1use std::{
18 ops::Range,
19 sync::{Arc, RwLock},
20};
21
22use arrow_array::{
23 Array, ArrayRef, OffsetSizeTrait, UInt64Array,
24 cast::AsArray,
25 new_empty_array, new_null_array,
26 types::{ArrowDictionaryKeyType, UInt8Type, UInt16Type, UInt32Type, UInt64Type},
27};
28use arrow_buffer::{ArrowNativeType, BooleanBuffer, BooleanBufferBuilder, NullBuffer};
29use arrow_data::{ArrayData, ArrayDataBuilder};
30use arrow_schema::DataType;
31use lance_arrow::DataTypeExt;
32
33use lance_core::{Error, Result};
34
35use crate::{
36 buffer::LanceBuffer,
37 statistics::{ComputeStat, Stat},
38};
39
40#[derive(Debug, Clone)]
46pub struct AllNullDataBlock {
47 pub num_values: u64,
49}
50
51impl AllNullDataBlock {
52 fn into_arrow(self, data_type: DataType, _validate: bool) -> Result<ArrayData> {
53 Ok(ArrayData::new_null(&data_type, self.num_values as usize))
54 }
55
56 fn into_buffers(self) -> Vec<LanceBuffer> {
57 vec![]
58 }
59}
60
61use std::collections::HashMap;
62
63#[derive(Debug, Clone)]
66pub struct BlockInfo(pub Arc<RwLock<HashMap<Stat, Arc<dyn Array>>>>);
67
68impl Default for BlockInfo {
69 fn default() -> Self {
70 Self::new()
71 }
72}
73
74impl BlockInfo {
75 pub fn new() -> Self {
76 Self(Arc::new(RwLock::new(HashMap::new())))
77 }
78}
79
80impl PartialEq for BlockInfo {
81 fn eq(&self, other: &Self) -> bool {
82 let self_info = self.0.read().unwrap();
83 let other_info = other.0.read().unwrap();
84 *self_info == *other_info
85 }
86}
87
88#[derive(Debug, Clone)]
94pub struct NullableDataBlock {
95 pub data: Box<DataBlock>,
97 pub nulls: LanceBuffer,
99
100 pub block_info: BlockInfo,
101}
102
103impl NullableDataBlock {
104 fn into_arrow(self, data_type: DataType, validate: bool) -> Result<ArrayData> {
105 let nulls = self.nulls.into_buffer();
106 let data = self.data.into_arrow(data_type, validate)?.into_builder();
107 let data = data.null_bit_buffer(Some(nulls));
108 if validate {
109 Ok(data.build()?)
110 } else {
111 Ok(unsafe { data.build_unchecked() })
112 }
113 }
114
115 fn into_buffers(self) -> Vec<LanceBuffer> {
116 let mut buffers = vec![self.nulls];
117 buffers.extend(self.data.into_buffers());
118 buffers
119 }
120
121 pub fn data_size(&self) -> u64 {
122 self.data.data_size() + self.nulls.len() as u64
123 }
124}
125
126#[derive(Debug, PartialEq, Clone)]
128pub struct ConstantDataBlock {
129 pub data: LanceBuffer,
131 pub num_values: u64,
133}
134
135impl ConstantDataBlock {
136 fn into_buffers(self) -> Vec<LanceBuffer> {
137 vec![self.data]
138 }
139
140 fn into_arrow(self, _data_type: DataType, _validate: bool) -> Result<ArrayData> {
141 todo!()
144 }
145
146 pub fn try_clone(&self) -> Result<Self> {
147 Ok(Self {
148 data: self.data.clone(),
149 num_values: self.num_values,
150 })
151 }
152
153 pub fn data_size(&self) -> u64 {
154 self.data.len() as u64
155 }
156}
157
158#[derive(Debug, PartialEq, Clone)]
160pub struct FixedWidthDataBlock {
161 pub data: LanceBuffer,
163 pub bits_per_value: u64,
165 pub num_values: u64,
167
168 pub block_info: BlockInfo,
169}
170
171impl FixedWidthDataBlock {
172 fn do_into_arrow(
173 self,
174 data_type: DataType,
175 num_values: u64,
176 validate: bool,
177 ) -> Result<ArrayData> {
178 let data_buffer = self.data.into_buffer();
179 let builder = ArrayDataBuilder::new(data_type)
180 .add_buffer(data_buffer)
181 .len(num_values as usize)
182 .null_count(0);
183 if validate {
184 Ok(builder.build()?)
185 } else {
186 Ok(unsafe { builder.build_unchecked() })
187 }
188 }
189
190 pub fn into_arrow(self, data_type: DataType, validate: bool) -> Result<ArrayData> {
191 let root_num_values = self.num_values;
192 self.do_into_arrow(data_type, root_num_values, validate)
193 }
194
195 pub fn into_buffers(self) -> Vec<LanceBuffer> {
196 vec![self.data]
197 }
198
199 pub fn try_clone(&self) -> Result<Self> {
200 Ok(Self {
201 data: self.data.clone(),
202 bits_per_value: self.bits_per_value,
203 num_values: self.num_values,
204 block_info: self.block_info.clone(),
205 })
206 }
207
208 pub fn data_size(&self) -> u64 {
209 self.data.len() as u64
210 }
211}
212
213#[derive(Debug)]
214pub struct VariableWidthDataBlockBuilder<T: OffsetSizeTrait> {
215 offsets: Vec<T>,
216 bytes: Vec<u8>,
217}
218
219impl<T: OffsetSizeTrait> VariableWidthDataBlockBuilder<T> {
220 fn new(estimated_size_bytes: u64) -> Self {
221 Self {
222 offsets: vec![T::from_usize(0).unwrap()],
223 bytes: Vec::with_capacity(estimated_size_bytes as usize),
224 }
225 }
226}
227
228impl<T: OffsetSizeTrait + bytemuck::Pod> DataBlockBuilderImpl for VariableWidthDataBlockBuilder<T> {
229 fn append(&mut self, data_block: &DataBlock, selection: Range<u64>) {
230 let block = data_block.as_variable_width_ref().unwrap();
231 assert!(block.bits_per_offset == T::get_byte_width() as u8 * 8);
232 let offsets = block.offsets.borrow_to_typed_view::<T>();
233
234 let start_offset = offsets[selection.start as usize];
235 let end_offset = offsets[selection.end as usize];
236 let mut previous_len = self.bytes.len();
237
238 self.bytes
239 .extend_from_slice(&block.data[start_offset.as_usize()..end_offset.as_usize()]);
240
241 self.offsets.extend(
242 offsets[selection.start as usize..selection.end as usize]
243 .iter()
244 .zip(&offsets[selection.start as usize + 1..=selection.end as usize])
245 .map(|(¤t, &next)| {
246 let this_value_len = next - current;
247 previous_len += this_value_len.as_usize();
248 T::from_usize(previous_len).unwrap()
249 }),
250 );
251 }
252
253 fn finish(self: Box<Self>) -> DataBlock {
254 let num_values = (self.offsets.len() - 1) as u64;
255 DataBlock::VariableWidth(VariableWidthBlock {
256 data: LanceBuffer::from(self.bytes),
257 offsets: LanceBuffer::reinterpret_vec(self.offsets),
258 bits_per_offset: T::get_byte_width() as u8 * 8,
259 num_values,
260 block_info: BlockInfo::new(),
261 })
262 }
263}
264
265#[derive(Debug)]
266struct BitmapDataBlockBuilder {
267 values: BooleanBufferBuilder,
268}
269
270impl BitmapDataBlockBuilder {
271 fn new(estimated_size_bytes: u64) -> Self {
272 Self {
273 values: BooleanBufferBuilder::new(estimated_size_bytes as usize * 8),
274 }
275 }
276}
277
278impl DataBlockBuilderImpl for BitmapDataBlockBuilder {
279 fn append(&mut self, data_block: &DataBlock, selection: Range<u64>) {
280 let bitmap_blk = data_block.as_fixed_width_ref().unwrap();
281 self.values.append_packed_range(
282 selection.start as usize..selection.end as usize,
283 &bitmap_blk.data,
284 );
285 }
286
287 fn finish(mut self: Box<Self>) -> DataBlock {
288 let bool_buf = self.values.finish();
289 let num_values = bool_buf.len() as u64;
290 let bits_buf = bool_buf.into_inner();
291 DataBlock::FixedWidth(FixedWidthDataBlock {
292 data: LanceBuffer::from(bits_buf),
293 bits_per_value: 1,
294 num_values,
295 block_info: BlockInfo::new(),
296 })
297 }
298}
299
300#[derive(Debug)]
301struct FixedWidthDataBlockBuilder {
302 bits_per_value: u64,
303 bytes_per_value: u64,
304 values: Vec<u8>,
305}
306
307impl FixedWidthDataBlockBuilder {
308 fn new(bits_per_value: u64, estimated_size_bytes: u64) -> Self {
309 assert!(bits_per_value.is_multiple_of(8));
310 Self {
311 bits_per_value,
312 bytes_per_value: bits_per_value / 8,
313 values: Vec::with_capacity(estimated_size_bytes as usize),
314 }
315 }
316}
317
318impl DataBlockBuilderImpl for FixedWidthDataBlockBuilder {
319 fn append(&mut self, data_block: &DataBlock, selection: Range<u64>) {
320 let block = data_block.as_fixed_width_ref().unwrap();
321 assert_eq!(self.bits_per_value, block.bits_per_value);
322 let start = selection.start as usize * self.bytes_per_value as usize;
323 let end = selection.end as usize * self.bytes_per_value as usize;
324 self.values.extend_from_slice(&block.data[start..end]);
325 }
326
327 fn finish(self: Box<Self>) -> DataBlock {
328 let num_values = (self.values.len() / self.bytes_per_value as usize) as u64;
329 DataBlock::FixedWidth(FixedWidthDataBlock {
330 data: LanceBuffer::from(self.values),
331 bits_per_value: self.bits_per_value,
332 num_values,
333 block_info: BlockInfo::new(),
334 })
335 }
336}
337
338#[derive(Debug)]
339struct StructDataBlockBuilder {
340 children: Vec<Box<dyn DataBlockBuilderImpl>>,
341}
342
343impl StructDataBlockBuilder {
344 fn new(children: Vec<Box<dyn DataBlockBuilderImpl>>) -> Self {
345 Self { children }
346 }
347}
348
349impl DataBlockBuilderImpl for StructDataBlockBuilder {
350 fn append(&mut self, data_block: &DataBlock, selection: Range<u64>) {
351 let data_block = data_block.as_struct_ref().unwrap();
352 for i in 0..self.children.len() {
353 self.children[i].append(&data_block.children[i], selection.clone());
354 }
355 }
356
357 fn finish(self: Box<Self>) -> DataBlock {
358 let mut children_data_block = Vec::new();
359 for child in self.children {
360 let child_data_block = child.finish();
361 children_data_block.push(child_data_block);
362 }
363 DataBlock::Struct(StructDataBlock {
364 children: children_data_block,
365 block_info: BlockInfo::new(),
366 validity: None,
367 })
368 }
369}
370
371#[derive(Debug, Default)]
372struct AllNullDataBlockBuilder {
373 num_values: u64,
374}
375
376impl DataBlockBuilderImpl for AllNullDataBlockBuilder {
377 fn append(&mut self, _data_block: &DataBlock, selection: Range<u64>) {
378 self.num_values += selection.end - selection.start;
379 }
380
381 fn finish(self: Box<Self>) -> DataBlock {
382 DataBlock::AllNull(AllNullDataBlock {
383 num_values: self.num_values,
384 })
385 }
386}
387
388#[derive(Debug, Clone)]
390pub struct FixedSizeListBlock {
391 pub child: Box<DataBlock>,
393 pub dimension: u64,
395}
396
397impl FixedSizeListBlock {
398 pub fn num_values(&self) -> u64 {
399 self.child.num_values() / self.dimension
400 }
401
402 pub fn try_into_flat(self) -> Option<FixedWidthDataBlock> {
406 match *self.child {
407 DataBlock::Nullable(_) => None,
409 DataBlock::FixedSizeList(inner) => {
410 let mut flat = inner.try_into_flat()?;
411 flat.bits_per_value *= self.dimension;
412 flat.num_values /= self.dimension;
413 Some(flat)
414 }
415 DataBlock::FixedWidth(mut inner) => {
416 inner.bits_per_value *= self.dimension;
417 inner.num_values /= self.dimension;
418 Some(inner)
419 }
420 _ => panic!(
421 "Expected FixedSizeList or FixedWidth data block but found {:?}",
422 self
423 ),
424 }
425 }
426
427 pub fn flatten_as_fixed(&mut self) -> FixedWidthDataBlock {
428 match self.child.as_mut() {
429 DataBlock::FixedSizeList(fsl) => fsl.flatten_as_fixed(),
430 DataBlock::FixedWidth(fw) => fw.clone(),
431 _ => panic!("Expected FixedSizeList or FixedWidth data block"),
432 }
433 }
434
435 pub fn from_flat(data: FixedWidthDataBlock, data_type: &DataType) -> DataBlock {
437 match data_type {
438 DataType::FixedSizeList(child_field, dimension) => {
439 let mut data = data;
440 data.bits_per_value /= *dimension as u64;
441 data.num_values *= *dimension as u64;
442 let child_data = Self::from_flat(data, child_field.data_type());
443 DataBlock::FixedSizeList(Self {
444 child: Box::new(child_data),
445 dimension: *dimension as u64,
446 })
447 }
448 _ => DataBlock::FixedWidth(data),
450 }
451 }
452
453 fn into_arrow(self, data_type: DataType, validate: bool) -> Result<ArrayData> {
454 let num_values = self.num_values();
455 let builder = match &data_type {
456 DataType::FixedSizeList(child_field, _) => {
457 let child_data = self
458 .child
459 .into_arrow(child_field.data_type().clone(), validate)?;
460 ArrayDataBuilder::new(data_type)
461 .add_child_data(child_data)
462 .len(num_values as usize)
463 .null_count(0)
464 }
465 _ => panic!("Expected FixedSizeList data type and got {:?}", data_type),
466 };
467 if validate {
468 Ok(builder.build()?)
469 } else {
470 Ok(unsafe { builder.build_unchecked() })
471 }
472 }
473
474 fn into_buffers(self) -> Vec<LanceBuffer> {
475 self.child.into_buffers()
476 }
477
478 fn data_size(&self) -> u64 {
479 self.child.data_size()
480 }
481}
482
483#[derive(Debug)]
484struct FixedSizeListBlockBuilder {
485 inner: Box<dyn DataBlockBuilderImpl>,
486 dimension: u64,
487}
488
489impl FixedSizeListBlockBuilder {
490 fn new(inner: Box<dyn DataBlockBuilderImpl>, dimension: u64) -> Self {
491 Self { inner, dimension }
492 }
493}
494
495impl DataBlockBuilderImpl for FixedSizeListBlockBuilder {
496 fn append(&mut self, data_block: &DataBlock, selection: Range<u64>) {
497 let selection = selection.start * self.dimension..selection.end * self.dimension;
498 let fsl = data_block.as_fixed_size_list_ref().unwrap();
499 self.inner.append(fsl.child.as_ref(), selection);
500 }
501
502 fn finish(self: Box<Self>) -> DataBlock {
503 let inner_block = self.inner.finish();
504 DataBlock::FixedSizeList(FixedSizeListBlock {
505 child: Box::new(inner_block),
506 dimension: self.dimension,
507 })
508 }
509}
510
511#[derive(Debug)]
512struct NullableDataBlockBuilder {
513 inner: Box<dyn DataBlockBuilderImpl>,
514 validity: BooleanBufferBuilder,
515}
516
517impl NullableDataBlockBuilder {
518 fn new(inner: Box<dyn DataBlockBuilderImpl>, estimated_size_bytes: usize) -> Self {
519 Self {
520 inner,
521 validity: BooleanBufferBuilder::new(estimated_size_bytes * 8),
522 }
523 }
524}
525
526impl DataBlockBuilderImpl for NullableDataBlockBuilder {
527 fn append(&mut self, data_block: &DataBlock, selection: Range<u64>) {
528 let nullable = data_block.as_nullable_ref().unwrap();
529 let bool_buf = BooleanBuffer::new(
530 nullable.nulls.clone().into_buffer(),
531 selection.start as usize,
532 (selection.end - selection.start) as usize,
533 );
534 self.validity.append_buffer(&bool_buf);
535 self.inner.append(nullable.data.as_ref(), selection);
536 }
537
538 fn finish(mut self: Box<Self>) -> DataBlock {
539 let inner_block = self.inner.finish();
540 DataBlock::Nullable(NullableDataBlock {
541 data: Box::new(inner_block),
542 nulls: LanceBuffer::from(self.validity.finish().into_inner()),
543 block_info: BlockInfo::new(),
544 })
545 }
546}
547
548#[derive(Debug, Clone)]
552pub struct OpaqueBlock {
553 pub buffers: Vec<LanceBuffer>,
554 pub num_values: u64,
555 pub block_info: BlockInfo,
556}
557
558impl OpaqueBlock {
559 pub fn data_size(&self) -> u64 {
560 self.buffers.iter().map(|b| b.len() as u64).sum()
561 }
562}
563
564#[derive(Debug, Clone)]
566pub struct VariableWidthBlock {
567 pub data: LanceBuffer,
569 pub offsets: LanceBuffer,
573 pub bits_per_offset: u8,
575 pub num_values: u64,
577
578 pub block_info: BlockInfo,
579}
580
581struct ValidVariableWidthLayout;
589
590fn corrupt_file_named(name: &str, message: impl Into<String>) -> Error {
591 Error::corrupt_file(name.into(), message)
592}
593
594impl VariableWidthBlock {
595 fn into_arrow(self, data_type: DataType, _validate: bool) -> Result<ArrayData> {
603 let Some(expected_bits_per_offset) = Self::expected_bits_per_offset(&data_type) else {
604 return self.into_arrow_checked(data_type);
607 };
608 if self.bits_per_offset != expected_bits_per_offset {
609 return Err(self.layout_error(
610 &data_type,
611 format!(
612 "expected {}-bit offsets but got {}-bit offsets",
613 expected_bits_per_offset, self.bits_per_offset
614 ),
615 ));
616 }
617 if self.num_values == 0 {
618 return self.into_arrow_checked(data_type);
620 }
621 let proof = self.validate_layout(&data_type)?;
622 Ok(self.into_arrow_unchecked(data_type, proof))
623 }
624
625 fn expected_bits_per_offset(data_type: &DataType) -> Option<u8> {
628 match data_type {
629 DataType::Binary | DataType::Utf8 => Some(32),
630 DataType::LargeBinary | DataType::LargeUtf8 => Some(64),
631 _ => None,
632 }
633 }
634
635 fn layout_error(&self, data_type: &DataType, detail: impl std::fmt::Display) -> Error {
636 Self::format_layout_error(
637 data_type,
638 detail,
639 self.num_values,
640 self.bits_per_offset,
641 self.offsets.len(),
642 self.data.len(),
643 )
644 }
645
646 fn format_layout_error(
647 data_type: &DataType,
648 detail: impl std::fmt::Display,
649 num_values: u64,
650 bits_per_offset: u8,
651 offsets_size: usize,
652 data_size: usize,
653 ) -> Error {
654 corrupt_file_named(
655 "variable width data block",
656 format!(
657 "invalid variable-width layout for {}: {} (num_values: {}, bits_per_offset: {}, \
658 offsets buffer size: {} bytes, data buffer size: {} bytes)",
659 data_type, detail, num_values, bits_per_offset, offsets_size, data_size,
660 ),
661 )
662 }
663
664 fn validate_layout(&self, data_type: &DataType) -> Result<ValidVariableWidthLayout> {
665 let bytes_per_offset = (self.bits_per_offset / 8) as u64;
666 let required_bytes = self
667 .num_values
668 .checked_add(1)
669 .and_then(|num_offsets| num_offsets.checked_mul(bytes_per_offset))
670 .ok_or_else(|| self.layout_error(data_type, "offsets buffer size overflows"))?;
671 if (self.offsets.len() as u64) < required_bytes {
672 return Err(self.layout_error(
673 data_type,
674 format!(
675 "offsets buffer must hold at least {} offsets ({} bytes)",
676 self.num_values + 1,
677 required_bytes
678 ),
679 ));
680 }
681 let validate_utf8 = matches!(data_type, DataType::Utf8 | DataType::LargeUtf8);
682 match self.bits_per_offset {
683 32 => self.validate_offsets_and_values::<i32>(data_type, validate_utf8),
684 64 => self.validate_offsets_and_values::<i64>(data_type, validate_utf8),
685 other => Err(self.layout_error(
686 data_type,
687 format!("unsupported offset width: {} bits", other),
688 )),
689 }
690 }
691
692 fn validate_offsets_and_values<T: ArrowNativeType + Ord>(
693 &self,
694 data_type: &DataType,
695 validate_utf8: bool,
696 ) -> Result<ValidVariableWidthLayout> {
697 let num_offsets = self.num_values as usize + 1;
698 let offsets = self
701 .offsets
702 .slice_with_length(0, num_offsets * std::mem::size_of::<T>());
703 let offsets = offsets.borrow_to_typed_slice::<T>();
704 let offsets: &[T] = offsets.as_ref();
705 let data = self.data.as_ref();
706
707 let mut is_monotonic = true;
712 for window in offsets.windows(2) {
713 is_monotonic &= window[0] <= window[1];
714 }
715 let first = offsets[0];
716 let last = offsets[num_offsets - 1];
717 let bounds_ok =
718 first >= T::usize_as(0) && last.to_usize().is_some_and(|last| last <= data.len());
719 if !is_monotonic || !bounds_ok {
720 return Err(self.offset_violation_error::<T>(data_type, offsets));
721 }
722
723 if validate_utf8 {
724 let (first, last) = (first.as_usize(), last.as_usize());
725 let values = std::str::from_utf8(&data[first..last])
726 .map_err(|utf8_err| self.layout_error(data_type, utf8_err))?;
727 let mut on_char_boundaries = true;
728 for &offset in offsets {
729 on_char_boundaries &= values.is_char_boundary(offset.as_usize() - first);
730 }
731 if !on_char_boundaries {
732 let position = offsets
734 .iter()
735 .position(|offset| !values.is_char_boundary(offset.as_usize() - first))
736 .expect("the fast scan found a non-boundary offset");
737 return Err(self.layout_error(
738 data_type,
739 format!("offset at position {position} splits a UTF-8 character"),
740 ));
741 }
742 }
743
744 Ok(ValidVariableWidthLayout)
745 }
746
747 fn offset_violation_error<T: ArrowNativeType + Ord>(
749 &self,
750 data_type: &DataType,
751 offsets: &[T],
752 ) -> Error {
753 let data_size = self.data.len();
754 for (position, window) in offsets.windows(2).enumerate() {
755 if window[0] > window[1] {
756 return self.layout_error(
757 data_type,
758 format!(
759 "non-monotonic offset at position {}: {:?} > {:?}",
760 position, window[0], window[1]
761 ),
762 );
763 }
764 }
765 for (position, offset) in offsets.iter().enumerate() {
766 match offset.to_usize() {
767 None => {
768 return self.layout_error(
769 data_type,
770 format!("negative offset at position {}: {:?}", position, offset),
771 );
772 }
773 Some(offset) if offset > data_size => {
774 return self.layout_error(
775 data_type,
776 format!(
777 "offset at position {} out of bounds: {} > {}",
778 position, offset, data_size
779 ),
780 );
781 }
782 Some(_) => {}
783 }
784 }
785 self.layout_error(data_type, "offsets failed validation")
788 }
789
790 fn into_arrow_checked(self, data_type: DataType) -> Result<ArrayData> {
791 let num_values = self.num_values;
792 let bits_per_offset = self.bits_per_offset;
793 let offsets_size = self.offsets.len();
794 let data_size = self.data.len();
795 let builder = self.into_arrow_builder(data_type.clone());
796 builder.build().map_err(|arrow_err| {
797 Self::format_layout_error(
798 &data_type,
799 arrow_err,
800 num_values,
801 bits_per_offset,
802 offsets_size,
803 data_size,
804 )
805 })
806 }
807
808 fn into_arrow_unchecked(
809 self,
810 data_type: DataType,
811 _proof: ValidVariableWidthLayout,
812 ) -> ArrayData {
813 let builder = self.into_arrow_builder(data_type);
814 unsafe { builder.build_unchecked() }
817 }
818
819 fn into_arrow_builder(self, data_type: DataType) -> ArrayDataBuilder {
820 let num_values = self.num_values;
821 let data_buffer = self.data.into_buffer();
822 let offsets_buffer = self.offsets.into_buffer();
823 ArrayDataBuilder::new(data_type)
824 .add_buffer(offsets_buffer)
825 .add_buffer(data_buffer)
826 .len(num_values as usize)
827 .null_count(0)
828 }
829
830 fn into_buffers(self) -> Vec<LanceBuffer> {
831 vec![self.offsets, self.data]
832 }
833
834 pub fn offsets_as_block(&mut self) -> DataBlock {
835 let offsets = self.offsets.clone();
836 DataBlock::FixedWidth(FixedWidthDataBlock {
837 data: offsets,
838 bits_per_value: self.bits_per_offset as u64,
839 num_values: self.num_values + 1,
840 block_info: BlockInfo::new(),
841 })
842 }
843
844 pub fn data_size(&self) -> u64 {
845 (self.data.len() + self.offsets.len()) as u64
846 }
847}
848
849#[derive(Debug, Clone)]
851pub struct StructDataBlock {
852 pub children: Vec<DataBlock>,
854 pub block_info: BlockInfo,
855 pub validity: Option<NullBuffer>,
857}
858
859impl StructDataBlock {
860 fn into_arrow(self, data_type: DataType, validate: bool) -> Result<ArrayData> {
861 if let DataType::Struct(fields) = &data_type {
862 let mut builder = ArrayDataBuilder::new(DataType::Struct(fields.clone()));
863 let mut num_rows = 0;
864 for (field, child) in fields.iter().zip(self.children) {
865 let child_data = child.into_arrow(field.data_type().clone(), validate)?;
866 num_rows = child_data.len();
867 builder = builder.add_child_data(child_data);
868 }
869
870 let builder = if let Some(validity) = self.validity {
872 let null_count = validity.null_count();
873 builder
874 .null_bit_buffer(Some(validity.into_inner().into_inner()))
875 .null_count(null_count)
876 } else {
877 builder.null_count(0)
878 };
879
880 let builder = builder.len(num_rows);
881 if validate {
882 Ok(builder.build()?)
883 } else {
884 Ok(unsafe { builder.build_unchecked() })
885 }
886 } else {
887 Err(Error::internal(format!(
888 "Expected Struct, got {:?}",
889 data_type
890 )))
891 }
892 }
893
894 fn remove_outer_validity(self) -> Self {
895 Self {
896 children: self
897 .children
898 .into_iter()
899 .map(|c| c.remove_outer_validity())
900 .collect(),
901 block_info: self.block_info,
902 validity: None, }
904 }
905
906 fn into_buffers(self) -> Vec<LanceBuffer> {
907 self.children
908 .into_iter()
909 .flat_map(|c| c.into_buffers())
910 .collect()
911 }
912
913 pub fn has_variable_width_child(&self) -> bool {
914 self.children
915 .iter()
916 .any(|child| !matches!(child, DataBlock::FixedWidth(_)))
917 }
918
919 pub fn data_size(&self) -> u64 {
920 self.children
921 .iter()
922 .map(|data_block| data_block.data_size())
923 .sum()
924 }
925}
926
927#[derive(Debug, Clone)]
929pub struct DictionaryDataBlock {
930 pub indices: FixedWidthDataBlock,
932 pub dictionary: Box<DataBlock>,
934}
935
936impl DictionaryDataBlock {
937 fn decode_helper<K: ArrowDictionaryKeyType>(self) -> Result<DataBlock> {
938 if self.indices.num_values == 0 {
941 return Ok(DataBlock::AllNull(AllNullDataBlock { num_values: 0 }));
942 }
943
944 let estimated_size_bytes = self.dictionary.data_size()
946 * (self.indices.num_values + self.dictionary.num_values() - 1)
947 / self.dictionary.num_values();
948 let mut data_builder = DataBlockBuilder::with_capacity_estimate(estimated_size_bytes);
949
950 let indices = self.indices.data.borrow_to_typed_slice::<K::Native>();
951 let indices = indices.as_ref();
952
953 indices
954 .iter()
955 .map(|idx| idx.to_usize().unwrap() as u64)
956 .for_each(|idx| {
957 data_builder.append(&self.dictionary, idx..idx + 1);
958 });
959
960 Ok(data_builder.finish())
961 }
962
963 pub fn decode(self) -> Result<DataBlock> {
964 match self.indices.bits_per_value {
965 8 => self.decode_helper::<UInt8Type>(),
966 16 => self.decode_helper::<UInt16Type>(),
967 32 => self.decode_helper::<UInt32Type>(),
968 64 => self.decode_helper::<UInt64Type>(),
969 _ => Err(lance_core::Error::internal(format!(
970 "Unsupported dictionary index bit width: {} bits",
971 self.indices.bits_per_value
972 ))),
973 }
974 }
975
976 fn into_arrow_dict(
977 self,
978 key_type: Box<DataType>,
979 value_type: Box<DataType>,
980 validate: bool,
981 ) -> Result<ArrayData> {
982 let indices = self.indices.into_arrow((*key_type).clone(), validate)?;
983 let dictionary = self
984 .dictionary
985 .into_arrow((*value_type).clone(), validate)?;
986
987 let builder = indices
988 .into_builder()
989 .add_child_data(dictionary)
990 .data_type(DataType::Dictionary(key_type, value_type));
991
992 if validate {
993 Ok(builder.build()?)
994 } else {
995 Ok(unsafe { builder.build_unchecked() })
996 }
997 }
998
999 fn into_arrow(self, data_type: DataType, validate: bool) -> Result<ArrayData> {
1000 if let DataType::Dictionary(key_type, value_type) = data_type {
1001 self.into_arrow_dict(key_type, value_type, validate)
1002 } else {
1003 self.decode()?.into_arrow(data_type, validate)
1004 }
1005 }
1006
1007 fn into_buffers(self) -> Vec<LanceBuffer> {
1008 let mut buffers = self.indices.into_buffers();
1009 buffers.extend(self.dictionary.into_buffers());
1010 buffers
1011 }
1012
1013 pub fn into_parts(self) -> (DataBlock, DataBlock) {
1014 (DataBlock::FixedWidth(self.indices), *self.dictionary)
1015 }
1016
1017 pub fn from_parts(indices: FixedWidthDataBlock, dictionary: DataBlock) -> Self {
1018 Self {
1019 indices,
1020 dictionary: Box::new(dictionary),
1021 }
1022 }
1023}
1024
1025#[derive(Debug, Clone)]
1040pub enum DataBlock {
1041 Empty(),
1042 Constant(ConstantDataBlock),
1043 AllNull(AllNullDataBlock),
1044 Nullable(NullableDataBlock),
1045 FixedWidth(FixedWidthDataBlock),
1046 FixedSizeList(FixedSizeListBlock),
1047 VariableWidth(VariableWidthBlock),
1048 Opaque(OpaqueBlock),
1049 Struct(StructDataBlock),
1050 Dictionary(DictionaryDataBlock),
1051}
1052
1053impl DataBlock {
1054 pub fn into_arrow(self, data_type: DataType, validate: bool) -> Result<ArrayData> {
1056 match self {
1057 Self::Empty() => Ok(new_empty_array(&data_type).to_data()),
1058 Self::Constant(inner) => inner.into_arrow(data_type, validate),
1059 Self::AllNull(inner) => inner.into_arrow(data_type, validate),
1060 Self::Nullable(inner) => inner.into_arrow(data_type, validate),
1061 Self::FixedWidth(inner) => inner.into_arrow(data_type, validate),
1062 Self::FixedSizeList(inner) => inner.into_arrow(data_type, validate),
1063 Self::VariableWidth(inner) => inner.into_arrow(data_type, validate),
1064 Self::Struct(inner) => inner.into_arrow(data_type, validate),
1065 Self::Dictionary(inner) => inner.into_arrow(data_type, validate),
1066 Self::Opaque(_) => Err(Error::internal(
1067 "Cannot convert OpaqueBlock to Arrow".to_string(),
1068 )),
1069 }
1070 }
1071
1072 pub fn into_buffers(self) -> Vec<LanceBuffer> {
1076 match self {
1077 Self::Empty() => Vec::default(),
1078 Self::Constant(inner) => inner.into_buffers(),
1079 Self::AllNull(inner) => inner.into_buffers(),
1080 Self::Nullable(inner) => inner.into_buffers(),
1081 Self::FixedWidth(inner) => inner.into_buffers(),
1082 Self::FixedSizeList(inner) => inner.into_buffers(),
1083 Self::VariableWidth(inner) => inner.into_buffers(),
1084 Self::Struct(inner) => inner.into_buffers(),
1085 Self::Dictionary(inner) => inner.into_buffers(),
1086 Self::Opaque(inner) => inner.buffers,
1087 }
1088 }
1089
1090 pub fn try_clone(&self) -> Result<Self> {
1099 match self {
1100 Self::Empty() => Ok(Self::Empty()),
1101 Self::Constant(inner) => Ok(Self::Constant(inner.clone())),
1102 Self::AllNull(inner) => Ok(Self::AllNull(inner.clone())),
1103 Self::Nullable(inner) => Ok(Self::Nullable(inner.clone())),
1104 Self::FixedWidth(inner) => Ok(Self::FixedWidth(inner.clone())),
1105 Self::FixedSizeList(inner) => Ok(Self::FixedSizeList(inner.clone())),
1106 Self::VariableWidth(inner) => Ok(Self::VariableWidth(inner.clone())),
1107 Self::Struct(inner) => Ok(Self::Struct(inner.clone())),
1108 Self::Dictionary(inner) => Ok(Self::Dictionary(inner.clone())),
1109 Self::Opaque(inner) => Ok(Self::Opaque(inner.clone())),
1110 }
1111 }
1112
1113 pub fn name(&self) -> &'static str {
1114 match self {
1115 Self::Constant(_) => "Constant",
1116 Self::Empty() => "Empty",
1117 Self::AllNull(_) => "AllNull",
1118 Self::Nullable(_) => "Nullable",
1119 Self::FixedWidth(_) => "FixedWidth",
1120 Self::FixedSizeList(_) => "FixedSizeList",
1121 Self::VariableWidth(_) => "VariableWidth",
1122 Self::Struct(_) => "Struct",
1123 Self::Dictionary(_) => "Dictionary",
1124 Self::Opaque(_) => "Opaque",
1125 }
1126 }
1127
1128 pub fn is_variable(&self) -> bool {
1129 match self {
1130 Self::Constant(_) => false,
1131 Self::Empty() => false,
1132 Self::AllNull(_) => false,
1133 Self::Nullable(nullable) => nullable.data.is_variable(),
1134 Self::FixedWidth(_) => false,
1135 Self::FixedSizeList(fsl) => fsl.child.is_variable(),
1136 Self::VariableWidth(_) => true,
1137 Self::Struct(strct) => strct.children.iter().any(|c| c.is_variable()),
1138 Self::Dictionary(_) => {
1139 todo!("is_variable for DictionaryDataBlock is not implemented yet")
1140 }
1141 Self::Opaque(_) => panic!("Does not make sense to ask if an Opaque block is variable"),
1142 }
1143 }
1144
1145 pub fn is_nullable(&self) -> bool {
1146 match self {
1147 Self::AllNull(_) => true,
1148 Self::Nullable(_) => true,
1149 Self::FixedSizeList(fsl) => fsl.child.is_nullable(),
1150 Self::Struct(strct) => strct.children.iter().any(|c| c.is_nullable()),
1151 Self::Dictionary(_) => {
1152 todo!("is_nullable for DictionaryDataBlock is not implemented yet")
1153 }
1154 Self::Opaque(_) => panic!("Does not make sense to ask if an Opaque block is nullable"),
1155 _ => false,
1156 }
1157 }
1158
1159 pub fn num_values(&self) -> u64 {
1164 match self {
1165 Self::Empty() => 0,
1166 Self::Constant(inner) => inner.num_values,
1167 Self::AllNull(inner) => inner.num_values,
1168 Self::Nullable(inner) => inner.data.num_values(),
1169 Self::FixedWidth(inner) => inner.num_values,
1170 Self::FixedSizeList(inner) => inner.num_values(),
1171 Self::VariableWidth(inner) => inner.num_values,
1172 Self::Struct(inner) => inner.children[0].num_values(),
1173 Self::Dictionary(inner) => inner.indices.num_values,
1174 Self::Opaque(inner) => inner.num_values,
1175 }
1176 }
1177
1178 pub fn items_per_row(&self) -> u64 {
1182 match self {
1183 Self::Empty() => todo!(), Self::Constant(_) => todo!(), Self::AllNull(_) => todo!(), Self::Nullable(nullable) => nullable.data.items_per_row(),
1187 Self::FixedWidth(_) => 1,
1188 Self::FixedSizeList(fsl) => fsl.dimension * fsl.child.items_per_row(),
1189 Self::VariableWidth(_) => 1,
1190 Self::Struct(_) => todo!(), Self::Dictionary(_) => 1,
1192 Self::Opaque(_) => 1,
1193 }
1194 }
1195
1196 pub fn data_size(&self) -> u64 {
1198 match self {
1199 Self::Empty() => 0,
1200 Self::Constant(inner) => inner.data_size(),
1201 Self::AllNull(_) => 0,
1202 Self::Nullable(inner) => inner.data_size(),
1203 Self::FixedWidth(inner) => inner.data_size(),
1204 Self::FixedSizeList(inner) => inner.data_size(),
1205 Self::VariableWidth(inner) => inner.data_size(),
1206 Self::Struct(inner) => inner.children.iter().map(|child| child.data_size()).sum(),
1207 Self::Dictionary(inner) => inner.indices.data_size() + inner.dictionary.data_size(),
1208 Self::Opaque(inner) => inner.data_size(),
1209 }
1210 }
1211
1212 pub fn remove_outer_validity(self) -> Self {
1220 match self {
1221 Self::AllNull(_) => panic!("Cannot remove validity on all-null data"),
1222 Self::Nullable(inner) => *inner.data,
1223 Self::Struct(inner) => Self::Struct(inner.remove_outer_validity()),
1224 other => other,
1225 }
1226 }
1227
1228 pub fn make_builder(&self, estimated_size_bytes: u64) -> Box<dyn DataBlockBuilderImpl> {
1229 match self {
1230 Self::FixedWidth(inner) => {
1231 if inner.bits_per_value == 1 {
1232 Box::new(BitmapDataBlockBuilder::new(estimated_size_bytes))
1233 } else {
1234 Box::new(FixedWidthDataBlockBuilder::new(
1235 inner.bits_per_value,
1236 estimated_size_bytes,
1237 ))
1238 }
1239 }
1240 Self::VariableWidth(inner) => {
1241 if inner.bits_per_offset == 32 {
1242 Box::new(VariableWidthDataBlockBuilder::<i32>::new(
1243 estimated_size_bytes,
1244 ))
1245 } else if inner.bits_per_offset == 64 {
1246 Box::new(VariableWidthDataBlockBuilder::<i64>::new(
1247 estimated_size_bytes,
1248 ))
1249 } else {
1250 todo!()
1251 }
1252 }
1253 Self::FixedSizeList(inner) => {
1254 let inner_builder = inner.child.make_builder(estimated_size_bytes);
1255 Box::new(FixedSizeListBlockBuilder::new(
1256 inner_builder,
1257 inner.dimension,
1258 ))
1259 }
1260 Self::Nullable(nullable) => {
1261 let estimated_validity_size_bytes = estimated_size_bytes / 16;
1264 let inner_builder = nullable
1265 .data
1266 .make_builder(estimated_size_bytes - estimated_validity_size_bytes);
1267 Box::new(NullableDataBlockBuilder::new(
1268 inner_builder,
1269 estimated_validity_size_bytes as usize,
1270 ))
1271 }
1272 Self::Struct(struct_data_block) => {
1273 let num_children = struct_data_block.children.len();
1274 let per_child_estimate = if num_children == 0 {
1275 0
1276 } else {
1277 estimated_size_bytes / num_children as u64
1278 };
1279 let child_builders = struct_data_block
1280 .children
1281 .iter()
1282 .map(|child| child.make_builder(per_child_estimate))
1283 .collect();
1284 Box::new(StructDataBlockBuilder::new(child_builders))
1285 }
1286 Self::AllNull(_) => Box::new(AllNullDataBlockBuilder::default()),
1287 _ => todo!("make_builder for {:?}", self),
1288 }
1289 }
1290}
1291
1292macro_rules! as_type {
1293 ($fn_name:ident, $inner:tt, $inner_type:ident) => {
1294 pub fn $fn_name(self) -> Option<$inner_type> {
1295 match self {
1296 Self::$inner(inner) => Some(inner),
1297 _ => None,
1298 }
1299 }
1300 };
1301}
1302
1303macro_rules! as_type_ref {
1304 ($fn_name:ident, $inner:tt, $inner_type:ident) => {
1305 pub fn $fn_name(&self) -> Option<&$inner_type> {
1306 match self {
1307 Self::$inner(inner) => Some(inner),
1308 _ => None,
1309 }
1310 }
1311 };
1312}
1313
1314macro_rules! as_type_ref_mut {
1315 ($fn_name:ident, $inner:tt, $inner_type:ident) => {
1316 pub fn $fn_name(&mut self) -> Option<&mut $inner_type> {
1317 match self {
1318 Self::$inner(inner) => Some(inner),
1319 _ => None,
1320 }
1321 }
1322 };
1323}
1324
1325impl DataBlock {
1327 as_type!(as_all_null, AllNull, AllNullDataBlock);
1328 as_type!(as_nullable, Nullable, NullableDataBlock);
1329 as_type!(as_fixed_width, FixedWidth, FixedWidthDataBlock);
1330 as_type!(as_fixed_size_list, FixedSizeList, FixedSizeListBlock);
1331 as_type!(as_variable_width, VariableWidth, VariableWidthBlock);
1332 as_type!(as_struct, Struct, StructDataBlock);
1333 as_type!(as_dictionary, Dictionary, DictionaryDataBlock);
1334 as_type_ref!(as_all_null_ref, AllNull, AllNullDataBlock);
1335 as_type_ref!(as_nullable_ref, Nullable, NullableDataBlock);
1336 as_type_ref!(as_fixed_width_ref, FixedWidth, FixedWidthDataBlock);
1337 as_type_ref!(as_fixed_size_list_ref, FixedSizeList, FixedSizeListBlock);
1338 as_type_ref!(as_variable_width_ref, VariableWidth, VariableWidthBlock);
1339 as_type_ref!(as_struct_ref, Struct, StructDataBlock);
1340 as_type_ref!(as_dictionary_ref, Dictionary, DictionaryDataBlock);
1341 as_type_ref_mut!(as_all_null_ref_mut, AllNull, AllNullDataBlock);
1342 as_type_ref_mut!(as_nullable_ref_mut, Nullable, NullableDataBlock);
1343 as_type_ref_mut!(as_fixed_width_ref_mut, FixedWidth, FixedWidthDataBlock);
1344 as_type_ref_mut!(
1345 as_fixed_size_list_ref_mut,
1346 FixedSizeList,
1347 FixedSizeListBlock
1348 );
1349 as_type_ref_mut!(as_variable_width_ref_mut, VariableWidth, VariableWidthBlock);
1350 as_type_ref_mut!(as_struct_ref_mut, Struct, StructDataBlock);
1351 as_type_ref_mut!(as_dictionary_ref_mut, Dictionary, DictionaryDataBlock);
1352}
1353
1354fn get_byte_range<T: ArrowNativeType>(offsets: &mut LanceBuffer) -> Range<usize> {
1357 let offsets = offsets.borrow_to_typed_slice::<T>();
1358 if offsets.as_ref().is_empty() {
1359 0..0
1360 } else {
1361 offsets.as_ref().first().unwrap().as_usize()..offsets.as_ref().last().unwrap().as_usize()
1362 }
1363}
1364
1365fn stitch_offsets<T: ArrowNativeType + std::ops::Add<Output = T> + std::ops::Sub<Output = T>>(
1371 offsets: Vec<LanceBuffer>,
1372) -> (LanceBuffer, Vec<Range<usize>>) {
1373 if offsets.is_empty() {
1374 return (LanceBuffer::empty(), Vec::default());
1375 }
1376 let len = offsets.iter().map(|b| b.len()).sum::<usize>();
1377 let mut dest = Vec::with_capacity(len);
1381 let mut byte_ranges = Vec::with_capacity(offsets.len());
1382
1383 dest.push(T::from_usize(0).unwrap());
1385
1386 for mut o in offsets.into_iter() {
1387 if !o.is_empty() {
1388 let last_offset = *dest.last().unwrap();
1389 let o = o.borrow_to_typed_slice::<T>();
1390 let start = *o.as_ref().first().unwrap();
1391 dest.extend(o.as_ref()[1..].iter().map(|&x| x + last_offset - start));
1405 }
1406 byte_ranges.push(get_byte_range::<T>(&mut o));
1407 }
1408 (LanceBuffer::reinterpret_vec(dest), byte_ranges)
1409}
1410
1411fn arrow_binary_to_data_block(
1412 arrays: &[ArrayRef],
1413 num_values: u64,
1414 bits_per_offset: u8,
1415) -> DataBlock {
1416 let data_vec = arrays.iter().map(|arr| arr.to_data()).collect::<Vec<_>>();
1417 let bytes_per_offset = bits_per_offset as usize / 8;
1418 let offsets = data_vec
1419 .iter()
1420 .map(|d| {
1421 LanceBuffer::from(
1422 d.buffers()[0].slice_with_length(d.offset(), (d.len() + 1) * bytes_per_offset),
1423 )
1424 })
1425 .collect::<Vec<_>>();
1426 let (offsets, data_ranges) = if bits_per_offset == 32 {
1427 stitch_offsets::<i32>(offsets)
1428 } else {
1429 stitch_offsets::<i64>(offsets)
1430 };
1431 let data = data_vec
1432 .iter()
1433 .zip(data_ranges)
1434 .map(|(d, byte_range)| {
1435 LanceBuffer::from(
1436 d.buffers()[1]
1437 .slice_with_length(byte_range.start, byte_range.end - byte_range.start),
1438 )
1439 })
1440 .collect::<Vec<_>>();
1441 let data = LanceBuffer::concat_into_one(data);
1442 DataBlock::VariableWidth(VariableWidthBlock {
1443 data,
1444 offsets,
1445 bits_per_offset,
1446 num_values,
1447 block_info: BlockInfo::new(),
1448 })
1449}
1450
1451fn encode_flat_data(arrays: &[ArrayRef], num_values: u64) -> LanceBuffer {
1452 let bytes_per_value = arrays[0].data_type().byte_width();
1453 let mut buffer = Vec::with_capacity(num_values as usize * bytes_per_value);
1454 for arr in arrays {
1455 let data = arr.to_data();
1456 buffer.extend_from_slice(data.buffers()[0].as_slice());
1457 }
1458 LanceBuffer::from(buffer)
1459}
1460
1461fn do_encode_bitmap_data(bitmaps: &[BooleanBuffer], num_values: u64) -> LanceBuffer {
1462 let mut builder = BooleanBufferBuilder::new(num_values as usize);
1463
1464 for buf in bitmaps {
1465 builder.append_buffer(buf);
1466 }
1467
1468 let buffer = builder.finish().into_inner();
1469 LanceBuffer::from(buffer)
1470}
1471
1472fn encode_bitmap_data(arrays: &[ArrayRef], num_values: u64) -> LanceBuffer {
1473 let bitmaps = arrays
1474 .iter()
1475 .map(|arr| arr.as_boolean().values().clone())
1476 .collect::<Vec<_>>();
1477 do_encode_bitmap_data(&bitmaps, num_values)
1478}
1479
1480fn concat_dict_arrays(arrays: &[ArrayRef]) -> ArrayRef {
1483 let value_type = arrays[0].as_any_dictionary().values().data_type();
1484 let array_refs = arrays.iter().map(|arr| arr.as_ref()).collect::<Vec<_>>();
1485 match arrow_select::concat::concat(&array_refs) {
1486 Ok(array) => array,
1487 Err(arrow_schema::ArrowError::DictionaryKeyOverflowError) => {
1488 let upscaled = array_refs
1490 .iter()
1491 .map(|arr| {
1492 match arrow_cast::cast(
1493 *arr,
1494 &DataType::Dictionary(
1495 Box::new(DataType::UInt32),
1496 Box::new(value_type.clone()),
1497 ),
1498 ) {
1499 Ok(arr) => arr,
1500 Err(arrow_schema::ArrowError::DictionaryKeyOverflowError) => {
1501 unimplemented!("Dictionary arrays with more than 2^32 unique values")
1503 }
1504 err => err.unwrap(),
1505 }
1506 })
1507 .collect::<Vec<_>>();
1508 let array_refs = upscaled.iter().map(|arr| arr.as_ref()).collect::<Vec<_>>();
1509 match arrow_select::concat::concat(&array_refs) {
1511 Ok(array) => array,
1512 Err(arrow_schema::ArrowError::DictionaryKeyOverflowError) => {
1513 unimplemented!("Dictionary arrays with more than 2^32 unique values")
1514 }
1515 err => err.unwrap(),
1516 }
1517 }
1518 err => err.unwrap(),
1520 }
1521}
1522
1523fn max_index_val(index_type: &DataType) -> u64 {
1524 match index_type {
1525 DataType::Int8 => i8::MAX as u64,
1526 DataType::Int16 => i16::MAX as u64,
1527 DataType::Int32 => i32::MAX as u64,
1528 DataType::Int64 => i64::MAX as u64,
1529 DataType::UInt8 => u8::MAX as u64,
1530 DataType::UInt16 => u16::MAX as u64,
1531 DataType::UInt32 => u32::MAX as u64,
1532 DataType::UInt64 => u64::MAX,
1533 _ => panic!("Invalid dictionary index type"),
1534 }
1535}
1536
1537fn arrow_dictionary_to_data_block(arrays: &[ArrayRef], validity: Option<NullBuffer>) -> DataBlock {
1556 let array = concat_dict_arrays(arrays);
1557 let array_dict = array.as_any_dictionary();
1558 let mut indices = array_dict.keys();
1559 let num_values = indices.len() as u64;
1560 let mut values = array_dict.values().clone();
1561 let mut upcast = None;
1563
1564 let indices_block = if let Some(validity) = validity {
1568 let mut first_invalid_index = None;
1572 if let Some(values_validity) = values.nulls() {
1573 first_invalid_index = (!values_validity.inner()).set_indices().next();
1574 }
1575 let first_invalid_index = first_invalid_index.unwrap_or_else(|| {
1576 let null_arr = new_null_array(values.data_type(), 1);
1577 values = arrow_select::concat::concat(&[values.as_ref(), null_arr.as_ref()]).unwrap();
1578 let null_index = values.len() - 1;
1579 let max_index_val = max_index_val(indices.data_type());
1580 if null_index as u64 > max_index_val {
1581 if max_index_val >= u32::MAX as u64 {
1583 unimplemented!("Dictionary arrays with 2^32 unique value (or more) and a null")
1584 }
1585 upcast = Some(arrow_cast::cast(indices, &DataType::UInt32).unwrap());
1586 indices = upcast.as_ref().unwrap();
1587 }
1588 null_index
1589 });
1590 let null_index_arr = arrow_cast::cast(
1592 &UInt64Array::from(vec![first_invalid_index as u64]),
1593 indices.data_type(),
1594 )
1595 .unwrap();
1596
1597 let bytes_per_index = indices.data_type().byte_width();
1598 let bits_per_index = bytes_per_index as u64 * 8;
1599
1600 let null_index_arr = null_index_arr.into_data();
1601 let null_index_bytes = &null_index_arr.buffers()[0];
1602 let mut indices_bytes = indices.to_data().buffers()[0].to_vec();
1604 for invalid_idx in (!validity.inner()).set_indices() {
1605 indices_bytes[invalid_idx * bytes_per_index..(invalid_idx + 1) * bytes_per_index]
1606 .copy_from_slice(null_index_bytes.as_slice());
1607 }
1608 FixedWidthDataBlock {
1609 data: LanceBuffer::from(indices_bytes),
1610 bits_per_value: bits_per_index,
1611 num_values,
1612 block_info: BlockInfo::new(),
1613 }
1614 } else {
1615 FixedWidthDataBlock {
1616 data: LanceBuffer::from(indices.to_data().buffers()[0].clone()),
1617 bits_per_value: indices.data_type().byte_width() as u64 * 8,
1618 num_values,
1619 block_info: BlockInfo::new(),
1620 }
1621 };
1622
1623 let items = DataBlock::from(values);
1624 DataBlock::Dictionary(DictionaryDataBlock {
1625 indices: indices_block,
1626 dictionary: Box::new(items),
1627 })
1628}
1629
1630enum Nullability {
1631 None,
1632 All,
1633 Some(NullBuffer),
1634}
1635
1636impl Nullability {
1637 fn to_option(&self) -> Option<NullBuffer> {
1638 match self {
1639 Self::Some(nulls) => Some(nulls.clone()),
1640 _ => None,
1641 }
1642 }
1643}
1644
1645fn extract_nulls(arrays: &[ArrayRef], num_values: u64) -> Nullability {
1646 let mut has_nulls = false;
1647 let nulls_and_lens = arrays
1648 .iter()
1649 .map(|arr| {
1650 let nulls = arr.logical_nulls();
1651 has_nulls |= nulls.is_some();
1652 (nulls, arr.len())
1653 })
1654 .collect::<Vec<_>>();
1655 if !has_nulls {
1656 return Nullability::None;
1657 }
1658 let mut builder = BooleanBufferBuilder::new(num_values as usize);
1659 let mut num_nulls = 0;
1660 for (null, len) in nulls_and_lens {
1661 if let Some(null) = null {
1662 num_nulls += null.null_count();
1663 builder.append_buffer(&null.into_inner());
1664 } else {
1665 builder.append_n(len, true);
1666 }
1667 }
1668 if num_nulls == num_values as usize {
1669 Nullability::All
1670 } else {
1671 Nullability::Some(NullBuffer::new(builder.finish()))
1672 }
1673}
1674
1675impl DataBlock {
1676 pub fn from_arrays(arrays: &[ArrayRef], num_values: u64) -> Self {
1677 if arrays.is_empty() || num_values == 0 {
1678 return Self::AllNull(AllNullDataBlock { num_values: 0 });
1679 }
1680
1681 let data_type = arrays[0].data_type();
1682 let nulls = extract_nulls(arrays, num_values);
1683
1684 if let Nullability::All = nulls {
1685 return Self::AllNull(AllNullDataBlock { num_values });
1686 }
1687
1688 let mut encoded = match data_type {
1689 DataType::Binary | DataType::Utf8 => arrow_binary_to_data_block(arrays, num_values, 32),
1690 DataType::BinaryView | DataType::Utf8View => {
1691 todo!()
1692 }
1693 DataType::LargeBinary | DataType::LargeUtf8 => {
1694 arrow_binary_to_data_block(arrays, num_values, 64)
1695 }
1696 DataType::Boolean => {
1697 let data = encode_bitmap_data(arrays, num_values);
1698 Self::FixedWidth(FixedWidthDataBlock {
1699 data,
1700 bits_per_value: 1,
1701 num_values,
1702 block_info: BlockInfo::new(),
1703 })
1704 }
1705 DataType::Date32
1706 | DataType::Date64
1707 | DataType::Decimal32(_, _)
1708 | DataType::Decimal64(_, _)
1709 | DataType::Decimal128(_, _)
1710 | DataType::Decimal256(_, _)
1711 | DataType::Duration(_)
1712 | DataType::FixedSizeBinary(_)
1713 | DataType::Float16
1714 | DataType::Float32
1715 | DataType::Float64
1716 | DataType::Int16
1717 | DataType::Int32
1718 | DataType::Int64
1719 | DataType::Int8
1720 | DataType::Interval(_)
1721 | DataType::Time32(_)
1722 | DataType::Time64(_)
1723 | DataType::Timestamp(_, _)
1724 | DataType::UInt16
1725 | DataType::UInt32
1726 | DataType::UInt64
1727 | DataType::UInt8 => {
1728 let data = encode_flat_data(arrays, num_values);
1729 Self::FixedWidth(FixedWidthDataBlock {
1730 data,
1731 bits_per_value: data_type.byte_width() as u64 * 8,
1732 num_values,
1733 block_info: BlockInfo::new(),
1734 })
1735 }
1736 DataType::Null => Self::AllNull(AllNullDataBlock { num_values }),
1737 DataType::Dictionary(_, _) => arrow_dictionary_to_data_block(arrays, nulls.to_option()),
1738 DataType::Struct(fields) => {
1739 let structs = arrays.iter().map(|arr| arr.as_struct()).collect::<Vec<_>>();
1740 let mut children = Vec::with_capacity(fields.len());
1741 for child_idx in 0..fields.len() {
1742 let child_vec = structs
1743 .iter()
1744 .map(|s| s.column(child_idx).clone())
1745 .collect::<Vec<_>>();
1746 children.push(Self::from_arrays(&child_vec, num_values));
1747 }
1748
1749 let validity = match &nulls {
1751 Nullability::None => None,
1752 Nullability::Some(null_buffer) => Some(null_buffer.clone()),
1753 Nullability::All => unreachable!("Should have returned AllNull earlier"),
1754 };
1755
1756 Self::Struct(StructDataBlock {
1757 children,
1758 block_info: BlockInfo::default(),
1759 validity,
1760 })
1761 }
1762 DataType::FixedSizeList(_, dim) => {
1763 let children = arrays
1764 .iter()
1765 .map(|arr| arr.as_fixed_size_list().values().clone())
1766 .collect::<Vec<_>>();
1767 let child_block = Self::from_arrays(&children, num_values * *dim as u64);
1768 Self::FixedSizeList(FixedSizeListBlock {
1769 child: Box::new(child_block),
1770 dimension: *dim as u64,
1771 })
1772 }
1773 DataType::LargeList(_)
1774 | DataType::List(_)
1775 | DataType::ListView(_)
1776 | DataType::LargeListView(_)
1777 | DataType::Map(_, _)
1778 | DataType::RunEndEncoded(_, _)
1779 | DataType::Union(_, _) => {
1780 panic!(
1781 "Field with data type {} cannot be converted to data block",
1782 data_type
1783 )
1784 }
1785 };
1786
1787 encoded.compute_stat();
1789
1790 if !matches!(data_type, DataType::Dictionary(_, _)) {
1791 match nulls {
1792 Nullability::None => encoded,
1793 Nullability::Some(nulls) => Self::Nullable(NullableDataBlock {
1794 data: Box::new(encoded),
1795 nulls: LanceBuffer::from(nulls.into_inner().into_inner()),
1796 block_info: BlockInfo::new(),
1797 }),
1798 _ => unreachable!(),
1799 }
1800 } else {
1801 encoded
1803 }
1804 }
1805
1806 pub fn from_array<T: Array + 'static>(array: T) -> Self {
1807 let num_values = array.len();
1808 Self::from_arrays(&[Arc::new(array)], num_values as u64)
1809 }
1810}
1811
1812impl From<ArrayRef> for DataBlock {
1813 fn from(array: ArrayRef) -> Self {
1814 let num_values = array.len() as u64;
1815 Self::from_arrays(&[array], num_values)
1816 }
1817}
1818
1819pub trait DataBlockBuilderImpl: std::fmt::Debug {
1820 fn append(&mut self, data_block: &DataBlock, selection: Range<u64>);
1821 fn finish(self: Box<Self>) -> DataBlock;
1822}
1823
1824#[derive(Debug)]
1825pub struct DataBlockBuilder {
1826 estimated_size_bytes: u64,
1827 builder: Option<Box<dyn DataBlockBuilderImpl>>,
1828}
1829
1830impl DataBlockBuilder {
1831 pub fn with_capacity_estimate(estimated_size_bytes: u64) -> Self {
1832 Self {
1833 estimated_size_bytes,
1834 builder: None,
1835 }
1836 }
1837
1838 fn get_builder(&mut self, block: &DataBlock) -> &mut dyn DataBlockBuilderImpl {
1839 if self.builder.is_none() {
1840 self.builder = Some(block.make_builder(self.estimated_size_bytes));
1841 }
1842 self.builder.as_mut().unwrap().as_mut()
1843 }
1844
1845 pub fn append(&mut self, data_block: &DataBlock, selection: Range<u64>) {
1846 self.get_builder(data_block).append(data_block, selection);
1847 }
1848
1849 pub fn finish(self) -> DataBlock {
1850 let builder = self.builder.expect("DataBlockBuilder didn't see any data");
1851 builder.finish()
1852 }
1853}
1854
1855#[cfg(test)]
1856mod tests {
1857 use std::sync::Arc;
1858
1859 use arrow_array::{
1860 ArrayRef, BinaryArray, DictionaryArray, Int8Array, LargeBinaryArray, LargeStringArray,
1861 StringArray, UInt8Array, UInt16Array, make_array, new_null_array,
1862 types::{Int8Type, Int32Type},
1863 };
1864 use arrow_buffer::{BooleanBuffer, NullBuffer};
1865
1866 use arrow_schema::{DataType, Field, Fields};
1867 use lance_core::Error;
1868 use lance_datagen::{ArrayGeneratorExt, DEFAULT_SEED, RowCount, array};
1869 use rand::SeedableRng;
1870 use rstest::rstest;
1871
1872 use crate::buffer::LanceBuffer;
1873
1874 use super::{
1875 AllNullDataBlock, BlockInfo, DataBlock, DictionaryDataBlock, FixedWidthDataBlock,
1876 VariableWidthBlock,
1877 };
1878
1879 use arrow_array::Array;
1880
1881 #[test]
1882 fn test_sliced_to_data_block() {
1883 let ints = UInt16Array::from(vec![0, 1, 2, 3, 4, 5, 6, 7, 8]);
1884 let ints = ints.slice(2, 4);
1885 let data = DataBlock::from_array(ints);
1886
1887 let fixed_data = data.as_fixed_width().unwrap();
1888 assert_eq!(fixed_data.num_values, 4);
1889 assert_eq!(fixed_data.data.len(), 8);
1890
1891 let nullable_ints =
1892 UInt16Array::from(vec![Some(0), None, Some(2), None, Some(4), None, Some(6)]);
1893 let nullable_ints = nullable_ints.slice(1, 3);
1894 let data = DataBlock::from_array(nullable_ints);
1895
1896 let nullable = data.as_nullable().unwrap();
1897 assert_eq!(nullable.nulls, LanceBuffer::from(vec![0b00000010]));
1898 }
1899
1900 #[test]
1901 fn test_string_to_data_block() {
1902 let strings1 = StringArray::from(vec![Some("hello"), None, Some("world")]);
1904 let strings2 = StringArray::from(vec![Some("a"), Some("b")]);
1905 let strings3 = StringArray::from(vec![Option::<&'static str>::None, None]);
1906
1907 let arrays = &[strings1, strings2, strings3]
1908 .iter()
1909 .map(|arr| Arc::new(arr.clone()) as ArrayRef)
1910 .collect::<Vec<_>>();
1911
1912 let block = DataBlock::from_arrays(arrays, 7);
1913
1914 assert_eq!(block.num_values(), 7);
1915 let block = block.as_nullable().unwrap();
1916
1917 assert_eq!(block.nulls, LanceBuffer::from(vec![0b00011101]));
1918
1919 let data = block.data.as_variable_width().unwrap();
1920 assert_eq!(
1921 data.offsets,
1922 LanceBuffer::reinterpret_vec(vec![0, 5, 5, 10, 11, 12, 12, 12])
1923 );
1924
1925 assert_eq!(data.data, LanceBuffer::copy_slice(b"helloworldab"));
1926
1927 let strings1 = StringArray::from(vec![Some("a"), Some("bc")]);
1929 let strings2 = StringArray::from(vec![Some("def")]);
1930
1931 let arrays = &[strings1, strings2]
1932 .iter()
1933 .map(|arr| Arc::new(arr.clone()) as ArrayRef)
1934 .collect::<Vec<_>>();
1935
1936 let block = DataBlock::from_arrays(arrays, 3);
1937
1938 assert_eq!(block.num_values(), 3);
1939 let data = block.as_variable_width().unwrap();
1941 assert_eq!(data.offsets, LanceBuffer::reinterpret_vec(vec![0, 1, 3, 6]));
1942 assert_eq!(data.data, LanceBuffer::copy_slice(b"abcdef"));
1943 }
1944
1945 #[test]
1946 fn test_string_sliced() {
1947 let check = |arr: Vec<StringArray>, expected_off: Vec<i32>, expected_data: &[u8]| {
1948 let arrs = arr
1949 .into_iter()
1950 .map(|a| Arc::new(a) as ArrayRef)
1951 .collect::<Vec<_>>();
1952 let num_rows = arrs.iter().map(|a| a.len()).sum::<usize>() as u64;
1953 let data = DataBlock::from_arrays(&arrs, num_rows);
1954
1955 assert_eq!(data.num_values(), num_rows);
1956
1957 let data = data.as_variable_width().unwrap();
1958 assert_eq!(data.offsets, LanceBuffer::reinterpret_vec(expected_off));
1959 assert_eq!(data.data, LanceBuffer::copy_slice(expected_data));
1960 };
1961
1962 let string = StringArray::from(vec![Some("hello"), Some("world")]);
1963 check(vec![string.slice(1, 1)], vec![0, 5], b"world");
1964 check(vec![string.slice(0, 1)], vec![0, 5], b"hello");
1965 check(
1966 vec![string.slice(0, 1), string.slice(1, 1)],
1967 vec![0, 5, 10],
1968 b"helloworld",
1969 );
1970
1971 let string2 = StringArray::from(vec![Some("foo"), Some("bar")]);
1972 check(
1973 vec![string.slice(0, 1), string2.slice(0, 1)],
1974 vec![0, 5, 8],
1975 b"hellofoo",
1976 );
1977 }
1978
1979 #[test]
1980 fn test_large() {
1981 let arr = LargeBinaryArray::from_vec(vec![b"hello", b"world"]);
1982 let data = DataBlock::from_array(arr);
1983
1984 assert_eq!(data.num_values(), 2);
1985 let data = data.as_variable_width().unwrap();
1986 assert_eq!(data.bits_per_offset, 64);
1987 assert_eq!(data.num_values, 2);
1988 assert_eq!(data.data, LanceBuffer::copy_slice(b"helloworld"));
1989 assert_eq!(
1990 data.offsets,
1991 LanceBuffer::reinterpret_vec(vec![0_u64, 5, 10])
1992 );
1993 }
1994
1995 #[test]
1996 fn test_dictionary_indices_normalized() {
1997 let arr1 = DictionaryArray::<Int8Type>::from_iter([Some("a"), Some("a"), Some("b")]);
1998 let arr2 = DictionaryArray::<Int8Type>::from_iter([Some("b"), Some("c")]);
1999
2000 let data = DataBlock::from_arrays(&[Arc::new(arr1), Arc::new(arr2)], 5);
2001
2002 assert_eq!(data.num_values(), 5);
2003 let data = data.as_dictionary().unwrap();
2004 let indices = data.indices;
2005 assert_eq!(indices.bits_per_value, 8);
2006 assert_eq!(indices.num_values, 5);
2007 assert_eq!(
2008 indices.data,
2009 LanceBuffer::reinterpret_vec::<i8>(vec![0, 0, 1, 2, 3])
2013 );
2014
2015 let items = data.dictionary.as_variable_width().unwrap();
2016 assert_eq!(items.bits_per_offset, 32);
2017 assert_eq!(items.num_values, 4);
2018 assert_eq!(items.data, LanceBuffer::copy_slice(b"abbc"));
2019 assert_eq!(
2020 items.offsets,
2021 LanceBuffer::reinterpret_vec(vec![0, 1, 2, 3, 4],)
2022 );
2023 }
2024
2025 #[test]
2026 fn test_dictionary_nulls() {
2027 let arr1 = DictionaryArray::<Int8Type>::from_iter([None, Some("a"), Some("b")]);
2031 let arr2 = DictionaryArray::<Int8Type>::from_iter([Some("c"), None]);
2032
2033 let data = DataBlock::from_arrays(&[Arc::new(arr1), Arc::new(arr2)], 5);
2034
2035 let check_common = |data: DataBlock| {
2036 assert_eq!(data.num_values(), 5);
2037 let dict = data.as_dictionary().unwrap();
2038
2039 let nullable_items = dict.dictionary.as_nullable().unwrap();
2040 assert_eq!(nullable_items.nulls, LanceBuffer::from(vec![0b00000111]));
2041 assert_eq!(nullable_items.data.num_values(), 4);
2042
2043 let items = nullable_items.data.as_variable_width().unwrap();
2044 assert_eq!(items.bits_per_offset, 32);
2045 assert_eq!(items.num_values, 4);
2046 assert_eq!(items.data, LanceBuffer::copy_slice(b"abc"));
2047 assert_eq!(
2048 items.offsets,
2049 LanceBuffer::reinterpret_vec(vec![0, 1, 2, 3, 3],)
2050 );
2051
2052 let indices = dict.indices;
2053 assert_eq!(indices.bits_per_value, 8);
2054 assert_eq!(indices.num_values, 5);
2055 assert_eq!(
2056 indices.data,
2057 LanceBuffer::reinterpret_vec::<i8>(vec![3, 0, 1, 2, 3])
2058 );
2059 };
2060 check_common(data);
2061
2062 let items = StringArray::from(vec![Some("a"), Some("b"), Some("c"), None]);
2064 let indices = Int8Array::from(vec![Some(3), Some(0), Some(1), Some(2), Some(3)]);
2065 let dict = DictionaryArray::new(indices, Arc::new(items));
2066
2067 let data = DataBlock::from_array(dict);
2068
2069 check_common(data);
2070 }
2071
2072 #[test]
2073 fn test_dictionary_cannot_add_null() {
2074 let items = StringArray::from(
2076 (0..256)
2077 .map(|i| Some(String::from_utf8(vec![0; i]).unwrap()))
2078 .collect::<Vec<_>>(),
2079 );
2080 let indices = UInt8Array::from(
2082 (0..=256)
2083 .map(|i| if i == 256 { None } else { Some(i as u8) })
2084 .collect::<Vec<_>>(),
2085 );
2086 let dict = DictionaryArray::new(indices, Arc::new(items));
2089 let data = DataBlock::from_array(dict);
2090
2091 assert_eq!(data.num_values(), 257);
2092
2093 let dict = data.as_dictionary().unwrap();
2094
2095 assert_eq!(dict.indices.bits_per_value, 32);
2096 assert_eq!(
2097 dict.indices.data,
2098 LanceBuffer::reinterpret_vec((0_u32..257).collect::<Vec<_>>())
2099 );
2100
2101 let nullable_items = dict.dictionary.as_nullable().unwrap();
2102 let null_buffer = NullBuffer::new(BooleanBuffer::new(
2103 nullable_items.nulls.into_buffer(),
2104 0,
2105 257,
2106 ));
2107 for i in 0..256 {
2108 assert!(!null_buffer.is_null(i));
2109 }
2110 assert!(null_buffer.is_null(256));
2111
2112 assert_eq!(
2113 nullable_items.data.as_variable_width().unwrap().data.len(),
2114 32640
2115 );
2116 }
2117
2118 #[test]
2119 fn test_all_null() {
2120 for data_type in [
2121 DataType::UInt32,
2122 DataType::FixedSizeBinary(2),
2123 DataType::List(Arc::new(Field::new("item", DataType::UInt32, true))),
2124 DataType::Struct(Fields::from(vec![Field::new("a", DataType::UInt32, true)])),
2125 ] {
2126 let block = DataBlock::AllNull(AllNullDataBlock { num_values: 10 });
2127 let arr = block.into_arrow(data_type.clone(), true).unwrap();
2128 let arr = make_array(arr);
2129 let expected = new_null_array(&data_type, 10);
2130 assert_eq!(&arr, &expected);
2131 }
2132 }
2133
2134 #[test]
2135 fn test_dictionary_cannot_concatenate() {
2136 let items = StringArray::from(
2138 (0..256)
2139 .map(|i| Some(String::from_utf8(vec![0; i]).unwrap()))
2140 .collect::<Vec<_>>(),
2141 );
2142 let other_items = StringArray::from(
2144 (0..256)
2145 .map(|i| Some(String::from_utf8(vec![1; i + 1]).unwrap()))
2146 .collect::<Vec<_>>(),
2147 );
2148 let indices = UInt8Array::from_iter_values(0..=255);
2149 let dict1 = DictionaryArray::new(indices.clone(), Arc::new(items));
2150 let dict2 = DictionaryArray::new(indices, Arc::new(other_items));
2151 let data = DataBlock::from_arrays(&[Arc::new(dict1), Arc::new(dict2)], 512);
2152 assert_eq!(data.num_values(), 512);
2153
2154 let dict = data.as_dictionary().unwrap();
2155
2156 assert_eq!(dict.indices.bits_per_value, 32);
2157 assert_eq!(
2158 dict.indices.data,
2159 LanceBuffer::reinterpret_vec::<u32>((0..512).collect::<Vec<_>>())
2160 );
2161 assert_eq!(
2163 dict.dictionary.as_variable_width().unwrap().data.len(),
2164 65536
2165 );
2166 }
2167
2168 #[test]
2169 fn test_data_size() {
2170 let mut rng = rand_xoshiro::Xoshiro256PlusPlus::seed_from_u64(DEFAULT_SEED.0);
2171 let mut genn = array::rand::<Int32Type>().with_nulls(&[false, false, false]);
2173
2174 let arr = genn.generate(RowCount::from(3), &mut rng).unwrap();
2175 let block = DataBlock::from_array(arr.clone());
2176 assert!(block.data_size() == arr.get_buffer_memory_size() as u64);
2177
2178 let arr = genn.generate(RowCount::from(400), &mut rng).unwrap();
2179 let block = DataBlock::from_array(arr.clone());
2180 assert!(block.data_size() == arr.get_buffer_memory_size() as u64);
2181
2182 let mut genn = array::rand::<Int32Type>().with_nulls(&[false, true, false]);
2184 let arr = genn.generate(RowCount::from(3), &mut rng).unwrap();
2185 let block = DataBlock::from_array(arr.clone());
2186
2187 let array_data = arr.to_data();
2188 let total_buffer_size: usize = array_data.buffers().iter().map(|buffer| buffer.len()).sum();
2189 let array_nulls_size_in_bytes = arr.nulls().unwrap().len().div_ceil(8);
2191 assert!(block.data_size() == (total_buffer_size + array_nulls_size_in_bytes) as u64);
2192
2193 let arr = genn.generate(RowCount::from(400), &mut rng).unwrap();
2194 let block = DataBlock::from_array(arr.clone());
2195
2196 let array_data = arr.to_data();
2197 let total_buffer_size: usize = array_data.buffers().iter().map(|buffer| buffer.len()).sum();
2198 let array_nulls_size_in_bytes = arr.nulls().unwrap().len().div_ceil(8);
2199 assert!(block.data_size() == (total_buffer_size + array_nulls_size_in_bytes) as u64);
2200
2201 let mut genn = array::rand::<Int32Type>().with_nulls(&[true, true, false]);
2202 let arr = genn.generate(RowCount::from(3), &mut rng).unwrap();
2203 let block = DataBlock::from_array(arr.clone());
2204
2205 let array_data = arr.to_data();
2206 let total_buffer_size: usize = array_data.buffers().iter().map(|buffer| buffer.len()).sum();
2207 let array_nulls_size_in_bytes = arr.nulls().unwrap().len().div_ceil(8);
2208 assert!(block.data_size() == (total_buffer_size + array_nulls_size_in_bytes) as u64);
2209
2210 let arr = genn.generate(RowCount::from(400), &mut rng).unwrap();
2211 let block = DataBlock::from_array(arr.clone());
2212
2213 let array_data = arr.to_data();
2214 let total_buffer_size: usize = array_data.buffers().iter().map(|buffer| buffer.len()).sum();
2215 let array_nulls_size_in_bytes = arr.nulls().unwrap().len().div_ceil(8);
2216 assert!(block.data_size() == (total_buffer_size + array_nulls_size_in_bytes) as u64);
2217
2218 let mut genn = array::rand::<Int32Type>().with_nulls(&[false, true, false]);
2219 let arr1 = genn.generate(RowCount::from(3), &mut rng).unwrap();
2220 let arr2 = genn.generate(RowCount::from(3), &mut rng).unwrap();
2221 let arr3 = genn.generate(RowCount::from(3), &mut rng).unwrap();
2222 let block = DataBlock::from_arrays(&[arr1.clone(), arr2.clone(), arr3.clone()], 9);
2223
2224 let concatenated_array = arrow_select::concat::concat(&[
2225 &*Arc::new(arr1.clone()) as &dyn Array,
2226 &*Arc::new(arr2.clone()) as &dyn Array,
2227 &*Arc::new(arr3.clone()) as &dyn Array,
2228 ])
2229 .unwrap();
2230 let total_buffer_size: usize = concatenated_array
2231 .to_data()
2232 .buffers()
2233 .iter()
2234 .map(|buffer| buffer.len())
2235 .sum();
2236
2237 let total_nulls_size_in_bytes = concatenated_array.nulls().unwrap().len().div_ceil(8);
2238 assert!(block.data_size() == (total_buffer_size + total_nulls_size_in_bytes) as u64);
2239 }
2240
2241 #[test]
2242 fn variable_width_rejects_out_of_bounds_offsets_without_optional_validation() {
2243 let block = VariableWidthBlock {
2244 data: LanceBuffer::copy_slice(b"alphabetagamma"),
2245 offsets: LanceBuffer::reinterpret_vec(vec![0_i32, 5, 9, 100_000]),
2246 bits_per_offset: 32,
2247 num_values: 3,
2248 block_info: BlockInfo::new(),
2249 };
2250
2251 let error = block
2252 .into_arrow(DataType::Binary, false)
2253 .expect_err("out-of-bounds offsets must be rejected");
2254 assert!(
2255 matches!(error, Error::CorruptFile { .. }),
2256 "expected CorruptFile, got: {error}"
2257 );
2258 let message = error.to_string();
2259 assert!(
2260 message.contains("100000") && message.contains("data buffer size: 14 bytes"),
2261 "error must report the offending offset and the data buffer size: {message}"
2262 );
2263 }
2264
2265 #[rstest]
2266 #[case::binary_i32_tail_out_of_bounds(
2267 DataType::Binary,
2268 LanceBuffer::reinterpret_vec(vec![0_i32, 5, 9, 100_000]),
2269 32,
2270 3,
2271 b"alphabetagamma".as_slice()
2272 )]
2273 #[case::utf8_i32_tail_out_of_bounds(
2274 DataType::Utf8,
2275 LanceBuffer::reinterpret_vec(vec![0_i32, 5, 9, 100_000]),
2276 32,
2277 3,
2278 b"alphabetagamma".as_slice()
2279 )]
2280 #[case::large_binary_i64_tail_out_of_bounds(
2281 DataType::LargeBinary,
2282 LanceBuffer::reinterpret_vec(vec![0_i64, 5, 9, 100_000]),
2283 64,
2284 3,
2285 b"alphabetagamma".as_slice()
2286 )]
2287 #[case::large_utf8_i64_tail_out_of_bounds(
2288 DataType::LargeUtf8,
2289 LanceBuffer::reinterpret_vec(vec![0_i64, 5, 9, 100_000]),
2290 64,
2291 3,
2292 b"alphabetagamma".as_slice()
2293 )]
2294 #[case::binary_negative_offset(
2295 DataType::Binary,
2296 LanceBuffer::reinterpret_vec(vec![0_i32, -1, 9, 14]),
2297 32,
2298 3,
2299 b"alphabetagamma".as_slice()
2300 )]
2301 #[case::binary_non_monotonic_offsets(
2302 DataType::Binary,
2303 LanceBuffer::reinterpret_vec(vec![0_i32, 9, 5, 14]),
2304 32,
2305 3,
2306 b"alphabetagamma".as_slice()
2307 )]
2308 #[case::binary_interior_offset_out_of_bounds(
2309 DataType::Binary,
2310 LanceBuffer::reinterpret_vec(vec![0_i32, 100_000, 100_000, 14]),
2311 32,
2312 3,
2313 b"alphabetagamma".as_slice()
2314 )]
2315 #[case::binary_offsets_buffer_too_short(
2316 DataType::Binary,
2317 LanceBuffer::reinterpret_vec(vec![0_i32, 5, 9]),
2318 32,
2319 3,
2320 b"alphabetagamma".as_slice()
2321 )]
2322 #[case::utf8_invalid_byte_sequence(
2323 DataType::Utf8,
2324 LanceBuffer::reinterpret_vec(vec![0_i32, 1, 2, 3]),
2325 32,
2326 3,
2327 &[b'a', 0xFF, b'b']
2328 )]
2329 #[case::utf8_offset_splits_multibyte_char(
2330 DataType::Utf8,
2331 LanceBuffer::reinterpret_vec(vec![0_i32, 1, 2]),
2332 32,
2333 2,
2334 "é".as_bytes()
2335 )]
2336 #[case::large_utf8_invalid_byte_sequence(
2337 DataType::LargeUtf8,
2338 LanceBuffer::reinterpret_vec(vec![0_i64, 1, 2, 3]),
2339 64,
2340 3,
2341 &[b'a', 0xFF, b'b']
2342 )]
2343 fn variable_width_rejects_malformed_layout(
2344 #[case] data_type: DataType,
2345 #[case] offsets: LanceBuffer,
2346 #[case] bits_per_offset: u8,
2347 #[case] num_values: u64,
2348 #[case] data: &[u8],
2349 ) {
2350 let block = VariableWidthBlock {
2351 data: LanceBuffer::copy_slice(data),
2352 offsets,
2353 bits_per_offset,
2354 num_values,
2355 block_info: BlockInfo::new(),
2356 };
2357
2358 for validate in [false, true] {
2362 let error = DataBlock::VariableWidth(block.clone())
2363 .into_arrow(data_type.clone(), validate)
2364 .expect_err("malformed variable-width layout must be rejected");
2365 assert!(
2366 matches!(error, Error::CorruptFile { .. }),
2367 "expected CorruptFile with validate={validate}, got: {error}"
2368 );
2369 }
2370 }
2371
2372 #[test]
2373 fn dictionary_rejects_malformed_variable_width_values_without_optional_validation() {
2374 let values = VariableWidthBlock {
2375 data: LanceBuffer::copy_slice(b"alphabetagamma"),
2376 offsets: LanceBuffer::reinterpret_vec(vec![0_i32, 5, 9, 100_000]),
2377 bits_per_offset: 32,
2378 num_values: 3,
2379 block_info: BlockInfo::new(),
2380 };
2381 let dictionary = DataBlock::Dictionary(DictionaryDataBlock {
2382 indices: FixedWidthDataBlock {
2383 data: LanceBuffer::reinterpret_vec(vec![0_i32, 1, 2]),
2384 bits_per_value: 32,
2385 num_values: 3,
2386 block_info: BlockInfo::new(),
2387 },
2388 dictionary: Box::new(DataBlock::VariableWidth(values)),
2389 });
2390
2391 let data_type = DataType::Dictionary(Box::new(DataType::Int32), Box::new(DataType::Binary));
2392 let error = dictionary
2393 .into_arrow(data_type, false)
2394 .expect_err("dictionary with out-of-bounds value offsets must be rejected");
2395 assert!(
2396 matches!(error, Error::CorruptFile { .. }),
2397 "expected CorruptFile, got: {error}"
2398 );
2399 }
2400
2401 #[rstest]
2402 #[case::binary(Arc::new(BinaryArray::from_vec(vec![b"alpha", b"", b"gamma"])) as ArrayRef)]
2403 #[case::large_binary(
2404 Arc::new(LargeBinaryArray::from_vec(vec![b"alpha", b"", b"gamma"])) as ArrayRef
2405 )]
2406 #[case::utf8(Arc::new(StringArray::from(vec!["héllo", "", "world"])) as ArrayRef)]
2407 #[case::large_utf8(Arc::new(LargeStringArray::from(vec!["héllo", "", "world"])) as ArrayRef)]
2408 fn variable_width_valid_data_survives_mandatory_validation(#[case] array: ArrayRef) {
2409 let block = DataBlock::from_array(array.clone());
2410 for validate in [false, true] {
2411 let round_tripped = make_array(
2412 block
2413 .clone()
2414 .into_arrow(array.data_type().clone(), validate)
2415 .unwrap(),
2416 );
2417 assert_eq!(&round_tripped, &array);
2418 }
2419 }
2420}