1use std::cmp::Ordering;
5
6use prettytable::{Cell as PrintCell, Row as PrintRow, Table as PrintTable};
7use sqlparser::ast::{
8 AlterTable, AlterTableOperation, AssignmentTarget, BinaryOperator, CreateIndex, Delete, Expr,
9 FromTable, FunctionArg, FunctionArgExpr, FunctionArguments, IndexType, ObjectName,
10 ObjectNamePart, RenameTableNameKind, Statement, TableFactor, TableWithJoins, UnaryOperator,
11 Update, Value as AstValue,
12};
13
14use crate::error::{Result, SQLRiteError};
15use crate::sql::db::database::Database;
16use crate::sql::db::secondary_index::{IndexOrigin, SecondaryIndex};
17use crate::sql::db::table::{
18 DataType, FtsIndexEntry, HnswIndexEntry, Table, Value, parse_vector_literal,
19};
20use crate::sql::fts::{Bm25Params, PostingList};
21use crate::sql::hnsw::{DistanceMetric, HnswIndex};
22use crate::sql::parser::select::{OrderByClause, Projection, SelectQuery};
23
24pub struct SelectResult {
33 pub columns: Vec<String>,
34 pub rows: Vec<Vec<Value>>,
35}
36
37pub fn execute_select_rows(query: SelectQuery, db: &Database) -> Result<SelectResult> {
41 let table = db
42 .get_table(query.table_name.clone())
43 .map_err(|_| SQLRiteError::Internal(format!("Table '{}' not found", query.table_name)))?;
44
45 let projected_cols: Vec<String> = match &query.projection {
47 Projection::All => table.column_names(),
48 Projection::Columns(cols) => {
49 for c in cols {
50 if !table.contains_column(c.to_string()) {
51 return Err(SQLRiteError::Internal(format!(
52 "Column '{c}' does not exist on table '{}'",
53 query.table_name
54 )));
55 }
56 }
57 cols.clone()
58 }
59 };
60
61 let matching = match select_rowids(table, query.selection.as_ref())? {
65 RowidSource::IndexProbe(rowids) => rowids,
66 RowidSource::FullScan => {
67 let mut out = Vec::new();
68 for rowid in table.rowids() {
69 if let Some(expr) = &query.selection {
70 if !eval_predicate(expr, table, rowid)? {
71 continue;
72 }
73 }
74 out.push(rowid);
75 }
76 out
77 }
78 };
79 let mut matching = matching;
80
81 match (&query.order_by, query.limit) {
111 (Some(order), Some(k)) if try_hnsw_probe(table, &order.expr, k).is_some() => {
112 matching = try_hnsw_probe(table, &order.expr, k).unwrap();
113 }
114 (Some(order), Some(k))
115 if try_fts_probe(table, &order.expr, order.ascending, k).is_some() =>
116 {
117 matching = try_fts_probe(table, &order.expr, order.ascending, k).unwrap();
118 }
119 (Some(order), Some(k)) if k < matching.len() => {
120 matching = select_topk(&matching, table, order, k)?;
121 }
122 (Some(order), _) => {
123 sort_rowids(&mut matching, table, order)?;
124 if let Some(k) = query.limit {
125 matching.truncate(k);
126 }
127 }
128 (None, Some(k)) => {
129 matching.truncate(k);
130 }
131 (None, None) => {}
132 }
133
134 let mut rows: Vec<Vec<Value>> = Vec::with_capacity(matching.len());
138 for rowid in &matching {
139 let row: Vec<Value> = projected_cols
140 .iter()
141 .map(|col| table.get_value(col, *rowid).unwrap_or(Value::Null))
142 .collect();
143 rows.push(row);
144 }
145
146 Ok(SelectResult {
147 columns: projected_cols,
148 rows,
149 })
150}
151
152pub fn execute_select(query: SelectQuery, db: &Database) -> Result<(String, usize)> {
157 let result = execute_select_rows(query, db)?;
158 let row_count = result.rows.len();
159
160 let mut print_table = PrintTable::new();
161 let header_cells: Vec<PrintCell> = result.columns.iter().map(|c| PrintCell::new(c)).collect();
162 print_table.add_row(PrintRow::new(header_cells));
163
164 for row in &result.rows {
165 let cells: Vec<PrintCell> = row
166 .iter()
167 .map(|v| PrintCell::new(&v.to_display_string()))
168 .collect();
169 print_table.add_row(PrintRow::new(cells));
170 }
171
172 Ok((print_table.to_string(), row_count))
173}
174
175pub fn execute_delete(stmt: &Statement, db: &mut Database) -> Result<usize> {
177 let Statement::Delete(Delete {
178 from, selection, ..
179 }) = stmt
180 else {
181 return Err(SQLRiteError::Internal(
182 "execute_delete called on a non-DELETE statement".to_string(),
183 ));
184 };
185
186 let tables = match from {
187 FromTable::WithFromKeyword(t) | FromTable::WithoutKeyword(t) => t,
188 };
189 let table_name = extract_single_table_name(tables)?;
190
191 let matching: Vec<i64> = {
193 let table = db
194 .get_table(table_name.clone())
195 .map_err(|_| SQLRiteError::Internal(format!("Table '{table_name}' not found")))?;
196 match select_rowids(table, selection.as_ref())? {
197 RowidSource::IndexProbe(rowids) => rowids,
198 RowidSource::FullScan => {
199 let mut out = Vec::new();
200 for rowid in table.rowids() {
201 if let Some(expr) = selection {
202 if !eval_predicate(expr, table, rowid)? {
203 continue;
204 }
205 }
206 out.push(rowid);
207 }
208 out
209 }
210 }
211 };
212
213 let table = db.get_table_mut(table_name)?;
214 for rowid in &matching {
215 table.delete_row(*rowid);
216 }
217 if !matching.is_empty() {
226 for entry in &mut table.hnsw_indexes {
227 entry.needs_rebuild = true;
228 }
229 for entry in &mut table.fts_indexes {
230 entry.needs_rebuild = true;
231 }
232 }
233 Ok(matching.len())
234}
235
236pub fn execute_update(stmt: &Statement, db: &mut Database) -> Result<usize> {
238 let Statement::Update(Update {
239 table,
240 assignments,
241 from,
242 selection,
243 ..
244 }) = stmt
245 else {
246 return Err(SQLRiteError::Internal(
247 "execute_update called on a non-UPDATE statement".to_string(),
248 ));
249 };
250
251 if from.is_some() {
252 return Err(SQLRiteError::NotImplemented(
253 "UPDATE ... FROM is not supported yet".to_string(),
254 ));
255 }
256
257 let table_name = extract_table_name(table)?;
258
259 let mut parsed_assignments: Vec<(String, Expr)> = Vec::with_capacity(assignments.len());
261 {
262 let tbl = db
263 .get_table(table_name.clone())
264 .map_err(|_| SQLRiteError::Internal(format!("Table '{table_name}' not found")))?;
265 for a in assignments {
266 let col = match &a.target {
267 AssignmentTarget::ColumnName(name) => name
268 .0
269 .last()
270 .map(|p| p.to_string())
271 .ok_or_else(|| SQLRiteError::Internal("empty column name".to_string()))?,
272 AssignmentTarget::Tuple(_) => {
273 return Err(SQLRiteError::NotImplemented(
274 "tuple assignment targets are not supported".to_string(),
275 ));
276 }
277 };
278 if !tbl.contains_column(col.clone()) {
279 return Err(SQLRiteError::Internal(format!(
280 "UPDATE references unknown column '{col}'"
281 )));
282 }
283 parsed_assignments.push((col, a.value.clone()));
284 }
285 }
286
287 let work: Vec<(i64, Vec<(String, Value)>)> = {
291 let tbl = db.get_table(table_name.clone())?;
292 let matched_rowids: Vec<i64> = match select_rowids(tbl, selection.as_ref())? {
293 RowidSource::IndexProbe(rowids) => rowids,
294 RowidSource::FullScan => {
295 let mut out = Vec::new();
296 for rowid in tbl.rowids() {
297 if let Some(expr) = selection {
298 if !eval_predicate(expr, tbl, rowid)? {
299 continue;
300 }
301 }
302 out.push(rowid);
303 }
304 out
305 }
306 };
307 let mut rows_to_update = Vec::new();
308 for rowid in matched_rowids {
309 let mut values = Vec::with_capacity(parsed_assignments.len());
310 for (col, expr) in &parsed_assignments {
311 let v = eval_expr(expr, tbl, rowid)?;
314 values.push((col.clone(), v));
315 }
316 rows_to_update.push((rowid, values));
317 }
318 rows_to_update
319 };
320
321 let tbl = db.get_table_mut(table_name)?;
322 for (rowid, values) in &work {
323 for (col, v) in values {
324 tbl.set_value(col, *rowid, v.clone())?;
325 }
326 }
327
328 if !work.is_empty() {
337 let updated_columns: std::collections::HashSet<&str> = work
338 .iter()
339 .flat_map(|(_, values)| values.iter().map(|(c, _)| c.as_str()))
340 .collect();
341 for entry in &mut tbl.hnsw_indexes {
342 if updated_columns.contains(entry.column_name.as_str()) {
343 entry.needs_rebuild = true;
344 }
345 }
346 for entry in &mut tbl.fts_indexes {
347 if updated_columns.contains(entry.column_name.as_str()) {
348 entry.needs_rebuild = true;
349 }
350 }
351 }
352 Ok(work.len())
353}
354
355pub fn execute_create_index(stmt: &Statement, db: &mut Database) -> Result<String> {
367 let Statement::CreateIndex(CreateIndex {
368 name,
369 table_name,
370 columns,
371 using,
372 unique,
373 if_not_exists,
374 predicate,
375 ..
376 }) = stmt
377 else {
378 return Err(SQLRiteError::Internal(
379 "execute_create_index called on a non-CREATE-INDEX statement".to_string(),
380 ));
381 };
382
383 if predicate.is_some() {
384 return Err(SQLRiteError::NotImplemented(
385 "partial indexes (CREATE INDEX ... WHERE) are not supported yet".to_string(),
386 ));
387 }
388
389 if columns.len() != 1 {
390 return Err(SQLRiteError::NotImplemented(format!(
391 "multi-column indexes are not supported yet ({} columns given)",
392 columns.len()
393 )));
394 }
395
396 let index_name = name.as_ref().map(|n| n.to_string()).ok_or_else(|| {
397 SQLRiteError::NotImplemented(
398 "anonymous CREATE INDEX (no name) is not supported — give it a name".to_string(),
399 )
400 })?;
401
402 let method = match using {
408 Some(IndexType::Custom(ident)) if ident.value.eq_ignore_ascii_case("hnsw") => {
409 IndexMethod::Hnsw
410 }
411 Some(IndexType::Custom(ident)) if ident.value.eq_ignore_ascii_case("fts") => {
412 IndexMethod::Fts
413 }
414 Some(IndexType::Custom(ident)) if ident.value.eq_ignore_ascii_case("btree") => {
415 IndexMethod::Btree
416 }
417 Some(other) => {
418 return Err(SQLRiteError::NotImplemented(format!(
419 "CREATE INDEX … USING {other:?} is not supported \
420 (try `hnsw`, `fts`, or no USING clause)"
421 )));
422 }
423 None => IndexMethod::Btree,
424 };
425
426 let table_name_str = table_name.to_string();
427 let column_name = match &columns[0].column.expr {
428 Expr::Identifier(ident) => ident.value.clone(),
429 Expr::CompoundIdentifier(parts) => parts
430 .last()
431 .map(|p| p.value.clone())
432 .ok_or_else(|| SQLRiteError::Internal("empty compound identifier".to_string()))?,
433 other => {
434 return Err(SQLRiteError::NotImplemented(format!(
435 "CREATE INDEX only supports simple column references, got {other:?}"
436 )));
437 }
438 };
439
440 let (datatype, existing_rowids_and_values): (DataType, Vec<(i64, Value)>) = {
445 let table = db.get_table(table_name_str.clone()).map_err(|_| {
446 SQLRiteError::General(format!(
447 "CREATE INDEX references unknown table '{table_name_str}'"
448 ))
449 })?;
450 if !table.contains_column(column_name.clone()) {
451 return Err(SQLRiteError::General(format!(
452 "CREATE INDEX references unknown column '{column_name}' on table '{table_name_str}'"
453 )));
454 }
455 let col = table
456 .columns
457 .iter()
458 .find(|c| c.column_name == column_name)
459 .expect("we just verified the column exists");
460
461 if table.index_by_name(&index_name).is_some()
464 || table.hnsw_indexes.iter().any(|i| i.name == index_name)
465 || table.fts_indexes.iter().any(|i| i.name == index_name)
466 {
467 if *if_not_exists {
468 return Ok(index_name);
469 }
470 return Err(SQLRiteError::General(format!(
471 "index '{index_name}' already exists"
472 )));
473 }
474 let datatype = clone_datatype(&col.datatype);
475
476 let mut pairs = Vec::new();
477 for rowid in table.rowids() {
478 if let Some(v) = table.get_value(&column_name, rowid) {
479 pairs.push((rowid, v));
480 }
481 }
482 (datatype, pairs)
483 };
484
485 match method {
486 IndexMethod::Btree => create_btree_index(
487 db,
488 &table_name_str,
489 &index_name,
490 &column_name,
491 &datatype,
492 *unique,
493 &existing_rowids_and_values,
494 ),
495 IndexMethod::Hnsw => create_hnsw_index(
496 db,
497 &table_name_str,
498 &index_name,
499 &column_name,
500 &datatype,
501 *unique,
502 &existing_rowids_and_values,
503 ),
504 IndexMethod::Fts => create_fts_index(
505 db,
506 &table_name_str,
507 &index_name,
508 &column_name,
509 &datatype,
510 *unique,
511 &existing_rowids_and_values,
512 ),
513 }
514}
515
516pub fn execute_drop_table(
527 names: &[ObjectName],
528 if_exists: bool,
529 db: &mut Database,
530) -> Result<usize> {
531 if names.len() != 1 {
532 return Err(SQLRiteError::NotImplemented(
533 "DROP TABLE supports a single table per statement".to_string(),
534 ));
535 }
536 let name = names[0].to_string();
537
538 if name == crate::sql::pager::MASTER_TABLE_NAME {
539 return Err(SQLRiteError::General(format!(
540 "'{}' is a reserved name used by the internal schema catalog",
541 crate::sql::pager::MASTER_TABLE_NAME
542 )));
543 }
544
545 if !db.contains_table(name.clone()) {
546 return if if_exists {
547 Ok(0)
548 } else {
549 Err(SQLRiteError::General(format!(
550 "Table '{name}' does not exist"
551 )))
552 };
553 }
554
555 db.tables.remove(&name);
556 Ok(1)
557}
558
559pub fn execute_drop_index(
568 names: &[ObjectName],
569 if_exists: bool,
570 db: &mut Database,
571) -> Result<usize> {
572 if names.len() != 1 {
573 return Err(SQLRiteError::NotImplemented(
574 "DROP INDEX supports a single index per statement".to_string(),
575 ));
576 }
577 let name = names[0].to_string();
578
579 for table in db.tables.values_mut() {
580 if let Some(secondary) = table.secondary_indexes.iter().find(|i| i.name == name) {
581 if secondary.origin == IndexOrigin::Auto {
582 return Err(SQLRiteError::General(format!(
583 "cannot drop auto-created index '{name}' (drop the column or table instead)"
584 )));
585 }
586 table.secondary_indexes.retain(|i| i.name != name);
587 return Ok(1);
588 }
589 if table.hnsw_indexes.iter().any(|i| i.name == name) {
590 table.hnsw_indexes.retain(|i| i.name != name);
591 return Ok(1);
592 }
593 if table.fts_indexes.iter().any(|i| i.name == name) {
594 table.fts_indexes.retain(|i| i.name != name);
595 return Ok(1);
596 }
597 }
598
599 if if_exists {
600 Ok(0)
601 } else {
602 Err(SQLRiteError::General(format!(
603 "Index '{name}' does not exist"
604 )))
605 }
606}
607
608pub fn execute_alter_table(alter: AlterTable, db: &mut Database) -> Result<String> {
620 let table_name = alter.name.to_string();
621
622 if table_name == crate::sql::pager::MASTER_TABLE_NAME {
623 return Err(SQLRiteError::General(format!(
624 "'{}' is a reserved name used by the internal schema catalog",
625 crate::sql::pager::MASTER_TABLE_NAME
626 )));
627 }
628
629 if !db.contains_table(table_name.clone()) {
630 return if alter.if_exists {
631 Ok("ALTER TABLE: no-op (table does not exist)".to_string())
632 } else {
633 Err(SQLRiteError::General(format!(
634 "Table '{table_name}' does not exist"
635 )))
636 };
637 }
638
639 if alter.operations.len() != 1 {
640 return Err(SQLRiteError::NotImplemented(
641 "ALTER TABLE supports one operation per statement".to_string(),
642 ));
643 }
644
645 match &alter.operations[0] {
646 AlterTableOperation::RenameTable { table_name: kind } => {
647 let new_name = match kind {
648 RenameTableNameKind::To(name) => name.to_string(),
649 RenameTableNameKind::As(_) => {
650 return Err(SQLRiteError::NotImplemented(
651 "ALTER TABLE ... RENAME AS (MySQL-only) is not supported; use RENAME TO"
652 .to_string(),
653 ));
654 }
655 };
656 alter_rename_table(db, &table_name, &new_name)?;
657 Ok(format!(
658 "ALTER TABLE '{table_name}' RENAME TO '{new_name}' executed."
659 ))
660 }
661 AlterTableOperation::RenameColumn {
662 old_column_name,
663 new_column_name,
664 } => {
665 let old = old_column_name.value.clone();
666 let new = new_column_name.value.clone();
667 db.get_table_mut(table_name.clone())?
668 .rename_column(&old, &new)?;
669 Ok(format!(
670 "ALTER TABLE '{table_name}' RENAME COLUMN '{old}' TO '{new}' executed."
671 ))
672 }
673 AlterTableOperation::AddColumn {
674 column_def,
675 if_not_exists,
676 ..
677 } => {
678 let parsed = crate::sql::parser::create::parse_one_column(column_def)?;
679 let table = db.get_table_mut(table_name.clone())?;
680 if *if_not_exists && table.contains_column(parsed.name.clone()) {
681 return Ok(format!(
682 "ALTER TABLE '{table_name}' ADD COLUMN: no-op (column '{}' already exists)",
683 parsed.name
684 ));
685 }
686 let col_name = parsed.name.clone();
687 table.add_column(parsed)?;
688 Ok(format!(
689 "ALTER TABLE '{table_name}' ADD COLUMN '{col_name}' executed."
690 ))
691 }
692 AlterTableOperation::DropColumn {
693 column_names,
694 if_exists,
695 ..
696 } => {
697 if column_names.len() != 1 {
698 return Err(SQLRiteError::NotImplemented(
699 "ALTER TABLE DROP COLUMN supports a single column per statement".to_string(),
700 ));
701 }
702 let col_name = column_names[0].value.clone();
703 let table = db.get_table_mut(table_name.clone())?;
704 if *if_exists && !table.contains_column(col_name.clone()) {
705 return Ok(format!(
706 "ALTER TABLE '{table_name}' DROP COLUMN: no-op (column '{col_name}' does not exist)"
707 ));
708 }
709 table.drop_column(&col_name)?;
710 Ok(format!(
711 "ALTER TABLE '{table_name}' DROP COLUMN '{col_name}' executed."
712 ))
713 }
714 other => Err(SQLRiteError::NotImplemented(format!(
715 "ALTER TABLE operation {other:?} is not supported"
716 ))),
717 }
718}
719
720fn alter_rename_table(db: &mut Database, old: &str, new: &str) -> Result<()> {
726 if new == crate::sql::pager::MASTER_TABLE_NAME {
727 return Err(SQLRiteError::General(format!(
728 "'{}' is a reserved name used by the internal schema catalog",
729 crate::sql::pager::MASTER_TABLE_NAME
730 )));
731 }
732 if old == new {
733 return Ok(());
734 }
735 if db.contains_table(new.to_string()) {
736 return Err(SQLRiteError::General(format!(
737 "target table '{new}' already exists"
738 )));
739 }
740
741 let mut table = db
742 .tables
743 .remove(old)
744 .ok_or_else(|| SQLRiteError::General(format!("Table '{old}' does not exist")))?;
745 table.tb_name = new.to_string();
746 for idx in table.secondary_indexes.iter_mut() {
747 idx.table_name = new.to_string();
748 if idx.origin == IndexOrigin::Auto
749 && idx.name == SecondaryIndex::auto_name(old, &idx.column_name)
750 {
751 idx.name = SecondaryIndex::auto_name(new, &idx.column_name);
752 }
753 }
754 db.tables.insert(new.to_string(), table);
755 Ok(())
756}
757
758#[derive(Debug, Clone, Copy)]
762enum IndexMethod {
763 Btree,
764 Hnsw,
765 Fts,
767}
768
769fn create_btree_index(
771 db: &mut Database,
772 table_name: &str,
773 index_name: &str,
774 column_name: &str,
775 datatype: &DataType,
776 unique: bool,
777 existing: &[(i64, Value)],
778) -> Result<String> {
779 let mut idx = SecondaryIndex::new(
780 index_name.to_string(),
781 table_name.to_string(),
782 column_name.to_string(),
783 datatype,
784 unique,
785 IndexOrigin::Explicit,
786 )?;
787
788 for (rowid, v) in existing {
792 if unique && idx.would_violate_unique(v) {
793 return Err(SQLRiteError::General(format!(
794 "cannot create UNIQUE index '{index_name}': column '{column_name}' \
795 already contains the duplicate value {}",
796 v.to_display_string()
797 )));
798 }
799 idx.insert(v, *rowid)?;
800 }
801
802 let table_mut = db.get_table_mut(table_name.to_string())?;
803 table_mut.secondary_indexes.push(idx);
804 Ok(index_name.to_string())
805}
806
807fn create_hnsw_index(
809 db: &mut Database,
810 table_name: &str,
811 index_name: &str,
812 column_name: &str,
813 datatype: &DataType,
814 unique: bool,
815 existing: &[(i64, Value)],
816) -> Result<String> {
817 let dim = match datatype {
820 DataType::Vector(d) => *d,
821 other => {
822 return Err(SQLRiteError::General(format!(
823 "USING hnsw requires a VECTOR column; '{column_name}' is {other}"
824 )));
825 }
826 };
827
828 if unique {
829 return Err(SQLRiteError::General(
830 "UNIQUE has no meaning for HNSW indexes".to_string(),
831 ));
832 }
833
834 let seed = hash_str_to_seed(index_name);
842 let mut idx = HnswIndex::new(DistanceMetric::L2, seed);
843
844 let mut vec_map: std::collections::HashMap<i64, Vec<f32>> =
848 std::collections::HashMap::with_capacity(existing.len());
849 for (rowid, v) in existing {
850 match v {
851 Value::Vector(vec) => {
852 if vec.len() != dim {
853 return Err(SQLRiteError::Internal(format!(
854 "row {rowid} stores a {}-dim vector in column '{column_name}' \
855 declared as VECTOR({dim}) — schema invariant violated",
856 vec.len()
857 )));
858 }
859 vec_map.insert(*rowid, vec.clone());
860 }
861 _ => continue,
865 }
866 }
867
868 for (rowid, _) in existing {
869 if let Some(v) = vec_map.get(rowid) {
870 let v_clone = v.clone();
871 idx.insert(*rowid, &v_clone, |id| {
872 vec_map.get(&id).cloned().unwrap_or_default()
873 });
874 }
875 }
876
877 let table_mut = db.get_table_mut(table_name.to_string())?;
878 table_mut.hnsw_indexes.push(HnswIndexEntry {
879 name: index_name.to_string(),
880 column_name: column_name.to_string(),
881 index: idx,
882 needs_rebuild: false,
884 });
885 Ok(index_name.to_string())
886}
887
888fn create_fts_index(
893 db: &mut Database,
894 table_name: &str,
895 index_name: &str,
896 column_name: &str,
897 datatype: &DataType,
898 unique: bool,
899 existing: &[(i64, Value)],
900) -> Result<String> {
901 match datatype {
906 DataType::Text => {}
907 other => {
908 return Err(SQLRiteError::General(format!(
909 "USING fts requires a TEXT column; '{column_name}' is {other}"
910 )));
911 }
912 }
913
914 if unique {
915 return Err(SQLRiteError::General(
916 "UNIQUE has no meaning for FTS indexes".to_string(),
917 ));
918 }
919
920 let mut idx = PostingList::new();
921 for (rowid, v) in existing {
922 if let Value::Text(text) = v {
923 idx.insert(*rowid, text);
924 }
925 }
928
929 let table_mut = db.get_table_mut(table_name.to_string())?;
930 table_mut.fts_indexes.push(FtsIndexEntry {
931 name: index_name.to_string(),
932 column_name: column_name.to_string(),
933 index: idx,
934 needs_rebuild: false,
935 });
936 Ok(index_name.to_string())
937}
938
939fn hash_str_to_seed(s: &str) -> u64 {
943 let mut h: u64 = 0xCBF29CE484222325;
944 for b in s.as_bytes() {
945 h ^= *b as u64;
946 h = h.wrapping_mul(0x100000001B3);
947 }
948 h
949}
950
951fn clone_datatype(dt: &DataType) -> DataType {
954 match dt {
955 DataType::Integer => DataType::Integer,
956 DataType::Text => DataType::Text,
957 DataType::Real => DataType::Real,
958 DataType::Bool => DataType::Bool,
959 DataType::Vector(dim) => DataType::Vector(*dim),
960 DataType::Json => DataType::Json,
961 DataType::None => DataType::None,
962 DataType::Invalid => DataType::Invalid,
963 }
964}
965
966fn extract_single_table_name(tables: &[TableWithJoins]) -> Result<String> {
967 if tables.len() != 1 {
968 return Err(SQLRiteError::NotImplemented(
969 "multi-table DELETE is not supported yet".to_string(),
970 ));
971 }
972 extract_table_name(&tables[0])
973}
974
975fn extract_table_name(twj: &TableWithJoins) -> Result<String> {
976 if !twj.joins.is_empty() {
977 return Err(SQLRiteError::NotImplemented(
978 "JOIN is not supported yet".to_string(),
979 ));
980 }
981 match &twj.relation {
982 TableFactor::Table { name, .. } => Ok(name.to_string()),
983 _ => Err(SQLRiteError::NotImplemented(
984 "only plain table references are supported".to_string(),
985 )),
986 }
987}
988
989enum RowidSource {
991 IndexProbe(Vec<i64>),
995 FullScan,
998}
999
1000fn select_rowids(table: &Table, selection: Option<&Expr>) -> Result<RowidSource> {
1005 let Some(expr) = selection else {
1006 return Ok(RowidSource::FullScan);
1007 };
1008 let Some((col, literal)) = try_extract_equality(expr) else {
1009 return Ok(RowidSource::FullScan);
1010 };
1011 let Some(idx) = table.index_for_column(&col) else {
1012 return Ok(RowidSource::FullScan);
1013 };
1014
1015 let literal_value = match convert_literal(&literal) {
1019 Ok(v) => v,
1020 Err(_) => return Ok(RowidSource::FullScan),
1021 };
1022
1023 let mut rowids = idx.lookup(&literal_value);
1027 rowids.sort_unstable();
1028 Ok(RowidSource::IndexProbe(rowids))
1029}
1030
1031fn try_extract_equality(expr: &Expr) -> Option<(String, sqlparser::ast::Value)> {
1035 let peeled = match expr {
1037 Expr::Nested(inner) => inner.as_ref(),
1038 other => other,
1039 };
1040 let Expr::BinaryOp { left, op, right } = peeled else {
1041 return None;
1042 };
1043 if !matches!(op, BinaryOperator::Eq) {
1044 return None;
1045 }
1046 let col_from = |e: &Expr| -> Option<String> {
1047 match e {
1048 Expr::Identifier(ident) => Some(ident.value.clone()),
1049 Expr::CompoundIdentifier(parts) => parts.last().map(|p| p.value.clone()),
1050 _ => None,
1051 }
1052 };
1053 let literal_from = |e: &Expr| -> Option<sqlparser::ast::Value> {
1054 if let Expr::Value(v) = e {
1055 Some(v.value.clone())
1056 } else {
1057 None
1058 }
1059 };
1060 if let (Some(c), Some(l)) = (col_from(left), literal_from(right)) {
1061 return Some((c, l));
1062 }
1063 if let (Some(l), Some(c)) = (literal_from(left), col_from(right)) {
1064 return Some((c, l));
1065 }
1066 None
1067}
1068
1069fn try_hnsw_probe(table: &Table, order_expr: &Expr, k: usize) -> Option<Vec<i64>> {
1091 if k == 0 {
1092 return None;
1093 }
1094
1095 let func = match order_expr {
1097 Expr::Function(f) => f,
1098 _ => return None,
1099 };
1100 let fname = match func.name.0.as_slice() {
1101 [ObjectNamePart::Identifier(ident)] => ident.value.to_lowercase(),
1102 _ => return None,
1103 };
1104 if fname != "vec_distance_l2" {
1105 return None;
1106 }
1107
1108 let arg_list = match &func.args {
1110 FunctionArguments::List(l) => &l.args,
1111 _ => return None,
1112 };
1113 if arg_list.len() != 2 {
1114 return None;
1115 }
1116 let exprs: Vec<&Expr> = arg_list
1117 .iter()
1118 .filter_map(|a| match a {
1119 FunctionArg::Unnamed(FunctionArgExpr::Expr(e)) => Some(e),
1120 _ => None,
1121 })
1122 .collect();
1123 if exprs.len() != 2 {
1124 return None;
1125 }
1126
1127 let (col_name, query_vec) = match identify_indexed_arg_and_literal(exprs[0], exprs[1]) {
1132 Some(v) => v,
1133 None => match identify_indexed_arg_and_literal(exprs[1], exprs[0]) {
1134 Some(v) => v,
1135 None => return None,
1136 },
1137 };
1138
1139 let entry = table
1141 .hnsw_indexes
1142 .iter()
1143 .find(|e| e.column_name == col_name)?;
1144
1145 let declared_dim = match table.columns.iter().find(|c| c.column_name == col_name) {
1151 Some(c) => match &c.datatype {
1152 DataType::Vector(d) => *d,
1153 _ => return None,
1154 },
1155 None => return None,
1156 };
1157 if query_vec.len() != declared_dim {
1158 return None;
1159 }
1160
1161 let column_for_closure = col_name.clone();
1165 let table_ref = table;
1166 let result = entry.index.search(&query_vec, k, |id| {
1167 match table_ref.get_value(&column_for_closure, id) {
1168 Some(Value::Vector(v)) => v,
1169 _ => Vec::new(),
1170 }
1171 });
1172 Some(result)
1173}
1174
1175fn try_fts_probe(table: &Table, order_expr: &Expr, ascending: bool, k: usize) -> Option<Vec<i64>> {
1191 if k == 0 || ascending {
1192 return None;
1196 }
1197
1198 let func = match order_expr {
1199 Expr::Function(f) => f,
1200 _ => return None,
1201 };
1202 let fname = match func.name.0.as_slice() {
1203 [ObjectNamePart::Identifier(ident)] => ident.value.to_lowercase(),
1204 _ => return None,
1205 };
1206 if fname != "bm25_score" {
1207 return None;
1208 }
1209
1210 let arg_list = match &func.args {
1211 FunctionArguments::List(l) => &l.args,
1212 _ => return None,
1213 };
1214 if arg_list.len() != 2 {
1215 return None;
1216 }
1217 let exprs: Vec<&Expr> = arg_list
1218 .iter()
1219 .filter_map(|a| match a {
1220 FunctionArg::Unnamed(FunctionArgExpr::Expr(e)) => Some(e),
1221 _ => None,
1222 })
1223 .collect();
1224 if exprs.len() != 2 {
1225 return None;
1226 }
1227
1228 let col_name = match exprs[0] {
1230 Expr::Identifier(ident) if ident.quote_style.is_none() => ident.value.clone(),
1231 _ => return None,
1232 };
1233
1234 let query = match exprs[1] {
1238 Expr::Value(v) => match &v.value {
1239 AstValue::SingleQuotedString(s) => s.clone(),
1240 _ => return None,
1241 },
1242 _ => return None,
1243 };
1244
1245 let entry = table
1246 .fts_indexes
1247 .iter()
1248 .find(|e| e.column_name == col_name)?;
1249
1250 let scored = entry.index.query(&query, &Bm25Params::default());
1251 let mut out: Vec<i64> = scored.into_iter().map(|(id, _)| id).collect();
1252 if out.len() > k {
1253 out.truncate(k);
1254 }
1255 Some(out)
1256}
1257
1258fn identify_indexed_arg_and_literal(a: &Expr, b: &Expr) -> Option<(String, Vec<f32>)> {
1263 let col_name = match a {
1264 Expr::Identifier(ident) if ident.quote_style.is_none() => ident.value.clone(),
1265 _ => return None,
1266 };
1267 let lit_str = match b {
1268 Expr::Identifier(ident) if ident.quote_style == Some('[') => {
1269 format!("[{}]", ident.value)
1270 }
1271 _ => return None,
1272 };
1273 let v = parse_vector_literal(&lit_str).ok()?;
1274 Some((col_name, v))
1275}
1276
1277struct HeapEntry {
1290 key: Value,
1291 rowid: i64,
1292 asc: bool,
1293}
1294
1295impl PartialEq for HeapEntry {
1296 fn eq(&self, other: &Self) -> bool {
1297 self.cmp(other) == Ordering::Equal
1298 }
1299}
1300
1301impl Eq for HeapEntry {}
1302
1303impl PartialOrd for HeapEntry {
1304 fn partial_cmp(&self, other: &Self) -> Option<Ordering> {
1305 Some(self.cmp(other))
1306 }
1307}
1308
1309impl Ord for HeapEntry {
1310 fn cmp(&self, other: &Self) -> Ordering {
1311 let raw = compare_values(Some(&self.key), Some(&other.key));
1312 if self.asc { raw } else { raw.reverse() }
1313 }
1314}
1315
1316fn select_topk(
1325 matching: &[i64],
1326 table: &Table,
1327 order: &OrderByClause,
1328 k: usize,
1329) -> Result<Vec<i64>> {
1330 use std::collections::BinaryHeap;
1331
1332 if k == 0 || matching.is_empty() {
1333 return Ok(Vec::new());
1334 }
1335
1336 let mut heap: BinaryHeap<HeapEntry> = BinaryHeap::with_capacity(k + 1);
1337
1338 for &rowid in matching {
1339 let key = eval_expr(&order.expr, table, rowid)?;
1340 let entry = HeapEntry {
1341 key,
1342 rowid,
1343 asc: order.ascending,
1344 };
1345
1346 if heap.len() < k {
1347 heap.push(entry);
1348 } else {
1349 if entry < *heap.peek().unwrap() {
1353 heap.pop();
1354 heap.push(entry);
1355 }
1356 }
1357 }
1358
1359 Ok(heap
1364 .into_sorted_vec()
1365 .into_iter()
1366 .map(|e| e.rowid)
1367 .collect())
1368}
1369
1370fn sort_rowids(rowids: &mut [i64], table: &Table, order: &OrderByClause) -> Result<()> {
1371 let mut keys: Vec<(i64, Result<Value>)> = rowids
1379 .iter()
1380 .map(|r| (*r, eval_expr(&order.expr, table, *r)))
1381 .collect();
1382
1383 for (_, k) in &keys {
1387 if let Err(e) = k {
1388 return Err(SQLRiteError::General(format!(
1389 "ORDER BY expression failed: {e}"
1390 )));
1391 }
1392 }
1393
1394 keys.sort_by(|(_, ka), (_, kb)| {
1395 let va = ka.as_ref().unwrap();
1398 let vb = kb.as_ref().unwrap();
1399 let ord = compare_values(Some(va), Some(vb));
1400 if order.ascending { ord } else { ord.reverse() }
1401 });
1402
1403 for (i, (rowid, _)) in keys.into_iter().enumerate() {
1405 rowids[i] = rowid;
1406 }
1407 Ok(())
1408}
1409
1410fn compare_values(a: Option<&Value>, b: Option<&Value>) -> Ordering {
1411 match (a, b) {
1412 (None, None) => Ordering::Equal,
1413 (None, _) => Ordering::Less,
1414 (_, None) => Ordering::Greater,
1415 (Some(a), Some(b)) => match (a, b) {
1416 (Value::Null, Value::Null) => Ordering::Equal,
1417 (Value::Null, _) => Ordering::Less,
1418 (_, Value::Null) => Ordering::Greater,
1419 (Value::Integer(x), Value::Integer(y)) => x.cmp(y),
1420 (Value::Real(x), Value::Real(y)) => x.partial_cmp(y).unwrap_or(Ordering::Equal),
1421 (Value::Integer(x), Value::Real(y)) => {
1422 (*x as f64).partial_cmp(y).unwrap_or(Ordering::Equal)
1423 }
1424 (Value::Real(x), Value::Integer(y)) => {
1425 x.partial_cmp(&(*y as f64)).unwrap_or(Ordering::Equal)
1426 }
1427 (Value::Text(x), Value::Text(y)) => x.cmp(y),
1428 (Value::Bool(x), Value::Bool(y)) => x.cmp(y),
1429 (x, y) => x.to_display_string().cmp(&y.to_display_string()),
1431 },
1432 }
1433}
1434
1435pub fn eval_predicate(expr: &Expr, table: &Table, rowid: i64) -> Result<bool> {
1437 let v = eval_expr(expr, table, rowid)?;
1438 match v {
1439 Value::Bool(b) => Ok(b),
1440 Value::Null => Ok(false), Value::Integer(i) => Ok(i != 0),
1442 other => Err(SQLRiteError::Internal(format!(
1443 "WHERE clause must evaluate to boolean, got {}",
1444 other.to_display_string()
1445 ))),
1446 }
1447}
1448
1449fn eval_expr(expr: &Expr, table: &Table, rowid: i64) -> Result<Value> {
1450 match expr {
1451 Expr::Nested(inner) => eval_expr(inner, table, rowid),
1452
1453 Expr::Identifier(ident) => {
1454 if ident.quote_style == Some('[') {
1464 let raw = format!("[{}]", ident.value);
1465 let v = parse_vector_literal(&raw)?;
1466 return Ok(Value::Vector(v));
1467 }
1468 Ok(table.get_value(&ident.value, rowid).unwrap_or(Value::Null))
1469 }
1470
1471 Expr::CompoundIdentifier(parts) => {
1472 let col = parts
1474 .last()
1475 .map(|i| i.value.as_str())
1476 .ok_or_else(|| SQLRiteError::Internal("empty compound identifier".to_string()))?;
1477 Ok(table.get_value(col, rowid).unwrap_or(Value::Null))
1478 }
1479
1480 Expr::Value(v) => convert_literal(&v.value),
1481
1482 Expr::UnaryOp { op, expr } => {
1483 let inner = eval_expr(expr, table, rowid)?;
1484 match op {
1485 UnaryOperator::Not => match inner {
1486 Value::Bool(b) => Ok(Value::Bool(!b)),
1487 Value::Null => Ok(Value::Null),
1488 other => Err(SQLRiteError::Internal(format!(
1489 "NOT applied to non-boolean value: {}",
1490 other.to_display_string()
1491 ))),
1492 },
1493 UnaryOperator::Minus => match inner {
1494 Value::Integer(i) => Ok(Value::Integer(-i)),
1495 Value::Real(f) => Ok(Value::Real(-f)),
1496 Value::Null => Ok(Value::Null),
1497 other => Err(SQLRiteError::Internal(format!(
1498 "unary minus on non-numeric value: {}",
1499 other.to_display_string()
1500 ))),
1501 },
1502 UnaryOperator::Plus => Ok(inner),
1503 other => Err(SQLRiteError::NotImplemented(format!(
1504 "unary operator {other:?} is not supported"
1505 ))),
1506 }
1507 }
1508
1509 Expr::BinaryOp { left, op, right } => match op {
1510 BinaryOperator::And => {
1511 let l = eval_expr(left, table, rowid)?;
1512 let r = eval_expr(right, table, rowid)?;
1513 Ok(Value::Bool(as_bool(&l)? && as_bool(&r)?))
1514 }
1515 BinaryOperator::Or => {
1516 let l = eval_expr(left, table, rowid)?;
1517 let r = eval_expr(right, table, rowid)?;
1518 Ok(Value::Bool(as_bool(&l)? || as_bool(&r)?))
1519 }
1520 cmp @ (BinaryOperator::Eq
1521 | BinaryOperator::NotEq
1522 | BinaryOperator::Lt
1523 | BinaryOperator::LtEq
1524 | BinaryOperator::Gt
1525 | BinaryOperator::GtEq) => {
1526 let l = eval_expr(left, table, rowid)?;
1527 let r = eval_expr(right, table, rowid)?;
1528 if matches!(l, Value::Null) || matches!(r, Value::Null) {
1530 return Ok(Value::Bool(false));
1531 }
1532 let ord = compare_values(Some(&l), Some(&r));
1533 let result = match cmp {
1534 BinaryOperator::Eq => ord == Ordering::Equal,
1535 BinaryOperator::NotEq => ord != Ordering::Equal,
1536 BinaryOperator::Lt => ord == Ordering::Less,
1537 BinaryOperator::LtEq => ord != Ordering::Greater,
1538 BinaryOperator::Gt => ord == Ordering::Greater,
1539 BinaryOperator::GtEq => ord != Ordering::Less,
1540 _ => unreachable!(),
1541 };
1542 Ok(Value::Bool(result))
1543 }
1544 arith @ (BinaryOperator::Plus
1545 | BinaryOperator::Minus
1546 | BinaryOperator::Multiply
1547 | BinaryOperator::Divide
1548 | BinaryOperator::Modulo) => {
1549 let l = eval_expr(left, table, rowid)?;
1550 let r = eval_expr(right, table, rowid)?;
1551 eval_arith(arith, &l, &r)
1552 }
1553 BinaryOperator::StringConcat => {
1554 let l = eval_expr(left, table, rowid)?;
1555 let r = eval_expr(right, table, rowid)?;
1556 if matches!(l, Value::Null) || matches!(r, Value::Null) {
1557 return Ok(Value::Null);
1558 }
1559 Ok(Value::Text(format!(
1560 "{}{}",
1561 l.to_display_string(),
1562 r.to_display_string()
1563 )))
1564 }
1565 other => Err(SQLRiteError::NotImplemented(format!(
1566 "binary operator {other:?} is not supported yet"
1567 ))),
1568 },
1569
1570 Expr::Function(func) => eval_function(func, table, rowid),
1581
1582 other => Err(SQLRiteError::NotImplemented(format!(
1583 "unsupported expression in WHERE/projection: {other:?}"
1584 ))),
1585 }
1586}
1587
1588fn eval_function(func: &sqlparser::ast::Function, table: &Table, rowid: i64) -> Result<Value> {
1593 let name = match func.name.0.as_slice() {
1596 [ObjectNamePart::Identifier(ident)] => ident.value.to_lowercase(),
1597 _ => {
1598 return Err(SQLRiteError::NotImplemented(format!(
1599 "qualified function names not supported: {:?}",
1600 func.name
1601 )));
1602 }
1603 };
1604
1605 match name.as_str() {
1606 "vec_distance_l2" | "vec_distance_cosine" | "vec_distance_dot" => {
1607 let (a, b) = extract_two_vector_args(&name, &func.args, table, rowid)?;
1608 let dist = match name.as_str() {
1609 "vec_distance_l2" => vec_distance_l2(&a, &b),
1610 "vec_distance_cosine" => vec_distance_cosine(&a, &b)?,
1611 "vec_distance_dot" => vec_distance_dot(&a, &b),
1612 _ => unreachable!(),
1613 };
1614 Ok(Value::Real(dist as f64))
1620 }
1621 "json_extract" => json_fn_extract(&name, &func.args, table, rowid),
1626 "json_type" => json_fn_type(&name, &func.args, table, rowid),
1627 "json_array_length" => json_fn_array_length(&name, &func.args, table, rowid),
1628 "json_object_keys" => json_fn_object_keys(&name, &func.args, table, rowid),
1629 "fts_match" => {
1633 let (entry, query) = resolve_fts_args(&name, &func.args, table, rowid)?;
1634 Ok(Value::Bool(entry.index.matches(rowid, &query)))
1635 }
1636 "bm25_score" => {
1637 let (entry, query) = resolve_fts_args(&name, &func.args, table, rowid)?;
1638 let s = entry.index.score(rowid, &query, &Bm25Params::default());
1639 Ok(Value::Real(s))
1640 }
1641 other => Err(SQLRiteError::NotImplemented(format!(
1642 "unknown function: {other}(...)"
1643 ))),
1644 }
1645}
1646
1647fn resolve_fts_args<'t>(
1652 fn_name: &str,
1653 args: &FunctionArguments,
1654 table: &'t Table,
1655 rowid: i64,
1656) -> Result<(&'t FtsIndexEntry, String)> {
1657 let arg_list = match args {
1658 FunctionArguments::List(l) => &l.args,
1659 _ => {
1660 return Err(SQLRiteError::General(format!(
1661 "{fn_name}() expects exactly two arguments: (column, query_text)"
1662 )));
1663 }
1664 };
1665 if arg_list.len() != 2 {
1666 return Err(SQLRiteError::General(format!(
1667 "{fn_name}() expects exactly 2 arguments, got {}",
1668 arg_list.len()
1669 )));
1670 }
1671
1672 let col_expr = match &arg_list[0] {
1676 FunctionArg::Unnamed(FunctionArgExpr::Expr(e)) => e,
1677 other => {
1678 return Err(SQLRiteError::NotImplemented(format!(
1679 "{fn_name}() argument 0 must be a column name, got {other:?}"
1680 )));
1681 }
1682 };
1683 let col_name = match col_expr {
1684 Expr::Identifier(ident) => ident.value.clone(),
1685 Expr::CompoundIdentifier(parts) => parts
1686 .last()
1687 .map(|p| p.value.clone())
1688 .ok_or_else(|| SQLRiteError::Internal("empty compound identifier".to_string()))?,
1689 other => {
1690 return Err(SQLRiteError::General(format!(
1691 "{fn_name}() argument 0 must be a column reference, got {other:?}"
1692 )));
1693 }
1694 };
1695
1696 let q_expr = match &arg_list[1] {
1700 FunctionArg::Unnamed(FunctionArgExpr::Expr(e)) => e,
1701 other => {
1702 return Err(SQLRiteError::NotImplemented(format!(
1703 "{fn_name}() argument 1 must be a text expression, got {other:?}"
1704 )));
1705 }
1706 };
1707 let query = match eval_expr(q_expr, table, rowid)? {
1708 Value::Text(s) => s,
1709 other => {
1710 return Err(SQLRiteError::General(format!(
1711 "{fn_name}() argument 1 must be TEXT, got {}",
1712 other.to_display_string()
1713 )));
1714 }
1715 };
1716
1717 let entry = table
1718 .fts_indexes
1719 .iter()
1720 .find(|e| e.column_name == col_name)
1721 .ok_or_else(|| {
1722 SQLRiteError::General(format!(
1723 "{fn_name}({col_name}, ...): no FTS index on column '{col_name}' \
1724 (run CREATE INDEX <name> ON <table> USING fts({col_name}) first)"
1725 ))
1726 })?;
1727 Ok((entry, query))
1728}
1729
1730fn extract_json_and_path(
1744 fn_name: &str,
1745 args: &FunctionArguments,
1746 table: &Table,
1747 rowid: i64,
1748) -> Result<(String, String)> {
1749 let arg_list = match args {
1750 FunctionArguments::List(l) => &l.args,
1751 _ => {
1752 return Err(SQLRiteError::General(format!(
1753 "{fn_name}() expects 1 or 2 arguments"
1754 )));
1755 }
1756 };
1757 if !(arg_list.len() == 1 || arg_list.len() == 2) {
1758 return Err(SQLRiteError::General(format!(
1759 "{fn_name}() expects 1 or 2 arguments, got {}",
1760 arg_list.len()
1761 )));
1762 }
1763 let first_expr = match &arg_list[0] {
1765 FunctionArg::Unnamed(FunctionArgExpr::Expr(e)) => e,
1766 other => {
1767 return Err(SQLRiteError::NotImplemented(format!(
1768 "{fn_name}() argument 0 has unsupported shape: {other:?}"
1769 )));
1770 }
1771 };
1772 let json_text = match eval_expr(first_expr, table, rowid)? {
1773 Value::Text(s) => s,
1774 Value::Null => {
1775 return Err(SQLRiteError::General(format!(
1776 "{fn_name}() called on NULL — JSON column has no value for this row"
1777 )));
1778 }
1779 other => {
1780 return Err(SQLRiteError::General(format!(
1781 "{fn_name}() argument 0 is not JSON-typed: got {}",
1782 other.to_display_string()
1783 )));
1784 }
1785 };
1786
1787 let path = if arg_list.len() == 2 {
1789 let path_expr = match &arg_list[1] {
1790 FunctionArg::Unnamed(FunctionArgExpr::Expr(e)) => e,
1791 other => {
1792 return Err(SQLRiteError::NotImplemented(format!(
1793 "{fn_name}() argument 1 has unsupported shape: {other:?}"
1794 )));
1795 }
1796 };
1797 match eval_expr(path_expr, table, rowid)? {
1798 Value::Text(s) => s,
1799 other => {
1800 return Err(SQLRiteError::General(format!(
1801 "{fn_name}() path argument must be a string literal, got {}",
1802 other.to_display_string()
1803 )));
1804 }
1805 }
1806 } else {
1807 "$".to_string()
1808 };
1809
1810 Ok((json_text, path))
1811}
1812
1813fn walk_json_path<'a>(
1823 value: &'a serde_json::Value,
1824 path: &str,
1825) -> Result<Option<&'a serde_json::Value>> {
1826 let mut chars = path.chars().peekable();
1827 if chars.next() != Some('$') {
1828 return Err(SQLRiteError::General(format!(
1829 "JSON path must start with '$', got `{path}`"
1830 )));
1831 }
1832 let mut current = value;
1833 while let Some(&c) = chars.peek() {
1834 match c {
1835 '.' => {
1836 chars.next();
1837 let mut key = String::new();
1838 while let Some(&c) = chars.peek() {
1839 if c == '.' || c == '[' {
1840 break;
1841 }
1842 key.push(c);
1843 chars.next();
1844 }
1845 if key.is_empty() {
1846 return Err(SQLRiteError::General(format!(
1847 "JSON path has empty key after '.' in `{path}`"
1848 )));
1849 }
1850 match current.get(&key) {
1851 Some(v) => current = v,
1852 None => return Ok(None),
1853 }
1854 }
1855 '[' => {
1856 chars.next();
1857 let mut idx_str = String::new();
1858 while let Some(&c) = chars.peek() {
1859 if c == ']' {
1860 break;
1861 }
1862 idx_str.push(c);
1863 chars.next();
1864 }
1865 if chars.next() != Some(']') {
1866 return Err(SQLRiteError::General(format!(
1867 "JSON path has unclosed `[` in `{path}`"
1868 )));
1869 }
1870 let idx: usize = idx_str.trim().parse().map_err(|_| {
1871 SQLRiteError::General(format!(
1872 "JSON path has non-integer index `[{idx_str}]` in `{path}`"
1873 ))
1874 })?;
1875 match current.get(idx) {
1876 Some(v) => current = v,
1877 None => return Ok(None),
1878 }
1879 }
1880 other => {
1881 return Err(SQLRiteError::General(format!(
1882 "JSON path has unexpected character `{other}` in `{path}` \
1883 (expected `.`, `[`, or end-of-path)"
1884 )));
1885 }
1886 }
1887 }
1888 Ok(Some(current))
1889}
1890
1891fn json_value_to_sql(v: &serde_json::Value) -> Value {
1895 match v {
1896 serde_json::Value::Null => Value::Null,
1897 serde_json::Value::Bool(b) => Value::Bool(*b),
1898 serde_json::Value::Number(n) => {
1899 if let Some(i) = n.as_i64() {
1901 Value::Integer(i)
1902 } else if let Some(f) = n.as_f64() {
1903 Value::Real(f)
1904 } else {
1905 Value::Null
1906 }
1907 }
1908 serde_json::Value::String(s) => Value::Text(s.clone()),
1909 composite => Value::Text(composite.to_string()),
1913 }
1914}
1915
1916fn json_fn_extract(
1917 name: &str,
1918 args: &FunctionArguments,
1919 table: &Table,
1920 rowid: i64,
1921) -> Result<Value> {
1922 let (json_text, path) = extract_json_and_path(name, args, table, rowid)?;
1923 let parsed: serde_json::Value = serde_json::from_str(&json_text).map_err(|e| {
1924 SQLRiteError::General(format!("{name}() got invalid JSON `{json_text}`: {e}"))
1925 })?;
1926 match walk_json_path(&parsed, &path)? {
1927 Some(v) => Ok(json_value_to_sql(v)),
1928 None => Ok(Value::Null),
1929 }
1930}
1931
1932fn json_fn_type(name: &str, args: &FunctionArguments, table: &Table, rowid: i64) -> Result<Value> {
1933 let (json_text, path) = extract_json_and_path(name, args, table, rowid)?;
1934 let parsed: serde_json::Value = serde_json::from_str(&json_text).map_err(|e| {
1935 SQLRiteError::General(format!("{name}() got invalid JSON `{json_text}`: {e}"))
1936 })?;
1937 let resolved = match walk_json_path(&parsed, &path)? {
1938 Some(v) => v,
1939 None => return Ok(Value::Null),
1940 };
1941 let ty = match resolved {
1942 serde_json::Value::Null => "null",
1943 serde_json::Value::Bool(true) => "true",
1944 serde_json::Value::Bool(false) => "false",
1945 serde_json::Value::Number(n) => {
1946 if n.is_i64() || n.is_u64() {
1947 "integer"
1948 } else {
1949 "real"
1950 }
1951 }
1952 serde_json::Value::String(_) => "text",
1953 serde_json::Value::Array(_) => "array",
1954 serde_json::Value::Object(_) => "object",
1955 };
1956 Ok(Value::Text(ty.to_string()))
1957}
1958
1959fn json_fn_array_length(
1960 name: &str,
1961 args: &FunctionArguments,
1962 table: &Table,
1963 rowid: i64,
1964) -> Result<Value> {
1965 let (json_text, path) = extract_json_and_path(name, args, table, rowid)?;
1966 let parsed: serde_json::Value = serde_json::from_str(&json_text).map_err(|e| {
1967 SQLRiteError::General(format!("{name}() got invalid JSON `{json_text}`: {e}"))
1968 })?;
1969 let resolved = match walk_json_path(&parsed, &path)? {
1970 Some(v) => v,
1971 None => return Ok(Value::Null),
1972 };
1973 match resolved.as_array() {
1974 Some(arr) => Ok(Value::Integer(arr.len() as i64)),
1975 None => Err(SQLRiteError::General(format!(
1976 "{name}() resolved to a non-array value at path `{path}`"
1977 ))),
1978 }
1979}
1980
1981fn json_fn_object_keys(
1982 name: &str,
1983 args: &FunctionArguments,
1984 table: &Table,
1985 rowid: i64,
1986) -> Result<Value> {
1987 let (json_text, path) = extract_json_and_path(name, args, table, rowid)?;
1988 let parsed: serde_json::Value = serde_json::from_str(&json_text).map_err(|e| {
1989 SQLRiteError::General(format!("{name}() got invalid JSON `{json_text}`: {e}"))
1990 })?;
1991 let resolved = match walk_json_path(&parsed, &path)? {
1992 Some(v) => v,
1993 None => return Ok(Value::Null),
1994 };
1995 let obj = resolved.as_object().ok_or_else(|| {
1996 SQLRiteError::General(format!(
1997 "{name}() resolved to a non-object value at path `{path}`"
1998 ))
1999 })?;
2000 let keys: Vec<serde_json::Value> = obj
2007 .keys()
2008 .map(|k| serde_json::Value::String(k.clone()))
2009 .collect();
2010 Ok(Value::Text(serde_json::Value::Array(keys).to_string()))
2011}
2012
2013fn extract_two_vector_args(
2017 fn_name: &str,
2018 args: &FunctionArguments,
2019 table: &Table,
2020 rowid: i64,
2021) -> Result<(Vec<f32>, Vec<f32>)> {
2022 let arg_list = match args {
2023 FunctionArguments::List(l) => &l.args,
2024 _ => {
2025 return Err(SQLRiteError::General(format!(
2026 "{fn_name}() expects exactly two vector arguments"
2027 )));
2028 }
2029 };
2030 if arg_list.len() != 2 {
2031 return Err(SQLRiteError::General(format!(
2032 "{fn_name}() expects exactly 2 arguments, got {}",
2033 arg_list.len()
2034 )));
2035 }
2036 let mut out: Vec<Vec<f32>> = Vec::with_capacity(2);
2037 for (i, arg) in arg_list.iter().enumerate() {
2038 let expr = match arg {
2039 FunctionArg::Unnamed(FunctionArgExpr::Expr(e)) => e,
2040 other => {
2041 return Err(SQLRiteError::NotImplemented(format!(
2042 "{fn_name}() argument {i} has unsupported shape: {other:?}"
2043 )));
2044 }
2045 };
2046 let val = eval_expr(expr, table, rowid)?;
2047 match val {
2048 Value::Vector(v) => out.push(v),
2049 other => {
2050 return Err(SQLRiteError::General(format!(
2051 "{fn_name}() argument {i} is not a vector: got {}",
2052 other.to_display_string()
2053 )));
2054 }
2055 }
2056 }
2057 let b = out.pop().unwrap();
2058 let a = out.pop().unwrap();
2059 if a.len() != b.len() {
2060 return Err(SQLRiteError::General(format!(
2061 "{fn_name}(): vector dimensions don't match (lhs={}, rhs={})",
2062 a.len(),
2063 b.len()
2064 )));
2065 }
2066 Ok((a, b))
2067}
2068
2069pub(crate) fn vec_distance_l2(a: &[f32], b: &[f32]) -> f32 {
2072 debug_assert_eq!(a.len(), b.len());
2073 let mut sum = 0.0f32;
2074 for i in 0..a.len() {
2075 let d = a[i] - b[i];
2076 sum += d * d;
2077 }
2078 sum.sqrt()
2079}
2080
2081pub(crate) fn vec_distance_cosine(a: &[f32], b: &[f32]) -> Result<f32> {
2091 debug_assert_eq!(a.len(), b.len());
2092 let mut dot = 0.0f32;
2093 let mut norm_a_sq = 0.0f32;
2094 let mut norm_b_sq = 0.0f32;
2095 for i in 0..a.len() {
2096 dot += a[i] * b[i];
2097 norm_a_sq += a[i] * a[i];
2098 norm_b_sq += b[i] * b[i];
2099 }
2100 let denom = (norm_a_sq * norm_b_sq).sqrt();
2101 if denom == 0.0 {
2102 return Err(SQLRiteError::General(
2103 "vec_distance_cosine() is undefined for zero-magnitude vectors".to_string(),
2104 ));
2105 }
2106 Ok(1.0 - dot / denom)
2107}
2108
2109pub(crate) fn vec_distance_dot(a: &[f32], b: &[f32]) -> f32 {
2113 debug_assert_eq!(a.len(), b.len());
2114 let mut dot = 0.0f32;
2115 for i in 0..a.len() {
2116 dot += a[i] * b[i];
2117 }
2118 -dot
2119}
2120
2121fn eval_arith(op: &BinaryOperator, l: &Value, r: &Value) -> Result<Value> {
2124 if matches!(l, Value::Null) || matches!(r, Value::Null) {
2125 return Ok(Value::Null);
2126 }
2127 match (l, r) {
2128 (Value::Integer(a), Value::Integer(b)) => match op {
2129 BinaryOperator::Plus => Ok(Value::Integer(a.wrapping_add(*b))),
2130 BinaryOperator::Minus => Ok(Value::Integer(a.wrapping_sub(*b))),
2131 BinaryOperator::Multiply => Ok(Value::Integer(a.wrapping_mul(*b))),
2132 BinaryOperator::Divide => {
2133 if *b == 0 {
2134 Err(SQLRiteError::General("division by zero".to_string()))
2135 } else {
2136 Ok(Value::Integer(a / b))
2137 }
2138 }
2139 BinaryOperator::Modulo => {
2140 if *b == 0 {
2141 Err(SQLRiteError::General("modulo by zero".to_string()))
2142 } else {
2143 Ok(Value::Integer(a % b))
2144 }
2145 }
2146 _ => unreachable!(),
2147 },
2148 (a, b) => {
2150 let af = as_number(a)?;
2151 let bf = as_number(b)?;
2152 match op {
2153 BinaryOperator::Plus => Ok(Value::Real(af + bf)),
2154 BinaryOperator::Minus => Ok(Value::Real(af - bf)),
2155 BinaryOperator::Multiply => Ok(Value::Real(af * bf)),
2156 BinaryOperator::Divide => {
2157 if bf == 0.0 {
2158 Err(SQLRiteError::General("division by zero".to_string()))
2159 } else {
2160 Ok(Value::Real(af / bf))
2161 }
2162 }
2163 BinaryOperator::Modulo => {
2164 if bf == 0.0 {
2165 Err(SQLRiteError::General("modulo by zero".to_string()))
2166 } else {
2167 Ok(Value::Real(af % bf))
2168 }
2169 }
2170 _ => unreachable!(),
2171 }
2172 }
2173 }
2174}
2175
2176fn as_number(v: &Value) -> Result<f64> {
2177 match v {
2178 Value::Integer(i) => Ok(*i as f64),
2179 Value::Real(f) => Ok(*f),
2180 Value::Bool(b) => Ok(if *b { 1.0 } else { 0.0 }),
2181 other => Err(SQLRiteError::General(format!(
2182 "arithmetic on non-numeric value '{}'",
2183 other.to_display_string()
2184 ))),
2185 }
2186}
2187
2188fn as_bool(v: &Value) -> Result<bool> {
2189 match v {
2190 Value::Bool(b) => Ok(*b),
2191 Value::Null => Ok(false),
2192 Value::Integer(i) => Ok(*i != 0),
2193 other => Err(SQLRiteError::Internal(format!(
2194 "expected boolean, got {}",
2195 other.to_display_string()
2196 ))),
2197 }
2198}
2199
2200fn convert_literal(v: &sqlparser::ast::Value) -> Result<Value> {
2201 use sqlparser::ast::Value as AstValue;
2202 match v {
2203 AstValue::Number(n, _) => {
2204 if let Ok(i) = n.parse::<i64>() {
2205 Ok(Value::Integer(i))
2206 } else if let Ok(f) = n.parse::<f64>() {
2207 Ok(Value::Real(f))
2208 } else {
2209 Err(SQLRiteError::Internal(format!(
2210 "could not parse numeric literal '{n}'"
2211 )))
2212 }
2213 }
2214 AstValue::SingleQuotedString(s) => Ok(Value::Text(s.clone())),
2215 AstValue::Boolean(b) => Ok(Value::Bool(*b)),
2216 AstValue::Null => Ok(Value::Null),
2217 other => Err(SQLRiteError::NotImplemented(format!(
2218 "unsupported literal value: {other:?}"
2219 ))),
2220 }
2221}
2222
2223#[cfg(test)]
2224mod tests {
2225 use super::*;
2226
2227 fn approx_eq(a: f32, b: f32, eps: f32) -> bool {
2234 (a - b).abs() < eps
2235 }
2236
2237 #[test]
2238 fn vec_distance_l2_identical_is_zero() {
2239 let v = vec![0.1, 0.2, 0.3];
2240 assert_eq!(vec_distance_l2(&v, &v), 0.0);
2241 }
2242
2243 #[test]
2244 fn vec_distance_l2_unit_basis_is_sqrt2() {
2245 let a = vec![1.0, 0.0];
2247 let b = vec![0.0, 1.0];
2248 assert!(approx_eq(vec_distance_l2(&a, &b), 2.0_f32.sqrt(), 1e-6));
2249 }
2250
2251 #[test]
2252 fn vec_distance_l2_known_value() {
2253 let a = vec![0.0, 0.0, 0.0];
2255 let b = vec![3.0, 4.0, 0.0];
2256 assert!(approx_eq(vec_distance_l2(&a, &b), 5.0, 1e-6));
2257 }
2258
2259 #[test]
2260 fn vec_distance_cosine_identical_is_zero() {
2261 let v = vec![0.1, 0.2, 0.3];
2262 let d = vec_distance_cosine(&v, &v).unwrap();
2263 assert!(approx_eq(d, 0.0, 1e-6), "cos(v,v) = {d}, expected ≈ 0");
2264 }
2265
2266 #[test]
2267 fn vec_distance_cosine_orthogonal_is_one() {
2268 let a = vec![1.0, 0.0];
2271 let b = vec![0.0, 1.0];
2272 assert!(approx_eq(vec_distance_cosine(&a, &b).unwrap(), 1.0, 1e-6));
2273 }
2274
2275 #[test]
2276 fn vec_distance_cosine_opposite_is_two() {
2277 let a = vec![1.0, 0.0, 0.0];
2279 let b = vec![-1.0, 0.0, 0.0];
2280 assert!(approx_eq(vec_distance_cosine(&a, &b).unwrap(), 2.0, 1e-6));
2281 }
2282
2283 #[test]
2284 fn vec_distance_cosine_zero_magnitude_errors() {
2285 let a = vec![0.0, 0.0];
2287 let b = vec![1.0, 0.0];
2288 let err = vec_distance_cosine(&a, &b).unwrap_err();
2289 assert!(format!("{err}").contains("zero-magnitude"));
2290 }
2291
2292 #[test]
2293 fn vec_distance_dot_negates() {
2294 let a = vec![1.0, 2.0, 3.0];
2296 let b = vec![4.0, 5.0, 6.0];
2297 assert!(approx_eq(vec_distance_dot(&a, &b), -32.0, 1e-6));
2298 }
2299
2300 #[test]
2301 fn vec_distance_dot_orthogonal_is_zero() {
2302 let a = vec![1.0, 0.0];
2304 let b = vec![0.0, 1.0];
2305 assert_eq!(vec_distance_dot(&a, &b), 0.0);
2306 }
2307
2308 #[test]
2309 fn vec_distance_dot_unit_norm_matches_cosine_minus_one() {
2310 let a = vec![0.6f32, 0.8]; let b = vec![0.8f32, 0.6]; let dot = vec_distance_dot(&a, &b);
2316 let cos = vec_distance_cosine(&a, &b).unwrap();
2317 assert!(approx_eq(dot, cos - 1.0, 1e-5));
2318 }
2319
2320 use crate::sql::db::database::Database;
2325 use crate::sql::parser::select::SelectQuery;
2326 use sqlparser::dialect::SQLiteDialect;
2327 use sqlparser::parser::Parser;
2328
2329 fn seed_score_table(n: usize) -> Database {
2342 let mut db = Database::new("tempdb".to_string());
2343 crate::sql::process_command(
2344 "CREATE TABLE docs (id INTEGER PRIMARY KEY, score REAL);",
2345 &mut db,
2346 )
2347 .expect("create");
2348 for i in 0..n {
2349 let score = ((i as u64).wrapping_mul(2_654_435_761) % 1_000_000) as f64;
2353 let sql = format!("INSERT INTO docs (score) VALUES ({score});");
2354 crate::sql::process_command(&sql, &mut db).expect("insert");
2355 }
2356 db
2357 }
2358
2359 fn parse_select(sql: &str) -> SelectQuery {
2363 let dialect = SQLiteDialect {};
2364 let mut ast = Parser::parse_sql(&dialect, sql).expect("parse");
2365 let stmt = ast.pop().expect("one statement");
2366 SelectQuery::new(&stmt).expect("select-query")
2367 }
2368
2369 #[test]
2370 fn topk_matches_full_sort_asc() {
2371 let db = seed_score_table(200);
2374 let table = db.get_table("docs".to_string()).unwrap();
2375 let q = parse_select("SELECT * FROM docs ORDER BY score ASC LIMIT 10;");
2376 let order = q.order_by.as_ref().unwrap();
2377 let all_rowids = table.rowids();
2378
2379 let mut full = all_rowids.clone();
2381 sort_rowids(&mut full, table, order).unwrap();
2382 full.truncate(10);
2383
2384 let topk = select_topk(&all_rowids, table, order, 10).unwrap();
2386
2387 assert_eq!(topk, full, "top-k via heap should match full-sort+truncate");
2388 }
2389
2390 #[test]
2391 fn topk_matches_full_sort_desc() {
2392 let db = seed_score_table(200);
2394 let table = db.get_table("docs".to_string()).unwrap();
2395 let q = parse_select("SELECT * FROM docs ORDER BY score DESC LIMIT 10;");
2396 let order = q.order_by.as_ref().unwrap();
2397 let all_rowids = table.rowids();
2398
2399 let mut full = all_rowids.clone();
2400 sort_rowids(&mut full, table, order).unwrap();
2401 full.truncate(10);
2402
2403 let topk = select_topk(&all_rowids, table, order, 10).unwrap();
2404
2405 assert_eq!(
2406 topk, full,
2407 "top-k DESC via heap should match full-sort+truncate"
2408 );
2409 }
2410
2411 #[test]
2412 fn topk_k_larger_than_n_returns_everything_sorted() {
2413 let db = seed_score_table(50);
2418 let table = db.get_table("docs".to_string()).unwrap();
2419 let q = parse_select("SELECT * FROM docs ORDER BY score ASC LIMIT 1000;");
2420 let order = q.order_by.as_ref().unwrap();
2421 let topk = select_topk(&table.rowids(), table, order, 1000).unwrap();
2422 assert_eq!(topk.len(), 50);
2423 let scores: Vec<f64> = topk
2425 .iter()
2426 .filter_map(|r| match table.get_value("score", *r) {
2427 Some(Value::Real(f)) => Some(f),
2428 _ => None,
2429 })
2430 .collect();
2431 assert!(scores.windows(2).all(|w| w[0] <= w[1]));
2432 }
2433
2434 #[test]
2435 fn topk_k_zero_returns_empty() {
2436 let db = seed_score_table(10);
2437 let table = db.get_table("docs".to_string()).unwrap();
2438 let q = parse_select("SELECT * FROM docs ORDER BY score ASC LIMIT 1;");
2439 let order = q.order_by.as_ref().unwrap();
2440 let topk = select_topk(&table.rowids(), table, order, 0).unwrap();
2441 assert!(topk.is_empty());
2442 }
2443
2444 #[test]
2445 fn topk_empty_input_returns_empty() {
2446 let db = seed_score_table(0);
2447 let table = db.get_table("docs".to_string()).unwrap();
2448 let q = parse_select("SELECT * FROM docs ORDER BY score ASC LIMIT 5;");
2449 let order = q.order_by.as_ref().unwrap();
2450 let topk = select_topk(&[], table, order, 5).unwrap();
2451 assert!(topk.is_empty());
2452 }
2453
2454 #[test]
2455 fn topk_works_through_select_executor_with_distance_function() {
2456 let mut db = Database::new("tempdb".to_string());
2460 crate::sql::process_command(
2461 "CREATE TABLE docs (id INTEGER PRIMARY KEY, e VECTOR(2));",
2462 &mut db,
2463 )
2464 .unwrap();
2465 for v in &[
2472 "[1.0, 0.0]",
2473 "[2.0, 0.0]",
2474 "[0.0, 3.0]",
2475 "[1.0, 4.0]",
2476 "[10.0, 10.0]",
2477 ] {
2478 crate::sql::process_command(&format!("INSERT INTO docs (e) VALUES ({v});"), &mut db)
2479 .unwrap();
2480 }
2481 let resp = crate::sql::process_command(
2482 "SELECT id FROM docs ORDER BY vec_distance_l2(e, [1.0, 0.0]) ASC LIMIT 3;",
2483 &mut db,
2484 )
2485 .unwrap();
2486 assert!(resp.contains("3 rows returned"), "got: {resp}");
2489 }
2490
2491 #[test]
2514 #[ignore]
2515 fn topk_benchmark() {
2516 use std::time::Instant;
2517 const N: usize = 10_000;
2518 const K: usize = 10;
2519
2520 let db = seed_score_table(N);
2521 let table = db.get_table("docs".to_string()).unwrap();
2522 let q = parse_select("SELECT * FROM docs ORDER BY score ASC LIMIT 10;");
2523 let order = q.order_by.as_ref().unwrap();
2524 let all_rowids = table.rowids();
2525
2526 let t0 = Instant::now();
2528 let _topk = select_topk(&all_rowids, table, order, K).unwrap();
2529 let heap_dur = t0.elapsed();
2530
2531 let t1 = Instant::now();
2533 let mut full = all_rowids.clone();
2534 sort_rowids(&mut full, table, order).unwrap();
2535 full.truncate(K);
2536 let sort_dur = t1.elapsed();
2537
2538 let ratio = sort_dur.as_secs_f64() / heap_dur.as_secs_f64().max(1e-9);
2539 println!("\n--- topk_benchmark (N={N}, k={K}) ---");
2540 println!(" bounded heap: {heap_dur:?}");
2541 println!(" full sort+trunc: {sort_dur:?}");
2542 println!(" speedup ratio: {ratio:.2}×");
2543
2544 assert!(
2551 ratio > 1.4,
2552 "bounded heap should be substantially faster than full sort, but ratio = {ratio:.2}"
2553 );
2554 }
2555}