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vars.tcl
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# de1 internal state live variables
package provide de1_vars 1.2
package require lambda
package require de1_device_scale 1.0
package require de1_event 1.0
package require de1_logging 1.0
package require de1_profile 2.0
package require de1_shot 2.0
#############################
# raw data from the DE1
proc clear_espresso_chart {} {
espresso_elapsed length 0
espresso_pressure length 0
espresso_weight length 0
espresso_weight_chartable length 0
espresso_flow length 0
espresso_flow_weight length 0
espresso_flow_weight_raw length 0
espresso_flow_weight_2x length 0
espresso_water_dispensed length 0
espresso_flow_2x length 0
espresso_resistance length 0
espresso_resistance_weight length 0
espresso_pressure_delta length 0
espresso_flow_delta length 0
espresso_flow_delta_negative length 0
espresso_flow_delta_negative_2x length 0
espresso_temperature_mix length 0
espresso_temperature_basket length 0
espresso_state_change length 0
espresso_pressure_goal length 0
espresso_flow_goal length 0
espresso_flow_goal_2x length 0
espresso_temperature_goal length 0
espresso_de1_explanation_chart_elapsed length 0
espresso_de1_explanation_chart_elapsed_1 length 0
espresso_de1_explanation_chart_elapsed_2 length 0
espresso_de1_explanation_chart_elapsed_3 length 0
espresso_de1_explanation_chart_elapsed_flow length 0
espresso_de1_explanation_chart_elapsed_flow_1 length 0
espresso_de1_explanation_chart_elapsed_flow_2 length 0
espresso_de1_explanation_chart_elapsed_flow_3 length 0
espresso_elapsed append 0
espresso_pressure append 0
#god_espresso_pressure append 0
espresso_weight append 0
espresso_weight_chartable append 0
espresso_flow append 0
espresso_flow_weight append 0
espresso_flow_weight_2x append 0
espresso_flow_weight_raw append 0
espresso_water_dispensed append 0
espresso_flow_2x append 0
espresso_resistance append 0
espresso_resistance_weight append 0
espresso_pressure_delta append 0
espresso_flow_delta append 0
espresso_flow_delta_negative append 0
espresso_flow_delta_negative_2x append 0
espresso_temperature_mix append [return_temperature_number $::settings(espresso_temperature)]
espresso_temperature_basket append [return_temperature_number $::settings(espresso_temperature)]
espresso_state_change append 0
espresso_pressure_goal append -1
espresso_flow_goal append -1
espresso_flow_goal_2x append -1
espresso_temperature_goal append [return_temperature_number $::settings(espresso_temperature)]
god_shot_reference_reset
catch {
# update the Y axis on the temperature chart, each time that we make an espresso, in case the goal temperature changed
#update_temperature_charts_y_axis
}
}
proc espresso_chart_structures {} {
return [list espresso_elapsed espresso_pressure espresso_weight espresso_weight_chartable espresso_flow espresso_flow_weight espresso_flow_weight_raw espresso_water_dispensed espresso_flow_weight_2x espresso_flow_2x espresso_resistance espresso_resistance_weight espresso_pressure_delta espresso_flow_delta espresso_flow_delta_negative espresso_flow_delta_negative_2x espresso_temperature_mix espresso_temperature_basket espresso_state_change espresso_pressure_goal espresso_flow_goal espresso_flow_goal_2x espresso_temperature_goal espresso_de1_explanation_chart_flow espresso_de1_explanation_chart_elapsed_flow espresso_de1_explanation_chart_flow_2x espresso_de1_explanation_chart_flow_1_2x espresso_de1_explanation_chart_flow_2_2x espresso_de1_explanation_chart_flow_3_2x espresso_de1_explanation_chart_pressure espresso_de1_explanation_chart_temperature espresso_de1_explanation_chart_temperature_10 espresso_de1_explanation_chart_pressure_1 espresso_de1_explanation_chart_pressure_2 espresso_de1_explanation_chart_pressure_3 espresso_de1_explanation_chart_elapsed_flow espresso_de1_explanation_chart_elapsed_flow_1 espresso_de1_explanation_chart_elapsed_flow_2 espresso_de1_explanation_chart_elapsed_flow_3 espresso_de1_explanation_chart_elapsed espresso_de1_explanation_chart_elapsed_1 espresso_de1_explanation_chart_elapsed_2 espresso_de1_explanation_chart_elapsed_3]
}
proc backup_espresso_chart {} {
unset -nocomplain ::chartbk
foreach s [espresso_chart_structures] {
if {[$s length] > 0} {
set ::chartbk($s) [$s range 0 end]
} else {
set ::chartbk($s) {}
}
}
}
proc restore_espresso_chart {} {
foreach s [espresso_chart_structures] {
$s length 0
if {[info exists ::chartbk($s)] == 1} {
$s append $::chartbk($s)
}
}
}
proc god_shot_reference_reset {} {
############################################################################################################
# god shot reference
god_espresso_pressure length 0
god_espresso_temperature_basket length 0
god_espresso_flow length 0
god_espresso_flow_weight length 0
god_espresso_flow_2x length 0
god_espresso_flow_weight_2x length 0
if {[info exists ::settings(god_espresso_elapsed)] == 1} {
espresso_elapsed length 0
espresso_elapsed append $::settings(god_espresso_elapsed)
}
god_espresso_pressure append $::settings(god_espresso_pressure)
god_espresso_temperature_basket append $::settings(god_espresso_temperature_basket)
if {$::settings(god_espresso_flow) != {} } {
god_espresso_flow append $::settings(god_espresso_flow)
# in zoomed flow/pressure mode we chart flow/weight at 2x the normal Y axis, so we need to populate those vectors by hand
foreach flow $::settings(god_espresso_flow) {
god_espresso_flow_2x append [expr {2.0 * $flow}]
}
}
if {$::settings(god_espresso_flow_weight) != {} } {
god_espresso_flow_weight append $::settings(god_espresso_flow_weight)
foreach flow_weight $::settings(god_espresso_flow_weight) {
god_espresso_flow_weight_2x append [expr {2.0 * $flow_weight}]
}
}
############################################################################################################
}
proc espresso_frame_title {num} {
if {$num == 1} {
return "1) Ramp up pressure to 8.4 bar over 12 seconds"
} elseif {$num == 2} {
return "2) Hold pressure at 8.4 bars for 10 seconds"
} elseif {$num == 3} {
return "3) Maintain 1.2 mL/s flow rate for 30 seconds"
} elseif {$num == 4} {
return ""
} elseif {$num == 5} {
return ""
} elseif {$num == 6} {
return ""
}
}
proc espresso_frame_description {num} {
if {$num == 1} {
return "Gently go to 8.4 bar of pressure with a water mix temperature of 92\u00B0C. Go to the next step after 10 seconds. temperature of 92\u00B0C. Gently go to 8.4 bar of pressure with a water mix temperature of 92\u00B0C."
} elseif {$num == 2} {
return "Quickly go to 8.4 bar of pressure with a basket temperature of 90\u00B0C. Go to the next step after 10 seconds."
} elseif {$num == 3} {
return "Automatically manage pressure to attain a flow rate of 1.2 mL/s at a water temperature of 88\u00B0C. End this step after 30 seconds."
} elseif {$num == 4} {
return ""
} elseif {$num == 5} {
return ""
} elseif {$num == 6} {
return ""
}
}
proc set_alarms_for_de1_wake_sleep {} {
# first clear existing timers
if {[info exists ::alarms_for_de1_wake] == 1} {
after cancel $::alarms_for_de1_wake
unset ::alarms_for_de1_wake
}
if {[info exists ::alarms_for_de1_sleep] == 1} {
after cancel $::alarms_for_de1_sleep
unset ::alarms_for_de1_sleep
}
# if the timers are active, then find the next alarm time and set an alarm to wake in that many milliseconds from now
if {$::settings(scheduler_enable) == 1} {
set wake_seconds [expr {[next_alarm_time $::settings(scheduler_wake)] - [clock seconds]}]
set ::alarms_for_de1_wake [after [expr {1000 * $wake_seconds}] scheduler_wake]
# scheduled sleep is now an enforced awake time and this function should not be called
# set sleep_seconds [expr {[next_alarm_time $::settings(scheduler_sleep)] - [clock seconds]}]
# set ::alarms_for_de1_sleep [after [expr {1000 * $sleep_seconds}] scheduler_sleep]
}
}
proc scheduler_wake {} {
msg -NOTICE "Scheduled wake occured at [clock format [clock seconds]]"
start_schedIdle
# after alarm has occured go ahead and set the alarm for tommorrow
after 2000 set_alarms_for_de1_wake_sleep
}
proc scheduler_sleep {} {
msg -ERROR "OBSOLETE: scheduled sleep is now an enforced awake time and this function should not be called"
msg -NOTICE "Scheduled sleep occured at [clock format [clock seconds]]"
start_sleep
# after alarm has occured go ahead and set the alarm for tommorrow
after 2000 set_alarms_for_de1_wake_sleep
}
proc current_alarm_time { in } {
set alarm [expr {[round_date_to_nearest_day [clock seconds]] + round($in)}]
return $alarm
}
proc next_alarm_time { in } {
set alarm [expr {[round_date_to_nearest_day [clock seconds]] + round($in)}]
if {$alarm < [clock seconds] } {
# if the alarm time has passed, set it for tomorrow
#set alarm [expr {$alarm + 86400} ]
set alarm [clock add $alarm 1 day]
}
return $alarm
}
proc time_format {seconds {crlf 0} {include_day 0} } {
if {$seconds == ""} {
# no time passed
return ""
}
set crlftxt " "
if {$crlf == 1} {
set crlftxt \n
}
if {$include_day == 0} {
# john decided to no longer include the day on the alarm, as it's more info that is needed for an alarm clock
if {$::settings(enable_ampm) == 1} {
return [subst {[string trim [clock format $seconds -format {%l:%M %p}]]}]
} else {
return [subst {[string trim [clock format $seconds -format {%H:%M}]]}]
}
} else {
if {$::settings(enable_ampm) == 1} {
return [subst {[translate [clock format $seconds -format {%A}]]$crlftxt[string trim [clock format $seconds -format {%l:%M %p}]]}]
} else {
return [subst {[translate [clock format $seconds -format {%A}]]$crlftxt[string trim [clock format $seconds -format {%H:%M}]]}]
}
}
}
proc stripzeros {value} {
set retval [string trimleft $value 0]
if { ![string length $retval] } {
return 0
}
return $retval
}
proc format_alarm_time { in } {
return [time_format [next_alarm_time $in]]
}
proc start_timer_espresso_preinfusion {} {
set ::timers(espresso_preinfusion_start) [clock milliseconds]
}
proc stop_timer_espresso_preinfusion {} {
set ::timers(espresso_preinfusion_stop) [clock milliseconds]
}
proc start_timer_espresso_pour {} {
set ::timers(espresso_pour_start) [clock milliseconds]
}
proc start_timer_water_pour {} {
set ::timers(water_pour_stop) 0
set ::timers(water_pour_start) [clock milliseconds]
}
proc start_timer_steam_pour {} {
set ::timers(steam_pour_stop) 0
set ::timers(steam_pour_start) [clock milliseconds]
}
proc start_timer_flush_pour {} {
set ::timers(flush_pour_stop) 0
set ::timers(flush_pour_start) [clock milliseconds]
}
proc stop_timer_espresso_pour {} {
set ::timers(espresso_pour_stop) [clock milliseconds]
}
proc stop_timer_water_pour {} {
msg -DEBUG "stop_timer_water_pour"
set ::timers(water_pour_stop) [clock milliseconds]
}
proc stop_timer_steam_pour {} {
msg -DEBUG "stop_timer_steam_pour"
set ::timers(steam_pour_stop) [clock milliseconds]
}
proc stop_timer_flush_pour {} {
msg -DEBUG "stop_timer_flush_pour"
set ::timers(flush_pour_stop) [clock milliseconds]
}
proc stop_espresso_timers {} {
if {$::timer_running != 1} {
return
}
set ::timer_running 0
set ::timers(espresso_stop) [clock milliseconds]
}
proc start_espresso_timers {} {
clear_espresso_timers
set ::timer_running 1
set ::timers(espresso_start) [clock milliseconds]
}
proc clear_espresso_timers {} {
unset -nocomplain ::timers
set ::timers(espresso_start) 0
set ::timers(espresso_stop) 0
unset -nocomplain ::substate_timers
set ::substate_timers(espresso_start) 0
set ::substate_timers(espresso_stop) 0
set ::timers(espresso_preinfusion_start) 0
set ::timers(espresso_preinfusion_stop) 0
set ::timers(espresso_pour_start) 0
set ::timers(espresso_pour_stop) 0
set ::timer_running 0
}
clear_espresso_timers
#stop_timers
# amount of time that we've been on this page
#set ::timer [clock seconds]
proc espresso_timer {} {
#global start_timer
#if {$::timer_running == 1} {
# set ::timer [clock seconds]
#}
#return $timer
return [expr {([clock milliseconds] - $::timers(espresso_start) )/1000}]
}
proc espresso_millitimer {{time_reference 0}} {
# Accept seconds or ms, always returns ms; 10000000000 is Sat Nov 20 09:46:40 PST 2286
if { $time_reference == 0 } {
set time_reference [clock milliseconds]
} elseif { $time_reference < 10000000000 } {
set time_reference [expr { $time_reference * 1000. }]
}
return [expr { $time_reference - $::timers(espresso_start) }]
}
proc espresso_elapsed_timer {} {
if {$::timers(espresso_start) == 0} {
return 0
} elseif {$::timers(espresso_stop) == 0} {
# no stop, so show current elapsed time
return [expr {([clock milliseconds] - $::timers(espresso_start))/1000}]
} else {
# stop occured, so show that.
return [expr {($::timers(espresso_stop) - $::timers(espresso_start))/1000}]
}
}
proc espresso_preinfusion_timer {} {
if {$::timers(espresso_preinfusion_start) == 0} {
return 0
} elseif {$::timers(espresso_preinfusion_stop) == 0} {
# no stop, so show current elapsed time
return [expr {([clock milliseconds] - $::timers(espresso_preinfusion_start))/1000}]
} else {
# stop occured, so show that.
return [expr {($::timers(espresso_preinfusion_stop) - $::timers(espresso_preinfusion_start))/1000}]
}
}
proc espresso_pour_timer {} {
if {[info exists ::timers(espresso_pour_start)] != 1} {
return 0
}
if {$::timers(espresso_pour_start) == 0} {
return 0
} elseif {$::timers(espresso_pour_stop) == 0} {
# no stop, so show current elapsed time
return [expr {([clock milliseconds] - $::timers(espresso_pour_start))/1000}]
} else {
# stop occured, so show that.
return [expr {($::timers(espresso_pour_stop) - $::timers(espresso_pour_start))/1000}]
}
}
proc water_pour_timer {} {
if {[info exists ::timers(water_pour_start)] != 1} {
return 0
}
if {$::timers(water_pour_start) == 0} {
return 0
} elseif {$::timers(water_pour_stop) == 0} {
# no stop, so show current elapsed time
return [expr {([clock milliseconds] - $::timers(water_pour_start))/1000}]
} else {
# stop occured, so show that.
return [expr {($::timers(water_pour_stop) - $::timers(water_pour_start))/1000}]
}
}
proc steam_pour_timer {} {
if {[info exists ::timers(steam_pour_start)] != 1} {
return 0
}
if {$::timers(steam_pour_start) == 0} {
return 0
} elseif {$::timers(steam_pour_stop) == 0} {
# no stop, so show current elapsed time
return [expr {([clock milliseconds] - $::timers(steam_pour_start))/1000}]
} else {
# stop occured, so show that.
return [expr {($::timers(steam_pour_stop) - $::timers(steam_pour_start))/1000}]
}
}
proc steam_pour_millitimer {{time_reference 0}} {
# Accept seconds or ms, always returns ms; 10000000000 is Sat Nov 20 09:46:40 PST 2286
if { $time_reference == 0 } {
set time_reference [clock milliseconds]
} elseif { $time_reference < 10000000000 } {
set time_reference [expr { $time_reference * 1000. }]
}
if {[info exists ::timers(steam_pour_start)] != 1} {
return 0
}
if {$::timers(steam_pour_start) == 0} {
return 0
} elseif {$::timers(steam_pour_stop) == 0} {
# no stop, so show current elapsed time
return [expr {$time_reference - $::timers(steam_pour_start)}]
} else {
# stop occured, so show that.
return [expr {$::timers(steam_pour_stop) - $::timers(steam_pour_start)}]
}
}
proc flush_pour_timer {} {
set t ""
set c 0
if {[info exists ::timers(flush_pour_start)] != 1} {
set t "-0"
set c 1
} elseif {$::timers(flush_pour_start) == 0} {
set t "-1"
set c 2
} elseif {$::timers(flush_pour_stop) == 0} {
# no stop, so show current elapsed time
set t [expr {([clock milliseconds] - $::timers(flush_pour_start))/1000}]
set c 3
} else {
# stop occured, so show that.
set t [expr {($::timers(flush_pour_stop) - $::timers(flush_pour_start))/1000}]
set c 4
}
return $t
}
proc done_timer {} {
if {$::timers(stop) == 0} {
return 0
} else {
# no stop, so show current elapsed time
return [expr {([clock milliseconds] - $::timers(stop))/1000}]
}
}
proc espresso_done_timer {} {
if {[info exists ::timers(espresso_stop)] != 1} {
return 0
}
if {$::timers(espresso_stop) == 0} {
return 0
} else {
# no stop, so show current elapsed time
return [expr {([clock milliseconds] - $::timers(espresso_stop))/1000}]
}
}
proc water_done_timer {} {
if {[info exists ::timers(water_pour_stop)] != 1} {
return 0
}
if {$::timers(water_pour_stop) == 0} {
return 0
} else {
# no stop, so show current elapsed time
return [expr {([clock milliseconds] - $::timers(water_pour_stop))/1000}]
}
}
proc steam_done_timer {} {
if {[info exists ::timers(steam_pour_stop)] != 1} {
return 0
}
if {$::timers(steam_pour_stop) == 0} {
return 0
} else {
# no stop, so show current elapsed time
return [expr {([clock milliseconds] - $::timers(steam_pour_stop))/1000}]
}
}
proc flush_done_timer {} {
if {[info exists ::timers(flush_pour_stop)] != 1} {
return 0
}
if {$::timers(flush_pour_stop) == 0} {
return 0
} else {
# no stop, so show current elapsed time
return [expr {([clock milliseconds] - $::timers(flush_pour_stop))/1000}]
}
}
proc waterflow {} {
if {$::de1(substate) != $::de1_substate_types_reversed(pouring) && $::de1(substate) != $::de1_substate_types_reversed(preinfusion)} {
return 0
}
if {$::android == 0} {
if {[ifexists ::de1(flow)] == ""} {
set ::de1(flow) 3
}
if {$::de1(flow) > 5} {
set ::de1(flow) 4.5
}
if {$::de1(flow) < 1} {
set ::de1(flow) 1.5
}
set ::de1(flow) [expr {(.1 * (rand() - 0.5)) + $::de1(flow)}]
if {$::de1_num_state($::de1(state)) == "Espresso"} {
if {[espresso_millitimer] < 5000} {
set ::de1(preinfusion_volume) [expr {$::de1(preinfusion_volume) + ($::de1(flow) * .1) }]
} else {
set ::de1(pour_volume) [expr {$::de1(pour_volume) + ($::de1(flow) * .1) }]
}
}
#set ::de1(flow) [expr {rand() + $::de1(flow) - 0.5}]
}
return $::de1(flow)
}
set start_timer [clock seconds]
set start_millitimer [clock milliseconds]
proc watervolume {} {
if {$::de1(substate) != $::de1_substate_types_reversed(pouring) && $::de1(substate) != $::de1_substate_types_reversed(preinfusion)} {
return 0
}
if {$::android == 1} {
return $::de1(volume)
}
global start_timer
return [expr {[clock seconds] - $start_timer}]
}
proc steamtemp {} {
if {$::android == 0} {
set ::de1(steam_heater_temperature) [expr {(160+(rand() * 5))}]
}
return $::de1(steam_heater_temperature)
}
proc watertemp {} {
if {$::android == 0} {
#set ::de1(head_temperature) [expr {$::settings(espresso_temperature) - 2.0 + (rand() * 4)}]
set ::de1(goal_temperature) $::settings(espresso_temperature)
if {[ifexists ::de1(head_temperature)] == ""} {
set ::de1(head_temperature) $::de1(goal_temperature)
}
if {$::de1(head_temperature) < 80} {
set ::de1(head_temperature) $::de1(goal_temperature)
}
if {$::de1(head_temperature) > 95} {
set ::de1(head_temperature) $::de1(goal_temperature)
}
#set ::de1(head_temperature) [expr {rand() + $::de1(head_temperature) - 0.5}]
set ::de1(head_temperature) [expr {(.2 * (rand() - 0.6)) + $::de1(head_temperature)}]
#set ::de1(head_temperature) 90
}
return $::de1(head_temperature)
}
proc pressure {} {
if {$::de1(substate) != $::de1_substate_types_reversed(pouring) && $::de1(substate) != $::de1_substate_types_reversed(preinfusion)} {
return 0
}
if {$::android == 0} {
if {$::de1(state) == 4} {
#espresso
if {[ifexists ::de1(pressure)] == ""} {
set ::de1(pressure) 5
}
if {$::de1(pressure) > 10} {
set ::de1(pressure) 9
}
if {$::de1(pressure) < 1} {
set ::de1(pressure) 5
}
set ::de1(pressure) [expr {(.5 * (rand() - 0.5)) + $::de1(pressure)}]
} elseif {$::de1(state) == 5} {
#steam
if {[ifexists ::de1(pressure)] == ""} {
set ::de1(pressure) 2
}
if {$::de1(pressure) > 3} {
set ::de1(pressure) 2
}
if {$::de1(pressure) < .2} {
set ::de1(pressure) 2
}
set ::de1(pressure) [expr {(.2 * (rand() - 0.5)) + $::de1(pressure)}]
}
}
return $::de1(pressure)
#if {$::android == 1} {
#}
#return [expr {(rand() * 3.5)}]
}
proc accelerometer_angle {} {
if {$::android == 0} {
set ::settings(accelerometer_angle) [expr {(rand() + $::settings(accelerometer_angle)) - 0.5}]
}
return [round_to_one_digits [expr {abs($::settings(accelerometer_angle))}]]
}
set since_last_acc [clock milliseconds]
set last_acc_count 0
proc accelerometer_angle_text {} {
global accelerometer_read_count
global since_last_acc
global last_acc_count
set rate 0
set delta 0
catch {
set delta [expr {$accelerometer_read_count - $last_acc_count}]
set rate [expr {1000* ([clock milliseconds] - $since_last_acc}]
}
set since_last_acc [clock milliseconds]
set last_acc_count $accelerometer_read_count
return "$::settings(accelerometer_angle)\u00B0 ($accelerometer_read_count) $rate events/second $delta events $rate"
}
proc group_head_heater_temperature {} {
if {$::android == 0} {
# slowly have the water level drift
set ::de1(water_level) [expr {$::de1(water_level) + (.1*(rand() - 0.5))}]
}
return $::de1(head_temperature)
}
proc steam_heater_temperature {} {
if {$::android == 0} {
set ::de1(mix_temperature) [expr {140 + (rand() * 20.0)}]
}
return $::de1(steam_heater_temperature)
}
proc water_mix_temperature {} {
if {$::android == 0} {
if {$::de1(substate) == $::de1_substate_types_reversed(pouring) || $::de1(substate) == $::de1_substate_types_reversed(preinfusion)} {
if {$::de1(mix_temperature) == "" || $::de1(mix_temperature) < 85 || $::de1(mix_temperature) > 99} {
set ::de1(mix_temperature) 94
}
set ::de1(mix_temperature) [expr {$::de1(head_temperature) + ((rand() - 0.5) * 2) }]
}
#return [return_flow_weight_measurement [expr {(rand() * 6)}]]
}
return $::de1(mix_temperature)
}
#################
# formatting DE1 numbers into pretty text
proc steam_heater_action_text {} {
set delta [expr {int([steam_heater_temperature] - [setting_steam_temperature])}]
if {$delta < -2} {
return [translate "(Heating):"]
} elseif {$delta > 2} {
return [translate "(Cooling):"]
} else {
return [translate "Ready:"]
}
}
proc group_head_heater_action_text {} {
set delta [expr {int([group_head_heater_temperature] - [setting_espresso_temperature])}]
if {$delta < -5} {
return [translate "Heating:"]
} elseif {$delta > 5} {
return [translate "Cooling:"]
} else {
return [translate "Ready:"]
}
}
proc group_head_heating_text {} {
set delta [expr {int([group_head_heater_temperature] - [setting_espresso_temperature])}]
if {$delta < -5} {
return [translate "(heating)"]
}
}
proc return_seconds_divided_by_ten {in} {
if {$in == ""} {return ""}
set t [expr {$in / 10.0}]
return "[round_to_one_digits $t] [translate "seconds"]"
}
proc timer_text {} {
return [subst {[timer] [translate "seconds"]}]
}
proc return_liquid_measurement {in} {
if {$::de1(language_rtl) == 1} {
return [subst {[translate "mL"] [round_to_integer $in] }]
}
if {$::settings(enable_fluid_ounces) != 1} {
return [subst {[round_to_integer $in] [translate "mL"]}]
} else {
return [subst {[round_to_integer [ml_to_oz $in]] oz}]
}
}
proc return_flow_calibration_measurement {in} {
if {$::de1(language_rtl) == 1} {
return [subst {[translate "mL/s"] [round_to_one_digits [expr {0.1 * $in}]]}]
}
return [subst {[round_to_one_digits [expr {0.1 * $in}]] [translate "mL/s"]}]
}
proc return_flow_measurement {in} {
if {$::de1(language_rtl) == 1} {
return [subst {[translate "mL/s"] [round_to_one_digits $in]}]
}
if {$::settings(enable_fluid_ounces) != 1} {
return [subst {[round_to_one_digits $in] [translate "mL/s"]}]
} else {
return [subst {[round_to_one_digits [ml_to_oz $in]] oz/s}]
}
}
proc return_pressure_measurement {in} {
if {$::de1(language_rtl) == 1} {
return [subst {[translate "bar"] [commify [round_to_one_digits $in]]}]
}
return [subst {[commify [round_to_one_digits $in]] [translate "bar"]}]
}
proc return_flow_weight_measurement {in} {
if {$::de1(language_rtl) == 1} {
return [subst {[translate "g/s"] [round_to_one_digits $in]}]
}
if {$::settings(enable_fluid_ounces) != 1} {
return [subst {[round_to_one_digits $in] [translate "g/s"]}]
} else {
return [subst {[round_to_one_digits [ml_to_oz $in]] oz/s}]
}
}
proc return_weight_measurement {in} {
if {$::de1(language_rtl) == 1} {
return [subst {[translate "g"][round_to_one_digits $in]}]
}
if {$::settings(enable_fluid_ounces) != 1} {
return [subst {[round_to_one_digits $in][translate "g"]}]
} else {
return [subst {[round_to_one_digits [ml_to_oz $in]] oz}]
}
}
proc return_percent {in} {
return [subst {[round_to_one_digits $in]%}]
}
proc return_percent_off_if_zero {in} {
if {$in == 0} {
return [translate "off"]
}
return [subst {[round_to_one_digits $in]%}]
}
proc return_off_if_zero {in} {
if {$in == 0} {
return [translate "off"]
}
return $in
}
proc return_zero_if_blank {in} {
if {$in == ""} {
return 0
}
return $in
}
proc return_stop_at_volume_measurement {in} {
if {$in == 0} {
return [translate "off"]
} else {
return [return_liquid_measurement [round_to_integer $in]]
}
}
proc return_off_or_temperature {in} {
if {$in == 0} {
return [translate "off"]
} else {
return [return_temperature_measurement [round_to_integer $in]]
}
}
proc return_stop_at_weight_measurement {in} {
if {$in == 0 || $in == ""} {
return [translate "off"]
} else {
if {$::de1(language_rtl) == 1} {
return [subst {[translate "g"][round_to_one_digits $in]}]
}
if {$::settings(enable_fluid_ounces) != 1} {
return [subst {[round_to_one_digits $in][translate "g"]}]
} else {
return [subst {[round_to_one_digits [ml_to_oz $in]] oz}]
}
}
}
proc return_stop_at_weight_measurement_precise {in} {
if {$in == 0} {
return [translate "off"]
} else {
if {$::de1(language_rtl) == 1} {
return [subst {[translate "g"][round_to_one_digits $in]}]
}
if {$::settings(enable_fluid_ounces) != 1} {
return [subst {[round_to_one_digits $in][translate "g"]}]
} else {
return [subst {[round_to_half_integer [ml_to_oz $in]] oz}]
}
}
}
proc return_shot_weight_measurement {in} {
if {$in == 0} {
return [translate "off"]
} else {
if {$::de1(language_rtl) == 1} {
return [subst {[translate "g"][round_to_one_digits $in]}]
}
if {$::settings(enable_fluid_ounces) != 1} {
return [subst {[round_to_one_digits $in][translate "g"]}]
} else {
return [subst {[round_to_one_digits [ml_to_oz $in]] oz}]
}
}
}
proc preinfusion_pour_timer_text {} {
if {$::de1(language_rtl) == 1} {
return [subst {[translate "s"][espresso_preinfusion_timer] [translate "preinfusion"] }]
}
return [subst {[espresso_preinfusion_timer][translate "s"] [translate "preinfusion"]}]
}
proc total_pour_timer_text {} {
if {$::de1(language_rtl) == 1} {
return "[translate {s}][espresso_elapsed_timer] [translate {total}] "
}
return "[espresso_elapsed_timer][translate {s}] [translate {total}]"
}
proc espresso_done_timer_text {} {
if {[espresso_done_timer] < $::settings(seconds_to_display_done_espresso)} {
if {$::de1(language_rtl) == 1} {
return "[translate s][espresso_done_timer] [translate done]"
}
return "[espresso_done_timer][translate s] [translate done]"
} else {
return ""
}
}
proc pouring_timer_text {} {
if {$::de1(language_rtl) == 1} {
if {$::settings(final_desired_shot_volume_advanced) > 0 && $::settings(settings_profile_type) == "settings_2c"} {
return "[return_liquid_measurement [round_to_integer $::settings(final_desired_shot_volume_advanced)]] < [translate {pouring}] [translate {s}][espresso_elapsed_timer]"
}
if {$::settings(scale_bluetooth_address) == "" && $::settings(final_desired_shot_volume) > 0 && ($::settings(settings_profile_type) == "settings_2a" || $::settings(settings_profile_type) == "settings_2b")} {
return "[translate {s}][espresso_pour_timer] [translate {pouring}] < [return_liquid_measurement [round_to_integer $::settings(final_desired_shot_volume)]]"
} else {
return "[translate {s}][espresso_pour_timer] [translate {pouring}]"
}