inillucent_sql/plan/pushdown.rs
1//! Pushing a `WHERE` condition on a derived table's columns into the derived
2//! table.
3//!
4//! Invariant: **a condition is copied into a derived table only when doing so
5//! cannot change which rows the statement returns, and the original stays where
6//! it was.** The copy is a filter the inner query applies before it builds its
7//! rows, so the inner planner can seek by key instead of building every row of
8//! a view. The outer condition is still tested on every row the derived table
9//! produces, so if a rule here were too generous the cost would be a condition
10//! tested twice, never a row that should have been filtered.
11//!
12//! This is SQLite's push-down optimisation, restricted to the cases where it is
13//! plainly sound. Measured on the coffee shop example's database before it:
14//! `SELECT * FROM order_summary WHERE id = 57` over a view of three joins and a
15//! correlated subquery took 2.50 ms against 0.048 ms for the same query written
16//! without the view, because every row of the view, correlated subquery
17//! included, was built before the `WHERE` was applied. SQLite plans both as a
18//! primary key search.
19//!
20//! Here rather than in [`super`] because `plan.rs` is at its recorded size.
21
22use super::*;
23
24mod unused;
25
26/// Copies each `WHERE` conjunct that reads only one derived table's columns
27/// into that derived table's own `WHERE`, and then replaces each derived
28/// table's unread result columns with NULL.
29///
30/// The second step is in [`unused`]. It runs here because it is the other
31/// half of treating a derived table the way SQLite's flattener does, and
32/// `plan.rs` is at its recorded size.
33///
34/// @param select - the statement being planned, whose derived tables may gain
35/// a filter and lose result columns
36pub(super) fn push_into_derived_tables(select: &mut BoundSelect) {
37 push_filters(select);
38 unused::drop_unread_columns(select);
39}
40
41/// Copies each `WHERE` conjunct that reads only one derived table's columns
42/// into that derived table's own `WHERE`.
43///
44/// @param select - the statement being planned, whose derived tables may gain
45/// a filter
46fn push_filters(select: &mut BoundSelect) {
47 let Some(filter) = select.filter.as_ref() else {
48 return;
49 };
50 // Nothing is split or copied for a statement with no derived table, which
51 // is almost every statement: the compile of `SELECT id FROM t WHERE email
52 // = ?1` has an allocation budget, and splitting its `WHERE` here took three
53 // of them to find nothing to push.
54 if !select
55 .sources
56 .iter()
57 .any(|source| matches!(source.rows, SourceRows::Subquery(_)))
58 {
59 return;
60 }
61 // A `RIGHT` or `FULL` join can null extend any term before it, so a
62 // statement with one pushes nothing.
63 if select
64 .sources
65 .iter()
66 .any(|source| matches!(source.join, JoinKind::Right | JoinKind::Full))
67 {
68 return;
69 }
70 let conjuncts = conjunction(filter);
71 for source in &mut select.sources {
72 // The right side of a `LEFT JOIN` is null extended when nothing in it
73 // matches, and a condition such as `v.x IS NULL` is true of a null
74 // extended row and false of the rows the push would have removed.
75 if source.join == JoinKind::Left {
76 continue;
77 }
78 let id = source.id;
79 let SourceRows::Subquery(block) = &mut source.rows else {
80 continue;
81 };
82 // The references of a shared common table expression read one set of
83 // rows, so a filter pushed into one of them would change the others.
84 if block.shared.is_some() {
85 continue;
86 }
87 if block.compounds.is_empty() {
88 if accepts_a_pushed_filter(block) {
89 push_into_arm(block, id, &conjuncts);
90 }
91 } else if accepts_a_compound_filter(block) {
92 push_into_compound(block, id, &conjuncts);
93 }
94 }
95}
96
97/// Copies each conjunct on the derived table into one `SELECT` that produces
98/// the derived table's rows, with the conjunct's columns replaced by the
99/// expressions that compute them in that `SELECT`.
100///
101/// @param arm - the `SELECT` (one arm of a compound, or the whole derived table)
102/// @param id - the derived table's statement-wide number
103/// @param conjuncts - the terms of the outer `WHERE`
104fn push_into_arm(arm: &mut BoundSelect, id: usize, conjuncts: &[BoundExpr]) {
105 for conjunct in conjuncts {
106 let mut used = Vec::new();
107 conjunct.sources_used(&mut used);
108 if used.as_slice() != [id] || !pushable(conjunct, id) {
109 continue;
110 }
111 let Some(inner) = substituted(conjunct, id, arm) else {
112 continue;
113 };
114 arm.filter = Some(match arm.filter.take() {
115 Some(existing) => BoundExpr::And(Box::new(existing), Box::new(inner)),
116 None => inner,
117 });
118 }
119}
120
121/// Copies the conjuncts into every arm of a compound derived table.
122///
123/// **Each arm compares with its own columns' affinity and collation.** SQLite
124/// pushes the term into every arm, and a term `x > 7` over `SELECT x FROM t
125/// UNION ALL SELECT y FROM v` with a TEXT `x` and an INTEGER `y` compares text
126/// with text in the first arm and integers in the second. Tested after the
127/// compound, the column has no affinity and a text `'1'` is greater than the
128/// integer 7 by storage class. An arm that cannot take a filter (a `VALUES`
129/// list, an aggregate arm) is left as it is; the outer term stays in place.
130///
131/// @param block - the compound derived table; its first arm is the block itself
132/// @param id - the derived table's statement-wide number
133/// @param conjuncts - the terms of the outer `WHERE`
134fn push_into_compound(block: &mut BoundSelect, id: usize, conjuncts: &[BoundExpr]) {
135 if accepts_an_arm_filter(block) {
136 push_into_arm(block, id, conjuncts);
137 }
138 for (_, arm) in &mut block.compounds {
139 if accepts_an_arm_filter(arm) && arm.compounds.is_empty() {
140 push_into_arm(arm, id, conjuncts);
141 }
142 }
143}
144
145/// Reports whether a filter on a compound's result may be copied into its arms.
146///
147/// SQLite refuses a compound with a `LIMIT` or `OFFSET`, which count rows
148/// before the filter, and a compound that has a window function in any arm.
149/// When an arm is joined by `UNION`, `INTERSECT` or `EXCEPT` it also refuses
150/// when the compound's `ORDER BY` has a term that is not a result column.
151///
152/// @param block - the compound derived table
153fn accepts_a_compound_filter(block: &BoundSelect) -> bool {
154 let all_union_all = block
155 .compounds
156 .iter()
157 .all(|(op, _)| *op == crate::ast::CompoundOp::UnionAll);
158 block.limit.is_none()
159 && block.offset.is_none()
160 && (all_union_all || block.order_by.is_empty())
161 && block.windows.is_empty()
162 && block
163 .compounds
164 .iter()
165 .all(|(_, arm)| arm.windows.is_empty())
166}
167
168/// Reports whether one arm of a compound can take a copied filter.
169///
170/// An arm with its own `DISTINCT`, grouping, aggregate or window computes its
171/// result columns over rows a filter would remove, and a `VALUES` list has no
172/// expressions to substitute.
173///
174/// @param arm - one arm of the compound
175fn accepts_an_arm_filter(arm: &BoundSelect) -> bool {
176 !arm.distinct
177 && arm.group_by.is_empty()
178 && arm.aggregates.is_empty()
179 && arm.having.is_none()
180 && arm.windows.is_empty()
181 && arm.values.is_empty()
182}
183
184/// Reports whether a derived table's rows are the same whether a condition on
185/// its result columns is applied before it builds them or after.
186///
187/// **Not for a `LIMIT` or an `OFFSET`**, which count rows before the condition;
188/// **not for `DISTINCT`**, which keeps one row of several equal under its own
189/// collation, so a condition under a different collation can keep a different
190/// one; **not for grouping or a window**, whose result columns are computed
191/// over rows the condition would remove; and **not for a compound**, which is
192/// several blocks.
193///
194/// @param block - the derived table's query
195fn accepts_a_pushed_filter(block: &BoundSelect) -> bool {
196 block.compounds.is_empty()
197 && block.limit.is_none()
198 && block.offset.is_none()
199 && !block.distinct
200 && block.group_by.is_empty()
201 && block.aggregates.is_empty()
202 && block.having.is_none()
203 && block.windows.is_empty()
204 && block.values.is_empty()
205}
206
207/// Reports whether a condition is one that may be evaluated anywhere, any
208/// number of times, with the same answer.
209///
210/// A whitelist: a subquery, an aggregate, a window value, a registered function
211/// whose determinism the planner cannot see, and the scalar functions whose
212/// answer changes from call to call are all refused.
213///
214/// @param expr - the condition, or a part of it
215/// @param id - the derived table's statement-wide number; its rowid has no
216/// inner expression to stand for it
217fn pushable(expr: &BoundExpr, id: usize) -> bool {
218 let this = match expr {
219 BoundExpr::Rowid { source } => *source != id,
220 BoundExpr::Subquery { .. }
221 | BoundExpr::Aggregate { .. }
222 | BoundExpr::WindowRef { .. }
223 | BoundExpr::SorterColumn { .. }
224 | BoundExpr::External { .. }
225 | BoundExpr::VirtualFunction { .. }
226 | BoundExpr::Raise { .. } => false,
227 BoundExpr::Function { func, .. } => !matches!(
228 func,
229 crate::function::ScalarFunc::Random
230 | crate::function::ScalarFunc::RandomBlob
231 | crate::function::ScalarFunc::Changes
232 | crate::function::ScalarFunc::TotalChanges
233 | crate::function::ScalarFunc::LastInsertRowid
234 ),
235 _ => true,
236 };
237 this && expr.children().iter().all(|child| pushable(child, id))
238}
239
240/// Reports whether a condition may be tested more than once with the same
241/// answer each time.
242///
243/// A condition on an outer term can be tested before a lateral join runs its
244/// function, so that the function is not called for rows the condition
245/// removes. It is tested again with the rest of the `WHERE`, which is only
246/// harmless for a condition with no subquery, no random function and no
247/// registered function whose determinism the planner cannot see.
248///
249/// @param expr - the condition
250pub fn is_repeatable_condition(expr: &BoundExpr) -> bool {
251 pushable(expr, usize::MAX)
252}
253
254/// Reports whether an expression calls a function whose answer changes from one
255/// call to the next, such as `random()`.
256///
257/// @param expr - the expression, or a part of it
258pub fn calls_a_volatile_function(expr: &BoundExpr) -> bool {
259 let this = matches!(
260 expr,
261 BoundExpr::Function {
262 func: crate::function::ScalarFunc::Random
263 | crate::function::ScalarFunc::RandomBlob
264 | crate::function::ScalarFunc::Changes
265 | crate::function::ScalarFunc::TotalChanges
266 | crate::function::ScalarFunc::LastInsertRowid,
267 ..
268 }
269 );
270 this || expr
271 .children()
272 .iter()
273 .any(|child| calls_a_volatile_function(child))
274}
275
276/// Returns a condition with each of the derived table's columns replaced by
277/// the expression that computes it inside the derived table.
278///
279/// `None` when a column's expression is one that should not be evaluated in a
280/// `WHERE`, such as a correlated subquery: the condition is then left outside,
281/// where it was.
282///
283/// @param conjunct - the condition, over the derived table's columns
284/// @param id - the derived table's statement-wide number
285/// @param block - the derived table's query
286fn substituted(conjunct: &BoundExpr, id: usize, block: &BoundSelect) -> Option<BoundExpr> {
287 let mut copy = conjunct.clone();
288 replace_columns(&mut copy, id, block).then_some(copy)
289}
290
291/// Replaces the derived table's columns in place, reporting whether every one
292/// could be replaced.
293///
294/// @param expr - the expression being rewritten
295/// @param id - the derived table's statement-wide number
296/// @param block - the derived table's query
297fn replace_columns(expr: &mut BoundExpr, id: usize, block: &BoundSelect) -> bool {
298 if let BoundExpr::Column { source, column, .. } = expr {
299 if *source != id {
300 return true;
301 }
302 let Some(inner) = block.columns.get(usize::from(*column)) else {
303 return false;
304 };
305 if !pushable(&inner.expr, usize::MAX) {
306 return false;
307 }
308 *expr = inner.expr.clone();
309 return true;
310 }
311 let replaced = expr
312 .children_mut()
313 .into_iter()
314 .all(|child| replace_columns(child, id, block));
315 if replaced {
316 refresh_comparison_rules(expr);
317 }
318 replaced
319}
320
321/// Recomputes the affinity and collation a comparison applies, from its
322/// operands as they are now.
323///
324/// A comparison fixes both when the statement is bound, from the operands it
325/// was written with. After a derived table's column is replaced by the
326/// expression of one arm, the operand may have a different affinity: the
327/// derived table's column of a compound has none when the arms disagree, and
328/// the arm's own column has its declared one. SQLite compares the substituted
329/// expression, so the comparison is rebuilt from it.
330///
331/// @param expr - the expression whose children were just substituted
332fn refresh_comparison_rules(expr: &mut BoundExpr) {
333 use crate::bind::comparison_rules;
334 match expr {
335 BoundExpr::Compare {
336 left,
337 right,
338 affinity,
339 collation,
340 ..
341 }
342 | BoundExpr::Is {
343 left,
344 right,
345 affinity,
346 collation,
347 ..
348 } => (*affinity, *collation) = comparison_rules(left, right),
349 BoundExpr::Between {
350 operand,
351 low,
352 high,
353 low_affinity,
354 low_collation,
355 high_affinity,
356 high_collation,
357 ..
358 } => {
359 (*low_affinity, *low_collation) = comparison_rules(operand, low);
360 (*high_affinity, *high_collation) = comparison_rules(operand, high);
361 }
362 BoundExpr::InList {
363 operand,
364 list,
365 affinity,
366 collation,
367 ..
368 } => {
369 if let Some(first) = list.first() {
370 (*affinity, *collation) = comparison_rules(operand, first);
371 }
372 }
373 BoundExpr::Case {
374 operand: Some(operand),
375 branches,
376 comparisons,
377 ..
378 } => {
379 *comparisons = branches
380 .iter()
381 .map(|(when, _)| comparison_rules(operand, when))
382 .collect();
383 }
384 _ => {}
385 }
386}