vortex_array/
normalize.rs1use vortex_error::VortexResult;
5use vortex_error::vortex_bail;
6use vortex_session::registry::Id;
7use vortex_utils::aliases::hash_set::HashSet;
8
9use crate::ArrayRef;
10use crate::ExecutionCtx;
11
12pub struct NormalizeOptions<'a> {
14 pub allowed: &'a HashSet<Id>,
17 pub operation: Operation<'a>,
19}
20
21pub enum Operation<'a> {
23 Error,
24 Execute(&'a mut ExecutionCtx),
25}
26
27impl ArrayRef {
28 pub fn normalize(self, options: &mut NormalizeOptions) -> VortexResult<ArrayRef> {
33 match &mut options.operation {
34 Operation::Error => {
35 self.normalize_with_error(options.allowed)?;
36 Ok(self)
38 }
39 Operation::Execute(ctx) => self.normalize_with_execution(options.allowed, ctx),
40 }
41 }
42
43 fn normalize_with_error(&self, allowed: &HashSet<Id>) -> VortexResult<()> {
44 if !self.is_allowed_encoding(allowed) {
45 vortex_bail!(AssertionFailed: "normalize forbids encoding ({})", self.encoding_id())
46 }
47
48 for child in self.children() {
49 child.normalize_with_error(allowed)?
50 }
51 Ok(())
52 }
53
54 fn normalize_with_execution(
55 self,
56 allowed: &HashSet<Id>,
57 ctx: &mut ExecutionCtx,
58 ) -> VortexResult<ArrayRef> {
59 let mut normalized = self;
60
61 while !normalized.is_allowed_encoding(allowed) {
63 normalized = normalized.execute(ctx)?;
64 }
65
66 let slots = normalized.slots();
68 let mut normalized_slots = Vec::with_capacity(slots.len());
69 let mut any_slot_changed = false;
70
71 for slot in slots {
72 match slot {
73 Some(child) => {
74 let normalized_child = child.clone().normalize(&mut NormalizeOptions {
75 allowed,
76 operation: Operation::Execute(ctx),
77 })?;
78 any_slot_changed |= !ArrayRef::ptr_eq(child, &normalized_child);
79 normalized_slots.push(Some(normalized_child));
80 }
81 None => normalized_slots.push(None),
82 }
83 }
84
85 if any_slot_changed {
86 normalized = normalized.with_slots(normalized_slots)?;
87 }
88
89 Ok(normalized)
90 }
91
92 fn is_allowed_encoding(&self, allowed: &HashSet<Id>) -> bool {
93 allowed.contains(&self.encoding_id()) || self.is_canonical()
94 }
95}
96
97#[cfg(test)]
98mod tests {
99 use vortex_error::VortexResult;
100 use vortex_session::VortexSession;
101 use vortex_utils::aliases::hash_set::HashSet;
102
103 use super::NormalizeOptions;
104 use super::Operation;
105 use crate::ArrayRef;
106 use crate::ExecutionCtx;
107 use crate::IntoArray;
108 use crate::array::VTable;
109 use crate::arrays::Dict;
110 use crate::arrays::DictArray;
111 use crate::arrays::Primitive;
112 use crate::arrays::PrimitiveArray;
113 use crate::arrays::Slice;
114 use crate::arrays::SliceArray;
115 use crate::arrays::StructArray;
116 use crate::assert_arrays_eq;
117 use crate::validity::Validity;
118
119 #[test]
120 fn normalize_with_execution_keeps_parent_when_children_are_unchanged() -> VortexResult<()> {
121 let field = PrimitiveArray::from_iter(0i32..4).into_array();
122 let array = StructArray::try_new(
123 ["field"].into(),
124 vec![field.clone()],
125 field.len(),
126 Validity::NonNullable,
127 )?
128 .into_array();
129 let allowed = HashSet::from_iter([array.encoding_id(), field.encoding_id()]);
130 let mut ctx = ExecutionCtx::new(VortexSession::empty());
131
132 let normalized = array.clone().normalize(&mut NormalizeOptions {
133 allowed: &allowed,
134 operation: Operation::Execute(&mut ctx),
135 })?;
136
137 assert!(ArrayRef::ptr_eq(&array, &normalized));
138 Ok(())
139 }
140
141 #[test]
142 fn normalize_with_error_allows_canonical_arrays() -> VortexResult<()> {
143 let field = PrimitiveArray::from_iter(0i32..4).into_array();
144 let array = StructArray::try_new(
145 ["field"].into(),
146 vec![field.clone()],
147 field.len(),
148 Validity::NonNullable,
149 )?
150 .into_array();
151 let allowed = HashSet::default();
152
153 let normalized = array.clone().normalize(&mut NormalizeOptions {
154 allowed: &allowed,
155 operation: Operation::Error,
156 })?;
157
158 assert!(ArrayRef::ptr_eq(&array, &normalized));
159 Ok(())
160 }
161
162 #[test]
163 fn normalize_with_execution_rebuilds_parent_when_a_child_changes() -> VortexResult<()> {
164 let unchanged = PrimitiveArray::from_iter(0i32..4).into_array();
165 let sliced =
166 SliceArray::new(PrimitiveArray::from_iter(10i32..20).into_array(), 2..6).into_array();
167 let array = StructArray::try_new(
168 ["lhs", "rhs"].into(),
169 vec![unchanged.clone(), sliced],
170 unchanged.len(),
171 Validity::NonNullable,
172 )?
173 .into_array();
174 let allowed = HashSet::from_iter([array.encoding_id(), unchanged.encoding_id()]);
175 let mut ctx = ExecutionCtx::new(VortexSession::empty());
176
177 let normalized = array.clone().normalize(&mut NormalizeOptions {
178 allowed: &allowed,
179 operation: Operation::Execute(&mut ctx),
180 })?;
181
182 assert!(!ArrayRef::ptr_eq(&array, &normalized));
183
184 let original_children = array.children();
185 let normalized_children = normalized.children();
186 assert!(ArrayRef::ptr_eq(
187 &original_children[0],
188 &normalized_children[0]
189 ));
190 assert!(!ArrayRef::ptr_eq(
191 &original_children[1],
192 &normalized_children[1]
193 ));
194 assert_arrays_eq!(normalized_children[1], PrimitiveArray::from_iter(12i32..16));
195
196 Ok(())
197 }
198
199 #[test]
200 fn normalize_slice_of_dict_returns_dict() -> VortexResult<()> {
201 let codes = PrimitiveArray::from_iter(vec![0u32, 1, 0, 1, 2]).into_array();
202 let values = PrimitiveArray::from_iter(vec![10i32, 20, 30]).into_array();
203 let dict = DictArray::try_new(codes, values)?.into_array();
204
205 let sliced = SliceArray::new(dict, 1..4).into_array();
207 assert_eq!(sliced.encoding_id(), Slice.id());
208
209 let allowed = HashSet::from_iter([Dict.id(), Primitive.id()]);
210 let mut ctx = ExecutionCtx::new(VortexSession::empty());
211
212 let normalized = sliced.normalize(&mut NormalizeOptions {
213 allowed: &allowed,
214 operation: Operation::Execute(&mut ctx),
215 })?;
216
217 assert_eq!(normalized.encoding_id(), Dict.id());
219 assert_eq!(normalized.len(), 3);
220
221 assert_arrays_eq!(
223 normalized.to_canonical()?,
224 PrimitiveArray::from_iter(vec![20i32, 10, 20])
225 );
226
227 Ok(())
228 }
229}