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feat: Add existing parquet files #960

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4 changes: 2 additions & 2 deletions crates/iceberg/src/arrow/reader.rs
Original file line number Diff line number Diff line change
Expand Up @@ -1129,14 +1129,14 @@ impl<'a> BoundPredicateVisitor for PredicateConverter<'a> {
/// - `metadata_size_hint`: Provide a hint as to the size of the parquet file's footer.
/// - `preload_column_index`: Load the Column Index as part of [`Self::get_metadata`].
/// - `preload_offset_index`: Load the Offset Index as part of [`Self::get_metadata`].
struct ArrowFileReader<R: FileRead> {
pub struct ArrowFileReader<R: FileRead> {
meta: FileMetadata,
r: R,
}

impl<R: FileRead> ArrowFileReader<R> {
/// Create a new ArrowFileReader
fn new(meta: FileMetadata, r: R) -> Self {
pub fn new(meta: FileMetadata, r: R) -> Self {
Self { meta, r }
}
}
Expand Down
263 changes: 260 additions & 3 deletions crates/iceberg/src/scan.rs
Original file line number Diff line number Diff line change
Expand Up @@ -1139,14 +1139,14 @@ pub mod tests {
use crate::scan::FileScanTask;
use crate::spec::{
DataContentType, DataFileBuilder, DataFileFormat, Datum, Literal, ManifestEntry,
ManifestListWriter, ManifestStatus, ManifestWriterBuilder, NestedField, PrimitiveType,
Schema, Struct, TableMetadata, Type,
ManifestListWriter, ManifestStatus, ManifestWriterBuilder, NestedField, PartitionSpec,
PrimitiveType, Schema, Struct, StructType, TableMetadata, Type,
};
use crate::table::Table;
use crate::TableIdent;

pub struct TableTestFixture {
table_location: String,
pub table_location: String,
pub table: Table,
}

Expand Down Expand Up @@ -1194,6 +1194,55 @@ pub mod tests {
}
}

pub fn new_unpartitioned() -> Self {
let tmp_dir = TempDir::new().unwrap();
let table_location = tmp_dir.path().join("table1");
let manifest_list1_location = table_location.join("metadata/manifests_list_1.avro");
let manifest_list2_location = table_location.join("metadata/manifests_list_2.avro");
let table_metadata1_location = table_location.join("metadata/v1.json");

let file_io = FileIO::from_path(table_location.to_str().unwrap())
.unwrap()
.build()
.unwrap();

let mut table_metadata = {
let template_json_str = fs::read_to_string(format!(
"{}/testdata/example_table_metadata_v2.json",
env!("CARGO_MANIFEST_DIR")
))
.unwrap();
let mut context = Context::new();
context.insert("table_location", &table_location);
context.insert("manifest_list_1_location", &manifest_list1_location);
context.insert("manifest_list_2_location", &manifest_list2_location);
context.insert("table_metadata_1_location", &table_metadata1_location);

let metadata_json = Tera::one_off(&template_json_str, &context, false).unwrap();
serde_json::from_str::<TableMetadata>(&metadata_json).unwrap()
};

table_metadata.default_spec = Arc::new(PartitionSpec::unpartition_spec());
table_metadata.partition_specs.clear();
table_metadata.default_partition_type = StructType::new(vec![]);
table_metadata
.partition_specs
.insert(0, table_metadata.default_spec.clone());

let table = Table::builder()
.metadata(table_metadata)
.identifier(TableIdent::from_strs(["db", "table1"]).unwrap())
.file_io(file_io.clone())
.metadata_location(table_metadata1_location.to_str().unwrap())
.build()
.unwrap();

Self {
table_location: table_location.to_str().unwrap().to_string(),
table,
}
}

fn next_manifest_file(&self) -> OutputFile {
self.table
.file_io()
Expand Down Expand Up @@ -1413,6 +1462,214 @@ pub mod tests {
writer.close().unwrap();
}
}

pub async fn setup_unpartitioned_manifest_files(&mut self) {
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Seems they are not used?

let current_snapshot = self.table.metadata().current_snapshot().unwrap();
let parent_snapshot = current_snapshot
.parent_snapshot(self.table.metadata())
.unwrap();
let current_schema = current_snapshot.schema(self.table.metadata()).unwrap();
let current_partition_spec = Arc::new(PartitionSpec::unpartition_spec());

// Write data files using an empty partition for unpartitioned tables.
let mut writer = ManifestWriterBuilder::new(
self.next_manifest_file(),
Some(current_snapshot.snapshot_id()),
vec![],
current_schema.clone(),
current_partition_spec.as_ref().clone(),
)
.build_v2_data();

// Create an empty partition value.
let empty_partition = Struct::empty();

writer
.add_entry(
ManifestEntry::builder()
.status(ManifestStatus::Added)
.data_file(
DataFileBuilder::default()
.content(DataContentType::Data)
.file_path(format!("{}/1.parquet", &self.table_location))
.file_format(DataFileFormat::Parquet)
.file_size_in_bytes(100)
.record_count(1)
.partition(empty_partition.clone())
.key_metadata(None)
.build()
.unwrap(),
)
.build(),
)
.unwrap();

writer
.add_delete_entry(
ManifestEntry::builder()
.status(ManifestStatus::Deleted)
.snapshot_id(parent_snapshot.snapshot_id())
.sequence_number(parent_snapshot.sequence_number())
.file_sequence_number(parent_snapshot.sequence_number())
.data_file(
DataFileBuilder::default()
.content(DataContentType::Data)
.file_path(format!("{}/2.parquet", &self.table_location))
.file_format(DataFileFormat::Parquet)
.file_size_in_bytes(100)
.record_count(1)
.partition(empty_partition.clone())
.build()
.unwrap(),
)
.build(),
)
.unwrap();

writer
.add_existing_entry(
ManifestEntry::builder()
.status(ManifestStatus::Existing)
.snapshot_id(parent_snapshot.snapshot_id())
.sequence_number(parent_snapshot.sequence_number())
.file_sequence_number(parent_snapshot.sequence_number())
.data_file(
DataFileBuilder::default()
.content(DataContentType::Data)
.file_path(format!("{}/3.parquet", &self.table_location))
.file_format(DataFileFormat::Parquet)
.file_size_in_bytes(100)
.record_count(1)
.partition(empty_partition.clone())
.build()
.unwrap(),
)
.build(),
)
.unwrap();

let data_file_manifest = writer.write_manifest_file().await.unwrap();

// Write to manifest list
let mut manifest_list_write = ManifestListWriter::v2(
self.table
.file_io()
.new_output(current_snapshot.manifest_list())
.unwrap(),
current_snapshot.snapshot_id(),
current_snapshot.parent_snapshot_id(),
current_snapshot.sequence_number(),
);
manifest_list_write
.add_manifests(vec![data_file_manifest].into_iter())
.unwrap();
manifest_list_write.close().await.unwrap();

// prepare data for parquet files
let schema = {
let fields = vec![
arrow_schema::Field::new("x", arrow_schema::DataType::Int64, false)
.with_metadata(HashMap::from([(
PARQUET_FIELD_ID_META_KEY.to_string(),
"1".to_string(),
)])),
arrow_schema::Field::new("y", arrow_schema::DataType::Int64, false)
.with_metadata(HashMap::from([(
PARQUET_FIELD_ID_META_KEY.to_string(),
"2".to_string(),
)])),
arrow_schema::Field::new("z", arrow_schema::DataType::Int64, false)
.with_metadata(HashMap::from([(
PARQUET_FIELD_ID_META_KEY.to_string(),
"3".to_string(),
)])),
arrow_schema::Field::new("a", arrow_schema::DataType::Utf8, false)
.with_metadata(HashMap::from([(
PARQUET_FIELD_ID_META_KEY.to_string(),
"4".to_string(),
)])),
arrow_schema::Field::new("dbl", arrow_schema::DataType::Float64, false)
.with_metadata(HashMap::from([(
PARQUET_FIELD_ID_META_KEY.to_string(),
"5".to_string(),
)])),
arrow_schema::Field::new("i32", arrow_schema::DataType::Int32, false)
.with_metadata(HashMap::from([(
PARQUET_FIELD_ID_META_KEY.to_string(),
"6".to_string(),
)])),
arrow_schema::Field::new("i64", arrow_schema::DataType::Int64, false)
.with_metadata(HashMap::from([(
PARQUET_FIELD_ID_META_KEY.to_string(),
"7".to_string(),
)])),
arrow_schema::Field::new("bool", arrow_schema::DataType::Boolean, false)
.with_metadata(HashMap::from([(
PARQUET_FIELD_ID_META_KEY.to_string(),
"8".to_string(),
)])),
];
Arc::new(arrow_schema::Schema::new(fields))
};

// Build the arrays for the RecordBatch
let col1 = Arc::new(Int64Array::from_iter_values(vec![1; 1024])) as ArrayRef;

let mut values = vec![2; 512];
values.append(vec![3; 200].as_mut());
values.append(vec![4; 300].as_mut());
values.append(vec![5; 12].as_mut());
let col2 = Arc::new(Int64Array::from_iter_values(values)) as ArrayRef;

let mut values = vec![3; 512];
values.append(vec![4; 512].as_mut());
let col3 = Arc::new(Int64Array::from_iter_values(values)) as ArrayRef;

let mut values = vec!["Apache"; 512];
values.append(vec!["Iceberg"; 512].as_mut());
let col4 = Arc::new(StringArray::from_iter_values(values)) as ArrayRef;

let mut values = vec![100.0f64; 512];
values.append(vec![150.0f64; 12].as_mut());
values.append(vec![200.0f64; 500].as_mut());
let col5 = Arc::new(Float64Array::from_iter_values(values)) as ArrayRef;

let mut values = vec![100i32; 512];
values.append(vec![150i32; 12].as_mut());
values.append(vec![200i32; 500].as_mut());
let col6 = Arc::new(Int32Array::from_iter_values(values)) as ArrayRef;

let mut values = vec![100i64; 512];
values.append(vec![150i64; 12].as_mut());
values.append(vec![200i64; 500].as_mut());
let col7 = Arc::new(Int64Array::from_iter_values(values)) as ArrayRef;

let mut values = vec![false; 512];
values.append(vec![true; 512].as_mut());
let values: BooleanArray = values.into();
let col8 = Arc::new(values) as ArrayRef;

let to_write = RecordBatch::try_new(schema.clone(), vec![
col1, col2, col3, col4, col5, col6, col7, col8,
])
.unwrap();

// Write the Parquet files
let props = WriterProperties::builder()
.set_compression(Compression::SNAPPY)
.build();

for n in 1..=3 {
let file = File::create(format!("{}/{}.parquet", &self.table_location, n)).unwrap();
let mut writer =
ArrowWriter::try_new(file, to_write.schema(), Some(props.clone())).unwrap();

writer.write(&to_write).expect("Writing batch");

// writer must be closed to write footer
writer.close().unwrap();
}
}
}

#[test]
Expand Down
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