){r.isClosing=!0},r.start=function(e){r.current(new Error("Only one instance of auth can happen at a time")),r.current=e},r.onRedirectUri=function(e){r.current(null,e)&&r.clean()},e.exports=r},function(e,t){function r(){var 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i=f(t,!1,r,n);return s(e,i.key,i.iv)}function o(e,t,r){if(e=e.toLowerCase(),d[e])return c.createCipheriv(e,t,r);if(u[e])return new h({key:t,iv:r,mode:e});throw new TypeError("invalid suite type")}function s(e,t,r){if(e=e.toLowerCase(),d[e])return c.createDecipheriv(e,t,r);if(u[e])return new h({key:t,iv:r,mode:e,decrypt:!0});throw new TypeError("invalid suite type")}function a(){return Object.keys(u).concat(c.getCiphers())}var f=r(21),c=r(23),h=r(84),u=r(85),d=r(18);t.createCipher=t.Cipher=n,t.createCipheriv=t.Cipheriv=o,t.createDecipher=t.Decipher=i,t.createDecipheriv=t.Decipheriv=s,t.listCiphers=t.getCiphers=a},function(e,t,r){(function(t){function n(e){i.call(this);var r,n=e.mode.toLowerCase(),o=a[n];r=e.decrypt?"decrypt":"encrypt";var s=e.key;"des-ede"!==n&&"des-ede-cbc"!==n||(s=t.concat([s,s.slice(0,8)]));var f=e.iv;this._des=o.create({key:s,iv:f,type:r})}var i=r(8),o=r(27),s=r(1),a={"des-ede3-cbc":o.CBC.instantiate(o.EDE),"des-ede3":o.EDE,"des-ede-cbc":o.CBC.instantiate(o.EDE),"des-ede":o.EDE,"des-cbc":o.CBC.instantiate(o.DES),"des-ecb":o.DES};a.des=a["des-cbc"],a.des3=a["des-ede3-cbc"],e.exports=n,s(n,i),n.prototype._update=function(e){return new t(this._des.update(e))},n.prototype._final=function(){return new t(this._des.final())}}).call(t,r(0).Buffer)},function(e,t){t["des-ecb"]={key:8,iv:0},t["des-cbc"]=t.des={key:8,iv:8},t["des-ede3-cbc"]=t.des3={key:24,iv:8},t["des-ede3"]={key:24,iv:0},t["des-ede-cbc"]={key:16,iv:8},t["des-ede"]={key:16,iv:0}},function(e,t,r){e.exports=r(47)},function(e,t,r){(function(t){function n(e){f.Writable.call(this);var t=d[e];if(!t)throw new Error("Unknown message digest");this._hashType=t.hash,this._hash=a(t.hash),this._tag=t.id,this._signType=t.sign}function i(e){f.Writable.call(this);var t=d[e];if(!t)throw new Error("Unknown message 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u(r,i,e,this._signType,this._tag)},e.exports={Sign:o,Verify:s,createSign:o,createVerify:s}}).call(t,r(0).Buffer)},function(e,t,r){(function(t){function n(e,r,n,s,a){var f=y(r);if(f.curve){if("ecdsa"!==s&&"ecdsa/rsa"!==s)throw new Error("wrong private key type");return i(e,f)}if("dsa"===f.type){if("dsa"!==s)throw new Error("wrong private key type");return o(e,f,n)}if("rsa"!==s&&"ecdsa/rsa"!==s)throw new Error("wrong private key type");e=t.concat([a,e]);for(var c=f.modulus.byteLength(),h=[0,1];e.length+h.length+10&&r.ishrn(n),r}function c(e,r){e=f(e,r),e=e.mod(r);var n=new t(e.toArray());if(n.length=t)throw new Error("invalid sig")}var a=r(2),f=r(3).ec,c=r(22),h=r(48);e.exports=n}).call(t,r(0).Buffer)},function(e,t,r){(function(t){function n(e){this.curveType=a[e],this.curveType||(this.curveType={name:e}),this.curve=new o.ec(this.curveType.name),this.keys=void 0}function i(e,r,n){Array.isArray(e)||(e=e.toArray());var i=new t(e);if(n&&i.length0;n--)t+=this._buffer(e,t),r+=this._flushBuffer(i,r);return t+=this._buffer(e,t),i},n.prototype.final=function(e){var t;e&&(t=this.update(e));var r;return r="encrypt"===this.type?this._finalEncrypt():this._finalDecrypt(),t?t.concat(r):r},n.prototype._pad=function(e,t){if(0===t)return!1;for(;t>>1];r=f.r28shl(r,s),n=f.r28shl(n,s),f.pc2(r,n,e.keys,i)}},i.prototype._update=function(e,t,r,n){var i=this._desState,o=f.readUInt32BE(e,t),s=f.readUInt32BE(e,t+4);f.ip(o,s,i.tmp,0),o=i.tmp[0],s=i.tmp[1],"encrypt"===this.type?this._encrypt(i,o,s,i.tmp,0):this._decrypt(i,o,s,i.tmp,0),o=i.tmp[0],s=i.tmp[1],f.writeUInt32BE(r,o,n),f.writeUInt32BE(r,s,n+4)},i.prototype._pad=function(e,t){for(var r=e.length-t,n=t;n>>0,o=p}f.rip(s,o,n,i)},i.prototype._decrypt=function(e,t,r,n,i){for(var o=r,s=t,a=e.keys.length-2;a>=0;a-=2){var c=e.keys[a],h=e.keys[a+1];f.expand(o,e.tmp,0),c^=e.tmp[0],h^=e.tmp[1];var u=f.substitute(c,h),d=f.permute(u),p=o;o=(s^d)>>>0,s=p}f.rip(o,s,n,i)}},function(e,t,r){"use strict";function n(e,t){o.equal(t.length,24,"Invalid key length");var r=t.slice(0,8),n=t.slice(8,16),i=t.slice(16,24);this.ciphers="encrypt"===e?[c.create({type:"encrypt",key:r}),c.create({type:"decrypt",key:n}),c.create({type:"encrypt",key:i})]:[c.create({type:"decrypt",key:i}),c.create({type:"encrypt",key:n}),c.create({type:"decrypt",key:r})]}function i(e){f.call(this,e);var t=new n(this.type,this.options.key);this._edeState=t}var o=r(5),s=r(1),a=r(27),f=a.Cipher,c=a.DES;s(i,f),e.exports=i,i.create=function(e){return new i(e)},i.prototype._update=function(e,t,r,n){var i=this._edeState;i.ciphers[0]._update(e,t,r,n),i.ciphers[1]._update(r,n,r,n),i.ciphers[2]._update(r,n,r,n)},i.prototype._pad=c.prototype._pad,i.prototype._unpad=c.prototype._unpad},function(e,t,r){"use strict";t.readUInt32BE=function(e,t){return(e[0+t]<<24|e[1+t]<<16|e[2+t]<<8|e[3+t])>>>0},t.writeUInt32BE=function(e,t,r){e[0+r]=t>>>24,e[1+r]=t>>>16&255,e[2+r]=t>>>8&255,e[3+r]=255&t},t.ip=function(e,t,r,n){for(var i=0,o=0,s=6;s>=0;s-=2){for(var a=0;a<=24;a+=8)i<<=1,i|=t>>>a+s&1;for(var a=0;a<=24;a+=8)i<<=1,i|=e>>>a+s&1}for(var s=6;s>=0;s-=2){for(var a=1;a<=25;a+=8)o<<=1,o|=t>>>a+s&1;for(var a=1;a<=25;a+=8)o<<=1,o|=e>>>a+s&1}r[n+0]=i>>>0,r[n+1]=o>>>0},t.rip=function(e,t,r,n){for(var i=0,o=0,s=0;s<4;s++)for(var a=24;a>=0;a-=8)i<<=1,i|=t>>>a+s&1,i<<=1,i|=e>>>a+s&1;for(var s=4;s<8;s++)for(var a=24;a>=0;a-=8)o<<=1,o|=t>>>a+s&1,o<<=1,o|=e>>>a+s&1;r[n+0]=i>>>0,r[n+1]=o>>>0},t.pc1=function(e,t,r,n){for(var i=0,o=0,s=7;s>=5;s--){for(var a=0;a<=24;a+=8)i<<=1,i|=t>>a+s&1;for(var a=0;a<=24;a+=8)i<<=1,i|=e>>a+s&1}for(var a=0;a<=24;a+=8)i<<=1,i|=t>>a+s&1;for(var s=1;s<=3;s++){for(var a=0;a<=24;a+=8)o<<=1,o|=t>>a+s&1;for(var a=0;a<=24;a+=8)o<<=1,o|=e>>a+s&1}for(var a=0;a<=24;a+=8)o<<=1,o|=e>>a+s&1;r[n+0]=i>>>0,r[n+1]=o>>>0},t.r28shl=function(e,t){return e<>>28-t};var n=[14,11,17,4,27,23,25,0,13,22,7,18,5,9,16,24,2,20,12,21,1,8,15,26,15,4,25,19,9,1,26,16,5,11,23,8,12,7,17,0,22,3,10,14,6,20,27,24];t.pc2=function(e,t,r,i){for(var o=0,s=0,a=n.length>>>1,f=0;f>>n[f]&1;for(var f=a;f>>n[f]&1;r[i+0]=o>>>0,r[i+1]=s>>>0},t.expand=function(e,t,r){var n=0,i=0;n=(1&e)<<5|e>>>27;for(var o=23;o>=15;o-=4)n<<=6,n|=e>>>o&63;for(var o=11;o>=3;o-=4)i|=e>>>o&63,i<<=6;i|=(31&e)<<1|e>>>31,t[r+0]=n>>>0,t[r+1]=i>>>0};var i=[14,0,4,15,13,7,1,4,2,14,15,2,11,13,8,1,3,10,10,6,6,12,12,11,5,9,9,5,0,3,7,8,4,15,1,12,14,8,8,2,13,4,6,9,2,1,11,7,15,5,12,11,9,3,7,14,3,10,10,0,5,6,0,13,15,3,1,13,8,4,14,7,6,15,11,2,3,8,4,14,9,12,7,0,2,1,13,10,12,6,0,9,5,11,10,5,0,13,14,8,7,10,11,1,10,3,4,15,13,4,1,2,5,11,8,6,12,7,6,12,9,0,3,5,2,14,15,9,10,13,0,7,9,0,14,9,6,3,3,4,15,6,5,10,1,2,13,8,12,5,7,14,11,12,4,11,2,15,8,1,13,1,6,10,4,13,9,0,8,6,15,9,3,8,0,7,11,4,1,15,2,14,12,3,5,11,10,5,14,2,7,12,7,13,13,8,14,11,3,5,0,6,6,15,9,0,10,3,1,4,2,7,8,2,5,12,11,1,12,10,4,14,15,9,10,3,6,15,9,0,0,6,12,10,11,1,7,13,13,8,15,9,1,4,3,5,14,11,5,12,2,7,8,2,4,14,2,14,12,11,4,2,1,12,7,4,10,7,11,13,6,1,8,5,5,0,3,15,15,10,13,3,0,9,14,8,9,6,4,11,2,8,1,12,11,7,10,1,13,14,7,2,8,13,15,6,9,15,12,0,5,9,6,10,3,4,0,5,14,3,12,10,1,15,10,4,15,2,9,7,2,12,6,9,8,5,0,6,13,1,3,13,4,14,14,0,7,11,5,3,11,8,9,4,14,3,15,2,5,12,2,9,8,5,12,15,3,10,7,11,0,14,4,1,10,7,1,6,13,0,11,8,6,13,4,13,11,0,2,11,14,7,15,4,0,9,8,1,13,10,3,14,12,3,9,5,7,12,5,2,10,15,6,8,1,6,1,6,4,11,11,13,13,8,12,1,3,4,7,10,14,7,10,9,15,5,6,0,8,15,0,14,5,2,9,3,2,12,13,1,2,15,8,13,4,8,6,10,15,3,11,7,1,4,10,12,9,5,3,6,14,11,5,0,0,14,12,9,7,2,7,2,11,1,4,14,1,7,9,4,12,10,14,8,2,13,0,15,6,12,10,9,13,0,15,3,3,5,5,6,8,11];t.substitute=function(e,t){for(var r=0,n=0;n<4;n++){var o=e>>>18-6*n&63,s=i[64*n+o];r<<=4,r|=s}for(var n=0;n<4;n++){var o=t>>>18-6*n&63,s=i[256+64*n+o];r<<=4,r|=s}return r>>>0};var o=[16,25,12,11,3,20,4,15,31,17,9,6,27,14,1,22,30,24,8,18,0,5,29,23,13,19,2,26,10,21,28,7];t.permute=function(e){for(var t=0,r=0;r>>o[r]&1;return t>>>0},t.padSplit=function(e,t,r){for(var n=e.toString(2);n.length0?this.redN=null:(this._maxwellTrick=!0,this.redN=this.n.toRed(this.red))}function i(e,t){this.curve=e,this.type=t,this.precomputed=null}var o=r(2),s=r(3),a=s.utils,f=a.getNAF,c=a.getJSF,h=a.assert;e.exports=n,n.prototype.point=function(){throw new Error("Not implemented")},n.prototype.validate=function(){throw new Error("Not implemented")},n.prototype._fixedNafMul=function(e,t){h(e.precomputed);var r=e._getDoubles(),n=f(t,1),i=(1<=s;t--)a=(a<<1)+n[t];o.push(a)}for(var c=this.jpoint(null,null,null),u=this.jpoint(null,null,null),d=i;d>0;d--){for(var s=0;s=0;a--){for(var t=0;a>=0&&0===o[a];a--)t++;if(a>=0&&t++,s=s.dblp(t),a<0)break;var c=o[a];h(0!==c),s="affine"===e.type?c>0?s.mixedAdd(i[c-1>>1]):s.mixedAdd(i[-c-1>>1].neg()):c>0?s.add(i[c-1>>1]):s.add(i[-c-1>>1].neg())}return"affine"===e.type?s.toP():s},n.prototype._wnafMulAdd=function(e,t,r,n,i){for(var o=this._wnafT1,s=this._wnafT2,a=this._wnafT3,h=0,u=0;u=1;u-=2){var l=u-1,b=u;if(1===o[l]&&1===o[b]){var y=[t[l],null,null,t[b]];0===t[l].y.cmp(t[b].y)?(y[1]=t[l].add(t[b]),y[2]=t[l].toJ().mixedAdd(t[b].neg())):0===t[l].y.cmp(t[b].y.redNeg())?(y[1]=t[l].toJ().mixedAdd(t[b]),y[2]=t[l].add(t[b].neg())):(y[1]=t[l].toJ().mixedAdd(t[b]),y[2]=t[l].toJ().mixedAdd(t[b].neg()));var g=[-3,-1,-5,-7,0,7,5,1,3],m=c(r[l],r[b]);h=Math.max(m[0].length,h),a[l]=new Array(h),a[b]=new Array(h);for(var v=0;v=0;u--){for(var M=0;u>=0;){for(var E=!0,v=0;v=0&&M++,S=S.dblp(M),u<0)break;for(var v=0;v0?d=s[v][A-1>>1]:A<0&&(d=s[v][-A-1>>1].neg()),S="affine"===d.type?S.mixedAdd(d):S.add(d))}}for(var u=0;u=Math.ceil((e.bitLength()+1)/t.step)},i.prototype._getDoubles=function(e,t){if(this.precomputed&&this.precomputed.doubles)return this.precomputed.doubles;for(var r=[this],n=this,i=0;i":""},i.prototype.isInfinity=function(){return 0===this.x.cmpn(0)&&0===this.y.cmp(this.z)},i.prototype._extDbl=function(){var e=this.x.redSqr(),t=this.y.redSqr(),r=this.z.redSqr();r=r.redIAdd(r);var n=this.curve._mulA(e),i=this.x.redAdd(this.y).redSqr().redISub(e).redISub(t),o=n.redAdd(t),s=o.redSub(r),a=n.redSub(t),f=i.redMul(s),c=o.redMul(a),h=i.redMul(a),u=s.redMul(o);return this.curve.point(f,c,u,h)},i.prototype._projDbl=function(){var e,t,r,n=this.x.redAdd(this.y).redSqr(),i=this.x.redSqr(),o=this.y.redSqr();if(this.curve.twisted){var s=this.curve._mulA(i),a=s.redAdd(o);if(this.zOne)e=n.redSub(i).redSub(o).redMul(a.redSub(this.curve.two)),t=a.redMul(s.redSub(o)),r=a.redSqr().redSub(a).redSub(a);else{var f=this.z.redSqr(),c=a.redSub(f).redISub(f);e=n.redSub(i).redISub(o).redMul(c),t=a.redMul(s.redSub(o)),r=a.redMul(c)}}else{var s=i.redAdd(o),f=this.curve._mulC(this.c.redMul(this.z)).redSqr(),c=s.redSub(f).redSub(f);e=this.curve._mulC(n.redISub(s)).redMul(c),t=this.curve._mulC(s).redMul(i.redISub(o)),r=s.redMul(c)}return this.curve.point(e,t,r)},i.prototype.dbl=function(){return this.isInfinity()?this:this.curve.extended?this._extDbl():this._projDbl()},i.prototype._extAdd=function(e){var t=this.y.redSub(this.x).redMul(e.y.redSub(e.x)),r=this.y.redAdd(this.x).redMul(e.y.redAdd(e.x)),n=this.t.redMul(this.curve.dd).redMul(e.t),i=this.z.redMul(e.z.redAdd(e.z)),o=r.redSub(t),s=i.redSub(n),a=i.redAdd(n),f=r.redAdd(t),c=o.redMul(s),h=a.redMul(f),u=o.redMul(f),d=s.redMul(a);return this.curve.point(c,h,d,u)},i.prototype._projAdd=function(e){var t,r,n=this.z.redMul(e.z),i=n.redSqr(),o=this.x.redMul(e.x),s=this.y.redMul(e.y),a=this.curve.d.redMul(o).redMul(s),f=i.redSub(a),c=i.redAdd(a),h=this.x.redAdd(this.y).redMul(e.x.redAdd(e.y)).redISub(o).redISub(s),u=n.redMul(f).redMul(h);return this.curve.twisted?(t=n.redMul(c).redMul(s.redSub(this.curve._mulA(o))),r=f.redMul(c)):(t=n.redMul(c).redMul(s.redSub(o)),r=this.curve._mulC(f).redMul(c)),this.curve.point(u,t,r)},i.prototype.add=function(e){return this.isInfinity()?e:e.isInfinity()?this:this.curve.extended?this._extAdd(e):this._projAdd(e)},i.prototype.mul=function(e){return this._hasDoubles(e)?this.curve._fixedNafMul(this,e):this.curve._wnafMul(this,e)},i.prototype.mulAdd=function(e,t,r){return this.curve._wnafMulAdd(1,[this,t],[e,r],2,!1)},i.prototype.jmulAdd=function(e,t,r){return this.curve._wnafMulAdd(1,[this,t],[e,r],2,!0)},i.prototype.normalize=function(){if(this.zOne)return this;var e=this.z.redInvm();return this.x=this.x.redMul(e),this.y=this.y.redMul(e),this.t&&(this.t=this.t.redMul(e)),this.z=this.curve.one,this.zOne=!0,this},i.prototype.neg=function(){return this.curve.point(this.x.redNeg(),this.y,this.z,this.t&&this.t.redNeg())},i.prototype.getX=function(){return this.normalize(),this.x.fromRed()},i.prototype.getY=function(){return this.normalize(),this.y.fromRed()},i.prototype.eq=function(e){return this===e||0===this.getX().cmp(e.getX())&&0===this.getY().cmp(e.getY())},i.prototype.eqXToP=function(e){var t=e.toRed(this.curve.red).redMul(this.z);if(0===this.x.cmp(t))return!0;for(var r=e.clone(),n=this.curve.redN.redMul(this.z);;){if(r.iadd(this.curve.n),r.cmp(this.curve.p)>=0)return!1;if(t.redIAdd(n),0===this.x.cmp(t))return!0}return!1},i.prototype.toP=i.prototype.normalize,i.prototype.mixedAdd=i.prototype.add},function(e,t,r){"use strict";function n(e){f.call(this,"mont",e),this.a=new s(e.a,16).toRed(this.red),this.b=new s(e.b,16).toRed(this.red),this.i4=new s(4).toRed(this.red).redInvm(),this.two=new s(2).toRed(this.red),this.a24=this.i4.redMul(this.a.redAdd(this.two))}function i(e,t,r){f.BasePoint.call(this,e,"projective"),null===t&&null===r?(this.x=this.curve.one,this.z=this.curve.zero):(this.x=new s(t,16),this.z=new s(r,16),this.x.red||(this.x=this.x.toRed(this.curve.red)),this.z.red||(this.z=this.z.toRed(this.curve.red)))}var o=r(20),s=r(2),a=r(1),f=o.base,c=r(3),h=c.utils;a(n,f),e.exports=n,n.prototype.validate=function(e){var t=e.normalize().x,r=t.redSqr(),n=r.redMul(t).redAdd(r.redMul(this.a)).redAdd(t);return 0===n.redSqrt().redSqr().cmp(n)},a(i,f.BasePoint),n.prototype.decodePoint=function(e,t){return this.point(h.toArray(e,t),1)},n.prototype.point=function(e,t){return new i(this,e,t)},n.prototype.pointFromJSON=function(e){return i.fromJSON(this,e)},i.prototype.precompute=function(){},i.prototype._encode=function(){return this.getX().toArray("be",this.curve.p.byteLength())},i.fromJSON=function(e,t){return new i(e,t[0],t[1]||e.one)},i.prototype.inspect=function(){return this.isInfinity()?"":""},i.prototype.isInfinity=function(){return 0===this.z.cmpn(0)},i.prototype.dbl=function(){var e=this.x.redAdd(this.z),t=e.redSqr(),r=this.x.redSub(this.z),n=r.redSqr(),i=t.redSub(n),o=t.redMul(n),s=i.redMul(n.redAdd(this.curve.a24.redMul(i)));return this.curve.point(o,s)},i.prototype.add=function(){throw new Error("Not supported on Montgomery curve")},i.prototype.diffAdd=function(e,t){var r=this.x.redAdd(this.z),n=this.x.redSub(this.z),i=e.x.redAdd(e.z),o=e.x.redSub(e.z),s=o.redMul(r),a=i.redMul(n),f=t.z.redMul(s.redAdd(a).redSqr()),c=t.x.redMul(s.redISub(a).redSqr());return this.curve.point(f,c)},i.prototype.mul=function(e){for(var t=e.clone(),r=this,n=this.curve.point(null,null),i=this,o=[];0!==t.cmpn(0);t.iushrn(1))o.push(t.andln(1));for(var s=o.length-1;s>=0;s--)0===o[s]?(r=r.diffAdd(n,i),n=n.dbl()):(n=r.diffAdd(n,i),r=r.dbl());return n},i.prototype.mulAdd=function(){throw new Error("Not supported on Montgomery curve")},i.prototype.jumlAdd=function(){throw new Error("Not supported on Montgomery curve")},i.prototype.eq=function(e){return 0===this.getX().cmp(e.getX())},i.prototype.normalize=function(){return this.x=this.x.redMul(this.z.redInvm()),this.z=this.curve.one,this},i.prototype.getX=function(){return this.normalize(),this.x.fromRed()}},function(e,t,r){"use strict";function n(e){h.call(this,"short",e),this.a=new f(e.a,16).toRed(this.red),this.b=new f(e.b,16).toRed(this.red),this.tinv=this.two.redInvm(),this.zeroA=0===this.a.fromRed().cmpn(0),this.threeA=0===this.a.fromRed().sub(this.p).cmpn(-3),this.endo=this._getEndomorphism(e),this._endoWnafT1=new Array(4),this._endoWnafT2=new Array(4)}function i(e,t,r,n){h.BasePoint.call(this,e,"affine"),null===t&&null===r?(this.x=null,this.y=null,this.inf=!0):(this.x=new f(t,16),this.y=new f(r,16),n&&(this.x.forceRed(this.curve.red),this.y.forceRed(this.curve.red)),this.x.red||(this.x=this.x.toRed(this.curve.red)),this.y.red||(this.y=this.y.toRed(this.curve.red)),this.inf=!1)}function o(e,t,r,n){h.BasePoint.call(this,e,"jacobian"),null===t&&null===r&&null===n?(this.x=this.curve.one,this.y=this.curve.one,this.z=new f(0)):(this.x=new f(t,16),this.y=new f(r,16),this.z=new f(n,16)),this.x.red||(this.x=this.x.toRed(this.curve.red)),this.y.red||(this.y=this.y.toRed(this.curve.red)),this.z.red||(this.z=this.z.toRed(this.curve.red)),this.zOne=this.z===this.curve.one}var s=r(20),a=r(3),f=r(2),c=r(1),h=s.base,u=a.utils.assert;c(n,h),e.exports=n,n.prototype._getEndomorphism=function(e){if(this.zeroA&&this.g&&this.n&&1===this.p.modn(3)){var t,r;if(e.beta)t=new f(e.beta,16).toRed(this.red);else{var n=this._getEndoRoots(this.p);t=n[0].cmp(n[1])<0?n[0]:n[1],t=t.toRed(this.red)}if(e.lambda)r=new f(e.lambda,16);else{var i=this._getEndoRoots(this.n);0===this.g.mul(i[0]).x.cmp(this.g.x.redMul(t))?r=i[0]:(r=i[1],u(0===this.g.mul(r).x.cmp(this.g.x.redMul(t))))}var o;return o=e.basis?e.basis.map(function(e){return{a:new f(e.a,16),b:new f(e.b,16)}}):this._getEndoBasis(r),{beta:t,lambda:r,basis:o}}},n.prototype._getEndoRoots=function(e){var t=e===this.p?this.red:f.mont(e),r=new f(2).toRed(t).redInvm(),n=r.redNeg(),i=new f(3).toRed(t).redNeg().redSqrt().redMul(r);return[n.redAdd(i).fromRed(),n.redSub(i).fromRed()]},n.prototype._getEndoBasis=function(e){for(var t,r,n,i,o,s,a,c,h,u=this.n.ushrn(Math.floor(this.n.bitLength()/2)),d=e,p=this.n.clone(),l=new f(1),b=new f(0),y=new f(0),g=new f(1),m=0;0!==d.cmpn(0);){var v=p.div(d);c=p.sub(v.mul(d)),h=y.sub(v.mul(l));var w=g.sub(v.mul(b));if(!n&&c.cmp(u)<0)t=a.neg(),r=l,n=c.neg(),i=h;else if(n&&2==++m)break;a=c,p=d,d=c,y=l,l=h,g=b,b=w}o=c.neg(),s=h;var _=n.sqr().add(i.sqr());return o.sqr().add(s.sqr()).cmp(_)>=0&&(o=t,s=r),n.negative&&(n=n.neg(),i=i.neg()),o.negative&&(o=o.neg(),s=s.neg()),[{a:n,b:i},{a:o,b:s}]},n.prototype._endoSplit=function(e){var t=this.endo.basis,r=t[0],n=t[1],i=n.b.mul(e).divRound(this.n),o=r.b.neg().mul(e).divRound(this.n),s=i.mul(r.a),a=o.mul(n.a),f=i.mul(r.b),c=o.mul(n.b);return{k1:e.sub(s).sub(a),k2:f.add(c).neg()}},n.prototype.pointFromX=function(e,t){e=new f(e,16),e.red||(e=e.toRed(this.red));var r=e.redSqr().redMul(e).redIAdd(e.redMul(this.a)).redIAdd(this.b),n=r.redSqrt();if(0!==n.redSqr().redSub(r).cmp(this.zero))throw new Error("invalid point");var i=n.fromRed().isOdd();return(t&&!i||!t&&i)&&(n=n.redNeg()),this.point(e,n)},n.prototype.validate=function(e){if(e.inf)return!0;var t=e.x,r=e.y,n=this.a.redMul(t),i=t.redSqr().redMul(t).redIAdd(n).redIAdd(this.b);return 0===r.redSqr().redISub(i).cmpn(0)},n.prototype._endoWnafMulAdd=function(e,t,r){for(var n=this._endoWnafT1,i=this._endoWnafT2,o=0;o":""},i.prototype.isInfinity=function(){return this.inf},i.prototype.add=function(e){if(this.inf)return e;if(e.inf)return this;if(this.eq(e))return this.dbl();if(this.neg().eq(e))return this.curve.point(null,null);if(0===this.x.cmp(e.x))return this.curve.point(null,null);var t=this.y.redSub(e.y);0!==t.cmpn(0)&&(t=t.redMul(this.x.redSub(e.x).redInvm()));var r=t.redSqr().redISub(this.x).redISub(e.x),n=t.redMul(this.x.redSub(r)).redISub(this.y);return this.curve.point(r,n)},i.prototype.dbl=function(){if(this.inf)return this;var e=this.y.redAdd(this.y);if(0===e.cmpn(0))return this.curve.point(null,null);var t=this.curve.a,r=this.x.redSqr(),n=e.redInvm(),i=r.redAdd(r).redIAdd(r).redIAdd(t).redMul(n),o=i.redSqr().redISub(this.x.redAdd(this.x)),s=i.redMul(this.x.redSub(o)).redISub(this.y);return this.curve.point(o,s)},i.prototype.getX=function(){return this.x.fromRed()},i.prototype.getY=function(){return this.y.fromRed()},i.prototype.mul=function(e){return e=new f(e,16),this._hasDoubles(e)?this.curve._fixedNafMul(this,e):this.curve.endo?this.curve._endoWnafMulAdd([this],[e]):this.curve._wnafMul(this,e)},i.prototype.mulAdd=function(e,t,r){var n=[this,t],i=[e,r];return this.curve.endo?this.curve._endoWnafMulAdd(n,i):this.curve._wnafMulAdd(1,n,i,2)},i.prototype.jmulAdd=function(e,t,r){var n=[this,t],i=[e,r];return this.curve.endo?this.curve._endoWnafMulAdd(n,i,!0):this.curve._wnafMulAdd(1,n,i,2,!0)},i.prototype.eq=function(e){return this===e||this.inf===e.inf&&(this.inf||0===this.x.cmp(e.x)&&0===this.y.cmp(e.y))},i.prototype.neg=function(e){if(this.inf)return this;var t=this.curve.point(this.x,this.y.redNeg());if(e&&this.precomputed){var r=this.precomputed,n=function(e){return e.neg()};t.precomputed={naf:r.naf&&{wnd:r.naf.wnd,points:r.naf.points.map(n)},doubles:r.doubles&&{step:r.doubles.step,points:r.doubles.points.map(n)}}}return t},i.prototype.toJ=function(){return this.inf?this.curve.jpoint(null,null,null):this.curve.jpoint(this.x,this.y,this.curve.one)},c(o,h.BasePoint),n.prototype.jpoint=function(e,t,r){return new o(this,e,t,r)},o.prototype.toP=function(){if(this.isInfinity())return this.curve.point(null,null);var e=this.z.redInvm(),t=e.redSqr(),r=this.x.redMul(t),n=this.y.redMul(t).redMul(e);return this.curve.point(r,n)},o.prototype.neg=function(){return this.curve.jpoint(this.x,this.y.redNeg(),this.z)},o.prototype.add=function(e){if(this.isInfinity())return e;if(e.isInfinity())return this;var t=e.z.redSqr(),r=this.z.redSqr(),n=this.x.redMul(t),i=e.x.redMul(r),o=this.y.redMul(t.redMul(e.z)),s=e.y.redMul(r.redMul(this.z)),a=n.redSub(i),f=o.redSub(s);if(0===a.cmpn(0))return 0!==f.cmpn(0)?this.curve.jpoint(null,null,null):this.dbl();var c=a.redSqr(),h=c.redMul(a),u=n.redMul(c),d=f.redSqr().redIAdd(h).redISub(u).redISub(u),p=f.redMul(u.redISub(d)).redISub(o.redMul(h)),l=this.z.redMul(e.z).redMul(a);return this.curve.jpoint(d,p,l)},o.prototype.mixedAdd=function(e){if(this.isInfinity())return e.toJ();if(e.isInfinity())return this;var t=this.z.redSqr(),r=this.x,n=e.x.redMul(t),i=this.y,o=e.y.redMul(t).redMul(this.z),s=r.redSub(n),a=i.redSub(o);if(0===s.cmpn(0))return 0!==a.cmpn(0)?this.curve.jpoint(null,null,null):this.dbl();var f=s.redSqr(),c=f.redMul(s),h=r.redMul(f),u=a.redSqr().redIAdd(c).redISub(h).redISub(h),d=a.redMul(h.redISub(u)).redISub(i.redMul(c)),p=this.z.redMul(s);return this.curve.jpoint(u,d,p)},o.prototype.dblp=function(e){if(0===e)return this;if(this.isInfinity())return this;if(!e)return this.dbl();if(this.curve.zeroA||this.curve.threeA){for(var t=this,r=0;r=0)return!1;if(r.redIAdd(i),0===this.x.cmp(r))return!0}return!1},o.prototype.inspect=function(){return this.isInfinity()?"":""},o.prototype.isInfinity=function(){return 0===this.z.cmpn(0)}},function(e,t,r){"use strict";function n(e){"short"===e.type?this.curve=new a.curve.short(e):"edwards"===e.type?this.curve=new a.curve.edwards(e):this.curve=new a.curve.mont(e),this.g=this.curve.g,this.n=this.curve.n,this.hash=e.hash,f(this.g.validate(),"Invalid curve"),f(this.g.mul(this.n).isInfinity(),"Invalid curve, G*N != O")}function i(e,t){Object.defineProperty(o,e,{configurable:!0,enumerable:!0,get:function(){var r=new n(t);return Object.defineProperty(o,e,{configurable:!0,enumerable:!0,value:r}),r}})}var o=t,s=r(4),a=r(3),f=a.utils.assert;o.PresetCurve=n,i("p192",{type:"short",prime:"p192",p:"ffffffff ffffffff ffffffff fffffffe ffffffff ffffffff",a:"ffffffff ffffffff ffffffff fffffffe ffffffff fffffffc",b:"64210519 e59c80e7 0fa7e9ab 72243049 feb8deec c146b9b1",n:"ffffffff ffffffff ffffffff 99def836 146bc9b1 b4d22831",hash:s.sha256,gRed:!1,g:["188da80e b03090f6 7cbf20eb 43a18800 f4ff0afd 82ff1012","07192b95 ffc8da78 631011ed 6b24cdd5 73f977a1 1e794811"]}),i("p224",{type:"short",prime:"p224",p:"ffffffff ffffffff ffffffff ffffffff 00000000 00000000 00000001",a:"ffffffff ffffffff ffffffff fffffffe ffffffff ffffffff fffffffe",b:"b4050a85 0c04b3ab f5413256 5044b0b7 d7bfd8ba 270b3943 2355ffb4",n:"ffffffff ffffffff ffffffff ffff16a2 e0b8f03e 13dd2945 5c5c2a3d",hash:s.sha256,gRed:!1,g:["b70e0cbd 6bb4bf7f 321390b9 4a03c1d3 56c21122 343280d6 115c1d21","bd376388 b5f723fb 4c22dfe6 cd4375a0 5a074764 44d58199 85007e34"]}),i("p256",{type:"short",prime:null,p:"ffffffff 00000001 00000000 00000000 00000000 ffffffff ffffffff ffffffff",a:"ffffffff 00000001 00000000 00000000 00000000 ffffffff ffffffff fffffffc",b:"5ac635d8 aa3a93e7 b3ebbd55 769886bc 651d06b0 cc53b0f6 3bce3c3e 27d2604b",n:"ffffffff 00000000 ffffffff ffffffff bce6faad a7179e84 f3b9cac2 fc632551",hash:s.sha256,gRed:!1,g:["6b17d1f2 e12c4247 f8bce6e5 63a440f2 77037d81 2deb33a0 f4a13945 d898c296","4fe342e2 fe1a7f9b 8ee7eb4a 7c0f9e16 2bce3357 6b315ece cbb64068 37bf51f5"]}),i("p384",{type:"short",prime:null,p:"ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff fffffffe ffffffff 00000000 00000000 ffffffff",a:"ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff fffffffe ffffffff 00000000 00000000 fffffffc",b:"b3312fa7 e23ee7e4 988e056b e3f82d19 181d9c6e fe814112 0314088f 5013875a c656398d 8a2ed19d 2a85c8ed d3ec2aef",n:"ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff c7634d81 f4372ddf 581a0db2 48b0a77a ecec196a ccc52973",hash:s.sha384,gRed:!1,g:["aa87ca22 be8b0537 8eb1c71e f320ad74 6e1d3b62 8ba79b98 59f741e0 82542a38 5502f25d bf55296c 3a545e38 72760ab7","3617de4a 96262c6f 5d9e98bf 9292dc29 f8f41dbd 289a147c e9da3113 b5f0b8c0 0a60b1ce 1d7e819d 7a431d7c 90ea0e5f"]}),i("p521",{type:"short",prime:null,p:"000001ff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff",a:"000001ff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff fffffffc",b:"00000051 953eb961 8e1c9a1f 929a21a0 b68540ee a2da725b 99b315f3 b8b48991 8ef109e1 56193951 ec7e937b 1652c0bd 3bb1bf07 3573df88 3d2c34f1 ef451fd4 6b503f00",n:"000001ff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff fffffffa 51868783 bf2f966b 7fcc0148 f709a5d0 3bb5c9b8 899c47ae bb6fb71e 91386409",hash:s.sha512,gRed:!1,g:["000000c6 858e06b7 0404e9cd 9e3ecb66 2395b442 9c648139 053fb521 f828af60 6b4d3dba a14b5e77 efe75928 fe1dc127 a2ffa8de 3348b3c1 856a429b f97e7e31 c2e5bd66","00000118 39296a78 9a3bc004 5c8a5fb4 2c7d1bd9 98f54449 579b4468 17afbd17 273e662c 97ee7299 5ef42640 c550b901 3fad0761 353c7086 a272c240 88be9476 9fd16650"]}),i("curve25519",{type:"mont",prime:"p25519",p:"7fffffffffffffff ffffffffffffffff ffffffffffffffff ffffffffffffffed",a:"76d06",b:"1",n:"1000000000000000 0000000000000000 14def9dea2f79cd6 5812631a5cf5d3ed",hash:s.sha256,gRed:!1,g:["9"]}),i("ed25519",{type:"edwards",prime:"p25519",p:"7fffffffffffffff ffffffffffffffff ffffffffffffffff ffffffffffffffed",a:"-1",c:"1",d:"52036cee2b6ffe73 8cc740797779e898 00700a4d4141d8ab 75eb4dca135978a3",n:"1000000000000000 0000000000000000 14def9dea2f79cd6 5812631a5cf5d3ed",hash:s.sha256,gRed:!1,g:["216936d3cd6e53fec0a4e231fdd6dc5c692cc7609525a7b2c9562d608f25d51a","6666666666666666666666666666666666666666666666666666666666666658"]});var c;try{c=r(112)}catch(e){c=void 0}i("secp256k1",{type:"short",prime:"k256",p:"ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff fffffffe fffffc2f",a:"0",b:"7",n:"ffffffff ffffffff ffffffff fffffffe baaedce6 af48a03b bfd25e8c d0364141",h:"1",hash:s.sha256,beta:"7ae96a2b657c07106e64479eac3434e99cf0497512f58995c1396c28719501ee",lambda:"5363ad4cc05c30e0a5261c028812645a122e22ea20816678df02967c1b23bd72",basis:[{a:"3086d221a7d46bcde86c90e49284eb15",b:"-e4437ed6010e88286f547fa90abfe4c3"},{a:"114ca50f7a8e2f3f657c1108d9d44cfd8",b:"3086d221a7d46bcde86c90e49284eb15"}],gRed:!1,g:["79be667ef9dcbbac55a06295ce870b07029bfcdb2dce28d959f2815b16f81798","483ada7726a3c4655da4fbfc0e1108a8fd17b448a68554199c47d08ffb10d4b8",c]})},function(e,t,r){"use strict";function n(e){if(!(this instanceof n))return new n(e);"string"==typeof e&&(f(s.curves.hasOwnProperty(e),"Unknown curve "+e),e=s.curves[e]),e instanceof s.curves.PresetCurve&&(e={curve:e}),this.curve=e.curve.curve,this.n=this.curve.n,this.nh=this.n.ushrn(1),this.g=this.curve.g,this.g=e.curve.g,this.g.precompute(e.curve.n.bitLength()+1),this.hash=e.hash||e.curve.hash}var i=r(2),o=r(120),s=r(3),a=s.utils,f=a.assert,c=r(107),h=r(108);e.exports=n,n.prototype.keyPair=function(e){return new c(this,e)},n.prototype.keyFromPrivate=function(e,t){return c.fromPrivate(this,e,t)},n.prototype.keyFromPublic=function(e,t){return c.fromPublic(this,e,t)},n.prototype.genKeyPair=function(e){e||(e={});for(var t=new o({hash:this.hash,pers:e.pers,persEnc:e.persEnc||"utf8",entropy:e.entropy||s.rand(this.hash.hmacStrength),entropyEnc:e.entropy&&e.entropyEnc||"utf8",nonce:this.n.toArray()}),r=this.n.byteLength(),n=this.n.sub(new i(2));;){var a=new i(t.generate(r));if(!(a.cmp(n)>0))return a.iaddn(1),this.keyFromPrivate(a)}},n.prototype._truncateToN=function(e,t){var r=8*e.byteLength()-this.n.bitLength();return r>0&&(e=e.ushrn(r)),!t&&e.cmp(this.n)>=0?e.sub(this.n):e},n.prototype.sign=function(e,t,r,n){"object"==typeof r&&(n=r,r=null),n||(n={}),t=this.keyFromPrivate(t,r),e=this._truncateToN(new i(e,16));for(var s=this.n.byteLength(),a=t.getPrivate().toArray("be",s),f=e.toArray("be",s),c=new o({hash:this.hash,entropy:a,nonce:f,pers:n.pers,persEnc:n.persEnc||"utf8"}),u=this.n.sub(new i(1)),d=0;!0;d++){var p=n.k?n.k(d):new i(c.generate(this.n.byteLength()));if(p=this._truncateToN(p,!0),!(p.cmpn(1)<=0||p.cmp(u)>=0)){var l=this.g.mul(p);if(!l.isInfinity()){var b=l.getX(),y=b.umod(this.n);if(0!==y.cmpn(0)){var g=p.invm(this.n).mul(y.mul(t.getPrivate()).iadd(e));if(g=g.umod(this.n),0!==g.cmpn(0)){var m=(l.getY().isOdd()?1:0)|(0!==b.cmp(y)?2:0);return n.canonical&&g.cmp(this.nh)>0&&(g=this.n.sub(g),m^=1),new h({r:y,s:g,recoveryParam:m})}}}}}},n.prototype.verify=function(e,t,r,n){e=this._truncateToN(new i(e,16)),r=this.keyFromPublic(r,n),t=new h(t,"hex");var o=t.r,s=t.s;if(o.cmpn(1)<0||o.cmp(this.n)>=0)return!1;if(s.cmpn(1)<0||s.cmp(this.n)>=0)return!1;var a=s.invm(this.n),f=a.mul(e).umod(this.n),c=a.mul(o).umod(this.n);if(!this.curve._maxwellTrick){var u=this.g.mulAdd(f,r.getPublic(),c);return!u.isInfinity()&&0===u.getX().umod(this.n).cmp(o)}var u=this.g.jmulAdd(f,r.getPublic(),c);return!u.isInfinity()&&u.eqXToP(o)},n.prototype.recoverPubKey=function(e,t,r,n){f((3&r)===r,"The recovery param is more than two bits"),t=new h(t,n);var o=this.n,s=new i(e),a=t.r,c=t.s,u=1&r,d=r>>1;if(a.cmp(this.curve.p.umod(this.curve.n))>=0&&d)throw new Error("Unable to find sencond key candinate");a=d?this.curve.pointFromX(a.add(this.curve.n),u):this.curve.pointFromX(a,u);var p=t.r.invm(o),l=o.sub(s).mul(p).umod(o),b=c.mul(p).umod(o);return this.g.mulAdd(l,a,b)},n.prototype.getKeyRecoveryParam=function(e,t,r,n){if(t=new h(t,n),null!==t.recoveryParam)return t.recoveryParam;for(var i=0;i<4;i++){var o;try{o=this.recoverPubKey(e,t,i)}catch(e){continue}if(o.eq(r))return i}throw new Error("Unable to find valid recovery factor")}},function(e,t,r){"use strict";function n(e,t){this.ec=e,this.priv=null,this.pub=null,t.priv&&this._importPrivate(t.priv,t.privEnc),t.pub&&this._importPublic(t.pub,t.pubEnc)}var i=r(2),o=r(3),s=o.utils,a=s.assert;e.exports=n,n.fromPublic=function(e,t,r){return t instanceof n?t:new n(e,{pub:t,pubEnc:r})},n.fromPrivate=function(e,t,r){return t instanceof n?t:new n(e,{priv:t,privEnc:r})},n.prototype.validate=function(){var e=this.getPublic();return e.isInfinity()?{result:!1,reason:"Invalid public key"}:e.validate()?e.mul(this.ec.curve.n).isInfinity()?{result:!0,reason:null}:{result:!1,reason:"Public key * N != O"}:{result:!1,reason:"Public key is not a point"}},n.prototype.getPublic=function(e,t){return"string"==typeof e&&(t=e,e=null),this.pub||(this.pub=this.ec.g.mul(this.priv)),t?this.pub.encode(t,e):this.pub},n.prototype.getPrivate=function(e){return"hex"===e?this.priv.toString(16,2):this.priv},n.prototype._importPrivate=function(e,t){this.priv=new i(e,t||16),this.priv=this.priv.umod(this.ec.curve.n)},n.prototype._importPublic=function(e,t){if(e.x||e.y)return"mont"===this.ec.curve.type?a(e.x,"Need x coordinate"):"short"!==this.ec.curve.type&&"edwards"!==this.ec.curve.type||a(e.x&&e.y,"Need both x and y coordinate"),void(this.pub=this.ec.curve.point(e.x,e.y));this.pub=this.ec.curve.decodePoint(e,t)},n.prototype.derive=function(e){return e.mul(this.priv).getX()},n.prototype.sign=function(e,t,r){return this.ec.sign(e,this,t,r)},n.prototype.verify=function(e,t){return this.ec.verify(e,t,this)},n.prototype.inspect=function(){return""}},function(e,t,r){"use strict";function n(e,t){if(e instanceof n)return e;this._importDER(e,t)||(u(e.r&&e.s,"Signature without r or s"),this.r=new f(e.r,16),this.s=new f(e.s,16),void 0===e.recoveryParam?this.recoveryParam=null:this.recoveryParam=e.recoveryParam)}function i(){this.place=0}function o(e,t){var r=e[t.place++];if(!(128&r))return r;for(var n=15&r,i=0,o=0,s=t.place;o>>3);for(e.push(128|r);--r;)e.push(t>>>(r<<3)&255);e.push(t)}var f=r(2),c=r(3),h=c.utils,u=h.assert;e.exports=n,n.prototype._importDER=function(e,t){e=h.toArray(e,t);var r=new i;if(48!==e[r.place++])return!1;if(o(e,r)+r.place!==e.length)return!1;if(2!==e[r.place++])return!1;var n=o(e,r),s=e.slice(r.place,n+r.place);if(r.place+=n,2!==e[r.place++])return!1;var a=o(e,r);if(e.length!==a+r.place)return!1;var c=e.slice(r.place,a+r.place);return 0===s[0]&&128&s[1]&&(s=s.slice(1)),0===c[0]&&128&c[1]&&(c=c.slice(1)),this.r=new f(s),this.s=new f(c),this.recoveryParam=null,!0},n.prototype.toDER=function(e){var t=this.r.toArray(),r=this.s.toArray();for(128&t[0]&&(t=[0].concat(t)),128&r[0]&&(r=[0].concat(r)),t=s(t),r=s(r);!(r[0]||128&r[1]);)r=r.slice(1);var n=[2];a(n,t.length),n=n.concat(t),n.push(2),a(n,r.length);var i=n.concat(r),o=[48];return a(o,i.length),o=o.concat(i),h.encode(o,e)}},function(e,t,r){"use strict";function n(e){if(a("ed25519"===e,"only tested with ed25519 so far"),!(this instanceof n))return new n(e);var e=o.curves[e].curve;this.curve=e,this.g=e.g,this.g.precompute(e.n.bitLength()+1),this.pointClass=e.point().constructor,this.encodingLength=Math.ceil(e.n.bitLength()/8),this.hash=i.sha512}var i=r(4),o=r(3),s=o.utils,a=s.assert,f=s.parseBytes,c=r(110),h=r(111);e.exports=n,n.prototype.sign=function(e,t){e=f(e);var r=this.keyFromSecret(t),n=this.hashInt(r.messagePrefix(),e),i=this.g.mul(n),o=this.encodePoint(i),s=this.hashInt(o,r.pubBytes(),e).mul(r.priv()),a=n.add(s).umod(this.curve.n);return this.makeSignature({R:i,S:a,Rencoded:o})},n.prototype.verify=function(e,t,r){e=f(e),t=this.makeSignature(t);var n=this.keyFromPublic(r),i=this.hashInt(t.Rencoded(),n.pubBytes(),e),o=this.g.mul(t.S());return t.R().add(n.pub().mul(i)).eq(o)},n.prototype.hashInt=function(){for(var e=this.hash(),t=0;t=0;){var o;if(i.isOdd()){var s=i.andln(n-1);o=s>(n>>1)-1?(n>>1)-s:s,i.isubn(o)}else o=0;r.push(o);for(var a=0!==i.cmpn(0)&&0===i.andln(n-1)?t+1:1,f=1;f0||t.cmpn(-i)>0;){var o=e.andln(3)+n&3,s=t.andln(3)+i&3;3===o&&(o=-1),3===s&&(s=-1);var a;if(0==(1&o))a=0;else{var f=e.andln(7)+n&7;a=3!==f&&5!==f||2!==s?o:-o}r[0].push(a);var c;if(0==(1&s))c=0;else{var f=t.andln(7)+i&7;c=3!==f&&5!==f||2!==o?s:-s}r[1].push(c),2*n===a+1&&(n=1-n),2*i===c+1&&(i=1-i),e.iushrn(1),t.iushrn(1)}return r}function o(e,t,r){var n="_"+t;e.prototype[t]=function(){return void 0!==this[n]?this[n]:this[n]=r.call(this)}}function s(e){return"string"==typeof e?f.toArray(e,"hex"):e}function a(e){return new c(e,"hex","le")}var f=t,c=r(2),h=r(5),u=r(53);f.assert=h,f.toArray=u.toArray,f.zero2=u.zero2,f.toHex=u.toHex,f.encode=u.encode,f.getNAF=n,f.getJSF=i,f.cachedProperty=o,f.parseBytes=s,f.intFromLE=a},function(e,t){e.exports={name:"elliptic",version:"6.4.0",description:"EC cryptography",main:"lib/elliptic.js",files:["lib"],scripts:{jscs:"jscs benchmarks/*.js lib/*.js lib/**/*.js lib/**/**/*.js test/index.js",jshint:"jscs benchmarks/*.js lib/*.js lib/**/*.js lib/**/**/*.js test/index.js",lint:"npm run jscs && npm run jshint",unit:"istanbul test _mocha --reporter=spec test/index.js",test:"npm run lint && npm run unit",version:"grunt dist && git add dist/"},repository:{type:"git",url:"git@github.com:indutny/elliptic"},keywords:["EC","Elliptic","curve","Cryptography"],author:"Fedor Indutny 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i=r(4),o=i.utils,s=o.assert;t.BlockHash=n,n.prototype.update=function(e,t){if(e=o.toArray(e,t),this.pending?this.pending=this.pending.concat(e):this.pending=e,this.pendingTotal+=e.length,this.pending.length>=this._delta8){e=this.pending;var r=e.length%this._delta8;this.pending=e.slice(e.length-r,e.length),0===this.pending.length&&(this.pending=null),e=o.join32(e,0,e.length-r,this.endian);for(var n=0;n>>24&255,n[i++]=e>>>16&255,n[i++]=e>>>8&255,n[i++]=255&e}else{n[i++]=255&e,n[i++]=e>>>8&255,n[i++]=e>>>16&255,n[i++]=e>>>24&255,n[i++]=0,n[i++]=0,n[i++]=0,n[i++]=0;for(var o=8;othis.blockSize&&(e=(new this.Hash).update(e).digest()),s(e.length<=this.blockSize);for(var t=e.length;t>>3}function l(e){return O(e,17)^O(e,19)^e>>>10}function b(e,t,r,n){return 0===e?f(t,r,n):1===e||3===e?h(t,r,n):2===e?c(t,r,n):void 0}function y(e,t,r,n,i,o){var s=e&r^~e&i;return s<0&&(s+=4294967296),s}function g(e,t,r,n,i,o){var s=t&n^~t&o;return s<0&&(s+=4294967296),s}function m(e,t,r,n,i,o){var s=e&r^e&i^r&i;return s<0&&(s+=4294967296),s}function v(e,t,r,n,i,o){var s=t&n^t&o^n&o;return s<0&&(s+=4294967296),s}function w(e,t){var r=D(e,t,28),n=D(t,e,2),i=D(t,e,7),o=r^n^i;return o<0&&(o+=4294967296),o}function _(e,t){var r=q(e,t,28),n=q(t,e,2),i=q(t,e,7),o=r^n^i;return o<0&&(o+=4294967296),o}function S(e,t){var r=D(e,t,14),n=D(e,t,18),i=D(t,e,9),o=r^n^i;return o<0&&(o+=4294967296),o}function k(e,t){var r=q(e,t,14),n=q(e,t,18),i=q(t,e,9),o=r^n^i;return o<0&&(o+=4294967296),o}function M(e,t){var r=D(e,t,1),n=D(e,t,8),i=L(e,t,7),o=r^n^i;return o<0&&(o+=4294967296),o}function E(e,t){var r=q(e,t,1),n=q(e,t,8),i=U(e,t,7),o=r^n^i;return o<0&&(o+=4294967296),o}function A(e,t){var r=D(e,t,19),n=D(t,e,29),i=L(e,t,6),o=r^n^i;return o<0&&(o+=4294967296),o}function x(e,t){var r=q(e,t,19),n=q(t,e,29),i=U(e,t,6),o=r^n^i;return o<0&&(o+=4294967296),o}var T=r(4),I=T.utils,B=I.assert,O=I.rotr32,R=I.rotl32,C=I.sum32,j=I.sum32_4,P=I.sum32_5,D=I.rotr64_hi,q=I.rotr64_lo,L=I.shr64_hi,U=I.shr64_lo,N=I.sum64,z=I.sum64_hi,F=I.sum64_lo,H=I.sum64_4_hi,K=I.sum64_4_lo,W=I.sum64_5_hi,V=I.sum64_5_lo,X=T.common.BlockHash,Y=[1116352408,1899447441,3049323471,3921009573,961987163,1508970993,2453635748,2870763221,3624381080,310598401,607225278,1426881987,1925078388,2162078206,2614888103,3248222580,3835390401,4022224774,264347078,604807628,770255983,1249150122,1555081692,1996064986,2554220882,2821834349,2952996808,3210313671,3336571891,3584528711,113926993,338241895,666307205,773529912,1294757372,1396182291,1695183700,1986661051,2177026350,2456956037,2730485921,2820302411,3259730800,3345764771,3516065817,3600352804,4094571909,275423344,430227734,506948616,659060556,883997877,958139571,1322822218,1537002063,1747873779,1955562222,2024104815,2227730452,2361852424,2428436474,2756734187,3204031479,3329325298],J=[1116352408,3609767458,1899447441,602891725,3049323471,3964484399,3921009573,2173295548,961987163,4081628472,1508970993,3053834265,2453635748,2937671579,2870763221,3664609560,3624381080,2734883394,310598401,1164996542,607225278,1323610764,1426881987,3590304994,1925078388,4068182383,2162078206,991336113,2614888103,633803317,3248222580,3479774868,3835390401,2666613458,4022224774,944711139,264347078,2341262773,604807628,2007800933,770255983,1495990901,1249150122,1856431235,1555081692,3175218132,1996064986,2198950837,2554220882,3999719339,2821834349,766784016,2952996808,2566594879,3210313671,3203337956,3336571891,1034457026,3584528711,2466948901,113926993,3758326383,338241895,168717936,666307205,1188179964,773529912,1546045734,1294757372,1522805485,1396182291,2643833823,1695183700,2343527390,1986661051,1014477480,2177026350,1206759142,2456956037,344077627,2730485921,1290863460,2820302411,3158454273,3259730800,3505952657,3345764771,106217008,3516065817,3606008344,3600352804,1432725776,4094571909,1467031594,275423344,851169720,430227734,3100823752,506948616,1363258195,659060556,3750685593,883997877,3785050280,958139571,3318307427,1322822218,3812723403,1537002063,2003034995,1747873779,3602036899,1955562222,1575990012,2024104815,1125592928,2227730452,2716904306,2361852424,442776044,2428436474,593698344,2756734187,3733110249,3204031479,2999351573,3329325298,3815920427,3391569614,3928383900,3515267271,566280711,3940187606,3454069534,4118630271,4000239992,116418474,1914138554,174292421,2731055270,289380356,3203993006,460393269,320620315,685471733,587496836,852142971,1086792851,1017036298,365543100,1126000580,2618297676,1288033470,3409855158,1501505948,4234509866,1607167915,987167468,1816402316,1246189591],Z=[1518500249,1859775393,2400959708,3395469782];I.inherits(n,X),t.sha256=n,n.blockSize=512,n.outSize=256,n.hmacStrength=192,n.padLength=64,n.prototype._update=function(e,t){for(var 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u=u+n>>>0,h+=u>>0,h+=u>>0,h+=u>>0,h+=u>>0}function M(e,t,r,n,i,o,s,a,f,c){return t+n+o+a+c>>>0}function E(e,t,r){return(t<<32-r|e>>>r)>>>0}function A(e,t,r){return(e<<32-r|t>>>r)>>>0}function x(e,t,r){return e>>>r}function T(e,t,r){return(e<<32-r|t>>>r)>>>0}var I=t,B=r(1);I.toArray=n,I.toHex=i,I.htonl=o,I.toHex32=s,I.zero2=a,I.zero8=f,I.join32=c,I.split32=h,I.rotr32=u,I.rotl32=d,I.sum32=p,I.sum32_3=l,I.sum32_4=b,I.sum32_5=y,I.assert=g,I.inherits=B,t.sum64=m,t.sum64_hi=v,t.sum64_lo=w,t.sum64_4_hi=_,t.sum64_4_lo=S,t.sum64_5_hi=k,t.sum64_5_lo=M,t.rotr64_hi=E,t.rotr64_lo=A,t.shr64_hi=x,t.shr64_lo=T},function(e,t,r){"use strict";function n(e){if(!(this instanceof n))return new n(e);this.hash=e.hash,this.predResist=!!e.predResist,this.outLen=this.hash.outSize,this.minEntropy=e.minEntropy||this.hash.hmacStrength,this._reseed=null,this.reseedInterval=null,this.K=null,this.V=null;var t=o.toArray(e.entropy,e.entropyEnc||"hex"),r=o.toArray(e.nonce,e.nonceEnc||"hex"),i=o.toArray(e.pers,e.persEnc||"hex");s(t.length>=this.minEntropy/8,"Not enough entropy. Minimum is: "+this.minEntropy+" bits"),this._init(t,r,i)}var i=r(4),o=r(53),s=r(5);e.exports=n,n.prototype._init=function(e,t,r){var n=e.concat(t).concat(r);this.K=new Array(this.outLen/8),this.V=new Array(this.outLen/8);for(var i=0;i=this.minEntropy/8,"Not enough entropy. Minimum is: "+this.minEntropy+" bits"),this._update(e.concat(r||[])),this._reseed=1},n.prototype.generate=function(e,t,r,n){if(this._reseed>this.reseedInterval)throw new Error("Reseed is required");"string"!=typeof t&&(n=r,r=t,t=null),r&&(r=o.toArray(r,n||"hex"),this._update(r));for(var i=[];i.length>1,h=-7,u=r?i-1:0,d=r?-1:1,p=e[t+u];for(u+=d,o=p&(1<<-h)-1,p>>=-h,h+=a;h>0;o=256*o+e[t+u],u+=d,h-=8);for(s=o&(1<<-h)-1,o>>=-h,h+=n;h>0;s=256*s+e[t+u],u+=d,h-=8);if(0===o)o=1-c;else{if(o===f)return s?NaN:1/0*(p?-1:1);s+=Math.pow(2,n),o-=c}return(p?-1:1)*s*Math.pow(2,o-n)},t.write=function(e,t,r,n,i,o){var s,a,f,c=8*o-i-1,h=(1<>1,d=23===i?Math.pow(2,-24)-Math.pow(2,-77):0,p=n?0:o-1,l=n?1:-1,b=t<0||0===t&&1/t<0?1:0;for(t=Math.abs(t),isNaN(t)||t===1/0?(a=isNaN(t)?1:0,s=h):(s=Math.floor(Math.log(t)/Math.LN2),t*(f=Math.pow(2,-s))<1&&(s--,f*=2),t+=s+u>=1?d/f:d*Math.pow(2,1-u),t*f>=2&&(s++,f/=2),s+u>=h?(a=0,s=h):s+u>=1?(a=(t*f-1)*Math.pow(2,i),s+=u):(a=t*Math.pow(2,u-1)*Math.pow(2,i),s=0));i>=8;e[r+p]=255&a,p+=l,a/=256,i-=8);for(s=s<0;e[r+p]=255&s,p+=l,s/=256,c-=8);e[r+p-l]|=128*b}},function(e,t){var r=[].indexOf;e.exports=function(e,t){if(r)return e.indexOf(t);for(var n=0;nr||t!==t)throw new TypeError("Bad key length")}},function(e,t,r){t.publicEncrypt=r(130),t.privateDecrypt=r(129),t.privateEncrypt=function(e,r){return t.publicEncrypt(e,r,!0)},t.publicDecrypt=function(e,r){return t.privateDecrypt(e,r,!0)}},function(e,t,r){(function(t){function n(e,r){var n=(e.modulus,e.modulus.byteLength()),i=(r.length,u("sha1").update(new t("")).digest()),s=i.length;if(0!==r[0])throw new Error("decryption 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Error(t);n("traceDeprecation")?console.trace(t):console.warn(t),i=!0}return e.apply(this,arguments)}if(n("noDeprecation"))return e;var i=!1;return r}function n(e){try{if(!t.localStorage)return!1}catch(e){return!1}var r=t.localStorage[e];return null!=r&&"true"===String(r).toLowerCase()}e.exports=r}).call(t,r(7))},function(module,exports,__webpack_require__){function Context(){}var indexOf=__webpack_require__(122),Object_keys=function(e){if(Object.keys)return Object.keys(e);var t=[];for(var r in e)t.push(r);return t},forEach=function(e,t){if(e.forEach)return e.forEach(t);for(var r=0;r \n * @license MIT\n */\n/* eslint-disable no-proto */\n\n\n\nvar base64 = __webpack_require__(33)\nvar ieee754 = __webpack_require__(168)\nvar isArray = __webpack_require__(72)\n\nexports.Buffer = Buffer\nexports.SlowBuffer = SlowBuffer\nexports.INSPECT_MAX_BYTES = 50\n\n/**\n * If `Buffer.TYPED_ARRAY_SUPPORT`:\n * === true Use Uint8Array implementation (fastest)\n * === false Use Object implementation (most compatible, even IE6)\n *\n * Browsers that support typed arrays are IE 10+, Firefox 4+, Chrome 7+, Safari 5.1+,\n * Opera 11.6+, iOS 4.2+.\n *\n * Due to various browser bugs, sometimes the Object implementation will be used even\n * when the browser supports typed arrays.\n *\n * Note:\n *\n * - Firefox 4-29 lacks support for adding new properties to `Uint8Array` instances,\n * See: https://bugzilla.mozilla.org/show_bug.cgi?id=695438.\n *\n * - Chrome 9-10 is missing the `TypedArray.prototype.subarray` function.\n *\n * - IE10 has a broken `TypedArray.prototype.subarray` function which returns arrays of\n * incorrect length in some situations.\n\n * We detect these buggy browsers and set `Buffer.TYPED_ARRAY_SUPPORT` to `false` so they\n * get the Object implementation, which is slower but behaves correctly.\n */\nBuffer.TYPED_ARRAY_SUPPORT = global.TYPED_ARRAY_SUPPORT !== undefined\n ? global.TYPED_ARRAY_SUPPORT\n : typedArraySupport()\n\n/*\n * Export kMaxLength after typed array support is determined.\n */\nexports.kMaxLength = kMaxLength()\n\nfunction typedArraySupport () {\n try {\n var arr = new Uint8Array(1)\n arr.__proto__ = {__proto__: Uint8Array.prototype, foo: function () { return 42 }}\n return arr.foo() === 42 && // typed array instances can be augmented\n typeof arr.subarray === 'function' && // chrome 9-10 lack `subarray`\n arr.subarray(1, 1).byteLength === 0 // ie10 has broken `subarray`\n } catch (e) {\n return false\n }\n}\n\nfunction kMaxLength () {\n return Buffer.TYPED_ARRAY_SUPPORT\n ? 0x7fffffff\n : 0x3fffffff\n}\n\nfunction createBuffer (that, length) {\n if (kMaxLength() < length) {\n throw new RangeError('Invalid typed array length')\n }\n if (Buffer.TYPED_ARRAY_SUPPORT) {\n // Return an augmented `Uint8Array` instance, for best performance\n that = new Uint8Array(length)\n that.__proto__ = Buffer.prototype\n } else {\n // Fallback: Return an object instance of the Buffer class\n if (that === null) {\n that = new Buffer(length)\n }\n that.length = length\n }\n\n return that\n}\n\n/**\n * The Buffer constructor returns instances of `Uint8Array` that have their\n * prototype changed to `Buffer.prototype`. Furthermore, `Buffer` is a subclass of\n * `Uint8Array`, so the returned instances will have all the node `Buffer` methods\n * and the `Uint8Array` methods. Square bracket notation works as expected -- it\n * returns a single octet.\n *\n * The `Uint8Array` prototype remains unmodified.\n */\n\nfunction Buffer (arg, encodingOrOffset, length) {\n if (!Buffer.TYPED_ARRAY_SUPPORT && !(this instanceof Buffer)) {\n return new Buffer(arg, encodingOrOffset, length)\n }\n\n // Common case.\n if (typeof arg === 'number') {\n if (typeof encodingOrOffset === 'string') {\n throw new Error(\n 'If encoding is specified then the first argument must be a string'\n )\n }\n return allocUnsafe(this, arg)\n }\n return from(this, arg, encodingOrOffset, length)\n}\n\nBuffer.poolSize = 8192 // not used by this implementation\n\n// TODO: Legacy, not needed anymore. Remove in next major version.\nBuffer._augment = function (arr) {\n arr.__proto__ = Buffer.prototype\n return arr\n}\n\nfunction from (that, value, encodingOrOffset, length) {\n if (typeof value === 'number') {\n throw new TypeError('\"value\" argument must not be a number')\n }\n\n if (typeof ArrayBuffer !== 'undefined' && value instanceof ArrayBuffer) {\n return fromArrayBuffer(that, value, encodingOrOffset, length)\n }\n\n if (typeof value === 'string') {\n return fromString(that, value, encodingOrOffset)\n }\n\n return fromObject(that, value)\n}\n\n/**\n * Functionally equivalent to Buffer(arg, encoding) but throws a TypeError\n * if value is a number.\n * Buffer.from(str[, encoding])\n * Buffer.from(array)\n * Buffer.from(buffer)\n * Buffer.from(arrayBuffer[, byteOffset[, length]])\n **/\nBuffer.from = function (value, encodingOrOffset, length) {\n return from(null, value, encodingOrOffset, length)\n}\n\nif (Buffer.TYPED_ARRAY_SUPPORT) {\n Buffer.prototype.__proto__ = Uint8Array.prototype\n Buffer.__proto__ = Uint8Array\n if (typeof Symbol !== 'undefined' && Symbol.species &&\n Buffer[Symbol.species] === Buffer) {\n // Fix subarray() in ES2016. See: https://github.com/feross/buffer/pull/97\n Object.defineProperty(Buffer, Symbol.species, {\n value: null,\n configurable: true\n })\n }\n}\n\nfunction assertSize (size) {\n if (typeof size !== 'number') {\n throw new TypeError('\"size\" argument must be a number')\n } else if (size < 0) {\n throw new RangeError('\"size\" argument must not be negative')\n }\n}\n\nfunction alloc (that, size, fill, encoding) {\n assertSize(size)\n if (size <= 0) {\n return createBuffer(that, size)\n }\n if (fill !== undefined) {\n // Only pay attention to encoding if it's a string. This\n // prevents accidentally sending in a number that would\n // be interpretted as a start offset.\n return typeof encoding === 'string'\n ? createBuffer(that, size).fill(fill, encoding)\n : createBuffer(that, size).fill(fill)\n }\n return createBuffer(that, size)\n}\n\n/**\n * Creates a new filled Buffer instance.\n * alloc(size[, fill[, encoding]])\n **/\nBuffer.alloc = function (size, fill, encoding) {\n return alloc(null, size, fill, encoding)\n}\n\nfunction allocUnsafe (that, size) {\n assertSize(size)\n that = createBuffer(that, size < 0 ? 0 : checked(size) | 0)\n if (!Buffer.TYPED_ARRAY_SUPPORT) {\n for (var i = 0; i < size; ++i) {\n that[i] = 0\n }\n }\n return that\n}\n\n/**\n * Equivalent to Buffer(num), by default creates a non-zero-filled Buffer instance.\n * */\nBuffer.allocUnsafe = function (size) {\n return allocUnsafe(null, size)\n}\n/**\n * Equivalent to SlowBuffer(num), by default creates a non-zero-filled Buffer instance.\n */\nBuffer.allocUnsafeSlow = function (size) {\n return allocUnsafe(null, size)\n}\n\nfunction fromString (that, string, encoding) {\n if (typeof encoding !== 'string' || encoding === '') {\n encoding = 'utf8'\n }\n\n if (!Buffer.isEncoding(encoding)) {\n throw new TypeError('\"encoding\" must be a valid string encoding')\n }\n\n var length = byteLength(string, encoding) | 0\n that = createBuffer(that, length)\n\n var actual = that.write(string, encoding)\n\n if (actual !== length) {\n // Writing a hex string, for example, that contains invalid characters will\n // cause everything after the first invalid character to be ignored. (e.g.\n // 'abxxcd' will be treated as 'ab')\n that = that.slice(0, actual)\n }\n\n return that\n}\n\nfunction fromArrayLike (that, array) {\n var length = array.length < 0 ? 0 : checked(array.length) | 0\n that = createBuffer(that, length)\n for (var i = 0; i < length; i += 1) {\n that[i] = array[i] & 255\n }\n return that\n}\n\nfunction fromArrayBuffer (that, array, byteOffset, length) {\n array.byteLength // this throws if `array` is not a valid ArrayBuffer\n\n if (byteOffset < 0 || array.byteLength < byteOffset) {\n throw new RangeError('\\'offset\\' is out of bounds')\n }\n\n if (array.byteLength < byteOffset + (length || 0)) {\n throw new RangeError('\\'length\\' is out of bounds')\n }\n\n if (byteOffset === undefined && length === undefined) {\n array = new Uint8Array(array)\n } else if (length === undefined) {\n array = new Uint8Array(array, byteOffset)\n } else {\n array = new Uint8Array(array, byteOffset, length)\n }\n\n if (Buffer.TYPED_ARRAY_SUPPORT) {\n // Return an augmented `Uint8Array` instance, for best performance\n that = array\n that.__proto__ = Buffer.prototype\n } else {\n // Fallback: Return an object instance of the Buffer class\n that = fromArrayLike(that, array)\n }\n return that\n}\n\nfunction fromObject (that, obj) {\n if (Buffer.isBuffer(obj)) {\n var len = checked(obj.length) | 0\n that = createBuffer(that, len)\n\n if (that.length === 0) {\n return that\n }\n\n obj.copy(that, 0, 0, len)\n return that\n }\n\n if (obj) {\n if ((typeof ArrayBuffer !== 'undefined' &&\n obj.buffer instanceof ArrayBuffer) || 'length' in obj) {\n if (typeof obj.length !== 'number' || isnan(obj.length)) {\n return createBuffer(that, 0)\n }\n return fromArrayLike(that, obj)\n }\n\n if (obj.type === 'Buffer' && isArray(obj.data)) {\n return fromArrayLike(that, obj.data)\n }\n }\n\n throw new TypeError('First argument must be a string, Buffer, ArrayBuffer, Array, or array-like object.')\n}\n\nfunction checked (length) {\n // Note: cannot use `length < kMaxLength()` here because that fails when\n // length is NaN (which is otherwise coerced to zero.)\n if (length >= kMaxLength()) {\n throw new RangeError('Attempt to allocate Buffer larger than maximum ' +\n 'size: 0x' + kMaxLength().toString(16) + ' bytes')\n }\n return length | 0\n}\n\nfunction SlowBuffer (length) {\n if (+length != length) { // eslint-disable-line eqeqeq\n length = 0\n }\n return Buffer.alloc(+length)\n}\n\nBuffer.isBuffer = function isBuffer (b) {\n return !!(b != null && b._isBuffer)\n}\n\nBuffer.compare = function compare (a, b) {\n if (!Buffer.isBuffer(a) || !Buffer.isBuffer(b)) {\n throw new TypeError('Arguments must be Buffers')\n }\n\n if (a === b) return 0\n\n var x = a.length\n var y = b.length\n\n for (var i = 0, len = Math.min(x, y); i < len; ++i) {\n if (a[i] !== b[i]) {\n x = a[i]\n y = b[i]\n break\n }\n }\n\n if (x < y) return -1\n if (y < x) return 1\n return 0\n}\n\nBuffer.isEncoding = function isEncoding (encoding) {\n switch (String(encoding).toLowerCase()) {\n case 'hex':\n case 'utf8':\n case 'utf-8':\n case 'ascii':\n case 'latin1':\n case 'binary':\n case 'base64':\n case 'ucs2':\n case 'ucs-2':\n case 'utf16le':\n case 'utf-16le':\n return true\n default:\n return false\n }\n}\n\nBuffer.concat = function concat (list, length) {\n if (!isArray(list)) {\n throw new TypeError('\"list\" argument must be an Array of Buffers')\n }\n\n if (list.length === 0) {\n return Buffer.alloc(0)\n }\n\n var i\n if (length === undefined) {\n length = 0\n for (i = 0; i < list.length; ++i) {\n length += list[i].length\n }\n }\n\n var buffer = Buffer.allocUnsafe(length)\n var pos = 0\n for (i = 0; i < list.length; ++i) {\n var buf = list[i]\n if (!Buffer.isBuffer(buf)) {\n throw new TypeError('\"list\" argument must be an Array of Buffers')\n }\n buf.copy(buffer, pos)\n pos += buf.length\n }\n return buffer\n}\n\nfunction byteLength (string, encoding) {\n if (Buffer.isBuffer(string)) {\n return string.length\n }\n if (typeof ArrayBuffer !== 'undefined' && typeof ArrayBuffer.isView === 'function' &&\n (ArrayBuffer.isView(string) || string instanceof ArrayBuffer)) {\n return string.byteLength\n }\n if (typeof string !== 'string') {\n string = '' + string\n }\n\n var len = string.length\n if (len === 0) return 0\n\n // Use a for loop to avoid recursion\n var loweredCase = false\n for (;;) {\n switch (encoding) {\n case 'ascii':\n case 'latin1':\n case 'binary':\n return len\n case 'utf8':\n case 'utf-8':\n case undefined:\n return utf8ToBytes(string).length\n case 'ucs2':\n case 'ucs-2':\n case 'utf16le':\n case 'utf-16le':\n return len * 2\n case 'hex':\n return len >>> 1\n case 'base64':\n return base64ToBytes(string).length\n default:\n if (loweredCase) return utf8ToBytes(string).length // assume utf8\n encoding = ('' + encoding).toLowerCase()\n loweredCase = true\n }\n }\n}\nBuffer.byteLength = byteLength\n\nfunction slowToString (encoding, start, end) {\n var loweredCase = false\n\n // No need to verify that \"this.length <= MAX_UINT32\" since it's a read-only\n // property of a typed array.\n\n // This behaves neither like String nor Uint8Array in that we set start/end\n // to their upper/lower bounds if the value passed is out of range.\n // undefined is handled specially as per ECMA-262 6th Edition,\n // Section 13.3.3.7 Runtime Semantics: KeyedBindingInitialization.\n if (start === undefined || start < 0) {\n start = 0\n }\n // Return early if start > this.length. Done here to prevent potential uint32\n // coercion fail below.\n if (start > this.length) {\n return ''\n }\n\n if (end === undefined || end > this.length) {\n end = this.length\n }\n\n if (end <= 0) {\n return ''\n }\n\n // Force coersion to uint32. This will also coerce falsey/NaN values to 0.\n end >>>= 0\n start >>>= 0\n\n if (end <= start) {\n return ''\n }\n\n if (!encoding) encoding = 'utf8'\n\n while (true) {\n switch (encoding) {\n case 'hex':\n return hexSlice(this, start, end)\n\n case 'utf8':\n case 'utf-8':\n return utf8Slice(this, start, end)\n\n case 'ascii':\n return asciiSlice(this, start, end)\n\n case 'latin1':\n case 'binary':\n return latin1Slice(this, start, end)\n\n case 'base64':\n return base64Slice(this, start, end)\n\n case 'ucs2':\n case 'ucs-2':\n case 'utf16le':\n case 'utf-16le':\n return utf16leSlice(this, start, end)\n\n default:\n if (loweredCase) throw new TypeError('Unknown encoding: ' + encoding)\n encoding = (encoding + '').toLowerCase()\n loweredCase = true\n }\n }\n}\n\n// The property is used by `Buffer.isBuffer` and `is-buffer` (in Safari 5-7) to detect\n// Buffer instances.\nBuffer.prototype._isBuffer = true\n\nfunction swap (b, n, m) {\n var i = b[n]\n b[n] = b[m]\n b[m] = i\n}\n\nBuffer.prototype.swap16 = function swap16 () {\n var len = this.length\n if (len % 2 !== 0) {\n throw new RangeError('Buffer size must be a multiple of 16-bits')\n }\n for (var i = 0; i < len; i += 2) {\n swap(this, i, i + 1)\n }\n return this\n}\n\nBuffer.prototype.swap32 = function swap32 () {\n var len = this.length\n if (len % 4 !== 0) {\n throw new RangeError('Buffer size must be a multiple of 32-bits')\n }\n for (var i = 0; i < len; i += 4) {\n swap(this, i, i + 3)\n swap(this, i + 1, i + 2)\n }\n return this\n}\n\nBuffer.prototype.swap64 = function swap64 () {\n var len = this.length\n if (len % 8 !== 0) {\n throw new RangeError('Buffer size must be a multiple of 64-bits')\n }\n for (var i = 0; i < len; i += 8) {\n swap(this, i, i + 7)\n swap(this, i + 1, i + 6)\n swap(this, i + 2, i + 5)\n swap(this, i + 3, i + 4)\n }\n return this\n}\n\nBuffer.prototype.toString = function toString () {\n var length = this.length | 0\n if (length === 0) return ''\n if (arguments.length === 0) return utf8Slice(this, 0, length)\n return slowToString.apply(this, arguments)\n}\n\nBuffer.prototype.equals = function equals (b) {\n if (!Buffer.isBuffer(b)) throw new TypeError('Argument must be a Buffer')\n if (this === b) return true\n return Buffer.compare(this, b) === 0\n}\n\nBuffer.prototype.inspect = function inspect () {\n var str = ''\n var max = exports.INSPECT_MAX_BYTES\n if (this.length > 0) {\n str = this.toString('hex', 0, max).match(/.{2}/g).join(' ')\n if (this.length > max) str += ' ... '\n }\n return ''\n}\n\nBuffer.prototype.compare = function compare (target, start, end, thisStart, thisEnd) {\n if (!Buffer.isBuffer(target)) {\n throw new TypeError('Argument must be a Buffer')\n }\n\n if (start === undefined) {\n start = 0\n }\n if (end === undefined) {\n end = target ? target.length : 0\n }\n if (thisStart === undefined) {\n thisStart = 0\n }\n if (thisEnd === undefined) {\n thisEnd = this.length\n }\n\n if (start < 0 || end > target.length || thisStart < 0 || thisEnd > this.length) {\n throw new RangeError('out of range index')\n }\n\n if (thisStart >= thisEnd && start >= end) {\n return 0\n }\n if (thisStart >= thisEnd) {\n return -1\n }\n if (start >= end) {\n return 1\n }\n\n start >>>= 0\n end >>>= 0\n thisStart >>>= 0\n thisEnd >>>= 0\n\n if (this === target) return 0\n\n var x = thisEnd - thisStart\n var y = end - start\n var len = Math.min(x, y)\n\n var thisCopy = this.slice(thisStart, thisEnd)\n var targetCopy = target.slice(start, end)\n\n for (var i = 0; i < len; ++i) {\n if (thisCopy[i] !== targetCopy[i]) {\n x = thisCopy[i]\n y = targetCopy[i]\n break\n }\n }\n\n if (x < y) return -1\n if (y < x) return 1\n return 0\n}\n\n// Finds either the first index of `val` in `buffer` at offset >= `byteOffset`,\n// OR the last index of `val` in `buffer` at offset <= `byteOffset`.\n//\n// Arguments:\n// - buffer - a Buffer to search\n// - val - a string, Buffer, or number\n// - byteOffset - an index into `buffer`; will be clamped to an int32\n// - encoding - an optional encoding, relevant is val is a string\n// - dir - true for indexOf, false for lastIndexOf\nfunction bidirectionalIndexOf (buffer, val, byteOffset, encoding, dir) {\n // Empty buffer means no match\n if (buffer.length === 0) return -1\n\n // Normalize byteOffset\n if (typeof byteOffset === 'string') {\n encoding = byteOffset\n byteOffset = 0\n } else if (byteOffset > 0x7fffffff) {\n byteOffset = 0x7fffffff\n } else if (byteOffset < -0x80000000) {\n byteOffset = -0x80000000\n }\n byteOffset = +byteOffset // Coerce to Number.\n if (isNaN(byteOffset)) {\n // byteOffset: it it's undefined, null, NaN, \"foo\", etc, search whole buffer\n byteOffset = dir ? 0 : (buffer.length - 1)\n }\n\n // Normalize byteOffset: negative offsets start from the end of the buffer\n if (byteOffset < 0) byteOffset = buffer.length + byteOffset\n if (byteOffset >= buffer.length) {\n if (dir) return -1\n else byteOffset = buffer.length - 1\n } else if (byteOffset < 0) {\n if (dir) byteOffset = 0\n else return -1\n }\n\n // Normalize val\n if (typeof val === 'string') {\n val = Buffer.from(val, encoding)\n }\n\n // Finally, search either indexOf (if dir is true) or lastIndexOf\n if (Buffer.isBuffer(val)) {\n // Special case: looking for empty string/buffer always fails\n if (val.length === 0) {\n return -1\n }\n return arrayIndexOf(buffer, val, byteOffset, encoding, dir)\n } else if (typeof val === 'number') {\n val = val & 0xFF // Search for a byte value [0-255]\n if (Buffer.TYPED_ARRAY_SUPPORT &&\n typeof Uint8Array.prototype.indexOf === 'function') {\n if (dir) {\n return Uint8Array.prototype.indexOf.call(buffer, val, byteOffset)\n } else {\n return Uint8Array.prototype.lastIndexOf.call(buffer, val, byteOffset)\n }\n }\n return arrayIndexOf(buffer, [ val ], byteOffset, encoding, dir)\n }\n\n throw new TypeError('val must be string, number or Buffer')\n}\n\nfunction arrayIndexOf (arr, val, byteOffset, encoding, dir) {\n var indexSize = 1\n var arrLength = arr.length\n var valLength = val.length\n\n if (encoding !== undefined) {\n encoding = String(encoding).toLowerCase()\n if (encoding === 'ucs2' || encoding === 'ucs-2' ||\n encoding === 'utf16le' || encoding === 'utf-16le') {\n if (arr.length < 2 || val.length < 2) {\n return -1\n }\n indexSize = 2\n arrLength /= 2\n valLength /= 2\n byteOffset /= 2\n }\n }\n\n function read (buf, i) {\n if (indexSize === 1) {\n return buf[i]\n } else {\n return buf.readUInt16BE(i * indexSize)\n }\n }\n\n var i\n if (dir) {\n var foundIndex = -1\n for (i = byteOffset; i < arrLength; i++) {\n if (read(arr, i) === read(val, foundIndex === -1 ? 0 : i - foundIndex)) {\n if (foundIndex === -1) foundIndex = i\n if (i - foundIndex + 1 === valLength) return foundIndex * indexSize\n } else {\n if (foundIndex !== -1) i -= i - foundIndex\n foundIndex = -1\n }\n }\n } else {\n if (byteOffset + valLength > arrLength) byteOffset = arrLength - valLength\n for (i = byteOffset; i >= 0; i--) {\n var found = true\n for (var j = 0; j < valLength; j++) {\n if (read(arr, i + j) !== read(val, j)) {\n found = false\n break\n }\n }\n if (found) return i\n }\n }\n\n return -1\n}\n\nBuffer.prototype.includes = function includes (val, byteOffset, encoding) {\n return this.indexOf(val, byteOffset, encoding) !== -1\n}\n\nBuffer.prototype.indexOf = function indexOf (val, byteOffset, encoding) {\n return bidirectionalIndexOf(this, val, byteOffset, encoding, true)\n}\n\nBuffer.prototype.lastIndexOf = function lastIndexOf (val, byteOffset, encoding) {\n return bidirectionalIndexOf(this, val, byteOffset, encoding, false)\n}\n\nfunction hexWrite (buf, string, offset, length) {\n offset = Number(offset) || 0\n var remaining = buf.length - offset\n if (!length) {\n length = remaining\n } else {\n length = Number(length)\n if (length > remaining) {\n length = remaining\n }\n }\n\n // must be an even number of digits\n var strLen = string.length\n if (strLen % 2 !== 0) throw new TypeError('Invalid hex string')\n\n if (length > strLen / 2) {\n length = strLen / 2\n }\n for (var i = 0; i < length; ++i) {\n var parsed = parseInt(string.substr(i * 2, 2), 16)\n if (isNaN(parsed)) return i\n buf[offset + i] = parsed\n }\n return i\n}\n\nfunction utf8Write (buf, string, offset, length) {\n return blitBuffer(utf8ToBytes(string, buf.length - offset), buf, offset, length)\n}\n\nfunction asciiWrite (buf, string, offset, length) {\n return blitBuffer(asciiToBytes(string), buf, offset, length)\n}\n\nfunction latin1Write (buf, string, offset, length) {\n return asciiWrite(buf, string, offset, length)\n}\n\nfunction base64Write (buf, string, offset, length) {\n return blitBuffer(base64ToBytes(string), buf, offset, length)\n}\n\nfunction ucs2Write (buf, string, offset, length) {\n return blitBuffer(utf16leToBytes(string, buf.length - offset), buf, offset, length)\n}\n\nBuffer.prototype.write = function write (string, offset, length, encoding) {\n // Buffer#write(string)\n if (offset === undefined) {\n encoding = 'utf8'\n length = this.length\n offset = 0\n // Buffer#write(string, encoding)\n } else if (length === undefined && typeof offset === 'string') {\n encoding = offset\n length = this.length\n offset = 0\n // Buffer#write(string, offset[, length][, encoding])\n } else if (isFinite(offset)) {\n offset = offset | 0\n if (isFinite(length)) {\n length = length | 0\n if (encoding === undefined) encoding = 'utf8'\n } else {\n encoding = length\n length = undefined\n }\n // legacy write(string, encoding, offset, length) - remove in v0.13\n } else {\n throw new Error(\n 'Buffer.write(string, encoding, offset[, length]) is no longer supported'\n )\n }\n\n var remaining = this.length - offset\n if (length === undefined || length > remaining) length = remaining\n\n if ((string.length > 0 && (length < 0 || offset < 0)) || offset > this.length) {\n throw new RangeError('Attempt to write outside buffer bounds')\n }\n\n if (!encoding) encoding = 'utf8'\n\n var loweredCase = false\n for (;;) {\n switch (encoding) {\n case 'hex':\n return hexWrite(this, string, offset, length)\n\n case 'utf8':\n case 'utf-8':\n return utf8Write(this, string, offset, length)\n\n case 'ascii':\n return asciiWrite(this, string, offset, length)\n\n case 'latin1':\n case 'binary':\n return latin1Write(this, string, offset, length)\n\n case 'base64':\n // Warning: maxLength not taken into account in base64Write\n return base64Write(this, string, offset, length)\n\n case 'ucs2':\n case 'ucs-2':\n case 'utf16le':\n case 'utf-16le':\n return ucs2Write(this, string, offset, length)\n\n default:\n if (loweredCase) throw new TypeError('Unknown encoding: ' + encoding)\n encoding = ('' + encoding).toLowerCase()\n loweredCase = true\n }\n }\n}\n\nBuffer.prototype.toJSON = function toJSON () {\n return {\n type: 'Buffer',\n data: Array.prototype.slice.call(this._arr || this, 0)\n }\n}\n\nfunction base64Slice (buf, start, end) {\n if (start === 0 && end === buf.length) {\n return base64.fromByteArray(buf)\n } else {\n return base64.fromByteArray(buf.slice(start, end))\n }\n}\n\nfunction utf8Slice (buf, start, end) {\n end = Math.min(buf.length, end)\n var res = []\n\n var i = start\n while (i < end) {\n var firstByte = buf[i]\n var codePoint = null\n var bytesPerSequence = (firstByte > 0xEF) ? 4\n : (firstByte > 0xDF) ? 3\n : (firstByte > 0xBF) ? 2\n : 1\n\n if (i + bytesPerSequence <= end) {\n var secondByte, thirdByte, fourthByte, tempCodePoint\n\n switch (bytesPerSequence) {\n case 1:\n if (firstByte < 0x80) {\n codePoint = firstByte\n }\n break\n case 2:\n secondByte = buf[i + 1]\n if ((secondByte & 0xC0) === 0x80) {\n tempCodePoint = (firstByte & 0x1F) << 0x6 | (secondByte & 0x3F)\n if (tempCodePoint > 0x7F) {\n codePoint = tempCodePoint\n }\n }\n break\n case 3:\n secondByte = buf[i + 1]\n thirdByte = buf[i + 2]\n if ((secondByte & 0xC0) === 0x80 && (thirdByte & 0xC0) === 0x80) {\n tempCodePoint = (firstByte & 0xF) << 0xC | (secondByte & 0x3F) << 0x6 | (thirdByte & 0x3F)\n if (tempCodePoint > 0x7FF && (tempCodePoint < 0xD800 || tempCodePoint > 0xDFFF)) {\n codePoint = tempCodePoint\n }\n }\n break\n case 4:\n secondByte = buf[i + 1]\n thirdByte = buf[i + 2]\n fourthByte = buf[i + 3]\n if ((secondByte & 0xC0) === 0x80 && (thirdByte & 0xC0) === 0x80 && (fourthByte & 0xC0) === 0x80) {\n tempCodePoint = (firstByte & 0xF) << 0x12 | (secondByte & 0x3F) << 0xC | (thirdByte & 0x3F) << 0x6 | (fourthByte & 0x3F)\n if (tempCodePoint > 0xFFFF && tempCodePoint < 0x110000) {\n codePoint = tempCodePoint\n }\n }\n }\n }\n\n if (codePoint === null) {\n // we did not generate a valid codePoint so insert a\n // replacement char (U+FFFD) and advance only 1 byte\n codePoint = 0xFFFD\n bytesPerSequence = 1\n } else if (codePoint > 0xFFFF) {\n // encode to utf16 (surrogate pair dance)\n codePoint -= 0x10000\n res.push(codePoint >>> 10 & 0x3FF | 0xD800)\n codePoint = 0xDC00 | codePoint & 0x3FF\n }\n\n res.push(codePoint)\n i += bytesPerSequence\n }\n\n return decodeCodePointsArray(res)\n}\n\n// Based on http://stackoverflow.com/a/22747272/680742, the browser with\n// the lowest limit is Chrome, with 0x10000 args.\n// We go 1 magnitude less, for safety\nvar MAX_ARGUMENTS_LENGTH = 0x1000\n\nfunction decodeCodePointsArray (codePoints) {\n var len = codePoints.length\n if (len <= MAX_ARGUMENTS_LENGTH) {\n return String.fromCharCode.apply(String, codePoints) // avoid extra slice()\n }\n\n // Decode in chunks to avoid \"call stack size exceeded\".\n var res = ''\n var i = 0\n while (i < len) {\n res += String.fromCharCode.apply(\n String,\n codePoints.slice(i, i += MAX_ARGUMENTS_LENGTH)\n )\n }\n return res\n}\n\nfunction asciiSlice (buf, start, end) {\n var ret = ''\n end = Math.min(buf.length, end)\n\n for (var i = start; i < end; ++i) {\n ret += String.fromCharCode(buf[i] & 0x7F)\n }\n return ret\n}\n\nfunction latin1Slice (buf, start, end) {\n var ret = ''\n end = Math.min(buf.length, end)\n\n for (var i = start; i < end; ++i) {\n ret += String.fromCharCode(buf[i])\n }\n return ret\n}\n\nfunction hexSlice (buf, start, end) {\n var len = buf.length\n\n if (!start || start < 0) start = 0\n if (!end || end < 0 || end > len) end = len\n\n var out = ''\n for (var i = start; i < end; ++i) {\n out += toHex(buf[i])\n }\n return out\n}\n\nfunction utf16leSlice (buf, start, end) {\n var bytes = buf.slice(start, end)\n var res = ''\n for (var i = 0; i < bytes.length; i += 2) {\n res += String.fromCharCode(bytes[i] + bytes[i + 1] * 256)\n }\n return res\n}\n\nBuffer.prototype.slice = function slice (start, end) {\n var len = this.length\n start = ~~start\n end = end === undefined ? len : ~~end\n\n if (start < 0) {\n start += len\n if (start < 0) start = 0\n } else if (start > len) {\n start = len\n }\n\n if (end < 0) {\n end += len\n if (end < 0) end = 0\n } else if (end > len) {\n end = len\n }\n\n if (end < start) end = start\n\n var newBuf\n if (Buffer.TYPED_ARRAY_SUPPORT) {\n newBuf = this.subarray(start, end)\n newBuf.__proto__ = Buffer.prototype\n } else {\n var sliceLen = end - start\n newBuf = new Buffer(sliceLen, undefined)\n for (var i = 0; i < sliceLen; ++i) {\n newBuf[i] = this[i + start]\n }\n }\n\n return newBuf\n}\n\n/*\n * Need to make sure that buffer isn't trying to write out of bounds.\n */\nfunction checkOffset (offset, ext, length) {\n if ((offset % 1) !== 0 || offset < 0) throw new RangeError('offset is not uint')\n if (offset + ext > length) throw new RangeError('Trying to access beyond buffer length')\n}\n\nBuffer.prototype.readUIntLE = function readUIntLE (offset, byteLength, noAssert) {\n offset = offset | 0\n byteLength = byteLength | 0\n if (!noAssert) checkOffset(offset, byteLength, this.length)\n\n var val = this[offset]\n var mul = 1\n var i = 0\n while (++i < byteLength && (mul *= 0x100)) {\n val += this[offset + i] * mul\n }\n\n return val\n}\n\nBuffer.prototype.readUIntBE = function readUIntBE (offset, byteLength, noAssert) {\n offset = offset | 0\n byteLength = byteLength | 0\n if (!noAssert) {\n checkOffset(offset, byteLength, this.length)\n }\n\n var val = this[offset + --byteLength]\n var mul = 1\n while (byteLength > 0 && (mul *= 0x100)) {\n val += this[offset + --byteLength] * mul\n }\n\n return val\n}\n\nBuffer.prototype.readUInt8 = function readUInt8 (offset, noAssert) {\n if (!noAssert) checkOffset(offset, 1, this.length)\n return this[offset]\n}\n\nBuffer.prototype.readUInt16LE = function readUInt16LE (offset, noAssert) {\n if (!noAssert) checkOffset(offset, 2, this.length)\n return this[offset] | (this[offset + 1] << 8)\n}\n\nBuffer.prototype.readUInt16BE = function readUInt16BE (offset, noAssert) {\n if (!noAssert) checkOffset(offset, 2, this.length)\n return (this[offset] << 8) | this[offset + 1]\n}\n\nBuffer.prototype.readUInt32LE = function readUInt32LE (offset, noAssert) {\n if (!noAssert) checkOffset(offset, 4, this.length)\n\n return ((this[offset]) |\n (this[offset + 1] << 8) |\n (this[offset + 2] << 16)) +\n (this[offset + 3] * 0x1000000)\n}\n\nBuffer.prototype.readUInt32BE = function readUInt32BE (offset, noAssert) {\n if (!noAssert) checkOffset(offset, 4, this.length)\n\n return (this[offset] * 0x1000000) +\n ((this[offset + 1] << 16) |\n (this[offset + 2] << 8) |\n this[offset + 3])\n}\n\nBuffer.prototype.readIntLE = function readIntLE (offset, byteLength, noAssert) {\n offset = offset | 0\n byteLength = byteLength | 0\n if (!noAssert) checkOffset(offset, byteLength, this.length)\n\n var val = this[offset]\n var mul = 1\n var i = 0\n while (++i < byteLength && (mul *= 0x100)) {\n val += this[offset + i] * mul\n }\n mul *= 0x80\n\n if (val >= mul) val -= Math.pow(2, 8 * byteLength)\n\n return val\n}\n\nBuffer.prototype.readIntBE = function readIntBE (offset, byteLength, noAssert) {\n offset = offset | 0\n byteLength = byteLength | 0\n if (!noAssert) checkOffset(offset, byteLength, this.length)\n\n var i = byteLength\n var mul = 1\n var val = this[offset + --i]\n while (i > 0 && (mul *= 0x100)) {\n val += this[offset + --i] * mul\n }\n mul *= 0x80\n\n if (val >= mul) val -= Math.pow(2, 8 * byteLength)\n\n return val\n}\n\nBuffer.prototype.readInt8 = function readInt8 (offset, noAssert) {\n if (!noAssert) checkOffset(offset, 1, this.length)\n if (!(this[offset] & 0x80)) return (this[offset])\n return ((0xff - this[offset] + 1) * -1)\n}\n\nBuffer.prototype.readInt16LE = function readInt16LE (offset, noAssert) {\n if (!noAssert) checkOffset(offset, 2, this.length)\n var val = this[offset] | (this[offset + 1] << 8)\n return (val & 0x8000) ? val | 0xFFFF0000 : val\n}\n\nBuffer.prototype.readInt16BE = function readInt16BE (offset, noAssert) {\n if (!noAssert) checkOffset(offset, 2, this.length)\n var val = this[offset + 1] | (this[offset] << 8)\n return (val & 0x8000) ? val | 0xFFFF0000 : val\n}\n\nBuffer.prototype.readInt32LE = function readInt32LE (offset, noAssert) {\n if (!noAssert) checkOffset(offset, 4, this.length)\n\n return (this[offset]) |\n (this[offset + 1] << 8) |\n (this[offset + 2] << 16) |\n (this[offset + 3] << 24)\n}\n\nBuffer.prototype.readInt32BE = function readInt32BE (offset, noAssert) {\n if (!noAssert) checkOffset(offset, 4, this.length)\n\n return (this[offset] << 24) |\n (this[offset + 1] << 16) |\n (this[offset + 2] << 8) |\n (this[offset + 3])\n}\n\nBuffer.prototype.readFloatLE = function readFloatLE (offset, noAssert) {\n if (!noAssert) checkOffset(offset, 4, this.length)\n return ieee754.read(this, offset, true, 23, 4)\n}\n\nBuffer.prototype.readFloatBE = function readFloatBE (offset, noAssert) {\n if (!noAssert) checkOffset(offset, 4, this.length)\n return ieee754.read(this, offset, false, 23, 4)\n}\n\nBuffer.prototype.readDoubleLE = function readDoubleLE (offset, noAssert) {\n if (!noAssert) checkOffset(offset, 8, this.length)\n return ieee754.read(this, offset, true, 52, 8)\n}\n\nBuffer.prototype.readDoubleBE = function readDoubleBE (offset, noAssert) {\n if (!noAssert) checkOffset(offset, 8, this.length)\n return ieee754.read(this, offset, false, 52, 8)\n}\n\nfunction checkInt (buf, value, offset, ext, max, min) {\n if (!Buffer.isBuffer(buf)) throw new TypeError('\"buffer\" argument must be a Buffer instance')\n if (value > max || value < min) throw new RangeError('\"value\" argument is out of bounds')\n if (offset + ext > buf.length) throw new RangeError('Index out of range')\n}\n\nBuffer.prototype.writeUIntLE = function writeUIntLE (value, offset, byteLength, noAssert) {\n value = +value\n offset = offset | 0\n byteLength = byteLength | 0\n if (!noAssert) {\n var maxBytes = Math.pow(2, 8 * byteLength) - 1\n checkInt(this, value, offset, byteLength, maxBytes, 0)\n }\n\n var mul = 1\n var i = 0\n this[offset] = value & 0xFF\n while (++i < byteLength && (mul *= 0x100)) {\n this[offset + i] = (value / mul) & 0xFF\n }\n\n return offset + byteLength\n}\n\nBuffer.prototype.writeUIntBE = function writeUIntBE (value, offset, byteLength, noAssert) {\n value = +value\n offset = offset | 0\n byteLength = byteLength | 0\n if (!noAssert) {\n var maxBytes = Math.pow(2, 8 * byteLength) - 1\n checkInt(this, value, offset, byteLength, maxBytes, 0)\n }\n\n var i = byteLength - 1\n var mul = 1\n this[offset + i] = value & 0xFF\n while (--i >= 0 && (mul *= 0x100)) {\n this[offset + i] = (value / mul) & 0xFF\n }\n\n return offset + byteLength\n}\n\nBuffer.prototype.writeUInt8 = function writeUInt8 (value, offset, noAssert) {\n value = +value\n offset = offset | 0\n if (!noAssert) checkInt(this, value, offset, 1, 0xff, 0)\n if (!Buffer.TYPED_ARRAY_SUPPORT) value = Math.floor(value)\n this[offset] = (value & 0xff)\n return offset + 1\n}\n\nfunction objectWriteUInt16 (buf, value, offset, littleEndian) {\n if (value < 0) value = 0xffff + value + 1\n for (var i = 0, j = Math.min(buf.length - offset, 2); i < j; ++i) {\n buf[offset + i] = (value & (0xff << (8 * (littleEndian ? i : 1 - i)))) >>>\n (littleEndian ? i : 1 - i) * 8\n }\n}\n\nBuffer.prototype.writeUInt16LE = function writeUInt16LE (value, offset, noAssert) {\n value = +value\n offset = offset | 0\n if (!noAssert) checkInt(this, value, offset, 2, 0xffff, 0)\n if (Buffer.TYPED_ARRAY_SUPPORT) {\n this[offset] = (value & 0xff)\n this[offset + 1] = (value >>> 8)\n } else {\n objectWriteUInt16(this, value, offset, true)\n }\n return offset + 2\n}\n\nBuffer.prototype.writeUInt16BE = function writeUInt16BE (value, offset, noAssert) {\n value = +value\n offset = offset | 0\n if (!noAssert) checkInt(this, value, offset, 2, 0xffff, 0)\n if (Buffer.TYPED_ARRAY_SUPPORT) {\n this[offset] = (value >>> 8)\n this[offset + 1] = (value & 0xff)\n } else {\n objectWriteUInt16(this, value, offset, false)\n }\n return offset + 2\n}\n\nfunction objectWriteUInt32 (buf, value, offset, littleEndian) {\n if (value < 0) value = 0xffffffff + value + 1\n for (var i = 0, j = Math.min(buf.length - offset, 4); i < j; ++i) {\n buf[offset + i] = (value >>> (littleEndian ? i : 3 - i) * 8) & 0xff\n }\n}\n\nBuffer.prototype.writeUInt32LE = function writeUInt32LE (value, offset, noAssert) {\n value = +value\n offset = offset | 0\n if (!noAssert) checkInt(this, value, offset, 4, 0xffffffff, 0)\n if (Buffer.TYPED_ARRAY_SUPPORT) {\n this[offset + 3] = (value >>> 24)\n this[offset + 2] = (value >>> 16)\n this[offset + 1] = (value >>> 8)\n this[offset] = (value & 0xff)\n } else {\n objectWriteUInt32(this, value, offset, true)\n }\n return offset + 4\n}\n\nBuffer.prototype.writeUInt32BE = function writeUInt32BE (value, offset, noAssert) {\n value = +value\n offset = offset | 0\n if (!noAssert) checkInt(this, value, offset, 4, 0xffffffff, 0)\n if (Buffer.TYPED_ARRAY_SUPPORT) {\n this[offset] = (value >>> 24)\n this[offset + 1] = (value >>> 16)\n this[offset + 2] = (value >>> 8)\n this[offset + 3] = (value & 0xff)\n } else {\n objectWriteUInt32(this, value, offset, false)\n }\n return offset + 4\n}\n\nBuffer.prototype.writeIntLE = function writeIntLE (value, offset, byteLength, noAssert) {\n value = +value\n offset = offset | 0\n if (!noAssert) {\n var limit = Math.pow(2, 8 * byteLength - 1)\n\n checkInt(this, value, offset, byteLength, limit - 1, -limit)\n }\n\n var i = 0\n var mul = 1\n var sub = 0\n this[offset] = value & 0xFF\n while (++i < byteLength && (mul *= 0x100)) {\n if (value < 0 && sub === 0 && this[offset + i - 1] !== 0) {\n sub = 1\n }\n this[offset + i] = ((value / mul) >> 0) - sub & 0xFF\n }\n\n return offset + byteLength\n}\n\nBuffer.prototype.writeIntBE = function writeIntBE (value, offset, byteLength, noAssert) {\n value = +value\n offset = offset | 0\n if (!noAssert) {\n var limit = Math.pow(2, 8 * byteLength - 1)\n\n checkInt(this, value, offset, byteLength, limit - 1, -limit)\n }\n\n var i = byteLength - 1\n var mul = 1\n var sub = 0\n this[offset + i] = value & 0xFF\n while (--i >= 0 && (mul *= 0x100)) {\n if (value < 0 && sub === 0 && this[offset + i + 1] !== 0) {\n sub = 1\n }\n this[offset + i] = ((value / mul) >> 0) - sub & 0xFF\n }\n\n return offset + byteLength\n}\n\nBuffer.prototype.writeInt8 = function writeInt8 (value, offset, noAssert) {\n value = +value\n offset = offset | 0\n if (!noAssert) checkInt(this, value, offset, 1, 0x7f, -0x80)\n if (!Buffer.TYPED_ARRAY_SUPPORT) value = Math.floor(value)\n if (value < 0) value = 0xff + value + 1\n this[offset] = (value & 0xff)\n return offset + 1\n}\n\nBuffer.prototype.writeInt16LE = function writeInt16LE (value, offset, noAssert) {\n value = +value\n offset = offset | 0\n if (!noAssert) checkInt(this, value, offset, 2, 0x7fff, -0x8000)\n if (Buffer.TYPED_ARRAY_SUPPORT) {\n this[offset] = (value & 0xff)\n this[offset + 1] = (value >>> 8)\n } else {\n objectWriteUInt16(this, value, offset, true)\n }\n return offset + 2\n}\n\nBuffer.prototype.writeInt16BE = function writeInt16BE (value, offset, noAssert) {\n value = +value\n offset = offset | 0\n if (!noAssert) checkInt(this, value, offset, 2, 0x7fff, -0x8000)\n if (Buffer.TYPED_ARRAY_SUPPORT) {\n this[offset] = (value >>> 8)\n this[offset + 1] = (value & 0xff)\n } else {\n objectWriteUInt16(this, value, offset, false)\n }\n return offset + 2\n}\n\nBuffer.prototype.writeInt32LE = function writeInt32LE (value, offset, noAssert) {\n value = +value\n offset = offset | 0\n if (!noAssert) checkInt(this, value, offset, 4, 0x7fffffff, -0x80000000)\n if (Buffer.TYPED_ARRAY_SUPPORT) {\n this[offset] = (value & 0xff)\n this[offset + 1] = (value >>> 8)\n this[offset + 2] = (value >>> 16)\n this[offset + 3] = (value >>> 24)\n } else {\n objectWriteUInt32(this, value, offset, true)\n }\n return offset + 4\n}\n\nBuffer.prototype.writeInt32BE = function writeInt32BE (value, offset, noAssert) {\n value = +value\n offset = offset | 0\n if (!noAssert) checkInt(this, value, offset, 4, 0x7fffffff, -0x80000000)\n if (value < 0) value = 0xffffffff + value + 1\n if (Buffer.TYPED_ARRAY_SUPPORT) {\n this[offset] = (value >>> 24)\n this[offset + 1] = (value >>> 16)\n this[offset + 2] = (value >>> 8)\n this[offset + 3] = (value & 0xff)\n } else {\n objectWriteUInt32(this, value, offset, false)\n }\n return offset + 4\n}\n\nfunction checkIEEE754 (buf, value, offset, ext, max, min) {\n if (offset + ext > buf.length) throw new RangeError('Index out of range')\n if (offset < 0) throw new RangeError('Index out of range')\n}\n\nfunction writeFloat (buf, value, offset, littleEndian, noAssert) {\n if (!noAssert) {\n checkIEEE754(buf, value, offset, 4, 3.4028234663852886e+38, -3.4028234663852886e+38)\n }\n ieee754.write(buf, value, offset, littleEndian, 23, 4)\n return offset + 4\n}\n\nBuffer.prototype.writeFloatLE = function writeFloatLE (value, offset, noAssert) {\n return writeFloat(this, value, offset, true, noAssert)\n}\n\nBuffer.prototype.writeFloatBE = function writeFloatBE (value, offset, noAssert) {\n return writeFloat(this, value, offset, false, noAssert)\n}\n\nfunction writeDouble (buf, value, offset, littleEndian, noAssert) {\n if (!noAssert) {\n checkIEEE754(buf, value, offset, 8, 1.7976931348623157E+308, -1.7976931348623157E+308)\n }\n ieee754.write(buf, value, offset, littleEndian, 52, 8)\n return offset + 8\n}\n\nBuffer.prototype.writeDoubleLE = function writeDoubleLE (value, offset, noAssert) {\n return writeDouble(this, value, offset, true, noAssert)\n}\n\nBuffer.prototype.writeDoubleBE = function writeDoubleBE (value, offset, noAssert) {\n return writeDouble(this, value, offset, false, noAssert)\n}\n\n// copy(targetBuffer, targetStart=0, sourceStart=0, sourceEnd=buffer.length)\nBuffer.prototype.copy = function copy (target, targetStart, start, end) {\n if (!start) start = 0\n if (!end && end !== 0) end = this.length\n if (targetStart >= target.length) targetStart = target.length\n if (!targetStart) targetStart = 0\n if (end > 0 && end < start) end = start\n\n // Copy 0 bytes; we're done\n if (end === start) return 0\n if (target.length === 0 || this.length === 0) return 0\n\n // Fatal error conditions\n if (targetStart < 0) {\n throw new RangeError('targetStart out of bounds')\n }\n if (start < 0 || start >= this.length) throw new RangeError('sourceStart out of bounds')\n if (end < 0) throw new RangeError('sourceEnd out of bounds')\n\n // Are we oob?\n if (end > this.length) end = this.length\n if (target.length - targetStart < end - start) {\n end = target.length - targetStart + start\n }\n\n var len = end - start\n var i\n\n if (this === target && start < targetStart && targetStart < end) {\n // descending copy from end\n for (i = len - 1; i >= 0; --i) {\n target[i + targetStart] = this[i + start]\n }\n } else if (len < 1000 || !Buffer.TYPED_ARRAY_SUPPORT) {\n // ascending copy from start\n for (i = 0; i < len; ++i) {\n target[i + targetStart] = this[i + start]\n }\n } else {\n Uint8Array.prototype.set.call(\n target,\n this.subarray(start, start + len),\n targetStart\n )\n }\n\n return len\n}\n\n// Usage:\n// buffer.fill(number[, offset[, end]])\n// buffer.fill(buffer[, offset[, end]])\n// buffer.fill(string[, offset[, end]][, encoding])\nBuffer.prototype.fill = function fill (val, start, end, encoding) {\n // Handle string cases:\n if (typeof val === 'string') {\n if (typeof start === 'string') {\n encoding = start\n start = 0\n end = this.length\n } else if (typeof end === 'string') {\n encoding = end\n end = this.length\n }\n if (val.length === 1) {\n var code = val.charCodeAt(0)\n if (code < 256) {\n val = code\n }\n }\n if (encoding !== undefined && typeof encoding !== 'string') {\n throw new TypeError('encoding must be a string')\n }\n if (typeof encoding === 'string' && !Buffer.isEncoding(encoding)) {\n throw new TypeError('Unknown encoding: ' + encoding)\n }\n } else if (typeof val === 'number') {\n val = val & 255\n }\n\n // Invalid ranges are not set to a default, so can range check early.\n if (start < 0 || this.length < start || this.length < end) {\n throw new RangeError('Out of range index')\n }\n\n if (end <= start) {\n return this\n }\n\n start = start >>> 0\n end = end === undefined ? this.length : end >>> 0\n\n if (!val) val = 0\n\n var i\n if (typeof val === 'number') {\n for (i = start; i < end; ++i) {\n this[i] = val\n }\n } else {\n var bytes = Buffer.isBuffer(val)\n ? val\n : utf8ToBytes(new Buffer(val, encoding).toString())\n var len = bytes.length\n for (i = 0; i < end - start; ++i) {\n this[i + start] = bytes[i % len]\n }\n }\n\n return this\n}\n\n// HELPER FUNCTIONS\n// ================\n\nvar INVALID_BASE64_RE = /[^+\\/0-9A-Za-z-_]/g\n\nfunction base64clean (str) {\n // Node strips out invalid characters like \\n and \\t from the string, base64-js does not\n str = stringtrim(str).replace(INVALID_BASE64_RE, '')\n // Node converts strings with length < 2 to ''\n if (str.length < 2) return ''\n // Node allows for non-padded base64 strings (missing trailing ===), base64-js does not\n while (str.length % 4 !== 0) {\n str = str + '='\n }\n return str\n}\n\nfunction stringtrim (str) {\n if (str.trim) return str.trim()\n return str.replace(/^\\s+|\\s+$/g, '')\n}\n\nfunction toHex (n) {\n if (n < 16) return '0' + n.toString(16)\n return n.toString(16)\n}\n\nfunction utf8ToBytes (string, units) {\n units = units || Infinity\n var codePoint\n var length = string.length\n var leadSurrogate = null\n var bytes = []\n\n for (var i = 0; i < length; ++i) {\n codePoint = string.charCodeAt(i)\n\n // is surrogate component\n if (codePoint > 0xD7FF && codePoint < 0xE000) {\n // last char was a lead\n if (!leadSurrogate) {\n // no lead yet\n if (codePoint > 0xDBFF) {\n // unexpected trail\n if ((units -= 3) > -1) bytes.push(0xEF, 0xBF, 0xBD)\n continue\n } else if (i + 1 === length) {\n // unpaired lead\n if ((units -= 3) > -1) bytes.push(0xEF, 0xBF, 0xBD)\n continue\n }\n\n // valid lead\n leadSurrogate = codePoint\n\n continue\n }\n\n // 2 leads in a row\n if (codePoint < 0xDC00) {\n if ((units -= 3) > -1) bytes.push(0xEF, 0xBF, 0xBD)\n leadSurrogate = codePoint\n continue\n }\n\n // valid surrogate pair\n codePoint = (leadSurrogate - 0xD800 << 10 | codePoint - 0xDC00) + 0x10000\n } else if (leadSurrogate) {\n // valid bmp char, but last char was a lead\n if ((units -= 3) > -1) bytes.push(0xEF, 0xBF, 0xBD)\n }\n\n leadSurrogate = null\n\n // encode utf8\n if (codePoint < 0x80) {\n if ((units -= 1) < 0) break\n bytes.push(codePoint)\n } else if (codePoint < 0x800) {\n if ((units -= 2) < 0) break\n bytes.push(\n codePoint >> 0x6 | 0xC0,\n codePoint & 0x3F | 0x80\n )\n } else if (codePoint < 0x10000) {\n if ((units -= 3) < 0) break\n bytes.push(\n codePoint >> 0xC | 0xE0,\n codePoint >> 0x6 & 0x3F | 0x80,\n codePoint & 0x3F | 0x80\n )\n } else if (codePoint < 0x110000) {\n if ((units -= 4) < 0) break\n bytes.push(\n codePoint >> 0x12 | 0xF0,\n codePoint >> 0xC & 0x3F | 0x80,\n codePoint >> 0x6 & 0x3F | 0x80,\n codePoint & 0x3F | 0x80\n )\n } else {\n throw new Error('Invalid code point')\n }\n }\n\n return bytes\n}\n\nfunction asciiToBytes (str) {\n var byteArray = []\n for (var i = 0; i < str.length; ++i) {\n // Node's code seems to be doing this and not & 0x7F..\n byteArray.push(str.charCodeAt(i) & 0xFF)\n }\n return byteArray\n}\n\nfunction utf16leToBytes (str, units) {\n var c, hi, lo\n var byteArray = []\n for (var i = 0; i < str.length; ++i) {\n if ((units -= 2) < 0) break\n\n c = str.charCodeAt(i)\n hi = c >> 8\n lo = c % 256\n byteArray.push(lo)\n byteArray.push(hi)\n }\n\n return byteArray\n}\n\nfunction base64ToBytes (str) {\n return base64.toByteArray(base64clean(str))\n}\n\nfunction blitBuffer (src, dst, offset, length) {\n for (var i = 0; i < length; ++i) {\n if ((i + offset >= dst.length) || (i >= src.length)) break\n dst[i + offset] = src[i]\n }\n return i\n}\n\nfunction isnan (val) {\n return val !== val // eslint-disable-line no-self-compare\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(11)))\n\n/***/ }),\n/* 1 */\n/***/ (function(module, exports) {\n\nif (typeof Object.create === 'function') {\n // implementation from standard node.js 'util' module\n module.exports = function inherits(ctor, superCtor) {\n ctor.super_ = superCtor\n ctor.prototype = Object.create(superCtor.prototype, {\n constructor: {\n value: ctor,\n enumerable: false,\n writable: true,\n configurable: true\n }\n });\n };\n} else {\n // old school shim for old browsers\n module.exports = function inherits(ctor, superCtor) {\n ctor.super_ = superCtor\n var TempCtor = function () {}\n TempCtor.prototype = superCtor.prototype\n ctor.prototype = new TempCtor()\n ctor.prototype.constructor = ctor\n }\n}\n\n\n/***/ }),\n/* 2 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(module) {(function (module, exports) {\n 'use strict';\n\n // Utils\n function assert (val, msg) {\n if (!val) throw new Error(msg || 'Assertion failed');\n }\n\n // Could use `inherits` module, but don't want to move from single file\n // architecture yet.\n function inherits (ctor, superCtor) {\n ctor.super_ = superCtor;\n var TempCtor = function () {};\n TempCtor.prototype = superCtor.prototype;\n ctor.prototype = new TempCtor();\n ctor.prototype.constructor = ctor;\n }\n\n // BN\n\n function BN (number, base, endian) {\n if (BN.isBN(number)) {\n return number;\n }\n\n this.negative = 0;\n this.words = null;\n this.length = 0;\n\n // Reduction context\n this.red = null;\n\n if (number !== null) {\n if (base === 'le' || base === 'be') {\n endian = base;\n base = 10;\n }\n\n this._init(number || 0, base || 10, endian || 'be');\n }\n }\n if (typeof module === 'object') {\n module.exports = BN;\n } else {\n exports.BN = BN;\n }\n\n BN.BN = BN;\n BN.wordSize = 26;\n\n var Buffer;\n try {\n Buffer = __webpack_require__(0).Buffer;\n } catch (e) {\n }\n\n BN.isBN = function isBN (num) {\n if (num instanceof BN) {\n return true;\n }\n\n return num !== null && typeof num === 'object' &&\n num.constructor.wordSize === BN.wordSize && Array.isArray(num.words);\n };\n\n BN.max = function max (left, right) {\n if (left.cmp(right) > 0) return left;\n return right;\n };\n\n BN.min = function min (left, right) {\n if (left.cmp(right) < 0) return left;\n return right;\n };\n\n BN.prototype._init = function init (number, base, endian) {\n if (typeof number === 'number') {\n return this._initNumber(number, base, endian);\n }\n\n if (typeof number === 'object') {\n return this._initArray(number, base, endian);\n }\n\n if (base === 'hex') {\n base = 16;\n }\n assert(base === (base | 0) && base >= 2 && base <= 36);\n\n number = number.toString().replace(/\\s+/g, '');\n var start = 0;\n if (number[0] === '-') {\n start++;\n }\n\n if (base === 16) {\n this._parseHex(number, start);\n } else {\n this._parseBase(number, base, start);\n }\n\n if (number[0] === '-') {\n this.negative = 1;\n }\n\n this.strip();\n\n if (endian !== 'le') return;\n\n this._initArray(this.toArray(), base, endian);\n };\n\n BN.prototype._initNumber = function _initNumber (number, base, endian) {\n if (number < 0) {\n this.negative = 1;\n number = -number;\n }\n if (number < 0x4000000) {\n this.words = [ number & 0x3ffffff ];\n this.length = 1;\n } else if (number < 0x10000000000000) {\n this.words = [\n number & 0x3ffffff,\n (number / 0x4000000) & 0x3ffffff\n ];\n this.length = 2;\n } else {\n assert(number < 0x20000000000000); // 2 ^ 53 (unsafe)\n this.words = [\n number & 0x3ffffff,\n (number / 0x4000000) & 0x3ffffff,\n 1\n ];\n this.length = 3;\n }\n\n if (endian !== 'le') return;\n\n // Reverse the bytes\n this._initArray(this.toArray(), base, endian);\n };\n\n BN.prototype._initArray = function _initArray (number, base, endian) {\n // Perhaps a Uint8Array\n assert(typeof number.length === 'number');\n if (number.length <= 0) {\n this.words = [ 0 ];\n this.length = 1;\n return this;\n }\n\n this.length = Math.ceil(number.length / 3);\n this.words = new Array(this.length);\n for (var i = 0; i < this.length; i++) {\n this.words[i] = 0;\n }\n\n var j, w;\n var off = 0;\n if (endian === 'be') {\n for (i = number.length - 1, j = 0; i >= 0; i -= 3) {\n w = number[i] | (number[i - 1] << 8) | (number[i - 2] << 16);\n this.words[j] |= (w << off) & 0x3ffffff;\n this.words[j + 1] = (w >>> (26 - off)) & 0x3ffffff;\n off += 24;\n if (off >= 26) {\n off -= 26;\n j++;\n }\n }\n } else if (endian === 'le') {\n for (i = 0, j = 0; i < number.length; i += 3) {\n w = number[i] | (number[i + 1] << 8) | (number[i + 2] << 16);\n this.words[j] |= (w << off) & 0x3ffffff;\n this.words[j + 1] = (w >>> (26 - off)) & 0x3ffffff;\n off += 24;\n if (off >= 26) {\n off -= 26;\n j++;\n }\n }\n }\n return this.strip();\n };\n\n function parseHex (str, start, end) {\n var r = 0;\n var len = Math.min(str.length, end);\n for (var i = start; i < len; i++) {\n var c = str.charCodeAt(i) - 48;\n\n r <<= 4;\n\n // 'a' - 'f'\n if (c >= 49 && c <= 54) {\n r |= c - 49 + 0xa;\n\n // 'A' - 'F'\n } else if (c >= 17 && c <= 22) {\n r |= c - 17 + 0xa;\n\n // '0' - '9'\n } else {\n r |= c & 0xf;\n }\n }\n return r;\n }\n\n BN.prototype._parseHex = function _parseHex (number, start) {\n // Create possibly bigger array to ensure that it fits the number\n this.length = Math.ceil((number.length - start) / 6);\n this.words = new Array(this.length);\n for (var i = 0; i < this.length; i++) {\n this.words[i] = 0;\n }\n\n var j, w;\n // Scan 24-bit chunks and add them to the number\n var off = 0;\n for (i = number.length - 6, j = 0; i >= start; i -= 6) {\n w = parseHex(number, i, i + 6);\n this.words[j] |= (w << off) & 0x3ffffff;\n // NOTE: `0x3fffff` is intentional here, 26bits max shift + 24bit hex limb\n this.words[j + 1] |= w >>> (26 - off) & 0x3fffff;\n off += 24;\n if (off >= 26) {\n off -= 26;\n j++;\n }\n }\n if (i + 6 !== start) {\n w = parseHex(number, start, i + 6);\n this.words[j] |= (w << off) & 0x3ffffff;\n this.words[j + 1] |= w >>> (26 - off) & 0x3fffff;\n }\n this.strip();\n };\n\n function parseBase (str, start, end, mul) {\n var r = 0;\n var len = Math.min(str.length, end);\n for (var i = start; i < len; i++) {\n var c = str.charCodeAt(i) - 48;\n\n r *= mul;\n\n // 'a'\n if (c >= 49) {\n r += c - 49 + 0xa;\n\n // 'A'\n } else if (c >= 17) {\n r += c - 17 + 0xa;\n\n // '0' - '9'\n } else {\n r += c;\n }\n }\n return r;\n }\n\n BN.prototype._parseBase = function _parseBase (number, base, start) {\n // Initialize as zero\n this.words = [ 0 ];\n this.length = 1;\n\n // Find length of limb in base\n for (var limbLen = 0, limbPow = 1; limbPow <= 0x3ffffff; limbPow *= base) {\n limbLen++;\n }\n limbLen--;\n limbPow = (limbPow / base) | 0;\n\n var total = number.length - start;\n var mod = total % limbLen;\n var end = Math.min(total, total - mod) + start;\n\n var word = 0;\n for (var i = start; i < end; i += limbLen) {\n word = parseBase(number, i, i + limbLen, base);\n\n this.imuln(limbPow);\n if (this.words[0] + word < 0x4000000) {\n this.words[0] += word;\n } else {\n this._iaddn(word);\n }\n }\n\n if (mod !== 0) {\n var pow = 1;\n word = parseBase(number, i, number.length, base);\n\n for (i = 0; i < mod; i++) {\n pow *= base;\n }\n\n this.imuln(pow);\n if (this.words[0] + word < 0x4000000) {\n this.words[0] += word;\n } else {\n this._iaddn(word);\n }\n }\n };\n\n BN.prototype.copy = function copy (dest) {\n dest.words = new Array(this.length);\n for (var i = 0; i < this.length; i++) {\n dest.words[i] = this.words[i];\n }\n dest.length = this.length;\n dest.negative = this.negative;\n dest.red = this.red;\n };\n\n BN.prototype.clone = function clone () {\n var r = new BN(null);\n this.copy(r);\n return r;\n };\n\n BN.prototype._expand = function _expand (size) {\n while (this.length < size) {\n this.words[this.length++] = 0;\n }\n return this;\n };\n\n // Remove leading `0` from `this`\n BN.prototype.strip = function strip () {\n while (this.length > 1 && this.words[this.length - 1] === 0) {\n this.length--;\n }\n return this._normSign();\n };\n\n BN.prototype._normSign = function _normSign () {\n // -0 = 0\n if (this.length === 1 && this.words[0] === 0) {\n this.negative = 0;\n }\n return this;\n };\n\n BN.prototype.inspect = function inspect () {\n return (this.red ? '';\n };\n\n /*\n\n var zeros = [];\n var groupSizes = [];\n var groupBases = [];\n\n var s = '';\n var i = -1;\n while (++i < BN.wordSize) {\n zeros[i] = s;\n s += '0';\n }\n groupSizes[0] = 0;\n groupSizes[1] = 0;\n groupBases[0] = 0;\n groupBases[1] = 0;\n var base = 2 - 1;\n while (++base < 36 + 1) {\n var groupSize = 0;\n var groupBase = 1;\n while (groupBase < (1 << BN.wordSize) / base) {\n groupBase *= base;\n groupSize += 1;\n }\n groupSizes[base] = groupSize;\n groupBases[base] = groupBase;\n }\n\n */\n\n var zeros = [\n '',\n '0',\n '00',\n '000',\n '0000',\n '00000',\n '000000',\n '0000000',\n '00000000',\n '000000000',\n '0000000000',\n '00000000000',\n '000000000000',\n '0000000000000',\n '00000000000000',\n '000000000000000',\n '0000000000000000',\n '00000000000000000',\n '000000000000000000',\n '0000000000000000000',\n '00000000000000000000',\n '000000000000000000000',\n '0000000000000000000000',\n '00000000000000000000000',\n '000000000000000000000000',\n '0000000000000000000000000'\n ];\n\n var groupSizes = [\n 0, 0,\n 25, 16, 12, 11, 10, 9, 8,\n 8, 7, 7, 7, 7, 6, 6,\n 6, 6, 6, 6, 6, 5, 5,\n 5, 5, 5, 5, 5, 5, 5,\n 5, 5, 5, 5, 5, 5, 5\n ];\n\n var groupBases = [\n 0, 0,\n 33554432, 43046721, 16777216, 48828125, 60466176, 40353607, 16777216,\n 43046721, 10000000, 19487171, 35831808, 62748517, 7529536, 11390625,\n 16777216, 24137569, 34012224, 47045881, 64000000, 4084101, 5153632,\n 6436343, 7962624, 9765625, 11881376, 14348907, 17210368, 20511149,\n 24300000, 28629151, 33554432, 39135393, 45435424, 52521875, 60466176\n ];\n\n BN.prototype.toString = function toString (base, padding) {\n base = base || 10;\n padding = padding | 0 || 1;\n\n var out;\n if (base === 16 || base === 'hex') {\n out = '';\n var off = 0;\n var carry = 0;\n for (var i = 0; i < this.length; i++) {\n var w = this.words[i];\n var word = (((w << off) | carry) & 0xffffff).toString(16);\n carry = (w >>> (24 - off)) & 0xffffff;\n if (carry !== 0 || i !== this.length - 1) {\n out = zeros[6 - word.length] + word + out;\n } else {\n out = word + out;\n }\n off += 2;\n if (off >= 26) {\n off -= 26;\n i--;\n }\n }\n if (carry !== 0) {\n out = carry.toString(16) + out;\n }\n while (out.length % padding !== 0) {\n out = '0' + out;\n }\n if (this.negative !== 0) {\n out = '-' + out;\n }\n return out;\n }\n\n if (base === (base | 0) && base >= 2 && base <= 36) {\n // var groupSize = Math.floor(BN.wordSize * Math.LN2 / Math.log(base));\n var groupSize = groupSizes[base];\n // var groupBase = Math.pow(base, groupSize);\n var groupBase = groupBases[base];\n out = '';\n var c = this.clone();\n c.negative = 0;\n while (!c.isZero()) {\n var r = c.modn(groupBase).toString(base);\n c = c.idivn(groupBase);\n\n if (!c.isZero()) {\n out = zeros[groupSize - r.length] + r + out;\n } else {\n out = r + out;\n }\n }\n if (this.isZero()) {\n out = '0' + out;\n }\n while (out.length % padding !== 0) {\n out = '0' + out;\n }\n if (this.negative !== 0) {\n out = '-' + out;\n }\n return out;\n }\n\n assert(false, 'Base should be between 2 and 36');\n };\n\n BN.prototype.toNumber = function toNumber () {\n var ret = this.words[0];\n if (this.length === 2) {\n ret += this.words[1] * 0x4000000;\n } else if (this.length === 3 && this.words[2] === 0x01) {\n // NOTE: at this stage it is known that the top bit is set\n ret += 0x10000000000000 + (this.words[1] * 0x4000000);\n } else if (this.length > 2) {\n assert(false, 'Number can only safely store up to 53 bits');\n }\n return (this.negative !== 0) ? -ret : ret;\n };\n\n BN.prototype.toJSON = function toJSON () {\n return this.toString(16);\n };\n\n BN.prototype.toBuffer = function toBuffer (endian, length) {\n assert(typeof Buffer !== 'undefined');\n return this.toArrayLike(Buffer, endian, length);\n };\n\n BN.prototype.toArray = function toArray (endian, length) {\n return this.toArrayLike(Array, endian, length);\n };\n\n BN.prototype.toArrayLike = function toArrayLike (ArrayType, endian, length) {\n var byteLength = this.byteLength();\n var reqLength = length || Math.max(1, byteLength);\n assert(byteLength <= reqLength, 'byte array longer than desired length');\n assert(reqLength > 0, 'Requested array length <= 0');\n\n this.strip();\n var littleEndian = endian === 'le';\n var res = new ArrayType(reqLength);\n\n var b, i;\n var q = this.clone();\n if (!littleEndian) {\n // Assume big-endian\n for (i = 0; i < reqLength - byteLength; i++) {\n res[i] = 0;\n }\n\n for (i = 0; !q.isZero(); i++) {\n b = q.andln(0xff);\n q.iushrn(8);\n\n res[reqLength - i - 1] = b;\n }\n } else {\n for (i = 0; !q.isZero(); i++) {\n b = q.andln(0xff);\n q.iushrn(8);\n\n res[i] = b;\n }\n\n for (; i < reqLength; i++) {\n res[i] = 0;\n }\n }\n\n return res;\n };\n\n if (Math.clz32) {\n BN.prototype._countBits = function _countBits (w) {\n return 32 - Math.clz32(w);\n };\n } else {\n BN.prototype._countBits = function _countBits (w) {\n var t = w;\n var r = 0;\n if (t >= 0x1000) {\n r += 13;\n t >>>= 13;\n }\n if (t >= 0x40) {\n r += 7;\n t >>>= 7;\n }\n if (t >= 0x8) {\n r += 4;\n t >>>= 4;\n }\n if (t >= 0x02) {\n r += 2;\n t >>>= 2;\n }\n return r + t;\n };\n }\n\n BN.prototype._zeroBits = function _zeroBits (w) {\n // Short-cut\n if (w === 0) return 26;\n\n var t = w;\n var r = 0;\n if ((t & 0x1fff) === 0) {\n r += 13;\n t >>>= 13;\n }\n if ((t & 0x7f) === 0) {\n r += 7;\n t >>>= 7;\n }\n if ((t & 0xf) === 0) {\n r += 4;\n t >>>= 4;\n }\n if ((t & 0x3) === 0) {\n r += 2;\n t >>>= 2;\n }\n if ((t & 0x1) === 0) {\n r++;\n }\n return r;\n };\n\n // Return number of used bits in a BN\n BN.prototype.bitLength = function bitLength () {\n var w = this.words[this.length - 1];\n var hi = this._countBits(w);\n return (this.length - 1) * 26 + hi;\n };\n\n function toBitArray (num) {\n var w = new Array(num.bitLength());\n\n for (var bit = 0; bit < w.length; bit++) {\n var off = (bit / 26) | 0;\n var wbit = bit % 26;\n\n w[bit] = (num.words[off] & (1 << wbit)) >>> wbit;\n }\n\n return w;\n }\n\n // Number of trailing zero bits\n BN.prototype.zeroBits = function zeroBits () {\n if (this.isZero()) return 0;\n\n var r = 0;\n for (var i = 0; i < this.length; i++) {\n var b = this._zeroBits(this.words[i]);\n r += b;\n if (b !== 26) break;\n }\n return r;\n };\n\n BN.prototype.byteLength = function byteLength () {\n return Math.ceil(this.bitLength() / 8);\n };\n\n BN.prototype.toTwos = function toTwos (width) {\n if (this.negative !== 0) {\n return this.abs().inotn(width).iaddn(1);\n }\n return this.clone();\n };\n\n BN.prototype.fromTwos = function fromTwos (width) {\n if (this.testn(width - 1)) {\n return this.notn(width).iaddn(1).ineg();\n }\n return this.clone();\n };\n\n BN.prototype.isNeg = function isNeg () {\n return this.negative !== 0;\n };\n\n // Return negative clone of `this`\n BN.prototype.neg = function neg () {\n return this.clone().ineg();\n };\n\n BN.prototype.ineg = function ineg () {\n if (!this.isZero()) {\n this.negative ^= 1;\n }\n\n return this;\n };\n\n // Or `num` with `this` in-place\n BN.prototype.iuor = function iuor (num) {\n while (this.length < num.length) {\n this.words[this.length++] = 0;\n }\n\n for (var i = 0; i < num.length; i++) {\n this.words[i] = this.words[i] | num.words[i];\n }\n\n return this.strip();\n };\n\n BN.prototype.ior = function ior (num) {\n assert((this.negative | num.negative) === 0);\n return this.iuor(num);\n };\n\n // Or `num` with `this`\n BN.prototype.or = function or (num) {\n if (this.length > num.length) return this.clone().ior(num);\n return num.clone().ior(this);\n };\n\n BN.prototype.uor = function uor (num) {\n if (this.length > num.length) return this.clone().iuor(num);\n return num.clone().iuor(this);\n };\n\n // And `num` with `this` in-place\n BN.prototype.iuand = function iuand (num) {\n // b = min-length(num, this)\n var b;\n if (this.length > num.length) {\n b = num;\n } else {\n b = this;\n }\n\n for (var i = 0; i < b.length; i++) {\n this.words[i] = this.words[i] & num.words[i];\n }\n\n this.length = b.length;\n\n return this.strip();\n };\n\n BN.prototype.iand = function iand (num) {\n assert((this.negative | num.negative) === 0);\n return this.iuand(num);\n };\n\n // And `num` with `this`\n BN.prototype.and = function and (num) {\n if (this.length > num.length) return this.clone().iand(num);\n return num.clone().iand(this);\n };\n\n BN.prototype.uand = function uand (num) {\n if (this.length > num.length) return this.clone().iuand(num);\n return num.clone().iuand(this);\n };\n\n // Xor `num` with `this` in-place\n BN.prototype.iuxor = function iuxor (num) {\n // a.length > b.length\n var a;\n var b;\n if (this.length > num.length) {\n a = this;\n b = num;\n } else {\n a = num;\n b = this;\n }\n\n for (var i = 0; i < b.length; i++) {\n this.words[i] = a.words[i] ^ b.words[i];\n }\n\n if (this !== a) {\n for (; i < a.length; i++) {\n this.words[i] = a.words[i];\n }\n }\n\n this.length = a.length;\n\n return this.strip();\n };\n\n BN.prototype.ixor = function ixor (num) {\n assert((this.negative | num.negative) === 0);\n return this.iuxor(num);\n };\n\n // Xor `num` with `this`\n BN.prototype.xor = function xor (num) {\n if (this.length > num.length) return this.clone().ixor(num);\n return num.clone().ixor(this);\n };\n\n BN.prototype.uxor = function uxor (num) {\n if (this.length > num.length) return this.clone().iuxor(num);\n return num.clone().iuxor(this);\n };\n\n // Not ``this`` with ``width`` bitwidth\n BN.prototype.inotn = function inotn (width) {\n assert(typeof width === 'number' && width >= 0);\n\n var bytesNeeded = Math.ceil(width / 26) | 0;\n var bitsLeft = width % 26;\n\n // Extend the buffer with leading zeroes\n this._expand(bytesNeeded);\n\n if (bitsLeft > 0) {\n bytesNeeded--;\n }\n\n // Handle complete words\n for (var i = 0; i < bytesNeeded; i++) {\n this.words[i] = ~this.words[i] & 0x3ffffff;\n }\n\n // Handle the residue\n if (bitsLeft > 0) {\n this.words[i] = ~this.words[i] & (0x3ffffff >> (26 - bitsLeft));\n }\n\n // And remove leading zeroes\n return this.strip();\n };\n\n BN.prototype.notn = function notn (width) {\n return this.clone().inotn(width);\n };\n\n // Set `bit` of `this`\n BN.prototype.setn = function setn (bit, val) {\n assert(typeof bit === 'number' && bit >= 0);\n\n var off = (bit / 26) | 0;\n var wbit = bit % 26;\n\n this._expand(off + 1);\n\n if (val) {\n this.words[off] = this.words[off] | (1 << wbit);\n } else {\n this.words[off] = this.words[off] & ~(1 << wbit);\n }\n\n return this.strip();\n };\n\n // Add `num` to `this` in-place\n BN.prototype.iadd = function iadd (num) {\n var r;\n\n // negative + positive\n if (this.negative !== 0 && num.negative === 0) {\n this.negative = 0;\n r = this.isub(num);\n this.negative ^= 1;\n return this._normSign();\n\n // positive + negative\n } else if (this.negative === 0 && num.negative !== 0) {\n num.negative = 0;\n r = this.isub(num);\n num.negative = 1;\n return r._normSign();\n }\n\n // a.length > b.length\n var a, b;\n if (this.length > num.length) {\n a = this;\n b = num;\n } else {\n a = num;\n b = this;\n }\n\n var carry = 0;\n for (var i = 0; i < b.length; i++) {\n r = (a.words[i] | 0) + (b.words[i] | 0) + carry;\n this.words[i] = r & 0x3ffffff;\n carry = r >>> 26;\n }\n for (; carry !== 0 && i < a.length; i++) {\n r = (a.words[i] | 0) + carry;\n this.words[i] = r & 0x3ffffff;\n carry = r >>> 26;\n }\n\n this.length = a.length;\n if (carry !== 0) {\n this.words[this.length] = carry;\n this.length++;\n // Copy the rest of the words\n } else if (a !== this) {\n for (; i < a.length; i++) {\n this.words[i] = a.words[i];\n }\n }\n\n return this;\n };\n\n // Add `num` to `this`\n BN.prototype.add = function add (num) {\n var res;\n if (num.negative !== 0 && this.negative === 0) {\n num.negative = 0;\n res = this.sub(num);\n num.negative ^= 1;\n return res;\n } else if (num.negative === 0 && this.negative !== 0) {\n this.negative = 0;\n res = num.sub(this);\n this.negative = 1;\n return res;\n }\n\n if (this.length > num.length) return this.clone().iadd(num);\n\n return num.clone().iadd(this);\n };\n\n // Subtract `num` from `this` in-place\n BN.prototype.isub = function isub (num) {\n // this - (-num) = this + num\n if (num.negative !== 0) {\n num.negative = 0;\n var r = this.iadd(num);\n num.negative = 1;\n return r._normSign();\n\n // -this - num = -(this + num)\n } else if (this.negative !== 0) {\n this.negative = 0;\n this.iadd(num);\n this.negative = 1;\n return this._normSign();\n }\n\n // At this point both numbers are positive\n var cmp = this.cmp(num);\n\n // Optimization - zeroify\n if (cmp === 0) {\n this.negative = 0;\n this.length = 1;\n this.words[0] = 0;\n return this;\n }\n\n // a > b\n var a, b;\n if (cmp > 0) {\n a = this;\n b = num;\n } else {\n a = num;\n b = this;\n }\n\n var carry = 0;\n for (var i = 0; i < b.length; i++) {\n r = (a.words[i] | 0) - (b.words[i] | 0) + carry;\n carry = r >> 26;\n this.words[i] = r & 0x3ffffff;\n }\n for (; carry !== 0 && i < a.length; i++) {\n r = (a.words[i] | 0) + carry;\n carry = r >> 26;\n this.words[i] = r & 0x3ffffff;\n }\n\n // Copy rest of the words\n if (carry === 0 && i < a.length && a !== this) {\n for (; i < a.length; i++) {\n this.words[i] = a.words[i];\n }\n }\n\n this.length = Math.max(this.length, i);\n\n if (a !== this) {\n this.negative = 1;\n }\n\n return this.strip();\n };\n\n // Subtract `num` from `this`\n BN.prototype.sub = function sub (num) {\n return this.clone().isub(num);\n };\n\n function smallMulTo (self, num, out) {\n out.negative = num.negative ^ self.negative;\n var len = (self.length + num.length) | 0;\n out.length = len;\n len = (len - 1) | 0;\n\n // Peel one iteration (compiler can't do it, because of code complexity)\n var a = self.words[0] | 0;\n var b = num.words[0] | 0;\n var r = a * b;\n\n var lo = r & 0x3ffffff;\n var carry = (r / 0x4000000) | 0;\n out.words[0] = lo;\n\n for (var k = 1; k < len; k++) {\n // Sum all words with the same `i + j = k` and accumulate `ncarry`,\n // note that ncarry could be >= 0x3ffffff\n var ncarry = carry >>> 26;\n var rword = carry & 0x3ffffff;\n var maxJ = Math.min(k, num.length - 1);\n for (var j = Math.max(0, k - self.length + 1); j <= maxJ; j++) {\n var i = (k - j) | 0;\n a = self.words[i] | 0;\n b = num.words[j] | 0;\n r = a * b + rword;\n ncarry += (r / 0x4000000) | 0;\n rword = r & 0x3ffffff;\n }\n out.words[k] = rword | 0;\n carry = ncarry | 0;\n }\n if (carry !== 0) {\n out.words[k] = carry | 0;\n } else {\n out.length--;\n }\n\n return out.strip();\n }\n\n // TODO(indutny): it may be reasonable to omit it for users who don't need\n // to work with 256-bit numbers, otherwise it gives 20% improvement for 256-bit\n // multiplication (like elliptic secp256k1).\n var comb10MulTo = function comb10MulTo (self, num, out) {\n var a = self.words;\n var b = num.words;\n var o = out.words;\n var c = 0;\n var lo;\n var mid;\n var hi;\n var a0 = a[0] | 0;\n var al0 = a0 & 0x1fff;\n var ah0 = a0 >>> 13;\n var a1 = a[1] | 0;\n var al1 = a1 & 0x1fff;\n var ah1 = a1 >>> 13;\n var a2 = a[2] | 0;\n var al2 = a2 & 0x1fff;\n var ah2 = a2 >>> 13;\n var a3 = a[3] | 0;\n var al3 = a3 & 0x1fff;\n var ah3 = a3 >>> 13;\n var a4 = a[4] | 0;\n var al4 = a4 & 0x1fff;\n var ah4 = a4 >>> 13;\n var a5 = a[5] | 0;\n var al5 = a5 & 0x1fff;\n var ah5 = a5 >>> 13;\n var a6 = a[6] | 0;\n var al6 = a6 & 0x1fff;\n var ah6 = a6 >>> 13;\n var a7 = a[7] | 0;\n var al7 = a7 & 0x1fff;\n var ah7 = a7 >>> 13;\n var a8 = a[8] | 0;\n var al8 = a8 & 0x1fff;\n var ah8 = a8 >>> 13;\n var a9 = a[9] | 0;\n var al9 = a9 & 0x1fff;\n var ah9 = a9 >>> 13;\n var b0 = b[0] | 0;\n var bl0 = b0 & 0x1fff;\n var bh0 = b0 >>> 13;\n var b1 = b[1] | 0;\n var bl1 = b1 & 0x1fff;\n var bh1 = b1 >>> 13;\n var b2 = b[2] | 0;\n var bl2 = b2 & 0x1fff;\n var bh2 = b2 >>> 13;\n var b3 = b[3] | 0;\n var bl3 = b3 & 0x1fff;\n var bh3 = b3 >>> 13;\n var b4 = b[4] | 0;\n var bl4 = b4 & 0x1fff;\n var bh4 = b4 >>> 13;\n var b5 = b[5] | 0;\n var bl5 = b5 & 0x1fff;\n var bh5 = b5 >>> 13;\n var b6 = b[6] | 0;\n var bl6 = b6 & 0x1fff;\n var bh6 = b6 >>> 13;\n var b7 = b[7] | 0;\n var bl7 = b7 & 0x1fff;\n var bh7 = b7 >>> 13;\n var b8 = b[8] | 0;\n var bl8 = b8 & 0x1fff;\n var bh8 = b8 >>> 13;\n var b9 = b[9] | 0;\n var bl9 = b9 & 0x1fff;\n var bh9 = b9 >>> 13;\n\n out.negative = self.negative ^ num.negative;\n out.length = 19;\n /* k = 0 */\n lo = Math.imul(al0, bl0);\n mid = Math.imul(al0, bh0);\n mid = (mid + Math.imul(ah0, bl0)) | 0;\n hi = Math.imul(ah0, bh0);\n var w0 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w0 >>> 26)) | 0;\n w0 &= 0x3ffffff;\n /* k = 1 */\n lo = Math.imul(al1, bl0);\n mid = Math.imul(al1, bh0);\n mid = (mid + Math.imul(ah1, bl0)) | 0;\n hi = Math.imul(ah1, bh0);\n lo = (lo + Math.imul(al0, bl1)) | 0;\n mid = (mid + Math.imul(al0, bh1)) | 0;\n mid = (mid + Math.imul(ah0, bl1)) | 0;\n hi = (hi + Math.imul(ah0, bh1)) | 0;\n var w1 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w1 >>> 26)) | 0;\n w1 &= 0x3ffffff;\n /* k = 2 */\n lo = Math.imul(al2, bl0);\n mid = Math.imul(al2, bh0);\n mid = (mid + Math.imul(ah2, bl0)) | 0;\n hi = Math.imul(ah2, bh0);\n lo = (lo + Math.imul(al1, bl1)) | 0;\n mid = (mid + Math.imul(al1, bh1)) | 0;\n mid = (mid + Math.imul(ah1, bl1)) | 0;\n hi = (hi + Math.imul(ah1, bh1)) | 0;\n lo = (lo + Math.imul(al0, bl2)) | 0;\n mid = (mid + Math.imul(al0, bh2)) | 0;\n mid = (mid + Math.imul(ah0, bl2)) | 0;\n hi = (hi + Math.imul(ah0, bh2)) | 0;\n var w2 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w2 >>> 26)) | 0;\n w2 &= 0x3ffffff;\n /* k = 3 */\n lo = Math.imul(al3, bl0);\n mid = Math.imul(al3, bh0);\n mid = (mid + Math.imul(ah3, bl0)) | 0;\n hi = Math.imul(ah3, bh0);\n lo = (lo + Math.imul(al2, bl1)) | 0;\n mid = (mid + Math.imul(al2, bh1)) | 0;\n mid = (mid + Math.imul(ah2, bl1)) | 0;\n hi = (hi + Math.imul(ah2, bh1)) | 0;\n lo = (lo + Math.imul(al1, bl2)) | 0;\n mid = (mid + Math.imul(al1, bh2)) | 0;\n mid = (mid + Math.imul(ah1, bl2)) | 0;\n hi = (hi + Math.imul(ah1, bh2)) | 0;\n lo = (lo + Math.imul(al0, bl3)) | 0;\n mid = (mid + Math.imul(al0, bh3)) | 0;\n mid = (mid + Math.imul(ah0, bl3)) | 0;\n hi = (hi + Math.imul(ah0, bh3)) | 0;\n var w3 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w3 >>> 26)) | 0;\n w3 &= 0x3ffffff;\n /* k = 4 */\n lo = Math.imul(al4, bl0);\n mid = Math.imul(al4, bh0);\n mid = (mid + Math.imul(ah4, bl0)) | 0;\n hi = Math.imul(ah4, bh0);\n lo = (lo + Math.imul(al3, bl1)) | 0;\n mid = (mid + Math.imul(al3, bh1)) | 0;\n mid = (mid + Math.imul(ah3, bl1)) | 0;\n hi = (hi + Math.imul(ah3, bh1)) | 0;\n lo = (lo + Math.imul(al2, bl2)) | 0;\n mid = (mid + Math.imul(al2, bh2)) | 0;\n mid = (mid + Math.imul(ah2, bl2)) | 0;\n hi = (hi + Math.imul(ah2, bh2)) | 0;\n lo = (lo + Math.imul(al1, bl3)) | 0;\n mid = (mid + Math.imul(al1, bh3)) | 0;\n mid = (mid + Math.imul(ah1, bl3)) | 0;\n hi = (hi + Math.imul(ah1, bh3)) | 0;\n lo = (lo + Math.imul(al0, bl4)) | 0;\n mid = (mid + Math.imul(al0, bh4)) | 0;\n mid = (mid + Math.imul(ah0, bl4)) | 0;\n hi = (hi + Math.imul(ah0, bh4)) | 0;\n var w4 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w4 >>> 26)) | 0;\n w4 &= 0x3ffffff;\n /* k = 5 */\n lo = Math.imul(al5, bl0);\n mid = Math.imul(al5, bh0);\n mid = (mid + Math.imul(ah5, bl0)) | 0;\n hi = Math.imul(ah5, bh0);\n lo = (lo + Math.imul(al4, bl1)) | 0;\n mid = (mid + Math.imul(al4, bh1)) | 0;\n mid = (mid + Math.imul(ah4, bl1)) | 0;\n hi = (hi + Math.imul(ah4, bh1)) | 0;\n lo = (lo + Math.imul(al3, bl2)) | 0;\n mid = (mid + Math.imul(al3, bh2)) | 0;\n mid = (mid + Math.imul(ah3, bl2)) | 0;\n hi = (hi + Math.imul(ah3, bh2)) | 0;\n lo = (lo + Math.imul(al2, bl3)) | 0;\n mid = (mid + Math.imul(al2, bh3)) | 0;\n mid = (mid + Math.imul(ah2, bl3)) | 0;\n hi = (hi + Math.imul(ah2, bh3)) | 0;\n lo = (lo + Math.imul(al1, bl4)) | 0;\n mid = (mid + Math.imul(al1, bh4)) | 0;\n mid = (mid + Math.imul(ah1, bl4)) | 0;\n hi = (hi + Math.imul(ah1, bh4)) | 0;\n lo = (lo + Math.imul(al0, bl5)) | 0;\n mid = (mid + Math.imul(al0, bh5)) | 0;\n mid = (mid + Math.imul(ah0, bl5)) | 0;\n hi = (hi + Math.imul(ah0, bh5)) | 0;\n var w5 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w5 >>> 26)) | 0;\n w5 &= 0x3ffffff;\n /* k = 6 */\n lo = Math.imul(al6, bl0);\n mid = Math.imul(al6, bh0);\n mid = (mid + Math.imul(ah6, bl0)) | 0;\n hi = Math.imul(ah6, bh0);\n lo = (lo + Math.imul(al5, bl1)) | 0;\n mid = (mid + Math.imul(al5, bh1)) | 0;\n mid = (mid + Math.imul(ah5, bl1)) | 0;\n hi = (hi + Math.imul(ah5, bh1)) | 0;\n lo = (lo + Math.imul(al4, bl2)) | 0;\n mid = (mid + Math.imul(al4, bh2)) | 0;\n mid = (mid + Math.imul(ah4, bl2)) | 0;\n hi = (hi + Math.imul(ah4, bh2)) | 0;\n lo = (lo + Math.imul(al3, bl3)) | 0;\n mid = (mid + Math.imul(al3, bh3)) | 0;\n mid = (mid + Math.imul(ah3, bl3)) | 0;\n hi = (hi + Math.imul(ah3, bh3)) | 0;\n lo = (lo + Math.imul(al2, bl4)) | 0;\n mid = (mid + Math.imul(al2, bh4)) | 0;\n mid = (mid + Math.imul(ah2, bl4)) | 0;\n hi = (hi + Math.imul(ah2, bh4)) | 0;\n lo = (lo + Math.imul(al1, bl5)) | 0;\n mid = (mid + Math.imul(al1, bh5)) | 0;\n mid = (mid + Math.imul(ah1, bl5)) | 0;\n hi = (hi + Math.imul(ah1, bh5)) | 0;\n lo = (lo + Math.imul(al0, bl6)) | 0;\n mid = (mid + Math.imul(al0, bh6)) | 0;\n mid = (mid + Math.imul(ah0, bl6)) | 0;\n hi = (hi + Math.imul(ah0, bh6)) | 0;\n var w6 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w6 >>> 26)) | 0;\n w6 &= 0x3ffffff;\n /* k = 7 */\n lo = Math.imul(al7, bl0);\n mid = Math.imul(al7, bh0);\n mid = (mid + Math.imul(ah7, bl0)) | 0;\n hi = Math.imul(ah7, bh0);\n lo = (lo + Math.imul(al6, bl1)) | 0;\n mid = (mid + Math.imul(al6, bh1)) | 0;\n mid = (mid + Math.imul(ah6, bl1)) | 0;\n hi = (hi + Math.imul(ah6, bh1)) | 0;\n lo = (lo + Math.imul(al5, bl2)) | 0;\n mid = (mid + Math.imul(al5, bh2)) | 0;\n mid = (mid + Math.imul(ah5, bl2)) | 0;\n hi = (hi + Math.imul(ah5, bh2)) | 0;\n lo = (lo + Math.imul(al4, bl3)) | 0;\n mid = (mid + Math.imul(al4, bh3)) | 0;\n mid = (mid + Math.imul(ah4, bl3)) | 0;\n hi = (hi + Math.imul(ah4, bh3)) | 0;\n lo = (lo + Math.imul(al3, bl4)) | 0;\n mid = (mid + Math.imul(al3, bh4)) | 0;\n mid = (mid + Math.imul(ah3, bl4)) | 0;\n hi = (hi + Math.imul(ah3, bh4)) | 0;\n lo = (lo + Math.imul(al2, bl5)) | 0;\n mid = (mid + Math.imul(al2, bh5)) | 0;\n mid = (mid + Math.imul(ah2, bl5)) | 0;\n hi = (hi + Math.imul(ah2, bh5)) | 0;\n lo = (lo + Math.imul(al1, bl6)) | 0;\n mid = (mid + Math.imul(al1, bh6)) | 0;\n mid = (mid + Math.imul(ah1, bl6)) | 0;\n hi = (hi + Math.imul(ah1, bh6)) | 0;\n lo = (lo + Math.imul(al0, bl7)) | 0;\n mid = (mid + Math.imul(al0, bh7)) | 0;\n mid = (mid + Math.imul(ah0, bl7)) | 0;\n hi = (hi + Math.imul(ah0, bh7)) | 0;\n var w7 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w7 >>> 26)) | 0;\n w7 &= 0x3ffffff;\n /* k = 8 */\n lo = Math.imul(al8, bl0);\n mid = Math.imul(al8, bh0);\n mid = (mid + Math.imul(ah8, bl0)) | 0;\n hi = Math.imul(ah8, bh0);\n lo = (lo + Math.imul(al7, bl1)) | 0;\n mid = (mid + Math.imul(al7, bh1)) | 0;\n mid = (mid + Math.imul(ah7, bl1)) | 0;\n hi = (hi + Math.imul(ah7, bh1)) | 0;\n lo = (lo + Math.imul(al6, bl2)) | 0;\n mid = (mid + Math.imul(al6, bh2)) | 0;\n mid = (mid + Math.imul(ah6, bl2)) | 0;\n hi = (hi + Math.imul(ah6, bh2)) | 0;\n lo = (lo + Math.imul(al5, bl3)) | 0;\n mid = (mid + Math.imul(al5, bh3)) | 0;\n mid = (mid + Math.imul(ah5, bl3)) | 0;\n hi = (hi + Math.imul(ah5, bh3)) | 0;\n lo = (lo + Math.imul(al4, bl4)) | 0;\n mid = (mid + Math.imul(al4, bh4)) | 0;\n mid = (mid + Math.imul(ah4, bl4)) | 0;\n hi = (hi + Math.imul(ah4, bh4)) | 0;\n lo = (lo + Math.imul(al3, bl5)) | 0;\n mid = (mid + Math.imul(al3, bh5)) | 0;\n mid = (mid + Math.imul(ah3, bl5)) | 0;\n hi = (hi + Math.imul(ah3, bh5)) | 0;\n lo = (lo + Math.imul(al2, bl6)) | 0;\n mid = (mid + Math.imul(al2, bh6)) | 0;\n mid = (mid + Math.imul(ah2, bl6)) | 0;\n hi = (hi + Math.imul(ah2, bh6)) | 0;\n lo = (lo + Math.imul(al1, bl7)) | 0;\n mid = (mid + Math.imul(al1, bh7)) | 0;\n mid = (mid + Math.imul(ah1, bl7)) | 0;\n hi = (hi + Math.imul(ah1, bh7)) | 0;\n lo = (lo + Math.imul(al0, bl8)) | 0;\n mid = (mid + Math.imul(al0, bh8)) | 0;\n mid = (mid + Math.imul(ah0, bl8)) | 0;\n hi = (hi + Math.imul(ah0, bh8)) | 0;\n var w8 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w8 >>> 26)) | 0;\n w8 &= 0x3ffffff;\n /* k = 9 */\n lo = Math.imul(al9, bl0);\n mid = Math.imul(al9, bh0);\n mid = (mid + Math.imul(ah9, bl0)) | 0;\n hi = Math.imul(ah9, bh0);\n lo = (lo + Math.imul(al8, bl1)) | 0;\n mid = (mid + Math.imul(al8, bh1)) | 0;\n mid = (mid + Math.imul(ah8, bl1)) | 0;\n hi = (hi + Math.imul(ah8, bh1)) | 0;\n lo = (lo + Math.imul(al7, bl2)) | 0;\n mid = (mid + Math.imul(al7, bh2)) | 0;\n mid = (mid + Math.imul(ah7, bl2)) | 0;\n hi = (hi + Math.imul(ah7, bh2)) | 0;\n lo = (lo + Math.imul(al6, bl3)) | 0;\n mid = (mid + Math.imul(al6, bh3)) | 0;\n mid = (mid + Math.imul(ah6, bl3)) | 0;\n hi = (hi + Math.imul(ah6, bh3)) | 0;\n lo = (lo + Math.imul(al5, bl4)) | 0;\n mid = (mid + Math.imul(al5, bh4)) | 0;\n mid = (mid + Math.imul(ah5, bl4)) | 0;\n hi = (hi + Math.imul(ah5, bh4)) | 0;\n lo = (lo + Math.imul(al4, bl5)) | 0;\n mid = (mid + Math.imul(al4, bh5)) | 0;\n mid = (mid + Math.imul(ah4, bl5)) | 0;\n hi = (hi + Math.imul(ah4, bh5)) | 0;\n lo = (lo + Math.imul(al3, bl6)) | 0;\n mid = (mid + Math.imul(al3, bh6)) | 0;\n mid = (mid + Math.imul(ah3, bl6)) | 0;\n hi = (hi + Math.imul(ah3, bh6)) | 0;\n lo = (lo + Math.imul(al2, bl7)) | 0;\n mid = (mid + Math.imul(al2, bh7)) | 0;\n mid = (mid + Math.imul(ah2, bl7)) | 0;\n hi = (hi + Math.imul(ah2, bh7)) | 0;\n lo = (lo + Math.imul(al1, bl8)) | 0;\n mid = (mid + Math.imul(al1, bh8)) | 0;\n mid = (mid + Math.imul(ah1, bl8)) | 0;\n hi = (hi + Math.imul(ah1, bh8)) | 0;\n lo = (lo + Math.imul(al0, bl9)) | 0;\n mid = (mid + Math.imul(al0, bh9)) | 0;\n mid = (mid + Math.imul(ah0, bl9)) | 0;\n hi = (hi + Math.imul(ah0, bh9)) | 0;\n var w9 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w9 >>> 26)) | 0;\n w9 &= 0x3ffffff;\n /* k = 10 */\n lo = Math.imul(al9, bl1);\n mid = Math.imul(al9, bh1);\n mid = (mid + Math.imul(ah9, bl1)) | 0;\n hi = Math.imul(ah9, bh1);\n lo = (lo + Math.imul(al8, bl2)) | 0;\n mid = (mid + Math.imul(al8, bh2)) | 0;\n mid = (mid + Math.imul(ah8, bl2)) | 0;\n hi = (hi + Math.imul(ah8, bh2)) | 0;\n lo = (lo + Math.imul(al7, bl3)) | 0;\n mid = (mid + Math.imul(al7, bh3)) | 0;\n mid = (mid + Math.imul(ah7, bl3)) | 0;\n hi = (hi + Math.imul(ah7, bh3)) | 0;\n lo = (lo + Math.imul(al6, bl4)) | 0;\n mid = (mid + Math.imul(al6, bh4)) | 0;\n mid = (mid + Math.imul(ah6, bl4)) | 0;\n hi = (hi + Math.imul(ah6, bh4)) | 0;\n lo = (lo + Math.imul(al5, bl5)) | 0;\n mid = (mid + Math.imul(al5, bh5)) | 0;\n mid = (mid + Math.imul(ah5, bl5)) | 0;\n hi = (hi + Math.imul(ah5, bh5)) | 0;\n lo = (lo + Math.imul(al4, bl6)) | 0;\n mid = (mid + Math.imul(al4, bh6)) | 0;\n mid = (mid + Math.imul(ah4, bl6)) | 0;\n hi = (hi + Math.imul(ah4, bh6)) | 0;\n lo = (lo + Math.imul(al3, bl7)) | 0;\n mid = (mid + Math.imul(al3, bh7)) | 0;\n mid = (mid + Math.imul(ah3, bl7)) | 0;\n hi = (hi + Math.imul(ah3, bh7)) | 0;\n lo = (lo + Math.imul(al2, bl8)) | 0;\n mid = (mid + Math.imul(al2, bh8)) | 0;\n mid = (mid + Math.imul(ah2, bl8)) | 0;\n hi = (hi + Math.imul(ah2, bh8)) | 0;\n lo = (lo + Math.imul(al1, bl9)) | 0;\n mid = (mid + Math.imul(al1, bh9)) | 0;\n mid = (mid + Math.imul(ah1, bl9)) | 0;\n hi = (hi + Math.imul(ah1, bh9)) | 0;\n var w10 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w10 >>> 26)) | 0;\n w10 &= 0x3ffffff;\n /* k = 11 */\n lo = Math.imul(al9, bl2);\n mid = Math.imul(al9, bh2);\n mid = (mid + Math.imul(ah9, bl2)) | 0;\n hi = Math.imul(ah9, bh2);\n lo = (lo + Math.imul(al8, bl3)) | 0;\n mid = (mid + Math.imul(al8, bh3)) | 0;\n mid = (mid + Math.imul(ah8, bl3)) | 0;\n hi = (hi + Math.imul(ah8, bh3)) | 0;\n lo = (lo + Math.imul(al7, bl4)) | 0;\n mid = (mid + Math.imul(al7, bh4)) | 0;\n mid = (mid + Math.imul(ah7, bl4)) | 0;\n hi = (hi + Math.imul(ah7, bh4)) | 0;\n lo = (lo + Math.imul(al6, bl5)) | 0;\n mid = (mid + Math.imul(al6, bh5)) | 0;\n mid = (mid + Math.imul(ah6, bl5)) | 0;\n hi = (hi + Math.imul(ah6, bh5)) | 0;\n lo = (lo + Math.imul(al5, bl6)) | 0;\n mid = (mid + Math.imul(al5, bh6)) | 0;\n mid = (mid + Math.imul(ah5, bl6)) | 0;\n hi = (hi + Math.imul(ah5, bh6)) | 0;\n lo = (lo + Math.imul(al4, bl7)) | 0;\n mid = (mid + Math.imul(al4, bh7)) | 0;\n mid = (mid + Math.imul(ah4, bl7)) | 0;\n hi = (hi + Math.imul(ah4, bh7)) | 0;\n lo = (lo + Math.imul(al3, bl8)) | 0;\n mid = (mid + Math.imul(al3, bh8)) | 0;\n mid = (mid + Math.imul(ah3, bl8)) | 0;\n hi = (hi + Math.imul(ah3, bh8)) | 0;\n lo = (lo + Math.imul(al2, bl9)) | 0;\n mid = (mid + Math.imul(al2, bh9)) | 0;\n mid = (mid + Math.imul(ah2, bl9)) | 0;\n hi = (hi + Math.imul(ah2, bh9)) | 0;\n var w11 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w11 >>> 26)) | 0;\n w11 &= 0x3ffffff;\n /* k = 12 */\n lo = Math.imul(al9, bl3);\n mid = Math.imul(al9, bh3);\n mid = (mid + Math.imul(ah9, bl3)) | 0;\n hi = Math.imul(ah9, bh3);\n lo = (lo + Math.imul(al8, bl4)) | 0;\n mid = (mid + Math.imul(al8, bh4)) | 0;\n mid = (mid + Math.imul(ah8, bl4)) | 0;\n hi = (hi + Math.imul(ah8, bh4)) | 0;\n lo = (lo + Math.imul(al7, bl5)) | 0;\n mid = (mid + Math.imul(al7, bh5)) | 0;\n mid = (mid + Math.imul(ah7, bl5)) | 0;\n hi = (hi + Math.imul(ah7, bh5)) | 0;\n lo = (lo + Math.imul(al6, bl6)) | 0;\n mid = (mid + Math.imul(al6, bh6)) | 0;\n mid = (mid + Math.imul(ah6, bl6)) | 0;\n hi = (hi + Math.imul(ah6, bh6)) | 0;\n lo = (lo + Math.imul(al5, bl7)) | 0;\n mid = (mid + Math.imul(al5, bh7)) | 0;\n mid = (mid + Math.imul(ah5, bl7)) | 0;\n hi = (hi + Math.imul(ah5, bh7)) | 0;\n lo = (lo + Math.imul(al4, bl8)) | 0;\n mid = (mid + Math.imul(al4, bh8)) | 0;\n mid = (mid + Math.imul(ah4, bl8)) | 0;\n hi = (hi + Math.imul(ah4, bh8)) | 0;\n lo = (lo + Math.imul(al3, bl9)) | 0;\n mid = (mid + Math.imul(al3, bh9)) | 0;\n mid = (mid + Math.imul(ah3, bl9)) | 0;\n hi = (hi + Math.imul(ah3, bh9)) | 0;\n var w12 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w12 >>> 26)) | 0;\n w12 &= 0x3ffffff;\n /* k = 13 */\n lo = Math.imul(al9, bl4);\n mid = Math.imul(al9, bh4);\n mid = (mid + Math.imul(ah9, bl4)) | 0;\n hi = Math.imul(ah9, bh4);\n lo = (lo + Math.imul(al8, bl5)) | 0;\n mid = (mid + Math.imul(al8, bh5)) | 0;\n mid = (mid + Math.imul(ah8, bl5)) | 0;\n hi = (hi + Math.imul(ah8, bh5)) | 0;\n lo = (lo + Math.imul(al7, bl6)) | 0;\n mid = (mid + Math.imul(al7, bh6)) | 0;\n mid = (mid + Math.imul(ah7, bl6)) | 0;\n hi = (hi + Math.imul(ah7, bh6)) | 0;\n lo = (lo + Math.imul(al6, bl7)) | 0;\n mid = (mid + Math.imul(al6, bh7)) | 0;\n mid = (mid + Math.imul(ah6, bl7)) | 0;\n hi = (hi + Math.imul(ah6, bh7)) | 0;\n lo = (lo + Math.imul(al5, bl8)) | 0;\n mid = (mid + Math.imul(al5, bh8)) | 0;\n mid = (mid + Math.imul(ah5, bl8)) | 0;\n hi = (hi + Math.imul(ah5, bh8)) | 0;\n lo = (lo + Math.imul(al4, bl9)) | 0;\n mid = (mid + Math.imul(al4, bh9)) | 0;\n mid = (mid + Math.imul(ah4, bl9)) | 0;\n hi = (hi + Math.imul(ah4, bh9)) | 0;\n var w13 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w13 >>> 26)) | 0;\n w13 &= 0x3ffffff;\n /* k = 14 */\n lo = Math.imul(al9, bl5);\n mid = Math.imul(al9, bh5);\n mid = (mid + Math.imul(ah9, bl5)) | 0;\n hi = Math.imul(ah9, bh5);\n lo = (lo + Math.imul(al8, bl6)) | 0;\n mid = (mid + Math.imul(al8, bh6)) | 0;\n mid = (mid + Math.imul(ah8, bl6)) | 0;\n hi = (hi + Math.imul(ah8, bh6)) | 0;\n lo = (lo + Math.imul(al7, bl7)) | 0;\n mid = (mid + Math.imul(al7, bh7)) | 0;\n mid = (mid + Math.imul(ah7, bl7)) | 0;\n hi = (hi + Math.imul(ah7, bh7)) | 0;\n lo = (lo + Math.imul(al6, bl8)) | 0;\n mid = (mid + Math.imul(al6, bh8)) | 0;\n mid = (mid + Math.imul(ah6, bl8)) | 0;\n hi = (hi + Math.imul(ah6, bh8)) | 0;\n lo = (lo + Math.imul(al5, bl9)) | 0;\n mid = (mid + Math.imul(al5, bh9)) | 0;\n mid = (mid + Math.imul(ah5, bl9)) | 0;\n hi = (hi + Math.imul(ah5, bh9)) | 0;\n var w14 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w14 >>> 26)) | 0;\n w14 &= 0x3ffffff;\n /* k = 15 */\n lo = Math.imul(al9, bl6);\n mid = Math.imul(al9, bh6);\n mid = (mid + Math.imul(ah9, bl6)) | 0;\n hi = Math.imul(ah9, bh6);\n lo = (lo + Math.imul(al8, bl7)) | 0;\n mid = (mid + Math.imul(al8, bh7)) | 0;\n mid = (mid + Math.imul(ah8, bl7)) | 0;\n hi = (hi + Math.imul(ah8, bh7)) | 0;\n lo = (lo + Math.imul(al7, bl8)) | 0;\n mid = (mid + Math.imul(al7, bh8)) | 0;\n mid = (mid + Math.imul(ah7, bl8)) | 0;\n hi = (hi + Math.imul(ah7, bh8)) | 0;\n lo = (lo + Math.imul(al6, bl9)) | 0;\n mid = (mid + Math.imul(al6, bh9)) | 0;\n mid = (mid + Math.imul(ah6, bl9)) | 0;\n hi = (hi + Math.imul(ah6, bh9)) | 0;\n var w15 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w15 >>> 26)) | 0;\n w15 &= 0x3ffffff;\n /* k = 16 */\n lo = Math.imul(al9, bl7);\n mid = Math.imul(al9, bh7);\n mid = (mid + Math.imul(ah9, bl7)) | 0;\n hi = Math.imul(ah9, bh7);\n lo = (lo + Math.imul(al8, bl8)) | 0;\n mid = (mid + Math.imul(al8, bh8)) | 0;\n mid = (mid + Math.imul(ah8, bl8)) | 0;\n hi = (hi + Math.imul(ah8, bh8)) | 0;\n lo = (lo + Math.imul(al7, bl9)) | 0;\n mid = (mid + Math.imul(al7, bh9)) | 0;\n mid = (mid + Math.imul(ah7, bl9)) | 0;\n hi = (hi + Math.imul(ah7, bh9)) | 0;\n var w16 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w16 >>> 26)) | 0;\n w16 &= 0x3ffffff;\n /* k = 17 */\n lo = Math.imul(al9, bl8);\n mid = Math.imul(al9, bh8);\n mid = (mid + Math.imul(ah9, bl8)) | 0;\n hi = Math.imul(ah9, bh8);\n lo = (lo + Math.imul(al8, bl9)) | 0;\n mid = (mid + Math.imul(al8, bh9)) | 0;\n mid = (mid + Math.imul(ah8, bl9)) | 0;\n hi = (hi + Math.imul(ah8, bh9)) | 0;\n var w17 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w17 >>> 26)) | 0;\n w17 &= 0x3ffffff;\n /* k = 18 */\n lo = Math.imul(al9, bl9);\n mid = Math.imul(al9, bh9);\n mid = (mid + Math.imul(ah9, bl9)) | 0;\n hi = Math.imul(ah9, bh9);\n var w18 = (((c + lo) | 0) + ((mid & 0x1fff) << 13)) | 0;\n c = (((hi + (mid >>> 13)) | 0) + (w18 >>> 26)) | 0;\n w18 &= 0x3ffffff;\n o[0] = w0;\n o[1] = w1;\n o[2] = w2;\n o[3] = w3;\n o[4] = w4;\n o[5] = w5;\n o[6] = w6;\n o[7] = w7;\n o[8] = w8;\n o[9] = w9;\n o[10] = w10;\n o[11] = w11;\n o[12] = w12;\n o[13] = w13;\n o[14] = w14;\n o[15] = w15;\n o[16] = w16;\n o[17] = w17;\n o[18] = w18;\n if (c !== 0) {\n o[19] = c;\n out.length++;\n }\n return out;\n };\n\n // Polyfill comb\n if (!Math.imul) {\n comb10MulTo = smallMulTo;\n }\n\n function bigMulTo (self, num, out) {\n out.negative = num.negative ^ self.negative;\n out.length = self.length + num.length;\n\n var carry = 0;\n var hncarry = 0;\n for (var k = 0; k < out.length - 1; k++) {\n // Sum all words with the same `i + j = k` and accumulate `ncarry`,\n // note that ncarry could be >= 0x3ffffff\n var ncarry = hncarry;\n hncarry = 0;\n var rword = carry & 0x3ffffff;\n var maxJ = Math.min(k, num.length - 1);\n for (var j = Math.max(0, k - self.length + 1); j <= maxJ; j++) {\n var i = k - j;\n var a = self.words[i] | 0;\n var b = num.words[j] | 0;\n var r = a * b;\n\n var lo = r & 0x3ffffff;\n ncarry = (ncarry + ((r / 0x4000000) | 0)) | 0;\n lo = (lo + rword) | 0;\n rword = lo & 0x3ffffff;\n ncarry = (ncarry + (lo >>> 26)) | 0;\n\n hncarry += ncarry >>> 26;\n ncarry &= 0x3ffffff;\n }\n out.words[k] = rword;\n carry = ncarry;\n ncarry = hncarry;\n }\n if (carry !== 0) {\n out.words[k] = carry;\n } else {\n out.length--;\n }\n\n return out.strip();\n }\n\n function jumboMulTo (self, num, out) {\n var fftm = new FFTM();\n return fftm.mulp(self, num, out);\n }\n\n BN.prototype.mulTo = function mulTo (num, out) {\n var res;\n var len = this.length + num.length;\n if (this.length === 10 && num.length === 10) {\n res = comb10MulTo(this, num, out);\n } else if (len < 63) {\n res = smallMulTo(this, num, out);\n } else if (len < 1024) {\n res = bigMulTo(this, num, out);\n } else {\n res = jumboMulTo(this, num, out);\n }\n\n return res;\n };\n\n // Cooley-Tukey algorithm for FFT\n // slightly revisited to rely on looping instead of recursion\n\n function FFTM (x, y) {\n this.x = x;\n this.y = y;\n }\n\n FFTM.prototype.makeRBT = function makeRBT (N) {\n var t = new Array(N);\n var l = BN.prototype._countBits(N) - 1;\n for (var i = 0; i < N; i++) {\n t[i] = this.revBin(i, l, N);\n }\n\n return t;\n };\n\n // Returns binary-reversed representation of `x`\n FFTM.prototype.revBin = function revBin (x, l, N) {\n if (x === 0 || x === N - 1) return x;\n\n var rb = 0;\n for (var i = 0; i < l; i++) {\n rb |= (x & 1) << (l - i - 1);\n x >>= 1;\n }\n\n return rb;\n };\n\n // Performs \"tweedling\" phase, therefore 'emulating'\n // behaviour of the recursive algorithm\n FFTM.prototype.permute = function permute (rbt, rws, iws, rtws, itws, N) {\n for (var i = 0; i < N; i++) {\n rtws[i] = rws[rbt[i]];\n itws[i] = iws[rbt[i]];\n }\n };\n\n FFTM.prototype.transform = function transform (rws, iws, rtws, itws, N, rbt) {\n this.permute(rbt, rws, iws, rtws, itws, N);\n\n for (var s = 1; s < N; s <<= 1) {\n var l = s << 1;\n\n var rtwdf = Math.cos(2 * Math.PI / l);\n var itwdf = Math.sin(2 * Math.PI / l);\n\n for (var p = 0; p < N; p += l) {\n var rtwdf_ = rtwdf;\n var itwdf_ = itwdf;\n\n for (var j = 0; j < s; j++) {\n var re = rtws[p + j];\n var ie = itws[p + j];\n\n var ro = rtws[p + j + s];\n var io = itws[p + j + s];\n\n var rx = rtwdf_ * ro - itwdf_ * io;\n\n io = rtwdf_ * io + itwdf_ * ro;\n ro = rx;\n\n rtws[p + j] = re + ro;\n itws[p + j] = ie + io;\n\n rtws[p + j + s] = re - ro;\n itws[p + j + s] = ie - io;\n\n /* jshint maxdepth : false */\n if (j !== l) {\n rx = rtwdf * rtwdf_ - itwdf * itwdf_;\n\n itwdf_ = rtwdf * itwdf_ + itwdf * rtwdf_;\n rtwdf_ = rx;\n }\n }\n }\n }\n };\n\n FFTM.prototype.guessLen13b = function guessLen13b (n, m) {\n var N = Math.max(m, n) | 1;\n var odd = N & 1;\n var i = 0;\n for (N = N / 2 | 0; N; N = N >>> 1) {\n i++;\n }\n\n return 1 << i + 1 + odd;\n };\n\n FFTM.prototype.conjugate = function conjugate (rws, iws, N) {\n if (N <= 1) return;\n\n for (var i = 0; i < N / 2; i++) {\n var t = rws[i];\n\n rws[i] = rws[N - i - 1];\n rws[N - i - 1] = t;\n\n t = iws[i];\n\n iws[i] = -iws[N - i - 1];\n iws[N - i - 1] = -t;\n }\n };\n\n FFTM.prototype.normalize13b = function normalize13b (ws, N) {\n var carry = 0;\n for (var i = 0; i < N / 2; i++) {\n var w = Math.round(ws[2 * i + 1] / N) * 0x2000 +\n Math.round(ws[2 * i] / N) +\n carry;\n\n ws[i] = w & 0x3ffffff;\n\n if (w < 0x4000000) {\n carry = 0;\n } else {\n carry = w / 0x4000000 | 0;\n }\n }\n\n return ws;\n };\n\n FFTM.prototype.convert13b = function convert13b (ws, len, rws, N) {\n var carry = 0;\n for (var i = 0; i < len; i++) {\n carry = carry + (ws[i] | 0);\n\n rws[2 * i] = carry & 0x1fff; carry = carry >>> 13;\n rws[2 * i + 1] = carry & 0x1fff; carry = carry >>> 13;\n }\n\n // Pad with zeroes\n for (i = 2 * len; i < N; ++i) {\n rws[i] = 0;\n }\n\n assert(carry === 0);\n assert((carry & ~0x1fff) === 0);\n };\n\n FFTM.prototype.stub = function stub (N) {\n var ph = new Array(N);\n for (var i = 0; i < N; i++) {\n ph[i] = 0;\n }\n\n return ph;\n };\n\n FFTM.prototype.mulp = function mulp (x, y, out) {\n var N = 2 * this.guessLen13b(x.length, y.length);\n\n var rbt = this.makeRBT(N);\n\n var _ = this.stub(N);\n\n var rws = new Array(N);\n var rwst = new Array(N);\n var iwst = new Array(N);\n\n var nrws = new Array(N);\n var nrwst = new Array(N);\n var niwst = new Array(N);\n\n var rmws = out.words;\n rmws.length = N;\n\n this.convert13b(x.words, x.length, rws, N);\n this.convert13b(y.words, y.length, nrws, N);\n\n this.transform(rws, _, rwst, iwst, N, rbt);\n this.transform(nrws, _, nrwst, niwst, N, rbt);\n\n for (var i = 0; i < N; i++) {\n var rx = rwst[i] * nrwst[i] - iwst[i] * niwst[i];\n iwst[i] = rwst[i] * niwst[i] + iwst[i] * nrwst[i];\n rwst[i] = rx;\n }\n\n this.conjugate(rwst, iwst, N);\n this.transform(rwst, iwst, rmws, _, N, rbt);\n this.conjugate(rmws, _, N);\n this.normalize13b(rmws, N);\n\n out.negative = x.negative ^ y.negative;\n out.length = x.length + y.length;\n return out.strip();\n };\n\n // Multiply `this` by `num`\n BN.prototype.mul = function mul (num) {\n var out = new BN(null);\n out.words = new Array(this.length + num.length);\n return this.mulTo(num, out);\n };\n\n // Multiply employing FFT\n BN.prototype.mulf = function mulf (num) {\n var out = new BN(null);\n out.words = new Array(this.length + num.length);\n return jumboMulTo(this, num, out);\n };\n\n // In-place Multiplication\n BN.prototype.imul = function imul (num) {\n return this.clone().mulTo(num, this);\n };\n\n BN.prototype.imuln = function imuln (num) {\n assert(typeof num === 'number');\n assert(num < 0x4000000);\n\n // Carry\n var carry = 0;\n for (var i = 0; i < this.length; i++) {\n var w = (this.words[i] | 0) * num;\n var lo = (w & 0x3ffffff) + (carry & 0x3ffffff);\n carry >>= 26;\n carry += (w / 0x4000000) | 0;\n // NOTE: lo is 27bit maximum\n carry += lo >>> 26;\n this.words[i] = lo & 0x3ffffff;\n }\n\n if (carry !== 0) {\n this.words[i] = carry;\n this.length++;\n }\n\n return this;\n };\n\n BN.prototype.muln = function muln (num) {\n return this.clone().imuln(num);\n };\n\n // `this` * `this`\n BN.prototype.sqr = function sqr () {\n return this.mul(this);\n };\n\n // `this` * `this` in-place\n BN.prototype.isqr = function isqr () {\n return this.imul(this.clone());\n };\n\n // Math.pow(`this`, `num`)\n BN.prototype.pow = function pow (num) {\n var w = toBitArray(num);\n if (w.length === 0) return new BN(1);\n\n // Skip leading zeroes\n var res = this;\n for (var i = 0; i < w.length; i++, res = res.sqr()) {\n if (w[i] !== 0) break;\n }\n\n if (++i < w.length) {\n for (var q = res.sqr(); i < w.length; i++, q = q.sqr()) {\n if (w[i] === 0) continue;\n\n res = res.mul(q);\n }\n }\n\n return res;\n };\n\n // Shift-left in-place\n BN.prototype.iushln = function iushln (bits) {\n assert(typeof bits === 'number' && bits >= 0);\n var r = bits % 26;\n var s = (bits - r) / 26;\n var carryMask = (0x3ffffff >>> (26 - r)) << (26 - r);\n var i;\n\n if (r !== 0) {\n var carry = 0;\n\n for (i = 0; i < this.length; i++) {\n var newCarry = this.words[i] & carryMask;\n var c = ((this.words[i] | 0) - newCarry) << r;\n this.words[i] = c | carry;\n carry = newCarry >>> (26 - r);\n }\n\n if (carry) {\n this.words[i] = carry;\n this.length++;\n }\n }\n\n if (s !== 0) {\n for (i = this.length - 1; i >= 0; i--) {\n this.words[i + s] = this.words[i];\n }\n\n for (i = 0; i < s; i++) {\n this.words[i] = 0;\n }\n\n this.length += s;\n }\n\n return this.strip();\n };\n\n BN.prototype.ishln = function ishln (bits) {\n // TODO(indutny): implement me\n assert(this.negative === 0);\n return this.iushln(bits);\n };\n\n // Shift-right in-place\n // NOTE: `hint` is a lowest bit before trailing zeroes\n // NOTE: if `extended` is present - it will be filled with destroyed bits\n BN.prototype.iushrn = function iushrn (bits, hint, extended) {\n assert(typeof bits === 'number' && bits >= 0);\n var h;\n if (hint) {\n h = (hint - (hint % 26)) / 26;\n } else {\n h = 0;\n }\n\n var r = bits % 26;\n var s = Math.min((bits - r) / 26, this.length);\n var mask = 0x3ffffff ^ ((0x3ffffff >>> r) << r);\n var maskedWords = extended;\n\n h -= s;\n h = Math.max(0, h);\n\n // Extended mode, copy masked part\n if (maskedWords) {\n for (var i = 0; i < s; i++) {\n maskedWords.words[i] = this.words[i];\n }\n maskedWords.length = s;\n }\n\n if (s === 0) {\n // No-op, we should not move anything at all\n } else if (this.length > s) {\n this.length -= s;\n for (i = 0; i < this.length; i++) {\n this.words[i] = this.words[i + s];\n }\n } else {\n this.words[0] = 0;\n this.length = 1;\n }\n\n var carry = 0;\n for (i = this.length - 1; i >= 0 && (carry !== 0 || i >= h); i--) {\n var word = this.words[i] | 0;\n this.words[i] = (carry << (26 - r)) | (word >>> r);\n carry = word & mask;\n }\n\n // Push carried bits as a mask\n if (maskedWords && carry !== 0) {\n maskedWords.words[maskedWords.length++] = carry;\n }\n\n if (this.length === 0) {\n this.words[0] = 0;\n this.length = 1;\n }\n\n return this.strip();\n };\n\n BN.prototype.ishrn = function ishrn (bits, hint, extended) {\n // TODO(indutny): implement me\n assert(this.negative === 0);\n return this.iushrn(bits, hint, extended);\n };\n\n // Shift-left\n BN.prototype.shln = function shln (bits) {\n return this.clone().ishln(bits);\n };\n\n BN.prototype.ushln = function ushln (bits) {\n return this.clone().iushln(bits);\n };\n\n // Shift-right\n BN.prototype.shrn = function shrn (bits) {\n return this.clone().ishrn(bits);\n };\n\n BN.prototype.ushrn = function ushrn (bits) {\n return this.clone().iushrn(bits);\n };\n\n // Test if n bit is set\n BN.prototype.testn = function testn (bit) {\n assert(typeof bit === 'number' && bit >= 0);\n var r = bit % 26;\n var s = (bit - r) / 26;\n var q = 1 << r;\n\n // Fast case: bit is much higher than all existing words\n if (this.length <= s) return false;\n\n // Check bit and return\n var w = this.words[s];\n\n return !!(w & q);\n };\n\n // Return only lowers bits of number (in-place)\n BN.prototype.imaskn = function imaskn (bits) {\n assert(typeof bits === 'number' && bits >= 0);\n var r = bits % 26;\n var s = (bits - r) / 26;\n\n assert(this.negative === 0, 'imaskn works only with positive numbers');\n\n if (this.length <= s) {\n return this;\n }\n\n if (r !== 0) {\n s++;\n }\n this.length = Math.min(s, this.length);\n\n if (r !== 0) {\n var mask = 0x3ffffff ^ ((0x3ffffff >>> r) << r);\n this.words[this.length - 1] &= mask;\n }\n\n return this.strip();\n };\n\n // Return only lowers bits of number\n BN.prototype.maskn = function maskn (bits) {\n return this.clone().imaskn(bits);\n };\n\n // Add plain number `num` to `this`\n BN.prototype.iaddn = function iaddn (num) {\n assert(typeof num === 'number');\n assert(num < 0x4000000);\n if (num < 0) return this.isubn(-num);\n\n // Possible sign change\n if (this.negative !== 0) {\n if (this.length === 1 && (this.words[0] | 0) < num) {\n this.words[0] = num - (this.words[0] | 0);\n this.negative = 0;\n return this;\n }\n\n this.negative = 0;\n this.isubn(num);\n this.negative = 1;\n return this;\n }\n\n // Add without checks\n return this._iaddn(num);\n };\n\n BN.prototype._iaddn = function _iaddn (num) {\n this.words[0] += num;\n\n // Carry\n for (var i = 0; i < this.length && this.words[i] >= 0x4000000; i++) {\n this.words[i] -= 0x4000000;\n if (i === this.length - 1) {\n this.words[i + 1] = 1;\n } else {\n this.words[i + 1]++;\n }\n }\n this.length = Math.max(this.length, i + 1);\n\n return this;\n };\n\n // Subtract plain number `num` from `this`\n BN.prototype.isubn = function isubn (num) {\n assert(typeof num === 'number');\n assert(num < 0x4000000);\n if (num < 0) return this.iaddn(-num);\n\n if (this.negative !== 0) {\n this.negative = 0;\n this.iaddn(num);\n this.negative = 1;\n return this;\n }\n\n this.words[0] -= num;\n\n if (this.length === 1 && this.words[0] < 0) {\n this.words[0] = -this.words[0];\n this.negative = 1;\n } else {\n // Carry\n for (var i = 0; i < this.length && this.words[i] < 0; i++) {\n this.words[i] += 0x4000000;\n this.words[i + 1] -= 1;\n }\n }\n\n return this.strip();\n };\n\n BN.prototype.addn = function addn (num) {\n return this.clone().iaddn(num);\n };\n\n BN.prototype.subn = function subn (num) {\n return this.clone().isubn(num);\n };\n\n BN.prototype.iabs = function iabs () {\n this.negative = 0;\n\n return this;\n };\n\n BN.prototype.abs = function abs () {\n return this.clone().iabs();\n };\n\n BN.prototype._ishlnsubmul = function _ishlnsubmul (num, mul, shift) {\n var len = num.length + shift;\n var i;\n\n this._expand(len);\n\n var w;\n var carry = 0;\n for (i = 0; i < num.length; i++) {\n w = (this.words[i + shift] | 0) + carry;\n var right = (num.words[i] | 0) * mul;\n w -= right & 0x3ffffff;\n carry = (w >> 26) - ((right / 0x4000000) | 0);\n this.words[i + shift] = w & 0x3ffffff;\n }\n for (; i < this.length - shift; i++) {\n w = (this.words[i + shift] | 0) + carry;\n carry = w >> 26;\n this.words[i + shift] = w & 0x3ffffff;\n }\n\n if (carry === 0) return this.strip();\n\n // Subtraction overflow\n assert(carry === -1);\n carry = 0;\n for (i = 0; i < this.length; i++) {\n w = -(this.words[i] | 0) + carry;\n carry = w >> 26;\n this.words[i] = w & 0x3ffffff;\n }\n this.negative = 1;\n\n return this.strip();\n };\n\n BN.prototype._wordDiv = function _wordDiv (num, mode) {\n var shift = this.length - num.length;\n\n var a = this.clone();\n var b = num;\n\n // Normalize\n var bhi = b.words[b.length - 1] | 0;\n var bhiBits = this._countBits(bhi);\n shift = 26 - bhiBits;\n if (shift !== 0) {\n b = b.ushln(shift);\n a.iushln(shift);\n bhi = b.words[b.length - 1] | 0;\n }\n\n // Initialize quotient\n var m = a.length - b.length;\n var q;\n\n if (mode !== 'mod') {\n q = new BN(null);\n q.length = m + 1;\n q.words = new Array(q.length);\n for (var i = 0; i < q.length; i++) {\n q.words[i] = 0;\n }\n }\n\n var diff = a.clone()._ishlnsubmul(b, 1, m);\n if (diff.negative === 0) {\n a = diff;\n if (q) {\n q.words[m] = 1;\n }\n }\n\n for (var j = m - 1; j >= 0; j--) {\n var qj = (a.words[b.length + j] | 0) * 0x4000000 +\n (a.words[b.length + j - 1] | 0);\n\n // NOTE: (qj / bhi) is (0x3ffffff * 0x4000000 + 0x3ffffff) / 0x2000000 max\n // (0x7ffffff)\n qj = Math.min((qj / bhi) | 0, 0x3ffffff);\n\n a._ishlnsubmul(b, qj, j);\n while (a.negative !== 0) {\n qj--;\n a.negative = 0;\n a._ishlnsubmul(b, 1, j);\n if (!a.isZero()) {\n a.negative ^= 1;\n }\n }\n if (q) {\n q.words[j] = qj;\n }\n }\n if (q) {\n q.strip();\n }\n a.strip();\n\n // Denormalize\n if (mode !== 'div' && shift !== 0) {\n a.iushrn(shift);\n }\n\n return {\n div: q || null,\n mod: a\n };\n };\n\n // NOTE: 1) `mode` can be set to `mod` to request mod only,\n // to `div` to request div only, or be absent to\n // request both div & mod\n // 2) `positive` is true if unsigned mod is requested\n BN.prototype.divmod = function divmod (num, mode, positive) {\n assert(!num.isZero());\n\n if (this.isZero()) {\n return {\n div: new BN(0),\n mod: new BN(0)\n };\n }\n\n var div, mod, res;\n if (this.negative !== 0 && num.negative === 0) {\n res = this.neg().divmod(num, mode);\n\n if (mode !== 'mod') {\n div = res.div.neg();\n }\n\n if (mode !== 'div') {\n mod = res.mod.neg();\n if (positive && mod.negative !== 0) {\n mod.iadd(num);\n }\n }\n\n return {\n div: div,\n mod: mod\n };\n }\n\n if (this.negative === 0 && num.negative !== 0) {\n res = this.divmod(num.neg(), mode);\n\n if (mode !== 'mod') {\n div = res.div.neg();\n }\n\n return {\n div: div,\n mod: res.mod\n };\n }\n\n if ((this.negative & num.negative) !== 0) {\n res = this.neg().divmod(num.neg(), mode);\n\n if (mode !== 'div') {\n mod = res.mod.neg();\n if (positive && mod.negative !== 0) {\n mod.isub(num);\n }\n }\n\n return {\n div: res.div,\n mod: mod\n };\n }\n\n // Both numbers are positive at this point\n\n // Strip both numbers to approximate shift value\n if (num.length > this.length || this.cmp(num) < 0) {\n return {\n div: new BN(0),\n mod: this\n };\n }\n\n // Very short reduction\n if (num.length === 1) {\n if (mode === 'div') {\n return {\n div: this.divn(num.words[0]),\n mod: null\n };\n }\n\n if (mode === 'mod') {\n return {\n div: null,\n mod: new BN(this.modn(num.words[0]))\n };\n }\n\n return {\n div: this.divn(num.words[0]),\n mod: new BN(this.modn(num.words[0]))\n };\n }\n\n return this._wordDiv(num, mode);\n };\n\n // Find `this` / `num`\n BN.prototype.div = function div (num) {\n return this.divmod(num, 'div', false).div;\n };\n\n // Find `this` % `num`\n BN.prototype.mod = function mod (num) {\n return this.divmod(num, 'mod', false).mod;\n };\n\n BN.prototype.umod = function umod (num) {\n return this.divmod(num, 'mod', true).mod;\n };\n\n // Find Round(`this` / `num`)\n BN.prototype.divRound = function divRound (num) {\n var dm = this.divmod(num);\n\n // Fast case - exact division\n if (dm.mod.isZero()) return dm.div;\n\n var mod = dm.div.negative !== 0 ? dm.mod.isub(num) : dm.mod;\n\n var half = num.ushrn(1);\n var r2 = num.andln(1);\n var cmp = mod.cmp(half);\n\n // Round down\n if (cmp < 0 || r2 === 1 && cmp === 0) return dm.div;\n\n // Round up\n return dm.div.negative !== 0 ? dm.div.isubn(1) : dm.div.iaddn(1);\n };\n\n BN.prototype.modn = function modn (num) {\n assert(num <= 0x3ffffff);\n var p = (1 << 26) % num;\n\n var acc = 0;\n for (var i = this.length - 1; i >= 0; i--) {\n acc = (p * acc + (this.words[i] | 0)) % num;\n }\n\n return acc;\n };\n\n // In-place division by number\n BN.prototype.idivn = function idivn (num) {\n assert(num <= 0x3ffffff);\n\n var carry = 0;\n for (var i = this.length - 1; i >= 0; i--) {\n var w = (this.words[i] | 0) + carry * 0x4000000;\n this.words[i] = (w / num) | 0;\n carry = w % num;\n }\n\n return this.strip();\n };\n\n BN.prototype.divn = function divn (num) {\n return this.clone().idivn(num);\n };\n\n BN.prototype.egcd = function egcd (p) {\n assert(p.negative === 0);\n assert(!p.isZero());\n\n var x = this;\n var y = p.clone();\n\n if (x.negative !== 0) {\n x = x.umod(p);\n } else {\n x = x.clone();\n }\n\n // A * x + B * y = x\n var A = new BN(1);\n var B = new BN(0);\n\n // C * x + D * y = y\n var C = new BN(0);\n var D = new BN(1);\n\n var g = 0;\n\n while (x.isEven() && y.isEven()) {\n x.iushrn(1);\n y.iushrn(1);\n ++g;\n }\n\n var yp = y.clone();\n var xp = x.clone();\n\n while (!x.isZero()) {\n for (var i = 0, im = 1; (x.words[0] & im) === 0 && i < 26; ++i, im <<= 1);\n if (i > 0) {\n x.iushrn(i);\n while (i-- > 0) {\n if (A.isOdd() || B.isOdd()) {\n A.iadd(yp);\n B.isub(xp);\n }\n\n A.iushrn(1);\n B.iushrn(1);\n }\n }\n\n for (var j = 0, jm = 1; (y.words[0] & jm) === 0 && j < 26; ++j, jm <<= 1);\n if (j > 0) {\n y.iushrn(j);\n while (j-- > 0) {\n if (C.isOdd() || D.isOdd()) {\n C.iadd(yp);\n D.isub(xp);\n }\n\n C.iushrn(1);\n D.iushrn(1);\n }\n }\n\n if (x.cmp(y) >= 0) {\n x.isub(y);\n A.isub(C);\n B.isub(D);\n } else {\n y.isub(x);\n C.isub(A);\n D.isub(B);\n }\n }\n\n return {\n a: C,\n b: D,\n gcd: y.iushln(g)\n };\n };\n\n // This is reduced incarnation of the binary EEA\n // above, designated to invert members of the\n // _prime_ fields F(p) at a maximal speed\n BN.prototype._invmp = function _invmp (p) {\n assert(p.negative === 0);\n assert(!p.isZero());\n\n var a = this;\n var b = p.clone();\n\n if (a.negative !== 0) {\n a = a.umod(p);\n } else {\n a = a.clone();\n }\n\n var x1 = new BN(1);\n var x2 = new BN(0);\n\n var delta = b.clone();\n\n while (a.cmpn(1) > 0 && b.cmpn(1) > 0) {\n for (var i = 0, im = 1; (a.words[0] & im) === 0 && i < 26; ++i, im <<= 1);\n if (i > 0) {\n a.iushrn(i);\n while (i-- > 0) {\n if (x1.isOdd()) {\n x1.iadd(delta);\n }\n\n x1.iushrn(1);\n }\n }\n\n for (var j = 0, jm = 1; (b.words[0] & jm) === 0 && j < 26; ++j, jm <<= 1);\n if (j > 0) {\n b.iushrn(j);\n while (j-- > 0) {\n if (x2.isOdd()) {\n x2.iadd(delta);\n }\n\n x2.iushrn(1);\n }\n }\n\n if (a.cmp(b) >= 0) {\n a.isub(b);\n x1.isub(x2);\n } else {\n b.isub(a);\n x2.isub(x1);\n }\n }\n\n var res;\n if (a.cmpn(1) === 0) {\n res = x1;\n } else {\n res = x2;\n }\n\n if (res.cmpn(0) < 0) {\n res.iadd(p);\n }\n\n return res;\n };\n\n BN.prototype.gcd = function gcd (num) {\n if (this.isZero()) return num.abs();\n if (num.isZero()) return this.abs();\n\n var a = this.clone();\n var b = num.clone();\n a.negative = 0;\n b.negative = 0;\n\n // Remove common factor of two\n for (var shift = 0; a.isEven() && b.isEven(); shift++) {\n a.iushrn(1);\n b.iushrn(1);\n }\n\n do {\n while (a.isEven()) {\n a.iushrn(1);\n }\n while (b.isEven()) {\n b.iushrn(1);\n }\n\n var r = a.cmp(b);\n if (r < 0) {\n // Swap `a` and `b` to make `a` always bigger than `b`\n var t = a;\n a = b;\n b = t;\n } else if (r === 0 || b.cmpn(1) === 0) {\n break;\n }\n\n a.isub(b);\n } while (true);\n\n return b.iushln(shift);\n };\n\n // Invert number in the field F(num)\n BN.prototype.invm = function invm (num) {\n return this.egcd(num).a.umod(num);\n };\n\n BN.prototype.isEven = function isEven () {\n return (this.words[0] & 1) === 0;\n };\n\n BN.prototype.isOdd = function isOdd () {\n return (this.words[0] & 1) === 1;\n };\n\n // And first word and num\n BN.prototype.andln = function andln (num) {\n return this.words[0] & num;\n };\n\n // Increment at the bit position in-line\n BN.prototype.bincn = function bincn (bit) {\n assert(typeof bit === 'number');\n var r = bit % 26;\n var s = (bit - r) / 26;\n var q = 1 << r;\n\n // Fast case: bit is much higher than all existing words\n if (this.length <= s) {\n this._expand(s + 1);\n this.words[s] |= q;\n return this;\n }\n\n // Add bit and propagate, if needed\n var carry = q;\n for (var i = s; carry !== 0 && i < this.length; i++) {\n var w = this.words[i] | 0;\n w += carry;\n carry = w >>> 26;\n w &= 0x3ffffff;\n this.words[i] = w;\n }\n if (carry !== 0) {\n this.words[i] = carry;\n this.length++;\n }\n return this;\n };\n\n BN.prototype.isZero = function isZero () {\n return this.length === 1 && this.words[0] === 0;\n };\n\n BN.prototype.cmpn = function cmpn (num) {\n var negative = num < 0;\n\n if (this.negative !== 0 && !negative) return -1;\n if (this.negative === 0 && negative) return 1;\n\n this.strip();\n\n var res;\n if (this.length > 1) {\n res = 1;\n } else {\n if (negative) {\n num = -num;\n }\n\n assert(num <= 0x3ffffff, 'Number is too big');\n\n var w = this.words[0] | 0;\n res = w === num ? 0 : w < num ? -1 : 1;\n }\n if (this.negative !== 0) return -res | 0;\n return res;\n };\n\n // Compare two numbers and return:\n // 1 - if `this` > `num`\n // 0 - if `this` == `num`\n // -1 - if `this` < `num`\n BN.prototype.cmp = function cmp (num) {\n if (this.negative !== 0 && num.negative === 0) return -1;\n if (this.negative === 0 && num.negative !== 0) return 1;\n\n var res = this.ucmp(num);\n if (this.negative !== 0) return -res | 0;\n return res;\n };\n\n // Unsigned comparison\n BN.prototype.ucmp = function ucmp (num) {\n // At this point both numbers have the same sign\n if (this.length > num.length) return 1;\n if (this.length < num.length) return -1;\n\n var res = 0;\n for (var i = this.length - 1; i >= 0; i--) {\n var a = this.words[i] | 0;\n var b = num.words[i] | 0;\n\n if (a === b) continue;\n if (a < b) {\n res = -1;\n } else if (a > b) {\n res = 1;\n }\n break;\n }\n return res;\n };\n\n BN.prototype.gtn = function gtn (num) {\n return this.cmpn(num) === 1;\n };\n\n BN.prototype.gt = function gt (num) {\n return this.cmp(num) === 1;\n };\n\n BN.prototype.gten = function gten (num) {\n return this.cmpn(num) >= 0;\n };\n\n BN.prototype.gte = function gte (num) {\n return this.cmp(num) >= 0;\n };\n\n BN.prototype.ltn = function ltn (num) {\n return this.cmpn(num) === -1;\n };\n\n BN.prototype.lt = function lt (num) {\n return this.cmp(num) === -1;\n };\n\n BN.prototype.lten = function lten (num) {\n return this.cmpn(num) <= 0;\n };\n\n BN.prototype.lte = function lte (num) {\n return this.cmp(num) <= 0;\n };\n\n BN.prototype.eqn = function eqn (num) {\n return this.cmpn(num) === 0;\n };\n\n BN.prototype.eq = function eq (num) {\n return this.cmp(num) === 0;\n };\n\n //\n // A reduce context, could be using montgomery or something better, depending\n // on the `m` itself.\n //\n BN.red = function red (num) {\n return new Red(num);\n };\n\n BN.prototype.toRed = function toRed (ctx) {\n assert(!this.red, 'Already a number in reduction context');\n assert(this.negative === 0, 'red works only with positives');\n return ctx.convertTo(this)._forceRed(ctx);\n };\n\n BN.prototype.fromRed = function fromRed () {\n assert(this.red, 'fromRed works only with numbers in reduction context');\n return this.red.convertFrom(this);\n };\n\n BN.prototype._forceRed = function _forceRed (ctx) {\n this.red = ctx;\n return this;\n };\n\n BN.prototype.forceRed = function forceRed (ctx) {\n assert(!this.red, 'Already a number in reduction context');\n return this._forceRed(ctx);\n };\n\n BN.prototype.redAdd = function redAdd (num) {\n assert(this.red, 'redAdd works only with red numbers');\n return this.red.add(this, num);\n };\n\n BN.prototype.redIAdd = function redIAdd (num) {\n assert(this.red, 'redIAdd works only with red numbers');\n return this.red.iadd(this, num);\n };\n\n BN.prototype.redSub = function redSub (num) {\n assert(this.red, 'redSub works only with red numbers');\n return this.red.sub(this, num);\n };\n\n BN.prototype.redISub = function redISub (num) {\n assert(this.red, 'redISub works only with red numbers');\n return this.red.isub(this, num);\n };\n\n BN.prototype.redShl = function redShl (num) {\n assert(this.red, 'redShl works only with red numbers');\n return this.red.shl(this, num);\n };\n\n BN.prototype.redMul = function redMul (num) {\n assert(this.red, 'redMul works only with red numbers');\n this.red._verify2(this, num);\n return this.red.mul(this, num);\n };\n\n BN.prototype.redIMul = function redIMul (num) {\n assert(this.red, 'redMul works only with red numbers');\n this.red._verify2(this, num);\n return this.red.imul(this, num);\n };\n\n BN.prototype.redSqr = function redSqr () {\n assert(this.red, 'redSqr works only with red numbers');\n this.red._verify1(this);\n return this.red.sqr(this);\n };\n\n BN.prototype.redISqr = function redISqr () {\n assert(this.red, 'redISqr works only with red numbers');\n this.red._verify1(this);\n return this.red.isqr(this);\n };\n\n // Square root over p\n BN.prototype.redSqrt = function redSqrt () {\n assert(this.red, 'redSqrt works only with red numbers');\n this.red._verify1(this);\n return this.red.sqrt(this);\n };\n\n BN.prototype.redInvm = function redInvm () {\n assert(this.red, 'redInvm works only with red numbers');\n this.red._verify1(this);\n return this.red.invm(this);\n };\n\n // Return negative clone of `this` % `red modulo`\n BN.prototype.redNeg = function redNeg () {\n assert(this.red, 'redNeg works only with red numbers');\n this.red._verify1(this);\n return this.red.neg(this);\n };\n\n BN.prototype.redPow = function redPow (num) {\n assert(this.red && !num.red, 'redPow(normalNum)');\n this.red._verify1(this);\n return this.red.pow(this, num);\n };\n\n // Prime numbers with efficient reduction\n var primes = {\n k256: null,\n p224: null,\n p192: null,\n p25519: null\n };\n\n // Pseudo-Mersenne prime\n function MPrime (name, p) {\n // P = 2 ^ N - K\n this.name = name;\n this.p = new BN(p, 16);\n this.n = this.p.bitLength();\n this.k = new BN(1).iushln(this.n).isub(this.p);\n\n this.tmp = this._tmp();\n }\n\n MPrime.prototype._tmp = function _tmp () {\n var tmp = new BN(null);\n tmp.words = new Array(Math.ceil(this.n / 13));\n return tmp;\n };\n\n MPrime.prototype.ireduce = function ireduce (num) {\n // Assumes that `num` is less than `P^2`\n // num = HI * (2 ^ N - K) + HI * K + LO = HI * K + LO (mod P)\n var r = num;\n var rlen;\n\n do {\n this.split(r, this.tmp);\n r = this.imulK(r);\n r = r.iadd(this.tmp);\n rlen = r.bitLength();\n } while (rlen > this.n);\n\n var cmp = rlen < this.n ? -1 : r.ucmp(this.p);\n if (cmp === 0) {\n r.words[0] = 0;\n r.length = 1;\n } else if (cmp > 0) {\n r.isub(this.p);\n } else {\n r.strip();\n }\n\n return r;\n };\n\n MPrime.prototype.split = function split (input, out) {\n input.iushrn(this.n, 0, out);\n };\n\n MPrime.prototype.imulK = function imulK (num) {\n return num.imul(this.k);\n };\n\n function K256 () {\n MPrime.call(\n this,\n 'k256',\n 'ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff fffffffe fffffc2f');\n }\n inherits(K256, MPrime);\n\n K256.prototype.split = function split (input, output) {\n // 256 = 9 * 26 + 22\n var mask = 0x3fffff;\n\n var outLen = Math.min(input.length, 9);\n for (var i = 0; i < outLen; i++) {\n output.words[i] = input.words[i];\n }\n output.length = outLen;\n\n if (input.length <= 9) {\n input.words[0] = 0;\n input.length = 1;\n return;\n }\n\n // Shift by 9 limbs\n var prev = input.words[9];\n output.words[output.length++] = prev & mask;\n\n for (i = 10; i < input.length; i++) {\n var next = input.words[i] | 0;\n input.words[i - 10] = ((next & mask) << 4) | (prev >>> 22);\n prev = next;\n }\n prev >>>= 22;\n input.words[i - 10] = prev;\n if (prev === 0 && input.length > 10) {\n input.length -= 10;\n } else {\n input.length -= 9;\n }\n };\n\n K256.prototype.imulK = function imulK (num) {\n // K = 0x1000003d1 = [ 0x40, 0x3d1 ]\n num.words[num.length] = 0;\n num.words[num.length + 1] = 0;\n num.length += 2;\n\n // bounded at: 0x40 * 0x3ffffff + 0x3d0 = 0x100000390\n var lo = 0;\n for (var i = 0; i < num.length; i++) {\n var w = num.words[i] | 0;\n lo += w * 0x3d1;\n num.words[i] = lo & 0x3ffffff;\n lo = w * 0x40 + ((lo / 0x4000000) | 0);\n }\n\n // Fast length reduction\n if (num.words[num.length - 1] === 0) {\n num.length--;\n if (num.words[num.length - 1] === 0) {\n num.length--;\n }\n }\n return num;\n };\n\n function P224 () {\n MPrime.call(\n this,\n 'p224',\n 'ffffffff ffffffff ffffffff ffffffff 00000000 00000000 00000001');\n }\n inherits(P224, MPrime);\n\n function P192 () {\n MPrime.call(\n this,\n 'p192',\n 'ffffffff ffffffff ffffffff fffffffe ffffffff ffffffff');\n }\n inherits(P192, MPrime);\n\n function P25519 () {\n // 2 ^ 255 - 19\n MPrime.call(\n this,\n '25519',\n '7fffffffffffffff ffffffffffffffff ffffffffffffffff ffffffffffffffed');\n }\n inherits(P25519, MPrime);\n\n P25519.prototype.imulK = function imulK (num) {\n // K = 0x13\n var carry = 0;\n for (var i = 0; i < num.length; i++) {\n var hi = (num.words[i] | 0) * 0x13 + carry;\n var lo = hi & 0x3ffffff;\n hi >>>= 26;\n\n num.words[i] = lo;\n carry = hi;\n }\n if (carry !== 0) {\n num.words[num.length++] = carry;\n }\n return num;\n };\n\n // Exported mostly for testing purposes, use plain name instead\n BN._prime = function prime (name) {\n // Cached version of prime\n if (primes[name]) return primes[name];\n\n var prime;\n if (name === 'k256') {\n prime = new K256();\n } else if (name === 'p224') {\n prime = new P224();\n } else if (name === 'p192') {\n prime = new P192();\n } else if (name === 'p25519') {\n prime = new P25519();\n } else {\n throw new Error('Unknown prime ' + name);\n }\n primes[name] = prime;\n\n return prime;\n };\n\n //\n // Base reduction engine\n //\n function Red (m) {\n if (typeof m === 'string') {\n var prime = BN._prime(m);\n this.m = prime.p;\n this.prime = prime;\n } else {\n assert(m.gtn(1), 'modulus must be greater than 1');\n this.m = m;\n this.prime = null;\n }\n }\n\n Red.prototype._verify1 = function _verify1 (a) {\n assert(a.negative === 0, 'red works only with positives');\n assert(a.red, 'red works only with red numbers');\n };\n\n Red.prototype._verify2 = function _verify2 (a, b) {\n assert((a.negative | b.negative) === 0, 'red works only with positives');\n assert(a.red && a.red === b.red,\n 'red works only with red numbers');\n };\n\n Red.prototype.imod = function imod (a) {\n if (this.prime) return this.prime.ireduce(a)._forceRed(this);\n return a.umod(this.m)._forceRed(this);\n };\n\n Red.prototype.neg = function neg (a) {\n if (a.isZero()) {\n return a.clone();\n }\n\n return this.m.sub(a)._forceRed(this);\n };\n\n Red.prototype.add = function add (a, b) {\n this._verify2(a, b);\n\n var res = a.add(b);\n if (res.cmp(this.m) >= 0) {\n res.isub(this.m);\n }\n return res._forceRed(this);\n };\n\n Red.prototype.iadd = function iadd (a, b) {\n this._verify2(a, b);\n\n var res = a.iadd(b);\n if (res.cmp(this.m) >= 0) {\n res.isub(this.m);\n }\n return res;\n };\n\n Red.prototype.sub = function sub (a, b) {\n this._verify2(a, b);\n\n var res = a.sub(b);\n if (res.cmpn(0) < 0) {\n res.iadd(this.m);\n }\n return res._forceRed(this);\n };\n\n Red.prototype.isub = function isub (a, b) {\n this._verify2(a, b);\n\n var res = a.isub(b);\n if (res.cmpn(0) < 0) {\n res.iadd(this.m);\n }\n return res;\n };\n\n Red.prototype.shl = function shl (a, num) {\n this._verify1(a);\n return this.imod(a.ushln(num));\n };\n\n Red.prototype.imul = function imul (a, b) {\n this._verify2(a, b);\n return this.imod(a.imul(b));\n };\n\n Red.prototype.mul = function mul (a, b) {\n this._verify2(a, b);\n return this.imod(a.mul(b));\n };\n\n Red.prototype.isqr = function isqr (a) {\n return this.imul(a, a.clone());\n };\n\n Red.prototype.sqr = function sqr (a) {\n return this.mul(a, a);\n };\n\n Red.prototype.sqrt = function sqrt (a) {\n if (a.isZero()) return a.clone();\n\n var mod3 = this.m.andln(3);\n assert(mod3 % 2 === 1);\n\n // Fast case\n if (mod3 === 3) {\n var pow = this.m.add(new BN(1)).iushrn(2);\n return this.pow(a, pow);\n }\n\n // Tonelli-Shanks algorithm (Totally unoptimized and slow)\n //\n // Find Q and S, that Q * 2 ^ S = (P - 1)\n var q = this.m.subn(1);\n var s = 0;\n while (!q.isZero() && q.andln(1) === 0) {\n s++;\n q.iushrn(1);\n }\n assert(!q.isZero());\n\n var one = new BN(1).toRed(this);\n var nOne = one.redNeg();\n\n // Find quadratic non-residue\n // NOTE: Max is such because of generalized Riemann hypothesis.\n var lpow = this.m.subn(1).iushrn(1);\n var z = this.m.bitLength();\n z = new BN(2 * z * z).toRed(this);\n\n while (this.pow(z, lpow).cmp(nOne) !== 0) {\n z.redIAdd(nOne);\n }\n\n var c = this.pow(z, q);\n var r = this.pow(a, q.addn(1).iushrn(1));\n var t = this.pow(a, q);\n var m = s;\n while (t.cmp(one) !== 0) {\n var tmp = t;\n for (var i = 0; tmp.cmp(one) !== 0; i++) {\n tmp = tmp.redSqr();\n }\n assert(i < m);\n var b = this.pow(c, new BN(1).iushln(m - i - 1));\n\n r = r.redMul(b);\n c = b.redSqr();\n t = t.redMul(c);\n m = i;\n }\n\n return r;\n };\n\n Red.prototype.invm = function invm (a) {\n var inv = a._invmp(this.m);\n if (inv.negative !== 0) {\n inv.negative = 0;\n return this.imod(inv).redNeg();\n } else {\n return this.imod(inv);\n }\n };\n\n Red.prototype.pow = function pow (a, num) {\n if (num.isZero()) return new BN(1);\n if (num.cmpn(1) === 0) return a.clone();\n\n var windowSize = 4;\n var wnd = new Array(1 << windowSize);\n wnd[0] = new BN(1).toRed(this);\n wnd[1] = a;\n for (var i = 2; i < wnd.length; i++) {\n wnd[i] = this.mul(wnd[i - 1], a);\n }\n\n var res = wnd[0];\n var current = 0;\n var currentLen = 0;\n var start = num.bitLength() % 26;\n if (start === 0) {\n start = 26;\n }\n\n for (i = num.length - 1; i >= 0; i--) {\n var word = num.words[i];\n for (var j = start - 1; j >= 0; j--) {\n var bit = (word >> j) & 1;\n if (res !== wnd[0]) {\n res = this.sqr(res);\n }\n\n if (bit === 0 && current === 0) {\n currentLen = 0;\n continue;\n }\n\n current <<= 1;\n current |= bit;\n currentLen++;\n if (currentLen !== windowSize && (i !== 0 || j !== 0)) continue;\n\n res = this.mul(res, wnd[current]);\n currentLen = 0;\n current = 0;\n }\n start = 26;\n }\n\n return res;\n };\n\n Red.prototype.convertTo = function convertTo (num) {\n var r = num.umod(this.m);\n\n return r === num ? r.clone() : r;\n };\n\n Red.prototype.convertFrom = function convertFrom (num) {\n var res = num.clone();\n res.red = null;\n return res;\n };\n\n //\n // Montgomery method engine\n //\n\n BN.mont = function mont (num) {\n return new Mont(num);\n };\n\n function Mont (m) {\n Red.call(this, m);\n\n this.shift = this.m.bitLength();\n if (this.shift % 26 !== 0) {\n this.shift += 26 - (this.shift % 26);\n }\n\n this.r = new BN(1).iushln(this.shift);\n this.r2 = this.imod(this.r.sqr());\n this.rinv = this.r._invmp(this.m);\n\n this.minv = this.rinv.mul(this.r).isubn(1).div(this.m);\n this.minv = this.minv.umod(this.r);\n this.minv = this.r.sub(this.minv);\n }\n inherits(Mont, Red);\n\n Mont.prototype.convertTo = function convertTo (num) {\n return this.imod(num.ushln(this.shift));\n };\n\n Mont.prototype.convertFrom = function convertFrom (num) {\n var r = this.imod(num.mul(this.rinv));\n r.red = null;\n return r;\n };\n\n Mont.prototype.imul = function imul (a, b) {\n if (a.isZero() || b.isZero()) {\n a.words[0] = 0;\n a.length = 1;\n return a;\n }\n\n var t = a.imul(b);\n var c = t.maskn(this.shift).mul(this.minv).imaskn(this.shift).mul(this.m);\n var u = t.isub(c).iushrn(this.shift);\n var res = u;\n\n if (u.cmp(this.m) >= 0) {\n res = u.isub(this.m);\n } else if (u.cmpn(0) < 0) {\n res = u.iadd(this.m);\n }\n\n return res._forceRed(this);\n };\n\n Mont.prototype.mul = function mul (a, b) {\n if (a.isZero() || b.isZero()) return new BN(0)._forceRed(this);\n\n var t = a.mul(b);\n var c = t.maskn(this.shift).mul(this.minv).imaskn(this.shift).mul(this.m);\n var u = t.isub(c).iushrn(this.shift);\n var res = u;\n if (u.cmp(this.m) >= 0) {\n res = u.isub(this.m);\n } else if (u.cmpn(0) < 0) {\n res = u.iadd(this.m);\n }\n\n return res._forceRed(this);\n };\n\n Mont.prototype.invm = function invm (a) {\n // (AR)^-1 * R^2 = (A^-1 * R^-1) * R^2 = A^-1 * R\n var res = this.imod(a._invmp(this.m).mul(this.r2));\n return res._forceRed(this);\n };\n})(typeof module === 'undefined' || module, this);\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(204)(module)))\n\n/***/ }),\n/* 3 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar elliptic = exports;\n\nelliptic.version = __webpack_require__(156).version;\nelliptic.utils = __webpack_require__(155);\nelliptic.rand = __webpack_require__(58);\nelliptic.curve = __webpack_require__(26);\nelliptic.curves = __webpack_require__(147);\n\n// Protocols\nelliptic.ec = __webpack_require__(148);\nelliptic.eddsa = __webpack_require__(151);\n\n\n/***/ }),\n/* 4 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* eslint-disable no-param-reassign */\n/* eslint-disable no-restricted-syntax */\n/* eslint-disable guard-for-in */\n\nvar assert = __webpack_require__(6);\nvar objectAssign = __webpack_require__(105);\n\nfunction pick(object, keys) {\n return keys.reduce(function(prev, key) {\n if (object[key]) {\n prev[key] = object[key];\n }\n return prev;\n }, {});\n}\n\nfunction getKeysNotIn(obj, allowedKeys) {\n var notAllowed = [];\n for (var key in obj) {\n if (allowedKeys.indexOf(key) === -1) {\n notAllowed.push(key);\n }\n }\n return notAllowed;\n}\n\nfunction objectValues(obj) {\n var values = [];\n for (var key in obj) {\n values.push(obj[key]);\n }\n return values;\n}\n\nfunction extend() {\n var params = objectValues(arguments);\n params.unshift({});\n return objectAssign.get().apply(undefined, params);\n}\n\nfunction merge(object, keys) {\n return {\n base: keys ? pick(object, keys) : object,\n with: function(object2, keys2) {\n object2 = keys2 ? pick(object2, keys2) : object2;\n return extend(this.base, object2);\n }\n };\n}\n\nfunction blacklist(object, blacklistedKeys) {\n return Object.keys(object).reduce(function(p, key) {\n if (blacklistedKeys.indexOf(key) === -1) {\n p[key] = object[key];\n }\n return p;\n }, {});\n}\n\nfunction camelToSnake(str) {\n var newKey = '';\n var index = 0;\n var code;\n var wasPrevNumber = true;\n var wasPrevUppercase = true;\n\n while (index < str.length) {\n code = str.charCodeAt(index);\n if (\n (!wasPrevUppercase && code >= 65 && code <= 90) ||\n (!wasPrevNumber && code >= 48 && code <= 57)\n ) {\n newKey += '_';\n newKey += str[index].toLowerCase();\n } else {\n newKey += str[index].toLowerCase();\n }\n wasPrevNumber = code >= 48 && code <= 57;\n wasPrevUppercase = code >= 65 && code <= 90;\n index++;\n }\n\n return newKey;\n}\n\nfunction snakeToCamel(str) {\n var parts = str.split('_');\n return parts.reduce(function(p, c) {\n return p + c.charAt(0).toUpperCase() + c.slice(1);\n }, parts.shift());\n}\n\nfunction toSnakeCase(object, exceptions) {\n if (typeof object !== 'object' || assert.isArray(object) || object === null) {\n return object;\n }\n exceptions = exceptions || [];\n\n return Object.keys(object).reduce(function(p, key) {\n var newKey = exceptions.indexOf(key) === -1 ? camelToSnake(key) : key;\n p[newKey] = toSnakeCase(object[key]);\n return p;\n }, {});\n}\n\nfunction toCamelCase(object, exceptions) {\n if (typeof object !== 'object' || assert.isArray(object) || object === null) {\n return object;\n }\n\n exceptions = exceptions || [];\n\n return Object.keys(object).reduce(function(p, key) {\n var newKey = exceptions.indexOf(key) === -1 ? snakeToCamel(key) : key;\n p[newKey] = toCamelCase(object[key]);\n return p;\n }, {});\n}\n\nmodule.exports = {\n toSnakeCase: toSnakeCase,\n toCamelCase: toCamelCase,\n blacklist: blacklist,\n merge: merge,\n pick: pick,\n getKeysNotIn: getKeysNotIn,\n extend: extend\n};\n\n\n/***/ }),\n/* 5 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(global) {function redirect(url) {\n global.window.location = url;\n}\n\nfunction getDocument() {\n return global.window.document;\n}\n\nfunction getWindow() {\n return global.window;\n}\n\nmodule.exports = {\n redirect: redirect,\n getDocument: getDocument,\n getWindow: getWindow\n};\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(11)))\n\n/***/ }),\n/* 6 */\n/***/ (function(module, exports) {\n\nvar toString = Object.prototype.toString;\n\nfunction attribute(o, attr, type, text) {\n type = type === 'array' ? 'object' : type;\n if (o && typeof o[attr] !== type) {\n throw new Error(text);\n }\n}\n\nfunction variable(o, type, text) {\n if (typeof o !== type) {\n throw new Error(text);\n }\n}\n\nfunction value(o, values, text) {\n if (values.indexOf(o) === -1) {\n throw new Error(text);\n }\n}\n\nfunction check(o, config, attributes) {\n if (!config.optional || o) {\n variable(o, config.type, config.message);\n }\n if (config.type === 'object' && attributes) {\n var keys = Object.keys(attributes);\n\n for (var index = 0; index < keys.length; index++) {\n var a = keys[index];\n if (!attributes[a].optional || o[a]) {\n if (!attributes[a].condition || attributes[a].condition(o)) {\n attribute(o, a, attributes[a].type, attributes[a].message);\n if (attributes[a].values) {\n value(o[a], attributes[a].values, attributes[a].value_message);\n }\n }\n }\n }\n }\n}\n\n/**\n * Wrap `Array.isArray` Polyfill for IE9\n * source: https://developer.mozilla.org/en-US/docs/Web/JavaScript/Reference/Global_Objects/Array/isArray\n *\n * @param {Array} array\n * @private\n */\nfunction isArray(array) {\n if (this.supportsIsArray()) {\n return Array.isArray(array);\n }\n\n return toString.call(array) === '[object Array]';\n}\n\nfunction supportsIsArray() {\n return Array.isArray != null;\n}\n\nmodule.exports = {\n check: check,\n attribute: attribute,\n variable: variable,\n value: value,\n isArray: isArray,\n supportsIsArray: supportsIsArray\n};\n\n\n/***/ }),\n/* 7 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar hash = exports;\n\nhash.utils = __webpack_require__(161);\nhash.common = __webpack_require__(157);\nhash.sha = __webpack_require__(160);\nhash.ripemd = __webpack_require__(159);\nhash.hmac = __webpack_require__(158);\n\n// Proxy hash functions to the main object\nhash.sha1 = hash.sha.sha1;\nhash.sha256 = hash.sha.sha256;\nhash.sha224 = hash.sha.sha224;\nhash.sha384 = hash.sha.sha384;\nhash.sha512 = hash.sha.sha512;\nhash.ripemd160 = hash.ripemd.ripemd160;\n\n\n/***/ }),\n/* 8 */\n/***/ (function(module, exports) {\n\nmodule.exports = assert;\n\nfunction assert(val, msg) {\n if (!val)\n throw new Error(msg || 'Assertion failed');\n}\n\nassert.equal = function assertEqual(l, r, msg) {\n if (l != r)\n throw new Error(msg || ('Assertion failed: ' + l + ' != ' + r));\n};\n\n\n/***/ }),\n/* 9 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n// a duplex stream is just a stream that is both readable and writable.\n// Since JS doesn't have multiple prototypal inheritance, this class\n// prototypally inherits from Readable, and then parasitically from\n// Writable.\n\n\n\n/**/\n\nvar objectKeys = Object.keys || function (obj) {\n var keys = [];\n for (var key in obj) {\n keys.push(key);\n }return keys;\n};\n/**/\n\nmodule.exports = Duplex;\n\n/**/\nvar processNextTick = __webpack_require__(41);\n/**/\n\n/**/\nvar util = __webpack_require__(20);\nutil.inherits = __webpack_require__(1);\n/**/\n\nvar Readable = __webpack_require__(81);\nvar Writable = __webpack_require__(42);\n\nutil.inherits(Duplex, Readable);\n\nvar keys = objectKeys(Writable.prototype);\nfor (var v = 0; v < keys.length; v++) {\n var method = keys[v];\n if (!Duplex.prototype[method]) Duplex.prototype[method] = Writable.prototype[method];\n}\n\nfunction Duplex(options) {\n if (!(this instanceof Duplex)) return new Duplex(options);\n\n Readable.call(this, options);\n Writable.call(this, options);\n\n if (options && options.readable === false) this.readable = false;\n\n if (options && options.writable === false) this.writable = false;\n\n this.allowHalfOpen = true;\n if (options && options.allowHalfOpen === false) this.allowHalfOpen = false;\n\n this.once('end', onend);\n}\n\n// the no-half-open enforcer\nfunction onend() {\n // if we allow half-open state, or if the writable side ended,\n // then we're ok.\n if (this.allowHalfOpen || this._writableState.ended) return;\n\n // no more data can be written.\n // But allow more writes to happen in this tick.\n processNextTick(onEndNT, this);\n}\n\nfunction onEndNT(self) {\n self.end();\n}\n\nfunction forEach(xs, f) {\n for (var i = 0, l = xs.length; i < l; i++) {\n f(xs[i], i);\n }\n}\n\n/***/ }),\n/* 10 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar __WEBPACK_AMD_DEFINE_FACTORY__, __WEBPACK_AMD_DEFINE_RESULT__;(function (name, context, definition) {\n if (typeof module !== 'undefined' && module.exports) module.exports = definition();\n else if (true) !(__WEBPACK_AMD_DEFINE_FACTORY__ = (definition),\n\t\t\t\t__WEBPACK_AMD_DEFINE_RESULT__ = (typeof __WEBPACK_AMD_DEFINE_FACTORY__ === 'function' ?\n\t\t\t\t(__WEBPACK_AMD_DEFINE_FACTORY__.call(exports, __webpack_require__, exports, module)) :\n\t\t\t\t__WEBPACK_AMD_DEFINE_FACTORY__),\n\t\t\t\t__WEBPACK_AMD_DEFINE_RESULT__ !== undefined && (module.exports = __WEBPACK_AMD_DEFINE_RESULT__));\n else context[name] = definition();\n})('urljoin', this, function () {\n\n function normalize (str, options) {\n\n // make sure protocol is followed by two slashes\n str = str.replace(/:\\//g, '://');\n\n // remove consecutive slashes\n str = str.replace(/([^:\\s])\\/+/g, '$1/');\n\n // remove trailing slash before parameters or hash\n str = str.replace(/\\/(\\?|&|#[^!])/g, '$1');\n\n // replace ? in parameters with &\n str = str.replace(/(\\?.+)\\?/g, '$1&');\n\n return str;\n }\n\n return function () {\n var input = arguments;\n var options = {};\n\n if (typeof arguments[0] === 'object') {\n // new syntax with array and options\n input = arguments[0];\n options = arguments[1] || {};\n }\n\n var joined = [].slice.call(input, 0).join('/');\n return normalize(joined, options);\n };\n\n});\n\n\n/***/ }),\n/* 11 */\n/***/ (function(module, exports) {\n\nvar g;\r\n\r\n// This works in non-strict mode\r\ng = (function() {\r\n\treturn this;\r\n})();\r\n\r\ntry {\r\n\t// This works if eval is allowed (see CSP)\r\n\tg = g || Function(\"return this\")() || (1,eval)(\"this\");\r\n} catch(e) {\r\n\t// This works if the window reference is available\r\n\tif(typeof window === \"object\")\r\n\t\tg = window;\r\n}\r\n\r\n// g can still be undefined, but nothing to do about it...\r\n// We return undefined, instead of nothing here, so it's\r\n// easier to handle this case. if(!global) { ...}\r\n\r\nmodule.exports = g;\r\n\n\n/***/ }),\n/* 12 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var Transform = __webpack_require__(44).Transform\nvar inherits = __webpack_require__(1)\nvar StringDecoder = __webpack_require__(40).StringDecoder\nmodule.exports = CipherBase\ninherits(CipherBase, Transform)\nfunction CipherBase (hashMode) {\n Transform.call(this)\n this.hashMode = typeof hashMode === 'string'\n if (this.hashMode) {\n this[hashMode] = this._finalOrDigest\n } else {\n this.final = this._finalOrDigest\n }\n this._decoder = null\n this._encoding = null\n}\nCipherBase.prototype.update = function (data, inputEnc, outputEnc) {\n if (typeof data === 'string') {\n data = new Buffer(data, inputEnc)\n }\n var outData = this._update(data)\n if (this.hashMode) {\n return this\n }\n if (outputEnc) {\n outData = this._toString(outData, outputEnc)\n }\n return outData\n}\n\nCipherBase.prototype.setAutoPadding = function () {}\n\nCipherBase.prototype.getAuthTag = function () {\n throw new Error('trying to get auth tag in unsupported state')\n}\n\nCipherBase.prototype.setAuthTag = function () {\n throw new Error('trying to set auth tag in unsupported state')\n}\n\nCipherBase.prototype.setAAD = function () {\n throw new Error('trying to set aad in unsupported state')\n}\n\nCipherBase.prototype._transform = function (data, _, next) {\n var err\n try {\n if (this.hashMode) {\n this._update(data)\n } else {\n this.push(this._update(data))\n }\n } catch (e) {\n err = e\n } finally {\n next(err)\n }\n}\nCipherBase.prototype._flush = function (done) {\n var err\n try {\n this.push(this._final())\n } catch (e) {\n err = e\n } finally {\n done(err)\n }\n}\nCipherBase.prototype._finalOrDigest = function (outputEnc) {\n var outData = this._final() || new Buffer('')\n if (outputEnc) {\n outData = this._toString(outData, outputEnc, true)\n }\n return outData\n}\n\nCipherBase.prototype._toString = function (value, enc, fin) {\n if (!this._decoder) {\n this._decoder = new StringDecoder(enc)\n this._encoding = enc\n }\n if (this._encoding !== enc) {\n throw new Error('can\\'t switch encodings')\n }\n var out = this._decoder.write(value)\n if (fin) {\n out += this._decoder.end()\n }\n return out\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 13 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n/* WEBPACK VAR INJECTION */(function(Buffer) {\nvar inherits = __webpack_require__(1)\nvar md5 = __webpack_require__(69)\nvar rmd160 = __webpack_require__(189)\nvar sha = __webpack_require__(191)\n\nvar Base = __webpack_require__(12)\n\nfunction HashNoConstructor(hash) {\n Base.call(this, 'digest')\n\n this._hash = hash\n this.buffers = []\n}\n\ninherits(HashNoConstructor, Base)\n\nHashNoConstructor.prototype._update = function (data) {\n this.buffers.push(data)\n}\n\nHashNoConstructor.prototype._final = function () {\n var buf = Buffer.concat(this.buffers)\n var r = this._hash(buf)\n this.buffers = null\n\n return r\n}\n\nfunction Hash(hash) {\n Base.call(this, 'digest')\n\n this._hash = hash\n}\n\ninherits(Hash, Base)\n\nHash.prototype._update = function (data) {\n this._hash.update(data)\n}\n\nHash.prototype._final = function () {\n return this._hash.digest()\n}\n\nmodule.exports = function createHash (alg) {\n alg = alg.toLowerCase()\n if ('md5' === alg) return new HashNoConstructor(md5)\n if ('rmd160' === alg || 'ripemd160' === alg) return new HashNoConstructor(rmd160)\n\n return new Hash(sha(alg))\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 14 */\n/***/ (function(module, exports) {\n\n// shim for using process in browser\nvar process = module.exports = {};\n\n// cached from whatever global is present so that test runners that stub it\n// don't break things. But we need to wrap it in a try catch in case it is\n// wrapped in strict mode code which doesn't define any globals. It's inside a\n// function because try/catches deoptimize in certain engines.\n\nvar cachedSetTimeout;\nvar cachedClearTimeout;\n\nfunction defaultSetTimout() {\n throw new Error('setTimeout has not been defined');\n}\nfunction defaultClearTimeout () {\n throw new Error('clearTimeout has not been defined');\n}\n(function () {\n try {\n if (typeof setTimeout === 'function') {\n cachedSetTimeout = setTimeout;\n } else {\n cachedSetTimeout = defaultSetTimout;\n }\n } catch (e) {\n cachedSetTimeout = defaultSetTimout;\n }\n try {\n if (typeof clearTimeout === 'function') {\n cachedClearTimeout = clearTimeout;\n } else {\n cachedClearTimeout = defaultClearTimeout;\n }\n } catch (e) {\n cachedClearTimeout = defaultClearTimeout;\n }\n} ())\nfunction runTimeout(fun) {\n if (cachedSetTimeout === setTimeout) {\n //normal enviroments in sane situations\n return setTimeout(fun, 0);\n }\n // if setTimeout wasn't available but was latter defined\n if ((cachedSetTimeout === defaultSetTimout || !cachedSetTimeout) && setTimeout) {\n cachedSetTimeout = setTimeout;\n return setTimeout(fun, 0);\n }\n try {\n // when when somebody has screwed with setTimeout but no I.E. maddness\n return cachedSetTimeout(fun, 0);\n } catch(e){\n try {\n // When we are in I.E. but the script has been evaled so I.E. doesn't trust the global object when called normally\n return cachedSetTimeout.call(null, fun, 0);\n } catch(e){\n // same as above but when it's a version of I.E. that must have the global object for 'this', hopfully our context correct otherwise it will throw a global error\n return cachedSetTimeout.call(this, fun, 0);\n }\n }\n\n\n}\nfunction runClearTimeout(marker) {\n if (cachedClearTimeout === clearTimeout) {\n //normal enviroments in sane situations\n return clearTimeout(marker);\n }\n // if clearTimeout wasn't available but was latter defined\n if ((cachedClearTimeout === defaultClearTimeout || !cachedClearTimeout) && clearTimeout) {\n cachedClearTimeout = clearTimeout;\n return clearTimeout(marker);\n }\n try {\n // when when somebody has screwed with setTimeout but no I.E. maddness\n return cachedClearTimeout(marker);\n } catch (e){\n try {\n // When we are in I.E. but the script has been evaled so I.E. doesn't trust the global object when called normally\n return cachedClearTimeout.call(null, marker);\n } catch (e){\n // same as above but when it's a version of I.E. that must have the global object for 'this', hopfully our context correct otherwise it will throw a global error.\n // Some versions of I.E. have different rules for clearTimeout vs setTimeout\n return cachedClearTimeout.call(this, marker);\n }\n }\n\n\n\n}\nvar queue = [];\nvar draining = false;\nvar currentQueue;\nvar queueIndex = -1;\n\nfunction cleanUpNextTick() {\n if (!draining || !currentQueue) {\n return;\n }\n draining = false;\n if (currentQueue.length) {\n queue = currentQueue.concat(queue);\n } else {\n queueIndex = -1;\n }\n if (queue.length) {\n drainQueue();\n }\n}\n\nfunction drainQueue() {\n if (draining) {\n return;\n }\n var timeout = runTimeout(cleanUpNextTick);\n draining = true;\n\n var len = queue.length;\n while(len) {\n currentQueue = queue;\n queue = [];\n while (++queueIndex < len) {\n if (currentQueue) {\n currentQueue[queueIndex].run();\n }\n }\n queueIndex = -1;\n len = queue.length;\n }\n currentQueue = null;\n draining = false;\n runClearTimeout(timeout);\n}\n\nprocess.nextTick = function (fun) {\n var args = new Array(arguments.length - 1);\n if (arguments.length > 1) {\n for (var i = 1; i < arguments.length; i++) {\n args[i - 1] = arguments[i];\n }\n }\n queue.push(new Item(fun, args));\n if (queue.length === 1 && !draining) {\n runTimeout(drainQueue);\n }\n};\n\n// v8 likes predictible objects\nfunction Item(fun, array) {\n this.fun = fun;\n this.array = array;\n}\nItem.prototype.run = function () {\n this.fun.apply(null, this.array);\n};\nprocess.title = 'browser';\nprocess.browser = true;\nprocess.env = {};\nprocess.argv = [];\nprocess.version = ''; // empty string to avoid regexp issues\nprocess.versions = {};\n\nfunction noop() {}\n\nprocess.on = noop;\nprocess.addListener = noop;\nprocess.once = noop;\nprocess.off = noop;\nprocess.removeListener = noop;\nprocess.removeAllListeners = noop;\nprocess.emit = noop;\n\nprocess.binding = function (name) {\n throw new Error('process.binding is not supported');\n};\n\nprocess.cwd = function () { return '/' };\nprocess.chdir = function (dir) {\n throw new Error('process.chdir is not supported');\n};\nprocess.umask = function() { return 0; };\n\n\n/***/ }),\n/* 15 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {// prototype class for hash functions\nfunction Hash (blockSize, finalSize) {\n this._block = new Buffer(blockSize)\n this._finalSize = finalSize\n this._blockSize = blockSize\n this._len = 0\n this._s = 0\n}\n\nHash.prototype.update = function (data, enc) {\n if (typeof data === 'string') {\n enc = enc || 'utf8'\n data = new Buffer(data, enc)\n }\n\n var l = this._len += data.length\n var s = this._s || 0\n var f = 0\n var buffer = this._block\n\n while (s < l) {\n var t = Math.min(data.length, f + this._blockSize - (s % this._blockSize))\n var ch = (t - f)\n\n for (var i = 0; i < ch; i++) {\n buffer[(s % this._blockSize) + i] = data[i + f]\n }\n\n s += ch\n f += ch\n\n if ((s % this._blockSize) === 0) {\n this._update(buffer)\n }\n }\n this._s = s\n\n return this\n}\n\nHash.prototype.digest = function (enc) {\n // Suppose the length of the message M, in bits, is l\n var l = this._len * 8\n\n // Append the bit 1 to the end of the message\n this._block[this._len % this._blockSize] = 0x80\n\n // and then k zero bits, where k is the smallest non-negative solution to the equation (l + 1 + k) === finalSize mod blockSize\n this._block.fill(0, this._len % this._blockSize + 1)\n\n if (l % (this._blockSize * 8) >= this._finalSize * 8) {\n this._update(this._block)\n this._block.fill(0)\n }\n\n // to this append the block which is equal to the number l written in binary\n // TODO: handle case where l is > Math.pow(2, 29)\n this._block.writeInt32BE(l, this._blockSize - 4)\n\n var hash = this._update(this._block) || this._hash()\n\n return enc ? hash.toString(enc) : hash\n}\n\nHash.prototype._update = function () {\n throw new Error('_update must be implemented by subclass')\n}\n\nmodule.exports = Hash\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 16 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar asn1 = exports;\n\nasn1.bignum = __webpack_require__(2);\n\nasn1.define = __webpack_require__(94).define;\nasn1.base = __webpack_require__(17);\nasn1.constants = __webpack_require__(47);\nasn1.decoders = __webpack_require__(98);\nasn1.encoders = __webpack_require__(100);\n\n\n/***/ }),\n/* 17 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar base = exports;\n\nbase.Reporter = __webpack_require__(96).Reporter;\nbase.DecoderBuffer = __webpack_require__(46).DecoderBuffer;\nbase.EncoderBuffer = __webpack_require__(46).EncoderBuffer;\nbase.Node = __webpack_require__(95);\n\n\n/***/ }),\n/* 18 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar error = __webpack_require__(52);\nvar objectHelper = __webpack_require__(4);\n\nfunction wrapCallback(cb, options) {\n options = options || {};\n options.ignoreCasing = options.ignoreCasing ? options.ignoreCasing : false;\n\n return function(err, data) {\n var errObj;\n\n if (!err && !data) {\n return cb(error.buildResponse('generic_error', 'Something went wrong'));\n }\n\n if (!err && data.err) {\n err = data.err;\n data = null;\n }\n\n if (!err && data.error) {\n err = data;\n data = null;\n }\n\n if (err) {\n errObj = {\n original: err\n };\n\n if (err.response && err.response.statusCode) {\n errObj.statusCode = err.response.statusCode;\n }\n\n if (err.response && err.response.statusText) {\n errObj.statusText = err.response.statusText;\n }\n\n if (err.response && err.response.body) {\n err = err.response.body;\n }\n\n if (err.err) {\n err = err.err;\n }\n\n errObj.code = err.error || err.code || err.error_code || err.status || null;\n errObj.description =\n err.errorDescription ||\n err.error_description ||\n err.description ||\n err.error ||\n err.details ||\n err.err ||\n null;\n\n if (err.name) {\n errObj.name = err.name;\n }\n\n if (err.policy) {\n errObj.policy = err.policy;\n }\n\n return cb(errObj);\n }\n\n if (data.type && (data.type === 'text/html' || data.type === 'text/plain')) {\n return cb(null, data.text);\n }\n\n if (options.ignoreCasing) {\n return cb(null, data.body || data);\n }\n\n return cb(null, objectHelper.toCamelCase(data.body || data));\n };\n}\n\nmodule.exports = wrapCallback;\n\n\n/***/ }),\n/* 19 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {module.exports = function xor (a, b) {\n var length = Math.min(a.length, b.length)\n var buffer = new Buffer(length)\n\n for (var i = 0; i < length; ++i) {\n buffer[i] = a[i] ^ b[i]\n }\n\n return buffer\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 20 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {// Copyright Joyent, Inc. and other Node contributors.\n//\n// Permission is hereby granted, free of charge, to any person obtaining a\n// copy of this software and associated documentation files (the\n// \"Software\"), to deal in the Software without restriction, including\n// without limitation the rights to use, copy, modify, merge, publish,\n// distribute, sublicense, and/or sell copies of the Software, and to permit\n// persons to whom the Software is furnished to do so, subject to the\n// following conditions:\n//\n// The above copyright notice and this permission notice shall be included\n// in all copies or substantial portions of the Software.\n//\n// THE SOFTWARE IS PROVIDED \"AS IS\", WITHOUT WARRANTY OF ANY KIND, EXPRESS\n// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF\n// MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN\n// NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,\n// DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR\n// OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE\n// USE OR OTHER DEALINGS IN THE SOFTWARE.\n\n// NOTE: These type checking functions intentionally don't use `instanceof`\n// because it is fragile and can be easily faked with `Object.create()`.\n\nfunction isArray(arg) {\n if (Array.isArray) {\n return Array.isArray(arg);\n }\n return objectToString(arg) === '[object Array]';\n}\nexports.isArray = isArray;\n\nfunction isBoolean(arg) {\n return typeof arg === 'boolean';\n}\nexports.isBoolean = isBoolean;\n\nfunction isNull(arg) {\n return arg === null;\n}\nexports.isNull = isNull;\n\nfunction isNullOrUndefined(arg) {\n return arg == null;\n}\nexports.isNullOrUndefined = isNullOrUndefined;\n\nfunction isNumber(arg) {\n return typeof arg === 'number';\n}\nexports.isNumber = isNumber;\n\nfunction isString(arg) {\n return typeof arg === 'string';\n}\nexports.isString = isString;\n\nfunction isSymbol(arg) {\n return typeof arg === 'symbol';\n}\nexports.isSymbol = isSymbol;\n\nfunction isUndefined(arg) {\n return arg === void 0;\n}\nexports.isUndefined = isUndefined;\n\nfunction isRegExp(re) {\n return objectToString(re) === '[object RegExp]';\n}\nexports.isRegExp = isRegExp;\n\nfunction isObject(arg) {\n return typeof arg === 'object' && arg !== null;\n}\nexports.isObject = isObject;\n\nfunction isDate(d) {\n return objectToString(d) === '[object Date]';\n}\nexports.isDate = isDate;\n\nfunction isError(e) {\n return (objectToString(e) === '[object Error]' || e instanceof Error);\n}\nexports.isError = isError;\n\nfunction isFunction(arg) {\n return typeof arg === 'function';\n}\nexports.isFunction = isFunction;\n\nfunction isPrimitive(arg) {\n return arg === null ||\n typeof arg === 'boolean' ||\n typeof arg === 'number' ||\n typeof arg === 'string' ||\n typeof arg === 'symbol' || // ES6 symbol\n typeof arg === 'undefined';\n}\nexports.isPrimitive = isPrimitive;\n\nexports.isBuffer = Buffer.isBuffer;\n\nfunction objectToString(o) {\n return Object.prototype.toString.call(o);\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 21 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n/* WEBPACK VAR INJECTION */(function(global, Buffer, process) {\n\nfunction oldBrowser () {\n throw new Error('secure random number generation not supported by this browser\\nuse chrome, FireFox or Internet Explorer 11')\n}\n\nvar crypto = global.crypto || global.msCrypto\n\nif (crypto && crypto.getRandomValues) {\n module.exports = randomBytes\n} else {\n module.exports = oldBrowser\n}\n\nfunction randomBytes (size, cb) {\n // phantomjs needs to throw\n if (size > 65536) throw new Error('requested too many random bytes')\n // in case browserify isn't using the Uint8Array version\n var rawBytes = new global.Uint8Array(size)\n\n // This will not work in older browsers.\n // See https://developer.mozilla.org/en-US/docs/Web/API/window.crypto.getRandomValues\n if (size > 0) { // getRandomValues fails on IE if size == 0\n crypto.getRandomValues(rawBytes)\n }\n // phantomjs doesn't like a buffer being passed here\n var bytes = new Buffer(rawBytes.buffer)\n\n if (typeof cb === 'function') {\n return process.nextTick(function () {\n cb(null, bytes)\n })\n }\n\n return bytes\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(11), __webpack_require__(0).Buffer, __webpack_require__(14)))\n\n/***/ }),\n/* 22 */\n/***/ (function(module, exports) {\n\n/* eslint-disable no-console */\n\nfunction Warn(options) {\n this.disableWarnings = options.disableWarnings;\n}\n\nWarn.prototype.warning = function(message) {\n if (this.disableWarnings) {\n return;\n }\n\n console.warn(message);\n};\n\nmodule.exports = Warn;\n\n\n/***/ }),\n/* 23 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {// based on the aes implimentation in triple sec\n// https://github.com/keybase/triplesec\n\n// which is in turn based on the one from crypto-js\n// https://code.google.com/p/crypto-js/\n\nvar uint_max = Math.pow(2, 32)\nfunction fixup_uint32 (x) {\n var ret, x_pos\n ret = x > uint_max || x < 0 ? (x_pos = Math.abs(x) % uint_max, x < 0 ? uint_max - x_pos : x_pos) : x\n return ret\n}\nfunction scrub_vec (v) {\n for (var i = 0; i < v.length; v++) {\n v[i] = 0\n }\n return false\n}\n\nfunction Global () {\n this.SBOX = []\n this.INV_SBOX = []\n this.SUB_MIX = [[], [], [], []]\n this.INV_SUB_MIX = [[], [], [], []]\n this.init()\n this.RCON = [0x00, 0x01, 0x02, 0x04, 0x08, 0x10, 0x20, 0x40, 0x80, 0x1b, 0x36]\n}\n\nGlobal.prototype.init = function () {\n var d, i, sx, t, x, x2, x4, x8, xi, _i\n d = (function () {\n var _i, _results\n _results = []\n for (i = _i = 0; _i < 256; i = ++_i) {\n if (i < 128) {\n _results.push(i << 1)\n } else {\n _results.push((i << 1) ^ 0x11b)\n }\n }\n return _results\n })()\n x = 0\n xi = 0\n for (i = _i = 0; _i < 256; i = ++_i) {\n sx = xi ^ (xi << 1) ^ (xi << 2) ^ (xi << 3) ^ (xi << 4)\n sx = (sx >>> 8) ^ (sx & 0xff) ^ 0x63\n this.SBOX[x] = sx\n this.INV_SBOX[sx] = x\n x2 = d[x]\n x4 = d[x2]\n x8 = d[x4]\n t = (d[sx] * 0x101) ^ (sx * 0x1010100)\n this.SUB_MIX[0][x] = (t << 24) | (t >>> 8)\n this.SUB_MIX[1][x] = (t << 16) | (t >>> 16)\n this.SUB_MIX[2][x] = (t << 8) | (t >>> 24)\n this.SUB_MIX[3][x] = t\n t = (x8 * 0x1010101) ^ (x4 * 0x10001) ^ (x2 * 0x101) ^ (x * 0x1010100)\n this.INV_SUB_MIX[0][sx] = (t << 24) | (t >>> 8)\n this.INV_SUB_MIX[1][sx] = (t << 16) | (t >>> 16)\n this.INV_SUB_MIX[2][sx] = (t << 8) | (t >>> 24)\n this.INV_SUB_MIX[3][sx] = t\n if (x === 0) {\n x = xi = 1\n } else {\n x = x2 ^ d[d[d[x8 ^ x2]]]\n xi ^= d[d[xi]]\n }\n }\n return true\n}\n\nvar G = new Global()\n\nAES.blockSize = 4 * 4\n\nAES.prototype.blockSize = AES.blockSize\n\nAES.keySize = 256 / 8\n\nAES.prototype.keySize = AES.keySize\n\nfunction bufferToArray (buf) {\n var len = buf.length / 4\n var out = new Array(len)\n var i = -1\n while (++i < len) {\n out[i] = buf.readUInt32BE(i * 4)\n }\n return out\n}\nfunction AES (key) {\n this._key = bufferToArray(key)\n this._doReset()\n}\n\nAES.prototype._doReset = function () {\n var invKsRow, keySize, keyWords, ksRow, ksRows, t\n keyWords = this._key\n keySize = keyWords.length\n this._nRounds = keySize + 6\n ksRows = (this._nRounds + 1) * 4\n this._keySchedule = []\n for (ksRow = 0; ksRow < ksRows; ksRow++) {\n this._keySchedule[ksRow] = ksRow < keySize ? keyWords[ksRow] : (t = this._keySchedule[ksRow - 1], (ksRow % keySize) === 0 ? (t = (t << 8) | (t >>> 24), t = (G.SBOX[t >>> 24] << 24) | (G.SBOX[(t >>> 16) & 0xff] << 16) | (G.SBOX[(t >>> 8) & 0xff] << 8) | G.SBOX[t & 0xff], t ^= G.RCON[(ksRow / keySize) | 0] << 24) : keySize > 6 && ksRow % keySize === 4 ? t = (G.SBOX[t >>> 24] << 24) | (G.SBOX[(t >>> 16) & 0xff] << 16) | (G.SBOX[(t >>> 8) & 0xff] << 8) | G.SBOX[t & 0xff] : void 0, this._keySchedule[ksRow - keySize] ^ t)\n }\n this._invKeySchedule = []\n for (invKsRow = 0; invKsRow < ksRows; invKsRow++) {\n ksRow = ksRows - invKsRow\n t = this._keySchedule[ksRow - (invKsRow % 4 ? 0 : 4)]\n this._invKeySchedule[invKsRow] = invKsRow < 4 || ksRow <= 4 ? t : G.INV_SUB_MIX[0][G.SBOX[t >>> 24]] ^ G.INV_SUB_MIX[1][G.SBOX[(t >>> 16) & 0xff]] ^ G.INV_SUB_MIX[2][G.SBOX[(t >>> 8) & 0xff]] ^ G.INV_SUB_MIX[3][G.SBOX[t & 0xff]]\n }\n return true\n}\n\nAES.prototype.encryptBlock = function (M) {\n M = bufferToArray(new Buffer(M))\n var out = this._doCryptBlock(M, this._keySchedule, G.SUB_MIX, G.SBOX)\n var buf = new Buffer(16)\n buf.writeUInt32BE(out[0], 0)\n buf.writeUInt32BE(out[1], 4)\n buf.writeUInt32BE(out[2], 8)\n buf.writeUInt32BE(out[3], 12)\n return buf\n}\n\nAES.prototype.decryptBlock = function (M) {\n M = bufferToArray(new Buffer(M))\n var temp = [M[3], M[1]]\n M[1] = temp[0]\n M[3] = temp[1]\n var out = this._doCryptBlock(M, this._invKeySchedule, G.INV_SUB_MIX, G.INV_SBOX)\n var buf = new Buffer(16)\n buf.writeUInt32BE(out[0], 0)\n buf.writeUInt32BE(out[3], 4)\n buf.writeUInt32BE(out[2], 8)\n buf.writeUInt32BE(out[1], 12)\n return buf\n}\n\nAES.prototype.scrub = function () {\n scrub_vec(this._keySchedule)\n scrub_vec(this._invKeySchedule)\n scrub_vec(this._key)\n}\n\nAES.prototype._doCryptBlock = function (M, keySchedule, SUB_MIX, SBOX) {\n var ksRow, s0, s1, s2, s3, t0, t1, t2, t3\n\n s0 = M[0] ^ keySchedule[0]\n s1 = M[1] ^ keySchedule[1]\n s2 = M[2] ^ keySchedule[2]\n s3 = M[3] ^ keySchedule[3]\n ksRow = 4\n for (var round = 1; round < this._nRounds; round++) {\n t0 = SUB_MIX[0][s0 >>> 24] ^ SUB_MIX[1][(s1 >>> 16) & 0xff] ^ SUB_MIX[2][(s2 >>> 8) & 0xff] ^ SUB_MIX[3][s3 & 0xff] ^ keySchedule[ksRow++]\n t1 = SUB_MIX[0][s1 >>> 24] ^ SUB_MIX[1][(s2 >>> 16) & 0xff] ^ SUB_MIX[2][(s3 >>> 8) & 0xff] ^ SUB_MIX[3][s0 & 0xff] ^ keySchedule[ksRow++]\n t2 = SUB_MIX[0][s2 >>> 24] ^ SUB_MIX[1][(s3 >>> 16) & 0xff] ^ SUB_MIX[2][(s0 >>> 8) & 0xff] ^ SUB_MIX[3][s1 & 0xff] ^ keySchedule[ksRow++]\n t3 = SUB_MIX[0][s3 >>> 24] ^ SUB_MIX[1][(s0 >>> 16) & 0xff] ^ SUB_MIX[2][(s1 >>> 8) & 0xff] ^ SUB_MIX[3][s2 & 0xff] ^ keySchedule[ksRow++]\n s0 = t0\n s1 = t1\n s2 = t2\n s3 = t3\n }\n t0 = ((SBOX[s0 >>> 24] << 24) | (SBOX[(s1 >>> 16) & 0xff] << 16) | (SBOX[(s2 >>> 8) & 0xff] << 8) | SBOX[s3 & 0xff]) ^ keySchedule[ksRow++]\n t1 = ((SBOX[s1 >>> 24] << 24) | (SBOX[(s2 >>> 16) & 0xff] << 16) | (SBOX[(s3 >>> 8) & 0xff] << 8) | SBOX[s0 & 0xff]) ^ keySchedule[ksRow++]\n t2 = ((SBOX[s2 >>> 24] << 24) | (SBOX[(s3 >>> 16) & 0xff] << 16) | (SBOX[(s0 >>> 8) & 0xff] << 8) | SBOX[s1 & 0xff]) ^ keySchedule[ksRow++]\n t3 = ((SBOX[s3 >>> 24] << 24) | (SBOX[(s0 >>> 16) & 0xff] << 16) | (SBOX[(s1 >>> 8) & 0xff] << 8) | SBOX[s2 & 0xff]) ^ keySchedule[ksRow++]\n return [\n fixup_uint32(t0),\n fixup_uint32(t1),\n fixup_uint32(t2),\n fixup_uint32(t3)\n ]\n}\n\nexports.AES = AES\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 24 */\n/***/ (function(module, exports) {\n\nexports['aes-128-ecb'] = {\n cipher: 'AES',\n key: 128,\n iv: 0,\n mode: 'ECB',\n type: 'block'\n}\nexports['aes-192-ecb'] = {\n cipher: 'AES',\n key: 192,\n iv: 0,\n mode: 'ECB',\n type: 'block'\n}\nexports['aes-256-ecb'] = {\n cipher: 'AES',\n key: 256,\n iv: 0,\n mode: 'ECB',\n type: 'block'\n}\nexports['aes-128-cbc'] = {\n cipher: 'AES',\n key: 128,\n iv: 16,\n mode: 'CBC',\n type: 'block'\n}\nexports['aes-192-cbc'] = {\n cipher: 'AES',\n key: 192,\n iv: 16,\n mode: 'CBC',\n type: 'block'\n}\nexports['aes-256-cbc'] = {\n cipher: 'AES',\n key: 256,\n iv: 16,\n mode: 'CBC',\n type: 'block'\n}\nexports['aes128'] = exports['aes-128-cbc']\nexports['aes192'] = exports['aes-192-cbc']\nexports['aes256'] = exports['aes-256-cbc']\nexports['aes-128-cfb'] = {\n cipher: 'AES',\n key: 128,\n iv: 16,\n mode: 'CFB',\n type: 'stream'\n}\nexports['aes-192-cfb'] = {\n cipher: 'AES',\n key: 192,\n iv: 16,\n mode: 'CFB',\n type: 'stream'\n}\nexports['aes-256-cfb'] = {\n cipher: 'AES',\n key: 256,\n iv: 16,\n mode: 'CFB',\n type: 'stream'\n}\nexports['aes-128-cfb8'] = {\n cipher: 'AES',\n key: 128,\n iv: 16,\n mode: 'CFB8',\n type: 'stream'\n}\nexports['aes-192-cfb8'] = {\n cipher: 'AES',\n key: 192,\n iv: 16,\n mode: 'CFB8',\n type: 'stream'\n}\nexports['aes-256-cfb8'] = {\n cipher: 'AES',\n key: 256,\n iv: 16,\n mode: 'CFB8',\n type: 'stream'\n}\nexports['aes-128-cfb1'] = {\n cipher: 'AES',\n key: 128,\n iv: 16,\n mode: 'CFB1',\n type: 'stream'\n}\nexports['aes-192-cfb1'] = {\n cipher: 'AES',\n key: 192,\n iv: 16,\n mode: 'CFB1',\n type: 'stream'\n}\nexports['aes-256-cfb1'] = {\n cipher: 'AES',\n key: 256,\n iv: 16,\n mode: 'CFB1',\n type: 'stream'\n}\nexports['aes-128-ofb'] = {\n cipher: 'AES',\n key: 128,\n iv: 16,\n mode: 'OFB',\n type: 'stream'\n}\nexports['aes-192-ofb'] = {\n cipher: 'AES',\n key: 192,\n iv: 16,\n mode: 'OFB',\n type: 'stream'\n}\nexports['aes-256-ofb'] = {\n cipher: 'AES',\n key: 256,\n iv: 16,\n mode: 'OFB',\n type: 'stream'\n}\nexports['aes-128-ctr'] = {\n cipher: 'AES',\n key: 128,\n iv: 16,\n mode: 'CTR',\n type: 'stream'\n}\nexports['aes-192-ctr'] = {\n cipher: 'AES',\n key: 192,\n iv: 16,\n mode: 'CTR',\n type: 'stream'\n}\nexports['aes-256-ctr'] = {\n cipher: 'AES',\n key: 256,\n iv: 16,\n mode: 'CTR',\n type: 'stream'\n}\nexports['aes-128-gcm'] = {\n cipher: 'AES',\n key: 128,\n iv: 12,\n mode: 'GCM',\n type: 'auth'\n}\nexports['aes-192-gcm'] = {\n cipher: 'AES',\n key: 192,\n iv: 12,\n mode: 'GCM',\n type: 'auth'\n}\nexports['aes-256-gcm'] = {\n cipher: 'AES',\n key: 256,\n iv: 12,\n mode: 'GCM',\n type: 'auth'\n}\n\n\n/***/ }),\n/* 25 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var xor = __webpack_require__(19)\n\nfunction incr32 (iv) {\n var len = iv.length\n var item\n while (len--) {\n item = iv.readUInt8(len)\n if (item === 255) {\n iv.writeUInt8(0, len)\n } else {\n item++\n iv.writeUInt8(item, len)\n break\n }\n }\n}\n\nfunction getBlock (self) {\n var out = self._cipher.encryptBlock(self._prev)\n incr32(self._prev)\n return out\n}\n\nexports.encrypt = function (self, chunk) {\n while (self._cache.length < chunk.length) {\n self._cache = Buffer.concat([self._cache, getBlock(self)])\n }\n var pad = self._cache.slice(0, chunk.length)\n self._cache = self._cache.slice(chunk.length)\n return xor(chunk, pad)\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 26 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar curve = exports;\n\ncurve.base = __webpack_require__(143);\ncurve.short = __webpack_require__(146);\ncurve.mont = __webpack_require__(145);\ncurve.edwards = __webpack_require__(144);\n\n\n/***/ }),\n/* 27 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var md5 = __webpack_require__(69)\nmodule.exports = EVP_BytesToKey\nfunction EVP_BytesToKey (password, salt, keyLen, ivLen) {\n if (!Buffer.isBuffer(password)) {\n password = new Buffer(password, 'binary')\n }\n if (salt && !Buffer.isBuffer(salt)) {\n salt = new Buffer(salt, 'binary')\n }\n keyLen = keyLen / 8\n ivLen = ivLen || 0\n var ki = 0\n var ii = 0\n var key = new Buffer(keyLen)\n var iv = new Buffer(ivLen)\n var addmd = 0\n var md_buf\n var i\n var bufs = []\n while (true) {\n if (addmd++ > 0) {\n bufs.push(md_buf)\n }\n bufs.push(password)\n if (salt) {\n bufs.push(salt)\n }\n md_buf = md5(Buffer.concat(bufs))\n bufs = []\n i = 0\n if (keyLen > 0) {\n while (true) {\n if (keyLen === 0) {\n break\n }\n if (i === md_buf.length) {\n break\n }\n key[ki++] = md_buf[i]\n keyLen--\n i++\n }\n }\n if (ivLen > 0 && i !== md_buf.length) {\n while (true) {\n if (ivLen === 0) {\n break\n }\n if (i === md_buf.length) {\n break\n }\n iv[ii++] = md_buf[i]\n ivLen--\n i++\n }\n }\n if (keyLen === 0 && ivLen === 0) {\n break\n }\n }\n for (i = 0; i < md_buf.length; i++) {\n md_buf[i] = 0\n }\n return {\n key: key,\n iv: iv\n }\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 28 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var asn1 = __webpack_require__(172)\nvar aesid = __webpack_require__(171)\nvar fixProc = __webpack_require__(174)\nvar ciphers = __webpack_require__(34)\nvar compat = __webpack_require__(75)\nmodule.exports = parseKeys\n\nfunction parseKeys (buffer) {\n var password\n if (typeof buffer === 'object' && !Buffer.isBuffer(buffer)) {\n password = buffer.passphrase\n buffer = buffer.key\n }\n if (typeof buffer === 'string') {\n buffer = new Buffer(buffer)\n }\n\n var stripped = fixProc(buffer, password)\n\n var type = stripped.tag\n var data = stripped.data\n var subtype, ndata\n switch (type) {\n case 'CERTIFICATE':\n ndata = asn1.certificate.decode(data, 'der').tbsCertificate.subjectPublicKeyInfo\n // falls through\n case 'PUBLIC KEY':\n if (!ndata) {\n ndata = asn1.PublicKey.decode(data, 'der')\n }\n subtype = ndata.algorithm.algorithm.join('.')\n switch (subtype) {\n case '1.2.840.113549.1.1.1':\n return asn1.RSAPublicKey.decode(ndata.subjectPublicKey.data, 'der')\n case '1.2.840.10045.2.1':\n ndata.subjectPrivateKey = ndata.subjectPublicKey\n return {\n type: 'ec',\n data: ndata\n }\n case '1.2.840.10040.4.1':\n ndata.algorithm.params.pub_key = asn1.DSAparam.decode(ndata.subjectPublicKey.data, 'der')\n return {\n type: 'dsa',\n data: ndata.algorithm.params\n }\n default: throw new Error('unknown key id ' + subtype)\n }\n throw new Error('unknown key type ' + type)\n case 'ENCRYPTED PRIVATE KEY':\n data = asn1.EncryptedPrivateKey.decode(data, 'der')\n data = decrypt(data, password)\n // falls through\n case 'PRIVATE KEY':\n ndata = asn1.PrivateKey.decode(data, 'der')\n subtype = ndata.algorithm.algorithm.join('.')\n switch (subtype) {\n case '1.2.840.113549.1.1.1':\n return asn1.RSAPrivateKey.decode(ndata.subjectPrivateKey, 'der')\n case '1.2.840.10045.2.1':\n return {\n curve: ndata.algorithm.curve,\n privateKey: asn1.ECPrivateKey.decode(ndata.subjectPrivateKey, 'der').privateKey\n }\n case '1.2.840.10040.4.1':\n ndata.algorithm.params.priv_key = asn1.DSAparam.decode(ndata.subjectPrivateKey, 'der')\n return {\n type: 'dsa',\n params: ndata.algorithm.params\n }\n default: throw new Error('unknown key id ' + subtype)\n }\n throw new Error('unknown key type ' + type)\n case 'RSA PUBLIC KEY':\n return asn1.RSAPublicKey.decode(data, 'der')\n case 'RSA PRIVATE KEY':\n return asn1.RSAPrivateKey.decode(data, 'der')\n case 'DSA PRIVATE KEY':\n return {\n type: 'dsa',\n params: asn1.DSAPrivateKey.decode(data, 'der')\n }\n case 'EC PRIVATE KEY':\n data = asn1.ECPrivateKey.decode(data, 'der')\n return {\n curve: data.parameters.value,\n privateKey: data.privateKey\n }\n default: throw new Error('unknown key type ' + type)\n }\n}\nparseKeys.signature = asn1.signature\nfunction decrypt (data, password) {\n var salt = data.algorithm.decrypt.kde.kdeparams.salt\n var iters = parseInt(data.algorithm.decrypt.kde.kdeparams.iters.toString(), 10)\n var algo = aesid[data.algorithm.decrypt.cipher.algo.join('.')]\n var iv = data.algorithm.decrypt.cipher.iv\n var cipherText = data.subjectPrivateKey\n var keylen = parseInt(algo.split('-')[1], 10) / 8\n var key = compat.pbkdf2Sync(password, salt, iters, keylen)\n var cipher = ciphers.createDecipheriv(algo, key, iv)\n var out = []\n out.push(cipher.update(cipherText))\n out.push(cipher.final())\n return Buffer.concat(out)\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 29 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar stringify = __webpack_require__(180);\nvar parse = __webpack_require__(179);\nvar formats = __webpack_require__(79);\n\nmodule.exports = {\n formats: formats,\n parse: parse,\n stringify: stringify\n};\n\n\n/***/ }),\n/* 30 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* eslint-disable no-param-reassign */\nvar request = __webpack_require__(86);\nvar base64Url = __webpack_require__(51);\nvar version = __webpack_require__(31);\n\n// ------------------------------------------------ RequestWrapper\n\nfunction RequestWrapper(req) {\n this.request = req;\n this.method = req.method;\n this.url = req.url;\n this.body = req._data;\n this.headers = req._header;\n}\n\nRequestWrapper.prototype.abort = function() {\n this.request.abort();\n};\n\nRequestWrapper.prototype.getMethod = function() {\n return this.method;\n};\n\nRequestWrapper.prototype.getBody = function() {\n return this.body;\n};\n\nRequestWrapper.prototype.getUrl = function() {\n return this.url;\n};\n\nRequestWrapper.prototype.getHeaders = function() {\n return this.headers;\n};\n\n// ------------------------------------------------ RequestObj\n\nfunction RequestObj(req) {\n this.request = req;\n}\n\nRequestObj.prototype.set = function(key, value) {\n this.request = this.request.set(key, value);\n return this;\n};\n\nRequestObj.prototype.send = function(body) {\n this.request = this.request.send(body);\n return this;\n};\n\nRequestObj.prototype.withCredentials = function() {\n this.request = this.request.withCredentials();\n return this;\n};\n\nRequestObj.prototype.end = function(cb) {\n this.request = this.request.end(cb);\n return new RequestWrapper(this.request);\n};\n\n// ------------------------------------------------ RequestBuilder\n\nfunction RequestBuilder(options) {\n this._sendTelemetry = options._sendTelemetry === false ? options._sendTelemetry : true;\n this._telemetryInfo = options._telemetryInfo || null;\n this._timesToRetryFailedRequests = options._timesToRetryFailedRequests;\n this.headers = options.headers || {};\n}\n\nRequestBuilder.prototype.setCommonConfiguration = function(ongoingRequest, options) {\n options = options || {};\n\n if (this._timesToRetryFailedRequests > 0) {\n ongoingRequest = ongoingRequest.retry(this._timesToRetryFailedRequests);\n }\n\n if (options.noHeaders) {\n return ongoingRequest;\n }\n\n var headers = this.headers;\n ongoingRequest = ongoingRequest.set('Content-Type', 'application/json');\n\n var keys = Object.keys(this.headers);\n\n for (var a = 0; a < keys.length; a++) {\n ongoingRequest = ongoingRequest.set(keys[a], headers[keys[a]]);\n }\n\n if (this._sendTelemetry) {\n ongoingRequest = ongoingRequest.set('Auth0-Client', this.getTelemetryData());\n }\n\n return ongoingRequest;\n};\n\nRequestBuilder.prototype.getTelemetryData = function() {\n var clientInfo = this._telemetryInfo || { name: 'auth0.js', version: version.raw };\n var jsonClientInfo = JSON.stringify(clientInfo);\n return base64Url.encode(jsonClientInfo);\n};\n\nRequestBuilder.prototype.get = function(url, options) {\n return new RequestObj(this.setCommonConfiguration(request.get(url), options));\n};\n\nRequestBuilder.prototype.post = function(url, options) {\n return new RequestObj(this.setCommonConfiguration(request.post(url), options));\n};\n\nRequestBuilder.prototype.patch = function(url, options) {\n return new RequestObj(this.setCommonConfiguration(request.patch(url), options));\n};\n\nmodule.exports = RequestBuilder;\n\n\n/***/ }),\n/* 31 */\n/***/ (function(module, exports) {\n\nmodule.exports = { raw: '9.0.0' };\n\n\n/***/ }),\n/* 32 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar urljoin = __webpack_require__(10);\n\nvar windowHelper = __webpack_require__(5);\nvar objectHelper = __webpack_require__(4);\nvar RequestBuilder = __webpack_require__(30);\nvar WebMessageHandler = __webpack_require__(57);\n\nfunction CrossOriginAuthentication(webAuth, options) {\n this.webAuth = webAuth;\n this.baseOptions = options;\n this.request = new RequestBuilder(options);\n this.webMessageHandler = new WebMessageHandler(webAuth);\n}\n\nfunction getFragment(name) {\n var theWindow = windowHelper.getWindow();\n var value = '&' + theWindow.location.hash.substring(1);\n var parts = value.split('&' + name + '=');\n if (parts.length === 2) {\n return parts.pop().split('&').shift();\n }\n}\n\nfunction createKey(origin, coId) {\n return ['co/verifier', encodeURIComponent(origin), encodeURIComponent(coId)].join('/');\n}\n\n/**\n * Logs in the user with username and password using the cross origin authentication (/co/authenticate) flow. You can use either `username` or `email` to identify the user, but `username` will take precedence over `email`.\n * Some browsers might not be able to successfully authenticate if 3rd party cookies are disabled in your browser. [See here for more information.]{@link https://auth0.com/docs/cross-origin-authentication}.\n * After the /co/authenticate call, you'll have to use the {@link parseHash} function at the `redirectUri` specified in the constructor.\n *\n * @method login\n * @param {Object} options options used in the {@link authorize} call after the login_ticket is acquired\n * @param {String} [options.username] Username (mutually exclusive with email)\n * @param {String} [options.email] Email (mutually exclusive with username)\n * @param {String} options.password Password\n * @param {String} [options.realm] Realm used to authenticate the user, it can be a realm name or a database connection name\n * @param {crossOriginLoginCallback} cb Callback function called only when an authentication error, like invalid username or password, occurs. For other types of errors, there will be a redirect to the `redirectUri`.\n */\nCrossOriginAuthentication.prototype.login = function(options, cb) {\n var _this = this;\n var theWindow = windowHelper.getWindow();\n var url = urljoin(this.baseOptions.rootUrl, '/co/authenticate');\n var authenticateBody = {\n client_id: options.clientID || this.baseOptions.clientID,\n username: options.username || options.email\n };\n if (options.password) {\n authenticateBody.password = options.password;\n }\n if (options.otp) {\n authenticateBody.otp = options.otp;\n }\n var realm = options.realm || this.baseOptions.realm;\n\n if (realm) {\n var credentialType =\n options.credentialType ||\n this.baseOptions.credentialType ||\n 'http://auth0.com/oauth/grant-type/password-realm';\n authenticateBody.realm = realm;\n authenticateBody.credential_type = credentialType;\n } else {\n authenticateBody.credential_type = 'password';\n }\n this.request.post(url).withCredentials().send(authenticateBody).end(function(err, data) {\n if (err) {\n var errorObject = (err.response && err.response.body) || {\n error: 'request_error',\n error_description: JSON.stringify(err)\n };\n return cb(errorObject);\n }\n var popupMode = options.popup === true;\n options = objectHelper.blacklist(options, ['password', 'credentialType', 'otp', 'popup']);\n var authorizeOptions = objectHelper\n .merge(options)\n .with({ loginTicket: data.body.login_ticket });\n var key = createKey(_this.baseOptions.rootUrl, data.body.co_id);\n theWindow.sessionStorage[key] = data.body.co_verifier;\n if (popupMode) {\n _this.webMessageHandler.run(authorizeOptions, cb);\n } else {\n _this.webAuth.authorize(authorizeOptions);\n }\n });\n};\n\nfunction tryGetVerifier(theWindow, key) {\n try {\n var verifier = theWindow.sessionStorage[key];\n theWindow.sessionStorage.removeItem(key);\n return verifier;\n } catch (e) {\n return '';\n }\n}\n\n/**\n * Runs the callback code for the cross origin authentication call. This method is meant to be called by the cross origin authentication callback url.\n *\n * @method callback\n */\nCrossOriginAuthentication.prototype.callback = function() {\n var targetOrigin = decodeURIComponent(getFragment('origin'));\n var theWindow = windowHelper.getWindow();\n\n theWindow.addEventListener('message', function(evt) {\n if (evt.data.type !== 'co_verifier_request') {\n return;\n }\n var key = createKey(evt.origin, evt.data.request.id);\n var verifier = tryGetVerifier(theWindow, key);\n\n evt.source.postMessage(\n {\n type: 'co_verifier_response',\n response: {\n verifier: verifier\n }\n },\n evt.origin\n );\n });\n\n theWindow.parent.postMessage({ type: 'ready' }, targetOrigin);\n};\n\nmodule.exports = CrossOriginAuthentication;\n\n\n/***/ }),\n/* 33 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nexports.byteLength = byteLength\nexports.toByteArray = toByteArray\nexports.fromByteArray = fromByteArray\n\nvar lookup = []\nvar revLookup = []\nvar Arr = typeof Uint8Array !== 'undefined' ? Uint8Array : Array\n\nvar code = 'ABCDEFGHIJKLMNOPQRSTUVWXYZabcdefghijklmnopqrstuvwxyz0123456789+/'\nfor (var i = 0, len = code.length; i < len; ++i) {\n lookup[i] = code[i]\n revLookup[code.charCodeAt(i)] = i\n}\n\nrevLookup['-'.charCodeAt(0)] = 62\nrevLookup['_'.charCodeAt(0)] = 63\n\nfunction placeHoldersCount (b64) {\n var len = b64.length\n if (len % 4 > 0) {\n throw new Error('Invalid string. Length must be a multiple of 4')\n }\n\n // the number of equal signs (place holders)\n // if there are two placeholders, than the two characters before it\n // represent one byte\n // if there is only one, then the three characters before it represent 2 bytes\n // this is just a cheap hack to not do indexOf twice\n return b64[len - 2] === '=' ? 2 : b64[len - 1] === '=' ? 1 : 0\n}\n\nfunction byteLength (b64) {\n // base64 is 4/3 + up to two characters of the original data\n return b64.length * 3 / 4 - placeHoldersCount(b64)\n}\n\nfunction toByteArray (b64) {\n var i, j, l, tmp, placeHolders, arr\n var len = b64.length\n placeHolders = placeHoldersCount(b64)\n\n arr = new Arr(len * 3 / 4 - placeHolders)\n\n // if there are placeholders, only get up to the last complete 4 chars\n l = placeHolders > 0 ? len - 4 : len\n\n var L = 0\n\n for (i = 0, j = 0; i < l; i += 4, j += 3) {\n tmp = (revLookup[b64.charCodeAt(i)] << 18) | (revLookup[b64.charCodeAt(i + 1)] << 12) | (revLookup[b64.charCodeAt(i + 2)] << 6) | revLookup[b64.charCodeAt(i + 3)]\n arr[L++] = (tmp >> 16) & 0xFF\n arr[L++] = (tmp >> 8) & 0xFF\n arr[L++] = tmp & 0xFF\n }\n\n if (placeHolders === 2) {\n tmp = (revLookup[b64.charCodeAt(i)] << 2) | (revLookup[b64.charCodeAt(i + 1)] >> 4)\n arr[L++] = tmp & 0xFF\n } else if (placeHolders === 1) {\n tmp = (revLookup[b64.charCodeAt(i)] << 10) | (revLookup[b64.charCodeAt(i + 1)] << 4) | (revLookup[b64.charCodeAt(i + 2)] >> 2)\n arr[L++] = (tmp >> 8) & 0xFF\n arr[L++] = tmp & 0xFF\n }\n\n return arr\n}\n\nfunction tripletToBase64 (num) {\n return lookup[num >> 18 & 0x3F] + lookup[num >> 12 & 0x3F] + lookup[num >> 6 & 0x3F] + lookup[num & 0x3F]\n}\n\nfunction encodeChunk (uint8, start, end) {\n var tmp\n var output = []\n for (var i = start; i < end; i += 3) {\n tmp = (uint8[i] << 16) + (uint8[i + 1] << 8) + (uint8[i + 2])\n output.push(tripletToBase64(tmp))\n }\n return output.join('')\n}\n\nfunction fromByteArray (uint8) {\n var tmp\n var len = uint8.length\n var extraBytes = len % 3 // if we have 1 byte left, pad 2 bytes\n var output = ''\n var parts = []\n var maxChunkLength = 16383 // must be multiple of 3\n\n // go through the array every three bytes, we'll deal with trailing stuff later\n for (var i = 0, len2 = len - extraBytes; i < len2; i += maxChunkLength) {\n parts.push(encodeChunk(uint8, i, (i + maxChunkLength) > len2 ? len2 : (i + maxChunkLength)))\n }\n\n // pad the end with zeros, but make sure to not forget the extra bytes\n if (extraBytes === 1) {\n tmp = uint8[len - 1]\n output += lookup[tmp >> 2]\n output += lookup[(tmp << 4) & 0x3F]\n output += '=='\n } else if (extraBytes === 2) {\n tmp = (uint8[len - 2] << 8) + (uint8[len - 1])\n output += lookup[tmp >> 10]\n output += lookup[(tmp >> 4) & 0x3F]\n output += lookup[(tmp << 2) & 0x3F]\n output += '='\n }\n\n parts.push(output)\n\n return parts.join('')\n}\n\n\n/***/ }),\n/* 34 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar ciphers = __webpack_require__(120)\nexports.createCipher = exports.Cipher = ciphers.createCipher\nexports.createCipheriv = exports.Cipheriv = ciphers.createCipheriv\nvar deciphers = __webpack_require__(119)\nexports.createDecipher = exports.Decipher = deciphers.createDecipher\nexports.createDecipheriv = exports.Decipheriv = deciphers.createDecipheriv\nvar modes = __webpack_require__(24)\nfunction getCiphers () {\n return Object.keys(modes)\n}\nexports.listCiphers = exports.getCiphers = getCiphers\n\n\n/***/ }),\n/* 35 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var bn = __webpack_require__(2);\nvar randomBytes = __webpack_require__(21);\nmodule.exports = crt;\nfunction blind(priv) {\n var r = getr(priv);\n var blinder = r.toRed(bn.mont(priv.modulus))\n .redPow(new bn(priv.publicExponent)).fromRed();\n return {\n blinder: blinder,\n unblinder:r.invm(priv.modulus)\n };\n}\nfunction crt(msg, priv) {\n var blinds = blind(priv);\n var len = priv.modulus.byteLength();\n var mod = bn.mont(priv.modulus);\n var blinded = new bn(msg).mul(blinds.blinder).umod(priv.modulus);\n var c1 = blinded.toRed(bn.mont(priv.prime1));\n var c2 = blinded.toRed(bn.mont(priv.prime2));\n var qinv = priv.coefficient;\n var p = priv.prime1;\n var q = priv.prime2;\n var m1 = c1.redPow(priv.exponent1);\n var m2 = c2.redPow(priv.exponent2);\n m1 = m1.fromRed();\n m2 = m2.fromRed();\n var h = m1.isub(m2).imul(qinv).umod(p);\n h.imul(q);\n m2.iadd(h);\n return new Buffer(m2.imul(blinds.unblinder).umod(priv.modulus).toArray(false, len));\n}\ncrt.getr = getr;\nfunction getr(priv) {\n var len = priv.modulus.byteLength();\n var r = new bn(randomBytes(len));\n while (r.cmp(priv.modulus) >= 0 || !r.umod(priv.prime1) || !r.umod(priv.prime2)) {\n r = new bn(randomBytes(len));\n }\n return r;\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 36 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n/* WEBPACK VAR INJECTION */(function(global) {\n\nvar buffer = __webpack_require__(0);\nvar Buffer = buffer.Buffer;\nvar SlowBuffer = buffer.SlowBuffer;\nvar MAX_LEN = buffer.kMaxLength || 2147483647;\nexports.alloc = function alloc(size, fill, encoding) {\n if (typeof Buffer.alloc === 'function') {\n return Buffer.alloc(size, fill, encoding);\n }\n if (typeof encoding === 'number') {\n throw new TypeError('encoding must not be number');\n }\n if (typeof size !== 'number') {\n throw new TypeError('size must be a number');\n }\n if (size > MAX_LEN) {\n throw new RangeError('size is too large');\n }\n var enc = encoding;\n var _fill = fill;\n if (_fill === undefined) {\n enc = undefined;\n _fill = 0;\n }\n var buf = new Buffer(size);\n if (typeof _fill === 'string') {\n var fillBuf = new Buffer(_fill, enc);\n var flen = fillBuf.length;\n var i = -1;\n while (++i < size) {\n buf[i] = fillBuf[i % flen];\n }\n } else {\n buf.fill(_fill);\n }\n return buf;\n}\nexports.allocUnsafe = function allocUnsafe(size) {\n if (typeof Buffer.allocUnsafe === 'function') {\n return Buffer.allocUnsafe(size);\n }\n if (typeof size !== 'number') {\n throw new TypeError('size must be a number');\n }\n if (size > MAX_LEN) {\n throw new RangeError('size is too large');\n }\n return new Buffer(size);\n}\nexports.from = function from(value, encodingOrOffset, length) {\n if (typeof Buffer.from === 'function' && (!global.Uint8Array || Uint8Array.from !== Buffer.from)) {\n return Buffer.from(value, encodingOrOffset, length);\n }\n if (typeof value === 'number') {\n throw new TypeError('\"value\" argument must not be a number');\n }\n if (typeof value === 'string') {\n return new Buffer(value, encodingOrOffset);\n }\n if (typeof ArrayBuffer !== 'undefined' && value instanceof ArrayBuffer) {\n var offset = encodingOrOffset;\n if (arguments.length === 1) {\n return new Buffer(value);\n }\n if (typeof offset === 'undefined') {\n offset = 0;\n }\n var len = length;\n if (typeof len === 'undefined') {\n len = value.byteLength - offset;\n }\n if (offset >= value.byteLength) {\n throw new RangeError('\\'offset\\' is out of bounds');\n }\n if (len > value.byteLength - offset) {\n throw new RangeError('\\'length\\' is out of bounds');\n }\n return new Buffer(value.slice(offset, offset + len));\n }\n if (Buffer.isBuffer(value)) {\n var out = new Buffer(value.length);\n value.copy(out, 0, 0, value.length);\n return out;\n }\n if (value) {\n if (Array.isArray(value) || (typeof ArrayBuffer !== 'undefined' && value.buffer instanceof ArrayBuffer) || 'length' in value) {\n return new Buffer(value);\n }\n if (value.type === 'Buffer' && Array.isArray(value.data)) {\n return new Buffer(value.data);\n }\n }\n\n throw new TypeError('First argument must be a string, Buffer, ' + 'ArrayBuffer, Array, or array-like object.');\n}\nexports.allocUnsafeSlow = function allocUnsafeSlow(size) {\n if (typeof Buffer.allocUnsafeSlow === 'function') {\n return Buffer.allocUnsafeSlow(size);\n }\n if (typeof size !== 'number') {\n throw new TypeError('size must be a number');\n }\n if (size >= MAX_LEN) {\n throw new RangeError('size is too large');\n }\n return new SlowBuffer(size);\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(11)))\n\n/***/ }),\n/* 37 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n/* WEBPACK VAR INJECTION */(function(Buffer) {\nvar createHash = __webpack_require__(13);\nvar inherits = __webpack_require__(1)\n\nvar Transform = __webpack_require__(44).Transform\n\nvar ZEROS = new Buffer(128)\nZEROS.fill(0)\n\nfunction Hmac(alg, key) {\n Transform.call(this)\n alg = alg.toLowerCase()\n if (typeof key === 'string') {\n key = new Buffer(key)\n }\n\n var blocksize = (alg === 'sha512' || alg === 'sha384') ? 128 : 64\n\n this._alg = alg\n this._key = key\n\n if (key.length > blocksize) {\n key = createHash(alg).update(key).digest()\n\n } else if (key.length < blocksize) {\n key = Buffer.concat([key, ZEROS], blocksize)\n }\n\n var ipad = this._ipad = new Buffer(blocksize)\n var opad = this._opad = new Buffer(blocksize)\n\n for (var i = 0; i < blocksize; i++) {\n ipad[i] = key[i] ^ 0x36\n opad[i] = key[i] ^ 0x5C\n }\n\n this._hash = createHash(alg).update(ipad)\n}\n\ninherits(Hmac, Transform)\n\nHmac.prototype.update = function (data, enc) {\n this._hash.update(data, enc)\n\n return this\n}\n\nHmac.prototype._transform = function (data, _, next) {\n this._hash.update(data)\n\n next()\n}\n\nHmac.prototype._flush = function (next) {\n this.push(this.digest())\n\n next()\n}\n\nHmac.prototype.digest = function (enc) {\n var h = this._hash.digest()\n\n return createHash(this._alg).update(this._opad).update(h).digest(enc)\n}\n\nmodule.exports = function createHmac(alg, key) {\n return new Hmac(alg, key)\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 38 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nexports.utils = __webpack_require__(139);\nexports.Cipher = __webpack_require__(136);\nexports.DES = __webpack_require__(137);\nexports.CBC = __webpack_require__(135);\nexports.EDE = __webpack_require__(138);\n\n\n/***/ }),\n/* 39 */\n/***/ (function(module, exports) {\n\n// Copyright Joyent, Inc. and other Node contributors.\n//\n// Permission is hereby granted, free of charge, to any person obtaining a\n// copy of this software and associated documentation files (the\n// \"Software\"), to deal in the Software without restriction, including\n// without limitation the rights to use, copy, modify, merge, publish,\n// distribute, sublicense, and/or sell copies of the Software, and to permit\n// persons to whom the Software is furnished to do so, subject to the\n// following conditions:\n//\n// The above copyright notice and this permission notice shall be included\n// in all copies or substantial portions of the Software.\n//\n// THE SOFTWARE IS PROVIDED \"AS IS\", WITHOUT WARRANTY OF ANY KIND, EXPRESS\n// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF\n// MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN\n// NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,\n// DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR\n// OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE\n// USE OR OTHER DEALINGS IN THE SOFTWARE.\n\nfunction EventEmitter() {\n this._events = this._events || {};\n this._maxListeners = this._maxListeners || undefined;\n}\nmodule.exports = EventEmitter;\n\n// Backwards-compat with node 0.10.x\nEventEmitter.EventEmitter = EventEmitter;\n\nEventEmitter.prototype._events = undefined;\nEventEmitter.prototype._maxListeners = undefined;\n\n// By default EventEmitters will print a warning if more than 10 listeners are\n// added to it. This is a useful default which helps finding memory leaks.\nEventEmitter.defaultMaxListeners = 10;\n\n// Obviously not all Emitters should be limited to 10. This function allows\n// that to be increased. Set to zero for unlimited.\nEventEmitter.prototype.setMaxListeners = function(n) {\n if (!isNumber(n) || n < 0 || isNaN(n))\n throw TypeError('n must be a positive number');\n this._maxListeners = n;\n return this;\n};\n\nEventEmitter.prototype.emit = function(type) {\n var er, handler, len, args, i, listeners;\n\n if (!this._events)\n this._events = {};\n\n // If there is no 'error' event listener then throw.\n if (type === 'error') {\n if (!this._events.error ||\n (isObject(this._events.error) && !this._events.error.length)) {\n er = arguments[1];\n if (er instanceof Error) {\n throw er; // Unhandled 'error' event\n } else {\n // At least give some kind of context to the user\n var err = new Error('Uncaught, unspecified \"error\" event. (' + er + ')');\n err.context = er;\n throw err;\n }\n }\n }\n\n handler = this._events[type];\n\n if (isUndefined(handler))\n return false;\n\n if (isFunction(handler)) {\n switch (arguments.length) {\n // fast cases\n case 1:\n handler.call(this);\n break;\n case 2:\n handler.call(this, arguments[1]);\n break;\n case 3:\n handler.call(this, arguments[1], arguments[2]);\n break;\n // slower\n default:\n args = Array.prototype.slice.call(arguments, 1);\n handler.apply(this, args);\n }\n } else if (isObject(handler)) {\n args = Array.prototype.slice.call(arguments, 1);\n listeners = handler.slice();\n len = listeners.length;\n for (i = 0; i < len; i++)\n listeners[i].apply(this, args);\n }\n\n return true;\n};\n\nEventEmitter.prototype.addListener = function(type, listener) {\n var m;\n\n if (!isFunction(listener))\n throw TypeError('listener must be a function');\n\n if (!this._events)\n this._events = {};\n\n // To avoid recursion in the case that type === \"newListener\"! Before\n // adding it to the listeners, first emit \"newListener\".\n if (this._events.newListener)\n this.emit('newListener', type,\n isFunction(listener.listener) ?\n listener.listener : listener);\n\n if (!this._events[type])\n // Optimize the case of one listener. Don't need the extra array object.\n this._events[type] = listener;\n else if (isObject(this._events[type]))\n // If we've already got an array, just append.\n this._events[type].push(listener);\n else\n // Adding the second element, need to change to array.\n this._events[type] = [this._events[type], listener];\n\n // Check for listener leak\n if (isObject(this._events[type]) && !this._events[type].warned) {\n if (!isUndefined(this._maxListeners)) {\n m = this._maxListeners;\n } else {\n m = EventEmitter.defaultMaxListeners;\n }\n\n if (m && m > 0 && this._events[type].length > m) {\n this._events[type].warned = true;\n console.error('(node) warning: possible EventEmitter memory ' +\n 'leak detected. %d listeners added. ' +\n 'Use emitter.setMaxListeners() to increase limit.',\n this._events[type].length);\n if (typeof console.trace === 'function') {\n // not supported in IE 10\n console.trace();\n }\n }\n }\n\n return this;\n};\n\nEventEmitter.prototype.on = EventEmitter.prototype.addListener;\n\nEventEmitter.prototype.once = function(type, listener) {\n if (!isFunction(listener))\n throw TypeError('listener must be a function');\n\n var fired = false;\n\n function g() {\n this.removeListener(type, g);\n\n if (!fired) {\n fired = true;\n listener.apply(this, arguments);\n }\n }\n\n g.listener = listener;\n this.on(type, g);\n\n return this;\n};\n\n// emits a 'removeListener' event iff the listener was removed\nEventEmitter.prototype.removeListener = function(type, listener) {\n var list, position, length, i;\n\n if (!isFunction(listener))\n throw TypeError('listener must be a function');\n\n if (!this._events || !this._events[type])\n return this;\n\n list = this._events[type];\n length = list.length;\n position = -1;\n\n if (list === listener ||\n (isFunction(list.listener) && list.listener === listener)) {\n delete this._events[type];\n if (this._events.removeListener)\n this.emit('removeListener', type, listener);\n\n } else if (isObject(list)) {\n for (i = length; i-- > 0;) {\n if (list[i] === listener ||\n (list[i].listener && list[i].listener === listener)) {\n position = i;\n break;\n }\n }\n\n if (position < 0)\n return this;\n\n if (list.length === 1) {\n list.length = 0;\n delete this._events[type];\n } else {\n list.splice(position, 1);\n }\n\n if (this._events.removeListener)\n this.emit('removeListener', type, listener);\n }\n\n return this;\n};\n\nEventEmitter.prototype.removeAllListeners = function(type) {\n var key, listeners;\n\n if (!this._events)\n return this;\n\n // not listening for removeListener, no need to emit\n if (!this._events.removeListener) {\n if (arguments.length === 0)\n this._events = {};\n else if (this._events[type])\n delete this._events[type];\n return this;\n }\n\n // emit removeListener for all listeners on all events\n if (arguments.length === 0) {\n for (key in this._events) {\n if (key === 'removeListener') continue;\n this.removeAllListeners(key);\n }\n this.removeAllListeners('removeListener');\n this._events = {};\n return this;\n }\n\n listeners = this._events[type];\n\n if (isFunction(listeners)) {\n this.removeListener(type, listeners);\n } else if (listeners) {\n // LIFO order\n while (listeners.length)\n this.removeListener(type, listeners[listeners.length - 1]);\n }\n delete this._events[type];\n\n return this;\n};\n\nEventEmitter.prototype.listeners = function(type) {\n var ret;\n if (!this._events || !this._events[type])\n ret = [];\n else if (isFunction(this._events[type]))\n ret = [this._events[type]];\n else\n ret = this._events[type].slice();\n return ret;\n};\n\nEventEmitter.prototype.listenerCount = function(type) {\n if (this._events) {\n var evlistener = this._events[type];\n\n if (isFunction(evlistener))\n return 1;\n else if (evlistener)\n return evlistener.length;\n }\n return 0;\n};\n\nEventEmitter.listenerCount = function(emitter, type) {\n return emitter.listenerCount(type);\n};\n\nfunction isFunction(arg) {\n return typeof arg === 'function';\n}\n\nfunction isNumber(arg) {\n return typeof arg === 'number';\n}\n\nfunction isObject(arg) {\n return typeof arg === 'object' && arg !== null;\n}\n\nfunction isUndefined(arg) {\n return arg === void 0;\n}\n\n\n/***/ }),\n/* 40 */\n/***/ (function(module, exports, __webpack_require__) {\n\n// Copyright Joyent, Inc. and other Node contributors.\n//\n// Permission is hereby granted, free of charge, to any person obtaining a\n// copy of this software and associated documentation files (the\n// \"Software\"), to deal in the Software without restriction, including\n// without limitation the rights to use, copy, modify, merge, publish,\n// distribute, sublicense, and/or sell copies of the Software, and to permit\n// persons to whom the Software is furnished to do so, subject to the\n// following conditions:\n//\n// The above copyright notice and this permission notice shall be included\n// in all copies or substantial portions of the Software.\n//\n// THE SOFTWARE IS PROVIDED \"AS IS\", WITHOUT WARRANTY OF ANY KIND, EXPRESS\n// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF\n// MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN\n// NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,\n// DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR\n// OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE\n// USE OR OTHER DEALINGS IN THE SOFTWARE.\n\nvar Buffer = __webpack_require__(0).Buffer;\n\nvar isBufferEncoding = Buffer.isEncoding\n || function(encoding) {\n switch (encoding && encoding.toLowerCase()) {\n case 'hex': case 'utf8': case 'utf-8': case 'ascii': case 'binary': case 'base64': case 'ucs2': case 'ucs-2': case 'utf16le': case 'utf-16le': case 'raw': return true;\n default: return false;\n }\n }\n\n\nfunction assertEncoding(encoding) {\n if (encoding && !isBufferEncoding(encoding)) {\n throw new Error('Unknown encoding: ' + encoding);\n }\n}\n\n// StringDecoder provides an interface for efficiently splitting a series of\n// buffers into a series of JS strings without breaking apart multi-byte\n// characters. CESU-8 is handled as part of the UTF-8 encoding.\n//\n// @TODO Handling all encodings inside a single object makes it very difficult\n// to reason about this code, so it should be split up in the future.\n// @TODO There should be a utf8-strict encoding that rejects invalid UTF-8 code\n// points as used by CESU-8.\nvar StringDecoder = exports.StringDecoder = function(encoding) {\n this.encoding = (encoding || 'utf8').toLowerCase().replace(/[-_]/, '');\n assertEncoding(encoding);\n switch (this.encoding) {\n case 'utf8':\n // CESU-8 represents each of Surrogate Pair by 3-bytes\n this.surrogateSize = 3;\n break;\n case 'ucs2':\n case 'utf16le':\n // UTF-16 represents each of Surrogate Pair by 2-bytes\n this.surrogateSize = 2;\n this.detectIncompleteChar = utf16DetectIncompleteChar;\n break;\n case 'base64':\n // Base-64 stores 3 bytes in 4 chars, and pads the remainder.\n this.surrogateSize = 3;\n this.detectIncompleteChar = base64DetectIncompleteChar;\n break;\n default:\n this.write = passThroughWrite;\n return;\n }\n\n // Enough space to store all bytes of a single character. UTF-8 needs 4\n // bytes, but CESU-8 may require up to 6 (3 bytes per surrogate).\n this.charBuffer = new Buffer(6);\n // Number of bytes received for the current incomplete multi-byte character.\n this.charReceived = 0;\n // Number of bytes expected for the current incomplete multi-byte character.\n this.charLength = 0;\n};\n\n\n// write decodes the given buffer and returns it as JS string that is\n// guaranteed to not contain any partial multi-byte characters. Any partial\n// character found at the end of the buffer is buffered up, and will be\n// returned when calling write again with the remaining bytes.\n//\n// Note: Converting a Buffer containing an orphan surrogate to a String\n// currently works, but converting a String to a Buffer (via `new Buffer`, or\n// Buffer#write) will replace incomplete surrogates with the unicode\n// replacement character. See https://codereview.chromium.org/121173009/ .\nStringDecoder.prototype.write = function(buffer) {\n var charStr = '';\n // if our last write ended with an incomplete multibyte character\n while (this.charLength) {\n // determine how many remaining bytes this buffer has to offer for this char\n var available = (buffer.length >= this.charLength - this.charReceived) ?\n this.charLength - this.charReceived :\n buffer.length;\n\n // add the new bytes to the char buffer\n buffer.copy(this.charBuffer, this.charReceived, 0, available);\n this.charReceived += available;\n\n if (this.charReceived < this.charLength) {\n // still not enough chars in this buffer? wait for more ...\n return '';\n }\n\n // remove bytes belonging to the current character from the buffer\n buffer = buffer.slice(available, buffer.length);\n\n // get the character that was split\n charStr = this.charBuffer.slice(0, this.charLength).toString(this.encoding);\n\n // CESU-8: lead surrogate (D800-DBFF) is also the incomplete character\n var charCode = charStr.charCodeAt(charStr.length - 1);\n if (charCode >= 0xD800 && charCode <= 0xDBFF) {\n this.charLength += this.surrogateSize;\n charStr = '';\n continue;\n }\n this.charReceived = this.charLength = 0;\n\n // if there are no more bytes in this buffer, just emit our char\n if (buffer.length === 0) {\n return charStr;\n }\n break;\n }\n\n // determine and set charLength / charReceived\n this.detectIncompleteChar(buffer);\n\n var end = buffer.length;\n if (this.charLength) {\n // buffer the incomplete character bytes we got\n buffer.copy(this.charBuffer, 0, buffer.length - this.charReceived, end);\n end -= this.charReceived;\n }\n\n charStr += buffer.toString(this.encoding, 0, end);\n\n var end = charStr.length - 1;\n var charCode = charStr.charCodeAt(end);\n // CESU-8: lead surrogate (D800-DBFF) is also the incomplete character\n if (charCode >= 0xD800 && charCode <= 0xDBFF) {\n var size = this.surrogateSize;\n this.charLength += size;\n this.charReceived += size;\n this.charBuffer.copy(this.charBuffer, size, 0, size);\n buffer.copy(this.charBuffer, 0, 0, size);\n return charStr.substring(0, end);\n }\n\n // or just emit the charStr\n return charStr;\n};\n\n// detectIncompleteChar determines if there is an incomplete UTF-8 character at\n// the end of the given buffer. If so, it sets this.charLength to the byte\n// length that character, and sets this.charReceived to the number of bytes\n// that are available for this character.\nStringDecoder.prototype.detectIncompleteChar = function(buffer) {\n // determine how many bytes we have to check at the end of this buffer\n var i = (buffer.length >= 3) ? 3 : buffer.length;\n\n // Figure out if one of the last i bytes of our buffer announces an\n // incomplete char.\n for (; i > 0; i--) {\n var c = buffer[buffer.length - i];\n\n // See http://en.wikipedia.org/wiki/UTF-8#Description\n\n // 110XXXXX\n if (i == 1 && c >> 5 == 0x06) {\n this.charLength = 2;\n break;\n }\n\n // 1110XXXX\n if (i <= 2 && c >> 4 == 0x0E) {\n this.charLength = 3;\n break;\n }\n\n // 11110XXX\n if (i <= 3 && c >> 3 == 0x1E) {\n this.charLength = 4;\n break;\n }\n }\n this.charReceived = i;\n};\n\nStringDecoder.prototype.end = function(buffer) {\n var res = '';\n if (buffer && buffer.length)\n res = this.write(buffer);\n\n if (this.charReceived) {\n var cr = this.charReceived;\n var buf = this.charBuffer;\n var enc = this.encoding;\n res += buf.slice(0, cr).toString(enc);\n }\n\n return res;\n};\n\nfunction passThroughWrite(buffer) {\n return buffer.toString(this.encoding);\n}\n\nfunction utf16DetectIncompleteChar(buffer) {\n this.charReceived = buffer.length % 2;\n this.charLength = this.charReceived ? 2 : 0;\n}\n\nfunction base64DetectIncompleteChar(buffer) {\n this.charReceived = buffer.length % 3;\n this.charLength = this.charReceived ? 3 : 0;\n}\n\n\n/***/ }),\n/* 41 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n/* WEBPACK VAR INJECTION */(function(process) {\n\nif (!process.version ||\n process.version.indexOf('v0.') === 0 ||\n process.version.indexOf('v1.') === 0 && process.version.indexOf('v1.8.') !== 0) {\n module.exports = nextTick;\n} else {\n module.exports = process.nextTick;\n}\n\nfunction nextTick(fn, arg1, arg2, arg3) {\n if (typeof fn !== 'function') {\n throw new TypeError('\"callback\" argument must be a function');\n }\n var len = arguments.length;\n var args, i;\n switch (len) {\n case 0:\n case 1:\n return process.nextTick(fn);\n case 2:\n return process.nextTick(function afterTickOne() {\n fn.call(null, arg1);\n });\n case 3:\n return process.nextTick(function afterTickTwo() {\n fn.call(null, arg1, arg2);\n });\n case 4:\n return process.nextTick(function afterTickThree() {\n fn.call(null, arg1, arg2, arg3);\n });\n default:\n args = new Array(len - 1);\n i = 0;\n while (i < args.length) {\n args[i++] = arguments[i];\n }\n return process.nextTick(function afterTick() {\n fn.apply(null, args);\n });\n }\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(14)))\n\n/***/ }),\n/* 42 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n/* WEBPACK VAR INJECTION */(function(process, setImmediate) {// A bit simpler than readable streams.\n// Implement an async ._write(chunk, encoding, cb), and it'll handle all\n// the drain event emission and buffering.\n\n\n\nmodule.exports = Writable;\n\n/**/\nvar processNextTick = __webpack_require__(41);\n/**/\n\n/**/\nvar asyncWrite = !process.browser && ['v0.10', 'v0.9.'].indexOf(process.version.slice(0, 5)) > -1 ? setImmediate : processNextTick;\n/**/\n\n/**/\nvar Duplex;\n/**/\n\nWritable.WritableState = WritableState;\n\n/**/\nvar util = __webpack_require__(20);\nutil.inherits = __webpack_require__(1);\n/**/\n\n/**/\nvar internalUtil = {\n deprecate: __webpack_require__(202)\n};\n/**/\n\n/**/\nvar Stream = __webpack_require__(83);\n/**/\n\nvar Buffer = __webpack_require__(0).Buffer;\n/**/\nvar bufferShim = __webpack_require__(36);\n/**/\n\nutil.inherits(Writable, Stream);\n\nfunction nop() {}\n\nfunction WriteReq(chunk, encoding, cb) {\n this.chunk = chunk;\n this.encoding = encoding;\n this.callback = cb;\n this.next = null;\n}\n\nfunction WritableState(options, stream) {\n Duplex = Duplex || __webpack_require__(9);\n\n options = options || {};\n\n // object stream flag to indicate whether or not this stream\n // contains buffers or objects.\n this.objectMode = !!options.objectMode;\n\n if (stream instanceof Duplex) this.objectMode = this.objectMode || !!options.writableObjectMode;\n\n // the point at which write() starts returning false\n // Note: 0 is a valid value, means that we always return false if\n // the entire buffer is not flushed immediately on write()\n var hwm = options.highWaterMark;\n var defaultHwm = this.objectMode ? 16 : 16 * 1024;\n this.highWaterMark = hwm || hwm === 0 ? hwm : defaultHwm;\n\n // cast to ints.\n this.highWaterMark = ~~this.highWaterMark;\n\n // drain event flag.\n this.needDrain = false;\n // at the start of calling end()\n this.ending = false;\n // when end() has been called, and returned\n this.ended = false;\n // when 'finish' is emitted\n this.finished = false;\n\n // should we decode strings into buffers before passing to _write?\n // this is here so that some node-core streams can optimize string\n // handling at a lower level.\n var noDecode = options.decodeStrings === false;\n this.decodeStrings = !noDecode;\n\n // Crypto is kind of old and crusty. Historically, its default string\n // encoding is 'binary' so we have to make this configurable.\n // Everything else in the universe uses 'utf8', though.\n this.defaultEncoding = options.defaultEncoding || 'utf8';\n\n // not an actual buffer we keep track of, but a measurement\n // of how much we're waiting to get pushed to some underlying\n // socket or file.\n this.length = 0;\n\n // a flag to see when we're in the middle of a write.\n this.writing = false;\n\n // when true all writes will be buffered until .uncork() call\n this.corked = 0;\n\n // a flag to be able to tell if the onwrite cb is called immediately,\n // or on a later tick. We set this to true at first, because any\n // actions that shouldn't happen until \"later\" should generally also\n // not happen before the first write call.\n this.sync = true;\n\n // a flag to know if we're processing previously buffered items, which\n // may call the _write() callback in the same tick, so that we don't\n // end up in an overlapped onwrite situation.\n this.bufferProcessing = false;\n\n // the callback that's passed to _write(chunk,cb)\n this.onwrite = function (er) {\n onwrite(stream, er);\n };\n\n // the callback that the user supplies to write(chunk,encoding,cb)\n this.writecb = null;\n\n // the amount that is being written when _write is called.\n this.writelen = 0;\n\n this.bufferedRequest = null;\n this.lastBufferedRequest = null;\n\n // number of pending user-supplied write callbacks\n // this must be 0 before 'finish' can be emitted\n this.pendingcb = 0;\n\n // emit prefinish if the only thing we're waiting for is _write cbs\n // This is relevant for synchronous Transform streams\n this.prefinished = false;\n\n // True if the error was already emitted and should not be thrown again\n this.errorEmitted = false;\n\n // count buffered requests\n this.bufferedRequestCount = 0;\n\n // allocate the first CorkedRequest, there is always\n // one allocated and free to use, and we maintain at most two\n this.corkedRequestsFree = new CorkedRequest(this);\n}\n\nWritableState.prototype.getBuffer = function getBuffer() {\n var current = this.bufferedRequest;\n var out = [];\n while (current) {\n out.push(current);\n current = current.next;\n }\n return out;\n};\n\n(function () {\n try {\n Object.defineProperty(WritableState.prototype, 'buffer', {\n get: internalUtil.deprecate(function () {\n return this.getBuffer();\n }, '_writableState.buffer is deprecated. Use _writableState.getBuffer ' + 'instead.')\n });\n } catch (_) {}\n})();\n\n// Test _writableState for inheritance to account for Duplex streams,\n// whose prototype chain only points to Readable.\nvar realHasInstance;\nif (typeof Symbol === 'function' && Symbol.hasInstance && typeof Function.prototype[Symbol.hasInstance] === 'function') {\n realHasInstance = Function.prototype[Symbol.hasInstance];\n Object.defineProperty(Writable, Symbol.hasInstance, {\n value: function (object) {\n if (realHasInstance.call(this, object)) return true;\n\n return object && object._writableState instanceof WritableState;\n }\n });\n} else {\n realHasInstance = function (object) {\n return object instanceof this;\n };\n}\n\nfunction Writable(options) {\n Duplex = Duplex || __webpack_require__(9);\n\n // Writable ctor is applied to Duplexes, too.\n // `realHasInstance` is necessary because using plain `instanceof`\n // would return false, as no `_writableState` property is attached.\n\n // Trying to use the custom `instanceof` for Writable here will also break the\n // Node.js LazyTransform implementation, which has a non-trivial getter for\n // `_writableState` that would lead to infinite recursion.\n if (!realHasInstance.call(Writable, this) && !(this instanceof Duplex)) {\n return new Writable(options);\n }\n\n this._writableState = new WritableState(options, this);\n\n // legacy.\n this.writable = true;\n\n if (options) {\n if (typeof options.write === 'function') this._write = options.write;\n\n if (typeof options.writev === 'function') this._writev = options.writev;\n }\n\n Stream.call(this);\n}\n\n// Otherwise people can pipe Writable streams, which is just wrong.\nWritable.prototype.pipe = function () {\n this.emit('error', new Error('Cannot pipe, not readable'));\n};\n\nfunction writeAfterEnd(stream, cb) {\n var er = new Error('write after end');\n // TODO: defer error events consistently everywhere, not just the cb\n stream.emit('error', er);\n processNextTick(cb, er);\n}\n\n// Checks that a user-supplied chunk is valid, especially for the particular\n// mode the stream is in. Currently this means that `null` is never accepted\n// and undefined/non-string values are only allowed in object mode.\nfunction validChunk(stream, state, chunk, cb) {\n var valid = true;\n var er = false;\n\n if (chunk === null) {\n er = new TypeError('May not write null values to stream');\n } else if (typeof chunk !== 'string' && chunk !== undefined && !state.objectMode) {\n er = new TypeError('Invalid non-string/buffer chunk');\n }\n if (er) {\n stream.emit('error', er);\n processNextTick(cb, er);\n valid = false;\n }\n return valid;\n}\n\nWritable.prototype.write = function (chunk, encoding, cb) {\n var state = this._writableState;\n var ret = false;\n var isBuf = Buffer.isBuffer(chunk);\n\n if (typeof encoding === 'function') {\n cb = encoding;\n encoding = null;\n }\n\n if (isBuf) encoding = 'buffer';else if (!encoding) encoding = state.defaultEncoding;\n\n if (typeof cb !== 'function') cb = nop;\n\n if (state.ended) writeAfterEnd(this, cb);else if (isBuf || validChunk(this, state, chunk, cb)) {\n state.pendingcb++;\n ret = writeOrBuffer(this, state, isBuf, chunk, encoding, cb);\n }\n\n return ret;\n};\n\nWritable.prototype.cork = function () {\n var state = this._writableState;\n\n state.corked++;\n};\n\nWritable.prototype.uncork = function () {\n var state = this._writableState;\n\n if (state.corked) {\n state.corked--;\n\n if (!state.writing && !state.corked && !state.finished && !state.bufferProcessing && state.bufferedRequest) clearBuffer(this, state);\n }\n};\n\nWritable.prototype.setDefaultEncoding = function setDefaultEncoding(encoding) {\n // node::ParseEncoding() requires lower case.\n if (typeof encoding === 'string') encoding = encoding.toLowerCase();\n if (!(['hex', 'utf8', 'utf-8', 'ascii', 'binary', 'base64', 'ucs2', 'ucs-2', 'utf16le', 'utf-16le', 'raw'].indexOf((encoding + '').toLowerCase()) > -1)) throw new TypeError('Unknown encoding: ' + encoding);\n this._writableState.defaultEncoding = encoding;\n return this;\n};\n\nfunction decodeChunk(state, chunk, encoding) {\n if (!state.objectMode && state.decodeStrings !== false && typeof chunk === 'string') {\n chunk = bufferShim.from(chunk, encoding);\n }\n return chunk;\n}\n\n// if we're already writing something, then just put this\n// in the queue, and wait our turn. Otherwise, call _write\n// If we return false, then we need a drain event, so set that flag.\nfunction writeOrBuffer(stream, state, isBuf, chunk, encoding, cb) {\n if (!isBuf) {\n chunk = decodeChunk(state, chunk, encoding);\n if (Buffer.isBuffer(chunk)) encoding = 'buffer';\n }\n var len = state.objectMode ? 1 : chunk.length;\n\n state.length += len;\n\n var ret = state.length < state.highWaterMark;\n // we must ensure that previous needDrain will not be reset to false.\n if (!ret) state.needDrain = true;\n\n if (state.writing || state.corked) {\n var last = state.lastBufferedRequest;\n state.lastBufferedRequest = new WriteReq(chunk, encoding, cb);\n if (last) {\n last.next = state.lastBufferedRequest;\n } else {\n state.bufferedRequest = state.lastBufferedRequest;\n }\n state.bufferedRequestCount += 1;\n } else {\n doWrite(stream, state, false, len, chunk, encoding, cb);\n }\n\n return ret;\n}\n\nfunction doWrite(stream, state, writev, len, chunk, encoding, cb) {\n state.writelen = len;\n state.writecb = cb;\n state.writing = true;\n state.sync = true;\n if (writev) stream._writev(chunk, state.onwrite);else stream._write(chunk, encoding, state.onwrite);\n state.sync = false;\n}\n\nfunction onwriteError(stream, state, sync, er, cb) {\n --state.pendingcb;\n if (sync) processNextTick(cb, er);else cb(er);\n\n stream._writableState.errorEmitted = true;\n stream.emit('error', er);\n}\n\nfunction onwriteStateUpdate(state) {\n state.writing = false;\n state.writecb = null;\n state.length -= state.writelen;\n state.writelen = 0;\n}\n\nfunction onwrite(stream, er) {\n var state = stream._writableState;\n var sync = state.sync;\n var cb = state.writecb;\n\n onwriteStateUpdate(state);\n\n if (er) onwriteError(stream, state, sync, er, cb);else {\n // Check if we're actually ready to finish, but don't emit yet\n var finished = needFinish(state);\n\n if (!finished && !state.corked && !state.bufferProcessing && state.bufferedRequest) {\n clearBuffer(stream, state);\n }\n\n if (sync) {\n /**/\n asyncWrite(afterWrite, stream, state, finished, cb);\n /**/\n } else {\n afterWrite(stream, state, finished, cb);\n }\n }\n}\n\nfunction afterWrite(stream, state, finished, cb) {\n if (!finished) onwriteDrain(stream, state);\n state.pendingcb--;\n cb();\n finishMaybe(stream, state);\n}\n\n// Must force callback to be called on nextTick, so that we don't\n// emit 'drain' before the write() consumer gets the 'false' return\n// value, and has a chance to attach a 'drain' listener.\nfunction onwriteDrain(stream, state) {\n if (state.length === 0 && state.needDrain) {\n state.needDrain = false;\n stream.emit('drain');\n }\n}\n\n// if there's something in the buffer waiting, then process it\nfunction clearBuffer(stream, state) {\n state.bufferProcessing = true;\n var entry = state.bufferedRequest;\n\n if (stream._writev && entry && entry.next) {\n // Fast case, write everything using _writev()\n var l = state.bufferedRequestCount;\n var buffer = new Array(l);\n var holder = state.corkedRequestsFree;\n holder.entry = entry;\n\n var count = 0;\n while (entry) {\n buffer[count] = entry;\n entry = entry.next;\n count += 1;\n }\n\n doWrite(stream, state, true, state.length, buffer, '', holder.finish);\n\n // doWrite is almost always async, defer these to save a bit of time\n // as the hot path ends with doWrite\n state.pendingcb++;\n state.lastBufferedRequest = null;\n if (holder.next) {\n state.corkedRequestsFree = holder.next;\n holder.next = null;\n } else {\n state.corkedRequestsFree = new CorkedRequest(state);\n }\n } else {\n // Slow case, write chunks one-by-one\n while (entry) {\n var chunk = entry.chunk;\n var encoding = entry.encoding;\n var cb = entry.callback;\n var len = state.objectMode ? 1 : chunk.length;\n\n doWrite(stream, state, false, len, chunk, encoding, cb);\n entry = entry.next;\n // if we didn't call the onwrite immediately, then\n // it means that we need to wait until it does.\n // also, that means that the chunk and cb are currently\n // being processed, so move the buffer counter past them.\n if (state.writing) {\n break;\n }\n }\n\n if (entry === null) state.lastBufferedRequest = null;\n }\n\n state.bufferedRequestCount = 0;\n state.bufferedRequest = entry;\n state.bufferProcessing = false;\n}\n\nWritable.prototype._write = function (chunk, encoding, cb) {\n cb(new Error('_write() is not implemented'));\n};\n\nWritable.prototype._writev = null;\n\nWritable.prototype.end = function (chunk, encoding, cb) {\n var state = this._writableState;\n\n if (typeof chunk === 'function') {\n cb = chunk;\n chunk = null;\n encoding = null;\n } else if (typeof encoding === 'function') {\n cb = encoding;\n encoding = null;\n }\n\n if (chunk !== null && chunk !== undefined) this.write(chunk, encoding);\n\n // .end() fully uncorks\n if (state.corked) {\n state.corked = 1;\n this.uncork();\n }\n\n // ignore unnecessary end() calls.\n if (!state.ending && !state.finished) endWritable(this, state, cb);\n};\n\nfunction needFinish(state) {\n return state.ending && state.length === 0 && state.bufferedRequest === null && !state.finished && !state.writing;\n}\n\nfunction prefinish(stream, state) {\n if (!state.prefinished) {\n state.prefinished = true;\n stream.emit('prefinish');\n }\n}\n\nfunction finishMaybe(stream, state) {\n var need = needFinish(state);\n if (need) {\n if (state.pendingcb === 0) {\n prefinish(stream, state);\n state.finished = true;\n stream.emit('finish');\n } else {\n prefinish(stream, state);\n }\n }\n return need;\n}\n\nfunction endWritable(stream, state, cb) {\n state.ending = true;\n finishMaybe(stream, state);\n if (cb) {\n if (state.finished) processNextTick(cb);else stream.once('finish', cb);\n }\n state.ended = true;\n stream.writable = false;\n}\n\n// It seems a linked list but it is not\n// there will be only 2 of these for each stream\nfunction CorkedRequest(state) {\n var _this = this;\n\n this.next = null;\n this.entry = null;\n this.finish = function (err) {\n var entry = _this.entry;\n _this.entry = null;\n while (entry) {\n var cb = entry.callback;\n state.pendingcb--;\n cb(err);\n entry = entry.next;\n }\n if (state.corkedRequestsFree) {\n state.corkedRequestsFree.next = _this;\n } else {\n state.corkedRequestsFree = _this;\n }\n };\n}\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(14), __webpack_require__(200).setImmediate))\n\n/***/ }),\n/* 43 */\n/***/ (function(module, exports, __webpack_require__) {\n\nexports = module.exports = __webpack_require__(81);\nexports.Stream = exports;\nexports.Readable = exports;\nexports.Writable = __webpack_require__(42);\nexports.Duplex = __webpack_require__(9);\nexports.Transform = __webpack_require__(82);\nexports.PassThrough = __webpack_require__(183);\n\n\n/***/ }),\n/* 44 */\n/***/ (function(module, exports, __webpack_require__) {\n\n// Copyright Joyent, Inc. and other Node contributors.\n//\n// Permission is hereby granted, free of charge, to any person obtaining a\n// copy of this software and associated documentation files (the\n// \"Software\"), to deal in the Software without restriction, including\n// without limitation the rights to use, copy, modify, merge, publish,\n// distribute, sublicense, and/or sell copies of the Software, and to permit\n// persons to whom the Software is furnished to do so, subject to the\n// following conditions:\n//\n// The above copyright notice and this permission notice shall be included\n// in all copies or substantial portions of the Software.\n//\n// THE SOFTWARE IS PROVIDED \"AS IS\", WITHOUT WARRANTY OF ANY KIND, EXPRESS\n// OR IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF\n// MERCHANTABILITY, FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT. IN\n// NO EVENT SHALL THE AUTHORS OR COPYRIGHT HOLDERS BE LIABLE FOR ANY CLAIM,\n// DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR\n// OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE\n// USE OR OTHER DEALINGS IN THE SOFTWARE.\n\nmodule.exports = Stream;\n\nvar EE = __webpack_require__(39).EventEmitter;\nvar inherits = __webpack_require__(1);\n\ninherits(Stream, EE);\nStream.Readable = __webpack_require__(43);\nStream.Writable = __webpack_require__(187);\nStream.Duplex = __webpack_require__(182);\nStream.Transform = __webpack_require__(186);\nStream.PassThrough = __webpack_require__(185);\n\n// Backwards-compat with node 0.4.x\nStream.Stream = Stream;\n\n\n\n// old-style streams. Note that the pipe method (the only relevant\n// part of this class) is overridden in the Readable class.\n\nfunction Stream() {\n EE.call(this);\n}\n\nStream.prototype.pipe = function(dest, options) {\n var source = this;\n\n function ondata(chunk) {\n if (dest.writable) {\n if (false === dest.write(chunk) && source.pause) {\n source.pause();\n }\n }\n }\n\n source.on('data', ondata);\n\n function ondrain() {\n if (source.readable && source.resume) {\n source.resume();\n }\n }\n\n dest.on('drain', ondrain);\n\n // If the 'end' option is not supplied, dest.end() will be called when\n // source gets the 'end' or 'close' events. Only dest.end() once.\n if (!dest._isStdio && (!options || options.end !== false)) {\n source.on('end', onend);\n source.on('close', onclose);\n }\n\n var didOnEnd = false;\n function onend() {\n if (didOnEnd) return;\n didOnEnd = true;\n\n dest.end();\n }\n\n\n function onclose() {\n if (didOnEnd) return;\n didOnEnd = true;\n\n if (typeof dest.destroy === 'function') dest.destroy();\n }\n\n // don't leave dangling pipes when there are errors.\n function onerror(er) {\n cleanup();\n if (EE.listenerCount(this, 'error') === 0) {\n throw er; // Unhandled stream error in pipe.\n }\n }\n\n source.on('error', onerror);\n dest.on('error', onerror);\n\n // remove all the event listeners that were added.\n function cleanup() {\n source.removeListener('data', ondata);\n dest.removeListener('drain', ondrain);\n\n source.removeListener('end', onend);\n source.removeListener('close', onclose);\n\n source.removeListener('error', onerror);\n dest.removeListener('error', onerror);\n\n source.removeListener('end', cleanup);\n source.removeListener('close', cleanup);\n\n dest.removeListener('close', cleanup);\n }\n\n source.on('end', cleanup);\n source.on('close', cleanup);\n\n dest.on('close', cleanup);\n\n dest.emit('pipe', source);\n\n // Allow for unix-like usage: A.pipe(B).pipe(C)\n return dest;\n};\n\n\n/***/ }),\n/* 45 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar required = __webpack_require__(188)\n , lolcation = __webpack_require__(201)\n , qs = __webpack_require__(181)\n , protocolre = /^([a-z][a-z0-9.+-]*:)?(\\/\\/)?([\\S\\s]*)/i;\n\n/**\n * These are the parse rules for the URL parser, it informs the parser\n * about:\n *\n * 0. The char it Needs to parse, if it's a string it should be done using\n * indexOf, RegExp using exec and NaN means set as current value.\n * 1. The property we should set when parsing this value.\n * 2. Indication if it's backwards or forward parsing, when set as number it's\n * the value of extra chars that should be split off.\n * 3. Inherit from location if non existing in the parser.\n * 4. `toLowerCase` the resulting value.\n */\nvar rules = [\n ['#', 'hash'], // Extract from the back.\n ['?', 'query'], // Extract from the back.\n ['/', 'pathname'], // Extract from the back.\n ['@', 'auth', 1], // Extract from the front.\n [NaN, 'host', undefined, 1, 1], // Set left over value.\n [/:(\\d+)$/, 'port', undefined, 1], // RegExp the back.\n [NaN, 'hostname', undefined, 1, 1] // Set left over.\n];\n\n/**\n * @typedef ProtocolExtract\n * @type Object\n * @property {String} protocol Protocol matched in the URL, in lowercase.\n * @property {Boolean} slashes `true` if protocol is followed by \"//\", else `false`.\n * @property {String} rest Rest of the URL that is not part of the protocol.\n */\n\n/**\n * Extract protocol information from a URL with/without double slash (\"//\").\n *\n * @param {String} address URL we want to extract from.\n * @return {ProtocolExtract} Extracted information.\n * @api private\n */\nfunction extractProtocol(address) {\n var match = protocolre.exec(address);\n\n return {\n protocol: match[1] ? match[1].toLowerCase() : '',\n slashes: !!match[2],\n rest: match[3]\n };\n}\n\n/**\n * Resolve a relative URL pathname against a base URL pathname.\n *\n * @param {String} relative Pathname of the relative URL.\n * @param {String} base Pathname of the base URL.\n * @return {String} Resolved pathname.\n * @api private\n */\nfunction resolve(relative, base) {\n var path = (base || '/').split('/').slice(0, -1).concat(relative.split('/'))\n , i = path.length\n , last = path[i - 1]\n , unshift = false\n , up = 0;\n\n while (i--) {\n if (path[i] === '.') {\n path.splice(i, 1);\n } else if (path[i] === '..') {\n path.splice(i, 1);\n up++;\n } else if (up) {\n if (i === 0) unshift = true;\n path.splice(i, 1);\n up--;\n }\n }\n\n if (unshift) path.unshift('');\n if (last === '.' || last === '..') path.push('');\n\n return path.join('/');\n}\n\n/**\n * The actual URL instance. Instead of returning an object we've opted-in to\n * create an actual constructor as it's much more memory efficient and\n * faster and it pleases my OCD.\n *\n * @constructor\n * @param {String} address URL we want to parse.\n * @param {Object|String} location Location defaults for relative paths.\n * @param {Boolean|Function} parser Parser for the query string.\n * @api public\n */\nfunction URL(address, location, parser) {\n if (!(this instanceof URL)) {\n return new URL(address, location, parser);\n }\n\n var relative, extracted, parse, instruction, index, key\n , instructions = rules.slice()\n , type = typeof location\n , url = this\n , i = 0;\n\n //\n // The following if statements allows this module two have compatibility with\n // 2 different API:\n //\n // 1. Node.js's `url.parse` api which accepts a URL, boolean as arguments\n // where the boolean indicates that the query string should also be parsed.\n //\n // 2. The `URL` interface of the browser which accepts a URL, object as\n // arguments. The supplied object will be used as default values / fall-back\n // for relative paths.\n //\n if ('object' !== type && 'string' !== type) {\n parser = location;\n location = null;\n }\n\n if (parser && 'function' !== typeof parser) parser = qs.parse;\n\n location = lolcation(location);\n\n //\n // Extract protocol information before running the instructions.\n //\n extracted = extractProtocol(address || '');\n relative = !extracted.protocol && !extracted.slashes;\n url.slashes = extracted.slashes || relative && location.slashes;\n url.protocol = extracted.protocol || location.protocol || '';\n address = extracted.rest;\n\n //\n // When the authority component is absent the URL starts with a path\n // component.\n //\n if (!extracted.slashes) instructions[2] = [/(.*)/, 'pathname'];\n\n for (; i < instructions.length; i++) {\n instruction = instructions[i];\n parse = instruction[0];\n key = instruction[1];\n\n if (parse !== parse) {\n url[key] = address;\n } else if ('string' === typeof parse) {\n if (~(index = address.indexOf(parse))) {\n if ('number' === typeof instruction[2]) {\n url[key] = address.slice(0, index);\n address = address.slice(index + instruction[2]);\n } else {\n url[key] = address.slice(index);\n address = address.slice(0, index);\n }\n }\n } else if ((index = parse.exec(address))) {\n url[key] = index[1];\n address = address.slice(0, index.index);\n }\n\n url[key] = url[key] || (\n relative && instruction[3] ? location[key] || '' : ''\n );\n\n //\n // Hostname, host and protocol should be lowercased so they can be used to\n // create a proper `origin`.\n //\n if (instruction[4]) url[key] = url[key].toLowerCase();\n }\n\n //\n // Also parse the supplied query string in to an object. If we're supplied\n // with a custom parser as function use that instead of the default build-in\n // parser.\n //\n if (parser) url.query = parser(url.query);\n\n //\n // If the URL is relative, resolve the pathname against the base URL.\n //\n if (\n relative\n && location.slashes\n && url.pathname.charAt(0) !== '/'\n && (url.pathname !== '' || location.pathname !== '')\n ) {\n url.pathname = resolve(url.pathname, location.pathname);\n }\n\n //\n // We should not add port numbers if they are already the default port number\n // for a given protocol. As the host also contains the port number we're going\n // override it with the hostname which contains no port number.\n //\n if (!required(url.port, url.protocol)) {\n url.host = url.hostname;\n url.port = '';\n }\n\n //\n // Parse down the `auth` for the username and password.\n //\n url.username = url.password = '';\n if (url.auth) {\n instruction = url.auth.split(':');\n url.username = instruction[0] || '';\n url.password = instruction[1] || '';\n }\n\n url.origin = url.protocol && url.host && url.protocol !== 'file:'\n ? url.protocol +'//'+ url.host\n : 'null';\n\n //\n // The href is just the compiled result.\n //\n url.href = url.toString();\n}\n\n/**\n * This is convenience method for changing properties in the URL instance to\n * insure that they all propagate correctly.\n *\n * @param {String} part Property we need to adjust.\n * @param {Mixed} value The newly assigned value.\n * @param {Boolean|Function} fn When setting the query, it will be the function\n * used to parse the query.\n * When setting the protocol, double slash will be\n * removed from the final url if it is true.\n * @returns {URL}\n * @api public\n */\nfunction set(part, value, fn) {\n var url = this;\n\n switch (part) {\n case 'query':\n if ('string' === typeof value && value.length) {\n value = (fn || qs.parse)(value);\n }\n\n url[part] = value;\n break;\n\n case 'port':\n url[part] = value;\n\n if (!required(value, url.protocol)) {\n url.host = url.hostname;\n url[part] = '';\n } else if (value) {\n url.host = url.hostname +':'+ value;\n }\n\n break;\n\n case 'hostname':\n url[part] = value;\n\n if (url.port) value += ':'+ url.port;\n url.host = value;\n break;\n\n case 'host':\n url[part] = value;\n\n if (/:\\d+$/.test(value)) {\n value = value.split(':');\n url.port = value.pop();\n url.hostname = value.join(':');\n } else {\n url.hostname = value;\n url.port = '';\n }\n\n break;\n\n case 'protocol':\n url.protocol = value.toLowerCase();\n url.slashes = !fn;\n break;\n\n case 'pathname':\n url.pathname = value.length && value.charAt(0) !== '/' ? '/' + value : value;\n\n break;\n\n default:\n url[part] = value;\n }\n\n for (var i = 0; i < rules.length; i++) {\n var ins = rules[i];\n\n if (ins[4]) url[ins[1]] = url[ins[1]].toLowerCase();\n }\n\n url.origin = url.protocol && url.host && url.protocol !== 'file:'\n ? url.protocol +'//'+ url.host\n : 'null';\n\n url.href = url.toString();\n\n return url;\n};\n\n/**\n * Transform the properties back in to a valid and full URL string.\n *\n * @param {Function} stringify Optional query stringify function.\n * @returns {String}\n * @api public\n */\nfunction toString(stringify) {\n if (!stringify || 'function' !== typeof stringify) stringify = qs.stringify;\n\n var query\n , url = this\n , protocol = url.protocol;\n\n if (protocol && protocol.charAt(protocol.length - 1) !== ':') protocol += ':';\n\n var result = protocol + (url.slashes ? '//' : '');\n\n if (url.username) {\n result += url.username;\n if (url.password) result += ':'+ url.password;\n result += '@';\n }\n\n result += url.host + url.pathname;\n\n query = 'object' === typeof url.query ? stringify(url.query) : url.query;\n if (query) result += '?' !== query.charAt(0) ? '?'+ query : query;\n\n if (url.hash) result += url.hash;\n\n return result;\n}\n\nURL.prototype = { set: set, toString: toString };\n\n//\n// Expose the URL parser and some additional properties that might be useful for\n// others or testing.\n//\nURL.extractProtocol = extractProtocol;\nURL.location = lolcation;\nURL.qs = qs;\n\nmodule.exports = URL;\n\n\n/***/ }),\n/* 46 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar inherits = __webpack_require__(1);\nvar Reporter = __webpack_require__(17).Reporter;\nvar Buffer = __webpack_require__(0).Buffer;\n\nfunction DecoderBuffer(base, options) {\n Reporter.call(this, options);\n if (!Buffer.isBuffer(base)) {\n this.error('Input not Buffer');\n return;\n }\n\n this.base = base;\n this.offset = 0;\n this.length = base.length;\n}\ninherits(DecoderBuffer, Reporter);\nexports.DecoderBuffer = DecoderBuffer;\n\nDecoderBuffer.prototype.save = function save() {\n return { offset: this.offset, reporter: Reporter.prototype.save.call(this) };\n};\n\nDecoderBuffer.prototype.restore = function restore(save) {\n // Return skipped data\n var res = new DecoderBuffer(this.base);\n res.offset = save.offset;\n res.length = this.offset;\n\n this.offset = save.offset;\n Reporter.prototype.restore.call(this, save.reporter);\n\n return res;\n};\n\nDecoderBuffer.prototype.isEmpty = function isEmpty() {\n return this.offset === this.length;\n};\n\nDecoderBuffer.prototype.readUInt8 = function readUInt8(fail) {\n if (this.offset + 1 <= this.length)\n return this.base.readUInt8(this.offset++, true);\n else\n return this.error(fail || 'DecoderBuffer overrun');\n}\n\nDecoderBuffer.prototype.skip = function skip(bytes, fail) {\n if (!(this.offset + bytes <= this.length))\n return this.error(fail || 'DecoderBuffer overrun');\n\n var res = new DecoderBuffer(this.base);\n\n // Share reporter state\n res._reporterState = this._reporterState;\n\n res.offset = this.offset;\n res.length = this.offset + bytes;\n this.offset += bytes;\n return res;\n}\n\nDecoderBuffer.prototype.raw = function raw(save) {\n return this.base.slice(save ? save.offset : this.offset, this.length);\n}\n\nfunction EncoderBuffer(value, reporter) {\n if (Array.isArray(value)) {\n this.length = 0;\n this.value = value.map(function(item) {\n if (!(item instanceof EncoderBuffer))\n item = new EncoderBuffer(item, reporter);\n this.length += item.length;\n return item;\n }, this);\n } else if (typeof value === 'number') {\n if (!(0 <= value && value <= 0xff))\n return reporter.error('non-byte EncoderBuffer value');\n this.value = value;\n this.length = 1;\n } else if (typeof value === 'string') {\n this.value = value;\n this.length = Buffer.byteLength(value);\n } else if (Buffer.isBuffer(value)) {\n this.value = value;\n this.length = value.length;\n } else {\n return reporter.error('Unsupported type: ' + typeof value);\n }\n}\nexports.EncoderBuffer = EncoderBuffer;\n\nEncoderBuffer.prototype.join = function join(out, offset) {\n if (!out)\n out = new Buffer(this.length);\n if (!offset)\n offset = 0;\n\n if (this.length === 0)\n return out;\n\n if (Array.isArray(this.value)) {\n this.value.forEach(function(item) {\n item.join(out, offset);\n offset += item.length;\n });\n } else {\n if (typeof this.value === 'number')\n out[offset] = this.value;\n else if (typeof this.value === 'string')\n out.write(this.value, offset);\n else if (Buffer.isBuffer(this.value))\n this.value.copy(out, offset);\n offset += this.length;\n }\n\n return out;\n};\n\n\n/***/ }),\n/* 47 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar constants = exports;\n\n// Helper\nconstants._reverse = function reverse(map) {\n var res = {};\n\n Object.keys(map).forEach(function(key) {\n // Convert key to integer if it is stringified\n if ((key | 0) == key)\n key = key | 0;\n\n var value = map[key];\n res[value] = key;\n });\n\n return res;\n};\n\nconstants.der = __webpack_require__(97);\n\n\n/***/ }),\n/* 48 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar inherits = __webpack_require__(1);\n\nvar asn1 = __webpack_require__(16);\nvar base = asn1.base;\nvar bignum = asn1.bignum;\n\n// Import DER constants\nvar der = asn1.constants.der;\n\nfunction DERDecoder(entity) {\n this.enc = 'der';\n this.name = entity.name;\n this.entity = entity;\n\n // Construct base tree\n this.tree = new DERNode();\n this.tree._init(entity.body);\n};\nmodule.exports = DERDecoder;\n\nDERDecoder.prototype.decode = function decode(data, options) {\n if (!(data instanceof base.DecoderBuffer))\n data = new base.DecoderBuffer(data, options);\n\n return this.tree._decode(data, options);\n};\n\n// Tree methods\n\nfunction DERNode(parent) {\n base.Node.call(this, 'der', parent);\n}\ninherits(DERNode, base.Node);\n\nDERNode.prototype._peekTag = function peekTag(buffer, tag, any) {\n if (buffer.isEmpty())\n return false;\n\n var state = buffer.save();\n var decodedTag = derDecodeTag(buffer, 'Failed to peek tag: \"' + tag + '\"');\n if (buffer.isError(decodedTag))\n return decodedTag;\n\n buffer.restore(state);\n\n return decodedTag.tag === tag || decodedTag.tagStr === tag ||\n (decodedTag.tagStr + 'of') === tag || any;\n};\n\nDERNode.prototype._decodeTag = function decodeTag(buffer, tag, any) {\n var decodedTag = derDecodeTag(buffer,\n 'Failed to decode tag of \"' + tag + '\"');\n if (buffer.isError(decodedTag))\n return decodedTag;\n\n var len = derDecodeLen(buffer,\n decodedTag.primitive,\n 'Failed to get length of \"' + tag + '\"');\n\n // Failure\n if (buffer.isError(len))\n return len;\n\n if (!any &&\n decodedTag.tag !== tag &&\n decodedTag.tagStr !== tag &&\n decodedTag.tagStr + 'of' !== tag) {\n return buffer.error('Failed to match tag: \"' + tag + '\"');\n }\n\n if (decodedTag.primitive || len !== null)\n return buffer.skip(len, 'Failed to match body of: \"' + tag + '\"');\n\n // Indefinite length... find END tag\n var state = buffer.save();\n var res = this._skipUntilEnd(\n buffer,\n 'Failed to skip indefinite length body: \"' + this.tag + '\"');\n if (buffer.isError(res))\n return res;\n\n len = buffer.offset - state.offset;\n buffer.restore(state);\n return buffer.skip(len, 'Failed to match body of: \"' + tag + '\"');\n};\n\nDERNode.prototype._skipUntilEnd = function skipUntilEnd(buffer, fail) {\n while (true) {\n var tag = derDecodeTag(buffer, fail);\n if (buffer.isError(tag))\n return tag;\n var len = derDecodeLen(buffer, tag.primitive, fail);\n if (buffer.isError(len))\n return len;\n\n var res;\n if (tag.primitive || len !== null)\n res = buffer.skip(len)\n else\n res = this._skipUntilEnd(buffer, fail);\n\n // Failure\n if (buffer.isError(res))\n return res;\n\n if (tag.tagStr === 'end')\n break;\n }\n};\n\nDERNode.prototype._decodeList = function decodeList(buffer, tag, decoder,\n options) {\n var result = [];\n while (!buffer.isEmpty()) {\n var possibleEnd = this._peekTag(buffer, 'end');\n if (buffer.isError(possibleEnd))\n return possibleEnd;\n\n var res = decoder.decode(buffer, 'der', options);\n if (buffer.isError(res) && possibleEnd)\n break;\n result.push(res);\n }\n return result;\n};\n\nDERNode.prototype._decodeStr = function decodeStr(buffer, tag) {\n if (tag === 'bitstr') {\n var unused = buffer.readUInt8();\n if (buffer.isError(unused))\n return unused;\n return { unused: unused, data: buffer.raw() };\n } else if (tag === 'bmpstr') {\n var raw = buffer.raw();\n if (raw.length % 2 === 1)\n return buffer.error('Decoding of string type: bmpstr length mismatch');\n\n var str = '';\n for (var i = 0; i < raw.length / 2; i++) {\n str += String.fromCharCode(raw.readUInt16BE(i * 2));\n }\n return str;\n } else if (tag === 'numstr') {\n var numstr = buffer.raw().toString('ascii');\n if (!this._isNumstr(numstr)) {\n return buffer.error('Decoding of string type: ' +\n 'numstr unsupported characters');\n }\n return numstr;\n } else if (tag === 'octstr') {\n return buffer.raw();\n } else if (tag === 'objDesc') {\n return buffer.raw();\n } else if (tag === 'printstr') {\n var printstr = buffer.raw().toString('ascii');\n if (!this._isPrintstr(printstr)) {\n return buffer.error('Decoding of string type: ' +\n 'printstr unsupported characters');\n }\n return printstr;\n } else if (/str$/.test(tag)) {\n return buffer.raw().toString();\n } else {\n return buffer.error('Decoding of string type: ' + tag + ' unsupported');\n }\n};\n\nDERNode.prototype._decodeObjid = function decodeObjid(buffer, values, relative) {\n var result;\n var identifiers = [];\n var ident = 0;\n while (!buffer.isEmpty()) {\n var subident = buffer.readUInt8();\n ident <<= 7;\n ident |= subident & 0x7f;\n if ((subident & 0x80) === 0) {\n identifiers.push(ident);\n ident = 0;\n }\n }\n if (subident & 0x80)\n identifiers.push(ident);\n\n var first = (identifiers[0] / 40) | 0;\n var second = identifiers[0] % 40;\n\n if (relative)\n result = identifiers;\n else\n result = [first, second].concat(identifiers.slice(1));\n\n if (values) {\n var tmp = values[result.join(' ')];\n if (tmp === undefined)\n tmp = values[result.join('.')];\n if (tmp !== undefined)\n result = tmp;\n }\n\n return result;\n};\n\nDERNode.prototype._decodeTime = function decodeTime(buffer, tag) {\n var str = buffer.raw().toString();\n if (tag === 'gentime') {\n var year = str.slice(0, 4) | 0;\n var mon = str.slice(4, 6) | 0;\n var day = str.slice(6, 8) | 0;\n var hour = str.slice(8, 10) | 0;\n var min = str.slice(10, 12) | 0;\n var sec = str.slice(12, 14) | 0;\n } else if (tag === 'utctime') {\n var year = str.slice(0, 2) | 0;\n var mon = str.slice(2, 4) | 0;\n var day = str.slice(4, 6) | 0;\n var hour = str.slice(6, 8) | 0;\n var min = str.slice(8, 10) | 0;\n var sec = str.slice(10, 12) | 0;\n if (year < 70)\n year = 2000 + year;\n else\n year = 1900 + year;\n } else {\n return buffer.error('Decoding ' + tag + ' time is not supported yet');\n }\n\n return Date.UTC(year, mon - 1, day, hour, min, sec, 0);\n};\n\nDERNode.prototype._decodeNull = function decodeNull(buffer) {\n return null;\n};\n\nDERNode.prototype._decodeBool = function decodeBool(buffer) {\n var res = buffer.readUInt8();\n if (buffer.isError(res))\n return res;\n else\n return res !== 0;\n};\n\nDERNode.prototype._decodeInt = function decodeInt(buffer, values) {\n // Bigint, return as it is (assume big endian)\n var raw = buffer.raw();\n var res = new bignum(raw);\n\n if (values)\n res = values[res.toString(10)] || res;\n\n return res;\n};\n\nDERNode.prototype._use = function use(entity, obj) {\n if (typeof entity === 'function')\n entity = entity(obj);\n return entity._getDecoder('der').tree;\n};\n\n// Utility methods\n\nfunction derDecodeTag(buf, fail) {\n var tag = buf.readUInt8(fail);\n if (buf.isError(tag))\n return tag;\n\n var cls = der.tagClass[tag >> 6];\n var primitive = (tag & 0x20) === 0;\n\n // Multi-octet tag - load\n if ((tag & 0x1f) === 0x1f) {\n var oct = tag;\n tag = 0;\n while ((oct & 0x80) === 0x80) {\n oct = buf.readUInt8(fail);\n if (buf.isError(oct))\n return oct;\n\n tag <<= 7;\n tag |= oct & 0x7f;\n }\n } else {\n tag &= 0x1f;\n }\n var tagStr = der.tag[tag];\n\n return {\n cls: cls,\n primitive: primitive,\n tag: tag,\n tagStr: tagStr\n };\n}\n\nfunction derDecodeLen(buf, primitive, fail) {\n var len = buf.readUInt8(fail);\n if (buf.isError(len))\n return len;\n\n // Indefinite form\n if (!primitive && len === 0x80)\n return null;\n\n // Definite form\n if ((len & 0x80) === 0) {\n // Short form\n return len;\n }\n\n // Long form\n var num = len & 0x7f;\n if (num > 4)\n return buf.error('length octect is too long');\n\n len = 0;\n for (var i = 0; i < num; i++) {\n len <<= 8;\n var j = buf.readUInt8(fail);\n if (buf.isError(j))\n return j;\n len |= j;\n }\n\n return len;\n}\n\n\n/***/ }),\n/* 49 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar inherits = __webpack_require__(1);\nvar Buffer = __webpack_require__(0).Buffer;\n\nvar asn1 = __webpack_require__(16);\nvar base = asn1.base;\n\n// Import DER constants\nvar der = asn1.constants.der;\n\nfunction DEREncoder(entity) {\n this.enc = 'der';\n this.name = entity.name;\n this.entity = entity;\n\n // Construct base tree\n this.tree = new DERNode();\n this.tree._init(entity.body);\n};\nmodule.exports = DEREncoder;\n\nDEREncoder.prototype.encode = function encode(data, reporter) {\n return this.tree._encode(data, reporter).join();\n};\n\n// Tree methods\n\nfunction DERNode(parent) {\n base.Node.call(this, 'der', parent);\n}\ninherits(DERNode, base.Node);\n\nDERNode.prototype._encodeComposite = function encodeComposite(tag,\n primitive,\n cls,\n content) {\n var encodedTag = encodeTag(tag, primitive, cls, this.reporter);\n\n // Short form\n if (content.length < 0x80) {\n var header = new Buffer(2);\n header[0] = encodedTag;\n header[1] = content.length;\n return this._createEncoderBuffer([ header, content ]);\n }\n\n // Long form\n // Count octets required to store length\n var lenOctets = 1;\n for (var i = content.length; i >= 0x100; i >>= 8)\n lenOctets++;\n\n var header = new Buffer(1 + 1 + lenOctets);\n header[0] = encodedTag;\n header[1] = 0x80 | lenOctets;\n\n for (var i = 1 + lenOctets, j = content.length; j > 0; i--, j >>= 8)\n header[i] = j & 0xff;\n\n return this._createEncoderBuffer([ header, content ]);\n};\n\nDERNode.prototype._encodeStr = function encodeStr(str, tag) {\n if (tag === 'bitstr') {\n return this._createEncoderBuffer([ str.unused | 0, str.data ]);\n } else if (tag === 'bmpstr') {\n var buf = new Buffer(str.length * 2);\n for (var i = 0; i < str.length; i++) {\n buf.writeUInt16BE(str.charCodeAt(i), i * 2);\n }\n return this._createEncoderBuffer(buf);\n } else if (tag === 'numstr') {\n if (!this._isNumstr(str)) {\n return this.reporter.error('Encoding of string type: numstr supports ' +\n 'only digits and space');\n }\n return this._createEncoderBuffer(str);\n } else if (tag === 'printstr') {\n if (!this._isPrintstr(str)) {\n return this.reporter.error('Encoding of string type: printstr supports ' +\n 'only latin upper and lower case letters, ' +\n 'digits, space, apostrophe, left and rigth ' +\n 'parenthesis, plus sign, comma, hyphen, ' +\n 'dot, slash, colon, equal sign, ' +\n 'question mark');\n }\n return this._createEncoderBuffer(str);\n } else if (/str$/.test(tag)) {\n return this._createEncoderBuffer(str);\n } else if (tag === 'objDesc') {\n return this._createEncoderBuffer(str);\n } else {\n return this.reporter.error('Encoding of string type: ' + tag +\n ' unsupported');\n }\n};\n\nDERNode.prototype._encodeObjid = function encodeObjid(id, values, relative) {\n if (typeof id === 'string') {\n if (!values)\n return this.reporter.error('string objid given, but no values map found');\n if (!values.hasOwnProperty(id))\n return this.reporter.error('objid not found in values map');\n id = values[id].split(/[\\s\\.]+/g);\n for (var i = 0; i < id.length; i++)\n id[i] |= 0;\n } else if (Array.isArray(id)) {\n id = id.slice();\n for (var i = 0; i < id.length; i++)\n id[i] |= 0;\n }\n\n if (!Array.isArray(id)) {\n return this.reporter.error('objid() should be either array or string, ' +\n 'got: ' + JSON.stringify(id));\n }\n\n if (!relative) {\n if (id[1] >= 40)\n return this.reporter.error('Second objid identifier OOB');\n id.splice(0, 2, id[0] * 40 + id[1]);\n }\n\n // Count number of octets\n var size = 0;\n for (var i = 0; i < id.length; i++) {\n var ident = id[i];\n for (size++; ident >= 0x80; ident >>= 7)\n size++;\n }\n\n var objid = new Buffer(size);\n var offset = objid.length - 1;\n for (var i = id.length - 1; i >= 0; i--) {\n var ident = id[i];\n objid[offset--] = ident & 0x7f;\n while ((ident >>= 7) > 0)\n objid[offset--] = 0x80 | (ident & 0x7f);\n }\n\n return this._createEncoderBuffer(objid);\n};\n\nfunction two(num) {\n if (num < 10)\n return '0' + num;\n else\n return num;\n}\n\nDERNode.prototype._encodeTime = function encodeTime(time, tag) {\n var str;\n var date = new Date(time);\n\n if (tag === 'gentime') {\n str = [\n two(date.getFullYear()),\n two(date.getUTCMonth() + 1),\n two(date.getUTCDate()),\n two(date.getUTCHours()),\n two(date.getUTCMinutes()),\n two(date.getUTCSeconds()),\n 'Z'\n ].join('');\n } else if (tag === 'utctime') {\n str = [\n two(date.getFullYear() % 100),\n two(date.getUTCMonth() + 1),\n two(date.getUTCDate()),\n two(date.getUTCHours()),\n two(date.getUTCMinutes()),\n two(date.getUTCSeconds()),\n 'Z'\n ].join('');\n } else {\n this.reporter.error('Encoding ' + tag + ' time is not supported yet');\n }\n\n return this._encodeStr(str, 'octstr');\n};\n\nDERNode.prototype._encodeNull = function encodeNull() {\n return this._createEncoderBuffer('');\n};\n\nDERNode.prototype._encodeInt = function encodeInt(num, values) {\n if (typeof num === 'string') {\n if (!values)\n return this.reporter.error('String int or enum given, but no values map');\n if (!values.hasOwnProperty(num)) {\n return this.reporter.error('Values map doesn\\'t contain: ' +\n JSON.stringify(num));\n }\n num = values[num];\n }\n\n // Bignum, assume big endian\n if (typeof num !== 'number' && !Buffer.isBuffer(num)) {\n var numArray = num.toArray();\n if (!num.sign && numArray[0] & 0x80) {\n numArray.unshift(0);\n }\n num = new Buffer(numArray);\n }\n\n if (Buffer.isBuffer(num)) {\n var size = num.length;\n if (num.length === 0)\n size++;\n\n var out = new Buffer(size);\n num.copy(out);\n if (num.length === 0)\n out[0] = 0\n return this._createEncoderBuffer(out);\n }\n\n if (num < 0x80)\n return this._createEncoderBuffer(num);\n\n if (num < 0x100)\n return this._createEncoderBuffer([0, num]);\n\n var size = 1;\n for (var i = num; i >= 0x100; i >>= 8)\n size++;\n\n var out = new Array(size);\n for (var i = out.length - 1; i >= 0; i--) {\n out[i] = num & 0xff;\n num >>= 8;\n }\n if(out[0] & 0x80) {\n out.unshift(0);\n }\n\n return this._createEncoderBuffer(new Buffer(out));\n};\n\nDERNode.prototype._encodeBool = function encodeBool(value) {\n return this._createEncoderBuffer(value ? 0xff : 0);\n};\n\nDERNode.prototype._use = function use(entity, obj) {\n if (typeof entity === 'function')\n entity = entity(obj);\n return entity._getEncoder('der').tree;\n};\n\nDERNode.prototype._skipDefault = function skipDefault(dataBuffer, reporter, parent) {\n var state = this._baseState;\n var i;\n if (state['default'] === null)\n return false;\n\n var data = dataBuffer.join();\n if (state.defaultBuffer === undefined)\n state.defaultBuffer = this._encodeValue(state['default'], reporter, parent).join();\n\n if (data.length !== state.defaultBuffer.length)\n return false;\n\n for (i=0; i < data.length; i++)\n if (data[i] !== state.defaultBuffer[i])\n return false;\n\n return true;\n};\n\n// Utility methods\n\nfunction encodeTag(tag, primitive, cls, reporter) {\n var res;\n\n if (tag === 'seqof')\n tag = 'seq';\n else if (tag === 'setof')\n tag = 'set';\n\n if (der.tagByName.hasOwnProperty(tag))\n res = der.tagByName[tag];\n else if (typeof tag === 'number' && (tag | 0) === tag)\n res = tag;\n else\n return reporter.error('Unknown tag: ' + tag);\n\n if (res >= 0x1f)\n return reporter.error('Multi-octet tag encoding unsupported');\n\n if (!primitive)\n res |= 0x20;\n\n res |= (der.tagClassByName[cls || 'universal'] << 6);\n\n return res;\n}\n\n\n/***/ }),\n/* 50 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar urljoin = __webpack_require__(10);\n\nvar RequestBuilder = __webpack_require__(30);\nvar qs = __webpack_require__(29);\nvar objectHelper = __webpack_require__(4);\nvar assert = __webpack_require__(6);\nvar ssodata = __webpack_require__(54);\nvar responseHandler = __webpack_require__(18);\nvar parametersWhitelist = __webpack_require__(106);\nvar Warn = __webpack_require__(22);\n\nvar PasswordlessAuthentication = __webpack_require__(103);\nvar DBConnection = __webpack_require__(102);\n\n/**\n * Creates a new Auth0 Authentication API client\n * @constructor\n * @param {Object} options\n * @param {String} options.domain your Auth0 domain\n * @param {String} options.clientID your Auth0 client identifier obtained when creating the client in the Auth0 Dashboard\n * @param {String} [options.redirectUri] url that the Auth0 will redirect after Auth with the Authorization Response\n * @param {String} [options.responseType] type of the response used by OAuth 2.0 flow. It can be any space separated list of the values `code`, `token`, `id_token`. {@link https://openid.net/specs/oauth-v2-multiple-response-types-1_0}\n * @param {String} [options.responseMode] how the Auth response is encoded and redirected back to the client. Supported values are `query`, `fragment` and `form_post`. {@link https://openid.net/specs/oauth-v2-multiple-response-types-1_0.html#ResponseModes}\n * @param {String} [options.scope] scopes to be requested during Auth. e.g. `openid email`\n * @param {String} [options.audience] identifier of the resource server who will consume the access token issued after Auth\n * @see {@link https://auth0.com/docs/api/authentication}\n */\nfunction Authentication(auth0, options) {\n /* eslint-disable */\n assert.check(\n options,\n { type: 'object', message: 'options parameter is not valid' },\n {\n domain: { type: 'string', message: 'domain option is required' },\n clientID: { type: 'string', message: 'clientID option is required' },\n responseType: { optional: true, type: 'string', message: 'responseType is not valid' },\n responseMode: { optional: true, type: 'string', message: 'responseMode is not valid' },\n redirectUri: { optional: true, type: 'string', message: 'redirectUri is not valid' },\n scope: { optional: true, type: 'string', message: 'scope is not valid' },\n audience: { optional: true, type: 'string', message: 'audience is not valid' },\n _disableDeprecationWarnings: {\n optional: true,\n type: 'boolean',\n message: '_disableDeprecationWarnings option is not valid'\n },\n _sendTelemetry: {\n optional: true,\n type: 'boolean',\n message: '_sendTelemetry option is not valid'\n },\n _telemetryInfo: {\n optional: true,\n type: 'object',\n message: '_telemetryInfo option is not valid'\n }\n }\n );\n /* eslint-enable */\n\n this.baseOptions = options;\n this.auth0 = auth0;\n this.baseOptions._sendTelemetry = this.baseOptions._sendTelemetry === false\n ? this.baseOptions._sendTelemetry\n : true;\n\n this.baseOptions.rootUrl = 'https://' + this.baseOptions.domain;\n\n this.request = new RequestBuilder(this.baseOptions);\n\n this.passwordless = new PasswordlessAuthentication(this.request, this.baseOptions);\n this.dbConnection = new DBConnection(this.request, this.baseOptions);\n\n this.warn = new Warn({\n disableWarnings: !!options._disableDeprecationWarnings\n });\n}\n\n/**\n * Builds and returns the `/authorize` url in order to initialize a new authN/authZ transaction\n *\n * @method buildAuthorizeUrl\n * @param {Object} options\n * @param {String} [options.domain] your Auth0 domain\n * @param {String} [options.clientID] your Auth0 client identifier obtained when creating the client in the Auth0 Dashboard\n * @param {String} options.redirectUri url that the Auth0 will redirect after Auth with the Authorization Response\n * @param {String} options.responseType type of the response used by OAuth 2.0 flow. It can be any space separated list of the values `code`, `token`, `id_token`. {@link https://openid.net/specs/oauth-v2-multiple-response-types-1_0}\n * @param {String} [options.responseMode] how the Auth response is encoded and redirected back to the client. Supported values are `query`, `fragment` and `form_post`. {@link https://openid.net/specs/oauth-v2-multiple-response-types-1_0.html#ResponseModes}\n * @param {String} [options.state] value used to mitigate XSRF attacks. {@link https://auth0.com/docs/protocols/oauth2/oauth-state}\n * @param {String} [options.nonce] value used to mitigate replay attacks when using Implicit Grant. {@link https://auth0.com/docs/api-auth/tutorials/nonce}\n * @param {String} [options.scope] scopes to be requested during Auth. e.g. `openid email`\n * @param {String} [options.audience] identifier of the resource server who will consume the access token issued after Auth\n * @see {@link https://auth0.com/docs/api/authentication#authorize-client}\n * @see {@link https://auth0.com/docs/api/authentication#social}\n */\nAuthentication.prototype.buildAuthorizeUrl = function(options) {\n var params;\n var qString;\n\n assert.check(options, { type: 'object', message: 'options parameter is not valid' });\n\n params = objectHelper\n .merge(this.baseOptions, [\n 'clientID',\n 'responseType',\n 'responseMode',\n 'redirectUri',\n 'scope',\n 'audience'\n ])\n .with(options);\n\n /* eslint-disable */\n assert.check(\n params,\n { type: 'object', message: 'options parameter is not valid' },\n {\n clientID: { type: 'string', message: 'clientID option is required' },\n redirectUri: { optional: true, type: 'string', message: 'redirectUri option is required' },\n responseType: { type: 'string', message: 'responseType option is required' },\n nonce: {\n type: 'string',\n message: 'nonce option is required',\n condition: function(o) {\n return o.responseType.indexOf('code') === -1 && o.responseType.indexOf('id_token') !== -1;\n }\n },\n scope: { optional: true, type: 'string', message: 'scope option is required' },\n audience: { optional: true, type: 'string', message: 'audience option is required' }\n }\n );\n /* eslint-enable */\n\n // eslint-disable-next-line\n if (this.baseOptions._sendTelemetry) {\n params.auth0Client = this.request.getTelemetryData();\n }\n\n if (params.connection_scope && assert.isArray(params.connection_scope)) {\n params.connection_scope = params.connection_scope.join(',');\n }\n\n params = objectHelper.toSnakeCase(params, ['auth0Client']);\n params = objectHelper.blacklist(params, ['username']);\n params = parametersWhitelist.oauthAuthorizeParams(this.warn, params);\n\n qString = qs.stringify(params);\n\n return urljoin(this.baseOptions.rootUrl, 'authorize', '?' + qString);\n};\n\n/**\n * Builds and returns the Logout url in order to initialize a new authN/authZ transaction\n *\n * If you want to navigate the user to a specific URL after the logout, set that URL at the returnTo parameter. The URL should be included in any the appropriate Allowed Logout URLs list:\n *\n * - If the client_id parameter is included, the returnTo URL must be listed in the Allowed Logout URLs set at the client level (see Setting Allowed Logout URLs at the App Level).\n * - If the client_id parameter is NOT included, the returnTo URL must be listed in the Allowed Logout URLs set at the account level (see Setting Allowed Logout URLs at the Account Level).\n * @method buildLogoutUrl\n * @param {Object} options\n * @param {String} [options.clientID] identifier of your client\n * @param {String} [options.returnTo] URL to be redirected after the logout\n * @param {Boolean} [options.federated] tells Auth0 if it should logout the user also from the IdP.\n * @see {@link https://auth0.com/docs/api/authentication#logout}\n */\nAuthentication.prototype.buildLogoutUrl = function(options) {\n var params;\n var qString;\n\n assert.check(options, {\n optional: true,\n type: 'object',\n message: 'options parameter is not valid'\n });\n\n params = objectHelper.merge(this.baseOptions, ['clientID']).with(options || {});\n\n // eslint-disable-next-line\n if (this.baseOptions._sendTelemetry) {\n params.auth0Client = this.request.getTelemetryData();\n }\n\n params = objectHelper.toSnakeCase(params, ['auth0Client', 'returnTo']);\n\n qString = qs.stringify(params);\n\n return urljoin(this.baseOptions.rootUrl, 'v2', 'logout', '?' + qString);\n};\n\n/**\n * @callback authorizeCallback\n * @param {Error} [err] error returned by Auth0 with the reason of the Auth failure\n * @param {Object} [result] result of the Auth request\n * @param {String} [result.accessToken] token that allows access to the specified resource server (identified by the audience parameter or by default Auth0's /userinfo endpoint)\n * @param {Number} [result.expiresIn] number of seconds until the access token expires\n * @param {String} [result.idToken] token that identifies the user\n * @param {String} [result.refreshToken] token that can be used to get new access tokens from Auth0. Note that not all clients can request them or the resource server might not allow them.\n */\n\n/**\n * @callback tokenCallback\n * @param {Error} [err] error returned by Auth0 with the reason of the Auth failure\n * @param {Object} [result] result of the Auth request\n * @param {String} result.accessToken token that allows access to the specified resource server (identified by the audience parameter or by default Auth0's /userinfo endpoint)\n * @param {Number} result.expiresIn number of seconds until the access token expires\n * @param {String} [result.idToken] token that identifies the user\n * @param {String} [result.refreshToken] token that can be used to get new access tokens from Auth0. Note that not all clients can request them or the resource server might not allow them.\n */\n\n/**\n * Makes a call to the `oauth/token` endpoint with `password` grant type to login to the default directory.\n *\n * @method loginWithDefaultDirectory\n * @param {Object} options\n * @param {String} options.username email or username of the user that will perform Auth\n * @param {String} options.password the password of the user that will perform Auth\n * @param {String} [options.scope] scopes to be requested during Auth. e.g. `openid email`\n * @param {String} [options.audience] identifier of the resource server who will consume the access token issued after Auth\n * @param {tokenCallback} cb function called with the result of the request\n * @see {@link https://auth0.com/docs/api-auth/grant/password}\n */\nAuthentication.prototype.loginWithDefaultDirectory = function(options, cb) {\n assert.check(\n options,\n { type: 'object', message: 'options parameter is not valid' },\n {\n username: { type: 'string', message: 'username option is required' },\n password: { type: 'string', message: 'password option is required' },\n scope: { optional: true, type: 'string', message: 'scope option is required' },\n audience: { optional: true, type: 'string', message: 'audience option is required' }\n }\n );\n\n options.grantType = 'password';\n\n return this.oauthToken(options, cb);\n};\n\n/**\n * Makes a call to the `oauth/token` endpoint with `password-realm` grant type\n *\n * @method login\n * @param {Object} options\n * @param {String} options.username email or username of the user that will perform Auth\n * @param {String} options.password the password of the user that will perform Auth\n * @param {String} [options.scope] scopes to be requested during Auth. e.g. `openid email`\n * @param {String} [options.audience] identifier of the resource server who will consume the access token issued after Auth\n * @param {Object} options.realm the HRD domain or the connection name where the user belongs to. e.g. `Username-Password-Authentication`\n * @param {tokenCallback} cb function called with the result of the request\n * @see {@link https://auth0.com/docs/api-auth/grant/password}\n */\nAuthentication.prototype.login = function(options, cb) {\n assert.check(\n options,\n { type: 'object', message: 'options parameter is not valid' },\n {\n username: { type: 'string', message: 'username option is required' },\n password: { type: 'string', message: 'password option is required' },\n realm: { type: 'string', message: 'realm option is required' },\n scope: { optional: true, type: 'string', message: 'scope option is required' },\n audience: { optional: true, type: 'string', message: 'audience option is required' }\n }\n );\n\n options.grantType = 'http://auth0.com/oauth/grant-type/password-realm';\n\n return this.oauthToken(options, cb);\n};\n\n/**\n * Makes a call to the `oauth/token` endpoint\n *\n * @method oauthToken\n * @private\n */\nAuthentication.prototype.oauthToken = function(options, cb) {\n var url;\n var body;\n\n assert.check(options, { type: 'object', message: 'options parameter is not valid' });\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n\n url = urljoin(this.baseOptions.rootUrl, 'oauth', 'token');\n\n body = objectHelper.merge(this.baseOptions, ['clientID', 'scope', 'audience']).with(options);\n\n assert.check(\n body,\n { type: 'object', message: 'options parameter is not valid' },\n {\n clientID: { type: 'string', message: 'clientID option is required' },\n grantType: { type: 'string', message: 'grantType option is required' },\n scope: { optional: true, type: 'string', message: 'scope option is required' },\n audience: { optional: true, type: 'string', message: 'audience option is required' }\n }\n );\n\n body = objectHelper.toSnakeCase(body, ['auth0Client']);\n body = parametersWhitelist.oauthTokenParams(this.warn, body);\n\n body.grant_type = body.grant_type;\n\n return this.request.post(url).send(body).end(responseHandler(cb));\n};\n\n/**\n * Performs authentication calling `/oauth/ro` endpoint with username\n * and password for a given connection name.\n *\n * This method is not compatible with API Auth so if you need to fetch API tokens with audience\n * you should use {@link login} or {@link loginWithDefaultDirectory}.\n *\n * @method loginWithResourceOwner\n * @param {Object} options\n * @param {String} options.username email or username of the user that will perform Auth\n * @param {String} options.password the password of the user that will perform Auth\n * @param {Object} options.connection the connection name where the user belongs to. e.g. `Username-Password-Authentication`\n * @param {String} [options.scope] scopes to be requested during Auth. e.g. `openid email`\n * @param {String} [options.device] name of the device/browser where the Auth was requested\n * @param {tokenCallback} cb function called with the result of the request\n */\nAuthentication.prototype.loginWithResourceOwner = function(options, cb) {\n var url;\n var body;\n\n assert.check(\n options,\n { type: 'object', message: 'options parameter is not valid' },\n {\n username: { type: 'string', message: 'username option is required' },\n password: { type: 'string', message: 'password option is required' },\n connection: { type: 'string', message: 'connection option is required' },\n scope: { optional: true, type: 'string', message: 'scope option is required' }\n }\n );\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n\n url = urljoin(this.baseOptions.rootUrl, 'oauth', 'ro');\n\n body = objectHelper\n .merge(this.baseOptions, ['clientID', 'scope'])\n .with(options, ['username', 'password', 'scope', 'connection', 'device']);\n\n body = objectHelper.toSnakeCase(body, ['auth0Client']);\n\n body.grant_type = body.grant_type || 'password';\n\n return this.request.post(url).send(body).end(responseHandler(cb));\n};\n\n/**\n * Uses {@link checkSession} and localStorage to return data from the last successful authentication request.\n *\n * @method getSSOData\n * @param {Boolean} withActiveDirectories this parameter is not used anymore. It's here to be backward compatible\n * @param {Function} cb\n */\nAuthentication.prototype.getSSOData = function(withActiveDirectories, cb) {\n if (typeof withActiveDirectories === 'function') {\n cb = withActiveDirectories;\n }\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n var clientId = this.baseOptions.clientID;\n var ssodataInformation = ssodata.get() || {};\n\n this.auth0.checkSession(\n {\n responseType: 'token id_token',\n scope: 'openid profile email',\n connection: ssodataInformation.lastUsedConnection\n },\n function(err, result) {\n if (err) {\n if (err.error === 'login_required') {\n return cb(null, { sso: false });\n }\n if (err.error === 'consent_required') {\n err.error_description =\n 'Consent required. When using `getSSOData`, the user has to be authenticated with the following scope: `openid profile email`.';\n }\n return cb(err, { sso: false });\n }\n if (\n ssodataInformation.lastUsedSub &&\n ssodataInformation.lastUsedSub !== result.idTokenPayload.sub\n ) {\n return cb(err, { sso: false });\n }\n return cb(null, {\n lastUsedConnection: {\n name: ssodataInformation.lastUsedConnection\n },\n lastUsedUserID: result.idTokenPayload.sub,\n lastUsedUsername: result.idTokenPayload.email || result.idTokenPayload.name,\n lastUsedClientID: clientId,\n sessionClients: [clientId],\n sso: true\n });\n }\n );\n};\n\n/**\n * @callback userInfoCallback\n * @param {Error} [err] error returned by Auth0\n * @param {Object} [userInfo] user information\n */\n\n/**\n * Makes a call to the `/userinfo` endpoint and returns the user profile\n *\n * @method userInfo\n * @param {String} accessToken token issued to a user after Auth\n * @param {userInfoCallback} cb\n * @see {@link https://auth0.com/docs/api/authentication#get-user-info}\n */\nAuthentication.prototype.userInfo = function(accessToken, cb) {\n var url;\n\n assert.check(accessToken, { type: 'string', message: 'accessToken parameter is not valid' });\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n\n url = urljoin(this.baseOptions.rootUrl, 'userinfo');\n\n return this.request\n .get(url)\n .set('Authorization', 'Bearer ' + accessToken)\n .end(responseHandler(cb, { ignoreCasing: true }));\n};\n\n/**\n * @callback delegationCallback\n * @param {Error} [err] error returned by Auth0 with the reason why the delegation failed\n * @param {Object} [result] result of the delegation request. The payload depends on what ai type was used\n */\n\n/**\n * Makes a call to the `/delegation` endpoint with either an `id_token` or `refresh_token`\n *\n * @method delegation\n * @param {Object} options\n * @param {String} [options.clientID] client identifier\n * @param {String} options.grantType grant type used for delegation. The only valid value is `urn:ietf:params:oauth:grant-type:jwt-bearer`\n * @param {String} [options.idToken] valid token of the user issued after Auth. If no `refresh_token` is provided this parameter is required\n * @param {String} [options.refreshToken] valid refresh token of the user issued after Auth. If no `id_token` is provided this parameter is required\n * @param {String} [options.target] the target client id of the delegation\n * @param {String} [options.scope] either `openid` or `openid profile email`\n * @param {String} [options.apiType] the api to be called\n * @param {delegationCallback} cb\n * @see {@link https://auth0.com/docs/api/authentication#delegation}\n */\nAuthentication.prototype.delegation = function(options, cb) {\n var url;\n var body;\n\n assert.check(\n options,\n { type: 'object', message: 'options parameter is not valid' },\n {\n grant_type: { type: 'string', message: 'grant_type option is required' }\n }\n );\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n\n url = urljoin(this.baseOptions.rootUrl, 'delegation');\n\n body = objectHelper.merge(this.baseOptions, ['clientID']).with(options);\n\n body = objectHelper.toSnakeCase(body, ['auth0Client']);\n\n return this.request.post(url).send(body).end(responseHandler(cb));\n};\n\n/**\n * Fetches the user country based on the ip.\n *\n * @method getUserCountry\n * @private\n * @param {Function} cb\n */\nAuthentication.prototype.getUserCountry = function(cb) {\n var url;\n\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n\n url = urljoin(this.baseOptions.rootUrl, 'user', 'geoloc', 'country');\n\n return this.request.get(url).end(responseHandler(cb));\n};\n\nmodule.exports = Authentication;\n\n\n/***/ }),\n/* 51 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar base64 = __webpack_require__(33);\n\nfunction padding(str) {\n var mod = str.length % 4;\n var pad = 4 - mod;\n\n if (mod === 0) {\n return str;\n }\n\n return str + new Array(1 + pad).join('=');\n}\n\nfunction stringToByteArray(str) {\n var arr = new Array(str.length);\n for (var a = 0; a < str.length; a++) {\n arr[a] = str.charCodeAt(a);\n }\n return arr;\n}\n\nfunction byteArrayToString(array) {\n var result = '';\n for (var i = 0; i < array.length; i++) {\n result += String.fromCharCode(array[i]);\n }\n return result;\n}\n\nfunction encode(str) {\n return base64\n .fromByteArray(stringToByteArray(str))\n .replace(/\\+/g, '-') // Convert '+' to '-'\n .replace(/\\//g, '_'); // Convert '/' to '_'\n}\n\nfunction decode(str) {\n str = padding(str)\n .replace(/-/g, '+') // Convert '-' to '+'\n .replace(/_/g, '/'); // Convert '_' to '/'\n\n return byteArrayToString(base64.toByteArray(str));\n}\n\nmodule.exports = {\n encode: encode,\n decode: decode\n};\n\n\n/***/ }),\n/* 52 */\n/***/ (function(module, exports) {\n\nfunction buildResponse(error, description) {\n return {\n error: error,\n errorDescription: description\n };\n}\n\nfunction invalidJwt(description) {\n return buildResponse('invalid_token', description);\n}\n\nmodule.exports = {\n buildResponse: buildResponse,\n invalidJwt: invalidJwt\n};\n\n\n/***/ }),\n/* 53 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar windowHelper = __webpack_require__(5);\n\nfunction IframeHandler(options) {\n this.url = options.url;\n this.callback = options.callback;\n this.timeout = options.timeout || 60 * 1000;\n this.timeoutCallback = options.timeoutCallback || null;\n this.eventListenerType = options.eventListenerType || 'message';\n this.iframe = null;\n this.timeoutHandle = null;\n this._destroyTimeout = null;\n this.transientMessageEventListener = null;\n this.proxyEventListener = null;\n // If no event identifier specified, set default\n this.eventValidator = options.eventValidator || {\n isValid: function() {\n return true;\n }\n };\n\n if (typeof this.callback !== 'function') {\n throw new Error('options.callback must be a function');\n }\n}\n\nIframeHandler.prototype.init = function() {\n var _this = this;\n var _window = windowHelper.getWindow();\n\n this.iframe = _window.document.createElement('iframe');\n this.iframe.style.display = 'none';\n\n // Workaround to avoid using bind that does not work in IE8\n this.proxyEventListener = function(e) {\n _this.eventListener(e);\n };\n\n switch (this.eventListenerType) {\n case 'message':\n this.eventSourceObject = _window;\n break;\n case 'load':\n this.eventSourceObject = this.iframe;\n break;\n default:\n throw new Error('Unsupported event listener type: ' + this.eventListenerType);\n }\n\n this.eventSourceObject.addEventListener(this.eventListenerType, this.proxyEventListener, false);\n\n _window.document.body.appendChild(this.iframe);\n \n this.iframe.src = this.url;\n \n this.timeoutHandle = setTimeout(function() {\n _this.timeoutHandler();\n }, this.timeout);\n};\n\nIframeHandler.prototype.eventListener = function(event) {\n var eventData = { event: event, sourceObject: this.eventSourceObject };\n\n if (!this.eventValidator.isValid(eventData)) {\n return;\n }\n\n this.destroy();\n this.callback(eventData);\n};\n\nIframeHandler.prototype.timeoutHandler = function() {\n this.destroy();\n if (this.timeoutCallback) {\n this.timeoutCallback();\n }\n};\n\nIframeHandler.prototype.destroy = function() {\n var _this = this;\n var _window = windowHelper.getWindow();\n\n clearTimeout(this.timeoutHandle);\n\n this._destroyTimeout = setTimeout(function() {\n _this.eventSourceObject.removeEventListener(\n _this.eventListenerType,\n _this.proxyEventListener,\n false\n );\n _window.document.body.removeChild(_this.iframe);\n }, 0);\n};\n\nmodule.exports = IframeHandler;\n\n\n/***/ }),\n/* 54 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar storage = __webpack_require__(55);\n\nmodule.exports = {\n set: function(connection, sub) {\n var ssodata = {\n lastUsedConnection: connection,\n lastUsedSub: sub\n };\n storage.setItem('auth0.ssodata', JSON.stringify(ssodata));\n },\n get: function() {\n var ssodata = storage.getItem('auth0.ssodata');\n if (!ssodata) {\n return;\n }\n return JSON.parse(ssodata);\n }\n};\n\n\n/***/ }),\n/* 55 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar StorageHandler = __webpack_require__(112);\nvar storage;\n\nfunction getStorage(force) {\n if (!storage || force) {\n storage = new StorageHandler();\n }\n return storage;\n}\n\nmodule.exports = {\n getItem: function(key) {\n var value = getStorage().getItem(key);\n return value ? JSON.parse(value) : value;\n },\n removeItem: function(key) {\n return getStorage().removeItem(key);\n },\n setItem: function(key, value) {\n var json = JSON.stringify(value);\n return getStorage().setItem(key, json);\n },\n reload: function() {\n getStorage(true);\n }\n};\n\n\n/***/ }),\n/* 56 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar random = __webpack_require__(109);\nvar storage = __webpack_require__(55);\n\nvar DEFAULT_NAMESPACE = 'com.auth0.auth.';\n\nfunction TransactionManager(options) {\n options = options || {};\n this.namespace = options.namespace || DEFAULT_NAMESPACE;\n this.keyLength = options.keyLength || 32;\n}\n\nTransactionManager.prototype.process = function(options) {\n if (!options.responseType) {\n throw new Error('responseType is required');\n }\n var lastUsedConnection = options.realm || options.connection;\n var responseTypeIncludesIdToken = options.responseType.indexOf('id_token') !== -1;\n\n var transaction = this.generateTransaction(\n options.appState,\n options.state,\n options.nonce,\n lastUsedConnection,\n responseTypeIncludesIdToken\n );\n if (!options.state) {\n options.state = transaction.state;\n }\n\n if (responseTypeIncludesIdToken && !options.nonce) {\n options.nonce = transaction.nonce;\n }\n\n return options;\n};\n\nTransactionManager.prototype.generateTransaction = function(\n appState,\n state,\n nonce,\n lastUsedConnection,\n generateNonce\n) {\n state = state || random.randomString(this.keyLength);\n nonce = nonce || (generateNonce ? random.randomString(this.keyLength) : null);\n\n storage.setItem(this.namespace + state, {\n nonce: nonce,\n appState: appState,\n state: state,\n lastUsedConnection: lastUsedConnection\n });\n return {\n state: state,\n nonce: nonce\n };\n};\n\nTransactionManager.prototype.getStoredTransaction = function(state) {\n var transactionData;\n\n transactionData = storage.getItem(this.namespace + state);\n storage.removeItem(this.namespace + state);\n return transactionData;\n};\n\nmodule.exports = TransactionManager;\n\n\n/***/ }),\n/* 57 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar IframeHandler = __webpack_require__(53);\nvar objectHelper = __webpack_require__(4);\n\nfunction runWebMessageFlow(authorizeUrl, options, callback) {\n var handler = new IframeHandler({\n url: authorizeUrl,\n eventListenerType: 'message',\n callback: function(eventData) {\n callback(null, eventData);\n },\n timeout: options.timeout,\n eventValidator: {\n isValid: function(eventData) {\n return eventData.event.data.type === 'authorization_response' \n && options.state === eventData.event.data.response.state;\n }\n },\n timeoutCallback: function() {\n callback({\n error: 'timeout',\n error_description: 'Timeout during executing web_message communication'\n });\n }\n });\n handler.init();\n}\n\nfunction WebMessageHandler(webAuth) {\n this.webAuth = webAuth;\n}\n\nWebMessageHandler.prototype.run = function(options, cb) {\n var _this = this;\n options.responseMode = 'web_message';\n options.prompt = 'none';\n runWebMessageFlow(this.webAuth.client.buildAuthorizeUrl(options), options, function(\n err,\n eventData\n ) {\n var error = err;\n if (!err && eventData.event.data.response.error) {\n error = objectHelper.pick(eventData.event.data.response, ['error', 'error_description']);\n }\n if (error) {\n return cb(error);\n }\n var parsedHash = eventData.event.data.response;\n _this.webAuth.validateAuthenticationResponse(options, parsedHash, cb);\n });\n};\n\nmodule.exports = WebMessageHandler;\n\n\n/***/ }),\n/* 58 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar r;\n\nmodule.exports = function rand(len) {\n if (!r)\n r = new Rand(null);\n\n return r.generate(len);\n};\n\nfunction Rand(rand) {\n this.rand = rand;\n}\nmodule.exports.Rand = Rand;\n\nRand.prototype.generate = function generate(len) {\n return this._rand(len);\n};\n\n// Emulate crypto API using randy\nRand.prototype._rand = function _rand(n) {\n if (this.rand.getBytes)\n return this.rand.getBytes(n);\n\n var res = new Uint8Array(n);\n for (var i = 0; i < res.length; i++)\n res[i] = this.rand.getByte();\n return res;\n};\n\nif (typeof self === 'object') {\n if (self.crypto && self.crypto.getRandomValues) {\n // Modern browsers\n Rand.prototype._rand = function _rand(n) {\n var arr = new Uint8Array(n);\n self.crypto.getRandomValues(arr);\n return arr;\n };\n } else if (self.msCrypto && self.msCrypto.getRandomValues) {\n // IE\n Rand.prototype._rand = function _rand(n) {\n var arr = new Uint8Array(n);\n self.msCrypto.getRandomValues(arr);\n return arr;\n };\n\n // Safari's WebWorkers do not have `crypto`\n } else if (typeof window === 'object') {\n // Old junk\n Rand.prototype._rand = function() {\n throw new Error('Not implemented yet');\n };\n }\n} else {\n // Node.js or Web worker with no crypto support\n try {\n var crypto = __webpack_require__(209);\n if (typeof crypto.randomBytes !== 'function')\n throw new Error('Not supported');\n\n Rand.prototype._rand = function _rand(n) {\n return crypto.randomBytes(n);\n };\n } catch (e) {\n }\n}\n\n\n/***/ }),\n/* 59 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var aes = __webpack_require__(23)\nvar Transform = __webpack_require__(12)\nvar inherits = __webpack_require__(1)\nvar GHASH = __webpack_require__(121)\nvar xor = __webpack_require__(19)\ninherits(StreamCipher, Transform)\nmodule.exports = StreamCipher\n\nfunction StreamCipher (mode, key, iv, decrypt) {\n if (!(this instanceof StreamCipher)) {\n return new StreamCipher(mode, key, iv)\n }\n Transform.call(this)\n this._finID = Buffer.concat([iv, new Buffer([0, 0, 0, 1])])\n iv = Buffer.concat([iv, new Buffer([0, 0, 0, 2])])\n this._cipher = new aes.AES(key)\n this._prev = new Buffer(iv.length)\n this._cache = new Buffer('')\n this._secCache = new Buffer('')\n this._decrypt = decrypt\n this._alen = 0\n this._len = 0\n iv.copy(this._prev)\n this._mode = mode\n var h = new Buffer(4)\n h.fill(0)\n this._ghash = new GHASH(this._cipher.encryptBlock(h))\n this._authTag = null\n this._called = false\n}\nStreamCipher.prototype._update = function (chunk) {\n if (!this._called && this._alen) {\n var rump = 16 - (this._alen % 16)\n if (rump < 16) {\n rump = new Buffer(rump)\n rump.fill(0)\n this._ghash.update(rump)\n }\n }\n this._called = true\n var out = this._mode.encrypt(this, chunk)\n if (this._decrypt) {\n this._ghash.update(chunk)\n } else {\n this._ghash.update(out)\n }\n this._len += chunk.length\n return out\n}\nStreamCipher.prototype._final = function () {\n if (this._decrypt && !this._authTag) {\n throw new Error('Unsupported state or unable to authenticate data')\n }\n var tag = xor(this._ghash.final(this._alen * 8, this._len * 8), this._cipher.encryptBlock(this._finID))\n if (this._decrypt) {\n if (xorTest(tag, this._authTag)) {\n throw new Error('Unsupported state or unable to authenticate data')\n }\n } else {\n this._authTag = tag\n }\n this._cipher.scrub()\n}\nStreamCipher.prototype.getAuthTag = function getAuthTag () {\n if (!this._decrypt && Buffer.isBuffer(this._authTag)) {\n return this._authTag\n } else {\n throw new Error('Attempting to get auth tag in unsupported state')\n }\n}\nStreamCipher.prototype.setAuthTag = function setAuthTag (tag) {\n if (this._decrypt) {\n this._authTag = tag\n } else {\n throw new Error('Attempting to set auth tag in unsupported state')\n }\n}\nStreamCipher.prototype.setAAD = function setAAD (buf) {\n if (!this._called) {\n this._ghash.update(buf)\n this._alen += buf.length\n } else {\n throw new Error('Attempting to set AAD in unsupported state')\n }\n}\nfunction xorTest (a, b) {\n var out = 0\n if (a.length !== b.length) {\n out++\n }\n var len = Math.min(a.length, b.length)\n var i = -1\n while (++i < len) {\n out += (a[i] ^ b[i])\n }\n return out\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 60 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar xor = __webpack_require__(19)\n\nexports.encrypt = function (self, block) {\n var data = xor(block, self._prev)\n\n self._prev = self._cipher.encryptBlock(data)\n return self._prev\n}\n\nexports.decrypt = function (self, block) {\n var pad = self._prev\n\n self._prev = block\n var out = self._cipher.decryptBlock(block)\n\n return xor(out, pad)\n}\n\n\n/***/ }),\n/* 61 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var xor = __webpack_require__(19)\n\nexports.encrypt = function (self, data, decrypt) {\n var out = new Buffer('')\n var len\n\n while (data.length) {\n if (self._cache.length === 0) {\n self._cache = self._cipher.encryptBlock(self._prev)\n self._prev = new Buffer('')\n }\n\n if (self._cache.length <= data.length) {\n len = self._cache.length\n out = Buffer.concat([out, encryptStart(self, data.slice(0, len), decrypt)])\n data = data.slice(len)\n } else {\n out = Buffer.concat([out, encryptStart(self, data, decrypt)])\n break\n }\n }\n\n return out\n}\nfunction encryptStart (self, data, decrypt) {\n var len = data.length\n var out = xor(data, self._cache)\n self._cache = self._cache.slice(len)\n self._prev = Buffer.concat([self._prev, decrypt ? data : out])\n return out\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 62 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {function encryptByte (self, byteParam, decrypt) {\n var pad\n var i = -1\n var len = 8\n var out = 0\n var bit, value\n while (++i < len) {\n pad = self._cipher.encryptBlock(self._prev)\n bit = (byteParam & (1 << (7 - i))) ? 0x80 : 0\n value = pad[0] ^ bit\n out += ((value & 0x80) >> (i % 8))\n self._prev = shiftIn(self._prev, decrypt ? bit : value)\n }\n return out\n}\nexports.encrypt = function (self, chunk, decrypt) {\n var len = chunk.length\n var out = new Buffer(len)\n var i = -1\n while (++i < len) {\n out[i] = encryptByte(self, chunk[i], decrypt)\n }\n return out\n}\nfunction shiftIn (buffer, value) {\n var len = buffer.length\n var i = -1\n var out = new Buffer(buffer.length)\n buffer = Buffer.concat([buffer, new Buffer([value])])\n while (++i < len) {\n out[i] = buffer[i] << 1 | buffer[i + 1] >> (7)\n }\n return out\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 63 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {function encryptByte (self, byteParam, decrypt) {\n var pad = self._cipher.encryptBlock(self._prev)\n var out = pad[0] ^ byteParam\n self._prev = Buffer.concat([self._prev.slice(1), new Buffer([decrypt ? byteParam : out])])\n return out\n}\nexports.encrypt = function (self, chunk, decrypt) {\n var len = chunk.length\n var out = new Buffer(len)\n var i = -1\n while (++i < len) {\n out[i] = encryptByte(self, chunk[i], decrypt)\n }\n return out\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 64 */\n/***/ (function(module, exports) {\n\nexports.encrypt = function (self, block) {\n return self._cipher.encryptBlock(block)\n}\nexports.decrypt = function (self, block) {\n return self._cipher.decryptBlock(block)\n}\n\n\n/***/ }),\n/* 65 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var xor = __webpack_require__(19)\n\nfunction getBlock (self) {\n self._prev = self._cipher.encryptBlock(self._prev)\n return self._prev\n}\n\nexports.encrypt = function (self, chunk) {\n while (self._cache.length < chunk.length) {\n self._cache = Buffer.concat([self._cache, getBlock(self)])\n }\n\n var pad = self._cache.slice(0, chunk.length)\n self._cache = self._cache.slice(chunk.length)\n return xor(chunk, pad)\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 66 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var aes = __webpack_require__(23)\nvar Transform = __webpack_require__(12)\nvar inherits = __webpack_require__(1)\n\ninherits(StreamCipher, Transform)\nmodule.exports = StreamCipher\nfunction StreamCipher (mode, key, iv, decrypt) {\n if (!(this instanceof StreamCipher)) {\n return new StreamCipher(mode, key, iv)\n }\n Transform.call(this)\n this._cipher = new aes.AES(key)\n this._prev = new Buffer(iv.length)\n this._cache = new Buffer('')\n this._secCache = new Buffer('')\n this._decrypt = decrypt\n iv.copy(this._prev)\n this._mode = mode\n}\nStreamCipher.prototype._update = function (chunk) {\n return this._mode.encrypt(this, chunk, this._decrypt)\n}\nStreamCipher.prototype._final = function () {\n this._cipher.scrub()\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 67 */\n/***/ (function(module, exports) {\n\nmodule.exports = {\n\t\"sha224WithRSAEncryption\": {\n\t\t\"sign\": \"rsa\",\n\t\t\"hash\": \"sha224\",\n\t\t\"id\": \"302d300d06096086480165030402040500041c\"\n\t},\n\t\"RSA-SHA224\": {\n\t\t\"sign\": \"ecdsa/rsa\",\n\t\t\"hash\": \"sha224\",\n\t\t\"id\": \"302d300d06096086480165030402040500041c\"\n\t},\n\t\"sha256WithRSAEncryption\": {\n\t\t\"sign\": \"rsa\",\n\t\t\"hash\": \"sha256\",\n\t\t\"id\": \"3031300d060960864801650304020105000420\"\n\t},\n\t\"RSA-SHA256\": {\n\t\t\"sign\": \"ecdsa/rsa\",\n\t\t\"hash\": \"sha256\",\n\t\t\"id\": \"3031300d060960864801650304020105000420\"\n\t},\n\t\"sha384WithRSAEncryption\": {\n\t\t\"sign\": \"rsa\",\n\t\t\"hash\": \"sha384\",\n\t\t\"id\": \"3041300d060960864801650304020205000430\"\n\t},\n\t\"RSA-SHA384\": {\n\t\t\"sign\": \"ecdsa/rsa\",\n\t\t\"hash\": \"sha384\",\n\t\t\"id\": \"3041300d060960864801650304020205000430\"\n\t},\n\t\"sha512WithRSAEncryption\": {\n\t\t\"sign\": \"rsa\",\n\t\t\"hash\": \"sha512\",\n\t\t\"id\": \"3051300d060960864801650304020305000440\"\n\t},\n\t\"RSA-SHA512\": {\n\t\t\"sign\": \"ecdsa/rsa\",\n\t\t\"hash\": \"sha512\",\n\t\t\"id\": \"3051300d060960864801650304020305000440\"\n\t},\n\t\"RSA-SHA1\": {\n\t\t\"sign\": \"rsa\",\n\t\t\"hash\": \"sha1\",\n\t\t\"id\": \"3021300906052b0e03021a05000414\"\n\t},\n\t\"ecdsa-with-SHA1\": {\n\t\t\"sign\": \"ecdsa\",\n\t\t\"hash\": \"sha1\",\n\t\t\"id\": \"\"\n\t},\n\t\"sha256\": {\n\t\t\"sign\": \"ecdsa\",\n\t\t\"hash\": \"sha256\",\n\t\t\"id\": \"\"\n\t},\n\t\"sha224\": {\n\t\t\"sign\": \"ecdsa\",\n\t\t\"hash\": \"sha224\",\n\t\t\"id\": \"\"\n\t},\n\t\"sha384\": {\n\t\t\"sign\": \"ecdsa\",\n\t\t\"hash\": \"sha384\",\n\t\t\"id\": \"\"\n\t},\n\t\"sha512\": {\n\t\t\"sign\": \"ecdsa\",\n\t\t\"hash\": \"sha512\",\n\t\t\"id\": \"\"\n\t},\n\t\"DSA-SHA\": {\n\t\t\"sign\": \"dsa\",\n\t\t\"hash\": \"sha1\",\n\t\t\"id\": \"\"\n\t},\n\t\"DSA-SHA1\": {\n\t\t\"sign\": \"dsa\",\n\t\t\"hash\": \"sha1\",\n\t\t\"id\": \"\"\n\t},\n\t\"DSA\": {\n\t\t\"sign\": \"dsa\",\n\t\t\"hash\": \"sha1\",\n\t\t\"id\": \"\"\n\t},\n\t\"DSA-WITH-SHA224\": {\n\t\t\"sign\": \"dsa\",\n\t\t\"hash\": \"sha224\",\n\t\t\"id\": \"\"\n\t},\n\t\"DSA-SHA224\": {\n\t\t\"sign\": \"dsa\",\n\t\t\"hash\": \"sha224\",\n\t\t\"id\": \"\"\n\t},\n\t\"DSA-WITH-SHA256\": {\n\t\t\"sign\": \"dsa\",\n\t\t\"hash\": \"sha256\",\n\t\t\"id\": \"\"\n\t},\n\t\"DSA-SHA256\": {\n\t\t\"sign\": \"dsa\",\n\t\t\"hash\": \"sha256\",\n\t\t\"id\": \"\"\n\t},\n\t\"DSA-WITH-SHA384\": {\n\t\t\"sign\": \"dsa\",\n\t\t\"hash\": \"sha384\",\n\t\t\"id\": \"\"\n\t},\n\t\"DSA-SHA384\": {\n\t\t\"sign\": \"dsa\",\n\t\t\"hash\": \"sha384\",\n\t\t\"id\": \"\"\n\t},\n\t\"DSA-WITH-SHA512\": {\n\t\t\"sign\": \"dsa\",\n\t\t\"hash\": \"sha512\",\n\t\t\"id\": \"\"\n\t},\n\t\"DSA-SHA512\": {\n\t\t\"sign\": \"dsa\",\n\t\t\"hash\": \"sha512\",\n\t\t\"id\": \"\"\n\t},\n\t\"DSA-RIPEMD160\": {\n\t\t\"sign\": \"dsa\",\n\t\t\"hash\": \"rmd160\",\n\t\t\"id\": \"\"\n\t},\n\t\"ripemd160WithRSA\": {\n\t\t\"sign\": \"rsa\",\n\t\t\"hash\": \"rmd160\",\n\t\t\"id\": \"3021300906052b2403020105000414\"\n\t},\n\t\"RSA-RIPEMD160\": {\n\t\t\"sign\": \"rsa\",\n\t\t\"hash\": \"rmd160\",\n\t\t\"id\": \"3021300906052b2403020105000414\"\n\t},\n\t\"md5WithRSAEncryption\": {\n\t\t\"sign\": \"rsa\",\n\t\t\"hash\": \"md5\",\n\t\t\"id\": \"3020300c06082a864886f70d020505000410\"\n\t},\n\t\"RSA-MD5\": {\n\t\t\"sign\": \"rsa\",\n\t\t\"hash\": \"md5\",\n\t\t\"id\": \"3020300c06082a864886f70d020505000410\"\n\t}\n};\n\n/***/ }),\n/* 68 */\n/***/ (function(module, exports) {\n\nmodule.exports = {\n\t\"1.3.132.0.10\": \"secp256k1\",\n\t\"1.3.132.0.33\": \"p224\",\n\t\"1.2.840.10045.3.1.1\": \"p192\",\n\t\"1.2.840.10045.3.1.7\": \"p256\",\n\t\"1.3.132.0.34\": \"p384\",\n\t\"1.3.132.0.35\": \"p521\"\n};\n\n/***/ }),\n/* 69 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n/*\n * A JavaScript implementation of the RSA Data Security, Inc. MD5 Message\n * Digest Algorithm, as defined in RFC 1321.\n * Version 2.1 Copyright (C) Paul Johnston 1999 - 2002.\n * Other contributors: Greg Holt, Andrew Kepert, Ydnar, Lostinet\n * Distributed under the BSD License\n * See http://pajhome.org.uk/crypt/md5 for more info.\n */\n\nvar helpers = __webpack_require__(131);\n\n/*\n * Calculate the MD5 of an array of little-endian words, and a bit length\n */\nfunction core_md5(x, len)\n{\n /* append padding */\n x[len >> 5] |= 0x80 << ((len) % 32);\n x[(((len + 64) >>> 9) << 4) + 14] = len;\n\n var a = 1732584193;\n var b = -271733879;\n var c = -1732584194;\n var d = 271733878;\n\n for(var i = 0; i < x.length; i += 16)\n {\n var olda = a;\n var oldb = b;\n var oldc = c;\n var oldd = d;\n\n a = md5_ff(a, b, c, d, x[i+ 0], 7 , -680876936);\n d = md5_ff(d, a, b, c, x[i+ 1], 12, -389564586);\n c = md5_ff(c, d, a, b, x[i+ 2], 17, 606105819);\n b = md5_ff(b, c, d, a, x[i+ 3], 22, -1044525330);\n a = md5_ff(a, b, c, d, x[i+ 4], 7 , -176418897);\n d = md5_ff(d, a, b, c, x[i+ 5], 12, 1200080426);\n c = md5_ff(c, d, a, b, x[i+ 6], 17, -1473231341);\n b = md5_ff(b, c, d, a, x[i+ 7], 22, -45705983);\n a = md5_ff(a, b, c, d, x[i+ 8], 7 , 1770035416);\n d = md5_ff(d, a, b, c, x[i+ 9], 12, -1958414417);\n c = md5_ff(c, d, a, b, x[i+10], 17, -42063);\n b = md5_ff(b, c, d, a, x[i+11], 22, -1990404162);\n a = md5_ff(a, b, c, d, x[i+12], 7 , 1804603682);\n d = md5_ff(d, a, b, c, x[i+13], 12, -40341101);\n c = md5_ff(c, d, a, b, x[i+14], 17, -1502002290);\n b = md5_ff(b, c, d, a, x[i+15], 22, 1236535329);\n\n a = md5_gg(a, b, c, d, x[i+ 1], 5 , -165796510);\n d = md5_gg(d, a, b, c, x[i+ 6], 9 , -1069501632);\n c = md5_gg(c, d, a, b, x[i+11], 14, 643717713);\n b = md5_gg(b, c, d, a, x[i+ 0], 20, -373897302);\n a = md5_gg(a, b, c, d, x[i+ 5], 5 , -701558691);\n d = md5_gg(d, a, b, c, x[i+10], 9 , 38016083);\n c = md5_gg(c, d, a, b, x[i+15], 14, -660478335);\n b = md5_gg(b, c, d, a, x[i+ 4], 20, -405537848);\n a = md5_gg(a, b, c, d, x[i+ 9], 5 , 568446438);\n d = md5_gg(d, a, b, c, x[i+14], 9 , -1019803690);\n c = md5_gg(c, d, a, b, x[i+ 3], 14, -187363961);\n b = md5_gg(b, c, d, a, x[i+ 8], 20, 1163531501);\n a = md5_gg(a, b, c, d, x[i+13], 5 , -1444681467);\n d = md5_gg(d, a, b, c, x[i+ 2], 9 , -51403784);\n c = md5_gg(c, d, a, b, x[i+ 7], 14, 1735328473);\n b = md5_gg(b, c, d, a, x[i+12], 20, -1926607734);\n\n a = md5_hh(a, b, c, d, x[i+ 5], 4 , -378558);\n d = md5_hh(d, a, b, c, x[i+ 8], 11, -2022574463);\n c = md5_hh(c, d, a, b, x[i+11], 16, 1839030562);\n b = md5_hh(b, c, d, a, x[i+14], 23, -35309556);\n a = md5_hh(a, b, c, d, x[i+ 1], 4 , -1530992060);\n d = md5_hh(d, a, b, c, x[i+ 4], 11, 1272893353);\n c = md5_hh(c, d, a, b, x[i+ 7], 16, -155497632);\n b = md5_hh(b, c, d, a, x[i+10], 23, -1094730640);\n a = md5_hh(a, b, c, d, x[i+13], 4 , 681279174);\n d = md5_hh(d, a, b, c, x[i+ 0], 11, -358537222);\n c = md5_hh(c, d, a, b, x[i+ 3], 16, -722521979);\n b = md5_hh(b, c, d, a, x[i+ 6], 23, 76029189);\n a = md5_hh(a, b, c, d, x[i+ 9], 4 , -640364487);\n d = md5_hh(d, a, b, c, x[i+12], 11, -421815835);\n c = md5_hh(c, d, a, b, x[i+15], 16, 530742520);\n b = md5_hh(b, c, d, a, x[i+ 2], 23, -995338651);\n\n a = md5_ii(a, b, c, d, x[i+ 0], 6 , -198630844);\n d = md5_ii(d, a, b, c, x[i+ 7], 10, 1126891415);\n c = md5_ii(c, d, a, b, x[i+14], 15, -1416354905);\n b = md5_ii(b, c, d, a, x[i+ 5], 21, -57434055);\n a = md5_ii(a, b, c, d, x[i+12], 6 , 1700485571);\n d = md5_ii(d, a, b, c, x[i+ 3], 10, -1894986606);\n c = md5_ii(c, d, a, b, x[i+10], 15, -1051523);\n b = md5_ii(b, c, d, a, x[i+ 1], 21, -2054922799);\n a = md5_ii(a, b, c, d, x[i+ 8], 6 , 1873313359);\n d = md5_ii(d, a, b, c, x[i+15], 10, -30611744);\n c = md5_ii(c, d, a, b, x[i+ 6], 15, -1560198380);\n b = md5_ii(b, c, d, a, x[i+13], 21, 1309151649);\n a = md5_ii(a, b, c, d, x[i+ 4], 6 , -145523070);\n d = md5_ii(d, a, b, c, x[i+11], 10, -1120210379);\n c = md5_ii(c, d, a, b, x[i+ 2], 15, 718787259);\n b = md5_ii(b, c, d, a, x[i+ 9], 21, -343485551);\n\n a = safe_add(a, olda);\n b = safe_add(b, oldb);\n c = safe_add(c, oldc);\n d = safe_add(d, oldd);\n }\n return Array(a, b, c, d);\n\n}\n\n/*\n * These functions implement the four basic operations the algorithm uses.\n */\nfunction md5_cmn(q, a, b, x, s, t)\n{\n return safe_add(bit_rol(safe_add(safe_add(a, q), safe_add(x, t)), s),b);\n}\nfunction md5_ff(a, b, c, d, x, s, t)\n{\n return md5_cmn((b & c) | ((~b) & d), a, b, x, s, t);\n}\nfunction md5_gg(a, b, c, d, x, s, t)\n{\n return md5_cmn((b & d) | (c & (~d)), a, b, x, s, t);\n}\nfunction md5_hh(a, b, c, d, x, s, t)\n{\n return md5_cmn(b ^ c ^ d, a, b, x, s, t);\n}\nfunction md5_ii(a, b, c, d, x, s, t)\n{\n return md5_cmn(c ^ (b | (~d)), a, b, x, s, t);\n}\n\n/*\n * Add integers, wrapping at 2^32. This uses 16-bit operations internally\n * to work around bugs in some JS interpreters.\n */\nfunction safe_add(x, y)\n{\n var lsw = (x & 0xFFFF) + (y & 0xFFFF);\n var msw = (x >> 16) + (y >> 16) + (lsw >> 16);\n return (msw << 16) | (lsw & 0xFFFF);\n}\n\n/*\n * Bitwise rotate a 32-bit number to the left.\n */\nfunction bit_rol(num, cnt)\n{\n return (num << cnt) | (num >>> (32 - cnt));\n}\n\nmodule.exports = function md5(buf) {\n return helpers.hash(buf, core_md5, 16);\n};\n\n/***/ }),\n/* 70 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar randomBytes = __webpack_require__(21);\nmodule.exports = findPrime;\nfindPrime.simpleSieve = simpleSieve;\nfindPrime.fermatTest = fermatTest;\nvar BN = __webpack_require__(2);\nvar TWENTYFOUR = new BN(24);\nvar MillerRabin = __webpack_require__(73);\nvar millerRabin = new MillerRabin();\nvar ONE = new BN(1);\nvar TWO = new BN(2);\nvar FIVE = new BN(5);\nvar SIXTEEN = new BN(16);\nvar EIGHT = new BN(8);\nvar TEN = new BN(10);\nvar THREE = new BN(3);\nvar SEVEN = new BN(7);\nvar ELEVEN = new BN(11);\nvar FOUR = new BN(4);\nvar TWELVE = new BN(12);\nvar primes = null;\n\nfunction _getPrimes() {\n if (primes !== null)\n return primes;\n\n var limit = 0x100000;\n var res = [];\n res[0] = 2;\n for (var i = 1, k = 3; k < limit; k += 2) {\n var sqrt = Math.ceil(Math.sqrt(k));\n for (var j = 0; j < i && res[j] <= sqrt; j++)\n if (k % res[j] === 0)\n break;\n\n if (i !== j && res[j] <= sqrt)\n continue;\n\n res[i++] = k;\n }\n primes = res;\n return res;\n}\n\nfunction simpleSieve(p) {\n var primes = _getPrimes();\n\n for (var i = 0; i < primes.length; i++)\n if (p.modn(primes[i]) === 0) {\n if (p.cmpn(primes[i]) === 0) {\n return true;\n } else {\n return false;\n }\n }\n\n return true;\n}\n\nfunction fermatTest(p) {\n var red = BN.mont(p);\n return TWO.toRed(red).redPow(p.subn(1)).fromRed().cmpn(1) === 0;\n}\n\nfunction findPrime(bits, gen) {\n if (bits < 16) {\n // this is what openssl does\n if (gen === 2 || gen === 5) {\n return new BN([0x8c, 0x7b]);\n } else {\n return new BN([0x8c, 0x27]);\n }\n }\n gen = new BN(gen);\n\n var num, n2;\n\n while (true) {\n num = new BN(randomBytes(Math.ceil(bits / 8)));\n while (num.bitLength() > bits) {\n num.ishrn(1);\n }\n if (num.isEven()) {\n num.iadd(ONE);\n }\n if (!num.testn(1)) {\n num.iadd(TWO);\n }\n if (!gen.cmp(TWO)) {\n while (num.mod(TWENTYFOUR).cmp(ELEVEN)) {\n num.iadd(FOUR);\n }\n } else if (!gen.cmp(FIVE)) {\n while (num.mod(TEN).cmp(THREE)) {\n num.iadd(FOUR);\n }\n }\n n2 = num.shrn(1);\n if (simpleSieve(n2) && simpleSieve(num) &&\n fermatTest(n2) && fermatTest(num) &&\n millerRabin.test(n2) && millerRabin.test(num)) {\n return num;\n }\n }\n\n}\n\n\n/***/ }),\n/* 71 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar base64 = __webpack_require__(33);\n\nfunction padding(str) {\n var mod = (str.length % 4);\n var pad = 4 - mod;\n\n if (mod === 0) {\n return str;\n }\n\n return str + (new Array(1 + pad)).join('=');\n}\n\nfunction byteArrayToString(array) {\n var result = \"\";\n for (var i = 0; i < array.length; i++) {\n result += String.fromCharCode(array[i]);\n }\n return result;\n}\n\nfunction stringToByteArray(str) {\n var arr = new Array(str.length);\n for (var a = 0; a < str.length; a++) {\n arr[a] = str.charCodeAt(a);\n }\n return arr;\n}\n\nfunction byteArrayToHex(raw) {\n var HEX = '';\n\n for (var i = 0; i < raw.length; i++) {\n var _hex = raw[i].toString(16);\n HEX += (_hex.length === 2 ? _hex : '0' + _hex);\n }\n\n return HEX;\n}\n\nfunction encodeString(str) {\n return btoa(encodeURIComponent(str).replace(/%([0-9A-F]{2})/g, function (match, p1) {\n return String.fromCharCode('0x' + p1);\n }))\n .replace(/\\+/g, '-') // Convert '+' to '-'\n .replace(/\\//g, '_'); // Convert '/' to '_';\n}\n\nfunction decodeToString(str) {\n str = padding(str)\n .replace(/\\-/g, '+') // Convert '-' to '+'\n .replace(/_/g, '/'); // Convert '_' to '/'\n\n return decodeURIComponent(atob(str).split('').map(function (c) {\n return '%' + ('00' + c.charCodeAt(0).toString(16)).slice(-2);\n }).join(''));\n}\n\nfunction decodeToHEX(str) {\n return byteArrayToHex(base64.toByteArray(padding(str)));\n}\n\nmodule.exports = {\n encodeString: encodeString,\n decodeToString: decodeToString,\n byteArrayToString: byteArrayToString,\n stringToByteArray: stringToByteArray,\n padding: padding,\n byteArrayToHex: byteArrayToHex,\n decodeToHEX: decodeToHEX\n};\n\n\n/***/ }),\n/* 72 */\n/***/ (function(module, exports) {\n\nvar toString = {}.toString;\n\nmodule.exports = Array.isArray || function (arr) {\n return toString.call(arr) == '[object Array]';\n};\n\n\n/***/ }),\n/* 73 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar bn = __webpack_require__(2);\nvar brorand = __webpack_require__(58);\n\nfunction MillerRabin(rand) {\n this.rand = rand || new brorand.Rand();\n}\nmodule.exports = MillerRabin;\n\nMillerRabin.create = function create(rand) {\n return new MillerRabin(rand);\n};\n\nMillerRabin.prototype._rand = function _rand(n) {\n var len = n.bitLength();\n var buf = this.rand.generate(Math.ceil(len / 8));\n\n // Set low bits\n buf[0] |= 3;\n\n // Mask high bits\n var mask = len & 0x7;\n if (mask !== 0)\n buf[buf.length - 1] >>= 7 - mask;\n\n return new bn(buf);\n}\n\nMillerRabin.prototype.test = function test(n, k, cb) {\n var len = n.bitLength();\n var red = bn.mont(n);\n var rone = new bn(1).toRed(red);\n\n if (!k)\n k = Math.max(1, (len / 48) | 0);\n\n // Find d and s, (n - 1) = (2 ^ s) * d;\n var n1 = n.subn(1);\n var n2 = n1.subn(1);\n for (var s = 0; !n1.testn(s); s++) {}\n var d = n.shrn(s);\n\n var rn1 = n1.toRed(red);\n\n var prime = true;\n for (; k > 0; k--) {\n var a = this._rand(n2);\n if (cb)\n cb(a);\n\n var x = a.toRed(red).redPow(d);\n if (x.cmp(rone) === 0 || x.cmp(rn1) === 0)\n continue;\n\n for (var i = 1; i < s; i++) {\n x = x.redSqr();\n\n if (x.cmp(rone) === 0)\n return false;\n if (x.cmp(rn1) === 0)\n break;\n }\n\n if (i === s)\n return false;\n }\n\n return prime;\n};\n\nMillerRabin.prototype.getDivisor = function getDivisor(n, k) {\n var len = n.bitLength();\n var red = bn.mont(n);\n var rone = new bn(1).toRed(red);\n\n if (!k)\n k = Math.max(1, (len / 48) | 0);\n\n // Find d and s, (n - 1) = (2 ^ s) * d;\n var n1 = n.subn(1);\n var n2 = n1.subn(1);\n for (var s = 0; !n1.testn(s); s++) {}\n var d = n.shrn(s);\n\n var rn1 = n1.toRed(red);\n\n for (; k > 0; k--) {\n var a = this._rand(n2);\n\n var g = n.gcd(a);\n if (g.cmpn(1) !== 0)\n return g;\n\n var x = a.toRed(red).redPow(d);\n if (x.cmp(rone) === 0 || x.cmp(rn1) === 0)\n continue;\n\n for (var i = 1; i < s; i++) {\n x = x.redSqr();\n\n if (x.cmp(rone) === 0)\n return x.fromRed().subn(1).gcd(n);\n if (x.cmp(rn1) === 0)\n break;\n }\n\n if (i === s) {\n x = x.redSqr();\n return x.fromRed().subn(1).gcd(n);\n }\n }\n\n return false;\n};\n\n\n/***/ }),\n/* 74 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar utils = exports;\n\nfunction toArray(msg, enc) {\n if (Array.isArray(msg))\n return msg.slice();\n if (!msg)\n return [];\n var res = [];\n if (typeof msg !== 'string') {\n for (var i = 0; i < msg.length; i++)\n res[i] = msg[i] | 0;\n return res;\n }\n if (enc === 'hex') {\n msg = msg.replace(/[^a-z0-9]+/ig, '');\n if (msg.length % 2 !== 0)\n msg = '0' + msg;\n for (var i = 0; i < msg.length; i += 2)\n res.push(parseInt(msg[i] + msg[i + 1], 16));\n } else {\n for (var i = 0; i < msg.length; i++) {\n var c = msg.charCodeAt(i);\n var hi = c >> 8;\n var lo = c & 0xff;\n if (hi)\n res.push(hi, lo);\n else\n res.push(lo);\n }\n }\n return res;\n}\nutils.toArray = toArray;\n\nfunction zero2(word) {\n if (word.length === 1)\n return '0' + word;\n else\n return word;\n}\nutils.zero2 = zero2;\n\nfunction toHex(msg) {\n var res = '';\n for (var i = 0; i < msg.length; i++)\n res += zero2(msg[i].toString(16));\n return res;\n}\nutils.toHex = toHex;\n\nutils.encode = function encode(arr, enc) {\n if (enc === 'hex')\n return toHex(arr);\n else\n return arr;\n};\n\n\n/***/ }),\n/* 75 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(process, Buffer) {var createHmac = __webpack_require__(37)\nvar checkParameters = __webpack_require__(175)\n\nexports.pbkdf2 = function (password, salt, iterations, keylen, digest, callback) {\n if (typeof digest === 'function') {\n callback = digest\n digest = undefined\n }\n\n checkParameters(iterations, keylen)\n if (typeof callback !== 'function') throw new Error('No callback provided to pbkdf2')\n\n setTimeout(function () {\n callback(null, exports.pbkdf2Sync(password, salt, iterations, keylen, digest))\n })\n}\n\nvar defaultEncoding\nif (process.browser) {\n defaultEncoding = 'utf-8'\n} else {\n var pVersionMajor = parseInt(process.version.split('.')[0].slice(1), 10)\n\n defaultEncoding = pVersionMajor >= 6 ? 'utf-8' : 'binary'\n}\n\nexports.pbkdf2Sync = function (password, salt, iterations, keylen, digest) {\n if (!Buffer.isBuffer(password)) password = new Buffer(password, defaultEncoding)\n if (!Buffer.isBuffer(salt)) salt = new Buffer(salt, defaultEncoding)\n\n checkParameters(iterations, keylen)\n\n digest = digest || 'sha1'\n\n var hLen\n var l = 1\n var DK = new Buffer(keylen)\n var block1 = new Buffer(salt.length + 4)\n salt.copy(block1, 0, 0, salt.length)\n\n var r\n var T\n\n for (var i = 1; i <= l; i++) {\n block1.writeUInt32BE(i, salt.length)\n var U = createHmac(digest, password).update(block1).digest()\n\n if (!hLen) {\n hLen = U.length\n T = new Buffer(hLen)\n l = Math.ceil(keylen / hLen)\n r = keylen - (l - 1) * hLen\n }\n\n U.copy(T, 0, 0, hLen)\n\n for (var j = 1; j < iterations; j++) {\n U = createHmac(digest, password).update(U).digest()\n for (var k = 0; k < hLen; k++) T[k] ^= U[k]\n }\n\n var destPos = (i - 1) * hLen\n var len = (i === l ? r : hLen)\n T.copy(DK, destPos, 0, len)\n }\n\n return DK\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(14), __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 76 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var createHash = __webpack_require__(13);\nmodule.exports = function (seed, len) {\n var t = new Buffer('');\n var i = 0, c;\n while (t.length < len) {\n c = i2ops(i++);\n t = Buffer.concat([t, createHash('sha1').update(seed).update(c).digest()]);\n }\n return t.slice(0, len);\n};\n\nfunction i2ops(c) {\n var out = new Buffer(4);\n out.writeUInt32BE(c,0);\n return out;\n}\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 77 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var bn = __webpack_require__(2);\nfunction withPublic(paddedMsg, key) {\n return new Buffer(paddedMsg\n .toRed(bn.mont(key.modulus))\n .redPow(new bn(key.publicExponent))\n .fromRed()\n .toArray());\n}\n\nmodule.exports = withPublic;\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 78 */\n/***/ (function(module, exports) {\n\nmodule.exports = function xor(a, b) {\n var len = a.length;\n var i = -1;\n while (++i < len) {\n a[i] ^= b[i];\n }\n return a\n};\n\n/***/ }),\n/* 79 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar replace = String.prototype.replace;\nvar percentTwenties = /%20/g;\n\nmodule.exports = {\n 'default': 'RFC3986',\n formatters: {\n RFC1738: function (value) {\n return replace.call(value, percentTwenties, '+');\n },\n RFC3986: function (value) {\n return value;\n }\n },\n RFC1738: 'RFC1738',\n RFC3986: 'RFC3986'\n};\n\n\n/***/ }),\n/* 80 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar has = Object.prototype.hasOwnProperty;\n\nvar hexTable = (function () {\n var array = [];\n for (var i = 0; i < 256; ++i) {\n array.push('%' + ((i < 16 ? '0' : '') + i.toString(16)).toUpperCase());\n }\n\n return array;\n}());\n\nvar compactQueue = function compactQueue(queue) {\n var obj;\n\n while (queue.length) {\n var item = queue.pop();\n obj = item.obj[item.prop];\n\n if (Array.isArray(obj)) {\n var compacted = [];\n\n for (var j = 0; j < obj.length; ++j) {\n if (typeof obj[j] !== 'undefined') {\n compacted.push(obj[j]);\n }\n }\n\n item.obj[item.prop] = compacted;\n }\n }\n\n return obj;\n};\n\nexports.arrayToObject = function arrayToObject(source, options) {\n var obj = options && options.plainObjects ? Object.create(null) : {};\n for (var i = 0; i < source.length; ++i) {\n if (typeof source[i] !== 'undefined') {\n obj[i] = source[i];\n }\n }\n\n return obj;\n};\n\nexports.merge = function merge(target, source, options) {\n if (!source) {\n return target;\n }\n\n if (typeof source !== 'object') {\n if (Array.isArray(target)) {\n target.push(source);\n } else if (typeof target === 'object') {\n if (options.plainObjects || options.allowPrototypes || !has.call(Object.prototype, source)) {\n target[source] = true;\n }\n } else {\n return [target, source];\n }\n\n return target;\n }\n\n if (typeof target !== 'object') {\n return [target].concat(source);\n }\n\n var mergeTarget = target;\n if (Array.isArray(target) && !Array.isArray(source)) {\n mergeTarget = exports.arrayToObject(target, options);\n }\n\n if (Array.isArray(target) && Array.isArray(source)) {\n source.forEach(function (item, i) {\n if (has.call(target, i)) {\n if (target[i] && typeof target[i] === 'object') {\n target[i] = exports.merge(target[i], item, options);\n } else {\n target.push(item);\n }\n } else {\n target[i] = item;\n }\n });\n return target;\n }\n\n return Object.keys(source).reduce(function (acc, key) {\n var value = source[key];\n\n if (has.call(acc, key)) {\n acc[key] = exports.merge(acc[key], value, options);\n } else {\n acc[key] = value;\n }\n return acc;\n }, mergeTarget);\n};\n\nexports.assign = function assignSingleSource(target, source) {\n return Object.keys(source).reduce(function (acc, key) {\n acc[key] = source[key];\n return acc;\n }, target);\n};\n\nexports.decode = function (str) {\n try {\n return decodeURIComponent(str.replace(/\\+/g, ' '));\n } catch (e) {\n return str;\n }\n};\n\nexports.encode = function encode(str) {\n // This code was originally written by Brian White (mscdex) for the io.js core querystring library.\n // It has been adapted here for stricter adherence to RFC 3986\n if (str.length === 0) {\n return str;\n }\n\n var string = typeof str === 'string' ? str : String(str);\n\n var out = '';\n for (var i = 0; i < string.length; ++i) {\n var c = string.charCodeAt(i);\n\n if (\n c === 0x2D // -\n || c === 0x2E // .\n || c === 0x5F // _\n || c === 0x7E // ~\n || (c >= 0x30 && c <= 0x39) // 0-9\n || (c >= 0x41 && c <= 0x5A) // a-z\n || (c >= 0x61 && c <= 0x7A) // A-Z\n ) {\n out += string.charAt(i);\n continue;\n }\n\n if (c < 0x80) {\n out = out + hexTable[c];\n continue;\n }\n\n if (c < 0x800) {\n out = out + (hexTable[0xC0 | (c >> 6)] + hexTable[0x80 | (c & 0x3F)]);\n continue;\n }\n\n if (c < 0xD800 || c >= 0xE000) {\n out = out + (hexTable[0xE0 | (c >> 12)] + hexTable[0x80 | ((c >> 6) & 0x3F)] + hexTable[0x80 | (c & 0x3F)]);\n continue;\n }\n\n i += 1;\n c = 0x10000 + (((c & 0x3FF) << 10) | (string.charCodeAt(i) & 0x3FF));\n out += hexTable[0xF0 | (c >> 18)]\n + hexTable[0x80 | ((c >> 12) & 0x3F)]\n + hexTable[0x80 | ((c >> 6) & 0x3F)]\n + hexTable[0x80 | (c & 0x3F)];\n }\n\n return out;\n};\n\nexports.compact = function compact(value) {\n var queue = [{ obj: { o: value }, prop: 'o' }];\n var refs = [];\n\n for (var i = 0; i < queue.length; ++i) {\n var item = queue[i];\n var obj = item.obj[item.prop];\n\n var keys = Object.keys(obj);\n for (var j = 0; j < keys.length; ++j) {\n var key = keys[j];\n var val = obj[key];\n if (typeof val === 'object' && val !== null && refs.indexOf(val) === -1) {\n queue.push({ obj: obj, prop: key });\n refs.push(val);\n }\n }\n }\n\n return compactQueue(queue);\n};\n\nexports.isRegExp = function isRegExp(obj) {\n return Object.prototype.toString.call(obj) === '[object RegExp]';\n};\n\nexports.isBuffer = function isBuffer(obj) {\n if (obj === null || typeof obj === 'undefined') {\n return false;\n }\n\n return !!(obj.constructor && obj.constructor.isBuffer && obj.constructor.isBuffer(obj));\n};\n\n\n/***/ }),\n/* 81 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n/* WEBPACK VAR INJECTION */(function(process) {\n\nmodule.exports = Readable;\n\n/**/\nvar processNextTick = __webpack_require__(41);\n/**/\n\n/**/\nvar isArray = __webpack_require__(72);\n/**/\n\n/**/\nvar Duplex;\n/**/\n\nReadable.ReadableState = ReadableState;\n\n/**/\nvar EE = __webpack_require__(39).EventEmitter;\n\nvar EElistenerCount = function (emitter, type) {\n return emitter.listeners(type).length;\n};\n/**/\n\n/**/\nvar Stream = __webpack_require__(83);\n/**/\n\nvar Buffer = __webpack_require__(0).Buffer;\n/**/\nvar bufferShim = __webpack_require__(36);\n/**/\n\n/**/\nvar util = __webpack_require__(20);\nutil.inherits = __webpack_require__(1);\n/**/\n\n/**/\nvar debugUtil = __webpack_require__(210);\nvar debug = void 0;\nif (debugUtil && debugUtil.debuglog) {\n debug = debugUtil.debuglog('stream');\n} else {\n debug = function () {};\n}\n/**/\n\nvar BufferList = __webpack_require__(184);\nvar StringDecoder;\n\nutil.inherits(Readable, Stream);\n\nvar kProxyEvents = ['error', 'close', 'destroy', 'pause', 'resume'];\n\nfunction prependListener(emitter, event, fn) {\n // Sadly this is not cacheable as some libraries bundle their own\n // event emitter implementation with them.\n if (typeof emitter.prependListener === 'function') {\n return emitter.prependListener(event, fn);\n } else {\n // This is a hack to make sure that our error handler is attached before any\n // userland ones. NEVER DO THIS. This is here only because this code needs\n // to continue to work with older versions of Node.js that do not include\n // the prependListener() method. The goal is to eventually remove this hack.\n if (!emitter._events || !emitter._events[event]) emitter.on(event, fn);else if (isArray(emitter._events[event])) emitter._events[event].unshift(fn);else emitter._events[event] = [fn, emitter._events[event]];\n }\n}\n\nfunction ReadableState(options, stream) {\n Duplex = Duplex || __webpack_require__(9);\n\n options = options || {};\n\n // object stream flag. Used to make read(n) ignore n and to\n // make all the buffer merging and length checks go away\n this.objectMode = !!options.objectMode;\n\n if (stream instanceof Duplex) this.objectMode = this.objectMode || !!options.readableObjectMode;\n\n // the point at which it stops calling _read() to fill the buffer\n // Note: 0 is a valid value, means \"don't call _read preemptively ever\"\n var hwm = options.highWaterMark;\n var defaultHwm = this.objectMode ? 16 : 16 * 1024;\n this.highWaterMark = hwm || hwm === 0 ? hwm : defaultHwm;\n\n // cast to ints.\n this.highWaterMark = ~~this.highWaterMark;\n\n // A linked list is used to store data chunks instead of an array because the\n // linked list can remove elements from the beginning faster than\n // array.shift()\n this.buffer = new BufferList();\n this.length = 0;\n this.pipes = null;\n this.pipesCount = 0;\n this.flowing = null;\n this.ended = false;\n this.endEmitted = false;\n this.reading = false;\n\n // a flag to be able to tell if the onwrite cb is called immediately,\n // or on a later tick. We set this to true at first, because any\n // actions that shouldn't happen until \"later\" should generally also\n // not happen before the first write call.\n this.sync = true;\n\n // whenever we return null, then we set a flag to say\n // that we're awaiting a 'readable' event emission.\n this.needReadable = false;\n this.emittedReadable = false;\n this.readableListening = false;\n this.resumeScheduled = false;\n\n // Crypto is kind of old and crusty. Historically, its default string\n // encoding is 'binary' so we have to make this configurable.\n // Everything else in the universe uses 'utf8', though.\n this.defaultEncoding = options.defaultEncoding || 'utf8';\n\n // when piping, we only care about 'readable' events that happen\n // after read()ing all the bytes and not getting any pushback.\n this.ranOut = false;\n\n // the number of writers that are awaiting a drain event in .pipe()s\n this.awaitDrain = 0;\n\n // if true, a maybeReadMore has been scheduled\n this.readingMore = false;\n\n this.decoder = null;\n this.encoding = null;\n if (options.encoding) {\n if (!StringDecoder) StringDecoder = __webpack_require__(40).StringDecoder;\n this.decoder = new StringDecoder(options.encoding);\n this.encoding = options.encoding;\n }\n}\n\nfunction Readable(options) {\n Duplex = Duplex || __webpack_require__(9);\n\n if (!(this instanceof Readable)) return new Readable(options);\n\n this._readableState = new ReadableState(options, this);\n\n // legacy\n this.readable = true;\n\n if (options && typeof options.read === 'function') this._read = options.read;\n\n Stream.call(this);\n}\n\n// Manually shove something into the read() buffer.\n// This returns true if the highWaterMark has not been hit yet,\n// similar to how Writable.write() returns true if you should\n// write() some more.\nReadable.prototype.push = function (chunk, encoding) {\n var state = this._readableState;\n\n if (!state.objectMode && typeof chunk === 'string') {\n encoding = encoding || state.defaultEncoding;\n if (encoding !== state.encoding) {\n chunk = bufferShim.from(chunk, encoding);\n encoding = '';\n }\n }\n\n return readableAddChunk(this, state, chunk, encoding, false);\n};\n\n// Unshift should *always* be something directly out of read()\nReadable.prototype.unshift = function (chunk) {\n var state = this._readableState;\n return readableAddChunk(this, state, chunk, '', true);\n};\n\nReadable.prototype.isPaused = function () {\n return this._readableState.flowing === false;\n};\n\nfunction readableAddChunk(stream, state, chunk, encoding, addToFront) {\n var er = chunkInvalid(state, chunk);\n if (er) {\n stream.emit('error', er);\n } else if (chunk === null) {\n state.reading = false;\n onEofChunk(stream, state);\n } else if (state.objectMode || chunk && chunk.length > 0) {\n if (state.ended && !addToFront) {\n var e = new Error('stream.push() after EOF');\n stream.emit('error', e);\n } else if (state.endEmitted && addToFront) {\n var _e = new Error('stream.unshift() after end event');\n stream.emit('error', _e);\n } else {\n var skipAdd;\n if (state.decoder && !addToFront && !encoding) {\n chunk = state.decoder.write(chunk);\n skipAdd = !state.objectMode && chunk.length === 0;\n }\n\n if (!addToFront) state.reading = false;\n\n // Don't add to the buffer if we've decoded to an empty string chunk and\n // we're not in object mode\n if (!skipAdd) {\n // if we want the data now, just emit it.\n if (state.flowing && state.length === 0 && !state.sync) {\n stream.emit('data', chunk);\n stream.read(0);\n } else {\n // update the buffer info.\n state.length += state.objectMode ? 1 : chunk.length;\n if (addToFront) state.buffer.unshift(chunk);else state.buffer.push(chunk);\n\n if (state.needReadable) emitReadable(stream);\n }\n }\n\n maybeReadMore(stream, state);\n }\n } else if (!addToFront) {\n state.reading = false;\n }\n\n return needMoreData(state);\n}\n\n// if it's past the high water mark, we can push in some more.\n// Also, if we have no data yet, we can stand some\n// more bytes. This is to work around cases where hwm=0,\n// such as the repl. Also, if the push() triggered a\n// readable event, and the user called read(largeNumber) such that\n// needReadable was set, then we ought to push more, so that another\n// 'readable' event will be triggered.\nfunction needMoreData(state) {\n return !state.ended && (state.needReadable || state.length < state.highWaterMark || state.length === 0);\n}\n\n// backwards compatibility.\nReadable.prototype.setEncoding = function (enc) {\n if (!StringDecoder) StringDecoder = __webpack_require__(40).StringDecoder;\n this._readableState.decoder = new StringDecoder(enc);\n this._readableState.encoding = enc;\n return this;\n};\n\n// Don't raise the hwm > 8MB\nvar MAX_HWM = 0x800000;\nfunction computeNewHighWaterMark(n) {\n if (n >= MAX_HWM) {\n n = MAX_HWM;\n } else {\n // Get the next highest power of 2 to prevent increasing hwm excessively in\n // tiny amounts\n n--;\n n |= n >>> 1;\n n |= n >>> 2;\n n |= n >>> 4;\n n |= n >>> 8;\n n |= n >>> 16;\n n++;\n }\n return n;\n}\n\n// This function is designed to be inlinable, so please take care when making\n// changes to the function body.\nfunction howMuchToRead(n, state) {\n if (n <= 0 || state.length === 0 && state.ended) return 0;\n if (state.objectMode) return 1;\n if (n !== n) {\n // Only flow one buffer at a time\n if (state.flowing && state.length) return state.buffer.head.data.length;else return state.length;\n }\n // If we're asking for more than the current hwm, then raise the hwm.\n if (n > state.highWaterMark) state.highWaterMark = computeNewHighWaterMark(n);\n if (n <= state.length) return n;\n // Don't have enough\n if (!state.ended) {\n state.needReadable = true;\n return 0;\n }\n return state.length;\n}\n\n// you can override either this method, or the async _read(n) below.\nReadable.prototype.read = function (n) {\n debug('read', n);\n n = parseInt(n, 10);\n var state = this._readableState;\n var nOrig = n;\n\n if (n !== 0) state.emittedReadable = false;\n\n // if we're doing read(0) to trigger a readable event, but we\n // already have a bunch of data in the buffer, then just trigger\n // the 'readable' event and move on.\n if (n === 0 && state.needReadable && (state.length >= state.highWaterMark || state.ended)) {\n debug('read: emitReadable', state.length, state.ended);\n if (state.length === 0 && state.ended) endReadable(this);else emitReadable(this);\n return null;\n }\n\n n = howMuchToRead(n, state);\n\n // if we've ended, and we're now clear, then finish it up.\n if (n === 0 && state.ended) {\n if (state.length === 0) endReadable(this);\n return null;\n }\n\n // All the actual chunk generation logic needs to be\n // *below* the call to _read. The reason is that in certain\n // synthetic stream cases, such as passthrough streams, _read\n // may be a completely synchronous operation which may change\n // the state of the read buffer, providing enough data when\n // before there was *not* enough.\n //\n // So, the steps are:\n // 1. Figure out what the state of things will be after we do\n // a read from the buffer.\n //\n // 2. If that resulting state will trigger a _read, then call _read.\n // Note that this may be asynchronous, or synchronous. Yes, it is\n // deeply ugly to write APIs this way, but that still doesn't mean\n // that the Readable class should behave improperly, as streams are\n // designed to be sync/async agnostic.\n // Take note if the _read call is sync or async (ie, if the read call\n // has returned yet), so that we know whether or not it's safe to emit\n // 'readable' etc.\n //\n // 3. Actually pull the requested chunks out of the buffer and return.\n\n // if we need a readable event, then we need to do some reading.\n var doRead = state.needReadable;\n debug('need readable', doRead);\n\n // if we currently have less than the highWaterMark, then also read some\n if (state.length === 0 || state.length - n < state.highWaterMark) {\n doRead = true;\n debug('length less than watermark', doRead);\n }\n\n // however, if we've ended, then there's no point, and if we're already\n // reading, then it's unnecessary.\n if (state.ended || state.reading) {\n doRead = false;\n debug('reading or ended', doRead);\n } else if (doRead) {\n debug('do read');\n state.reading = true;\n state.sync = true;\n // if the length is currently zero, then we *need* a readable event.\n if (state.length === 0) state.needReadable = true;\n // call internal read method\n this._read(state.highWaterMark);\n state.sync = false;\n // If _read pushed data synchronously, then `reading` will be false,\n // and we need to re-evaluate how much data we can return to the user.\n if (!state.reading) n = howMuchToRead(nOrig, state);\n }\n\n var ret;\n if (n > 0) ret = fromList(n, state);else ret = null;\n\n if (ret === null) {\n state.needReadable = true;\n n = 0;\n } else {\n state.length -= n;\n }\n\n if (state.length === 0) {\n // If we have nothing in the buffer, then we want to know\n // as soon as we *do* get something into the buffer.\n if (!state.ended) state.needReadable = true;\n\n // If we tried to read() past the EOF, then emit end on the next tick.\n if (nOrig !== n && state.ended) endReadable(this);\n }\n\n if (ret !== null) this.emit('data', ret);\n\n return ret;\n};\n\nfunction chunkInvalid(state, chunk) {\n var er = null;\n if (!Buffer.isBuffer(chunk) && typeof chunk !== 'string' && chunk !== null && chunk !== undefined && !state.objectMode) {\n er = new TypeError('Invalid non-string/buffer chunk');\n }\n return er;\n}\n\nfunction onEofChunk(stream, state) {\n if (state.ended) return;\n if (state.decoder) {\n var chunk = state.decoder.end();\n if (chunk && chunk.length) {\n state.buffer.push(chunk);\n state.length += state.objectMode ? 1 : chunk.length;\n }\n }\n state.ended = true;\n\n // emit 'readable' now to make sure it gets picked up.\n emitReadable(stream);\n}\n\n// Don't emit readable right away in sync mode, because this can trigger\n// another read() call => stack overflow. This way, it might trigger\n// a nextTick recursion warning, but that's not so bad.\nfunction emitReadable(stream) {\n var state = stream._readableState;\n state.needReadable = false;\n if (!state.emittedReadable) {\n debug('emitReadable', state.flowing);\n state.emittedReadable = true;\n if (state.sync) processNextTick(emitReadable_, stream);else emitReadable_(stream);\n }\n}\n\nfunction emitReadable_(stream) {\n debug('emit readable');\n stream.emit('readable');\n flow(stream);\n}\n\n// at this point, the user has presumably seen the 'readable' event,\n// and called read() to consume some data. that may have triggered\n// in turn another _read(n) call, in which case reading = true if\n// it's in progress.\n// However, if we're not ended, or reading, and the length < hwm,\n// then go ahead and try to read some more preemptively.\nfunction maybeReadMore(stream, state) {\n if (!state.readingMore) {\n state.readingMore = true;\n processNextTick(maybeReadMore_, stream, state);\n }\n}\n\nfunction maybeReadMore_(stream, state) {\n var len = state.length;\n while (!state.reading && !state.flowing && !state.ended && state.length < state.highWaterMark) {\n debug('maybeReadMore read 0');\n stream.read(0);\n if (len === state.length)\n // didn't get any data, stop spinning.\n break;else len = state.length;\n }\n state.readingMore = false;\n}\n\n// abstract method. to be overridden in specific implementation classes.\n// call cb(er, data) where data is <= n in length.\n// for virtual (non-string, non-buffer) streams, \"length\" is somewhat\n// arbitrary, and perhaps not very meaningful.\nReadable.prototype._read = function (n) {\n this.emit('error', new Error('_read() is not implemented'));\n};\n\nReadable.prototype.pipe = function (dest, pipeOpts) {\n var src = this;\n var state = this._readableState;\n\n switch (state.pipesCount) {\n case 0:\n state.pipes = dest;\n break;\n case 1:\n state.pipes = [state.pipes, dest];\n break;\n default:\n state.pipes.push(dest);\n break;\n }\n state.pipesCount += 1;\n debug('pipe count=%d opts=%j', state.pipesCount, pipeOpts);\n\n var doEnd = (!pipeOpts || pipeOpts.end !== false) && dest !== process.stdout && dest !== process.stderr;\n\n var endFn = doEnd ? onend : cleanup;\n if (state.endEmitted) processNextTick(endFn);else src.once('end', endFn);\n\n dest.on('unpipe', onunpipe);\n function onunpipe(readable) {\n debug('onunpipe');\n if (readable === src) {\n cleanup();\n }\n }\n\n function onend() {\n debug('onend');\n dest.end();\n }\n\n // when the dest drains, it reduces the awaitDrain counter\n // on the source. This would be more elegant with a .once()\n // handler in flow(), but adding and removing repeatedly is\n // too slow.\n var ondrain = pipeOnDrain(src);\n dest.on('drain', ondrain);\n\n var cleanedUp = false;\n function cleanup() {\n debug('cleanup');\n // cleanup event handlers once the pipe is broken\n dest.removeListener('close', onclose);\n dest.removeListener('finish', onfinish);\n dest.removeListener('drain', ondrain);\n dest.removeListener('error', onerror);\n dest.removeListener('unpipe', onunpipe);\n src.removeListener('end', onend);\n src.removeListener('end', cleanup);\n src.removeListener('data', ondata);\n\n cleanedUp = true;\n\n // if the reader is waiting for a drain event from this\n // specific writer, then it would cause it to never start\n // flowing again.\n // So, if this is awaiting a drain, then we just call it now.\n // If we don't know, then assume that we are waiting for one.\n if (state.awaitDrain && (!dest._writableState || dest._writableState.needDrain)) ondrain();\n }\n\n // If the user pushes more data while we're writing to dest then we'll end up\n // in ondata again. However, we only want to increase awaitDrain once because\n // dest will only emit one 'drain' event for the multiple writes.\n // => Introduce a guard on increasing awaitDrain.\n var increasedAwaitDrain = false;\n src.on('data', ondata);\n function ondata(chunk) {\n debug('ondata');\n increasedAwaitDrain = false;\n var ret = dest.write(chunk);\n if (false === ret && !increasedAwaitDrain) {\n // If the user unpiped during `dest.write()`, it is possible\n // to get stuck in a permanently paused state if that write\n // also returned false.\n // => Check whether `dest` is still a piping destination.\n if ((state.pipesCount === 1 && state.pipes === dest || state.pipesCount > 1 && indexOf(state.pipes, dest) !== -1) && !cleanedUp) {\n debug('false write response, pause', src._readableState.awaitDrain);\n src._readableState.awaitDrain++;\n increasedAwaitDrain = true;\n }\n src.pause();\n }\n }\n\n // if the dest has an error, then stop piping into it.\n // however, don't suppress the throwing behavior for this.\n function onerror(er) {\n debug('onerror', er);\n unpipe();\n dest.removeListener('error', onerror);\n if (EElistenerCount(dest, 'error') === 0) dest.emit('error', er);\n }\n\n // Make sure our error handler is attached before userland ones.\n prependListener(dest, 'error', onerror);\n\n // Both close and finish should trigger unpipe, but only once.\n function onclose() {\n dest.removeListener('finish', onfinish);\n unpipe();\n }\n dest.once('close', onclose);\n function onfinish() {\n debug('onfinish');\n dest.removeListener('close', onclose);\n unpipe();\n }\n dest.once('finish', onfinish);\n\n function unpipe() {\n debug('unpipe');\n src.unpipe(dest);\n }\n\n // tell the dest that it's being piped to\n dest.emit('pipe', src);\n\n // start the flow if it hasn't been started already.\n if (!state.flowing) {\n debug('pipe resume');\n src.resume();\n }\n\n return dest;\n};\n\nfunction pipeOnDrain(src) {\n return function () {\n var state = src._readableState;\n debug('pipeOnDrain', state.awaitDrain);\n if (state.awaitDrain) state.awaitDrain--;\n if (state.awaitDrain === 0 && EElistenerCount(src, 'data')) {\n state.flowing = true;\n flow(src);\n }\n };\n}\n\nReadable.prototype.unpipe = function (dest) {\n var state = this._readableState;\n\n // if we're not piping anywhere, then do nothing.\n if (state.pipesCount === 0) return this;\n\n // just one destination. most common case.\n if (state.pipesCount === 1) {\n // passed in one, but it's not the right one.\n if (dest && dest !== state.pipes) return this;\n\n if (!dest) dest = state.pipes;\n\n // got a match.\n state.pipes = null;\n state.pipesCount = 0;\n state.flowing = false;\n if (dest) dest.emit('unpipe', this);\n return this;\n }\n\n // slow case. multiple pipe destinations.\n\n if (!dest) {\n // remove all.\n var dests = state.pipes;\n var len = state.pipesCount;\n state.pipes = null;\n state.pipesCount = 0;\n state.flowing = false;\n\n for (var i = 0; i < len; i++) {\n dests[i].emit('unpipe', this);\n }return this;\n }\n\n // try to find the right one.\n var index = indexOf(state.pipes, dest);\n if (index === -1) return this;\n\n state.pipes.splice(index, 1);\n state.pipesCount -= 1;\n if (state.pipesCount === 1) state.pipes = state.pipes[0];\n\n dest.emit('unpipe', this);\n\n return this;\n};\n\n// set up data events if they are asked for\n// Ensure readable listeners eventually get something\nReadable.prototype.on = function (ev, fn) {\n var res = Stream.prototype.on.call(this, ev, fn);\n\n if (ev === 'data') {\n // Start flowing on next tick if stream isn't explicitly paused\n if (this._readableState.flowing !== false) this.resume();\n } else if (ev === 'readable') {\n var state = this._readableState;\n if (!state.endEmitted && !state.readableListening) {\n state.readableListening = state.needReadable = true;\n state.emittedReadable = false;\n if (!state.reading) {\n processNextTick(nReadingNextTick, this);\n } else if (state.length) {\n emitReadable(this, state);\n }\n }\n }\n\n return res;\n};\nReadable.prototype.addListener = Readable.prototype.on;\n\nfunction nReadingNextTick(self) {\n debug('readable nexttick read 0');\n self.read(0);\n}\n\n// pause() and resume() are remnants of the legacy readable stream API\n// If the user uses them, then switch into old mode.\nReadable.prototype.resume = function () {\n var state = this._readableState;\n if (!state.flowing) {\n debug('resume');\n state.flowing = true;\n resume(this, state);\n }\n return this;\n};\n\nfunction resume(stream, state) {\n if (!state.resumeScheduled) {\n state.resumeScheduled = true;\n processNextTick(resume_, stream, state);\n }\n}\n\nfunction resume_(stream, state) {\n if (!state.reading) {\n debug('resume read 0');\n stream.read(0);\n }\n\n state.resumeScheduled = false;\n state.awaitDrain = 0;\n stream.emit('resume');\n flow(stream);\n if (state.flowing && !state.reading) stream.read(0);\n}\n\nReadable.prototype.pause = function () {\n debug('call pause flowing=%j', this._readableState.flowing);\n if (false !== this._readableState.flowing) {\n debug('pause');\n this._readableState.flowing = false;\n this.emit('pause');\n }\n return this;\n};\n\nfunction flow(stream) {\n var state = stream._readableState;\n debug('flow', state.flowing);\n while (state.flowing && stream.read() !== null) {}\n}\n\n// wrap an old-style stream as the async data source.\n// This is *not* part of the readable stream interface.\n// It is an ugly unfortunate mess of history.\nReadable.prototype.wrap = function (stream) {\n var state = this._readableState;\n var paused = false;\n\n var self = this;\n stream.on('end', function () {\n debug('wrapped end');\n if (state.decoder && !state.ended) {\n var chunk = state.decoder.end();\n if (chunk && chunk.length) self.push(chunk);\n }\n\n self.push(null);\n });\n\n stream.on('data', function (chunk) {\n debug('wrapped data');\n if (state.decoder) chunk = state.decoder.write(chunk);\n\n // don't skip over falsy values in objectMode\n if (state.objectMode && (chunk === null || chunk === undefined)) return;else if (!state.objectMode && (!chunk || !chunk.length)) return;\n\n var ret = self.push(chunk);\n if (!ret) {\n paused = true;\n stream.pause();\n }\n });\n\n // proxy all the other methods.\n // important when wrapping filters and duplexes.\n for (var i in stream) {\n if (this[i] === undefined && typeof stream[i] === 'function') {\n this[i] = function (method) {\n return function () {\n return stream[method].apply(stream, arguments);\n };\n }(i);\n }\n }\n\n // proxy certain important events.\n for (var n = 0; n < kProxyEvents.length; n++) {\n stream.on(kProxyEvents[n], self.emit.bind(self, kProxyEvents[n]));\n }\n\n // when we try to consume some more bytes, simply unpause the\n // underlying stream.\n self._read = function (n) {\n debug('wrapped _read', n);\n if (paused) {\n paused = false;\n stream.resume();\n }\n };\n\n return self;\n};\n\n// exposed for testing purposes only.\nReadable._fromList = fromList;\n\n// Pluck off n bytes from an array of buffers.\n// Length is the combined lengths of all the buffers in the list.\n// This function is designed to be inlinable, so please take care when making\n// changes to the function body.\nfunction fromList(n, state) {\n // nothing buffered\n if (state.length === 0) return null;\n\n var ret;\n if (state.objectMode) ret = state.buffer.shift();else if (!n || n >= state.length) {\n // read it all, truncate the list\n if (state.decoder) ret = state.buffer.join('');else if (state.buffer.length === 1) ret = state.buffer.head.data;else ret = state.buffer.concat(state.length);\n state.buffer.clear();\n } else {\n // read part of list\n ret = fromListPartial(n, state.buffer, state.decoder);\n }\n\n return ret;\n}\n\n// Extracts only enough buffered data to satisfy the amount requested.\n// This function is designed to be inlinable, so please take care when making\n// changes to the function body.\nfunction fromListPartial(n, list, hasStrings) {\n var ret;\n if (n < list.head.data.length) {\n // slice is the same for buffers and strings\n ret = list.head.data.slice(0, n);\n list.head.data = list.head.data.slice(n);\n } else if (n === list.head.data.length) {\n // first chunk is a perfect match\n ret = list.shift();\n } else {\n // result spans more than one buffer\n ret = hasStrings ? copyFromBufferString(n, list) : copyFromBuffer(n, list);\n }\n return ret;\n}\n\n// Copies a specified amount of characters from the list of buffered data\n// chunks.\n// This function is designed to be inlinable, so please take care when making\n// changes to the function body.\nfunction copyFromBufferString(n, list) {\n var p = list.head;\n var c = 1;\n var ret = p.data;\n n -= ret.length;\n while (p = p.next) {\n var str = p.data;\n var nb = n > str.length ? str.length : n;\n if (nb === str.length) ret += str;else ret += str.slice(0, n);\n n -= nb;\n if (n === 0) {\n if (nb === str.length) {\n ++c;\n if (p.next) list.head = p.next;else list.head = list.tail = null;\n } else {\n list.head = p;\n p.data = str.slice(nb);\n }\n break;\n }\n ++c;\n }\n list.length -= c;\n return ret;\n}\n\n// Copies a specified amount of bytes from the list of buffered data chunks.\n// This function is designed to be inlinable, so please take care when making\n// changes to the function body.\nfunction copyFromBuffer(n, list) {\n var ret = bufferShim.allocUnsafe(n);\n var p = list.head;\n var c = 1;\n p.data.copy(ret);\n n -= p.data.length;\n while (p = p.next) {\n var buf = p.data;\n var nb = n > buf.length ? buf.length : n;\n buf.copy(ret, ret.length - n, 0, nb);\n n -= nb;\n if (n === 0) {\n if (nb === buf.length) {\n ++c;\n if (p.next) list.head = p.next;else list.head = list.tail = null;\n } else {\n list.head = p;\n p.data = buf.slice(nb);\n }\n break;\n }\n ++c;\n }\n list.length -= c;\n return ret;\n}\n\nfunction endReadable(stream) {\n var state = stream._readableState;\n\n // If we get here before consuming all the bytes, then that is a\n // bug in node. Should never happen.\n if (state.length > 0) throw new Error('\"endReadable()\" called on non-empty stream');\n\n if (!state.endEmitted) {\n state.ended = true;\n processNextTick(endReadableNT, state, stream);\n }\n}\n\nfunction endReadableNT(state, stream) {\n // Check that we didn't get one last unshift.\n if (!state.endEmitted && state.length === 0) {\n state.endEmitted = true;\n stream.readable = false;\n stream.emit('end');\n }\n}\n\nfunction forEach(xs, f) {\n for (var i = 0, l = xs.length; i < l; i++) {\n f(xs[i], i);\n }\n}\n\nfunction indexOf(xs, x) {\n for (var i = 0, l = xs.length; i < l; i++) {\n if (xs[i] === x) return i;\n }\n return -1;\n}\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(14)))\n\n/***/ }),\n/* 82 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n// a transform stream is a readable/writable stream where you do\n// something with the data. Sometimes it's called a \"filter\",\n// but that's not a great name for it, since that implies a thing where\n// some bits pass through, and others are simply ignored. (That would\n// be a valid example of a transform, of course.)\n//\n// While the output is causally related to the input, it's not a\n// necessarily symmetric or synchronous transformation. For example,\n// a zlib stream might take multiple plain-text writes(), and then\n// emit a single compressed chunk some time in the future.\n//\n// Here's how this works:\n//\n// The Transform stream has all the aspects of the readable and writable\n// stream classes. When you write(chunk), that calls _write(chunk,cb)\n// internally, and returns false if there's a lot of pending writes\n// buffered up. When you call read(), that calls _read(n) until\n// there's enough pending readable data buffered up.\n//\n// In a transform stream, the written data is placed in a buffer. When\n// _read(n) is called, it transforms the queued up data, calling the\n// buffered _write cb's as it consumes chunks. If consuming a single\n// written chunk would result in multiple output chunks, then the first\n// outputted bit calls the readcb, and subsequent chunks just go into\n// the read buffer, and will cause it to emit 'readable' if necessary.\n//\n// This way, back-pressure is actually determined by the reading side,\n// since _read has to be called to start processing a new chunk. However,\n// a pathological inflate type of transform can cause excessive buffering\n// here. For example, imagine a stream where every byte of input is\n// interpreted as an integer from 0-255, and then results in that many\n// bytes of output. Writing the 4 bytes {ff,ff,ff,ff} would result in\n// 1kb of data being output. In this case, you could write a very small\n// amount of input, and end up with a very large amount of output. In\n// such a pathological inflating mechanism, there'd be no way to tell\n// the system to stop doing the transform. A single 4MB write could\n// cause the system to run out of memory.\n//\n// However, even in such a pathological case, only a single written chunk\n// would be consumed, and then the rest would wait (un-transformed) until\n// the results of the previous transformed chunk were consumed.\n\n\n\nmodule.exports = Transform;\n\nvar Duplex = __webpack_require__(9);\n\n/**/\nvar util = __webpack_require__(20);\nutil.inherits = __webpack_require__(1);\n/**/\n\nutil.inherits(Transform, Duplex);\n\nfunction TransformState(stream) {\n this.afterTransform = function (er, data) {\n return afterTransform(stream, er, data);\n };\n\n this.needTransform = false;\n this.transforming = false;\n this.writecb = null;\n this.writechunk = null;\n this.writeencoding = null;\n}\n\nfunction afterTransform(stream, er, data) {\n var ts = stream._transformState;\n ts.transforming = false;\n\n var cb = ts.writecb;\n\n if (!cb) return stream.emit('error', new Error('no writecb in Transform class'));\n\n ts.writechunk = null;\n ts.writecb = null;\n\n if (data !== null && data !== undefined) stream.push(data);\n\n cb(er);\n\n var rs = stream._readableState;\n rs.reading = false;\n if (rs.needReadable || rs.length < rs.highWaterMark) {\n stream._read(rs.highWaterMark);\n }\n}\n\nfunction Transform(options) {\n if (!(this instanceof Transform)) return new Transform(options);\n\n Duplex.call(this, options);\n\n this._transformState = new TransformState(this);\n\n var stream = this;\n\n // start out asking for a readable event once data is transformed.\n this._readableState.needReadable = true;\n\n // we have implemented the _read method, and done the other things\n // that Readable wants before the first _read call, so unset the\n // sync guard flag.\n this._readableState.sync = false;\n\n if (options) {\n if (typeof options.transform === 'function') this._transform = options.transform;\n\n if (typeof options.flush === 'function') this._flush = options.flush;\n }\n\n // When the writable side finishes, then flush out anything remaining.\n this.once('prefinish', function () {\n if (typeof this._flush === 'function') this._flush(function (er, data) {\n done(stream, er, data);\n });else done(stream);\n });\n}\n\nTransform.prototype.push = function (chunk, encoding) {\n this._transformState.needTransform = false;\n return Duplex.prototype.push.call(this, chunk, encoding);\n};\n\n// This is the part where you do stuff!\n// override this function in implementation classes.\n// 'chunk' is an input chunk.\n//\n// Call `push(newChunk)` to pass along transformed output\n// to the readable side. You may call 'push' zero or more times.\n//\n// Call `cb(err)` when you are done with this chunk. If you pass\n// an error, then that'll put the hurt on the whole operation. If you\n// never call cb(), then you'll never get another chunk.\nTransform.prototype._transform = function (chunk, encoding, cb) {\n throw new Error('_transform() is not implemented');\n};\n\nTransform.prototype._write = function (chunk, encoding, cb) {\n var ts = this._transformState;\n ts.writecb = cb;\n ts.writechunk = chunk;\n ts.writeencoding = encoding;\n if (!ts.transforming) {\n var rs = this._readableState;\n if (ts.needTransform || rs.needReadable || rs.length < rs.highWaterMark) this._read(rs.highWaterMark);\n }\n};\n\n// Doesn't matter what the args are here.\n// _transform does all the work.\n// That we got here means that the readable side wants more data.\nTransform.prototype._read = function (n) {\n var ts = this._transformState;\n\n if (ts.writechunk !== null && ts.writecb && !ts.transforming) {\n ts.transforming = true;\n this._transform(ts.writechunk, ts.writeencoding, ts.afterTransform);\n } else {\n // mark that we need a transform, so that any data that comes in\n // will get processed, now that we've asked for it.\n ts.needTransform = true;\n }\n};\n\nfunction done(stream, er, data) {\n if (er) return stream.emit('error', er);\n\n if (data !== null && data !== undefined) stream.push(data);\n\n // if there's nothing in the write buffer, then that means\n // that nothing more will ever be provided\n var ws = stream._writableState;\n var ts = stream._transformState;\n\n if (ws.length) throw new Error('Calling transform done when ws.length != 0');\n\n if (ts.transforming) throw new Error('Calling transform done when still transforming');\n\n return stream.push(null);\n}\n\n/***/ }),\n/* 83 */\n/***/ (function(module, exports, __webpack_require__) {\n\nmodule.exports = __webpack_require__(39).EventEmitter;\n\n\n/***/ }),\n/* 84 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {/**\n * A JavaScript implementation of the Secure Hash Algorithm, SHA-256, as defined\n * in FIPS 180-2\n * Version 2.2-beta Copyright Angel Marin, Paul Johnston 2000 - 2009.\n * Other contributors: Greg Holt, Andrew Kepert, Ydnar, Lostinet\n *\n */\n\nvar inherits = __webpack_require__(1)\nvar Hash = __webpack_require__(15)\n\nvar K = [\n 0x428A2F98, 0x71374491, 0xB5C0FBCF, 0xE9B5DBA5,\n 0x3956C25B, 0x59F111F1, 0x923F82A4, 0xAB1C5ED5,\n 0xD807AA98, 0x12835B01, 0x243185BE, 0x550C7DC3,\n 0x72BE5D74, 0x80DEB1FE, 0x9BDC06A7, 0xC19BF174,\n 0xE49B69C1, 0xEFBE4786, 0x0FC19DC6, 0x240CA1CC,\n 0x2DE92C6F, 0x4A7484AA, 0x5CB0A9DC, 0x76F988DA,\n 0x983E5152, 0xA831C66D, 0xB00327C8, 0xBF597FC7,\n 0xC6E00BF3, 0xD5A79147, 0x06CA6351, 0x14292967,\n 0x27B70A85, 0x2E1B2138, 0x4D2C6DFC, 0x53380D13,\n 0x650A7354, 0x766A0ABB, 0x81C2C92E, 0x92722C85,\n 0xA2BFE8A1, 0xA81A664B, 0xC24B8B70, 0xC76C51A3,\n 0xD192E819, 0xD6990624, 0xF40E3585, 0x106AA070,\n 0x19A4C116, 0x1E376C08, 0x2748774C, 0x34B0BCB5,\n 0x391C0CB3, 0x4ED8AA4A, 0x5B9CCA4F, 0x682E6FF3,\n 0x748F82EE, 0x78A5636F, 0x84C87814, 0x8CC70208,\n 0x90BEFFFA, 0xA4506CEB, 0xBEF9A3F7, 0xC67178F2\n]\n\nvar W = new Array(64)\n\nfunction Sha256 () {\n this.init()\n\n this._w = W // new Array(64)\n\n Hash.call(this, 64, 56)\n}\n\ninherits(Sha256, Hash)\n\nSha256.prototype.init = function () {\n this._a = 0x6a09e667\n this._b = 0xbb67ae85\n this._c = 0x3c6ef372\n this._d = 0xa54ff53a\n this._e = 0x510e527f\n this._f = 0x9b05688c\n this._g = 0x1f83d9ab\n this._h = 0x5be0cd19\n\n return this\n}\n\nfunction ch (x, y, z) {\n return z ^ (x & (y ^ z))\n}\n\nfunction maj (x, y, z) {\n return (x & y) | (z & (x | y))\n}\n\nfunction sigma0 (x) {\n return (x >>> 2 | x << 30) ^ (x >>> 13 | x << 19) ^ (x >>> 22 | x << 10)\n}\n\nfunction sigma1 (x) {\n return (x >>> 6 | x << 26) ^ (x >>> 11 | x << 21) ^ (x >>> 25 | x << 7)\n}\n\nfunction gamma0 (x) {\n return (x >>> 7 | x << 25) ^ (x >>> 18 | x << 14) ^ (x >>> 3)\n}\n\nfunction gamma1 (x) {\n return (x >>> 17 | x << 15) ^ (x >>> 19 | x << 13) ^ (x >>> 10)\n}\n\nSha256.prototype._update = function (M) {\n var W = this._w\n\n var a = this._a | 0\n var b = this._b | 0\n var c = this._c | 0\n var d = this._d | 0\n var e = this._e | 0\n var f = this._f | 0\n var g = this._g | 0\n var h = this._h | 0\n\n for (var i = 0; i < 16; ++i) W[i] = M.readInt32BE(i * 4)\n for (; i < 64; ++i) W[i] = (gamma1(W[i - 2]) + W[i - 7] + gamma0(W[i - 15]) + W[i - 16]) | 0\n\n for (var j = 0; j < 64; ++j) {\n var T1 = (h + sigma1(e) + ch(e, f, g) + K[j] + W[j]) | 0\n var T2 = (sigma0(a) + maj(a, b, c)) | 0\n\n h = g\n g = f\n f = e\n e = (d + T1) | 0\n d = c\n c = b\n b = a\n a = (T1 + T2) | 0\n }\n\n this._a = (a + this._a) | 0\n this._b = (b + this._b) | 0\n this._c = (c + this._c) | 0\n this._d = (d + this._d) | 0\n this._e = (e + this._e) | 0\n this._f = (f + this._f) | 0\n this._g = (g + this._g) | 0\n this._h = (h + this._h) | 0\n}\n\nSha256.prototype._hash = function () {\n var H = new Buffer(32)\n\n H.writeInt32BE(this._a, 0)\n H.writeInt32BE(this._b, 4)\n H.writeInt32BE(this._c, 8)\n H.writeInt32BE(this._d, 12)\n H.writeInt32BE(this._e, 16)\n H.writeInt32BE(this._f, 20)\n H.writeInt32BE(this._g, 24)\n H.writeInt32BE(this._h, 28)\n\n return H\n}\n\nmodule.exports = Sha256\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 85 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var inherits = __webpack_require__(1)\nvar Hash = __webpack_require__(15)\n\nvar K = [\n 0x428a2f98, 0xd728ae22, 0x71374491, 0x23ef65cd,\n 0xb5c0fbcf, 0xec4d3b2f, 0xe9b5dba5, 0x8189dbbc,\n 0x3956c25b, 0xf348b538, 0x59f111f1, 0xb605d019,\n 0x923f82a4, 0xaf194f9b, 0xab1c5ed5, 0xda6d8118,\n 0xd807aa98, 0xa3030242, 0x12835b01, 0x45706fbe,\n 0x243185be, 0x4ee4b28c, 0x550c7dc3, 0xd5ffb4e2,\n 0x72be5d74, 0xf27b896f, 0x80deb1fe, 0x3b1696b1,\n 0x9bdc06a7, 0x25c71235, 0xc19bf174, 0xcf692694,\n 0xe49b69c1, 0x9ef14ad2, 0xefbe4786, 0x384f25e3,\n 0x0fc19dc6, 0x8b8cd5b5, 0x240ca1cc, 0x77ac9c65,\n 0x2de92c6f, 0x592b0275, 0x4a7484aa, 0x6ea6e483,\n 0x5cb0a9dc, 0xbd41fbd4, 0x76f988da, 0x831153b5,\n 0x983e5152, 0xee66dfab, 0xa831c66d, 0x2db43210,\n 0xb00327c8, 0x98fb213f, 0xbf597fc7, 0xbeef0ee4,\n 0xc6e00bf3, 0x3da88fc2, 0xd5a79147, 0x930aa725,\n 0x06ca6351, 0xe003826f, 0x14292967, 0x0a0e6e70,\n 0x27b70a85, 0x46d22ffc, 0x2e1b2138, 0x5c26c926,\n 0x4d2c6dfc, 0x5ac42aed, 0x53380d13, 0x9d95b3df,\n 0x650a7354, 0x8baf63de, 0x766a0abb, 0x3c77b2a8,\n 0x81c2c92e, 0x47edaee6, 0x92722c85, 0x1482353b,\n 0xa2bfe8a1, 0x4cf10364, 0xa81a664b, 0xbc423001,\n 0xc24b8b70, 0xd0f89791, 0xc76c51a3, 0x0654be30,\n 0xd192e819, 0xd6ef5218, 0xd6990624, 0x5565a910,\n 0xf40e3585, 0x5771202a, 0x106aa070, 0x32bbd1b8,\n 0x19a4c116, 0xb8d2d0c8, 0x1e376c08, 0x5141ab53,\n 0x2748774c, 0xdf8eeb99, 0x34b0bcb5, 0xe19b48a8,\n 0x391c0cb3, 0xc5c95a63, 0x4ed8aa4a, 0xe3418acb,\n 0x5b9cca4f, 0x7763e373, 0x682e6ff3, 0xd6b2b8a3,\n 0x748f82ee, 0x5defb2fc, 0x78a5636f, 0x43172f60,\n 0x84c87814, 0xa1f0ab72, 0x8cc70208, 0x1a6439ec,\n 0x90befffa, 0x23631e28, 0xa4506ceb, 0xde82bde9,\n 0xbef9a3f7, 0xb2c67915, 0xc67178f2, 0xe372532b,\n 0xca273ece, 0xea26619c, 0xd186b8c7, 0x21c0c207,\n 0xeada7dd6, 0xcde0eb1e, 0xf57d4f7f, 0xee6ed178,\n 0x06f067aa, 0x72176fba, 0x0a637dc5, 0xa2c898a6,\n 0x113f9804, 0xbef90dae, 0x1b710b35, 0x131c471b,\n 0x28db77f5, 0x23047d84, 0x32caab7b, 0x40c72493,\n 0x3c9ebe0a, 0x15c9bebc, 0x431d67c4, 0x9c100d4c,\n 0x4cc5d4be, 0xcb3e42b6, 0x597f299c, 0xfc657e2a,\n 0x5fcb6fab, 0x3ad6faec, 0x6c44198c, 0x4a475817\n]\n\nvar W = new Array(160)\n\nfunction Sha512 () {\n this.init()\n this._w = W\n\n Hash.call(this, 128, 112)\n}\n\ninherits(Sha512, Hash)\n\nSha512.prototype.init = function () {\n this._ah = 0x6a09e667\n this._bh = 0xbb67ae85\n this._ch = 0x3c6ef372\n this._dh = 0xa54ff53a\n this._eh = 0x510e527f\n this._fh = 0x9b05688c\n this._gh = 0x1f83d9ab\n this._hh = 0x5be0cd19\n\n this._al = 0xf3bcc908\n this._bl = 0x84caa73b\n this._cl = 0xfe94f82b\n this._dl = 0x5f1d36f1\n this._el = 0xade682d1\n this._fl = 0x2b3e6c1f\n this._gl = 0xfb41bd6b\n this._hl = 0x137e2179\n\n return this\n}\n\nfunction Ch (x, y, z) {\n return z ^ (x & (y ^ z))\n}\n\nfunction maj (x, y, z) {\n return (x & y) | (z & (x | y))\n}\n\nfunction sigma0 (x, xl) {\n return (x >>> 28 | xl << 4) ^ (xl >>> 2 | x << 30) ^ (xl >>> 7 | x << 25)\n}\n\nfunction sigma1 (x, xl) {\n return (x >>> 14 | xl << 18) ^ (x >>> 18 | xl << 14) ^ (xl >>> 9 | x << 23)\n}\n\nfunction Gamma0 (x, xl) {\n return (x >>> 1 | xl << 31) ^ (x >>> 8 | xl << 24) ^ (x >>> 7)\n}\n\nfunction Gamma0l (x, xl) {\n return (x >>> 1 | xl << 31) ^ (x >>> 8 | xl << 24) ^ (x >>> 7 | xl << 25)\n}\n\nfunction Gamma1 (x, xl) {\n return (x >>> 19 | xl << 13) ^ (xl >>> 29 | x << 3) ^ (x >>> 6)\n}\n\nfunction Gamma1l (x, xl) {\n return (x >>> 19 | xl << 13) ^ (xl >>> 29 | x << 3) ^ (x >>> 6 | xl << 26)\n}\n\nfunction getCarry (a, b) {\n return (a >>> 0) < (b >>> 0) ? 1 : 0\n}\n\nSha512.prototype._update = function (M) {\n var W = this._w\n\n var ah = this._ah | 0\n var bh = this._bh | 0\n var ch = this._ch | 0\n var dh = this._dh | 0\n var eh = this._eh | 0\n var fh = this._fh | 0\n var gh = this._gh | 0\n var hh = this._hh | 0\n\n var al = this._al | 0\n var bl = this._bl | 0\n var cl = this._cl | 0\n var dl = this._dl | 0\n var el = this._el | 0\n var fl = this._fl | 0\n var gl = this._gl | 0\n var hl = this._hl | 0\n\n for (var i = 0; i < 32; i += 2) {\n W[i] = M.readInt32BE(i * 4)\n W[i + 1] = M.readInt32BE(i * 4 + 4)\n }\n for (; i < 160; i += 2) {\n var xh = W[i - 15 * 2]\n var xl = W[i - 15 * 2 + 1]\n var gamma0 = Gamma0(xh, xl)\n var gamma0l = Gamma0l(xl, xh)\n\n xh = W[i - 2 * 2]\n xl = W[i - 2 * 2 + 1]\n var gamma1 = Gamma1(xh, xl)\n var gamma1l = Gamma1l(xl, xh)\n\n // W[i] = gamma0 + W[i - 7] + gamma1 + W[i - 16]\n var Wi7h = W[i - 7 * 2]\n var Wi7l = W[i - 7 * 2 + 1]\n\n var Wi16h = W[i - 16 * 2]\n var Wi16l = W[i - 16 * 2 + 1]\n\n var Wil = (gamma0l + Wi7l) | 0\n var Wih = (gamma0 + Wi7h + getCarry(Wil, gamma0l)) | 0\n Wil = (Wil + gamma1l) | 0\n Wih = (Wih + gamma1 + getCarry(Wil, gamma1l)) | 0\n Wil = (Wil + Wi16l) | 0\n Wih = (Wih + Wi16h + getCarry(Wil, Wi16l)) | 0\n\n W[i] = Wih\n W[i + 1] = Wil\n }\n\n for (var j = 0; j < 160; j += 2) {\n Wih = W[j]\n Wil = W[j + 1]\n\n var majh = maj(ah, bh, ch)\n var majl = maj(al, bl, cl)\n\n var sigma0h = sigma0(ah, al)\n var sigma0l = sigma0(al, ah)\n var sigma1h = sigma1(eh, el)\n var sigma1l = sigma1(el, eh)\n\n // t1 = h + sigma1 + ch + K[j] + W[j]\n var Kih = K[j]\n var Kil = K[j + 1]\n\n var chh = Ch(eh, fh, gh)\n var chl = Ch(el, fl, gl)\n\n var t1l = (hl + sigma1l) | 0\n var t1h = (hh + sigma1h + getCarry(t1l, hl)) | 0\n t1l = (t1l + chl) | 0\n t1h = (t1h + chh + getCarry(t1l, chl)) | 0\n t1l = (t1l + Kil) | 0\n t1h = (t1h + Kih + getCarry(t1l, Kil)) | 0\n t1l = (t1l + Wil) | 0\n t1h = (t1h + Wih + getCarry(t1l, Wil)) | 0\n\n // t2 = sigma0 + maj\n var t2l = (sigma0l + majl) | 0\n var t2h = (sigma0h + majh + getCarry(t2l, sigma0l)) | 0\n\n hh = gh\n hl = gl\n gh = fh\n gl = fl\n fh = eh\n fl = el\n el = (dl + t1l) | 0\n eh = (dh + t1h + getCarry(el, dl)) | 0\n dh = ch\n dl = cl\n ch = bh\n cl = bl\n bh = ah\n bl = al\n al = (t1l + t2l) | 0\n ah = (t1h + t2h + getCarry(al, t1l)) | 0\n }\n\n this._al = (this._al + al) | 0\n this._bl = (this._bl + bl) | 0\n this._cl = (this._cl + cl) | 0\n this._dl = (this._dl + dl) | 0\n this._el = (this._el + el) | 0\n this._fl = (this._fl + fl) | 0\n this._gl = (this._gl + gl) | 0\n this._hl = (this._hl + hl) | 0\n\n this._ah = (this._ah + ah + getCarry(this._al, al)) | 0\n this._bh = (this._bh + bh + getCarry(this._bl, bl)) | 0\n this._ch = (this._ch + ch + getCarry(this._cl, cl)) | 0\n this._dh = (this._dh + dh + getCarry(this._dl, dl)) | 0\n this._eh = (this._eh + eh + getCarry(this._el, el)) | 0\n this._fh = (this._fh + fh + getCarry(this._fl, fl)) | 0\n this._gh = (this._gh + gh + getCarry(this._gl, gl)) | 0\n this._hh = (this._hh + hh + getCarry(this._hl, hl)) | 0\n}\n\nSha512.prototype._hash = function () {\n var H = new Buffer(64)\n\n function writeInt64BE (h, l, offset) {\n H.writeInt32BE(h, offset)\n H.writeInt32BE(l, offset + 4)\n }\n\n writeInt64BE(this._ah, this._al, 0)\n writeInt64BE(this._bh, this._bl, 8)\n writeInt64BE(this._ch, this._cl, 16)\n writeInt64BE(this._dh, this._dl, 24)\n writeInt64BE(this._eh, this._el, 32)\n writeInt64BE(this._fh, this._fl, 40)\n writeInt64BE(this._gh, this._gl, 48)\n writeInt64BE(this._hh, this._hl, 56)\n\n return H\n}\n\nmodule.exports = Sha512\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 86 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/**\n * Root reference for iframes.\n */\n\nvar root;\nif (typeof window !== 'undefined') { // Browser window\n root = window;\n} else if (typeof self !== 'undefined') { // Web Worker\n root = self;\n} else { // Other environments\n console.warn(\"Using browser-only version of superagent in non-browser environment\");\n root = this;\n}\n\nvar Emitter = __webpack_require__(129);\nvar RequestBase = __webpack_require__(197);\nvar isObject = __webpack_require__(87);\nvar ResponseBase = __webpack_require__(198);\nvar Agent = __webpack_require__(196);\n\n/**\n * Noop.\n */\n\nfunction noop(){};\n\n/**\n * Expose `request`.\n */\n\nvar request = exports = module.exports = function(method, url) {\n // callback\n if ('function' == typeof url) {\n return new exports.Request('GET', method).end(url);\n }\n\n // url first\n if (1 == arguments.length) {\n return new exports.Request('GET', method);\n }\n\n return new exports.Request(method, url);\n}\n\nexports.Request = Request;\n\n/**\n * Determine XHR.\n */\n\nrequest.getXHR = function () {\n if (root.XMLHttpRequest\n && (!root.location || 'file:' != root.location.protocol\n || !root.ActiveXObject)) {\n return new XMLHttpRequest;\n } else {\n try { return new ActiveXObject('Microsoft.XMLHTTP'); } catch(e) {}\n try { return new ActiveXObject('Msxml2.XMLHTTP.6.0'); } catch(e) {}\n try { return new ActiveXObject('Msxml2.XMLHTTP.3.0'); } catch(e) {}\n try { return new ActiveXObject('Msxml2.XMLHTTP'); } catch(e) {}\n }\n throw Error(\"Browser-only version of superagent could not find XHR\");\n};\n\n/**\n * Removes leading and trailing whitespace, added to support IE.\n *\n * @param {String} s\n * @return {String}\n * @api private\n */\n\nvar trim = ''.trim\n ? function(s) { return s.trim(); }\n : function(s) { return s.replace(/(^\\s*|\\s*$)/g, ''); };\n\n/**\n * Serialize the given `obj`.\n *\n * @param {Object} obj\n * @return {String}\n * @api private\n */\n\nfunction serialize(obj) {\n if (!isObject(obj)) return obj;\n var pairs = [];\n for (var key in obj) {\n pushEncodedKeyValuePair(pairs, key, obj[key]);\n }\n return pairs.join('&');\n}\n\n/**\n * Helps 'serialize' with serializing arrays.\n * Mutates the pairs array.\n *\n * @param {Array} pairs\n * @param {String} key\n * @param {Mixed} val\n */\n\nfunction pushEncodedKeyValuePair(pairs, key, val) {\n if (val != null) {\n if (Array.isArray(val)) {\n val.forEach(function(v) {\n pushEncodedKeyValuePair(pairs, key, v);\n });\n } else if (isObject(val)) {\n for(var subkey in val) {\n pushEncodedKeyValuePair(pairs, key + '[' + subkey + ']', val[subkey]);\n }\n } else {\n pairs.push(encodeURIComponent(key)\n + '=' + encodeURIComponent(val));\n }\n } else if (val === null) {\n pairs.push(encodeURIComponent(key));\n }\n}\n\n/**\n * Expose serialization method.\n */\n\nrequest.serializeObject = serialize;\n\n/**\n * Parse the given x-www-form-urlencoded `str`.\n *\n * @param {String} str\n * @return {Object}\n * @api private\n */\n\nfunction parseString(str) {\n var obj = {};\n var pairs = str.split('&');\n var pair;\n var pos;\n\n for (var i = 0, len = pairs.length; i < len; ++i) {\n pair = pairs[i];\n pos = pair.indexOf('=');\n if (pos == -1) {\n obj[decodeURIComponent(pair)] = '';\n } else {\n obj[decodeURIComponent(pair.slice(0, pos))] =\n decodeURIComponent(pair.slice(pos + 1));\n }\n }\n\n return obj;\n}\n\n/**\n * Expose parser.\n */\n\nrequest.parseString = parseString;\n\n/**\n * Default MIME type map.\n *\n * superagent.types.xml = 'application/xml';\n *\n */\n\nrequest.types = {\n html: 'text/html',\n json: 'application/json',\n xml: 'text/xml',\n urlencoded: 'application/x-www-form-urlencoded',\n 'form': 'application/x-www-form-urlencoded',\n 'form-data': 'application/x-www-form-urlencoded'\n};\n\n/**\n * Default serialization map.\n *\n * superagent.serialize['application/xml'] = function(obj){\n * return 'generated xml here';\n * };\n *\n */\n\nrequest.serialize = {\n 'application/x-www-form-urlencoded': serialize,\n 'application/json': JSON.stringify,\n};\n\n/**\n * Default parsers.\n *\n * superagent.parse['application/xml'] = function(str){\n * return { object parsed from str };\n * };\n *\n */\n\nrequest.parse = {\n 'application/x-www-form-urlencoded': parseString,\n 'application/json': JSON.parse,\n};\n\n/**\n * Parse the given header `str` into\n * an object containing the mapped fields.\n *\n * @param {String} str\n * @return {Object}\n * @api private\n */\n\nfunction parseHeader(str) {\n var lines = str.split(/\\r?\\n/);\n var fields = {};\n var index;\n var line;\n var field;\n var val;\n\n for (var i = 0, len = lines.length; i < len; ++i) {\n line = lines[i];\n index = line.indexOf(':');\n if (index === -1) { // could be empty line, just skip it\n continue;\n }\n field = line.slice(0, index).toLowerCase();\n val = trim(line.slice(index + 1));\n fields[field] = val;\n }\n\n return fields;\n}\n\n/**\n * Check if `mime` is json or has +json structured syntax suffix.\n *\n * @param {String} mime\n * @return {Boolean}\n * @api private\n */\n\nfunction isJSON(mime) {\n // should match /json or +json\n // but not /json-seq\n return /[\\/+]json($|[^-\\w])/.test(mime);\n}\n\n/**\n * Initialize a new `Response` with the given `xhr`.\n *\n * - set flags (.ok, .error, etc)\n * - parse header\n *\n * Examples:\n *\n * Aliasing `superagent` as `request` is nice:\n *\n * request = superagent;\n *\n * We can use the promise-like API, or pass callbacks:\n *\n * request.get('/').end(function(res){});\n * request.get('/', function(res){});\n *\n * Sending data can be chained:\n *\n * request\n * .post('/user')\n * .send({ name: 'tj' })\n * .end(function(res){});\n *\n * Or passed to `.send()`:\n *\n * request\n * .post('/user')\n * .send({ name: 'tj' }, function(res){});\n *\n * Or passed to `.post()`:\n *\n * request\n * .post('/user', { name: 'tj' })\n * .end(function(res){});\n *\n * Or further reduced to a single call for simple cases:\n *\n * request\n * .post('/user', { name: 'tj' }, function(res){});\n *\n * @param {XMLHTTPRequest} xhr\n * @param {Object} options\n * @api private\n */\n\nfunction Response(req) {\n this.req = req;\n this.xhr = this.req.xhr;\n // responseText is accessible only if responseType is '' or 'text' and on older browsers\n this.text = ((this.req.method !='HEAD' && (this.xhr.responseType === '' || this.xhr.responseType === 'text')) || typeof this.xhr.responseType === 'undefined')\n ? this.xhr.responseText\n : null;\n this.statusText = this.req.xhr.statusText;\n var status = this.xhr.status;\n // handle IE9 bug: http://stackoverflow.com/questions/10046972/msie-returns-status-code-of-1223-for-ajax-request\n if (status === 1223) {\n status = 204;\n }\n this._setStatusProperties(status);\n this.header = this.headers = parseHeader(this.xhr.getAllResponseHeaders());\n // getAllResponseHeaders sometimes falsely returns \"\" for CORS requests, but\n // getResponseHeader still works. so we get content-type even if getting\n // other headers fails.\n this.header['content-type'] = this.xhr.getResponseHeader('content-type');\n this._setHeaderProperties(this.header);\n\n if (null === this.text && req._responseType) {\n this.body = this.xhr.response;\n } else {\n this.body = this.req.method != 'HEAD'\n ? this._parseBody(this.text ? this.text : this.xhr.response)\n : null;\n }\n}\n\nResponseBase(Response.prototype);\n\n/**\n * Parse the given body `str`.\n *\n * Used for auto-parsing of bodies. Parsers\n * are defined on the `superagent.parse` object.\n *\n * @param {String} str\n * @return {Mixed}\n * @api private\n */\n\nResponse.prototype._parseBody = function(str) {\n var parse = request.parse[this.type];\n if (this.req._parser) {\n return this.req._parser(this, str);\n }\n if (!parse && isJSON(this.type)) {\n parse = request.parse['application/json'];\n }\n return parse && str && (str.length || str instanceof Object)\n ? parse(str)\n : null;\n};\n\n/**\n * Return an `Error` representative of this response.\n *\n * @return {Error}\n * @api public\n */\n\nResponse.prototype.toError = function(){\n var req = this.req;\n var method = req.method;\n var url = req.url;\n\n var msg = 'cannot ' + method + ' ' + url + ' (' + this.status + ')';\n var err = new Error(msg);\n err.status = this.status;\n err.method = method;\n err.url = url;\n\n return err;\n};\n\n/**\n * Expose `Response`.\n */\n\nrequest.Response = Response;\n\n/**\n * Initialize a new `Request` with the given `method` and `url`.\n *\n * @param {String} method\n * @param {String} url\n * @api public\n */\n\nfunction Request(method, url) {\n var self = this;\n this._query = this._query || [];\n this.method = method;\n this.url = url;\n this.header = {}; // preserves header name case\n this._header = {}; // coerces header names to lowercase\n this.on('end', function(){\n var err = null;\n var res = null;\n\n try {\n res = new Response(self);\n } catch(e) {\n err = new Error('Parser is unable to parse the response');\n err.parse = true;\n err.original = e;\n // issue #675: return the raw response if the response parsing fails\n if (self.xhr) {\n // ie9 doesn't have 'response' property\n err.rawResponse = typeof self.xhr.responseType == 'undefined' ? self.xhr.responseText : self.xhr.response;\n // issue #876: return the http status code if the response parsing fails\n err.status = self.xhr.status ? self.xhr.status : null;\n err.statusCode = err.status; // backwards-compat only\n } else {\n err.rawResponse = null;\n err.status = null;\n }\n\n return self.callback(err);\n }\n\n self.emit('response', res);\n\n var new_err;\n try {\n if (!self._isResponseOK(res)) {\n new_err = new Error(res.statusText || 'Unsuccessful HTTP response');\n }\n } catch(custom_err) {\n new_err = custom_err; // ok() callback can throw\n }\n\n // #1000 don't catch errors from the callback to avoid double calling it\n if (new_err) {\n new_err.original = err;\n new_err.response = res;\n new_err.status = res.status;\n self.callback(new_err, res);\n } else {\n self.callback(null, res);\n }\n });\n}\n\n/**\n * Mixin `Emitter` and `RequestBase`.\n */\n\nEmitter(Request.prototype);\nRequestBase(Request.prototype);\n\n/**\n * Set Content-Type to `type`, mapping values from `request.types`.\n *\n * Examples:\n *\n * superagent.types.xml = 'application/xml';\n *\n * request.post('/')\n * .type('xml')\n * .send(xmlstring)\n * .end(callback);\n *\n * request.post('/')\n * .type('application/xml')\n * .send(xmlstring)\n * .end(callback);\n *\n * @param {String} type\n * @return {Request} for chaining\n * @api public\n */\n\nRequest.prototype.type = function(type){\n this.set('Content-Type', request.types[type] || type);\n return this;\n};\n\n/**\n * Set Accept to `type`, mapping values from `request.types`.\n *\n * Examples:\n *\n * superagent.types.json = 'application/json';\n *\n * request.get('/agent')\n * .accept('json')\n * .end(callback);\n *\n * request.get('/agent')\n * .accept('application/json')\n * .end(callback);\n *\n * @param {String} accept\n * @return {Request} for chaining\n * @api public\n */\n\nRequest.prototype.accept = function(type){\n this.set('Accept', request.types[type] || type);\n return this;\n};\n\n/**\n * Set Authorization field value with `user` and `pass`.\n *\n * @param {String} user\n * @param {String} [pass] optional in case of using 'bearer' as type\n * @param {Object} options with 'type' property 'auto', 'basic' or 'bearer' (default 'basic')\n * @return {Request} for chaining\n * @api public\n */\n\nRequest.prototype.auth = function(user, pass, options){\n if (1 === arguments.length) pass = '';\n if (typeof pass === 'object' && pass !== null) { // pass is optional and can be replaced with options\n options = pass;\n pass = '';\n }\n if (!options) {\n options = {\n type: 'function' === typeof btoa ? 'basic' : 'auto',\n };\n }\n\n var encoder = function(string) {\n if ('function' === typeof btoa) {\n return btoa(string);\n }\n throw new Error('Cannot use basic auth, btoa is not a function');\n };\n\n return this._auth(user, pass, options, encoder);\n};\n\n/**\n * Add query-string `val`.\n *\n * Examples:\n *\n * request.get('/shoes')\n * .query('size=10')\n * .query({ color: 'blue' })\n *\n * @param {Object|String} val\n * @return {Request} for chaining\n * @api public\n */\n\nRequest.prototype.query = function(val){\n if ('string' != typeof val) val = serialize(val);\n if (val) this._query.push(val);\n return this;\n};\n\n/**\n * Queue the given `file` as an attachment to the specified `field`,\n * with optional `options` (or filename).\n *\n * ``` js\n * request.post('/upload')\n * .attach('content', new Blob(['hey!'], { type: \"text/html\"}))\n * .end(callback);\n * ```\n *\n * @param {String} field\n * @param {Blob|File} file\n * @param {String|Object} options\n * @return {Request} for chaining\n * @api public\n */\n\nRequest.prototype.attach = function(field, file, options){\n if (file) {\n if (this._data) {\n throw Error(\"superagent can't mix .send() and .attach()\");\n }\n\n this._getFormData().append(field, file, options || file.name);\n }\n return this;\n};\n\nRequest.prototype._getFormData = function(){\n if (!this._formData) {\n this._formData = new root.FormData();\n }\n return this._formData;\n};\n\n/**\n * Invoke the callback with `err` and `res`\n * and handle arity check.\n *\n * @param {Error} err\n * @param {Response} res\n * @api private\n */\n\nRequest.prototype.callback = function(err, res){\n if (this._shouldRetry(err, res)) {\n return this._retry();\n }\n\n var fn = this._callback;\n this.clearTimeout();\n\n if (err) {\n if (this._maxRetries) err.retries = this._retries - 1;\n this.emit('error', err);\n }\n\n fn(err, res);\n};\n\n/**\n * Invoke callback with x-domain error.\n *\n * @api private\n */\n\nRequest.prototype.crossDomainError = function(){\n var err = new Error('Request has been terminated\\nPossible causes: the network is offline, Origin is not allowed by Access-Control-Allow-Origin, the page is being unloaded, etc.');\n err.crossDomain = true;\n\n err.status = this.status;\n err.method = this.method;\n err.url = this.url;\n\n this.callback(err);\n};\n\n// This only warns, because the request is still likely to work\nRequest.prototype.buffer = Request.prototype.ca = Request.prototype.agent = function(){\n console.warn(\"This is not supported in browser version of superagent\");\n return this;\n};\n\n// This throws, because it can't send/receive data as expected\nRequest.prototype.pipe = Request.prototype.write = function(){\n throw Error(\"Streaming is not supported in browser version of superagent\");\n};\n\n/**\n * Check if `obj` is a host object,\n * we don't want to serialize these :)\n *\n * @param {Object} obj\n * @return {Boolean}\n * @api private\n */\nRequest.prototype._isHost = function _isHost(obj) {\n // Native objects stringify to [object File], [object Blob], [object FormData], etc.\n return obj && 'object' === typeof obj && !Array.isArray(obj) && Object.prototype.toString.call(obj) !== '[object Object]';\n}\n\n/**\n * Initiate request, invoking callback `fn(res)`\n * with an instanceof `Response`.\n *\n * @param {Function} fn\n * @return {Request} for chaining\n * @api public\n */\n\nRequest.prototype.end = function(fn){\n if (this._endCalled) {\n console.warn(\"Warning: .end() was called twice. This is not supported in superagent\");\n }\n this._endCalled = true;\n\n // store callback\n this._callback = fn || noop;\n\n // querystring\n this._finalizeQueryString();\n\n return this._end();\n};\n\nRequest.prototype._end = function() {\n var self = this;\n var xhr = (this.xhr = request.getXHR());\n var data = this._formData || this._data;\n\n this._setTimeouts();\n\n // state change\n xhr.onreadystatechange = function(){\n var readyState = xhr.readyState;\n if (readyState >= 2 && self._responseTimeoutTimer) {\n clearTimeout(self._responseTimeoutTimer);\n }\n if (4 != readyState) {\n return;\n }\n\n // In IE9, reads to any property (e.g. status) off of an aborted XHR will\n // result in the error \"Could not complete the operation due to error c00c023f\"\n var status;\n try { status = xhr.status } catch(e) { status = 0; }\n\n if (!status) {\n if (self.timedout || self._aborted) return;\n return self.crossDomainError();\n }\n self.emit('end');\n };\n\n // progress\n var handleProgress = function(direction, e) {\n if (e.total > 0) {\n e.percent = e.loaded / e.total * 100;\n }\n e.direction = direction;\n self.emit('progress', e);\n };\n if (this.hasListeners('progress')) {\n try {\n xhr.onprogress = handleProgress.bind(null, 'download');\n if (xhr.upload) {\n xhr.upload.onprogress = handleProgress.bind(null, 'upload');\n }\n } catch(e) {\n // Accessing xhr.upload fails in IE from a web worker, so just pretend it doesn't exist.\n // Reported here:\n // https://connect.microsoft.com/IE/feedback/details/837245/xmlhttprequest-upload-throws-invalid-argument-when-used-from-web-worker-context\n }\n }\n\n // initiate request\n try {\n if (this.username && this.password) {\n xhr.open(this.method, this.url, true, this.username, this.password);\n } else {\n xhr.open(this.method, this.url, true);\n }\n } catch (err) {\n // see #1149\n return this.callback(err);\n }\n\n // CORS\n if (this._withCredentials) xhr.withCredentials = true;\n\n // body\n if (!this._formData && 'GET' != this.method && 'HEAD' != this.method && 'string' != typeof data && !this._isHost(data)) {\n // serialize stuff\n var contentType = this._header['content-type'];\n var serialize = this._serializer || request.serialize[contentType ? contentType.split(';')[0] : ''];\n if (!serialize && isJSON(contentType)) {\n serialize = request.serialize['application/json'];\n }\n if (serialize) data = serialize(data);\n }\n\n // set header fields\n for (var field in this.header) {\n if (null == this.header[field]) continue;\n\n if (this.header.hasOwnProperty(field))\n xhr.setRequestHeader(field, this.header[field]);\n }\n\n if (this._responseType) {\n xhr.responseType = this._responseType;\n }\n\n // send stuff\n this.emit('request', this);\n\n // IE11 xhr.send(undefined) sends 'undefined' string as POST payload (instead of nothing)\n // We need null here if data is undefined\n xhr.send(typeof data !== 'undefined' ? data : null);\n return this;\n};\n\nrequest.agent = function() {\n return new Agent();\n};\n\n[\"GET\", \"POST\", \"OPTIONS\", \"PATCH\", \"PUT\", \"DELETE\"].forEach(function(method) {\n Agent.prototype[method.toLowerCase()] = function(url, fn) {\n var req = new request.Request(method, url);\n this._setDefaults(req);\n if (fn) {\n req.end(fn);\n }\n return req;\n };\n});\n\nAgent.prototype.del = Agent.prototype['delete'];\n\n/**\n * GET `url` with optional callback `fn(res)`.\n *\n * @param {String} url\n * @param {Mixed|Function} [data] or fn\n * @param {Function} [fn]\n * @return {Request}\n * @api public\n */\n\nrequest.get = function(url, data, fn) {\n var req = request('GET', url);\n if ('function' == typeof data) (fn = data), (data = null);\n if (data) req.query(data);\n if (fn) req.end(fn);\n return req;\n};\n\n/**\n * HEAD `url` with optional callback `fn(res)`.\n *\n * @param {String} url\n * @param {Mixed|Function} [data] or fn\n * @param {Function} [fn]\n * @return {Request}\n * @api public\n */\n\nrequest.head = function(url, data, fn) {\n var req = request('HEAD', url);\n if ('function' == typeof data) (fn = data), (data = null);\n if (data) req.query(data);\n if (fn) req.end(fn);\n return req;\n};\n\n/**\n * OPTIONS query to `url` with optional callback `fn(res)`.\n *\n * @param {String} url\n * @param {Mixed|Function} [data] or fn\n * @param {Function} [fn]\n * @return {Request}\n * @api public\n */\n\nrequest.options = function(url, data, fn) {\n var req = request('OPTIONS', url);\n if ('function' == typeof data) (fn = data), (data = null);\n if (data) req.send(data);\n if (fn) req.end(fn);\n return req;\n};\n\n/**\n * DELETE `url` with optional `data` and callback `fn(res)`.\n *\n * @param {String} url\n * @param {Mixed} [data]\n * @param {Function} [fn]\n * @return {Request}\n * @api public\n */\n\nfunction del(url, data, fn) {\n var req = request('DELETE', url);\n if ('function' == typeof data) (fn = data), (data = null);\n if (data) req.send(data);\n if (fn) req.end(fn);\n return req;\n}\n\nrequest['del'] = del;\nrequest['delete'] = del;\n\n/**\n * PATCH `url` with optional `data` and callback `fn(res)`.\n *\n * @param {String} url\n * @param {Mixed} [data]\n * @param {Function} [fn]\n * @return {Request}\n * @api public\n */\n\nrequest.patch = function(url, data, fn) {\n var req = request('PATCH', url);\n if ('function' == typeof data) (fn = data), (data = null);\n if (data) req.send(data);\n if (fn) req.end(fn);\n return req;\n};\n\n/**\n * POST `url` with optional `data` and callback `fn(res)`.\n *\n * @param {String} url\n * @param {Mixed} [data]\n * @param {Function} [fn]\n * @return {Request}\n * @api public\n */\n\nrequest.post = function(url, data, fn) {\n var req = request('POST', url);\n if ('function' == typeof data) (fn = data), (data = null);\n if (data) req.send(data);\n if (fn) req.end(fn);\n return req;\n};\n\n/**\n * PUT `url` with optional `data` and callback `fn(res)`.\n *\n * @param {String} url\n * @param {Mixed|Function} [data] or fn\n * @param {Function} [fn]\n * @return {Request}\n * @api public\n */\n\nrequest.put = function(url, data, fn) {\n var req = request('PUT', url);\n if ('function' == typeof data) (fn = data), (data = null);\n if (data) req.send(data);\n if (fn) req.end(fn);\n return req;\n};\n\n\n/***/ }),\n/* 87 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\n/**\n * Check if `obj` is an object.\n *\n * @param {Object} obj\n * @return {Boolean}\n * @api private\n */\n\nfunction isObject(obj) {\n return null !== obj && 'object' === typeof obj;\n}\n\nmodule.exports = isObject;\n\n\n/***/ }),\n/* 88 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar Authentication = __webpack_require__(50);\nvar Management = __webpack_require__(114);\nvar WebAuth = __webpack_require__(115);\nvar version = __webpack_require__(31);\n\nmodule.exports = {\n Authentication: Authentication,\n Management: Management,\n WebAuth: WebAuth,\n version: version.raw\n};\n\n\n/***/ }),\n/* 89 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar BrowserAgent = __webpack_require__(206);\nvar WebViewAgent = __webpack_require__(207);\n\nmodule.exports = function getAgent(callback) {\n return BrowserAgent.isAvailable(function (available) {\n if (available) {\n return callback(null, new BrowserAgent());\n }\n return callback(null, new WebViewAgent());\n });\n};\n\n\n\n/***/ }),\n/* 90 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar crypto = __webpack_require__(132);\n\nfunction base64UrlSafeEncode(string) {\n return string.toString('base64')\n .replace(/\\+/g, '-')\n .replace(/\\//g, '_')\n .replace(/=/g, '');\n}\n\nfunction sha256(buffer) {\n return crypto.createHash('sha256').update(buffer).digest();\n}\n\nexports.generateProofKey = function generateProofKey() {\n var codeVerifier = base64UrlSafeEncode(crypto.randomBytes(32));\n var codeChallenge = base64UrlSafeEncode(sha256(codeVerifier));\n return {\n codeVerifier: codeVerifier,\n codeChallenge: codeChallenge\n };\n};\n\nexports.generateState = function generateState() {\n return base64UrlSafeEncode(crypto.randomBytes(32));\n};\n\n\n/***/ }),\n/* 91 */\n/***/ (function(module, exports) {\n\nfunction Session() {}\n\nSession.clean = function () {\n Session.current = function () { return false; };\n Session.isClosing = false;\n};\n\nSession.closing = function () {\n Session.isClosing = true;\n};\n\nSession.start = function (handler) {\n Session.current(new Error('Only one instance of auth can happen at a time'));\n Session.current = handler;\n};\n\nSession.onRedirectUri = function (url) {\n if (Session.current(null, url)) {\n Session.clean();\n }\n};\n\nmodule.exports = Session;\n\n\n/***/ }),\n/* 92 */\n/***/ (function(module, exports) {\n\nfunction getOS() {\n var userAgent = navigator.userAgent;\n if (/android/i.test(userAgent)) {\n return 'android';\n }\n\n if (/iPad|iPhone|iPod/.test(userAgent) && !window.MSStream) {\n return 'ios';\n }\n}\n\nmodule.exports = {\n getOS: getOS\n};\n\n\n/***/ }),\n/* 93 */\n/***/ (function(module, exports) {\n\nmodule.exports = { raw: '0.3.0' };\n\n\n/***/ }),\n/* 94 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar asn1 = __webpack_require__(16);\nvar inherits = __webpack_require__(1);\n\nvar api = exports;\n\napi.define = function define(name, body) {\n return new Entity(name, body);\n};\n\nfunction Entity(name, body) {\n this.name = name;\n this.body = body;\n\n this.decoders = {};\n this.encoders = {};\n};\n\nEntity.prototype._createNamed = function createNamed(base) {\n var named;\n try {\n named = __webpack_require__(203).runInThisContext(\n '(function ' + this.name + '(entity) {\\n' +\n ' this._initNamed(entity);\\n' +\n '})'\n );\n } catch (e) {\n named = function (entity) {\n this._initNamed(entity);\n };\n }\n inherits(named, base);\n named.prototype._initNamed = function initnamed(entity) {\n base.call(this, entity);\n };\n\n return new named(this);\n};\n\nEntity.prototype._getDecoder = function _getDecoder(enc) {\n enc = enc || 'der';\n // Lazily create decoder\n if (!this.decoders.hasOwnProperty(enc))\n this.decoders[enc] = this._createNamed(asn1.decoders[enc]);\n return this.decoders[enc];\n};\n\nEntity.prototype.decode = function decode(data, enc, options) {\n return this._getDecoder(enc).decode(data, options);\n};\n\nEntity.prototype._getEncoder = function _getEncoder(enc) {\n enc = enc || 'der';\n // Lazily create encoder\n if (!this.encoders.hasOwnProperty(enc))\n this.encoders[enc] = this._createNamed(asn1.encoders[enc]);\n return this.encoders[enc];\n};\n\nEntity.prototype.encode = function encode(data, enc, /* internal */ reporter) {\n return this._getEncoder(enc).encode(data, reporter);\n};\n\n\n/***/ }),\n/* 95 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar Reporter = __webpack_require__(17).Reporter;\nvar EncoderBuffer = __webpack_require__(17).EncoderBuffer;\nvar DecoderBuffer = __webpack_require__(17).DecoderBuffer;\nvar assert = __webpack_require__(8);\n\n// Supported tags\nvar tags = [\n 'seq', 'seqof', 'set', 'setof', 'objid', 'bool',\n 'gentime', 'utctime', 'null_', 'enum', 'int', 'objDesc',\n 'bitstr', 'bmpstr', 'charstr', 'genstr', 'graphstr', 'ia5str', 'iso646str',\n 'numstr', 'octstr', 'printstr', 't61str', 'unistr', 'utf8str', 'videostr'\n];\n\n// Public methods list\nvar methods = [\n 'key', 'obj', 'use', 'optional', 'explicit', 'implicit', 'def', 'choice',\n 'any', 'contains'\n].concat(tags);\n\n// Overrided methods list\nvar overrided = [\n '_peekTag', '_decodeTag', '_use',\n '_decodeStr', '_decodeObjid', '_decodeTime',\n '_decodeNull', '_decodeInt', '_decodeBool', '_decodeList',\n\n '_encodeComposite', '_encodeStr', '_encodeObjid', '_encodeTime',\n '_encodeNull', '_encodeInt', '_encodeBool'\n];\n\nfunction Node(enc, parent) {\n var state = {};\n this._baseState = state;\n\n state.enc = enc;\n\n state.parent = parent || null;\n state.children = null;\n\n // State\n state.tag = null;\n state.args = null;\n state.reverseArgs = null;\n state.choice = null;\n state.optional = false;\n state.any = false;\n state.obj = false;\n state.use = null;\n state.useDecoder = null;\n state.key = null;\n state['default'] = null;\n state.explicit = null;\n state.implicit = null;\n state.contains = null;\n\n // Should create new instance on each method\n if (!state.parent) {\n state.children = [];\n this._wrap();\n }\n}\nmodule.exports = Node;\n\nvar stateProps = [\n 'enc', 'parent', 'children', 'tag', 'args', 'reverseArgs', 'choice',\n 'optional', 'any', 'obj', 'use', 'alteredUse', 'key', 'default', 'explicit',\n 'implicit', 'contains'\n];\n\nNode.prototype.clone = function clone() {\n var state = this._baseState;\n var cstate = {};\n stateProps.forEach(function(prop) {\n cstate[prop] = state[prop];\n });\n var res = new this.constructor(cstate.parent);\n res._baseState = cstate;\n return res;\n};\n\nNode.prototype._wrap = function wrap() {\n var state = this._baseState;\n methods.forEach(function(method) {\n this[method] = function _wrappedMethod() {\n var clone = new this.constructor(this);\n state.children.push(clone);\n return clone[method].apply(clone, arguments);\n };\n }, this);\n};\n\nNode.prototype._init = function init(body) {\n var state = this._baseState;\n\n assert(state.parent === null);\n body.call(this);\n\n // Filter children\n state.children = state.children.filter(function(child) {\n return child._baseState.parent === this;\n }, this);\n assert.equal(state.children.length, 1, 'Root node can have only one child');\n};\n\nNode.prototype._useArgs = function useArgs(args) {\n var state = this._baseState;\n\n // Filter children and args\n var children = args.filter(function(arg) {\n return arg instanceof this.constructor;\n }, this);\n args = args.filter(function(arg) {\n return !(arg instanceof this.constructor);\n }, this);\n\n if (children.length !== 0) {\n assert(state.children === null);\n state.children = children;\n\n // Replace parent to maintain backward link\n children.forEach(function(child) {\n child._baseState.parent = this;\n }, this);\n }\n if (args.length !== 0) {\n assert(state.args === null);\n state.args = args;\n state.reverseArgs = args.map(function(arg) {\n if (typeof arg !== 'object' || arg.constructor !== Object)\n return arg;\n\n var res = {};\n Object.keys(arg).forEach(function(key) {\n if (key == (key | 0))\n key |= 0;\n var value = arg[key];\n res[value] = key;\n });\n return res;\n });\n }\n};\n\n//\n// Overrided methods\n//\n\noverrided.forEach(function(method) {\n Node.prototype[method] = function _overrided() {\n var state = this._baseState;\n throw new Error(method + ' not implemented for encoding: ' + state.enc);\n };\n});\n\n//\n// Public methods\n//\n\ntags.forEach(function(tag) {\n Node.prototype[tag] = function _tagMethod() {\n var state = this._baseState;\n var args = Array.prototype.slice.call(arguments);\n\n assert(state.tag === null);\n state.tag = tag;\n\n this._useArgs(args);\n\n return this;\n };\n});\n\nNode.prototype.use = function use(item) {\n assert(item);\n var state = this._baseState;\n\n assert(state.use === null);\n state.use = item;\n\n return this;\n};\n\nNode.prototype.optional = function optional() {\n var state = this._baseState;\n\n state.optional = true;\n\n return this;\n};\n\nNode.prototype.def = function def(val) {\n var state = this._baseState;\n\n assert(state['default'] === null);\n state['default'] = val;\n state.optional = true;\n\n return this;\n};\n\nNode.prototype.explicit = function explicit(num) {\n var state = this._baseState;\n\n assert(state.explicit === null && state.implicit === null);\n state.explicit = num;\n\n return this;\n};\n\nNode.prototype.implicit = function implicit(num) {\n var state = this._baseState;\n\n assert(state.explicit === null && state.implicit === null);\n state.implicit = num;\n\n return this;\n};\n\nNode.prototype.obj = function obj() {\n var state = this._baseState;\n var args = Array.prototype.slice.call(arguments);\n\n state.obj = true;\n\n if (args.length !== 0)\n this._useArgs(args);\n\n return this;\n};\n\nNode.prototype.key = function key(newKey) {\n var state = this._baseState;\n\n assert(state.key === null);\n state.key = newKey;\n\n return this;\n};\n\nNode.prototype.any = function any() {\n var state = this._baseState;\n\n state.any = true;\n\n return this;\n};\n\nNode.prototype.choice = function choice(obj) {\n var state = this._baseState;\n\n assert(state.choice === null);\n state.choice = obj;\n this._useArgs(Object.keys(obj).map(function(key) {\n return obj[key];\n }));\n\n return this;\n};\n\nNode.prototype.contains = function contains(item) {\n var state = this._baseState;\n\n assert(state.use === null);\n state.contains = item;\n\n return this;\n};\n\n//\n// Decoding\n//\n\nNode.prototype._decode = function decode(input, options) {\n var state = this._baseState;\n\n // Decode root node\n if (state.parent === null)\n return input.wrapResult(state.children[0]._decode(input, options));\n\n var result = state['default'];\n var present = true;\n\n var prevKey = null;\n if (state.key !== null)\n prevKey = input.enterKey(state.key);\n\n // Check if tag is there\n if (state.optional) {\n var tag = null;\n if (state.explicit !== null)\n tag = state.explicit;\n else if (state.implicit !== null)\n tag = state.implicit;\n else if (state.tag !== null)\n tag = state.tag;\n\n if (tag === null && !state.any) {\n // Trial and Error\n var save = input.save();\n try {\n if (state.choice === null)\n this._decodeGeneric(state.tag, input, options);\n else\n this._decodeChoice(input, options);\n present = true;\n } catch (e) {\n present = false;\n }\n input.restore(save);\n } else {\n present = this._peekTag(input, tag, state.any);\n\n if (input.isError(present))\n return present;\n }\n }\n\n // Push object on stack\n var prevObj;\n if (state.obj && present)\n prevObj = input.enterObject();\n\n if (present) {\n // Unwrap explicit values\n if (state.explicit !== null) {\n var explicit = this._decodeTag(input, state.explicit);\n if (input.isError(explicit))\n return explicit;\n input = explicit;\n }\n\n var start = input.offset;\n\n // Unwrap implicit and normal values\n if (state.use === null && state.choice === null) {\n if (state.any)\n var save = input.save();\n var body = this._decodeTag(\n input,\n state.implicit !== null ? state.implicit : state.tag,\n state.any\n );\n if (input.isError(body))\n return body;\n\n if (state.any)\n result = input.raw(save);\n else\n input = body;\n }\n\n if (options && options.track && state.tag !== null)\n options.track(input.path(), start, input.length, 'tagged');\n\n if (options && options.track && state.tag !== null)\n options.track(input.path(), input.offset, input.length, 'content');\n\n // Select proper method for tag\n if (state.any)\n result = result;\n else if (state.choice === null)\n result = this._decodeGeneric(state.tag, input, options);\n else\n result = this._decodeChoice(input, options);\n\n if (input.isError(result))\n return result;\n\n // Decode children\n if (!state.any && state.choice === null && state.children !== null) {\n state.children.forEach(function decodeChildren(child) {\n // NOTE: We are ignoring errors here, to let parser continue with other\n // parts of encoded data\n child._decode(input, options);\n });\n }\n\n // Decode contained/encoded by schema, only in bit or octet strings\n if (state.contains && (state.tag === 'octstr' || state.tag === 'bitstr')) {\n var data = new DecoderBuffer(result);\n result = this._getUse(state.contains, input._reporterState.obj)\n ._decode(data, options);\n }\n }\n\n // Pop object\n if (state.obj && present)\n result = input.leaveObject(prevObj);\n\n // Set key\n if (state.key !== null && (result !== null || present === true))\n input.leaveKey(prevKey, state.key, result);\n else if (prevKey !== null)\n input.exitKey(prevKey);\n\n return result;\n};\n\nNode.prototype._decodeGeneric = function decodeGeneric(tag, input, options) {\n var state = this._baseState;\n\n if (tag === 'seq' || tag === 'set')\n return null;\n if (tag === 'seqof' || tag === 'setof')\n return this._decodeList(input, tag, state.args[0], options);\n else if (/str$/.test(tag))\n return this._decodeStr(input, tag, options);\n else if (tag === 'objid' && state.args)\n return this._decodeObjid(input, state.args[0], state.args[1], options);\n else if (tag === 'objid')\n return this._decodeObjid(input, null, null, options);\n else if (tag === 'gentime' || tag === 'utctime')\n return this._decodeTime(input, tag, options);\n else if (tag === 'null_')\n return this._decodeNull(input, options);\n else if (tag === 'bool')\n return this._decodeBool(input, options);\n else if (tag === 'objDesc')\n return this._decodeStr(input, tag, options);\n else if (tag === 'int' || tag === 'enum')\n return this._decodeInt(input, state.args && state.args[0], options);\n\n if (state.use !== null) {\n return this._getUse(state.use, input._reporterState.obj)\n ._decode(input, options);\n } else {\n return input.error('unknown tag: ' + tag);\n }\n};\n\nNode.prototype._getUse = function _getUse(entity, obj) {\n\n var state = this._baseState;\n // Create altered use decoder if implicit is set\n state.useDecoder = this._use(entity, obj);\n assert(state.useDecoder._baseState.parent === null);\n state.useDecoder = state.useDecoder._baseState.children[0];\n if (state.implicit !== state.useDecoder._baseState.implicit) {\n state.useDecoder = state.useDecoder.clone();\n state.useDecoder._baseState.implicit = state.implicit;\n }\n return state.useDecoder;\n};\n\nNode.prototype._decodeChoice = function decodeChoice(input, options) {\n var state = this._baseState;\n var result = null;\n var match = false;\n\n Object.keys(state.choice).some(function(key) {\n var save = input.save();\n var node = state.choice[key];\n try {\n var value = node._decode(input, options);\n if (input.isError(value))\n return false;\n\n result = { type: key, value: value };\n match = true;\n } catch (e) {\n input.restore(save);\n return false;\n }\n return true;\n }, this);\n\n if (!match)\n return input.error('Choice not matched');\n\n return result;\n};\n\n//\n// Encoding\n//\n\nNode.prototype._createEncoderBuffer = function createEncoderBuffer(data) {\n return new EncoderBuffer(data, this.reporter);\n};\n\nNode.prototype._encode = function encode(data, reporter, parent) {\n var state = this._baseState;\n if (state['default'] !== null && state['default'] === data)\n return;\n\n var result = this._encodeValue(data, reporter, parent);\n if (result === undefined)\n return;\n\n if (this._skipDefault(result, reporter, parent))\n return;\n\n return result;\n};\n\nNode.prototype._encodeValue = function encode(data, reporter, parent) {\n var state = this._baseState;\n\n // Decode root node\n if (state.parent === null)\n return state.children[0]._encode(data, reporter || new Reporter());\n\n var result = null;\n\n // Set reporter to share it with a child class\n this.reporter = reporter;\n\n // Check if data is there\n if (state.optional && data === undefined) {\n if (state['default'] !== null)\n data = state['default']\n else\n return;\n }\n\n // Encode children first\n var content = null;\n var primitive = false;\n if (state.any) {\n // Anything that was given is translated to buffer\n result = this._createEncoderBuffer(data);\n } else if (state.choice) {\n result = this._encodeChoice(data, reporter);\n } else if (state.contains) {\n content = this._getUse(state.contains, parent)._encode(data, reporter);\n primitive = true;\n } else if (state.children) {\n content = state.children.map(function(child) {\n if (child._baseState.tag === 'null_')\n return child._encode(null, reporter, data);\n\n if (child._baseState.key === null)\n return reporter.error('Child should have a key');\n var prevKey = reporter.enterKey(child._baseState.key);\n\n if (typeof data !== 'object')\n return reporter.error('Child expected, but input is not object');\n\n var res = child._encode(data[child._baseState.key], reporter, data);\n reporter.leaveKey(prevKey);\n\n return res;\n }, this).filter(function(child) {\n return child;\n });\n content = this._createEncoderBuffer(content);\n } else {\n if (state.tag === 'seqof' || state.tag === 'setof') {\n // TODO(indutny): this should be thrown on DSL level\n if (!(state.args && state.args.length === 1))\n return reporter.error('Too many args for : ' + state.tag);\n\n if (!Array.isArray(data))\n return reporter.error('seqof/setof, but data is not Array');\n\n var child = this.clone();\n child._baseState.implicit = null;\n content = this._createEncoderBuffer(data.map(function(item) {\n var state = this._baseState;\n\n return this._getUse(state.args[0], data)._encode(item, reporter);\n }, child));\n } else if (state.use !== null) {\n result = this._getUse(state.use, parent)._encode(data, reporter);\n } else {\n content = this._encodePrimitive(state.tag, data);\n primitive = true;\n }\n }\n\n // Encode data itself\n var result;\n if (!state.any && state.choice === null) {\n var tag = state.implicit !== null ? state.implicit : state.tag;\n var cls = state.implicit === null ? 'universal' : 'context';\n\n if (tag === null) {\n if (state.use === null)\n reporter.error('Tag could be ommited only for .use()');\n } else {\n if (state.use === null)\n result = this._encodeComposite(tag, primitive, cls, content);\n }\n }\n\n // Wrap in explicit\n if (state.explicit !== null)\n result = this._encodeComposite(state.explicit, false, 'context', result);\n\n return result;\n};\n\nNode.prototype._encodeChoice = function encodeChoice(data, reporter) {\n var state = this._baseState;\n\n var node = state.choice[data.type];\n if (!node) {\n assert(\n false,\n data.type + ' not found in ' +\n JSON.stringify(Object.keys(state.choice)));\n }\n return node._encode(data.value, reporter);\n};\n\nNode.prototype._encodePrimitive = function encodePrimitive(tag, data) {\n var state = this._baseState;\n\n if (/str$/.test(tag))\n return this._encodeStr(data, tag);\n else if (tag === 'objid' && state.args)\n return this._encodeObjid(data, state.reverseArgs[0], state.args[1]);\n else if (tag === 'objid')\n return this._encodeObjid(data, null, null);\n else if (tag === 'gentime' || tag === 'utctime')\n return this._encodeTime(data, tag);\n else if (tag === 'null_')\n return this._encodeNull();\n else if (tag === 'int' || tag === 'enum')\n return this._encodeInt(data, state.args && state.reverseArgs[0]);\n else if (tag === 'bool')\n return this._encodeBool(data);\n else if (tag === 'objDesc')\n return this._encodeStr(data, tag);\n else\n throw new Error('Unsupported tag: ' + tag);\n};\n\nNode.prototype._isNumstr = function isNumstr(str) {\n return /^[0-9 ]*$/.test(str);\n};\n\nNode.prototype._isPrintstr = function isPrintstr(str) {\n return /^[A-Za-z0-9 '\\(\\)\\+,\\-\\.\\/:=\\?]*$/.test(str);\n};\n\n\n/***/ }),\n/* 96 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar inherits = __webpack_require__(1);\n\nfunction Reporter(options) {\n this._reporterState = {\n obj: null,\n path: [],\n options: options || {},\n errors: []\n };\n}\nexports.Reporter = Reporter;\n\nReporter.prototype.isError = function isError(obj) {\n return obj instanceof ReporterError;\n};\n\nReporter.prototype.save = function save() {\n var state = this._reporterState;\n\n return { obj: state.obj, pathLen: state.path.length };\n};\n\nReporter.prototype.restore = function restore(data) {\n var state = this._reporterState;\n\n state.obj = data.obj;\n state.path = state.path.slice(0, data.pathLen);\n};\n\nReporter.prototype.enterKey = function enterKey(key) {\n return this._reporterState.path.push(key);\n};\n\nReporter.prototype.exitKey = function exitKey(index) {\n var state = this._reporterState;\n\n state.path = state.path.slice(0, index - 1);\n};\n\nReporter.prototype.leaveKey = function leaveKey(index, key, value) {\n var state = this._reporterState;\n\n this.exitKey(index);\n if (state.obj !== null)\n state.obj[key] = value;\n};\n\nReporter.prototype.path = function path() {\n return this._reporterState.path.join('/');\n};\n\nReporter.prototype.enterObject = function enterObject() {\n var state = this._reporterState;\n\n var prev = state.obj;\n state.obj = {};\n return prev;\n};\n\nReporter.prototype.leaveObject = function leaveObject(prev) {\n var state = this._reporterState;\n\n var now = state.obj;\n state.obj = prev;\n return now;\n};\n\nReporter.prototype.error = function error(msg) {\n var err;\n var state = this._reporterState;\n\n var inherited = msg instanceof ReporterError;\n if (inherited) {\n err = msg;\n } else {\n err = new ReporterError(state.path.map(function(elem) {\n return '[' + JSON.stringify(elem) + ']';\n }).join(''), msg.message || msg, msg.stack);\n }\n\n if (!state.options.partial)\n throw err;\n\n if (!inherited)\n state.errors.push(err);\n\n return err;\n};\n\nReporter.prototype.wrapResult = function wrapResult(result) {\n var state = this._reporterState;\n if (!state.options.partial)\n return result;\n\n return {\n result: this.isError(result) ? null : result,\n errors: state.errors\n };\n};\n\nfunction ReporterError(path, msg) {\n this.path = path;\n this.rethrow(msg);\n};\ninherits(ReporterError, Error);\n\nReporterError.prototype.rethrow = function rethrow(msg) {\n this.message = msg + ' at: ' + (this.path || '(shallow)');\n if (Error.captureStackTrace)\n Error.captureStackTrace(this, ReporterError);\n\n if (!this.stack) {\n try {\n // IE only adds stack when thrown\n throw new Error(this.message);\n } catch (e) {\n this.stack = e.stack;\n }\n }\n return this;\n};\n\n\n/***/ }),\n/* 97 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar constants = __webpack_require__(47);\n\nexports.tagClass = {\n 0: 'universal',\n 1: 'application',\n 2: 'context',\n 3: 'private'\n};\nexports.tagClassByName = constants._reverse(exports.tagClass);\n\nexports.tag = {\n 0x00: 'end',\n 0x01: 'bool',\n 0x02: 'int',\n 0x03: 'bitstr',\n 0x04: 'octstr',\n 0x05: 'null_',\n 0x06: 'objid',\n 0x07: 'objDesc',\n 0x08: 'external',\n 0x09: 'real',\n 0x0a: 'enum',\n 0x0b: 'embed',\n 0x0c: 'utf8str',\n 0x0d: 'relativeOid',\n 0x10: 'seq',\n 0x11: 'set',\n 0x12: 'numstr',\n 0x13: 'printstr',\n 0x14: 't61str',\n 0x15: 'videostr',\n 0x16: 'ia5str',\n 0x17: 'utctime',\n 0x18: 'gentime',\n 0x19: 'graphstr',\n 0x1a: 'iso646str',\n 0x1b: 'genstr',\n 0x1c: 'unistr',\n 0x1d: 'charstr',\n 0x1e: 'bmpstr'\n};\nexports.tagByName = constants._reverse(exports.tag);\n\n\n/***/ }),\n/* 98 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar decoders = exports;\n\ndecoders.der = __webpack_require__(48);\ndecoders.pem = __webpack_require__(99);\n\n\n/***/ }),\n/* 99 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar inherits = __webpack_require__(1);\nvar Buffer = __webpack_require__(0).Buffer;\n\nvar DERDecoder = __webpack_require__(48);\n\nfunction PEMDecoder(entity) {\n DERDecoder.call(this, entity);\n this.enc = 'pem';\n};\ninherits(PEMDecoder, DERDecoder);\nmodule.exports = PEMDecoder;\n\nPEMDecoder.prototype.decode = function decode(data, options) {\n var lines = data.toString().split(/[\\r\\n]+/g);\n\n var label = options.label.toUpperCase();\n\n var re = /^-----(BEGIN|END) ([^-]+)-----$/;\n var start = -1;\n var end = -1;\n for (var i = 0; i < lines.length; i++) {\n var match = lines[i].match(re);\n if (match === null)\n continue;\n\n if (match[2] !== label)\n continue;\n\n if (start === -1) {\n if (match[1] !== 'BEGIN')\n break;\n start = i;\n } else {\n if (match[1] !== 'END')\n break;\n end = i;\n break;\n }\n }\n if (start === -1 || end === -1)\n throw new Error('PEM section not found for: ' + label);\n\n var base64 = lines.slice(start + 1, end).join('');\n // Remove excessive symbols\n base64.replace(/[^a-z0-9\\+\\/=]+/gi, '');\n\n var input = new Buffer(base64, 'base64');\n return DERDecoder.prototype.decode.call(this, input, options);\n};\n\n\n/***/ }),\n/* 100 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar encoders = exports;\n\nencoders.der = __webpack_require__(49);\nencoders.pem = __webpack_require__(101);\n\n\n/***/ }),\n/* 101 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar inherits = __webpack_require__(1);\n\nvar DEREncoder = __webpack_require__(49);\n\nfunction PEMEncoder(entity) {\n DEREncoder.call(this, entity);\n this.enc = 'pem';\n};\ninherits(PEMEncoder, DEREncoder);\nmodule.exports = PEMEncoder;\n\nPEMEncoder.prototype.encode = function encode(data, options) {\n var buf = DEREncoder.prototype.encode.call(this, data);\n\n var p = buf.toString('base64');\n var out = [ '-----BEGIN ' + options.label + '-----' ];\n for (var i = 0; i < p.length; i += 64)\n out.push(p.slice(i, i + 64));\n out.push('-----END ' + options.label + '-----');\n return out.join('\\n');\n};\n\n\n/***/ }),\n/* 102 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar urljoin = __webpack_require__(10);\n\nvar objectHelper = __webpack_require__(4);\nvar assert = __webpack_require__(6);\nvar responseHandler = __webpack_require__(18);\n\nfunction DBConnection(request, options) {\n this.baseOptions = options;\n this.request = request;\n}\n\n/**\n * @callback signUpCallback\n * @param {Error} [err] error returned by Auth0 with the reason why the signup failed\n * @param {Object} [result] result of the signup request\n * @param {Object} result.email user's email\n * @param {Object} result.emailVerified if the user's email was verified\n */\n\n/**\n * Creates a new user in a Auth0 Database connection\n *\n * @method signup\n * @param {Object} options\n * @param {String} options.email user email address\n * @param {String} options.password user password\n * @param {String} options.connection name of the connection where the user will be created\n * @param {Object} [options.userMetadata] additional signup attributes used for creating the user. Will be stored in `user_metadata`\n * @param {signUpCallback} cb\n * @see {@link https://auth0.com/docs/api/authentication#signup}\n */\nDBConnection.prototype.signup = function(options, cb) {\n var url;\n var body;\n var metadata;\n\n assert.check(\n options,\n { type: 'object', message: 'options parameter is not valid' },\n {\n connection: { type: 'string', message: 'connection option is required' },\n email: { type: 'string', message: 'email option is required' },\n password: { type: 'string', message: 'password option is required' }\n }\n );\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n\n url = urljoin(this.baseOptions.rootUrl, 'dbconnections', 'signup');\n\n body = objectHelper.merge(this.baseOptions, ['clientID']).with(options);\n\n metadata = body.user_metadata || body.userMetadata;\n\n body = objectHelper.blacklist(body, ['scope', 'userMetadata', 'user_metadata']);\n\n body = objectHelper.toSnakeCase(body, ['auth0Client']);\n\n if (metadata) {\n body.user_metadata = metadata;\n }\n\n return this.request.post(url).send(body).end(responseHandler(cb));\n};\n\n/**\n * @callback changePasswordCallback\n * @param {Error} [err] error returned by Auth0 with the reason why the request failed\n */\n\n/**\n * Request an email with instruction to change a user's password\n *\n * @method changePassword\n * @param {Object} options\n * @param {String} options.email address where the user will recieve the change password email. It should match the user's email in Auth0\n * @param {String} options.connection name of the connection where the user was created\n * @param {changePasswordCallback} cb\n * @see {@link https://auth0.com/docs/api/authentication#change-password}\n */\nDBConnection.prototype.changePassword = function(options, cb) {\n var url;\n var body;\n\n assert.check(\n options,\n { type: 'object', message: 'options parameter is not valid' },\n {\n connection: { type: 'string', message: 'connection option is required' },\n email: { type: 'string', message: 'email option is required' }\n }\n );\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n\n url = urljoin(this.baseOptions.rootUrl, 'dbconnections', 'change_password');\n\n body = objectHelper.merge(this.baseOptions, ['clientID']).with(options, ['email', 'connection']);\n\n body = objectHelper.toSnakeCase(body, ['auth0Client']);\n\n return this.request.post(url).send(body).end(responseHandler(cb));\n};\n\nmodule.exports = DBConnection;\n\n\n/***/ }),\n/* 103 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar urljoin = __webpack_require__(10);\n\nvar objectHelper = __webpack_require__(4);\nvar assert = __webpack_require__(6);\nvar qs = __webpack_require__(29);\nvar responseHandler = __webpack_require__(18);\n\nfunction PasswordlessAuthentication(request, options) {\n this.baseOptions = options;\n this.request = request;\n}\n\nPasswordlessAuthentication.prototype.buildVerifyUrl = function(options) {\n var params;\n var qString;\n\n /* eslint-disable */\n assert.check(\n options,\n { type: 'object', message: 'options parameter is not valid' },\n {\n connection: { type: 'string', message: 'connection option is required' },\n verificationCode: { type: 'string', message: 'verificationCode option is required' },\n phoneNumber: {\n optional: false,\n type: 'string',\n message: 'phoneNumber option is required',\n condition: function(o) {\n return !o.email;\n }\n },\n email: {\n optional: false,\n type: 'string',\n message: 'email option is required',\n condition: function(o) {\n return !o.phoneNumber;\n }\n }\n }\n );\n /* eslint-enable */\n\n params = objectHelper\n .merge(this.baseOptions, [\n 'clientID',\n 'responseType',\n 'responseMode',\n 'redirectUri',\n 'scope',\n 'audience',\n '_csrf',\n 'state',\n '_intstate',\n 'protocol',\n 'nonce'\n ])\n .with(options);\n\n // eslint-disable-next-line\n if (this.baseOptions._sendTelemetry) {\n params.auth0Client = this.request.getTelemetryData();\n }\n\n params = objectHelper.toSnakeCase(params, ['auth0Client']);\n\n qString = qs.stringify(params);\n\n return urljoin(this.baseOptions.rootUrl, 'passwordless', 'verify_redirect', '?' + qString);\n};\n\nPasswordlessAuthentication.prototype.start = function(options, cb) {\n var url;\n var body;\n\n /* eslint-disable */\n assert.check(\n options,\n { type: 'object', message: 'options parameter is not valid' },\n {\n connection: { type: 'string', message: 'connection option is required' },\n send: {\n type: 'string',\n message: 'send option is required',\n values: ['link', 'code'],\n value_message: 'send is not valid ([link, code])'\n },\n phoneNumber: {\n optional: true,\n type: 'string',\n message: 'phoneNumber option is required',\n condition: function(o) {\n return o.send === 'code' || !o.email;\n }\n },\n email: {\n optional: true,\n type: 'string',\n message: 'email option is required',\n condition: function(o) {\n return o.send === 'link' || !o.phoneNumber;\n }\n },\n authParams: { optional: true, type: 'object', message: 'authParams option is required' }\n }\n );\n /* eslint-enable */\n\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n\n url = urljoin(this.baseOptions.rootUrl, 'passwordless', 'start');\n\n body = objectHelper\n .merge(this.baseOptions, ['clientID', 'responseType', 'redirectUri', 'scope'])\n .with(options);\n\n if (body.scope) {\n body.authParams = body.authParams || {};\n body.authParams.scope = body.scope;\n }\n\n if (body.redirectUri) {\n body.authParams = body.authParams || {};\n body.authParams.redirect_uri = body.redirectUri;\n }\n\n if (body.responseType) {\n body.authParams = body.authParams || {};\n body.authParams.response_type = body.responseType;\n }\n\n delete body.redirectUri;\n delete body.responseType;\n delete body.scope;\n\n body = objectHelper.toSnakeCase(body, ['auth0Client', 'authParams']);\n\n return this.request.post(url).send(body).end(responseHandler(cb));\n};\n\nPasswordlessAuthentication.prototype.verify = function(options, cb) {\n var url;\n var cleanOption;\n\n /* eslint-disable */\n assert.check(\n options,\n { type: 'object', message: 'options parameter is not valid' },\n {\n connection: { type: 'string', message: 'connection option is required' },\n verificationCode: { type: 'string', message: 'verificationCode option is required' },\n phoneNumber: {\n optional: false,\n type: 'string',\n message: 'phoneNumber option is required',\n condition: function(o) {\n return !o.email;\n }\n },\n email: {\n optional: false,\n type: 'string',\n message: 'email option is required',\n condition: function(o) {\n return !o.phoneNumber;\n }\n }\n }\n );\n /* eslint-enable */\n\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n\n cleanOption = objectHelper.pick(options, [\n 'connection',\n 'verificationCode',\n 'phoneNumber',\n 'email',\n 'auth0Client'\n ]);\n cleanOption = objectHelper.toSnakeCase(cleanOption, ['auth0Client']);\n\n url = urljoin(this.baseOptions.rootUrl, 'passwordless', 'verify');\n\n return this.request.post(url).send(cleanOption).end(responseHandler(cb));\n};\n\nmodule.exports = PasswordlessAuthentication;\n\n\n/***/ }),\n/* 104 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar windowHandler = __webpack_require__(5);\nvar base64Url = __webpack_require__(51);\n\nfunction create(name, value, days) {\n var date;\n var expires;\n\n if (\n windowHandler.getDocument().cookie === undefined ||\n windowHandler.getDocument().cookie === null\n ) {\n throw new Error('cookie storage not available');\n }\n\n if (days) {\n var timeToExpire = days * 24 * 60 * 60 * 1000;\n date = new Date();\n date.setTime(date.getTime() + timeToExpire);\n expires = '; expires=' + date.toGMTString();\n } else {\n expires = '';\n }\n\n windowHandler.getDocument().cookie = name + '=' + base64Url.encode(value) + expires + '; path=/';\n}\n\nfunction read(name) {\n var i;\n var cookie;\n var cookies;\n var nameEQ = name + '=';\n\n if (\n windowHandler.getDocument().cookie === undefined ||\n windowHandler.getDocument().cookie === null\n ) {\n throw new Error('cookie storage not available');\n }\n\n cookies = windowHandler.getDocument().cookie.split(';');\n\n for (i = 0; i < cookies.length; i++) {\n cookie = cookies[i];\n while (cookie.charAt(0) === ' ') {\n cookie = cookie.substring(1, cookie.length);\n }\n if (cookie.indexOf(nameEQ) === 0) {\n return base64Url.decode(cookie.substring(nameEQ.length, cookie.length));\n }\n }\n\n return null;\n}\n\nfunction erase(name) {\n create(name, '', -1);\n}\n\nmodule.exports = {\n create: create,\n read: read,\n erase: erase\n};\n\n\n/***/ }),\n/* 105 */\n/***/ (function(module, exports) {\n\n/* eslint-disable no-continue */\n\nfunction get() {\n if (!Object.assign) {\n return objectAssignPolyfill;\n }\n\n return Object.assign;\n}\n\nfunction objectAssignPolyfill(target) {\n 'use strict';\n if (target === undefined || target === null) {\n throw new TypeError('Cannot convert first argument to object');\n }\n\n var to = Object(target);\n for (var i = 1; i < arguments.length; i++) {\n var nextSource = arguments[i];\n if (nextSource === undefined || nextSource === null) {\n continue;\n }\n\n var keysArray = Object.keys(Object(nextSource));\n for (var nextIndex = 0, len = keysArray.length; nextIndex < len; nextIndex++) {\n var nextKey = keysArray[nextIndex];\n var desc = Object.getOwnPropertyDescriptor(nextSource, nextKey);\n if (desc !== undefined && desc.enumerable) {\n to[nextKey] = nextSource[nextKey];\n }\n }\n }\n return to;\n}\n\nmodule.exports = {\n get: get,\n objectAssignPolyfill: objectAssignPolyfill\n};\n\n\n/***/ }),\n/* 106 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar objectHelper = __webpack_require__(4);\n\nvar tokenParams = [\n // auth0\n 'realm',\n 'audience',\n // oauth2\n 'client_id',\n 'client_secret',\n 'redirect_uri',\n 'scope',\n 'code',\n 'grant_type',\n 'username',\n 'password',\n 'refresh_token',\n 'assertion',\n 'client_assertion',\n 'client_assertion_type',\n 'code_verifier'\n];\n\nvar authorizeParams = [\n // auth0\n 'connection',\n 'connection_scope',\n 'auth0Client',\n 'owp',\n 'device',\n 'realm',\n\n 'protocol',\n '_csrf',\n '_intstate',\n 'login_ticket',\n\n // oauth2\n 'client_id',\n 'response_type',\n 'response_mode',\n 'redirect_uri',\n 'audience',\n 'scope',\n 'state',\n 'nonce',\n 'display',\n 'prompt',\n 'max_age',\n 'ui_locales',\n 'claims_locales',\n 'id_token_hint',\n 'login_hint',\n 'acr_values',\n 'claims',\n 'registration',\n 'request',\n 'request_uri',\n 'code_challenge',\n 'code_challenge_method'\n];\n\nfunction oauthAuthorizeParams(warn, params) {\n var notAllowed = objectHelper.getKeysNotIn(params, authorizeParams);\n\n if (notAllowed.length > 0) {\n warn.warning(\n 'Following parameters are not allowed on the `/authorize` endpoint: [' +\n notAllowed.join(',') +\n ']'\n );\n }\n\n return params;\n}\n\nfunction oauthTokenParams(warn, params) {\n return objectHelper.pick(params, tokenParams);\n}\n\nmodule.exports = {\n oauthTokenParams: oauthTokenParams,\n oauthAuthorizeParams: oauthAuthorizeParams\n};\n\n\n/***/ }),\n/* 107 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar version = __webpack_require__(31);\n\nfunction PluginHandler(webAuth, plugins) {\n this.plugins = plugins;\n\n for (var a = 0; a < this.plugins.length; a++) {\n if (this.plugins[a].version !== version.raw) {\n var pluginName = '';\n\n if (this.plugins[a].constructor && this.plugins[a].constructor.name) {\n pluginName = this.plugins[a].constructor.name;\n }\n\n throw new Error(\n 'Plugin ' +\n pluginName +\n ' version (' +\n this.plugins[a].version +\n ') ' +\n 'is not compatible with the SDK version (' +\n version.raw +\n ')'\n );\n }\n\n this.plugins[a].setWebAuth(webAuth);\n }\n}\n\nPluginHandler.prototype.get = function(extensibilityPoint) {\n for (var a = 0; a < this.plugins.length; a++) {\n if (this.plugins[a].supports(extensibilityPoint)) {\n return this.plugins[a].init();\n }\n }\n\n return null;\n};\n\nmodule.exports = PluginHandler;\n\n\n/***/ }),\n/* 108 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* eslint-disable no-restricted-syntax */\n/* eslint-disable guard-for-in */\nvar WinChan = __webpack_require__(205);\n\nvar windowHandler = __webpack_require__(5);\nvar objectHelper = __webpack_require__(4);\nvar qs = __webpack_require__(29);\n\nfunction PopupHandler() {\n this._current_popup = null;\n}\n\nPopupHandler.prototype.calculatePosition = function(options) {\n var width = options.width || 500;\n var height = options.height || 600;\n var _window = windowHandler.getWindow();\n\n var screenX = typeof _window.screenX !== 'undefined' ? _window.screenX : _window.screenLeft;\n var screenY = typeof _window.screenY !== 'undefined' ? _window.screenY : _window.screenTop;\n\n var outerWidth = typeof _window.outerWidth !== 'undefined'\n ? _window.outerWidth\n : _window.document.body.clientWidth;\n\n var outerHeight = typeof _window.outerHeight !== 'undefined'\n ? _window.outerHeight\n : _window.document.body.clientHeight;\n\n var left = (outerWidth - width) / 2;\n var top = (outerHeight - height) / 2;\n\n return { width: width, height: height, left: screenX + left, top: screenY + top };\n};\n\nPopupHandler.prototype.preload = function(options) {\n var _this = this;\n var _window = windowHandler.getWindow();\n var popupPosition = this.calculatePosition(options.popupOptions || {});\n var popupOptions = objectHelper.merge(popupPosition).with(options.popupOptions);\n var url = options.url || 'about:blank';\n var windowFeatures = qs.stringify(popupOptions, {\n encode: false,\n delimiter: ','\n });\n\n if (this._current_popup && !this._current_popup.closed) {\n return this._current_popup;\n }\n\n this._current_popup = _window.open(url, 'auth0_signup_popup', windowFeatures);\n\n this._current_popup.kill = function() {\n this.close();\n _this._current_popup = null;\n };\n\n return this._current_popup;\n};\n\nPopupHandler.prototype.load = function(url, relayUrl, options, cb) {\n var _this = this;\n var popupPosition = this.calculatePosition(options.popupOptions || {});\n var popupOptions = objectHelper.merge(popupPosition).with(options.popupOptions);\n\n var winchanOptions = objectHelper\n .merge({\n url: url,\n relay_url: relayUrl,\n window_features: qs.stringify(popupOptions, {\n delimiter: ',',\n encode: false\n }),\n popup: this._current_popup\n })\n .with(options);\n\n var popup = WinChan.open(winchanOptions, function(err, data) {\n _this._current_popup = null;\n return cb(err, data);\n });\n\n popup.focus();\n\n return popup;\n};\n\nmodule.exports = PopupHandler;\n\n\n/***/ }),\n/* 109 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar windowHelper = __webpack_require__(5);\n\nfunction randomString(length) {\n // eslint-disable-next-line\n var bytes = new Uint8Array(length);\n var result = [];\n var charset = '0123456789ABCDEFGHIJKLMNOPQRSTUVXYZabcdefghijklmnopqrstuvwxyz-._~';\n\n var cryptoObj = windowHelper.getWindow().crypto || windowHelper.getWindow().msCrypto;\n if (!cryptoObj) {\n return null;\n }\n\n var random = cryptoObj.getRandomValues(bytes);\n\n for (var a = 0; a < random.length; a++) {\n result.push(charset[random[a] % charset.length]);\n }\n\n return result.join('');\n}\n\nmodule.exports = {\n randomString: randomString\n};\n\n\n/***/ }),\n/* 110 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar cookies = __webpack_require__(104);\n\nfunction CookieStorage() {}\n\nCookieStorage.prototype.getItem = function(key) {\n return cookies.read(key);\n};\n\nCookieStorage.prototype.removeItem = function(key) {\n cookies.erase(key);\n};\n\nCookieStorage.prototype.setItem = function(key, value) {\n cookies.create(key, value, 1);\n};\n\nmodule.exports = CookieStorage;\n\n\n/***/ }),\n/* 111 */\n/***/ (function(module, exports) {\n\nfunction DummyStorage() {}\n\nDummyStorage.prototype.getItem = function() {\n return null;\n};\n\nDummyStorage.prototype.removeItem = function() {};\n\nDummyStorage.prototype.setItem = function() {};\n\nmodule.exports = DummyStorage;\n\n\n/***/ }),\n/* 112 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar windowHandler = __webpack_require__(5);\nvar DummyStorage = __webpack_require__(111);\nvar CookieStorage = __webpack_require__(110);\nvar Warn = __webpack_require__(22);\n\nfunction StorageHandler() {\n this.warn = new Warn({});\n this.storage = windowHandler.getWindow().localStorage || new CookieStorage();\n}\n\nStorageHandler.prototype.failover = function() {\n if (this.storage instanceof DummyStorage) {\n this.warn.warning('DummyStorage: ignore failover');\n return;\n } else if (this.storage instanceof CookieStorage) {\n this.warn.warning('CookieStorage: failing over DummyStorage');\n this.storage = new DummyStorage();\n } else {\n this.warn.warning('LocalStorage: failing over CookieStorage');\n this.storage = new CookieStorage();\n }\n};\n\nStorageHandler.prototype.getItem = function(key) {\n try {\n return this.storage.getItem(key);\n } catch (e) {\n this.warn.warning(e);\n this.failover();\n return this.getItem(key);\n }\n};\n\nStorageHandler.prototype.removeItem = function(key) {\n try {\n return this.storage.removeItem(key);\n } catch (e) {\n this.warn.warning(e);\n this.failover();\n return this.removeItem(key);\n }\n};\n\nStorageHandler.prototype.setItem = function(key, value) {\n try {\n return this.storage.setItem(key, value);\n } catch (e) {\n this.warn.warning(e);\n this.failover();\n return this.setItem(key, value);\n }\n};\n\nmodule.exports = StorageHandler;\n\n\n/***/ }),\n/* 113 */\n/***/ (function(module, exports) {\n\n// given a URL, extract the origin. Taken from: https://github.com/firebase/firebase-simple-login/blob/d2cb95b9f812d8488bdbfba51c3a7c153ba1a074/js/src/simple-login/transports/WinChan.js#L25-L30\nfunction extractOrigin(url) {\n if (!/^https?:\\/\\//.test(url)) url = window.location.href;\n var m = /^(https?:\\/\\/[-_a-zA-Z.0-9:]+)/.exec(url);\n if (m) return m[1];\n return url;\n}\n\nmodule.exports = {\n extractOrigin: extractOrigin\n};\n\n\n/***/ }),\n/* 114 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar urljoin = __webpack_require__(10);\n\nvar RequestBuilder = __webpack_require__(30);\nvar assert = __webpack_require__(6);\nvar responseHandler = __webpack_require__(18);\n\n/**\n * Auth0 Management API Client (methods allowed to be called from the browser only)\n * @constructor\n * @param {Object} options\n * @param {Object} options.domain your Auth0 acount domain\n * @param {Object} options.token a valid API token\n */\nfunction Management(options) {\n /* eslint-disable */\n assert.check(\n options,\n { type: 'object', message: 'options parameter is not valid' },\n {\n domain: { type: 'string', message: 'domain option is required' },\n token: { type: 'string', message: 'token option is required' },\n _sendTelemetry: {\n optional: true,\n type: 'boolean',\n message: '_sendTelemetry option is not valid'\n },\n _telemetryInfo: {\n optional: true,\n type: 'object',\n message: '_telemetryInfo option is not valid'\n }\n }\n );\n /* eslint-enable */\n\n this.baseOptions = options;\n\n this.baseOptions.headers = { Authorization: 'Bearer ' + this.baseOptions.token };\n\n this.request = new RequestBuilder(this.baseOptions);\n this.baseOptions.rootUrl = urljoin('https://' + this.baseOptions.domain, 'api', 'v2');\n}\n\n/**\n * @callback userCallback\n * @param {Error} [err] failure reason for the failed request to Management API\n * @param {Object} [result] user profile\n */\n\n/**\n * Returns the user profile\n *\n * @method getUser\n * @param {String} userId identifier of the user to retrieve\n * @param {userCallback} cb\n * @see https://auth0.com/docs/api/management/v2#!/Users/get_users_by_id\n */\nManagement.prototype.getUser = function(userId, cb) {\n var url;\n\n assert.check(userId, { type: 'string', message: 'userId parameter is not valid' });\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n\n url = urljoin(this.baseOptions.rootUrl, 'users', userId);\n\n return this.request.get(url).end(responseHandler(cb, { ignoreCasing: true }));\n};\n\n/**\n * Updates the user metdata. It will patch the user metdata with the attributes sent.\n *\n *\n * @method patchUserMetadata\n * @param {String} userId\n * @param {Object} userMetadata\n * @param {userCallback} cb\n * @see {@link https://auth0.com/docs/api/management/v2#!/Users/patch_users_by_id}\n */\nManagement.prototype.patchUserMetadata = function(userId, userMetadata, cb) {\n var url;\n\n assert.check(userId, { type: 'string', message: 'userId parameter is not valid' });\n assert.check(userMetadata, { type: 'object', message: 'userMetadata parameter is not valid' });\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n\n url = urljoin(this.baseOptions.rootUrl, 'users', userId);\n\n return this.request\n .patch(url)\n .send({ user_metadata: userMetadata })\n .end(responseHandler(cb, { ignoreCasing: true }));\n};\n\n/**\n * Link two users\n *\n * @method linkUser\n * @param {String} userId\n * @param {String} secondaryUserToken\n * @param {userCallback} cb\n * @see {@link https://auth0.com/docs/api/management/v2#!/Users/post_identities}\n */\nManagement.prototype.linkUser = function(userId, secondaryUserToken, cb) {\n var url;\n /* eslint-disable */\n assert.check(userId, { type: 'string', message: 'userId parameter is not valid' });\n assert.check(secondaryUserToken, {\n type: 'string',\n message: 'secondaryUserToken parameter is not valid'\n });\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n /* eslint-enable */\n\n url = urljoin(this.baseOptions.rootUrl, 'users', userId, 'identities');\n\n return this.request\n .post(url)\n .send({ link_with: secondaryUserToken })\n .end(responseHandler(cb, { ignoreCasing: true }));\n};\n\nmodule.exports = Management;\n\n\n/***/ }),\n/* 115 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar IdTokenVerifier = __webpack_require__(167);\n\nvar assert = __webpack_require__(6);\nvar error = __webpack_require__(52);\nvar qs = __webpack_require__(29);\nvar PluginHandler = __webpack_require__(107);\nvar windowHelper = __webpack_require__(5);\nvar objectHelper = __webpack_require__(4);\nvar ssodata = __webpack_require__(54);\nvar TransactionManager = __webpack_require__(56);\nvar Authentication = __webpack_require__(50);\nvar Redirect = __webpack_require__(117);\nvar Popup = __webpack_require__(116);\nvar SilentAuthenticationHandler = __webpack_require__(118);\nvar CrossOriginAuthentication = __webpack_require__(32);\nvar WebMessageHandler = __webpack_require__(57);\n\n/**\n * Handles all the browser's AuthN/AuthZ flows\n * @constructor\n * @param {Object} options\n * @param {String} options.domain your Auth0 domain\n * @param {String} options.clientID your Auth0 client identifier obtained when creating the client in the Auth0 Dashboard\n * @param {String} [options.redirectUri] url that the Auth0 will redirect after Auth with the Authorization Response\n * @param {String} [options.responseType] type of the response used by OAuth 2.0 flow. It can be any space separated list of the values `code`, `token`, `id_token`. {@link https://openid.net/specs/oauth-v2-multiple-response-types-1_0}\n * @param {String} [options.responseMode] how the Auth response is encoded and redirected back to the client. Supported values are `query`, `fragment` and `form_post`. The `query` value is only supported when `responseType` is `code`. {@link https://openid.net/specs/oauth-v2-multiple-response-types-1_0.html#ResponseModes}\n * @param {String} [options.scope] scopes to be requested during Auth. e.g. `openid email`\n * @param {String} [options.audience] identifier of the resource server who will consume the access token issued after Auth\n * @param {Array} [options.plugins]\n * @param {Number} [options._timesToRetryFailedRequests] Number of times to retry a failed request, according to {@link https://github.com/visionmedia/superagent/blob/master/lib/should-retry.js}\n * @see {@link https://auth0.com/docs/api/authentication}\n */\nfunction WebAuth(options) {\n /* eslint-disable */\n assert.check(\n options,\n { type: 'object', message: 'options parameter is not valid' },\n {\n domain: { type: 'string', message: 'domain option is required' },\n clientID: { type: 'string', message: 'clientID option is required' },\n responseType: { optional: true, type: 'string', message: 'responseType is not valid' },\n responseMode: { optional: true, type: 'string', message: 'responseMode is not valid' },\n redirectUri: { optional: true, type: 'string', message: 'redirectUri is not valid' },\n scope: { optional: true, type: 'string', message: 'scope is not valid' },\n audience: { optional: true, type: 'string', message: 'audience is not valid' },\n popupOrigin: { optional: true, type: 'string', message: 'popupOrigin is not valid' },\n leeway: { optional: true, type: 'number', message: 'leeway is not valid' },\n plugins: { optional: true, type: 'array', message: 'plugins is not valid' },\n _disableDeprecationWarnings: {\n optional: true,\n type: 'boolean',\n message: '_disableDeprecationWarnings option is not valid'\n },\n _sendTelemetry: {\n optional: true,\n type: 'boolean',\n message: '_sendTelemetry option is not valid'\n },\n _telemetryInfo: {\n optional: true,\n type: 'object',\n message: '_telemetryInfo option is not valid'\n },\n _timesToRetryFailedRequests: {\n optional: true,\n type: 'number',\n message: '_timesToRetryFailedRequests option is not valid'\n }\n }\n );\n\n if (options.overrides) {\n assert.check(\n options.overrides,\n { type: 'object', message: 'overrides option is not valid' },\n {\n __tenant: { type: 'string', message: '__tenant option is required' },\n __token_issuer: { type: 'string', message: '__token_issuer option is required' }\n }\n );\n }\n /* eslint-enable */\n\n this.baseOptions = options;\n this.baseOptions.plugins = new PluginHandler(this, this.baseOptions.plugins || []);\n\n this.baseOptions._sendTelemetry = this.baseOptions._sendTelemetry === false\n ? this.baseOptions._sendTelemetry\n : true;\n\n this.baseOptions._timesToRetryFailedRequests = options._timesToRetryFailedRequests\n ? parseInt(options._timesToRetryFailedRequests, 0)\n : 0;\n\n this.baseOptions.tenant =\n (this.baseOptions.overrides && this.baseOptions.overrides.__tenant) ||\n this.baseOptions.domain.split('.')[0];\n\n this.baseOptions.token_issuer =\n (this.baseOptions.overrides && this.baseOptions.overrides.__token_issuer) ||\n 'https://' + this.baseOptions.domain + '/';\n\n this.transactionManager = new TransactionManager(this.baseOptions.transaction);\n\n this.client = new Authentication(this, this.baseOptions);\n this.redirect = new Redirect(this, this.baseOptions);\n this.popup = new Popup(this, this.baseOptions);\n this.crossOriginAuthentication = new CrossOriginAuthentication(this, this.baseOptions);\n this.webMessageHandler = new WebMessageHandler(this);\n}\n\n/**\n * Parse the url hash and extract the Auth response from a Auth flow started with {@link authorize}\n *\n * Only validates id_tokens signed by Auth0 using the RS256 algorithm using the public key exposed\n * by the `/.well-known/jwks.json` endpoint of your account.\n * Tokens signed with other algorithms, e.g. HS256 will not be accepted.\n *\n * @method parseHash\n * @param {Object} options\n * @param {String} options.hash the url hash. If not provided it will extract from window.location.hash\n * @param {String} [options.state] value originally sent in `state` parameter to {@link authorize} to mitigate XSRF\n * @param {String} [options.nonce] value originally sent in `nonce` parameter to {@link authorize} to prevent replay attacks\n * @param {authorizeCallback} cb\n */\nWebAuth.prototype.parseHash = function(options, cb) {\n var parsedQs;\n var err;\n\n if (!cb && typeof options === 'function') {\n cb = options;\n options = {};\n } else {\n options = options || {};\n }\n\n var _window = windowHelper.getWindow();\n\n var hashStr = options.hash === undefined ? _window.location.hash : options.hash;\n hashStr = hashStr.replace(/^#?\\/?/, '');\n\n parsedQs = qs.parse(hashStr);\n\n if (parsedQs.hasOwnProperty('error')) {\n err = error.buildResponse(parsedQs.error, parsedQs.error_description);\n\n if (parsedQs.state) {\n err.state = parsedQs.state;\n }\n\n return cb(err);\n }\n\n if (\n !parsedQs.hasOwnProperty('access_token') &&\n !parsedQs.hasOwnProperty('id_token') &&\n !parsedQs.hasOwnProperty('refresh_token')\n ) {\n return cb(null, null);\n }\n return this.validateAuthenticationResponse(options, parsedQs, cb);\n};\n\n/**\n * Validates an Auth response from a Auth flow started with {@link authorize}\n *\n * Only validates id_tokens signed by Auth0 using the RS256 algorithm using the public key exposed\n * by the `/.well-known/jwks.json` endpoint of your account.\n * Tokens signed with other algorithms, e.g. HS256 will not be accepted.\n *\n * @method validateAuthenticationResponse\n * @param {Object} options\n * @param {String} options.hash the url hash. If not provided it will extract from window.location.hash\n * @param {String} [options.state] value originally sent in `state` parameter to {@link authorize} to mitigate XSRF\n * @param {String} [options.nonce] value originally sent in `nonce` parameter to {@link authorize} to prevent replay attacks\n * @param {authorizeCallback} cb\n */\nWebAuth.prototype.validateAuthenticationResponse = function(options, parsedHash, cb) {\n var _this = this;\n var state = parsedHash.state;\n var transaction = this.transactionManager.getStoredTransaction(state);\n var transactionState = options.state || (transaction && transaction.state) || null;\n var transactionStateMatchesState = transactionState === state;\n if (state && !transactionStateMatchesState) {\n return cb({\n error: 'invalid_token',\n errorDescription: '`state` does not match.'\n });\n }\n var transactionNonce = options.nonce || (transaction && transaction.nonce) || null;\n\n var appState = options.state || (transaction && transaction.appState) || null;\n\n var callback = function(err, payload) {\n if (err) {\n return cb(err);\n }\n if (transaction && transaction.lastUsedConnection) {\n var sub;\n if (payload) {\n sub = payload.sub;\n }\n ssodata.set(transaction.lastUsedConnection, sub);\n }\n return cb(null, buildParseHashResponse(parsedHash, appState, payload));\n };\n\n if (!parsedHash.id_token) {\n return callback(null, null);\n }\n return this.validateToken(parsedHash.id_token, transactionNonce, function(\n validationError,\n payload\n ) {\n if (!validationError) {\n return callback(null, payload);\n }\n if (validationError.error !== 'invalid_token') {\n return callback(validationError);\n }\n // if it's an invalid_token error, decode the token\n var decodedToken = new IdTokenVerifier().decode(parsedHash.id_token);\n // if the alg is not HS256, return the raw error\n if (decodedToken.header.alg !== 'HS256') {\n return callback(validationError);\n }\n // if the alg is HS256, use the /userinfo endpoint to build the payload\n return _this.client.userInfo(parsedHash.access_token, function(errUserInfo, profile) {\n // if the /userinfo request fails, use the validationError instead\n if (errUserInfo) {\n return callback(validationError);\n }\n return callback(null, profile);\n });\n });\n};\n\nfunction buildParseHashResponse(qsParams, appState, token) {\n return {\n accessToken: qsParams.access_token || null,\n idToken: qsParams.id_token || null,\n idTokenPayload: token || null,\n appState: appState || null,\n refreshToken: qsParams.refresh_token || null,\n state: qsParams.state || null,\n expiresIn: qsParams.expires_in ? parseInt(qsParams.expires_in, 10) : null,\n tokenType: qsParams.token_type || null,\n scope: qsParams.scope || null\n };\n}\n\n/**\n * @callback validateTokenCallback\n * @param {Error} [err] error returned by while validating the token\n * @param {Object} [payload] claims stored in the token\n */\n\n/**\n * Decodes the a JWT and verifies its nonce value\n *\n * @method validateToken\n * @private\n * @param {String} token\n * @param {String} nonce\n * @param {validateTokenCallback} cb\n */\nWebAuth.prototype.validateToken = function(token, nonce, cb) {\n var verifier = new IdTokenVerifier({\n issuer: this.baseOptions.token_issuer,\n audience: this.baseOptions.clientID,\n leeway: this.baseOptions.leeway || 0,\n __disableExpirationCheck: this.baseOptions.__disableExpirationCheck\n });\n\n verifier.verify(token, nonce, function(err, payload) {\n if (err) {\n return cb(error.invalidJwt(err.message));\n }\n\n cb(null, payload);\n });\n};\n\n/**\n * Executes a silent authentication transaction under the hood in order to fetch a new tokens for the current session.\n * This method requires that all Auth is performed with {@link authorize}\n * Watch out! If you're not using the hosted login page to do social logins, you have to use your own [social connection keys](https://manage.auth0.com/#/connections/social). If you use Auth0's dev keys, you'll always get `login_required` as an error when calling this method.\n *\n * @method renewAuth\n * @param {Object} options\n * @param {String} [options.domain] your Auth0 domain\n * @param {String} [options.clientID] your Auth0 client identifier obtained when creating the client in the Auth0 Dashboard\n * @param {String} [options.redirectUri] url that the Auth0 will redirect after Auth with the Authorization Response\n * @param {String} [options.responseType] type of the response used by OAuth 2.0 flow. It can be any space separated list of the values `code`, `token`, `id_token`. {@link https://openid.net/specs/oauth-v2-multiple-response-types-1_0}\n * @param {String} [options.responseMode] how the Auth response is encoded and redirected back to the client. Supported values are `query`, `fragment` and `form_post`. The `query` value is only supported when `responseType` is `code`. {@link https://openid.net/specs/oauth-v2-multiple-response-types-1_0.html#ResponseModes}\n * @param {String} [options.state] value used to mitigate XSRF attacks. {@link https://auth0.com/docs/protocols/oauth2/oauth-state}\n * @param {String} [options.nonce] value used to mitigate replay attacks when using Implicit Grant. {@link https://auth0.com/docs/api-auth/tutorials/nonce}\n * @param {String} [options.scope] scopes to be requested during Auth. e.g. `openid email`\n * @param {String} [options.audience] identifier of the resource server who will consume the access token issued after Auth\n * @param {String} [options.postMessageDataType] identifier data type to look for in postMessage event data, where events are initiated from silent callback urls, before accepting a message event is the event expected. A value of false means any postMessage event will trigger a callback.\n * @param {String} [options.postMessageOrigin] origin of redirectUri to expect postMessage response from. Defaults to the origin of the receiving window. Only used if usePostMessage is truthy.\n * @param {String} [options.timeout] value in milliseconds used to timeout when the `/authorize` call is failing as part of the silent authentication with postmessage enabled due to a configuration.\n * @param {Boolean} [options.usePostMessage] use postMessage to comunicate between the silent callback and the SPA. When false the SDK will attempt to parse the url hash should ignore the url hash and no extra behaviour is needed\n * @see {@link https://auth0.com/docs/api/authentication#authorize-client}\n */\nWebAuth.prototype.renewAuth = function(options, cb) {\n var handler;\n var usePostMessage = !!options.usePostMessage;\n var postMessageDataType = options.postMessageDataType || false;\n var postMessageOrigin = options.postMessageOrigin || windowHelper.getWindow().origin;\n var timeout = options.timeout;\n var _this = this;\n\n var params = objectHelper\n .merge(this.baseOptions, [\n 'clientID',\n 'redirectUri',\n 'responseType',\n 'scope',\n 'audience',\n '_csrf',\n 'state',\n '_intstate',\n 'nonce'\n ])\n .with(options);\n\n params.responseType = params.responseType || 'token';\n params.responseMode = params.responseMode || 'fragment';\n params = this.transactionManager.process(params);\n\n assert.check(params, { type: 'object', message: 'options parameter is not valid' });\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n\n params.prompt = 'none';\n\n params = objectHelper.blacklist(params, [\n 'usePostMessage',\n 'tenant',\n 'postMessageDataType',\n 'postMessageOrigin'\n ]);\n\n handler = SilentAuthenticationHandler.create({\n authenticationUrl: this.client.buildAuthorizeUrl(params),\n postMessageDataType: postMessageDataType,\n postMessageOrigin: postMessageOrigin,\n timeout: timeout\n });\n\n handler.login(usePostMessage, function(err, hash) {\n if (typeof hash === 'object') {\n // hash was already parsed, so we just return it.\n // it's here to be backwards compatible and should be removed in the next major version.\n return cb(err, hash);\n }\n _this.parseHash({ hash: hash }, cb);\n });\n};\n\n/**\n * Renews an existing session on Auth0's servers using `response_mode=web_message`\n *\n * @method checkSession\n * @param {Object} options\n * @param {String} [options.domain] your Auth0 domain\n * @param {String} [options.clientID] your Auth0 client identifier obtained when creating the client in the Auth0 Dashboard\n * @param {String} [options.responseType] type of the response used by OAuth 2.0 flow. It can be any space separated list of the values `code`, `token`, `id_token`. {@link https://openid.net/specs/oauth-v2-multiple-response-types-1_0}\n * @param {String} [options.state] value used to mitigate XSRF attacks. {@link https://auth0.com/docs/protocols/oauth2/oauth-state}\n * @param {String} [options.nonce] value used to mitigate replay attacks when using Implicit Grant. {@link https://auth0.com/docs/api-auth/tutorials/nonce}\n * @param {String} [options.scope] scopes to be requested during Auth. e.g. `openid email`\n * @param {String} [options.audience] identifier of the resource server who will consume the access token issued after Auth\n * @param {String} [options.timeout] value in milliseconds used to timeout when the `/authorize` call is failing as part of the silent authentication with postmessage enabled due to a configuration.\n */\nWebAuth.prototype.checkSession = function(options, cb) {\n var params = objectHelper\n .merge(this.baseOptions, [\n 'clientID',\n 'responseType',\n 'scope',\n 'audience',\n '_csrf',\n 'state',\n '_intstate',\n 'nonce'\n ])\n .with(options);\n\n if (!options.nonce) {\n params = this.transactionManager.process(params);\n }\n\n assert.check(params, { type: 'object', message: 'options parameter is not valid' });\n assert.check(cb, { type: 'function', message: 'cb parameter is not valid' });\n\n params = objectHelper.blacklist(params, ['usePostMessage', 'tenant', 'postMessageDataType']);\n this.webMessageHandler.run(params, cb);\n};\n\n/**\n * Request an email with instruction to change a user's password\n *\n * @method changePassword\n * @param {Object} options\n * @param {String} options.email address where the user will recieve the change password email. It should match the user's email in Auth0\n * @param {String} options.connection name of the connection where the user was created\n * @param {changePasswordCallback} cb\n * @see {@link https://auth0.com/docs/api/authentication#change-password}\n */\nWebAuth.prototype.changePassword = function(options, cb) {\n return this.client.dbConnection.changePassword(options, cb);\n};\n\n/**\n * Starts a passwordless authentication transaction.\n *\n * @method passwordlessStart\n * @param {Object} options\n * @param {String} options.send what will be sent via email which could be `link` or `code`. For SMS `code` is the only one valud\n * @param {String} [options.phoneNumber] phone number where to send the `code`. This parameter is mutually exclusive with `email`\n * @param {String} [options.email] email where to send the `code` or `link`. This parameter is mutually exclusive with `phoneNumber`\n * @param {String} options.connection name of the passwordless connection\n * @param {Object} [options.authParams] additional Auth parameters when using `link`\n * @param {Function} cb\n * @see {@link https://auth0.com/docs/api/authentication#passwordless}\n */\nWebAuth.prototype.passwordlessStart = function(options, cb) {\n var authParams = objectHelper\n .merge(this.baseOptions, [\n 'responseType',\n 'responseMode',\n 'redirectUri',\n 'scope',\n 'audience',\n '_csrf',\n 'state',\n '_intstate',\n 'nonce'\n ])\n .with(options.authParams);\n\n options.authParams = this.transactionManager.process(authParams);\n return this.client.passwordless.start(options, cb);\n};\n\n/**\n * Creates a new user in a Auth0 Database connection\n *\n * @method signup\n * @param {Object} options\n * @param {String} options.email user email address\n * @param {String} options.password user password\n * @param {String} options.connection name of the connection where the user will be created\n * @param {signUpCallback} cb\n * @see {@link https://auth0.com/docs/api/authentication#signup}\n */\nWebAuth.prototype.signup = function(options, cb) {\n return this.client.dbConnection.signup(options, cb);\n};\n\n/**\n * Redirects to the hosted login page (`/authorize`) in order to start a new authN/authZ transaction.\n * After that, you'll have to use the {@link parseHash} function at the specified `redirectUri`.\n *\n * @method authorize\n * @param {Object} options\n * @param {String} [options.domain] your Auth0 domain\n * @param {String} [options.clientID] your Auth0 client identifier obtained when creating the client in the Auth0 Dashboard\n * @param {String} options.redirectUri url that the Auth0 will redirect after Auth with the Authorization Response\n * @param {String} options.responseType type of the response used by OAuth 2.0 flow. It can be any space separated list of the values `code`, `token`, `id_token`. {@link https://openid.net/specs/oauth-v2-multiple-response-types-1_0}\n * @param {String} [options.responseMode] how the Auth response is encoded and redirected back to the client. Supported values are `query`, `fragment` and `form_post`. The `query` value is only supported when `responseType` is `code`. {@link https://openid.net/specs/oauth-v2-multiple-response-types-1_0.html#ResponseModes}\n * @param {String} [options.state] value used to mitigate XSRF attacks. {@link https://auth0.com/docs/protocols/oauth2/oauth-state}\n * @param {String} [options.nonce] value used to mitigate replay attacks when using Implicit Grant. {@link https://auth0.com/docs/api-auth/tutorials/nonce}\n * @param {String} [options.scope] scopes to be requested during Auth. e.g. `openid email`\n * @param {String} [options.audience] identifier of the resource server who will consume the access token issued after Auth\n * @see {@link https://auth0.com/docs/api/authentication#authorize-client}\n */\nWebAuth.prototype.authorize = function(options) {\n var params = objectHelper\n .merge(this.baseOptions, [\n 'clientID',\n 'responseType',\n 'responseMode',\n 'redirectUri',\n 'scope',\n 'audience',\n '_csrf',\n 'state',\n '_intstate',\n 'nonce'\n ])\n .with(options);\n\n assert.check(\n params,\n { type: 'object', message: 'options parameter is not valid' },\n {\n responseType: { type: 'string', message: 'responseType option is required' }\n }\n );\n\n params = this.transactionManager.process(params);\n params.scope = params.scope || 'openid profile email';\n\n windowHelper.redirect(this.client.buildAuthorizeUrl(params));\n};\n\n/**\n * Signs up a new user, automatically logs the user in after the signup and returns the user token.\n * The login will be done using /oauth/token with password-realm grant type.\n *\n * @method signupAndAuthorize\n * @param {Object} options\n * @param {String} options.email user email address\n * @param {String} options.password user password\n * @param {String} options.connection name of the connection where the user will be created\n * @param {tokenCallback} cb\n * @see {@link https://auth0.com/docs/api/authentication#signup}\n * @see {@link https://auth0.com/docs/api-auth/grant/password}\n */\nWebAuth.prototype.signupAndAuthorize = function(options, cb) {\n var _this = this;\n\n return this.client.dbConnection.signup(\n objectHelper.blacklist(options, ['popupHandler']),\n function(err) {\n if (err) {\n return cb(err);\n }\n options.realm = options.connection;\n if (!options.username) {\n options.username = options.email;\n }\n _this.client.login(options, cb);\n }\n );\n};\n\n/**\n * @callback crossOriginLoginCallback\n * @param {Error} [err] Authentication error returned by Auth0 with the reason why the request failed\n */\n\n/**\n * Logs in the user with username and password using the cross origin authentication (/co/authenticate) flow. You can use either `username` or `email` to identify the user, but `username` will take precedence over `email`.\n * Some browsers might not be able to successfully authenticate if 3rd party cookies are disabled in your browser. [See here for more information.]{@link https://auth0.com/docs/cross-origin-authentication}.\n * After the /co/authenticate call, you'll have to use the {@link parseHash} function at the `redirectUri` specified in the constructor.\n *\n * @method login\n * @param {Object} options options used in the {@link authorize} call after the login_ticket is acquired\n * @param {String} [options.username] Username (mutually exclusive with email)\n * @param {String} [options.email] Email (mutually exclusive with username)\n * @param {String} options.password Password\n * @param {String} [options.realm] Realm used to authenticate the user, it can be a realm name or a database connection name\n * @param {crossOriginLoginCallback} cb Callback function called only when an authentication error, like invalid username or password, occurs. For other types of errors, there will be a redirect to the `redirectUri`.\n */\nWebAuth.prototype.login = function(options, cb) {\n this.crossOriginAuthentication.login(options, cb);\n};\n\n/**\n * Logs in the user by verifying the verification code (OTP) using the cross origin authentication (/co/authenticate) flow. You can use either `phoneNumber` or `email` to identify the user.\n * This only works when 3rd party cookies are enabled in the browser. After the /co/authenticate call, you'll have to use the {@link parseHash} function at the `redirectUri` specified in the constructor.\n *\n * @method login\n * @param {Object} options options used in the {@link authorize} call after the login_ticket is acquired\n * @param {String} [options.phoneNumber] Phone Number (mutually exclusive with email)\n * @param {String} [options.email] Email (mutually exclusive with username)\n * @param {String} options.verificationCode Verification Code (OTP)\n * @param {String} options.connection Passwordless connection to use. It can either be 'sms' or 'email'.\n * @param {crossOriginLoginCallback} cb Callback function called only when an authentication error, like invalid username or password, occurs. For other types of errors, there will be a redirect to the `redirectUri`.\n */\nWebAuth.prototype.passwordlessLogin = function(options, cb) {\n var loginOptions = objectHelper.extend(\n {\n credentialType: 'http://auth0.com/oauth/grant-type/passwordless/otp',\n realm: options.connection,\n username: options.email || options.phoneNumber,\n otp: options.verificationCode\n },\n objectHelper.blacklist(options, ['connection', 'email', 'phoneNumber', 'verificationCode'])\n );\n this.crossOriginAuthentication.login(loginOptions, cb);\n};\n\n/**\n * Runs the callback code for the cross origin authentication call. This method is meant to be called by the cross origin authentication callback url.\n *\n * @method crossOriginAuthenticationCallback\n * @deprecated Use {@link crossOriginVerification} instead.\n */\nWebAuth.prototype.crossOriginAuthenticationCallback = function() {\n this.crossOriginVerification();\n};\n\n/**\n * Runs the callback code for the cross origin authentication call. This method is meant to be called by the cross origin authentication callback url.\n *\n * @method crossOriginVerification\n */\nWebAuth.prototype.crossOriginVerification = function() {\n this.crossOriginAuthentication.callback();\n};\n\n/**\n * Redirects to the auth0 logout endpoint\n *\n * If you want to navigate the user to a specific URL after the logout, set that URL at the returnTo parameter. The URL should be included in any the appropriate Allowed Logout URLs list:\n *\n * - If the client_id parameter is included, the returnTo URL must be listed in the Allowed Logout URLs set at the client level (see Setting Allowed Logout URLs at the App Level).\n * - If the client_id parameter is NOT included, the returnTo URL must be listed in the Allowed Logout URLs set at the account level (see Setting Allowed Logout URLs at the Account Level).\n *\n * @method logout\n * @param {Object} options\n * @param {String} [options.clientID] identifier of your client\n * @param {String} [options.returnTo] URL to be redirected after the logout\n * @param {Boolean} [options.federated] tells Auth0 if it should logout the user also from the IdP.\n * @see {@link https://auth0.com/docs/api/authentication#logout}\n */\nWebAuth.prototype.logout = function(options) {\n windowHelper.redirect(this.client.buildLogoutUrl(options));\n};\n\n/**\n * Verifies the passwordless TOTP and redirects to finish the passwordless transaction\n *\n * @method passwordlessVerify\n * @param {Object} options\n * @param {String} options.type `sms` or `email`\n * @param {String} options.phoneNumber only if type = sms\n * @param {String} options.email only if type = email\n * @param {String} options.connection the connection name\n * @param {String} options.verificationCode the TOTP code\n * @param {Function} cb\n */\nWebAuth.prototype.passwordlessVerify = function(options, cb) {\n var _this = this;\n var params = objectHelper\n .merge(this.baseOptions, [\n 'clientID',\n 'responseType',\n 'responseMode',\n 'redirectUri',\n 'scope',\n 'audience',\n '_csrf',\n 'state',\n '_intstate',\n 'nonce'\n ])\n .with(options);\n\n assert.check(\n params,\n { type: 'object', message: 'options parameter is not valid' },\n {\n responseType: { type: 'string', message: 'responseType option is required' }\n }\n );\n\n params = this.transactionManager.process(params);\n return this.client.passwordless.verify(params, function(err) {\n if (err) {\n return cb(err);\n }\n return windowHelper.redirect(_this.client.passwordless.buildVerifyUrl(params));\n });\n};\n\nmodule.exports = WebAuth;\n\n\n/***/ }),\n/* 116 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar urljoin = __webpack_require__(10);\n\nvar urlHelper = __webpack_require__(113);\nvar assert = __webpack_require__(6);\nvar responseHandler = __webpack_require__(18);\nvar PopupHandler = __webpack_require__(108);\nvar objectHelper = __webpack_require__(4);\nvar windowHelper = __webpack_require__(5);\nvar Warn = __webpack_require__(22);\nvar TransactionManager = __webpack_require__(56);\nvar CrossOriginAuthentication = __webpack_require__(32);\n\nfunction Popup(webAuth, options) {\n this.baseOptions = options;\n this.baseOptions.popupOrigin = options.popupOrigin;\n this.client = webAuth.client;\n this.webAuth = webAuth;\n\n this.transactionManager = new TransactionManager(this.baseOptions.transaction);\n this.crossOriginAuthentication = new CrossOriginAuthentication(webAuth, this.baseOptions);\n this.warn = new Warn({\n disableWarnings: !!options._disableDeprecationWarnings\n });\n}\n\n/**\n * Returns a new instance of the popup handler\n *\n * @method buildPopupHandler\n * @private\n */\nPopup.prototype.buildPopupHandler = function() {\n var pluginHandler = this.baseOptions.plugins.get('popup.getPopupHandler');\n\n if (pluginHandler) {\n return pluginHandler.getPopupHandler();\n }\n\n return new PopupHandler();\n};\n\n/**\n * Initializes the popup window and returns the instance to be used later in order to avoid being blocked by the browser.\n *\n * @method preload\n * @param {Object} options receives the window height and width and any other window feature to be sent to window.open\n */\nPopup.prototype.preload = function(options) {\n options = options || {};\n\n var popup = this.buildPopupHandler();\n\n popup.preload(options);\n return popup;\n};\n\n/**\n * Internal use.\n *\n * @method getPopupHandler\n * @private\n */\nPopup.prototype.getPopupHandler = function(options, preload) {\n if (options.popupHandler) {\n return options.popupHandler;\n }\n\n if (preload) {\n return this.preload(options);\n }\n\n return this.buildPopupHandler();\n};\n\n/**\n * Handles the popup logic for the callback page.\n *\n * @method callback\n * @param {Object} options\n * @param {String} options.hash the url hash. If not provided it will extract from window.location.hash\n * @param {String} [options.state] value originally sent in `state` parameter to {@link authorize} to mitigate XSRF\n * @param {String} [options.nonce] value originally sent in `nonce` parameter to {@link authorize} to prevent replay attacks\n * @see {@link parseHash}\n */\nPopup.prototype.callback = function(options) {\n var _this = this;\n options = options || {};\n var originUrl =\n options.popupOrigin || this.baseOptions.popupOrigin || windowHelper.getWindow().origin;\n _this.webAuth.parseHash(options || {}, function(err, data) {\n // {a, d} is WinChan's message format.\n // We have to keep the same format because we're opening the popup with WinChan.\n var response = { a: 'response', d: data };\n if (err) {\n response = { a: 'error', d: err };\n }\n windowHelper.getWindow().opener.postMessage(JSON.stringify(response), originUrl);\n });\n};\n\n/**\n * Shows inside a new window the hosted login page (`/authorize`) in order to start a new authN/authZ transaction and post its result using `postMessage`.\n *\n * @method authorize\n * @param {Object} options\n * @param {String} [options.domain] your Auth0 domain\n * @param {String} [options.clientID] your Auth0 client identifier obtained when creating the client in the Auth0 Dashboard\n * @param {String} options.redirectUri url that the Auth0 will redirect after Auth with the Authorization Response\n * @param {String} options.responseType type of the response used by OAuth 2.0 flow. It can be any space separated list of the values `code`, `token`, `id_token`. {@link https://openid.net/specs/oauth-v2-multiple-response-types-1_0}\n * @param {String} [options.responseMode] how the Auth response is encoded and redirected back to the client. Supported values are `query`, `fragment` and `form_post`. The `query` value is only supported when `responseType` is `code`. {@link https://openid.net/specs/oauth-v2-multiple-response-types-1_0.html#ResponseModes}\n * @param {String} [options.state] value used to mitigate XSRF attacks. {@link https://auth0.com/docs/protocols/oauth2/oauth-state}\n * @param {String} [options.nonce] value used to mitigate replay attacks when using Implicit Grant. {@link https://auth0.com/docs/api-auth/tutorials/nonce}\n * @param {String} [options.scope] scopes to be requested during Auth. e.g. `openid email`\n * @param {String} [options.audience] identifier of the resource server who will consume the access token issued after Auth\n * @param {Boolean} [options.owp] determines if Auth0 should render the relay page or not and the caller is responsible of handling the response.\n * @param {authorizeCallback} cb\n * @see {@link https://auth0.com/docs/api/authentication#authorize-client}\n */\nPopup.prototype.authorize = function(options, cb) {\n var popup;\n var url;\n var relayUrl;\n var popOpts = {};\n\n var pluginHandler = this.baseOptions.plugins.get('popup.authorize');\n\n var params = objectHelper\n .merge(this.baseOptions, [\n 'clientID',\n 'scope',\n 'domain',\n 'audience',\n 'tenant',\n 'responseType',\n 'redirectUri',\n '_csrf',\n 'state',\n '_intstate',\n 'nonce'\n ])\n .with(objectHelper.blacklist(options, ['popupHandler']));\n\n assert.check(\n params,\n { type: 'object', message: 'options parameter is not valid' },\n {\n responseType: { type: 'string', message: 'responseType option is required' }\n }\n );\n\n // the relay page should not be necesary as long it happens in the same domain\n // (a redirectUri shoul be provided). It is necesary when using OWP\n relayUrl = urljoin(this.baseOptions.rootUrl, 'relay.html');\n\n // if a owp is enabled, it should use the owp flag\n if (options.owp) {\n // used by server to render the relay page instead of sending the chunk in the\n // url to the callback\n params.owp = true;\n } else {\n popOpts.origin = urlHelper.extractOrigin(params.redirectUri);\n relayUrl = params.redirectUri;\n }\n\n if (options.popupOptions) {\n popOpts.popupOptions = objectHelper.pick(options.popupOptions, ['width', 'height']);\n }\n\n if (pluginHandler) {\n params = pluginHandler.processParams(params);\n }\n\n params = this.transactionManager.process(params);\n params.scope = params.scope || 'openid profile email';\n delete params.domain;\n\n url = this.client.buildAuthorizeUrl(params);\n\n popup = this.getPopupHandler(options);\n\n return popup.load(url, relayUrl, popOpts, responseHandler(cb));\n};\n\n/**\n * Performs authentication with username/email and password with a database connection inside a new window\n *\n * This method is not compatible with API Auth so if you need to fetch API tokens with audience\n * you should use {@link authorize} or {@link login}.\n *\n * @method loginWithCredentials\n * @param {Object} options\n * @param {String} [options.redirectUri] url that the Auth0 will redirect after Auth with the Authorization Response\n * @param {String} [options.responseType] type of the response used. It can be any of the values `code` and `token`\n * @param {String} [options.responseMode] how the AuthN response is encoded and redirected back to the client. Supported values are `query` and `fragment`. The `query` value is only supported when `responseType` is `code`.\n * @param {String} [options.scope] scopes to be requested during AuthN. e.g. `openid email`\n * @param {credentialsCallback} cb\n */\nPopup.prototype.loginWithCredentials = function(options, cb) {\n options.realm = options.realm || options.connection;\n options.popup = true;\n options = objectHelper\n .merge(this.baseOptions, ['responseType', 'state', 'nonce'])\n .with(objectHelper.blacklist(options, ['popupHandler', 'connection']));\n options = this.transactionManager.process(options);\n this.crossOriginAuthentication.login(options, cb);\n};\n\n/**\n * Verifies the passwordless TOTP and redirects to finish the passwordless transaction\n *\n * @method passwordlessVerify\n * @param {Object} options\n * @param {String} options.type `sms` or `email`\n * @param {String} options.phoneNumber only if type = sms\n * @param {String} options.email only if type = email\n * @param {String} options.connection the connection name\n * @param {String} options.verificationCode the TOTP code\n * @param {Function} cb\n */\nPopup.prototype.passwordlessVerify = function(options, cb) {\n var _this = this;\n return this.client.passwordless.verify(\n objectHelper.blacklist(options, ['popupHandler']),\n function(err) {\n if (err) {\n return cb(err);\n }\n\n options.username = options.phoneNumber || options.email;\n options.password = options.verificationCode;\n\n delete options.email;\n delete options.phoneNumber;\n delete options.verificationCode;\n delete options.type;\n\n _this.client.loginWithResourceOwner(options, cb);\n }\n );\n};\n\n/**\n * Signs up a new user and automatically logs the user in after the signup.\n *\n * This method is not compatible with API Auth so if you need to fetch API tokens with audience\n * you should use {@link authorize} or {@link signupAndAuthorize}.\n *\n * @method signupAndLogin\n * @param {Object} options\n * @param {String} options.email user email address\n * @param {String} options.password user password\n * @param {String} options.connection name of the connection where the user will be created\n * @param {credentialsCallback} cb\n */\nPopup.prototype.signupAndLogin = function(options, cb) {\n var _this = this;\n\n // Preload popup to avoid the browser to block it since the login happens later\n var popupHandler = this.getPopupHandler(options, true);\n options.popupHandler = popupHandler;\n\n return this.client.dbConnection.signup(\n objectHelper.blacklist(options, ['popupHandler']),\n function(err) {\n if (err) {\n if (popupHandler._current_popup) {\n popupHandler._current_popup.kill();\n }\n return cb(err);\n }\n _this.loginWithCredentials(options, cb);\n }\n );\n};\n\nmodule.exports = Popup;\n\n\n/***/ }),\n/* 117 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar CrossOriginAuthentication = __webpack_require__(32);\nvar Warn = __webpack_require__(22);\n\nfunction Redirect(auth0, options) {\n this.baseOptions = options;\n this.client = auth0.client;\n this.crossOriginAuthentication = new CrossOriginAuthentication(auth0, this.baseOptions);\n\n this.warn = new Warn({\n disableWarnings: !!options._disableDeprecationWarnings\n });\n}\n\n/**\n * Logs in the user with username and password using the cross origin authentication (/co/authenticate) flow. You can use either `username` or `email` to identify the user, but `username` will take precedence over `email`.\n * Some browsers might not be able to successfully authenticate if 3rd party cookies are disabled in your browser. [See here for more information.]{@link https://auth0.com/docs/cross-origin-authentication}.\n * After the /co/authenticate call, you'll have to use the {@link parseHash} function at the `redirectUri` specified in the constructor.\n *\n * @method loginWithCredentials\n * @deprecated This method will be released in the next major version. Use `webAuth.login` instead.\n * @param {Object} options options used in the {@link authorize} call after the login_ticket is acquired\n * @param {String} [options.username] Username (mutually exclusive with email)\n * @param {String} [options.email] Email (mutually exclusive with username)\n * @param {String} options.password Password\n * @param {String} [options.connection] Connection used to authenticate the user, it can be a realm name or a database connection name\n * @param {crossOriginLoginCallback} cb Callback function called only when an authentication error, like invalid username or password, occurs. For other types of errors, there will be a redirect to the `redirectUri`.\n */\nRedirect.prototype.loginWithCredentials = function(options, cb) {\n options.realm = options.realm || options.connection;\n delete options.connection;\n this.crossOriginAuthentication.login(options, cb);\n};\n\n/**\n * Signs up a new user and automatically logs the user in after the signup.\n *\n * @method signupAndLogin\n * @param {Object} options\n * @param {String} options.email user email address\n * @param {String} options.password user password\n * @param {String} options.connection name of the connection where the user will be created\n * @param {crossOriginLoginCallback} cb\n */\nRedirect.prototype.signupAndLogin = function(options, cb) {\n var _this = this;\n return this.client.dbConnection.signup(options, function(err) {\n if (err) {\n return cb(err);\n }\n return _this.loginWithCredentials(options, cb);\n });\n};\n\nmodule.exports = Redirect;\n\n\n/***/ }),\n/* 118 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar IframeHandler = __webpack_require__(53);\nvar windowHelper = __webpack_require__(5);\n\nfunction SilentAuthenticationHandler(options) {\n this.authenticationUrl = options.authenticationUrl;\n this.timeout = options.timeout || 60 * 1000;\n this.handler = null;\n this.postMessageDataType = options.postMessageDataType || false;\n this.postMessageOrigin = options.postMessageOrigin || windowHelper.getWindow().origin;\n}\n\nSilentAuthenticationHandler.create = function(options) {\n return new SilentAuthenticationHandler(options);\n};\n\nSilentAuthenticationHandler.prototype.login = function(usePostMessage, callback) {\n this.handler = new IframeHandler({\n auth0: this.auth0,\n url: this.authenticationUrl,\n eventListenerType: usePostMessage ? 'message' : 'load',\n callback: this.getCallbackHandler(callback, usePostMessage),\n timeout: this.timeout,\n eventValidator: this.getEventValidator(),\n timeoutCallback: function() {\n callback(null, '#error=timeout&error_description=Timeout+during+authentication+renew.');\n },\n usePostMessage: usePostMessage || false\n });\n\n this.handler.init();\n};\n\nSilentAuthenticationHandler.prototype.getEventValidator = function() {\n var _this = this;\n return {\n isValid: function(eventData) {\n switch (eventData.event.type) {\n case 'message':\n // Message must come from the expected origin and iframe window.\n if (\n eventData.event.origin !== _this.postMessageOrigin ||\n eventData.event.source !== _this.handler.iframe.contentWindow\n ) {\n return false;\n }\n\n // Default behaviour, return all message events from the iframe.\n if (_this.postMessageDataType === false) {\n return true;\n }\n\n return (\n eventData.event.data.type && eventData.event.data.type === _this.postMessageDataType\n );\n\n case 'load': // Fall through to default\n default:\n return true;\n }\n }\n };\n};\n\nSilentAuthenticationHandler.prototype.getCallbackHandler = function(callback, usePostMessage) {\n return function(eventData) {\n var callbackValue;\n if (!usePostMessage) {\n callbackValue = eventData.sourceObject.contentWindow.location.hash;\n } else if (typeof eventData.event.data === 'object' && eventData.event.data.hash) {\n callbackValue = eventData.event.data.hash;\n } else {\n callbackValue = eventData.event.data;\n }\n callback(null, callbackValue);\n };\n};\n\nmodule.exports = SilentAuthenticationHandler;\n\n\n/***/ }),\n/* 119 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var aes = __webpack_require__(23)\nvar Transform = __webpack_require__(12)\nvar inherits = __webpack_require__(1)\nvar modes = __webpack_require__(24)\nvar StreamCipher = __webpack_require__(66)\nvar AuthCipher = __webpack_require__(59)\nvar ebtk = __webpack_require__(27)\n\ninherits(Decipher, Transform)\nfunction Decipher (mode, key, iv) {\n if (!(this instanceof Decipher)) {\n return new Decipher(mode, key, iv)\n }\n Transform.call(this)\n this._cache = new Splitter()\n this._last = void 0\n this._cipher = new aes.AES(key)\n this._prev = new Buffer(iv.length)\n iv.copy(this._prev)\n this._mode = mode\n this._autopadding = true\n}\nDecipher.prototype._update = function (data) {\n this._cache.add(data)\n var chunk\n var thing\n var out = []\n while ((chunk = this._cache.get(this._autopadding))) {\n thing = this._mode.decrypt(this, chunk)\n out.push(thing)\n }\n return Buffer.concat(out)\n}\nDecipher.prototype._final = function () {\n var chunk = this._cache.flush()\n if (this._autopadding) {\n return unpad(this._mode.decrypt(this, chunk))\n } else if (chunk) {\n throw new Error('data not multiple of block length')\n }\n}\nDecipher.prototype.setAutoPadding = function (setTo) {\n this._autopadding = !!setTo\n return this\n}\nfunction Splitter () {\n if (!(this instanceof Splitter)) {\n return new Splitter()\n }\n this.cache = new Buffer('')\n}\nSplitter.prototype.add = function (data) {\n this.cache = Buffer.concat([this.cache, data])\n}\n\nSplitter.prototype.get = function (autoPadding) {\n var out\n if (autoPadding) {\n if (this.cache.length > 16) {\n out = this.cache.slice(0, 16)\n this.cache = this.cache.slice(16)\n return out\n }\n } else {\n if (this.cache.length >= 16) {\n out = this.cache.slice(0, 16)\n this.cache = this.cache.slice(16)\n return out\n }\n }\n return null\n}\nSplitter.prototype.flush = function () {\n if (this.cache.length) {\n return this.cache\n }\n}\nfunction unpad (last) {\n var padded = last[15]\n var i = -1\n while (++i < padded) {\n if (last[(i + (16 - padded))] !== padded) {\n throw new Error('unable to decrypt data')\n }\n }\n if (padded === 16) {\n return\n }\n return last.slice(0, 16 - padded)\n}\n\nvar modelist = {\n ECB: __webpack_require__(64),\n CBC: __webpack_require__(60),\n CFB: __webpack_require__(61),\n CFB8: __webpack_require__(63),\n CFB1: __webpack_require__(62),\n OFB: __webpack_require__(65),\n CTR: __webpack_require__(25),\n GCM: __webpack_require__(25)\n}\n\nfunction createDecipheriv (suite, password, iv) {\n var config = modes[suite.toLowerCase()]\n if (!config) {\n throw new TypeError('invalid suite type')\n }\n if (typeof iv === 'string') {\n iv = new Buffer(iv)\n }\n if (typeof password === 'string') {\n password = new Buffer(password)\n }\n if (password.length !== config.key / 8) {\n throw new TypeError('invalid key length ' + password.length)\n }\n if (iv.length !== config.iv) {\n throw new TypeError('invalid iv length ' + iv.length)\n }\n if (config.type === 'stream') {\n return new StreamCipher(modelist[config.mode], password, iv, true)\n } else if (config.type === 'auth') {\n return new AuthCipher(modelist[config.mode], password, iv, true)\n }\n return new Decipher(modelist[config.mode], password, iv)\n}\n\nfunction createDecipher (suite, password) {\n var config = modes[suite.toLowerCase()]\n if (!config) {\n throw new TypeError('invalid suite type')\n }\n var keys = ebtk(password, false, config.key, config.iv)\n return createDecipheriv(suite, keys.key, keys.iv)\n}\nexports.createDecipher = createDecipher\nexports.createDecipheriv = createDecipheriv\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 120 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var aes = __webpack_require__(23)\nvar Transform = __webpack_require__(12)\nvar inherits = __webpack_require__(1)\nvar modes = __webpack_require__(24)\nvar ebtk = __webpack_require__(27)\nvar StreamCipher = __webpack_require__(66)\nvar AuthCipher = __webpack_require__(59)\ninherits(Cipher, Transform)\nfunction Cipher (mode, key, iv) {\n if (!(this instanceof Cipher)) {\n return new Cipher(mode, key, iv)\n }\n Transform.call(this)\n this._cache = new Splitter()\n this._cipher = new aes.AES(key)\n this._prev = new Buffer(iv.length)\n iv.copy(this._prev)\n this._mode = mode\n this._autopadding = true\n}\nCipher.prototype._update = function (data) {\n this._cache.add(data)\n var chunk\n var thing\n var out = []\n while ((chunk = this._cache.get())) {\n thing = this._mode.encrypt(this, chunk)\n out.push(thing)\n }\n return Buffer.concat(out)\n}\nCipher.prototype._final = function () {\n var chunk = this._cache.flush()\n if (this._autopadding) {\n chunk = this._mode.encrypt(this, chunk)\n this._cipher.scrub()\n return chunk\n } else if (chunk.toString('hex') !== '10101010101010101010101010101010') {\n this._cipher.scrub()\n throw new Error('data not multiple of block length')\n }\n}\nCipher.prototype.setAutoPadding = function (setTo) {\n this._autopadding = !!setTo\n return this\n}\n\nfunction Splitter () {\n if (!(this instanceof Splitter)) {\n return new Splitter()\n }\n this.cache = new Buffer('')\n}\nSplitter.prototype.add = function (data) {\n this.cache = Buffer.concat([this.cache, data])\n}\n\nSplitter.prototype.get = function () {\n if (this.cache.length > 15) {\n var out = this.cache.slice(0, 16)\n this.cache = this.cache.slice(16)\n return out\n }\n return null\n}\nSplitter.prototype.flush = function () {\n var len = 16 - this.cache.length\n var padBuff = new Buffer(len)\n\n var i = -1\n while (++i < len) {\n padBuff.writeUInt8(len, i)\n }\n var out = Buffer.concat([this.cache, padBuff])\n return out\n}\nvar modelist = {\n ECB: __webpack_require__(64),\n CBC: __webpack_require__(60),\n CFB: __webpack_require__(61),\n CFB8: __webpack_require__(63),\n CFB1: __webpack_require__(62),\n OFB: __webpack_require__(65),\n CTR: __webpack_require__(25),\n GCM: __webpack_require__(25)\n}\n\nfunction createCipheriv (suite, password, iv) {\n var config = modes[suite.toLowerCase()]\n if (!config) {\n throw new TypeError('invalid suite type')\n }\n if (typeof iv === 'string') {\n iv = new Buffer(iv)\n }\n if (typeof password === 'string') {\n password = new Buffer(password)\n }\n if (password.length !== config.key / 8) {\n throw new TypeError('invalid key length ' + password.length)\n }\n if (iv.length !== config.iv) {\n throw new TypeError('invalid iv length ' + iv.length)\n }\n if (config.type === 'stream') {\n return new StreamCipher(modelist[config.mode], password, iv)\n } else if (config.type === 'auth') {\n return new AuthCipher(modelist[config.mode], password, iv)\n }\n return new Cipher(modelist[config.mode], password, iv)\n}\nfunction createCipher (suite, password) {\n var config = modes[suite.toLowerCase()]\n if (!config) {\n throw new TypeError('invalid suite type')\n }\n var keys = ebtk(password, false, config.key, config.iv)\n return createCipheriv(suite, keys.key, keys.iv)\n}\n\nexports.createCipheriv = createCipheriv\nexports.createCipher = createCipher\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 121 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var zeros = new Buffer(16)\nzeros.fill(0)\nmodule.exports = GHASH\nfunction GHASH (key) {\n this.h = key\n this.state = new Buffer(16)\n this.state.fill(0)\n this.cache = new Buffer('')\n}\n// from http://bitwiseshiftleft.github.io/sjcl/doc/symbols/src/core_gcm.js.html\n// by Juho Vähä-Herttua\nGHASH.prototype.ghash = function (block) {\n var i = -1\n while (++i < block.length) {\n this.state[i] ^= block[i]\n }\n this._multiply()\n}\n\nGHASH.prototype._multiply = function () {\n var Vi = toArray(this.h)\n var Zi = [0, 0, 0, 0]\n var j, xi, lsb_Vi\n var i = -1\n while (++i < 128) {\n xi = (this.state[~~(i / 8)] & (1 << (7 - i % 8))) !== 0\n if (xi) {\n // Z_i+1 = Z_i ^ V_i\n Zi = xor(Zi, Vi)\n }\n\n // Store the value of LSB(V_i)\n lsb_Vi = (Vi[3] & 1) !== 0\n\n // V_i+1 = V_i >> 1\n for (j = 3; j > 0; j--) {\n Vi[j] = (Vi[j] >>> 1) | ((Vi[j - 1] & 1) << 31)\n }\n Vi[0] = Vi[0] >>> 1\n\n // If LSB(V_i) is 1, V_i+1 = (V_i >> 1) ^ R\n if (lsb_Vi) {\n Vi[0] = Vi[0] ^ (0xe1 << 24)\n }\n }\n this.state = fromArray(Zi)\n}\nGHASH.prototype.update = function (buf) {\n this.cache = Buffer.concat([this.cache, buf])\n var chunk\n while (this.cache.length >= 16) {\n chunk = this.cache.slice(0, 16)\n this.cache = this.cache.slice(16)\n this.ghash(chunk)\n }\n}\nGHASH.prototype.final = function (abl, bl) {\n if (this.cache.length) {\n this.ghash(Buffer.concat([this.cache, zeros], 16))\n }\n this.ghash(fromArray([\n 0, abl,\n 0, bl\n ]))\n return this.state\n}\n\nfunction toArray (buf) {\n return [\n buf.readUInt32BE(0),\n buf.readUInt32BE(4),\n buf.readUInt32BE(8),\n buf.readUInt32BE(12)\n ]\n}\nfunction fromArray (out) {\n out = out.map(fixup_uint32)\n var buf = new Buffer(16)\n buf.writeUInt32BE(out[0], 0)\n buf.writeUInt32BE(out[1], 4)\n buf.writeUInt32BE(out[2], 8)\n buf.writeUInt32BE(out[3], 12)\n return buf\n}\nvar uint_max = Math.pow(2, 32)\nfunction fixup_uint32 (x) {\n var ret, x_pos\n ret = x > uint_max || x < 0 ? (x_pos = Math.abs(x) % uint_max, x < 0 ? uint_max - x_pos : x_pos) : x\n return ret\n}\nfunction xor (a, b) {\n return [\n a[0] ^ b[0],\n a[1] ^ b[1],\n a[2] ^ b[2],\n a[3] ^ b[3]\n ]\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 122 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar ebtk = __webpack_require__(27)\nvar aes = __webpack_require__(34)\nvar DES = __webpack_require__(123)\nvar desModes = __webpack_require__(124)\nvar aesModes = __webpack_require__(24)\nfunction createCipher (suite, password) {\n var keyLen, ivLen\n suite = suite.toLowerCase()\n if (aesModes[suite]) {\n keyLen = aesModes[suite].key\n ivLen = aesModes[suite].iv\n } else if (desModes[suite]) {\n keyLen = desModes[suite].key * 8\n ivLen = desModes[suite].iv\n } else {\n throw new TypeError('invalid suite type')\n }\n var keys = ebtk(password, false, keyLen, ivLen)\n return createCipheriv(suite, keys.key, keys.iv)\n}\nfunction createDecipher (suite, password) {\n var keyLen, ivLen\n suite = suite.toLowerCase()\n if (aesModes[suite]) {\n keyLen = aesModes[suite].key\n ivLen = aesModes[suite].iv\n } else if (desModes[suite]) {\n keyLen = desModes[suite].key * 8\n ivLen = desModes[suite].iv\n } else {\n throw new TypeError('invalid suite type')\n }\n var keys = ebtk(password, false, keyLen, ivLen)\n return createDecipheriv(suite, keys.key, keys.iv)\n}\n\nfunction createCipheriv (suite, key, iv) {\n suite = suite.toLowerCase()\n if (aesModes[suite]) {\n return aes.createCipheriv(suite, key, iv)\n } else if (desModes[suite]) {\n return new DES({\n key: key,\n iv: iv,\n mode: suite\n })\n } else {\n throw new TypeError('invalid suite type')\n }\n}\nfunction createDecipheriv (suite, key, iv) {\n suite = suite.toLowerCase()\n if (aesModes[suite]) {\n return aes.createDecipheriv(suite, key, iv)\n } else if (desModes[suite]) {\n return new DES({\n key: key,\n iv: iv,\n mode: suite,\n decrypt: true\n })\n } else {\n throw new TypeError('invalid suite type')\n }\n}\nexports.createCipher = exports.Cipher = createCipher\nexports.createCipheriv = exports.Cipheriv = createCipheriv\nexports.createDecipher = exports.Decipher = createDecipher\nexports.createDecipheriv = exports.Decipheriv = createDecipheriv\nfunction getCiphers () {\n return Object.keys(desModes).concat(aes.getCiphers())\n}\nexports.listCiphers = exports.getCiphers = getCiphers\n\n\n/***/ }),\n/* 123 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var CipherBase = __webpack_require__(12)\nvar des = __webpack_require__(38)\nvar inherits = __webpack_require__(1)\n\nvar modes = {\n 'des-ede3-cbc': des.CBC.instantiate(des.EDE),\n 'des-ede3': des.EDE,\n 'des-ede-cbc': des.CBC.instantiate(des.EDE),\n 'des-ede': des.EDE,\n 'des-cbc': des.CBC.instantiate(des.DES),\n 'des-ecb': des.DES\n}\nmodes.des = modes['des-cbc']\nmodes.des3 = modes['des-ede3-cbc']\nmodule.exports = DES\ninherits(DES, CipherBase)\nfunction DES (opts) {\n CipherBase.call(this)\n var modeName = opts.mode.toLowerCase()\n var mode = modes[modeName]\n var type\n if (opts.decrypt) {\n type = 'decrypt'\n } else {\n type = 'encrypt'\n }\n var key = opts.key\n if (modeName === 'des-ede' || modeName === 'des-ede-cbc') {\n key = Buffer.concat([key, key.slice(0, 8)])\n }\n var iv = opts.iv\n this._des = mode.create({\n key: key,\n iv: iv,\n type: type\n })\n}\nDES.prototype._update = function (data) {\n return new Buffer(this._des.update(data))\n}\nDES.prototype._final = function () {\n return new Buffer(this._des.final())\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 124 */\n/***/ (function(module, exports) {\n\nexports['des-ecb'] = {\n key: 8,\n iv: 0\n}\nexports['des-cbc'] = exports.des = {\n key: 8,\n iv: 8\n}\nexports['des-ede3-cbc'] = exports.des3 = {\n key: 24,\n iv: 8\n}\nexports['des-ede3'] = {\n key: 24,\n iv: 0\n}\nexports['des-ede-cbc'] = {\n key: 16,\n iv: 8\n}\nexports['des-ede'] = {\n key: 16,\n iv: 0\n}\n\n\n/***/ }),\n/* 125 */\n/***/ (function(module, exports, __webpack_require__) {\n\nmodule.exports = __webpack_require__(67)\n\n\n/***/ }),\n/* 126 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var createHash = __webpack_require__(13)\nvar stream = __webpack_require__(44)\nvar inherits = __webpack_require__(1)\nvar sign = __webpack_require__(127)\nvar verify = __webpack_require__(128)\n\nvar algorithms = __webpack_require__(67)\nObject.keys(algorithms).forEach(function (key) {\n algorithms[key].id = new Buffer(algorithms[key].id, 'hex')\n algorithms[key.toLowerCase()] = algorithms[key]\n})\n\nfunction Sign (algorithm) {\n stream.Writable.call(this)\n\n var data = algorithms[algorithm]\n if (!data) throw new Error('Unknown message digest')\n\n this._hashType = data.hash\n this._hash = createHash(data.hash)\n this._tag = data.id\n this._signType = data.sign\n}\ninherits(Sign, stream.Writable)\n\nSign.prototype._write = function _write (data, _, done) {\n this._hash.update(data)\n done()\n}\n\nSign.prototype.update = function update (data, enc) {\n if (typeof data === 'string') data = new Buffer(data, enc)\n\n this._hash.update(data)\n return this\n}\n\nSign.prototype.sign = function signMethod (key, enc) {\n this.end()\n var hash = this._hash.digest()\n var sig = sign(hash, key, this._hashType, this._signType, this._tag)\n\n return enc ? sig.toString(enc) : sig\n}\n\nfunction Verify (algorithm) {\n stream.Writable.call(this)\n\n var data = algorithms[algorithm]\n if (!data) throw new Error('Unknown message digest')\n\n this._hash = createHash(data.hash)\n this._tag = data.id\n this._signType = data.sign\n}\ninherits(Verify, stream.Writable)\n\nVerify.prototype._write = function _write (data, _, done) {\n this._hash.update(data)\n done()\n}\n\nVerify.prototype.update = function update (data, enc) {\n if (typeof data === 'string') data = new Buffer(data, enc)\n\n this._hash.update(data)\n return this\n}\n\nVerify.prototype.verify = function verifyMethod (key, sig, enc) {\n if (typeof sig === 'string') sig = new Buffer(sig, enc)\n\n this.end()\n var hash = this._hash.digest()\n return verify(sig, hash, key, this._signType, this._tag)\n}\n\nfunction createSign (algorithm) {\n return new Sign(algorithm)\n}\n\nfunction createVerify (algorithm) {\n return new Verify(algorithm)\n}\n\nmodule.exports = {\n Sign: createSign,\n Verify: createVerify,\n createSign: createSign,\n createVerify: createVerify\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 127 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {// much of this based on https://github.com/indutny/self-signed/blob/gh-pages/lib/rsa.js\nvar createHmac = __webpack_require__(37)\nvar crt = __webpack_require__(35)\nvar EC = __webpack_require__(3).ec\nvar BN = __webpack_require__(2)\nvar parseKeys = __webpack_require__(28)\nvar curves = __webpack_require__(68)\n\nfunction sign (hash, key, hashType, signType, tag) {\n var priv = parseKeys(key)\n if (priv.curve) {\n // rsa keys can be interpreted as ecdsa ones in openssl\n if (signType !== 'ecdsa' && signType !== 'ecdsa/rsa') throw new Error('wrong private key type')\n return ecSign(hash, priv)\n } else if (priv.type === 'dsa') {\n if (signType !== 'dsa') throw new Error('wrong private key type')\n return dsaSign(hash, priv, hashType)\n } else {\n if (signType !== 'rsa' && signType !== 'ecdsa/rsa') throw new Error('wrong private key type')\n }\n hash = Buffer.concat([tag, hash])\n var len = priv.modulus.byteLength()\n var pad = [ 0, 1 ]\n while (hash.length + pad.length + 1 < len) pad.push(0xff)\n pad.push(0x00)\n var i = -1\n while (++i < hash.length) pad.push(hash[i])\n\n var out = crt(pad, priv)\n return out\n}\n\nfunction ecSign (hash, priv) {\n var curveId = curves[priv.curve.join('.')]\n if (!curveId) throw new Error('unknown curve ' + priv.curve.join('.'))\n\n var curve = new EC(curveId)\n var key = curve.keyFromPrivate(priv.privateKey)\n var out = key.sign(hash)\n\n return new Buffer(out.toDER())\n}\n\nfunction dsaSign (hash, priv, algo) {\n var x = priv.params.priv_key\n var p = priv.params.p\n var q = priv.params.q\n var g = priv.params.g\n var r = new BN(0)\n var k\n var H = bits2int(hash, q).mod(q)\n var s = false\n var kv = getKey(x, q, hash, algo)\n while (s === false) {\n k = makeKey(q, kv, algo)\n r = makeR(g, k, p, q)\n s = k.invm(q).imul(H.add(x.mul(r))).mod(q)\n if (s.cmpn(0) === 0) {\n s = false\n r = new BN(0)\n }\n }\n return toDER(r, s)\n}\n\nfunction toDER (r, s) {\n r = r.toArray()\n s = s.toArray()\n\n // Pad values\n if (r[0] & 0x80) r = [ 0 ].concat(r)\n if (s[0] & 0x80) s = [ 0 ].concat(s)\n\n var total = r.length + s.length + 4\n var res = [ 0x30, total, 0x02, r.length ]\n res = res.concat(r, [ 0x02, s.length ], s)\n return new Buffer(res)\n}\n\nfunction getKey (x, q, hash, algo) {\n x = new Buffer(x.toArray())\n if (x.length < q.byteLength()) {\n var zeros = new Buffer(q.byteLength() - x.length)\n zeros.fill(0)\n x = Buffer.concat([ zeros, x ])\n }\n var hlen = hash.length\n var hbits = bits2octets(hash, q)\n var v = new Buffer(hlen)\n v.fill(1)\n var k = new Buffer(hlen)\n k.fill(0)\n k = createHmac(algo, k).update(v).update(new Buffer([ 0 ])).update(x).update(hbits).digest()\n v = createHmac(algo, k).update(v).digest()\n k = createHmac(algo, k).update(v).update(new Buffer([ 1 ])).update(x).update(hbits).digest()\n v = createHmac(algo, k).update(v).digest()\n return { k: k, v: v }\n}\n\nfunction bits2int (obits, q) {\n var bits = new BN(obits)\n var shift = (obits.length << 3) - q.bitLength()\n if (shift > 0) bits.ishrn(shift)\n return bits\n}\n\nfunction bits2octets (bits, q) {\n bits = bits2int(bits, q)\n bits = bits.mod(q)\n var out = new Buffer(bits.toArray())\n if (out.length < q.byteLength()) {\n var zeros = new Buffer(q.byteLength() - out.length)\n zeros.fill(0)\n out = Buffer.concat([ zeros, out ])\n }\n return out\n}\n\nfunction makeKey (q, kv, algo) {\n var t\n var k\n\n do {\n t = new Buffer(0)\n\n while (t.length * 8 < q.bitLength()) {\n kv.v = createHmac(algo, kv.k).update(kv.v).digest()\n t = Buffer.concat([ t, kv.v ])\n }\n\n k = bits2int(t, q)\n kv.k = createHmac(algo, kv.k).update(kv.v).update(new Buffer([ 0 ])).digest()\n kv.v = createHmac(algo, kv.k).update(kv.v).digest()\n } while (k.cmp(q) !== -1)\n\n return k\n}\n\nfunction makeR (g, k, p, q) {\n return g.toRed(BN.mont(p)).redPow(k).fromRed().mod(q)\n}\n\nmodule.exports = sign\nmodule.exports.getKey = getKey\nmodule.exports.makeKey = makeKey\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 128 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {// much of this based on https://github.com/indutny/self-signed/blob/gh-pages/lib/rsa.js\nvar BN = __webpack_require__(2)\nvar EC = __webpack_require__(3).ec\nvar parseKeys = __webpack_require__(28)\nvar curves = __webpack_require__(68)\n\nfunction verify (sig, hash, key, signType, tag) {\n var pub = parseKeys(key)\n if (pub.type === 'ec') {\n // rsa keys can be interpreted as ecdsa ones in openssl\n if (signType !== 'ecdsa' && signType !== 'ecdsa/rsa') throw new Error('wrong public key type')\n return ecVerify(sig, hash, pub)\n } else if (pub.type === 'dsa') {\n if (signType !== 'dsa') throw new Error('wrong public key type')\n return dsaVerify(sig, hash, pub)\n } else {\n if (signType !== 'rsa' && signType !== 'ecdsa/rsa') throw new Error('wrong public key type')\n }\n hash = Buffer.concat([tag, hash])\n var len = pub.modulus.byteLength()\n var pad = [ 1 ]\n var padNum = 0\n while (hash.length + pad.length + 2 < len) {\n pad.push(0xff)\n padNum++\n }\n pad.push(0x00)\n var i = -1\n while (++i < hash.length) {\n pad.push(hash[i])\n }\n pad = new Buffer(pad)\n var red = BN.mont(pub.modulus)\n sig = new BN(sig).toRed(red)\n\n sig = sig.redPow(new BN(pub.publicExponent))\n sig = new Buffer(sig.fromRed().toArray())\n var out = padNum < 8 ? 1 : 0\n len = Math.min(sig.length, pad.length)\n if (sig.length !== pad.length) out = 1\n\n i = -1\n while (++i < len) out |= sig[i] ^ pad[i]\n return out === 0\n}\n\nfunction ecVerify (sig, hash, pub) {\n var curveId = curves[pub.data.algorithm.curve.join('.')]\n if (!curveId) throw new Error('unknown curve ' + pub.data.algorithm.curve.join('.'))\n\n var curve = new EC(curveId)\n var pubkey = pub.data.subjectPrivateKey.data\n\n return curve.verify(hash, sig, pubkey)\n}\n\nfunction dsaVerify (sig, hash, pub) {\n var p = pub.data.p\n var q = pub.data.q\n var g = pub.data.g\n var y = pub.data.pub_key\n var unpacked = parseKeys.signature.decode(sig, 'der')\n var s = unpacked.s\n var r = unpacked.r\n checkValue(s, q)\n checkValue(r, q)\n var montp = BN.mont(p)\n var w = s.invm(q)\n var v = g.toRed(montp)\n .redPow(new BN(hash).mul(w).mod(q))\n .fromRed()\n .mul(y.toRed(montp).redPow(r.mul(w).mod(q)).fromRed())\n .mod(p)\n .mod(q)\n return v.cmp(r) === 0\n}\n\nfunction checkValue (b, q) {\n if (b.cmpn(0) <= 0) throw new Error('invalid sig')\n if (b.cmp(q) >= q) throw new Error('invalid sig')\n}\n\nmodule.exports = verify\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 129 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\r\n/**\r\n * Expose `Emitter`.\r\n */\r\n\r\nif (true) {\r\n module.exports = Emitter;\r\n}\r\n\r\n/**\r\n * Initialize a new `Emitter`.\r\n *\r\n * @api public\r\n */\r\n\r\nfunction Emitter(obj) {\r\n if (obj) return mixin(obj);\r\n};\r\n\r\n/**\r\n * Mixin the emitter properties.\r\n *\r\n * @param {Object} obj\r\n * @return {Object}\r\n * @api private\r\n */\r\n\r\nfunction mixin(obj) {\r\n for (var key in Emitter.prototype) {\r\n obj[key] = Emitter.prototype[key];\r\n }\r\n return obj;\r\n}\r\n\r\n/**\r\n * Listen on the given `event` with `fn`.\r\n *\r\n * @param {String} event\r\n * @param {Function} fn\r\n * @return {Emitter}\r\n * @api public\r\n */\r\n\r\nEmitter.prototype.on =\r\nEmitter.prototype.addEventListener = function(event, fn){\r\n this._callbacks = this._callbacks || {};\r\n (this._callbacks['$' + event] = this._callbacks['$' + event] || [])\r\n .push(fn);\r\n return this;\r\n};\r\n\r\n/**\r\n * Adds an `event` listener that will be invoked a single\r\n * time then automatically removed.\r\n *\r\n * @param {String} event\r\n * @param {Function} fn\r\n * @return {Emitter}\r\n * @api public\r\n */\r\n\r\nEmitter.prototype.once = function(event, fn){\r\n function on() {\r\n this.off(event, on);\r\n fn.apply(this, arguments);\r\n }\r\n\r\n on.fn = fn;\r\n this.on(event, on);\r\n return this;\r\n};\r\n\r\n/**\r\n * Remove the given callback for `event` or all\r\n * registered callbacks.\r\n *\r\n * @param {String} event\r\n * @param {Function} fn\r\n * @return {Emitter}\r\n * @api public\r\n */\r\n\r\nEmitter.prototype.off =\r\nEmitter.prototype.removeListener =\r\nEmitter.prototype.removeAllListeners =\r\nEmitter.prototype.removeEventListener = function(event, fn){\r\n this._callbacks = this._callbacks || {};\r\n\r\n // all\r\n if (0 == arguments.length) {\r\n this._callbacks = {};\r\n return this;\r\n }\r\n\r\n // specific event\r\n var callbacks = this._callbacks['$' + event];\r\n if (!callbacks) return this;\r\n\r\n // remove all handlers\r\n if (1 == arguments.length) {\r\n delete this._callbacks['$' + event];\r\n return this;\r\n }\r\n\r\n // remove specific handler\r\n var cb;\r\n for (var i = 0; i < callbacks.length; i++) {\r\n cb = callbacks[i];\r\n if (cb === fn || cb.fn === fn) {\r\n callbacks.splice(i, 1);\r\n break;\r\n }\r\n }\r\n return this;\r\n};\r\n\r\n/**\r\n * Emit `event` with the given args.\r\n *\r\n * @param {String} event\r\n * @param {Mixed} ...\r\n * @return {Emitter}\r\n */\r\n\r\nEmitter.prototype.emit = function(event){\r\n this._callbacks = this._callbacks || {};\r\n var args = [].slice.call(arguments, 1)\r\n , callbacks = this._callbacks['$' + event];\r\n\r\n if (callbacks) {\r\n callbacks = callbacks.slice(0);\r\n for (var i = 0, len = callbacks.length; i < len; ++i) {\r\n callbacks[i].apply(this, args);\r\n }\r\n }\r\n\r\n return this;\r\n};\r\n\r\n/**\r\n * Return array of callbacks for `event`.\r\n *\r\n * @param {String} event\r\n * @return {Array}\r\n * @api public\r\n */\r\n\r\nEmitter.prototype.listeners = function(event){\r\n this._callbacks = this._callbacks || {};\r\n return this._callbacks['$' + event] || [];\r\n};\r\n\r\n/**\r\n * Check if this emitter has `event` handlers.\r\n *\r\n * @param {String} event\r\n * @return {Boolean}\r\n * @api public\r\n */\r\n\r\nEmitter.prototype.hasListeners = function(event){\r\n return !! this.listeners(event).length;\r\n};\r\n\n\n/***/ }),\n/* 130 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var elliptic = __webpack_require__(3);\nvar BN = __webpack_require__(2);\n\nmodule.exports = function createECDH(curve) {\n\treturn new ECDH(curve);\n};\n\nvar aliases = {\n\tsecp256k1: {\n\t\tname: 'secp256k1',\n\t\tbyteLength: 32\n\t},\n\tsecp224r1: {\n\t\tname: 'p224',\n\t\tbyteLength: 28\n\t},\n\tprime256v1: {\n\t\tname: 'p256',\n\t\tbyteLength: 32\n\t},\n\tprime192v1: {\n\t\tname: 'p192',\n\t\tbyteLength: 24\n\t},\n\ted25519: {\n\t\tname: 'ed25519',\n\t\tbyteLength: 32\n\t},\n\tsecp384r1: {\n\t\tname: 'p384',\n\t\tbyteLength: 48\n\t},\n\tsecp521r1: {\n\t\tname: 'p521',\n\t\tbyteLength: 66\n\t}\n};\n\naliases.p224 = aliases.secp224r1;\naliases.p256 = aliases.secp256r1 = aliases.prime256v1;\naliases.p192 = aliases.secp192r1 = aliases.prime192v1;\naliases.p384 = aliases.secp384r1;\naliases.p521 = aliases.secp521r1;\n\nfunction ECDH(curve) {\n\tthis.curveType = aliases[curve];\n\tif (!this.curveType ) {\n\t\tthis.curveType = {\n\t\t\tname: curve\n\t\t};\n\t}\n\tthis.curve = new elliptic.ec(this.curveType.name);\n\tthis.keys = void 0;\n}\n\nECDH.prototype.generateKeys = function (enc, format) {\n\tthis.keys = this.curve.genKeyPair();\n\treturn this.getPublicKey(enc, format);\n};\n\nECDH.prototype.computeSecret = function (other, inenc, enc) {\n\tinenc = inenc || 'utf8';\n\tif (!Buffer.isBuffer(other)) {\n\t\tother = new Buffer(other, inenc);\n\t}\n\tvar otherPub = this.curve.keyFromPublic(other).getPublic();\n\tvar out = otherPub.mul(this.keys.getPrivate()).getX();\n\treturn formatReturnValue(out, enc, this.curveType.byteLength);\n};\n\nECDH.prototype.getPublicKey = function (enc, format) {\n\tvar key = this.keys.getPublic(format === 'compressed', true);\n\tif (format === 'hybrid') {\n\t\tif (key[key.length - 1] % 2) {\n\t\t\tkey[0] = 7;\n\t\t} else {\n\t\t\tkey [0] = 6;\n\t\t}\n\t}\n\treturn formatReturnValue(key, enc);\n};\n\nECDH.prototype.getPrivateKey = function (enc) {\n\treturn formatReturnValue(this.keys.getPrivate(), enc);\n};\n\nECDH.prototype.setPublicKey = function (pub, enc) {\n\tenc = enc || 'utf8';\n\tif (!Buffer.isBuffer(pub)) {\n\t\tpub = new Buffer(pub, enc);\n\t}\n\tthis.keys._importPublic(pub);\n\treturn this;\n};\n\nECDH.prototype.setPrivateKey = function (priv, enc) {\n\tenc = enc || 'utf8';\n\tif (!Buffer.isBuffer(priv)) {\n\t\tpriv = new Buffer(priv, enc);\n\t}\n\tvar _priv = new BN(priv);\n\t_priv = _priv.toString(16);\n\tthis.keys._importPrivate(_priv);\n\treturn this;\n};\n\nfunction formatReturnValue(bn, enc, len) {\n\tif (!Array.isArray(bn)) {\n\t\tbn = bn.toArray();\n\t}\n\tvar buf = new Buffer(bn);\n\tif (len && buf.length < len) {\n\t\tvar zeros = new Buffer(len - buf.length);\n\t\tzeros.fill(0);\n\t\tbuf = Buffer.concat([zeros, buf]);\n\t}\n\tif (!enc) {\n\t\treturn buf;\n\t} else {\n\t\treturn buf.toString(enc);\n\t}\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 131 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n/* WEBPACK VAR INJECTION */(function(Buffer) {\nvar intSize = 4;\nvar zeroBuffer = new Buffer(intSize); zeroBuffer.fill(0);\nvar chrsz = 8;\n\nfunction toArray(buf, bigEndian) {\n if ((buf.length % intSize) !== 0) {\n var len = buf.length + (intSize - (buf.length % intSize));\n buf = Buffer.concat([buf, zeroBuffer], len);\n }\n\n var arr = [];\n var fn = bigEndian ? buf.readInt32BE : buf.readInt32LE;\n for (var i = 0; i < buf.length; i += intSize) {\n arr.push(fn.call(buf, i));\n }\n return arr;\n}\n\nfunction toBuffer(arr, size, bigEndian) {\n var buf = new Buffer(size);\n var fn = bigEndian ? buf.writeInt32BE : buf.writeInt32LE;\n for (var i = 0; i < arr.length; i++) {\n fn.call(buf, arr[i], i * 4, true);\n }\n return buf;\n}\n\nfunction hash(buf, fn, hashSize, bigEndian) {\n if (!Buffer.isBuffer(buf)) buf = new Buffer(buf);\n var arr = fn(toArray(buf, bigEndian), buf.length * chrsz);\n return toBuffer(arr, hashSize, bigEndian);\n}\nexports.hash = hash;\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 132 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nexports.randomBytes = exports.rng = exports.pseudoRandomBytes = exports.prng = __webpack_require__(21)\nexports.createHash = exports.Hash = __webpack_require__(13)\nexports.createHmac = exports.Hmac = __webpack_require__(37)\n\nvar hashes = ['sha1', 'sha224', 'sha256', 'sha384', 'sha512', 'md5', 'rmd160'].concat(Object.keys(__webpack_require__(125)))\nexports.getHashes = function () {\n return hashes\n}\n\nvar p = __webpack_require__(75)\nexports.pbkdf2 = p.pbkdf2\nexports.pbkdf2Sync = p.pbkdf2Sync\n\nvar aes = __webpack_require__(122)\n;[\n 'Cipher',\n 'createCipher',\n 'Cipheriv',\n 'createCipheriv',\n 'Decipher',\n 'createDecipher',\n 'Decipheriv',\n 'createDecipheriv',\n 'getCiphers',\n 'listCiphers'\n].forEach(function (key) {\n exports[key] = aes[key]\n})\n\nvar dh = __webpack_require__(140)\n;[\n 'DiffieHellmanGroup',\n 'createDiffieHellmanGroup',\n 'getDiffieHellman',\n 'createDiffieHellman',\n 'DiffieHellman'\n].forEach(function (key) {\n exports[key] = dh[key]\n})\n\nvar sign = __webpack_require__(126)\n;[\n 'createSign',\n 'Sign',\n 'createVerify',\n 'Verify'\n].forEach(function (key) {\n exports[key] = sign[key]\n})\n\nexports.createECDH = __webpack_require__(130)\n\nvar publicEncrypt = __webpack_require__(176)\n\n;[\n 'publicEncrypt',\n 'privateEncrypt',\n 'publicDecrypt',\n 'privateDecrypt'\n].forEach(function (key) {\n exports[key] = publicEncrypt[key]\n})\n\n// the least I can do is make error messages for the rest of the node.js/crypto api.\n;[\n 'createCredentials'\n].forEach(function (name) {\n exports[name] = function () {\n throw new Error([\n 'sorry, ' + name + ' is not implemented yet',\n 'we accept pull requests',\n 'https://github.com/crypto-browserify/crypto-browserify'\n ].join('\\n'))\n }\n})\n\n\n/***/ }),\n/* 133 */\n/***/ (function(module, exports, __webpack_require__) {\n\n;(function (root, factory) {\n\tif (true) {\n\t\t// CommonJS\n\t\tmodule.exports = exports = factory();\n\t}\n\telse if (typeof define === \"function\" && define.amd) {\n\t\t// AMD\n\t\tdefine([], factory);\n\t}\n\telse {\n\t\t// Global (browser)\n\t\troot.CryptoJS = factory();\n\t}\n}(this, function () {\n\n\t/**\n\t * CryptoJS core components.\n\t */\n\tvar CryptoJS = CryptoJS || (function (Math, undefined) {\n\t /*\n\t * Local polyfil of Object.create\n\t */\n\t var create = Object.create || (function () {\n\t function F() {};\n\n\t return function (obj) {\n\t var subtype;\n\n\t F.prototype = obj;\n\n\t subtype = new F();\n\n\t F.prototype = null;\n\n\t return subtype;\n\t };\n\t }())\n\n\t /**\n\t * CryptoJS namespace.\n\t */\n\t var C = {};\n\n\t /**\n\t * Library namespace.\n\t */\n\t var C_lib = C.lib = {};\n\n\t /**\n\t * Base object for prototypal inheritance.\n\t */\n\t var Base = C_lib.Base = (function () {\n\n\n\t return {\n\t /**\n\t * Creates a new object that inherits from this object.\n\t *\n\t * @param {Object} overrides Properties to copy into the new object.\n\t *\n\t * @return {Object} The new object.\n\t *\n\t * @static\n\t *\n\t * @example\n\t *\n\t * var MyType = CryptoJS.lib.Base.extend({\n\t * field: 'value',\n\t *\n\t * method: function () {\n\t * }\n\t * });\n\t */\n\t extend: function (overrides) {\n\t // Spawn\n\t var subtype = create(this);\n\n\t // Augment\n\t if (overrides) {\n\t subtype.mixIn(overrides);\n\t }\n\n\t // Create default initializer\n\t if (!subtype.hasOwnProperty('init') || this.init === subtype.init) {\n\t subtype.init = function () {\n\t subtype.$super.init.apply(this, arguments);\n\t };\n\t }\n\n\t // Initializer's prototype is the subtype object\n\t subtype.init.prototype = subtype;\n\n\t // Reference supertype\n\t subtype.$super = this;\n\n\t return subtype;\n\t },\n\n\t /**\n\t * Extends this object and runs the init method.\n\t * Arguments to create() will be passed to init().\n\t *\n\t * @return {Object} The new object.\n\t *\n\t * @static\n\t *\n\t * @example\n\t *\n\t * var instance = MyType.create();\n\t */\n\t create: function () {\n\t var instance = this.extend();\n\t instance.init.apply(instance, arguments);\n\n\t return instance;\n\t },\n\n\t /**\n\t * Initializes a newly created object.\n\t * Override this method to add some logic when your objects are created.\n\t *\n\t * @example\n\t *\n\t * var MyType = CryptoJS.lib.Base.extend({\n\t * init: function () {\n\t * // ...\n\t * }\n\t * });\n\t */\n\t init: function () {\n\t },\n\n\t /**\n\t * Copies properties into this object.\n\t *\n\t * @param {Object} properties The properties to mix in.\n\t *\n\t * @example\n\t *\n\t * MyType.mixIn({\n\t * field: 'value'\n\t * });\n\t */\n\t mixIn: function (properties) {\n\t for (var propertyName in properties) {\n\t if (properties.hasOwnProperty(propertyName)) {\n\t this[propertyName] = properties[propertyName];\n\t }\n\t }\n\n\t // IE won't copy toString using the loop above\n\t if (properties.hasOwnProperty('toString')) {\n\t this.toString = properties.toString;\n\t }\n\t },\n\n\t /**\n\t * Creates a copy of this object.\n\t *\n\t * @return {Object} The clone.\n\t *\n\t * @example\n\t *\n\t * var clone = instance.clone();\n\t */\n\t clone: function () {\n\t return this.init.prototype.extend(this);\n\t }\n\t };\n\t }());\n\n\t /**\n\t * An array of 32-bit words.\n\t *\n\t * @property {Array} words The array of 32-bit words.\n\t * @property {number} sigBytes The number of significant bytes in this word array.\n\t */\n\t var WordArray = C_lib.WordArray = Base.extend({\n\t /**\n\t * Initializes a newly created word array.\n\t *\n\t * @param {Array} words (Optional) An array of 32-bit words.\n\t * @param {number} sigBytes (Optional) The number of significant bytes in the words.\n\t *\n\t * @example\n\t *\n\t * var wordArray = CryptoJS.lib.WordArray.create();\n\t * var wordArray = CryptoJS.lib.WordArray.create([0x00010203, 0x04050607]);\n\t * var wordArray = CryptoJS.lib.WordArray.create([0x00010203, 0x04050607], 6);\n\t */\n\t init: function (words, sigBytes) {\n\t words = this.words = words || [];\n\n\t if (sigBytes != undefined) {\n\t this.sigBytes = sigBytes;\n\t } else {\n\t this.sigBytes = words.length * 4;\n\t }\n\t },\n\n\t /**\n\t * Converts this word array to a string.\n\t *\n\t * @param {Encoder} encoder (Optional) The encoding strategy to use. Default: CryptoJS.enc.Hex\n\t *\n\t * @return {string} The stringified word array.\n\t *\n\t * @example\n\t *\n\t * var string = wordArray + '';\n\t * var string = wordArray.toString();\n\t * var string = wordArray.toString(CryptoJS.enc.Utf8);\n\t */\n\t toString: function (encoder) {\n\t return (encoder || Hex).stringify(this);\n\t },\n\n\t /**\n\t * Concatenates a word array to this word array.\n\t *\n\t * @param {WordArray} wordArray The word array to append.\n\t *\n\t * @return {WordArray} This word array.\n\t *\n\t * @example\n\t *\n\t * wordArray1.concat(wordArray2);\n\t */\n\t concat: function (wordArray) {\n\t // Shortcuts\n\t var thisWords = this.words;\n\t var thatWords = wordArray.words;\n\t var thisSigBytes = this.sigBytes;\n\t var thatSigBytes = wordArray.sigBytes;\n\n\t // Clamp excess bits\n\t this.clamp();\n\n\t // Concat\n\t if (thisSigBytes % 4) {\n\t // Copy one byte at a time\n\t for (var i = 0; i < thatSigBytes; i++) {\n\t var thatByte = (thatWords[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff;\n\t thisWords[(thisSigBytes + i) >>> 2] |= thatByte << (24 - ((thisSigBytes + i) % 4) * 8);\n\t }\n\t } else {\n\t // Copy one word at a time\n\t for (var i = 0; i < thatSigBytes; i += 4) {\n\t thisWords[(thisSigBytes + i) >>> 2] = thatWords[i >>> 2];\n\t }\n\t }\n\t this.sigBytes += thatSigBytes;\n\n\t // Chainable\n\t return this;\n\t },\n\n\t /**\n\t * Removes insignificant bits.\n\t *\n\t * @example\n\t *\n\t * wordArray.clamp();\n\t */\n\t clamp: function () {\n\t // Shortcuts\n\t var words = this.words;\n\t var sigBytes = this.sigBytes;\n\n\t // Clamp\n\t words[sigBytes >>> 2] &= 0xffffffff << (32 - (sigBytes % 4) * 8);\n\t words.length = Math.ceil(sigBytes / 4);\n\t },\n\n\t /**\n\t * Creates a copy of this word array.\n\t *\n\t * @return {WordArray} The clone.\n\t *\n\t * @example\n\t *\n\t * var clone = wordArray.clone();\n\t */\n\t clone: function () {\n\t var clone = Base.clone.call(this);\n\t clone.words = this.words.slice(0);\n\n\t return clone;\n\t },\n\n\t /**\n\t * Creates a word array filled with random bytes.\n\t *\n\t * @param {number} nBytes The number of random bytes to generate.\n\t *\n\t * @return {WordArray} The random word array.\n\t *\n\t * @static\n\t *\n\t * @example\n\t *\n\t * var wordArray = CryptoJS.lib.WordArray.random(16);\n\t */\n\t random: function (nBytes) {\n\t var words = [];\n\n\t var r = (function (m_w) {\n\t var m_w = m_w;\n\t var m_z = 0x3ade68b1;\n\t var mask = 0xffffffff;\n\n\t return function () {\n\t m_z = (0x9069 * (m_z & 0xFFFF) + (m_z >> 0x10)) & mask;\n\t m_w = (0x4650 * (m_w & 0xFFFF) + (m_w >> 0x10)) & mask;\n\t var result = ((m_z << 0x10) + m_w) & mask;\n\t result /= 0x100000000;\n\t result += 0.5;\n\t return result * (Math.random() > .5 ? 1 : -1);\n\t }\n\t });\n\n\t for (var i = 0, rcache; i < nBytes; i += 4) {\n\t var _r = r((rcache || Math.random()) * 0x100000000);\n\n\t rcache = _r() * 0x3ade67b7;\n\t words.push((_r() * 0x100000000) | 0);\n\t }\n\n\t return new WordArray.init(words, nBytes);\n\t }\n\t });\n\n\t /**\n\t * Encoder namespace.\n\t */\n\t var C_enc = C.enc = {};\n\n\t /**\n\t * Hex encoding strategy.\n\t */\n\t var Hex = C_enc.Hex = {\n\t /**\n\t * Converts a word array to a hex string.\n\t *\n\t * @param {WordArray} wordArray The word array.\n\t *\n\t * @return {string} The hex string.\n\t *\n\t * @static\n\t *\n\t * @example\n\t *\n\t * var hexString = CryptoJS.enc.Hex.stringify(wordArray);\n\t */\n\t stringify: function (wordArray) {\n\t // Shortcuts\n\t var words = wordArray.words;\n\t var sigBytes = wordArray.sigBytes;\n\n\t // Convert\n\t var hexChars = [];\n\t for (var i = 0; i < sigBytes; i++) {\n\t var bite = (words[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff;\n\t hexChars.push((bite >>> 4).toString(16));\n\t hexChars.push((bite & 0x0f).toString(16));\n\t }\n\n\t return hexChars.join('');\n\t },\n\n\t /**\n\t * Converts a hex string to a word array.\n\t *\n\t * @param {string} hexStr The hex string.\n\t *\n\t * @return {WordArray} The word array.\n\t *\n\t * @static\n\t *\n\t * @example\n\t *\n\t * var wordArray = CryptoJS.enc.Hex.parse(hexString);\n\t */\n\t parse: function (hexStr) {\n\t // Shortcut\n\t var hexStrLength = hexStr.length;\n\n\t // Convert\n\t var words = [];\n\t for (var i = 0; i < hexStrLength; i += 2) {\n\t words[i >>> 3] |= parseInt(hexStr.substr(i, 2), 16) << (24 - (i % 8) * 4);\n\t }\n\n\t return new WordArray.init(words, hexStrLength / 2);\n\t }\n\t };\n\n\t /**\n\t * Latin1 encoding strategy.\n\t */\n\t var Latin1 = C_enc.Latin1 = {\n\t /**\n\t * Converts a word array to a Latin1 string.\n\t *\n\t * @param {WordArray} wordArray The word array.\n\t *\n\t * @return {string} The Latin1 string.\n\t *\n\t * @static\n\t *\n\t * @example\n\t *\n\t * var latin1String = CryptoJS.enc.Latin1.stringify(wordArray);\n\t */\n\t stringify: function (wordArray) {\n\t // Shortcuts\n\t var words = wordArray.words;\n\t var sigBytes = wordArray.sigBytes;\n\n\t // Convert\n\t var latin1Chars = [];\n\t for (var i = 0; i < sigBytes; i++) {\n\t var bite = (words[i >>> 2] >>> (24 - (i % 4) * 8)) & 0xff;\n\t latin1Chars.push(String.fromCharCode(bite));\n\t }\n\n\t return latin1Chars.join('');\n\t },\n\n\t /**\n\t * Converts a Latin1 string to a word array.\n\t *\n\t * @param {string} latin1Str The Latin1 string.\n\t *\n\t * @return {WordArray} The word array.\n\t *\n\t * @static\n\t *\n\t * @example\n\t *\n\t * var wordArray = CryptoJS.enc.Latin1.parse(latin1String);\n\t */\n\t parse: function (latin1Str) {\n\t // Shortcut\n\t var latin1StrLength = latin1Str.length;\n\n\t // Convert\n\t var words = [];\n\t for (var i = 0; i < latin1StrLength; i++) {\n\t words[i >>> 2] |= (latin1Str.charCodeAt(i) & 0xff) << (24 - (i % 4) * 8);\n\t }\n\n\t return new WordArray.init(words, latin1StrLength);\n\t }\n\t };\n\n\t /**\n\t * UTF-8 encoding strategy.\n\t */\n\t var Utf8 = C_enc.Utf8 = {\n\t /**\n\t * Converts a word array to a UTF-8 string.\n\t *\n\t * @param {WordArray} wordArray The word array.\n\t *\n\t * @return {string} The UTF-8 string.\n\t *\n\t * @static\n\t *\n\t * @example\n\t *\n\t * var utf8String = CryptoJS.enc.Utf8.stringify(wordArray);\n\t */\n\t stringify: function (wordArray) {\n\t try {\n\t return decodeURIComponent(escape(Latin1.stringify(wordArray)));\n\t } catch (e) {\n\t throw new Error('Malformed UTF-8 data');\n\t }\n\t },\n\n\t /**\n\t * Converts a UTF-8 string to a word array.\n\t *\n\t * @param {string} utf8Str The UTF-8 string.\n\t *\n\t * @return {WordArray} The word array.\n\t *\n\t * @static\n\t *\n\t * @example\n\t *\n\t * var wordArray = CryptoJS.enc.Utf8.parse(utf8String);\n\t */\n\t parse: function (utf8Str) {\n\t return Latin1.parse(unescape(encodeURIComponent(utf8Str)));\n\t }\n\t };\n\n\t /**\n\t * Abstract buffered block algorithm template.\n\t *\n\t * The property blockSize must be implemented in a concrete subtype.\n\t *\n\t * @property {number} _minBufferSize The number of blocks that should be kept unprocessed in the buffer. Default: 0\n\t */\n\t var BufferedBlockAlgorithm = C_lib.BufferedBlockAlgorithm = Base.extend({\n\t /**\n\t * Resets this block algorithm's data buffer to its initial state.\n\t *\n\t * @example\n\t *\n\t * bufferedBlockAlgorithm.reset();\n\t */\n\t reset: function () {\n\t // Initial values\n\t this._data = new WordArray.init();\n\t this._nDataBytes = 0;\n\t },\n\n\t /**\n\t * Adds new data to this block algorithm's buffer.\n\t *\n\t * @param {WordArray|string} data The data to append. Strings are converted to a WordArray using UTF-8.\n\t *\n\t * @example\n\t *\n\t * bufferedBlockAlgorithm._append('data');\n\t * bufferedBlockAlgorithm._append(wordArray);\n\t */\n\t _append: function (data) {\n\t // Convert string to WordArray, else assume WordArray already\n\t if (typeof data == 'string') {\n\t data = Utf8.parse(data);\n\t }\n\n\t // Append\n\t this._data.concat(data);\n\t this._nDataBytes += data.sigBytes;\n\t },\n\n\t /**\n\t * Processes available data blocks.\n\t *\n\t * This method invokes _doProcessBlock(offset), which must be implemented by a concrete subtype.\n\t *\n\t * @param {boolean} doFlush Whether all blocks and partial blocks should be processed.\n\t *\n\t * @return {WordArray} The processed data.\n\t *\n\t * @example\n\t *\n\t * var processedData = bufferedBlockAlgorithm._process();\n\t * var processedData = bufferedBlockAlgorithm._process(!!'flush');\n\t */\n\t _process: function (doFlush) {\n\t // Shortcuts\n\t var data = this._data;\n\t var dataWords = data.words;\n\t var dataSigBytes = data.sigBytes;\n\t var blockSize = this.blockSize;\n\t var blockSizeBytes = blockSize * 4;\n\n\t // Count blocks ready\n\t var nBlocksReady = dataSigBytes / blockSizeBytes;\n\t if (doFlush) {\n\t // Round up to include partial blocks\n\t nBlocksReady = Math.ceil(nBlocksReady);\n\t } else {\n\t // Round down to include only full blocks,\n\t // less the number of blocks that must remain in the buffer\n\t nBlocksReady = Math.max((nBlocksReady | 0) - this._minBufferSize, 0);\n\t }\n\n\t // Count words ready\n\t var nWordsReady = nBlocksReady * blockSize;\n\n\t // Count bytes ready\n\t var nBytesReady = Math.min(nWordsReady * 4, dataSigBytes);\n\n\t // Process blocks\n\t if (nWordsReady) {\n\t for (var offset = 0; offset < nWordsReady; offset += blockSize) {\n\t // Perform concrete-algorithm logic\n\t this._doProcessBlock(dataWords, offset);\n\t }\n\n\t // Remove processed words\n\t var processedWords = dataWords.splice(0, nWordsReady);\n\t data.sigBytes -= nBytesReady;\n\t }\n\n\t // Return processed words\n\t return new WordArray.init(processedWords, nBytesReady);\n\t },\n\n\t /**\n\t * Creates a copy of this object.\n\t *\n\t * @return {Object} The clone.\n\t *\n\t * @example\n\t *\n\t * var clone = bufferedBlockAlgorithm.clone();\n\t */\n\t clone: function () {\n\t var clone = Base.clone.call(this);\n\t clone._data = this._data.clone();\n\n\t return clone;\n\t },\n\n\t _minBufferSize: 0\n\t });\n\n\t /**\n\t * Abstract hasher template.\n\t *\n\t * @property {number} blockSize The number of 32-bit words this hasher operates on. Default: 16 (512 bits)\n\t */\n\t var Hasher = C_lib.Hasher = BufferedBlockAlgorithm.extend({\n\t /**\n\t * Configuration options.\n\t */\n\t cfg: Base.extend(),\n\n\t /**\n\t * Initializes a newly created hasher.\n\t *\n\t * @param {Object} cfg (Optional) The configuration options to use for this hash computation.\n\t *\n\t * @example\n\t *\n\t * var hasher = CryptoJS.algo.SHA256.create();\n\t */\n\t init: function (cfg) {\n\t // Apply config defaults\n\t this.cfg = this.cfg.extend(cfg);\n\n\t // Set initial values\n\t this.reset();\n\t },\n\n\t /**\n\t * Resets this hasher to its initial state.\n\t *\n\t * @example\n\t *\n\t * hasher.reset();\n\t */\n\t reset: function () {\n\t // Reset data buffer\n\t BufferedBlockAlgorithm.reset.call(this);\n\n\t // Perform concrete-hasher logic\n\t this._doReset();\n\t },\n\n\t /**\n\t * Updates this hasher with a message.\n\t *\n\t * @param {WordArray|string} messageUpdate The message to append.\n\t *\n\t * @return {Hasher} This hasher.\n\t *\n\t * @example\n\t *\n\t * hasher.update('message');\n\t * hasher.update(wordArray);\n\t */\n\t update: function (messageUpdate) {\n\t // Append\n\t this._append(messageUpdate);\n\n\t // Update the hash\n\t this._process();\n\n\t // Chainable\n\t return this;\n\t },\n\n\t /**\n\t * Finalizes the hash computation.\n\t * Note that the finalize operation is effectively a destructive, read-once operation.\n\t *\n\t * @param {WordArray|string} messageUpdate (Optional) A final message update.\n\t *\n\t * @return {WordArray} The hash.\n\t *\n\t * @example\n\t *\n\t * var hash = hasher.finalize();\n\t * var hash = hasher.finalize('message');\n\t * var hash = hasher.finalize(wordArray);\n\t */\n\t finalize: function (messageUpdate) {\n\t // Final message update\n\t if (messageUpdate) {\n\t this._append(messageUpdate);\n\t }\n\n\t // Perform concrete-hasher logic\n\t var hash = this._doFinalize();\n\n\t return hash;\n\t },\n\n\t blockSize: 512/32,\n\n\t /**\n\t * Creates a shortcut function to a hasher's object interface.\n\t *\n\t * @param {Hasher} hasher The hasher to create a helper for.\n\t *\n\t * @return {Function} The shortcut function.\n\t *\n\t * @static\n\t *\n\t * @example\n\t *\n\t * var SHA256 = CryptoJS.lib.Hasher._createHelper(CryptoJS.algo.SHA256);\n\t */\n\t _createHelper: function (hasher) {\n\t return function (message, cfg) {\n\t return new hasher.init(cfg).finalize(message);\n\t };\n\t },\n\n\t /**\n\t * Creates a shortcut function to the HMAC's object interface.\n\t *\n\t * @param {Hasher} hasher The hasher to use in this HMAC helper.\n\t *\n\t * @return {Function} The shortcut function.\n\t *\n\t * @static\n\t *\n\t * @example\n\t *\n\t * var HmacSHA256 = CryptoJS.lib.Hasher._createHmacHelper(CryptoJS.algo.SHA256);\n\t */\n\t _createHmacHelper: function (hasher) {\n\t return function (message, key) {\n\t return new C_algo.HMAC.init(hasher, key).finalize(message);\n\t };\n\t }\n\t });\n\n\t /**\n\t * Algorithm namespace.\n\t */\n\t var C_algo = C.algo = {};\n\n\t return C;\n\t}(Math));\n\n\n\treturn CryptoJS;\n\n}));\n\n/***/ }),\n/* 134 */\n/***/ (function(module, exports, __webpack_require__) {\n\n;(function (root, factory) {\n\tif (true) {\n\t\t// CommonJS\n\t\tmodule.exports = exports = factory(__webpack_require__(133));\n\t}\n\telse if (typeof define === \"function\" && define.amd) {\n\t\t// AMD\n\t\tdefine([\"./core\"], factory);\n\t}\n\telse {\n\t\t// Global (browser)\n\t\tfactory(root.CryptoJS);\n\t}\n}(this, function (CryptoJS) {\n\n\t(function (Math) {\n\t // Shortcuts\n\t var C = CryptoJS;\n\t var C_lib = C.lib;\n\t var WordArray = C_lib.WordArray;\n\t var Hasher = C_lib.Hasher;\n\t var C_algo = C.algo;\n\n\t // Initialization and round constants tables\n\t var H = [];\n\t var K = [];\n\n\t // Compute constants\n\t (function () {\n\t function isPrime(n) {\n\t var sqrtN = Math.sqrt(n);\n\t for (var factor = 2; factor <= sqrtN; factor++) {\n\t if (!(n % factor)) {\n\t return false;\n\t }\n\t }\n\n\t return true;\n\t }\n\n\t function getFractionalBits(n) {\n\t return ((n - (n | 0)) * 0x100000000) | 0;\n\t }\n\n\t var n = 2;\n\t var nPrime = 0;\n\t while (nPrime < 64) {\n\t if (isPrime(n)) {\n\t if (nPrime < 8) {\n\t H[nPrime] = getFractionalBits(Math.pow(n, 1 / 2));\n\t }\n\t K[nPrime] = getFractionalBits(Math.pow(n, 1 / 3));\n\n\t nPrime++;\n\t }\n\n\t n++;\n\t }\n\t }());\n\n\t // Reusable object\n\t var W = [];\n\n\t /**\n\t * SHA-256 hash algorithm.\n\t */\n\t var SHA256 = C_algo.SHA256 = Hasher.extend({\n\t _doReset: function () {\n\t this._hash = new WordArray.init(H.slice(0));\n\t },\n\n\t _doProcessBlock: function (M, offset) {\n\t // Shortcut\n\t var H = this._hash.words;\n\n\t // Working variables\n\t var a = H[0];\n\t var b = H[1];\n\t var c = H[2];\n\t var d = H[3];\n\t var e = H[4];\n\t var f = H[5];\n\t var g = H[6];\n\t var h = H[7];\n\n\t // Computation\n\t for (var i = 0; i < 64; i++) {\n\t if (i < 16) {\n\t W[i] = M[offset + i] | 0;\n\t } else {\n\t var gamma0x = W[i - 15];\n\t var gamma0 = ((gamma0x << 25) | (gamma0x >>> 7)) ^\n\t ((gamma0x << 14) | (gamma0x >>> 18)) ^\n\t (gamma0x >>> 3);\n\n\t var gamma1x = W[i - 2];\n\t var gamma1 = ((gamma1x << 15) | (gamma1x >>> 17)) ^\n\t ((gamma1x << 13) | (gamma1x >>> 19)) ^\n\t (gamma1x >>> 10);\n\n\t W[i] = gamma0 + W[i - 7] + gamma1 + W[i - 16];\n\t }\n\n\t var ch = (e & f) ^ (~e & g);\n\t var maj = (a & b) ^ (a & c) ^ (b & c);\n\n\t var sigma0 = ((a << 30) | (a >>> 2)) ^ ((a << 19) | (a >>> 13)) ^ ((a << 10) | (a >>> 22));\n\t var sigma1 = ((e << 26) | (e >>> 6)) ^ ((e << 21) | (e >>> 11)) ^ ((e << 7) | (e >>> 25));\n\n\t var t1 = h + sigma1 + ch + K[i] + W[i];\n\t var t2 = sigma0 + maj;\n\n\t h = g;\n\t g = f;\n\t f = e;\n\t e = (d + t1) | 0;\n\t d = c;\n\t c = b;\n\t b = a;\n\t a = (t1 + t2) | 0;\n\t }\n\n\t // Intermediate hash value\n\t H[0] = (H[0] + a) | 0;\n\t H[1] = (H[1] + b) | 0;\n\t H[2] = (H[2] + c) | 0;\n\t H[3] = (H[3] + d) | 0;\n\t H[4] = (H[4] + e) | 0;\n\t H[5] = (H[5] + f) | 0;\n\t H[6] = (H[6] + g) | 0;\n\t H[7] = (H[7] + h) | 0;\n\t },\n\n\t _doFinalize: function () {\n\t // Shortcuts\n\t var data = this._data;\n\t var dataWords = data.words;\n\n\t var nBitsTotal = this._nDataBytes * 8;\n\t var nBitsLeft = data.sigBytes * 8;\n\n\t // Add padding\n\t dataWords[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32);\n\t dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 14] = Math.floor(nBitsTotal / 0x100000000);\n\t dataWords[(((nBitsLeft + 64) >>> 9) << 4) + 15] = nBitsTotal;\n\t data.sigBytes = dataWords.length * 4;\n\n\t // Hash final blocks\n\t this._process();\n\n\t // Return final computed hash\n\t return this._hash;\n\t },\n\n\t clone: function () {\n\t var clone = Hasher.clone.call(this);\n\t clone._hash = this._hash.clone();\n\n\t return clone;\n\t }\n\t });\n\n\t /**\n\t * Shortcut function to the hasher's object interface.\n\t *\n\t * @param {WordArray|string} message The message to hash.\n\t *\n\t * @return {WordArray} The hash.\n\t *\n\t * @static\n\t *\n\t * @example\n\t *\n\t * var hash = CryptoJS.SHA256('message');\n\t * var hash = CryptoJS.SHA256(wordArray);\n\t */\n\t C.SHA256 = Hasher._createHelper(SHA256);\n\n\t /**\n\t * Shortcut function to the HMAC's object interface.\n\t *\n\t * @param {WordArray|string} message The message to hash.\n\t * @param {WordArray|string} key The secret key.\n\t *\n\t * @return {WordArray} The HMAC.\n\t *\n\t * @static\n\t *\n\t * @example\n\t *\n\t * var hmac = CryptoJS.HmacSHA256(message, key);\n\t */\n\t C.HmacSHA256 = Hasher._createHmacHelper(SHA256);\n\t}(Math));\n\n\n\treturn CryptoJS.SHA256;\n\n}));\n\n/***/ }),\n/* 135 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar assert = __webpack_require__(8);\nvar inherits = __webpack_require__(1);\n\nvar proto = {};\n\nfunction CBCState(iv) {\n assert.equal(iv.length, 8, 'Invalid IV length');\n\n this.iv = new Array(8);\n for (var i = 0; i < this.iv.length; i++)\n this.iv[i] = iv[i];\n}\n\nfunction instantiate(Base) {\n function CBC(options) {\n Base.call(this, options);\n this._cbcInit();\n }\n inherits(CBC, Base);\n\n var keys = Object.keys(proto);\n for (var i = 0; i < keys.length; i++) {\n var key = keys[i];\n CBC.prototype[key] = proto[key];\n }\n\n CBC.create = function create(options) {\n return new CBC(options);\n };\n\n return CBC;\n}\n\nexports.instantiate = instantiate;\n\nproto._cbcInit = function _cbcInit() {\n var state = new CBCState(this.options.iv);\n this._cbcState = state;\n};\n\nproto._update = function _update(inp, inOff, out, outOff) {\n var state = this._cbcState;\n var superProto = this.constructor.super_.prototype;\n\n var iv = state.iv;\n if (this.type === 'encrypt') {\n for (var i = 0; i < this.blockSize; i++)\n iv[i] ^= inp[inOff + i];\n\n superProto._update.call(this, iv, 0, out, outOff);\n\n for (var i = 0; i < this.blockSize; i++)\n iv[i] = out[outOff + i];\n } else {\n superProto._update.call(this, inp, inOff, out, outOff);\n\n for (var i = 0; i < this.blockSize; i++)\n out[outOff + i] ^= iv[i];\n\n for (var i = 0; i < this.blockSize; i++)\n iv[i] = inp[inOff + i];\n }\n};\n\n\n/***/ }),\n/* 136 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar assert = __webpack_require__(8);\n\nfunction Cipher(options) {\n this.options = options;\n\n this.type = this.options.type;\n this.blockSize = 8;\n this._init();\n\n this.buffer = new Array(this.blockSize);\n this.bufferOff = 0;\n}\nmodule.exports = Cipher;\n\nCipher.prototype._init = function _init() {\n // Might be overrided\n};\n\nCipher.prototype.update = function update(data) {\n if (data.length === 0)\n return [];\n\n if (this.type === 'decrypt')\n return this._updateDecrypt(data);\n else\n return this._updateEncrypt(data);\n};\n\nCipher.prototype._buffer = function _buffer(data, off) {\n // Append data to buffer\n var min = Math.min(this.buffer.length - this.bufferOff, data.length - off);\n for (var i = 0; i < min; i++)\n this.buffer[this.bufferOff + i] = data[off + i];\n this.bufferOff += min;\n\n // Shift next\n return min;\n};\n\nCipher.prototype._flushBuffer = function _flushBuffer(out, off) {\n this._update(this.buffer, 0, out, off);\n this.bufferOff = 0;\n return this.blockSize;\n};\n\nCipher.prototype._updateEncrypt = function _updateEncrypt(data) {\n var inputOff = 0;\n var outputOff = 0;\n\n var count = ((this.bufferOff + data.length) / this.blockSize) | 0;\n var out = new Array(count * this.blockSize);\n\n if (this.bufferOff !== 0) {\n inputOff += this._buffer(data, inputOff);\n\n if (this.bufferOff === this.buffer.length)\n outputOff += this._flushBuffer(out, outputOff);\n }\n\n // Write blocks\n var max = data.length - ((data.length - inputOff) % this.blockSize);\n for (; inputOff < max; inputOff += this.blockSize) {\n this._update(data, inputOff, out, outputOff);\n outputOff += this.blockSize;\n }\n\n // Queue rest\n for (; inputOff < data.length; inputOff++, this.bufferOff++)\n this.buffer[this.bufferOff] = data[inputOff];\n\n return out;\n};\n\nCipher.prototype._updateDecrypt = function _updateDecrypt(data) {\n var inputOff = 0;\n var outputOff = 0;\n\n var count = Math.ceil((this.bufferOff + data.length) / this.blockSize) - 1;\n var out = new Array(count * this.blockSize);\n\n // TODO(indutny): optimize it, this is far from optimal\n for (; count > 0; count--) {\n inputOff += this._buffer(data, inputOff);\n outputOff += this._flushBuffer(out, outputOff);\n }\n\n // Buffer rest of the input\n inputOff += this._buffer(data, inputOff);\n\n return out;\n};\n\nCipher.prototype.final = function final(buffer) {\n var first;\n if (buffer)\n first = this.update(buffer);\n\n var last;\n if (this.type === 'encrypt')\n last = this._finalEncrypt();\n else\n last = this._finalDecrypt();\n\n if (first)\n return first.concat(last);\n else\n return last;\n};\n\nCipher.prototype._pad = function _pad(buffer, off) {\n if (off === 0)\n return false;\n\n while (off < buffer.length)\n buffer[off++] = 0;\n\n return true;\n};\n\nCipher.prototype._finalEncrypt = function _finalEncrypt() {\n if (!this._pad(this.buffer, this.bufferOff))\n return [];\n\n var out = new Array(this.blockSize);\n this._update(this.buffer, 0, out, 0);\n return out;\n};\n\nCipher.prototype._unpad = function _unpad(buffer) {\n return buffer;\n};\n\nCipher.prototype._finalDecrypt = function _finalDecrypt() {\n assert.equal(this.bufferOff, this.blockSize, 'Not enough data to decrypt');\n var out = new Array(this.blockSize);\n this._flushBuffer(out, 0);\n\n return this._unpad(out);\n};\n\n\n/***/ }),\n/* 137 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar assert = __webpack_require__(8);\nvar inherits = __webpack_require__(1);\n\nvar des = __webpack_require__(38);\nvar utils = des.utils;\nvar Cipher = des.Cipher;\n\nfunction DESState() {\n this.tmp = new Array(2);\n this.keys = null;\n}\n\nfunction DES(options) {\n Cipher.call(this, options);\n\n var state = new DESState();\n this._desState = state;\n\n this.deriveKeys(state, options.key);\n}\ninherits(DES, Cipher);\nmodule.exports = DES;\n\nDES.create = function create(options) {\n return new DES(options);\n};\n\nvar shiftTable = [\n 1, 1, 2, 2, 2, 2, 2, 2,\n 1, 2, 2, 2, 2, 2, 2, 1\n];\n\nDES.prototype.deriveKeys = function deriveKeys(state, key) {\n state.keys = new Array(16 * 2);\n\n assert.equal(key.length, this.blockSize, 'Invalid key length');\n\n var kL = utils.readUInt32BE(key, 0);\n var kR = utils.readUInt32BE(key, 4);\n\n utils.pc1(kL, kR, state.tmp, 0);\n kL = state.tmp[0];\n kR = state.tmp[1];\n for (var i = 0; i < state.keys.length; i += 2) {\n var shift = shiftTable[i >>> 1];\n kL = utils.r28shl(kL, shift);\n kR = utils.r28shl(kR, shift);\n utils.pc2(kL, kR, state.keys, i);\n }\n};\n\nDES.prototype._update = function _update(inp, inOff, out, outOff) {\n var state = this._desState;\n\n var l = utils.readUInt32BE(inp, inOff);\n var r = utils.readUInt32BE(inp, inOff + 4);\n\n // Initial Permutation\n utils.ip(l, r, state.tmp, 0);\n l = state.tmp[0];\n r = state.tmp[1];\n\n if (this.type === 'encrypt')\n this._encrypt(state, l, r, state.tmp, 0);\n else\n this._decrypt(state, l, r, state.tmp, 0);\n\n l = state.tmp[0];\n r = state.tmp[1];\n\n utils.writeUInt32BE(out, l, outOff);\n utils.writeUInt32BE(out, r, outOff + 4);\n};\n\nDES.prototype._pad = function _pad(buffer, off) {\n var value = buffer.length - off;\n for (var i = off; i < buffer.length; i++)\n buffer[i] = value;\n\n return true;\n};\n\nDES.prototype._unpad = function _unpad(buffer) {\n var pad = buffer[buffer.length - 1];\n for (var i = buffer.length - pad; i < buffer.length; i++)\n assert.equal(buffer[i], pad);\n\n return buffer.slice(0, buffer.length - pad);\n};\n\nDES.prototype._encrypt = function _encrypt(state, lStart, rStart, out, off) {\n var l = lStart;\n var r = rStart;\n\n // Apply f() x16 times\n for (var i = 0; i < state.keys.length; i += 2) {\n var keyL = state.keys[i];\n var keyR = state.keys[i + 1];\n\n // f(r, k)\n utils.expand(r, state.tmp, 0);\n\n keyL ^= state.tmp[0];\n keyR ^= state.tmp[1];\n var s = utils.substitute(keyL, keyR);\n var f = utils.permute(s);\n\n var t = r;\n r = (l ^ f) >>> 0;\n l = t;\n }\n\n // Reverse Initial Permutation\n utils.rip(r, l, out, off);\n};\n\nDES.prototype._decrypt = function _decrypt(state, lStart, rStart, out, off) {\n var l = rStart;\n var r = lStart;\n\n // Apply f() x16 times\n for (var i = state.keys.length - 2; i >= 0; i -= 2) {\n var keyL = state.keys[i];\n var keyR = state.keys[i + 1];\n\n // f(r, k)\n utils.expand(l, state.tmp, 0);\n\n keyL ^= state.tmp[0];\n keyR ^= state.tmp[1];\n var s = utils.substitute(keyL, keyR);\n var f = utils.permute(s);\n\n var t = l;\n l = (r ^ f) >>> 0;\n r = t;\n }\n\n // Reverse Initial Permutation\n utils.rip(l, r, out, off);\n};\n\n\n/***/ }),\n/* 138 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar assert = __webpack_require__(8);\nvar inherits = __webpack_require__(1);\n\nvar des = __webpack_require__(38);\nvar Cipher = des.Cipher;\nvar DES = des.DES;\n\nfunction EDEState(type, key) {\n assert.equal(key.length, 24, 'Invalid key length');\n\n var k1 = key.slice(0, 8);\n var k2 = key.slice(8, 16);\n var k3 = key.slice(16, 24);\n\n if (type === 'encrypt') {\n this.ciphers = [\n DES.create({ type: 'encrypt', key: k1 }),\n DES.create({ type: 'decrypt', key: k2 }),\n DES.create({ type: 'encrypt', key: k3 })\n ];\n } else {\n this.ciphers = [\n DES.create({ type: 'decrypt', key: k3 }),\n DES.create({ type: 'encrypt', key: k2 }),\n DES.create({ type: 'decrypt', key: k1 })\n ];\n }\n}\n\nfunction EDE(options) {\n Cipher.call(this, options);\n\n var state = new EDEState(this.type, this.options.key);\n this._edeState = state;\n}\ninherits(EDE, Cipher);\n\nmodule.exports = EDE;\n\nEDE.create = function create(options) {\n return new EDE(options);\n};\n\nEDE.prototype._update = function _update(inp, inOff, out, outOff) {\n var state = this._edeState;\n\n state.ciphers[0]._update(inp, inOff, out, outOff);\n state.ciphers[1]._update(out, outOff, out, outOff);\n state.ciphers[2]._update(out, outOff, out, outOff);\n};\n\nEDE.prototype._pad = DES.prototype._pad;\nEDE.prototype._unpad = DES.prototype._unpad;\n\n\n/***/ }),\n/* 139 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nexports.readUInt32BE = function readUInt32BE(bytes, off) {\n var res = (bytes[0 + off] << 24) |\n (bytes[1 + off] << 16) |\n (bytes[2 + off] << 8) |\n bytes[3 + off];\n return res >>> 0;\n};\n\nexports.writeUInt32BE = function writeUInt32BE(bytes, value, off) {\n bytes[0 + off] = value >>> 24;\n bytes[1 + off] = (value >>> 16) & 0xff;\n bytes[2 + off] = (value >>> 8) & 0xff;\n bytes[3 + off] = value & 0xff;\n};\n\nexports.ip = function ip(inL, inR, out, off) {\n var outL = 0;\n var outR = 0;\n\n for (var i = 6; i >= 0; i -= 2) {\n for (var j = 0; j <= 24; j += 8) {\n outL <<= 1;\n outL |= (inR >>> (j + i)) & 1;\n }\n for (var j = 0; j <= 24; j += 8) {\n outL <<= 1;\n outL |= (inL >>> (j + i)) & 1;\n }\n }\n\n for (var i = 6; i >= 0; i -= 2) {\n for (var j = 1; j <= 25; j += 8) {\n outR <<= 1;\n outR |= (inR >>> (j + i)) & 1;\n }\n for (var j = 1; j <= 25; j += 8) {\n outR <<= 1;\n outR |= (inL >>> (j + i)) & 1;\n }\n }\n\n out[off + 0] = outL >>> 0;\n out[off + 1] = outR >>> 0;\n};\n\nexports.rip = function rip(inL, inR, out, off) {\n var outL = 0;\n var outR = 0;\n\n for (var i = 0; i < 4; i++) {\n for (var j = 24; j >= 0; j -= 8) {\n outL <<= 1;\n outL |= (inR >>> (j + i)) & 1;\n outL <<= 1;\n outL |= (inL >>> (j + i)) & 1;\n }\n }\n for (var i = 4; i < 8; i++) {\n for (var j = 24; j >= 0; j -= 8) {\n outR <<= 1;\n outR |= (inR >>> (j + i)) & 1;\n outR <<= 1;\n outR |= (inL >>> (j + i)) & 1;\n }\n }\n\n out[off + 0] = outL >>> 0;\n out[off + 1] = outR >>> 0;\n};\n\nexports.pc1 = function pc1(inL, inR, out, off) {\n var outL = 0;\n var outR = 0;\n\n // 7, 15, 23, 31, 39, 47, 55, 63\n // 6, 14, 22, 30, 39, 47, 55, 63\n // 5, 13, 21, 29, 39, 47, 55, 63\n // 4, 12, 20, 28\n for (var i = 7; i >= 5; i--) {\n for (var j = 0; j <= 24; j += 8) {\n outL <<= 1;\n outL |= (inR >> (j + i)) & 1;\n }\n for (var j = 0; j <= 24; j += 8) {\n outL <<= 1;\n outL |= (inL >> (j + i)) & 1;\n }\n }\n for (var j = 0; j <= 24; j += 8) {\n outL <<= 1;\n outL |= (inR >> (j + i)) & 1;\n }\n\n // 1, 9, 17, 25, 33, 41, 49, 57\n // 2, 10, 18, 26, 34, 42, 50, 58\n // 3, 11, 19, 27, 35, 43, 51, 59\n // 36, 44, 52, 60\n for (var i = 1; i <= 3; i++) {\n for (var j = 0; j <= 24; j += 8) {\n outR <<= 1;\n outR |= (inR >> (j + i)) & 1;\n }\n for (var j = 0; j <= 24; j += 8) {\n outR <<= 1;\n outR |= (inL >> (j + i)) & 1;\n }\n }\n for (var j = 0; j <= 24; j += 8) {\n outR <<= 1;\n outR |= (inL >> (j + i)) & 1;\n }\n\n out[off + 0] = outL >>> 0;\n out[off + 1] = outR >>> 0;\n};\n\nexports.r28shl = function r28shl(num, shift) {\n return ((num << shift) & 0xfffffff) | (num >>> (28 - shift));\n};\n\nvar pc2table = [\n // inL => outL\n 14, 11, 17, 4, 27, 23, 25, 0,\n 13, 22, 7, 18, 5, 9, 16, 24,\n 2, 20, 12, 21, 1, 8, 15, 26,\n\n // inR => outR\n 15, 4, 25, 19, 9, 1, 26, 16,\n 5, 11, 23, 8, 12, 7, 17, 0,\n 22, 3, 10, 14, 6, 20, 27, 24\n];\n\nexports.pc2 = function pc2(inL, inR, out, off) {\n var outL = 0;\n var outR = 0;\n\n var len = pc2table.length >>> 1;\n for (var i = 0; i < len; i++) {\n outL <<= 1;\n outL |= (inL >>> pc2table[i]) & 0x1;\n }\n for (var i = len; i < pc2table.length; i++) {\n outR <<= 1;\n outR |= (inR >>> pc2table[i]) & 0x1;\n }\n\n out[off + 0] = outL >>> 0;\n out[off + 1] = outR >>> 0;\n};\n\nexports.expand = function expand(r, out, off) {\n var outL = 0;\n var outR = 0;\n\n outL = ((r & 1) << 5) | (r >>> 27);\n for (var i = 23; i >= 15; i -= 4) {\n outL <<= 6;\n outL |= (r >>> i) & 0x3f;\n }\n for (var i = 11; i >= 3; i -= 4) {\n outR |= (r >>> i) & 0x3f;\n outR <<= 6;\n }\n outR |= ((r & 0x1f) << 1) | (r >>> 31);\n\n out[off + 0] = outL >>> 0;\n out[off + 1] = outR >>> 0;\n};\n\nvar sTable = [\n 14, 0, 4, 15, 13, 7, 1, 4, 2, 14, 15, 2, 11, 13, 8, 1,\n 3, 10, 10, 6, 6, 12, 12, 11, 5, 9, 9, 5, 0, 3, 7, 8,\n 4, 15, 1, 12, 14, 8, 8, 2, 13, 4, 6, 9, 2, 1, 11, 7,\n 15, 5, 12, 11, 9, 3, 7, 14, 3, 10, 10, 0, 5, 6, 0, 13,\n\n 15, 3, 1, 13, 8, 4, 14, 7, 6, 15, 11, 2, 3, 8, 4, 14,\n 9, 12, 7, 0, 2, 1, 13, 10, 12, 6, 0, 9, 5, 11, 10, 5,\n 0, 13, 14, 8, 7, 10, 11, 1, 10, 3, 4, 15, 13, 4, 1, 2,\n 5, 11, 8, 6, 12, 7, 6, 12, 9, 0, 3, 5, 2, 14, 15, 9,\n\n 10, 13, 0, 7, 9, 0, 14, 9, 6, 3, 3, 4, 15, 6, 5, 10,\n 1, 2, 13, 8, 12, 5, 7, 14, 11, 12, 4, 11, 2, 15, 8, 1,\n 13, 1, 6, 10, 4, 13, 9, 0, 8, 6, 15, 9, 3, 8, 0, 7,\n 11, 4, 1, 15, 2, 14, 12, 3, 5, 11, 10, 5, 14, 2, 7, 12,\n\n 7, 13, 13, 8, 14, 11, 3, 5, 0, 6, 6, 15, 9, 0, 10, 3,\n 1, 4, 2, 7, 8, 2, 5, 12, 11, 1, 12, 10, 4, 14, 15, 9,\n 10, 3, 6, 15, 9, 0, 0, 6, 12, 10, 11, 1, 7, 13, 13, 8,\n 15, 9, 1, 4, 3, 5, 14, 11, 5, 12, 2, 7, 8, 2, 4, 14,\n\n 2, 14, 12, 11, 4, 2, 1, 12, 7, 4, 10, 7, 11, 13, 6, 1,\n 8, 5, 5, 0, 3, 15, 15, 10, 13, 3, 0, 9, 14, 8, 9, 6,\n 4, 11, 2, 8, 1, 12, 11, 7, 10, 1, 13, 14, 7, 2, 8, 13,\n 15, 6, 9, 15, 12, 0, 5, 9, 6, 10, 3, 4, 0, 5, 14, 3,\n\n 12, 10, 1, 15, 10, 4, 15, 2, 9, 7, 2, 12, 6, 9, 8, 5,\n 0, 6, 13, 1, 3, 13, 4, 14, 14, 0, 7, 11, 5, 3, 11, 8,\n 9, 4, 14, 3, 15, 2, 5, 12, 2, 9, 8, 5, 12, 15, 3, 10,\n 7, 11, 0, 14, 4, 1, 10, 7, 1, 6, 13, 0, 11, 8, 6, 13,\n\n 4, 13, 11, 0, 2, 11, 14, 7, 15, 4, 0, 9, 8, 1, 13, 10,\n 3, 14, 12, 3, 9, 5, 7, 12, 5, 2, 10, 15, 6, 8, 1, 6,\n 1, 6, 4, 11, 11, 13, 13, 8, 12, 1, 3, 4, 7, 10, 14, 7,\n 10, 9, 15, 5, 6, 0, 8, 15, 0, 14, 5, 2, 9, 3, 2, 12,\n\n 13, 1, 2, 15, 8, 13, 4, 8, 6, 10, 15, 3, 11, 7, 1, 4,\n 10, 12, 9, 5, 3, 6, 14, 11, 5, 0, 0, 14, 12, 9, 7, 2,\n 7, 2, 11, 1, 4, 14, 1, 7, 9, 4, 12, 10, 14, 8, 2, 13,\n 0, 15, 6, 12, 10, 9, 13, 0, 15, 3, 3, 5, 5, 6, 8, 11\n];\n\nexports.substitute = function substitute(inL, inR) {\n var out = 0;\n for (var i = 0; i < 4; i++) {\n var b = (inL >>> (18 - i * 6)) & 0x3f;\n var sb = sTable[i * 0x40 + b];\n\n out <<= 4;\n out |= sb;\n }\n for (var i = 0; i < 4; i++) {\n var b = (inR >>> (18 - i * 6)) & 0x3f;\n var sb = sTable[4 * 0x40 + i * 0x40 + b];\n\n out <<= 4;\n out |= sb;\n }\n return out >>> 0;\n};\n\nvar permuteTable = [\n 16, 25, 12, 11, 3, 20, 4, 15, 31, 17, 9, 6, 27, 14, 1, 22,\n 30, 24, 8, 18, 0, 5, 29, 23, 13, 19, 2, 26, 10, 21, 28, 7\n];\n\nexports.permute = function permute(num) {\n var out = 0;\n for (var i = 0; i < permuteTable.length; i++) {\n out <<= 1;\n out |= (num >>> permuteTable[i]) & 0x1;\n }\n return out >>> 0;\n};\n\nexports.padSplit = function padSplit(num, size, group) {\n var str = num.toString(2);\n while (str.length < size)\n str = '0' + str;\n\n var out = [];\n for (var i = 0; i < size; i += group)\n out.push(str.slice(i, i + group));\n return out.join(' ');\n};\n\n\n/***/ }),\n/* 140 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var generatePrime = __webpack_require__(70)\nvar primes = __webpack_require__(142)\n\nvar DH = __webpack_require__(141)\n\nfunction getDiffieHellman (mod) {\n var prime = new Buffer(primes[mod].prime, 'hex')\n var gen = new Buffer(primes[mod].gen, 'hex')\n\n return new DH(prime, gen)\n}\n\nvar ENCODINGS = {\n 'binary': true, 'hex': true, 'base64': true\n}\n\nfunction createDiffieHellman (prime, enc, generator, genc) {\n if (Buffer.isBuffer(enc) || ENCODINGS[enc] === undefined) {\n return createDiffieHellman(prime, 'binary', enc, generator)\n }\n\n enc = enc || 'binary'\n genc = genc || 'binary'\n generator = generator || new Buffer([2])\n\n if (!Buffer.isBuffer(generator)) {\n generator = new Buffer(generator, genc)\n }\n\n if (typeof prime === 'number') {\n return new DH(generatePrime(prime, generator), generator, true)\n }\n\n if (!Buffer.isBuffer(prime)) {\n prime = new Buffer(prime, enc)\n }\n\n return new DH(prime, generator, true)\n}\n\nexports.DiffieHellmanGroup = exports.createDiffieHellmanGroup = exports.getDiffieHellman = getDiffieHellman\nexports.createDiffieHellman = exports.DiffieHellman = createDiffieHellman\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 141 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var BN = __webpack_require__(2);\nvar MillerRabin = __webpack_require__(73);\nvar millerRabin = new MillerRabin();\nvar TWENTYFOUR = new BN(24);\nvar ELEVEN = new BN(11);\nvar TEN = new BN(10);\nvar THREE = new BN(3);\nvar SEVEN = new BN(7);\nvar primes = __webpack_require__(70);\nvar randomBytes = __webpack_require__(21);\nmodule.exports = DH;\n\nfunction setPublicKey(pub, enc) {\n enc = enc || 'utf8';\n if (!Buffer.isBuffer(pub)) {\n pub = new Buffer(pub, enc);\n }\n this._pub = new BN(pub);\n return this;\n}\n\nfunction setPrivateKey(priv, enc) {\n enc = enc || 'utf8';\n if (!Buffer.isBuffer(priv)) {\n priv = new Buffer(priv, enc);\n }\n this._priv = new BN(priv);\n return this;\n}\n\nvar primeCache = {};\nfunction checkPrime(prime, generator) {\n var gen = generator.toString('hex');\n var hex = [gen, prime.toString(16)].join('_');\n if (hex in primeCache) {\n return primeCache[hex];\n }\n var error = 0;\n\n if (prime.isEven() ||\n !primes.simpleSieve ||\n !primes.fermatTest(prime) ||\n !millerRabin.test(prime)) {\n //not a prime so +1\n error += 1;\n\n if (gen === '02' || gen === '05') {\n // we'd be able to check the generator\n // it would fail so +8\n error += 8;\n } else {\n //we wouldn't be able to test the generator\n // so +4\n error += 4;\n }\n primeCache[hex] = error;\n return error;\n }\n if (!millerRabin.test(prime.shrn(1))) {\n //not a safe prime\n error += 2;\n }\n var rem;\n switch (gen) {\n case '02':\n if (prime.mod(TWENTYFOUR).cmp(ELEVEN)) {\n // unsuidable generator\n error += 8;\n }\n break;\n case '05':\n rem = prime.mod(TEN);\n if (rem.cmp(THREE) && rem.cmp(SEVEN)) {\n // prime mod 10 needs to equal 3 or 7\n error += 8;\n }\n break;\n default:\n error += 4;\n }\n primeCache[hex] = error;\n return error;\n}\n\nfunction DH(prime, generator, malleable) {\n this.setGenerator(generator);\n this.__prime = new BN(prime);\n this._prime = BN.mont(this.__prime);\n this._primeLen = prime.length;\n this._pub = undefined;\n this._priv = undefined;\n this._primeCode = undefined;\n if (malleable) {\n this.setPublicKey = setPublicKey;\n this.setPrivateKey = setPrivateKey;\n } else {\n this._primeCode = 8;\n }\n}\nObject.defineProperty(DH.prototype, 'verifyError', {\n enumerable: true,\n get: function () {\n if (typeof this._primeCode !== 'number') {\n this._primeCode = checkPrime(this.__prime, this.__gen);\n }\n return this._primeCode;\n }\n});\nDH.prototype.generateKeys = function () {\n if (!this._priv) {\n this._priv = new BN(randomBytes(this._primeLen));\n }\n this._pub = this._gen.toRed(this._prime).redPow(this._priv).fromRed();\n return this.getPublicKey();\n};\n\nDH.prototype.computeSecret = function (other) {\n other = new BN(other);\n other = other.toRed(this._prime);\n var secret = other.redPow(this._priv).fromRed();\n var out = new Buffer(secret.toArray());\n var prime = this.getPrime();\n if (out.length < prime.length) {\n var front = new Buffer(prime.length - out.length);\n front.fill(0);\n out = Buffer.concat([front, out]);\n }\n return out;\n};\n\nDH.prototype.getPublicKey = function getPublicKey(enc) {\n return formatReturnValue(this._pub, enc);\n};\n\nDH.prototype.getPrivateKey = function getPrivateKey(enc) {\n return formatReturnValue(this._priv, enc);\n};\n\nDH.prototype.getPrime = function (enc) {\n return formatReturnValue(this.__prime, enc);\n};\n\nDH.prototype.getGenerator = function (enc) {\n return formatReturnValue(this._gen, enc);\n};\n\nDH.prototype.setGenerator = function (gen, enc) {\n enc = enc || 'utf8';\n if (!Buffer.isBuffer(gen)) {\n gen = new Buffer(gen, enc);\n }\n this.__gen = gen;\n this._gen = new BN(gen);\n return this;\n};\n\nfunction formatReturnValue(bn, enc) {\n var buf = new Buffer(bn.toArray());\n if (!enc) {\n return buf;\n } else {\n return buf.toString(enc);\n }\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 142 */\n/***/ (function(module, exports) {\n\nmodule.exports = {\n\t\"modp1\": {\n\t\t\"gen\": \"02\",\n\t\t\"prime\": \"ffffffffffffffffc90fdaa22168c234c4c6628b80dc1cd129024e088a67cc74020bbea63b139b22514a08798e3404ddef9519b3cd3a431b302b0a6df25f14374fe1356d6d51c245e485b576625e7ec6f44c42e9a63a3620ffffffffffffffff\"\n\t},\n\t\"modp2\": {\n\t\t\"gen\": \"02\",\n\t\t\"prime\": \"ffffffffffffffffc90fdaa22168c234c4c6628b80dc1cd129024e088a67cc74020bbea63b139b22514a08798e3404ddef9519b3cd3a431b302b0a6df25f14374fe1356d6d51c245e485b576625e7ec6f44c42e9a637ed6b0bff5cb6f406b7edee386bfb5a899fa5ae9f24117c4b1fe649286651ece65381ffffffffffffffff\"\n\t},\n\t\"modp5\": {\n\t\t\"gen\": \"02\",\n\t\t\"prime\": \"ffffffffffffffffc90fdaa22168c234c4c6628b80dc1cd129024e088a67cc74020bbea63b139b22514a08798e3404ddef9519b3cd3a431b302b0a6df25f14374fe1356d6d51c245e485b576625e7ec6f44c42e9a637ed6b0bff5cb6f406b7edee386bfb5a899fa5ae9f24117c4b1fe649286651ece45b3dc2007cb8a163bf0598da48361c55d39a69163fa8fd24cf5f83655d23dca3ad961c62f356208552bb9ed529077096966d670c354e4abc9804f1746c08ca237327ffffffffffffffff\"\n\t},\n\t\"modp14\": {\n\t\t\"gen\": \"02\",\n\t\t\"prime\": \"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\"\n\t},\n\t\"modp15\": {\n\t\t\"gen\": \"02\",\n\t\t\"prime\": \"ffffffffffffffffc90fdaa22168c234c4c6628b80dc1cd129024e088a67cc74020bbea63b139b22514a08798e3404ddef9519b3cd3a431b302b0a6df25f14374fe1356d6d51c245e485b576625e7ec6f44c42e9a637ed6b0bff5cb6f406b7edee386bfb5a899fa5ae9f24117c4b1fe649286651ece45b3dc2007cb8a163bf0598da48361c55d39a69163fa8fd24cf5f83655d23dca3ad961c62f356208552bb9ed529077096966d670c354e4abc9804f1746c08ca18217c32905e462e36ce3be39e772c180e86039b2783a2ec07a28fb5c55df06f4c52c9de2bcbf6955817183995497cea956ae515d2261898fa051015728e5a8aaac42dad33170d04507a33a85521abdf1cba64ecfb850458dbef0a8aea71575d060c7db3970f85a6e1e4c7abf5ae8cdb0933d71e8c94e04a25619dcee3d2261ad2ee6bf12ffa06d98a0864d87602733ec86a64521f2b18177b200cbbe117577a615d6c770988c0bad946e208e24fa074e5ab3143db5bfce0fd108e4b82d120a93ad2caffffffffffffffff\"\n\t},\n\t\"modp16\": {\n\t\t\"gen\": \"02\",\n\t\t\"prime\": \"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\"\n\t},\n\t\"modp17\": {\n\t\t\"gen\": \"02\",\n\t\t\"prime\": \"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\"\n\t},\n\t\"modp18\": {\n\t\t\"gen\": \"02\",\n\t\t\"prime\": \"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\"\n\t}\n};\n\n/***/ }),\n/* 143 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar BN = __webpack_require__(2);\nvar elliptic = __webpack_require__(3);\nvar utils = elliptic.utils;\nvar getNAF = utils.getNAF;\nvar getJSF = utils.getJSF;\nvar assert = utils.assert;\n\nfunction BaseCurve(type, conf) {\n this.type = type;\n this.p = new BN(conf.p, 16);\n\n // Use Montgomery, when there is no fast reduction for the prime\n this.red = conf.prime ? BN.red(conf.prime) : BN.mont(this.p);\n\n // Useful for many curves\n this.zero = new BN(0).toRed(this.red);\n this.one = new BN(1).toRed(this.red);\n this.two = new BN(2).toRed(this.red);\n\n // Curve configuration, optional\n this.n = conf.n && new BN(conf.n, 16);\n this.g = conf.g && this.pointFromJSON(conf.g, conf.gRed);\n\n // Temporary arrays\n this._wnafT1 = new Array(4);\n this._wnafT2 = new Array(4);\n this._wnafT3 = new Array(4);\n this._wnafT4 = new Array(4);\n\n // Generalized Greg Maxwell's trick\n var adjustCount = this.n && this.p.div(this.n);\n if (!adjustCount || adjustCount.cmpn(100) > 0) {\n this.redN = null;\n } else {\n this._maxwellTrick = true;\n this.redN = this.n.toRed(this.red);\n }\n}\nmodule.exports = BaseCurve;\n\nBaseCurve.prototype.point = function point() {\n throw new Error('Not implemented');\n};\n\nBaseCurve.prototype.validate = function validate() {\n throw new Error('Not implemented');\n};\n\nBaseCurve.prototype._fixedNafMul = function _fixedNafMul(p, k) {\n assert(p.precomputed);\n var doubles = p._getDoubles();\n\n var naf = getNAF(k, 1);\n var I = (1 << (doubles.step + 1)) - (doubles.step % 2 === 0 ? 2 : 1);\n I /= 3;\n\n // Translate into more windowed form\n var repr = [];\n for (var j = 0; j < naf.length; j += doubles.step) {\n var nafW = 0;\n for (var k = j + doubles.step - 1; k >= j; k--)\n nafW = (nafW << 1) + naf[k];\n repr.push(nafW);\n }\n\n var a = this.jpoint(null, null, null);\n var b = this.jpoint(null, null, null);\n for (var i = I; i > 0; i--) {\n for (var j = 0; j < repr.length; j++) {\n var nafW = repr[j];\n if (nafW === i)\n b = b.mixedAdd(doubles.points[j]);\n else if (nafW === -i)\n b = b.mixedAdd(doubles.points[j].neg());\n }\n a = a.add(b);\n }\n return a.toP();\n};\n\nBaseCurve.prototype._wnafMul = function _wnafMul(p, k) {\n var w = 4;\n\n // Precompute window\n var nafPoints = p._getNAFPoints(w);\n w = nafPoints.wnd;\n var wnd = nafPoints.points;\n\n // Get NAF form\n var naf = getNAF(k, w);\n\n // Add `this`*(N+1) for every w-NAF index\n var acc = this.jpoint(null, null, null);\n for (var i = naf.length - 1; i >= 0; i--) {\n // Count zeroes\n for (var k = 0; i >= 0 && naf[i] === 0; i--)\n k++;\n if (i >= 0)\n k++;\n acc = acc.dblp(k);\n\n if (i < 0)\n break;\n var z = naf[i];\n assert(z !== 0);\n if (p.type === 'affine') {\n // J +- P\n if (z > 0)\n acc = acc.mixedAdd(wnd[(z - 1) >> 1]);\n else\n acc = acc.mixedAdd(wnd[(-z - 1) >> 1].neg());\n } else {\n // J +- J\n if (z > 0)\n acc = acc.add(wnd[(z - 1) >> 1]);\n else\n acc = acc.add(wnd[(-z - 1) >> 1].neg());\n }\n }\n return p.type === 'affine' ? acc.toP() : acc;\n};\n\nBaseCurve.prototype._wnafMulAdd = function _wnafMulAdd(defW,\n points,\n coeffs,\n len,\n jacobianResult) {\n var wndWidth = this._wnafT1;\n var wnd = this._wnafT2;\n var naf = this._wnafT3;\n\n // Fill all arrays\n var max = 0;\n for (var i = 0; i < len; i++) {\n var p = points[i];\n var nafPoints = p._getNAFPoints(defW);\n wndWidth[i] = nafPoints.wnd;\n wnd[i] = nafPoints.points;\n }\n\n // Comb small window NAFs\n for (var i = len - 1; i >= 1; i -= 2) {\n var a = i - 1;\n var b = i;\n if (wndWidth[a] !== 1 || wndWidth[b] !== 1) {\n naf[a] = getNAF(coeffs[a], wndWidth[a]);\n naf[b] = getNAF(coeffs[b], wndWidth[b]);\n max = Math.max(naf[a].length, max);\n max = Math.max(naf[b].length, max);\n continue;\n }\n\n var comb = [\n points[a], /* 1 */\n null, /* 3 */\n null, /* 5 */\n points[b] /* 7 */\n ];\n\n // Try to avoid Projective points, if possible\n if (points[a].y.cmp(points[b].y) === 0) {\n comb[1] = points[a].add(points[b]);\n comb[2] = points[a].toJ().mixedAdd(points[b].neg());\n } else if (points[a].y.cmp(points[b].y.redNeg()) === 0) {\n comb[1] = points[a].toJ().mixedAdd(points[b]);\n comb[2] = points[a].add(points[b].neg());\n } else {\n comb[1] = points[a].toJ().mixedAdd(points[b]);\n comb[2] = points[a].toJ().mixedAdd(points[b].neg());\n }\n\n var index = [\n -3, /* -1 -1 */\n -1, /* -1 0 */\n -5, /* -1 1 */\n -7, /* 0 -1 */\n 0, /* 0 0 */\n 7, /* 0 1 */\n 5, /* 1 -1 */\n 1, /* 1 0 */\n 3 /* 1 1 */\n ];\n\n var jsf = getJSF(coeffs[a], coeffs[b]);\n max = Math.max(jsf[0].length, max);\n naf[a] = new Array(max);\n naf[b] = new Array(max);\n for (var j = 0; j < max; j++) {\n var ja = jsf[0][j] | 0;\n var jb = jsf[1][j] | 0;\n\n naf[a][j] = index[(ja + 1) * 3 + (jb + 1)];\n naf[b][j] = 0;\n wnd[a] = comb;\n }\n }\n\n var acc = this.jpoint(null, null, null);\n var tmp = this._wnafT4;\n for (var i = max; i >= 0; i--) {\n var k = 0;\n\n while (i >= 0) {\n var zero = true;\n for (var j = 0; j < len; j++) {\n tmp[j] = naf[j][i] | 0;\n if (tmp[j] !== 0)\n zero = false;\n }\n if (!zero)\n break;\n k++;\n i--;\n }\n if (i >= 0)\n k++;\n acc = acc.dblp(k);\n if (i < 0)\n break;\n\n for (var j = 0; j < len; j++) {\n var z = tmp[j];\n var p;\n if (z === 0)\n continue;\n else if (z > 0)\n p = wnd[j][(z - 1) >> 1];\n else if (z < 0)\n p = wnd[j][(-z - 1) >> 1].neg();\n\n if (p.type === 'affine')\n acc = acc.mixedAdd(p);\n else\n acc = acc.add(p);\n }\n }\n // Zeroify references\n for (var i = 0; i < len; i++)\n wnd[i] = null;\n\n if (jacobianResult)\n return acc;\n else\n return acc.toP();\n};\n\nfunction BasePoint(curve, type) {\n this.curve = curve;\n this.type = type;\n this.precomputed = null;\n}\nBaseCurve.BasePoint = BasePoint;\n\nBasePoint.prototype.eq = function eq(/*other*/) {\n throw new Error('Not implemented');\n};\n\nBasePoint.prototype.validate = function validate() {\n return this.curve.validate(this);\n};\n\nBaseCurve.prototype.decodePoint = function decodePoint(bytes, enc) {\n bytes = utils.toArray(bytes, enc);\n\n var len = this.p.byteLength();\n\n // uncompressed, hybrid-odd, hybrid-even\n if ((bytes[0] === 0x04 || bytes[0] === 0x06 || bytes[0] === 0x07) &&\n bytes.length - 1 === 2 * len) {\n if (bytes[0] === 0x06)\n assert(bytes[bytes.length - 1] % 2 === 0);\n else if (bytes[0] === 0x07)\n assert(bytes[bytes.length - 1] % 2 === 1);\n\n var res = this.point(bytes.slice(1, 1 + len),\n bytes.slice(1 + len, 1 + 2 * len));\n\n return res;\n } else if ((bytes[0] === 0x02 || bytes[0] === 0x03) &&\n bytes.length - 1 === len) {\n return this.pointFromX(bytes.slice(1, 1 + len), bytes[0] === 0x03);\n }\n throw new Error('Unknown point format');\n};\n\nBasePoint.prototype.encodeCompressed = function encodeCompressed(enc) {\n return this.encode(enc, true);\n};\n\nBasePoint.prototype._encode = function _encode(compact) {\n var len = this.curve.p.byteLength();\n var x = this.getX().toArray('be', len);\n\n if (compact)\n return [ this.getY().isEven() ? 0x02 : 0x03 ].concat(x);\n\n return [ 0x04 ].concat(x, this.getY().toArray('be', len)) ;\n};\n\nBasePoint.prototype.encode = function encode(enc, compact) {\n return utils.encode(this._encode(compact), enc);\n};\n\nBasePoint.prototype.precompute = function precompute(power) {\n if (this.precomputed)\n return this;\n\n var precomputed = {\n doubles: null,\n naf: null,\n beta: null\n };\n precomputed.naf = this._getNAFPoints(8);\n precomputed.doubles = this._getDoubles(4, power);\n precomputed.beta = this._getBeta();\n this.precomputed = precomputed;\n\n return this;\n};\n\nBasePoint.prototype._hasDoubles = function _hasDoubles(k) {\n if (!this.precomputed)\n return false;\n\n var doubles = this.precomputed.doubles;\n if (!doubles)\n return false;\n\n return doubles.points.length >= Math.ceil((k.bitLength() + 1) / doubles.step);\n};\n\nBasePoint.prototype._getDoubles = function _getDoubles(step, power) {\n if (this.precomputed && this.precomputed.doubles)\n return this.precomputed.doubles;\n\n var doubles = [ this ];\n var acc = this;\n for (var i = 0; i < power; i += step) {\n for (var j = 0; j < step; j++)\n acc = acc.dbl();\n doubles.push(acc);\n }\n return {\n step: step,\n points: doubles\n };\n};\n\nBasePoint.prototype._getNAFPoints = function _getNAFPoints(wnd) {\n if (this.precomputed && this.precomputed.naf)\n return this.precomputed.naf;\n\n var res = [ this ];\n var max = (1 << wnd) - 1;\n var dbl = max === 1 ? null : this.dbl();\n for (var i = 1; i < max; i++)\n res[i] = res[i - 1].add(dbl);\n return {\n wnd: wnd,\n points: res\n };\n};\n\nBasePoint.prototype._getBeta = function _getBeta() {\n return null;\n};\n\nBasePoint.prototype.dblp = function dblp(k) {\n var r = this;\n for (var i = 0; i < k; i++)\n r = r.dbl();\n return r;\n};\n\n\n/***/ }),\n/* 144 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar curve = __webpack_require__(26);\nvar elliptic = __webpack_require__(3);\nvar BN = __webpack_require__(2);\nvar inherits = __webpack_require__(1);\nvar Base = curve.base;\n\nvar assert = elliptic.utils.assert;\n\nfunction EdwardsCurve(conf) {\n // NOTE: Important as we are creating point in Base.call()\n this.twisted = (conf.a | 0) !== 1;\n this.mOneA = this.twisted && (conf.a | 0) === -1;\n this.extended = this.mOneA;\n\n Base.call(this, 'edwards', conf);\n\n this.a = new BN(conf.a, 16).umod(this.red.m);\n this.a = this.a.toRed(this.red);\n this.c = new BN(conf.c, 16).toRed(this.red);\n this.c2 = this.c.redSqr();\n this.d = new BN(conf.d, 16).toRed(this.red);\n this.dd = this.d.redAdd(this.d);\n\n assert(!this.twisted || this.c.fromRed().cmpn(1) === 0);\n this.oneC = (conf.c | 0) === 1;\n}\ninherits(EdwardsCurve, Base);\nmodule.exports = EdwardsCurve;\n\nEdwardsCurve.prototype._mulA = function _mulA(num) {\n if (this.mOneA)\n return num.redNeg();\n else\n return this.a.redMul(num);\n};\n\nEdwardsCurve.prototype._mulC = function _mulC(num) {\n if (this.oneC)\n return num;\n else\n return this.c.redMul(num);\n};\n\n// Just for compatibility with Short curve\nEdwardsCurve.prototype.jpoint = function jpoint(x, y, z, t) {\n return this.point(x, y, z, t);\n};\n\nEdwardsCurve.prototype.pointFromX = function pointFromX(x, odd) {\n x = new BN(x, 16);\n if (!x.red)\n x = x.toRed(this.red);\n\n var x2 = x.redSqr();\n var rhs = this.c2.redSub(this.a.redMul(x2));\n var lhs = this.one.redSub(this.c2.redMul(this.d).redMul(x2));\n\n var y2 = rhs.redMul(lhs.redInvm());\n var y = y2.redSqrt();\n if (y.redSqr().redSub(y2).cmp(this.zero) !== 0)\n throw new Error('invalid point');\n\n var isOdd = y.fromRed().isOdd();\n if (odd && !isOdd || !odd && isOdd)\n y = y.redNeg();\n\n return this.point(x, y);\n};\n\nEdwardsCurve.prototype.pointFromY = function pointFromY(y, odd) {\n y = new BN(y, 16);\n if (!y.red)\n y = y.toRed(this.red);\n\n // x^2 = (y^2 - 1) / (d y^2 + 1)\n var y2 = y.redSqr();\n var lhs = y2.redSub(this.one);\n var rhs = y2.redMul(this.d).redAdd(this.one);\n var x2 = lhs.redMul(rhs.redInvm());\n\n if (x2.cmp(this.zero) === 0) {\n if (odd)\n throw new Error('invalid point');\n else\n return this.point(this.zero, y);\n }\n\n var x = x2.redSqrt();\n if (x.redSqr().redSub(x2).cmp(this.zero) !== 0)\n throw new Error('invalid point');\n\n if (x.isOdd() !== odd)\n x = x.redNeg();\n\n return this.point(x, y);\n};\n\nEdwardsCurve.prototype.validate = function validate(point) {\n if (point.isInfinity())\n return true;\n\n // Curve: A * X^2 + Y^2 = C^2 * (1 + D * X^2 * Y^2)\n point.normalize();\n\n var x2 = point.x.redSqr();\n var y2 = point.y.redSqr();\n var lhs = x2.redMul(this.a).redAdd(y2);\n var rhs = this.c2.redMul(this.one.redAdd(this.d.redMul(x2).redMul(y2)));\n\n return lhs.cmp(rhs) === 0;\n};\n\nfunction Point(curve, x, y, z, t) {\n Base.BasePoint.call(this, curve, 'projective');\n if (x === null && y === null && z === null) {\n this.x = this.curve.zero;\n this.y = this.curve.one;\n this.z = this.curve.one;\n this.t = this.curve.zero;\n this.zOne = true;\n } else {\n this.x = new BN(x, 16);\n this.y = new BN(y, 16);\n this.z = z ? new BN(z, 16) : this.curve.one;\n this.t = t && new BN(t, 16);\n if (!this.x.red)\n this.x = this.x.toRed(this.curve.red);\n if (!this.y.red)\n this.y = this.y.toRed(this.curve.red);\n if (!this.z.red)\n this.z = this.z.toRed(this.curve.red);\n if (this.t && !this.t.red)\n this.t = this.t.toRed(this.curve.red);\n this.zOne = this.z === this.curve.one;\n\n // Use extended coordinates\n if (this.curve.extended && !this.t) {\n this.t = this.x.redMul(this.y);\n if (!this.zOne)\n this.t = this.t.redMul(this.z.redInvm());\n }\n }\n}\ninherits(Point, Base.BasePoint);\n\nEdwardsCurve.prototype.pointFromJSON = function pointFromJSON(obj) {\n return Point.fromJSON(this, obj);\n};\n\nEdwardsCurve.prototype.point = function point(x, y, z, t) {\n return new Point(this, x, y, z, t);\n};\n\nPoint.fromJSON = function fromJSON(curve, obj) {\n return new Point(curve, obj[0], obj[1], obj[2]);\n};\n\nPoint.prototype.inspect = function inspect() {\n if (this.isInfinity())\n return '';\n return '';\n};\n\nPoint.prototype.isInfinity = function isInfinity() {\n // XXX This code assumes that zero is always zero in red\n return this.x.cmpn(0) === 0 &&\n this.y.cmp(this.z) === 0;\n};\n\nPoint.prototype._extDbl = function _extDbl() {\n // hyperelliptic.org/EFD/g1p/auto-twisted-extended-1.html\n // #doubling-dbl-2008-hwcd\n // 4M + 4S\n\n // A = X1^2\n var a = this.x.redSqr();\n // B = Y1^2\n var b = this.y.redSqr();\n // C = 2 * Z1^2\n var c = this.z.redSqr();\n c = c.redIAdd(c);\n // D = a * A\n var d = this.curve._mulA(a);\n // E = (X1 + Y1)^2 - A - B\n var e = this.x.redAdd(this.y).redSqr().redISub(a).redISub(b);\n // G = D + B\n var g = d.redAdd(b);\n // F = G - C\n var f = g.redSub(c);\n // H = D - B\n var h = d.redSub(b);\n // X3 = E * F\n var nx = e.redMul(f);\n // Y3 = G * H\n var ny = g.redMul(h);\n // T3 = E * H\n var nt = e.redMul(h);\n // Z3 = F * G\n var nz = f.redMul(g);\n return this.curve.point(nx, ny, nz, nt);\n};\n\nPoint.prototype._projDbl = function _projDbl() {\n // hyperelliptic.org/EFD/g1p/auto-twisted-projective.html\n // #doubling-dbl-2008-bbjlp\n // #doubling-dbl-2007-bl\n // and others\n // Generally 3M + 4S or 2M + 4S\n\n // B = (X1 + Y1)^2\n var b = this.x.redAdd(this.y).redSqr();\n // C = X1^2\n var c = this.x.redSqr();\n // D = Y1^2\n var d = this.y.redSqr();\n\n var nx;\n var ny;\n var nz;\n if (this.curve.twisted) {\n // E = a * C\n var e = this.curve._mulA(c);\n // F = E + D\n var f = e.redAdd(d);\n if (this.zOne) {\n // X3 = (B - C - D) * (F - 2)\n nx = b.redSub(c).redSub(d).redMul(f.redSub(this.curve.two));\n // Y3 = F * (E - D)\n ny = f.redMul(e.redSub(d));\n // Z3 = F^2 - 2 * F\n nz = f.redSqr().redSub(f).redSub(f);\n } else {\n // H = Z1^2\n var h = this.z.redSqr();\n // J = F - 2 * H\n var j = f.redSub(h).redISub(h);\n // X3 = (B-C-D)*J\n nx = b.redSub(c).redISub(d).redMul(j);\n // Y3 = F * (E - D)\n ny = f.redMul(e.redSub(d));\n // Z3 = F * J\n nz = f.redMul(j);\n }\n } else {\n // E = C + D\n var e = c.redAdd(d);\n // H = (c * Z1)^2\n var h = this.curve._mulC(this.c.redMul(this.z)).redSqr();\n // J = E - 2 * H\n var j = e.redSub(h).redSub(h);\n // X3 = c * (B - E) * J\n nx = this.curve._mulC(b.redISub(e)).redMul(j);\n // Y3 = c * E * (C - D)\n ny = this.curve._mulC(e).redMul(c.redISub(d));\n // Z3 = E * J\n nz = e.redMul(j);\n }\n return this.curve.point(nx, ny, nz);\n};\n\nPoint.prototype.dbl = function dbl() {\n if (this.isInfinity())\n return this;\n\n // Double in extended coordinates\n if (this.curve.extended)\n return this._extDbl();\n else\n return this._projDbl();\n};\n\nPoint.prototype._extAdd = function _extAdd(p) {\n // hyperelliptic.org/EFD/g1p/auto-twisted-extended-1.html\n // #addition-add-2008-hwcd-3\n // 8M\n\n // A = (Y1 - X1) * (Y2 - X2)\n var a = this.y.redSub(this.x).redMul(p.y.redSub(p.x));\n // B = (Y1 + X1) * (Y2 + X2)\n var b = this.y.redAdd(this.x).redMul(p.y.redAdd(p.x));\n // C = T1 * k * T2\n var c = this.t.redMul(this.curve.dd).redMul(p.t);\n // D = Z1 * 2 * Z2\n var d = this.z.redMul(p.z.redAdd(p.z));\n // E = B - A\n var e = b.redSub(a);\n // F = D - C\n var f = d.redSub(c);\n // G = D + C\n var g = d.redAdd(c);\n // H = B + A\n var h = b.redAdd(a);\n // X3 = E * F\n var nx = e.redMul(f);\n // Y3 = G * H\n var ny = g.redMul(h);\n // T3 = E * H\n var nt = e.redMul(h);\n // Z3 = F * G\n var nz = f.redMul(g);\n return this.curve.point(nx, ny, nz, nt);\n};\n\nPoint.prototype._projAdd = function _projAdd(p) {\n // hyperelliptic.org/EFD/g1p/auto-twisted-projective.html\n // #addition-add-2008-bbjlp\n // #addition-add-2007-bl\n // 10M + 1S\n\n // A = Z1 * Z2\n var a = this.z.redMul(p.z);\n // B = A^2\n var b = a.redSqr();\n // C = X1 * X2\n var c = this.x.redMul(p.x);\n // D = Y1 * Y2\n var d = this.y.redMul(p.y);\n // E = d * C * D\n var e = this.curve.d.redMul(c).redMul(d);\n // F = B - E\n var f = b.redSub(e);\n // G = B + E\n var g = b.redAdd(e);\n // X3 = A * F * ((X1 + Y1) * (X2 + Y2) - C - D)\n var tmp = this.x.redAdd(this.y).redMul(p.x.redAdd(p.y)).redISub(c).redISub(d);\n var nx = a.redMul(f).redMul(tmp);\n var ny;\n var nz;\n if (this.curve.twisted) {\n // Y3 = A * G * (D - a * C)\n ny = a.redMul(g).redMul(d.redSub(this.curve._mulA(c)));\n // Z3 = F * G\n nz = f.redMul(g);\n } else {\n // Y3 = A * G * (D - C)\n ny = a.redMul(g).redMul(d.redSub(c));\n // Z3 = c * F * G\n nz = this.curve._mulC(f).redMul(g);\n }\n return this.curve.point(nx, ny, nz);\n};\n\nPoint.prototype.add = function add(p) {\n if (this.isInfinity())\n return p;\n if (p.isInfinity())\n return this;\n\n if (this.curve.extended)\n return this._extAdd(p);\n else\n return this._projAdd(p);\n};\n\nPoint.prototype.mul = function mul(k) {\n if (this._hasDoubles(k))\n return this.curve._fixedNafMul(this, k);\n else\n return this.curve._wnafMul(this, k);\n};\n\nPoint.prototype.mulAdd = function mulAdd(k1, p, k2) {\n return this.curve._wnafMulAdd(1, [ this, p ], [ k1, k2 ], 2, false);\n};\n\nPoint.prototype.jmulAdd = function jmulAdd(k1, p, k2) {\n return this.curve._wnafMulAdd(1, [ this, p ], [ k1, k2 ], 2, true);\n};\n\nPoint.prototype.normalize = function normalize() {\n if (this.zOne)\n return this;\n\n // Normalize coordinates\n var zi = this.z.redInvm();\n this.x = this.x.redMul(zi);\n this.y = this.y.redMul(zi);\n if (this.t)\n this.t = this.t.redMul(zi);\n this.z = this.curve.one;\n this.zOne = true;\n return this;\n};\n\nPoint.prototype.neg = function neg() {\n return this.curve.point(this.x.redNeg(),\n this.y,\n this.z,\n this.t && this.t.redNeg());\n};\n\nPoint.prototype.getX = function getX() {\n this.normalize();\n return this.x.fromRed();\n};\n\nPoint.prototype.getY = function getY() {\n this.normalize();\n return this.y.fromRed();\n};\n\nPoint.prototype.eq = function eq(other) {\n return this === other ||\n this.getX().cmp(other.getX()) === 0 &&\n this.getY().cmp(other.getY()) === 0;\n};\n\nPoint.prototype.eqXToP = function eqXToP(x) {\n var rx = x.toRed(this.curve.red).redMul(this.z);\n if (this.x.cmp(rx) === 0)\n return true;\n\n var xc = x.clone();\n var t = this.curve.redN.redMul(this.z);\n for (;;) {\n xc.iadd(this.curve.n);\n if (xc.cmp(this.curve.p) >= 0)\n return false;\n\n rx.redIAdd(t);\n if (this.x.cmp(rx) === 0)\n return true;\n }\n return false;\n};\n\n// Compatibility with BaseCurve\nPoint.prototype.toP = Point.prototype.normalize;\nPoint.prototype.mixedAdd = Point.prototype.add;\n\n\n/***/ }),\n/* 145 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar curve = __webpack_require__(26);\nvar BN = __webpack_require__(2);\nvar inherits = __webpack_require__(1);\nvar Base = curve.base;\n\nvar elliptic = __webpack_require__(3);\nvar utils = elliptic.utils;\n\nfunction MontCurve(conf) {\n Base.call(this, 'mont', conf);\n\n this.a = new BN(conf.a, 16).toRed(this.red);\n this.b = new BN(conf.b, 16).toRed(this.red);\n this.i4 = new BN(4).toRed(this.red).redInvm();\n this.two = new BN(2).toRed(this.red);\n this.a24 = this.i4.redMul(this.a.redAdd(this.two));\n}\ninherits(MontCurve, Base);\nmodule.exports = MontCurve;\n\nMontCurve.prototype.validate = function validate(point) {\n var x = point.normalize().x;\n var x2 = x.redSqr();\n var rhs = x2.redMul(x).redAdd(x2.redMul(this.a)).redAdd(x);\n var y = rhs.redSqrt();\n\n return y.redSqr().cmp(rhs) === 0;\n};\n\nfunction Point(curve, x, z) {\n Base.BasePoint.call(this, curve, 'projective');\n if (x === null && z === null) {\n this.x = this.curve.one;\n this.z = this.curve.zero;\n } else {\n this.x = new BN(x, 16);\n this.z = new BN(z, 16);\n if (!this.x.red)\n this.x = this.x.toRed(this.curve.red);\n if (!this.z.red)\n this.z = this.z.toRed(this.curve.red);\n }\n}\ninherits(Point, Base.BasePoint);\n\nMontCurve.prototype.decodePoint = function decodePoint(bytes, enc) {\n return this.point(utils.toArray(bytes, enc), 1);\n};\n\nMontCurve.prototype.point = function point(x, z) {\n return new Point(this, x, z);\n};\n\nMontCurve.prototype.pointFromJSON = function pointFromJSON(obj) {\n return Point.fromJSON(this, obj);\n};\n\nPoint.prototype.precompute = function precompute() {\n // No-op\n};\n\nPoint.prototype._encode = function _encode() {\n return this.getX().toArray('be', this.curve.p.byteLength());\n};\n\nPoint.fromJSON = function fromJSON(curve, obj) {\n return new Point(curve, obj[0], obj[1] || curve.one);\n};\n\nPoint.prototype.inspect = function inspect() {\n if (this.isInfinity())\n return '';\n return '';\n};\n\nPoint.prototype.isInfinity = function isInfinity() {\n // XXX This code assumes that zero is always zero in red\n return this.z.cmpn(0) === 0;\n};\n\nPoint.prototype.dbl = function dbl() {\n // http://hyperelliptic.org/EFD/g1p/auto-montgom-xz.html#doubling-dbl-1987-m-3\n // 2M + 2S + 4A\n\n // A = X1 + Z1\n var a = this.x.redAdd(this.z);\n // AA = A^2\n var aa = a.redSqr();\n // B = X1 - Z1\n var b = this.x.redSub(this.z);\n // BB = B^2\n var bb = b.redSqr();\n // C = AA - BB\n var c = aa.redSub(bb);\n // X3 = AA * BB\n var nx = aa.redMul(bb);\n // Z3 = C * (BB + A24 * C)\n var nz = c.redMul(bb.redAdd(this.curve.a24.redMul(c)));\n return this.curve.point(nx, nz);\n};\n\nPoint.prototype.add = function add() {\n throw new Error('Not supported on Montgomery curve');\n};\n\nPoint.prototype.diffAdd = function diffAdd(p, diff) {\n // http://hyperelliptic.org/EFD/g1p/auto-montgom-xz.html#diffadd-dadd-1987-m-3\n // 4M + 2S + 6A\n\n // A = X2 + Z2\n var a = this.x.redAdd(this.z);\n // B = X2 - Z2\n var b = this.x.redSub(this.z);\n // C = X3 + Z3\n var c = p.x.redAdd(p.z);\n // D = X3 - Z3\n var d = p.x.redSub(p.z);\n // DA = D * A\n var da = d.redMul(a);\n // CB = C * B\n var cb = c.redMul(b);\n // X5 = Z1 * (DA + CB)^2\n var nx = diff.z.redMul(da.redAdd(cb).redSqr());\n // Z5 = X1 * (DA - CB)^2\n var nz = diff.x.redMul(da.redISub(cb).redSqr());\n return this.curve.point(nx, nz);\n};\n\nPoint.prototype.mul = function mul(k) {\n var t = k.clone();\n var a = this; // (N / 2) * Q + Q\n var b = this.curve.point(null, null); // (N / 2) * Q\n var c = this; // Q\n\n for (var bits = []; t.cmpn(0) !== 0; t.iushrn(1))\n bits.push(t.andln(1));\n\n for (var i = bits.length - 1; i >= 0; i--) {\n if (bits[i] === 0) {\n // N * Q + Q = ((N / 2) * Q + Q)) + (N / 2) * Q\n a = a.diffAdd(b, c);\n // N * Q = 2 * ((N / 2) * Q + Q))\n b = b.dbl();\n } else {\n // N * Q = ((N / 2) * Q + Q) + ((N / 2) * Q)\n b = a.diffAdd(b, c);\n // N * Q + Q = 2 * ((N / 2) * Q + Q)\n a = a.dbl();\n }\n }\n return b;\n};\n\nPoint.prototype.mulAdd = function mulAdd() {\n throw new Error('Not supported on Montgomery curve');\n};\n\nPoint.prototype.jumlAdd = function jumlAdd() {\n throw new Error('Not supported on Montgomery curve');\n};\n\nPoint.prototype.eq = function eq(other) {\n return this.getX().cmp(other.getX()) === 0;\n};\n\nPoint.prototype.normalize = function normalize() {\n this.x = this.x.redMul(this.z.redInvm());\n this.z = this.curve.one;\n return this;\n};\n\nPoint.prototype.getX = function getX() {\n // Normalize coordinates\n this.normalize();\n\n return this.x.fromRed();\n};\n\n\n/***/ }),\n/* 146 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar curve = __webpack_require__(26);\nvar elliptic = __webpack_require__(3);\nvar BN = __webpack_require__(2);\nvar inherits = __webpack_require__(1);\nvar Base = curve.base;\n\nvar assert = elliptic.utils.assert;\n\nfunction ShortCurve(conf) {\n Base.call(this, 'short', conf);\n\n this.a = new BN(conf.a, 16).toRed(this.red);\n this.b = new BN(conf.b, 16).toRed(this.red);\n this.tinv = this.two.redInvm();\n\n this.zeroA = this.a.fromRed().cmpn(0) === 0;\n this.threeA = this.a.fromRed().sub(this.p).cmpn(-3) === 0;\n\n // If the curve is endomorphic, precalculate beta and lambda\n this.endo = this._getEndomorphism(conf);\n this._endoWnafT1 = new Array(4);\n this._endoWnafT2 = new Array(4);\n}\ninherits(ShortCurve, Base);\nmodule.exports = ShortCurve;\n\nShortCurve.prototype._getEndomorphism = function _getEndomorphism(conf) {\n // No efficient endomorphism\n if (!this.zeroA || !this.g || !this.n || this.p.modn(3) !== 1)\n return;\n\n // Compute beta and lambda, that lambda * P = (beta * Px; Py)\n var beta;\n var lambda;\n if (conf.beta) {\n beta = new BN(conf.beta, 16).toRed(this.red);\n } else {\n var betas = this._getEndoRoots(this.p);\n // Choose the smallest beta\n beta = betas[0].cmp(betas[1]) < 0 ? betas[0] : betas[1];\n beta = beta.toRed(this.red);\n }\n if (conf.lambda) {\n lambda = new BN(conf.lambda, 16);\n } else {\n // Choose the lambda that is matching selected beta\n var lambdas = this._getEndoRoots(this.n);\n if (this.g.mul(lambdas[0]).x.cmp(this.g.x.redMul(beta)) === 0) {\n lambda = lambdas[0];\n } else {\n lambda = lambdas[1];\n assert(this.g.mul(lambda).x.cmp(this.g.x.redMul(beta)) === 0);\n }\n }\n\n // Get basis vectors, used for balanced length-two representation\n var basis;\n if (conf.basis) {\n basis = conf.basis.map(function(vec) {\n return {\n a: new BN(vec.a, 16),\n b: new BN(vec.b, 16)\n };\n });\n } else {\n basis = this._getEndoBasis(lambda);\n }\n\n return {\n beta: beta,\n lambda: lambda,\n basis: basis\n };\n};\n\nShortCurve.prototype._getEndoRoots = function _getEndoRoots(num) {\n // Find roots of for x^2 + x + 1 in F\n // Root = (-1 +- Sqrt(-3)) / 2\n //\n var red = num === this.p ? this.red : BN.mont(num);\n var tinv = new BN(2).toRed(red).redInvm();\n var ntinv = tinv.redNeg();\n\n var s = new BN(3).toRed(red).redNeg().redSqrt().redMul(tinv);\n\n var l1 = ntinv.redAdd(s).fromRed();\n var l2 = ntinv.redSub(s).fromRed();\n return [ l1, l2 ];\n};\n\nShortCurve.prototype._getEndoBasis = function _getEndoBasis(lambda) {\n // aprxSqrt >= sqrt(this.n)\n var aprxSqrt = this.n.ushrn(Math.floor(this.n.bitLength() / 2));\n\n // 3.74\n // Run EGCD, until r(L + 1) < aprxSqrt\n var u = lambda;\n var v = this.n.clone();\n var x1 = new BN(1);\n var y1 = new BN(0);\n var x2 = new BN(0);\n var y2 = new BN(1);\n\n // NOTE: all vectors are roots of: a + b * lambda = 0 (mod n)\n var a0;\n var b0;\n // First vector\n var a1;\n var b1;\n // Second vector\n var a2;\n var b2;\n\n var prevR;\n var i = 0;\n var r;\n var x;\n while (u.cmpn(0) !== 0) {\n var q = v.div(u);\n r = v.sub(q.mul(u));\n x = x2.sub(q.mul(x1));\n var y = y2.sub(q.mul(y1));\n\n if (!a1 && r.cmp(aprxSqrt) < 0) {\n a0 = prevR.neg();\n b0 = x1;\n a1 = r.neg();\n b1 = x;\n } else if (a1 && ++i === 2) {\n break;\n }\n prevR = r;\n\n v = u;\n u = r;\n x2 = x1;\n x1 = x;\n y2 = y1;\n y1 = y;\n }\n a2 = r.neg();\n b2 = x;\n\n var len1 = a1.sqr().add(b1.sqr());\n var len2 = a2.sqr().add(b2.sqr());\n if (len2.cmp(len1) >= 0) {\n a2 = a0;\n b2 = b0;\n }\n\n // Normalize signs\n if (a1.negative) {\n a1 = a1.neg();\n b1 = b1.neg();\n }\n if (a2.negative) {\n a2 = a2.neg();\n b2 = b2.neg();\n }\n\n return [\n { a: a1, b: b1 },\n { a: a2, b: b2 }\n ];\n};\n\nShortCurve.prototype._endoSplit = function _endoSplit(k) {\n var basis = this.endo.basis;\n var v1 = basis[0];\n var v2 = basis[1];\n\n var c1 = v2.b.mul(k).divRound(this.n);\n var c2 = v1.b.neg().mul(k).divRound(this.n);\n\n var p1 = c1.mul(v1.a);\n var p2 = c2.mul(v2.a);\n var q1 = c1.mul(v1.b);\n var q2 = c2.mul(v2.b);\n\n // Calculate answer\n var k1 = k.sub(p1).sub(p2);\n var k2 = q1.add(q2).neg();\n return { k1: k1, k2: k2 };\n};\n\nShortCurve.prototype.pointFromX = function pointFromX(x, odd) {\n x = new BN(x, 16);\n if (!x.red)\n x = x.toRed(this.red);\n\n var y2 = x.redSqr().redMul(x).redIAdd(x.redMul(this.a)).redIAdd(this.b);\n var y = y2.redSqrt();\n if (y.redSqr().redSub(y2).cmp(this.zero) !== 0)\n throw new Error('invalid point');\n\n // XXX Is there any way to tell if the number is odd without converting it\n // to non-red form?\n var isOdd = y.fromRed().isOdd();\n if (odd && !isOdd || !odd && isOdd)\n y = y.redNeg();\n\n return this.point(x, y);\n};\n\nShortCurve.prototype.validate = function validate(point) {\n if (point.inf)\n return true;\n\n var x = point.x;\n var y = point.y;\n\n var ax = this.a.redMul(x);\n var rhs = x.redSqr().redMul(x).redIAdd(ax).redIAdd(this.b);\n return y.redSqr().redISub(rhs).cmpn(0) === 0;\n};\n\nShortCurve.prototype._endoWnafMulAdd =\n function _endoWnafMulAdd(points, coeffs, jacobianResult) {\n var npoints = this._endoWnafT1;\n var ncoeffs = this._endoWnafT2;\n for (var i = 0; i < points.length; i++) {\n var split = this._endoSplit(coeffs[i]);\n var p = points[i];\n var beta = p._getBeta();\n\n if (split.k1.negative) {\n split.k1.ineg();\n p = p.neg(true);\n }\n if (split.k2.negative) {\n split.k2.ineg();\n beta = beta.neg(true);\n }\n\n npoints[i * 2] = p;\n npoints[i * 2 + 1] = beta;\n ncoeffs[i * 2] = split.k1;\n ncoeffs[i * 2 + 1] = split.k2;\n }\n var res = this._wnafMulAdd(1, npoints, ncoeffs, i * 2, jacobianResult);\n\n // Clean-up references to points and coefficients\n for (var j = 0; j < i * 2; j++) {\n npoints[j] = null;\n ncoeffs[j] = null;\n }\n return res;\n};\n\nfunction Point(curve, x, y, isRed) {\n Base.BasePoint.call(this, curve, 'affine');\n if (x === null && y === null) {\n this.x = null;\n this.y = null;\n this.inf = true;\n } else {\n this.x = new BN(x, 16);\n this.y = new BN(y, 16);\n // Force redgomery representation when loading from JSON\n if (isRed) {\n this.x.forceRed(this.curve.red);\n this.y.forceRed(this.curve.red);\n }\n if (!this.x.red)\n this.x = this.x.toRed(this.curve.red);\n if (!this.y.red)\n this.y = this.y.toRed(this.curve.red);\n this.inf = false;\n }\n}\ninherits(Point, Base.BasePoint);\n\nShortCurve.prototype.point = function point(x, y, isRed) {\n return new Point(this, x, y, isRed);\n};\n\nShortCurve.prototype.pointFromJSON = function pointFromJSON(obj, red) {\n return Point.fromJSON(this, obj, red);\n};\n\nPoint.prototype._getBeta = function _getBeta() {\n if (!this.curve.endo)\n return;\n\n var pre = this.precomputed;\n if (pre && pre.beta)\n return pre.beta;\n\n var beta = this.curve.point(this.x.redMul(this.curve.endo.beta), this.y);\n if (pre) {\n var curve = this.curve;\n var endoMul = function(p) {\n return curve.point(p.x.redMul(curve.endo.beta), p.y);\n };\n pre.beta = beta;\n beta.precomputed = {\n beta: null,\n naf: pre.naf && {\n wnd: pre.naf.wnd,\n points: pre.naf.points.map(endoMul)\n },\n doubles: pre.doubles && {\n step: pre.doubles.step,\n points: pre.doubles.points.map(endoMul)\n }\n };\n }\n return beta;\n};\n\nPoint.prototype.toJSON = function toJSON() {\n if (!this.precomputed)\n return [ this.x, this.y ];\n\n return [ this.x, this.y, this.precomputed && {\n doubles: this.precomputed.doubles && {\n step: this.precomputed.doubles.step,\n points: this.precomputed.doubles.points.slice(1)\n },\n naf: this.precomputed.naf && {\n wnd: this.precomputed.naf.wnd,\n points: this.precomputed.naf.points.slice(1)\n }\n } ];\n};\n\nPoint.fromJSON = function fromJSON(curve, obj, red) {\n if (typeof obj === 'string')\n obj = JSON.parse(obj);\n var res = curve.point(obj[0], obj[1], red);\n if (!obj[2])\n return res;\n\n function obj2point(obj) {\n return curve.point(obj[0], obj[1], red);\n }\n\n var pre = obj[2];\n res.precomputed = {\n beta: null,\n doubles: pre.doubles && {\n step: pre.doubles.step,\n points: [ res ].concat(pre.doubles.points.map(obj2point))\n },\n naf: pre.naf && {\n wnd: pre.naf.wnd,\n points: [ res ].concat(pre.naf.points.map(obj2point))\n }\n };\n return res;\n};\n\nPoint.prototype.inspect = function inspect() {\n if (this.isInfinity())\n return '';\n return '';\n};\n\nPoint.prototype.isInfinity = function isInfinity() {\n return this.inf;\n};\n\nPoint.prototype.add = function add(p) {\n // O + P = P\n if (this.inf)\n return p;\n\n // P + O = P\n if (p.inf)\n return this;\n\n // P + P = 2P\n if (this.eq(p))\n return this.dbl();\n\n // P + (-P) = O\n if (this.neg().eq(p))\n return this.curve.point(null, null);\n\n // P + Q = O\n if (this.x.cmp(p.x) === 0)\n return this.curve.point(null, null);\n\n var c = this.y.redSub(p.y);\n if (c.cmpn(0) !== 0)\n c = c.redMul(this.x.redSub(p.x).redInvm());\n var nx = c.redSqr().redISub(this.x).redISub(p.x);\n var ny = c.redMul(this.x.redSub(nx)).redISub(this.y);\n return this.curve.point(nx, ny);\n};\n\nPoint.prototype.dbl = function dbl() {\n if (this.inf)\n return this;\n\n // 2P = O\n var ys1 = this.y.redAdd(this.y);\n if (ys1.cmpn(0) === 0)\n return this.curve.point(null, null);\n\n var a = this.curve.a;\n\n var x2 = this.x.redSqr();\n var dyinv = ys1.redInvm();\n var c = x2.redAdd(x2).redIAdd(x2).redIAdd(a).redMul(dyinv);\n\n var nx = c.redSqr().redISub(this.x.redAdd(this.x));\n var ny = c.redMul(this.x.redSub(nx)).redISub(this.y);\n return this.curve.point(nx, ny);\n};\n\nPoint.prototype.getX = function getX() {\n return this.x.fromRed();\n};\n\nPoint.prototype.getY = function getY() {\n return this.y.fromRed();\n};\n\nPoint.prototype.mul = function mul(k) {\n k = new BN(k, 16);\n\n if (this._hasDoubles(k))\n return this.curve._fixedNafMul(this, k);\n else if (this.curve.endo)\n return this.curve._endoWnafMulAdd([ this ], [ k ]);\n else\n return this.curve._wnafMul(this, k);\n};\n\nPoint.prototype.mulAdd = function mulAdd(k1, p2, k2) {\n var points = [ this, p2 ];\n var coeffs = [ k1, k2 ];\n if (this.curve.endo)\n return this.curve._endoWnafMulAdd(points, coeffs);\n else\n return this.curve._wnafMulAdd(1, points, coeffs, 2);\n};\n\nPoint.prototype.jmulAdd = function jmulAdd(k1, p2, k2) {\n var points = [ this, p2 ];\n var coeffs = [ k1, k2 ];\n if (this.curve.endo)\n return this.curve._endoWnafMulAdd(points, coeffs, true);\n else\n return this.curve._wnafMulAdd(1, points, coeffs, 2, true);\n};\n\nPoint.prototype.eq = function eq(p) {\n return this === p ||\n this.inf === p.inf &&\n (this.inf || this.x.cmp(p.x) === 0 && this.y.cmp(p.y) === 0);\n};\n\nPoint.prototype.neg = function neg(_precompute) {\n if (this.inf)\n return this;\n\n var res = this.curve.point(this.x, this.y.redNeg());\n if (_precompute && this.precomputed) {\n var pre = this.precomputed;\n var negate = function(p) {\n return p.neg();\n };\n res.precomputed = {\n naf: pre.naf && {\n wnd: pre.naf.wnd,\n points: pre.naf.points.map(negate)\n },\n doubles: pre.doubles && {\n step: pre.doubles.step,\n points: pre.doubles.points.map(negate)\n }\n };\n }\n return res;\n};\n\nPoint.prototype.toJ = function toJ() {\n if (this.inf)\n return this.curve.jpoint(null, null, null);\n\n var res = this.curve.jpoint(this.x, this.y, this.curve.one);\n return res;\n};\n\nfunction JPoint(curve, x, y, z) {\n Base.BasePoint.call(this, curve, 'jacobian');\n if (x === null && y === null && z === null) {\n this.x = this.curve.one;\n this.y = this.curve.one;\n this.z = new BN(0);\n } else {\n this.x = new BN(x, 16);\n this.y = new BN(y, 16);\n this.z = new BN(z, 16);\n }\n if (!this.x.red)\n this.x = this.x.toRed(this.curve.red);\n if (!this.y.red)\n this.y = this.y.toRed(this.curve.red);\n if (!this.z.red)\n this.z = this.z.toRed(this.curve.red);\n\n this.zOne = this.z === this.curve.one;\n}\ninherits(JPoint, Base.BasePoint);\n\nShortCurve.prototype.jpoint = function jpoint(x, y, z) {\n return new JPoint(this, x, y, z);\n};\n\nJPoint.prototype.toP = function toP() {\n if (this.isInfinity())\n return this.curve.point(null, null);\n\n var zinv = this.z.redInvm();\n var zinv2 = zinv.redSqr();\n var ax = this.x.redMul(zinv2);\n var ay = this.y.redMul(zinv2).redMul(zinv);\n\n return this.curve.point(ax, ay);\n};\n\nJPoint.prototype.neg = function neg() {\n return this.curve.jpoint(this.x, this.y.redNeg(), this.z);\n};\n\nJPoint.prototype.add = function add(p) {\n // O + P = P\n if (this.isInfinity())\n return p;\n\n // P + O = P\n if (p.isInfinity())\n return this;\n\n // 12M + 4S + 7A\n var pz2 = p.z.redSqr();\n var z2 = this.z.redSqr();\n var u1 = this.x.redMul(pz2);\n var u2 = p.x.redMul(z2);\n var s1 = this.y.redMul(pz2.redMul(p.z));\n var s2 = p.y.redMul(z2.redMul(this.z));\n\n var h = u1.redSub(u2);\n var r = s1.redSub(s2);\n if (h.cmpn(0) === 0) {\n if (r.cmpn(0) !== 0)\n return this.curve.jpoint(null, null, null);\n else\n return this.dbl();\n }\n\n var h2 = h.redSqr();\n var h3 = h2.redMul(h);\n var v = u1.redMul(h2);\n\n var nx = r.redSqr().redIAdd(h3).redISub(v).redISub(v);\n var ny = r.redMul(v.redISub(nx)).redISub(s1.redMul(h3));\n var nz = this.z.redMul(p.z).redMul(h);\n\n return this.curve.jpoint(nx, ny, nz);\n};\n\nJPoint.prototype.mixedAdd = function mixedAdd(p) {\n // O + P = P\n if (this.isInfinity())\n return p.toJ();\n\n // P + O = P\n if (p.isInfinity())\n return this;\n\n // 8M + 3S + 7A\n var z2 = this.z.redSqr();\n var u1 = this.x;\n var u2 = p.x.redMul(z2);\n var s1 = this.y;\n var s2 = p.y.redMul(z2).redMul(this.z);\n\n var h = u1.redSub(u2);\n var r = s1.redSub(s2);\n if (h.cmpn(0) === 0) {\n if (r.cmpn(0) !== 0)\n return this.curve.jpoint(null, null, null);\n else\n return this.dbl();\n }\n\n var h2 = h.redSqr();\n var h3 = h2.redMul(h);\n var v = u1.redMul(h2);\n\n var nx = r.redSqr().redIAdd(h3).redISub(v).redISub(v);\n var ny = r.redMul(v.redISub(nx)).redISub(s1.redMul(h3));\n var nz = this.z.redMul(h);\n\n return this.curve.jpoint(nx, ny, nz);\n};\n\nJPoint.prototype.dblp = function dblp(pow) {\n if (pow === 0)\n return this;\n if (this.isInfinity())\n return this;\n if (!pow)\n return this.dbl();\n\n if (this.curve.zeroA || this.curve.threeA) {\n var r = this;\n for (var i = 0; i < pow; i++)\n r = r.dbl();\n return r;\n }\n\n // 1M + 2S + 1A + N * (4S + 5M + 8A)\n // N = 1 => 6M + 6S + 9A\n var a = this.curve.a;\n var tinv = this.curve.tinv;\n\n var jx = this.x;\n var jy = this.y;\n var jz = this.z;\n var jz4 = jz.redSqr().redSqr();\n\n // Reuse results\n var jyd = jy.redAdd(jy);\n for (var i = 0; i < pow; i++) {\n var jx2 = jx.redSqr();\n var jyd2 = jyd.redSqr();\n var jyd4 = jyd2.redSqr();\n var c = jx2.redAdd(jx2).redIAdd(jx2).redIAdd(a.redMul(jz4));\n\n var t1 = jx.redMul(jyd2);\n var nx = c.redSqr().redISub(t1.redAdd(t1));\n var t2 = t1.redISub(nx);\n var dny = c.redMul(t2);\n dny = dny.redIAdd(dny).redISub(jyd4);\n var nz = jyd.redMul(jz);\n if (i + 1 < pow)\n jz4 = jz4.redMul(jyd4);\n\n jx = nx;\n jz = nz;\n jyd = dny;\n }\n\n return this.curve.jpoint(jx, jyd.redMul(tinv), jz);\n};\n\nJPoint.prototype.dbl = function dbl() {\n if (this.isInfinity())\n return this;\n\n if (this.curve.zeroA)\n return this._zeroDbl();\n else if (this.curve.threeA)\n return this._threeDbl();\n else\n return this._dbl();\n};\n\nJPoint.prototype._zeroDbl = function _zeroDbl() {\n var nx;\n var ny;\n var nz;\n // Z = 1\n if (this.zOne) {\n // hyperelliptic.org/EFD/g1p/auto-shortw-jacobian-0.html\n // #doubling-mdbl-2007-bl\n // 1M + 5S + 14A\n\n // XX = X1^2\n var xx = this.x.redSqr();\n // YY = Y1^2\n var yy = this.y.redSqr();\n // YYYY = YY^2\n var yyyy = yy.redSqr();\n // S = 2 * ((X1 + YY)^2 - XX - YYYY)\n var s = this.x.redAdd(yy).redSqr().redISub(xx).redISub(yyyy);\n s = s.redIAdd(s);\n // M = 3 * XX + a; a = 0\n var m = xx.redAdd(xx).redIAdd(xx);\n // T = M ^ 2 - 2*S\n var t = m.redSqr().redISub(s).redISub(s);\n\n // 8 * YYYY\n var yyyy8 = yyyy.redIAdd(yyyy);\n yyyy8 = yyyy8.redIAdd(yyyy8);\n yyyy8 = yyyy8.redIAdd(yyyy8);\n\n // X3 = T\n nx = t;\n // Y3 = M * (S - T) - 8 * YYYY\n ny = m.redMul(s.redISub(t)).redISub(yyyy8);\n // Z3 = 2*Y1\n nz = this.y.redAdd(this.y);\n } else {\n // hyperelliptic.org/EFD/g1p/auto-shortw-jacobian-0.html\n // #doubling-dbl-2009-l\n // 2M + 5S + 13A\n\n // A = X1^2\n var a = this.x.redSqr();\n // B = Y1^2\n var b = this.y.redSqr();\n // C = B^2\n var c = b.redSqr();\n // D = 2 * ((X1 + B)^2 - A - C)\n var d = this.x.redAdd(b).redSqr().redISub(a).redISub(c);\n d = d.redIAdd(d);\n // E = 3 * A\n var e = a.redAdd(a).redIAdd(a);\n // F = E^2\n var f = e.redSqr();\n\n // 8 * C\n var c8 = c.redIAdd(c);\n c8 = c8.redIAdd(c8);\n c8 = c8.redIAdd(c8);\n\n // X3 = F - 2 * D\n nx = f.redISub(d).redISub(d);\n // Y3 = E * (D - X3) - 8 * C\n ny = e.redMul(d.redISub(nx)).redISub(c8);\n // Z3 = 2 * Y1 * Z1\n nz = this.y.redMul(this.z);\n nz = nz.redIAdd(nz);\n }\n\n return this.curve.jpoint(nx, ny, nz);\n};\n\nJPoint.prototype._threeDbl = function _threeDbl() {\n var nx;\n var ny;\n var nz;\n // Z = 1\n if (this.zOne) {\n // hyperelliptic.org/EFD/g1p/auto-shortw-jacobian-3.html\n // #doubling-mdbl-2007-bl\n // 1M + 5S + 15A\n\n // XX = X1^2\n var xx = this.x.redSqr();\n // YY = Y1^2\n var yy = this.y.redSqr();\n // YYYY = YY^2\n var yyyy = yy.redSqr();\n // S = 2 * ((X1 + YY)^2 - XX - YYYY)\n var s = this.x.redAdd(yy).redSqr().redISub(xx).redISub(yyyy);\n s = s.redIAdd(s);\n // M = 3 * XX + a\n var m = xx.redAdd(xx).redIAdd(xx).redIAdd(this.curve.a);\n // T = M^2 - 2 * S\n var t = m.redSqr().redISub(s).redISub(s);\n // X3 = T\n nx = t;\n // Y3 = M * (S - T) - 8 * YYYY\n var yyyy8 = yyyy.redIAdd(yyyy);\n yyyy8 = yyyy8.redIAdd(yyyy8);\n yyyy8 = yyyy8.redIAdd(yyyy8);\n ny = m.redMul(s.redISub(t)).redISub(yyyy8);\n // Z3 = 2 * Y1\n nz = this.y.redAdd(this.y);\n } else {\n // hyperelliptic.org/EFD/g1p/auto-shortw-jacobian-3.html#doubling-dbl-2001-b\n // 3M + 5S\n\n // delta = Z1^2\n var delta = this.z.redSqr();\n // gamma = Y1^2\n var gamma = this.y.redSqr();\n // beta = X1 * gamma\n var beta = this.x.redMul(gamma);\n // alpha = 3 * (X1 - delta) * (X1 + delta)\n var alpha = this.x.redSub(delta).redMul(this.x.redAdd(delta));\n alpha = alpha.redAdd(alpha).redIAdd(alpha);\n // X3 = alpha^2 - 8 * beta\n var beta4 = beta.redIAdd(beta);\n beta4 = beta4.redIAdd(beta4);\n var beta8 = beta4.redAdd(beta4);\n nx = alpha.redSqr().redISub(beta8);\n // Z3 = (Y1 + Z1)^2 - gamma - delta\n nz = this.y.redAdd(this.z).redSqr().redISub(gamma).redISub(delta);\n // Y3 = alpha * (4 * beta - X3) - 8 * gamma^2\n var ggamma8 = gamma.redSqr();\n ggamma8 = ggamma8.redIAdd(ggamma8);\n ggamma8 = ggamma8.redIAdd(ggamma8);\n ggamma8 = ggamma8.redIAdd(ggamma8);\n ny = alpha.redMul(beta4.redISub(nx)).redISub(ggamma8);\n }\n\n return this.curve.jpoint(nx, ny, nz);\n};\n\nJPoint.prototype._dbl = function _dbl() {\n var a = this.curve.a;\n\n // 4M + 6S + 10A\n var jx = this.x;\n var jy = this.y;\n var jz = this.z;\n var jz4 = jz.redSqr().redSqr();\n\n var jx2 = jx.redSqr();\n var jy2 = jy.redSqr();\n\n var c = jx2.redAdd(jx2).redIAdd(jx2).redIAdd(a.redMul(jz4));\n\n var jxd4 = jx.redAdd(jx);\n jxd4 = jxd4.redIAdd(jxd4);\n var t1 = jxd4.redMul(jy2);\n var nx = c.redSqr().redISub(t1.redAdd(t1));\n var t2 = t1.redISub(nx);\n\n var jyd8 = jy2.redSqr();\n jyd8 = jyd8.redIAdd(jyd8);\n jyd8 = jyd8.redIAdd(jyd8);\n jyd8 = jyd8.redIAdd(jyd8);\n var ny = c.redMul(t2).redISub(jyd8);\n var nz = jy.redAdd(jy).redMul(jz);\n\n return this.curve.jpoint(nx, ny, nz);\n};\n\nJPoint.prototype.trpl = function trpl() {\n if (!this.curve.zeroA)\n return this.dbl().add(this);\n\n // hyperelliptic.org/EFD/g1p/auto-shortw-jacobian-0.html#tripling-tpl-2007-bl\n // 5M + 10S + ...\n\n // XX = X1^2\n var xx = this.x.redSqr();\n // YY = Y1^2\n var yy = this.y.redSqr();\n // ZZ = Z1^2\n var zz = this.z.redSqr();\n // YYYY = YY^2\n var yyyy = yy.redSqr();\n // M = 3 * XX + a * ZZ2; a = 0\n var m = xx.redAdd(xx).redIAdd(xx);\n // MM = M^2\n var mm = m.redSqr();\n // E = 6 * ((X1 + YY)^2 - XX - YYYY) - MM\n var e = this.x.redAdd(yy).redSqr().redISub(xx).redISub(yyyy);\n e = e.redIAdd(e);\n e = e.redAdd(e).redIAdd(e);\n e = e.redISub(mm);\n // EE = E^2\n var ee = e.redSqr();\n // T = 16*YYYY\n var t = yyyy.redIAdd(yyyy);\n t = t.redIAdd(t);\n t = t.redIAdd(t);\n t = t.redIAdd(t);\n // U = (M + E)^2 - MM - EE - T\n var u = m.redIAdd(e).redSqr().redISub(mm).redISub(ee).redISub(t);\n // X3 = 4 * (X1 * EE - 4 * YY * U)\n var yyu4 = yy.redMul(u);\n yyu4 = yyu4.redIAdd(yyu4);\n yyu4 = yyu4.redIAdd(yyu4);\n var nx = this.x.redMul(ee).redISub(yyu4);\n nx = nx.redIAdd(nx);\n nx = nx.redIAdd(nx);\n // Y3 = 8 * Y1 * (U * (T - U) - E * EE)\n var ny = this.y.redMul(u.redMul(t.redISub(u)).redISub(e.redMul(ee)));\n ny = ny.redIAdd(ny);\n ny = ny.redIAdd(ny);\n ny = ny.redIAdd(ny);\n // Z3 = (Z1 + E)^2 - ZZ - EE\n var nz = this.z.redAdd(e).redSqr().redISub(zz).redISub(ee);\n\n return this.curve.jpoint(nx, ny, nz);\n};\n\nJPoint.prototype.mul = function mul(k, kbase) {\n k = new BN(k, kbase);\n\n return this.curve._wnafMul(this, k);\n};\n\nJPoint.prototype.eq = function eq(p) {\n if (p.type === 'affine')\n return this.eq(p.toJ());\n\n if (this === p)\n return true;\n\n // x1 * z2^2 == x2 * z1^2\n var z2 = this.z.redSqr();\n var pz2 = p.z.redSqr();\n if (this.x.redMul(pz2).redISub(p.x.redMul(z2)).cmpn(0) !== 0)\n return false;\n\n // y1 * z2^3 == y2 * z1^3\n var z3 = z2.redMul(this.z);\n var pz3 = pz2.redMul(p.z);\n return this.y.redMul(pz3).redISub(p.y.redMul(z3)).cmpn(0) === 0;\n};\n\nJPoint.prototype.eqXToP = function eqXToP(x) {\n var zs = this.z.redSqr();\n var rx = x.toRed(this.curve.red).redMul(zs);\n if (this.x.cmp(rx) === 0)\n return true;\n\n var xc = x.clone();\n var t = this.curve.redN.redMul(zs);\n for (;;) {\n xc.iadd(this.curve.n);\n if (xc.cmp(this.curve.p) >= 0)\n return false;\n\n rx.redIAdd(t);\n if (this.x.cmp(rx) === 0)\n return true;\n }\n return false;\n};\n\nJPoint.prototype.inspect = function inspect() {\n if (this.isInfinity())\n return '';\n return '';\n};\n\nJPoint.prototype.isInfinity = function isInfinity() {\n // XXX This code assumes that zero is always zero in red\n return this.z.cmpn(0) === 0;\n};\n\n\n/***/ }),\n/* 147 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar curves = exports;\n\nvar hash = __webpack_require__(7);\nvar elliptic = __webpack_require__(3);\n\nvar assert = elliptic.utils.assert;\n\nfunction PresetCurve(options) {\n if (options.type === 'short')\n this.curve = new elliptic.curve.short(options);\n else if (options.type === 'edwards')\n this.curve = new elliptic.curve.edwards(options);\n else\n this.curve = new elliptic.curve.mont(options);\n this.g = this.curve.g;\n this.n = this.curve.n;\n this.hash = options.hash;\n\n assert(this.g.validate(), 'Invalid curve');\n assert(this.g.mul(this.n).isInfinity(), 'Invalid curve, G*N != O');\n}\ncurves.PresetCurve = PresetCurve;\n\nfunction defineCurve(name, options) {\n Object.defineProperty(curves, name, {\n configurable: true,\n enumerable: true,\n get: function() {\n var curve = new PresetCurve(options);\n Object.defineProperty(curves, name, {\n configurable: true,\n enumerable: true,\n value: curve\n });\n return curve;\n }\n });\n}\n\ndefineCurve('p192', {\n type: 'short',\n prime: 'p192',\n p: 'ffffffff ffffffff ffffffff fffffffe ffffffff ffffffff',\n a: 'ffffffff ffffffff ffffffff fffffffe ffffffff fffffffc',\n b: '64210519 e59c80e7 0fa7e9ab 72243049 feb8deec c146b9b1',\n n: 'ffffffff ffffffff ffffffff 99def836 146bc9b1 b4d22831',\n hash: hash.sha256,\n gRed: false,\n g: [\n '188da80e b03090f6 7cbf20eb 43a18800 f4ff0afd 82ff1012',\n '07192b95 ffc8da78 631011ed 6b24cdd5 73f977a1 1e794811'\n ]\n});\n\ndefineCurve('p224', {\n type: 'short',\n prime: 'p224',\n p: 'ffffffff ffffffff ffffffff ffffffff 00000000 00000000 00000001',\n a: 'ffffffff ffffffff ffffffff fffffffe ffffffff ffffffff fffffffe',\n b: 'b4050a85 0c04b3ab f5413256 5044b0b7 d7bfd8ba 270b3943 2355ffb4',\n n: 'ffffffff ffffffff ffffffff ffff16a2 e0b8f03e 13dd2945 5c5c2a3d',\n hash: hash.sha256,\n gRed: false,\n g: [\n 'b70e0cbd 6bb4bf7f 321390b9 4a03c1d3 56c21122 343280d6 115c1d21',\n 'bd376388 b5f723fb 4c22dfe6 cd4375a0 5a074764 44d58199 85007e34'\n ]\n});\n\ndefineCurve('p256', {\n type: 'short',\n prime: null,\n p: 'ffffffff 00000001 00000000 00000000 00000000 ffffffff ffffffff ffffffff',\n a: 'ffffffff 00000001 00000000 00000000 00000000 ffffffff ffffffff fffffffc',\n b: '5ac635d8 aa3a93e7 b3ebbd55 769886bc 651d06b0 cc53b0f6 3bce3c3e 27d2604b',\n n: 'ffffffff 00000000 ffffffff ffffffff bce6faad a7179e84 f3b9cac2 fc632551',\n hash: hash.sha256,\n gRed: false,\n g: [\n '6b17d1f2 e12c4247 f8bce6e5 63a440f2 77037d81 2deb33a0 f4a13945 d898c296',\n '4fe342e2 fe1a7f9b 8ee7eb4a 7c0f9e16 2bce3357 6b315ece cbb64068 37bf51f5'\n ]\n});\n\ndefineCurve('p384', {\n type: 'short',\n prime: null,\n p: 'ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ' +\n 'fffffffe ffffffff 00000000 00000000 ffffffff',\n a: 'ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ' +\n 'fffffffe ffffffff 00000000 00000000 fffffffc',\n b: 'b3312fa7 e23ee7e4 988e056b e3f82d19 181d9c6e fe814112 0314088f ' +\n '5013875a c656398d 8a2ed19d 2a85c8ed d3ec2aef',\n n: 'ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff c7634d81 ' +\n 'f4372ddf 581a0db2 48b0a77a ecec196a ccc52973',\n hash: hash.sha384,\n gRed: false,\n g: [\n 'aa87ca22 be8b0537 8eb1c71e f320ad74 6e1d3b62 8ba79b98 59f741e0 82542a38 ' +\n '5502f25d bf55296c 3a545e38 72760ab7',\n '3617de4a 96262c6f 5d9e98bf 9292dc29 f8f41dbd 289a147c e9da3113 b5f0b8c0 ' +\n '0a60b1ce 1d7e819d 7a431d7c 90ea0e5f'\n ]\n});\n\ndefineCurve('p521', {\n type: 'short',\n prime: null,\n p: '000001ff ffffffff ffffffff ffffffff ffffffff ffffffff ' +\n 'ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ' +\n 'ffffffff ffffffff ffffffff ffffffff ffffffff',\n a: '000001ff ffffffff ffffffff ffffffff ffffffff ffffffff ' +\n 'ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff ' +\n 'ffffffff ffffffff ffffffff ffffffff fffffffc',\n b: '00000051 953eb961 8e1c9a1f 929a21a0 b68540ee a2da725b ' +\n '99b315f3 b8b48991 8ef109e1 56193951 ec7e937b 1652c0bd ' +\n '3bb1bf07 3573df88 3d2c34f1 ef451fd4 6b503f00',\n n: '000001ff ffffffff ffffffff ffffffff ffffffff ffffffff ' +\n 'ffffffff ffffffff fffffffa 51868783 bf2f966b 7fcc0148 ' +\n 'f709a5d0 3bb5c9b8 899c47ae bb6fb71e 91386409',\n hash: hash.sha512,\n gRed: false,\n g: [\n '000000c6 858e06b7 0404e9cd 9e3ecb66 2395b442 9c648139 ' +\n '053fb521 f828af60 6b4d3dba a14b5e77 efe75928 fe1dc127 ' +\n 'a2ffa8de 3348b3c1 856a429b f97e7e31 c2e5bd66',\n '00000118 39296a78 9a3bc004 5c8a5fb4 2c7d1bd9 98f54449 ' +\n '579b4468 17afbd17 273e662c 97ee7299 5ef42640 c550b901 ' +\n '3fad0761 353c7086 a272c240 88be9476 9fd16650'\n ]\n});\n\ndefineCurve('curve25519', {\n type: 'mont',\n prime: 'p25519',\n p: '7fffffffffffffff ffffffffffffffff ffffffffffffffff ffffffffffffffed',\n a: '76d06',\n b: '1',\n n: '1000000000000000 0000000000000000 14def9dea2f79cd6 5812631a5cf5d3ed',\n hash: hash.sha256,\n gRed: false,\n g: [\n '9'\n ]\n});\n\ndefineCurve('ed25519', {\n type: 'edwards',\n prime: 'p25519',\n p: '7fffffffffffffff ffffffffffffffff ffffffffffffffff ffffffffffffffed',\n a: '-1',\n c: '1',\n // -121665 * (121666^(-1)) (mod P)\n d: '52036cee2b6ffe73 8cc740797779e898 00700a4d4141d8ab 75eb4dca135978a3',\n n: '1000000000000000 0000000000000000 14def9dea2f79cd6 5812631a5cf5d3ed',\n hash: hash.sha256,\n gRed: false,\n g: [\n '216936d3cd6e53fec0a4e231fdd6dc5c692cc7609525a7b2c9562d608f25d51a',\n\n // 4/5\n '6666666666666666666666666666666666666666666666666666666666666658'\n ]\n});\n\nvar pre;\ntry {\n pre = __webpack_require__(154);\n} catch (e) {\n pre = undefined;\n}\n\ndefineCurve('secp256k1', {\n type: 'short',\n prime: 'k256',\n p: 'ffffffff ffffffff ffffffff ffffffff ffffffff ffffffff fffffffe fffffc2f',\n a: '0',\n b: '7',\n n: 'ffffffff ffffffff ffffffff fffffffe baaedce6 af48a03b bfd25e8c d0364141',\n h: '1',\n hash: hash.sha256,\n\n // Precomputed endomorphism\n beta: '7ae96a2b657c07106e64479eac3434e99cf0497512f58995c1396c28719501ee',\n lambda: '5363ad4cc05c30e0a5261c028812645a122e22ea20816678df02967c1b23bd72',\n basis: [\n {\n a: '3086d221a7d46bcde86c90e49284eb15',\n b: '-e4437ed6010e88286f547fa90abfe4c3'\n },\n {\n a: '114ca50f7a8e2f3f657c1108d9d44cfd8',\n b: '3086d221a7d46bcde86c90e49284eb15'\n }\n ],\n\n gRed: false,\n g: [\n '79be667ef9dcbbac55a06295ce870b07029bfcdb2dce28d959f2815b16f81798',\n '483ada7726a3c4655da4fbfc0e1108a8fd17b448a68554199c47d08ffb10d4b8',\n pre\n ]\n});\n\n\n/***/ }),\n/* 148 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar BN = __webpack_require__(2);\nvar HmacDRBG = __webpack_require__(162);\nvar elliptic = __webpack_require__(3);\nvar utils = elliptic.utils;\nvar assert = utils.assert;\n\nvar KeyPair = __webpack_require__(149);\nvar Signature = __webpack_require__(150);\n\nfunction EC(options) {\n if (!(this instanceof EC))\n return new EC(options);\n\n // Shortcut `elliptic.ec(curve-name)`\n if (typeof options === 'string') {\n assert(elliptic.curves.hasOwnProperty(options), 'Unknown curve ' + options);\n\n options = elliptic.curves[options];\n }\n\n // Shortcut for `elliptic.ec(elliptic.curves.curveName)`\n if (options instanceof elliptic.curves.PresetCurve)\n options = { curve: options };\n\n this.curve = options.curve.curve;\n this.n = this.curve.n;\n this.nh = this.n.ushrn(1);\n this.g = this.curve.g;\n\n // Point on curve\n this.g = options.curve.g;\n this.g.precompute(options.curve.n.bitLength() + 1);\n\n // Hash for function for DRBG\n this.hash = options.hash || options.curve.hash;\n}\nmodule.exports = EC;\n\nEC.prototype.keyPair = function keyPair(options) {\n return new KeyPair(this, options);\n};\n\nEC.prototype.keyFromPrivate = function keyFromPrivate(priv, enc) {\n return KeyPair.fromPrivate(this, priv, enc);\n};\n\nEC.prototype.keyFromPublic = function keyFromPublic(pub, enc) {\n return KeyPair.fromPublic(this, pub, enc);\n};\n\nEC.prototype.genKeyPair = function genKeyPair(options) {\n if (!options)\n options = {};\n\n // Instantiate Hmac_DRBG\n var drbg = new HmacDRBG({\n hash: this.hash,\n pers: options.pers,\n persEnc: options.persEnc || 'utf8',\n entropy: options.entropy || elliptic.rand(this.hash.hmacStrength),\n entropyEnc: options.entropy && options.entropyEnc || 'utf8',\n nonce: this.n.toArray()\n });\n\n var bytes = this.n.byteLength();\n var ns2 = this.n.sub(new BN(2));\n do {\n var priv = new BN(drbg.generate(bytes));\n if (priv.cmp(ns2) > 0)\n continue;\n\n priv.iaddn(1);\n return this.keyFromPrivate(priv);\n } while (true);\n};\n\nEC.prototype._truncateToN = function truncateToN(msg, truncOnly) {\n var delta = msg.byteLength() * 8 - this.n.bitLength();\n if (delta > 0)\n msg = msg.ushrn(delta);\n if (!truncOnly && msg.cmp(this.n) >= 0)\n return msg.sub(this.n);\n else\n return msg;\n};\n\nEC.prototype.sign = function sign(msg, key, enc, options) {\n if (typeof enc === 'object') {\n options = enc;\n enc = null;\n }\n if (!options)\n options = {};\n\n key = this.keyFromPrivate(key, enc);\n msg = this._truncateToN(new BN(msg, 16));\n\n // Zero-extend key to provide enough entropy\n var bytes = this.n.byteLength();\n var bkey = key.getPrivate().toArray('be', bytes);\n\n // Zero-extend nonce to have the same byte size as N\n var nonce = msg.toArray('be', bytes);\n\n // Instantiate Hmac_DRBG\n var drbg = new HmacDRBG({\n hash: this.hash,\n entropy: bkey,\n nonce: nonce,\n pers: options.pers,\n persEnc: options.persEnc || 'utf8'\n });\n\n // Number of bytes to generate\n var ns1 = this.n.sub(new BN(1));\n\n for (var iter = 0; true; iter++) {\n var k = options.k ?\n options.k(iter) :\n new BN(drbg.generate(this.n.byteLength()));\n k = this._truncateToN(k, true);\n if (k.cmpn(1) <= 0 || k.cmp(ns1) >= 0)\n continue;\n\n var kp = this.g.mul(k);\n if (kp.isInfinity())\n continue;\n\n var kpX = kp.getX();\n var r = kpX.umod(this.n);\n if (r.cmpn(0) === 0)\n continue;\n\n var s = k.invm(this.n).mul(r.mul(key.getPrivate()).iadd(msg));\n s = s.umod(this.n);\n if (s.cmpn(0) === 0)\n continue;\n\n var recoveryParam = (kp.getY().isOdd() ? 1 : 0) |\n (kpX.cmp(r) !== 0 ? 2 : 0);\n\n // Use complement of `s`, if it is > `n / 2`\n if (options.canonical && s.cmp(this.nh) > 0) {\n s = this.n.sub(s);\n recoveryParam ^= 1;\n }\n\n return new Signature({ r: r, s: s, recoveryParam: recoveryParam });\n }\n};\n\nEC.prototype.verify = function verify(msg, signature, key, enc) {\n msg = this._truncateToN(new BN(msg, 16));\n key = this.keyFromPublic(key, enc);\n signature = new Signature(signature, 'hex');\n\n // Perform primitive values validation\n var r = signature.r;\n var s = signature.s;\n if (r.cmpn(1) < 0 || r.cmp(this.n) >= 0)\n return false;\n if (s.cmpn(1) < 0 || s.cmp(this.n) >= 0)\n return false;\n\n // Validate signature\n var sinv = s.invm(this.n);\n var u1 = sinv.mul(msg).umod(this.n);\n var u2 = sinv.mul(r).umod(this.n);\n\n if (!this.curve._maxwellTrick) {\n var p = this.g.mulAdd(u1, key.getPublic(), u2);\n if (p.isInfinity())\n return false;\n\n return p.getX().umod(this.n).cmp(r) === 0;\n }\n\n // NOTE: Greg Maxwell's trick, inspired by:\n // https://git.io/vad3K\n\n var p = this.g.jmulAdd(u1, key.getPublic(), u2);\n if (p.isInfinity())\n return false;\n\n // Compare `p.x` of Jacobian point with `r`,\n // this will do `p.x == r * p.z^2` instead of multiplying `p.x` by the\n // inverse of `p.z^2`\n return p.eqXToP(r);\n};\n\nEC.prototype.recoverPubKey = function(msg, signature, j, enc) {\n assert((3 & j) === j, 'The recovery param is more than two bits');\n signature = new Signature(signature, enc);\n\n var n = this.n;\n var e = new BN(msg);\n var r = signature.r;\n var s = signature.s;\n\n // A set LSB signifies that the y-coordinate is odd\n var isYOdd = j & 1;\n var isSecondKey = j >> 1;\n if (r.cmp(this.curve.p.umod(this.curve.n)) >= 0 && isSecondKey)\n throw new Error('Unable to find sencond key candinate');\n\n // 1.1. Let x = r + jn.\n if (isSecondKey)\n r = this.curve.pointFromX(r.add(this.curve.n), isYOdd);\n else\n r = this.curve.pointFromX(r, isYOdd);\n\n var rInv = signature.r.invm(n);\n var s1 = n.sub(e).mul(rInv).umod(n);\n var s2 = s.mul(rInv).umod(n);\n\n // 1.6.1 Compute Q = r^-1 (sR - eG)\n // Q = r^-1 (sR + -eG)\n return this.g.mulAdd(s1, r, s2);\n};\n\nEC.prototype.getKeyRecoveryParam = function(e, signature, Q, enc) {\n signature = new Signature(signature, enc);\n if (signature.recoveryParam !== null)\n return signature.recoveryParam;\n\n for (var i = 0; i < 4; i++) {\n var Qprime;\n try {\n Qprime = this.recoverPubKey(e, signature, i);\n } catch (e) {\n continue;\n }\n\n if (Qprime.eq(Q))\n return i;\n }\n throw new Error('Unable to find valid recovery factor');\n};\n\n\n/***/ }),\n/* 149 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar BN = __webpack_require__(2);\nvar elliptic = __webpack_require__(3);\nvar utils = elliptic.utils;\nvar assert = utils.assert;\n\nfunction KeyPair(ec, options) {\n this.ec = ec;\n this.priv = null;\n this.pub = null;\n\n // KeyPair(ec, { priv: ..., pub: ... })\n if (options.priv)\n this._importPrivate(options.priv, options.privEnc);\n if (options.pub)\n this._importPublic(options.pub, options.pubEnc);\n}\nmodule.exports = KeyPair;\n\nKeyPair.fromPublic = function fromPublic(ec, pub, enc) {\n if (pub instanceof KeyPair)\n return pub;\n\n return new KeyPair(ec, {\n pub: pub,\n pubEnc: enc\n });\n};\n\nKeyPair.fromPrivate = function fromPrivate(ec, priv, enc) {\n if (priv instanceof KeyPair)\n return priv;\n\n return new KeyPair(ec, {\n priv: priv,\n privEnc: enc\n });\n};\n\nKeyPair.prototype.validate = function validate() {\n var pub = this.getPublic();\n\n if (pub.isInfinity())\n return { result: false, reason: 'Invalid public key' };\n if (!pub.validate())\n return { result: false, reason: 'Public key is not a point' };\n if (!pub.mul(this.ec.curve.n).isInfinity())\n return { result: false, reason: 'Public key * N != O' };\n\n return { result: true, reason: null };\n};\n\nKeyPair.prototype.getPublic = function getPublic(compact, enc) {\n // compact is optional argument\n if (typeof compact === 'string') {\n enc = compact;\n compact = null;\n }\n\n if (!this.pub)\n this.pub = this.ec.g.mul(this.priv);\n\n if (!enc)\n return this.pub;\n\n return this.pub.encode(enc, compact);\n};\n\nKeyPair.prototype.getPrivate = function getPrivate(enc) {\n if (enc === 'hex')\n return this.priv.toString(16, 2);\n else\n return this.priv;\n};\n\nKeyPair.prototype._importPrivate = function _importPrivate(key, enc) {\n this.priv = new BN(key, enc || 16);\n\n // Ensure that the priv won't be bigger than n, otherwise we may fail\n // in fixed multiplication method\n this.priv = this.priv.umod(this.ec.curve.n);\n};\n\nKeyPair.prototype._importPublic = function _importPublic(key, enc) {\n if (key.x || key.y) {\n // Montgomery points only have an `x` coordinate.\n // Weierstrass/Edwards points on the other hand have both `x` and\n // `y` coordinates.\n if (this.ec.curve.type === 'mont') {\n assert(key.x, 'Need x coordinate');\n } else if (this.ec.curve.type === 'short' ||\n this.ec.curve.type === 'edwards') {\n assert(key.x && key.y, 'Need both x and y coordinate');\n }\n this.pub = this.ec.curve.point(key.x, key.y);\n return;\n }\n this.pub = this.ec.curve.decodePoint(key, enc);\n};\n\n// ECDH\nKeyPair.prototype.derive = function derive(pub) {\n return pub.mul(this.priv).getX();\n};\n\n// ECDSA\nKeyPair.prototype.sign = function sign(msg, enc, options) {\n return this.ec.sign(msg, this, enc, options);\n};\n\nKeyPair.prototype.verify = function verify(msg, signature) {\n return this.ec.verify(msg, signature, this);\n};\n\nKeyPair.prototype.inspect = function inspect() {\n return '';\n};\n\n\n/***/ }),\n/* 150 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar BN = __webpack_require__(2);\n\nvar elliptic = __webpack_require__(3);\nvar utils = elliptic.utils;\nvar assert = utils.assert;\n\nfunction Signature(options, enc) {\n if (options instanceof Signature)\n return options;\n\n if (this._importDER(options, enc))\n return;\n\n assert(options.r && options.s, 'Signature without r or s');\n this.r = new BN(options.r, 16);\n this.s = new BN(options.s, 16);\n if (options.recoveryParam === undefined)\n this.recoveryParam = null;\n else\n this.recoveryParam = options.recoveryParam;\n}\nmodule.exports = Signature;\n\nfunction Position() {\n this.place = 0;\n}\n\nfunction getLength(buf, p) {\n var initial = buf[p.place++];\n if (!(initial & 0x80)) {\n return initial;\n }\n var octetLen = initial & 0xf;\n var val = 0;\n for (var i = 0, off = p.place; i < octetLen; i++, off++) {\n val <<= 8;\n val |= buf[off];\n }\n p.place = off;\n return val;\n}\n\nfunction rmPadding(buf) {\n var i = 0;\n var len = buf.length - 1;\n while (!buf[i] && !(buf[i + 1] & 0x80) && i < len) {\n i++;\n }\n if (i === 0) {\n return buf;\n }\n return buf.slice(i);\n}\n\nSignature.prototype._importDER = function _importDER(data, enc) {\n data = utils.toArray(data, enc);\n var p = new Position();\n if (data[p.place++] !== 0x30) {\n return false;\n }\n var len = getLength(data, p);\n if ((len + p.place) !== data.length) {\n return false;\n }\n if (data[p.place++] !== 0x02) {\n return false;\n }\n var rlen = getLength(data, p);\n var r = data.slice(p.place, rlen + p.place);\n p.place += rlen;\n if (data[p.place++] !== 0x02) {\n return false;\n }\n var slen = getLength(data, p);\n if (data.length !== slen + p.place) {\n return false;\n }\n var s = data.slice(p.place, slen + p.place);\n if (r[0] === 0 && (r[1] & 0x80)) {\n r = r.slice(1);\n }\n if (s[0] === 0 && (s[1] & 0x80)) {\n s = s.slice(1);\n }\n\n this.r = new BN(r);\n this.s = new BN(s);\n this.recoveryParam = null;\n\n return true;\n};\n\nfunction constructLength(arr, len) {\n if (len < 0x80) {\n arr.push(len);\n return;\n }\n var octets = 1 + (Math.log(len) / Math.LN2 >>> 3);\n arr.push(octets | 0x80);\n while (--octets) {\n arr.push((len >>> (octets << 3)) & 0xff);\n }\n arr.push(len);\n}\n\nSignature.prototype.toDER = function toDER(enc) {\n var r = this.r.toArray();\n var s = this.s.toArray();\n\n // Pad values\n if (r[0] & 0x80)\n r = [ 0 ].concat(r);\n // Pad values\n if (s[0] & 0x80)\n s = [ 0 ].concat(s);\n\n r = rmPadding(r);\n s = rmPadding(s);\n\n while (!s[0] && !(s[1] & 0x80)) {\n s = s.slice(1);\n }\n var arr = [ 0x02 ];\n constructLength(arr, r.length);\n arr = arr.concat(r);\n arr.push(0x02);\n constructLength(arr, s.length);\n var backHalf = arr.concat(s);\n var res = [ 0x30 ];\n constructLength(res, backHalf.length);\n res = res.concat(backHalf);\n return utils.encode(res, enc);\n};\n\n\n/***/ }),\n/* 151 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar hash = __webpack_require__(7);\nvar elliptic = __webpack_require__(3);\nvar utils = elliptic.utils;\nvar assert = utils.assert;\nvar parseBytes = utils.parseBytes;\nvar KeyPair = __webpack_require__(152);\nvar Signature = __webpack_require__(153);\n\nfunction EDDSA(curve) {\n assert(curve === 'ed25519', 'only tested with ed25519 so far');\n\n if (!(this instanceof EDDSA))\n return new EDDSA(curve);\n\n var curve = elliptic.curves[curve].curve;\n this.curve = curve;\n this.g = curve.g;\n this.g.precompute(curve.n.bitLength() + 1);\n\n this.pointClass = curve.point().constructor;\n this.encodingLength = Math.ceil(curve.n.bitLength() / 8);\n this.hash = hash.sha512;\n}\n\nmodule.exports = EDDSA;\n\n/**\n* @param {Array|String} message - message bytes\n* @param {Array|String|KeyPair} secret - secret bytes or a keypair\n* @returns {Signature} - signature\n*/\nEDDSA.prototype.sign = function sign(message, secret) {\n message = parseBytes(message);\n var key = this.keyFromSecret(secret);\n var r = this.hashInt(key.messagePrefix(), message);\n var R = this.g.mul(r);\n var Rencoded = this.encodePoint(R);\n var s_ = this.hashInt(Rencoded, key.pubBytes(), message)\n .mul(key.priv());\n var S = r.add(s_).umod(this.curve.n);\n return this.makeSignature({ R: R, S: S, Rencoded: Rencoded });\n};\n\n/**\n* @param {Array} message - message bytes\n* @param {Array|String|Signature} sig - sig bytes\n* @param {Array|String|Point|KeyPair} pub - public key\n* @returns {Boolean} - true if public key matches sig of message\n*/\nEDDSA.prototype.verify = function verify(message, sig, pub) {\n message = parseBytes(message);\n sig = this.makeSignature(sig);\n var key = this.keyFromPublic(pub);\n var h = this.hashInt(sig.Rencoded(), key.pubBytes(), message);\n var SG = this.g.mul(sig.S());\n var RplusAh = sig.R().add(key.pub().mul(h));\n return RplusAh.eq(SG);\n};\n\nEDDSA.prototype.hashInt = function hashInt() {\n var hash = this.hash();\n for (var i = 0; i < arguments.length; i++)\n hash.update(arguments[i]);\n return utils.intFromLE(hash.digest()).umod(this.curve.n);\n};\n\nEDDSA.prototype.keyFromPublic = function keyFromPublic(pub) {\n return KeyPair.fromPublic(this, pub);\n};\n\nEDDSA.prototype.keyFromSecret = function keyFromSecret(secret) {\n return KeyPair.fromSecret(this, secret);\n};\n\nEDDSA.prototype.makeSignature = function makeSignature(sig) {\n if (sig instanceof Signature)\n return sig;\n return new Signature(this, sig);\n};\n\n/**\n* * https://tools.ietf.org/html/draft-josefsson-eddsa-ed25519-03#section-5.2\n*\n* EDDSA defines methods for encoding and decoding points and integers. These are\n* helper convenience methods, that pass along to utility functions implied\n* parameters.\n*\n*/\nEDDSA.prototype.encodePoint = function encodePoint(point) {\n var enc = point.getY().toArray('le', this.encodingLength);\n enc[this.encodingLength - 1] |= point.getX().isOdd() ? 0x80 : 0;\n return enc;\n};\n\nEDDSA.prototype.decodePoint = function decodePoint(bytes) {\n bytes = utils.parseBytes(bytes);\n\n var lastIx = bytes.length - 1;\n var normed = bytes.slice(0, lastIx).concat(bytes[lastIx] & ~0x80);\n var xIsOdd = (bytes[lastIx] & 0x80) !== 0;\n\n var y = utils.intFromLE(normed);\n return this.curve.pointFromY(y, xIsOdd);\n};\n\nEDDSA.prototype.encodeInt = function encodeInt(num) {\n return num.toArray('le', this.encodingLength);\n};\n\nEDDSA.prototype.decodeInt = function decodeInt(bytes) {\n return utils.intFromLE(bytes);\n};\n\nEDDSA.prototype.isPoint = function isPoint(val) {\n return val instanceof this.pointClass;\n};\n\n\n/***/ }),\n/* 152 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar elliptic = __webpack_require__(3);\nvar utils = elliptic.utils;\nvar assert = utils.assert;\nvar parseBytes = utils.parseBytes;\nvar cachedProperty = utils.cachedProperty;\n\n/**\n* @param {EDDSA} eddsa - instance\n* @param {Object} params - public/private key parameters\n*\n* @param {Array} [params.secret] - secret seed bytes\n* @param {Point} [params.pub] - public key point (aka `A` in eddsa terms)\n* @param {Array} [params.pub] - public key point encoded as bytes\n*\n*/\nfunction KeyPair(eddsa, params) {\n this.eddsa = eddsa;\n this._secret = parseBytes(params.secret);\n if (eddsa.isPoint(params.pub))\n this._pub = params.pub;\n else\n this._pubBytes = parseBytes(params.pub);\n}\n\nKeyPair.fromPublic = function fromPublic(eddsa, pub) {\n if (pub instanceof KeyPair)\n return pub;\n return new KeyPair(eddsa, { pub: pub });\n};\n\nKeyPair.fromSecret = function fromSecret(eddsa, secret) {\n if (secret instanceof KeyPair)\n return secret;\n return new KeyPair(eddsa, { secret: secret });\n};\n\nKeyPair.prototype.secret = function secret() {\n return this._secret;\n};\n\ncachedProperty(KeyPair, 'pubBytes', function pubBytes() {\n return this.eddsa.encodePoint(this.pub());\n});\n\ncachedProperty(KeyPair, 'pub', function pub() {\n if (this._pubBytes)\n return this.eddsa.decodePoint(this._pubBytes);\n return this.eddsa.g.mul(this.priv());\n});\n\ncachedProperty(KeyPair, 'privBytes', function privBytes() {\n var eddsa = this.eddsa;\n var hash = this.hash();\n var lastIx = eddsa.encodingLength - 1;\n\n var a = hash.slice(0, eddsa.encodingLength);\n a[0] &= 248;\n a[lastIx] &= 127;\n a[lastIx] |= 64;\n\n return a;\n});\n\ncachedProperty(KeyPair, 'priv', function priv() {\n return this.eddsa.decodeInt(this.privBytes());\n});\n\ncachedProperty(KeyPair, 'hash', function hash() {\n return this.eddsa.hash().update(this.secret()).digest();\n});\n\ncachedProperty(KeyPair, 'messagePrefix', function messagePrefix() {\n return this.hash().slice(this.eddsa.encodingLength);\n});\n\nKeyPair.prototype.sign = function sign(message) {\n assert(this._secret, 'KeyPair can only verify');\n return this.eddsa.sign(message, this);\n};\n\nKeyPair.prototype.verify = function verify(message, sig) {\n return this.eddsa.verify(message, sig, this);\n};\n\nKeyPair.prototype.getSecret = function getSecret(enc) {\n assert(this._secret, 'KeyPair is public only');\n return utils.encode(this.secret(), enc);\n};\n\nKeyPair.prototype.getPublic = function getPublic(enc) {\n return utils.encode(this.pubBytes(), enc);\n};\n\nmodule.exports = KeyPair;\n\n\n/***/ }),\n/* 153 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar BN = __webpack_require__(2);\nvar elliptic = __webpack_require__(3);\nvar utils = elliptic.utils;\nvar assert = utils.assert;\nvar cachedProperty = utils.cachedProperty;\nvar parseBytes = utils.parseBytes;\n\n/**\n* @param {EDDSA} eddsa - eddsa instance\n* @param {Array|Object} sig -\n* @param {Array|Point} [sig.R] - R point as Point or bytes\n* @param {Array|bn} [sig.S] - S scalar as bn or bytes\n* @param {Array} [sig.Rencoded] - R point encoded\n* @param {Array} [sig.Sencoded] - S scalar encoded\n*/\nfunction Signature(eddsa, sig) {\n this.eddsa = eddsa;\n\n if (typeof sig !== 'object')\n sig = parseBytes(sig);\n\n if (Array.isArray(sig)) {\n sig = {\n R: sig.slice(0, eddsa.encodingLength),\n S: sig.slice(eddsa.encodingLength)\n };\n }\n\n assert(sig.R && sig.S, 'Signature without R or S');\n\n if (eddsa.isPoint(sig.R))\n this._R = sig.R;\n if (sig.S instanceof BN)\n this._S = sig.S;\n\n this._Rencoded = Array.isArray(sig.R) ? sig.R : sig.Rencoded;\n this._Sencoded = Array.isArray(sig.S) ? sig.S : sig.Sencoded;\n}\n\ncachedProperty(Signature, 'S', function S() {\n return this.eddsa.decodeInt(this.Sencoded());\n});\n\ncachedProperty(Signature, 'R', function R() {\n return 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data found!\",\n\t\"repository\": {\n\t\t\"type\": \"git\",\n\t\t\"url\": \"git+ssh://git@github.com/indutny/elliptic.git\"\n\t},\n\t\"scripts\": {\n\t\t\"jscs\": \"jscs benchmarks/*.js lib/*.js lib/**/*.js lib/**/**/*.js test/index.js\",\n\t\t\"jshint\": \"jscs benchmarks/*.js lib/*.js lib/**/*.js lib/**/**/*.js test/index.js\",\n\t\t\"lint\": \"npm run jscs && npm run jshint\",\n\t\t\"test\": \"npm run lint && npm run unit\",\n\t\t\"unit\": \"istanbul test _mocha --reporter=spec test/index.js\",\n\t\t\"version\": \"grunt dist && git add dist/\"\n\t},\n\t\"version\": \"6.4.0\"\n};\n\n/***/ }),\n/* 157 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar hash = __webpack_require__(7);\nvar utils = hash.utils;\nvar assert = utils.assert;\n\nfunction BlockHash() {\n this.pending = null;\n this.pendingTotal = 0;\n this.blockSize = this.constructor.blockSize;\n this.outSize = this.constructor.outSize;\n this.hmacStrength = this.constructor.hmacStrength;\n this.padLength = this.constructor.padLength / 8;\n this.endian = 'big';\n\n this._delta8 = this.blockSize / 8;\n this._delta32 = this.blockSize / 32;\n}\nexports.BlockHash = BlockHash;\n\nBlockHash.prototype.update = function update(msg, enc) {\n // Convert message to array, pad it, and join into 32bit blocks\n msg = utils.toArray(msg, enc);\n if (!this.pending)\n this.pending = msg;\n else\n this.pending = this.pending.concat(msg);\n this.pendingTotal += msg.length;\n\n // Enough data, try updating\n if (this.pending.length >= this._delta8) {\n msg = this.pending;\n\n // Process pending data in blocks\n var r = msg.length % this._delta8;\n this.pending = msg.slice(msg.length - r, msg.length);\n if (this.pending.length === 0)\n this.pending = null;\n\n msg = utils.join32(msg, 0, msg.length - r, this.endian);\n for (var i = 0; i < msg.length; i += this._delta32)\n this._update(msg, i, i + this._delta32);\n }\n\n return this;\n};\n\nBlockHash.prototype.digest = function digest(enc) {\n this.update(this._pad());\n assert(this.pending === null);\n\n return this._digest(enc);\n};\n\nBlockHash.prototype._pad = function pad() {\n var len = this.pendingTotal;\n var bytes = this._delta8;\n var k = bytes - ((len + this.padLength) % bytes);\n var res = new Array(k + this.padLength);\n res[0] = 0x80;\n for (var i = 1; i < k; i++)\n res[i] = 0;\n\n // Append length\n len <<= 3;\n if (this.endian === 'big') {\n for (var t = 8; t < this.padLength; t++)\n res[i++] = 0;\n\n res[i++] = 0;\n res[i++] = 0;\n res[i++] = 0;\n res[i++] = 0;\n res[i++] = (len >>> 24) & 0xff;\n res[i++] = (len >>> 16) & 0xff;\n res[i++] = (len >>> 8) & 0xff;\n res[i++] = len & 0xff;\n } else {\n res[i++] = len & 0xff;\n res[i++] = (len >>> 8) & 0xff;\n res[i++] = (len >>> 16) & 0xff;\n res[i++] = (len >>> 24) & 0xff;\n res[i++] = 0;\n res[i++] = 0;\n res[i++] = 0;\n res[i++] = 0;\n\n for (var t = 8; t < this.padLength; t++)\n res[i++] = 0;\n }\n\n return res;\n};\n\n\n/***/ }),\n/* 158 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar hmac = exports;\n\nvar hash = __webpack_require__(7);\nvar utils = hash.utils;\nvar assert = utils.assert;\n\nfunction Hmac(hash, key, enc) {\n if (!(this instanceof Hmac))\n return new Hmac(hash, key, enc);\n this.Hash = hash;\n this.blockSize = hash.blockSize / 8;\n this.outSize = hash.outSize / 8;\n this.inner = null;\n this.outer = null;\n\n this._init(utils.toArray(key, enc));\n}\nmodule.exports = Hmac;\n\nHmac.prototype._init = function init(key) {\n // Shorten key, if needed\n if (key.length > this.blockSize)\n key = new this.Hash().update(key).digest();\n assert(key.length <= this.blockSize);\n\n // Add padding to key\n for (var i = key.length; i < this.blockSize; i++)\n key.push(0);\n\n for (var i = 0; i < key.length; i++)\n key[i] ^= 0x36;\n this.inner = new this.Hash().update(key);\n\n // 0x36 ^ 0x5c = 0x6a\n for (var i = 0; i < key.length; i++)\n key[i] ^= 0x6a;\n this.outer = new this.Hash().update(key);\n};\n\nHmac.prototype.update = function update(msg, enc) {\n this.inner.update(msg, enc);\n return this;\n};\n\nHmac.prototype.digest = function digest(enc) {\n this.outer.update(this.inner.digest());\n return this.outer.digest(enc);\n};\n\n\n/***/ }),\n/* 159 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar hash = __webpack_require__(7);\nvar utils = hash.utils;\n\nvar rotl32 = utils.rotl32;\nvar sum32 = utils.sum32;\nvar sum32_3 = utils.sum32_3;\nvar sum32_4 = utils.sum32_4;\nvar BlockHash = hash.common.BlockHash;\n\nfunction RIPEMD160() {\n if (!(this instanceof RIPEMD160))\n return new RIPEMD160();\n\n BlockHash.call(this);\n\n this.h = [ 0x67452301, 0xefcdab89, 0x98badcfe, 0x10325476, 0xc3d2e1f0 ];\n this.endian = 'little';\n}\nutils.inherits(RIPEMD160, BlockHash);\nexports.ripemd160 = RIPEMD160;\n\nRIPEMD160.blockSize = 512;\nRIPEMD160.outSize = 160;\nRIPEMD160.hmacStrength = 192;\nRIPEMD160.padLength = 64;\n\nRIPEMD160.prototype._update = function update(msg, start) {\n var A = this.h[0];\n var B = this.h[1];\n var C = this.h[2];\n var D = this.h[3];\n var E = this.h[4];\n var Ah = A;\n var Bh = B;\n var Ch = C;\n var Dh = D;\n var Eh = E;\n for (var j = 0; j < 80; j++) {\n var T = sum32(\n rotl32(\n sum32_4(A, f(j, B, C, D), msg[r[j] + start], K(j)),\n s[j]),\n E);\n A = E;\n E = D;\n D = rotl32(C, 10);\n C = B;\n B = T;\n T = sum32(\n rotl32(\n sum32_4(Ah, f(79 - j, Bh, Ch, Dh), msg[rh[j] + start], Kh(j)),\n sh[j]),\n Eh);\n Ah = Eh;\n Eh = Dh;\n Dh = rotl32(Ch, 10);\n Ch = Bh;\n Bh = T;\n }\n T = sum32_3(this.h[1], C, Dh);\n this.h[1] = sum32_3(this.h[2], D, Eh);\n this.h[2] = sum32_3(this.h[3], E, Ah);\n this.h[3] = sum32_3(this.h[4], A, Bh);\n this.h[4] = sum32_3(this.h[0], B, Ch);\n this.h[0] = T;\n};\n\nRIPEMD160.prototype._digest = function digest(enc) {\n if (enc === 'hex')\n return utils.toHex32(this.h, 'little');\n else\n return utils.split32(this.h, 'little');\n};\n\nfunction f(j, x, y, z) {\n if (j <= 15)\n return x ^ y ^ z;\n else if (j <= 31)\n return (x & y) | ((~x) & z);\n else if (j <= 47)\n return (x | (~y)) ^ z;\n else if (j <= 63)\n return (x & z) | (y & (~z));\n else\n return x ^ (y | (~z));\n}\n\nfunction K(j) {\n if (j <= 15)\n return 0x00000000;\n else if (j <= 31)\n return 0x5a827999;\n else if (j <= 47)\n return 0x6ed9eba1;\n else if (j <= 63)\n return 0x8f1bbcdc;\n else\n return 0xa953fd4e;\n}\n\nfunction Kh(j) {\n if (j <= 15)\n return 0x50a28be6;\n else if (j <= 31)\n return 0x5c4dd124;\n else if (j <= 47)\n return 0x6d703ef3;\n else if (j <= 63)\n return 0x7a6d76e9;\n else\n return 0x00000000;\n}\n\nvar r = [\n 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15,\n 7, 4, 13, 1, 10, 6, 15, 3, 12, 0, 9, 5, 2, 14, 11, 8,\n 3, 10, 14, 4, 9, 15, 8, 1, 2, 7, 0, 6, 13, 11, 5, 12,\n 1, 9, 11, 10, 0, 8, 12, 4, 13, 3, 7, 15, 14, 5, 6, 2,\n 4, 0, 5, 9, 7, 12, 2, 10, 14, 1, 3, 8, 11, 6, 15, 13\n];\n\nvar rh = [\n 5, 14, 7, 0, 9, 2, 11, 4, 13, 6, 15, 8, 1, 10, 3, 12,\n 6, 11, 3, 7, 0, 13, 5, 10, 14, 15, 8, 12, 4, 9, 1, 2,\n 15, 5, 1, 3, 7, 14, 6, 9, 11, 8, 12, 2, 10, 0, 4, 13,\n 8, 6, 4, 1, 3, 11, 15, 0, 5, 12, 2, 13, 9, 7, 10, 14,\n 12, 15, 10, 4, 1, 5, 8, 7, 6, 2, 13, 14, 0, 3, 9, 11\n];\n\nvar s = [\n 11, 14, 15, 12, 5, 8, 7, 9, 11, 13, 14, 15, 6, 7, 9, 8,\n 7, 6, 8, 13, 11, 9, 7, 15, 7, 12, 15, 9, 11, 7, 13, 12,\n 11, 13, 6, 7, 14, 9, 13, 15, 14, 8, 13, 6, 5, 12, 7, 5,\n 11, 12, 14, 15, 14, 15, 9, 8, 9, 14, 5, 6, 8, 6, 5, 12,\n 9, 15, 5, 11, 6, 8, 13, 12, 5, 12, 13, 14, 11, 8, 5, 6\n];\n\nvar sh = [\n 8, 9, 9, 11, 13, 15, 15, 5, 7, 7, 8, 11, 14, 14, 12, 6,\n 9, 13, 15, 7, 12, 8, 9, 11, 7, 7, 12, 7, 6, 15, 13, 11,\n 9, 7, 15, 11, 8, 6, 6, 14, 12, 13, 5, 14, 13, 13, 7, 5,\n 15, 5, 8, 11, 14, 14, 6, 14, 6, 9, 12, 9, 12, 5, 15, 8,\n 8, 5, 12, 9, 12, 5, 14, 6, 8, 13, 6, 5, 15, 13, 11, 11\n];\n\n\n/***/ }),\n/* 160 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar hash = __webpack_require__(7);\nvar utils = hash.utils;\nvar assert = utils.assert;\n\nvar rotr32 = utils.rotr32;\nvar rotl32 = utils.rotl32;\nvar sum32 = utils.sum32;\nvar sum32_4 = utils.sum32_4;\nvar sum32_5 = utils.sum32_5;\nvar rotr64_hi = utils.rotr64_hi;\nvar rotr64_lo = utils.rotr64_lo;\nvar shr64_hi = utils.shr64_hi;\nvar shr64_lo = utils.shr64_lo;\nvar sum64 = utils.sum64;\nvar sum64_hi = utils.sum64_hi;\nvar sum64_lo = utils.sum64_lo;\nvar sum64_4_hi = utils.sum64_4_hi;\nvar sum64_4_lo = utils.sum64_4_lo;\nvar sum64_5_hi = utils.sum64_5_hi;\nvar sum64_5_lo = utils.sum64_5_lo;\nvar BlockHash = hash.common.BlockHash;\n\nvar sha256_K = [\n 0x428a2f98, 0x71374491, 0xb5c0fbcf, 0xe9b5dba5,\n 0x3956c25b, 0x59f111f1, 0x923f82a4, 0xab1c5ed5,\n 0xd807aa98, 0x12835b01, 0x243185be, 0x550c7dc3,\n 0x72be5d74, 0x80deb1fe, 0x9bdc06a7, 0xc19bf174,\n 0xe49b69c1, 0xefbe4786, 0x0fc19dc6, 0x240ca1cc,\n 0x2de92c6f, 0x4a7484aa, 0x5cb0a9dc, 0x76f988da,\n 0x983e5152, 0xa831c66d, 0xb00327c8, 0xbf597fc7,\n 0xc6e00bf3, 0xd5a79147, 0x06ca6351, 0x14292967,\n 0x27b70a85, 0x2e1b2138, 0x4d2c6dfc, 0x53380d13,\n 0x650a7354, 0x766a0abb, 0x81c2c92e, 0x92722c85,\n 0xa2bfe8a1, 0xa81a664b, 0xc24b8b70, 0xc76c51a3,\n 0xd192e819, 0xd6990624, 0xf40e3585, 0x106aa070,\n 0x19a4c116, 0x1e376c08, 0x2748774c, 0x34b0bcb5,\n 0x391c0cb3, 0x4ed8aa4a, 0x5b9cca4f, 0x682e6ff3,\n 0x748f82ee, 0x78a5636f, 0x84c87814, 0x8cc70208,\n 0x90befffa, 0xa4506ceb, 0xbef9a3f7, 0xc67178f2\n];\n\nvar sha512_K = [\n 0x428a2f98, 0xd728ae22, 0x71374491, 0x23ef65cd,\n 0xb5c0fbcf, 0xec4d3b2f, 0xe9b5dba5, 0x8189dbbc,\n 0x3956c25b, 0xf348b538, 0x59f111f1, 0xb605d019,\n 0x923f82a4, 0xaf194f9b, 0xab1c5ed5, 0xda6d8118,\n 0xd807aa98, 0xa3030242, 0x12835b01, 0x45706fbe,\n 0x243185be, 0x4ee4b28c, 0x550c7dc3, 0xd5ffb4e2,\n 0x72be5d74, 0xf27b896f, 0x80deb1fe, 0x3b1696b1,\n 0x9bdc06a7, 0x25c71235, 0xc19bf174, 0xcf692694,\n 0xe49b69c1, 0x9ef14ad2, 0xefbe4786, 0x384f25e3,\n 0x0fc19dc6, 0x8b8cd5b5, 0x240ca1cc, 0x77ac9c65,\n 0x2de92c6f, 0x592b0275, 0x4a7484aa, 0x6ea6e483,\n 0x5cb0a9dc, 0xbd41fbd4, 0x76f988da, 0x831153b5,\n 0x983e5152, 0xee66dfab, 0xa831c66d, 0x2db43210,\n 0xb00327c8, 0x98fb213f, 0xbf597fc7, 0xbeef0ee4,\n 0xc6e00bf3, 0x3da88fc2, 0xd5a79147, 0x930aa725,\n 0x06ca6351, 0xe003826f, 0x14292967, 0x0a0e6e70,\n 0x27b70a85, 0x46d22ffc, 0x2e1b2138, 0x5c26c926,\n 0x4d2c6dfc, 0x5ac42aed, 0x53380d13, 0x9d95b3df,\n 0x650a7354, 0x8baf63de, 0x766a0abb, 0x3c77b2a8,\n 0x81c2c92e, 0x47edaee6, 0x92722c85, 0x1482353b,\n 0xa2bfe8a1, 0x4cf10364, 0xa81a664b, 0xbc423001,\n 0xc24b8b70, 0xd0f89791, 0xc76c51a3, 0x0654be30,\n 0xd192e819, 0xd6ef5218, 0xd6990624, 0x5565a910,\n 0xf40e3585, 0x5771202a, 0x106aa070, 0x32bbd1b8,\n 0x19a4c116, 0xb8d2d0c8, 0x1e376c08, 0x5141ab53,\n 0x2748774c, 0xdf8eeb99, 0x34b0bcb5, 0xe19b48a8,\n 0x391c0cb3, 0xc5c95a63, 0x4ed8aa4a, 0xe3418acb,\n 0x5b9cca4f, 0x7763e373, 0x682e6ff3, 0xd6b2b8a3,\n 0x748f82ee, 0x5defb2fc, 0x78a5636f, 0x43172f60,\n 0x84c87814, 0xa1f0ab72, 0x8cc70208, 0x1a6439ec,\n 0x90befffa, 0x23631e28, 0xa4506ceb, 0xde82bde9,\n 0xbef9a3f7, 0xb2c67915, 0xc67178f2, 0xe372532b,\n 0xca273ece, 0xea26619c, 0xd186b8c7, 0x21c0c207,\n 0xeada7dd6, 0xcde0eb1e, 0xf57d4f7f, 0xee6ed178,\n 0x06f067aa, 0x72176fba, 0x0a637dc5, 0xa2c898a6,\n 0x113f9804, 0xbef90dae, 0x1b710b35, 0x131c471b,\n 0x28db77f5, 0x23047d84, 0x32caab7b, 0x40c72493,\n 0x3c9ebe0a, 0x15c9bebc, 0x431d67c4, 0x9c100d4c,\n 0x4cc5d4be, 0xcb3e42b6, 0x597f299c, 0xfc657e2a,\n 0x5fcb6fab, 0x3ad6faec, 0x6c44198c, 0x4a475817\n];\n\nvar sha1_K = [\n 0x5A827999, 0x6ED9EBA1,\n 0x8F1BBCDC, 0xCA62C1D6\n];\n\nfunction SHA256() {\n if (!(this instanceof SHA256))\n return new SHA256();\n\n BlockHash.call(this);\n this.h = [ 0x6a09e667, 0xbb67ae85, 0x3c6ef372, 0xa54ff53a,\n 0x510e527f, 0x9b05688c, 0x1f83d9ab, 0x5be0cd19 ];\n this.k = sha256_K;\n this.W = new Array(64);\n}\nutils.inherits(SHA256, BlockHash);\nexports.sha256 = SHA256;\n\nSHA256.blockSize = 512;\nSHA256.outSize = 256;\nSHA256.hmacStrength = 192;\nSHA256.padLength = 64;\n\nSHA256.prototype._update = function _update(msg, start) {\n var W = this.W;\n\n for (var i = 0; i < 16; i++)\n W[i] = msg[start + i];\n for (; i < W.length; i++)\n W[i] = sum32_4(g1_256(W[i - 2]), W[i - 7], g0_256(W[i - 15]), W[i - 16]);\n\n var a = this.h[0];\n var b = this.h[1];\n var c = this.h[2];\n var d = this.h[3];\n var e = this.h[4];\n var f = this.h[5];\n var g = this.h[6];\n var h = this.h[7];\n\n assert(this.k.length === W.length);\n for (var i = 0; i < W.length; i++) {\n var T1 = sum32_5(h, s1_256(e), ch32(e, f, g), this.k[i], W[i]);\n var T2 = sum32(s0_256(a), maj32(a, b, c));\n h = g;\n g = f;\n f = e;\n e = sum32(d, T1);\n d = c;\n c = b;\n b = a;\n a = sum32(T1, T2);\n }\n\n this.h[0] = sum32(this.h[0], a);\n this.h[1] = sum32(this.h[1], b);\n this.h[2] = sum32(this.h[2], c);\n this.h[3] = sum32(this.h[3], d);\n this.h[4] = sum32(this.h[4], e);\n this.h[5] = sum32(this.h[5], f);\n this.h[6] = sum32(this.h[6], g);\n this.h[7] = sum32(this.h[7], h);\n};\n\nSHA256.prototype._digest = function digest(enc) {\n if (enc === 'hex')\n return utils.toHex32(this.h, 'big');\n else\n return utils.split32(this.h, 'big');\n};\n\nfunction SHA224() {\n if (!(this instanceof SHA224))\n return new SHA224();\n\n SHA256.call(this);\n this.h = [ 0xc1059ed8, 0x367cd507, 0x3070dd17, 0xf70e5939,\n 0xffc00b31, 0x68581511, 0x64f98fa7, 0xbefa4fa4 ];\n}\nutils.inherits(SHA224, SHA256);\nexports.sha224 = SHA224;\n\nSHA224.blockSize = 512;\nSHA224.outSize = 224;\nSHA224.hmacStrength = 192;\nSHA224.padLength = 64;\n\nSHA224.prototype._digest = function digest(enc) {\n // Just truncate output\n if (enc === 'hex')\n return utils.toHex32(this.h.slice(0, 7), 'big');\n else\n return utils.split32(this.h.slice(0, 7), 'big');\n};\n\nfunction SHA512() {\n if (!(this instanceof SHA512))\n return new SHA512();\n\n BlockHash.call(this);\n this.h = [ 0x6a09e667, 0xf3bcc908,\n 0xbb67ae85, 0x84caa73b,\n 0x3c6ef372, 0xfe94f82b,\n 0xa54ff53a, 0x5f1d36f1,\n 0x510e527f, 0xade682d1,\n 0x9b05688c, 0x2b3e6c1f,\n 0x1f83d9ab, 0xfb41bd6b,\n 0x5be0cd19, 0x137e2179 ];\n this.k = sha512_K;\n this.W = new Array(160);\n}\nutils.inherits(SHA512, BlockHash);\nexports.sha512 = SHA512;\n\nSHA512.blockSize = 1024;\nSHA512.outSize = 512;\nSHA512.hmacStrength = 192;\nSHA512.padLength = 128;\n\nSHA512.prototype._prepareBlock = function _prepareBlock(msg, start) {\n var W = this.W;\n\n // 32 x 32bit words\n for (var i = 0; i < 32; i++)\n W[i] = msg[start + i];\n for (; i < W.length; i += 2) {\n var c0_hi = g1_512_hi(W[i - 4], W[i - 3]); // i - 2\n var c0_lo = g1_512_lo(W[i - 4], W[i - 3]);\n var c1_hi = W[i - 14]; // i - 7\n var c1_lo = W[i - 13];\n var c2_hi = g0_512_hi(W[i - 30], W[i - 29]); // i - 15\n var c2_lo = g0_512_lo(W[i - 30], W[i - 29]);\n var c3_hi = W[i - 32]; // i - 16\n var c3_lo = W[i - 31];\n\n W[i] = sum64_4_hi(c0_hi, c0_lo,\n c1_hi, c1_lo,\n c2_hi, c2_lo,\n c3_hi, c3_lo);\n W[i + 1] = sum64_4_lo(c0_hi, c0_lo,\n c1_hi, c1_lo,\n c2_hi, c2_lo,\n c3_hi, c3_lo);\n }\n};\n\nSHA512.prototype._update = function _update(msg, start) {\n this._prepareBlock(msg, start);\n\n var W = this.W;\n\n var ah = this.h[0];\n var al = this.h[1];\n var bh = this.h[2];\n var bl = this.h[3];\n var ch = this.h[4];\n var cl = this.h[5];\n var dh = this.h[6];\n var dl = this.h[7];\n var eh = this.h[8];\n var el = this.h[9];\n var fh = this.h[10];\n var fl = this.h[11];\n var gh = this.h[12];\n var gl = this.h[13];\n var hh = this.h[14];\n var hl = this.h[15];\n\n assert(this.k.length === W.length);\n for (var i = 0; i < W.length; i += 2) {\n var c0_hi = hh;\n var c0_lo = hl;\n var c1_hi = s1_512_hi(eh, el);\n var c1_lo = s1_512_lo(eh, el);\n var c2_hi = ch64_hi(eh, el, fh, fl, gh, gl);\n var c2_lo = ch64_lo(eh, el, fh, fl, gh, gl);\n var c3_hi = this.k[i];\n var c3_lo = this.k[i + 1];\n var c4_hi = W[i];\n var c4_lo = W[i + 1];\n\n var T1_hi = sum64_5_hi(c0_hi, c0_lo,\n c1_hi, c1_lo,\n c2_hi, c2_lo,\n c3_hi, c3_lo,\n c4_hi, c4_lo);\n var T1_lo = sum64_5_lo(c0_hi, c0_lo,\n c1_hi, c1_lo,\n c2_hi, c2_lo,\n c3_hi, c3_lo,\n c4_hi, c4_lo);\n\n var c0_hi = s0_512_hi(ah, al);\n var c0_lo = s0_512_lo(ah, al);\n var c1_hi = maj64_hi(ah, al, bh, bl, ch, cl);\n var c1_lo = maj64_lo(ah, al, bh, bl, ch, cl);\n\n var T2_hi = sum64_hi(c0_hi, c0_lo, c1_hi, c1_lo);\n var T2_lo = sum64_lo(c0_hi, c0_lo, c1_hi, c1_lo);\n\n hh = gh;\n hl = gl;\n\n gh = fh;\n gl = fl;\n\n fh = eh;\n fl = el;\n\n eh = sum64_hi(dh, dl, T1_hi, T1_lo);\n el = sum64_lo(dl, dl, T1_hi, T1_lo);\n\n dh = ch;\n dl = cl;\n\n ch = bh;\n cl = bl;\n\n bh = ah;\n bl = al;\n\n ah = sum64_hi(T1_hi, T1_lo, T2_hi, T2_lo);\n al = sum64_lo(T1_hi, T1_lo, T2_hi, T2_lo);\n }\n\n sum64(this.h, 0, ah, al);\n sum64(this.h, 2, bh, bl);\n sum64(this.h, 4, ch, cl);\n sum64(this.h, 6, dh, dl);\n sum64(this.h, 8, eh, el);\n sum64(this.h, 10, fh, fl);\n sum64(this.h, 12, gh, gl);\n sum64(this.h, 14, hh, hl);\n};\n\nSHA512.prototype._digest = function digest(enc) {\n if (enc === 'hex')\n return utils.toHex32(this.h, 'big');\n else\n return utils.split32(this.h, 'big');\n};\n\nfunction SHA384() {\n if (!(this instanceof SHA384))\n return new SHA384();\n\n SHA512.call(this);\n this.h = [ 0xcbbb9d5d, 0xc1059ed8,\n 0x629a292a, 0x367cd507,\n 0x9159015a, 0x3070dd17,\n 0x152fecd8, 0xf70e5939,\n 0x67332667, 0xffc00b31,\n 0x8eb44a87, 0x68581511,\n 0xdb0c2e0d, 0x64f98fa7,\n 0x47b5481d, 0xbefa4fa4 ];\n}\nutils.inherits(SHA384, SHA512);\nexports.sha384 = SHA384;\n\nSHA384.blockSize = 1024;\nSHA384.outSize = 384;\nSHA384.hmacStrength = 192;\nSHA384.padLength = 128;\n\nSHA384.prototype._digest = function digest(enc) {\n if (enc === 'hex')\n return utils.toHex32(this.h.slice(0, 12), 'big');\n else\n return utils.split32(this.h.slice(0, 12), 'big');\n};\n\nfunction SHA1() {\n if (!(this instanceof SHA1))\n return new SHA1();\n\n BlockHash.call(this);\n this.h = [ 0x67452301, 0xefcdab89, 0x98badcfe,\n 0x10325476, 0xc3d2e1f0 ];\n this.W = new Array(80);\n}\n\nutils.inherits(SHA1, BlockHash);\nexports.sha1 = SHA1;\n\nSHA1.blockSize = 512;\nSHA1.outSize = 160;\nSHA1.hmacStrength = 80;\nSHA1.padLength = 64;\n\nSHA1.prototype._update = function _update(msg, start) {\n var W = this.W;\n\n for (var i = 0; i < 16; i++)\n W[i] = msg[start + i];\n\n for(; i < W.length; i++)\n W[i] = rotl32(W[i - 3] ^ W[i - 8] ^ W[i - 14] ^ W[i - 16], 1);\n\n var a = this.h[0];\n var b = this.h[1];\n var c = this.h[2];\n var d = this.h[3];\n var e = this.h[4];\n\n for (var i = 0; i < W.length; i++) {\n var s = ~~(i / 20);\n var t = sum32_5(rotl32(a, 5), ft_1(s, b, c, d), e, W[i], sha1_K[s]);\n e = d;\n d = c;\n c = rotl32(b, 30);\n b = a;\n a = t;\n }\n\n this.h[0] = sum32(this.h[0], a);\n this.h[1] = sum32(this.h[1], b);\n this.h[2] = sum32(this.h[2], c);\n this.h[3] = sum32(this.h[3], d);\n this.h[4] = sum32(this.h[4], e);\n};\n\nSHA1.prototype._digest = function digest(enc) {\n if (enc === 'hex')\n return utils.toHex32(this.h, 'big');\n else\n return utils.split32(this.h, 'big');\n};\n\nfunction ch32(x, y, z) {\n return (x & y) ^ ((~x) & z);\n}\n\nfunction maj32(x, y, z) {\n return (x & y) ^ (x & z) ^ (y & z);\n}\n\nfunction p32(x, y, z) {\n return x ^ y ^ z;\n}\n\nfunction s0_256(x) {\n return rotr32(x, 2) ^ rotr32(x, 13) ^ rotr32(x, 22);\n}\n\nfunction s1_256(x) {\n return rotr32(x, 6) ^ rotr32(x, 11) ^ rotr32(x, 25);\n}\n\nfunction g0_256(x) {\n return rotr32(x, 7) ^ rotr32(x, 18) ^ (x >>> 3);\n}\n\nfunction g1_256(x) {\n return rotr32(x, 17) ^ rotr32(x, 19) ^ (x >>> 10);\n}\n\nfunction ft_1(s, x, y, z) {\n if (s === 0)\n return ch32(x, y, z);\n if (s === 1 || s === 3)\n return p32(x, y, z);\n if (s === 2)\n return maj32(x, y, z);\n}\n\nfunction ch64_hi(xh, xl, yh, yl, zh, zl) {\n var r = (xh & yh) ^ ((~xh) & zh);\n if (r < 0)\n r += 0x100000000;\n return r;\n}\n\nfunction ch64_lo(xh, xl, yh, yl, zh, zl) {\n var r = (xl & yl) ^ ((~xl) & zl);\n if (r < 0)\n r += 0x100000000;\n return r;\n}\n\nfunction maj64_hi(xh, xl, yh, yl, zh, zl) {\n var r = (xh & yh) ^ (xh & zh) ^ (yh & zh);\n if (r < 0)\n r += 0x100000000;\n return r;\n}\n\nfunction maj64_lo(xh, xl, yh, yl, zh, zl) {\n var r = (xl & yl) ^ (xl & zl) ^ (yl & zl);\n if (r < 0)\n r += 0x100000000;\n return r;\n}\n\nfunction s0_512_hi(xh, xl) {\n var c0_hi = rotr64_hi(xh, xl, 28);\n var c1_hi = rotr64_hi(xl, xh, 2); // 34\n var c2_hi = rotr64_hi(xl, xh, 7); // 39\n\n var r = c0_hi ^ c1_hi ^ c2_hi;\n if (r < 0)\n r += 0x100000000;\n return r;\n}\n\nfunction s0_512_lo(xh, xl) {\n var c0_lo = rotr64_lo(xh, xl, 28);\n var c1_lo = rotr64_lo(xl, xh, 2); // 34\n var c2_lo = rotr64_lo(xl, xh, 7); // 39\n\n var r = c0_lo ^ c1_lo ^ c2_lo;\n if (r < 0)\n r += 0x100000000;\n return r;\n}\n\nfunction s1_512_hi(xh, xl) {\n var c0_hi = rotr64_hi(xh, xl, 14);\n var c1_hi = rotr64_hi(xh, xl, 18);\n var c2_hi = rotr64_hi(xl, xh, 9); // 41\n\n var r = c0_hi ^ c1_hi ^ c2_hi;\n if (r < 0)\n r += 0x100000000;\n return r;\n}\n\nfunction s1_512_lo(xh, xl) {\n var c0_lo = rotr64_lo(xh, xl, 14);\n var c1_lo = rotr64_lo(xh, xl, 18);\n var c2_lo = rotr64_lo(xl, xh, 9); // 41\n\n var r = c0_lo ^ c1_lo ^ c2_lo;\n if (r < 0)\n r += 0x100000000;\n return r;\n}\n\nfunction g0_512_hi(xh, xl) {\n var c0_hi = rotr64_hi(xh, xl, 1);\n var c1_hi = rotr64_hi(xh, xl, 8);\n var c2_hi = shr64_hi(xh, xl, 7);\n\n var r = c0_hi ^ c1_hi ^ c2_hi;\n if (r < 0)\n r += 0x100000000;\n return r;\n}\n\nfunction g0_512_lo(xh, xl) {\n var c0_lo = rotr64_lo(xh, xl, 1);\n var c1_lo = rotr64_lo(xh, xl, 8);\n var c2_lo = shr64_lo(xh, xl, 7);\n\n var r = c0_lo ^ c1_lo ^ c2_lo;\n if (r < 0)\n r += 0x100000000;\n return r;\n}\n\nfunction g1_512_hi(xh, xl) {\n var c0_hi = rotr64_hi(xh, xl, 19);\n var c1_hi = rotr64_hi(xl, xh, 29); // 61\n var c2_hi = shr64_hi(xh, xl, 6);\n\n var r = c0_hi ^ c1_hi ^ c2_hi;\n if (r < 0)\n r += 0x100000000;\n return r;\n}\n\nfunction g1_512_lo(xh, xl) {\n var c0_lo = rotr64_lo(xh, xl, 19);\n var c1_lo = rotr64_lo(xl, xh, 29); // 61\n var c2_lo = shr64_lo(xh, xl, 6);\n\n var r = c0_lo ^ c1_lo ^ c2_lo;\n if (r < 0)\n r += 0x100000000;\n return r;\n}\n\n\n/***/ }),\n/* 161 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar utils = exports;\nvar inherits = __webpack_require__(1);\n\nfunction toArray(msg, enc) {\n if (Array.isArray(msg))\n return msg.slice();\n if (!msg)\n return [];\n var res = [];\n if (typeof msg === 'string') {\n if (!enc) {\n for (var i = 0; i < msg.length; i++) {\n var c = msg.charCodeAt(i);\n var hi = c >> 8;\n var lo = c & 0xff;\n if (hi)\n res.push(hi, lo);\n else\n res.push(lo);\n }\n } else if (enc === 'hex') {\n msg = msg.replace(/[^a-z0-9]+/ig, '');\n if (msg.length % 2 !== 0)\n msg = '0' + msg;\n for (var i = 0; i < msg.length; i += 2)\n res.push(parseInt(msg[i] + msg[i + 1], 16));\n }\n } else {\n for (var i = 0; i < msg.length; i++)\n res[i] = msg[i] | 0;\n }\n return res;\n}\nutils.toArray = toArray;\n\nfunction toHex(msg) {\n var res = '';\n for (var i = 0; i < msg.length; i++)\n res += zero2(msg[i].toString(16));\n return res;\n}\nutils.toHex = toHex;\n\nfunction htonl(w) {\n var res = (w >>> 24) |\n ((w >>> 8) & 0xff00) |\n ((w << 8) & 0xff0000) |\n ((w & 0xff) << 24);\n return res >>> 0;\n}\nutils.htonl = htonl;\n\nfunction toHex32(msg, endian) {\n var res = '';\n for (var i = 0; i < msg.length; i++) {\n var w = msg[i];\n if (endian === 'little')\n w = htonl(w);\n res += zero8(w.toString(16));\n }\n return res;\n}\nutils.toHex32 = toHex32;\n\nfunction zero2(word) {\n if (word.length === 1)\n return '0' + word;\n else\n return word;\n}\nutils.zero2 = zero2;\n\nfunction zero8(word) {\n if (word.length === 7)\n return '0' + word;\n else if (word.length === 6)\n return '00' + word;\n else if (word.length === 5)\n return '000' + word;\n else if (word.length === 4)\n return '0000' + word;\n else if (word.length === 3)\n return '00000' + word;\n else if (word.length === 2)\n return '000000' + word;\n else if (word.length === 1)\n return '0000000' + word;\n else\n return word;\n}\nutils.zero8 = zero8;\n\nfunction join32(msg, start, end, endian) {\n var len = end - start;\n assert(len % 4 === 0);\n var res = new Array(len / 4);\n for (var i = 0, k = start; i < res.length; i++, k += 4) {\n var w;\n if (endian === 'big')\n w = (msg[k] << 24) | (msg[k + 1] << 16) | (msg[k + 2] << 8) | msg[k + 3];\n else\n w = (msg[k + 3] << 24) | (msg[k + 2] << 16) | (msg[k + 1] << 8) | msg[k];\n res[i] = w >>> 0;\n }\n return res;\n}\nutils.join32 = join32;\n\nfunction split32(msg, endian) {\n var res = new Array(msg.length * 4);\n for (var i = 0, k = 0; i < msg.length; i++, k += 4) {\n var m = msg[i];\n if (endian === 'big') {\n res[k] = m >>> 24;\n res[k + 1] = (m >>> 16) & 0xff;\n res[k + 2] = (m >>> 8) & 0xff;\n res[k + 3] = m & 0xff;\n } else {\n res[k + 3] = m >>> 24;\n res[k + 2] = (m >>> 16) & 0xff;\n res[k + 1] = (m >>> 8) & 0xff;\n res[k] = m & 0xff;\n }\n }\n return res;\n}\nutils.split32 = split32;\n\nfunction rotr32(w, b) {\n return (w >>> b) | (w << (32 - b));\n}\nutils.rotr32 = rotr32;\n\nfunction rotl32(w, b) {\n return (w << b) | (w >>> (32 - b));\n}\nutils.rotl32 = rotl32;\n\nfunction sum32(a, b) {\n return (a + b) >>> 0;\n}\nutils.sum32 = sum32;\n\nfunction sum32_3(a, b, c) {\n return (a + b + c) >>> 0;\n}\nutils.sum32_3 = sum32_3;\n\nfunction sum32_4(a, b, c, d) {\n return (a + b + c + d) >>> 0;\n}\nutils.sum32_4 = sum32_4;\n\nfunction sum32_5(a, b, c, d, e) {\n return (a + b + c + d + e) >>> 0;\n}\nutils.sum32_5 = sum32_5;\n\nfunction assert(cond, msg) {\n if (!cond)\n throw new Error(msg || 'Assertion failed');\n}\nutils.assert = assert;\n\nutils.inherits = inherits;\n\nfunction sum64(buf, pos, ah, al) {\n var bh = buf[pos];\n var bl = buf[pos + 1];\n\n var lo = (al + bl) >>> 0;\n var hi = (lo < al ? 1 : 0) + ah + bh;\n buf[pos] = hi >>> 0;\n buf[pos + 1] = lo;\n}\nexports.sum64 = sum64;\n\nfunction sum64_hi(ah, al, bh, bl) {\n var lo = (al + bl) >>> 0;\n var hi = (lo < al ? 1 : 0) + ah + bh;\n return hi >>> 0;\n};\nexports.sum64_hi = sum64_hi;\n\nfunction sum64_lo(ah, al, bh, bl) {\n var lo = al + bl;\n return lo >>> 0;\n};\nexports.sum64_lo = sum64_lo;\n\nfunction sum64_4_hi(ah, al, bh, bl, ch, cl, dh, dl) {\n var carry = 0;\n var lo = al;\n lo = (lo + bl) >>> 0;\n carry += lo < al ? 1 : 0;\n lo = (lo + cl) >>> 0;\n carry += lo < cl ? 1 : 0;\n lo = (lo + dl) >>> 0;\n carry += lo < dl ? 1 : 0;\n\n var hi = ah + bh + ch + dh + carry;\n return hi >>> 0;\n};\nexports.sum64_4_hi = sum64_4_hi;\n\nfunction sum64_4_lo(ah, al, bh, bl, ch, cl, dh, dl) {\n var lo = al + bl + cl + dl;\n return lo >>> 0;\n};\nexports.sum64_4_lo = sum64_4_lo;\n\nfunction sum64_5_hi(ah, al, bh, bl, ch, cl, dh, dl, eh, el) {\n var carry = 0;\n var lo = al;\n lo = (lo + bl) >>> 0;\n carry += lo < al ? 1 : 0;\n lo = (lo + cl) >>> 0;\n carry += lo < cl ? 1 : 0;\n lo = (lo + dl) >>> 0;\n carry += lo < dl ? 1 : 0;\n lo = (lo + el) >>> 0;\n carry += lo < el ? 1 : 0;\n\n var hi = ah + bh + ch + dh + eh + carry;\n return hi >>> 0;\n};\nexports.sum64_5_hi = sum64_5_hi;\n\nfunction sum64_5_lo(ah, al, bh, bl, ch, cl, dh, dl, eh, el) {\n var lo = al + bl + cl + dl + el;\n\n return lo >>> 0;\n};\nexports.sum64_5_lo = sum64_5_lo;\n\nfunction rotr64_hi(ah, al, num) {\n var r = (al << (32 - num)) | (ah >>> num);\n return r >>> 0;\n};\nexports.rotr64_hi = rotr64_hi;\n\nfunction rotr64_lo(ah, al, num) {\n var r = (ah << (32 - num)) | (al >>> num);\n return r >>> 0;\n};\nexports.rotr64_lo = rotr64_lo;\n\nfunction shr64_hi(ah, al, num) {\n return ah >>> num;\n};\nexports.shr64_hi = shr64_hi;\n\nfunction shr64_lo(ah, al, num) {\n var r = (ah << (32 - num)) | (al >>> num);\n return r >>> 0;\n};\nexports.shr64_lo = shr64_lo;\n\n\n/***/ }),\n/* 162 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar hash = __webpack_require__(7);\nvar utils = __webpack_require__(74);\nvar assert = __webpack_require__(8);\n\nfunction HmacDRBG(options) {\n if (!(this instanceof HmacDRBG))\n return new HmacDRBG(options);\n this.hash = options.hash;\n this.predResist = !!options.predResist;\n\n this.outLen = this.hash.outSize;\n this.minEntropy = options.minEntropy || this.hash.hmacStrength;\n\n this._reseed = null;\n this.reseedInterval = null;\n this.K = null;\n this.V = null;\n\n var entropy = utils.toArray(options.entropy, options.entropyEnc || 'hex');\n var nonce = utils.toArray(options.nonce, options.nonceEnc || 'hex');\n var pers = utils.toArray(options.pers, options.persEnc || 'hex');\n assert(entropy.length >= (this.minEntropy / 8),\n 'Not enough entropy. Minimum is: ' + this.minEntropy + ' bits');\n this._init(entropy, nonce, pers);\n}\nmodule.exports = HmacDRBG;\n\nHmacDRBG.prototype._init = function init(entropy, nonce, pers) {\n var seed = entropy.concat(nonce).concat(pers);\n\n this.K = new Array(this.outLen / 8);\n this.V = new Array(this.outLen / 8);\n for (var i = 0; i < this.V.length; i++) {\n this.K[i] = 0x00;\n this.V[i] = 0x01;\n }\n\n this._update(seed);\n this._reseed = 1;\n this.reseedInterval = 0x1000000000000; // 2^48\n};\n\nHmacDRBG.prototype._hmac = function hmac() {\n return new hash.hmac(this.hash, this.K);\n};\n\nHmacDRBG.prototype._update = function update(seed) {\n var kmac = this._hmac()\n .update(this.V)\n .update([ 0x00 ]);\n if (seed)\n kmac = kmac.update(seed);\n this.K = kmac.digest();\n this.V = this._hmac().update(this.V).digest();\n if (!seed)\n return;\n\n this.K = this._hmac()\n .update(this.V)\n .update([ 0x01 ])\n .update(seed)\n .digest();\n this.V = this._hmac().update(this.V).digest();\n};\n\nHmacDRBG.prototype.reseed = function reseed(entropy, entropyEnc, add, addEnc) {\n // Optional entropy enc\n if (typeof entropyEnc !== 'string') {\n addEnc = add;\n add = entropyEnc;\n entropyEnc = null;\n }\n\n entropy = utils.toArray(entropy, entropyEnc);\n add = utils.toArray(add, addEnc);\n\n assert(entropy.length >= (this.minEntropy / 8),\n 'Not enough entropy. Minimum is: ' + this.minEntropy + ' bits');\n\n this._update(entropy.concat(add || []));\n this._reseed = 1;\n};\n\nHmacDRBG.prototype.generate = function generate(len, enc, add, addEnc) {\n if (this._reseed > this.reseedInterval)\n throw new Error('Reseed is required');\n\n // Optional encoding\n if (typeof enc !== 'string') {\n addEnc = add;\n add = enc;\n enc = null;\n }\n\n // Optional additional data\n if (add) {\n add = utils.toArray(add, addEnc || 'hex');\n this._update(add);\n }\n\n var temp = [];\n while (temp.length < len) {\n this.V = this._hmac().update(this.V).digest();\n temp = temp.concat(this.V);\n }\n\n var res = temp.slice(0, len);\n this._update(add);\n this._reseed++;\n return utils.encode(res, enc);\n};\n\n\n/***/ }),\n/* 163 */\n/***/ (function(module, exports) {\n\nfunction DummyCache() {}\n\nDummyCache.prototype.get = function () {\n return null;\n};\n\nDummyCache.prototype.has = function () {\n return false;\n};\n\nDummyCache.prototype.set = function () {\n};\n\nmodule.exports = DummyCache;\n\n\n/***/ }),\n/* 164 */\n/***/ (function(module, exports) {\n\nfunction ConfigurationError(message) {\n this.name = 'ConfigurationError';\n this.message = (message || '');\n}\nConfigurationError.prototype = Error.prototype;\n\nfunction TokenValidationError(message) {\n this.name = 'TokenValidationError';\n this.message = (message || '');\n}\nTokenValidationError.prototype = Error.prototype;\n\nmodule.exports = {\n ConfigurationError: ConfigurationError,\n TokenValidationError: TokenValidationError\n};\n\n\n/***/ }),\n/* 165 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar urljoin = __webpack_require__(10);\nvar base64 = __webpack_require__(71);\nvar request = __webpack_require__(86);\n\nfunction process(jwks) {\n var modulus = base64.decodeToHEX(jwks.n);\n var exp = base64.decodeToHEX(jwks.e);\n\n return {\n modulus: modulus,\n exp: exp\n };\n}\n\nfunction getJWKS(options, cb) {\n var url = urljoin(options.iss, '.well-known', 'jwks.json');\n\n return request\n .get(url)\n .end(function (err, data) {\n var matchingKey = null;\n var a;\n var key;\n\n if (err) {\n cb(err);\n }\n\n // eslint-disable-next-line no-plusplus\n for (a = 0; a < data.body.keys.length && matchingKey === null; a++) {\n key = data.body.keys[a];\n if (key.kid === options.kid) {\n matchingKey = key;\n }\n }\n\n cb(null, process(matchingKey));\n });\n}\n\nmodule.exports = {\n process: process,\n getJWKS: getJWKS\n};\n\n\n/***/ }),\n/* 166 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/*\nBased on the work of Tom Wu\nhttp://www-cs-students.stanford.edu/~tjw/jsbn/\nhttp://www-cs-students.stanford.edu/~tjw/jsbn/LICENSE\n*/\n\nvar BigInteger = __webpack_require__(170).BigInteger;\nvar SHA256 = __webpack_require__(134);\n\nvar DigestInfoHead = {\n sha1: '3021300906052b0e03021a05000414',\n sha224: '302d300d06096086480165030402040500041c',\n sha256: '3031300d060960864801650304020105000420',\n sha384: '3041300d060960864801650304020205000430',\n sha512: '3051300d060960864801650304020305000440',\n md2: '3020300c06082a864886f70d020205000410',\n md5: '3020300c06082a864886f70d020505000410',\n ripemd160: '3021300906052b2403020105000414'\n};\n\nvar DigestAlgs = {\n sha256: SHA256\n};\n\nfunction RSAVerifier(modulus, exp) {\n this.n = null;\n this.e = 0;\n\n if (modulus != null && exp != null && modulus.length > 0 && exp.length > 0) {\n this.n = new BigInteger(modulus, 16);\n this.e = parseInt(exp, 16);\n } else {\n throw new Error('Invalid key data');\n }\n}\n\nfunction getAlgorithmFromDigest(hDigestInfo) {\n for (var algName in DigestInfoHead) {\n var head = DigestInfoHead[algName];\n var len = head.length;\n\n if (hDigestInfo.substring(0, len) === head) {\n return {\n alg: algName,\n hash: hDigestInfo.substring(len)\n };\n }\n }\n return [];\n}\n\n\nRSAVerifier.prototype.verify = function (msg, encsig) {\n encsig = encsig.replace(/[^0-9a-f]|[\\s\\n]]/ig, '');\n\n var sig = new BigInteger(encsig, 16);\n if (sig.bitLength() > this.n.bitLength()) {\n throw new Error('Signature does not match with the key modulus.');\n }\n\n var decryptedSig = sig.modPowInt(this.e, this.n);\n var digest = decryptedSig.toString(16).replace(/^1f+00/, '');\n\n var digestInfo = getAlgorithmFromDigest(digest);\n if (digestInfo.length === 0) {\n return false;\n }\n\n if (!DigestAlgs.hasOwnProperty(digestInfo.alg)) {\n throw new Error('Hashing algorithm is not supported.');\n }\n\n var msgHash = DigestAlgs[digestInfo.alg](msg).toString();\n return (digestInfo.hash === msgHash);\n};\n\nmodule.exports = RSAVerifier;\n\n\n/***/ }),\n/* 167 */\n/***/ (function(module, exports, __webpack_require__) {\n\nvar RSAVerifier = __webpack_require__(166);\nvar base64 = __webpack_require__(71);\nvar jwks = __webpack_require__(165);\nvar error = __webpack_require__(164);\nvar DummyCache = __webpack_require__(163);\nvar supportedAlgs = ['RS256'];\n\n/**\n * Creates a new id_token verifier\n * @constructor\n * @param {Object} parameters\n * @param {String} parameters.issuer name of the issuer of the token\n * that should match the `iss` claim in the id_token\n * @param {String} parameters.audience identifies the recipients that the JWT is intended for\n * and should match the `aud` claim\n * @param {Object} [parameters.jwksCache] cache for JSON Web Token Keys. By default it has no cache\n * @param {String} [parameters.expectedAlg='RS256'] algorithm in which the id_token was signed\n * and will be used to validate\n * @param {number} [parameters.leeway=0] number of seconds that the clock can be out of sync\n * while validating expiration of the id_token\n */\nfunction IdTokenVerifier(parameters) {\n var options = parameters || {};\n\n this.jwksCache = options.jwksCache || new DummyCache();\n this.expectedAlg = options.expectedAlg || 'RS256';\n this.issuer = options.issuer;\n this.audience = options.audience;\n this.leeway = options.leeway || 0;\n this.__disableExpirationCheck = options.__disableExpirationCheck || false;\n\n if (this.leeway < 0 || this.leeway > 60) {\n throw new error.ConfigurationError('The leeway should be positive and lower than a minute.');\n }\n\n if (supportedAlgs.indexOf(this.expectedAlg) === -1) {\n throw new error.ConfigurationError('Algorithm ' + this.expectedAlg +\n ' is not supported. (Expected algs: [' + supportedAlgs.join(',') + '])');\n }\n}\n\n/**\n * @callback verifyCallback\n * @param {Error} [err] error returned if the verify cannot be performed\n * @param {boolean} [status] if the token is valid or not\n */\n\n/**\n * Verifies an id_token\n *\n * It will validate:\n * - signature according to the algorithm configured in the verifier.\n * - if nonce is present and matches the one provided\n * - if `iss` and `aud` claims matches the configured issuer and audience\n * - if token is not expired and valid (if the `nbf` claim is in the past)\n *\n * @method verify\n * @param {String} token id_token to verify\n * @param {String} [nonce] nonce value that should match the one in the id_token claims\n * @param {verifyCallback} cb callback used to notify the results of the validation\n */\nIdTokenVerifier.prototype.verify = function (token, nonce, cb) {\n var jwt = this.decode(token);\n\n if (jwt instanceof Error) {\n return cb(jwt, false);\n }\n\n /* eslint-disable vars-on-top */\n var headAndPayload = jwt.encoded.header + '.' + jwt.encoded.payload;\n var signature = base64.decodeToHEX(jwt.encoded.signature);\n\n var alg = jwt.header.alg;\n var kid = jwt.header.kid;\n\n var aud = jwt.payload.aud;\n var iss = jwt.payload.iss;\n var exp = jwt.payload.exp;\n var nbf = jwt.payload.nbf;\n var tnonce = jwt.payload.nonce || null;\n /* eslint-enable vars-on-top */\n\n if (this.issuer !== iss) {\n return cb(new error.TokenValidationError('Issuer ' + iss + ' is not valid.'), false);\n }\n\n if (this.audience !== aud) {\n return cb(new error.TokenValidationError('Audience ' + aud + ' is not valid.'), false);\n }\n\n if (this.expectedAlg !== alg) {\n return cb(new error.TokenValidationError('Algorithm ' + alg +\n ' is not supported. (Expected algs: [' + supportedAlgs.join(',') + '])'), false);\n }\n\n if (tnonce !== nonce) {\n return cb(new error.TokenValidationError('Nonce does not match.'), false);\n }\n\n var expirationError = this.verifyExpAndNbf(exp, nbf); // eslint-disable-line vars-on-top\n\n if (expirationError) {\n return cb(expirationError, false);\n }\n\n return this.getRsaVerifier(iss, kid, function (err, rsaVerifier) {\n if (err) {\n return cb(err);\n }\n if (rsaVerifier.verify(headAndPayload, signature)) {\n return cb(null, jwt.payload);\n }\n return cb(new error.TokenValidationError('Invalid signature.'));\n });\n};\n\n/**\n * Verifies that the `exp` and `nbf` claims are valid in the current moment.\n *\n * @method verifyExpAndNbf\n * @param {String} exp value of `exp` claim\n * @param {String} nbf value of `nbf` claim\n * @return {boolean} if token is valid according to `exp` and `nbf`\n */\nIdTokenVerifier.prototype.verifyExpAndNbf = function (exp, nbf) {\n var now = new Date();\n var expDate = new Date(0);\n var nbfDate = new Date(0);\n\n if (this.__disableExpirationCheck) {\n return null;\n }\n\n expDate.setUTCSeconds(exp + this.leeway);\n\n if (now > expDate) {\n return new error.TokenValidationError('Expired token.');\n }\n\n if (typeof nbf === 'undefined') {\n return null;\n }\n nbfDate.setUTCSeconds(nbf - this.leeway);\n if (now < nbfDate) {\n return new error.TokenValidationError('The token is not valid until later in the future. ' +\n 'Please check your computed clock.');\n }\n\n return null;\n};\n\n/**\n * Verifies that the `exp` and `iat` claims are valid in the current moment.\n *\n * @method verifyExpAndIat\n * @param {String} exp value of `exp` claim\n * @param {String} iat value of `iat` claim\n * @return {boolean} if token is valid according to `exp` and `iat`\n */\nIdTokenVerifier.prototype.verifyExpAndIat = function (exp, iat) {\n var now = new Date();\n var expDate = new Date(0);\n var iatDate = new Date(0);\n\n if (this.__disableExpirationCheck) {\n return null;\n }\n\n expDate.setUTCSeconds(exp + this.leeway);\n\n if (now > expDate) {\n return new error.TokenValidationError('Expired token.');\n }\n\n iatDate.setUTCSeconds(iat - this.leeway);\n\n if (now < iatDate) {\n return new error.TokenValidationError('The token was issued in the future. ' +\n 'Please check your computed clock.');\n }\n return null;\n};\n\nIdTokenVerifier.prototype.getRsaVerifier = function (iss, kid, cb) {\n var _this = this;\n var cachekey = iss + kid;\n\n if (!this.jwksCache.has(cachekey)) {\n jwks.getJWKS({\n iss: iss,\n kid: kid\n }, function (err, keyInfo) {\n if (err) {\n cb(err);\n }\n _this.jwksCache.set(cachekey, keyInfo);\n cb(null, new RSAVerifier(keyInfo.modulus, keyInfo.exp));\n });\n } else {\n var keyInfo = this.jwksCache.get(cachekey); // eslint-disable-line vars-on-top\n cb(null, new RSAVerifier(keyInfo.modulus, keyInfo.exp));\n }\n};\n\n\n/**\n * @typedef DecodedToken\n * @type {Object}\n * @property {Object} header - content of the JWT header.\n * @property {Object} payload - token claims.\n * @property {Object} encoded - encoded parts of the token.\n */\n\n/**\n * Decodes a well formed JWT without any verification\n *\n * @method decode\n * @param {String} token decodes the token\n * @return {DecodedToken} if token is valid according to `exp` and `nbf`\n */\nIdTokenVerifier.prototype.decode = function (token) {\n var parts = token.split('.');\n var header;\n var payload;\n\n if (parts.length !== 3) {\n return new error.TokenValidationError('Cannot decode a malformed JWT');\n }\n\n try {\n header = JSON.parse(base64.decodeToString(parts[0]));\n payload = JSON.parse(base64.decodeToString(parts[1]));\n } catch (e) {\n return new error.TokenValidationError('Token header or payload is not valid JSON');\n }\n\n return {\n header: header,\n payload: payload,\n encoded: {\n header: parts[0],\n payload: parts[1],\n signature: parts[2]\n }\n };\n};\n\nmodule.exports = IdTokenVerifier;\n\n\n/***/ }),\n/* 168 */\n/***/ (function(module, exports) {\n\nexports.read = function (buffer, offset, isLE, mLen, nBytes) {\n var e, m\n var eLen = nBytes * 8 - mLen - 1\n var eMax = (1 << eLen) - 1\n var eBias = eMax >> 1\n var nBits = -7\n var i = isLE ? (nBytes - 1) : 0\n var d = isLE ? -1 : 1\n var s = buffer[offset + i]\n\n i += d\n\n e = s & ((1 << (-nBits)) - 1)\n s >>= (-nBits)\n nBits += eLen\n for (; nBits > 0; e = e * 256 + buffer[offset + i], i += d, nBits -= 8) {}\n\n m = e & ((1 << (-nBits)) - 1)\n e >>= (-nBits)\n nBits += mLen\n for (; nBits > 0; m = m * 256 + buffer[offset + i], i += d, nBits -= 8) {}\n\n if (e === 0) {\n e = 1 - eBias\n } else if (e === eMax) {\n return m ? NaN : ((s ? -1 : 1) * Infinity)\n } else {\n m = m + Math.pow(2, mLen)\n e = e - eBias\n }\n return (s ? -1 : 1) * m * Math.pow(2, e - mLen)\n}\n\nexports.write = function (buffer, value, offset, isLE, mLen, nBytes) {\n var e, m, c\n var eLen = nBytes * 8 - mLen - 1\n var eMax = (1 << eLen) - 1\n var eBias = eMax >> 1\n var rt = (mLen === 23 ? Math.pow(2, -24) - Math.pow(2, -77) : 0)\n var i = isLE ? 0 : (nBytes - 1)\n var d = isLE ? 1 : -1\n var s = value < 0 || (value === 0 && 1 / value < 0) ? 1 : 0\n\n value = Math.abs(value)\n\n if (isNaN(value) || value === Infinity) {\n m = isNaN(value) ? 1 : 0\n e = eMax\n } else {\n e = Math.floor(Math.log(value) / Math.LN2)\n if (value * (c = Math.pow(2, -e)) < 1) {\n e--\n c *= 2\n }\n if (e + eBias >= 1) {\n value += rt / c\n } else {\n value += rt * Math.pow(2, 1 - eBias)\n }\n if (value * c >= 2) {\n e++\n c /= 2\n }\n\n if (e + eBias >= eMax) {\n m = 0\n e = eMax\n } else if (e + eBias >= 1) {\n m = (value * c - 1) * Math.pow(2, mLen)\n e = e + eBias\n } else {\n m = value * Math.pow(2, eBias - 1) * Math.pow(2, mLen)\n e = 0\n }\n }\n\n for (; mLen >= 8; buffer[offset + i] = m & 0xff, i += d, m /= 256, mLen -= 8) {}\n\n e = (e << mLen) | m\n eLen += mLen\n for (; eLen > 0; buffer[offset + i] = e & 0xff, i += d, e /= 256, eLen -= 8) {}\n\n buffer[offset + i - d] |= s * 128\n}\n\n\n/***/ }),\n/* 169 */\n/***/ (function(module, exports) {\n\n\nvar indexOf = [].indexOf;\n\nmodule.exports = function(arr, obj){\n if (indexOf) return arr.indexOf(obj);\n for (var i = 0; i < arr.length; ++i) {\n if (arr[i] === obj) return i;\n }\n return -1;\n};\n\n/***/ }),\n/* 170 */\n/***/ (function(module, exports, __webpack_require__) {\n\n(function(){\n\n // Copyright (c) 2005 Tom Wu\n // All Rights Reserved.\n // See \"LICENSE\" for details.\n\n // Basic JavaScript BN library - subset useful for RSA encryption.\n\n // Bits per digit\n var dbits;\n\n // JavaScript engine analysis\n var canary = 0xdeadbeefcafe;\n var j_lm = ((canary&0xffffff)==0xefcafe);\n\n // (public) Constructor\n function BigInteger(a,b,c) {\n if(a != null)\n if(\"number\" == typeof a) this.fromNumber(a,b,c);\n else if(b == null && \"string\" != typeof a) this.fromString(a,256);\n else this.fromString(a,b);\n }\n\n // return new, unset BigInteger\n function nbi() { return new BigInteger(null); }\n\n // am: Compute w_j += (x*this_i), propagate carries,\n // c is initial carry, returns final carry.\n // c < 3*dvalue, x < 2*dvalue, this_i < dvalue\n // We need to select the fastest one that works in this environment.\n\n // am1: use a single mult and divide to get the high bits,\n // max digit bits should be 26 because\n // max internal value = 2*dvalue^2-2*dvalue (< 2^53)\n function am1(i,x,w,j,c,n) {\n while(--n >= 0) {\n var v = x*this[i++]+w[j]+c;\n c = Math.floor(v/0x4000000);\n w[j++] = v&0x3ffffff;\n }\n return c;\n }\n // am2 avoids a big mult-and-extract completely.\n // Max digit bits should be <= 30 because we do bitwise ops\n // on values up to 2*hdvalue^2-hdvalue-1 (< 2^31)\n function am2(i,x,w,j,c,n) {\n var xl = x&0x7fff, xh = x>>15;\n while(--n >= 0) {\n var l = this[i]&0x7fff;\n var h = this[i++]>>15;\n var m = xh*l+h*xl;\n l = xl*l+((m&0x7fff)<<15)+w[j]+(c&0x3fffffff);\n c = (l>>>30)+(m>>>15)+xh*h+(c>>>30);\n w[j++] = l&0x3fffffff;\n }\n return c;\n }\n // Alternately, set max digit bits to 28 since some\n // browsers slow down when dealing with 32-bit numbers.\n function am3(i,x,w,j,c,n) {\n var xl = x&0x3fff, xh = x>>14;\n while(--n >= 0) {\n var l = this[i]&0x3fff;\n var h = this[i++]>>14;\n var m = xh*l+h*xl;\n l = xl*l+((m&0x3fff)<<14)+w[j]+c;\n c = (l>>28)+(m>>14)+xh*h;\n w[j++] = l&0xfffffff;\n }\n return c;\n }\n var inBrowser = typeof navigator !== \"undefined\";\n if(inBrowser && j_lm && (navigator.appName == \"Microsoft Internet Explorer\")) {\n BigInteger.prototype.am = am2;\n dbits = 30;\n }\n else if(inBrowser && j_lm && (navigator.appName != \"Netscape\")) {\n BigInteger.prototype.am = am1;\n dbits = 26;\n }\n else { // Mozilla/Netscape seems to prefer am3\n BigInteger.prototype.am = am3;\n dbits = 28;\n }\n\n BigInteger.prototype.DB = dbits;\n BigInteger.prototype.DM = ((1<= 0; --i) r[i] = this[i];\n r.t = this.t;\n r.s = this.s;\n }\n\n // (protected) set from integer value x, -DV <= x < DV\n function bnpFromInt(x) {\n this.t = 1;\n this.s = (x<0)?-1:0;\n if(x > 0) this[0] = x;\n else if(x < -1) this[0] = x+this.DV;\n else this.t = 0;\n }\n\n // return bigint initialized to value\n function nbv(i) { var r = nbi(); r.fromInt(i); return r; }\n\n // (protected) set from string and radix\n function bnpFromString(s,b) {\n var k;\n if(b == 16) k = 4;\n else if(b == 8) k = 3;\n else if(b == 256) k = 8; // byte array\n else if(b == 2) k = 1;\n else if(b == 32) k = 5;\n else if(b == 4) k = 2;\n else { this.fromRadix(s,b); return; }\n this.t = 0;\n this.s = 0;\n var i = s.length, mi = false, sh = 0;\n while(--i >= 0) {\n var x = (k==8)?s[i]&0xff:intAt(s,i);\n if(x < 0) {\n if(s.charAt(i) == \"-\") mi = true;\n continue;\n }\n mi = false;\n if(sh == 0)\n this[this.t++] = x;\n else if(sh+k > this.DB) {\n this[this.t-1] |= (x&((1<<(this.DB-sh))-1))<>(this.DB-sh));\n }\n else\n this[this.t-1] |= x<= this.DB) sh -= this.DB;\n }\n if(k == 8 && (s[0]&0x80) != 0) {\n this.s = -1;\n if(sh > 0) this[this.t-1] |= ((1<<(this.DB-sh))-1)< 0 && this[this.t-1] == c) --this.t;\n }\n\n // (public) return string representation in given radix\n function bnToString(b) {\n if(this.s < 0) return \"-\"+this.negate().toString(b);\n var k;\n if(b == 16) k = 4;\n else if(b == 8) k = 3;\n else if(b == 2) k = 1;\n else if(b == 32) k = 5;\n else if(b == 4) k = 2;\n else return this.toRadix(b);\n var km = (1< 0) {\n if(p < this.DB && (d = this[i]>>p) > 0) { m = true; r = int2char(d); }\n while(i >= 0) {\n if(p < k) {\n d = (this[i]&((1<>(p+=this.DB-k);\n }\n else {\n d = (this[i]>>(p-=k))&km;\n if(p <= 0) { p += this.DB; --i; }\n }\n if(d > 0) m = true;\n if(m) r += int2char(d);\n }\n }\n return m?r:\"0\";\n }\n\n // (public) -this\n function bnNegate() { var r = nbi(); BigInteger.ZERO.subTo(this,r); return r; }\n\n // (public) |this|\n function bnAbs() { return (this.s<0)?this.negate():this; }\n\n // (public) return + if this > a, - if this < a, 0 if equal\n function bnCompareTo(a) {\n var r = this.s-a.s;\n if(r != 0) return r;\n var i = this.t;\n r = i-a.t;\n if(r != 0) return (this.s<0)?-r:r;\n while(--i >= 0) if((r=this[i]-a[i]) != 0) return r;\n return 0;\n }\n\n // returns bit length of the integer x\n function nbits(x) {\n var r = 1, t;\n if((t=x>>>16) != 0) { x = t; r += 16; }\n if((t=x>>8) != 0) { x = t; r += 8; }\n if((t=x>>4) != 0) { x = t; r += 4; }\n if((t=x>>2) != 0) { x = t; r += 2; }\n if((t=x>>1) != 0) { x = t; r += 1; }\n return r;\n }\n\n // (public) return the number of bits in \"this\"\n function bnBitLength() {\n if(this.t <= 0) return 0;\n return this.DB*(this.t-1)+nbits(this[this.t-1]^(this.s&this.DM));\n }\n\n // (protected) r = this << n*DB\n function bnpDLShiftTo(n,r) {\n var i;\n for(i = this.t-1; i >= 0; --i) r[i+n] = this[i];\n for(i = n-1; i >= 0; --i) r[i] = 0;\n r.t = this.t+n;\n r.s = this.s;\n }\n\n // (protected) r = this >> n*DB\n function bnpDRShiftTo(n,r) {\n for(var i = n; i < this.t; ++i) r[i-n] = this[i];\n r.t = Math.max(this.t-n,0);\n r.s = this.s;\n }\n\n // (protected) r = this << n\n function bnpLShiftTo(n,r) {\n var bs = n%this.DB;\n var cbs = this.DB-bs;\n var bm = (1<= 0; --i) {\n r[i+ds+1] = (this[i]>>cbs)|c;\n c = (this[i]&bm)<= 0; --i) r[i] = 0;\n r[ds] = c;\n r.t = this.t+ds+1;\n r.s = this.s;\n r.clamp();\n }\n\n // (protected) r = this >> n\n function bnpRShiftTo(n,r) {\n r.s = this.s;\n var ds = Math.floor(n/this.DB);\n if(ds >= this.t) { r.t = 0; return; }\n var bs = n%this.DB;\n var cbs = this.DB-bs;\n var bm = (1<>bs;\n for(var i = ds+1; i < this.t; ++i) {\n r[i-ds-1] |= (this[i]&bm)<>bs;\n }\n if(bs > 0) r[this.t-ds-1] |= (this.s&bm)<>= this.DB;\n }\n if(a.t < this.t) {\n c -= a.s;\n while(i < this.t) {\n c += this[i];\n r[i++] = c&this.DM;\n c >>= this.DB;\n }\n c += this.s;\n }\n else {\n c += this.s;\n while(i < a.t) {\n c -= a[i];\n r[i++] = c&this.DM;\n c >>= this.DB;\n }\n c -= a.s;\n }\n r.s = (c<0)?-1:0;\n if(c < -1) r[i++] = this.DV+c;\n else if(c > 0) r[i++] = c;\n r.t = i;\n r.clamp();\n }\n\n // (protected) r = this * a, r != this,a (HAC 14.12)\n // \"this\" should be the larger one if appropriate.\n function bnpMultiplyTo(a,r) {\n var x = this.abs(), y = a.abs();\n var i = x.t;\n r.t = i+y.t;\n while(--i >= 0) r[i] = 0;\n for(i = 0; i < y.t; ++i) r[i+x.t] = x.am(0,y[i],r,i,0,x.t);\n r.s = 0;\n r.clamp();\n if(this.s != a.s) BigInteger.ZERO.subTo(r,r);\n }\n\n // (protected) r = this^2, r != this (HAC 14.16)\n function bnpSquareTo(r) {\n var x = this.abs();\n var i = r.t = 2*x.t;\n while(--i >= 0) r[i] = 0;\n for(i = 0; i < x.t-1; ++i) {\n var c = x.am(i,x[i],r,2*i,0,1);\n if((r[i+x.t]+=x.am(i+1,2*x[i],r,2*i+1,c,x.t-i-1)) >= x.DV) {\n r[i+x.t] -= x.DV;\n r[i+x.t+1] = 1;\n }\n }\n if(r.t > 0) r[r.t-1] += x.am(i,x[i],r,2*i,0,1);\n r.s = 0;\n r.clamp();\n }\n\n // (protected) divide this by m, quotient and remainder to q, r (HAC 14.20)\n // r != q, this != m. q or r may be null.\n function bnpDivRemTo(m,q,r) {\n var pm = m.abs();\n if(pm.t <= 0) return;\n var pt = this.abs();\n if(pt.t < pm.t) {\n if(q != null) q.fromInt(0);\n if(r != null) this.copyTo(r);\n return;\n }\n if(r == null) r = nbi();\n var y = nbi(), ts = this.s, ms = m.s;\n var nsh = this.DB-nbits(pm[pm.t-1]); // normalize modulus\n if(nsh > 0) { pm.lShiftTo(nsh,y); pt.lShiftTo(nsh,r); }\n else { pm.copyTo(y); pt.copyTo(r); }\n var ys = y.t;\n var y0 = y[ys-1];\n if(y0 == 0) return;\n var yt = y0*(1<1)?y[ys-2]>>this.F2:0);\n var d1 = this.FV/yt, d2 = (1<= 0) {\n r[r.t++] = 1;\n r.subTo(t,r);\n }\n BigInteger.ONE.dlShiftTo(ys,t);\n t.subTo(y,y); // \"negative\" y so we can replace sub with am later\n while(y.t < ys) y[y.t++] = 0;\n while(--j >= 0) {\n // Estimate quotient digit\n var qd = (r[--i]==y0)?this.DM:Math.floor(r[i]*d1+(r[i-1]+e)*d2);\n if((r[i]+=y.am(0,qd,r,j,0,ys)) < qd) { // Try it out\n y.dlShiftTo(j,t);\n r.subTo(t,r);\n while(r[i] < --qd) r.subTo(t,r);\n }\n }\n if(q != null) {\n r.drShiftTo(ys,q);\n if(ts != ms) BigInteger.ZERO.subTo(q,q);\n }\n r.t = ys;\n r.clamp();\n if(nsh > 0) r.rShiftTo(nsh,r); // Denormalize remainder\n if(ts < 0) BigInteger.ZERO.subTo(r,r);\n }\n\n // (public) this mod a\n function bnMod(a) {\n var r = nbi();\n this.abs().divRemTo(a,null,r);\n if(this.s < 0 && r.compareTo(BigInteger.ZERO) > 0) a.subTo(r,r);\n return r;\n }\n\n // Modular reduction using \"classic\" algorithm\n function Classic(m) { this.m = m; }\n function cConvert(x) {\n if(x.s < 0 || x.compareTo(this.m) >= 0) return x.mod(this.m);\n else return x;\n }\n function cRevert(x) { return x; }\n function cReduce(x) { x.divRemTo(this.m,null,x); }\n function cMulTo(x,y,r) { x.multiplyTo(y,r); this.reduce(r); }\n function cSqrTo(x,r) { x.squareTo(r); this.reduce(r); }\n\n Classic.prototype.convert = cConvert;\n Classic.prototype.revert = cRevert;\n Classic.prototype.reduce = cReduce;\n Classic.prototype.mulTo = cMulTo;\n Classic.prototype.sqrTo = cSqrTo;\n\n // (protected) return \"-1/this % 2^DB\"; useful for Mont. reduction\n // justification:\n // xy == 1 (mod m)\n // xy = 1+km\n // xy(2-xy) = (1+km)(1-km)\n // x[y(2-xy)] = 1-k^2m^2\n // x[y(2-xy)] == 1 (mod m^2)\n // if y is 1/x mod m, then y(2-xy) is 1/x mod m^2\n // should reduce x and y(2-xy) by m^2 at each step to keep size bounded.\n // JS multiply \"overflows\" differently from C/C++, so care is needed here.\n function bnpInvDigit() {\n if(this.t < 1) return 0;\n var x = this[0];\n if((x&1) == 0) return 0;\n var y = x&3; // y == 1/x mod 2^2\n y = (y*(2-(x&0xf)*y))&0xf; // y == 1/x mod 2^4\n y = (y*(2-(x&0xff)*y))&0xff; // y == 1/x mod 2^8\n y = (y*(2-(((x&0xffff)*y)&0xffff)))&0xffff; // y == 1/x mod 2^16\n // last step - calculate inverse mod DV directly;\n // assumes 16 < DB <= 32 and assumes ability to handle 48-bit ints\n y = (y*(2-x*y%this.DV))%this.DV; // y == 1/x mod 2^dbits\n // we really want the negative inverse, and -DV < y < DV\n return (y>0)?this.DV-y:-y;\n }\n\n // Montgomery reduction\n function Montgomery(m) {\n this.m = m;\n this.mp = m.invDigit();\n this.mpl = this.mp&0x7fff;\n this.mph = this.mp>>15;\n this.um = (1<<(m.DB-15))-1;\n this.mt2 = 2*m.t;\n }\n\n // xR mod m\n function montConvert(x) {\n var r = nbi();\n x.abs().dlShiftTo(this.m.t,r);\n r.divRemTo(this.m,null,r);\n if(x.s < 0 && r.compareTo(BigInteger.ZERO) > 0) this.m.subTo(r,r);\n return r;\n }\n\n // x/R mod m\n function montRevert(x) {\n var r = nbi();\n x.copyTo(r);\n this.reduce(r);\n return r;\n }\n\n // x = x/R mod m (HAC 14.32)\n function montReduce(x) {\n while(x.t <= this.mt2) // pad x so am has enough room later\n x[x.t++] = 0;\n for(var i = 0; i < this.m.t; ++i) {\n // faster way of calculating u0 = x[i]*mp mod DV\n var j = x[i]&0x7fff;\n var u0 = (j*this.mpl+(((j*this.mph+(x[i]>>15)*this.mpl)&this.um)<<15))&x.DM;\n // use am to combine the multiply-shift-add into one call\n j = i+this.m.t;\n x[j] += this.m.am(0,u0,x,i,0,this.m.t);\n // propagate carry\n while(x[j] >= x.DV) { x[j] -= x.DV; x[++j]++; }\n }\n x.clamp();\n x.drShiftTo(this.m.t,x);\n if(x.compareTo(this.m) >= 0) x.subTo(this.m,x);\n }\n\n // r = \"x^2/R mod m\"; x != r\n function montSqrTo(x,r) { x.squareTo(r); this.reduce(r); }\n\n // r = \"xy/R mod m\"; x,y != r\n function montMulTo(x,y,r) { x.multiplyTo(y,r); this.reduce(r); }\n\n Montgomery.prototype.convert = montConvert;\n Montgomery.prototype.revert = montRevert;\n Montgomery.prototype.reduce = montReduce;\n Montgomery.prototype.mulTo = montMulTo;\n Montgomery.prototype.sqrTo = montSqrTo;\n\n // (protected) true iff this is even\n function bnpIsEven() { return ((this.t>0)?(this[0]&1):this.s) == 0; }\n\n // (protected) this^e, e < 2^32, doing sqr and mul with \"r\" (HAC 14.79)\n function bnpExp(e,z) {\n if(e > 0xffffffff || e < 1) return BigInteger.ONE;\n var r = nbi(), r2 = nbi(), g = z.convert(this), i = nbits(e)-1;\n g.copyTo(r);\n while(--i >= 0) {\n z.sqrTo(r,r2);\n if((e&(1< 0) z.mulTo(r2,g,r);\n else { var t = r; r = r2; r2 = t; }\n }\n return z.revert(r);\n }\n\n // (public) this^e % m, 0 <= e < 2^32\n function bnModPowInt(e,m) {\n var z;\n if(e < 256 || m.isEven()) z = new Classic(m); else z = new Montgomery(m);\n return this.exp(e,z);\n }\n\n // protected\n BigInteger.prototype.copyTo = bnpCopyTo;\n BigInteger.prototype.fromInt = bnpFromInt;\n BigInteger.prototype.fromString = bnpFromString;\n BigInteger.prototype.clamp = bnpClamp;\n BigInteger.prototype.dlShiftTo = bnpDLShiftTo;\n BigInteger.prototype.drShiftTo = bnpDRShiftTo;\n BigInteger.prototype.lShiftTo = bnpLShiftTo;\n BigInteger.prototype.rShiftTo = bnpRShiftTo;\n BigInteger.prototype.subTo = bnpSubTo;\n BigInteger.prototype.multiplyTo = bnpMultiplyTo;\n BigInteger.prototype.squareTo = bnpSquareTo;\n BigInteger.prototype.divRemTo = bnpDivRemTo;\n BigInteger.prototype.invDigit = bnpInvDigit;\n BigInteger.prototype.isEven = bnpIsEven;\n BigInteger.prototype.exp = bnpExp;\n\n // public\n BigInteger.prototype.toString = bnToString;\n BigInteger.prototype.negate = bnNegate;\n BigInteger.prototype.abs = bnAbs;\n BigInteger.prototype.compareTo = bnCompareTo;\n BigInteger.prototype.bitLength = bnBitLength;\n BigInteger.prototype.mod = bnMod;\n BigInteger.prototype.modPowInt = bnModPowInt;\n\n // \"constants\"\n BigInteger.ZERO = nbv(0);\n BigInteger.ONE = nbv(1);\n\n // Copyright (c) 2005-2009 Tom Wu\n // All Rights Reserved.\n // See \"LICENSE\" for details.\n\n // Extended JavaScript BN functions, required for RSA private ops.\n\n // Version 1.1: new BigInteger(\"0\", 10) returns \"proper\" zero\n // Version 1.2: square() API, isProbablePrime fix\n\n // (public)\n function bnClone() { var r = nbi(); this.copyTo(r); return r; }\n\n // (public) return value as integer\n function bnIntValue() {\n if(this.s < 0) {\n if(this.t == 1) return this[0]-this.DV;\n else if(this.t == 0) return -1;\n }\n else if(this.t == 1) return this[0];\n else if(this.t == 0) return 0;\n // assumes 16 < DB < 32\n return ((this[1]&((1<<(32-this.DB))-1))<>24; }\n\n // (public) return value as short (assumes DB>=16)\n function bnShortValue() { return (this.t==0)?this.s:(this[0]<<16)>>16; }\n\n // (protected) return x s.t. r^x < DV\n function bnpChunkSize(r) { return Math.floor(Math.LN2*this.DB/Math.log(r)); }\n\n // (public) 0 if this == 0, 1 if this > 0\n function bnSigNum() {\n if(this.s < 0) return -1;\n else if(this.t <= 0 || (this.t == 1 && this[0] <= 0)) return 0;\n else return 1;\n }\n\n // (protected) convert to radix string\n function bnpToRadix(b) {\n if(b == null) b = 10;\n if(this.signum() == 0 || b < 2 || b > 36) return \"0\";\n var cs = this.chunkSize(b);\n var a = Math.pow(b,cs);\n var d = nbv(a), y = nbi(), z = nbi(), r = \"\";\n this.divRemTo(d,y,z);\n while(y.signum() > 0) {\n r = (a+z.intValue()).toString(b).substr(1) + r;\n y.divRemTo(d,y,z);\n }\n return z.intValue().toString(b) + r;\n }\n\n // (protected) convert from radix string\n function bnpFromRadix(s,b) {\n this.fromInt(0);\n if(b == null) b = 10;\n var cs = this.chunkSize(b);\n var d = Math.pow(b,cs), mi = false, j = 0, w = 0;\n for(var i = 0; i < s.length; ++i) {\n var x = intAt(s,i);\n if(x < 0) {\n if(s.charAt(i) == \"-\" && this.signum() == 0) mi = true;\n continue;\n }\n w = b*w+x;\n if(++j >= cs) {\n this.dMultiply(d);\n this.dAddOffset(w,0);\n j = 0;\n w = 0;\n }\n }\n if(j > 0) {\n this.dMultiply(Math.pow(b,j));\n this.dAddOffset(w,0);\n }\n if(mi) BigInteger.ZERO.subTo(this,this);\n }\n\n // (protected) alternate constructor\n function bnpFromNumber(a,b,c) {\n if(\"number\" == typeof b) {\n // new BigInteger(int,int,RNG)\n if(a < 2) this.fromInt(1);\n else {\n this.fromNumber(a,c);\n if(!this.testBit(a-1))\t// force MSB set\n this.bitwiseTo(BigInteger.ONE.shiftLeft(a-1),op_or,this);\n if(this.isEven()) this.dAddOffset(1,0); // force odd\n while(!this.isProbablePrime(b)) {\n this.dAddOffset(2,0);\n if(this.bitLength() > a) this.subTo(BigInteger.ONE.shiftLeft(a-1),this);\n }\n }\n }\n else {\n // new BigInteger(int,RNG)\n var x = new Array(), t = a&7;\n x.length = (a>>3)+1;\n b.nextBytes(x);\n if(t > 0) x[0] &= ((1< 0) {\n if(p < this.DB && (d = this[i]>>p) != (this.s&this.DM)>>p)\n r[k++] = d|(this.s<<(this.DB-p));\n while(i >= 0) {\n if(p < 8) {\n d = (this[i]&((1<>(p+=this.DB-8);\n }\n else {\n d = (this[i]>>(p-=8))&0xff;\n if(p <= 0) { p += this.DB; --i; }\n }\n if((d&0x80) != 0) d |= -256;\n if(k == 0 && (this.s&0x80) != (d&0x80)) ++k;\n if(k > 0 || d != this.s) r[k++] = d;\n }\n }\n return r;\n }\n\n function bnEquals(a) { return(this.compareTo(a)==0); }\n function bnMin(a) { return(this.compareTo(a)<0)?this:a; }\n function bnMax(a) { return(this.compareTo(a)>0)?this:a; }\n\n // (protected) r = this op a (bitwise)\n function bnpBitwiseTo(a,op,r) {\n var i, f, m = Math.min(a.t,this.t);\n for(i = 0; i < m; ++i) r[i] = op(this[i],a[i]);\n if(a.t < this.t) {\n f = a.s&this.DM;\n for(i = m; i < this.t; ++i) r[i] = op(this[i],f);\n r.t = this.t;\n }\n else {\n f = this.s&this.DM;\n for(i = m; i < a.t; ++i) r[i] = op(f,a[i]);\n r.t = a.t;\n }\n r.s = op(this.s,a.s);\n r.clamp();\n }\n\n // (public) this & a\n function op_and(x,y) { return x&y; }\n function bnAnd(a) { var r = nbi(); this.bitwiseTo(a,op_and,r); return r; }\n\n // (public) this | a\n function op_or(x,y) { return x|y; }\n function bnOr(a) { var r = nbi(); this.bitwiseTo(a,op_or,r); return r; }\n\n // (public) this ^ a\n function op_xor(x,y) { return x^y; }\n function bnXor(a) { var r = nbi(); this.bitwiseTo(a,op_xor,r); return r; }\n\n // (public) this & ~a\n function op_andnot(x,y) { return x&~y; }\n function bnAndNot(a) { var r = nbi(); this.bitwiseTo(a,op_andnot,r); return r; }\n\n // (public) ~this\n function bnNot() {\n var r = nbi();\n for(var i = 0; i < this.t; ++i) r[i] = this.DM&~this[i];\n r.t = this.t;\n r.s = ~this.s;\n return r;\n }\n\n // (public) this << n\n function bnShiftLeft(n) {\n var r = nbi();\n if(n < 0) this.rShiftTo(-n,r); else this.lShiftTo(n,r);\n return r;\n }\n\n // (public) this >> n\n function bnShiftRight(n) {\n var r = nbi();\n if(n < 0) this.lShiftTo(-n,r); else this.rShiftTo(n,r);\n return r;\n }\n\n // return index of lowest 1-bit in x, x < 2^31\n function lbit(x) {\n if(x == 0) return -1;\n var r = 0;\n if((x&0xffff) == 0) { x >>= 16; r += 16; }\n if((x&0xff) == 0) { x >>= 8; r += 8; }\n if((x&0xf) == 0) { x >>= 4; r += 4; }\n if((x&3) == 0) { x >>= 2; r += 2; }\n if((x&1) == 0) ++r;\n return r;\n }\n\n // (public) returns index of lowest 1-bit (or -1 if none)\n function bnGetLowestSetBit() {\n for(var i = 0; i < this.t; ++i)\n if(this[i] != 0) return i*this.DB+lbit(this[i]);\n if(this.s < 0) return this.t*this.DB;\n return -1;\n }\n\n // return number of 1 bits in x\n function cbit(x) {\n var r = 0;\n while(x != 0) { x &= x-1; ++r; }\n return r;\n }\n\n // (public) return number of set bits\n function bnBitCount() {\n var r = 0, x = this.s&this.DM;\n for(var i = 0; i < this.t; ++i) r += cbit(this[i]^x);\n return r;\n }\n\n // (public) true iff nth bit is set\n function bnTestBit(n) {\n var j = Math.floor(n/this.DB);\n if(j >= this.t) return(this.s!=0);\n return((this[j]&(1<<(n%this.DB)))!=0);\n }\n\n // (protected) this op (1<>= this.DB;\n }\n if(a.t < this.t) {\n c += a.s;\n while(i < this.t) {\n c += this[i];\n r[i++] = c&this.DM;\n c >>= this.DB;\n }\n c += this.s;\n }\n else {\n c += this.s;\n while(i < a.t) {\n c += a[i];\n r[i++] = c&this.DM;\n c >>= this.DB;\n }\n c += a.s;\n }\n r.s = (c<0)?-1:0;\n if(c > 0) r[i++] = c;\n else if(c < -1) r[i++] = this.DV+c;\n r.t = i;\n r.clamp();\n }\n\n // (public) this + a\n function bnAdd(a) { var r = nbi(); this.addTo(a,r); return r; }\n\n // (public) this - a\n function bnSubtract(a) { var r = nbi(); this.subTo(a,r); return r; }\n\n // (public) this * a\n function bnMultiply(a) { var r = nbi(); this.multiplyTo(a,r); return r; }\n\n // (public) this^2\n function bnSquare() { var r = nbi(); this.squareTo(r); return r; }\n\n // (public) this / a\n function bnDivide(a) { var r = nbi(); this.divRemTo(a,r,null); return r; }\n\n // (public) this % a\n function bnRemainder(a) { var r = nbi(); this.divRemTo(a,null,r); return r; }\n\n // (public) [this/a,this%a]\n function bnDivideAndRemainder(a) {\n var q = nbi(), r = nbi();\n this.divRemTo(a,q,r);\n return new Array(q,r);\n }\n\n // (protected) this *= n, this >= 0, 1 < n < DV\n function bnpDMultiply(n) {\n this[this.t] = this.am(0,n-1,this,0,0,this.t);\n ++this.t;\n this.clamp();\n }\n\n // (protected) this += n << w words, this >= 0\n function bnpDAddOffset(n,w) {\n if(n == 0) return;\n while(this.t <= w) this[this.t++] = 0;\n this[w] += n;\n while(this[w] >= this.DV) {\n this[w] -= this.DV;\n if(++w >= this.t) this[this.t++] = 0;\n ++this[w];\n }\n }\n\n // A \"null\" reducer\n function NullExp() {}\n function nNop(x) { return x; }\n function nMulTo(x,y,r) { x.multiplyTo(y,r); }\n function nSqrTo(x,r) { x.squareTo(r); }\n\n NullExp.prototype.convert = nNop;\n NullExp.prototype.revert = nNop;\n NullExp.prototype.mulTo = nMulTo;\n NullExp.prototype.sqrTo = nSqrTo;\n\n // (public) this^e\n function bnPow(e) { return this.exp(e,new NullExp()); }\n\n // (protected) r = lower n words of \"this * a\", a.t <= n\n // \"this\" should be the larger one if appropriate.\n function bnpMultiplyLowerTo(a,n,r) {\n var i = Math.min(this.t+a.t,n);\n r.s = 0; // assumes a,this >= 0\n r.t = i;\n while(i > 0) r[--i] = 0;\n var j;\n for(j = r.t-this.t; i < j; ++i) r[i+this.t] = this.am(0,a[i],r,i,0,this.t);\n for(j = Math.min(a.t,n); i < j; ++i) this.am(0,a[i],r,i,0,n-i);\n r.clamp();\n }\n\n // (protected) r = \"this * a\" without lower n words, n > 0\n // \"this\" should be the larger one if appropriate.\n function bnpMultiplyUpperTo(a,n,r) {\n --n;\n var i = r.t = this.t+a.t-n;\n r.s = 0; // assumes a,this >= 0\n while(--i >= 0) r[i] = 0;\n for(i = Math.max(n-this.t,0); i < a.t; ++i)\n r[this.t+i-n] = this.am(n-i,a[i],r,0,0,this.t+i-n);\n r.clamp();\n r.drShiftTo(1,r);\n }\n\n // Barrett modular reduction\n function Barrett(m) {\n // setup Barrett\n this.r2 = nbi();\n this.q3 = nbi();\n BigInteger.ONE.dlShiftTo(2*m.t,this.r2);\n this.mu = this.r2.divide(m);\n this.m = m;\n }\n\n function barrettConvert(x) {\n if(x.s < 0 || x.t > 2*this.m.t) return x.mod(this.m);\n else if(x.compareTo(this.m) < 0) return x;\n else { var r = nbi(); x.copyTo(r); this.reduce(r); return r; }\n }\n\n function barrettRevert(x) { return x; }\n\n // x = x mod m (HAC 14.42)\n function barrettReduce(x) {\n x.drShiftTo(this.m.t-1,this.r2);\n if(x.t > this.m.t+1) { x.t = this.m.t+1; x.clamp(); }\n this.mu.multiplyUpperTo(this.r2,this.m.t+1,this.q3);\n this.m.multiplyLowerTo(this.q3,this.m.t+1,this.r2);\n while(x.compareTo(this.r2) < 0) x.dAddOffset(1,this.m.t+1);\n x.subTo(this.r2,x);\n while(x.compareTo(this.m) >= 0) x.subTo(this.m,x);\n }\n\n // r = x^2 mod m; x != r\n function barrettSqrTo(x,r) { x.squareTo(r); this.reduce(r); }\n\n // r = x*y mod m; x,y != r\n function barrettMulTo(x,y,r) { x.multiplyTo(y,r); this.reduce(r); }\n\n Barrett.prototype.convert = barrettConvert;\n Barrett.prototype.revert = barrettRevert;\n Barrett.prototype.reduce = barrettReduce;\n Barrett.prototype.mulTo = barrettMulTo;\n Barrett.prototype.sqrTo = barrettSqrTo;\n\n // (public) this^e % m (HAC 14.85)\n function bnModPow(e,m) {\n var i = e.bitLength(), k, r = nbv(1), z;\n if(i <= 0) return r;\n else if(i < 18) k = 1;\n else if(i < 48) k = 3;\n else if(i < 144) k = 4;\n else if(i < 768) k = 5;\n else k = 6;\n if(i < 8)\n z = new Classic(m);\n else if(m.isEven())\n z = new Barrett(m);\n else\n z = new Montgomery(m);\n\n // precomputation\n var g = new Array(), n = 3, k1 = k-1, km = (1< 1) {\n var g2 = nbi();\n z.sqrTo(g[1],g2);\n while(n <= km) {\n g[n] = nbi();\n z.mulTo(g2,g[n-2],g[n]);\n n += 2;\n }\n }\n\n var j = e.t-1, w, is1 = true, r2 = nbi(), t;\n i = nbits(e[j])-1;\n while(j >= 0) {\n if(i >= k1) w = (e[j]>>(i-k1))&km;\n else {\n w = (e[j]&((1<<(i+1))-1))<<(k1-i);\n if(j > 0) w |= e[j-1]>>(this.DB+i-k1);\n }\n\n n = k;\n while((w&1) == 0) { w >>= 1; --n; }\n if((i -= n) < 0) { i += this.DB; --j; }\n if(is1) {\t// ret == 1, don't bother squaring or multiplying it\n g[w].copyTo(r);\n is1 = false;\n }\n else {\n while(n > 1) { z.sqrTo(r,r2); z.sqrTo(r2,r); n -= 2; }\n if(n > 0) z.sqrTo(r,r2); else { t = r; r = r2; r2 = t; }\n z.mulTo(r2,g[w],r);\n }\n\n while(j >= 0 && (e[j]&(1< 0) {\n x.rShiftTo(g,x);\n y.rShiftTo(g,y);\n }\n while(x.signum() > 0) {\n if((i = x.getLowestSetBit()) > 0) x.rShiftTo(i,x);\n if((i = y.getLowestSetBit()) > 0) y.rShiftTo(i,y);\n if(x.compareTo(y) >= 0) {\n x.subTo(y,x);\n x.rShiftTo(1,x);\n }\n else {\n y.subTo(x,y);\n y.rShiftTo(1,y);\n }\n }\n if(g > 0) y.lShiftTo(g,y);\n return y;\n }\n\n // (protected) this % n, n < 2^26\n function bnpModInt(n) {\n if(n <= 0) return 0;\n var d = this.DV%n, r = (this.s<0)?n-1:0;\n if(this.t > 0)\n if(d == 0) r = this[0]%n;\n else for(var i = this.t-1; i >= 0; --i) r = (d*r+this[i])%n;\n return r;\n }\n\n // (public) 1/this % m (HAC 14.61)\n function bnModInverse(m) {\n var ac = m.isEven();\n if((this.isEven() && ac) || m.signum() == 0) return BigInteger.ZERO;\n var u = m.clone(), v = this.clone();\n var a = nbv(1), b = nbv(0), c = nbv(0), d = nbv(1);\n while(u.signum() != 0) {\n while(u.isEven()) {\n u.rShiftTo(1,u);\n if(ac) {\n if(!a.isEven() || !b.isEven()) { a.addTo(this,a); b.subTo(m,b); }\n a.rShiftTo(1,a);\n }\n else if(!b.isEven()) b.subTo(m,b);\n b.rShiftTo(1,b);\n }\n while(v.isEven()) {\n v.rShiftTo(1,v);\n if(ac) {\n if(!c.isEven() || !d.isEven()) { c.addTo(this,c); d.subTo(m,d); }\n c.rShiftTo(1,c);\n }\n else if(!d.isEven()) d.subTo(m,d);\n d.rShiftTo(1,d);\n }\n if(u.compareTo(v) >= 0) {\n u.subTo(v,u);\n if(ac) a.subTo(c,a);\n b.subTo(d,b);\n }\n else {\n v.subTo(u,v);\n if(ac) c.subTo(a,c);\n d.subTo(b,d);\n }\n }\n if(v.compareTo(BigInteger.ONE) != 0) return BigInteger.ZERO;\n if(d.compareTo(m) >= 0) return d.subtract(m);\n if(d.signum() < 0) d.addTo(m,d); else return d;\n if(d.signum() < 0) return d.add(m); else return d;\n }\n\n var lowprimes = [2,3,5,7,11,13,17,19,23,29,31,37,41,43,47,53,59,61,67,71,73,79,83,89,97,101,103,107,109,113,127,131,137,139,149,151,157,163,167,173,179,181,191,193,197,199,211,223,227,229,233,239,241,251,257,263,269,271,277,281,283,293,307,311,313,317,331,337,347,349,353,359,367,373,379,383,389,397,401,409,419,421,431,433,439,443,449,457,461,463,467,479,487,491,499,503,509,521,523,541,547,557,563,569,571,577,587,593,599,601,607,613,617,619,631,641,643,647,653,659,661,673,677,683,691,701,709,719,727,733,739,743,751,757,761,769,773,787,797,809,811,821,823,827,829,839,853,857,859,863,877,881,883,887,907,911,919,929,937,941,947,953,967,971,977,983,991,997];\n var lplim = (1<<26)/lowprimes[lowprimes.length-1];\n\n // (public) test primality with certainty >= 1-.5^t\n function bnIsProbablePrime(t) {\n var i, x = this.abs();\n if(x.t == 1 && x[0] <= lowprimes[lowprimes.length-1]) {\n for(i = 0; i < lowprimes.length; ++i)\n if(x[0] == lowprimes[i]) return true;\n return false;\n }\n if(x.isEven()) return false;\n i = 1;\n while(i < lowprimes.length) {\n var m = lowprimes[i], j = i+1;\n while(j < lowprimes.length && m < lplim) m *= lowprimes[j++];\n m = x.modInt(m);\n while(i < j) if(m%lowprimes[i++] == 0) return false;\n }\n return x.millerRabin(t);\n }\n\n // (protected) true if probably prime (HAC 4.24, Miller-Rabin)\n function bnpMillerRabin(t) {\n var n1 = this.subtract(BigInteger.ONE);\n var k = n1.getLowestSetBit();\n if(k <= 0) return false;\n var r = n1.shiftRight(k);\n t = (t+1)>>1;\n if(t > lowprimes.length) t = lowprimes.length;\n var a = nbi();\n for(var i = 0; i < t; ++i) {\n //Pick bases at random, instead of starting at 2\n a.fromInt(lowprimes[Math.floor(Math.random()*lowprimes.length)]);\n var y = a.modPow(r,this);\n if(y.compareTo(BigInteger.ONE) != 0 && y.compareTo(n1) != 0) {\n var j = 1;\n while(j++ < k && y.compareTo(n1) != 0) {\n y = y.modPowInt(2,this);\n if(y.compareTo(BigInteger.ONE) == 0) return false;\n }\n if(y.compareTo(n1) != 0) return false;\n }\n }\n return true;\n }\n\n // protected\n BigInteger.prototype.chunkSize = bnpChunkSize;\n BigInteger.prototype.toRadix = bnpToRadix;\n BigInteger.prototype.fromRadix = bnpFromRadix;\n BigInteger.prototype.fromNumber = bnpFromNumber;\n BigInteger.prototype.bitwiseTo = bnpBitwiseTo;\n BigInteger.prototype.changeBit = bnpChangeBit;\n BigInteger.prototype.addTo = bnpAddTo;\n BigInteger.prototype.dMultiply = bnpDMultiply;\n BigInteger.prototype.dAddOffset = bnpDAddOffset;\n BigInteger.prototype.multiplyLowerTo = bnpMultiplyLowerTo;\n BigInteger.prototype.multiplyUpperTo = bnpMultiplyUpperTo;\n BigInteger.prototype.modInt = bnpModInt;\n BigInteger.prototype.millerRabin = bnpMillerRabin;\n\n // public\n BigInteger.prototype.clone = bnClone;\n BigInteger.prototype.intValue = bnIntValue;\n BigInteger.prototype.byteValue = bnByteValue;\n BigInteger.prototype.shortValue = bnShortValue;\n BigInteger.prototype.signum = bnSigNum;\n BigInteger.prototype.toByteArray = bnToByteArray;\n BigInteger.prototype.equals = bnEquals;\n BigInteger.prototype.min = bnMin;\n BigInteger.prototype.max = bnMax;\n BigInteger.prototype.and = bnAnd;\n BigInteger.prototype.or = bnOr;\n BigInteger.prototype.xor = bnXor;\n BigInteger.prototype.andNot = bnAndNot;\n BigInteger.prototype.not = bnNot;\n BigInteger.prototype.shiftLeft = bnShiftLeft;\n BigInteger.prototype.shiftRight = bnShiftRight;\n BigInteger.prototype.getLowestSetBit = bnGetLowestSetBit;\n BigInteger.prototype.bitCount = bnBitCount;\n BigInteger.prototype.testBit = bnTestBit;\n BigInteger.prototype.setBit = bnSetBit;\n BigInteger.prototype.clearBit = bnClearBit;\n BigInteger.prototype.flipBit = bnFlipBit;\n BigInteger.prototype.add = bnAdd;\n BigInteger.prototype.subtract = bnSubtract;\n BigInteger.prototype.multiply = bnMultiply;\n BigInteger.prototype.divide = bnDivide;\n BigInteger.prototype.remainder = bnRemainder;\n BigInteger.prototype.divideAndRemainder = bnDivideAndRemainder;\n BigInteger.prototype.modPow = bnModPow;\n BigInteger.prototype.modInverse = bnModInverse;\n BigInteger.prototype.pow = bnPow;\n BigInteger.prototype.gcd = bnGCD;\n BigInteger.prototype.isProbablePrime = bnIsProbablePrime;\n\n // JSBN-specific extension\n BigInteger.prototype.square = bnSquare;\n\n // Expose the Barrett function\n BigInteger.prototype.Barrett = Barrett\n\n // BigInteger interfaces not implemented in jsbn:\n\n // BigInteger(int signum, byte[] magnitude)\n // double doubleValue()\n // float floatValue()\n // int hashCode()\n // long longValue()\n // static BigInteger valueOf(long val)\n\n\t// Random number generator - requires a PRNG backend, e.g. prng4.js\n\n\t// For best results, put code like\n\t// \n\t// in your main HTML document.\n\n\tvar rng_state;\n\tvar rng_pool;\n\tvar rng_pptr;\n\n\t// Mix in a 32-bit integer into the pool\n\tfunction rng_seed_int(x) {\n\t rng_pool[rng_pptr++] ^= x & 255;\n\t rng_pool[rng_pptr++] ^= (x >> 8) & 255;\n\t rng_pool[rng_pptr++] ^= (x >> 16) & 255;\n\t rng_pool[rng_pptr++] ^= (x >> 24) & 255;\n\t if(rng_pptr >= rng_psize) rng_pptr -= rng_psize;\n\t}\n\n\t// Mix in the current time (w/milliseconds) into the pool\n\tfunction rng_seed_time() {\n\t rng_seed_int(new Date().getTime());\n\t}\n\n\t// Initialize the pool with junk if needed.\n\tif(rng_pool == null) {\n\t rng_pool = new Array();\n\t rng_pptr = 0;\n\t var t;\n\t if(typeof window !== \"undefined\" && window.crypto) {\n\t\tif (window.crypto.getRandomValues) {\n\t\t // Use webcrypto if available\n\t\t var ua = new Uint8Array(32);\n\t\t window.crypto.getRandomValues(ua);\n\t\t for(t = 0; t < 32; ++t)\n\t\t\trng_pool[rng_pptr++] = ua[t];\n\t\t}\n\t\telse if(navigator.appName == \"Netscape\" && navigator.appVersion < \"5\") {\n\t\t // Extract entropy (256 bits) from NS4 RNG if available\n\t\t var z = window.crypto.random(32);\n\t\t for(t = 0; t < z.length; ++t)\n\t\t\trng_pool[rng_pptr++] = z.charCodeAt(t) & 255;\n\t\t}\n\t }\n\t while(rng_pptr < rng_psize) { // extract some randomness from Math.random()\n\t\tt = Math.floor(65536 * Math.random());\n\t\trng_pool[rng_pptr++] = t >>> 8;\n\t\trng_pool[rng_pptr++] = t & 255;\n\t }\n\t rng_pptr = 0;\n\t rng_seed_time();\n\t //rng_seed_int(window.screenX);\n\t //rng_seed_int(window.screenY);\n\t}\n\n\tfunction rng_get_byte() {\n\t if(rng_state == null) {\n\t\trng_seed_time();\n\t\trng_state = prng_newstate();\n\t\trng_state.init(rng_pool);\n\t\tfor(rng_pptr = 0; rng_pptr < rng_pool.length; ++rng_pptr)\n\t\t rng_pool[rng_pptr] = 0;\n\t\trng_pptr = 0;\n\t\t//rng_pool = null;\n\t }\n\t // TODO: allow reseeding after first request\n\t return rng_state.next();\n\t}\n\n\tfunction rng_get_bytes(ba) {\n\t var i;\n\t for(i = 0; i < ba.length; ++i) ba[i] = rng_get_byte();\n\t}\n\n\tfunction SecureRandom() {}\n\n\tSecureRandom.prototype.nextBytes = rng_get_bytes;\n\n\t// prng4.js - uses Arcfour as a PRNG\n\n\tfunction Arcfour() {\n\t this.i = 0;\n\t this.j = 0;\n\t this.S = new Array();\n\t}\n\n\t// Initialize arcfour context from key, an array of ints, each from [0..255]\n\tfunction ARC4init(key) {\n\t var i, j, t;\n\t for(i = 0; i < 256; ++i)\n\t\tthis.S[i] = i;\n\t j = 0;\n\t for(i = 0; i < 256; ++i) {\n\t\tj = (j + this.S[i] + key[i % key.length]) & 255;\n\t\tt = this.S[i];\n\t\tthis.S[i] = this.S[j];\n\t\tthis.S[j] = t;\n\t }\n\t this.i = 0;\n\t this.j = 0;\n\t}\n\n\tfunction ARC4next() {\n\t var t;\n\t this.i = (this.i + 1) & 255;\n\t this.j = (this.j + this.S[this.i]) & 255;\n\t t = this.S[this.i];\n\t this.S[this.i] = this.S[this.j];\n\t this.S[this.j] = t;\n\t return this.S[(t + this.S[this.i]) & 255];\n\t}\n\n\tArcfour.prototype.init = ARC4init;\n\tArcfour.prototype.next = ARC4next;\n\n\t// Plug in your RNG constructor here\n\tfunction prng_newstate() {\n\t return new Arcfour();\n\t}\n\n\t// Pool size must be a multiple of 4 and greater than 32.\n\t// An array of bytes the size of the pool will be passed to init()\n\tvar rng_psize = 256;\n\n BigInteger.SecureRandom = SecureRandom;\n BigInteger.BigInteger = BigInteger;\n if (true) {\n exports = module.exports = BigInteger;\n } else {\n this.BigInteger = BigInteger;\n this.SecureRandom = SecureRandom;\n }\n\n}).call(this);\n\n\n/***/ }),\n/* 171 */\n/***/ (function(module, exports) {\n\nmodule.exports = {\n\t\"2.16.840.1.101.3.4.1.1\": \"aes-128-ecb\",\n\t\"2.16.840.1.101.3.4.1.2\": \"aes-128-cbc\",\n\t\"2.16.840.1.101.3.4.1.3\": \"aes-128-ofb\",\n\t\"2.16.840.1.101.3.4.1.4\": \"aes-128-cfb\",\n\t\"2.16.840.1.101.3.4.1.21\": \"aes-192-ecb\",\n\t\"2.16.840.1.101.3.4.1.22\": \"aes-192-cbc\",\n\t\"2.16.840.1.101.3.4.1.23\": \"aes-192-ofb\",\n\t\"2.16.840.1.101.3.4.1.24\": \"aes-192-cfb\",\n\t\"2.16.840.1.101.3.4.1.41\": \"aes-256-ecb\",\n\t\"2.16.840.1.101.3.4.1.42\": \"aes-256-cbc\",\n\t\"2.16.840.1.101.3.4.1.43\": \"aes-256-ofb\",\n\t\"2.16.840.1.101.3.4.1.44\": \"aes-256-cfb\"\n};\n\n/***/ }),\n/* 172 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n// from https://github.com/indutny/self-signed/blob/gh-pages/lib/asn1.js\n// Fedor, you are amazing.\n\n\nvar asn1 = __webpack_require__(16)\n\nexports.certificate = __webpack_require__(173)\n\nvar RSAPrivateKey = asn1.define('RSAPrivateKey', function () {\n this.seq().obj(\n this.key('version').int(),\n this.key('modulus').int(),\n this.key('publicExponent').int(),\n this.key('privateExponent').int(),\n this.key('prime1').int(),\n this.key('prime2').int(),\n this.key('exponent1').int(),\n this.key('exponent2').int(),\n this.key('coefficient').int()\n )\n})\nexports.RSAPrivateKey = RSAPrivateKey\n\nvar RSAPublicKey = asn1.define('RSAPublicKey', function () {\n this.seq().obj(\n this.key('modulus').int(),\n this.key('publicExponent').int()\n )\n})\nexports.RSAPublicKey = RSAPublicKey\n\nvar PublicKey = asn1.define('SubjectPublicKeyInfo', function () {\n this.seq().obj(\n this.key('algorithm').use(AlgorithmIdentifier),\n this.key('subjectPublicKey').bitstr()\n )\n})\nexports.PublicKey = PublicKey\n\nvar AlgorithmIdentifier = asn1.define('AlgorithmIdentifier', function () {\n this.seq().obj(\n this.key('algorithm').objid(),\n this.key('none').null_().optional(),\n this.key('curve').objid().optional(),\n this.key('params').seq().obj(\n this.key('p').int(),\n this.key('q').int(),\n this.key('g').int()\n ).optional()\n )\n})\n\nvar PrivateKeyInfo = asn1.define('PrivateKeyInfo', function () {\n this.seq().obj(\n this.key('version').int(),\n this.key('algorithm').use(AlgorithmIdentifier),\n this.key('subjectPrivateKey').octstr()\n )\n})\nexports.PrivateKey = PrivateKeyInfo\nvar EncryptedPrivateKeyInfo = asn1.define('EncryptedPrivateKeyInfo', function () {\n this.seq().obj(\n this.key('algorithm').seq().obj(\n this.key('id').objid(),\n this.key('decrypt').seq().obj(\n this.key('kde').seq().obj(\n this.key('id').objid(),\n this.key('kdeparams').seq().obj(\n this.key('salt').octstr(),\n this.key('iters').int()\n )\n ),\n this.key('cipher').seq().obj(\n this.key('algo').objid(),\n this.key('iv').octstr()\n )\n )\n ),\n this.key('subjectPrivateKey').octstr()\n )\n})\n\nexports.EncryptedPrivateKey = EncryptedPrivateKeyInfo\n\nvar DSAPrivateKey = asn1.define('DSAPrivateKey', function () {\n this.seq().obj(\n this.key('version').int(),\n this.key('p').int(),\n this.key('q').int(),\n this.key('g').int(),\n this.key('pub_key').int(),\n this.key('priv_key').int()\n )\n})\nexports.DSAPrivateKey = DSAPrivateKey\n\nexports.DSAparam = asn1.define('DSAparam', function () {\n this.int()\n})\n\nvar ECPrivateKey = asn1.define('ECPrivateKey', function () {\n this.seq().obj(\n this.key('version').int(),\n this.key('privateKey').octstr(),\n this.key('parameters').optional().explicit(0).use(ECParameters),\n this.key('publicKey').optional().explicit(1).bitstr()\n )\n})\nexports.ECPrivateKey = ECPrivateKey\n\nvar ECParameters = asn1.define('ECParameters', function () {\n this.choice({\n namedCurve: this.objid()\n })\n})\n\nexports.signature = asn1.define('signature', function () {\n this.seq().obj(\n this.key('r').int(),\n this.key('s').int()\n )\n})\n\n\n/***/ }),\n/* 173 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n// from https://github.com/Rantanen/node-dtls/blob/25a7dc861bda38cfeac93a723500eea4f0ac2e86/Certificate.js\n// thanks to @Rantanen\n\n\n\nvar asn = __webpack_require__(16)\n\nvar Time = asn.define('Time', function () {\n this.choice({\n utcTime: this.utctime(),\n generalTime: this.gentime()\n })\n})\n\nvar AttributeTypeValue = asn.define('AttributeTypeValue', function () {\n this.seq().obj(\n this.key('type').objid(),\n this.key('value').any()\n )\n})\n\nvar AlgorithmIdentifier = asn.define('AlgorithmIdentifier', function () {\n this.seq().obj(\n this.key('algorithm').objid(),\n this.key('parameters').optional()\n )\n})\n\nvar SubjectPublicKeyInfo = asn.define('SubjectPublicKeyInfo', function () {\n this.seq().obj(\n this.key('algorithm').use(AlgorithmIdentifier),\n this.key('subjectPublicKey').bitstr()\n )\n})\n\nvar RelativeDistinguishedName = asn.define('RelativeDistinguishedName', function () {\n this.setof(AttributeTypeValue)\n})\n\nvar RDNSequence = asn.define('RDNSequence', function () {\n this.seqof(RelativeDistinguishedName)\n})\n\nvar Name = asn.define('Name', function () {\n this.choice({\n rdnSequence: this.use(RDNSequence)\n })\n})\n\nvar Validity = asn.define('Validity', function () {\n this.seq().obj(\n this.key('notBefore').use(Time),\n this.key('notAfter').use(Time)\n )\n})\n\nvar Extension = asn.define('Extension', function () {\n this.seq().obj(\n this.key('extnID').objid(),\n this.key('critical').bool().def(false),\n this.key('extnValue').octstr()\n )\n})\n\nvar TBSCertificate = asn.define('TBSCertificate', function () {\n this.seq().obj(\n this.key('version').explicit(0).int(),\n this.key('serialNumber').int(),\n this.key('signature').use(AlgorithmIdentifier),\n this.key('issuer').use(Name),\n this.key('validity').use(Validity),\n this.key('subject').use(Name),\n this.key('subjectPublicKeyInfo').use(SubjectPublicKeyInfo),\n this.key('issuerUniqueID').implicit(1).bitstr().optional(),\n this.key('subjectUniqueID').implicit(2).bitstr().optional(),\n this.key('extensions').explicit(3).seqof(Extension).optional()\n )\n})\n\nvar X509Certificate = asn.define('X509Certificate', function () {\n this.seq().obj(\n this.key('tbsCertificate').use(TBSCertificate),\n this.key('signatureAlgorithm').use(AlgorithmIdentifier),\n this.key('signatureValue').bitstr()\n )\n})\n\nmodule.exports = X509Certificate\n\n\n/***/ }),\n/* 174 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {// adapted from https://github.com/apatil/pemstrip\nvar findProc = /Proc-Type: 4,ENCRYPTED\\n\\r?DEK-Info: AES-((?:128)|(?:192)|(?:256))-CBC,([0-9A-H]+)\\n\\r?\\n\\r?([0-9A-z\\n\\r\\+\\/\\=]+)\\n\\r?/m\nvar startRegex = /^-----BEGIN ((?:.* KEY)|CERTIFICATE)-----\\n/m\nvar fullRegex = /^-----BEGIN ((?:.* KEY)|CERTIFICATE)-----\\n\\r?([0-9A-z\\n\\r\\+\\/\\=]+)\\n\\r?-----END \\1-----$/m\nvar evp = __webpack_require__(27)\nvar ciphers = __webpack_require__(34)\nmodule.exports = function (okey, password) {\n var key = okey.toString()\n var match = key.match(findProc)\n var decrypted\n if (!match) {\n var match2 = key.match(fullRegex)\n decrypted = new Buffer(match2[2].replace(/\\r?\\n/g, ''), 'base64')\n } else {\n var suite = 'aes' + match[1]\n var iv = new Buffer(match[2], 'hex')\n var cipherText = new Buffer(match[3].replace(/\\r?\\n/g, ''), 'base64')\n var cipherKey = evp(password, iv.slice(0, 8), parseInt(match[1], 10)).key\n var out = []\n var cipher = ciphers.createDecipheriv(suite, cipherKey, iv)\n out.push(cipher.update(cipherText))\n out.push(cipher.final())\n decrypted = Buffer.concat(out)\n }\n var tag = key.match(startRegex)[1]\n return {\n tag: tag,\n data: decrypted\n }\n}\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 175 */\n/***/ (function(module, exports) {\n\nvar MAX_ALLOC = Math.pow(2, 30) - 1 // default in iojs\nmodule.exports = function (iterations, keylen) {\n if (typeof iterations !== 'number') {\n throw new TypeError('Iterations not a number')\n }\n\n if (iterations < 0) {\n throw new TypeError('Bad iterations')\n }\n\n if (typeof keylen !== 'number') {\n throw new TypeError('Key length not a number')\n }\n\n if (keylen < 0 || keylen > MAX_ALLOC || keylen !== keylen) { /* eslint no-self-compare: 0 */\n throw new TypeError('Bad key length')\n }\n}\n\n\n/***/ }),\n/* 176 */\n/***/ (function(module, exports, __webpack_require__) {\n\nexports.publicEncrypt = __webpack_require__(178);\nexports.privateDecrypt = __webpack_require__(177);\n\nexports.privateEncrypt = function privateEncrypt(key, buf) {\n return exports.publicEncrypt(key, buf, true);\n};\n\nexports.publicDecrypt = function publicDecrypt(key, buf) {\n return exports.privateDecrypt(key, buf, true);\n};\n\n/***/ }),\n/* 177 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var parseKeys = __webpack_require__(28);\nvar mgf = __webpack_require__(76);\nvar xor = __webpack_require__(78);\nvar bn = __webpack_require__(2);\nvar crt = __webpack_require__(35);\nvar createHash = __webpack_require__(13);\nvar withPublic = __webpack_require__(77);\nmodule.exports = function privateDecrypt(private_key, enc, reverse) {\n var padding;\n if (private_key.padding) {\n padding = private_key.padding;\n } else if (reverse) {\n padding = 1;\n } else {\n padding = 4;\n }\n \n var key = parseKeys(private_key);\n var k = key.modulus.byteLength();\n if (enc.length > k || new bn(enc).cmp(key.modulus) >= 0) {\n throw new Error('decryption error');\n }\n var msg;\n if (reverse) {\n msg = withPublic(new bn(enc), key);\n } else {\n msg = crt(enc, key);\n }\n var zBuffer = new Buffer(k - msg.length);\n zBuffer.fill(0);\n msg = Buffer.concat([zBuffer, msg], k);\n if (padding === 4) {\n return oaep(key, msg);\n } else if (padding === 1) {\n return pkcs1(key, msg, reverse);\n } else if (padding === 3) {\n return msg;\n } else {\n throw new Error('unknown padding');\n }\n};\n\nfunction oaep(key, msg){\n var n = key.modulus;\n var k = key.modulus.byteLength();\n var mLen = msg.length;\n var iHash = createHash('sha1').update(new Buffer('')).digest();\n var hLen = iHash.length;\n var hLen2 = 2 * hLen;\n if (msg[0] !== 0) {\n throw new Error('decryption error');\n }\n var maskedSeed = msg.slice(1, hLen + 1);\n var maskedDb = msg.slice(hLen + 1);\n var seed = xor(maskedSeed, mgf(maskedDb, hLen));\n var db = xor(maskedDb, mgf(seed, k - hLen - 1));\n if (compare(iHash, db.slice(0, hLen))) {\n throw new Error('decryption error');\n }\n var i = hLen;\n while (db[i] === 0) {\n i++;\n }\n if (db[i++] !== 1) {\n throw new Error('decryption error');\n }\n return db.slice(i);\n}\n\nfunction pkcs1(key, msg, reverse){\n var p1 = msg.slice(0, 2);\n var i = 2;\n var status = 0;\n while (msg[i++] !== 0) {\n if (i >= msg.length) {\n status++;\n break;\n }\n }\n var ps = msg.slice(2, i - 1);\n var p2 = msg.slice(i - 1, i);\n\n if ((p1.toString('hex') !== '0002' && !reverse) || (p1.toString('hex') !== '0001' && reverse)){\n status++;\n }\n if (ps.length < 8) {\n status++;\n }\n if (status) {\n throw new Error('decryption error');\n }\n return msg.slice(i);\n}\nfunction compare(a, b){\n a = new Buffer(a);\n b = new Buffer(b);\n var dif = 0;\n var len = a.length;\n if (a.length !== b.length) {\n dif++;\n len = Math.min(a.length, b.length);\n }\n var i = -1;\n while (++i < len) {\n dif += (a[i] ^ b[i]);\n }\n return dif;\n}\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 178 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {var parseKeys = __webpack_require__(28);\nvar randomBytes = __webpack_require__(21);\nvar createHash = __webpack_require__(13);\nvar mgf = __webpack_require__(76);\nvar xor = __webpack_require__(78);\nvar bn = __webpack_require__(2);\nvar withPublic = __webpack_require__(77);\nvar crt = __webpack_require__(35);\n\nvar constants = {\n RSA_PKCS1_OAEP_PADDING: 4,\n RSA_PKCS1_PADDIN: 1,\n RSA_NO_PADDING: 3\n};\n\nmodule.exports = function publicEncrypt(public_key, msg, reverse) {\n var padding;\n if (public_key.padding) {\n padding = public_key.padding;\n } else if (reverse) {\n padding = 1;\n } else {\n padding = 4;\n }\n var key = parseKeys(public_key);\n var paddedMsg;\n if (padding === 4) {\n paddedMsg = oaep(key, msg);\n } else if (padding === 1) {\n paddedMsg = pkcs1(key, msg, reverse);\n } else if (padding === 3) {\n paddedMsg = new bn(msg);\n if (paddedMsg.cmp(key.modulus) >= 0) {\n throw new Error('data too long for modulus');\n }\n } else {\n throw new Error('unknown padding');\n }\n if (reverse) {\n return crt(paddedMsg, key);\n } else {\n return withPublic(paddedMsg, key);\n }\n};\n\nfunction oaep(key, msg){\n var k = key.modulus.byteLength();\n var mLen = msg.length;\n var iHash = createHash('sha1').update(new Buffer('')).digest();\n var hLen = iHash.length;\n var hLen2 = 2 * hLen;\n if (mLen > k - hLen2 - 2) {\n throw new Error('message too long');\n }\n var ps = new Buffer(k - mLen - hLen2 - 2);\n ps.fill(0);\n var dblen = k - hLen - 1;\n var seed = randomBytes(hLen);\n var maskedDb = xor(Buffer.concat([iHash, ps, new Buffer([1]), msg], dblen), mgf(seed, dblen));\n var maskedSeed = xor(seed, mgf(maskedDb, hLen));\n return new bn(Buffer.concat([new Buffer([0]), maskedSeed, maskedDb], k));\n}\nfunction pkcs1(key, msg, reverse){\n var mLen = msg.length;\n var k = key.modulus.byteLength();\n if (mLen > k - 11) {\n throw new Error('message too long');\n }\n var ps;\n if (reverse) {\n ps = new Buffer(k - mLen - 3);\n ps.fill(0xff);\n } else {\n ps = nonZero(k - mLen - 3);\n }\n return new bn(Buffer.concat([new Buffer([0, reverse?1:2]), ps, new Buffer([0]), msg], k));\n}\nfunction nonZero(len, crypto) {\n var out = new Buffer(len);\n var i = 0;\n var cache = randomBytes(len*2);\n var cur = 0;\n var num;\n while (i < len) {\n if (cur === cache.length) {\n cache = randomBytes(len*2);\n cur = 0;\n }\n num = cache[cur++];\n if (num) {\n out[i++] = num;\n }\n }\n return out;\n}\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 179 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar utils = __webpack_require__(80);\n\nvar has = Object.prototype.hasOwnProperty;\n\nvar defaults = {\n allowDots: false,\n allowPrototypes: false,\n arrayLimit: 20,\n decoder: utils.decode,\n delimiter: '&',\n depth: 5,\n parameterLimit: 1000,\n plainObjects: false,\n strictNullHandling: false\n};\n\nvar parseValues = function parseQueryStringValues(str, options) {\n var obj = {};\n var cleanStr = options.ignoreQueryPrefix ? str.replace(/^\\?/, '') : str;\n var limit = options.parameterLimit === Infinity ? undefined : options.parameterLimit;\n var parts = cleanStr.split(options.delimiter, limit);\n\n for (var i = 0; i < parts.length; ++i) {\n var part = parts[i];\n\n var bracketEqualsPos = part.indexOf(']=');\n var pos = bracketEqualsPos === -1 ? part.indexOf('=') : bracketEqualsPos + 1;\n\n var key, val;\n if (pos === -1) {\n key = options.decoder(part, defaults.decoder);\n val = options.strictNullHandling ? null : '';\n } else {\n key = options.decoder(part.slice(0, pos), defaults.decoder);\n val = options.decoder(part.slice(pos + 1), defaults.decoder);\n }\n if (has.call(obj, key)) {\n obj[key] = [].concat(obj[key]).concat(val);\n } else {\n obj[key] = val;\n }\n }\n\n return obj;\n};\n\nvar parseObject = function (chain, val, options) {\n var leaf = val;\n\n for (var i = chain.length - 1; i >= 0; --i) {\n var obj;\n var root = chain[i];\n\n if (root === '[]') {\n obj = [];\n obj = obj.concat(leaf);\n } else {\n obj = options.plainObjects ? Object.create(null) : {};\n var cleanRoot = root.charAt(0) === '[' && root.charAt(root.length - 1) === ']' ? root.slice(1, -1) : root;\n var index = parseInt(cleanRoot, 10);\n if (\n !isNaN(index)\n && root !== cleanRoot\n && String(index) === cleanRoot\n && index >= 0\n && (options.parseArrays && index <= options.arrayLimit)\n ) {\n obj = [];\n obj[index] = leaf;\n } else {\n obj[cleanRoot] = leaf;\n }\n }\n\n leaf = obj;\n }\n\n return leaf;\n};\n\nvar parseKeys = function parseQueryStringKeys(givenKey, val, options) {\n if (!givenKey) {\n return;\n }\n\n // Transform dot notation to bracket notation\n var key = options.allowDots ? givenKey.replace(/\\.([^.[]+)/g, '[$1]') : givenKey;\n\n // The regex chunks\n\n var brackets = /(\\[[^[\\]]*])/;\n var child = /(\\[[^[\\]]*])/g;\n\n // Get the parent\n\n var segment = brackets.exec(key);\n var parent = segment ? key.slice(0, segment.index) : key;\n\n // Stash the parent if it exists\n\n var keys = [];\n if (parent) {\n // If we aren't using plain objects, optionally prefix keys\n // that would overwrite object prototype properties\n if (!options.plainObjects && has.call(Object.prototype, parent)) {\n if (!options.allowPrototypes) {\n return;\n }\n }\n\n keys.push(parent);\n }\n\n // Loop through children appending to the array until we hit depth\n\n var i = 0;\n while ((segment = child.exec(key)) !== null && i < options.depth) {\n i += 1;\n if (!options.plainObjects && has.call(Object.prototype, segment[1].slice(1, -1))) {\n if (!options.allowPrototypes) {\n return;\n }\n }\n keys.push(segment[1]);\n }\n\n // If there's a remainder, just add whatever is left\n\n if (segment) {\n keys.push('[' + key.slice(segment.index) + ']');\n }\n\n return parseObject(keys, val, options);\n};\n\nmodule.exports = function (str, opts) {\n var options = opts ? utils.assign({}, opts) : {};\n\n if (options.decoder !== null && options.decoder !== undefined && typeof options.decoder !== 'function') {\n throw new TypeError('Decoder has to be a function.');\n }\n\n options.ignoreQueryPrefix = options.ignoreQueryPrefix === true;\n options.delimiter = typeof options.delimiter === 'string' || utils.isRegExp(options.delimiter) ? options.delimiter : defaults.delimiter;\n options.depth = typeof options.depth === 'number' ? options.depth : defaults.depth;\n options.arrayLimit = typeof options.arrayLimit === 'number' ? options.arrayLimit : defaults.arrayLimit;\n options.parseArrays = options.parseArrays !== false;\n options.decoder = typeof options.decoder === 'function' ? options.decoder : defaults.decoder;\n options.allowDots = typeof options.allowDots === 'boolean' ? options.allowDots : defaults.allowDots;\n options.plainObjects = typeof options.plainObjects === 'boolean' ? options.plainObjects : defaults.plainObjects;\n options.allowPrototypes = typeof options.allowPrototypes === 'boolean' ? options.allowPrototypes : defaults.allowPrototypes;\n options.parameterLimit = typeof options.parameterLimit === 'number' ? options.parameterLimit : defaults.parameterLimit;\n options.strictNullHandling = typeof options.strictNullHandling === 'boolean' ? options.strictNullHandling : defaults.strictNullHandling;\n\n if (str === '' || str === null || typeof str === 'undefined') {\n return options.plainObjects ? Object.create(null) : {};\n }\n\n var tempObj = typeof str === 'string' ? parseValues(str, options) : str;\n var obj = options.plainObjects ? Object.create(null) : {};\n\n // Iterate over the keys and setup the new object\n\n var keys = Object.keys(tempObj);\n for (var i = 0; i < keys.length; ++i) {\n var key = keys[i];\n var newObj = parseKeys(key, tempObj[key], options);\n obj = utils.merge(obj, newObj, options);\n }\n\n return utils.compact(obj);\n};\n\n\n/***/ }),\n/* 180 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar utils = __webpack_require__(80);\nvar formats = __webpack_require__(79);\n\nvar arrayPrefixGenerators = {\n brackets: function brackets(prefix) { // eslint-disable-line func-name-matching\n return prefix + '[]';\n },\n indices: function indices(prefix, key) { // eslint-disable-line func-name-matching\n return prefix + '[' + key + ']';\n },\n repeat: function repeat(prefix) { // eslint-disable-line func-name-matching\n return prefix;\n }\n};\n\nvar toISO = Date.prototype.toISOString;\n\nvar defaults = {\n delimiter: '&',\n encode: true,\n encoder: utils.encode,\n encodeValuesOnly: false,\n serializeDate: function serializeDate(date) { // eslint-disable-line func-name-matching\n return toISO.call(date);\n },\n skipNulls: false,\n strictNullHandling: false\n};\n\nvar stringify = function stringify( // eslint-disable-line func-name-matching\n object,\n prefix,\n generateArrayPrefix,\n strictNullHandling,\n skipNulls,\n encoder,\n filter,\n sort,\n allowDots,\n serializeDate,\n formatter,\n encodeValuesOnly\n) {\n var obj = object;\n if (typeof filter === 'function') {\n obj = filter(prefix, obj);\n } else if (obj instanceof Date) {\n obj = serializeDate(obj);\n } else if (obj === null) {\n if (strictNullHandling) {\n return encoder && !encodeValuesOnly ? encoder(prefix, defaults.encoder) : prefix;\n }\n\n obj = '';\n }\n\n if (typeof obj === 'string' || typeof obj === 'number' || typeof obj === 'boolean' || utils.isBuffer(obj)) {\n if (encoder) {\n var keyValue = encodeValuesOnly ? prefix : encoder(prefix, defaults.encoder);\n return [formatter(keyValue) + '=' + formatter(encoder(obj, defaults.encoder))];\n }\n return [formatter(prefix) + '=' + formatter(String(obj))];\n }\n\n var values = [];\n\n if (typeof obj === 'undefined') {\n return values;\n }\n\n var objKeys;\n if (Array.isArray(filter)) {\n objKeys = filter;\n } else {\n var keys = Object.keys(obj);\n objKeys = sort ? keys.sort(sort) : keys;\n }\n\n for (var i = 0; i < objKeys.length; ++i) {\n var key = objKeys[i];\n\n if (skipNulls && obj[key] === null) {\n continue;\n }\n\n if (Array.isArray(obj)) {\n values = values.concat(stringify(\n obj[key],\n generateArrayPrefix(prefix, key),\n generateArrayPrefix,\n strictNullHandling,\n skipNulls,\n encoder,\n filter,\n sort,\n allowDots,\n serializeDate,\n formatter,\n encodeValuesOnly\n ));\n } else {\n values = values.concat(stringify(\n obj[key],\n prefix + (allowDots ? '.' + key : '[' + key + ']'),\n generateArrayPrefix,\n strictNullHandling,\n skipNulls,\n encoder,\n filter,\n sort,\n allowDots,\n serializeDate,\n formatter,\n encodeValuesOnly\n ));\n }\n }\n\n return values;\n};\n\nmodule.exports = function (object, opts) {\n var obj = object;\n var options = opts ? utils.assign({}, opts) : {};\n\n if (options.encoder !== null && options.encoder !== undefined && typeof options.encoder !== 'function') {\n throw new TypeError('Encoder has to be a function.');\n }\n\n var delimiter = typeof options.delimiter === 'undefined' ? defaults.delimiter : options.delimiter;\n var strictNullHandling = typeof options.strictNullHandling === 'boolean' ? options.strictNullHandling : defaults.strictNullHandling;\n var skipNulls = typeof options.skipNulls === 'boolean' ? options.skipNulls : defaults.skipNulls;\n var encode = typeof options.encode === 'boolean' ? options.encode : defaults.encode;\n var encoder = typeof options.encoder === 'function' ? options.encoder : defaults.encoder;\n var sort = typeof options.sort === 'function' ? options.sort : null;\n var allowDots = typeof options.allowDots === 'undefined' ? false : options.allowDots;\n var serializeDate = typeof options.serializeDate === 'function' ? options.serializeDate : defaults.serializeDate;\n var encodeValuesOnly = typeof options.encodeValuesOnly === 'boolean' ? options.encodeValuesOnly : defaults.encodeValuesOnly;\n if (typeof options.format === 'undefined') {\n options.format = formats['default'];\n } else if (!Object.prototype.hasOwnProperty.call(formats.formatters, options.format)) {\n throw new TypeError('Unknown format option provided.');\n }\n var formatter = formats.formatters[options.format];\n var objKeys;\n var filter;\n\n if (typeof options.filter === 'function') {\n filter = options.filter;\n obj = filter('', obj);\n } else if (Array.isArray(options.filter)) {\n filter = options.filter;\n objKeys = filter;\n }\n\n var keys = [];\n\n if (typeof obj !== 'object' || obj === null) {\n return '';\n }\n\n var arrayFormat;\n if (options.arrayFormat in arrayPrefixGenerators) {\n arrayFormat = options.arrayFormat;\n } else if ('indices' in options) {\n arrayFormat = options.indices ? 'indices' : 'repeat';\n } else {\n arrayFormat = 'indices';\n }\n\n var generateArrayPrefix = arrayPrefixGenerators[arrayFormat];\n\n if (!objKeys) {\n objKeys = Object.keys(obj);\n }\n\n if (sort) {\n objKeys.sort(sort);\n }\n\n for (var i = 0; i < objKeys.length; ++i) {\n var key = objKeys[i];\n\n if (skipNulls && obj[key] === null) {\n continue;\n }\n\n keys = keys.concat(stringify(\n obj[key],\n key,\n generateArrayPrefix,\n strictNullHandling,\n skipNulls,\n encode ? encoder : null,\n filter,\n sort,\n allowDots,\n serializeDate,\n formatter,\n encodeValuesOnly\n ));\n }\n\n var joined = keys.join(delimiter);\n var prefix = options.addQueryPrefix === true ? '?' : '';\n\n return joined.length > 0 ? prefix + joined : '';\n};\n\n\n/***/ }),\n/* 181 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar has = Object.prototype.hasOwnProperty;\n\n/**\n * Simple query string parser.\n *\n * @param {String} query The query string that needs to be parsed.\n * @returns {Object}\n * @api public\n */\nfunction querystring(query) {\n var parser = /([^=?&]+)=?([^&]*)/g\n , result = {}\n , part;\n\n //\n // Little nifty parsing hack, leverage the fact that RegExp.exec increments\n // the lastIndex property so we can continue executing this loop until we've\n // parsed all results.\n //\n for (;\n part = parser.exec(query);\n result[decodeURIComponent(part[1])] = decodeURIComponent(part[2])\n );\n\n return result;\n}\n\n/**\n * Transform a query string to an object.\n *\n * @param {Object} obj Object that should be transformed.\n * @param {String} prefix Optional prefix.\n * @returns {String}\n * @api public\n */\nfunction querystringify(obj, prefix) {\n prefix = prefix || '';\n\n var pairs = [];\n\n //\n // Optionally prefix with a '?' if needed\n //\n if ('string' !== typeof prefix) prefix = '?';\n\n for (var key in obj) {\n if (has.call(obj, key)) {\n pairs.push(encodeURIComponent(key) +'='+ encodeURIComponent(obj[key]));\n }\n }\n\n return pairs.length ? prefix + pairs.join('&') : '';\n}\n\n//\n// Expose the module.\n//\nexports.stringify = querystringify;\nexports.parse = querystring;\n\n\n/***/ }),\n/* 182 */\n/***/ (function(module, exports, __webpack_require__) {\n\nmodule.exports = __webpack_require__(9);\n\n\n/***/ }),\n/* 183 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n// a passthrough stream.\n// basically just the most minimal sort of Transform stream.\n// Every written chunk gets output as-is.\n\n\n\nmodule.exports = PassThrough;\n\nvar Transform = __webpack_require__(82);\n\n/**/\nvar util = __webpack_require__(20);\nutil.inherits = __webpack_require__(1);\n/**/\n\nutil.inherits(PassThrough, Transform);\n\nfunction PassThrough(options) {\n if (!(this instanceof PassThrough)) return new PassThrough(options);\n\n Transform.call(this, options);\n}\n\nPassThrough.prototype._transform = function (chunk, encoding, cb) {\n cb(null, chunk);\n};\n\n/***/ }),\n/* 184 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\nvar Buffer = __webpack_require__(0).Buffer;\n/**/\nvar bufferShim = __webpack_require__(36);\n/**/\n\nmodule.exports = BufferList;\n\nfunction BufferList() {\n this.head = null;\n this.tail = null;\n this.length = 0;\n}\n\nBufferList.prototype.push = function (v) {\n var entry = { data: v, next: null };\n if (this.length > 0) this.tail.next = entry;else this.head = entry;\n this.tail = entry;\n ++this.length;\n};\n\nBufferList.prototype.unshift = function (v) {\n var entry = { data: v, next: this.head };\n if (this.length === 0) this.tail = entry;\n this.head = entry;\n ++this.length;\n};\n\nBufferList.prototype.shift = function () {\n if (this.length === 0) return;\n var ret = this.head.data;\n if (this.length === 1) this.head = this.tail = null;else this.head = this.head.next;\n --this.length;\n return ret;\n};\n\nBufferList.prototype.clear = function () {\n this.head = this.tail = null;\n this.length = 0;\n};\n\nBufferList.prototype.join = function (s) {\n if (this.length === 0) return '';\n var p = this.head;\n var ret = '' + p.data;\n while (p = p.next) {\n ret += s + p.data;\n }return ret;\n};\n\nBufferList.prototype.concat = function (n) {\n if (this.length === 0) return bufferShim.alloc(0);\n if (this.length === 1) return this.head.data;\n var ret = bufferShim.allocUnsafe(n >>> 0);\n var p = this.head;\n var i = 0;\n while (p) {\n p.data.copy(ret, i);\n i += p.data.length;\n p = p.next;\n }\n return ret;\n};\n\n/***/ }),\n/* 185 */\n/***/ (function(module, exports, __webpack_require__) {\n\nmodule.exports = __webpack_require__(43).PassThrough\n\n\n/***/ }),\n/* 186 */\n/***/ (function(module, exports, __webpack_require__) {\n\nmodule.exports = __webpack_require__(43).Transform\n\n\n/***/ }),\n/* 187 */\n/***/ (function(module, exports, __webpack_require__) {\n\nmodule.exports = __webpack_require__(42);\n\n\n/***/ }),\n/* 188 */\n/***/ (function(module, exports, __webpack_require__) {\n\n\"use strict\";\n\n\n/**\n * Check if we're required to add a port number.\n *\n * @see https://url.spec.whatwg.org/#default-port\n * @param {Number|String} port Port number we need to check\n * @param {String} protocol Protocol we need to check against.\n * @returns {Boolean} Is it a default port for the given protocol\n * @api private\n */\nmodule.exports = function required(port, protocol) {\n protocol = protocol.split(':')[0];\n port = +port;\n\n if (!port) return false;\n\n switch (protocol) {\n case 'http':\n case 'ws':\n return port !== 80;\n\n case 'https':\n case 'wss':\n return port !== 443;\n\n case 'ftp':\n return port !== 21;\n\n case 'gopher':\n return port !== 70;\n\n case 'file':\n return false;\n }\n\n return port !== 0;\n};\n\n\n/***/ }),\n/* 189 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(Buffer) {/*\nCryptoJS v3.1.2\ncode.google.com/p/crypto-js\n(c) 2009-2013 by Jeff Mott. All rights reserved.\ncode.google.com/p/crypto-js/wiki/License\n*/\n/** @preserve\n(c) 2012 by Cédric Mesnil. All rights reserved.\n\nRedistribution and use in source and binary forms, with or without modification, are permitted provided that the following conditions are met:\n\n - Redistributions of source code must retain the above copyright notice, this list of conditions and the following disclaimer.\n - Redistributions in binary form must reproduce the above copyright notice, this list of conditions and the following disclaimer in the documentation and/or other materials provided with the distribution.\n\nTHIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS \"AS IS\" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT HOLDER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.\n*/\n\n// constants table\nvar zl = [\n 0, 1, 2, 3, 4, 5, 6, 7, 8, 9, 10, 11, 12, 13, 14, 15,\n 7, 4, 13, 1, 10, 6, 15, 3, 12, 0, 9, 5, 2, 14, 11, 8,\n 3, 10, 14, 4, 9, 15, 8, 1, 2, 7, 0, 6, 13, 11, 5, 12,\n 1, 9, 11, 10, 0, 8, 12, 4, 13, 3, 7, 15, 14, 5, 6, 2,\n 4, 0, 5, 9, 7, 12, 2, 10, 14, 1, 3, 8, 11, 6, 15, 13\n]\n\nvar zr = [\n 5, 14, 7, 0, 9, 2, 11, 4, 13, 6, 15, 8, 1, 10, 3, 12,\n 6, 11, 3, 7, 0, 13, 5, 10, 14, 15, 8, 12, 4, 9, 1, 2,\n 15, 5, 1, 3, 7, 14, 6, 9, 11, 8, 12, 2, 10, 0, 4, 13,\n 8, 6, 4, 1, 3, 11, 15, 0, 5, 12, 2, 13, 9, 7, 10, 14,\n 12, 15, 10, 4, 1, 5, 8, 7, 6, 2, 13, 14, 0, 3, 9, 11\n]\n\nvar sl = [\n 11, 14, 15, 12, 5, 8, 7, 9, 11, 13, 14, 15, 6, 7, 9, 8,\n 7, 6, 8, 13, 11, 9, 7, 15, 7, 12, 15, 9, 11, 7, 13, 12,\n 11, 13, 6, 7, 14, 9, 13, 15, 14, 8, 13, 6, 5, 12, 7, 5,\n 11, 12, 14, 15, 14, 15, 9, 8, 9, 14, 5, 6, 8, 6, 5, 12,\n 9, 15, 5, 11, 6, 8, 13, 12, 5, 12, 13, 14, 11, 8, 5, 6\n]\n\nvar sr = [\n 8, 9, 9, 11, 13, 15, 15, 5, 7, 7, 8, 11, 14, 14, 12, 6,\n 9, 13, 15, 7, 12, 8, 9, 11, 7, 7, 12, 7, 6, 15, 13, 11,\n 9, 7, 15, 11, 8, 6, 6, 14, 12, 13, 5, 14, 13, 13, 7, 5,\n 15, 5, 8, 11, 14, 14, 6, 14, 6, 9, 12, 9, 12, 5, 15, 8,\n 8, 5, 12, 9, 12, 5, 14, 6, 8, 13, 6, 5, 15, 13, 11, 11\n]\n\nvar hl = [0x00000000, 0x5A827999, 0x6ED9EBA1, 0x8F1BBCDC, 0xA953FD4E]\nvar hr = [0x50A28BE6, 0x5C4DD124, 0x6D703EF3, 0x7A6D76E9, 0x00000000]\n\nfunction bytesToWords (bytes) {\n var words = []\n for (var i = 0, b = 0; i < bytes.length; i++, b += 8) {\n words[b >>> 5] |= bytes[i] << (24 - b % 32)\n }\n return words\n}\n\nfunction wordsToBytes (words) {\n var bytes = []\n for (var b = 0; b < words.length * 32; b += 8) {\n bytes.push((words[b >>> 5] >>> (24 - b % 32)) & 0xFF)\n }\n return bytes\n}\n\nfunction processBlock (H, M, offset) {\n // swap endian\n for (var i = 0; i < 16; i++) {\n var offset_i = offset + i\n var M_offset_i = M[offset_i]\n\n // Swap\n M[offset_i] = (\n (((M_offset_i << 8) | (M_offset_i >>> 24)) & 0x00ff00ff) |\n (((M_offset_i << 24) | (M_offset_i >>> 8)) & 0xff00ff00)\n )\n }\n\n // Working variables\n var al, bl, cl, dl, el\n var ar, br, cr, dr, er\n\n ar = al = H[0]\n br = bl = H[1]\n cr = cl = H[2]\n dr = dl = H[3]\n er = el = H[4]\n\n // computation\n var t\n for (i = 0; i < 80; i += 1) {\n t = (al + M[offset + zl[i]]) | 0\n if (i < 16) {\n t += f1(bl, cl, dl) + hl[0]\n } else if (i < 32) {\n t += f2(bl, cl, dl) + hl[1]\n } else if (i < 48) {\n t += f3(bl, cl, dl) + hl[2]\n } else if (i < 64) {\n t += f4(bl, cl, dl) + hl[3]\n } else {// if (i<80) {\n t += f5(bl, cl, dl) + hl[4]\n }\n t = t | 0\n t = rotl(t, sl[i])\n t = (t + el) | 0\n al = el\n el = dl\n dl = rotl(cl, 10)\n cl = bl\n bl = t\n\n t = (ar + M[offset + zr[i]]) | 0\n if (i < 16) {\n t += f5(br, cr, dr) + hr[0]\n } else if (i < 32) {\n t += f4(br, cr, dr) + hr[1]\n } else if (i < 48) {\n t += f3(br, cr, dr) + hr[2]\n } else if (i < 64) {\n t += f2(br, cr, dr) + hr[3]\n } else {// if (i<80) {\n t += f1(br, cr, dr) + hr[4]\n }\n\n t = t | 0\n t = rotl(t, sr[i])\n t = (t + er) | 0\n ar = er\n er = dr\n dr = rotl(cr, 10)\n cr = br\n br = t\n }\n\n // intermediate hash value\n t = (H[1] + cl + dr) | 0\n H[1] = (H[2] + dl + er) | 0\n H[2] = (H[3] + el + ar) | 0\n H[3] = (H[4] + al + br) | 0\n H[4] = (H[0] + bl + cr) | 0\n H[0] = t\n}\n\nfunction f1 (x, y, z) {\n return ((x) ^ (y) ^ (z))\n}\n\nfunction f2 (x, y, z) {\n return (((x) & (y)) | ((~x) & (z)))\n}\n\nfunction f3 (x, y, z) {\n return (((x) | (~(y))) ^ (z))\n}\n\nfunction f4 (x, y, z) {\n return (((x) & (z)) | ((y) & (~(z))))\n}\n\nfunction f5 (x, y, z) {\n return ((x) ^ ((y) | (~(z))))\n}\n\nfunction rotl (x, n) {\n return (x << n) | (x >>> (32 - n))\n}\n\nfunction ripemd160 (message) {\n var H = [0x67452301, 0xEFCDAB89, 0x98BADCFE, 0x10325476, 0xC3D2E1F0]\n\n if (typeof message === 'string') {\n message = new Buffer(message, 'utf8')\n }\n\n var m = bytesToWords(message)\n\n var nBitsLeft = message.length * 8\n var nBitsTotal = message.length * 8\n\n // Add padding\n m[nBitsLeft >>> 5] |= 0x80 << (24 - nBitsLeft % 32)\n m[(((nBitsLeft + 64) >>> 9) << 4) + 14] = (\n (((nBitsTotal << 8) | (nBitsTotal >>> 24)) & 0x00ff00ff) |\n (((nBitsTotal << 24) | (nBitsTotal >>> 8)) & 0xff00ff00)\n )\n\n for (var i = 0; i < m.length; i += 16) {\n processBlock(H, m, i)\n }\n\n // swap endian\n for (i = 0; i < 5; i++) {\n // shortcut\n var H_i = H[i]\n\n // Swap\n H[i] = (((H_i << 8) | (H_i >>> 24)) & 0x00ff00ff) |\n (((H_i << 24) | (H_i >>> 8)) & 0xff00ff00)\n }\n\n var digestbytes = wordsToBytes(H)\n return new Buffer(digestbytes)\n}\n\nmodule.exports = ripemd160\n\n/* WEBPACK VAR INJECTION */}.call(exports, __webpack_require__(0).Buffer))\n\n/***/ }),\n/* 190 */\n/***/ (function(module, exports, __webpack_require__) {\n\n/* WEBPACK VAR INJECTION */(function(global, process) {(function (global, undefined) {\n \"use strict\";\n\n if (global.setImmediate) {\n return;\n }\n\n var nextHandle = 1; // Spec says greater than zero\n var tasksByHandle = {};\n var currentlyRunningATask = false;\n var doc = global.document;\n var registerImmediate;\n\n function setImmediate(callback) {\n // Callback can either be a function or a string\n if (typeof callback !== \"function\") {\n callback = new Function(\"\" + callback);\n }\n // Copy function arguments\n var args = new Array(arguments.length - 1);\n for (var i = 0; i < args.length; i++) {\n args[i] = arguments[i + 1];\n }\n // Store and register the task\n var task = { callback: callback, args: args };\n tasksByHandle[nextHandle] = task;\n registerImmediate(nextHandle);\n return nextHandle++;\n }\n\n function clearImmediate(handle) {\n delete tasksByHandle[handle];\n }\n\n function run(task) {\n var callback = task.callback;\n var args = task.args;\n switch (args.length) {\n case 0:\n callback();\n break;\n case 1:\n callback(args[0]);\n break;\n case 2:\n callback(args[0], args[1]);\n break;\n case 3:\n callback(args[0], args[1], args[2]);\n break;\n default:\n callback.apply(undefined, args);\n break;\n }\n }\n\n function runIfPresent(handle) {\n // From the spec: \"Wait until any invocations of this algorithm started before this one have completed.\"\n // So if we're currently running a task, we'll need to delay this invocation.\n if (currentlyRunningATask) {\n // Delay by doing a setTimeout. setImmediate was tried instead, but in Firefox 7 it generated a\n // \"too much recursion\" error.\n setTimeout(runIfPresent, 0, handle);\n } else {\n var task = tasksByHandle[handle];\n if (task) {\n currentlyRunningATask = true;\n try {\n run(task);\n } finally {\n clearImmediate(handle);\n currentlyRunningATask = false;\n }\n }\n }\n }\n\n function installNextTickImplementation() {\n registerImmediate = function(handle) {\n process.nextTick(function () { runIfPresent(handle); });\n };\n }\n\n function canUsePostMessage() {\n // The test against `importScripts` prevents this implementation from being installed inside a web worker,\n // where `global.postMessage` means something completely different and can't be used for this purpose.\n if (global.postMessage && !global.importScripts) {\n var postMessageIsAsynchronous = true;\n var oldOnMessage = global.onmessage;\n global.onmessage = function() {\n postMessageIsAsynchronous = false;\n };\n global.postMessage(\"\", \"*\");\n global.onmessage = oldOnMessage;\n return postMessageIsAsynchronous;\n }\n }\n\n function installPostMessageImplementation() {\n // Installs an event handler on `global` for the `message` event: see\n // * https://developer.mozilla.org/en/DOM/window.postMessage\n // * http://www.whatwg.org/specs/web-apps/current-work/multipage/comms.html#crossDocumentMessages\n\n var messagePrefix = \"setImmediate$\" + Math.random() + \"$\";\n var onGlobalMessage = function(event) {\n if (event.source === global &&\n typeof event.data === \"string\" &&\n event.data.indexOf(messagePrefix) === 0) {\n runIfPresent(+event.data.slice(messagePrefix.length));\n }\n };\n\n if (global.addEventListener) {\n global.addEventListener(\"message\", onGlobalMessage, false);\n } else {\n global.attachEvent(\"onmessage\", onGlobalMessage);\n }\n\n registerImmediate = function(handle) {\n global.postMessage(messagePrefix + handle, \"*\");\n };\n }\n\n function installMessageChannelImplementation() {\n var channel = new MessageChannel();\n channel.port1.onmessage = function(event) {\n var handle = event.data;\n runIfPresent(handle);\n };\n\n registerImmediate = function(handle) {\n channel.port2.postMessage(handle);\n };\n }\n\n function installReadyStateChangeImplementation() {\n var html = doc.documentElement;\n registerImmediate = function(handle) {\n // Create a