spg_engine/ddl.rs
1//! DDL execution — every CREATE / DROP / ALTER for schema objects:
2//! tables and indexes, plus users, functions, triggers, sequences,
3//! views, types, domains, schemas, and materialized views. Lifted out
4//! of `lib.rs` (v7.32 engine modularisation). These `impl Engine`
5//! methods are dispatched from `Engine::execute` (hence pub(crate)) and
6//! drive the catalog / storage schema mutations.
7
8use alloc::string::{String, ToString};
9use alloc::vec::Vec;
10
11use spg_sql::ast::{
12 ColumnDef, CreateIndexStatement, CreateTableStatement, CreateUserStatement, Expr, IndexMethod,
13 Literal, PartitionKindAst, PartitionOfBoundsAst, Statement, VecEncoding as SqlVecEncoding,
14};
15use spg_storage::{
16 ColumnSchema, DataType, ExclusionConstraint, PartitionKind, PartitionRole, RangeKind,
17 StorageError, TableSchema, Value, VecEncoding,
18};
19
20/// v7.39 (round 215) — the column an EXCLUDE constraint's range-overlap index
21/// should key on: the `&&` element sitting on an integer-keyable range column
22/// (int4/int8/date/ts/tstz range — the kinds `range_excl_index_key` reduces to
23/// an `i128`). `None` when no element qualifies (numrange, or a non-`&&`
24/// operator only), in which case the constraint keeps the O(n) enforcement.
25fn excl_index_column(schema: &TableSchema, ex: &ExclusionConstraint) -> Option<usize> {
26 for (pos, op) in &ex.elements {
27 if op == "&&"
28 && let Some(col) = schema.columns.get(*pos)
29 && matches!(
30 col.ty,
31 DataType::Range(
32 RangeKind::Int4
33 | RangeKind::Int8
34 | RangeKind::Date
35 | RangeKind::Ts
36 | RangeKind::TsTz
37 )
38 )
39 {
40 return Some(*pos);
41 }
42 }
43 None
44}
45
46/// v7.39 (round 215) — rebuild the range-exclusion indexes for every table in
47/// a freshly-deserialized catalog. The indexes aren't persisted (like BRIN,
48/// they re-derive), so a catalog load must re-emit them from the persisted
49/// exclusion constraints + rows before the first EXCLUDE enforcement runs.
50pub(crate) fn rebuild_all_excl_indexes(cat: &mut spg_storage::Catalog) {
51 for name in cat.table_names() {
52 let Some(table) = cat.get_mut(&name) else {
53 continue;
54 };
55 let cols: Vec<usize> = table
56 .schema()
57 .exclusion_constraints
58 .iter()
59 .filter_map(|ex| excl_index_column(table.schema(), ex))
60 .collect();
61 for c in cols {
62 table.ensure_excl_range_index(c);
63 }
64 }
65}
66
67use crate::{
68 CancelToken, ClockFn, Engine, EngineError, QueryResult, check_existing_unique_violation,
69 coerce_value, column_type_to_data_type, enforce_fk_inserts, eval, infer_column_types,
70 literal_expr_to_value, resolve_foreign_key, rewrite_column_in_source, users,
71};
72
73/// v7.39 (round 475) — the column a `to_tsvector(…)` index key reads.
74///
75/// PG's full-text idiom is `CREATE INDEX … USING gin (to_tsvector('simple',
76/// body))`, and it is the reason a PG schema reaches the expression path at
77/// all. SPG already builds a fulltext GIN over a column for MySQL's
78/// `FULLTEXT KEY`; this recognises the shape so the PG spelling lands on the
79/// same index instead of being refused.
80///
81/// `None` for anything else, including `to_tsvector` over an expression
82/// rather than a bare column — indexing a derived value is a different
83/// build, and guessing at it would be worse than refusing.
84fn tsvector_source_column(e: &spg_sql::ast::Expr) -> Option<String> {
85 let spg_sql::ast::Expr::FunctionCall { name, args } = e else {
86 return None;
87 };
88 if !name.eq_ignore_ascii_case("to_tsvector") {
89 return None;
90 }
91 // `to_tsvector(col)` or `to_tsvector(config, col)` — either way the
92 // column is the last argument.
93 match args.last() {
94 Some(spg_sql::ast::Expr::Column(c)) => Some(c.name.clone()),
95 _ => None,
96 }
97}
98
99impl Engine {
100 /// v6.7.2 — `ALTER TABLE t SET hot_tier_bytes = X`. Dispatch
101 /// arm. Currently the only setting is `hot_tier_bytes`; later
102 /// v6.7.x can extend `AlterTableTarget` without touching this
103 /// arm structure.
104 pub(crate) fn exec_alter_table(
105 &mut self,
106 s: spg_sql::ast::AlterTableStatement,
107 ) -> Result<QueryResult, EngineError> {
108 // v7.13.2 — mailrs round-6 S1: apply each subaction in order.
109 // On first error the statement aborts; subactions already
110 // applied stay (no transactional rollback in v7.13 — wrap in
111 // BEGIN/COMMIT if atomicity matters).
112 let table_name = s.name.clone();
113 // v7.39 (round 735, S14/B3) — any table-shape change invalidates
114 // a dependent materialized view's refresh watermark.
115 self.bump_table_change(&table_name);
116 for target in s.targets {
117 self.exec_alter_table_subaction(&table_name, target)?;
118 }
119 // v7.39 (round 215) — (re)build range-exclusion indexes after any
120 // ALTER: ADD EXCLUDE installs a new one; DROP COLUMN cleared them (it
121 // shifts positions), so this restores them from the constraints'
122 // updated column positions. Idempotent for the untouched case.
123 self.install_excl_range_indexes(&table_name);
124 Ok(QueryResult::CommandOk {
125 affected: 0,
126 modified_catalog: self.catalog_change_is_committed(),
127 })
128 }
129
130 pub(crate) fn exec_alter_table_subaction(
131 &mut self,
132 table_name_outer: &str,
133 target: spg_sql::ast::AlterTableTarget,
134 ) -> Result<(), EngineError> {
135 use spg_sql::ast::AlterTableTarget as T;
136 let tbl = table_name_outer;
137 match target {
138 // v7.39 (round 647) — attach or detach an inheritance child.
139 // Accepted-and-ignored since v7.37.18, whose reasoning ("SPG
140 // doesn't support PG-style inheritance") round 645 made
141 // false. `NO INHERIT` reporting success while the child
142 // stayed attached is the worst shape a statement can have.
143 T::Inherit { parent, detach } => self.alter_inherit(tbl, &parent, detach),
144 T::SetHotTierBytes(n) => self.alter_set_hot_tier_bytes(tbl, n),
145 T::AddForeignKey(fk) => self.alter_add_foreign_key(tbl, fk),
146 T::DropForeignKey { name, if_exists } => {
147 self.alter_drop_foreign_key(tbl, name, if_exists)
148 }
149 // v7.39 (round 431) — `ALTER TABLE t DROP {INDEX|KEY} name`
150 // shares the standalone DROP INDEX path, so the two spellings
151 // cannot diverge on the not-found / IF EXISTS behaviour.
152 T::DropIndex { name, if_exists } => self.exec_drop_index(name, if_exists).map(|_| ()),
153 T::AddColumn {
154 column,
155 if_not_exists,
156 } => self.alter_add_column(tbl, column, if_not_exists),
157 T::AlterColumnType {
158 column,
159 new_type,
160 using,
161 collation,
162 } => self.alter_column_type(tbl, column, new_type, using, collation),
163 T::AddTableConstraint(tc) => self.alter_add_table_constraint(tbl, tc),
164 T::ValidateConstraint { name } => self.alter_validate_constraint(tbl, &name),
165 // v7.39 (round 652) — SPG is single-owner and has no
166 // clustered storage, so both of these remain no-ops once the
167 // name checks out. What was missing was the check.
168 T::OwnerTo { role } => {
169 if self.role_exists(&role) {
170 Ok(())
171 } else {
172 Err(EngineError::Unsupported(alloc::format!(
173 "role \"{role}\" does not exist"
174 )))
175 }
176 }
177 // v7.39 (round 710) — same shape as OwnerTo/ClusterOn above:
178 // the ACTION no-ops, the NAME check is what was missing.
179 T::OfType { type_name } => {
180 let cat = self.active_catalog();
181 if cat.enum_types().contains_key(&type_name)
182 || cat.domain_types().contains_key(&type_name)
183 || cat.composite_types().contains_key(&type_name)
184 {
185 Ok(())
186 } else {
187 Err(EngineError::Unsupported(alloc::format!(
188 "type \"{type_name}\" does not exist"
189 )))
190 }
191 }
192 T::ReplicaIdentityUsingIndex { index } => {
193 let table = self.active_catalog().get(tbl).ok_or_else(|| {
194 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
195 })?;
196 if table
197 .indices()
198 .iter()
199 .any(|i| i.name.eq_ignore_ascii_case(&index))
200 {
201 Ok(())
202 } else {
203 Err(EngineError::Unsupported(alloc::format!(
204 "index \"{index}\" for table \"{tbl}\" does not exist"
205 )))
206 }
207 }
208 T::ClusterOn { index } => {
209 let Some(index) = index else { return Ok(()) };
210 let table = self.active_catalog().get(tbl).ok_or_else(|| {
211 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
212 })?;
213 if table
214 .indices()
215 .iter()
216 .any(|i| i.name.eq_ignore_ascii_case(&index))
217 {
218 Ok(())
219 } else {
220 Err(EngineError::Unsupported(alloc::format!(
221 "index \"{index}\" for table \"{tbl}\" does not exist"
222 )))
223 }
224 }
225 T::DropColumn {
226 column,
227 if_exists,
228 cascade,
229 } => self.alter_drop_column(tbl, column, if_exists, cascade),
230 T::SetTriggerEnabled { which, enabled } => {
231 self.alter_set_trigger_enabled(tbl, which, enabled)
232 }
233 T::SetColumnAutoIncrement { column, seq_name } => {
234 self.alter_set_column_auto_increment(tbl, column, seq_name)
235 }
236 T::RenameTable { new } => self.alter_rename_table(tbl, new),
237 T::RenameColumn { old, new } => self.alter_rename_column(tbl, old, new),
238 T::RenameConstraint { old, new } => self.alter_rename_constraint(tbl, &old, new),
239 T::AttachPartition { child, bounds } => self.alter_attach_partition(tbl, child, bounds),
240 T::DetachPartition {
241 child,
242 concurrently,
243 finalize,
244 } => self.alter_detach_partition(tbl, child, concurrently, finalize),
245 T::AlterColumnSetDefault {
246 column,
247 default_expr,
248 } => self.alter_column_set_default(tbl, column, default_expr),
249 T::AlterColumnDropDefault { column } => self.alter_column_drop_default(tbl, column),
250 T::AlterColumnSetNotNull { column } => self.alter_column_set_not_null(tbl, column),
251 T::AlterColumnDropNotNull { column } => self.alter_column_drop_not_null(tbl, column),
252 // v7.39 (round 220) — RESTART [WITH n]: record the next-value
253 // floor on the identity column (max+1 alloc takes the max).
254 T::AlterColumnRestart { column, with } => {
255 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
256 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
257 })?;
258 let Some(col) = table
259 .schema_mut()
260 .columns
261 .iter_mut()
262 .find(|c| c.name.eq_ignore_ascii_case(&column))
263 else {
264 return Err(EngineError::Unsupported(alloc::format!(
265 "column \"{column}\" of relation \"{tbl}\" does not exist"
266 )));
267 };
268 col.auto_restart = Some(with.unwrap_or(1));
269 Ok(())
270 }
271 T::AlterColumnDropExpression { column, if_exists } => {
272 self.alter_column_drop_expression(tbl, column, if_exists)
273 }
274 T::AlterColumnDropIdentity { column, if_exists } => {
275 self.alter_column_drop_identity(tbl, column, if_exists)
276 }
277 T::AlterColumnSetExpression { column, expr } => {
278 self.alter_column_set_expression(tbl, column, expr)
279 }
280 T::SetRowSecurity { enabled, force } => {
281 self.alter_set_row_security(tbl, enabled, force)
282 }
283 }
284 }
285
286 /// v7.39 (RLS) — `ALTER TABLE t { ENABLE|DISABLE|FORCE|NO FORCE } ROW LEVEL
287 /// SECURITY`. Sets the schema flags (`relrowsecurity` / `relforcerowsecurity`
288 /// mirrors). Enforcement is gated on the session role (Phase 1); Phase 0
289 /// only records the flags for catalog / pg_dump fidelity.
290 fn alter_set_row_security(
291 &mut self,
292 tbl: &str,
293 enabled: Option<bool>,
294 force: Option<bool>,
295 ) -> Result<(), EngineError> {
296 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
297 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
298 })?;
299 if let Some(e) = enabled {
300 table.schema_mut().row_security = e;
301 }
302 if let Some(fo) = force {
303 table.schema_mut().force_row_security = fo;
304 }
305 Ok(())
306 }
307
308 /// v7.38 (read01 U12) — `ALTER COLUMN col SET EXPRESSION AS (expr)`
309 /// (PG 17): swap a stored generated column's expression and recompute
310 /// every existing row against the new expression.
311 fn alter_column_set_expression(
312 &mut self,
313 tbl: &str,
314 column: String,
315 expr: spg_sql::ast::Expr,
316 ) -> Result<(), EngineError> {
317 let expr_str = alloc::format!("{expr}");
318 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
319 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
320 })?;
321 let pos = table
322 .schema()
323 .columns
324 .iter()
325 .position(|c| c.name.eq_ignore_ascii_case(&column))
326 .ok_or_else(|| {
327 EngineError::Unsupported(alloc::format!(
328 "ALTER COLUMN SET EXPRESSION: column {column:?} not in table {tbl:?}"
329 ))
330 })?;
331 if table.schema().columns[pos].generated_stored_expr.is_none() {
332 return Err(EngineError::Unsupported(alloc::format!(
333 "ALTER COLUMN SET EXPRESSION: column {column:?} is not a stored generated column"
334 )));
335 }
336 table.schema_mut().columns[pos].generated_stored_expr = Some(expr_str);
337 // Recompute existing rows against the new expression.
338 let schema_cols = table.schema().columns.clone();
339 let col_ty = schema_cols[pos].ty;
340 let ctx = crate::eval::EvalContext::new(&schema_cols, None);
341 let mut new_values: Vec<Value<'static>> = Vec::with_capacity(table.rows().len());
342 for row in table.rows().iter() {
343 let v = eval::eval_expr(&expr, row, &ctx).map_err(|e| {
344 EngineError::Unsupported(alloc::format!(
345 "ALTER COLUMN SET EXPRESSION: recompute failed: {e:?}"
346 ))
347 })?;
348 new_values.push(coerce_value(v, col_ty, &column, pos)?);
349 }
350 for (i, v) in new_values.into_iter().enumerate() {
351 let mut row_values = table
352 .rows()
353 .get(i)
354 .expect("bounds-checked by the loop above")
355 .values
356 .clone();
357 row_values[pos] = v;
358 table.update_row(i, row_values)?;
359 }
360 Ok(())
361 }
362
363 /// v7.38 (read01 U10) — `ALTER COLUMN col DROP EXPRESSION` converts a
364 /// stored generated column to a plain column: clear the generation
365 /// expression so future INSERT/UPDATE accept a supplied value instead
366 /// of recomputing it. Existing stored values are left as-is.
367 fn alter_column_drop_expression(
368 &mut self,
369 tbl: &str,
370 column: String,
371 if_exists: bool,
372 ) -> Result<(), EngineError> {
373 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
374 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
375 })?;
376 let pos = table
377 .schema()
378 .columns
379 .iter()
380 .position(|c| c.name.eq_ignore_ascii_case(&column))
381 .ok_or_else(|| {
382 EngineError::Unsupported(alloc::format!(
383 "ALTER COLUMN DROP EXPRESSION: column {column:?} not in table {tbl:?}"
384 ))
385 })?;
386 if table.schema().columns[pos].generated_stored_expr.is_none() {
387 // v7.39 (round 187, U10) — PG's wordings, live-verified
388 // 2026-07-18: plain form errors, IF EXISTS raises a NOTICE
389 // and skips (`ALTER TABLE` still succeeds — pg_dump
390 // restore scripts rely on that).
391 if if_exists {
392 self.notice(alloc::format!(
393 "column \"{column}\" of relation \"{tbl}\" is not a generated column, skipping"
394 ));
395 return Ok(());
396 }
397 return Err(EngineError::Unsupported(alloc::format!(
398 "column \"{column}\" of relation \"{tbl}\" is not a generated column"
399 )));
400 }
401 table.schema_mut().columns[pos].generated_stored_expr = None;
402 Ok(())
403 }
404
405 /// v7.38 (read01, T28) — `ALTER COLUMN col DROP IDENTITY [IF EXISTS]`:
406 /// de-generate an identity column into a plain column. Errors when the
407 /// column is not an identity column, unless `IF EXISTS` was given.
408 fn alter_column_drop_identity(
409 &mut self,
410 tbl: &str,
411 column: String,
412 if_exists: bool,
413 ) -> Result<(), EngineError> {
414 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
415 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
416 })?;
417 let pos = table
418 .schema()
419 .columns
420 .iter()
421 .position(|c| c.name.eq_ignore_ascii_case(&column))
422 .ok_or_else(|| {
423 EngineError::Unsupported(alloc::format!(
424 "ALTER COLUMN DROP IDENTITY: column {column:?} not in table {tbl:?}"
425 ))
426 })?;
427 if !table.schema().columns[pos].auto_increment {
428 if if_exists {
429 return Ok(());
430 }
431 // PG18.4: `column "a" of relation "t3" is not an identity column`.
432 return Err(EngineError::Unsupported(alloc::format!(
433 "column {column:?} of relation {tbl:?} is not an identity column"
434 )));
435 }
436 table.schema_mut().columns[pos].auto_increment = false;
437 // v7.38 (read01) — a dropped identity is a plain column: clear the
438 // ALWAYS marker too so explicit INSERT values are accepted again.
439 table.schema_mut().columns[pos].identity_always = false;
440 Ok(())
441 }
442
443 /// v7.37.18 (18.1) — set / drop column default.
444 fn alter_column_set_default(
445 &mut self,
446 tbl: &str,
447 column: String,
448 default_expr: spg_sql::ast::Expr,
449 ) -> Result<(), EngineError> {
450 // Volatile defaults (now(), nextval(), …) go through the
451 // runtime_default path; literal defaults freeze into `default`.
452 let display = alloc::format!("{}", default_expr);
453 let is_runtime = matches!(default_expr, spg_sql::ast::Expr::FunctionCall { .. });
454 let literal_value = if is_runtime {
455 None
456 } else {
457 crate::conversions::literal_expr_to_value(default_expr.clone()).ok()
458 };
459 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
460 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
461 })?;
462 let pos = table
463 .schema()
464 .columns
465 .iter()
466 .position(|c| c.name.eq_ignore_ascii_case(&column))
467 .ok_or_else(|| {
468 EngineError::Unsupported(alloc::format!(
469 "column {column:?} of relation {tbl:?} does not exist"
470 ))
471 })?;
472 let col = &mut table.schema_mut().columns[pos];
473 if is_runtime {
474 col.runtime_default = Some(display);
475 col.default = None;
476 } else if let Some(v) = literal_value {
477 col.default = Some(v);
478 col.runtime_default = None;
479 } else {
480 // Could not evaluate; fall back to runtime path.
481 col.runtime_default = Some(display);
482 col.default = None;
483 }
484 Ok(())
485 }
486
487 fn alter_column_drop_default(&mut self, tbl: &str, column: String) -> Result<(), EngineError> {
488 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
489 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
490 })?;
491 let pos = table
492 .schema()
493 .columns
494 .iter()
495 .position(|c| c.name.eq_ignore_ascii_case(&column))
496 .ok_or_else(|| {
497 EngineError::Unsupported(alloc::format!(
498 "ALTER COLUMN DROP DEFAULT: column {column:?} not in table {tbl:?}"
499 ))
500 })?;
501 let col = &mut table.schema_mut().columns[pos];
502 col.default = None;
503 col.runtime_default = None;
504 Ok(())
505 }
506
507 /// v7.37.18 (18.2) — set / drop column NOT NULL flag.
508 fn alter_column_set_not_null(&mut self, tbl: &str, column: String) -> Result<(), EngineError> {
509 // Validate no existing row holds NULL in this column
510 // before flipping the flag. PG raises on first NULL hit.
511 // v7.39 (read01 round 49) — scan VISIBLE rows, not physical ones.
512 // Under in-place MVCC a DELETE leaves a tombstoned physical row
513 // behind; counting it made `DELETE FROM t; ALTER TABLE t ALTER c SET
514 // NOT NULL` fail on a table PG sees as empty (the flip-regression
515 // family: same shape as the ATTACH PARTITION empty-check and the
516 // ALTER TYPE rewrite bug).
517 let snap = self.current_snapshot();
518 let table = self.active_catalog().get(tbl).ok_or_else(|| {
519 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
520 })?;
521 let pos = table
522 .schema()
523 .columns
524 .iter()
525 .position(|c| c.name.eq_ignore_ascii_case(&column))
526 .ok_or_else(|| {
527 EngineError::Unsupported(alloc::format!(
528 "column {column:?} of relation {tbl:?} does not exist"
529 ))
530 })?;
531 for (_, row) in table.scan_visible(&snap) {
532 if matches!(row.values.get(pos), Some(spg_storage::Value::Null)) {
533 // v7.39 (read01 round 49) — PG wording (23502 at the wire).
534 return Err(EngineError::Unsupported(alloc::format!(
535 "column {column:?} of relation {tbl:?} contains null values"
536 )));
537 }
538 }
539 let table = self
540 .active_catalog_mut()
541 .get_mut(tbl)
542 .expect("checked above");
543 table.schema_mut().columns[pos].nullable = false;
544 Ok(())
545 }
546
547 fn alter_column_drop_not_null(&mut self, tbl: &str, column: String) -> Result<(), EngineError> {
548 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
549 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
550 })?;
551 let pos = table
552 .schema()
553 .columns
554 .iter()
555 .position(|c| c.name.eq_ignore_ascii_case(&column))
556 .ok_or_else(|| {
557 EngineError::Unsupported(alloc::format!(
558 "ALTER COLUMN DROP NOT NULL: column {column:?} not in table {tbl:?}"
559 ))
560 })?;
561 table.schema_mut().columns[pos].nullable = true;
562 Ok(())
563 }
564
565 /// v7.37.16 (16.3) — `ALTER TABLE parent ATTACH PARTITION child <bounds>`.
566 ///
567 /// Promotes an existing standalone table `child` into a partition
568 /// of `parent`. Enforces:
569 /// 1. `parent` is a partition parent (`PartitionRole::Parent`).
570 /// 2. `child` is currently standalone (`partition_role == None`).
571 /// 3. `child`'s column list is layout-compatible with `parent`
572 /// (same column names, types and ordering — PG also requires
573 /// this and uses it to delegate the actual storage).
574 /// 4. `bounds` shape matches `parent.kind` (Range/List/Hash).
575 /// 5. New range / list / hash bounds don't overlap any existing
576 /// sibling — same gates as the CREATE TABLE … PARTITION OF
577 /// path.
578 /// 6. Every existing row in `child` satisfies the bound predicate
579 /// (PG's "partition constraint" check). Mis-fits raise; no
580 /// silent re-routing.
581 fn alter_attach_partition(
582 &mut self,
583 parent_name: &str,
584 child_name: String,
585 bounds: spg_sql::ast::PartitionOfBoundsAst,
586 ) -> Result<(), EngineError> {
587 use spg_sql::ast::PartitionOfBoundsAst;
588 use spg_storage::{PartitionKind, PartitionRole};
589 // Parent gate.
590 let (parent_kind, parent_columns) = {
591 let parent = self.active_catalog().get(parent_name).ok_or_else(|| {
592 EngineError::Storage(StorageError::TableNotFound {
593 name: parent_name.into(),
594 })
595 })?;
596 match &parent.schema().partition_role {
597 Some(PartitionRole::Parent { kind, .. }) => {
598 (*kind, parent.schema().columns.clone())
599 }
600 _ => {
601 return Err(EngineError::Unsupported(alloc::format!(
602 "ALTER TABLE … ATTACH PARTITION: {parent_name:?} is not a partition parent"
603 )));
604 }
605 }
606 };
607 // Child gate: must exist + be standalone + share parent's
608 // column layout.
609 {
610 let child = self.active_catalog().get(&child_name).ok_or_else(|| {
611 EngineError::Storage(StorageError::TableNotFound {
612 name: child_name.clone(),
613 })
614 })?;
615 if child.schema().partition_role.is_some() {
616 return Err(EngineError::Unsupported(alloc::format!(
617 "ALTER TABLE … ATTACH PARTITION: {child_name:?} is already a partition; \
618 DETACH it first"
619 )));
620 }
621 let child_cols = &child.schema().columns;
622 if child_cols.len() != parent_columns.len() {
623 return Err(EngineError::Unsupported(alloc::format!(
624 "ALTER TABLE … ATTACH PARTITION: column-count mismatch \
625 ({child_name:?} has {}, {parent_name:?} has {})",
626 child_cols.len(),
627 parent_columns.len()
628 )));
629 }
630 for (c, p) in child_cols.iter().zip(parent_columns.iter()) {
631 if !c.name.eq_ignore_ascii_case(&p.name) || c.ty != p.ty {
632 return Err(EngineError::Unsupported(alloc::format!(
633 "ALTER TABLE … ATTACH PARTITION: column {:?} of {child_name:?} \
634 (type {:?}) doesn't match column {:?} of {parent_name:?} (type {:?})",
635 c.name,
636 c.ty,
637 p.name,
638 p.ty
639 )));
640 }
641 }
642 }
643 // Resolve bounds (same gates as CREATE TABLE … PARTITION OF).
644 let role = match bounds {
645 PartitionOfBoundsAst::Default => PartitionRole::Default {
646 parent_name: parent_name.into(),
647 },
648 PartitionOfBoundsAst::Range { lower, upper } => {
649 if !matches!(parent_kind, PartitionKind::Range) {
650 return Err(EngineError::Unsupported(alloc::format!(
651 "ATTACH PARTITION: FOR VALUES FROM/TO only valid for a RANGE-partitioned \
652 parent (parent {parent_name:?} is {parent_kind:?})"
653 )));
654 }
655 let lower_b = crate::partition::evaluate_partition_bound(*lower)?;
656 let upper_b = crate::partition::evaluate_partition_bound(*upper)?;
657 if !crate::partition::ranges_overlap(&lower_b, &upper_b, &lower_b, &upper_b) {
658 return Err(EngineError::Unsupported(alloc::format!(
659 "ATTACH PARTITION: FROM ({}) TO ({}) is empty (lower must be < upper)",
660 crate::partition::bound_to_diag(&lower_b),
661 crate::partition::bound_to_diag(&upper_b),
662 )));
663 }
664 for sib in crate::partition::children_of_parent(self.active_catalog(), parent_name)
665 {
666 let Some(t) = self.active_catalog().get(&sib) else {
667 continue;
668 };
669 if let Some(PartitionRole::Range {
670 lower: sl,
671 upper: su,
672 ..
673 }) = &t.schema().partition_role
674 {
675 if crate::partition::ranges_overlap(&lower_b, &upper_b, sl, su) {
676 return Err(EngineError::Unsupported(alloc::format!(
677 "ATTACH PARTITION: range FROM ({}) TO ({}) overlaps sibling \
678 {sib:?} (FROM ({}) TO ({}))",
679 crate::partition::bound_to_diag(&lower_b),
680 crate::partition::bound_to_diag(&upper_b),
681 crate::partition::bound_to_diag(sl),
682 crate::partition::bound_to_diag(su),
683 )));
684 }
685 }
686 }
687 PartitionRole::Range {
688 parent_name: parent_name.into(),
689 lower: lower_b,
690 upper: upper_b,
691 }
692 }
693 PartitionOfBoundsAst::List { values } => {
694 if !matches!(parent_kind, PartitionKind::List) {
695 return Err(EngineError::Unsupported(alloc::format!(
696 "ATTACH PARTITION: FOR VALUES IN only valid for a LIST-partitioned \
697 parent (parent {parent_name:?} is {parent_kind:?})"
698 )));
699 }
700 let mut bounds_v = Vec::with_capacity(values.len());
701 for v in values {
702 bounds_v.push(crate::partition::evaluate_partition_bound(v)?);
703 }
704 for sib in crate::partition::children_of_parent(self.active_catalog(), parent_name)
705 {
706 let Some(t) = self.active_catalog().get(&sib) else {
707 continue;
708 };
709 if let Some(PartitionRole::List {
710 values: existing, ..
711 }) = &t.schema().partition_role
712 {
713 for new_b in &bounds_v {
714 if existing.iter().any(|e| e == new_b) {
715 // v7.39 (round 770) — PG's overlap sentence.
716 let _ = crate::partition::bound_to_diag(new_b);
717 return Err(EngineError::Unsupported(alloc::format!(
718 "partition \"{child_name}\" would overlap partition \"{sib}\"",
719 )));
720 }
721 }
722 }
723 }
724 PartitionRole::List {
725 parent_name: parent_name.into(),
726 values: bounds_v,
727 }
728 }
729 PartitionOfBoundsAst::Hash { modulus, remainder } => {
730 if !matches!(parent_kind, PartitionKind::Hash) {
731 return Err(EngineError::Unsupported(alloc::format!(
732 "ATTACH PARTITION: FOR VALUES WITH only valid for a HASH-partitioned \
733 parent (parent {parent_name:?} is {parent_kind:?})"
734 )));
735 }
736 if modulus == 0 || remainder >= modulus {
737 return Err(EngineError::Unsupported(alloc::format!(
738 "ATTACH PARTITION: HASH (MODULUS={modulus}, REMAINDER={remainder}) \
739 must satisfy modulus > 0 and remainder < modulus"
740 )));
741 }
742 for sib in crate::partition::children_of_parent(self.active_catalog(), parent_name)
743 {
744 let Some(t) = self.active_catalog().get(&sib) else {
745 continue;
746 };
747 if let Some(PartitionRole::Hash {
748 modulus: m,
749 remainder: r,
750 ..
751 }) = &t.schema().partition_role
752 {
753 if *m != modulus {
754 return Err(EngineError::Unsupported(alloc::format!(
755 "ATTACH PARTITION: HASH MODULUS {modulus} differs from sibling \
756 {sib:?} MODULUS {m} (mixed moduli not yet supported)"
757 )));
758 }
759 if *r == remainder {
760 return Err(EngineError::Unsupported(alloc::format!(
761 "ATTACH PARTITION: HASH REMAINDER {remainder} already used \
762 by sibling {sib:?}"
763 )));
764 }
765 }
766 }
767 PartitionRole::Hash {
768 parent_name: parent_name.into(),
769 modulus,
770 remainder,
771 }
772 }
773 };
774 // PG-style "partition constraint" check — every existing row
775 // in child must satisfy the new role's predicate. For now we
776 // leave row-validation as TODO (16.3.b): pre-existing rows
777 // could violate the bound. v7.37.16.3 ships with a
778 // pessimistic gate: refuse ATTACH if the child has any rows
779 // and require the operator to either DROP them first or use
780 // a fresh empty child. This matches PG's safest behaviour
781 // (PG actually scans the rows; our scan path lands in
782 // 16.3.b). Match the spirit, not the letter.
783 // Count *visible* rows: under in-place MVCC a DELETE leaves a
784 // tombstoned physical row behind, which must not fail the
785 // empty-child gate (legacy path removed it physically).
786 // v7.39 (round 621) — 16.3.b, the row scan the gate above promised.
787 //
788 // The pessimistic "child must be empty" gate refused the ordinary
789 // migration — build a table, load it, attach it — that partitioned
790 // setups are adopted FOR. PG scans the rows; now so does this. Every
791 // visible row's key must satisfy the new bound, and one that does not
792 // raises PG's wording (`partition constraint of relation … is violated
793 // by some row`) BEFORE the role is installed, so a failed attach
794 // changes nothing.
795 let key_pos = {
796 let parent = self.active_catalog().get(parent_name);
797 match parent.and_then(|p| p.schema().partition_role.as_ref()) {
798 Some(spg_storage::PartitionRole::Parent {
799 key_column_positions,
800 ..
801 }) => key_column_positions.first().copied().unwrap_or(0),
802 _ => 0,
803 }
804 };
805 let snap = self.current_snapshot();
806 if let Some(t) = self.active_catalog().get(&child_name) {
807 for (_, row) in t.scan_visible(&snap) {
808 let key = row.values.get(key_pos).cloned().unwrap_or(Value::Null);
809 let fits = match &role {
810 PartitionRole::Range { lower, upper, .. } => {
811 crate::partition::value_to_bound(&key)
812 .is_some_and(|b| crate::partition::value_in_range(&b, lower, upper))
813 }
814 PartitionRole::List { values, .. } => {
815 values.iter().any(|b| b.equals_value(&key))
816 }
817 PartitionRole::Hash {
818 modulus, remainder, ..
819 } => {
820 crate::partition::pg_compatible_hash(&key).rem_euclid(u64::from(*modulus))
821 == u64::from(*remainder)
822 }
823 // A DEFAULT partition takes whatever no sibling claims, so
824 // any existing row satisfies it.
825 // v7.39 (round 645) — an inheritance child has no key
826 // constraint at all: nothing it holds can fail to fit.
827 PartitionRole::Default { .. }
828 | PartitionRole::Parent { .. }
829 | PartitionRole::Inherits { .. } => true,
830 };
831 if !fits {
832 return Err(EngineError::Unsupported(alloc::format!(
833 "partition constraint of relation {child_name:?} is violated by some row"
834 )));
835 }
836 }
837 }
838 // Install role.
839 let child = self
840 .active_catalog_mut()
841 .get_mut(&child_name)
842 .expect("child existed above");
843 child.schema_mut().partition_role = Some(role);
844 Ok(())
845 }
846
847 /// v7.37.16 (16.4 + 16.5) — `ALTER TABLE parent DETACH PARTITION
848 /// child [CONCURRENTLY] [FINALIZE]`.
849 ///
850 /// Demotes a partition back to a standalone table by clearing
851 /// `partition_role`. CONCURRENTLY + FINALIZE are accepted at the
852 /// parser; semantically SPG's single-engine model lets us detach
853 /// atomically (PG's two-phase split addresses replication lag,
854 /// which doesn't apply here).
855 fn alter_detach_partition(
856 &mut self,
857 parent_name: &str,
858 child_name: String,
859 _concurrently: bool,
860 _finalize: bool,
861 ) -> Result<(), EngineError> {
862 use spg_storage::PartitionRole;
863 // Parent gate.
864 {
865 let parent = self.active_catalog().get(parent_name).ok_or_else(|| {
866 EngineError::Storage(StorageError::TableNotFound {
867 name: parent_name.into(),
868 })
869 })?;
870 if !matches!(
871 parent.schema().partition_role,
872 Some(PartitionRole::Parent { .. })
873 ) {
874 return Err(EngineError::Unsupported(alloc::format!(
875 "ALTER TABLE … DETACH PARTITION: {parent_name:?} is not a partition parent"
876 )));
877 }
878 }
879 // Child gate: must be a partition of THIS parent.
880 {
881 let child = self.active_catalog().get(&child_name).ok_or_else(|| {
882 EngineError::Storage(StorageError::TableNotFound {
883 name: child_name.clone(),
884 })
885 })?;
886 let parent_of_child = match &child.schema().partition_role {
887 Some(PartitionRole::Range { parent_name, .. })
888 | Some(PartitionRole::List { parent_name, .. })
889 | Some(PartitionRole::Hash { parent_name, .. })
890 | Some(PartitionRole::Default { parent_name }) => parent_name.clone(),
891 _ => {
892 return Err(EngineError::Unsupported(alloc::format!(
893 "DETACH PARTITION: {child_name:?} is not a partition"
894 )));
895 }
896 };
897 if parent_of_child != parent_name {
898 return Err(EngineError::Unsupported(alloc::format!(
899 "DETACH PARTITION: {child_name:?} is a partition of {parent_of_child:?}, \
900 not {parent_name:?}"
901 )));
902 }
903 }
904 // Clear role.
905 let child = self
906 .active_catalog_mut()
907 .get_mut(&child_name)
908 .expect("child existed above");
909 child.schema_mut().partition_role = None;
910 Ok(())
911 }
912
913 /// v7.39 (round 647) — `ALTER TABLE c INHERIT p` / `NO INHERIT p`.
914 ///
915 /// Measured on PG18: after `NO INHERIT`, the parent stops seeing the
916 /// child's rows, `pg_inherits` loses the row, and the child keeps
917 /// everything it had. `INHERIT` puts it back. Neither moves a row.
918 ///
919 /// A child of several parents keeps the others; the parent list is
920 /// ordered, and dropping one from the middle leaves the rest in
921 /// place — which is also what makes `pg_inherits.inhseqno` keep
922 /// meaning what it means.
923 fn alter_inherit(
924 &mut self,
925 child: &str,
926 parent: &str,
927 detach: bool,
928 ) -> Result<(), EngineError> {
929 use spg_storage::PartitionRole;
930 if self.active_catalog().get(parent).is_none() {
931 return Err(EngineError::Storage(
932 spg_storage::StorageError::TableNotFound {
933 name: parent.to_string(),
934 },
935 ));
936 }
937 let Some(t) = self.active_catalog_mut().get_mut(child) else {
938 return Err(EngineError::Storage(
939 spg_storage::StorageError::TableNotFound {
940 name: child.to_string(),
941 },
942 ));
943 };
944 let current = match &t.schema().partition_role {
945 Some(PartitionRole::Inherits { parent_names }) => parent_names.clone(),
946 Some(_) => {
947 return Err(EngineError::Unsupported(alloc::format!(
948 "{child:?} is a partition, not an inheritance child"
949 )));
950 }
951 None => Vec::new(),
952 };
953 let mut names = current;
954 if detach {
955 let before = names.len();
956 names.retain(|p| !p.eq_ignore_ascii_case(parent));
957 if names.len() == before {
958 // v7.39 (round 652) — PG names the PARENT first:
959 // `relation "parent" is not a parent of relation "child"`.
960 // SPG had the two the other way round, so a client
961 // matching on the message read the wrong relation as the
962 // one at fault.
963 return Err(EngineError::Unsupported(alloc::format!(
964 "relation {parent:?} is not a parent of relation {child:?}"
965 )));
966 }
967 } else {
968 if names.iter().any(|p| p.eq_ignore_ascii_case(parent)) {
969 return Err(EngineError::Unsupported(alloc::format!(
970 "relation {child:?} would be inherited from {parent:?} more than once"
971 )));
972 }
973 names.push(parent.to_string());
974 }
975 t.schema_mut().partition_role = if names.is_empty() {
976 None
977 } else {
978 Some(PartitionRole::Inherits {
979 parent_names: names,
980 })
981 };
982 Ok(())
983 }
984
985 fn alter_set_hot_tier_bytes(&mut self, tbl: &str, n: u64) -> Result<(), EngineError> {
986 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
987 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
988 })?;
989 table.schema_mut().hot_tier_bytes = Some(n);
990 Ok(())
991 }
992
993 fn alter_add_foreign_key(
994 &mut self,
995 tbl: &str,
996 fk: spg_sql::ast::ForeignKeyConstraint,
997 ) -> Result<(), EngineError> {
998 // v7.6.8 — resolve FK against the live catalog first
999 // (validates parent table, columns, indices). Then
1000 // verify every existing row in the child table
1001 // satisfies the new constraint. Then install it.
1002 let cols_snapshot = self
1003 .active_catalog()
1004 .get(tbl)
1005 .ok_or_else(|| EngineError::Storage(StorageError::TableNotFound { name: tbl.into() }))?
1006 .schema()
1007 .columns
1008 .clone();
1009 let storage_fk = resolve_foreign_key(tbl, &cols_snapshot, fk, self.active_catalog())?;
1010 // Verify existing rows. Treat them as a virtual
1011 // INSERT batch — reusing the v7.6.2 enforce helper.
1012 let existing_rows: Vec<Vec<Value<'static>>> = self
1013 .active_catalog()
1014 .get(tbl)
1015 .expect("checked above")
1016 .rows()
1017 .iter()
1018 .map(|r| r.values.clone())
1019 .collect();
1020 enforce_fk_inserts(
1021 self.active_catalog(),
1022 tbl,
1023 core::slice::from_ref(&storage_fk),
1024 &existing_rows,
1025 )?;
1026 // Reject duplicate constraint name.
1027 let table = self
1028 .active_catalog_mut()
1029 .get_mut(tbl)
1030 .expect("checked above");
1031 if let Some(name) = &storage_fk.name
1032 && table
1033 .schema()
1034 .foreign_keys
1035 .iter()
1036 .any(|f| f.name.as_ref() == Some(name))
1037 {
1038 // v7.39 (read01 round 47) — PG wording (42710).
1039 return Err(EngineError::Unsupported(alloc::format!(
1040 "constraint {name:?} for relation {tbl:?} already exists"
1041 )));
1042 }
1043 table.schema_mut().foreign_keys.push(storage_fk);
1044 Ok(())
1045 }
1046
1047 /// v7.13.2 / v7.37.18 (18.17 widened) — DROP CONSTRAINT for
1048 /// FK + PK/UNIQUE + CHECK. Originally FK-only; widened to
1049 /// match PG's behaviour where `ALTER TABLE t DROP CONSTRAINT
1050 /// t_pkey` removes a PRIMARY KEY just like it would an FK.
1051 fn alter_drop_foreign_key(
1052 &mut self,
1053 tbl: &str,
1054 name: String,
1055 if_exists: bool,
1056 ) -> Result<(), EngineError> {
1057 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
1058 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
1059 })?;
1060 // v7.39 (read01 round 48) — 0) the stored name wins. A constraint
1061 // created with `ADD CONSTRAINT <name> …` (or the inline `CONSTRAINT
1062 // <name>` form) now carries that name, so DROP finds it directly.
1063 // Catalogs written before FILE_VERSION 60 have no stored names and
1064 // fall through to the synthesised-name lookups below, which stay
1065 // exactly as they were.
1066 {
1067 let ucs = &mut table.schema_mut().uniqueness_constraints;
1068 let before = ucs.len();
1069 ucs.retain(|u| u.name.as_deref() != Some(name.as_str()));
1070 if ucs.len() != before {
1071 return Ok(());
1072 }
1073 let checks = &mut table.schema_mut().checks;
1074 let before = checks.len();
1075 checks.retain(|c| c.name.as_deref() != Some(name.as_str()));
1076 if checks.len() != before {
1077 return Ok(());
1078 }
1079 }
1080 // 1) Try foreign keys.
1081 let fks = &mut table.schema_mut().foreign_keys;
1082 let fk_before = fks.len();
1083 fks.retain(|f| f.name.as_ref() != Some(&name));
1084 if fks.len() != fk_before {
1085 return Ok(());
1086 }
1087 // 2) Try PK / UNIQUE constraints by their SYNTHESISED name.
1088 // v7.39 (read01 round 48) — resolve through the very
1089 // synthesisers pg_constraint / pg_get_constraintdef report from
1090 // (`pg_unique_conname` / `pg_check_connames`), so a name the
1091 // catalog shows is always a name DROP accepts. The old ad-hoc
1092 // `<table>_uniqN` / `<table>_checkN` prefixes never matched what
1093 // the views printed (`<table>_<col>_key` / `<table>_<col>_check`).
1094 // (Single-column UNIQUE indices that don't have a UC entry need to go
1095 // through `DROP INDEX <name>` instead — indices are a slice, not a Vec.)
1096 let uc_hit = table.schema().uniqueness_constraints.iter().position(|uc| {
1097 uc.name.is_none() && crate::system_catalog::pg_unique_conname(table, uc, tbl) == name
1098 });
1099 if let Some(idx) = uc_hit {
1100 table.schema_mut().uniqueness_constraints.remove(idx);
1101 return Ok(());
1102 }
1103 // 3) CHECK constraints by their synthesised name.
1104 let check_names =
1105 crate::system_catalog::pg_check_connames(table, tbl, &table.schema().checks);
1106 let check_hit = check_names.iter().position(|n| *n == name);
1107 if let Some(idx) = check_hit {
1108 let checks = &mut table.schema_mut().checks;
1109 if idx < checks.len() {
1110 checks.remove(idx);
1111 return Ok(());
1112 }
1113 }
1114 // Nothing matched; respect IF EXISTS.
1115 if if_exists {
1116 return Ok(());
1117 }
1118 // v7.39 (read01 round 47) — PG wording (42704). Note PG's own
1119 // inconsistency: DROP CONSTRAINT says "of relation" while ADD
1120 // CONSTRAINT says "for relation" — both are matched verbatim.
1121 Err(EngineError::Unsupported(alloc::format!(
1122 "constraint {name:?} of relation {tbl:?} does not exist"
1123 )))
1124 }
1125
1126 fn alter_add_column(
1127 &mut self,
1128 tbl: &str,
1129 column: ColumnDef,
1130 if_not_exists: bool,
1131 ) -> Result<(), EngineError> {
1132 // v7.13.0 — mailrs round-5 G1. Append-only column add
1133 // with back-fill of the DEFAULT (or NULL) into every
1134 // existing row. Column positions don't shift, so we
1135 // skip index rebuild.
1136 let clock = self.clock;
1137 let add_mysql = self.backslash_escapes;
1138 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
1139 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
1140 })?;
1141 if table
1142 .schema()
1143 .columns
1144 .iter()
1145 .any(|c| c.name.eq_ignore_ascii_case(&column.name))
1146 {
1147 if if_not_exists {
1148 // v7.39 (read01 round 46) — PG's IF NOT EXISTS skip NOTICE.
1149 self.notice(alloc::format!(
1150 "column {:?} of relation {:?} already exists, skipping",
1151 column.name,
1152 tbl
1153 ));
1154 return Ok(());
1155 }
1156 // v7.39 (read01 round 45) — PG wording (42701 at the wire).
1157 return Err(EngineError::Unsupported(alloc::format!(
1158 "column {:?} of relation {:?} already exists",
1159 column.name,
1160 tbl
1161 )));
1162 }
1163 let col_name = column.name.clone();
1164 let nullable = column.nullable;
1165 let has_default = column.default.is_some() || column.auto_increment;
1166 // v7.38.3 (sentori 2.2) — the inline `CHECK (…)` on an ADD COLUMN.
1167 // The parser has always put it on the ColumnDef and this path has
1168 // never read it, so `ALTER TABLE t ADD COLUMN env text CHECK (env
1169 // IN ('a','b'))` was ACCEPTED and registered nothing: pg_constraint
1170 // showed no row and a violating INSERT went in. A constraint that
1171 // silently does not exist is worse than one that loudly does not
1172 // work. (The separate `ADD CONSTRAINT` form was always enforced —
1173 // only the inline-on-ADD-COLUMN spelling vanished.)
1174 let inline_check = column.check.clone().map(|e| e.to_string());
1175 let col_schema = column_def_to_schema(column, add_mysql)?;
1176 let row_count = table.row_count();
1177 // Compute the back-fill value. Literal / runtime DEFAULT
1178 // funnels through the same resolver that INSERT uses
1179 // (v7.9.21 `resolve_column_default_free`). NULL when
1180 // the column is nullable and has no DEFAULT. NOT NULL
1181 // without DEFAULT errors when the table has existing
1182 // rows — same as PG.
1183 let fill_value: Value<'static> = if has_default || col_schema.runtime_default.is_some() {
1184 resolve_column_default_free(&col_schema, clock, None)?
1185 } else if nullable || row_count == 0 {
1186 Value::Null
1187 } else {
1188 // v7.39 (read01 round 89) — PG's exact wording (23502):
1189 // `column "req" of relation "t" contains null values`.
1190 return Err(EngineError::Unsupported(alloc::format!(
1191 "column \"{col_name}\" of relation \"{tbl}\" contains null values"
1192 )));
1193 };
1194 table.add_column(col_schema, fill_value);
1195 // The column exists before the CHECK is validated, because the
1196 // predicate is written in terms of it. PG validates against the
1197 // rows already there and refuses the whole statement if any fails
1198 // — measured: adding `e text CHECK (e IS NOT NULL)` to a table
1199 // with a row errors ("is violated by some row"), while the same
1200 // column with a DEFAULT that satisfies it succeeds. On refusal the
1201 // column has to come back out; nothing else has happened yet.
1202 if let Some(src) = inline_check {
1203 let pos = table.schema().columns.len() - 1;
1204 let name = alloc::format!("{tbl}_{col_name}_check");
1205 if let Err(e) =
1206 crate::constraints::validate_check_against_existing_rows(table, tbl, &name, &src)
1207 {
1208 table.drop_column(pos);
1209 return Err(e);
1210 }
1211 table
1212 .schema_mut()
1213 .checks
1214 .push(spg_storage::CheckConstraint {
1215 // Unnamed: `pg_check_connames` synthesises PG's
1216 // `<table>_<column>_check` from the referenced column, the
1217 // same name the CREATE TABLE spelling gets.
1218 name: None,
1219 expr: src,
1220 validated: true,
1221 });
1222 }
1223 Ok(())
1224 }
1225
1226 fn alter_column_type(
1227 &mut self,
1228 tbl: &str,
1229 column: String,
1230 new_type: spg_sql::ast::ColumnTypeName,
1231 using: Option<Expr>,
1232 collation: Option<(spg_sql::ast::Collation, alloc::string::String)>,
1233 ) -> Result<(), EngineError> {
1234 // v7.13.0 — mailrs round-5 G8. Re-evaluate each
1235 // row's column value (either through the USING
1236 // expression if supplied, or as a direct CAST of
1237 // the existing value) and re-coerce to the new
1238 // type. Indices on the column get rebuilt.
1239 let new_data_type = column_type_to_data_type(new_type);
1240 // v7.39 (round 713) — `TYPE <ty> COLLATE <name>`. PG refuses a
1241 // collation on a non-collatable type; on a collatable one it
1242 // re-collates, and NO clause resets to the type default (both
1243 // measured round 713). The clause parsed here all along and was
1244 // dropped — the statement succeeded, the ordering never changed.
1245 let is_collatable = matches!(
1246 new_data_type,
1247 DataType::Text | DataType::Varchar(_) | DataType::Char(_)
1248 );
1249 if collation.is_some() && !is_collatable {
1250 let spelled = crate::conversions::regtype_oid_to_name(
1251 crate::system_catalog::pg_type_oid(new_data_type),
1252 )
1253 .unwrap_or("this type");
1254 return Err(EngineError::Unsupported(alloc::format!(
1255 "collations are not supported by type {spelled}"
1256 )));
1257 }
1258 // v7.38.18 (G2) — a collation PostgreSQL does not have is not a
1259 // collation, and PG 18.4 says so: `collation "x" for encoding
1260 // "UTF8" does not exist`. Round 670 chose warn-not-refuse under
1261 // the zero-customer-change ruling, when this build could perform
1262 // almost nothing and refusing would have failed working DDL.
1263 // That calculus has inverted: 880 names are performable now, so
1264 // the only ones refused here are the ones PG refuses too, and
1265 // refusing is what keeps a customer's DDL behaving the same.
1266 //
1267 // The dialect decides, because MySQL's names are not in PG's
1268 // catalogue and PG rejects them — measured on 18.4.
1269 if let Some((_, name)) = &collation
1270 && !crate::collate::is_known(name)
1271 {
1272 return Err(crate::collate::unknown_collation_error(name));
1273 }
1274 // v7.38.18 — the warning that used to stand here said range
1275 // comparisons "still compare by bytes". That stopped being true
1276 // in this version: a declared collation reaches `<`, `BETWEEN`
1277 // and the index keys, verified against PG 18.4. A warning that
1278 // is false is worse than none, so only the unperformable case
1279 // keeps one.
1280 if let Some((_, name)) = &collation
1281 && !crate::collate::is_supported(name)
1282 {
1283 self.warning(alloc::format!(
1284 "column \"{column}\" declares COLLATE \"{name}\", which this build \
1285 cannot perform; SPG records the declaration and orders this column \
1286 by bytes (the C collation)"
1287 ));
1288 }
1289 let mysql_dialect = self.backslash_escapes;
1290 // v7.39 — under in-place MVCC the row store carries tombstoned
1291 // versions; their dead values must not join the rewrite (an
1292 // INT corpse under a TEXT conversion would abort the whole
1293 // ALTER). Snapshot BEFORE the &mut borrow.
1294 let scan_snapshot = self.current_snapshot();
1295 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
1296 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
1297 })?;
1298 let col_pos = table
1299 .schema()
1300 .columns
1301 .iter()
1302 .position(|c| c.name.eq_ignore_ascii_case(&column))
1303 .ok_or_else(|| {
1304 EngineError::Unsupported(alloc::format!(
1305 "column {column:?} of relation {:?} does not exist",
1306 tbl
1307 ))
1308 })?;
1309 // v7.36 (cold-tier coverage) — ALTER COLUMN TYPE rewrites
1310 // every row's value to the new representation. Cold-tier
1311 // rows live in segments encoded against the OLD type and
1312 // can't be rewritten in-place from this path; doing the
1313 // ALTER anyway would leave the segments unreadable under
1314 // the new schema. Match PG / MariaDB's invariant of "never
1315 // half-apply a schema change" by raising explicitly.
1316 // v7.39 (round 456) — O(1) predicate first; see the DELETE path.
1317 if table.has_cold_rows_fast() && table.count_cold_locators() > 0 {
1318 return Err(EngineError::Unsupported(alloc::format!(
1319 "ALTER COLUMN TYPE on {tbl:?}: cold-tier rows exist for this table; \
1320 cold-tier schema rewrite is a v7.37 candidate. Run COMPACT to bring \
1321 the cold rows back to the hot tier and retry."
1322 )));
1323 }
1324 let schema_cols = table.schema().columns.clone();
1325 let ctx = eval::EvalContext::new(&schema_cols, None);
1326 // `None` = a tombstoned version: left untouched entirely (its
1327 // slot is never rewritten, so the update_row type check on the
1328 // NEW schema never sees the old-type corpse).
1329 let mut new_values: alloc::vec::Vec<Option<Value<'static>>> =
1330 alloc::vec::Vec::with_capacity(table.row_count());
1331 for (ri, row) in table.rows().iter().enumerate() {
1332 if !table.is_row_visible(ri, &scan_snapshot) {
1333 new_values.push(None);
1334 continue;
1335 }
1336 let raw = match &using {
1337 Some(expr) => eval::eval_expr(expr, row, &ctx).map_err(|e| {
1338 EngineError::Unsupported(alloc::format!(
1339 "ALTER COLUMN TYPE: USING expression failed: {e:?}"
1340 ))
1341 })?,
1342 None => row.values.get(col_pos).cloned().unwrap_or(Value::Null),
1343 };
1344 // v7.39 — PG's ALTER TYPE without USING applies the
1345 // assignment cast, which is wider than INSERT's strict
1346 // coercion: any value casts to the text family through
1347 // its output function (INT -> TEXT rewrites the column),
1348 // while a narrowing like TEXT -> INT is refused with
1349 // PG's phrasing + HINT. A USING expression bypasses this
1350 // (its result must strictly coerce).
1351 let coerced = match coerce_value(raw.clone(), new_data_type, &column, col_pos) {
1352 Ok(v) => v,
1353 Err(_)
1354 if using.is_none()
1355 && matches!(
1356 new_data_type,
1357 DataType::Text | DataType::Varchar(_) | DataType::Char(_)
1358 ) =>
1359 {
1360 coerce_value(
1361 Value::text(crate::eval::value_to_text(&raw)),
1362 new_data_type,
1363 &column,
1364 col_pos,
1365 )?
1366 }
1367 Err(e) => {
1368 if using.is_none() {
1369 return Err(EngineError::Unsupported(alloc::format!(
1370 "column \"{column}\" cannot be cast automatically to type \
1371 {new_data_type:?}; You might need to specify a USING expression"
1372 )));
1373 }
1374 return Err(e);
1375 }
1376 };
1377 new_values.push(Some(coerced));
1378 }
1379 table.schema_mut().columns[col_pos].ty = new_data_type;
1380 // v7.39 (round 713) — the collation lands with the type, exactly
1381 // as CREATE TABLE lands it (the round-370/676 pair of fields).
1382 // An absent clause is a RESET, not a keep: PG re-derives the
1383 // collation from the new type, so `TYPE text` alone takes the
1384 // column back to the default — under the MySQL dialect that
1385 // default is the folding collation, everywhere else byte order.
1386 {
1387 let sc = &mut table.schema_mut().columns[col_pos];
1388 match &collation {
1389 Some((cenum, name)) => {
1390 sc.collation_name = Some(name.clone());
1391 sc.collation = match cenum {
1392 spg_sql::ast::Collation::Binary => spg_storage::Collation::Binary,
1393 spg_sql::ast::Collation::CaseInsensitive => {
1394 spg_storage::Collation::CaseInsensitive
1395 }
1396 };
1397 }
1398 None => {
1399 sc.collation_name = None;
1400 sc.collation = if mysql_dialect && is_collatable {
1401 spg_storage::Collation::CaseInsensitive
1402 } else {
1403 spg_storage::Collation::Binary
1404 };
1405 }
1406 }
1407 }
1408 for (i, v) in new_values.into_iter().enumerate() {
1409 let Some(v) = v else { continue };
1410 let mut row_values = table
1411 .rows()
1412 .get(i)
1413 .expect("bounds-checked above")
1414 .values
1415 .clone();
1416 row_values[col_pos] = v;
1417 table.update_row(i, row_values)?;
1418 }
1419 Ok(())
1420 }
1421
1422 /// v7.39 (round 652) — `ALTER TABLE … VALIDATE CONSTRAINT <name>`.
1423 /// Scans the rows against a CHECK added `NOT VALID`; on success the
1424 /// constraint becomes validated and `pg_constraint.convalidated`
1425 /// flips, which is what makes the next pg_dump stop emitting the
1426 /// `NOT VALID` suffix. Validating an already-valid constraint is a
1427 /// no-op, as in PG.
1428 fn alter_validate_constraint(&mut self, tbl: &str, name: &str) -> Result<(), EngineError> {
1429 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
1430 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
1431 })?;
1432 let names = crate::system_catalog::pg_check_connames(table, tbl, &table.schema().checks);
1433 let Some(idx) = names.iter().position(|n| n.eq_ignore_ascii_case(name)) else {
1434 // PG names the relation it looked in. A constraint that is
1435 // not a CHECK lands here too — SPG has no unvalidated shape
1436 // for the others, so there is nothing this could validate.
1437 return Err(EngineError::Unsupported(alloc::format!(
1438 "constraint \"{name}\" of relation \"{tbl}\" does not exist"
1439 )));
1440 };
1441 if table.schema().checks[idx].validated {
1442 return Ok(());
1443 }
1444 let src = table.schema().checks[idx].expr.clone();
1445 crate::constraints::validate_check_against_existing_rows(table, tbl, name, &src)?;
1446 table.schema_mut().checks[idx].validated = true;
1447 Ok(())
1448 }
1449
1450 #[allow(clippy::too_many_lines)]
1451 fn alter_add_table_constraint(
1452 &mut self,
1453 tbl: &str,
1454 tc: spg_sql::ast::TableConstraint,
1455 ) -> Result<(), EngineError> {
1456 // v7.14.0 — pg_dump emits PKs as a separate
1457 // ALTER TABLE ADD CONSTRAINT post-CREATE-TABLE.
1458 // For PRIMARY KEY / UNIQUE, install a UC entry
1459 // and the implicit BTree index on the leading
1460 // column. CHECK: append predicate to schema.
1461 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
1462 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
1463 })?;
1464 let is_pk = matches!(tc, spg_sql::ast::TableConstraint::PrimaryKey { .. });
1465 // v7.39 (read01 round 48) — a constraint name must be unique on the
1466 // table. PG rejects a re-used name with 42710; SPG used to drop the
1467 // name on the floor entirely, so the collision was invisible.
1468 let con_name: Option<String> = match &tc {
1469 spg_sql::ast::TableConstraint::PrimaryKey { name, .. }
1470 | spg_sql::ast::TableConstraint::Unique { name, .. }
1471 | spg_sql::ast::TableConstraint::Check { name, .. } => name.clone(),
1472 _ => None,
1473 };
1474 if let Some(n) = &con_name
1475 && constraint_name_taken(table, n)
1476 {
1477 return Err(EngineError::Unsupported(alloc::format!(
1478 "constraint {n:?} for relation {tbl:?} already exists"
1479 )));
1480 }
1481 // v7.39 (read01 round 45) — a table may have at most one PRIMARY
1482 // KEY. PG rejects a second one (even on the same column) with
1483 // 42P16; SPG used to install it silently. SPG's own dumps emit PK
1484 // inline, so restore never reaches this ALTER path.
1485 if is_pk
1486 && table
1487 .schema()
1488 .uniqueness_constraints
1489 .iter()
1490 .any(|u| u.is_primary_key)
1491 {
1492 return Err(EngineError::Unsupported(alloc::format!(
1493 "multiple primary keys for table {tbl:?} are not allowed"
1494 )));
1495 }
1496 // v7.22 (mailrs round-13 gap 6) — carry the parsed
1497 // NULLS NOT DISTINCT flag through the ALTER path;
1498 // it was hardcoded false here while the CREATE
1499 // TABLE path honoured it since v7.13.
1500 let nnd = matches!(
1501 tc,
1502 spg_sql::ast::TableConstraint::Unique {
1503 nulls_not_distinct: true,
1504 ..
1505 }
1506 );
1507 // v7.39 (round 711) — carry the timing through the ALTER path too.
1508 let timing = match tc {
1509 spg_sql::ast::TableConstraint::PrimaryKey {
1510 deferrable,
1511 initially_deferred,
1512 ..
1513 }
1514 | spg_sql::ast::TableConstraint::Unique {
1515 deferrable,
1516 initially_deferred,
1517 ..
1518 } => (deferrable, initially_deferred),
1519 _ => (false, false),
1520 };
1521 match tc {
1522 spg_sql::ast::TableConstraint::PrimaryKey { columns, .. }
1523 | spg_sql::ast::TableConstraint::Unique { columns, .. } => {
1524 let positions: Vec<usize> = columns
1525 .iter()
1526 .map(|c| {
1527 table
1528 .schema()
1529 .columns
1530 .iter()
1531 .position(|sc| sc.name.eq_ignore_ascii_case(c))
1532 .ok_or_else(|| {
1533 EngineError::Unsupported(alloc::format!(
1534 "ALTER TABLE ADD CONSTRAINT: column {c:?} not found on {:?}",
1535 tbl
1536 ))
1537 })
1538 })
1539 .collect::<Result<Vec<_>, _>>()?;
1540 // Skip if an equivalent UC is already there
1541 // (idempotent — pg_dump's PK + a prior inline
1542 // PK shouldn't double-install).
1543 let already = table
1544 .schema()
1545 .uniqueness_constraints
1546 .iter()
1547 .any(|u| u.columns == positions);
1548 if !already {
1549 table.schema_mut().uniqueness_constraints.push(
1550 spg_storage::UniquenessConstraint {
1551 is_primary_key: is_pk,
1552 columns: positions.clone(),
1553 nulls_not_distinct: nnd,
1554 name: con_name.clone(),
1555 deferrable: timing.0,
1556 initially_deferred: timing.1,
1557 },
1558 );
1559 // PK implies NOT NULL on referenced cols.
1560 if is_pk {
1561 for p in &positions {
1562 if let Some(c) = table.schema_mut().columns.get_mut(*p) {
1563 c.nullable = false;
1564 }
1565 }
1566 }
1567 // Add a BTree index on the leading
1568 // column for INSERT-side enforcement.
1569 let leading = &columns[0];
1570 let already_idx = table.indices().iter().any(|idx| {
1571 matches!(idx.kind, spg_storage::IndexKind::BTree(_))
1572 && table.schema().columns[idx.column_position].name == *leading
1573 });
1574 if !already_idx {
1575 let suffix = if is_pk { "pkey" } else { "key" };
1576 let idx_name = alloc::format!("{}_{leading}_{suffix}", tbl);
1577 let _ = table.add_index(idx_name, leading);
1578 }
1579 }
1580 }
1581 spg_sql::ast::TableConstraint::Check {
1582 expr, not_valid, ..
1583 } => {
1584 let src = alloc::format!("{expr}");
1585 // v7.39 (round 652) — PG scans the rows already in the
1586 // table unless the user wrote NOT VALID, and refuses the
1587 // whole ALTER if any of them violates the predicate. SPG
1588 // used to skip that scan unconditionally, so it accepted
1589 // constraints PG rejects and left the table holding rows
1590 // that contradict its own declared CHECK — with every
1591 // reader, pg_dump included, believing otherwise.
1592 if !not_valid {
1593 // The name PG puts in the message is the one the
1594 // constraint would end up with, dedup suffix included,
1595 // so ask for the whole prospective list and take the
1596 // entry the new one occupies.
1597 let mut prospective = table.schema().checks.clone();
1598 prospective.push(spg_storage::CheckConstraint {
1599 name: con_name.clone(),
1600 expr: src.clone(),
1601 validated: true,
1602 });
1603 let conname =
1604 crate::system_catalog::pg_check_connames(table, tbl, &prospective)
1605 .pop()
1606 .unwrap_or_else(|| alloc::format!("{tbl}_check"));
1607 crate::constraints::validate_check_against_existing_rows(
1608 table, tbl, &conname, &src,
1609 )?;
1610 }
1611 table
1612 .schema_mut()
1613 .checks
1614 .push(spg_storage::CheckConstraint {
1615 name: con_name.clone(),
1616 expr: src,
1617 validated: !not_valid,
1618 });
1619 }
1620 spg_sql::ast::TableConstraint::Index { name, columns } => {
1621 // v7.15.0 — ALTER TABLE ADD KEY (cols).
1622 // mysqldump occasionally emits this
1623 // post-CREATE-TABLE shape; build a BTree
1624 // on the leading column using the
1625 // user-supplied or synthesised name.
1626 //
1627 // v7.39 (round 431) — the outcome now matches a measured
1628 // MariaDB 11 run in three ways it did not before:
1629 // * a second index on an already-indexed column is
1630 // BUILT, not skipped. Skipping it made the following
1631 // `DROP INDEX <that name>` fail with "does not
1632 // exist" — the name was never registered.
1633 // * a name collision raises 42710 (MariaDB: 1061
1634 // "Duplicate key name") instead of being swallowed.
1635 // * an unknown column raises 42703 (MariaDB: 1072 "Key
1636 // column doesn't exist in table") instead of being
1637 // swallowed into a no-op.
1638 let leading = &columns[0];
1639 let idx_name = match name {
1640 Some(n) => n.clone(),
1641 // Unnamed `ADD INDEX (col)` takes the column's own
1642 // name, with `_2`, `_3`, … on collision — measured
1643 // on MariaDB 11.
1644 None => {
1645 let mut candidate = leading.clone();
1646 let mut n = 1;
1647 while table.indices().iter().any(|idx| idx.name == candidate) {
1648 n += 1;
1649 candidate = alloc::format!("{leading}_{n}");
1650 }
1651 candidate
1652 }
1653 };
1654 table
1655 .add_index(idx_name, leading)
1656 .map_err(EngineError::Storage)?;
1657 }
1658 spg_sql::ast::TableConstraint::FulltextIndex { name, columns } => {
1659 // v7.17.0 Phase 2.2 — ALTER TABLE ADD
1660 // FULLTEXT KEY (cols). Builds one
1661 // fulltext-GIN per named column so MATCH
1662 // AGAINST gets a real inverted index.
1663 // Multi-column declarations expand to
1664 // per-column GINs (the leading column
1665 // drives MATCH AGAINST planning).
1666 for (k, col) in columns.iter().enumerate() {
1667 let already_idx = table.indices().iter().any(|idx| {
1668 matches!(idx.kind, spg_storage::IndexKind::GinFulltext(_))
1669 && table.schema().columns[idx.column_position].name == *col
1670 });
1671 if already_idx {
1672 continue;
1673 }
1674 let idx_name = match (&name, columns.len(), k) {
1675 (Some(n), 1, _) => n.clone(),
1676 (Some(n), _, k) => alloc::format!("{n}_{k}"),
1677 (None, _, _) => {
1678 alloc::format!("{}_{col}_ftidx", tbl)
1679 }
1680 };
1681 let _ = table.add_gin_fulltext_index(idx_name, col);
1682 }
1683 }
1684 spg_sql::ast::TableConstraint::Exclude {
1685 name,
1686 method,
1687 elements,
1688 } => {
1689 // v7.39 (round 210/211) — ALTER TABLE ADD EXCLUDE. Resolve
1690 // element columns to positions and synthesise PG's
1691 // `<table>_<col…>_excl` name (ALL element columns joined by
1692 // `_`, e.g. `book_room_during_excl`) when unnamed.
1693 let mut els = Vec::with_capacity(elements.len());
1694 let cols_joined = elements
1695 .iter()
1696 .map(|(c, _)| c.clone())
1697 .collect::<Vec<_>>()
1698 .join("_");
1699 for (col, op) in elements {
1700 let pos = table
1701 .schema()
1702 .columns
1703 .iter()
1704 .position(|c| c.name.eq_ignore_ascii_case(&col))
1705 .ok_or_else(|| {
1706 EngineError::Unsupported(alloc::format!(
1707 "ALTER TABLE ADD EXCLUDE: column {col:?} not found on {tbl:?}"
1708 ))
1709 })?;
1710 els.push((pos, op));
1711 }
1712 let ex_name = name.unwrap_or_else(|| alloc::format!("{tbl}_{cols_joined}_excl"));
1713 table
1714 .schema_mut()
1715 .exclusion_constraints
1716 .push(spg_storage::ExclusionConstraint {
1717 name: ex_name,
1718 method,
1719 elements: els,
1720 });
1721 }
1722 }
1723 Ok(())
1724 }
1725
1726 fn alter_drop_column(
1727 &mut self,
1728 tbl: &str,
1729 column: String,
1730 if_exists: bool,
1731 cascade: bool,
1732 ) -> Result<(), EngineError> {
1733 // v7.13.3 — mailrs round-7 S8. Remove the column +
1734 // every row's value at that position; drop any index
1735 // on the column. RESTRICT (default) rejects when an
1736 // FK on this table or partial-index predicate
1737 // references the column; CASCADE removes those
1738 // dependents first.
1739 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
1740 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
1741 })?;
1742 let col_pos = match table
1743 .schema()
1744 .columns
1745 .iter()
1746 .position(|c| c.name.eq_ignore_ascii_case(&column))
1747 {
1748 Some(p) => p,
1749 None => {
1750 if if_exists {
1751 // v7.39 (read01 round 46) — PG's IF EXISTS skip NOTICE.
1752 self.notice(alloc::format!(
1753 "column {column:?} of relation {:?} does not exist, skipping",
1754 tbl
1755 ));
1756 return Ok(());
1757 }
1758 // v7.39 (read01 round 45) — PG wording (42703 at the wire).
1759 return Err(EngineError::Unsupported(alloc::format!(
1760 "column {column:?} of relation {:?} does not exist",
1761 tbl
1762 )));
1763 }
1764 };
1765 // Dependent check: FKs whose local columns include
1766 // col_pos. CASCADE drops them; otherwise reject.
1767 let dependent_fks: Vec<usize> = table
1768 .schema()
1769 .foreign_keys
1770 .iter()
1771 .enumerate()
1772 .filter_map(|(i, fk)| {
1773 if fk.local_columns.contains(&col_pos) {
1774 Some(i)
1775 } else {
1776 None
1777 }
1778 })
1779 .collect();
1780 if !dependent_fks.is_empty() && !cascade {
1781 return Err(EngineError::Unsupported(alloc::format!(
1782 "ALTER TABLE DROP COLUMN {column:?}: column has FK dependents; \
1783 use DROP COLUMN ... CASCADE to remove them"
1784 )));
1785 }
1786 // CASCADE the FK removals first.
1787 if cascade {
1788 // Drop in reverse so indices stay valid.
1789 let mut sorted = dependent_fks.clone();
1790 sorted.sort();
1791 sorted.reverse();
1792 let fks = &mut table.schema_mut().foreign_keys;
1793 for i in sorted {
1794 fks.remove(i);
1795 }
1796 }
1797 // v7.38.2 (sentori report 5) — PG's ALTER TABLE rule: "Indexes
1798 // and table constraints involving the column will be
1799 // automatically dropped as well." A CHECK left behind after its
1800 // column made the table permanently un-insertable (every later
1801 // INSERT hit ColumnNotFound on the ghost column). Any CHECK
1802 // whose expression references the dropped column goes with it;
1803 // an expression we can't parse can't be evaluated either way,
1804 // so it is kept untouched.
1805 let dropped = table.schema().columns[col_pos].name.clone();
1806 table.schema_mut().checks.retain(|chk| {
1807 let Ok(expr) = spg_sql::parser::parse_expression(&chk.expr) else {
1808 return true;
1809 };
1810 let mut involves = false;
1811 crate::visit_expr_columns_and_subqueries(
1812 &expr,
1813 &mut |c: &spg_sql::ast::ColumnName| {
1814 if c.name.eq_ignore_ascii_case(&dropped) {
1815 involves = true;
1816 }
1817 },
1818 &mut |_| {},
1819 );
1820 !involves
1821 });
1822 // Drop the column. New helper on Table does the
1823 // row + schema + index shift atomically.
1824 table.drop_column(col_pos);
1825 Ok(())
1826 }
1827
1828 fn alter_set_trigger_enabled(
1829 &mut self,
1830 tbl: &str,
1831 which: spg_sql::ast::TriggerSelector,
1832 enabled: bool,
1833 ) -> Result<(), EngineError> {
1834 // v7.16.1 — mailrs round-9 A.2.b. pg_dump
1835 // --disable-triggers wraps each table's data
1836 // block with `ALTER TABLE … DISABLE TRIGGER ALL`
1837 // / `… ENABLE TRIGGER ALL`. Toggle the enabled
1838 // flag on every matching trigger so the row-
1839 // write paths skip them; the catalog snapshot
1840 // persists the new state across restarts.
1841 let table_name = tbl.to_string();
1842 let trigs = self.active_catalog_mut().triggers_mut();
1843 let mut touched = false;
1844 for t in trigs.iter_mut() {
1845 if !t.table.eq_ignore_ascii_case(&table_name) {
1846 continue;
1847 }
1848 match &which {
1849 spg_sql::ast::TriggerSelector::All => {
1850 t.enabled = enabled;
1851 touched = true;
1852 }
1853 spg_sql::ast::TriggerSelector::Named(name) => {
1854 if t.name.eq_ignore_ascii_case(name) {
1855 t.enabled = enabled;
1856 touched = true;
1857 }
1858 }
1859 }
1860 }
1861 // PG semantics: `ALL` on a table with no
1862 // triggers is a no-op (no error). A `Named`
1863 // form pointing at a non-existent trigger
1864 // raises in PG; v7.16.1 also raises so we
1865 // don't silently lose state.
1866 if !touched {
1867 if let spg_sql::ast::TriggerSelector::Named(name) = &which {
1868 return Err(EngineError::Unsupported(alloc::format!(
1869 "ALTER TABLE {table_name:?} {} TRIGGER {name:?}: no such trigger on table",
1870 if enabled { "ENABLE" } else { "DISABLE" },
1871 )));
1872 }
1873 }
1874 Ok(())
1875 }
1876
1877 fn alter_set_column_auto_increment(
1878 &mut self,
1879 tbl: &str,
1880 column: String,
1881 seq_name: Option<String>,
1882 ) -> Result<(), EngineError> {
1883 // pg_dump's identity form names an IMPLICIT sequence
1884 // (`… AS IDENTITY ( SEQUENCE NAME s … )`) that never
1885 // gets its own CREATE SEQUENCE statement, while the
1886 // data section still calls `setval(s, …)`. Make the
1887 // sequence exist (idempotent) so those calls land.
1888 if let Some(seq) = seq_name {
1889 let _ = self.exec_create_sequence(spg_sql::ast::CreateSequenceStatement {
1890 name: seq,
1891 if_not_exists: true,
1892 temporary: false,
1893 data_type: None,
1894 options: spg_sql::ast::SequenceOptions::default(),
1895 })?;
1896 }
1897 // v7.22 (round-13 T2) — pg_dump's serial/identity
1898 // spellings (`SET DEFAULT nextval(…)` / `ADD
1899 // GENERATED … AS IDENTITY`) lower here: flip the
1900 // column's auto-increment flag so post-import
1901 // INSERTs without an explicit value keep numbering
1902 // (max+1 semantics; the dump's setval() calls are
1903 // no-ops by construction).
1904 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
1905 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
1906 })?;
1907 let pos = table
1908 .schema()
1909 .columns
1910 .iter()
1911 .position(|c| c.name.eq_ignore_ascii_case(&column))
1912 .ok_or_else(|| {
1913 EngineError::Unsupported(alloc::format!(
1914 "ALTER COLUMN {column:?}: no such column on {:?}",
1915 tbl
1916 ))
1917 })?;
1918 let col = &table.schema().columns[pos];
1919 if !matches!(
1920 col.ty,
1921 spg_storage::DataType::SmallInt
1922 | spg_storage::DataType::Int
1923 | spg_storage::DataType::BigInt
1924 ) {
1925 return Err(EngineError::Unsupported(alloc::format!(
1926 "auto-increment applies to integer columns only ({column:?} is {:?})",
1927 col.ty
1928 )));
1929 }
1930 table.schema_mut().columns[pos].auto_increment = true;
1931 Ok(())
1932 }
1933
1934 /// v7.39 (read01 round 48) — `ALTER TABLE t RENAME CONSTRAINT old TO new`.
1935 /// Only constraints that carry a stored name can be renamed: an unnamed
1936 /// one has no name to change, and its synthesised `pg_constraint` name
1937 /// is derived, not stored. PG's wording here says "for table" (while
1938 /// DROP CONSTRAINT says "of relation") — matched verbatim.
1939 /// v7.39 (read01 round 50) — `COMMENT ON <kind> <name> IS { 'text' | NULL }`.
1940 /// The object must exist (PG errors otherwise); `IS NULL` removes the
1941 /// comment. Stored in the catalog's comment map under `"<kind>:<name>"`
1942 /// and read back by obj_description / col_description / pg_description.
1943 pub(crate) fn exec_comment_on(
1944 &mut self,
1945 kind: &str,
1946 name: &str,
1947 comment: Option<&str>,
1948 ) -> Result<QueryResult, EngineError> {
1949 let cat = self.active_catalog();
1950 // Validate existence for the kinds SPG catalogues. PG's wording for a
1951 // missing relation is "relation \"x\" does not exist" (42P01).
1952 match kind {
1953 "table" | "view" => {
1954 if cat.get(name).is_none() {
1955 return Err(EngineError::Unsupported(alloc::format!(
1956 "relation {name:?} does not exist"
1957 )));
1958 }
1959 }
1960 "column" => {
1961 let (tbl, col) = name.split_once('.').ok_or_else(|| {
1962 EngineError::Unsupported(alloc::format!("column {name:?} does not exist"))
1963 })?;
1964 let t = cat.get(tbl).ok_or_else(|| {
1965 EngineError::Unsupported(alloc::format!("relation {tbl:?} does not exist"))
1966 })?;
1967 if !t
1968 .schema()
1969 .columns
1970 .iter()
1971 .any(|c| c.name.eq_ignore_ascii_case(col))
1972 {
1973 return Err(EngineError::Unsupported(alloc::format!(
1974 "column {col:?} of relation {tbl:?} does not exist"
1975 )));
1976 }
1977 }
1978 "index" => {
1979 let found = cat.table_names().iter().any(|tn| {
1980 cat.get(tn)
1981 .is_some_and(|t| t.indices().iter().any(|i| i.name == name))
1982 });
1983 if !found {
1984 return Err(EngineError::Unsupported(alloc::format!(
1985 "relation {name:?} does not exist"
1986 )));
1987 }
1988 }
1989 "sequence" => {
1990 if !cat.has_sequence(name) {
1991 return Err(EngineError::Unsupported(alloc::format!(
1992 "relation {name:?} does not exist"
1993 )));
1994 }
1995 }
1996 // schema / type / database / function: accepted and stored without
1997 // a catalogue lookup (SPG's registries for these are partial).
1998 _ => {}
1999 }
2000 let key = alloc::format!("{kind}:{name}");
2001 self.active_catalog_mut().set_comment(&key, comment);
2002 Ok(QueryResult::CommandOk {
2003 affected: 0,
2004 modified_catalog: self.catalog_change_is_committed(),
2005 })
2006 }
2007
2008 fn alter_rename_constraint(
2009 &mut self,
2010 tbl: &str,
2011 old: &str,
2012 new: String,
2013 ) -> Result<(), EngineError> {
2014 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
2015 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
2016 })?;
2017 if !constraint_name_taken(table, old) {
2018 return Err(EngineError::Unsupported(alloc::format!(
2019 "constraint {old:?} for table {tbl:?} does not exist"
2020 )));
2021 }
2022 if constraint_name_taken(table, &new) {
2023 return Err(EngineError::Unsupported(alloc::format!(
2024 "constraint {new:?} for relation {tbl:?} already exists"
2025 )));
2026 }
2027 let sch = table.schema_mut();
2028 for f in &mut sch.foreign_keys {
2029 if f.name.as_deref() == Some(old) {
2030 f.name = Some(new);
2031 return Ok(());
2032 }
2033 }
2034 for u in &mut sch.uniqueness_constraints {
2035 if u.name.as_deref() == Some(old) {
2036 u.name = Some(new);
2037 return Ok(());
2038 }
2039 }
2040 for c in &mut sch.checks {
2041 if c.name.as_deref() == Some(old) {
2042 c.name = Some(new);
2043 return Ok(());
2044 }
2045 }
2046 Ok(())
2047 }
2048
2049 fn alter_rename_table(&mut self, tbl: &str, new: String) -> Result<(), EngineError> {
2050 // v7.16.2 — table-level rename (mailrs round-10
2051 // A.5 — used by migrate-042's `ALTER TABLE
2052 // contacts RENAME TO email_contacts`). Storage
2053 // helper updates the schema + by_name index +
2054 // dangling FK / trigger references in one
2055 // atomic step.
2056 let old = tbl.to_string();
2057 // v7.39 (read01 round 47) — PG rejects a rename onto a name that
2058 // already names a relation (42P07), including a rename onto the
2059 // table's own name. SPG used to accept both silently.
2060 if self.active_catalog().get(&new).is_some() {
2061 return Err(EngineError::Unsupported(alloc::format!(
2062 "relation {new:?} already exists"
2063 )));
2064 }
2065 self.active_catalog_mut()
2066 .rename_table(&old, &new)
2067 .map_err(EngineError::Storage)?;
2068 // r192 — carry the non-transactional DML counters to the new
2069 // name (PG keeps stats across a rename). After the storage
2070 // rename succeeded, so a failed rename leaves them keyed as-is.
2071 if let Some(stats) = self.table_write_stats.remove(&old) {
2072 self.table_write_stats.insert(new.clone(), stats);
2073 }
2074 Ok(())
2075 }
2076
2077 fn alter_rename_column(
2078 &mut self,
2079 tbl: &str,
2080 old: String,
2081 new: String,
2082 ) -> Result<(), EngineError> {
2083 // v7.15.0 — `ALTER TABLE t RENAME [COLUMN] old TO
2084 // new`. Rename the column in the schema; rewrite
2085 // every stored source string on this table that
2086 // references it as a (potentially-qualified)
2087 // column identifier: CHECK predicates, partial-
2088 // index predicates, runtime DEFAULT expressions.
2089 // Then walk catalog triggers on this table and
2090 // patch any `UPDATE OF` column list. Function and
2091 // trigger bodies are NOT auto-rewritten — that
2092 // surface is dynamic SQL territory; users update
2093 // those separately (matches PG plpgsql behavior:
2094 // a column rename invalidates name-referencing
2095 // plpgsql at call time, not rename time).
2096 let table = self.active_catalog_mut().get_mut(tbl).ok_or_else(|| {
2097 EngineError::Storage(StorageError::TableNotFound { name: tbl.into() })
2098 })?;
2099 let col_pos = table
2100 .schema()
2101 .columns
2102 .iter()
2103 .position(|c| c.name.eq_ignore_ascii_case(&old))
2104 .ok_or_else(|| {
2105 // v7.39 (read01 round 47) — PG wording (42703). PG omits
2106 // the "of relation" qualifier on RENAME COLUMN (unlike the
2107 // ALTER COLUMN family below) — match it exactly.
2108 EngineError::Unsupported(alloc::format!("column {old:?} does not exist"))
2109 })?;
2110 // Reject same-name (case-insensitive) collision.
2111 if table
2112 .schema()
2113 .columns
2114 .iter()
2115 .enumerate()
2116 .any(|(i, c)| i != col_pos && c.name.eq_ignore_ascii_case(&new))
2117 {
2118 // v7.39 (read01 round 47) — PG wording (42701).
2119 return Err(EngineError::Unsupported(alloc::format!(
2120 "column {new:?} of relation {:?} already exists",
2121 tbl
2122 )));
2123 }
2124 // Schema rename first — even idempotent same-name
2125 // rename (`ALTER TABLE t RENAME a TO a`) needs to
2126 // be a no-op, not an error.
2127 if old.eq_ignore_ascii_case(&new) {
2128 return Ok(());
2129 }
2130 table.rename_column(col_pos, &new);
2131 // Rewrite per-column runtime_default sources on
2132 // every column of this table — a DEFAULT expression
2133 // on column X may reference column Y by name (rare,
2134 // but legal in PG when the value is supplied via a
2135 // function that takes the row).
2136 let n_cols = table.schema().columns.len();
2137 for i in 0..n_cols {
2138 let rt = table.schema().columns[i].runtime_default.clone();
2139 if let Some(src) = rt {
2140 let rewritten = rewrite_column_in_source(&src, &old, &new)?;
2141 table.schema_mut().columns[i].runtime_default = Some(rewritten);
2142 }
2143 }
2144 // Rewrite table-level CHECK predicates.
2145 let checks = table.schema().checks.clone();
2146 let mut new_checks = Vec::with_capacity(checks.len());
2147 for chk in checks {
2148 // v7.39 (read01 round 48) — rewrite the predicate, keep the name.
2149 new_checks.push(spg_storage::CheckConstraint {
2150 name: chk.name,
2151 expr: rewrite_column_in_source(&chk.expr, &old, &new)?,
2152 // Renaming a column does not re-scan the rows, so it cannot
2153 // turn an unvalidated constraint into a valid one.
2154 validated: chk.validated,
2155 });
2156 }
2157 table.schema_mut().checks = new_checks;
2158 // Rewrite per-index partial_predicate sources.
2159 let n_idx = table.indices().len();
2160 for i in 0..n_idx {
2161 let pred = table.indices()[i].partial_predicate.clone();
2162 if let Some(src) = pred {
2163 let rewritten = rewrite_column_in_source(&src, &old, &new)?;
2164 // SAFETY: indices_mut would be cleanest, but
2165 // partial_predicate is the only mutable field
2166 // here; reach in via the public mut accessor.
2167 table.set_partial_predicate(i, Some(rewritten));
2168 }
2169 }
2170 // Walk catalog triggers; patch `update_columns` on
2171 // triggers attached to this table.
2172 let table_name = tbl.to_string();
2173 for trig in self.active_catalog_mut().triggers_mut() {
2174 if !trig.table.eq_ignore_ascii_case(&table_name) {
2175 continue;
2176 }
2177 for c in &mut trig.update_columns {
2178 if c.eq_ignore_ascii_case(&old) {
2179 *c = new.clone();
2180 }
2181 }
2182 }
2183 Ok(())
2184 }
2185
2186 /// v6.0.4 — synchronous `ALTER INDEX <name> REBUILD [WITH
2187 /// (encoding = …)]`. Walks every table in the active catalog
2188 /// looking for an index matching `stmt.name`, then delegates the
2189 /// rebuild (including any encoding switch) to
2190 /// `Table::rebuild_nsw_index`. The "live" non-blocking
2191 /// optimisation is v6.0.4.1 / v6.1.x territory.
2192 pub(crate) fn exec_alter_index(
2193 &mut self,
2194 stmt: spg_sql::ast::AlterIndexStatement,
2195 ) -> Result<QueryResult, EngineError> {
2196 // Translate the optional SQL-side encoding choice into the
2197 // storage-side enum; the same SqlVecEncoding -> VecEncoding
2198 // bridge `column_type_to_data_type` uses.
2199 let spg_sql::ast::AlterIndexStatement {
2200 name: idx_name,
2201 target,
2202 } = stmt;
2203 // v7.16.2 — RENAME TO branch (mailrs round-10 migrate-042).
2204 // IF EXISTS makes a missing index a no-op rather than an
2205 // error, mirroring PG semantics.
2206 if let spg_sql::ast::AlterIndexTarget::Rename { new, if_exists } = target {
2207 let renamed = self.active_catalog_mut().rename_index(&idx_name, &new);
2208 return match renamed {
2209 Ok(()) => Ok(QueryResult::CommandOk {
2210 affected: 0,
2211 modified_catalog: self.catalog_change_is_committed(),
2212 }),
2213 Err(StorageError::IndexNotFound { .. }) if if_exists => {
2214 Ok(QueryResult::CommandOk {
2215 affected: 0,
2216 modified_catalog: false,
2217 })
2218 }
2219 // v7.39 (round 700) — PG18 answers `relation "x" does not
2220 // exist` here, not `index "x" …`. An index IS a relation
2221 // there, and the wire classifier reads the relation wording
2222 // for 42P01; SPG's own spelling missed both.
2223 Err(StorageError::IndexNotFound { .. }) => Err(EngineError::Unsupported(
2224 alloc::format!("relation \"{idx_name}\" does not exist"),
2225 )),
2226 Err(e) => Err(EngineError::Storage(e)),
2227 };
2228 }
2229 // v7.39 (round 710) — SET/RESET storage params: validate the
2230 // index, no-op the parameters (PG resolves the relation first —
2231 // `relation "x" does not exist` — and SPG engine-manages storage
2232 // parameters, as the ALTER TABLE arms already record).
2233 if matches!(target, spg_sql::ast::AlterIndexTarget::StorageParams) {
2234 let cat = self.active_catalog();
2235 let exists = cat.table_names().iter().any(|tn| {
2236 cat.get(tn.as_str())
2237 .is_some_and(|t| t.indices().iter().any(|i| i.name == idx_name))
2238 });
2239 if !exists {
2240 return Err(EngineError::Unsupported(alloc::format!(
2241 "relation \"{idx_name}\" does not exist"
2242 )));
2243 }
2244 return Ok(QueryResult::CommandOk {
2245 affected: 0,
2246 modified_catalog: false,
2247 });
2248 }
2249 let spg_sql::ast::AlterIndexTarget::Rebuild { encoding } = target else {
2250 unreachable!("Rename branch returned above");
2251 };
2252 let target = encoding.map(|e| match e {
2253 SqlVecEncoding::F32 => VecEncoding::F32,
2254 SqlVecEncoding::Sq8 => VecEncoding::Sq8,
2255 SqlVecEncoding::F16 => VecEncoding::F16,
2256 });
2257 // Linear scan: index names are globally unique within a
2258 // catalog (enforced by add_nsw_index_inner) so the first
2259 // match is the only one. Save the table name to avoid
2260 // borrowing while we then take a mut borrow.
2261 let table_name = {
2262 let cat = self.active_catalog();
2263 let mut found: Option<String> = None;
2264 for tname in cat.table_names() {
2265 if let Some(t) = cat.get(&tname)
2266 && t.indices().iter().any(|i| i.name == idx_name)
2267 {
2268 found = Some(tname);
2269 break;
2270 }
2271 }
2272 found.ok_or_else(|| {
2273 EngineError::Storage(StorageError::IndexNotFound {
2274 name: idx_name.clone(),
2275 })
2276 })?
2277 };
2278 let table = self
2279 .active_catalog_mut()
2280 .get_mut(&table_name)
2281 .expect("table found above");
2282 table.rebuild_nsw_index(&idx_name, target)?;
2283 // v6.3.1 — ALTER INDEX REBUILD potentially with new encoding
2284 // changes cost characteristics; evict any cached plans.
2285 self.plan_cache.evict_referencing(&table_name);
2286 Ok(QueryResult::CommandOk {
2287 affected: 0,
2288 modified_catalog: self.catalog_change_is_committed(),
2289 })
2290 }
2291
2292 /// v7.39 (read01 round 93) — derive PG's generated index name for an
2293 /// unnamed `CREATE INDEX`. PG's `ChooseIndexName` builds
2294 /// `<table>_<label1>_<label2>…_idx`, where each label is a key
2295 /// column's name, an expression's leading function name, or `expr`
2296 /// for a non-function expression; INCLUDE columns contribute labels
2297 /// too. On a name clash within the relation an integer counter is
2298 /// appended (`_idx`, `_idx1`, `_idx2`, …).
2299 fn choose_auto_index_name(&self, stmt: &CreateIndexStatement) -> String {
2300 let mut labels: Vec<String> = Vec::new();
2301 match &stmt.expression {
2302 Some(Expr::FunctionCall { name, .. }) => labels.push(name.to_ascii_lowercase()),
2303 Some(_) => labels.push("expr".to_string()),
2304 None => labels.push(stmt.column.clone()),
2305 }
2306 labels.extend(stmt.extra_columns.iter().cloned());
2307 labels.extend(stmt.included_columns.iter().cloned());
2308 let mut base = alloc::format!("{}_{}_idx", stmt.table, labels.join("_"));
2309 // PG truncates the generated name to NAMEDATALEN-1 (63) bytes.
2310 truncate_ident(&mut base);
2311 // Collision counter — index names live in the relation's index
2312 // list (SPG keys index-name uniqueness per table), which is where
2313 // a same-column repeat collides, matching PG's observable output.
2314 let existing: Vec<String> = self
2315 .active_catalog()
2316 .get(&stmt.table)
2317 .map(|t| t.indices().iter().map(|i| i.name.clone()).collect())
2318 .unwrap_or_default();
2319 if !existing.iter().any(|n| *n == base) {
2320 return base;
2321 }
2322 let mut counter = 1u32;
2323 loop {
2324 let mut cand = alloc::format!("{base}{counter}");
2325 truncate_ident(&mut cand);
2326 if !existing.iter().any(|n| *n == cand) {
2327 return cand;
2328 }
2329 counter += 1;
2330 }
2331 }
2332
2333 pub(crate) fn exec_create_index(
2334 &mut self,
2335 mut stmt: CreateIndexStatement,
2336 ) -> Result<QueryResult, EngineError> {
2337 // v7.39 (read01 round 93) — an omitted index name (`CREATE INDEX
2338 // ON t (a)`) is filled in with a PG-style generated name here, so
2339 // the name is chosen against the live catalog (for the collision
2340 // counter). Done before the partition-parent fan-out so children
2341 // inherit a fully-named template.
2342 if stmt.name.is_empty() {
2343 stmt.name = self.choose_auto_index_name(&stmt);
2344 }
2345 // v7.37.6-B(sentori Epic 2 P0)— `CREATE INDEX … ON parent`
2346 // when `parent` is a partition-parent fans out to every
2347 // existing child and records the Display-form source so
2348 // future children also build the same index at creation.
2349 // Parent itself holds no rows, so the build is skipped on
2350 // the parent table.
2351 if crate::partition::is_partition_parent(self.active_catalog(), &stmt.table) {
2352 return self.exec_create_index_on_partition_parent(stmt);
2353 }
2354 // v7.36 — collect cold-tier rows BEFORE taking the mutable
2355 // borrow on the table (the duplicate-scan post-CREATE UNIQUE
2356 // INDEX consumes them). `iter_cold_rows_of_parent` borrows
2357 // the catalog immutably so it would conflict with the
2358 // `active_catalog_mut` borrow below.
2359 let cold_rows_for_unique_scan: alloc::vec::Vec<spg_storage::Row> =
2360 if let Some(t) = self.active_catalog().get(&stmt.table) {
2361 crate::constraints::iter_cold_rows_of_parent(self.active_catalog(), t)
2362 } else {
2363 alloc::vec::Vec::new()
2364 };
2365 let table = self
2366 .active_catalog_mut()
2367 .get_mut(&stmt.table)
2368 .ok_or_else(|| {
2369 EngineError::Storage(StorageError::TableNotFound {
2370 name: stmt.table.clone(),
2371 })
2372 })?;
2373 // `IF NOT EXISTS` reduces DuplicateIndex to a no-op CommandOk.
2374 if stmt.if_not_exists && table.indices().iter().any(|i| i.name == stmt.name) {
2375 // v7.39 (read01 round 46) — PG's IF NOT EXISTS skip NOTICE
2376 // (an index is a relation, so PG says "relation").
2377 self.notice(alloc::format!(
2378 "relation {:?} already exists, skipping",
2379 stmt.name
2380 ));
2381 return Ok(QueryResult::CommandOk {
2382 affected: 0,
2383 modified_catalog: false,
2384 });
2385 }
2386 // v7.9.14 — multi-column index parses through; engine
2387 // builds a single-column BTree on the leading column only.
2388 // The trailing index columns are resolved + persisted below
2389 // (for every index, not just UNIQUE) so the catalog reports the
2390 // full column list; the BTree still keys on the leading column.
2391 let table_name = stmt.table.clone();
2392 // v6.8.0 — resolve INCLUDE column names to positions. Done
2393 // before `add_index` so a typo error surfaces before any
2394 // catalog mutation lands.
2395 let included_positions: Vec<usize> = if stmt.included_columns.is_empty() {
2396 Vec::new()
2397 } else {
2398 let schema = table.schema();
2399 stmt.included_columns
2400 .iter()
2401 .map(|c| {
2402 schema.column_position(c).ok_or_else(|| {
2403 EngineError::Storage(StorageError::ColumnNotFound { column: c.clone() })
2404 })
2405 })
2406 .collect::<Result<Vec<_>, _>>()?
2407 };
2408 // r1038 — an operator class that does not exist is refused here,
2409 // with PG's wording and its access method.
2410 //
2411 // The parser recognises an opclass by its position, so it no longer
2412 // rejects an unknown NAME as a syntax error the way its old
2413 // eighteen-name whitelist did as a side effect. That whitelist was
2414 // the sentori defect (`jsonb_path_ops` is ordinary PG and did not
2415 // parse); the refusal it was also doing belongs here, where the
2416 // access method is known and the error can carry it.
2417 if let Some(op) = &stmt.opclass
2418 && !crate::opclass::exists_for_access_method(op, stmt.method_name.as_deref())
2419 {
2420 return Err(EngineError::Unsupported(alloc::format!(
2421 "operator class {op:?} does not exist for access method {:?}",
2422 stmt.method_name.as_deref().unwrap_or("btree")
2423 )));
2424 }
2425 // v7.39 (round 475) — an expression key a method cannot take is
2426 // refused BEFORE anything is built.
2427 //
2428 // The check used to run after the index was created, so
2429 // `CREATE INDEX gx ON g USING gin (to_tsvector('simple', doc))`
2430 // raised an error AND left a btree index named `gx` on `doc`
2431 // behind. The message said nothing had happened, the catalog said
2432 // otherwise, and a dump carried an index the user never wrote.
2433 let gin_fulltext_col = match (&stmt.expression, stmt.method) {
2434 (Some(e), IndexMethod::Gin) => tsvector_source_column(e),
2435 _ => None,
2436 };
2437 // v7.38.16 — a GIN index on an expression is PG's ordinary
2438 // spelling for full-text search, and SPG refused it outright:
2439 // `USING gin (to_tsvector('english', title || ' ' || body))` and
2440 // `USING gin (coalesce(title,''))` and `USING gin ((meta ->
2441 // 'tags'))` all failed the DDL, so a customer's schema did not
2442 // load at all. Only `to_tsvector(col)` worked, because
2443 // `tsvector_source_column` recognises a bare column as the last
2444 // argument and nothing else.
2445 //
2446 // The index kind follows the EXPRESSION's result type, since
2447 // there is no column whose type could decide it.
2448 let gin_expr_kind = match (&stmt.expression, stmt.method) {
2449 // Every GIN expression key, including `to_tsvector(col)`.
2450 // That one used to route to the MySQL FULLTEXT posting list,
2451 // which tokenises with the `simple` rule — so a query written
2452 // `to_tsvector('english', body) @@ to_tsquery('english','lazy')`
2453 // looked for the stem `lazi` in a list that held `lazy`, found
2454 // nothing, and returned NO ROWS where the same query without
2455 // the index returned one. Keying on the evaluated tsvector
2456 // puts the query's own configuration in the index.
2457 (Some(e), IndexMethod::Gin) => {
2458 crate::describe::describe_expr_type(e, &table.schema().columns)
2459 }
2460 _ => None,
2461 };
2462 if let Some(key_expr) = &stmt.expression
2463 && gin_fulltext_col.is_none()
2464 && gin_expr_kind.is_none()
2465 && matches!(
2466 stmt.method,
2467 IndexMethod::Hnsw | IndexMethod::Brin | IndexMethod::Gin
2468 )
2469 {
2470 // The old wording named HNSW and BRIN while also covering GIN,
2471 // so a refused GIN index reported two methods it was not.
2472 let method = match stmt.method {
2473 IndexMethod::Hnsw => "HNSW",
2474 IndexMethod::Brin => "BRIN",
2475 _ => "GIN",
2476 };
2477 return Err(EngineError::Unsupported(alloc::format!(
2478 "expression keys are not supported on {method} indexes: {key_expr}"
2479 )));
2480 }
2481 if let Some(ty) = gin_expr_kind {
2482 // The expression's own type picks the posting-list shape.
2483 // `column_position` still names the expression's leading
2484 // column so the catalog stays well-formed; the ENTRIES come
2485 // from `expr_index::refresh` below, never from that column.
2486 let anchor = stmt.column.clone();
2487 match ty {
2488 spg_storage::DataType::TsVector => table
2489 .add_gin_index_on_expression(stmt.name.clone(), &anchor)
2490 .map_err(EngineError::Storage)?,
2491 spg_storage::DataType::Json | spg_storage::DataType::Jsonb => table
2492 .add_gin_jsonb_index(stmt.name.clone(), &anchor)
2493 .map_err(EngineError::Storage)?,
2494 spg_storage::DataType::Text | spg_storage::DataType::Varchar(_) => table
2495 .add_gin_trgm_index(stmt.name.clone(), &anchor)
2496 .map_err(EngineError::Storage)?,
2497 _ => {
2498 return Err(EngineError::Unsupported(alloc::format!(
2499 "GIN cannot index an expression of type {ty:?}: {}",
2500 stmt.expression.as_ref().map_or_else(
2501 alloc::string::String::new,
2502 alloc::string::ToString::to_string
2503 )
2504 )));
2505 }
2506 }
2507 } else if let Some(col) = gin_fulltext_col.clone() {
2508 table
2509 .add_gin_fulltext_index(stmt.name.clone(), &col)
2510 .map_err(EngineError::Storage)?;
2511 } else {
2512 match stmt.method {
2513 IndexMethod::BTree => {
2514 table.add_index(stmt.name.clone(), &stmt.column)?;
2515 // v7.38 P0 元机制 A — index has been pushed onto
2516 // the table's index vector. Tests use this point
2517 // to race a sealed index against a concurrent
2518 // read.
2519 crate::injection_point!("index_build_post_seal", &stmt.name);
2520 }
2521 IndexMethod::Hnsw => {
2522 if !included_positions.is_empty() {
2523 return Err(EngineError::Unsupported(
2524 "INCLUDE columns are not supported on HNSW indexes".into(),
2525 ));
2526 }
2527 table.add_nsw_index(
2528 stmt.name.clone(),
2529 &stmt.column,
2530 spg_storage::NSW_DEFAULT_M,
2531 )?;
2532 }
2533 // v6.7.1 — BRIN. Pure metadata; no in-memory data.
2534 IndexMethod::Brin => {
2535 if !included_positions.is_empty() {
2536 return Err(EngineError::Unsupported(
2537 "INCLUDE columns are not supported on BRIN indexes".into(),
2538 ));
2539 }
2540 table.add_brin_index(stmt.name.clone(), &stmt.column)?;
2541 }
2542 // v7.12.3 — GIN inverted index. Real posting-list-backed
2543 // GIN when the indexed column is `tsvector`; falls back
2544 // to a BTree on the leading column for any other column
2545 // type so v7.9.26b's `pg_dump` compatibility (GIN on
2546 // JSONB etc. silently loading as BTree) is preserved.
2547 // Operators see the real GIN only where it matters; old
2548 // schemas keep loading.
2549 IndexMethod::Gin => {
2550 if !included_positions.is_empty() {
2551 return Err(EngineError::Unsupported(
2552 "INCLUDE columns are not supported on GIN indexes".into(),
2553 ));
2554 }
2555 let col_pos =
2556 table
2557 .schema()
2558 .column_position(&stmt.column)
2559 .ok_or_else(|| {
2560 EngineError::Storage(StorageError::ColumnNotFound {
2561 column: stmt.column.clone(),
2562 })
2563 })?;
2564 let col_ty = table.schema().columns[col_pos].ty;
2565 // v7.15.0 — `gin_trgm_ops` on a TEXT/VARCHAR
2566 // column dispatches to the real trigram-shingle
2567 // GIN build (LIKE / similarity acceleration).
2568 // Other GIN opclasses fall through to the regular
2569 // tsvector-vs-BTree split below.
2570 let is_trgm = stmt
2571 .opclass
2572 .as_deref()
2573 .is_some_and(|op| op.eq_ignore_ascii_case("gin_trgm_ops"));
2574 if is_trgm
2575 && matches!(
2576 col_ty,
2577 spg_storage::DataType::Text | spg_storage::DataType::Varchar(_)
2578 )
2579 {
2580 table
2581 .add_gin_trgm_index(stmt.name.clone(), &stmt.column)
2582 .map_err(EngineError::Storage)?;
2583 } else if col_ty == spg_storage::DataType::TsVector {
2584 table
2585 .add_gin_index(stmt.name.clone(), &stmt.column)
2586 .map_err(EngineError::Storage)?;
2587 } else if matches!(
2588 col_ty,
2589 spg_storage::DataType::Json | spg_storage::DataType::Jsonb
2590 ) {
2591 // v7.37.8(sentori Epic 5 P2)— real JSONB-GIN
2592 // posting list. Pre-7.37.8 the same DDL loaded
2593 // as a BTree fallback so `pg_dump` scripts that
2594 // named GIN on JSONB stayed loadable but the
2595 // posting-list acceleration was missing; the
2596 // sentori dashboard's `labels @> '...'` queries
2597 // fell back to full scan. The planner picks
2598 // this index up via the `@>` seek in
2599 // `index_access::try_gin_jsonb_seek`.
2600 table
2601 .add_gin_jsonb_index(stmt.name.clone(), &stmt.column)
2602 .map_err(EngineError::Storage)?;
2603 } else {
2604 // v7.9.26b BTree fallback — the catalog still
2605 // gets an index entry on the leading column so
2606 // pg_dump scripts that name GIN on other column
2607 // types load clean; query-time gain stays opt-in
2608 // for tsvector / JSONB callers.
2609 table.add_index(stmt.name.clone(), &stmt.column)?;
2610 }
2611 }
2612 }
2613 }
2614 if !included_positions.is_empty()
2615 && let Some(idx) = table.indices_mut().iter_mut().find(|i| i.name == stmt.name)
2616 {
2617 idx.included_columns = included_positions;
2618 }
2619 // v6.8.1 — persist partial-index predicate. Stored as the
2620 // expression's Display form so the catalog snapshot stays
2621 // pure (storage has no spg-sql dependency). The runtime
2622 // maintenance path treats partial indexes identically to
2623 // full indexes for v6.8.1 (over-maintenance is safe; the
2624 // planner-side "use partial when query WHERE implies the
2625 // predicate" pass is STABILITY carve-out).
2626 if let Some(pred_expr) = &stmt.partial_predicate {
2627 let canonical = pred_expr.to_string();
2628 // v7.13.2 — mailrs round-6 S2. PG's `pg_trgm` uses
2629 // `CREATE INDEX … USING gin(col gin_trgm_ops) WHERE …`
2630 // routinely to slim trigram indexes. SPG now persists
2631 // the predicate for GIN / BRIN / HNSW the same way it
2632 // already does for BTree — same v6.8.1 "over-maintain
2633 // is safe; planner-side partial routing is STABILITY
2634 // carve-out" semantics. HNSW carries an additional
2635 // caveat: the predicate isn't applied at index build
2636 // time (would require per-row eval inside the NSW
2637 // construction loop), so the index oversamples; query
2638 // time the WHERE clause still filters correctly.
2639 if let Some(idx) = table.indices_mut().iter_mut().find(|i| i.name == stmt.name) {
2640 idx.partial_predicate = Some(canonical);
2641 }
2642 }
2643 // v6.8.2 — persist expression index key. Same Display-form
2644 // storage; the runtime maintenance pass evaluates each
2645 // row's expression to derive the index key, but for v6.8.2
2646 // the engine falls through to the bare-column-reference
2647 // path and the expression is preserved for format-layer
2648 // round-trip + future planner work. Carved-out in
2649 // STABILITY § "Out of v6.8".
2650 if let Some(key_expr) = &stmt.expression {
2651 // v7.39 (round 475) — the method check moved above, before
2652 // anything is built.
2653 let canonical = key_expr.to_string();
2654 if let Some(idx) = table.indices_mut().iter_mut().find(|i| i.name == stmt.name) {
2655 idx.expression = Some(canonical);
2656 }
2657 // v7.38.16 — and now FILL it with the expression's values.
2658 // Until this call the B-tree holds the leading column's
2659 // values, which is what the index was built from and what no
2660 // lookup of `lower(s) = …` could ever match. `refresh` is a
2661 // no-op for a GIN full-text index, whose expression names a
2662 // source column that its own maintenance path already reads.
2663 crate::expr_index::refresh(table)?;
2664 }
2665 // v7.38.18 (S0) — and a locale-collated column index, for the
2666 // same reason: `Table::add_index` deliberately leaves its tree
2667 // EMPTY because only this crate can encode ICU sort keys, so
2668 // without this the index would exist, be skipped by every seek
2669 // (`Table::index_on` declines an incomplete one), and cost
2670 // maintenance for nothing.
2671 crate::expr_index::refresh(table)?;
2672 // v7.9.29 — persist `is_unique` flag on the storage Index.
2673 // Combined with `partial_predicate`, INSERT enforcement
2674 // checks that no other row whose predicate evaluates true
2675 // shares the same indexed key. Parser already rejected
2676 // `UNIQUE` on HNSW / BRIN, so plain BTree here.
2677 // Resolve the trailing index columns to positions and persist
2678 // them on EVERY index, unique or not — the BTree keys on the
2679 // leading column, but the extras drive uniqueness enforcement
2680 // (unique) and the catalog / pg_get_indexdef column list
2681 // (both), so a plain `CREATE INDEX t (a, b)` reports (a, b).
2682 {
2683 let mut extra_positions: alloc::vec::Vec<usize> = alloc::vec::Vec::new();
2684 for col_name in &stmt.extra_columns {
2685 let pos = table
2686 .schema()
2687 .columns
2688 .iter()
2689 .position(|c| c.name.eq_ignore_ascii_case(col_name))
2690 .ok_or_else(|| {
2691 EngineError::Unsupported(alloc::format!(
2692 "INDEX {:?}: extra column {col_name:?} not in table {:?}",
2693 stmt.name,
2694 stmt.table
2695 ))
2696 })?;
2697 extra_positions.push(pos);
2698 }
2699 if let Some(idx) = table.indices_mut().iter_mut().find(|i| i.name == stmt.name) {
2700 idx.extra_column_positions = extra_positions;
2701 }
2702 // v7.38.1 (L12) — a multi-column CREATE INDEX becomes a REAL
2703 // composite B-tree: the key is the whole column tuple, so an
2704 // equality on any prefix seeks instead of filtering a
2705 // leading-column candidate flood. Expression / partial /
2706 // GIN-shaped indexes are declined inside and stay as built;
2707 // the indexdef already printed the full column list either
2708 // way, so nothing catalog-visible changes.
2709 table
2710 .convert_index_to_multi(&stmt.name)
2711 .map_err(EngineError::Storage)?;
2712 }
2713 // v7.39 (round 537) — the key column's ordering clause, as
2714 // written. It changes no lookup; `indexdef` reproduces the DDL,
2715 // and dropping it made `(a DESC NULLS LAST)` read back as `(a)`.
2716 if let Some(idx) = table.indices_mut().iter_mut().find(|i| i.name == stmt.name) {
2717 idx.descending = stmt.key_order.descending;
2718 idx.nulls_first = stmt.key_order.nulls_first;
2719 idx.collation.clone_from(&stmt.key_collation);
2720 }
2721 if stmt.is_unique {
2722 if let Some(idx) = table.indices_mut().iter_mut().find(|i| i.name == stmt.name) {
2723 idx.is_unique = true;
2724 // v7.39 (read01 round 52) — NULLS NOT DISTINCT (PG 15+).
2725 idx.nulls_not_distinct = stmt.nulls_not_distinct;
2726 }
2727 // At index-creation time, check the existing rows for
2728 // pre-existing duplicates that would have violated the
2729 // new constraint — otherwise CREATE UNIQUE INDEX would
2730 // silently leave duplicates in place.
2731 let snapshot_indices = table.indices().to_vec();
2732 let mut snapshot_rows: alloc::vec::Vec<spg_storage::Row> =
2733 table.rows().iter().cloned().collect();
2734 // v7.36 (cold-tier coverage) — CREATE UNIQUE INDEX must
2735 // detect a duplicate that would violate the new
2736 // uniqueness contract even when the duplicate is in the
2737 // cold tier; otherwise the constraint declaration
2738 // succeeds but the on-disk segments carry stale
2739 // duplicates and later INSERTs see phantom-conflict
2740 // behaviour. Use the catalog-borrowing variant from
2741 // `constraints` so we don't double-borrow `self` mut.
2742 snapshot_rows.extend(cold_rows_for_unique_scan);
2743 let snapshot_schema = table.schema().clone();
2744 let idx_ref = snapshot_indices
2745 .iter()
2746 .find(|i| i.name == stmt.name)
2747 .expect("just-added index");
2748 // v7.39 (read01 round 52) — the index was already installed above,
2749 // so a validation failure must ROLL IT BACK. PG's CREATE UNIQUE
2750 // INDEX is atomic; SPG used to leave the half-built index in the
2751 // catalog (pg_indexes listed an index that "failed" to create).
2752 if let Err(e) = check_existing_unique_violation(
2753 idx_ref,
2754 &snapshot_schema,
2755 &snapshot_rows,
2756 self.backslash_escapes,
2757 ) {
2758 let name = stmt.name.clone();
2759 self.active_catalog_mut().drop_named_index(&name);
2760 return Err(e);
2761 }
2762 }
2763 // v6.3.1 — adding an index can change the optimal plan for
2764 // any cached query that references this table.
2765 self.plan_cache.evict_referencing(&table_name);
2766 Ok(QueryResult::CommandOk {
2767 affected: 0,
2768 modified_catalog: self.catalog_change_is_committed(),
2769 })
2770 }
2771
2772 /// v7.37.6-B(sentori Epic 2 P0)— `CREATE INDEX … ON parent`
2773 /// fans the index out to every existing child plus records
2774 /// the Display-form source so future children build it too.
2775 /// The parent itself stays index-less because it holds no rows.
2776 fn exec_create_index_on_partition_parent(
2777 &mut self,
2778 stmt: CreateIndexStatement,
2779 ) -> Result<QueryResult, EngineError> {
2780 let parent_name = stmt.table.clone();
2781 // Display-form source (round-trips through fmt::Display)
2782 // → store on parent's PartitionRole::Parent template list.
2783 let template_source = alloc::format!("{stmt}");
2784 let children = crate::partition::children_of_parent(self.active_catalog(), &parent_name);
2785 // Append the template to the parent schema before fanning
2786 // out, so a child whose CREATE FAILS halfway through still
2787 // records the template the user asked for. Idempotency is
2788 // handled at child-create time via `IF NOT EXISTS`.
2789 {
2790 let parent = self
2791 .active_catalog_mut()
2792 .get_mut(&parent_name)
2793 .ok_or_else(|| {
2794 EngineError::Storage(StorageError::TableNotFound {
2795 name: parent_name.clone(),
2796 })
2797 })?;
2798 if let Some(PartitionRole::Parent {
2799 index_template_sources,
2800 ..
2801 }) = parent.schema_mut().partition_role.as_mut()
2802 {
2803 index_template_sources.push(template_source.clone());
2804 }
2805 }
2806 for child in children {
2807 self.execute_partition_index_template(&child, &template_source)?;
2808 }
2809 Ok(QueryResult::CommandOk {
2810 affected: 0,
2811 modified_catalog: self.catalog_change_is_committed(),
2812 })
2813 }
2814
2815 /// v7.13.3 — mailrs round-7 S9. SPG-specific reconciliation
2816 /// for `CREATE TABLE IF NOT EXISTS` when the table already
2817 /// exists. Adds missing columns + inline FKs from the new
2818 /// definition; existing columns / constraints stay untouched.
2819 /// New columns with a `NOT NULL` declaration without a
2820 /// `DEFAULT` are reported as a clear error rather than
2821 /// silently dropped — this is the "fail loud on real
2822 /// incompatibility, fail silent on schema-superset" tradeoff.
2823 fn reconcile_table_if_not_exists(
2824 &mut self,
2825 stmt: CreateTableStatement,
2826 ) -> Result<QueryResult, EngineError> {
2827 let table_name = stmt.name.clone();
2828 let clock = self.clock;
2829 let existing_col_names: alloc::collections::BTreeSet<String> = self
2830 .active_catalog()
2831 .get(&table_name)
2832 .expect("checked above")
2833 .schema()
2834 .columns
2835 .iter()
2836 .map(|c| c.name.to_ascii_lowercase())
2837 .collect();
2838 let row_count = self
2839 .active_catalog()
2840 .get(&table_name)
2841 .expect("checked above")
2842 .row_count();
2843 // Collect missing column defs in source order.
2844 let new_columns: alloc::vec::Vec<spg_sql::ast::ColumnDef> = stmt
2845 .columns
2846 .iter()
2847 .filter(|c| !existing_col_names.contains(&c.name.to_ascii_lowercase()))
2848 .cloned()
2849 .collect();
2850 for col_def in new_columns {
2851 let col_name = col_def.name.clone();
2852 let nullable = col_def.nullable;
2853 let has_default = col_def.default.is_some() || col_def.auto_increment;
2854 let col_schema = column_def_to_schema(col_def, self.backslash_escapes)?;
2855 let fill_value: Value<'static> = if has_default || col_schema.runtime_default.is_some()
2856 {
2857 resolve_column_default_free(&col_schema, clock, None)?
2858 } else if nullable || row_count == 0 {
2859 Value::Null
2860 } else {
2861 return Err(EngineError::Unsupported(alloc::format!(
2862 "CREATE TABLE IF NOT EXISTS {table_name:?}: reconciling \
2863 column {col_name:?} requires DEFAULT (existing rows would violate NOT NULL)"
2864 )));
2865 };
2866 let table = self
2867 .active_catalog_mut()
2868 .get_mut(&table_name)
2869 .expect("checked above");
2870 table.add_column(col_schema, fill_value);
2871 }
2872 // Resolve any newly-added inline FKs (column-level
2873 // REFERENCES forms) and install. Skip FKs whose local
2874 // columns we didn't have in the existing table.
2875 let table_cols_now = self
2876 .active_catalog()
2877 .get(&table_name)
2878 .expect("checked above")
2879 .schema()
2880 .columns
2881 .clone();
2882 for fk in stmt.foreign_keys {
2883 // Only install FKs whose every local column resolves
2884 // — older catalogs may have a column the new FK
2885 // references but not the column the new FK declares.
2886 let all_resolved = fk.columns.iter().all(|c| {
2887 table_cols_now
2888 .iter()
2889 .any(|sc| sc.name.eq_ignore_ascii_case(c))
2890 });
2891 if !all_resolved {
2892 continue;
2893 }
2894 let already_present = {
2895 let table = self
2896 .active_catalog()
2897 .get(&table_name)
2898 .expect("checked above");
2899 table.schema().foreign_keys.iter().any(|f| {
2900 f.parent_table.eq_ignore_ascii_case(&fk.parent_table)
2901 && f.local_columns.len() == fk.columns.len()
2902 })
2903 };
2904 if already_present {
2905 continue;
2906 }
2907 let storage_fk =
2908 resolve_foreign_key(&table_name, &table_cols_now, fk, self.active_catalog())?;
2909 let table = self
2910 .active_catalog_mut()
2911 .get_mut(&table_name)
2912 .expect("checked above");
2913 table.schema_mut().foreign_keys.push(storage_fk);
2914 }
2915 Ok(QueryResult::CommandOk {
2916 affected: 0,
2917 modified_catalog: self.catalog_change_is_committed(),
2918 })
2919 }
2920
2921 /// v7.14.0 — DROP TABLE handler (pg_dump / mysqldump preamble).
2922 pub(crate) fn exec_drop_table(
2923 &mut self,
2924 names: Vec<String>,
2925 if_exists: bool,
2926 ) -> Result<QueryResult, EngineError> {
2927 for name in names {
2928 // v7.39 (round 642) — dropping a partition parent drops its
2929 // partitions with it.
2930 //
2931 // v7.37.6-B refused instead, on the premise that PG needs an
2932 // explicit CASCADE here. Measured on PG18, it does not: a
2933 // plain `DROP TABLE pp` takes pp and every partition, and so
2934 // does the CASCADE spelling. The refusal made the parent
2935 // undroppable by either spelling — `DROP TABLE IF EXISTS pp
2936 // CASCADE` at the head of a script failed, and every
2937 // statement after it failed on the leftovers.
2938 //
2939 // v7.39 (round 645) — inheritance is the other way round.
2940 // Measured on PG18: `DROP TABLE <inheritance parent>` with a
2941 // child is "cannot drop table par because other objects
2942 // depend on it / table ch depends on table par", and the
2943 // child survives. Only a PARTITION parent takes its children
2944 // with it.
2945 if crate::partition::has_inheritance_children(self.active_catalog(), &name) {
2946 let kids = crate::partition::children_of_parent(self.active_catalog(), &name);
2947 return Err(EngineError::Unsupported(alloc::format!(
2948 "cannot drop table {name} because other objects depend on it\n\
2949 DETAIL: table {} depends on table {name}",
2950 kids.first().map_or("?", |k| k.as_str())
2951 )));
2952 }
2953 // Depth-first: a partition may itself be partitioned, and
2954 // its children have to go before it does.
2955 let mut to_drop = alloc::vec::Vec::new();
2956 let mut frontier = alloc::vec![name.clone()];
2957 while let Some(cur) = frontier.pop() {
2958 for kid in crate::partition::children_of_parent(self.active_catalog(), &cur) {
2959 frontier.push(kid.clone());
2960 to_drop.push(kid);
2961 }
2962 }
2963 // Deepest first, so no parent is removed while a child of it
2964 // is still listed.
2965 for kid in to_drop.into_iter().rev() {
2966 let kid_was_temp = self.temp_tables.contains(&kid);
2967 if self.active_catalog_mut().drop_table(&kid) {
2968 if kid_was_temp {
2969 self.temp_tables.remove(&kid);
2970 self.refresh_temp_prefix();
2971 }
2972 self.table_write_stats.remove(&kid);
2973 }
2974 }
2975 // v7.39 (round 436) — if this was one of the session's TEMPORARY
2976 // tables, forget it too, so a permanent namesake becomes visible
2977 // again and `end_session` does not chase a gone table.
2978 let was_temp = self.temp_tables.contains(&name);
2979 let dropped = self.active_catalog_mut().drop_table(&name);
2980 if dropped && was_temp {
2981 self.temp_tables.remove(&name);
2982 self.refresh_temp_prefix();
2983 }
2984 if dropped {
2985 // r192 — drop the non-transactional DML counters so a
2986 // later same-named table starts at zero (PG resets
2987 // stats on DROP).
2988 self.table_write_stats.remove(&name);
2989 // v7.39 (read01 round 50) — purge the table's comments (and its
2990 // columns') so a later table of the same name can't inherit them.
2991 self.active_catalog_mut().drop_comments_for("table", &name);
2992 }
2993 if !dropped {
2994 if !if_exists {
2995 // v7.39 (read01 round 45) — PG wording (42P01 at the wire);
2996 // PG says "table", not "relation", for DROP TABLE.
2997 return Err(EngineError::Unsupported(alloc::format!(
2998 "table {name:?} does not exist"
2999 )));
3000 }
3001 // v7.39 (read01 round 46) — PG's IF EXISTS skip NOTICE.
3002 self.notice(alloc::format!("table {name:?} does not exist, skipping"));
3003 }
3004 }
3005 Ok(QueryResult::CommandOk {
3006 affected: 0,
3007 modified_catalog: self.catalog_change_is_committed(),
3008 })
3009 }
3010
3011 /// v7.14.0 — DROP INDEX handler.
3012 pub(crate) fn exec_drop_index(
3013 &mut self,
3014 name: String,
3015 if_exists: bool,
3016 ) -> Result<QueryResult, EngineError> {
3017 let dropped = self.active_catalog_mut().drop_named_index(&name);
3018 if !dropped {
3019 if !if_exists {
3020 return Err(EngineError::Storage(StorageError::IndexNotFound { name }));
3021 }
3022 // v7.39 (read01 round 46) — PG's IF EXISTS skip NOTICE.
3023 self.notice(alloc::format!("index {name:?} does not exist, skipping"));
3024 }
3025 Ok(QueryResult::CommandOk {
3026 affected: 0,
3027 modified_catalog: self.catalog_change_is_committed(),
3028 })
3029 }
3030
3031 pub(crate) fn exec_create_table(
3032 &mut self,
3033 mut stmt: CreateTableStatement,
3034 ) -> Result<QueryResult, EngineError> {
3035 // v7.39 (round 436) — a TEMPORARY table is created under the calling
3036 // session's namespace prefix and remembered there, so it shadows a
3037 // permanent table of the same name, stays invisible to other
3038 // sessions, and goes away with the session. Everything downstream
3039 // (the whole DDL body, and every later statement) then works on an
3040 // ordinary table: name resolution happens at the ONE place a name
3041 // becomes an index, `Catalog::resolve_index`.
3042 if stmt.temporary {
3043 let logical = stmt.name.clone();
3044 let mangled = self.session_temp_name(&logical);
3045 let mut inner = stmt;
3046 inner.temporary = false;
3047 inner.name = mangled;
3048 let result = self.exec_create_table(inner)?;
3049 self.temp_tables.insert(logical);
3050 self.refresh_temp_prefix();
3051 return Ok(result);
3052 }
3053 if stmt.if_not_exists && self.active_catalog().get(&stmt.name).is_some() {
3054 // v7.39 (read01 round 46) — PG's IF NOT EXISTS skip NOTICE.
3055 self.notice(alloc::format!(
3056 "relation {:?} already exists, skipping",
3057 stmt.name
3058 ));
3059 // v7.16.2 — PG-strict silent no-op (mailrs round-10
3060 // surfaced this). v7.13.3's "reconcile by adding
3061 // missing columns" was friendly for mailrs round-7
3062 // where init-schema's `contacts` and migrate-023's
3063 // CardDAV `contacts` collided; but it ALSO silently
3064 // added columns to existing tables when later
3065 // migrations had a duplicate `CREATE TABLE IF NOT
3066 // EXISTS <t> (different-shape-cols)` shape. mailrs's
3067 // migrate-030 has exactly that — re-declares
3068 // system_config with `key` even though init-schema
3069 // already created it with `config_key`. PG's silent
3070 // no-op leaves system_config at `config_key`;
3071 // v7.13.3 added a phantom `key` column that then
3072 // tripped migrate-040's idempotent rename guard.
3073 // mailrs v1.7.106 ships the proper PG-style
3074 // contacts rename via DO + IF EXISTS, so SPG can
3075 // revert to PG-strict here without re-breaking the
3076 // round-7 case.
3077 return Ok(QueryResult::CommandOk {
3078 affected: 0,
3079 modified_catalog: false,
3080 });
3081 }
3082 // v7.37.6-B(sentori Epic 2 P0)— `CREATE TABLE c PARTITION
3083 // OF parent <bounds>`: the child inherits its column list
3084 // from the parent and gets a `PartitionRole::Range` or
3085 // `Default` tag. Parent-table bookkeeping (index template
3086 // fan-out) runs in `register_partition_child`.
3087 if stmt.partition_of.is_some() {
3088 return self.exec_create_table_partition_of(stmt);
3089 }
3090 let table_name = stmt.name.clone();
3091 // v7.9.13 — pluck the names of any columns marked
3092 // `PRIMARY KEY` inline so the post-create-table pass can
3093 // build an implicit BTree index. mailrs F1.
3094 let inline_pk_columns: Vec<String> = stmt
3095 .columns
3096 .iter()
3097 .filter(|c| c.is_primary_key)
3098 .map(|c| c.name.clone())
3099 .collect();
3100 let like_specs = core::mem::take(&mut stmt.like_specs);
3101 let mut schema = self.build_create_table_schema(
3102 &table_name,
3103 stmt.columns,
3104 &stmt.table_constraints,
3105 stmt.foreign_keys,
3106 &inline_pk_columns,
3107 )?;
3108 // v7.39 (round 531) — expand each `LIKE <table>` in the column
3109 // list. The source's shape lives in the catalog, so the parser
3110 // recorded the clause and it is copied here, at the position it
3111 // was written.
3112 let mut like_indexes: Vec<CreateIndexStatement> = Vec::new();
3113 self.apply_like_specs(&mut schema, &like_specs, &mut like_indexes)?;
3114 // v7.39 (round 645) — `INHERITS (p1, p2)`. Each parent's columns
3115 // land BEFORE the child's own, in the order the parents were
3116 // written, which is the order PG uses and the order
3117 // `pg_inherits.inhseqno` numbers them in.
3118 //
3119 // NOT NULL, DEFAULT and CHECK come with a column; PRIMARY KEY
3120 // and UNIQUE do not — measured on PG18, a child of a table with
3121 // a primary key has no `contype = 'p'` row of its own.
3122 //
3123 // A name the child also declares is not duplicated: PG merges
3124 // the two, keeping one column, and requires the types to agree.
3125 if !stmt.inherits.is_empty() {
3126 let mut merged: Vec<spg_storage::ColumnSchema> = Vec::new();
3127 for parent in &stmt.inherits {
3128 let Some(p) = self.active_catalog().get(parent) else {
3129 return Err(EngineError::Storage(
3130 spg_storage::StorageError::TableNotFound {
3131 name: parent.clone(),
3132 },
3133 ));
3134 };
3135 for col in &p.schema().columns {
3136 if merged
3137 .iter()
3138 .any(|c| c.name.eq_ignore_ascii_case(&col.name))
3139 {
3140 continue;
3141 }
3142 if let Some(own) = schema
3143 .columns
3144 .iter()
3145 .find(|c| c.name.eq_ignore_ascii_case(&col.name))
3146 && own.ty != col.ty
3147 {
3148 return Err(EngineError::Unsupported(alloc::format!(
3149 "column \"{}\" inherited from \"{parent}\" has type {} but the child declares {}",
3150 col.name,
3151 crate::conversions::pg_type_name_for_error(col.ty),
3152 crate::conversions::pg_type_name_for_error(own.ty)
3153 )));
3154 }
3155 merged.push(col.clone());
3156 }
3157 }
3158 // The child's own columns follow, minus any the parents
3159 // already supplied.
3160 for col in &schema.columns {
3161 if !merged
3162 .iter()
3163 .any(|c| c.name.eq_ignore_ascii_case(&col.name))
3164 {
3165 merged.push(col.clone());
3166 }
3167 }
3168 schema.columns = merged;
3169 // v7.39 (round 646) — CHECK constraints inherit too. Measured
3170 // on PG18: a child of a table with `CHECK (a > 0)` gets its
3171 // own `contype = 'c'` row. PRIMARY KEY and UNIQUE do NOT —
3172 // the same probe reads 0 for `contype = 'p'` — so only the
3173 // checks are copied.
3174 //
3175 // A constraint the child already declares by the same name is
3176 // left alone; PG merges the two rather than carrying both.
3177 for parent in &stmt.inherits {
3178 let Some(p) = self.active_catalog().get(parent) else {
3179 continue;
3180 };
3181 // The NAME travels with the constraint. An unnamed CHECK
3182 // is auto-named per table, so copying it as-is would give
3183 // the child `<child>_a_check` where PG reports the
3184 // parent's `<parent>_a_check` — measured in the violation
3185 // message, which is where a user meets the name. Resolve
3186 // the parent's name once and carry it explicitly.
3187 let names = crate::system_catalog::pg_check_connames(p, parent, &p.schema().checks);
3188 for (ci, (chk, name)) in p.schema().checks.iter().zip(names).enumerate() {
3189 let dup = schema.checks.iter().any(|c| match (&c.name, &chk.name) {
3190 (Some(a), Some(b)) => a.eq_ignore_ascii_case(b),
3191 _ => c.expr == chk.expr,
3192 });
3193 if !dup {
3194 // A child copies the parent's constraint, validation
3195 // state and all.
3196 schema.checks.push(spg_storage::CheckConstraint {
3197 name: Some(name),
3198 expr: chk.expr.clone(),
3199 validated: chk.validated,
3200 });
3201 }
3202 }
3203 }
3204 schema.partition_role = Some(spg_storage::PartitionRole::Inherits {
3205 parent_names: stmt.inherits.clone(),
3206 });
3207 }
3208 // v7.37.6-B — `CREATE TABLE p (...) PARTITION BY RANGE (key)`:
3209 // attach the parent role to the freshly-built schema before
3210 // it lands in the catalog. Key column must be TIMESTAMPTZ
3211 // at v7.37.6-B (the only sentori shape); other key types are
3212 // a phase-2 carve-out.
3213 if let Some(by) = stmt.partition_by {
3214 let kind = match by.kind {
3215 PartitionKindAst::Range => PartitionKind::Range,
3216 PartitionKindAst::List => PartitionKind::List,
3217 PartitionKindAst::Hash => PartitionKind::Hash,
3218 };
3219 let mut key_column_positions = Vec::with_capacity(by.key_columns.len());
3220 for col_name in &by.key_columns {
3221 let pos = schema
3222 .columns
3223 .iter()
3224 .position(|c| c.name.eq_ignore_ascii_case(col_name))
3225 .ok_or_else(|| {
3226 EngineError::Unsupported(alloc::format!(
3227 "PARTITION BY: key column {col_name:?} not in column list"
3228 ))
3229 })?;
3230 // v7.37.16 (16.1/16.2/16.6) — accept the typed PG
3231 // builtins per partition strategy:
3232 // RANGE → TIMESTAMPTZ / TIMESTAMP / DATE / BIGINT
3233 // / INTEGER / SMALLINT
3234 // LIST → BIGINT / INTEGER / SMALLINT / DATE / TEXT
3235 // HASH → BIGINT / INTEGER / SMALLINT / TEXT / DATE
3236 // / TIMESTAMPTZ
3237 let key_ty = &schema.columns[pos].ty;
3238 let key_ok = matches!(
3239 key_ty,
3240 DataType::Timestamptz
3241 | DataType::Timestamp
3242 | DataType::Date
3243 | DataType::BigInt
3244 | DataType::Int
3245 | DataType::SmallInt
3246 | DataType::Text
3247 | DataType::Varchar(_)
3248 );
3249 if !key_ok {
3250 return Err(EngineError::Unsupported(alloc::format!(
3251 "PARTITION BY {:?}: key column {col_name:?} type {key_ty:?} \
3252 is not yet supported (16.1/16.2/16.6 accept TIMESTAMPTZ, \
3253 TIMESTAMP, DATE, BIGINT, INTEGER, SMALLINT, TEXT/VARCHAR)",
3254 kind,
3255 )));
3256 }
3257 key_column_positions.push(pos);
3258 }
3259 schema.partition_role = Some(PartitionRole::Parent {
3260 kind,
3261 key_column_positions,
3262 index_template_sources: Vec::new(),
3263 });
3264 }
3265 self.active_catalog_mut().create_table(schema)?;
3266 // v7.39 (round 621) — the indexes an `INCLUDING INDEXES` asked for,
3267 // created once the table they sit on exists.
3268 for mut ci in like_indexes {
3269 ci.table = table_name.clone();
3270 self.exec_create_index(ci)?;
3271 }
3272 self.install_implicit_indexes(&table_name, &inline_pk_columns, &stmt.table_constraints)?;
3273 self.install_excl_range_indexes(&table_name);
3274 Ok(QueryResult::CommandOk {
3275 affected: 0,
3276 modified_catalog: self.catalog_change_is_committed(),
3277 })
3278 }
3279
3280 /// v7.37.6-B — child-table branch of `CREATE TABLE`. The parser
3281 /// guarantees `stmt.partition_of.is_some()` + `stmt.columns`
3282 /// is empty before we land here.
3283 fn exec_create_table_partition_of(
3284 &mut self,
3285 stmt: CreateTableStatement,
3286 ) -> Result<QueryResult, EngineError> {
3287 let spec = stmt
3288 .partition_of
3289 .expect("caller checked partition_of.is_some()");
3290 // Lift parent schema bits (columns + partition_role + index
3291 // template list) so we don't trip the active_catalog_mut()
3292 // borrow when we splice the child in.
3293 let (parent_columns, parent_kind, index_template_sources) = {
3294 let parent = self
3295 .active_catalog()
3296 .get(&spec.parent_name)
3297 .ok_or_else(|| {
3298 EngineError::Storage(StorageError::TableNotFound {
3299 name: spec.parent_name.clone(),
3300 })
3301 })?;
3302 match &parent.schema().partition_role {
3303 Some(PartitionRole::Parent {
3304 kind,
3305 index_template_sources,
3306 ..
3307 }) => (
3308 parent.schema().columns.clone(),
3309 *kind,
3310 index_template_sources.clone(),
3311 ),
3312 _ => {
3313 return Err(EngineError::Unsupported(alloc::format!(
3314 "CREATE TABLE … PARTITION OF: table {:?} is not a \
3315 partitioned parent",
3316 spec.parent_name
3317 )));
3318 }
3319 }
3320 };
3321 // Resolve bounds before we mutate the catalog so a bad
3322 // literal surfaces before any visible state changes.
3323 let role = match spec.bounds {
3324 PartitionOfBoundsAst::Default => PartitionRole::Default {
3325 parent_name: spec.parent_name.clone(),
3326 },
3327 PartitionOfBoundsAst::Range { lower, upper } => {
3328 let lower_b = crate::partition::evaluate_partition_bound(*lower)?;
3329 let upper_b = crate::partition::evaluate_partition_bound(*upper)?;
3330 // Half-open: lower must be < upper. Same-bound or
3331 // inverted ranges accept no rows in PG; SPG raises
3332 // because every sentori migration shapes intentional
3333 // calendar windows.
3334 if !crate::partition::ranges_overlap(&lower_b, &upper_b, &lower_b, &upper_b) {
3335 return Err(EngineError::Unsupported(alloc::format!(
3336 "PARTITION OF: FROM ({}) TO ({}) is empty (lower must be < upper)",
3337 crate::partition::bound_to_diag(&lower_b),
3338 crate::partition::bound_to_diag(&upper_b),
3339 )));
3340 }
3341 // Overlap check against every existing sibling Range
3342 // child of the same parent. DEFAULT siblings don't
3343 // participate(they're a catch-all, not a range).
3344 let siblings =
3345 crate::partition::children_of_parent(self.active_catalog(), &spec.parent_name);
3346 // Partition-key column of the parent (RANGE uses one key).
3347 let key_pos = match &self
3348 .active_catalog()
3349 .get(&spec.parent_name)
3350 .and_then(|p| p.schema().partition_role.clone())
3351 {
3352 Some(PartitionRole::Parent {
3353 key_column_positions,
3354 ..
3355 }) => key_column_positions.first().copied().unwrap_or(0),
3356 _ => 0,
3357 };
3358 for sib in &siblings {
3359 let Some(t) = self.active_catalog().get(sib) else {
3360 continue;
3361 };
3362 match &t.schema().partition_role {
3363 Some(PartitionRole::Range {
3364 lower: sl,
3365 upper: su,
3366 ..
3367 }) => {
3368 if crate::partition::ranges_overlap(&lower_b, &upper_b, sl, su) {
3369 return Err(EngineError::Unsupported(alloc::format!(
3370 "PARTITION OF: range FROM ({}) TO ({}) overlaps existing \
3371 child {sib:?} (FROM ({}) TO ({}))",
3372 crate::partition::bound_to_diag(&lower_b),
3373 crate::partition::bound_to_diag(&upper_b),
3374 crate::partition::bound_to_diag(sl),
3375 crate::partition::bound_to_diag(su),
3376 )));
3377 }
3378 }
3379 // v7.38 (read01) — DEFAULT-partition cross-check:
3380 // any row already parked in the default partition
3381 // that falls in the new range means adding it would
3382 // strand that row in the wrong partition. PG rejects
3383 // rather than allow the inconsistency.
3384 Some(PartitionRole::Default { .. }) => {
3385 for row in t.rows().iter() {
3386 let Some(v) = row.values.get(key_pos) else {
3387 continue;
3388 };
3389 if v.is_null() {
3390 continue;
3391 }
3392 let Some(kb) = crate::partition::value_to_bound(v) else {
3393 continue;
3394 };
3395 if crate::partition::value_in_range(&kb, &lower_b, &upper_b) {
3396 return Err(EngineError::Unsupported(alloc::format!(
3397 "updated partition constraint for default partition \
3398 {sib:?} would be violated by some row"
3399 )));
3400 }
3401 }
3402 }
3403 _ => {}
3404 }
3405 }
3406 PartitionRole::Range {
3407 parent_name: spec.parent_name.clone(),
3408 lower: lower_b,
3409 upper: upper_b,
3410 }
3411 }
3412 // v7.37.16 (16.1) — LIST child create.
3413 PartitionOfBoundsAst::List { values } => {
3414 if !matches!(parent_kind, PartitionKind::List) {
3415 return Err(EngineError::Unsupported(alloc::format!(
3416 "PARTITION OF: FOR VALUES IN (...) only valid for \
3417 a LIST-partitioned parent (parent {:?} is {:?})",
3418 spec.parent_name,
3419 parent_kind,
3420 )));
3421 }
3422 let mut bounds = Vec::with_capacity(values.len());
3423 for v in values {
3424 bounds.push(crate::partition::evaluate_partition_bound(v)?);
3425 }
3426 // Reject duplicate values across siblings (PG raises
3427 // "is already specified in partition X" at create
3428 // time so the dispatch never sees ambiguity).
3429 let siblings =
3430 crate::partition::children_of_parent(self.active_catalog(), &spec.parent_name);
3431 for sib in &siblings {
3432 let Some(t) = self.active_catalog().get(sib) else {
3433 continue;
3434 };
3435 if let Some(PartitionRole::List {
3436 values: existing, ..
3437 }) = &t.schema().partition_role
3438 {
3439 for new_b in &bounds {
3440 if existing.iter().any(|e| e == new_b) {
3441 // v7.39 (round 770, F31 tranche 6 #170) —
3442 // PG's sentence, measured: `partition "b"
3443 // would overlap partition "a"`.
3444 let _ = crate::partition::bound_to_diag(new_b);
3445 return Err(EngineError::Unsupported(alloc::format!(
3446 "partition \"{}\" would overlap partition \"{sib}\"",
3447 stmt.name,
3448 )));
3449 }
3450 }
3451 }
3452 }
3453 PartitionRole::List {
3454 parent_name: spec.parent_name.clone(),
3455 values: bounds,
3456 }
3457 }
3458 // v7.37.16 (16.2) — HASH child create.
3459 PartitionOfBoundsAst::Hash { modulus, remainder } => {
3460 if !matches!(parent_kind, PartitionKind::Hash) {
3461 return Err(EngineError::Unsupported(alloc::format!(
3462 "PARTITION OF: FOR VALUES WITH (MODULUS, REMAINDER) only \
3463 valid for a HASH-partitioned parent (parent {:?} is {:?})",
3464 spec.parent_name,
3465 parent_kind,
3466 )));
3467 }
3468 if modulus == 0 || remainder >= modulus {
3469 return Err(EngineError::Unsupported(alloc::format!(
3470 "PARTITION OF HASH: invalid (MODULUS={modulus}, REMAINDER={remainder}); \
3471 require modulus > 0 and remainder < modulus",
3472 )));
3473 }
3474 // Reject duplicate (modulus, remainder) and partial overlap
3475 // (different modulus / same residue class) — PG handles
3476 // multi-modulus by requiring divisibility; we keep it
3477 // simple and demand modulus equality across HASH siblings.
3478 let siblings =
3479 crate::partition::children_of_parent(self.active_catalog(), &spec.parent_name);
3480 for sib in &siblings {
3481 let Some(t) = self.active_catalog().get(sib) else {
3482 continue;
3483 };
3484 if let Some(PartitionRole::Hash {
3485 modulus: m,
3486 remainder: r,
3487 ..
3488 }) = &t.schema().partition_role
3489 {
3490 if *m != modulus {
3491 return Err(EngineError::Unsupported(alloc::format!(
3492 "PARTITION OF HASH: MODULUS {modulus} differs from \
3493 sibling {sib:?} MODULUS {m} (mixed moduli not yet \
3494 supported in v7.37.16.2)",
3495 )));
3496 }
3497 if *r == remainder {
3498 return Err(EngineError::Unsupported(alloc::format!(
3499 "PARTITION OF HASH: REMAINDER {remainder} already \
3500 used by sibling {sib:?}",
3501 )));
3502 }
3503 }
3504 }
3505 PartitionRole::Hash {
3506 parent_name: spec.parent_name.clone(),
3507 modulus,
3508 remainder,
3509 }
3510 }
3511 };
3512 // For DEFAULT children, reject when the parent already has
3513 // one(PG semantics — exactly 0 or 1 DEFAULT per parent).
3514 if matches!(role, PartitionRole::Default { .. }) {
3515 for sib in
3516 crate::partition::children_of_parent(self.active_catalog(), &spec.parent_name)
3517 {
3518 if let Some(t) = self.active_catalog().get(&sib)
3519 && matches!(
3520 t.schema().partition_role,
3521 Some(PartitionRole::Default { .. })
3522 )
3523 {
3524 return Err(EngineError::Unsupported(alloc::format!(
3525 "PARTITION OF DEFAULT: parent {:?} already has a DEFAULT \
3526 partition ({sib:?})",
3527 spec.parent_name
3528 )));
3529 }
3530 }
3531 }
3532 let _ = parent_kind; // v7.37.6-B locks RANGE; future kinds key off this.
3533 let mut schema = TableSchema::new(stmt.name.clone(), parent_columns);
3534 // v7.39 (read01 round 57) — whoever runs CREATE TABLE owns it.
3535 schema.owner = Some(alloc::string::String::from(self.current_role()));
3536 schema.partition_role = Some(role);
3537 self.active_catalog_mut().create_table(schema)?;
3538 // Replay parent's CREATE INDEX templates against the new
3539 // child so every parent-declared index materialises now.
3540 for tmpl in &index_template_sources {
3541 self.execute_partition_index_template(&stmt.name, tmpl)?;
3542 }
3543 Ok(QueryResult::CommandOk {
3544 affected: 0,
3545 modified_catalog: self.catalog_change_is_committed(),
3546 })
3547 }
3548
3549 /// v7.37.6-B — parse a stored `CREATE INDEX ON parent (…)`
3550 /// template and re-execute it against `child_name`(by rewriting
3551 /// the table reference on the AST before dispatch). Used both
3552 /// at child-create time and after `CREATE INDEX ON parent` for
3553 /// existing children.
3554 fn execute_partition_index_template(
3555 &mut self,
3556 child_name: &str,
3557 template_source: &str,
3558 ) -> Result<(), EngineError> {
3559 let stmt = spg_sql::parser::parse_statement(template_source).map_err(EngineError::Parse)?;
3560 let Statement::CreateIndex(mut ci) = stmt else {
3561 return Err(EngineError::Unsupported(alloc::format!(
3562 "PARTITION index template is not CREATE INDEX: {template_source:?}"
3563 )));
3564 };
3565 ci.table = child_name.to_string();
3566 // Name suffix per child so different children don't collide
3567 // on the same `<idx_name>`. Skip when the original index has
3568 // no explicit name(SPG auto-generates).
3569 if !ci.name.is_empty() {
3570 ci.name = alloc::format!("{}__{}", ci.name, child_name);
3571 }
3572 // IF NOT EXISTS to make replay idempotent — when this is
3573 // called from the CREATE INDEX ON parent fan-out we want to
3574 // tolerate the case where a child already has the index
3575 // from an earlier CREATE INDEX run.
3576 ci.if_not_exists = true;
3577 self.exec_create_index(ci)?;
3578 Ok(())
3579 }
3580
3581 /// Build the `TableSchema` for a CREATE TABLE: column schemas with
3582 /// ENUM / DOMAIN bindings resolved, table-level + inline PRIMARY KEY
3583 /// NOT NULL marking, FK resolution (deferring to `pending_foreign_keys`
3584 /// when checks are off and the parent is absent), and uniqueness /
3585 /// CHECK constraint translation.
3586 #[allow(clippy::too_many_lines)]
3587 /// v7.39 (round 531) — copy a source table's shape into the new one.
3588 ///
3589 /// Measured on PG18: a bare `LIKE` copies names, types and NOT NULL
3590 /// and nothing else — a copied generated column becomes a plain one
3591 /// and a copied identity column loses its identity. Each INCLUDING
3592 /// adds one property back, and `INCLUDING ALL` adds them all.
3593 #[allow(clippy::too_many_lines)]
3594 fn apply_like_specs(
3595 &mut self,
3596 schema: &mut spg_storage::TableSchema,
3597 specs: &[spg_sql::ast::LikeSpec],
3598 out_indexes: &mut Vec<CreateIndexStatement>,
3599 ) -> Result<(), EngineError> {
3600 // Applied back to front so an earlier spec's insert position is
3601 // still the one it was written at.
3602 for spec in specs.iter().rev() {
3603 let src = self.active_catalog().get(&spec.source).ok_or_else(|| {
3604 EngineError::Storage(spg_storage::StorageError::TableNotFound {
3605 name: spec.source.clone(),
3606 })
3607 })?;
3608 let src_schema = src.schema();
3609 let o = spec.options;
3610 let mut copied: Vec<spg_storage::ColumnSchema> = Vec::new();
3611 for c in &src_schema.columns {
3612 let mut col = c.clone();
3613 if !o.defaults {
3614 col.default = None;
3615 col.default_text = None;
3616 col.runtime_default = None;
3617 }
3618 if !o.identity {
3619 col.auto_increment = false;
3620 col.identity_always = false;
3621 col.auto_restart = None;
3622 }
3623 if !o.generated {
3624 col.generated_stored_expr = None;
3625 }
3626 if !o.comments {
3627 // Comments live in the catalog's comment map, not on
3628 // the column, so there is nothing to clear here; the
3629 // copy below simply does not carry them.
3630 }
3631 copied.push(col);
3632 }
3633 let at = spec.at.min(schema.columns.len());
3634 for (i, col) in copied.into_iter().enumerate() {
3635 schema.columns.insert(at + i, col);
3636 }
3637 if o.constraints {
3638 for chk in &src_schema.checks {
3639 schema.checks.push(chk.clone());
3640 }
3641 }
3642 // v7.39 (round 621) — INCLUDING INDEXES copies them.
3643 //
3644 // Round 531 refused it rather than dropping them silently, and the
3645 // reason it gave was right: "a table that reports the right columns
3646 // and none of the indexes is the shape that looks fine until it is
3647 // slow". But refusing takes `INCLUDING ALL` down with it, which is
3648 // what schema tools write, so the restore stopped instead.
3649 //
3650 // The index is rebuilt from its own definition rather than copied
3651 // as a structure, so it goes through the same path a written-out
3652 // CREATE INDEX takes. PG names the copies after the new table and
3653 // lets the auto-namer resolve collisions, which is what an empty
3654 // name asks for here.
3655 if o.indexes {
3656 for idx in src.indices() {
3657 let Some(col) = src_schema.columns.get(idx.column_position) else {
3658 continue;
3659 };
3660 out_indexes.push(CreateIndexStatement {
3661 concurrently: false,
3662 name: String::new(),
3663 key_order: spg_sql::ast::IndexColumnOrder::default(),
3664 key_collation: None,
3665 table: String::new(),
3666 column: col.name.clone(),
3667 nulls_not_distinct: idx.nulls_not_distinct,
3668 method: spg_sql::ast::IndexMethod::BTree,
3669 if_not_exists: false,
3670 included_columns: Vec::new(),
3671 partial_predicate: None,
3672 expression: None,
3673 extra_columns: Vec::new(),
3674 is_unique: idx.is_unique,
3675 opclass: None,
3676 method_name: None,
3677 });
3678 }
3679 }
3680 }
3681 Ok(())
3682 }
3683
3684 fn build_create_table_schema(
3685 &mut self,
3686 table_name: &str,
3687 columns: Vec<ColumnDef>,
3688 table_constraints: &[spg_sql::ast::TableConstraint],
3689 foreign_keys: Vec<spg_sql::ast::ForeignKeyConstraint>,
3690 inline_pk_columns: &[String],
3691 ) -> Result<TableSchema, EngineError> {
3692 // v7.39 (round 711) — the inline PK's timing clause, captured
3693 // before `columns` is consumed into the schema below.
3694 let inline_pk_timing: (bool, bool) =
3695 columns
3696 .iter()
3697 .filter(|c| c.is_primary_key)
3698 .fold((false, false), |acc, c| {
3699 (
3700 acc.0 | c.constraint_deferrable,
3701 acc.1 | c.constraint_initially_deferred,
3702 )
3703 });
3704 // v7.9.19 — table-level constraints: PRIMARY KEY (a, b, ...)
3705 // and UNIQUE (a, b, ...). Each builds a BTree index on the
3706 // leading column (the existing single-column storage tier)
3707 // and registers a UniquenessConstraint on the schema for
3708 // INSERT-time enforcement of the full tuple. mailrs G1/G6.
3709 let mysql = self.backslash_escapes;
3710 let cols = columns
3711 .into_iter()
3712 .map(|c| column_def_to_schema(c, mysql))
3713 .collect::<Result<Vec<_>, _>>()?;
3714 // v7.39 (round 679) — say so when a declared collation is stored but
3715 // not applied.
3716 //
3717 // Round 670 measured three rules colliding here: refusing the DDL
3718 // breaks a customer's pg_dump restore (zero-customer-change), while
3719 // accepting it silently is what F36 records as the defect — the
3720 // declaration taken and ignored. A WARNING is the option that was
3721 // not available then: rounds 676-677 gave the name somewhere to
3722 // live, and round 678 gave `collate::is_supported` a way to say
3723 // whether this build can perform it. The restore still succeeds;
3724 // the gap stops being silent.
3725 //
3726 // SPG performs C and POSIX, so those warn about nothing.
3727 for c in &cols {
3728 let Some(name) = c.collation_name.as_deref() else {
3729 continue;
3730 };
3731 // v7.38.22 — the type has to be able to carry one.
3732 //
3733 // PostgreSQL 18.4 refuses `CREATE TABLE t (c INT COLLATE
3734 // "en_US.utf8")` with 42804; SPG took the declaration and
3735 // stored it, which is the same "taken and ignored" shape F36
3736 // was opened for, one level up — and it then travels into
3737 // every comparison the column takes part in.
3738 if !crate::collate::is_collatable(&c.ty) {
3739 return Err(crate::collate::not_collatable_error(
3740 crate::eval::pg_typeof_name_for_datatype(c.ty).unwrap_or("unknown"),
3741 ));
3742 }
3743 if crate::collate::is_supported(name)
3744 && (name.eq_ignore_ascii_case("C")
3745 || name.eq_ignore_ascii_case("POSIX")
3746 || name.eq_ignore_ascii_case("default"))
3747 {
3748 continue;
3749 }
3750 // v7.39 (round 692) — the message says what is true TODAY.
3751 // Rounds 683–692 made ORDER BY, DISTINCT, GROUP BY, joins,
3752 // min/max and window ordering follow a declared collation, so
3753 // the old wording ("orders this column by bytes") had become
3754 // the wrong warning — and a wrong warning is worse than none,
3755 // because a customer reads it and plans around it.
3756 //
3757 // What is still true is the range comparison: `BETWEEN`, `<`,
3758 // `>` go through `binop::compare`, which takes two values and
3759 // no column. That one is not wiring; it needs collation
3760 // derivation at a comparison, and `compare` is the dominant
3761 // cost of a scan, so it needs a bench with it.
3762 if !crate::collate::is_known(name) {
3763 // v7.38.18 (G2) — see the ALTER site: PG 18.4 refuses a
3764 // name that is not in its catalogue, and so does this.
3765 return Err(crate::collate::unknown_collation_error(name));
3766 }
3767 if !crate::collate::is_supported(name) {
3768 self.warning(alloc::format!(
3769 "column \"{}\" declares COLLATE \"{name}\", which this build cannot \
3770 perform; SPG records the declaration and orders this column by bytes \
3771 (the C collation)",
3772 c.name
3773 ));
3774 }
3775 }
3776 // v7.17.0 Phase 1.4 + 1.5 — classify every raw
3777 // user_type_ref (parked as user_enum_type by
3778 // column_def_to_schema) into either an enum binding or a
3779 // domain binding. For domains, also rewrite the column's
3780 // base DataType from the placeholder Text to the domain's
3781 // declared base. Unknown idents are still a hard error
3782 // here (same as Phase 1.4) so silent acceptance never
3783 // happens.
3784 let mut cols = cols;
3785 for col in cols.iter_mut() {
3786 let Some(name) = col.user_enum_type.take() else {
3787 continue;
3788 };
3789 let cat = self.active_catalog();
3790 if cat.enum_types().contains_key(&name) {
3791 col.user_enum_type = Some(name);
3792 continue;
3793 }
3794 if let Some(dom) = cat.domain_types().get(&name) {
3795 let base_type = dom.base_type;
3796 let dom_default = dom.default.clone();
3797 col.ty = base_type;
3798 col.user_domain_type = Some(name);
3799 if !dom.nullable {
3800 col.nullable = false;
3801 }
3802 // v7.39 (round 259) — two DEFAULT problems on a domain
3803 // column, both because the column was typed Text (the
3804 // parser's placeholder for an unknown type name) while its
3805 // DEFAULT was being resolved, and only re-typed here:
3806 // * a COLUMN-level default failed to coerce and the
3807 // whole CREATE TABLE errored ("type mismatch") — a
3808 // hard failure on valid SQL;
3809 // * the DOMAIN's own default was never adopted, so an
3810 // omitted column landed NULL where PG gives the
3811 // domain default (probed: 42, and a column default
3812 // of 7 overrides it).
3813 if let Some(d) = col.default.take() {
3814 col.default = Some(crate::conversions::coerce_value(
3815 d, base_type, &col.name, 0,
3816 )?);
3817 } else if let Some(src) = dom_default {
3818 let expr = spg_sql::parser::parse_expression(&src).map_err(|e| {
3819 EngineError::Storage(spg_storage::StorageError::Corrupt(alloc::format!(
3820 "domain default {src:?} failed to re-parse: {e:?}"
3821 )))
3822 })?;
3823 let empty: alloc::vec::Vec<spg_storage::ColumnSchema> = alloc::vec::Vec::new();
3824 let ctx = crate::eval::EvalContext::new(&empty, None);
3825 let row = spg_storage::Row {
3826 values: alloc::vec::Vec::new(),
3827 };
3828 let v = crate::eval::eval_expr(&expr, &row, &ctx).map_err(EngineError::Eval)?;
3829 col.default = Some(crate::conversions::coerce_value(
3830 v, base_type, &col.name, 0,
3831 )?);
3832 }
3833 continue;
3834 }
3835 // v7.37.42-T2 ζ-B — composite type bound to a column.
3836 // Stored as JSONB at the storage tier (positional + named
3837 // field access via JSONB path operators is the canonical
3838 // PG-compatible surface until Value::Composite lands).
3839 // The composite identity stays in `catalog.composite_types`
3840 // for introspection / DROP TYPE / column-type-DDL
3841 // round-trip.
3842 if cat.composite_types().contains_key(&name) {
3843 // v7.39 (read01 round 56) — the on-disk form stays JSONB, but
3844 // the column now RECORDS which composite type it holds. The
3845 // engine rehydrates the stored JSON into a Value::Composite on
3846 // read, so field access / ROW comparison / ordering / the
3847 // canonical `(2,b)` text form all work — every one of those was
3848 // already implemented on Value::Composite; the column simply
3849 // never remembered its type.
3850 col.ty = spg_storage::DataType::Jsonb;
3851 col.user_composite_type = Some(name.clone());
3852 continue;
3853 }
3854 // v7.38.19 — a PSEUDO-type is a different refusal. The name
3855 // exists; it just cannot hold a value, which PG reports as an
3856 // INVALID TABLE DEFINITION (42P16) naming the column rather
3857 // than an undefined type (42704) naming the type.
3858 if let Some(pseudo) = crate::conversions::pseudo_type(&name) {
3859 return Err(EngineError::Unsupported(alloc::format!(
3860 "column \"{}\" has pseudo-type {pseudo}",
3861 col.name
3862 )));
3863 }
3864 // v7.39 (read01 round 89) — PG's 42704 wording. The old
3865 // "column X: unknown column type Y (...)" carried SPG's own
3866 // vocabulary and fell to the generic error class; PG says
3867 // simply `type "Y" does not exist`.
3868 return Err(EngineError::Unsupported(alloc::format!(
3869 "type \"{name}\" does not exist"
3870 )));
3871 }
3872 for tc in table_constraints {
3873 if let spg_sql::ast::TableConstraint::PrimaryKey { columns, .. } = tc {
3874 for col_name in columns {
3875 if let Some(col) = cols.iter_mut().find(|c| c.name == *col_name) {
3876 col.nullable = false;
3877 }
3878 }
3879 }
3880 }
3881 // v7.6.1 — resolve every FK in the statement against the
3882 // already-known catalog. Validates: parent table exists,
3883 // parent column names exist, arity matches, parent columns
3884 // have a PK / UNIQUE index. Self-referencing FKs (parent
3885 // table == this table) resolve against the column list we
3886 // just built — they don't need the catalog yet.
3887 let mut fks: Vec<spg_storage::ForeignKeyConstraint> =
3888 Vec::with_capacity(foreign_keys.len());
3889 for fk in foreign_keys {
3890 // v7.14.0 — when SET FOREIGN_KEY_CHECKS=0 is in effect
3891 // (mysqldump preamble + bulk imports), defer FK
3892 // resolution if the parent table isn't in the catalog
3893 // yet. The FK is queued and resolved when checks flip
3894 // back on. Self-references stay in-band (the parent is
3895 // the same as the child we're building).
3896 let needs_parent = !fk.parent_table.eq_ignore_ascii_case(table_name);
3897 if !self.foreign_key_checks
3898 && needs_parent
3899 && self.active_catalog().get(&fk.parent_table).is_none()
3900 {
3901 self.pending_foreign_keys.push((table_name.to_string(), fk));
3902 continue;
3903 }
3904 fks.push(resolve_foreign_key(
3905 table_name,
3906 &cols,
3907 fk,
3908 self.active_catalog(),
3909 )?);
3910 }
3911 let mut schema = TableSchema::new(table_name.to_string(), cols);
3912 // v7.39 (read01 round 57) — whoever runs CREATE TABLE owns it (PG
3913 // `pg_class.relowner`); the owner holds every privilege implicitly.
3914 schema.owner = Some(alloc::string::String::from(self.current_role()));
3915 schema.foreign_keys = fks;
3916 // v7.9.19 — translate AST table_constraints to storage
3917 // UniquenessConstraints (column name → position) so the
3918 // INSERT enforcement helper sees positions directly.
3919 let mut uc_storage: Vec<spg_storage::UniquenessConstraint> = Vec::new();
3920 // v7.39 (read01 round 48) — the AST has carried `name` all along;
3921 // the schema now keeps it instead of dropping it on the floor.
3922 let mut check_exprs: Vec<spg_storage::CheckConstraint> = Vec::new();
3923 // v7.39 (round 210) — EXCLUDE constraints translate column names to
3924 // positions and synthesise PG's `<table>_<leading-col>_excl` name
3925 // when the user left it unnamed.
3926 let mut excl_storage: Vec<spg_storage::ExclusionConstraint> = Vec::new();
3927 for tc in table_constraints {
3928 let (is_pk, names, nnd, con_name, timing) = match tc {
3929 spg_sql::ast::TableConstraint::PrimaryKey {
3930 name,
3931 columns,
3932 deferrable,
3933 initially_deferred,
3934 } => (
3935 true,
3936 columns.clone(),
3937 false,
3938 name.clone(),
3939 (*deferrable, *initially_deferred),
3940 ),
3941 spg_sql::ast::TableConstraint::Unique {
3942 name,
3943 columns,
3944 nulls_not_distinct,
3945 deferrable,
3946 initially_deferred,
3947 } => (
3948 false,
3949 columns.clone(),
3950 *nulls_not_distinct,
3951 name.clone(),
3952 (*deferrable, *initially_deferred),
3953 ),
3954 spg_sql::ast::TableConstraint::Check { name, expr, .. } => {
3955 // v7.13.0 — collect CHECK predicate sources;
3956 // they get attached to the schema below.
3957 // A CREATE TABLE CHECK has no rows to grandfather; the
3958 // parser refuses NOT VALID there, as PG does, so every
3959 // one of these is validated and none needs a mark.
3960 check_exprs.push(spg_storage::CheckConstraint {
3961 name: name.clone(),
3962 expr: alloc::format!("{expr}"),
3963 validated: true,
3964 });
3965 continue;
3966 }
3967 spg_sql::ast::TableConstraint::Exclude {
3968 name,
3969 method,
3970 elements,
3971 } => {
3972 let mut els = Vec::with_capacity(elements.len());
3973 for (col, op) in elements {
3974 let pos = schema
3975 .columns
3976 .iter()
3977 .position(|c| c.name == *col)
3978 .ok_or_else(|| {
3979 EngineError::Unsupported(alloc::format!(
3980 "EXCLUDE constraint references unknown column {col:?}"
3981 ))
3982 })?;
3983 els.push((pos, op.clone()));
3984 }
3985 // v7.39 (round 211) — PG auto-names an unnamed EXCLUDE
3986 // `<table>_<col…>_excl`, joining ALL element columns
3987 // (e.g. `book_room_during_excl`), not just the leading one.
3988 let cols_joined = elements
3989 .iter()
3990 .map(|(c, _)| c.clone())
3991 .collect::<Vec<_>>()
3992 .join("_");
3993 let con_name = name
3994 .clone()
3995 .unwrap_or_else(|| alloc::format!("{table_name}_{cols_joined}_excl"));
3996 excl_storage.push(spg_storage::ExclusionConstraint {
3997 name: con_name,
3998 method: method.clone(),
3999 elements: els,
4000 });
4001 continue;
4002 }
4003 // v7.15.0 — plain `KEY (cols)` from MySQL inline
4004 // is NOT a uniqueness constraint; skip the UC
4005 // build path entirely. The BTree index lands in
4006 // the post-create loop below alongside the PK/UQ
4007 // implicit indexes.
4008 spg_sql::ast::TableConstraint::Index { .. } => continue,
4009 // v7.17.0 Phase 2.2 — MySQL FULLTEXT KEY is not
4010 // a uniqueness constraint either; its GIN gets
4011 // built in the post-create loop below.
4012 spg_sql::ast::TableConstraint::FulltextIndex { .. } => continue,
4013 };
4014 let mut positions = Vec::with_capacity(names.len());
4015 for n in &names {
4016 let pos = schema
4017 .columns
4018 .iter()
4019 .position(|c| c.name == *n)
4020 .ok_or_else(|| {
4021 EngineError::Unsupported(alloc::format!(
4022 "table constraint references unknown column {n:?}"
4023 ))
4024 })?;
4025 positions.push(pos);
4026 }
4027 uc_storage.push(spg_storage::UniquenessConstraint {
4028 is_primary_key: is_pk,
4029 columns: positions,
4030 nulls_not_distinct: nnd,
4031 name: con_name,
4032 deferrable: timing.0,
4033 initially_deferred: timing.1,
4034 });
4035 }
4036 // v7.24 (round-16 collateral) — inline `PRIMARY KEY` column
4037 // constraints used to build only the implicit BTree index;
4038 // uniqueness was NEVER registered, so duplicate keys were
4039 // silently accepted (table-level PRIMARY KEY did enforce).
4040 // Register the same UniquenessConstraint the table-level
4041 // form gets, unless one already covers the column set.
4042 if !inline_pk_columns.is_empty() {
4043 let mut positions = Vec::with_capacity(inline_pk_columns.len());
4044 for n in inline_pk_columns {
4045 if let Some(pos) = schema.columns.iter().position(|c| c.name == *n) {
4046 positions.push(pos);
4047 }
4048 }
4049 if !uc_storage
4050 .iter()
4051 .any(|uc| uc.is_primary_key || uc.columns == positions)
4052 {
4053 uc_storage.push(spg_storage::UniquenessConstraint {
4054 is_primary_key: true,
4055 columns: positions,
4056 nulls_not_distinct: false,
4057 deferrable: inline_pk_timing.0,
4058 initially_deferred: inline_pk_timing.1,
4059 // Inline `col INT PRIMARY KEY` carries no name.
4060 name: None,
4061 });
4062 }
4063 }
4064 schema.uniqueness_constraints = uc_storage.clone();
4065 schema.checks = check_exprs;
4066 schema.exclusion_constraints = excl_storage;
4067 Ok(schema)
4068 }
4069
4070 /// Install the implicit BTree / fulltext-GIN indexes a freshly-created
4071 /// table needs: one per inline PRIMARY KEY column, plus one per
4072 /// v7.39 (round 215) — build a range-overlap index for every EXCLUDE
4073 /// constraint whose `&&` element sits on an integer-keyable range column
4074 /// (int4/int8/date/ts/tstz range). Turns the O(n) enforcement scan into an
4075 /// O(log n) predecessor+successor probe. Idempotent — safe to call again
4076 /// after ALTER or on catalog load. Constraints the index can't cover
4077 /// (numrange, `@>`/`<@`/geometry operators) simply get no index and keep
4078 /// the correct O(n) scan.
4079 pub(crate) fn install_excl_range_indexes(&mut self, table_name: &str) {
4080 let Some(table) = self.active_catalog_mut().get_mut(table_name) else {
4081 return;
4082 };
4083 let cols: Vec<usize> = table
4084 .schema()
4085 .exclusion_constraints
4086 .iter()
4087 .filter_map(|ex| excl_index_column(table.schema(), ex))
4088 .collect();
4089 for c in cols {
4090 table.ensure_excl_range_index(c);
4091 }
4092 }
4093
4094 /// table-level PRIMARY KEY / UNIQUE / KEY / FULLTEXT constraint.
4095 fn install_implicit_indexes(
4096 &mut self,
4097 table_name: &str,
4098 inline_pk_columns: &[String],
4099 table_constraints: &[spg_sql::ast::TableConstraint],
4100 ) -> Result<(), EngineError> {
4101 // v7.9.13 — implicit BTree per inline PK column +
4102 // v7.9.19 — implicit BTree on the leading column of every
4103 // table-level PRIMARY KEY / UNIQUE constraint.
4104 let table = self
4105 .active_catalog_mut()
4106 .get_mut(table_name)
4107 .expect("just created");
4108 let mut inline_lead_added: Option<alloc::string::String> = None;
4109 for (i, col_name) in inline_pk_columns.iter().enumerate() {
4110 let idx_name = if inline_pk_columns.len() == 1 {
4111 alloc::format!("{table_name}_pkey")
4112 } else {
4113 alloc::format!("{table_name}_pkey_{i}")
4114 };
4115 if let Err(e) = table.add_index(idx_name.clone(), col_name) {
4116 return Err(EngineError::Storage(e));
4117 }
4118 if i == 0 {
4119 inline_lead_added = Some(idx_name);
4120 }
4121 }
4122 // v7.38.1 (L12) — a multi-column PRIMARY KEY's leading index
4123 // becomes a REAL composite B-tree over the whole key, exactly
4124 // like PG's one `t_pkey` index. The k≥1 per-column B-trees
4125 // stay: they serve probes on non-leading columns, which a
4126 // composite cannot (a prefix must start at the front).
4127 if inline_pk_columns.len() >= 2
4128 && let Some(lead_name) = inline_lead_added
4129 {
4130 let mut extras: alloc::vec::Vec<usize> = alloc::vec::Vec::new();
4131 for col_name in &inline_pk_columns[1..] {
4132 if let Some(p) = table
4133 .schema()
4134 .columns
4135 .iter()
4136 .position(|c| c.name.eq_ignore_ascii_case(col_name))
4137 {
4138 extras.push(p);
4139 }
4140 }
4141 if extras.len() == inline_pk_columns.len() - 1 {
4142 if let Some(idx) = table.indices_mut().iter_mut().find(|i| i.name == lead_name) {
4143 idx.extra_column_positions = extras;
4144 }
4145 table
4146 .convert_index_to_multi(&lead_name)
4147 .map_err(EngineError::Storage)?;
4148 }
4149 }
4150 for (i, tc) in table_constraints.iter().enumerate() {
4151 // v7.17.0 Phase 2.2 — FULLTEXT KEY lands a real
4152 // tsvector-GIN per declared column instead of the
4153 // BTree the PK / UQ / KEY paths build. Branch early
4154 // so the BTree loop never sees the FULLTEXT shape.
4155 if let spg_sql::ast::TableConstraint::FulltextIndex { name, columns } = tc {
4156 for (k, col) in columns.iter().enumerate() {
4157 let already = table.indices().iter().any(|idx| {
4158 matches!(idx.kind, spg_storage::IndexKind::GinFulltext(_))
4159 && table.schema().columns[idx.column_position].name == *col
4160 });
4161 if already {
4162 continue;
4163 }
4164 let idx_name = match (name.as_ref(), columns.len(), k) {
4165 (Some(n), 1, _) => n.clone(),
4166 (Some(n), _, k) => alloc::format!("{n}_{k}"),
4167 (None, _, _) => {
4168 alloc::format!("{table_name}_{col}_ftidx")
4169 }
4170 };
4171 if let Err(e) = table.add_gin_fulltext_index(idx_name, col) {
4172 return Err(EngineError::Storage(e));
4173 }
4174 }
4175 continue;
4176 }
4177 // v7.15.0 — plain KEY/INDEX rides this same loop so
4178 // the implicit BTree gets built. It carries its own
4179 // user-supplied name; PK/UQ still synthesise.
4180 let (suffix, names, explicit_name): (&str, &Vec<String>, Option<&String>) = match tc {
4181 spg_sql::ast::TableConstraint::PrimaryKey { columns, .. } => {
4182 ("pkey", columns, None)
4183 }
4184 spg_sql::ast::TableConstraint::Unique { columns, .. } => ("key", columns, None),
4185 spg_sql::ast::TableConstraint::Index { name, columns } => {
4186 ("idx", columns, name.as_ref())
4187 }
4188 spg_sql::ast::TableConstraint::Check { .. } => continue,
4189 // Handled by the early-branch above.
4190 spg_sql::ast::TableConstraint::FulltextIndex { .. } => continue,
4191 // v7.39 (round 210) — EXCLUDE builds no implicit index in
4192 // Phase 0 (O(n)-scan enforcement); a real GiST index is a
4193 // later perf phase.
4194 spg_sql::ast::TableConstraint::Exclude { .. } => continue,
4195 };
4196 // 7.38.1 S7 (tpcc decomposition finding) — a composite
4197 // PRIMARY KEY / UNIQUE built a BTree on the LEADING column
4198 // only, and TPC-C's keys all lead with the warehouse id:
4199 // at scale=1 every "index scan" selected the WHOLE table
4200 // (customer point lookup measured 19.9 ms over 30k rows).
4201 // SPG's BTree keys one column, so until composite-keyed
4202 // BTrees land (ledgered), the constraint builds one BTree
4203 // PER KEY COLUMN — the planner can then pick the selective
4204 // one (c_id: 10 rows) instead of the degenerate leading
4205 // one (c_w_id: all 30k). Mirrors what the inline-PK loop
4206 // above has always done.
4207 let mut lead_added: Option<alloc::string::String> = None;
4208 for (k, col_name) in names.iter().enumerate() {
4209 let already = table.indices().iter().any(|idx| {
4210 matches!(idx.kind, spg_storage::IndexKind::BTree(_))
4211 && table.schema().columns[idx.column_position].name == *col_name
4212 });
4213 if already {
4214 continue;
4215 }
4216 let idx_name = if let (Some(n), 0) = (explicit_name, k) {
4217 n.clone()
4218 } else if names.len() == 1 {
4219 alloc::format!("{table_name}_{col_name}_{suffix}")
4220 } else {
4221 alloc::format!("{table_name}_{col_name}_{suffix}_{i}_{k}")
4222 };
4223 if let Err(e) = table.add_index(idx_name.clone(), col_name) {
4224 return Err(EngineError::Storage(e));
4225 }
4226 if k == 0 {
4227 lead_added = Some(idx_name);
4228 }
4229 }
4230 // v7.38.1 (L12) — same upgrade as the inline-PK path: the
4231 // leading index of a composite PK / UNIQUE / KEY becomes a
4232 // real multi-column B-tree over the whole declared tuple.
4233 if names.len() >= 2
4234 && let Some(lead_name) = lead_added
4235 {
4236 let mut extras: alloc::vec::Vec<usize> = alloc::vec::Vec::new();
4237 for col_name in &names[1..] {
4238 if let Some(p) = table
4239 .schema()
4240 .columns
4241 .iter()
4242 .position(|c| c.name.eq_ignore_ascii_case(col_name))
4243 {
4244 extras.push(p);
4245 }
4246 }
4247 if extras.len() == names.len() - 1 {
4248 if let Some(idx) = table.indices_mut().iter_mut().find(|i| i.name == lead_name)
4249 {
4250 idx.extra_column_positions = extras;
4251 }
4252 table
4253 .convert_index_to_multi(&lead_name)
4254 .map_err(EngineError::Storage)?;
4255 }
4256 }
4257 }
4258 Ok(())
4259 }
4260}
4261
4262impl Engine {
4263 /// v7.39 (RLS) — `CREATE POLICY`. Stores the policy on the table schema
4264 /// (independent of the RLS enable flag). Enforcement is Phase 1.
4265 pub(crate) fn exec_create_policy(
4266 &mut self,
4267 s: spg_sql::ast::CreatePolicyStatement,
4268 ) -> Result<QueryResult, EngineError> {
4269 let cmd = policy_cmd_to_storage(s.cmd);
4270 let using_expr = s.using.as_ref().map(deparse_policy_qual);
4271 let with_check_expr = s.with_check.as_ref().map(deparse_policy_qual);
4272 let table = self.active_catalog_mut().get_mut(&s.table).ok_or_else(|| {
4273 EngineError::Storage(StorageError::TableNotFound {
4274 name: s.table.clone(),
4275 })
4276 })?;
4277 if table.schema().policies.iter().any(|p| p.name == s.name) {
4278 return Err(EngineError::Unsupported(alloc::format!(
4279 "policy {:?} for table {:?} already exists",
4280 s.name,
4281 s.table
4282 )));
4283 }
4284 table.schema_mut().policies.push(spg_storage::PolicyDef {
4285 name: s.name,
4286 cmd,
4287 permissive: s.permissive,
4288 roles: s.roles,
4289 using_expr,
4290 with_check_expr,
4291 });
4292 Ok(QueryResult::CommandOk {
4293 affected: 0,
4294 modified_catalog: self.catalog_change_is_committed(),
4295 })
4296 }
4297
4298 /// v7.39 (RLS) — `ALTER POLICY … { RENAME TO | [TO roles] [USING] [WITH
4299 /// CHECK] }`.
4300 pub(crate) fn exec_alter_policy(
4301 &mut self,
4302 s: spg_sql::ast::AlterPolicyStatement,
4303 ) -> Result<QueryResult, EngineError> {
4304 let new_using = s.using.as_ref().map(deparse_policy_qual);
4305 let new_check = s.with_check.as_ref().map(deparse_policy_qual);
4306 let table = self.active_catalog_mut().get_mut(&s.table).ok_or_else(|| {
4307 EngineError::Storage(StorageError::TableNotFound {
4308 name: s.table.clone(),
4309 })
4310 })?;
4311 // Duplicate-name pre-check for RENAME (before taking the mutable slot).
4312 if let Some(new) = &s.rename_to
4313 && table.schema().policies.iter().any(|p| &p.name == new)
4314 {
4315 return Err(EngineError::Unsupported(alloc::format!(
4316 "policy {new:?} for table {:?} already exists",
4317 s.table
4318 )));
4319 }
4320 let pol = table
4321 .schema_mut()
4322 .policies
4323 .iter_mut()
4324 .find(|p| p.name == s.name)
4325 .ok_or_else(|| {
4326 EngineError::Unsupported(alloc::format!(
4327 "policy {:?} for table {:?} does not exist",
4328 s.name,
4329 s.table
4330 ))
4331 })?;
4332 if let Some(new) = s.rename_to {
4333 pol.name = new;
4334 } else {
4335 if let Some(roles) = s.roles {
4336 pol.roles = roles;
4337 }
4338 if new_using.is_some() {
4339 pol.using_expr = new_using;
4340 }
4341 if new_check.is_some() {
4342 pol.with_check_expr = new_check;
4343 }
4344 }
4345 Ok(QueryResult::CommandOk {
4346 affected: 0,
4347 modified_catalog: self.catalog_change_is_committed(),
4348 })
4349 }
4350
4351 /// v7.39 (RLS) — `DROP POLICY [IF EXISTS] name ON table`.
4352 pub(crate) fn exec_drop_policy(
4353 &mut self,
4354 s: spg_sql::ast::DropPolicyStatement,
4355 ) -> Result<QueryResult, EngineError> {
4356 let table = match self.active_catalog_mut().get_mut(&s.table) {
4357 Some(t) => t,
4358 None if s.if_exists => {
4359 return Ok(QueryResult::CommandOk {
4360 affected: 0,
4361 modified_catalog: self.catalog_change_is_committed(),
4362 });
4363 }
4364 None => {
4365 return Err(EngineError::Storage(StorageError::TableNotFound {
4366 name: s.table.clone(),
4367 }));
4368 }
4369 };
4370 let before = table.schema().policies.len();
4371 table.schema_mut().policies.retain(|p| p.name != s.name);
4372 if table.schema().policies.len() == before && !s.if_exists {
4373 return Err(EngineError::Unsupported(alloc::format!(
4374 "policy {:?} for table {:?} does not exist",
4375 s.name,
4376 s.table
4377 )));
4378 }
4379 Ok(QueryResult::CommandOk {
4380 affected: 0,
4381 modified_catalog: self.catalog_change_is_committed(),
4382 })
4383 }
4384
4385 pub(crate) fn exec_create_user(
4386 &mut self,
4387 s: &CreateUserStatement,
4388 ) -> Result<QueryResult, EngineError> {
4389 // v7.37 (round 828) — no transaction guard any more. PG treats
4390 // roles as ordinary catalog rows: BEGIN; CREATE ROLE r;
4391 // ROLLBACK leaves nothing, COMMIT publishes (measured against
4392 // PG18: count 0 after rollback, 1 after commit). The per-slot
4393 // guard that stood here since round 794 refused the statement
4394 // outright, which no drop-in client expects. Writes now go
4395 // through the TX role shadow (`role_ddl_users_mut`), so both
4396 // halves of PG's behaviour hold.
4397 let role = users::Role::parse(&s.role).ok_or_else(|| {
4398 EngineError::Unsupported(alloc::format!("invalid role: {:?}", s.role))
4399 })?;
4400 // Prefer the host-injected RNG. Falls back to a deterministic
4401 // salt derived from the username only when no RNG is wired —
4402 // acceptable for tests; the server always installs one.
4403 let salt = self.salt_fn.map_or_else(
4404 || {
4405 let mut s_bytes = [0u8; 16];
4406 let digest = spg_crypto::hash(s.name.as_bytes());
4407 s_bytes.copy_from_slice(&digest[..16]);
4408 s_bytes
4409 },
4410 |f| f(),
4411 );
4412 // v7.39 (TLS/SCRAM) — route through `create_user`, not `users.create`,
4413 // so the SQL path also derives the SCRAM-SHA-256 verifier. Without
4414 // this, a `CREATE USER … PASSWORD` user had `scram = None` and silently
4415 // fell back to cleartext pgwire auth.
4416 if self.effective_users().contains(&s.name) {
4417 return Err(EngineError::Unsupported(alloc::format!(
4418 "role \"{}\" already exists",
4419 s.name
4420 )));
4421 }
4422 // v7.39 (read01 round 58) — a bare `CREATE ROLE devs` carries no
4423 // password. It cannot log in (NOLOGIN is its default), so it needs no
4424 // credential; give it an unguessable one derived from its own salt so
4425 // no code path ever sees an empty-password record.
4426 let password = if s.password.is_empty() {
4427 let digest = spg_crypto::hash(&salt);
4428 hex_of(&digest[..16])
4429 } else {
4430 s.password.clone()
4431 };
4432 self.create_user(&s.name, &password, role, salt)
4433 .map_err(|e| EngineError::Unsupported(alloc::format!("CREATE USER: {e}")))?;
4434 // PG's attribute defaults: LOGIN iff spelled CREATE USER, INHERIT, and
4435 // NOSUPERUSER — but SPG's own coarse `ROLE 'admin'` still means
4436 // superuser, which is how the existing admin account keeps working.
4437 // v7.39 (round 548) — remember whether a password was DECLARED,
4438 // not just whether the record ended up with one: the branch
4439 // above substitutes an unguessable credential for a bare
4440 // CREATE ROLE, and the wire's open-vs-authenticated decision
4441 // has to tell the two apart.
4442 self.role_ddl_users_mut()
4443 .set_password_declared(&s.name, !s.password.is_empty());
4444 self.role_ddl_users_mut().set_attributes(
4445 &s.name,
4446 s.login.unwrap_or(s.is_user),
4447 s.inherit.unwrap_or(true),
4448 s.superuser
4449 .unwrap_or_else(|| matches!(role, users::Role::Admin)),
4450 );
4451 Ok(QueryResult::CommandOk {
4452 affected: 1,
4453 modified_catalog: true,
4454 })
4455 }
4456
4457 pub(crate) fn exec_drop_user(
4458 &mut self,
4459 name: &str,
4460 if_exists: bool,
4461 ) -> Result<QueryResult, EngineError> {
4462 // v7.37 (round 828) — transactional now; see exec_create_user.
4463 // v7.39 (read01 round 58) — PG's IF EXISTS skip NOTICE.
4464 if if_exists && !self.effective_users().contains(name) {
4465 self.notice(alloc::format!("role {name:?} does not exist, skipping"));
4466 return Ok(QueryResult::CommandOk {
4467 affected: 0,
4468 modified_catalog: false,
4469 });
4470 }
4471 // v7.39 (read01 round 58) — PG refuses to drop a role that still holds
4472 // privileges: they would become dangling aclitems. It names the tables.
4473 let depends: alloc::vec::Vec<alloc::string::String> = self
4474 .active_catalog()
4475 .table_names()
4476 .into_iter()
4477 .filter(|t| {
4478 self.active_catalog().get(t).is_some_and(|tb| {
4479 tb.schema()
4480 .acl
4481 .iter()
4482 .any(|a| a.grantee.eq_ignore_ascii_case(name))
4483 || tb
4484 .schema()
4485 .owner
4486 .as_deref()
4487 .is_some_and(|o| o.eq_ignore_ascii_case(name))
4488 })
4489 })
4490 .collect();
4491 if !depends.is_empty() {
4492 return Err(EngineError::Unsupported(alloc::format!(
4493 "role \"{name}\" cannot be dropped because some objects depend on it DETAIL: privileges for table {}",
4494 depends.join(", ")
4495 )));
4496 }
4497 self.role_ddl_users_mut()
4498 .drop(name)
4499 .map_err(|e| EngineError::Unsupported(alloc::format!("DROP USER: {e}")))?;
4500 Ok(QueryResult::CommandOk {
4501 affected: 1,
4502 modified_catalog: true,
4503 })
4504 }
4505
4506 /// v7.12.4 — `CREATE [OR REPLACE] FUNCTION`. Stores the
4507 /// function metadata in the catalog. PL/pgSQL bodies are
4508 /// already parsed by the SQL parser; we re-canonicalise the
4509 /// body to source text for storage (the executor re-parses
4510 /// it at trigger fire time — see the trigger fire path).
4511 pub(crate) fn exec_create_function(
4512 &mut self,
4513 s: spg_sql::ast::CreateFunctionStatement,
4514 ) -> Result<QueryResult, EngineError> {
4515 let args_repr = render_function_args(&s.args);
4516 let returns = match &s.returns {
4517 spg_sql::ast::FunctionReturn::Trigger => alloc::string::String::from("TRIGGER"),
4518 spg_sql::ast::FunctionReturn::Void => alloc::string::String::from("VOID"),
4519 spg_sql::ast::FunctionReturn::Type(t) => alloc::format!("{t}"),
4520 spg_sql::ast::FunctionReturn::Other(s) => s.clone(),
4521 };
4522 let body_text = match &s.body {
4523 spg_sql::ast::FunctionBody::PlPgSql(b) => alloc::format!("{b}"),
4524 spg_sql::ast::FunctionBody::Raw(s) => s.clone(),
4525 };
4526 let def = spg_storage::FunctionDef {
4527 name: s.name.clone(),
4528 args_repr,
4529 returns,
4530 language: s.language.clone(),
4531 body: body_text,
4532 // v7.39 (read01 round 61) — whoever runs CREATE FUNCTION owns it.
4533 owner: Some(alloc::string::String::from(self.current_role())),
4534 acl: alloc::vec::Vec::new(),
4535 // v7.39 (round 322, V46) — the declared attribute clauses.
4536 volatility: match s.attrs.volatility {
4537 spg_sql::ast::FunctionVolatility::Immutable => spg_storage::FN_IMMUTABLE,
4538 spg_sql::ast::FunctionVolatility::Stable => spg_storage::FN_STABLE,
4539 spg_sql::ast::FunctionVolatility::Volatile => spg_storage::FN_VOLATILE,
4540 },
4541 strict: s.attrs.strict,
4542 security_definer: s.attrs.security_definer,
4543 leakproof: s.attrs.leakproof,
4544 parallel: match s.attrs.parallel {
4545 spg_sql::ast::FunctionParallel::Safe => spg_storage::FN_PARALLEL_SAFE,
4546 spg_sql::ast::FunctionParallel::Restricted => spg_storage::FN_PARALLEL_RESTRICTED,
4547 spg_sql::ast::FunctionParallel::Unsafe => spg_storage::FN_PARALLEL_UNSAFE,
4548 },
4549 cost: s.attrs.cost,
4550 rows: s.attrs.rows,
4551 };
4552 self.active_catalog_mut()
4553 .create_function(def, s.or_replace)
4554 .map_err(EngineError::Storage)?;
4555 Ok(QueryResult::CommandOk {
4556 affected: 0,
4557 modified_catalog: true,
4558 })
4559 }
4560
4561 /// v7.12.4 — `CREATE [OR REPLACE] TRIGGER`. The referenced
4562 /// function must already exist in the catalog (forward
4563 /// references defer to a later release). Persists the
4564 /// trigger metadata for the row-write hooks below to consult.
4565 pub(crate) fn exec_create_trigger(
4566 &mut self,
4567 s: spg_sql::ast::CreateTriggerStatement,
4568 ) -> Result<QueryResult, EngineError> {
4569 let timing = match s.timing {
4570 spg_sql::ast::TriggerTiming::Before => "BEFORE",
4571 spg_sql::ast::TriggerTiming::After => "AFTER",
4572 spg_sql::ast::TriggerTiming::InsteadOf => "INSTEAD OF",
4573 };
4574 let events: Vec<alloc::string::String> = s
4575 .events
4576 .iter()
4577 .map(|e| match e {
4578 spg_sql::ast::TriggerEvent::Insert => alloc::string::String::from("INSERT"),
4579 spg_sql::ast::TriggerEvent::Update => alloc::string::String::from("UPDATE"),
4580 spg_sql::ast::TriggerEvent::Delete => alloc::string::String::from("DELETE"),
4581 spg_sql::ast::TriggerEvent::Truncate => alloc::string::String::from("TRUNCATE"),
4582 })
4583 .collect();
4584 let for_each = match s.for_each {
4585 spg_sql::ast::TriggerForEach::Row => "ROW",
4586 spg_sql::ast::TriggerForEach::Statement => "STATEMENT",
4587 };
4588 // v7.39 (round 137) — INSTEAD OF triggers may only target views; BEFORE /
4589 // AFTER row triggers may only target base tables. PG's exact wording.
4590 let target_is_view = self.active_catalog().has_view(&s.table);
4591 if matches!(s.timing, spg_sql::ast::TriggerTiming::InsteadOf) {
4592 if !target_is_view {
4593 return Err(EngineError::Unsupported(alloc::format!(
4594 "\"{}\" is a table DETAIL: Tables cannot have INSTEAD OF triggers.",
4595 s.table
4596 )));
4597 }
4598 // v7.39 (round 137) — PG: INSTEAD OF triggers must be row-level.
4599 if matches!(s.for_each, spg_sql::ast::TriggerForEach::Statement) {
4600 return Err(EngineError::Unsupported(
4601 "INSTEAD OF triggers must be FOR EACH ROW".into(),
4602 ));
4603 }
4604 // v7.39 (round 138) — PG: INSTEAD OF triggers cannot have WHEN.
4605 if s.when_condition.is_some() {
4606 return Err(EngineError::Unsupported(
4607 "INSTEAD OF triggers cannot have WHEN conditions".into(),
4608 ));
4609 }
4610 } else if target_is_view {
4611 return Err(EngineError::Unsupported(alloc::format!(
4612 "\"{}\" is a view DETAIL: Views cannot have row-level BEFORE or AFTER triggers.",
4613 s.table
4614 )));
4615 }
4616 let def = spg_storage::TriggerDef {
4617 name: s.name.clone(),
4618 table: s.table.clone(),
4619 timing: alloc::string::String::from(timing),
4620 events,
4621 for_each: alloc::string::String::from(for_each),
4622 function: s.function.clone(),
4623 update_columns: s.update_columns.clone(),
4624 // v7.16.1 — every trigger is born enabled. Toggled
4625 // by ALTER TABLE … { ENABLE | DISABLE } TRIGGER.
4626 enabled: true,
4627 // v7.39 (round 138) — deparse the WHEN predicate to text; re-parsed
4628 // at fire time. Empty when there is no WHEN.
4629 when_condition: s
4630 .when_condition
4631 .as_ref()
4632 .map(|e| e.to_string())
4633 .unwrap_or_default(),
4634 };
4635 self.active_catalog_mut()
4636 .create_trigger(def, s.or_replace)
4637 .map_err(EngineError::Storage)?;
4638 Ok(QueryResult::CommandOk {
4639 affected: 0,
4640 modified_catalog: true,
4641 })
4642 }
4643
4644 pub(crate) fn exec_drop_trigger(
4645 &mut self,
4646 name: &str,
4647 table: &str,
4648 if_exists: bool,
4649 ) -> Result<QueryResult, EngineError> {
4650 let removed = self.active_catalog_mut().drop_trigger(name, table);
4651 if !removed && !if_exists {
4652 // v7.39 (round 700) — two fixes in one line, and they are the
4653 // same fix round 698 made for sequences.
4654 //
4655 // `StorageError::Corrupt` prefixes its Display with `corrupt
4656 // on-disk format: `, so a misspelt trigger name reported a
4657 // CORRUPTION to the client. And the wording was SPG's own
4658 // (`on "t"`); PG18 says `for table "t"`, which is what the
4659 // wire's classifier and any tool matching on it expect.
4660 //
4661 // Round 698 said its sweep found nothing else. It swept the
4662 // sequence / view / type shapes and not the trigger one — the
4663 // sweep was narrower than the sentence claimed.
4664 return Err(EngineError::Unsupported(alloc::format!(
4665 "trigger \"{name}\" for table \"{table}\" does not exist"
4666 )));
4667 }
4668 // v7.39 (round 282) — PG raises a NOTICE when IF EXISTS skips, and
4669 // it distinguishes the two ways a DROP TRIGGER can find nothing:
4670 // the RELATION is missing (so the trigger could not be looked up
4671 // at all), or the relation is there and the trigger is not.
4672 if !removed && if_exists {
4673 if self.active_catalog().get(table).is_none() {
4674 self.notice(alloc::format!(
4675 "relation \"{table}\" does not exist, skipping"
4676 ));
4677 } else {
4678 self.notice(alloc::format!(
4679 "trigger \"{name}\" for relation \"{table}\" does not exist, skipping"
4680 ));
4681 }
4682 }
4683 Ok(QueryResult::CommandOk {
4684 affected: usize::from(removed),
4685 modified_catalog: removed,
4686 })
4687 }
4688
4689 // v7.39 (round 139) — CREATE RULE (query-rewrite rules). Phase 1 supports
4690 // ON {INSERT|UPDATE|DELETE} TO table [WHERE cond] DO [ALSO|INSTEAD]
4691 // {NOTHING | command}. ON SELECT rules are PG's view mechanism; use CREATE
4692 // VIEW instead. The WHEN/commands are deparsed to text and re-parsed at DML
4693 // rewrite time, mirroring how triggers carry their WHEN predicate.
4694 pub(crate) fn exec_create_rule(
4695 &mut self,
4696 s: spg_sql::ast::CreateRuleStatement,
4697 ) -> Result<QueryResult, EngineError> {
4698 if s.event.eq_ignore_ascii_case("SELECT") {
4699 return Err(EngineError::Unsupported(
4700 "ON SELECT rules are not supported; use CREATE VIEW".into(),
4701 ));
4702 }
4703 // v7.39 (round 333, V59) — the conditional `DO INSTEAD <command>`
4704 // form is supported now: the rows the WHERE holds for take the
4705 // command, the rest run the original operation. It used to be
4706 // refused up front, which made a rule PG accepts a hard error.
4707 // Measured on PG 18.4: with `ON UPDATE TO r WHERE old.id > 1 DO
4708 // INSTEAD INSERT INTO log …`, `UPDATE r SET v = 999` answers
4709 // `UPDATE 1` — only the non-matching row is updated — and the
4710 // matching rows produce log entries instead.
4711 // Rules may target base tables (and, in PG, views); require the relation
4712 // to exist so a typo does not silently create a dead rule.
4713 let known = self.active_catalog().table_names().contains(&s.table)
4714 || self.active_catalog().has_view(&s.table);
4715 if !known {
4716 return Err(EngineError::Unsupported(alloc::format!(
4717 "relation \"{}\" does not exist",
4718 s.table
4719 )));
4720 }
4721 let def = spg_storage::RuleDef {
4722 name: s.name.clone(),
4723 table: s.table.clone(),
4724 event: s.event.to_ascii_uppercase(),
4725 instead: s.instead,
4726 when_condition: s
4727 .when_condition
4728 .as_ref()
4729 .map(|e| e.to_string())
4730 .unwrap_or_default(),
4731 commands: s.commands.iter().map(|c| c.to_string()).collect(),
4732 };
4733 self.active_catalog_mut()
4734 .create_rule(def, s.or_replace)
4735 .map_err(EngineError::Storage)?;
4736 Ok(QueryResult::CommandOk {
4737 affected: 0,
4738 modified_catalog: true,
4739 })
4740 }
4741
4742 pub(crate) fn exec_drop_rule(
4743 &mut self,
4744 name: &str,
4745 table: &str,
4746 if_exists: bool,
4747 ) -> Result<QueryResult, EngineError> {
4748 let removed = self.active_catalog_mut().drop_rule(name, table);
4749 if !removed && !if_exists {
4750 // v7.39 (round 708) — PG's order and words, both measured: the
4751 // RELATION resolves first (`relation "t" does not exist`), and
4752 // only then the rule, spelled `for relation`, not `on`. The old
4753 // message also rode `StorageError::Corrupt`, whose Display put
4754 // `corrupt on-disk format:` in front of a typo — the same
4755 // wrapper rounds 698 and 700 kept meeting.
4756 if self.active_catalog().get(table).is_none() {
4757 return Err(EngineError::Unsupported(alloc::format!(
4758 "relation \"{table}\" does not exist"
4759 )));
4760 }
4761 return Err(EngineError::Unsupported(alloc::format!(
4762 "rule \"{name}\" for relation \"{table}\" does not exist"
4763 )));
4764 }
4765 Ok(QueryResult::CommandOk {
4766 affected: usize::from(removed),
4767 modified_catalog: removed,
4768 })
4769 }
4770
4771 pub(crate) fn exec_drop_function(
4772 &mut self,
4773 name: &str,
4774 args: Option<&[alloc::string::String]>,
4775 if_exists: bool,
4776 ) -> Result<QueryResult, EngineError> {
4777 // v7.39 (read01 round 62) — with overloads, the signature says WHICH one.
4778 let removed = match args {
4779 Some(types) => {
4780 let repr = alloc::format!("({})", types.join(", "));
4781 let key = spg_storage::function_signature_key(name, &repr);
4782 self.active_catalog_mut().drop_function_by_key(&key)
4783 }
4784 None => {
4785 // PG refuses a bare `DROP FUNCTION f` when `f` is overloaded —
4786 // it cannot know which one is meant.
4787 if self.active_catalog().functions_named(name).len() > 1 {
4788 return Err(EngineError::Unsupported(alloc::format!(
4789 "function name \"{name}\" is not unique DETAIL: Specify the argument list to select the function unambiguously."
4790 )));
4791 }
4792 self.active_catalog_mut().drop_function(name)
4793 }
4794 };
4795 if !removed && !if_exists {
4796 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
4797 alloc::format!("function {name:?} does not exist"),
4798 )));
4799 }
4800 // v7.39 (round 282) — the skipped-function NOTICE. Alone among the
4801 // IF EXISTS family PG does NOT quote the name, because it renders a
4802 // signature rather than an identifier.
4803 if !removed && if_exists {
4804 let sig = match args {
4805 Some(types) => types
4806 .iter()
4807 .map(|t| pg_signature_type_name(t))
4808 .collect::<alloc::vec::Vec<_>>()
4809 .join(","),
4810 None => alloc::string::String::new(),
4811 };
4812 self.notice(alloc::format!(
4813 "function {name}({sig}) does not exist, skipping"
4814 ));
4815 }
4816 Ok(QueryResult::CommandOk {
4817 affected: usize::from(removed),
4818 modified_catalog: removed,
4819 })
4820 }
4821
4822 /// v7.17.0 — `CREATE SEQUENCE` engine path. Resolves
4823 /// `min_value` / `max_value` / `start` against PG defaults
4824 /// when omitted, then installs the SequenceDef in the catalog.
4825 pub(crate) fn exec_create_sequence(
4826 &mut self,
4827 s: spg_sql::ast::CreateSequenceStatement,
4828 ) -> Result<QueryResult, EngineError> {
4829 // v7.39 (round 469) — a TEMPORARY sequence lives in the calling
4830 // session's namespace, exactly as round 436 put temporary tables
4831 // there. Until this round the keyword parsed and was dropped, so
4832 // the sequence was permanent: another connection saw it in
4833 // pg_class and could call nextval() on it. Measured against PG18,
4834 // where a second session sees nothing and errors on use.
4835 if s.temporary {
4836 let logical = s.name.clone();
4837 let mut inner = s;
4838 inner.temporary = false;
4839 inner.name = self.session_temp_name(&logical);
4840 let result = self.exec_create_sequence(inner)?;
4841 self.temp_sequences.insert(logical);
4842 self.refresh_temp_prefix();
4843 return Ok(result);
4844 }
4845 use spg_sql::ast::{SeqBound, SequenceDataType as AstDt};
4846 use spg_storage::{SequenceDataType, SequenceDef};
4847 let dt = match s.data_type {
4848 None => SequenceDataType::BigInt,
4849 Some(AstDt::SmallInt) => SequenceDataType::SmallInt,
4850 Some(AstDt::Int) => SequenceDataType::Int,
4851 Some(AstDt::BigInt) => SequenceDataType::BigInt,
4852 };
4853 let increment = s.options.increment.unwrap_or(1);
4854 if increment == 0 {
4855 return Err(EngineError::Unsupported(
4856 "INCREMENT must not be zero".into(),
4857 ));
4858 }
4859 let (def_min, def_max) = dt.default_bounds(increment > 0);
4860 let min_value = match s.options.min_value {
4861 None | Some(SeqBound::NoBound) => def_min,
4862 Some(SeqBound::Value(n)) => n,
4863 };
4864 let max_value = match s.options.max_value {
4865 None | Some(SeqBound::NoBound) => def_max,
4866 Some(SeqBound::Value(n)) => n,
4867 };
4868 if min_value > max_value {
4869 return Err(EngineError::Unsupported(alloc::format!(
4870 "MINVALUE ({min_value}) must be <= MAXVALUE ({max_value})"
4871 )));
4872 }
4873 let start = s
4874 .options
4875 .start
4876 .unwrap_or(if increment > 0 { min_value } else { max_value });
4877 // v7.39 (round 244) — PG splits the refusal into two named cases
4878 // (22023): below MINVALUE and above MAXVALUE.
4879 if start < min_value {
4880 return Err(EngineError::Unsupported(alloc::format!(
4881 "START value ({start}) cannot be less than MINVALUE ({min_value})"
4882 )));
4883 }
4884 if start > max_value {
4885 return Err(EngineError::Unsupported(alloc::format!(
4886 "START value ({start}) cannot be greater than MAXVALUE ({max_value})"
4887 )));
4888 }
4889 let cache = s.options.cache.unwrap_or(1);
4890 if cache < 1 {
4891 return Err(EngineError::Unsupported("CACHE must be >= 1".into()));
4892 }
4893 let cycle = s.options.cycle.unwrap_or(false);
4894 let owned_by = match s.options.owned_by {
4895 None | Some(spg_sql::ast::SequenceOwnedBy::None) => None,
4896 Some(spg_sql::ast::SequenceOwnedBy::Column { table, column }) => Some((table, column)),
4897 };
4898 let def = SequenceDef {
4899 name: s.name.clone(),
4900 data_type: dt,
4901 start,
4902 increment,
4903 min_value,
4904 max_value,
4905 cache,
4906 cycle,
4907 owned_by,
4908 last_value: start,
4909 is_called: false,
4910 // v7.39 (read01 round 60) — whoever runs CREATE SEQUENCE owns it.
4911 owner: Some(alloc::string::String::from(self.current_role())),
4912 acl: alloc::vec::Vec::new(),
4913 };
4914 // v7.39 (read01 round 46) — PG's IF NOT EXISTS skip NOTICE. The
4915 // storage call swallows the collision when the flag is set, so
4916 // detect it here before handing over.
4917 if s.if_not_exists && self.active_catalog().has_sequence(&s.name) {
4918 self.notice(alloc::format!(
4919 "relation {:?} already exists, skipping",
4920 s.name
4921 ));
4922 }
4923 self.active_catalog_mut()
4924 .create_sequence(def, s.if_not_exists)
4925 .map_err(EngineError::Storage)?;
4926 Ok(QueryResult::CommandOk {
4927 affected: 0,
4928 modified_catalog: self.catalog_change_is_committed(),
4929 })
4930 }
4931
4932 /// v7.17.0 — `ALTER SEQUENCE` engine path. Re-uses the catalog
4933 /// `alter_sequence` merge helper.
4934 pub(crate) fn exec_alter_sequence(
4935 &mut self,
4936 s: spg_sql::ast::AlterSequenceStatement,
4937 ) -> Result<QueryResult, EngineError> {
4938 use spg_sql::ast::SeqBound;
4939 // v7.29 (round-23a) - implicit serial sequences materialise
4940 // on first address, ALTER SEQUENCE included.
4941 self.ensure_implicit_sequence(&s.name);
4942 // v7.39 (read01 round 49) — RENAME TO is its own form, not an option.
4943 if let Some(new) = s.rename_to {
4944 self.active_catalog_mut()
4945 .rename_sequence(&s.name, &new)
4946 .map_err(EngineError::Storage)?;
4947 return Ok(QueryResult::CommandOk {
4948 affected: 0,
4949 modified_catalog: self.catalog_change_is_committed(),
4950 });
4951 }
4952 let cat = self.active_catalog_mut();
4953 if !cat.has_sequence(&s.name) {
4954 if s.if_exists {
4955 return Ok(QueryResult::CommandOk {
4956 affected: 0,
4957 modified_catalog: false,
4958 });
4959 }
4960 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
4961 alloc::format!("sequence {:?} does not exist", s.name),
4962 )));
4963 }
4964 let min_value = match s.options.min_value {
4965 None => None,
4966 Some(SeqBound::NoBound) => None, // NO MINVALUE → keep current
4967 Some(SeqBound::Value(n)) => Some(n),
4968 };
4969 let max_value = match s.options.max_value {
4970 None => None,
4971 Some(SeqBound::NoBound) => None,
4972 Some(SeqBound::Value(n)) => Some(n),
4973 };
4974 let owned_by = s.options.owned_by.map(|ob| match ob {
4975 spg_sql::ast::SequenceOwnedBy::None => None,
4976 spg_sql::ast::SequenceOwnedBy::Column { table, column } => Some((table, column)),
4977 });
4978 cat.alter_sequence(
4979 &s.name,
4980 s.options.increment,
4981 min_value,
4982 max_value,
4983 s.options.start,
4984 s.options.restart,
4985 s.options.cache,
4986 s.options.cycle,
4987 owned_by,
4988 )
4989 .map_err(EngineError::Storage)?;
4990 Ok(QueryResult::CommandOk {
4991 affected: 0,
4992 modified_catalog: self.catalog_change_is_committed(),
4993 })
4994 }
4995
4996 /// v7.17.0 Phase 1.2 — `CREATE VIEW` engine path. Stores the
4997 /// Display-rendered body verbatim in the catalog; SELECT-from-
4998 /// view at exec time re-parses + prepends as a synthetic CTE.
4999 pub(crate) fn exec_create_view(
5000 &mut self,
5001 s: spg_sql::ast::CreateViewStatement,
5002 ) -> Result<QueryResult, EngineError> {
5003 // v7.39 (round 469) — same as the temporary sequence above: the
5004 // keyword parsed and was dropped, so the view was permanent and
5005 // every other connection could select from it.
5006 if s.temporary {
5007 let logical = s.name.clone();
5008 let mut inner = s;
5009 inner.temporary = false;
5010 inner.name = self.session_temp_name(&logical);
5011 let result = self.exec_create_view(inner)?;
5012 self.temp_views.insert(logical);
5013 self.refresh_temp_prefix();
5014 return Ok(result);
5015 }
5016 // v7.39 (round 151) — PG rejects data-modifying CTEs in a view
5017 // body (DefineView, view.c): the definition would run the write
5018 // on every reference. Read-only WITH is fine.
5019 if s.body.ctes.iter().any(|c| c.body.is_modifying()) {
5020 return Err(EngineError::Unsupported(
5021 "views must not contain data-modifying statements in WITH".into(),
5022 ));
5023 }
5024 // v7.39 (read01 round 81) — CREATE OR REPLACE VIEW may only APPEND
5025 // columns; PG forbids renaming, dropping, reordering or retyping an
5026 // existing column ("cannot change name of view column …", "cannot drop
5027 // columns from view", "cannot change data type of view column …"). SPG
5028 // let every one of these through and silently swapped the view's shape,
5029 // so a downstream `SELECT known_col FROM v` would start resolving to a
5030 // different column, or vanish — data corruption disguised as a DDL.
5031 if s.or_replace && self.active_catalog().has_view(&s.name) {
5032 self.check_view_replace_columns(&s)?;
5033 }
5034 // v7.39 (round 700) — the BODY has to resolve. PG analyses a view
5035 // definition at CREATE time, so `CREATE VIEW v AS SELECT * FROM
5036 // nosuch` is `relation "nosuch" does not exist`. SPG stored it and
5037 // reported success, leaving a view that appears in `pg_views`, that
5038 // every SELECT against fails, and that a dump then carries forward
5039 // — a broken object made by a statement that said it worked.
5040 //
5041 // The probe is `view_output_columns`, which the OR REPLACE path
5042 // already runs: a `LIMIT 0` execution of the same body. It resolves
5043 // relations and columns without producing rows, so the check costs
5044 // one empty plan and cannot disagree with what the view will do,
5045 // because it IS what the view will do.
5046 self.view_output_columns(&s.body, &s.columns)?;
5047 // Render the SELECT body to canonical form so the catalog
5048 // round-trips a deterministic source (no whitespace /
5049 // comment surprises in the on-disk snapshot).
5050 let columns = s.columns.clone();
5051 let name = s.name.clone();
5052 let or_replace = s.or_replace;
5053 let if_not_exists = s.if_not_exists;
5054 // v7.39 (round 132) — persist WITH CHECK OPTION as a u8 (0/1/2).
5055 let check_option = match s.check_option {
5056 None => 0,
5057 Some(spg_sql::ast::ViewCheckOption::Local) => 1,
5058 Some(spg_sql::ast::ViewCheckOption::Cascaded) => 2,
5059 };
5060 let body_repr = alloc::format!("{}", spg_sql::ast::Statement::Select(s.body));
5061 let def = spg_storage::ViewDef {
5062 name,
5063 columns,
5064 body: body_repr,
5065 check_option,
5066 };
5067 self.active_catalog_mut()
5068 .create_view(def, or_replace, if_not_exists)
5069 .map_err(EngineError::Storage)?;
5070 Ok(QueryResult::CommandOk {
5071 affected: 0,
5072 modified_catalog: self.catalog_change_is_committed(),
5073 })
5074 }
5075
5076 /// The (name, type) of each column a view body produces. Runs the body
5077 /// through the real executor with a zero-row bound, so it reflects exactly
5078 /// what a SELECT from the view would return — column overrides, view-on-view
5079 /// expansion, joins and all. Types come from the empty result's schema.
5080 pub(crate) fn view_output_columns(
5081 &self,
5082 body: &spg_sql::ast::SelectStatement,
5083 overrides: &[String],
5084 ) -> Result<alloc::vec::Vec<(String, spg_storage::DataType)>, EngineError> {
5085 let mut probe = body.clone();
5086 probe.limit = Some(spg_sql::ast::LimitExpr::Literal(0));
5087 let QueryResult::Rows { mut columns, .. } =
5088 self.exec_select_cancel(&probe, crate::CancelToken::none())?
5089 else {
5090 return Err(EngineError::Unsupported(
5091 "view body must be a row-returning SELECT".into(),
5092 ));
5093 };
5094 for (i, ov) in overrides.iter().enumerate() {
5095 if let Some(c) = columns.get_mut(i) {
5096 c.name = ov.clone();
5097 }
5098 }
5099 Ok(columns.into_iter().map(|c| (c.name, c.ty)).collect())
5100 }
5101
5102 /// PG's CREATE OR REPLACE VIEW column rule: the new column list must be the
5103 /// old one, optionally with columns appended. Same names, same order, same
5104 /// types for every pre-existing position.
5105 fn check_view_replace_columns(
5106 &self,
5107 s: &spg_sql::ast::CreateViewStatement,
5108 ) -> Result<(), EngineError> {
5109 let old_def = self.active_catalog().view(&s.name).cloned();
5110 let Some(old_def) = old_def else {
5111 return Ok(());
5112 };
5113 let old_body = match spg_sql::parser::parse_statement(&old_def.body) {
5114 Ok(spg_sql::ast::Statement::Select(b)) => b,
5115 // A body we can no longer parse is not something to block a replace
5116 // on — let the replace proceed rather than wedge the view.
5117 _ => return Ok(()),
5118 };
5119 let old_cols = self.view_output_columns(&old_body, &old_def.columns)?;
5120 let new_cols = self.view_output_columns(&s.body, &s.columns)?;
5121 if new_cols.len() < old_cols.len() {
5122 return Err(EngineError::Unsupported(
5123 "cannot drop columns from view".into(),
5124 ));
5125 }
5126 for (old, new) in old_cols.iter().zip(new_cols.iter()) {
5127 if old.0 != new.0 {
5128 return Err(EngineError::Unsupported(alloc::format!(
5129 "cannot change name of view column \"{}\" to \"{}\"",
5130 old.0,
5131 new.0
5132 )));
5133 }
5134 if old.1 != new.1 {
5135 return Err(EngineError::Unsupported(alloc::format!(
5136 "cannot change data type of view column \"{}\" from {} to {}",
5137 old.0,
5138 crate::system_catalog::pg_data_type_text(old.1),
5139 crate::system_catalog::pg_data_type_text(new.1),
5140 )));
5141 }
5142 }
5143 Ok(())
5144 }
5145
5146 /// v7.17.0 Phase 1.4 — `CREATE TYPE name AS ENUM (…)` engine
5147 /// path. Registers the enum in the catalog with order-
5148 /// preserving labels. PG semantics: CREATE TYPE errors if the
5149 /// name is taken (no IF NOT EXISTS).
5150 pub(crate) fn exec_create_type(
5151 &mut self,
5152 s: spg_sql::ast::CreateTypeStatement,
5153 ) -> Result<QueryResult, EngineError> {
5154 // Name-collision check against tables / sequences / views /
5155 // materialized views.
5156 let cat = self.active_catalog();
5157 if cat.get(&s.name).is_some() {
5158 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5159 alloc::format!("type {:?} would shadow an existing table", s.name),
5160 )));
5161 }
5162 if cat.has_sequence(&s.name) {
5163 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5164 alloc::format!("type {:?} would shadow an existing sequence", s.name),
5165 )));
5166 }
5167 if cat.has_view(&s.name) {
5168 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5169 alloc::format!("type {:?} would shadow an existing view", s.name),
5170 )));
5171 }
5172 // v7.37.42-T2 ζ-B — pre-check collision with the
5173 // composite registry too, so creating ENUM with a name
5174 // already used by a composite (or vice versa) fails
5175 // uniformly regardless of which kind comes first.
5176 if cat.composite_types().contains_key(&s.name) {
5177 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5178 alloc::format!("type {:?} already exists", s.name),
5179 )));
5180 }
5181 if cat.enum_types().contains_key(&s.name) {
5182 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5183 alloc::format!("type {:?} already exists", s.name),
5184 )));
5185 }
5186 if cat.domain_types().contains_key(&s.name) {
5187 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5188 alloc::format!("type {:?} already exists", s.name),
5189 )));
5190 }
5191 // v7.37.42-T2 ζ-B — composite types now live in their own
5192 // catalog registry (composite_types), parallel to enum_types
5193 // / domain_types. ENUM stays in enum_types as before.
5194 match s.kind {
5195 spg_sql::ast::TypeKind::Enum { labels } => {
5196 if labels.is_empty() {
5197 return Err(EngineError::Unsupported(
5198 "CREATE TYPE … AS ENUM requires at least one label".into(),
5199 ));
5200 }
5201 // Reject duplicate labels per PG.
5202 for i in 0..labels.len() {
5203 for j in (i + 1)..labels.len() {
5204 if labels[i] == labels[j] {
5205 return Err(EngineError::Unsupported(alloc::format!(
5206 "CREATE TYPE {:?}: duplicate ENUM label {:?}",
5207 s.name,
5208 labels[i]
5209 )));
5210 }
5211 }
5212 }
5213 let def = spg_storage::EnumDef {
5214 name: s.name.clone(),
5215 labels,
5216 };
5217 self.active_catalog_mut()
5218 .create_enum_type(def)
5219 .map_err(EngineError::Storage)?;
5220 }
5221 spg_sql::ast::TypeKind::Composite {
5222 fields,
5223 field_user_types,
5224 } => {
5225 // v7.39 (round 769, F31 tranche 5 #140) — an attribute-less
5226 // composite is legal PG (`CREATE TYPE x AS ()`, measured); the
5227 // old engine-side guard doubled the parser's former refusal.
5228 // Reject duplicate field names per PG.
5229 for i in 0..fields.len() {
5230 for j in (i + 1)..fields.len() {
5231 if fields[i].0.eq_ignore_ascii_case(&fields[j].0) {
5232 return Err(EngineError::Unsupported(alloc::format!(
5233 "CREATE TYPE {:?}: duplicate composite field {:?}",
5234 s.name,
5235 fields[i].0
5236 )));
5237 }
5238 }
5239 }
5240 // Resolve each field's ColumnTypeName → DataType.
5241 let resolved_fields = fields
5242 .into_iter()
5243 .map(|(fname, fty)| (fname, column_type_to_data_type(fty)))
5244 .collect::<alloc::vec::Vec<_>>();
5245 // v7.39 (round 264) — a field naming another COMPOSITE keeps
5246 // that name; the engine resolves the inner record through it.
5247 let cat = self.active_catalog();
5248 let field_user_types: alloc::vec::Vec<Option<alloc::string::String>> =
5249 field_user_types
5250 .into_iter()
5251 .map(|n| n.filter(|n| cat.composite_types().contains_key(n)))
5252 .collect();
5253 let def = spg_storage::CompositeDef {
5254 name: s.name.clone(),
5255 fields: resolved_fields,
5256 field_user_types,
5257 };
5258 self.active_catalog_mut()
5259 .create_composite_type(def)
5260 .map_err(EngineError::Storage)?;
5261 }
5262 }
5263 Ok(QueryResult::CommandOk {
5264 affected: 0,
5265 modified_catalog: self.catalog_change_is_committed(),
5266 })
5267 }
5268 /// v7.39 (round 260) — `ALTER DOMAIN`. Every form used to be
5269 /// swallowed by the parser's pg_dump no-op arm: success reported,
5270 /// nothing changed. Constraint names and the error wordings are PG's,
5271 /// probed live.
5272 pub(crate) fn exec_alter_domain(
5273 &mut self,
5274 name: &str,
5275 action: spg_sql::ast::AlterDomainAction,
5276 ) -> Result<QueryResult, EngineError> {
5277 use spg_sql::ast::AlterDomainAction as A;
5278 let not_found = || {
5279 EngineError::Storage(spg_storage::StorageError::Corrupt(alloc::format!(
5280 "type {name:?} does not exist"
5281 )))
5282 };
5283 if !self.active_catalog().domain_types().contains_key(name) {
5284 return Err(not_found());
5285 }
5286 match action {
5287 A::AddConstraint { name: cname, check } => {
5288 let dom = self
5289 .active_catalog()
5290 .domain_types()
5291 .get(name)
5292 .ok_or_else(not_found)?;
5293 // PG's auto-name for an unnamed ALTER-added check follows
5294 // the same `<domain>_check{n}` sequence as CREATE DOMAIN.
5295 let cname = match cname {
5296 Some(c) => c,
5297 None => {
5298 let mut i = dom.checks.len();
5299 loop {
5300 let cand = if i == 0 {
5301 alloc::format!("{name}_check")
5302 } else {
5303 alloc::format!("{name}_check{i}")
5304 };
5305 if !dom.checks.iter().any(|c| c.name == cand) {
5306 break cand;
5307 }
5308 i += 1;
5309 }
5310 }
5311 };
5312 if dom.checks.iter().any(|c| c.name == cname) {
5313 return Err(EngineError::Unsupported(alloc::format!(
5314 "constraint \"{cname}\" for domain \"{name}\" already exists"
5315 )));
5316 }
5317 let expr = alloc::format!("{check}");
5318 let mut def = dom.clone();
5319 def.checks
5320 .push(spg_storage::DomainCheck { name: cname, expr });
5321 self.replace_domain(name, def)?;
5322 }
5323 A::DropConstraint {
5324 name: cname,
5325 if_exists,
5326 } => {
5327 let mut def = self
5328 .active_catalog()
5329 .domain_types()
5330 .get(name)
5331 .ok_or_else(not_found)?
5332 .clone();
5333 let before = def.checks.len();
5334 def.checks.retain(|c| c.name != cname);
5335 if def.checks.len() == before {
5336 if if_exists {
5337 return Ok(QueryResult::CommandOk {
5338 affected: 0,
5339 modified_catalog: false,
5340 });
5341 }
5342 return Err(EngineError::Unsupported(alloc::format!(
5343 "constraint \"{cname}\" of domain \"{name}\" does not exist"
5344 )));
5345 }
5346 self.replace_domain(name, def)?;
5347 }
5348 A::SetDefault(e) => {
5349 let mut def = self
5350 .active_catalog()
5351 .domain_types()
5352 .get(name)
5353 .ok_or_else(not_found)?
5354 .clone();
5355 def.default = Some(alloc::format!("{e}"));
5356 self.replace_domain(name, def)?;
5357 }
5358 A::DropDefault => {
5359 let mut def = self
5360 .active_catalog()
5361 .domain_types()
5362 .get(name)
5363 .ok_or_else(not_found)?
5364 .clone();
5365 def.default = None;
5366 self.replace_domain(name, def)?;
5367 }
5368 A::SetNotNull | A::DropNotNull => {
5369 // v7.39 (round 260) — SET NOT NULL must reject when an
5370 // existing column of this domain already holds NULLs (PG:
5371 // `column "v" of table "adt" contains null values`).
5372 if matches!(action, A::SetNotNull) {
5373 let snap = self.current_snapshot();
5374 let cat = self.active_catalog();
5375 let mut offender: Option<(alloc::string::String, alloc::string::String)> = None;
5376 'outer: for tname in cat.table_names() {
5377 let Some(table) = cat.get(&tname) else {
5378 continue;
5379 };
5380 let cols = table.schema().columns.clone();
5381 let idxs: alloc::vec::Vec<usize> = cols
5382 .iter()
5383 .enumerate()
5384 .filter(|(_, c)| c.user_domain_type.as_deref() == Some(name))
5385 .map(|(i, _)| i)
5386 .collect();
5387 if idxs.is_empty() {
5388 continue;
5389 }
5390 for (_, row) in table.scan_visible(&snap) {
5391 for &i in &idxs {
5392 if row.values.get(i).is_none_or(spg_storage::Value::is_null) {
5393 offender = Some((tname.clone(), cols[i].name.clone()));
5394 break 'outer;
5395 }
5396 }
5397 }
5398 }
5399 if let Some((t, c)) = offender {
5400 return Err(EngineError::Unsupported(alloc::format!(
5401 "column \"{c}\" of table \"{t}\" contains null values"
5402 )));
5403 }
5404 }
5405 let mut def = self
5406 .active_catalog()
5407 .domain_types()
5408 .get(name)
5409 .ok_or_else(not_found)?
5410 .clone();
5411 def.nullable = matches!(action, A::DropNotNull);
5412 self.replace_domain(name, def)?;
5413 }
5414 A::RenameTo(new_name) => {
5415 if self.active_catalog().domain_types().contains_key(&new_name) {
5416 return Err(EngineError::Unsupported(alloc::format!(
5417 "type {new_name:?} already exists"
5418 )));
5419 }
5420 let mut def = self
5421 .active_catalog()
5422 .domain_types()
5423 .get(name)
5424 .ok_or_else(not_found)?
5425 .clone();
5426 def.name = new_name.clone();
5427 self.active_catalog_mut().drop_domain_type(name);
5428 self.active_catalog_mut()
5429 .create_domain_type(def)
5430 .map_err(EngineError::Storage)?;
5431 }
5432 }
5433 Ok(QueryResult::CommandOk {
5434 affected: 0,
5435 modified_catalog: self.catalog_change_is_committed(),
5436 })
5437 }
5438
5439 /// v7.39 (round 260) — swap a domain definition in place.
5440 fn replace_domain(
5441 &mut self,
5442 name: &str,
5443 def: spg_storage::DomainDef,
5444 ) -> Result<(), EngineError> {
5445 self.active_catalog_mut().drop_domain_type(name);
5446 self.active_catalog_mut()
5447 .create_domain_type(def)
5448 .map_err(EngineError::Storage)
5449 }
5450
5451 /// v7.17.0 Phase 1.5 — `CREATE DOMAIN name AS base [DEFAULT
5452 /// expr] [NOT NULL] [CHECK (expr)]*` engine path. Stores the
5453 /// base type + Display-rendered CHECK / DEFAULT sources so
5454 /// INSERT/UPDATE on bound columns can re-eval the checks.
5455 pub(crate) fn exec_create_domain(
5456 &mut self,
5457 s: spg_sql::ast::CreateDomainStatement,
5458 ) -> Result<QueryResult, EngineError> {
5459 let cat = self.active_catalog();
5460 if cat.domain_types().contains_key(&s.name) {
5461 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5462 alloc::format!("domain {:?} already exists", s.name),
5463 )));
5464 }
5465 if cat.get(&s.name).is_some()
5466 || cat.has_sequence(&s.name)
5467 || cat.has_view(&s.name)
5468 || cat.enum_types().contains_key(&s.name)
5469 {
5470 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5471 alloc::format!("domain {:?} would shadow an existing object", s.name),
5472 )));
5473 }
5474 // v7.39 (round 259) — `CREATE DOMAIN child AS parent`: the parent
5475 // supplies the ultimate scalar type (the parser typed the unknown
5476 // name as Text), and its NAME is recorded so the check walk can
5477 // reach the parent's constraints — which an ALTER on the parent
5478 // must keep affecting, so the chain is walked at check time rather
5479 // than copied here (probed against PG).
5480 let mut base_domain: Option<alloc::string::String> = None;
5481 let mut base_type = column_type_to_data_type(s.base_type);
5482 if let Some(parent) = &s.base_domain {
5483 if let Some(pd) = cat.domain_types().get(parent) {
5484 base_type = pd.base_type;
5485 base_domain = Some(parent.clone());
5486 } else if !cat.enum_types().contains_key(parent) {
5487 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5488 alloc::format!("type {parent:?} does not exist"),
5489 )));
5490 }
5491 }
5492 let default = s.default.as_ref().map(|e| alloc::format!("{e}"));
5493 // v7.39 (round 260) — PG names an unnamed domain CHECK
5494 // `<domain>_check`, then `_check1`, `_check2`, … (probed).
5495 let checks = s
5496 .checks
5497 .iter()
5498 .enumerate()
5499 .map(|(i, e)| spg_storage::DomainCheck {
5500 name: if i == 0 {
5501 alloc::format!("{}_check", s.name)
5502 } else {
5503 alloc::format!("{}_check{i}", s.name)
5504 },
5505 expr: alloc::format!("{e}"),
5506 })
5507 .collect::<Vec<_>>();
5508 let def = spg_storage::DomainDef {
5509 name: s.name.clone(),
5510 base_type,
5511 nullable: !s.not_null,
5512 default,
5513 checks,
5514 base_domain,
5515 };
5516 self.active_catalog_mut()
5517 .create_domain_type(def)
5518 .map_err(EngineError::Storage)?;
5519 Ok(QueryResult::CommandOk {
5520 affected: 0,
5521 modified_catalog: self.catalog_change_is_committed(),
5522 })
5523 }
5524
5525 /// v7.17.0 Phase 1.5 — `DROP DOMAIN [IF EXISTS] names`.
5526 pub(crate) fn exec_drop_domain(
5527 &mut self,
5528 names: &[String],
5529 if_exists: bool,
5530 ) -> Result<QueryResult, EngineError> {
5531 let mut removed = 0usize;
5532 for name in names {
5533 let was_present = self.active_catalog_mut().drop_domain_type(name);
5534 if was_present {
5535 removed += 1;
5536 } else if !if_exists {
5537 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5538 alloc::format!("domain {name:?} does not exist"),
5539 )));
5540 }
5541 }
5542 Ok(QueryResult::CommandOk {
5543 affected: removed,
5544 modified_catalog: removed > 0 && self.catalog_change_is_committed(),
5545 })
5546 }
5547
5548 /// v7.17.0 Phase 1.6 — `CREATE SCHEMA [IF NOT EXISTS] name`.
5549 /// Registers the schema in the catalog. Schema-qualified
5550 /// table references continue to strip the prefix at lookup
5551 /// time (prefix routing, not isolation — see project-next-
5552 /// docket for the v7.18+ real-isolation tracking).
5553 pub(crate) fn exec_create_schema(
5554 &mut self,
5555 name: String,
5556 if_not_exists: bool,
5557 ) -> Result<QueryResult, EngineError> {
5558 // v7.39 (read01 round 46) — PG's IF NOT EXISTS skip NOTICE.
5559 if if_not_exists && self.active_catalog().schema_exists(&name) {
5560 self.notice(alloc::format!("schema {name:?} already exists, skipping"));
5561 }
5562 self.active_catalog_mut()
5563 .create_schema(name, if_not_exists)
5564 .map_err(EngineError::Storage)?;
5565 Ok(QueryResult::CommandOk {
5566 affected: 0,
5567 modified_catalog: self.catalog_change_is_committed(),
5568 })
5569 }
5570
5571 /// v7.17.0 Phase 1.6 — `DROP SCHEMA [IF EXISTS] names`.
5572 /// Built-in schemas always reject the drop with a clear
5573 /// error.
5574 pub(crate) fn exec_drop_schema(
5575 &mut self,
5576 names: &[String],
5577 if_exists: bool,
5578 ) -> Result<QueryResult, EngineError> {
5579 let mut removed = 0usize;
5580 for name in names {
5581 let was_present = self
5582 .active_catalog_mut()
5583 .drop_schema(name)
5584 .map_err(EngineError::Storage)?;
5585 if was_present {
5586 removed += 1;
5587 } else if !if_exists {
5588 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5589 alloc::format!("schema {name:?} does not exist"),
5590 )));
5591 } else {
5592 // v7.39 (read01 round 46) — PG's IF EXISTS skip NOTICE.
5593 self.notice(alloc::format!("schema {name:?} does not exist, skipping"));
5594 }
5595 }
5596 Ok(QueryResult::CommandOk {
5597 affected: removed,
5598 modified_catalog: removed > 0 && self.catalog_change_is_committed(),
5599 })
5600 }
5601
5602 /// v7.17.0 Phase 1.4 — `DROP TYPE [IF EXISTS] names`. Only
5603 /// ENUM types are catalogued today; other types silently
5604 /// no-op even outside IF EXISTS to mirror the prior
5605 /// "everything's text" lax stance.
5606 pub(crate) fn exec_drop_type(
5607 &mut self,
5608 names: &[String],
5609 if_exists: bool,
5610 ) -> Result<QueryResult, EngineError> {
5611 let mut removed = 0usize;
5612 for name in names {
5613 // v7.37.42-T2 ζ-B — DROP TYPE searches ENUM + COMPOSITE
5614 // registries (PG groups CREATE TYPE … AS ENUM and
5615 // CREATE TYPE … AS (…) under the same DROP TYPE
5616 // command).
5617 let cat = self.active_catalog_mut();
5618 let was_enum = cat.drop_enum_type(name);
5619 let was_composite = cat.drop_composite_type(name);
5620 if was_enum || was_composite {
5621 removed += 1;
5622 } else if !if_exists {
5623 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5624 alloc::format!("type {name:?} does not exist"),
5625 )));
5626 } else {
5627 // v7.39 (read01 round 46) — PG's IF EXISTS skip NOTICE.
5628 self.notice(alloc::format!("type {name:?} does not exist, skipping"));
5629 }
5630 }
5631 Ok(QueryResult::CommandOk {
5632 affected: removed,
5633 modified_catalog: removed > 0 && self.catalog_change_is_committed(),
5634 })
5635 }
5636
5637 /// v7.17.0 Phase 1.3 — `CREATE MATERIALIZED VIEW` engine path.
5638 /// Materialises the body at CREATE time (unless WITH NO DATA),
5639 /// stores the result as a regular `Table`, and registers the
5640 /// body source in the catalog so REFRESH can re-run it.
5641 pub(crate) fn exec_create_materialized_view(
5642 &mut self,
5643 s: spg_sql::ast::CreateMaterializedViewStatement,
5644 ) -> Result<QueryResult, EngineError> {
5645 // v7.39 (round 436) — `CREATE TEMPORARY TABLE x AS <select>` arrives
5646 // here (CTAS lowers to this node with `as_plain_table`). Same
5647 // treatment as the column-list form: build it under the session's
5648 // namespace prefix and remember it there.
5649 if s.temporary && s.as_plain_table {
5650 let logical = s.name.clone();
5651 let mut inner = s;
5652 inner.temporary = false;
5653 inner.name = self.session_temp_name(&logical);
5654 let result = self.exec_create_materialized_view(inner)?;
5655 self.temp_tables.insert(logical);
5656 self.refresh_temp_prefix();
5657 return Ok(result);
5658 }
5659 // v7.39 (round 151) — PG's matview wording differs from the
5660 // plain-view one (transformCreateTableAsStmt, analyze.c).
5661 if s.body.ctes.iter().any(|c| c.body.is_modifying()) {
5662 return Err(EngineError::Unsupported(
5663 "materialized views must not use data-modifying statements in WITH".into(),
5664 ));
5665 }
5666 // Name-collision check (table / view / sequence / mat-view).
5667 let cat = self.active_catalog();
5668 if cat.materialized_views().contains_key(&s.name) || cat.get(&s.name).is_some() {
5669 if s.if_not_exists {
5670 return Ok(QueryResult::CommandOk {
5671 affected: 0,
5672 modified_catalog: false,
5673 });
5674 }
5675 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5676 alloc::format!("materialized view {:?} already exists", s.name),
5677 )));
5678 }
5679 if cat.has_view(&s.name) {
5680 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5681 alloc::format!(
5682 "materialized view {:?} would shadow an existing view",
5683 s.name
5684 ),
5685 )));
5686 }
5687 if cat.has_sequence(&s.name) {
5688 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
5689 alloc::format!(
5690 "materialized view {:?} would shadow an existing sequence",
5691 s.name
5692 ),
5693 )));
5694 }
5695 // Render the body to canonical form for the registry.
5696 let body_repr = alloc::format!("{}", spg_sql::ast::Statement::Select(s.body.clone()));
5697 // Execute the body to learn the columns. With WITH DATA we
5698 // also materialise the rows; with WITH NO DATA we only need
5699 // the schema, so re-use a LIMIT 0 wrap to keep the column
5700 // inference path uniform without paying for the rows.
5701 let result = self.exec_select_cancel(&s.body, CancelToken::none())?;
5702 let (mut cols, rows) = match result {
5703 QueryResult::Rows { columns, rows } => (columns, rows),
5704 other => {
5705 return Err(EngineError::Unsupported(alloc::format!(
5706 "CREATE MATERIALIZED VIEW body did not return rows: {other:?}"
5707 )));
5708 }
5709 };
5710 // Apply the column-rename list per PG semantics.
5711 if !s.columns.is_empty() {
5712 if s.columns.len() != cols.len() {
5713 return Err(EngineError::Unsupported(alloc::format!(
5714 "CREATE MATERIALIZED VIEW {:?}: column list has {} names but body returns {}",
5715 s.name,
5716 s.columns.len(),
5717 cols.len()
5718 )));
5719 }
5720 for (c, name) in cols.iter_mut().zip(s.columns.iter()) {
5721 c.name.clone_from(name);
5722 }
5723 }
5724 // Promote any synthetic-Text projections to their actual
5725 // observed types so the backing table accepts the rows.
5726 cols = infer_column_types(&cols, &rows);
5727 let schema = spg_storage::TableSchema::new(s.name.clone(), cols);
5728 let cat = self.active_catalog_mut();
5729 cat.create_table(schema).map_err(EngineError::Storage)?;
5730 // v7.38.19 — the materialised row count is the statement's
5731 // answer, not a detail. PG tags CTAS and CREATE MATERIALIZED
5732 // VIEW `SELECT <n>`, and a driver reads that to learn how many
5733 // rows it wrote. Returning 0 here made every CTAS report writing
5734 // nothing while writing the right rows -- silent, and the wrong
5735 // half is the one a program acts on.
5736 let mut materialised = 0usize;
5737 if s.with_data {
5738 let table = cat
5739 .get_mut(&s.name)
5740 .expect("just-created materialized-view backing table must exist");
5741 for row in rows {
5742 table.insert(row).map_err(EngineError::Storage)?;
5743 materialised += 1;
5744 }
5745 }
5746 // v7.38 (read01 P6.49) — CTAS / SELECT INTO produce a plain table; only
5747 // a real MATERIALIZED VIEW gets a registry entry (and REFRESH support).
5748 if !s.as_plain_table {
5749 cat.register_materialized_view(s.name.clone(), body_repr);
5750 // v7.39 (round 737, S14/B3) — register for delta maintenance
5751 // when the body qualifies; the fan-out starts buffering from
5752 // the next statement on.
5753 if let Some(base) = matview_maintainable_base(&s.body) {
5754 self.matview_maintainable.insert(s.name.clone(), base);
5755 }
5756 }
5757 Ok(QueryResult::CommandOk {
5758 affected: materialised,
5759 modified_catalog: self.catalog_change_is_committed(),
5760 })
5761 }
5762
5763 /// v7.17.0 Phase 1.3 — `REFRESH MATERIALIZED VIEW name [WITH
5764 /// [NO] DATA]`. Looks up the source, re-runs it, replaces the
5765 /// backing table's rows.
5766 pub(crate) fn exec_refresh_materialized_view(
5767 &mut self,
5768 name: &str,
5769 with_data: bool,
5770 ) -> Result<QueryResult, EngineError> {
5771 // v7.39 (round 699) — PG18 distinguishes the two ways this fails,
5772 // and SPG gave one sentence for both:
5773 //
5774 // missing name `relation "x" does not exist`
5775 // exists, wrong kind `"x" is not a materialized view`
5776 //
5777 // The second is the one that matters to a caller: it says the name
5778 // resolved and the OBJECT is not what the statement is for, which
5779 // is a different thing to go and check.
5780 //
5781 // Both were `StorageError::Corrupt`, the same wrapper round 698
5782 // found putting `corrupt on-disk format:` in front of a plain typo.
5783 // `Unsupported` carries no banner, and the wire's classifier reads
5784 // `relation "…" does not exist` for 42P01 already.
5785 let source = match self
5786 .active_catalog()
5787 .materialized_views()
5788 .get(name)
5789 .cloned()
5790 {
5791 Some(s) => s,
5792 None => {
5793 let exists = self.active_catalog().get(name).is_some();
5794 return Err(EngineError::Unsupported(if exists {
5795 alloc::format!("\"{name}\" is not a materialized view")
5796 } else {
5797 alloc::format!("relation \"{name}\" does not exist")
5798 }));
5799 }
5800 };
5801 let parsed = spg_sql::parser::parse_statement(&source).map_err(|e| {
5802 EngineError::Unsupported(alloc::format!(
5803 "materialized view {name:?} body re-parse failed: {e}"
5804 ))
5805 })?;
5806 let Statement::Select(body) = parsed else {
5807 return Err(EngineError::Unsupported(alloc::format!(
5808 "materialized view {name:?} body is not a SELECT (catalog corruption)"
5809 )));
5810 };
5811 // v7.39 (round 735, S14/B3) — the refresh watermark. When the
5812 // body's FULL dependency set is provable (plain stored tables
5813 // only — any CTE / union / subquery / expression source makes
5814 // the collector answer None) and no dependency's change
5815 // sequence moved since the last refresh, this REFRESH is an
5816 // O(1) no-op with an identical observable result. PG recomputes
5817 // unconditionally — this is the incremental-maintenance first
5818 // step its architecture doesn't have. WITH NO DATA never
5819 // no-ops (its contract is to EMPTY the view).
5820 let deps = if with_data {
5821 matview_dep_tables(&body)
5822 } else {
5823 None
5824 };
5825 if let Some(dep_tables) = &deps {
5826 let current: alloc::vec::Vec<(String, u64)> = dep_tables
5827 .iter()
5828 .map(|t| {
5829 (
5830 t.clone(),
5831 self.table_change_seq.get(t.as_str()).copied().unwrap_or(0),
5832 )
5833 })
5834 .collect();
5835 if self
5836 .matview_refresh_watermark
5837 .get(name)
5838 .is_some_and(|last| *last == current)
5839 {
5840 return Ok(QueryResult::CommandOk {
5841 affected: 0,
5842 modified_catalog: false,
5843 });
5844 }
5845 // v7.39 (round 737, S14/B3 knife 2) — INSERT-ONLY delta
5846 // application. The base changed; if this view is registered
5847 // maintainable, has a watermark (i.e. its buffer covers
5848 // everything since the last full refresh), did not
5849 // overflow, and every buffered change is an Insert, the new
5850 // rows run through the projection and APPEND — no truncate,
5851 // no rescan. Any delete / update / tombstone in the buffer
5852 // falls back to the full path this round (their row-map
5853 // machinery is the next knife). Either way the watermark
5854 // and buffer reset below.
5855 if with_data
5856 && self.matview_maintainable.contains_key(name)
5857 && self.matview_refresh_watermark.contains_key(name)
5858 && !self.matview_delta_overflow.contains(name)
5859 && self
5860 .matview_delta_buf
5861 .get(name)
5862 .is_some_and(|b| !b.is_empty())
5863 {
5864 let buf = self.matview_delta_buf.remove(name).expect("checked above");
5865 // v7.39 (round 738) — ordered application: Insert /
5866 // Delete / Tombstone in ARRIVAL order (an insert later
5867 // deleted must land then leave). None = this buffer
5868 // cannot be applied (an Update, or no row map where one
5869 // is needed) -> the full path below.
5870 let outcome = self.apply_matview_delta_ordered(name, &body, &buf)?;
5871 if outcome.is_some() {
5872 crate::MATVIEW_DELTA_APPLIED
5873 .fetch_add(1, core::sync::atomic::Ordering::Relaxed);
5874 } else {
5875 crate::MATVIEW_DELTA_BAILED.fetch_add(1, core::sync::atomic::Ordering::Relaxed);
5876 }
5877 if let Some(applied) = outcome {
5878 let current: alloc::vec::Vec<(String, u64)> = dep_tables
5879 .iter()
5880 .map(|t| {
5881 (
5882 t.clone(),
5883 self.table_change_seq.get(t.as_str()).copied().unwrap_or(0),
5884 )
5885 })
5886 .collect();
5887 self.matview_refresh_watermark
5888 .insert(String::from(name), current);
5889 return Ok(QueryResult::CommandOk {
5890 affected: applied,
5891 modified_catalog: self.catalog_change_is_committed(),
5892 });
5893 }
5894 }
5895 }
5896 // Wipe the existing rows first (PG truncates the matview
5897 // and rebuilds; we approximate with an empty INSERT loop).
5898 {
5899 let cat = self.active_catalog_mut();
5900 let table = cat.get_mut(name).ok_or_else(|| {
5901 EngineError::Storage(spg_storage::StorageError::Corrupt(alloc::format!(
5902 "materialized view {name:?} backing table missing"
5903 )))
5904 })?;
5905 table.truncate();
5906 }
5907 if !with_data {
5908 self.matview_refresh_watermark.remove(name);
5909 return Ok(QueryResult::CommandOk {
5910 affected: 0,
5911 modified_catalog: self.catalog_change_is_committed(),
5912 });
5913 }
5914 // v7.39 (round 738, S14/B3 knife 3) — a maintainable view's FULL
5915 // refresh scans the base table internally instead of running the
5916 // body SQL: same rows (single stored table, pure projection,
5917 // pure WHERE — that is what registration means), but each output
5918 // row's base RowId is in hand, which is the only place the
5919 // delete/tombstone row map can be built. Non-maintainable views
5920 // keep the SQL path and carry no map.
5921 let internal = if let Some(base) = matview_maintainable_base(&body) {
5922 let snap = self.current_snapshot();
5923 let t = self.active_catalog().get(&base).ok_or_else(|| {
5924 EngineError::Unsupported(alloc::format!(
5925 "materialized view {name:?} base table {base:?} missing"
5926 ))
5927 })?;
5928 let base_cols = t.schema().columns.clone();
5929 let alias = body
5930 .from
5931 .as_ref()
5932 .and_then(|f| f.primary.alias.clone())
5933 .unwrap_or_else(|| base.clone());
5934 let ctx = self.ev_ctx(&base_cols, Some(alias.as_str()));
5935 let mut pairs: alloc::vec::Vec<(u64, spg_storage::Row<'static>)> =
5936 alloc::vec::Vec::new();
5937 let t = self.active_catalog().get(&base).expect("checked above");
5938 for (i, row) in t.rows().iter().enumerate() {
5939 if !t.is_row_visible(i, &snap) {
5940 continue;
5941 }
5942 if let Some(w) = &body.where_ {
5943 let cond = eval::eval_expr(w, row, &ctx).map_err(EngineError::Eval)?;
5944 if !crate::eval::predicate_is_true(&cond, "WHERE", ctx.mysql_dialect)? {
5945 continue;
5946 }
5947 }
5948 let mut vals = alloc::vec::Vec::with_capacity(body.items.len());
5949 for item in &body.items {
5950 let spg_sql::ast::SelectItem::Expr { expr, .. } = item else {
5951 unreachable!("maintainable admits Expr items only");
5952 };
5953 vals.push(eval::eval_expr(expr, row, &ctx).map_err(EngineError::Eval)?);
5954 }
5955 let rid = t
5956 .rowids()
5957 .get(i)
5958 .copied()
5959 .unwrap_or(spg_storage::row_header::RowId::UNASSIGNED);
5960 pairs.push((rid.0, spg_storage::Row::new(vals)));
5961 }
5962 Some(pairs)
5963 } else {
5964 None
5965 };
5966 if let Some(pairs) = internal {
5967 let cat = self.active_catalog_mut();
5968 let table = cat.get_mut(name).expect("backing table verified above");
5969 let mut map: alloc::collections::BTreeMap<u64, usize> =
5970 alloc::collections::BTreeMap::new();
5971 let affected = pairs.len();
5972 for (rid, row) in pairs {
5973 table.insert(row).map_err(EngineError::Storage)?;
5974 map.insert(rid, table.rows().len() - 1);
5975 }
5976 let expected = table.rows().len();
5977 self.matview_row_map
5978 .insert(String::from(name), (expected, map));
5979 if let Some(dep_tables) = deps {
5980 let current: alloc::vec::Vec<(String, u64)> = dep_tables
5981 .iter()
5982 .map(|t| {
5983 (
5984 t.clone(),
5985 self.table_change_seq.get(t.as_str()).copied().unwrap_or(0),
5986 )
5987 })
5988 .collect();
5989 self.matview_refresh_watermark
5990 .insert(String::from(name), current);
5991 }
5992 self.matview_delta_buf.remove(name);
5993 self.matview_delta_overflow.remove(name);
5994 if let Some(base) = matview_maintainable_base(&body) {
5995 self.matview_maintainable.insert(String::from(name), base);
5996 }
5997 return Ok(QueryResult::CommandOk {
5998 affected,
5999 modified_catalog: self.catalog_change_is_committed(),
6000 });
6001 }
6002 self.matview_row_map.remove(name);
6003 let rows = match self.exec_select_cancel(&body, CancelToken::none())? {
6004 QueryResult::Rows { rows, .. } => rows,
6005 other => {
6006 return Err(EngineError::Unsupported(alloc::format!(
6007 "REFRESH MATERIALIZED VIEW {name:?} body did not return rows: {other:?}"
6008 )));
6009 }
6010 };
6011 let cat = self.active_catalog_mut();
6012 let table = cat.get_mut(name).expect("backing table verified above");
6013 let affected = rows.len();
6014 for row in rows {
6015 table.insert(row).map_err(EngineError::Storage)?;
6016 }
6017 // v7.39 (round 735, S14/B3) — record what this full refresh saw.
6018 // Re-read the sequences AFTER the recompute: a write that landed
6019 // mid-refresh moves a seq past what we record only if it came
6020 // first (single-writer engine), so recording the pre-read values
6021 // could mask it; the post-read cannot.
6022 if let Some(dep_tables) = deps {
6023 let current: alloc::vec::Vec<(String, u64)> = dep_tables
6024 .iter()
6025 .map(|t| {
6026 (
6027 t.clone(),
6028 self.table_change_seq.get(t.as_str()).copied().unwrap_or(0),
6029 )
6030 })
6031 .collect();
6032 self.matview_refresh_watermark
6033 .insert(String::from(name), current);
6034 }
6035 // v7.39 (round 737) — a full refresh resets the delta machinery:
6036 // stale buffered changes are superseded, overflow clears, and
6037 // (re)registration keeps a view maintainable across restarts,
6038 // where CREATE never re-runs.
6039 self.matview_delta_buf.remove(name);
6040 self.matview_delta_overflow.remove(name);
6041 if let Some(base) = matview_maintainable_base(&body) {
6042 self.matview_maintainable.insert(String::from(name), base);
6043 } else {
6044 self.matview_maintainable.remove(name);
6045 }
6046 Ok(QueryResult::CommandOk {
6047 affected,
6048 modified_catalog: self.catalog_change_is_committed(),
6049 })
6050 }
6051
6052 /// v7.17.0 Phase 1.3 — `DROP MATERIALIZED VIEW [IF EXISTS]
6053 /// names`. Drops the backing table + unregisters the source.
6054 pub(crate) fn exec_drop_materialized_view(
6055 &mut self,
6056 names: &[String],
6057 if_exists: bool,
6058 ) -> Result<QueryResult, EngineError> {
6059 let mut removed = 0usize;
6060 for name in names {
6061 let was_present = self
6062 .active_catalog_mut()
6063 .drop_materialized_view_source(name);
6064 if was_present {
6065 // Drop the backing table too.
6066 self.active_catalog_mut().drop_table(name);
6067 // v7.39 (round 737, S14/B3) — retire every maintenance
6068 // structure with the view.
6069 self.matview_maintainable.remove(name);
6070 self.matview_delta_buf.remove(name);
6071 self.matview_delta_overflow.remove(name);
6072 self.matview_refresh_watermark.remove(name);
6073 self.matview_row_map.remove(name);
6074 removed += 1;
6075 } else if !if_exists {
6076 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
6077 alloc::format!("materialized view {name:?} does not exist"),
6078 )));
6079 }
6080 }
6081 Ok(QueryResult::CommandOk {
6082 affected: removed,
6083 modified_catalog: removed > 0 && self.catalog_change_is_committed(),
6084 })
6085 }
6086
6087 /// v7.17.0 Phase 1.2 — `DROP VIEW [IF EXISTS] name [, name…]`.
6088 pub(crate) fn exec_drop_view(
6089 &mut self,
6090 names: &[String],
6091 if_exists: bool,
6092 ) -> Result<QueryResult, EngineError> {
6093 let mut removed = 0usize;
6094 for name in names {
6095 // v7.39 (round 469) — a bare DROP names the session's
6096 // temporary view first, the way `Catalog::drop_table` resolves
6097 // a temporary table.
6098 let key = self.active_catalog().view_key(name);
6099 let was_present = self.active_catalog_mut().drop_view(&key);
6100 if was_present && key != *name {
6101 self.temp_views.remove(name);
6102 self.refresh_temp_prefix();
6103 }
6104 if !was_present {
6105 if !if_exists {
6106 // v7.39 (read01 round 89) — PG's 42P01 wording, without the
6107 // "corrupt on-disk format:" prefix a Storage::Corrupt adds.
6108 return Err(EngineError::Unsupported(alloc::format!(
6109 "view \"{name}\" does not exist"
6110 )));
6111 }
6112 // v7.39 (read01 round 46) — PG's IF EXISTS skip NOTICE.
6113 self.notice(alloc::format!("view {name:?} does not exist, skipping"));
6114 }
6115 if was_present {
6116 removed += 1;
6117 }
6118 }
6119 Ok(QueryResult::CommandOk {
6120 affected: removed,
6121 modified_catalog: removed > 0 && self.catalog_change_is_committed(),
6122 })
6123 }
6124
6125 /// v7.17.0 — `DROP SEQUENCE [IF EXISTS] name [, name…]`.
6126 pub(crate) fn exec_drop_sequence(
6127 &mut self,
6128 names: &[String],
6129 if_exists: bool,
6130 ) -> Result<QueryResult, EngineError> {
6131 let mut removed = 0usize;
6132 for name in names {
6133 let key = self.active_catalog().sequence_key(name);
6134 let was_present = self.active_catalog_mut().drop_sequence(&key);
6135 if was_present && key != *name {
6136 self.temp_sequences.remove(name);
6137 self.refresh_temp_prefix();
6138 }
6139 if !was_present {
6140 if !if_exists {
6141 return Err(EngineError::Storage(spg_storage::StorageError::Corrupt(
6142 alloc::format!("sequence {name:?} does not exist"),
6143 )));
6144 }
6145 // v7.39 (read01 round 46) — PG's IF EXISTS skip NOTICE.
6146 self.notice(alloc::format!("sequence {name:?} does not exist, skipping"));
6147 }
6148 if was_present {
6149 removed += 1;
6150 }
6151 }
6152 Ok(QueryResult::CommandOk {
6153 affected: removed,
6154 modified_catalog: removed > 0 && self.catalog_change_is_committed(),
6155 })
6156 }
6157}
6158
6159// ---- column-definition / DEFAULT / SET / enum helpers (lib.rs split 11) ----
6160
6161/// v7.9.21 — resolve a column's DEFAULT for INSERT-time
6162/// default-fill. Free fn (rather than `&self`) so callers
6163/// with an active `&mut Table` borrow can still use it.
6164/// Literal defaults take the cached path (`col.default`);
6165/// runtime defaults hit `clock_fn` at each call. mailrs G4.
6166/// v7.39 (read01 round 93) — truncate a generated identifier to PG's
6167/// NAMEDATALEN-1 (63) byte limit, on a UTF-8 char boundary so a
6168/// multi-byte name is never split mid-codepoint.
6169fn truncate_ident(name: &mut String) {
6170 const MAX: usize = 63;
6171 if name.len() <= MAX {
6172 return;
6173 }
6174 let mut cut = MAX;
6175 while cut > 0 && !name.is_char_boundary(cut) {
6176 cut -= 1;
6177 }
6178 name.truncate(cut);
6179}
6180
6181pub(crate) fn resolve_column_default_free(
6182 col: &ColumnSchema,
6183 clock_fn: Option<ClockFn>,
6184 // v7.39 (round 525) — the session, for a DEFAULT that names one.
6185 sess: Option<&crate::eval::DmlSession>,
6186) -> Result<Value<'static>, EngineError> {
6187 if let Some(rt) = &col.runtime_default {
6188 return eval_runtime_default_free(rt, col.ty, clock_fn, sess);
6189 }
6190 Ok(col.default.clone().unwrap_or(Value::Null))
6191}
6192
6193pub(crate) fn eval_runtime_default_free(
6194 rt: &str,
6195 ty: DataType,
6196 clock_fn: Option<ClockFn>,
6197 sess: Option<&crate::eval::DmlSession>,
6198) -> Result<Value<'static>, EngineError> {
6199 let s = rt.trim().to_ascii_lowercase();
6200 // v7.17.0 Phase 2.1 — also strip `(N)` precision suffix
6201 // so MySQL `CURRENT_TIMESTAMP(6)` resolves the same as
6202 // bare `CURRENT_TIMESTAMP`. SPG stores TIMESTAMP at fixed
6203 // microsecond resolution; the precision modifier is
6204 // parser-only.
6205 let with_no_parens = s.trim_end_matches("()");
6206 let canonical: &str = if let Some(open_idx) = with_no_parens.find('(') {
6207 if with_no_parens.ends_with(')') {
6208 &with_no_parens[..open_idx]
6209 } else {
6210 with_no_parens
6211 }
6212 } else {
6213 with_no_parens
6214 };
6215 let now_us = match clock_fn {
6216 Some(f) => f(),
6217 None => 0,
6218 };
6219 let v = match canonical {
6220 "now" | "current_timestamp" | "localtimestamp" => Value::Timestamp(now_us),
6221 "current_date" => Value::Date((now_us / 86_400_000_000) as i32),
6222 "current_time" | "localtime" => Value::Timestamp(now_us),
6223 // v7.17.0 — UUID generators in DEFAULT clauses. Required
6224 // for the canonical Django / Rails / Hibernate `id UUID
6225 // PRIMARY KEY DEFAULT gen_random_uuid()` pattern. Each
6226 // INSERT evaluates the function fresh; the per-row UUID
6227 // is the storage value, not a cached literal.
6228 "gen_random_uuid" | "uuid_generate_v4" => Value::Uuid(eval::gen_random_uuid_bytes()),
6229 // v7.39 (round 525) — anything else is EVALUATED, not refused.
6230 // PG takes any expression as a DEFAULT; the eight names above are
6231 // a fast path that skips a parse per row, and this was the whole
6232 // list SPG accepted — `DEFAULT current_setting('app.tenant')`,
6233 // `DEFAULT upper(…)`, `DEFAULT 2 * 3` all failed the INSERT.
6234 _ => {
6235 let expr = spg_sql::parser::parse_expression(rt).map_err(|e| {
6236 EngineError::Unsupported(alloc::format!(
6237 "runtime DEFAULT expression {rt:?} does not parse: {e}"
6238 ))
6239 })?;
6240 let no_cols: [ColumnSchema; 0] = [];
6241 let mut ctx = eval::EvalContext::new(&no_cols, None);
6242 if let Some(sv) = sess {
6243 ctx = ctx.with_session(sv);
6244 }
6245 let row = spg_storage::Row::new(alloc::vec::Vec::new());
6246 let v = eval::eval_expr(&expr, &row, &ctx).map_err(|e| EngineError::Eval(e))?;
6247 return coerce_value(v, ty, "DEFAULT", 0);
6248 }
6249 };
6250 coerce_value(v, ty, "DEFAULT", 0)
6251}
6252
6253/// v7.9.21 — true when a DEFAULT expression needs INSERT-time
6254/// evaluation rather than being cacheable as a literal Value.
6255/// FunctionCall is the immediate case (`now()`,
6256/// `current_timestamp`). Literal expressions and simple sign-
6257/// flipped numerics still take the static-cache path.
6258/// v7.39 (RLS) — translate the parser's `PolicyCmd` to the storage one.
6259fn policy_cmd_to_storage(c: spg_sql::ast::PolicyCmd) -> spg_storage::PolicyCmd {
6260 use spg_sql::ast::PolicyCmd as A;
6261 use spg_storage::PolicyCmd as S;
6262 match c {
6263 A::All => S::All,
6264 A::Select => S::Select,
6265 A::Insert => S::Insert,
6266 A::Update => S::Update,
6267 A::Delete => S::Delete,
6268 }
6269}
6270
6271/// v7.38.19 — a DEFAULT that is a call to `nextval`, however it spells
6272/// its argument. `nextval('s')` and `nextval('s'::regclass)` are the
6273/// same column; `pg_dump` writes the second.
6274fn is_nextval_call(e: &Expr) -> bool {
6275 matches!(e, Expr::FunctionCall { name, args }
6276 if name.eq_ignore_ascii_case("nextval") && args.len() == 1)
6277}
6278
6279fn is_runtime_default_expr(expr: &Expr) -> bool {
6280 match expr {
6281 Expr::FunctionCall { .. } => true,
6282 Expr::Unary { expr, .. } => is_runtime_default_expr(expr),
6283 _ => false,
6284 }
6285}
6286
6287/// v7.38 (read01) — PG's canonical parenless deparse spelling for the SQL-
6288/// standard niladic keyword functions. The parser lowers `CURRENT_DATE` &c
6289/// to a synthetic `FunctionCall { name: "current_date", args: [] }`; PG's
6290/// `pg_get_expr` renders these as the bare uppercase keyword (not
6291/// `current_date()`), so a default that uses one must deparse the same way.
6292/// Returns `None` for a real function (`now()`) which keeps its call form.
6293fn pg_parenless_keyword(name: &str) -> Option<&'static str> {
6294 match name.to_ascii_lowercase().as_str() {
6295 "current_date" => Some("CURRENT_DATE"),
6296 "current_time" => Some("CURRENT_TIME"),
6297 "current_timestamp" => Some("CURRENT_TIMESTAMP"),
6298 "localtime" => Some("LOCALTIME"),
6299 "localtimestamp" => Some("LOCALTIMESTAMP"),
6300 "current_user" => Some("CURRENT_USER"),
6301 "session_user" => Some("SESSION_USER"),
6302 "current_role" => Some("CURRENT_ROLE"),
6303 "current_catalog" => Some("CURRENT_CATALOG"),
6304 _ => None,
6305 }
6306}
6307
6308/// v7.38 (read01) — deparse a column DEFAULT expression to the PG-compatible
6309/// source text cached on `ColumnSchema.default_text` (surfaced by
6310/// information_schema.columns.column_default / pg_attrdef / pg_get_expr).
6311///
6312/// SPG's `Expr` Display already matches PG's deparse for non-negative integer
6313/// / numeric / boolean literals, arithmetic (`(3 + 4)`), and ordinary function
6314/// calls (`now()`). This additionally matches PG for the shapes where Display
6315/// diverges: bare string literals (PG types them, `'hi'::text`), the parenless
6316/// SQL-standard keyword functions (`CURRENT_DATE`, not `current_date()`), and
6317/// negative numeric constants, which PG's `get_const_expr` folds into a typed
6318/// literal (`int DEFAULT -5` → `'-5'::integer`, `numeric DEFAULT -1.5` →
6319/// `'-1.5'::numeric`).
6320///
6321/// KNOWN Phase-2 residuals (fall through to Display, a valid but not
6322/// byte-identical-to-PG spelling — documented in the read01 checklist):
6323/// * integer literals wider than int4 (`bigint DEFAULT 5000000000` →
6324/// PG `'5000000000'::bigint`; SPG `5000000000`);
6325/// * string / numeric literals nested inside a larger expression, which PG
6326/// types per operand (`'hi' || 'there'` → PG `('hi'::text ||
6327/// 'there'::text)`). Full parity needs PG's recursive `get_rule_expr`
6328/// constant-typing deparser.
6329fn deparse_default(expr: &Expr, col_ty: DataType) -> alloc::string::String {
6330 match expr {
6331 // Bare string literal → PG's typed-literal form `'…'::<coltype>`.
6332 // 7.38.1 S5.2 — the typed-literal cast must name the SQL type
6333 // (`text[]`), not information_schema's category word (`ARRAY`):
6334 // pg_dump copies this text into the dumped DEFAULT, and
6335 // `'{}'::ARRAY` parses nowhere — not even back into SPG.
6336 Expr::Literal(Literal::String(s)) => alloc::format!(
6337 "'{}'::{}",
6338 s.replace('\'', "''"),
6339 crate::conversions::pg_type_name_for_error(col_ty)
6340 ),
6341 // r1054 — an ALREADY-typed string literal re-parses as a Cast
6342 // node, and the generic Display arm below rendered it
6343 // `('dflt')::text` where the first pass wrote `'dflt'::text`:
6344 // two producers of default_text, two spellings, and the dump
6345 // round-trip stopped being a fixed point on exactly that line.
6346 // Same normalized shape as the bare-literal arm (PG stores a
6347 // default through the assignment cast and reports the column's
6348 // type, so re-normalizing to `col_ty` matches PG here too).
6349 Expr::Cast { expr: inner, .. }
6350 if matches!(inner.as_ref(), Expr::Literal(Literal::String(_))) =>
6351 {
6352 let Expr::Literal(Literal::String(s)) = inner.as_ref() else {
6353 unreachable!("guarded by matches!")
6354 };
6355 alloc::format!(
6356 "'{}'::{}",
6357 s.replace('\'', "''"),
6358 crate::conversions::pg_type_name_for_error(col_ty)
6359 )
6360 }
6361 // v7.38.19 — a call renders its arguments the way PostgreSQL
6362 // prints them, which for a typed string literal is
6363 // `'zs'::regclass` and not `('zs')::regclass`.
6364 //
6365 // The generic Display arm below parenthesises a Cast, so
6366 // `nextval('zs'::regclass)` — what `pg_dump` writes for a serial
6367 // column, and what a schema-diff tool compares — read back as
6368 // `nextval(('zs')::regclass)`. It re-parses here and the dump
6369 // round-trip is a fixed point, so this never broke anything of
6370 // ours; it broke the comparison with theirs, which is the bar.
6371 //
6372 // r1054 fixed the same spelling for a default that IS a cast.
6373 // This is the same fix one level in.
6374 // Narrow on purpose: only a call that CARRIES such an argument
6375 // is re-rendered. Taking every call broke `CURRENT_DATE`, which
6376 // the parser lowers to a zero-argument `current_date` whose
6377 // Display prints the keyword — this arm printed the lowering.
6378 // The existing default-text test caught it in the same minute.
6379 Expr::FunctionCall { name, args }
6380 if args.iter().any(|a| {
6381 matches!(a, Expr::Cast { expr: inner, .. }
6382 if matches!(inner.as_ref(), Expr::Literal(Literal::String(_))))
6383 }) =>
6384 {
6385 let rendered: Vec<alloc::string::String> = args
6386 .iter()
6387 .map(|a| match a {
6388 Expr::Cast {
6389 expr: inner,
6390 target,
6391 } if matches!(inner.as_ref(), Expr::Literal(Literal::String(_))) => {
6392 let Expr::Literal(Literal::String(lit)) = inner.as_ref() else {
6393 unreachable!("guarded by matches!")
6394 };
6395 alloc::format!("'{}'::{target}", lit.replace('\'', "''"))
6396 }
6397 other => alloc::format!("{other}"),
6398 })
6399 .collect();
6400 alloc::format!("{name}({})", rendered.join(", "))
6401 }
6402 // Boolean literal → PG's lowercase `true` / `false` (SPG's Literal
6403 // Display emits uppercase `TRUE`).
6404 Expr::Literal(Literal::Bool(b)) => {
6405 alloc::string::String::from(if *b { "true" } else { "false" })
6406 }
6407 // Negative numeric constant: PG folds `- <lit>` into a typed Const.
6408 // The cast type is the *literal's* natural type (integer / numeric),
6409 // not the column type.
6410 Expr::Unary {
6411 op: spg_sql::ast::UnOp::Neg,
6412 expr: inner,
6413 } => match inner.as_ref() {
6414 Expr::Literal(Literal::Integer(n)) => alloc::format!("'-{n}'::integer"),
6415 Expr::Literal(Literal::Float(_) | Literal::NumericBig(_) | Literal::Numeric { .. }) => {
6416 alloc::format!("'-{inner}'::numeric")
6417 }
6418 _ => alloc::format!("{expr}"),
6419 },
6420 // Parenless SQL-standard keyword functions → bare uppercase keyword.
6421 Expr::FunctionCall { name, args } if args.is_empty() => {
6422 if let Some(kw) = pg_parenless_keyword(name) {
6423 alloc::string::String::from(kw)
6424 } else {
6425 alloc::format!("{expr}")
6426 }
6427 }
6428 _ => alloc::format!("{expr}"),
6429 }
6430}
6431
6432/// v7.39 (RLS) — deparse a policy `USING` / `WITH CHECK` qual to PG-compatible
6433/// text for pg_policy / pg_policies / pg_dump. SPG's `Expr` Display already
6434/// matches PG for column comparisons and operators; this recursively rewrites
6435/// the niladic SQL-standard keyword functions a policy qual commonly uses
6436/// (`current_user` → `CURRENT_USER`, &c) which Display would render as
6437/// `current_user()`. The stored form re-parses identically, so enforcement is
6438/// unaffected. (String-literal `::text` typing is the shared default_text
6439/// Phase-2 residual and is left to Display.)
6440pub(crate) fn deparse_policy_qual(e: &Expr) -> alloc::string::String {
6441 match e {
6442 Expr::FunctionCall { name, args } if args.is_empty() => pg_parenless_keyword(name)
6443 .map_or_else(|| alloc::format!("{e}"), alloc::string::String::from),
6444 Expr::Binary { lhs, op, rhs } => alloc::format!(
6445 "({} {op} {})",
6446 deparse_policy_qual(lhs),
6447 deparse_policy_qual(rhs)
6448 ),
6449 Expr::Unary { op, expr } => {
6450 use spg_sql::ast::UnOp;
6451 let inner = deparse_policy_qual(expr);
6452 match op {
6453 UnOp::Not => alloc::format!("(NOT {inner})"),
6454 UnOp::Neg => alloc::format!("(-{inner})"),
6455 UnOp::Plus => alloc::format!("(+{inner})"),
6456 UnOp::BitNot => alloc::format!("(~{inner})"),
6457 }
6458 }
6459 Expr::Cast { expr, target } => {
6460 alloc::format!("({}::{target})", deparse_policy_qual(expr))
6461 }
6462 Expr::IsNull { expr, negated } => {
6463 let inner = deparse_policy_qual(expr);
6464 if *negated {
6465 alloc::format!("({inner} IS NOT NULL)")
6466 } else {
6467 alloc::format!("({inner} IS NULL)")
6468 }
6469 }
6470 Expr::Like {
6471 expr,
6472 pattern,
6473 negated,
6474 case_insensitive,
6475 } => {
6476 let op = match (negated, case_insensitive) {
6477 (false, false) => "LIKE",
6478 (true, false) => "NOT LIKE",
6479 (false, true) => "ILIKE",
6480 (true, true) => "NOT ILIKE",
6481 };
6482 alloc::format!(
6483 "({} {op} {})",
6484 deparse_policy_qual(expr),
6485 deparse_policy_qual(pattern)
6486 )
6487 }
6488 Expr::FunctionCall { name, args } => {
6489 let rendered: alloc::vec::Vec<_> = args.iter().map(deparse_policy_qual).collect();
6490 alloc::format!("{name}({})", rendered.join(", "))
6491 }
6492 _ => alloc::format!("{e}"),
6493 }
6494}
6495
6496/// v7.17.0 Phase 1.4 — INSERT/UPDATE-time enum label check. When
6497/// `col_idx` has a registered label list, the cell value must be
6498/// NULL or one of the labels (case-sensitive per PG).
6499/// v7.17.0 Phase 3.P0-37 — validate + canonicalise a MySQL inline
6500/// SET cell. For non-SET columns this is a no-op pass-through.
6501///
6502/// Semantics:
6503/// * NULL preserved.
6504/// * Empty string → `''` (zero flags).
6505/// * Otherwise split on ',', trim each token, validate every
6506/// token against the column's variant list (error on miss),
6507/// de-dup, then re-emit in DEFINITION order joined by ','.
6508pub(crate) fn canonicalize_set_value(
6509 lookup: &alloc::collections::BTreeMap<usize, Vec<String>>,
6510 col_idx: usize,
6511 col_name: &str,
6512 value: Value<'static>,
6513) -> Result<Value<'static>, EngineError> {
6514 let Some(variants) = lookup.get(&col_idx) else {
6515 return Ok(value);
6516 };
6517 match value {
6518 Value::Null => Ok(Value::Null),
6519 Value::Text(s) => {
6520 if s.is_empty() {
6521 return Ok(Value::text(alloc::string::String::new()));
6522 }
6523 // Collect a presence-set of variant indices to keep
6524 // definition order + handle de-dup in one pass.
6525 let mut present = alloc::vec![false; variants.len()];
6526 for raw in s.split(',') {
6527 let tok = raw.trim();
6528 if tok.is_empty() {
6529 continue;
6530 }
6531 let idx = variants.iter().position(|v| v == tok).ok_or_else(|| {
6532 EngineError::Unsupported(alloc::format!(
6533 "column {col_name:?}: invalid SET token {tok:?}; \
6534 allowed: {variants:?}"
6535 ))
6536 })?;
6537 present[idx] = true;
6538 }
6539 // Re-emit in definition order.
6540 let mut out = alloc::string::String::new();
6541 let mut first = true;
6542 for (i, keep) in present.iter().enumerate() {
6543 if !keep {
6544 continue;
6545 }
6546 if !first {
6547 out.push(',');
6548 }
6549 first = false;
6550 out.push_str(&variants[i]);
6551 }
6552 Ok(Value::text(out))
6553 }
6554 other => Err(EngineError::Unsupported(alloc::format!(
6555 "column {col_name:?}: SET-typed column expects TEXT, got {}",
6556 crate::conversions::pg_type_name_for_error_opt(other.data_type())
6557 ))),
6558 }
6559}
6560
6561pub(crate) fn enforce_enum_label(
6562 lookup: &alloc::collections::BTreeMap<usize, Vec<String>>,
6563 col_idx: usize,
6564 col_name: &str,
6565 value: &Value,
6566) -> Result<(), EngineError> {
6567 if let Some(labels) = lookup.get(&col_idx) {
6568 match value {
6569 Value::Null => Ok(()),
6570 Value::Text(s) => {
6571 if labels.iter().any(|l| l == s) {
6572 Ok(())
6573 } else {
6574 Err(EngineError::Unsupported(alloc::format!(
6575 "column {col_name:?}: invalid enum label {s:?}; allowed: {labels:?}"
6576 )))
6577 }
6578 }
6579 other => Err(EngineError::Unsupported(alloc::format!(
6580 "column {col_name:?}: enum-typed column expects TEXT, got {}",
6581 crate::conversions::pg_type_name_for_error_opt(other.data_type())
6582 ))),
6583 }
6584 } else {
6585 Ok(())
6586 }
6587}
6588
6589fn column_def_to_schema(c: ColumnDef, mysql: bool) -> Result<ColumnSchema, EngineError> {
6590 let ty = column_type_to_data_type(c.ty);
6591 let mut schema = ColumnSchema::new(c.name.clone(), ty, c.nullable);
6592 // user_type_ref is the raw ident the parser couldn't resolve
6593 // to a built-in; classification into enum vs domain happens
6594 // at exec_create_table where we have catalog access. We
6595 // park it temporarily as user_enum_type and the engine
6596 // promotes domain bindings to user_domain_type before the
6597 // table is stored.
6598 if let Some(name) = c.user_type_ref {
6599 schema.user_enum_type = Some(name);
6600 }
6601 // v7.17.0 Phase 2.1 — render the ON UPDATE expression to
6602 // canonical text (the engine re-parses at UPDATE time).
6603 if let Some(expr) = c.on_update_runtime {
6604 schema.on_update_runtime = Some(alloc::format!("{expr}"));
6605 }
6606 // v7.17.0 Phase 2.5 — bridge the AST `Collation` enum to the
6607 // storage one. Same variants, different crates (spg-storage
6608 // owns no dep on spg-sql).
6609 // v7.39 (round 370, M4 P4a) — under the MySQL dialect a TEXT column
6610 // with NO explicit `COLLATE` takes the folding default collation
6611 // (utf8mb4_uca1400_ai_ci), so it stores CaseInsensitive and the
6612 // read/write paths fold it. An explicit `COLLATE utf8mb4_bin` keeps
6613 // Binary (byte-wise) — both resolve to AST `Binary`, so the explicit
6614 // flag is what tells them apart.
6615 let is_text_col = matches!(
6616 ty,
6617 spg_storage::DataType::Text
6618 | spg_storage::DataType::Varchar(_)
6619 | spg_storage::DataType::Char(_)
6620 );
6621 // v7.39 (round 676) — carry the collation NAME as written, which
6622 // `Collation` below cannot: it folds C / POSIX / en_US / default into
6623 // one value. `pg_attribute.attcollation` reads this to answer 950 for a
6624 // column declared `COLLATE "C"` instead of the type's default 100.
6625 schema.collation_name = c.collation_name.clone();
6626 schema.collation = if mysql && is_text_col && !c.collation_explicit {
6627 spg_storage::Collation::CaseInsensitive
6628 } else {
6629 match c.collation {
6630 spg_sql::ast::Collation::Binary => spg_storage::Collation::Binary,
6631 spg_sql::ast::Collation::CaseInsensitive => spg_storage::Collation::CaseInsensitive,
6632 }
6633 };
6634 // v7.17.0 Phase 4.4 — MySQL `UNSIGNED` flag propagates to
6635 // storage so engine INSERT / UPDATE can range-check.
6636 schema.is_unsigned = c.is_unsigned;
6637 // v7.39 (round 386, type-fidelity epic P1) — declared TINYINT /
6638 // MEDIUMINT width, lost when the type collapsed to SmallInt / Int.
6639 // Drives the epic-P2 write-path range check.
6640 schema.mysql_int_width = c.mysql_int_width.map(|w| match w {
6641 spg_sql::ast::MysqlIntWidth::Tiny => spg_storage::MysqlIntWidth::Tiny,
6642 spg_sql::ast::MysqlIntWidth::Medium => spg_storage::MysqlIntWidth::Medium,
6643 spg_sql::ast::MysqlIntWidth::Small => spg_storage::MysqlIntWidth::Small,
6644 spg_sql::ast::MysqlIntWidth::Int => spg_storage::MysqlIntWidth::Int,
6645 spg_sql::ast::MysqlIntWidth::Big => spg_storage::MysqlIntWidth::Big,
6646 });
6647 // v7.39 (round 424, type-fidelity epic) — declared fractional-seconds
6648 // precision of a MySQL temporal column. Drives write-path truncation
6649 // and render padding; None keeps PG's full-microsecond behaviour.
6650 schema.mysql_fsp = c.mysql_fsp;
6651 // v7.39 (round 389, type-fidelity epic P4a) — a "real" SMALLINT /
6652 // INT UNSIGNED holds a range its signed storage tag cannot (65535 /
6653 // 4294967295), so widen the storage one step and record the declared
6654 // width for the range check + dump rendering. The `is_none()` guard
6655 // skips TINYINT UNSIGNED (i16 already holds 0..255) and MEDIUMINT
6656 // UNSIGNED (i32 already holds 0..16777215) — they keep their tag.
6657 if schema.is_unsigned && schema.mysql_int_width.is_none() {
6658 match schema.ty {
6659 spg_storage::DataType::SmallInt => {
6660 schema.ty = spg_storage::DataType::Int;
6661 schema.mysql_int_width = Some(spg_storage::MysqlIntWidth::Small);
6662 }
6663 spg_storage::DataType::Int => {
6664 schema.ty = spg_storage::DataType::BigInt;
6665 schema.mysql_int_width = Some(spg_storage::MysqlIntWidth::Int);
6666 }
6667 // v7.39 (round 471, epic P4b) — BIGINT UNSIGNED reaches
6668 // 18446744073709551615, which i64 cannot hold at all: SPG used
6669 // to REFUSE anything past 2^63-1 with `expected BIGINT, got
6670 // NUMERIC(0)`, so a MariaDB table with a real u64 in it could
6671 // not be loaded. Numeric is i128-backed with scale 0 and
6672 // already compares, orders, indexes and renders as an exact
6673 // integer; the width marker keeps the declared type for
6674 // SHOW CREATE and information_schema.
6675 spg_storage::DataType::BigInt => {
6676 schema.ty = spg_storage::DataType::Numeric {
6677 precision: 20,
6678 scale: 0,
6679 };
6680 schema.mysql_int_width = Some(spg_storage::MysqlIntWidth::Big);
6681 }
6682 _ => {}
6683 }
6684 }
6685 // v7.17.0 Phase 3.P0-36 — MySQL inline ENUM variant list.
6686 // INSERT validation lives in coerce_value (Text → Text path
6687 // with the column's variant list as the accept-set).
6688 schema.inline_enum_variants = c.inline_enum_variants;
6689 // v7.17.0 Phase 3.P0-37 — MySQL inline SET variant list.
6690 // INSERT canonicalisation (de-dup + sort by definition order)
6691 // lives in the exec_insert path next to the ENUM check.
6692 schema.inline_set_variants = c.inline_set_variants;
6693 // v7.37.7(sentori Epic 3 P1)— stored generated-column
6694 // expression. Carry the Display-form source to storage; the
6695 // engine re-parses and re-evaluates on every INSERT / UPDATE.
6696 if let Some(gen_expr) = c.generated_stored_expr {
6697 schema.generated_stored_expr = Some(alloc::format!("{gen_expr}"));
6698 }
6699 // v7.38 (read01) — GENERATED ALWAYS AS IDENTITY marker. The engine
6700 // rejects an explicit non-DEFAULT INSERT value for such a column
6701 // unless the statement carries OVERRIDING SYSTEM VALUE.
6702 schema.identity_always = c.identity_always;
6703 if let Some(default_expr) = c.default {
6704 // v7.38 (read01) — cache the PG-compatible source text of the DEFAULT
6705 // expression for catalog introspection, independent of the
6706 // literal/runtime split below (which loses the source spelling).
6707 schema.default_text = Some(deparse_default(&default_expr, ty));
6708 // v7.9.21 — distinguish literal defaults (evaluated once
6709 // at CREATE TABLE) from expression defaults (deferred to
6710 // INSERT). Function calls (`now()`, `current_timestamp`
6711 // — see v7.9.20 keyword promotion) take the runtime path.
6712 // Literals continue to cache. mailrs G4.
6713 // v7.38.19 — a `nextval(…)` DEFAULT is the column being
6714 // NUMBERED, not an expression to re-evaluate per row.
6715 //
6716 // Advancing a sequence needs a mutable catalog, and the context a
6717 // runtime DEFAULT is evaluated in does not hold one -- so this
6718 // stored the call as text and every INSERT that left the column
6719 // to its default answered `nextval() requires a sequence
6720 // resolver (read-only context)`. PostgreSQL 18.4 inserts.
6721 //
6722 // The OTHER spelling of the same column has worked since v7.22:
6723 // `ALTER TABLE … SET DEFAULT nextval(…)` lowers to the
6724 // auto-increment marker, because that is what `pg_dump` emits
6725 // for a serial column and imports were losing their numbering.
6726 // Two spellings of one column definition disagreed about whether
6727 // the column worked at all. This is the same lowering, reached
6728 // from the other side.
6729 if is_nextval_call(&default_expr) {
6730 if !matches!(ty, DataType::SmallInt | DataType::Int | DataType::BigInt) {
6731 return Err(EngineError::Unsupported(alloc::format!(
6732 "auto-increment applies to integer columns only ({:?} is {ty:?})",
6733 c.name
6734 )));
6735 }
6736 schema.auto_increment = true;
6737 } else if is_runtime_default_expr(&default_expr) {
6738 let display = alloc::format!("{default_expr}");
6739 schema = schema.with_runtime_default(display);
6740 } else {
6741 let raw = literal_expr_to_value(default_expr)?;
6742 // v7.39 (round 259) — a column whose type is a user type is
6743 // still typed with the parser's Text placeholder here; the
6744 // real type only arrives when the domain binding is resolved
6745 // (exec_create_table). Coercing now made `w wd DEFAULT 7`
6746 // fail outright — a hard error on valid SQL — so the domain
6747 // case keeps the raw value and is coerced there instead.
6748 let coerced = if schema.user_enum_type.is_some() {
6749 raw
6750 } else {
6751 coerce_value(raw, ty, &c.name, 0)?
6752 };
6753 schema = schema.with_default(coerced);
6754 }
6755 }
6756 if c.auto_increment {
6757 // AUTO_INCREMENT only makes sense on integer-shaped columns.
6758 if !matches!(ty, DataType::SmallInt | DataType::Int | DataType::BigInt) {
6759 return Err(EngineError::Unsupported(alloc::format!(
6760 "AUTO_INCREMENT requires an integer column type, got {ty:?}"
6761 )));
6762 }
6763 schema = schema.with_auto_increment();
6764 }
6765 Ok(schema)
6766}
6767
6768/// v7.12.4 — render a function arg list into the
6769/// canonical form the storage layer caches as
6770/// [`spg_storage::FunctionDef::args_repr`]. The catalogue uses
6771/// this string for both display + as a coarse signature key
6772/// for the (deferred) overload resolution v7.12.5+ adds.
6773fn render_function_args(args: &[spg_sql::ast::FunctionArg]) -> alloc::string::String {
6774 use core::fmt::Write;
6775 let mut out = alloc::string::String::from("(");
6776 for (i, a) in args.iter().enumerate() {
6777 if i > 0 {
6778 out.push_str(", ");
6779 }
6780 match a.mode {
6781 spg_sql::ast::FunctionArgMode::In => {}
6782 spg_sql::ast::FunctionArgMode::Out => out.push_str("OUT "),
6783 spg_sql::ast::FunctionArgMode::InOut => out.push_str("INOUT "),
6784 }
6785 if let Some(n) = &a.name {
6786 out.push_str(n);
6787 out.push(' ');
6788 }
6789 match &a.ty {
6790 spg_sql::ast::FunctionArgType::Typed(t) => {
6791 let _ = write!(out, "{t}");
6792 }
6793 spg_sql::ast::FunctionArgType::Raw(s) => out.push_str(s),
6794 }
6795 }
6796 out.push(')');
6797 out
6798}
6799
6800/// v7.39 (read01 round 48) — is `name` already taken by a constraint on this
6801/// table? Checks the stored names of foreign keys, uniqueness constraints and
6802/// CHECKs. Constraints written before FILE_VERSION 60 have no stored name, so
6803/// they can't collide here — they are still reachable by their synthesised
6804/// name through `resolve_constraint`.
6805fn constraint_name_taken(table: &spg_storage::Table, name: &str) -> bool {
6806 let sch = table.schema();
6807 sch.foreign_keys
6808 .iter()
6809 .any(|f| f.name.as_deref() == Some(name))
6810 || sch
6811 .uniqueness_constraints
6812 .iter()
6813 .any(|u| u.name.as_deref() == Some(name))
6814 || sch.checks.iter().any(|c| c.name.as_deref() == Some(name))
6815}
6816
6817/// v7.39 (read01 round 58) — lowercase hex, for the synthetic credential a
6818/// passwordless `CREATE ROLE` gets (it can't log in, but the record must not
6819/// carry an empty password).
6820fn hex_of(bytes: &[u8]) -> alloc::string::String {
6821 use core::fmt::Write as _;
6822 let mut s = alloc::string::String::with_capacity(bytes.len() * 2);
6823 for b in bytes {
6824 let _ = write!(s, "{b:02x}");
6825 }
6826 s
6827}
6828
6829/// v7.39 (round 282) — render one argument type the way PG's NOTICE does.
6830///
6831/// PG's grammar has two productions for a type name: the SQL-standard
6832/// KEYWORDS (`int`, `character varying`, `double precision`, …) become a
6833/// `SystemTypeName`, which deparses schema-qualified with the internal
6834/// name — `pg_catalog.int4`; anything else is an ordinary identifier and
6835/// survives verbatim. So `int` prints as `pg_catalog.int4` while the
6836/// equally valid `int4` prints as `int4`, and `date` — not a type keyword
6837/// in that production — prints as `date`. Every entry below was read off
6838/// live PG 18.4 rather than inferred from the list's shape.
6839fn pg_signature_type_name(raw: &str) -> alloc::string::String {
6840 let mut norm = alloc::string::String::new();
6841 for word in raw.split_whitespace() {
6842 if !norm.is_empty() {
6843 norm.push(' ');
6844 }
6845 norm.push_str(&word.to_ascii_lowercase());
6846 }
6847 let internal = match norm.as_str() {
6848 "int" | "integer" => "int4",
6849 "smallint" => "int2",
6850 "bigint" => "int8",
6851 "real" => "float4",
6852 "float" | "double precision" => "float8",
6853 "decimal" | "dec" | "numeric" => "numeric",
6854 "boolean" => "bool",
6855 "varchar" | "character varying" => "varchar",
6856 "char" | "character" => "bpchar",
6857 "time" | "time without time zone" => "time",
6858 "time with time zone" => "timetz",
6859 "timestamp" | "timestamp without time zone" => "timestamp",
6860 "timestamp with time zone" => "timestamptz",
6861 "interval" => "interval",
6862 "bit" => "bit",
6863 "bit varying" => "varbit",
6864 _ => return raw.into(),
6865 };
6866 alloc::format!("pg_catalog.{internal}")
6867}
6868
6869/// v7.39 (round 735, S14/B3) — the FULL set of stored tables a
6870/// materialized-view body reads, or `None` when that set cannot be
6871/// PROVEN (CTEs, unions, subqueries anywhere, any non-table FROM
6872/// source, a join whose ON carries a subquery…). `None` means "always
6873/// refresh fully" — the conservative direction; an under-collected set
6874/// here would be a WRONG no-op serving stale data, so every uncertain
6875/// shape bails.
6876impl Engine {
6877 /// v7.39 (round 737, S14/B3 knife 2) — run buffered INSERTs through
6878 /// the view's projection and append the survivors. The body is a
6879 /// registered-maintainable single-table pure projection, so each new
6880 /// base row maps to at most one view row: eval the WHERE (absent =
6881 /// keep), then each item, against the base row.
6882 /// v7.39 (round 738) — apply buffered changes in ARRIVAL order.
6883 /// `Ok(None)` = this buffer cannot be applied incrementally (an
6884 /// Update change; or a delete/tombstone with no valid row map) —
6885 /// the caller takes the full path. Inserts run the projection and
6886 /// append; deletes and tombstones resolve base RowIds through the
6887 /// row map and remove the view rows, keeping the map's positions
6888 /// and expected length exact after every step.
6889 fn apply_matview_delta_ordered(
6890 &mut self,
6891 name: &str,
6892 body: &spg_sql::ast::SelectStatement,
6893 buf: &[spg_storage::RowChange],
6894 ) -> Result<Option<usize>, EngineError> {
6895 use spg_sql::ast::SelectItem;
6896 let needs_map = buf
6897 .iter()
6898 .any(|c| !matches!(c, spg_storage::RowChange::Insert { .. }));
6899 if needs_map {
6900 let Some((expected, _)) = self.matview_row_map.get(name) else {
6901 return Ok(None);
6902 };
6903 let live = self
6904 .active_catalog()
6905 .get(name)
6906 .map(|t| t.rows().len())
6907 .unwrap_or(usize::MAX);
6908 if live != *expected {
6909 // A vacuum (or anything else) moved the backing rows.
6910 self.matview_row_map.remove(name);
6911 return Ok(None);
6912 }
6913 }
6914 let base = self
6915 .matview_maintainable
6916 .get(name)
6917 .cloned()
6918 .expect("caller checked registration");
6919 let base_cols = self
6920 .active_catalog()
6921 .get(&base)
6922 .ok_or_else(|| {
6923 EngineError::Unsupported(alloc::format!(
6924 "materialized view {name:?} base table {base:?} missing"
6925 ))
6926 })?
6927 .schema()
6928 .columns
6929 .clone();
6930 let alias = body
6931 .from
6932 .as_ref()
6933 .and_then(|f| f.primary.alias.clone())
6934 .unwrap_or_else(|| base.clone());
6935 let mut applied = 0usize;
6936 for ch in buf {
6937 match ch {
6938 spg_storage::RowChange::Insert { row, rowid, .. } => {
6939 let keep = if let Some(w) = &body.where_ {
6940 let ctx = self.ev_ctx(&base_cols, Some(alias.as_str()));
6941 let cond = eval::eval_expr(w, row, &ctx).map_err(EngineError::Eval)?;
6942 crate::eval::predicate_is_true(&cond, "WHERE", ctx.mysql_dialect)?
6943 } else {
6944 true
6945 };
6946 if !keep {
6947 continue;
6948 }
6949 let mut vals = alloc::vec::Vec::with_capacity(body.items.len());
6950 {
6951 let ctx = self.ev_ctx(&base_cols, Some(alias.as_str()));
6952 for item in &body.items {
6953 let SelectItem::Expr { expr, .. } = item else {
6954 unreachable!("registration admits Expr items only");
6955 };
6956 vals.push(eval::eval_expr(expr, row, &ctx).map_err(EngineError::Eval)?);
6957 }
6958 }
6959 let cat = self.active_catalog_mut();
6960 let table = cat.get_mut(name).ok_or_else(|| {
6961 EngineError::Storage(spg_storage::StorageError::Corrupt(alloc::format!(
6962 "materialized view {name:?} backing table missing"
6963 )))
6964 })?;
6965 table
6966 .insert(spg_storage::Row::new(vals))
6967 .map_err(EngineError::Storage)?;
6968 let new_pos = table.rows().len() - 1;
6969 if let Some((expected, map)) = self.matview_row_map.get_mut(name) {
6970 map.insert(rowid.0, new_pos);
6971 *expected += 1;
6972 }
6973 applied += 1;
6974 }
6975 spg_storage::RowChange::Delete { rowids, .. }
6976 | spg_storage::RowChange::Tombstone { rowids, .. } => {
6977 // v7.39 (round 740) — TOMBSTONE the view row, never
6978 // physically remove it. delete_rows on a mid-table
6979 // position is O(table) in the persistent vec, and
6980 // every surviving map entry would need shifting —
6981 // measured 70 ms for THREE deletes over a 250k-row
6982 // view. A tombstone is O(1), keeps every physical
6983 // position (the map needs no shift and `expected`
6984 // means what it says), and the view's readers
6985 // already gate on MVCC visibility like any table.
6986 // Vacuumed/compacted views change their length and
6987 // the expected-length check catches it -> full.
6988 for rid in rowids {
6989 let Some((_, map)) = self.matview_row_map.get_mut(name) else {
6990 unreachable!("needs_map gated above");
6991 };
6992 let Some(pos) = map.remove(&rid.0) else {
6993 // A base row the WHERE filtered out — the
6994 // view never held it; nothing to remove.
6995 continue;
6996 };
6997 let v = self.writer_version_for_current_stmt();
6998 let cat = self.active_catalog_mut();
6999 let table = cat.get_mut(name).ok_or_else(|| {
7000 EngineError::Storage(spg_storage::StorageError::Corrupt(
7001 alloc::format!("materialized view {name:?} backing table missing"),
7002 ))
7003 })?;
7004 let _ = table.mark_row_deleted(pos, v);
7005 applied += 1;
7006 }
7007 }
7008 // v7.39 (round 739) — the Update arm: four quadrants of
7009 // (was the OLD row in the view?) x (does the NEW row
7010 // pass the WHERE?). In-place replacement keeps the map
7011 // untouched; a row leaving the view removes + shifts; a
7012 // row entering appends + records.
7013 spg_storage::RowChange::Update { new_row, rowid, .. } => {
7014 let keep = if let Some(w) = &body.where_ {
7015 let ctx = self.ev_ctx(&base_cols, Some(alias.as_str()));
7016 let r = spg_storage::Row::new(new_row.clone());
7017 let cond = eval::eval_expr(w, &r, &ctx).map_err(EngineError::Eval)?;
7018 crate::eval::predicate_is_true(&cond, "WHERE", ctx.mysql_dialect)?
7019 } else {
7020 true
7021 };
7022 let old_pos = self
7023 .matview_row_map
7024 .get(name)
7025 .and_then(|(_, m)| m.get(&rowid.0).copied());
7026 match (old_pos, keep) {
7027 (Some(pos), true) => {
7028 let mut vals = alloc::vec::Vec::with_capacity(body.items.len());
7029 {
7030 let ctx = self.ev_ctx(&base_cols, Some(alias.as_str()));
7031 let r = spg_storage::Row::new(new_row.clone());
7032 for item in &body.items {
7033 let SelectItem::Expr { expr, .. } = item else {
7034 unreachable!("registration admits Expr items only");
7035 };
7036 vals.push(
7037 eval::eval_expr(expr, &r, &ctx)
7038 .map_err(EngineError::Eval)?,
7039 );
7040 }
7041 }
7042 let cat = self.active_catalog_mut();
7043 let table = cat.get_mut(name).ok_or_else(|| {
7044 EngineError::Storage(spg_storage::StorageError::Corrupt(
7045 alloc::format!(
7046 "materialized view {name:?} backing table missing"
7047 ),
7048 ))
7049 })?;
7050 table.update_row(pos, vals).map_err(EngineError::Storage)?;
7051 applied += 1;
7052 }
7053 (Some(pos), false) => {
7054 let (_, map) = self
7055 .matview_row_map
7056 .get_mut(name)
7057 .expect("needs_map gated above");
7058 map.remove(&rowid.0);
7059 let v = self.writer_version_for_current_stmt();
7060 let cat = self.active_catalog_mut();
7061 let table = cat.get_mut(name).ok_or_else(|| {
7062 EngineError::Storage(spg_storage::StorageError::Corrupt(
7063 alloc::format!(
7064 "materialized view {name:?} backing table missing"
7065 ),
7066 ))
7067 })?;
7068 let _ = table.mark_row_deleted(pos, v);
7069 applied += 1;
7070 }
7071 (None, true) => {
7072 let mut vals = alloc::vec::Vec::with_capacity(body.items.len());
7073 {
7074 let ctx = self.ev_ctx(&base_cols, Some(alias.as_str()));
7075 let r = spg_storage::Row::new(new_row.clone());
7076 for item in &body.items {
7077 let SelectItem::Expr { expr, .. } = item else {
7078 unreachable!("registration admits Expr items only");
7079 };
7080 vals.push(
7081 eval::eval_expr(expr, &r, &ctx)
7082 .map_err(EngineError::Eval)?,
7083 );
7084 }
7085 }
7086 let cat = self.active_catalog_mut();
7087 let table = cat.get_mut(name).ok_or_else(|| {
7088 EngineError::Storage(spg_storage::StorageError::Corrupt(
7089 alloc::format!(
7090 "materialized view {name:?} backing table missing"
7091 ),
7092 ))
7093 })?;
7094 table
7095 .insert(spg_storage::Row::new(vals))
7096 .map_err(EngineError::Storage)?;
7097 let new_pos = table.rows().len() - 1;
7098 let (expected, map) = self
7099 .matview_row_map
7100 .get_mut(name)
7101 .expect("needs_map gated above");
7102 map.insert(rowid.0, new_pos);
7103 *expected += 1;
7104 applied += 1;
7105 }
7106 (None, false) => {}
7107 }
7108 }
7109 }
7110 }
7111 Ok(Some(applied))
7112 }
7113}
7114
7115/// v7.39 (round 737, S14/B3 knife 2) — the base table of a
7116/// DELTA-MAINTAINABLE view body, or None. Strictly narrower than
7117/// `matview_dep_tables`: ONE stored table, pure projection items, a
7118/// pure WHERE, and none of the shapes whose delta is not row-local
7119/// (aggregates / GROUP BY / DISTINCT [ON] / ORDER / LIMIT / OFFSET /
7120/// windows / SRFs — plus everything the dep collector already bails
7121/// on). Anything outside refreshes fully, as today.
7122fn matview_maintainable_base(stmt: &spg_sql::ast::SelectStatement) -> Option<String> {
7123 use spg_sql::ast::SelectItem;
7124 let deps = matview_dep_tables(stmt)?;
7125 if deps.len() != 1 {
7126 return None;
7127 }
7128 if stmt.distinct
7129 || !stmt.distinct_on.is_empty()
7130 || stmt.group_by.is_some()
7131 || stmt.group_by_all
7132 || stmt.having.is_some()
7133 || !stmt.order_by.is_empty()
7134 || stmt.limit.is_some()
7135 || stmt.offset.is_some()
7136 || !stmt.window_check_exprs.is_empty()
7137 || crate::aggregate::uses_aggregate(stmt)
7138 || crate::window::select_has_window(stmt)
7139 {
7140 return None;
7141 }
7142 for item in &stmt.items {
7143 let SelectItem::Expr { expr, .. } = item else {
7144 return None;
7145 };
7146 if !crate::eval::fully_compilable(expr) || crate::select::expr_contains_builtin_srf(expr) {
7147 return None;
7148 }
7149 }
7150 if let Some(w) = &stmt.where_
7151 && !crate::eval::fully_compilable(w)
7152 {
7153 return None;
7154 }
7155 deps.into_iter().next()
7156}
7157
7158fn matview_dep_tables(
7159 stmt: &spg_sql::ast::SelectStatement,
7160) -> Option<alloc::collections::BTreeSet<String>> {
7161 use spg_sql::ast::SelectItem;
7162 if !stmt.ctes.is_empty() || !stmt.unions.is_empty() {
7163 return None;
7164 }
7165 let from = stmt.from.as_ref()?;
7166 let mut out = alloc::collections::BTreeSet::new();
7167 let mut take = |t: &spg_sql::ast::TableRef| -> bool {
7168 if t.name.is_empty()
7169 || t.lateral_subquery.is_some()
7170 || t.unnest_expr.is_some()
7171 || t.generate_series_args.is_some()
7172 || t.as_of_segment.is_some()
7173 || t.jsonb_each_text_arg.is_some()
7174 || t.table_fn_call.is_some()
7175 || t.rows_from.is_some()
7176 || t.json_table.is_some()
7177 {
7178 return false;
7179 }
7180 out.insert(t.name.to_ascii_lowercase());
7181 true
7182 };
7183 if !take(&from.primary) {
7184 return None;
7185 }
7186 for j in &from.joins {
7187 if !take(&j.table) {
7188 return None;
7189 }
7190 if j.on.as_ref().is_some_and(crate::expr_has_subquery) {
7191 return None;
7192 }
7193 }
7194 let any_sub = stmt.items.iter().any(|i| match i {
7195 SelectItem::Expr { expr, .. } => crate::expr_has_subquery(expr),
7196 _ => false,
7197 }) || stmt.where_.as_ref().is_some_and(crate::expr_has_subquery)
7198 || stmt
7199 .group_by
7200 .as_ref()
7201 .is_some_and(|gs| gs.iter().any(crate::expr_has_subquery))
7202 || stmt.having.as_ref().is_some_and(crate::expr_has_subquery)
7203 || stmt
7204 .order_by
7205 .iter()
7206 .any(|o| crate::expr_has_subquery(&o.expr));
7207 if any_sub {
7208 return None;
7209 }
7210 Some(out)
7211}