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vortex_array/builders/
list.rs

1// SPDX-License-Identifier: Apache-2.0
2// SPDX-FileCopyrightText: Copyright the Vortex contributors
3
4use std::any::Any;
5use std::sync::Arc;
6
7use vortex_error::VortexExpect;
8use vortex_error::VortexResult;
9use vortex_error::vortex_bail;
10use vortex_error::vortex_ensure;
11use vortex_error::vortex_panic;
12use vortex_mask::Mask;
13
14use crate::ArrayRef;
15use crate::Canonical;
16use crate::DynArray;
17use crate::IntoArray;
18use crate::arrays::ListArray;
19use crate::builders::ArrayBuilder;
20use crate::builders::DEFAULT_BUILDER_CAPACITY;
21use crate::builders::LazyBitBufferBuilder;
22use crate::builders::PrimitiveBuilder;
23use crate::builders::builder_with_capacity;
24use crate::canonical::ToCanonical;
25use crate::dtype::DType;
26use crate::dtype::IntegerPType;
27use crate::dtype::Nullability;
28use crate::dtype::Nullability::NonNullable;
29use crate::match_each_integer_ptype;
30use crate::scalar::ListScalar;
31use crate::scalar::Scalar;
32
33/// The builder for building a [`ListArray`], parametrized by the [`IntegerPType`] of the `offsets`
34/// builder.
35pub struct ListBuilder<O: IntegerPType> {
36    /// The [`DType`] of the [`ListArray`]. This **must** be a [`DType::List`].
37    dtype: DType,
38
39    /// The builder for the underlying elements of the [`ListArray`].
40    elements_builder: Box<dyn ArrayBuilder>,
41
42    /// The builder for the `offsets` into the `elements` array.
43    offsets_builder: PrimitiveBuilder<O>,
44
45    /// The null map builder of the [`ListArray`].
46    nulls: LazyBitBufferBuilder,
47}
48
49impl<O: IntegerPType> ListBuilder<O> {
50    /// Creates a new `ListBuilder` with a capacity of [`DEFAULT_BUILDER_CAPACITY`].
51    pub fn new(value_dtype: Arc<DType>, nullability: Nullability) -> Self {
52        Self::with_capacity(
53            value_dtype,
54            nullability,
55            // We arbitrarily choose 2 times the number of list scalars for the capacity of the
56            // elements builder since we cannot know this ahead of time.
57            DEFAULT_BUILDER_CAPACITY * 2,
58            DEFAULT_BUILDER_CAPACITY,
59        )
60    }
61
62    /// Create a new [`ListArray`] builder with a with the given `capacity`, as well as an initial
63    /// capacity for the `elements` builder (since we cannot know that ahead of time solely based on
64    /// the outer array `capacity`).
65    ///
66    /// # Notes
67    ///
68    /// The number of offsets is one more than the length (# of list scalars) in the array.
69    pub fn with_capacity(
70        value_dtype: Arc<DType>,
71        nullability: Nullability,
72        elements_capacity: usize,
73        capacity: usize,
74    ) -> Self {
75        let elements_builder = builder_with_capacity(value_dtype.as_ref(), elements_capacity);
76        let mut offsets_builder = PrimitiveBuilder::<O>::with_capacity(NonNullable, capacity + 1);
77
78        // The first offset is always 0 and represents an empty list.
79        offsets_builder.append_zero();
80
81        Self {
82            elements_builder,
83            offsets_builder,
84            nulls: LazyBitBufferBuilder::new(capacity),
85            dtype: DType::List(value_dtype, nullability),
86        }
87    }
88
89    /// Appends an array as a single non-null list entry to the builder.
90    ///
91    /// The input `array` must have the same dtype as the element dtype of this list builder.
92    ///
93    /// Note that the list entry will be non-null but the elements themselves are allowed to be null
94    /// (only if the elements [`DType`] in nullable, of course).
95    pub fn append_array_as_list(&mut self, array: &ArrayRef) -> VortexResult<()> {
96        vortex_ensure!(
97            array.dtype() == self.element_dtype(),
98            "Array dtype {:?} does not match list element dtype {:?}",
99            array.dtype(),
100            self.element_dtype()
101        );
102
103        self.elements_builder.extend_from_array(array);
104        self.nulls.append_non_null();
105        self.offsets_builder.append_value(
106            O::from_usize(self.elements_builder.len())
107                .vortex_expect("Failed to convert from usize to O"),
108        );
109
110        Ok(())
111    }
112
113    /// Appends a list `value` to the builder.
114    pub fn append_value(&mut self, value: ListScalar) -> VortexResult<()> {
115        match value.elements() {
116            None => {
117                if self.dtype.nullability() == NonNullable {
118                    vortex_bail!("Cannot append null value to non-nullable list");
119                }
120                self.append_null();
121            }
122            Some(elements) => {
123                for scalar in elements {
124                    // TODO(connor): This is slow, we should be able to append multiple values at
125                    // once, or the list scalar should hold an Array
126                    self.elements_builder.append_scalar(&scalar)?;
127                }
128
129                self.nulls.append_non_null();
130                self.offsets_builder.append_value(
131                    O::from_usize(self.elements_builder.len())
132                        .vortex_expect("Failed to convert from usize to O"),
133                );
134            }
135        }
136
137        Ok(())
138    }
139
140    /// Finishes the builder directly into a [`ListArray`].
141    pub fn finish_into_list(&mut self) -> ListArray {
142        assert_eq!(
143            self.offsets_builder.len(),
144            self.nulls.len() + 1,
145            "offsets length must be one more than nulls length."
146        );
147
148        ListArray::try_new(
149            self.elements_builder.finish(),
150            self.offsets_builder.finish(),
151            self.nulls.finish_with_nullability(self.dtype.nullability()),
152        )
153        .vortex_expect("Buffer, offsets, and validity must have same length.")
154    }
155
156    /// The [`DType`] of the inner elements. Note that this is **not** the same as the [`DType`] of
157    /// the outer `List`.
158    pub fn element_dtype(&self) -> &DType {
159        let DType::List(element_dtype, _) = &self.dtype else {
160            vortex_panic!("`ListBuilder` has an incorrect dtype: {}", self.dtype);
161        };
162
163        element_dtype
164    }
165}
166
167impl<O: IntegerPType> ArrayBuilder for ListBuilder<O> {
168    fn as_any(&self) -> &dyn Any {
169        self
170    }
171
172    fn as_any_mut(&mut self) -> &mut dyn Any {
173        self
174    }
175
176    fn dtype(&self) -> &DType {
177        &self.dtype
178    }
179
180    fn len(&self) -> usize {
181        self.nulls.len()
182    }
183
184    fn append_zeros(&mut self, n: usize) {
185        let curr_len = self.elements_builder.len();
186        for _ in 0..n {
187            self.offsets_builder.append_value(
188                O::from_usize(curr_len).vortex_expect("Failed to convert from usize to <O>"),
189            )
190        }
191        self.nulls.append_n_non_nulls(n);
192    }
193
194    unsafe fn append_nulls_unchecked(&mut self, n: usize) {
195        let curr_len = self.elements_builder.len();
196        for _ in 0..n {
197            // A list with a null element is can be a list with a zero-span offset and a validity
198            // bit set
199            self.offsets_builder.append_value(
200                O::from_usize(curr_len).vortex_expect("Failed to convert from usize to <O>"),
201            )
202        }
203        self.nulls.append_n_nulls(n);
204    }
205
206    fn append_scalar(&mut self, scalar: &Scalar) -> VortexResult<()> {
207        vortex_ensure!(
208            scalar.dtype() == self.dtype(),
209            "ListBuilder expected scalar with dtype {}, got {}",
210            self.dtype(),
211            scalar.dtype()
212        );
213
214        self.append_value(scalar.as_list())
215    }
216
217    unsafe fn extend_from_array_unchecked(&mut self, array: &ArrayRef) {
218        let list = array.to_listview();
219        if list.is_empty() {
220            return;
221        }
222
223        // Append validity information.
224        self.nulls.append_validity_mask(
225            array
226                .validity_mask()
227                .vortex_expect("validity_mask in extend_from_array_unchecked"),
228        );
229
230        // Note that `ListViewArray` has `n` offsets and sizes, not `n+1` offsets like `ListArray`.
231        let elements = list.elements();
232        let offsets = list.offsets().to_primitive();
233        let sizes = list.sizes().to_primitive();
234
235        fn extend_inner<O, OffsetType, SizeType>(
236            builder: &mut ListBuilder<O>,
237            new_elements: &ArrayRef,
238            new_offsets: &[OffsetType],
239            new_sizes: &[SizeType],
240        ) where
241            O: IntegerPType,
242            OffsetType: IntegerPType,
243            SizeType: IntegerPType,
244        {
245            let num_lists = new_offsets.len();
246            debug_assert_eq!(num_lists, new_sizes.len());
247
248            let mut curr_offset = builder.elements_builder.len();
249            let mut offsets_range = builder.offsets_builder.uninit_range(num_lists);
250
251            // We need to append each list individually, converting from `ListViewArray` format to
252            // the `ListArray` format that `ListBuilder` expects.
253            for i in 0..new_offsets.len() {
254                let offset: usize = new_offsets[i].as_();
255                let size: usize = new_sizes[i].as_();
256
257                if size > 0 {
258                    let list_elements = new_elements
259                        .slice(offset..offset + size)
260                        .vortex_expect("list builder slice");
261                    builder.elements_builder.extend_from_array(&list_elements);
262                    curr_offset += size;
263                }
264
265                let new_offset =
266                    O::from_usize(curr_offset).vortex_expect("Failed to convert offset");
267
268                offsets_range.set_value(i, new_offset);
269            }
270
271            // SAFETY: We have initialized all `num_lists` values, and since the `offsets` array is
272            // non-nullable, we are done.
273            unsafe { offsets_range.finish() };
274        }
275
276        match_each_integer_ptype!(offsets.ptype(), |OffsetType| {
277            match_each_integer_ptype!(sizes.ptype(), |SizeType| {
278                extend_inner(
279                    self,
280                    elements,
281                    offsets.as_slice::<OffsetType>(),
282                    sizes.as_slice::<SizeType>(),
283                )
284            })
285        })
286    }
287
288    fn reserve_exact(&mut self, additional: usize) {
289        self.elements_builder.reserve_exact(additional);
290        self.offsets_builder.reserve_exact(additional);
291        self.nulls.reserve_exact(additional);
292    }
293
294    unsafe fn set_validity_unchecked(&mut self, validity: Mask) {
295        self.nulls = LazyBitBufferBuilder::new(validity.len());
296        self.nulls.append_validity_mask(validity);
297    }
298
299    fn finish(&mut self) -> ArrayRef {
300        self.finish_into_list().into_array()
301    }
302
303    fn finish_into_canonical(&mut self) -> Canonical {
304        Canonical::List(self.finish_into_list().to_listview())
305    }
306}
307
308#[cfg(test)]
309mod tests {
310    use std::sync::Arc;
311
312    use Nullability::NonNullable;
313    use Nullability::Nullable;
314    use vortex_buffer::buffer;
315
316    use crate::IntoArray;
317    use crate::LEGACY_SESSION;
318    use crate::ToCanonical;
319    use crate::array::DynArray;
320    use crate::arrays::ChunkedArray;
321    use crate::arrays::PrimitiveArray;
322    use crate::assert_arrays_eq;
323    use crate::builders::ArrayBuilder;
324    use crate::builders::list::ListArray;
325    use crate::builders::list::ListBuilder;
326    use crate::dtype::DType;
327    use crate::dtype::IntegerPType;
328    use crate::dtype::Nullability;
329    use crate::dtype::PType::I32;
330    use crate::executor::VortexSessionExecute;
331    use crate::scalar::Scalar;
332    use crate::validity::Validity;
333    use crate::vtable::ValidityHelper;
334
335    #[test]
336    fn test_empty() {
337        let mut builder =
338            ListBuilder::<u32>::with_capacity(Arc::new(I32.into()), NonNullable, 0, 0);
339
340        let list = builder.finish();
341        assert_eq!(list.len(), 0);
342    }
343
344    #[test]
345    fn test_values() {
346        let dtype: Arc<DType> = Arc::new(I32.into());
347        let mut builder = ListBuilder::<u32>::with_capacity(dtype.clone(), NonNullable, 0, 0);
348
349        builder
350            .append_value(
351                Scalar::list(
352                    dtype.clone(),
353                    vec![1i32.into(), 2i32.into(), 3i32.into()],
354                    NonNullable,
355                )
356                .as_list(),
357            )
358            .unwrap();
359
360        builder
361            .append_value(
362                Scalar::list(
363                    dtype,
364                    vec![4i32.into(), 5i32.into(), 6i32.into()],
365                    NonNullable,
366                )
367                .as_list(),
368            )
369            .unwrap();
370
371        let list = builder.finish();
372        assert_eq!(list.len(), 2);
373
374        let list_array = list.to_listview();
375
376        assert_eq!(list_array.list_elements_at(0).unwrap().len(), 3);
377        assert_eq!(list_array.list_elements_at(1).unwrap().len(), 3);
378    }
379
380    #[test]
381    fn test_append_empty_list() {
382        let dtype: Arc<DType> = Arc::new(I32.into());
383        let mut builder = ListBuilder::<u32>::with_capacity(dtype.clone(), NonNullable, 0, 0);
384
385        assert!(
386            builder
387                .append_value(Scalar::list_empty(dtype, NonNullable).as_list())
388                .is_ok()
389        )
390    }
391
392    #[test]
393    fn test_nullable_values() {
394        let dtype: Arc<DType> = Arc::new(I32.into());
395        let mut builder = ListBuilder::<u32>::with_capacity(dtype.clone(), Nullable, 0, 0);
396
397        builder
398            .append_value(
399                Scalar::list(
400                    dtype.clone(),
401                    vec![1i32.into(), 2i32.into(), 3i32.into()],
402                    NonNullable,
403                )
404                .as_list(),
405            )
406            .unwrap();
407
408        builder
409            .append_value(Scalar::list_empty(dtype.clone(), NonNullable).as_list())
410            .unwrap();
411
412        builder
413            .append_value(
414                Scalar::list(
415                    dtype,
416                    vec![4i32.into(), 5i32.into(), 6i32.into()],
417                    NonNullable,
418                )
419                .as_list(),
420            )
421            .unwrap();
422
423        let list = builder.finish();
424        assert_eq!(list.len(), 3);
425
426        let list_array = list.to_listview();
427
428        assert_eq!(list_array.list_elements_at(0).unwrap().len(), 3);
429        assert_eq!(list_array.list_elements_at(1).unwrap().len(), 0);
430        assert_eq!(list_array.list_elements_at(2).unwrap().len(), 3);
431    }
432
433    fn test_extend_builder_gen<O: IntegerPType>() {
434        let list = ListArray::from_iter_opt_slow::<O, _, _>(
435            [Some(vec![0, 1, 2]), None, Some(vec![4, 5])],
436            Arc::new(I32.into()),
437        )
438        .unwrap();
439        assert_eq!(list.len(), 3);
440
441        let mut ctx = LEGACY_SESSION.create_execution_ctx();
442
443        let mut builder = ListBuilder::<O>::with_capacity(Arc::new(I32.into()), Nullable, 18, 9);
444        builder.extend_from_array(&list);
445        builder.extend_from_array(&list);
446        builder.extend_from_array(&list.slice(0..0).unwrap());
447        builder.extend_from_array(&list.slice(1..3).unwrap());
448
449        let expected = ListArray::from_iter_opt_slow::<O, _, _>(
450            [
451                Some(vec![0, 1, 2]),
452                None,
453                Some(vec![4, 5]),
454                Some(vec![0, 1, 2]),
455                None,
456                Some(vec![4, 5]),
457                None,
458                Some(vec![4, 5]),
459            ],
460            Arc::new(DType::Primitive(I32, NonNullable)),
461        )
462        .unwrap()
463        .to_listview();
464
465        let actual = builder.finish_into_canonical().into_listview();
466
467        assert_arrays_eq!(actual.elements(), expected.elements());
468
469        assert_arrays_eq!(actual.offsets(), expected.offsets());
470
471        assert!(
472            actual
473                .validity()
474                .mask_eq(expected.validity(), &mut ctx)
475                .unwrap(),
476        );
477    }
478
479    #[test]
480    fn test_extend_builder() {
481        test_extend_builder_gen::<i8>();
482        test_extend_builder_gen::<i16>();
483        test_extend_builder_gen::<i32>();
484        test_extend_builder_gen::<i64>();
485
486        test_extend_builder_gen::<u8>();
487        test_extend_builder_gen::<u16>();
488        test_extend_builder_gen::<u32>();
489        test_extend_builder_gen::<u64>();
490    }
491
492    #[test]
493    pub fn test_array_with_gap() {
494        let one_trailing_unused_element = ListArray::try_new(
495            buffer![1, 2, 3, 4].into_array(),
496            buffer![0, 3].into_array(),
497            Validity::NonNullable,
498        )
499        .unwrap();
500
501        let second_array = ListArray::try_new(
502            buffer![5, 6].into_array(),
503            buffer![0, 2].into_array(),
504            Validity::NonNullable,
505        )
506        .unwrap();
507
508        let chunked_list = ChunkedArray::try_new(
509            vec![
510                one_trailing_unused_element.clone().into_array(),
511                second_array.clone().into_array(),
512            ],
513            DType::List(Arc::new(DType::Primitive(I32, NonNullable)), NonNullable),
514        );
515
516        let canon_values = chunked_list.unwrap().to_listview();
517
518        assert_eq!(
519            one_trailing_unused_element.scalar_at(0).unwrap(),
520            canon_values.scalar_at(0).unwrap()
521        );
522        assert_eq!(
523            second_array.scalar_at(0).unwrap(),
524            canon_values.scalar_at(1).unwrap()
525        );
526    }
527
528    #[test]
529    fn test_append_scalar() {
530        let dtype: Arc<DType> = Arc::new(I32.into());
531        let mut builder = ListBuilder::<u64>::with_capacity(dtype.clone(), Nullable, 20, 10);
532
533        // Test appending a valid list.
534        let list_scalar1 = Scalar::list(dtype.clone(), vec![1i32.into(), 2i32.into()], Nullable);
535        builder.append_scalar(&list_scalar1).unwrap();
536
537        // Test appending another list.
538        let list_scalar2 = Scalar::list(
539            dtype.clone(),
540            vec![3i32.into(), 4i32.into(), 5i32.into()],
541            Nullable,
542        );
543        builder.append_scalar(&list_scalar2).unwrap();
544
545        // Test appending null value.
546        let null_scalar = Scalar::null(DType::List(dtype.clone(), Nullable));
547        builder.append_scalar(&null_scalar).unwrap();
548
549        let array = builder.finish_into_list();
550        assert_eq!(array.len(), 3);
551
552        // Check actual values using scalar_at.
553
554        let scalar0 = array.scalar_at(0).unwrap();
555        let list0 = scalar0.as_list();
556        assert_eq!(list0.len(), 2);
557        if let Some(list0_items) = list0.elements() {
558            assert_eq!(list0_items[0].as_primitive().typed_value::<i32>(), Some(1));
559            assert_eq!(list0_items[1].as_primitive().typed_value::<i32>(), Some(2));
560        }
561
562        let scalar1 = array.scalar_at(1).unwrap();
563        let list1 = scalar1.as_list();
564        assert_eq!(list1.len(), 3);
565        if let Some(list1_items) = list1.elements() {
566            assert_eq!(list1_items[0].as_primitive().typed_value::<i32>(), Some(3));
567            assert_eq!(list1_items[1].as_primitive().typed_value::<i32>(), Some(4));
568            assert_eq!(list1_items[2].as_primitive().typed_value::<i32>(), Some(5));
569        }
570
571        let scalar2 = array.scalar_at(2).unwrap();
572        let list2 = scalar2.as_list();
573        assert!(list2.is_null()); // This should be null.
574
575        // Check validity.
576        assert!(array.validity().is_valid(0).unwrap());
577        assert!(array.validity().is_valid(1).unwrap());
578        assert!(!array.validity().is_valid(2).unwrap());
579
580        // Test wrong dtype error.
581        let mut builder = ListBuilder::<u64>::with_capacity(dtype, NonNullable, 20, 10);
582        let wrong_scalar = Scalar::from(42i32);
583        assert!(builder.append_scalar(&wrong_scalar).is_err());
584    }
585
586    #[test]
587    fn test_append_array_as_list() {
588        let dtype: Arc<DType> = Arc::new(I32.into());
589        let mut builder = ListBuilder::<u32>::with_capacity(dtype.clone(), NonNullable, 20, 10);
590
591        // Append a primitive array as a single list entry.
592        let arr1 = buffer![1i32, 2, 3].into_array();
593        builder.append_array_as_list(&arr1).unwrap();
594
595        // Interleave with a list scalar.
596        builder
597            .append_value(
598                Scalar::list(dtype.clone(), vec![10i32.into(), 11i32.into()], NonNullable)
599                    .as_list(),
600            )
601            .unwrap();
602
603        // Append another primitive array as a single list entry.
604        let arr2 = buffer![4i32, 5].into_array();
605        builder.append_array_as_list(&arr2).unwrap();
606
607        // Append an empty array as a single list entry (empty list).
608        let arr3 = buffer![0i32; 0].into_array();
609        builder.append_array_as_list(&arr3).unwrap();
610
611        // Interleave with another list scalar (empty list).
612        builder
613            .append_value(Scalar::list_empty(dtype.clone(), NonNullable).as_list())
614            .unwrap();
615
616        let list = builder.finish_into_list();
617        assert_eq!(list.len(), 5);
618
619        // Verify elements array: [1, 2, 3, 10, 11, 4, 5].
620        assert_arrays_eq!(
621            list.elements(),
622            PrimitiveArray::from_iter([1i32, 2, 3, 10, 11, 4, 5])
623        );
624
625        // Verify offsets array.
626        assert_arrays_eq!(
627            list.offsets(),
628            PrimitiveArray::from_iter([0u32, 3, 5, 7, 7, 7])
629        );
630
631        // Test dtype mismatch error.
632        let mut builder = ListBuilder::<u32>::with_capacity(dtype, NonNullable, 20, 10);
633        let wrong_dtype_arr = buffer![1i64, 2, 3].into_array();
634        assert!(builder.append_array_as_list(&wrong_dtype_arr).is_err());
635    }
636}