1use crate::builder::{PrimitiveDictionaryBuilder, StringDictionaryBuilder};
19use crate::cast::AsArray;
20use crate::iterator::ArrayIter;
21use crate::types::*;
22use crate::{
23 Array, ArrayAccessor, ArrayRef, ArrowNativeTypeOp, PrimitiveArray, Scalar, StringArray,
24 make_array,
25};
26use arrow_buffer::bit_util::set_bit;
27use arrow_buffer::buffer::NullBuffer;
28use arrow_buffer::{ArrowNativeType, BooleanBuffer, BooleanBufferBuilder};
29use arrow_data::ArrayData;
30use arrow_schema::{ArrowError, DataType};
31use std::any::Any;
32use std::sync::Arc;
33
34pub type Int8DictionaryArray = DictionaryArray<Int8Type>;
49
50pub type Int16DictionaryArray = DictionaryArray<Int16Type>;
65
66pub type Int32DictionaryArray = DictionaryArray<Int32Type>;
81
82pub type Int64DictionaryArray = DictionaryArray<Int64Type>;
97
98pub type UInt8DictionaryArray = DictionaryArray<UInt8Type>;
113
114pub type UInt16DictionaryArray = DictionaryArray<UInt16Type>;
129
130pub type UInt32DictionaryArray = DictionaryArray<UInt32Type>;
145
146pub type UInt64DictionaryArray = DictionaryArray<UInt64Type>;
161
162pub struct DictionaryArray<K: ArrowDictionaryKeyType> {
244 data_type: DataType,
245
246 keys: PrimitiveArray<K>,
251
252 values: ArrayRef,
254
255 is_ordered: bool,
257}
258
259impl<K: ArrowDictionaryKeyType> Clone for DictionaryArray<K> {
260 fn clone(&self) -> Self {
261 Self {
262 data_type: self.data_type.clone(),
263 keys: self.keys.clone(),
264 values: self.values.clone(),
265 is_ordered: self.is_ordered,
266 }
267 }
268}
269
270impl<K: ArrowDictionaryKeyType> DictionaryArray<K> {
271 pub fn new(keys: PrimitiveArray<K>, values: ArrayRef) -> Self {
279 Self::try_new(keys, values).unwrap()
280 }
281
282 pub fn try_new(keys: PrimitiveArray<K>, values: ArrayRef) -> Result<Self, ArrowError> {
290 let data_type = DataType::Dictionary(
291 Box::new(keys.data_type().clone()),
292 Box::new(values.data_type().clone()),
293 );
294
295 let zero = K::Native::usize_as(0);
296 let values_len = values.len();
297
298 if let Some((idx, v)) =
299 keys.values().iter().enumerate().find(|(idx, v)| {
300 (v.is_lt(zero) || v.as_usize() >= values_len) && keys.is_valid(*idx)
301 })
302 {
303 return Err(ArrowError::InvalidArgumentError(format!(
304 "Invalid dictionary key {v:?} at index {idx}, expected 0 <= key < {values_len}",
305 )));
306 }
307
308 Ok(Self {
309 data_type,
310 keys,
311 values,
312 is_ordered: false,
313 })
314 }
315
316 pub fn new_scalar<T: Array + 'static>(value: Scalar<T>) -> Scalar<Self> {
318 Scalar::new(Self::new(
319 PrimitiveArray::new(vec![K::Native::usize_as(0)].into(), None),
320 Arc::new(value.into_inner()),
321 ))
322 }
323
324 pub unsafe fn new_unchecked(keys: PrimitiveArray<K>, values: ArrayRef) -> Self {
330 if cfg!(feature = "force_validate") {
331 return Self::new(keys, values);
332 }
333
334 let data_type = DataType::Dictionary(
335 Box::new(keys.data_type().clone()),
336 Box::new(values.data_type().clone()),
337 );
338
339 Self {
340 data_type,
341 keys,
342 values,
343 is_ordered: false,
344 }
345 }
346
347 pub fn into_parts(self) -> (PrimitiveArray<K>, ArrayRef) {
349 (self.keys, self.values)
350 }
351
352 pub fn keys(&self) -> &PrimitiveArray<K> {
354 &self.keys
355 }
356
357 pub fn lookup_key(&self, value: &str) -> Option<K::Native> {
363 let rd_buf: &StringArray = self.values.as_any().downcast_ref::<StringArray>().unwrap();
364
365 (0..rd_buf.len())
366 .position(|i| rd_buf.value(i) == value)
367 .and_then(K::Native::from_usize)
368 }
369
370 pub fn values(&self) -> &ArrayRef {
372 &self.values
373 }
374
375 pub fn value_type(&self) -> DataType {
377 self.values.data_type().clone()
378 }
379
380 pub fn len(&self) -> usize {
382 self.keys.len()
383 }
384
385 pub fn is_empty(&self) -> bool {
387 self.keys.is_empty()
388 }
389
390 pub fn is_ordered(&self) -> bool {
392 self.is_ordered
393 }
394
395 pub fn keys_iter(&self) -> impl Iterator<Item = Option<usize>> + '_ {
397 self.keys.iter().map(|key| key.map(|k| k.as_usize()))
398 }
399
400 pub fn key(&self, i: usize) -> Option<usize> {
403 self.keys.is_valid(i).then(|| self.keys.value(i).as_usize())
404 }
405
406 pub fn slice(&self, offset: usize, length: usize) -> Self {
408 Self {
409 data_type: self.data_type.clone(),
410 keys: self.keys.slice(offset, length),
411 values: self.values.clone(),
412 is_ordered: self.is_ordered,
413 }
414 }
415
416 pub fn downcast_dict<V: 'static>(&self) -> Option<TypedDictionaryArray<'_, K, V>> {
430 let values = self.values.as_any().downcast_ref()?;
431 Some(TypedDictionaryArray {
432 dictionary: self,
433 values,
434 })
435 }
436
437 pub fn with_values(&self, values: ArrayRef) -> Self {
475 assert!(values.len() >= self.values.len());
476 let data_type =
477 DataType::Dictionary(Box::new(K::DATA_TYPE), Box::new(values.data_type().clone()));
478 Self {
479 data_type,
480 keys: self.keys.clone(),
481 values,
482 is_ordered: false,
483 }
484 }
485
486 #[allow(clippy::result_large_err)]
489 pub fn into_primitive_dict_builder<V>(self) -> Result<PrimitiveDictionaryBuilder<K, V>, Self>
490 where
491 V: ArrowPrimitiveType,
492 {
493 if !self.value_type().is_primitive() {
494 return Err(self);
495 }
496
497 let key_array = self.keys().clone();
498 let value_array = self.values().as_primitive::<V>().clone();
499
500 drop(self.keys);
501 drop(self.values);
502
503 let key_builder = key_array.into_builder();
504 let value_builder = value_array.into_builder();
505
506 match (key_builder, value_builder) {
507 (Ok(key_builder), Ok(value_builder)) => Ok(unsafe {
508 PrimitiveDictionaryBuilder::new_from_builders(key_builder, value_builder)
509 }),
510 (Err(key_array), Ok(mut value_builder)) => {
511 Err(Self::try_new(key_array, Arc::new(value_builder.finish())).unwrap())
512 }
513 (Ok(mut key_builder), Err(value_array)) => {
514 Err(Self::try_new(key_builder.finish(), Arc::new(value_array)).unwrap())
515 }
516 (Err(key_array), Err(value_array)) => {
517 Err(Self::try_new(key_array, Arc::new(value_array)).unwrap())
518 }
519 }
520 }
521
522 #[allow(clippy::result_large_err)]
546 pub fn unary_mut<F, V>(self, op: F) -> Result<DictionaryArray<K>, DictionaryArray<K>>
547 where
548 V: ArrowPrimitiveType,
549 F: Fn(V::Native) -> V::Native,
550 {
551 let mut builder: PrimitiveDictionaryBuilder<K, V> = self.into_primitive_dict_builder()?;
552 builder
553 .values_slice_mut()
554 .iter_mut()
555 .for_each(|v| *v = op(*v));
556 Ok(builder.finish())
557 }
558
559 pub fn occupancy(&self) -> BooleanBuffer {
564 let len = self.values.len();
565 let mut builder = BooleanBufferBuilder::new(len);
566 builder.resize(len);
567 let slice = builder.as_slice_mut();
568 match self.keys.nulls().filter(|n| n.null_count() > 0) {
569 Some(n) => {
570 let v = self.keys.values();
571 n.valid_indices()
572 .for_each(|idx| set_bit(slice, v[idx].as_usize()))
573 }
574 None => {
575 let v = self.keys.values();
576 v.iter().for_each(|v| set_bit(slice, v.as_usize()))
577 }
578 }
579 builder.finish()
580 }
581}
582
583impl<T: ArrowDictionaryKeyType> From<ArrayData> for DictionaryArray<T> {
585 fn from(data: ArrayData) -> Self {
586 assert_eq!(
587 data.buffers().len(),
588 1,
589 "DictionaryArray data should contain a single buffer only (keys)."
590 );
591 assert_eq!(
592 data.child_data().len(),
593 1,
594 "DictionaryArray should contain a single child array (values)."
595 );
596
597 if let DataType::Dictionary(key_data_type, _) = data.data_type() {
598 assert_eq!(
599 &T::DATA_TYPE,
600 key_data_type.as_ref(),
601 "DictionaryArray's data type must match, expected {} got {}",
602 T::DATA_TYPE,
603 key_data_type
604 );
605
606 let values = make_array(data.child_data()[0].clone());
607 let data_type = data.data_type().clone();
608
609 let keys = PrimitiveArray::<T>::from(unsafe {
614 data.into_builder()
615 .data_type(T::DATA_TYPE)
616 .child_data(vec![])
617 .build_unchecked()
618 });
619
620 Self {
621 data_type,
622 keys,
623 values,
624 is_ordered: false,
625 }
626 } else {
627 panic!("DictionaryArray must have Dictionary data type.")
628 }
629 }
630}
631
632impl<T: ArrowDictionaryKeyType> From<DictionaryArray<T>> for ArrayData {
633 fn from(array: DictionaryArray<T>) -> Self {
634 let builder = array
635 .keys
636 .into_data()
637 .into_builder()
638 .data_type(array.data_type)
639 .child_data(vec![array.values.to_data()]);
640
641 unsafe { builder.build_unchecked() }
642 }
643}
644
645impl<'a, T: ArrowDictionaryKeyType> FromIterator<Option<&'a str>> for DictionaryArray<T> {
662 fn from_iter<I: IntoIterator<Item = Option<&'a str>>>(iter: I) -> Self {
663 let it = iter.into_iter();
664 let (lower, _) = it.size_hint();
665 let mut builder = StringDictionaryBuilder::with_capacity(lower, 256, 1024);
666 builder.extend(it);
667 builder.finish()
668 }
669}
670
671impl<'a, T: ArrowDictionaryKeyType> FromIterator<&'a str> for DictionaryArray<T> {
686 fn from_iter<I: IntoIterator<Item = &'a str>>(iter: I) -> Self {
687 let it = iter.into_iter();
688 let (lower, _) = it.size_hint();
689 let mut builder = StringDictionaryBuilder::with_capacity(lower, 256, 1024);
690 it.for_each(|i| {
691 builder
692 .append(i)
693 .expect("Unable to append a value to a dictionary array.");
694 });
695
696 builder.finish()
697 }
698}
699
700impl<T: ArrowDictionaryKeyType> super::private::Sealed for DictionaryArray<T> {}
701
702impl<T: ArrowDictionaryKeyType> Array for DictionaryArray<T> {
703 fn as_any(&self) -> &dyn Any {
704 self
705 }
706
707 fn to_data(&self) -> ArrayData {
708 self.clone().into()
709 }
710
711 fn into_data(self) -> ArrayData {
712 self.into()
713 }
714
715 fn data_type(&self) -> &DataType {
716 &self.data_type
717 }
718
719 fn slice(&self, offset: usize, length: usize) -> ArrayRef {
720 Arc::new(self.slice(offset, length))
721 }
722
723 fn len(&self) -> usize {
724 self.keys.len()
725 }
726
727 fn is_empty(&self) -> bool {
728 self.keys.is_empty()
729 }
730
731 fn shrink_to_fit(&mut self) {
732 self.keys.shrink_to_fit();
733 self.values.shrink_to_fit();
734 }
735
736 fn offset(&self) -> usize {
737 self.keys.offset()
738 }
739
740 fn nulls(&self) -> Option<&NullBuffer> {
741 self.keys.nulls()
742 }
743
744 fn logical_nulls(&self) -> Option<NullBuffer> {
745 match self.values.logical_nulls() {
746 None => self.nulls().cloned(),
747 Some(value_nulls) => {
748 let mut builder = BooleanBufferBuilder::new(self.len());
749 match self.keys.nulls() {
750 Some(n) => builder.append_buffer(n.inner()),
751 None => builder.append_n(self.len(), true),
752 }
753 for (idx, k) in self.keys.values().iter().enumerate() {
754 let k = k.as_usize();
755 if k < value_nulls.len() && value_nulls.is_null(k) {
757 builder.set_bit(idx, false);
758 }
759 }
760 Some(builder.finish().into())
761 }
762 }
763 }
764
765 fn logical_null_count(&self) -> usize {
766 match (self.keys.nulls(), self.values.logical_nulls()) {
767 (None, None) => 0,
768 (Some(key_nulls), None) => key_nulls.null_count(),
769 (None, Some(value_nulls)) => self
770 .keys
771 .values()
772 .iter()
773 .filter(|k| value_nulls.is_null(k.as_usize()))
774 .count(),
775 (Some(key_nulls), Some(value_nulls)) => self
776 .keys
777 .values()
778 .iter()
779 .enumerate()
780 .filter(|(idx, k)| key_nulls.is_null(*idx) || value_nulls.is_null(k.as_usize()))
781 .count(),
782 }
783 }
784
785 fn is_nullable(&self) -> bool {
786 !self.is_empty() && (self.nulls().is_some() || self.values.is_nullable())
787 }
788
789 fn get_buffer_memory_size(&self) -> usize {
790 self.keys.get_buffer_memory_size() + self.values.get_buffer_memory_size()
791 }
792
793 fn get_array_memory_size(&self) -> usize {
794 std::mem::size_of::<Self>()
795 + self.keys.get_buffer_memory_size()
796 + self.values.get_array_memory_size()
797 }
798}
799
800impl<T: ArrowDictionaryKeyType> std::fmt::Debug for DictionaryArray<T> {
801 fn fmt(&self, f: &mut std::fmt::Formatter) -> std::fmt::Result {
802 writeln!(
803 f,
804 "DictionaryArray {{keys: {:?} values: {:?}}}",
805 self.keys, self.values
806 )
807 }
808}
809
810pub struct TypedDictionaryArray<'a, K: ArrowDictionaryKeyType, V> {
828 dictionary: &'a DictionaryArray<K>,
830 values: &'a V,
832}
833
834impl<K: ArrowDictionaryKeyType, V> Clone for TypedDictionaryArray<'_, K, V> {
836 fn clone(&self) -> Self {
837 *self
838 }
839}
840
841impl<K: ArrowDictionaryKeyType, V> Copy for TypedDictionaryArray<'_, K, V> {}
842
843impl<K: ArrowDictionaryKeyType, V> std::fmt::Debug for TypedDictionaryArray<'_, K, V> {
844 fn fmt(&self, f: &mut std::fmt::Formatter) -> std::fmt::Result {
845 writeln!(f, "TypedDictionaryArray({:?})", self.dictionary)
846 }
847}
848
849impl<'a, K: ArrowDictionaryKeyType, V> TypedDictionaryArray<'a, K, V> {
850 pub fn keys(&self) -> &'a PrimitiveArray<K> {
852 self.dictionary.keys()
853 }
854
855 pub fn values(&self) -> &'a V {
857 self.values
858 }
859}
860
861impl<K: ArrowDictionaryKeyType, V: Sync> super::private::Sealed for TypedDictionaryArray<'_, K, V> {}
862
863impl<K: ArrowDictionaryKeyType, V: Sync> Array for TypedDictionaryArray<'_, K, V> {
864 fn as_any(&self) -> &dyn Any {
865 self.dictionary
866 }
867
868 fn to_data(&self) -> ArrayData {
869 self.dictionary.to_data()
870 }
871
872 fn into_data(self) -> ArrayData {
873 self.dictionary.into_data()
874 }
875
876 fn data_type(&self) -> &DataType {
877 self.dictionary.data_type()
878 }
879
880 fn slice(&self, offset: usize, length: usize) -> ArrayRef {
881 Arc::new(self.dictionary.slice(offset, length))
882 }
883
884 fn len(&self) -> usize {
885 self.dictionary.len()
886 }
887
888 fn is_empty(&self) -> bool {
889 self.dictionary.is_empty()
890 }
891
892 fn offset(&self) -> usize {
893 self.dictionary.offset()
894 }
895
896 fn nulls(&self) -> Option<&NullBuffer> {
897 self.dictionary.nulls()
898 }
899
900 fn logical_nulls(&self) -> Option<NullBuffer> {
901 self.dictionary.logical_nulls()
902 }
903
904 fn logical_null_count(&self) -> usize {
905 self.dictionary.logical_null_count()
906 }
907
908 fn is_nullable(&self) -> bool {
909 self.dictionary.is_nullable()
910 }
911
912 fn get_buffer_memory_size(&self) -> usize {
913 self.dictionary.get_buffer_memory_size()
914 }
915
916 fn get_array_memory_size(&self) -> usize {
917 self.dictionary.get_array_memory_size()
918 }
919}
920
921impl<K, V> IntoIterator for TypedDictionaryArray<'_, K, V>
922where
923 K: ArrowDictionaryKeyType,
924 Self: ArrayAccessor,
925{
926 type Item = Option<<Self as ArrayAccessor>::Item>;
927 type IntoIter = ArrayIter<Self>;
928
929 fn into_iter(self) -> Self::IntoIter {
930 ArrayIter::new(self)
931 }
932}
933
934impl<'a, K, V> ArrayAccessor for TypedDictionaryArray<'a, K, V>
935where
936 K: ArrowDictionaryKeyType,
937 V: Sync + Send,
938 &'a V: ArrayAccessor,
939 <&'a V as ArrayAccessor>::Item: Default,
940{
941 type Item = <&'a V as ArrayAccessor>::Item;
942
943 fn value(&self, index: usize) -> Self::Item {
944 assert!(
945 index < self.len(),
946 "Trying to access an element at index {} from a TypedDictionaryArray of length {}",
947 index,
948 self.len()
949 );
950 unsafe { self.value_unchecked(index) }
951 }
952
953 unsafe fn value_unchecked(&self, index: usize) -> Self::Item {
954 let val = unsafe { self.dictionary.keys.value_unchecked(index) };
955 let value_idx = val.as_usize();
956
957 match value_idx < self.values.len() {
960 true => unsafe { self.values.value_unchecked(value_idx) },
961 false => Default::default(),
962 }
963 }
964}
965
966pub trait AnyDictionaryArray: Array {
1011 fn keys(&self) -> &dyn Array;
1013
1014 fn values(&self) -> &ArrayRef;
1016
1017 fn normalized_keys(&self) -> Vec<usize>;
1026
1027 fn with_values(&self, values: ArrayRef) -> ArrayRef;
1031}
1032
1033impl<K: ArrowDictionaryKeyType> AnyDictionaryArray for DictionaryArray<K> {
1034 fn keys(&self) -> &dyn Array {
1035 &self.keys
1036 }
1037
1038 fn values(&self) -> &ArrayRef {
1039 self.values()
1040 }
1041
1042 fn normalized_keys(&self) -> Vec<usize> {
1043 let v_len = self.values().len();
1044 assert_ne!(v_len, 0);
1045 let iter = self.keys().values().iter();
1046 iter.map(|x| x.as_usize().min(v_len - 1)).collect()
1047 }
1048
1049 fn with_values(&self, values: ArrayRef) -> ArrayRef {
1050 Arc::new(self.with_values(values))
1051 }
1052}
1053
1054#[cfg(test)]
1055mod tests {
1056 use super::*;
1057 use crate::cast::as_dictionary_array;
1058 use crate::{Int8Array, Int16Array, Int32Array, RunArray};
1059 use arrow_buffer::{Buffer, ToByteSlice};
1060
1061 #[test]
1062 fn test_dictionary_array() {
1063 let value_data = ArrayData::builder(DataType::Int8)
1065 .len(8)
1066 .add_buffer(Buffer::from(
1067 [10_i8, 11, 12, 13, 14, 15, 16, 17].to_byte_slice(),
1068 ))
1069 .build()
1070 .unwrap();
1071
1072 let keys = Buffer::from([2_i16, 3, 4].to_byte_slice());
1074
1075 let key_type = DataType::Int16;
1077 let value_type = DataType::Int8;
1078 let dict_data_type = DataType::Dictionary(Box::new(key_type), Box::new(value_type));
1079 let dict_data = ArrayData::builder(dict_data_type.clone())
1080 .len(3)
1081 .add_buffer(keys.clone())
1082 .add_child_data(value_data.clone())
1083 .build()
1084 .unwrap();
1085 let dict_array = Int16DictionaryArray::from(dict_data);
1086
1087 let values = dict_array.values();
1088 assert_eq!(value_data, values.to_data());
1089 assert_eq!(DataType::Int8, dict_array.value_type());
1090 assert_eq!(3, dict_array.len());
1091
1092 assert_eq!(0, dict_array.null_count());
1094 assert_eq!(0, dict_array.values().null_count());
1095 assert_eq!(dict_array.keys(), &Int16Array::from(vec![2_i16, 3, 4]));
1096
1097 let dict_data = ArrayData::builder(dict_data_type)
1099 .len(2)
1100 .offset(1)
1101 .add_buffer(keys)
1102 .add_child_data(value_data.clone())
1103 .build()
1104 .unwrap();
1105 let dict_array = Int16DictionaryArray::from(dict_data);
1106
1107 let values = dict_array.values();
1108 assert_eq!(value_data, values.to_data());
1109 assert_eq!(DataType::Int8, dict_array.value_type());
1110 assert_eq!(2, dict_array.len());
1111 assert_eq!(dict_array.keys(), &Int16Array::from(vec![3_i16, 4]));
1112 }
1113
1114 #[test]
1115 fn test_dictionary_builder_append_many() {
1116 let mut builder = PrimitiveDictionaryBuilder::<UInt8Type, UInt32Type>::new();
1117
1118 builder.append(1).unwrap();
1119 builder.append_n(2, 2).unwrap();
1120 builder.append_options(None, 2);
1121 builder.append_options(Some(3), 3);
1122
1123 let array = builder.finish();
1124
1125 let values = array
1126 .values()
1127 .as_primitive::<UInt32Type>()
1128 .iter()
1129 .map(Option::unwrap)
1130 .collect::<Vec<_>>();
1131 assert_eq!(values, &[1, 2, 3]);
1132 let keys = array.keys().iter().collect::<Vec<_>>();
1133 assert_eq!(
1134 keys,
1135 &[
1136 Some(0),
1137 Some(1),
1138 Some(1),
1139 None,
1140 None,
1141 Some(2),
1142 Some(2),
1143 Some(2)
1144 ]
1145 );
1146 }
1147
1148 #[test]
1149 fn test_string_dictionary_builder_append_many() {
1150 let mut builder = StringDictionaryBuilder::<Int8Type>::new();
1151
1152 builder.append("a").unwrap();
1153 builder.append_n("b", 2).unwrap();
1154 builder.append_options(None::<&str>, 2);
1155 builder.append_options(Some("c"), 3);
1156
1157 let array = builder.finish();
1158
1159 let values = array
1160 .values()
1161 .as_string::<i32>()
1162 .iter()
1163 .map(Option::unwrap)
1164 .collect::<Vec<_>>();
1165 assert_eq!(values, &["a", "b", "c"]);
1166 let keys = array.keys().iter().collect::<Vec<_>>();
1167 assert_eq!(
1168 keys,
1169 &[
1170 Some(0),
1171 Some(1),
1172 Some(1),
1173 None,
1174 None,
1175 Some(2),
1176 Some(2),
1177 Some(2)
1178 ]
1179 );
1180 }
1181
1182 #[test]
1183 fn test_dictionary_array_fmt_debug() {
1184 let mut builder = PrimitiveDictionaryBuilder::<UInt8Type, UInt32Type>::with_capacity(3, 2);
1185 builder.append(12345678).unwrap();
1186 builder.append_null();
1187 builder.append(22345678).unwrap();
1188 let array = builder.finish();
1189 assert_eq!(
1190 "DictionaryArray {keys: PrimitiveArray<UInt8>\n[\n 0,\n null,\n 1,\n] values: PrimitiveArray<UInt32>\n[\n 12345678,\n 22345678,\n]}\n",
1191 format!("{array:?}")
1192 );
1193
1194 let mut builder = PrimitiveDictionaryBuilder::<UInt8Type, UInt32Type>::with_capacity(20, 2);
1195 for _ in 0..20 {
1196 builder.append(1).unwrap();
1197 }
1198 let array = builder.finish();
1199 assert_eq!(
1200 "DictionaryArray {keys: PrimitiveArray<UInt8>\n[\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n 0,\n] values: PrimitiveArray<UInt32>\n[\n 1,\n]}\n",
1201 format!("{array:?}")
1202 );
1203 }
1204
1205 #[test]
1206 fn test_dictionary_array_from_iter() {
1207 let test = vec!["a", "a", "b", "c"];
1208 let array: DictionaryArray<Int8Type> = test
1209 .iter()
1210 .map(|&x| if x == "b" { None } else { Some(x) })
1211 .collect();
1212 assert_eq!(
1213 "DictionaryArray {keys: PrimitiveArray<Int8>\n[\n 0,\n 0,\n null,\n 1,\n] values: StringArray\n[\n \"a\",\n \"c\",\n]}\n",
1214 format!("{array:?}")
1215 );
1216
1217 let array: DictionaryArray<Int8Type> = test.into_iter().collect();
1218 assert_eq!(
1219 "DictionaryArray {keys: PrimitiveArray<Int8>\n[\n 0,\n 0,\n 1,\n 2,\n] values: StringArray\n[\n \"a\",\n \"b\",\n \"c\",\n]}\n",
1220 format!("{array:?}")
1221 );
1222 }
1223
1224 #[test]
1225 fn test_dictionary_array_reverse_lookup_key() {
1226 let test = vec!["a", "a", "b", "c"];
1227 let array: DictionaryArray<Int8Type> = test.into_iter().collect();
1228
1229 assert_eq!(array.lookup_key("c"), Some(2));
1230
1231 let test = vec!["t3", "t3", "t2", "t2", "t1", "t3", "t4", "t1", "t0"];
1233 let array: DictionaryArray<Int8Type> = test.into_iter().collect();
1234
1235 assert_eq!(array.lookup_key("t1"), Some(2));
1236 assert_eq!(array.lookup_key("non-existent"), None);
1237 }
1238
1239 #[test]
1240 fn test_dictionary_keys_as_primitive_array() {
1241 let test = vec!["a", "b", "c", "a"];
1242 let array: DictionaryArray<Int8Type> = test.into_iter().collect();
1243
1244 let keys = array.keys();
1245 assert_eq!(&DataType::Int8, keys.data_type());
1246 assert_eq!(0, keys.null_count());
1247 assert_eq!(&[0, 1, 2, 0], keys.values());
1248 }
1249
1250 #[test]
1251 fn test_dictionary_keys_as_primitive_array_with_null() {
1252 let test = vec![Some("a"), None, Some("b"), None, None, Some("a")];
1253 let array: DictionaryArray<Int32Type> = test.into_iter().collect();
1254
1255 let keys = array.keys();
1256 assert_eq!(&DataType::Int32, keys.data_type());
1257 assert_eq!(3, keys.null_count());
1258
1259 assert!(keys.is_valid(0));
1260 assert!(!keys.is_valid(1));
1261 assert!(keys.is_valid(2));
1262 assert!(!keys.is_valid(3));
1263 assert!(!keys.is_valid(4));
1264 assert!(keys.is_valid(5));
1265
1266 assert_eq!(0, keys.value(0));
1267 assert_eq!(1, keys.value(2));
1268 assert_eq!(0, keys.value(5));
1269 }
1270
1271 #[test]
1272 fn test_dictionary_all_nulls() {
1273 let test = vec![None, None, None];
1274 let array: DictionaryArray<Int32Type> = test.into_iter().collect();
1275 array
1276 .into_data()
1277 .validate_full()
1278 .expect("All null array has valid array data");
1279 }
1280
1281 #[test]
1282 fn test_dictionary_iter() {
1283 let values = Int8Array::from_iter_values([10_i8, 11, 12, 13, 14, 15, 16, 17]);
1285 let keys = Int16Array::from_iter_values([2_i16, 3, 4]);
1286
1287 let dict_array = DictionaryArray::new(keys, Arc::new(values));
1289
1290 let mut key_iter = dict_array.keys_iter();
1291 assert_eq!(2, key_iter.next().unwrap().unwrap());
1292 assert_eq!(3, key_iter.next().unwrap().unwrap());
1293 assert_eq!(4, key_iter.next().unwrap().unwrap());
1294 assert!(key_iter.next().is_none());
1295
1296 let mut iter = dict_array
1297 .values()
1298 .as_any()
1299 .downcast_ref::<Int8Array>()
1300 .unwrap()
1301 .take_iter(dict_array.keys_iter());
1302
1303 assert_eq!(12, iter.next().unwrap().unwrap());
1304 assert_eq!(13, iter.next().unwrap().unwrap());
1305 assert_eq!(14, iter.next().unwrap().unwrap());
1306 assert!(iter.next().is_none());
1307 }
1308
1309 #[test]
1310 fn test_dictionary_iter_with_null() {
1311 let test = vec![Some("a"), None, Some("b"), None, None, Some("a")];
1312 let array: DictionaryArray<Int32Type> = test.into_iter().collect();
1313
1314 let mut iter = array
1315 .values()
1316 .as_any()
1317 .downcast_ref::<StringArray>()
1318 .unwrap()
1319 .take_iter(array.keys_iter());
1320
1321 assert_eq!("a", iter.next().unwrap().unwrap());
1322 assert!(iter.next().unwrap().is_none());
1323 assert_eq!("b", iter.next().unwrap().unwrap());
1324 assert!(iter.next().unwrap().is_none());
1325 assert!(iter.next().unwrap().is_none());
1326 assert_eq!("a", iter.next().unwrap().unwrap());
1327 assert!(iter.next().is_none());
1328 }
1329
1330 #[test]
1331 fn test_dictionary_key() {
1332 let keys = Int8Array::from(vec![Some(2), None, Some(1)]);
1333 let values = StringArray::from(vec!["foo", "bar", "baz", "blarg"]);
1334
1335 let array = DictionaryArray::new(keys, Arc::new(values));
1336 assert_eq!(array.key(0), Some(2));
1337 assert_eq!(array.key(1), None);
1338 assert_eq!(array.key(2), Some(1));
1339 }
1340
1341 #[test]
1342 fn test_try_new() {
1343 let values: StringArray = [Some("foo"), Some("bar"), Some("baz")]
1344 .into_iter()
1345 .collect();
1346 let keys: Int32Array = [Some(0), Some(2), None, Some(1)].into_iter().collect();
1347
1348 let array = DictionaryArray::new(keys, Arc::new(values));
1349 assert_eq!(array.keys().data_type(), &DataType::Int32);
1350 assert_eq!(array.values().data_type(), &DataType::Utf8);
1351
1352 assert_eq!(array.null_count(), 1);
1353 assert_eq!(array.logical_null_count(), 1);
1354
1355 assert!(array.keys().is_valid(0));
1356 assert!(array.keys().is_valid(1));
1357 assert!(array.keys().is_null(2));
1358 assert!(array.keys().is_valid(3));
1359
1360 assert_eq!(array.keys().value(0), 0);
1361 assert_eq!(array.keys().value(1), 2);
1362 assert_eq!(array.keys().value(3), 1);
1363
1364 assert_eq!(
1365 "DictionaryArray {keys: PrimitiveArray<Int32>\n[\n 0,\n 2,\n null,\n 1,\n] values: StringArray\n[\n \"foo\",\n \"bar\",\n \"baz\",\n]}\n",
1366 format!("{array:?}")
1367 );
1368 }
1369
1370 #[test]
1371 #[should_panic(expected = "Invalid dictionary key 3 at index 1, expected 0 <= key < 2")]
1372 fn test_try_new_index_too_large() {
1373 let values: StringArray = [Some("foo"), Some("bar")].into_iter().collect();
1374 let keys: Int32Array = [Some(0), Some(3)].into_iter().collect();
1376 DictionaryArray::new(keys, Arc::new(values));
1377 }
1378
1379 #[test]
1380 #[should_panic(expected = "Invalid dictionary key -100 at index 0, expected 0 <= key < 2")]
1381 fn test_try_new_index_too_small() {
1382 let values: StringArray = [Some("foo"), Some("bar")].into_iter().collect();
1383 let keys: Int32Array = [Some(-100)].into_iter().collect();
1384 DictionaryArray::new(keys, Arc::new(values));
1385 }
1386
1387 #[test]
1388 #[should_panic(expected = "DictionaryArray's data type must match, expected Int64 got Int32")]
1389 fn test_from_array_data_validation() {
1390 let a = DictionaryArray::<Int32Type>::from_iter(["32"]);
1391 let _ = DictionaryArray::<Int64Type>::from(a.into_data());
1392 }
1393
1394 #[test]
1395 fn test_into_primitive_dict_builder() {
1396 let values = Int32Array::from_iter_values([10_i32, 12, 15]);
1397 let keys = Int8Array::from_iter_values([1_i8, 0, 2, 0]);
1398
1399 let dict_array = DictionaryArray::new(keys, Arc::new(values));
1400
1401 let boxed: ArrayRef = Arc::new(dict_array);
1402 let col: DictionaryArray<Int8Type> = as_dictionary_array(&boxed).clone();
1403
1404 drop(boxed);
1405
1406 let mut builder = col.into_primitive_dict_builder::<Int32Type>().unwrap();
1407
1408 let slice = builder.values_slice_mut();
1409 assert_eq!(slice, &[10, 12, 15]);
1410
1411 slice[0] = 4;
1412 slice[1] = 2;
1413 slice[2] = 1;
1414
1415 let values = Int32Array::from_iter_values([4_i32, 2, 1]);
1416 let keys = Int8Array::from_iter_values([1_i8, 0, 2, 0]);
1417
1418 let expected = DictionaryArray::new(keys, Arc::new(values));
1419
1420 let new_array = builder.finish();
1421 assert_eq!(expected, new_array);
1422 }
1423
1424 #[test]
1425 fn test_into_primitive_dict_builder_cloned_array() {
1426 let values = Int32Array::from_iter_values([10_i32, 12, 15]);
1427 let keys = Int8Array::from_iter_values([1_i8, 0, 2, 0]);
1428
1429 let dict_array = DictionaryArray::new(keys, Arc::new(values));
1430
1431 let boxed: ArrayRef = Arc::new(dict_array);
1432
1433 let col: DictionaryArray<Int8Type> = DictionaryArray::<Int8Type>::from(boxed.to_data());
1434 let err = col.into_primitive_dict_builder::<Int32Type>();
1435
1436 let returned = err.unwrap_err();
1437
1438 let values = Int32Array::from_iter_values([10_i32, 12, 15]);
1439 let keys = Int8Array::from_iter_values([1_i8, 0, 2, 0]);
1440
1441 let expected = DictionaryArray::new(keys, Arc::new(values));
1442 assert_eq!(expected, returned);
1443 }
1444
1445 #[test]
1446 fn test_occupancy() {
1447 let keys = Int32Array::new((100..200).collect(), None);
1448 let values = Int32Array::from(vec![0; 1024]);
1449 let dict = DictionaryArray::new(keys, Arc::new(values));
1450 for (idx, v) in dict.occupancy().iter().enumerate() {
1451 let expected = (100..200).contains(&idx);
1452 assert_eq!(v, expected, "{idx}");
1453 }
1454
1455 let keys = Int32Array::new(
1456 (0..100).collect(),
1457 Some((0..100).map(|x| x % 4 == 0).collect()),
1458 );
1459 let values = Int32Array::from(vec![0; 1024]);
1460 let dict = DictionaryArray::new(keys, Arc::new(values));
1461 for (idx, v) in dict.occupancy().iter().enumerate() {
1462 let expected = idx % 4 == 0 && idx < 100;
1463 assert_eq!(v, expected, "{idx}");
1464 }
1465 }
1466
1467 #[test]
1468 fn test_iterator_nulls() {
1469 let keys = Int32Array::new(
1470 vec![0, 700, 1, 2].into(),
1471 Some(NullBuffer::from(vec![true, false, true, true])),
1472 );
1473 let values = Int32Array::from(vec![Some(50), None, Some(2)]);
1474 let dict = DictionaryArray::new(keys, Arc::new(values));
1475 let values: Vec<_> = dict
1476 .downcast_dict::<Int32Array>()
1477 .unwrap()
1478 .into_iter()
1479 .collect();
1480 assert_eq!(values, &[Some(50), None, None, Some(2)])
1481 }
1482
1483 #[test]
1484 fn test_logical_nulls() -> Result<(), ArrowError> {
1485 let values = Arc::new(RunArray::try_new(
1486 &Int32Array::from(vec![1, 3, 7]),
1487 &Int32Array::from(vec![Some(1), None, Some(3)]),
1488 )?) as ArrayRef;
1489
1490 assert_eq!(values.null_count(), 0);
1492 assert_eq!(values.logical_null_count(), 2);
1493
1494 let dictionary = DictionaryArray::<Int8Type>::try_new(
1496 Int8Array::from((0..values.len()).map(|i| i as i8).collect::<Vec<_>>()),
1497 Arc::clone(&values),
1498 )?;
1499
1500 assert_eq!(dictionary.null_count(), 0);
1502 assert_eq!(dictionary.logical_null_count(), values.logical_null_count());
1504 assert_eq!(dictionary.logical_nulls(), values.logical_nulls());
1505 assert!(dictionary.is_nullable());
1506
1507 let dictionary = DictionaryArray::<Int8Type>::try_new(
1509 Int8Array::from(
1510 (0..values.len())
1511 .map(|i| i as i8)
1512 .map(|i| if i == 0 { None } else { Some(i) })
1513 .collect::<Vec<_>>(),
1514 ),
1515 Arc::clone(&values),
1516 )?;
1517
1518 assert_eq!(dictionary.null_count(), 1);
1520
1521 assert_eq!(
1523 dictionary.logical_null_count(),
1524 values.logical_null_count() + 1
1525 );
1526 assert!(dictionary.is_nullable());
1527
1528 Ok(())
1529 }
1530
1531 #[test]
1532 fn test_normalized_keys() {
1533 let values = vec![132, 0, 1].into();
1534 let nulls = NullBuffer::from(vec![false, true, true]);
1535 let keys = Int32Array::new(values, Some(nulls));
1536 let dictionary = DictionaryArray::new(keys, Arc::new(Int32Array::new_null(2)));
1537 assert_eq!(&dictionary.normalized_keys(), &[1, 0, 1])
1538 }
1539}