1use std::collections::HashMap;
21
22use rudb_common::{Error, Result};
23
24use crate::ast::{
25 Ast, BinaryOp, CaseArm, ColumnDef, CreateTable, CreateView, Distinct, DropTable, Expr, ExprRef,
26 Insert, JoinKind, LiteralKind, Nulls, Order, OrderItem, Quantifier, Query, QueryBody, QueryRef,
27 Scope, Select, SelectRef, SetOp, Setting, Slice, Source, SourceRef, Statement, StrRef, Target,
28 UnaryOp,
29};
30use crate::generated::rules::PROGRAM;
31use crate::matcher::{NONE, Tree, parse_tokens};
32use crate::token::{Kind, Token};
33use crate::tokenize::tokenize;
34
35pub fn parse_ast(query: &str) -> Result<Ast> {
41 let tokens = tokenize(query)?;
42 let tree = parse_tokens(query, &tokens, PROGRAM, true)?;
43 transform(query, &tokens, &tree)
44}
45
46pub fn transform(query: &str, tokens: &[Token], tree: &Tree) -> Result<Ast> {
48 let mut transform = Transform {
49 query,
50 tokens,
51 tree,
52 ast: Ast::default(),
53 interned: HashMap::new(),
54 anonymous: 0,
55 };
56 transform.program(tree.root())?;
57 Ok(transform.ast)
58}
59
60struct Transform<'a> {
61 query: &'a str,
62 tokens: &'a [Token],
63 tree: &'a Tree,
64 ast: Ast,
65 interned: HashMap<String, StrRef>,
66 anonymous: u32,
68}
69
70impl<'a> Transform<'a> {
71 fn text(&self, node: u32) -> &'a str {
75 self.tree.text(node, self.query, self.tokens)
76 }
77
78 fn name(&self, node: u32) -> &'static str {
80 self.tree.name(node)
81 }
82
83 fn kids(&self, node: u32) -> impl Iterator<Item = u32> + use<'a> {
89 let tree = self.tree;
90 tree.children(node)
91 }
92
93 fn count(&self, node: u32) -> usize {
95 self.kids(node).count()
96 }
97
98 fn nth(&self, node: u32, n: usize) -> u32 {
100 self.kids(node).nth(n).unwrap_or(NONE)
101 }
102
103 fn first(&self, node: u32) -> u32 {
105 self.nth(node, 0)
106 }
107
108 fn find(&self, node: u32, name: &str) -> u32 {
115 self.kids(node).find(|&kid| self.name(kid) == name).unwrap_or(NONE)
116 }
117
118 fn leaves(&self, node: u32, out: &mut Vec<u32>) {
125 let mut any = false;
126 for kid in self.kids(node) {
127 any = true;
128 self.leaves(kid, &mut *out);
129 }
130 if !any {
131 out.push(node);
132 }
133 }
134
135 fn intern(&mut self, text: &str) -> StrRef {
139 if let Some(&index) = self.interned.get(text) {
140 return index;
141 }
142 let index = u32::try_from(self.ast.strings.len())
143 .map_err(|_| Error::internal("more than four billion strings in one query"))
144 .unwrap_or(NONE);
145 self.ast.strings.push(text.to_string());
146 self.interned.insert(text.to_string(), index);
147 index
148 }
149
150 fn push(&mut self, expr: Expr) -> ExprRef {
152 let index = self.ast.exprs.len() as u32;
153 self.ast.exprs.push(expr);
154 index
155 }
156
157 fn push_source(&mut self, source: Source) -> SourceRef {
159 let index = self.ast.sources.len() as u32;
160 self.ast.sources.push(source);
161 index
162 }
163
164 fn push_query(&mut self, query: Query) -> QueryRef {
166 let index = self.ast.queries.len() as u32;
167 self.ast.queries.push(query);
168 index
169 }
170
171 fn push_select(&mut self, select: Select) -> SelectRef {
173 let index = self.ast.selects.len() as u32;
174 self.ast.selects.push(select);
175 index
176 }
177
178 fn expr_slice(&mut self, items: Vec<ExprRef>) -> Slice {
180 let start = self.ast.expr_lists.len() as u32;
181 self.ast.expr_lists.extend(items);
182 Slice { start, len: self.ast.expr_lists.len() as u32 - start }
183 }
184
185 fn part_slice(&mut self, items: Vec<StrRef>) -> Slice {
187 let start = self.ast.parts.len() as u32;
188 self.ast.parts.extend(items);
189 Slice { start, len: self.ast.parts.len() as u32 - start }
190 }
191
192 fn column_def_slice(&mut self, items: Vec<ColumnDef>) -> Slice {
194 let start = self.ast.column_defs.len() as u32;
195 self.ast.column_defs.extend(items);
196 Slice { start, len: self.ast.column_defs.len() as u32 - start }
197 }
198
199 fn target_slice(&mut self, items: Vec<Target>) -> Slice {
201 let start = self.ast.targets.len() as u32;
202 self.ast.targets.extend(items);
203 Slice { start, len: self.ast.targets.len() as u32 - start }
204 }
205
206 fn name_list_slice(&mut self, items: Vec<Slice>) -> Slice {
208 let start = self.ast.name_lists.len() as u32;
209 self.ast.name_lists.extend(items);
210 Slice { start, len: self.ast.name_lists.len() as u32 - start }
211 }
212
213 fn unsupported<T>(&self, node: u32) -> Result<T> {
218 let text = self.text(node);
219 let text = if text.chars().count() > 60 {
220 let cut = text.char_indices().nth(60).map_or(text.len(), |(at, _)| at);
221 format!("{}...", &text[..cut])
222 } else {
223 text.to_string()
224 };
225 Err(Error::not_implemented(format!(
226 "{text} is not supported yet, the grammar rule is {}",
227 self.name(node)
228 )))
229 }
230
231 fn identifier(&mut self, node: u32) -> StrRef {
235 let mut leaves = Vec::new();
236 self.leaves(node, &mut leaves);
237 let text = leaves.last().map_or("", |&leaf| self.text(leaf));
238 let text = unquote(text.strip_suffix('.').unwrap_or(text));
239 self.intern(&text)
240 }
241
242 fn name_parts(&mut self, node: u32) -> Slice {
244 let mut leaves = Vec::new();
245 self.leaves(node, &mut leaves);
246 let mut parts = Vec::with_capacity(leaves.len());
247 for leaf in leaves {
248 let text = self.text(leaf);
249 if text.is_empty() || text == "*" {
252 continue;
253 }
254 let text = unquote(text.strip_suffix('.').unwrap_or(text));
255 let interned = self.intern(&text);
256 parts.push(interned);
257 }
258 self.part_slice(parts)
259 }
260
261 fn program(&mut self, node: u32) -> Result<()> {
265 for top in self.kids(node) {
266 let Some(statement) = self.kids(top).find(|&kid| self.name(kid) == "Statement") else {
271 continue;
272 };
273 let statement = self.statement(statement)?;
274 self.ast.statements.push(statement);
275 }
276 Ok(())
277 }
278
279 fn statement(&mut self, node: u32) -> Result<Statement> {
281 let inner = self.first(node);
282 match self.name(inner) {
283 "SelectStatement" => {
284 let query = self.query(self.first(inner))?;
285 Ok(Statement::Query(query))
286 }
287 "CreateStatement" => self.create_statement(inner),
288 "DropStatement" => self.drop_statement(inner),
289 "InsertStatement" => self.insert_statement(inner),
290 "SetStatement" => self.set_statement(inner),
291 "ResetStatement" => self.reset_statement(inner),
292 _ => self.unsupported(inner),
293 }
294 }
295
296 fn set_statement(&mut self, node: u32) -> Result<Statement> {
303 let inner = self.first(self.find(node, "SetAssignmentOrTimeZone"));
304 if self.name(inner) != "StandardAssignment" {
305 return self.unsupported(inner);
306 }
307 let (name, scope) = self.setting_name(self.find(inner, "SetVariableOrSetting"))?;
308 let assignment = self.find(inner, "SetAssignment");
309 let list = self.find(assignment, "VariableList");
310 let mut values = Vec::new();
311 for kid in self.kids(list) {
312 values.push(self.expr(kid)?);
313 }
314 let [value] = values[..] else {
318 return self.unsupported(list);
319 };
320 let index = self.ast.settings.len() as u32;
321 self.ast.settings.push(Setting { name, scope, value });
322 Ok(Statement::Set(index))
323 }
324
325 fn reset_statement(&mut self, node: u32) -> Result<Statement> {
327 let (name, scope) = self.setting_name(self.find(node, "SetVariableOrSetting"))?;
328 let index = self.ast.settings.len() as u32;
329 self.ast.settings.push(Setting { name, scope, value: NONE });
330 Ok(Statement::Reset(index))
331 }
332
333 fn setting_name(&mut self, node: u32) -> Result<(StrRef, Scope)> {
339 let inner = self.first(node);
340 if self.name(inner) != "SetSetting" {
341 return self.unsupported(inner);
342 }
343 let written = self.find(inner, "SettingScope");
344 let scope = if written == NONE {
345 Scope::Unwritten
346 } else {
347 match self.name(self.first(written)) {
348 "GlobalScope" => Scope::Global,
349 "SessionScope" => Scope::Session,
350 "LocalScope" => Scope::Local,
351 _ => return self.unsupported(written),
352 }
353 };
354 Ok((self.identifier(self.find(inner, "SettingName")), scope))
355 }
356
357 fn create_statement(&mut self, node: u32) -> Result<Statement> {
363 let or_replace = self.find(node, "OrReplace") != NONE;
364 let temporary = self.find(node, "Temporary") != NONE;
365 let variation = self.find(node, "CreateStatementVariation");
366 let inner = self.first(variation);
367 if or_replace && self.find(inner, "IfNotExists") != NONE {
371 return Err(Error::parser(
372 "Cannot specify both OR REPLACE and IF NOT EXISTS within single create statement",
373 ));
374 }
375 match self.name(inner) {
376 "CreateTableStmt" => self.create_table_statement(inner, or_replace, temporary),
377 "CreateViewStmt" => self.create_view_statement(inner, or_replace, temporary),
378 _ => self.unsupported(inner),
379 }
380 }
381
382 fn create_table_statement(
384 &mut self,
385 inner: u32,
386 or_replace: bool,
387 temporary: bool,
388 ) -> Result<Statement> {
389 let name = self.name_parts(self.find(inner, "QualifiedName"));
390 let if_not_exists = self.find(inner, "IfNotExists") != NONE;
391 let definition = self.find(inner, "CreateTableDefinition");
392 let body = self.first(definition);
393 let (columns, query) = match self.name(body) {
394 "CreateColumnList" => (self.column_list(body)?, NONE),
395 "CreateTableAs" => self.create_table_as(body)?,
396 _ => return self.unsupported(body),
397 };
398 let index = self.ast.create_tables.len() as u32;
399 self.ast.create_tables.push(CreateTable {
400 name,
401 columns,
402 query,
403 if_not_exists,
404 or_replace,
405 temporary,
406 });
407 Ok(Statement::CreateTable(index))
408 }
409
410 fn create_view_statement(
417 &mut self,
418 inner: u32,
419 or_replace: bool,
420 temporary: bool,
421 ) -> Result<Statement> {
422 for kid in self.kids(inner) {
423 if matches!(self.name(kid), "CreateSecure" | "CreateRecursive" | "WithList") {
427 return self.unsupported(kid);
428 }
429 }
430 let name = self.name_parts(self.find(inner, "QualifiedName"));
431 let if_not_exists = self.find(inner, "IfNotExists") != NONE;
432 let list = self.find(inner, "InsertColumnList");
433 let columns = if list == NONE {
434 Slice::default()
435 } else {
436 let mut parts = Vec::new();
437 for kid in self.kids(self.find(list, "ColumnList")) {
438 parts.push(self.identifier(kid));
439 }
440 self.part_slice(parts)
441 };
442 let body = self.find(inner, "SelectStatementInternal");
443 let sql = self.text(body).to_string();
444 let sql = self.intern(&sql);
445 let query = self.query(body)?;
446 let index = self.ast.create_views.len() as u32;
447 self.ast.create_views.push(CreateView {
448 name,
449 columns,
450 query,
451 sql,
452 if_not_exists,
453 or_replace,
454 temporary,
455 });
456 Ok(Statement::CreateView(index))
457 }
458
459 fn column_list(&mut self, node: u32) -> Result<Slice> {
461 for kid in self.kids(node) {
462 if matches!(self.name(kid), "PartitionOptions" | "SortedOptions" | "WithList") {
463 return self.unsupported(kid);
464 }
465 }
466 let list = self.find(node, "CreateTableColumnList");
467 if list == NONE {
468 return Ok(Slice::default());
471 }
472 let mut defs = Vec::new();
473 for element in self.kids(list) {
474 let inner = self.first(element);
475 if self.name(inner) != "CreateTableColumnDefinition" {
476 return self.unsupported(inner);
480 }
481 defs.push(self.column_definition(self.first(inner))?);
482 }
483 Ok(self.column_def_slice(defs))
484 }
485
486 fn column_definition(&mut self, node: u32) -> Result<ColumnDef> {
489 let name = self.identifier(self.find(node, "DottedIdentifier"));
490 let type_node = self.find(node, "Type");
491 let ty = if type_node == NONE {
492 NONE
493 } else {
494 let text = self.text(type_node).to_string();
495 self.intern(&text)
496 };
497 if self.find(node, "GeneratedColumn") != NONE {
498 return self.unsupported(self.find(node, "GeneratedColumn"));
499 }
500 let mut not_null = false;
501 for kid in self.kids(node) {
502 if self.name(kid) != "ColumnConstraint" {
503 continue;
504 }
505 let constraint = self.first(kid);
506 match self.name(constraint) {
507 "NotNullConstraint" => {
508 not_null = self.name(self.first(constraint)) == "NotNullColumnConstraint";
509 }
510 _ => return self.unsupported(constraint),
511 }
512 }
513 Ok(ColumnDef { name, ty, not_null })
514 }
515
516 fn create_table_as(&mut self, node: u32) -> Result<(Slice, QueryRef)> {
522 for kid in self.kids(node) {
523 if matches!(
524 self.name(kid),
525 "PartitionOptions" | "SortedOptions" | "WithList" | "WithData"
526 ) {
527 return self.unsupported(kid);
528 }
529 }
530 let names = self.find(node, "IdentifierList");
531 let columns = if names == NONE {
532 Slice::default()
533 } else {
534 let mut defs = Vec::new();
535 for kid in self.kids(names) {
536 let name = self.identifier(kid);
537 defs.push(ColumnDef { name, ty: NONE, not_null: false });
538 }
539 self.column_def_slice(defs)
540 };
541 let statement = self.find(node, "Statement");
542 let inner = self.first(statement);
543 if self.name(inner) != "SelectStatement" {
544 return self.unsupported(inner);
545 }
546 let query = self.query(self.first(inner))?;
547 Ok((columns, query))
548 }
549
550 fn drop_statement(&mut self, node: u32) -> Result<Statement> {
556 if self.find(node, "DropBehavior") != NONE {
557 return self.unsupported(self.find(node, "DropBehavior"));
558 }
559 let entries = self.find(node, "DropEntries");
560 let inner = self.first(entries);
561 if self.name(inner) != "DropTable" {
562 return self.unsupported(inner);
563 }
564 let kind = self.find(inner, "TableOrView");
565 let view = match self.name(self.first(kind)) {
566 "CommentTable" => false,
567 "CommentView" => true,
568 _ => return self.unsupported(kind),
569 };
570 let if_exists = self.find(inner, "IfExists") != NONE;
571 let mut names = Vec::new();
572 for kid in self.kids(inner) {
573 if self.name(kid) == "BaseTableName" {
574 names.push(self.name_parts(kid));
575 }
576 }
577 let names = self.name_list_slice(names);
578 let index = self.ast.drop_tables.len() as u32;
579 self.ast.drop_tables.push(DropTable { names, if_exists, view });
580 Ok(Statement::DropTable(index))
581 }
582
583 fn insert_statement(&mut self, node: u32) -> Result<Statement> {
590 for kid in self.kids(node) {
591 if matches!(
592 self.name(kid),
593 "InsertTarget" | "InsertColumnList" | "InsertValues" | "WithClause"
594 ) {
595 continue;
596 }
597 return self.unsupported(kid);
598 }
599 if self.find(node, "WithClause") != NONE {
600 return self.unsupported(self.find(node, "WithClause"));
601 }
602 let name = self.name_parts(self.find(self.find(node, "InsertTarget"), "BaseTableName"));
603 let list = self.find(node, "InsertColumnList");
604 let columns = if list == NONE {
605 Slice::default()
606 } else {
607 let mut parts = Vec::new();
608 for kid in self.kids(self.find(list, "ColumnList")) {
609 parts.push(self.identifier(kid));
610 }
611 self.part_slice(parts)
612 };
613 let values = self.find(node, "InsertValues");
614 let inner = self.first(values);
615 if self.name(inner) != "SelectInsertValues" {
616 return self.unsupported(inner);
617 }
618 let source = self.query(self.find(inner, "SelectStatementInternal"))?;
619 let index = self.ast.inserts.len() as u32;
620 self.ast.inserts.push(Insert { name, columns, source });
621 Ok(Statement::Insert(index))
622 }
623
624 fn query(&mut self, node: u32) -> Result<QueryRef> {
626 if self.find(node, "WithClause") != NONE {
627 return self.unsupported(self.find(node, "WithClause"));
628 }
629 let chain = self.find(node, "SelectSetOpChain");
630 if chain == NONE {
631 return self.unsupported(node);
632 }
633 let query = self.set_op_chain(chain)?;
634 let modifiers = self.find(node, "ResultModifiers");
635 if modifiers != NONE {
636 self.result_modifiers(query, modifiers)?;
637 }
638 Ok(query)
639 }
640
641 fn set_op_chain(&mut self, node: u32) -> Result<QueryRef> {
643 let mut kids = self.kids(node);
644 let head = kids.next().unwrap_or(NONE);
645 let mut left = self.intersect_chain(head)?;
646 for tail in kids {
647 let clause = self.first(tail);
649 let (op, quantifier, by_name) = self.setop_clause(clause)?;
650 let right = self.intersect_chain(self.nth(tail, 1))?;
651 left = self.push_query(Query::bare(QueryBody::SetOp {
652 op,
653 quantifier,
654 by_name,
655 left,
656 right,
657 }));
658 }
659 Ok(left)
660 }
661
662 fn intersect_chain(&mut self, node: u32) -> Result<QueryRef> {
664 let mut kids = self.kids(node);
665 let head = kids.next().unwrap_or(NONE);
666 let mut left = self.select_atom(head)?;
667 for tail in kids {
668 let clause = self.first(tail);
670 let quantifier = self.quantifier(self.find(clause, "DistinctOrAll"));
671 let right = self.select_atom(self.nth(tail, 1))?;
672 left = self.push_query(Query::bare(QueryBody::SetOp {
673 op: SetOp::Intersect,
674 quantifier,
675 by_name: false,
676 left,
677 right,
678 }));
679 }
680 Ok(left)
681 }
682
683 fn setop_clause(&mut self, node: u32) -> Result<(SetOp, Quantifier, bool)> {
685 let kind = self.find(node, "SetopType");
686 let op = match self.name(self.first(kind)) {
687 "SetopUnion" => SetOp::Union,
688 "SetopExcept" => SetOp::Except,
689 _ => return self.unsupported(kind),
690 };
691 let quantifier = self.quantifier(self.find(node, "DistinctOrAll"));
692 Ok((op, quantifier, self.find(node, "ByName") != NONE))
693 }
694
695 fn quantifier(&self, node: u32) -> Quantifier {
697 if node == NONE {
698 return Quantifier::Unstated;
699 }
700 match self.name(self.first(node)) {
701 "DistinctKeyword" => Quantifier::Distinct,
702 "AllKeyword" => Quantifier::All,
703 _ => Quantifier::Unstated,
704 }
705 }
706
707 fn select_atom(&mut self, node: u32) -> Result<QueryRef> {
709 let inner = self.first(node);
710 match self.name(inner) {
711 "SelectParens" => self.query(self.first(inner)),
714 "SelectStatementType" => {
715 let kind = self.first(inner);
716 match self.name(kind) {
717 "OptionalParensSimpleSelect" => {
718 let select = self.simple_select(self.unwrap_parens(kind))?;
719 Ok(self.push_query(Query::bare(QueryBody::Select(select))))
720 }
721 "ValuesClause" => {
722 let rows = self.values_clause(kind)?;
723 Ok(self.push_query(Query::bare(QueryBody::Values(rows))))
724 }
725 "DescribeStatement" => self.describe_statement(kind),
726 _ => self.unsupported(kind),
727 }
728 }
729 _ => self.unsupported(inner),
730 }
731 }
732
733 fn describe_statement(&mut self, node: u32) -> Result<QueryRef> {
746 let inner = self.first(node);
747 match self.name(inner) {
748 "DescribeSelect" => {
749 self.describe_and_not_summarize(inner)?;
750 let query = self.query(self.find(inner, "SelectStatementInternal"))?;
751 Ok(self.push_query(Query::bare(QueryBody::Describe(query))))
752 }
753 "DescribeByName" => {
754 self.describe_and_not_summarize(inner)?;
755 let target = self.find(inner, "DescribeTarget");
756 if target == NONE {
757 return self.unsupported(inner);
758 }
759 let source = self.describe_target(target)?;
760 let query = self.star_over(source);
761 Ok(self.push_query(Query::bare(QueryBody::Describe(query))))
762 }
763 _ => self.unsupported(inner),
764 }
765 }
766
767 fn describe_and_not_summarize(&mut self, node: u32) -> Result<()> {
769 let word = self.find(node, "DescribeOrSummarize");
770 if word == NONE || self.name(self.first(word)) != "DescribeRule" {
771 return self.unsupported(if word == NONE { node } else { word });
772 }
773 Ok(())
774 }
775
776 fn describe_target(&mut self, node: u32) -> Result<SourceRef> {
782 let inner = self.first(node);
783 let name = match self.name(inner) {
784 "DescribeBaseTableName" => self.name_parts(self.find(inner, "BaseTableName")),
785 "DescribeStringLiteral" => {
786 let text = self.string_value(self.find(inner, "StringLiteral"));
787 let part = self.intern(&text);
788 self.part_slice(vec![part])
789 }
790 _ => return self.unsupported(inner),
791 };
792 Ok(self.push_source(Source::Table { name, alias: NONE, columns: Slice::default() }))
793 }
794
795 fn star_over(&mut self, source: SourceRef) -> QueryRef {
797 let star =
798 self.push(Expr::Star { qualifier: Slice::default(), replacements: Slice::default() });
799 let targets = self.target_slice(vec![Target { expr: star, alias: NONE }]);
800 let start = self.ast.source_lists.len() as u32;
801 self.ast.source_lists.push(source);
802 let from = Slice { start, len: 1 };
803 let select = self.push_select(Select { targets, from, ..Select::empty() });
804 self.push_query(Query::bare(QueryBody::Select(select)))
805 }
806
807 fn values_clause(&mut self, node: u32) -> Result<Slice> {
813 let mut rows = Vec::new();
814 for kid in self.kids(node) {
815 if self.name(kid) != "ValuesExpressions" {
816 continue;
817 }
818 let mut items = Vec::new();
819 for expr in self.kids(kid) {
820 items.push(self.expr(expr)?);
821 }
822 let slice = self.expr_slice(items);
823 rows.push(slice);
824 }
825 let start = self.ast.rows.len() as u32;
826 self.ast.rows.extend(rows);
827 Ok(Slice { start, len: self.ast.rows.len() as u32 - start })
828 }
829
830 fn unwrap_parens(&self, node: u32) -> u32 {
832 let mut node = self.first(node);
833 while self.name(node) == "SimpleSelectParens" {
834 node = self.first(node);
835 }
836 node
837 }
838
839 fn result_modifiers(&mut self, query: QueryRef, node: u32) -> Result<()> {
841 let order = self.find(node, "OrderByClause");
842 if order != NONE {
843 let (items, all) = self.order_by(order)?;
844 let start = self.ast.order_items.len() as u32;
845 self.ast.order_items.extend(items);
846 self.ast.queries[query as usize].order_by =
847 Slice { start, len: self.ast.order_items.len() as u32 - start };
848 self.ast.queries[query as usize].order_by_all = all;
849 }
850 let limit = self.find(node, "LimitOffset");
851 if limit != NONE {
852 self.limit_offset(query, self.first(limit))?;
853 }
854 Ok(())
855 }
856
857 fn limit_offset(&mut self, query: QueryRef, node: u32) -> Result<()> {
859 match self.name(node) {
860 "LimitOffsetClause" | "OffsetLimitClause" => {
861 let limit = self.find(node, "LimitClause");
862 if limit != NONE {
863 self.limit(query, limit)?;
864 }
865 let offset = self.find(node, "OffsetClause");
866 if offset != NONE {
867 self.offset(query, offset)?;
868 }
869 Ok(())
870 }
871 _ => self.unsupported(node),
872 }
873 }
874
875 fn limit(&mut self, query: QueryRef, node: u32) -> Result<()> {
877 let value = self.first(node);
878 let inner = self.first(value);
879 match self.name(inner) {
880 "LimitAll" => Ok(()),
882 "LimitExpression" => {
886 let expr = self.expr(self.first(inner))?;
887 self.ast.queries[query as usize].limit = expr;
888 self.ast.queries[query as usize].limit_percent = self.text(inner).ends_with('%');
889 Ok(())
890 }
891 "LimitLiteralPercent" => {
892 let expr = self.expr(self.first(inner))?;
893 self.ast.queries[query as usize].limit = expr;
894 self.ast.queries[query as usize].limit_percent = true;
895 Ok(())
896 }
897 _ => self.unsupported(inner),
898 }
899 }
900
901 fn offset(&mut self, query: QueryRef, node: u32) -> Result<()> {
903 let value = self.first(node);
904 let expr = self.expr(self.first(value))?;
905 self.ast.queries[query as usize].offset = expr;
906 Ok(())
907 }
908
909 fn simple_select(&mut self, node: u32) -> Result<SelectRef> {
912 for name in ["WindowClause", "QualifyClause", "SampleClause"] {
913 let clause = self.find(node, name);
914 if clause != NONE {
915 return self.unsupported(clause);
916 }
917 }
918 let mut select = Select::empty();
919 self.select_from(&mut select, self.first(node))?;
920 let filter = self.find(node, "WhereClause");
921 if filter != NONE {
922 select.filter = self.expr(self.first(filter))?;
923 }
924 let group = self.find(node, "GroupByClause");
925 if group != NONE {
926 self.group_by(&mut select, self.first(group))?;
927 }
928 let having = self.find(node, "HavingClause");
929 if having != NONE {
930 select.having = self.expr(self.first(having))?;
931 }
932 Ok(self.push_select(select))
933 }
934
935 fn select_from(&mut self, select: &mut Select, node: u32) -> Result<()> {
938 let clause = self.first(node);
939 let targets = self.find(clause, "SelectClause");
940 let from = self.find(clause, "FromClause");
941 if from != NONE {
942 select.from = self.sources(from)?;
943 }
944 if targets == NONE {
945 let star = self
949 .push(Expr::Star { qualifier: Slice::default(), replacements: Slice::default() });
950 let start = self.ast.targets.len() as u32;
951 self.ast.targets.push(Target { expr: star, alias: NONE });
952 select.targets = Slice { start, len: 1 };
953 return Ok(());
954 }
955 self.select_clause(select, targets)
956 }
957
958 fn select_clause(&mut self, select: &mut Select, node: u32) -> Result<()> {
960 let distinct = self.find(node, "DistinctClause");
961 if distinct != NONE {
962 let inner = self.first(distinct);
963 select.distinct = match self.name(inner) {
964 "DistinctAll" => Distinct::No,
966 "DistinctOn" => {
967 let on = self.find(inner, "DistinctOnTargets");
968 if on == NONE {
969 Distinct::Yes
970 } else {
971 let mut items = Vec::new();
972 for kid in self.kids(on) {
973 items.push(self.expr(kid)?);
974 }
975 Distinct::On(self.expr_slice(items))
976 }
977 }
978 _ => return self.unsupported(inner),
979 };
980 }
981 let list = self.find(node, "TargetList");
982 if list == NONE {
983 return Ok(());
984 }
985 let mut targets = Vec::new();
986 for kid in self.kids(list) {
987 targets.push(self.target(kid)?);
988 }
989 select.targets = self.target_slice(targets);
990 Ok(())
991 }
992
993 fn target(&mut self, node: u32) -> Result<Target> {
995 let inner = self.first(node);
996 match self.name(inner) {
997 "ColIdExpression" => {
999 let alias = self.identifier(self.first(inner));
1000 let expr = self.expr(self.nth(inner, 1))?;
1001 Ok(Target { expr, alias })
1002 }
1003 "ExpressionAsCollabel" => {
1004 let expr = self.expr(self.first(inner))?;
1005 let alias = self.identifier(self.nth(inner, 1));
1006 Ok(Target { expr, alias })
1007 }
1008 "ExpressionOptIdentifier" => {
1009 let expr = self.expr(self.first(inner))?;
1010 let alias =
1011 if self.count(inner) > 1 { self.identifier(self.nth(inner, 1)) } else { NONE };
1012 Ok(Target { expr, alias })
1013 }
1014 _ => self.unsupported(inner),
1015 }
1016 }
1017
1018 fn group_by(&mut self, select: &mut Select, node: u32) -> Result<()> {
1020 let inner = self.first(node);
1021 match self.name(inner) {
1022 "GroupByAll" => {
1023 select.group_by_all = true;
1024 Ok(())
1025 }
1026 "GroupByList" => {
1027 let mut items = Vec::new();
1028 for kid in self.kids(inner) {
1029 let expression = self.first(kid);
1032 if self.name(expression) != "GroupByBaseExpression" {
1033 return self.unsupported(expression);
1034 }
1035 items.push(self.expr(self.first(expression))?);
1036 }
1037 select.group_by = self.expr_slice(items);
1038 Ok(())
1039 }
1040 _ => self.unsupported(inner),
1041 }
1042 }
1043
1044 fn order_by(&mut self, node: u32) -> Result<(Vec<OrderItem>, bool)> {
1047 let inner = self.first(self.first(node));
1048 match self.name(inner) {
1049 "OrderByAll" => {
1050 let (order, nulls) = self.sort_options(inner);
1051 Ok((vec![OrderItem { expr: NONE, order, nulls }], true))
1052 }
1053 "OrderByExpressionList" => {
1054 let mut items = Vec::new();
1055 for kid in self.kids(inner) {
1056 let expr = self.expr(self.first(kid))?;
1058 let (order, nulls) = self.sort_options(kid);
1059 items.push(OrderItem { expr, order, nulls });
1060 }
1061 Ok((items, false))
1062 }
1063 _ => self.unsupported(inner),
1064 }
1065 }
1066
1067 fn sort_options(&self, node: u32) -> (Order, Nulls) {
1069 let direction = self.find(node, "DescOrAsc");
1070 let order = if direction == NONE {
1071 Order::Unstated
1072 } else if self.name(self.first(direction)) == "DescendingOrder" {
1073 Order::Descending
1074 } else {
1075 Order::Ascending
1076 };
1077 let placement = self.find(node, "NullsFirstOrLast");
1078 let nulls = if placement == NONE {
1079 Nulls::Unstated
1080 } else if self.name(self.first(placement)) == "NullsFirst" {
1081 Nulls::First
1082 } else {
1083 Nulls::Last
1084 };
1085 (order, nulls)
1086 }
1087
1088 fn sources(&mut self, node: u32) -> Result<Slice> {
1092 let mut items = Vec::new();
1093 for kid in self.kids(node) {
1094 items.push(self.table_ref(kid)?);
1095 }
1096 let start = self.ast.source_lists.len() as u32;
1097 self.ast.source_lists.extend(items);
1098 Ok(Slice { start, len: self.ast.source_lists.len() as u32 - start })
1099 }
1100
1101 fn table_ref(&mut self, node: u32) -> Result<SourceRef> {
1103 let mut kids = self.kids(node);
1104 let head = kids.next().unwrap_or(NONE);
1105 let mut left = self.inner_table_ref(head)?;
1106 for tail in kids {
1107 let clause = self.first(tail);
1108 if self.name(clause) != "JoinClause" {
1109 return self.unsupported(clause);
1110 }
1111 left = self.join(left, self.first(clause))?;
1112 }
1113 Ok(left)
1114 }
1115
1116 fn inner_table_ref(&mut self, node: u32) -> Result<SourceRef> {
1118 let inner = if self.name(node) == "InnerTableRef" { self.first(node) } else { node };
1119 match self.name(inner) {
1120 "BaseTableRef" => {
1121 if self.find(inner, "TableAliasColon") != NONE {
1122 return self.unsupported(inner);
1123 }
1124 for name in ["AtClause", "SampleClause"] {
1125 let clause = self.find(inner, name);
1126 if clause != NONE {
1127 return self.unsupported(clause);
1128 }
1129 }
1130 let name = self.name_parts(self.find(inner, "BaseTableName"));
1131 let (alias, columns) = self.table_alias(self.find(inner, "TableAlias"));
1132 Ok(self.push_source(Source::Table { name, alias, columns }))
1133 }
1134 "TableSubquery" => {
1135 if self.find(inner, "TableAliasColon") != NONE
1136 || self.find(inner, "Lateral") != NONE
1137 {
1138 return self.unsupported(inner);
1139 }
1140 let reference = self.find(inner, "SubqueryReference");
1142 let query = self.query(self.first(reference))?;
1143 let (alias, columns) = self.table_alias(self.find(inner, "TableAlias"));
1144 Ok(self.push_source(Source::Subquery { query, alias, columns }))
1145 }
1146 "TableFunction" => {
1151 let form = self.first(inner);
1152 for name in ["TableAliasColon", "Lateral", "WithOrdinality", "SampleClause"] {
1153 let clause = self.find(form, name);
1154 if clause != NONE {
1155 return self.unsupported(clause);
1156 }
1157 }
1158 let name = self.name_parts(self.find(form, "QualifiedTableFunction"));
1159 let mut args = Vec::new();
1160 let list = self.find(form, "TableFunctionArguments");
1163 for kid in self.kids(list) {
1164 args.push(self.table_argument(kid)?);
1165 }
1166 let args = self.target_slice(args);
1167 let (alias, columns) = self.table_alias(self.find(form, "TableAlias"));
1168 Ok(self.push_source(Source::Function { name, args, alias, columns }))
1169 }
1170 "ValuesRef" => {
1171 if self.find(inner, "TableAliasColon") != NONE {
1172 return self.unsupported(inner);
1173 }
1174 let rows = self.values_clause(self.find(inner, "ValuesClause"))?;
1175 let (alias, columns) = self.table_alias(self.find(inner, "TableAlias"));
1176 Ok(self.push_source(Source::Values { rows, alias, columns }))
1177 }
1178 "ParensTableRef" => {
1179 if self.find(inner, "TableAliasColon") != NONE
1180 || self.find(inner, "SampleClause") != NONE
1181 || self.find(inner, "TableAlias") != NONE
1182 {
1183 return self.unsupported(inner);
1184 }
1185 self.table_ref(self.find(inner, "TableRef"))
1186 }
1187 _ => self.unsupported(inner),
1188 }
1189 }
1190
1191 fn table_alias(&mut self, node: u32) -> (StrRef, Slice) {
1193 if node == NONE {
1194 return (NONE, Slice::default());
1195 }
1196 let inner = self.first(node);
1197 let alias = self.identifier(self.first(inner));
1198 let list = self.find(inner, "ColumnAliases");
1199 if list == NONE {
1200 return (alias, Slice::default());
1201 }
1202 let mut columns = Vec::new();
1203 for kid in self.kids(list) {
1204 let name = self.identifier(kid);
1205 columns.push(name);
1206 }
1207 (alias, self.part_slice(columns))
1208 }
1209
1210 fn join(&mut self, left: SourceRef, node: u32) -> Result<SourceRef> {
1212 match self.name(node) {
1213 "RegularJoinClause" => {
1215 if self.find(node, "Asof") != NONE {
1216 return self.unsupported(node);
1217 }
1218 let kind = self.join_type(self.find(node, "JoinType"));
1219 let right = self.table_ref(self.find(node, "TableRef"))?;
1220 let (on, using) = self.join_qualifier(self.find(node, "JoinQualifier"))?;
1221 Ok(self.push_source(Source::Join { left, right, kind, natural: false, on, using }))
1222 }
1223 "JoinWithoutOnClause" => {
1226 let prefix = self.first(self.find(node, "JoinPrefix"));
1227 let (kind, natural) = match self.name(prefix) {
1228 "CrossJoinPrefix" => (JoinKind::Cross, false),
1229 "PositionalJoinPrefix" => (JoinKind::Positional, false),
1230 "NaturalJoinPrefix" => (self.join_type(self.find(prefix, "JoinType")), true),
1231 _ => return self.unsupported(prefix),
1232 };
1233 let right = self.inner_table_ref(self.find(node, "InnerTableRef"))?;
1234 Ok(self.push_source(Source::Join {
1235 left,
1236 right,
1237 kind,
1238 natural,
1239 on: NONE,
1240 using: Slice::default(),
1241 }))
1242 }
1243 _ => self.unsupported(node),
1244 }
1245 }
1246
1247 fn join_type(&self, node: u32) -> JoinKind {
1250 if node == NONE {
1251 return JoinKind::Inner;
1252 }
1253 match self.name(self.first(node)) {
1254 "FullJoin" => JoinKind::Full,
1255 "LeftJoin" => JoinKind::Left,
1256 "RightJoin" => JoinKind::Right,
1257 "SemiJoin" => JoinKind::Semi,
1258 "AntiJoin" => JoinKind::Anti,
1259 _ => JoinKind::Inner,
1260 }
1261 }
1262
1263 fn join_qualifier(&mut self, node: u32) -> Result<(ExprRef, Slice)> {
1265 let inner = self.first(node);
1266 match self.name(inner) {
1267 "OnClause" => Ok((self.expr(self.first(inner))?, Slice::default())),
1268 "UsingClause" => {
1269 let mut columns = Vec::new();
1270 for kid in self.kids(inner) {
1271 let name = self.identifier(kid);
1272 columns.push(name);
1273 }
1274 Ok((NONE, self.part_slice(columns)))
1275 }
1276 _ => self.unsupported(inner),
1277 }
1278 }
1279
1280 fn expr(&mut self, node: u32) -> Result<ExprRef> {
1289 let mut node = node;
1290 loop {
1291 let count = self.count(node);
1292 let name = self.name(node);
1293 match name {
1294 "LogicalOrExpression" if count > 1 => return self.logical(node, BinaryOp::Or),
1295 "LogicalAndExpression" if count > 1 => return self.logical(node, BinaryOp::And),
1296 "LogicalNotExpression" if count > 1 => return self.logical_not(node),
1297 "IsExpression" if count > 1 => return self.is_expression(node),
1298 "BetweenInLikeExpression" if count > 1 => return self.between_in_like(node),
1299 "PrefixExpression" if count > 1 => return self.prefix(node),
1300 "BaseExpression" if count > 1 => return self.indirection(node),
1301 "LambdaArrowExpression"
1302 | "IsDistinctFromExpression"
1303 | "ComparisonExpression"
1304 | "OtherOperatorExpression"
1305 | "BitwiseExpression"
1306 | "AdditiveExpression"
1307 | "MultiplicativeExpression"
1308 | "ExponentiationExpression"
1309 | "CollateExpression"
1310 | "AtTimeZoneExpression"
1311 if count > 1 =>
1312 {
1313 return self.tail_chain(node);
1314 }
1315 "ColumnReference" => {
1316 let name = self.name_parts(node);
1317 return Ok(self.push(Expr::Column { name }));
1318 }
1319 "StarExpression" => return self.star(node),
1320 "NumberLiteral" => {
1321 let text = self.text(node).to_string();
1322 let text = self.intern(&text);
1323 return Ok(self.push(Expr::Literal { kind: LiteralKind::Number, text }));
1324 }
1325 "StringLiteral" => {
1326 let text = self.string_value(node);
1327 let text = self.intern(&text);
1328 return Ok(self.push(Expr::Literal { kind: LiteralKind::String, text }));
1329 }
1330 "NullLiteral" | "TrueLiteral" | "FalseLiteral" => {
1331 let kind = match name {
1332 "NullLiteral" => LiteralKind::Null,
1333 "TrueLiteral" => LiteralKind::True,
1334 _ => LiteralKind::False,
1335 };
1336 return Ok(self.push(Expr::Literal { kind, text: NONE }));
1337 }
1338 "FunctionExpression" => return self.function(node),
1339 "ExtractExpression" => return self.extract(node),
1340 "CastExpression" => return self.cast(node),
1341 "CaseExpression" => return self.case(node),
1342 "ParenthesisExpression" => return self.row(node),
1343 "BoundedListExpression" => return self.list(node),
1344 "QuestionMarkNumberedParameter"
1345 | "AnonymousParameter"
1346 | "NumberedParameter"
1347 | "ColLabelParameter" => return self.parameter(node),
1348 "SubqueryExpression" => return self.subquery(node),
1349 _ if count == 1 => node = self.first(node),
1350 _ => return self.unsupported(node),
1351 }
1352 }
1353 }
1354
1355 fn tail_chain(&mut self, node: u32) -> Result<ExprRef> {
1357 let mut kids = self.kids(node);
1358 let head = kids.next().unwrap_or(NONE);
1359 let mut left = self.expr(head)?;
1360 for tail in kids {
1361 let operator = self.first(tail);
1362 let op = self.binary_op(operator)?;
1363 let operand = self.kids(tail).last().unwrap_or(NONE);
1367 if self.count(tail) > 2 {
1368 return self.unsupported(tail);
1369 }
1370 let right = self.expr(operand)?;
1371 left = self.push(Expr::Binary { op, left, right });
1372 }
1373 Ok(left)
1374 }
1375
1376 fn binary_op(&mut self, node: u32) -> Result<BinaryOp> {
1378 let mut leaf = node;
1384 while self.count(leaf) == 1 {
1385 leaf = self.first(leaf);
1386 }
1387 let text = self.text(node);
1388 let upper = text.to_ascii_uppercase();
1389 let op = match upper.as_str() {
1390 "OR" => BinaryOp::Or,
1391 "AND" => BinaryOp::And,
1392 "=" | "==" => BinaryOp::Eq,
1393 "!=" | "<>" => BinaryOp::NotEq,
1394 "<" => BinaryOp::Lt,
1395 ">" => BinaryOp::Gt,
1396 "<=" => BinaryOp::LtEq,
1397 ">=" => BinaryOp::GtEq,
1398 "+" => BinaryOp::Add,
1399 "-" => BinaryOp::Subtract,
1400 "*" => BinaryOp::Multiply,
1401 "/" => BinaryOp::Divide,
1402 "//" => BinaryOp::IntegerDivide,
1403 "%" => BinaryOp::Modulo,
1404 "^" | "**" => BinaryOp::Power,
1405 "&" => BinaryOp::BitAnd,
1406 "|" => BinaryOp::BitOr,
1407 "<<" => BinaryOp::ShiftLeft,
1408 ">>" => BinaryOp::ShiftRight,
1409 "||" => BinaryOp::Concat,
1410 "COLLATE" => BinaryOp::Collate,
1411 "->" => BinaryOp::Arrow,
1412 "->>" => BinaryOp::LongArrow,
1413 "@>" => BinaryOp::Contains,
1414 "<@" => BinaryOp::ContainedBy,
1415 "&&" => BinaryOp::Overlaps,
1416 "^@" => BinaryOp::StartsWith,
1417 "<<=" => BinaryOp::InetContainedByOrEq,
1418 ">>=" => BinaryOp::InetContainsOrEq,
1419 _ if self.name(leaf) == "AtTimeZoneOperator" => BinaryOp::AtTimeZone,
1420 _ if self.name(leaf) == "IsDistinctFromOp" => {
1423 if upper.split_whitespace().any(|word| word == "NOT") {
1424 BinaryOp::IsNotDistinctFrom
1425 } else {
1426 BinaryOp::IsDistinctFrom
1427 }
1428 }
1429 _ if self.name(leaf) == "OperatorLiteral" => {
1436 let interned = self.intern(text);
1437 BinaryOp::Named(interned)
1438 }
1439 _ => return self.unsupported(node),
1440 };
1441 Ok(op)
1442 }
1443
1444 fn logical(&mut self, node: u32, op: BinaryOp) -> Result<ExprRef> {
1449 let mut kids = self.kids(node);
1450 let head = kids.next().unwrap_or(NONE);
1451 let mut left = self.expr(head)?;
1452 for tail in kids {
1453 let right = self.expr(self.first(tail))?;
1454 left = self.push(Expr::Binary { op, left, right });
1455 }
1456 Ok(left)
1457 }
1458
1459 fn logical_not(&mut self, node: u32) -> Result<ExprRef> {
1464 let negations = self.count(self.first(node));
1465 let mut expr = self.expr(self.nth(node, 1))?;
1466 for _ in 0..negations {
1467 expr = self.push(Expr::Unary { op: UnaryOp::Not, operand: expr });
1468 }
1469 Ok(expr)
1470 }
1471
1472 fn is_expression(&mut self, node: u32) -> Result<ExprRef> {
1474 let mut kids = self.kids(node);
1475 let head = kids.next().unwrap_or(NONE);
1476 let mut expr = self.expr(head)?;
1477 for test in kids {
1478 let inner = self.first(test);
1479 let negated = self.text(inner).to_ascii_uppercase().contains("NOT");
1480 let op = match self.name(inner) {
1481 "NotNull" => UnaryOp::IsNotNull,
1482 "IsNull" => UnaryOp::IsNull,
1483 "IsLiteral" => match self.name(self.first(self.first(inner))) {
1486 "NullLiteral" if negated => UnaryOp::IsNotNull,
1487 "NullLiteral" => UnaryOp::IsNull,
1488 "TrueLiteral" if negated => UnaryOp::IsNotTrue,
1489 "TrueLiteral" => UnaryOp::IsTrue,
1490 "FalseLiteral" if negated => UnaryOp::IsNotFalse,
1491 "FalseLiteral" => UnaryOp::IsFalse,
1492 "UnknownLiteral" if negated => UnaryOp::IsNotUnknown,
1493 "UnknownLiteral" => UnaryOp::IsUnknown,
1494 _ => return self.unsupported(inner),
1495 },
1496 _ => return self.unsupported(inner),
1497 };
1498 expr = self.push(Expr::Unary { op, operand: expr });
1499 }
1500 Ok(expr)
1501 }
1502
1503 fn between_in_like(&mut self, node: u32) -> Result<ExprRef> {
1505 let operand = self.expr(self.first(node))?;
1506 let op = self.nth(node, 1);
1509 let negated = self.text(op).to_ascii_uppercase().starts_with("NOT");
1510 let inner = self.first(self.first(op));
1511 match self.name(inner) {
1512 "BetweenClause" => {
1514 let low = self.expr(self.first(inner))?;
1515 let high = self.expr(self.nth(inner, 1))?;
1516 Ok(self.push(Expr::Between { operand, low, high, negated }))
1517 }
1518 "InClause" => {
1520 let expression = self.first(self.first(inner));
1521 match self.name(expression) {
1522 "InExpressionList" => {
1523 let mut items = Vec::new();
1524 for kid in self.kids(expression) {
1525 items.push(self.expr(kid)?);
1526 }
1527 let list = self.expr_slice(items);
1528 Ok(self.push(Expr::In { operand, list, negated }))
1529 }
1530 _ => self.unsupported(expression),
1531 }
1532 }
1533 "LikeClause" => {
1535 if self.find(inner, "EscapeClause") != NONE {
1536 return self.unsupported(inner);
1537 }
1538 let variation = self.name(self.first(self.first(inner)));
1539 let op = match (variation, negated) {
1540 ("LikeToken", false) | ("NotLikeOp", true) => BinaryOp::Like,
1541 ("LikeToken", true) | ("NotLikeOp", false) => BinaryOp::NotLike,
1542 ("ILikeToken", false) | ("NotILikeOp", true) => BinaryOp::ILike,
1543 ("ILikeToken", true) | ("NotILikeOp", false) => BinaryOp::NotILike,
1544 ("GlobToken", _) => BinaryOp::Glob,
1547 ("RegexMatchToken", _) => BinaryOp::Regex,
1548 ("SimilarToToken", false) | ("NotSimilarToOp", true) => BinaryOp::SimilarTo,
1549 ("SimilarToToken", true) | ("NotSimilarToOp", false) => BinaryOp::NotSimilarTo,
1550 ("RegexInsensitiveMatchToken", false)
1551 | ("NotRegexInsensitiveMatchOp", true) => BinaryOp::RegexInsensitive,
1552 ("RegexInsensitiveMatchToken", true)
1553 | ("NotRegexInsensitiveMatchOp", false) => BinaryOp::NotRegexInsensitive,
1554 _ => return self.unsupported(inner),
1555 };
1556 let right = self.expr(self.nth(inner, 1))?;
1557 let expr = self.push(Expr::Binary { op, left: operand, right });
1558 if negated && matches!(op, BinaryOp::Glob | BinaryOp::Regex) {
1561 return Ok(self.push(Expr::Unary { op: UnaryOp::Not, operand: expr }));
1562 }
1563 Ok(expr)
1564 }
1565 _ => self.unsupported(inner),
1566 }
1567 }
1568
1569 fn prefix(&mut self, node: u32) -> Result<ExprRef> {
1571 let kids: Vec<u32> = self.kids(node).collect();
1572 let mut expr = self.expr(kids[kids.len() - 1])?;
1573 for &operator in kids[..kids.len() - 1].iter().rev() {
1574 let op = match self.name(self.first(operator)) {
1575 "MinusPrefixOperator" => UnaryOp::Negate,
1576 "PlusPrefixOperator" => UnaryOp::Plus,
1577 "TildePrefixOperator" => UnaryOp::BitNot,
1578 _ => return self.unsupported(operator),
1579 };
1580 expr = self.push(Expr::Unary { op, operand: expr });
1581 }
1582 Ok(expr)
1583 }
1584
1585 fn indirection(&mut self, node: u32) -> Result<ExprRef> {
1587 let mut expr = self.expr(self.first(node))?;
1588 for step in self.kids(self.nth(node, 1)) {
1589 let inner = self.first(step);
1590 expr = match self.name(inner) {
1591 "CastOperator" => {
1593 let text = self.text(self.first(inner)).to_string();
1594 let ty = self.intern(&text);
1595 self.push(Expr::Cast { operand: expr, ty, try_cast: false })
1596 }
1597 "DotOperator" => {
1598 let dot = self.first(inner);
1599 match self.name(dot) {
1600 "DotColumnOperator" => {
1605 let field = self.identifier(self.first(dot));
1606 let text = self.ast.string(field).to_string();
1607 let literal = self.intern(&text);
1608 let key = self
1609 .push(Expr::Literal { kind: LiteralKind::String, text: literal });
1610 let name = self.function_name("struct_extract");
1611 let args = self.expr_slice(vec![expr, key]);
1612 self.push(Expr::Function { name, args, distinct: false })
1613 }
1614 "DotMethodOperator" => {
1616 let method = self.first(dot);
1617 let text = self.text(self.first(method)).to_string();
1618 let text = unquote(&text);
1619 let name = self.function_name(&text);
1620 let mut args = vec![expr];
1621 let list = self.find(method, "MethodExpressionArguments");
1622 if list != NONE {
1623 let inner = self.first(list);
1624 let arguments = self.find(inner, "MethodFunctionArguments");
1625 if arguments != NONE {
1626 for kid in self.kids(arguments) {
1627 args.push(self.argument(kid)?);
1628 }
1629 }
1630 }
1631 let args = self.expr_slice(args);
1632 self.push(Expr::Function { name, args, distinct: false })
1633 }
1634 _ => return self.unsupported(dot),
1635 }
1636 }
1637 "SliceExpression" => {
1639 let bound = self.first(inner);
1640 let has_end = self.find(bound, "EndSliceBound") != NONE;
1641 let has_step = self.find(bound, "StepSliceBound") != NONE;
1642 if has_end || has_step {
1643 return self.unsupported(inner);
1644 }
1645 let index = self.expr(self.first(bound))?;
1646 let name = self.function_name("array_extract");
1647 let args = self.expr_slice(vec![expr, index]);
1648 self.push(Expr::Function { name, args, distinct: false })
1649 }
1650 "PostfixOperator" => {
1652 self.push(Expr::Unary { op: UnaryOp::Factorial, operand: expr })
1653 }
1654 _ => return self.unsupported(inner),
1655 };
1656 }
1657 Ok(expr)
1658 }
1659
1660 fn function_name(&mut self, name: &str) -> Slice {
1662 let interned = self.intern(name);
1663 self.part_slice(vec![interned])
1664 }
1665
1666 fn star(&mut self, node: u32) -> Result<ExprRef> {
1668 for name in ["ExcludeList", "RenameList"] {
1669 let list = self.find(node, name);
1670 if list != NONE {
1671 return self.unsupported(list);
1672 }
1673 }
1674 let replace = self.find(node, "ReplaceList");
1675 let replacements =
1676 if replace == NONE { Slice::default() } else { self.replacements(replace)? };
1677 let qualifier = self.find(node, "StarQualifierList");
1678 let qualifier =
1679 if qualifier == NONE { Slice::default() } else { self.name_parts(qualifier) };
1680 Ok(self.push(Expr::Star { qualifier, replacements }))
1681 }
1682
1683 fn replacements(&mut self, node: u32) -> Result<Slice> {
1690 let entries = self.first(self.first(node));
1693 let listed: Vec<u32> =
1694 self.kids(entries).filter(|&kid| self.name(kid) == "ReplaceEntry").collect();
1695 let mut replacements = Vec::with_capacity(listed.len());
1696 for entry in listed {
1697 let expr = self.expr(self.first(entry))?;
1698 let alias = self.identifier(self.nth(entry, 1));
1699 let written = self.ast.string(alias).to_string();
1700 if replacements
1701 .iter()
1702 .any(|held: &Target| self.ast.string(held.alias).eq_ignore_ascii_case(&written))
1703 {
1704 return Err(Error::parser(format!(
1705 "Duplicate entry \"{written}\" in REPLACE list"
1706 )));
1707 }
1708 replacements.push(Target { expr, alias });
1709 }
1710 Ok(self.target_slice(replacements))
1711 }
1712
1713 fn function(&mut self, node: u32) -> Result<ExprRef> {
1716 for name in ["WithinGroupClause", "FilterClause", "ExportClause", "OverClause"] {
1717 let clause = self.find(node, name);
1718 if clause != NONE {
1719 return self.unsupported(clause);
1720 }
1721 }
1722 let name = self.name_parts(self.first(node));
1723 let list = self.first(self.nth(node, 1));
1727 for name in ["OrderByClause", "IgnoreOrRespectNulls"] {
1728 let clause = self.find(list, name);
1729 if clause != NONE {
1730 return self.unsupported(clause);
1731 }
1732 }
1733 let distinct = self.quantifier(self.find(list, "DistinctOrAll")) == Quantifier::Distinct;
1734 let mut args = Vec::new();
1735 let arguments = self.find(list, "FunctionArgumentList");
1736 if arguments != NONE {
1737 for kid in self.kids(arguments) {
1738 args.push(self.argument(kid)?);
1739 }
1740 }
1741 let args = self.expr_slice(args);
1742 Ok(self.push(Expr::Function { name, args, distinct }))
1743 }
1744
1745 fn extract(&mut self, node: u32) -> Result<ExprRef> {
1754 let arguments = self.find(node, "ExtractArguments");
1755 if arguments == NONE {
1756 return self.unsupported(node);
1757 }
1758 let argument = self.first(self.first(arguments));
1759 let part = match self.name(argument) {
1760 "ExtractStringArgument" => self.string_value(argument),
1761 "ExtractDatePartArgument" | "ExtractIdentifierArgument" => {
1764 self.text(argument).to_string()
1765 }
1766 _ => return self.unsupported(argument),
1767 };
1768 let text = self.intern(&part);
1769 let part = self.push(Expr::Literal { kind: LiteralKind::String, text });
1770 let operand = self.expr(self.nth(arguments, 1))?;
1771 let name = self.function_name("date_part");
1772 let args = self.expr_slice(vec![part, operand]);
1773 Ok(self.push(Expr::Function { name, args, distinct: false }))
1774 }
1775
1776 fn argument(&mut self, node: u32) -> Result<ExprRef> {
1778 let inner = self.first(node);
1779 match self.name(inner) {
1780 "PositionalFunctionArgument" => self.expr(self.first(inner)),
1781 _ => self.unsupported(inner),
1782 }
1783 }
1784
1785 fn table_argument(&mut self, node: u32) -> Result<Target> {
1800 let inner = self.first(node);
1801 if self.name(inner) == "NamedFunctionArgument" {
1802 let named = self.first(inner);
1803 if self.count(named) != 3 {
1804 return self.unsupported(named);
1807 }
1808 let alias = self.identifier(self.first(named));
1809 let expr = self.expr(self.nth(named, 2))?;
1810 return Ok(Target { expr, alias });
1811 }
1812 let expr = self.expr(self.first(inner))?;
1813 if let Expr::Binary { op: BinaryOp::Eq, left, right } = self.ast.expr(expr) {
1814 if let Expr::Column { name } = self.ast.expr(left) {
1815 if name.len == 1 {
1816 let alias = self.ast.parts[name.start as usize];
1817 return Ok(Target { expr: right, alias });
1818 }
1819 }
1820 }
1821 Ok(Target { expr, alias: NONE })
1822 }
1823
1824 fn cast(&mut self, node: u32) -> Result<ExprRef> {
1826 let try_cast = self.name(self.first(self.first(node))) == "TryCastKeyword";
1827 let arguments = self.nth(node, 1);
1829 let operand = self.expr(self.first(arguments))?;
1830 let text = self.text(self.nth(arguments, 1)).to_string();
1831 let ty = self.intern(&text);
1832 Ok(self.push(Expr::Cast { operand, ty, try_cast }))
1833 }
1834
1835 fn case(&mut self, node: u32) -> Result<ExprRef> {
1837 let mut operand = NONE;
1838 let mut arms = Vec::new();
1839 let mut otherwise = NONE;
1840 for kid in self.kids(node) {
1841 match self.name(kid) {
1842 "CaseWhenThen" => {
1844 let when = self.expr(self.first(kid))?;
1845 let then = self.expr(self.nth(kid, 1))?;
1846 arms.push(CaseArm { when, then });
1847 }
1848 "CaseElse" => otherwise = self.expr(self.first(kid))?,
1850 _ => operand = self.expr(kid)?,
1852 }
1853 }
1854 let start = self.ast.case_arms.len() as u32;
1855 self.ast.case_arms.extend(arms);
1856 let arms = Slice { start, len: self.ast.case_arms.len() as u32 - start };
1857 Ok(self.push(Expr::Case { operand, arms, otherwise }))
1858 }
1859
1860 fn row(&mut self, node: u32) -> Result<ExprRef> {
1865 let mut items = Vec::new();
1866 for kid in self.kids(node) {
1867 items.push(self.expr(kid)?);
1868 }
1869 if items.len() == 1 {
1870 return Ok(items[0]);
1871 }
1872 let items = self.expr_slice(items);
1873 Ok(self.push(Expr::Row { items }))
1874 }
1875
1876 fn parameter(&mut self, node: u32) -> Result<ExprRef> {
1883 let written = self.text(node).trim();
1884 let written = written.trim_start_matches(['?', '$']).trim();
1885 let name = if written.is_empty() {
1886 self.anonymous += 1;
1887 self.anonymous.to_string()
1888 } else {
1889 written.to_string()
1890 };
1891 let name = self.intern(&name);
1892 Ok(self.push(Expr::Parameter { name }))
1893 }
1894
1895 fn list(&mut self, node: u32) -> Result<ExprRef> {
1900 let mut items = Vec::new();
1901 for kid in self.kids(node) {
1902 items.push(self.expr(kid)?);
1903 }
1904 let items = self.expr_slice(items);
1905 Ok(self.push(Expr::List { items }))
1906 }
1907
1908 fn subquery(&mut self, node: u32) -> Result<ExprRef> {
1910 if self.find(node, "SubqueryNot") != NONE || self.find(node, "SubqueryExists") != NONE {
1911 return self.unsupported(node);
1912 }
1913 let reference = self.find(node, "SubqueryReference");
1914 let query = self.query(self.first(reference))?;
1915 Ok(self.push(Expr::Subquery { query }))
1916 }
1917
1918 fn string_value(&self, node: u32) -> String {
1924 let span = self.tree.node(node);
1925 let mut value = String::new();
1926 for token in &self.tokens[span.start as usize..span.end as usize] {
1927 if token.kind != Kind::String {
1928 continue;
1929 }
1930 let text = token.text(self.query);
1931 match text.strip_prefix('\'').and_then(|rest| rest.strip_suffix('\'')) {
1932 Some(body) => value.push_str(&body.replace("''", "'")),
1933 None => value.push_str(text),
1934 }
1935 }
1936 value
1937 }
1938}
1939
1940fn unquote(text: &str) -> String {
1950 if let Some(body) = text.strip_prefix('"').and_then(|rest| rest.strip_suffix('"')) {
1951 return body.replace("\"\"", "\"");
1952 }
1953 match text.strip_prefix('\'').and_then(|rest| rest.strip_suffix('\'')) {
1954 Some(body) => body.replace("''", "'"),
1955 None => text.to_string(),
1956 }
1957}
1958
1959#[cfg(test)]
1960mod tests {
1961 use super::*;
1962 use crate::corpus::CORPUS;
1963 use crate::matcher::parse;
1964
1965 fn show(ast: &Ast, expr: ExprRef) -> String {
1973 if expr == NONE {
1974 return "-".to_string();
1975 }
1976 let list = |slice: Slice| {
1977 ast.expr_list(slice).iter().map(|&item| show(ast, item)).collect::<Vec<_>>().join(", ")
1978 };
1979 match ast.expr(expr) {
1980 Expr::Star { qualifier, replacements } => {
1981 let star = if qualifier.is_empty() {
1982 "*".to_string()
1983 } else {
1984 format!("{}.*", ast.name_text(qualifier))
1985 };
1986 if replacements.is_empty() {
1987 return star;
1988 }
1989 let entries: Vec<String> = ast
1990 .target_list(replacements)
1991 .iter()
1992 .map(|target| {
1993 format!("{} AS {}", show(ast, target.expr), ast.string(target.alias))
1994 })
1995 .collect();
1996 format!("{star} REPLACE ({})", entries.join(", "))
1997 }
1998 Expr::Column { name } => ast.name_text(name),
1999 Expr::Literal { kind, text } => match kind {
2000 LiteralKind::Number => ast.string(text).to_string(),
2001 LiteralKind::String => format!("'{}'", ast.string(text)),
2002 other => format!("{other:?}").to_uppercase(),
2003 },
2004 Expr::Unary { op, operand } => format!("({op:?} {})", show(ast, operand)),
2005 Expr::Binary { op, left, right } => {
2006 let op = match op {
2007 BinaryOp::Named(name) => ast.string(name).to_string(),
2008 other => format!("{other:?}"),
2009 };
2010 format!("({} {op} {})", show(ast, left), show(ast, right))
2011 }
2012 Expr::Function { name, args, distinct } => {
2013 let distinct = if distinct { "DISTINCT " } else { "" };
2014 format!("{}({distinct}{})", ast.name_text(name), list(args))
2015 }
2016 Expr::Cast { operand, ty, try_cast } => {
2017 let word = if try_cast { "TRY_CAST" } else { "CAST" };
2018 format!("{word}({} AS {})", show(ast, operand), ast.string(ty))
2019 }
2020 Expr::Case { operand, arms, otherwise } => {
2021 let arms = ast
2022 .arm_list(arms)
2023 .iter()
2024 .map(|arm| format!("WHEN {} THEN {}", show(ast, arm.when), show(ast, arm.then)))
2025 .collect::<Vec<_>>()
2026 .join(" ");
2027 format!("CASE {} {arms} ELSE {} END", show(ast, operand), show(ast, otherwise))
2028 }
2029 Expr::Between { operand, low, high, negated } => {
2030 let not = if negated { "NOT " } else { "" };
2031 format!(
2032 "({not}{} BETWEEN {} AND {})",
2033 show(ast, operand),
2034 show(ast, low),
2035 show(ast, high)
2036 )
2037 }
2038 Expr::In { operand, list: items, negated } => {
2039 let not = if negated { "NOT " } else { "" };
2040 format!("({not}{} IN [{}])", show(ast, operand), list(items))
2041 }
2042 Expr::List { items } => format!("[{}]", list(items)),
2043 Expr::Parameter { name } => format!("${}", ast.string(name)),
2044 Expr::Row { items } => format!("ROW({})", list(items)),
2045 Expr::Subquery { query } => format!("({})", show_query(ast, query)),
2046 }
2047 }
2048
2049 fn show_source(ast: &Ast, source: SourceRef) -> String {
2051 let alias = |alias: StrRef| match alias {
2052 NONE => String::new(),
2053 other => format!(" AS {}", ast.string(other)),
2054 };
2055 match ast.source(source) {
2056 Source::Table { name, alias: name_alias, .. } => {
2057 format!("{}{}", ast.name_text(name), alias(name_alias))
2058 }
2059 Source::Function { name, args, alias: call_alias, .. } => {
2060 let args = ast
2061 .target_list(args)
2062 .iter()
2063 .map(|item| match item.alias {
2064 NONE => show(ast, item.expr),
2065 named => format!("{} := {}", ast.string(named), show(ast, item.expr)),
2066 })
2067 .collect::<Vec<_>>()
2068 .join(", ");
2069 format!("{}({args}){}", ast.name_text(name), alias(call_alias))
2070 }
2071 Source::Subquery { query, alias: query_alias, .. } => {
2072 format!("({}){}", show_query(ast, query), alias(query_alias))
2073 }
2074 Source::Values { rows, alias: values_alias, .. } => {
2075 format!("{}{}", show_rows(ast, rows), alias(values_alias))
2076 }
2077 Source::Join { left, right, kind, natural, on, using } => {
2078 let natural = if natural { "NATURAL " } else { "" };
2079 let on = if on == NONE { String::new() } else { format!(" ON {}", show(ast, on)) };
2080 let using = if using.is_empty() {
2081 String::new()
2082 } else {
2083 format!(" USING ({})", ast.name_text(using))
2084 };
2085 format!(
2086 "({} {natural}{kind:?} JOIN {}{on}{using})",
2087 show_source(ast, left),
2088 show_source(ast, right)
2089 )
2090 }
2091 }
2092 }
2093
2094 fn show_rows(ast: &Ast, rows: Slice) -> String {
2096 let rows = ast
2097 .rows(rows)
2098 .iter()
2099 .map(|&row| {
2100 let items = ast
2101 .expr_list(row)
2102 .iter()
2103 .map(|&item| show(ast, item))
2104 .collect::<Vec<_>>()
2105 .join(", ");
2106 format!("({items})")
2107 })
2108 .collect::<Vec<_>>()
2109 .join(", ");
2110 format!("VALUES {rows}")
2111 }
2112
2113 fn show_query(ast: &Ast, index: QueryRef) -> String {
2115 let query = ast.query(index);
2116 let list = |slice: Slice| {
2117 ast.expr_list(slice).iter().map(|&item| show(ast, item)).collect::<Vec<_>>().join(", ")
2118 };
2119 let mut out = match query.body {
2120 QueryBody::SetOp { op, quantifier, by_name, left, right } => {
2121 let by_name = if by_name { " BY NAME" } else { "" };
2122 format!(
2123 "({} {op:?} {quantifier:?}{by_name} {})",
2124 show_query(ast, left),
2125 show_query(ast, right)
2126 )
2127 }
2128 QueryBody::Select(index) => {
2129 let select = ast.select(index);
2130 let distinct = match select.distinct {
2131 Distinct::No => String::new(),
2132 Distinct::Yes => " DISTINCT".to_string(),
2133 Distinct::On(on) => format!(" DISTINCT ON ({})", list(on)),
2134 };
2135 let targets = ast
2136 .target_list(select.targets)
2137 .iter()
2138 .map(|target| match target.alias {
2139 NONE => show(ast, target.expr),
2140 alias => format!("{} AS {}", show(ast, target.expr), ast.string(alias)),
2141 })
2142 .collect::<Vec<_>>()
2143 .join(", ");
2144 let mut out = format!("SELECT{distinct} {targets}");
2145 if !select.from.is_empty() {
2146 let from = ast
2147 .source_list(select.from)
2148 .iter()
2149 .map(|&source| show_source(ast, source))
2150 .collect::<Vec<_>>()
2151 .join(", ");
2152 out += &format!(" FROM {from}");
2153 }
2154 if select.filter != NONE {
2155 out += &format!(" WHERE {}", show(ast, select.filter));
2156 }
2157 if select.group_by_all {
2158 out += " GROUP BY ALL";
2159 } else if !select.group_by.is_empty() {
2160 out += &format!(" GROUP BY {}", list(select.group_by));
2161 }
2162 if select.having != NONE {
2163 out += &format!(" HAVING {}", show(ast, select.having));
2164 }
2165 out
2166 }
2167 QueryBody::Values(rows) => show_rows(ast, rows),
2168 QueryBody::Describe(inner) => format!("DESCRIBE {}", show_query(ast, inner)),
2169 };
2170 if query.order_by_all {
2171 out += " ORDER BY ALL";
2172 } else if !query.order_by.is_empty() {
2173 let items = ast
2174 .order_list(query.order_by)
2175 .iter()
2176 .map(|item| format!("{} {:?} {:?}", show(ast, item.expr), item.order, item.nulls))
2177 .collect::<Vec<_>>()
2178 .join(", ");
2179 out += &format!(" ORDER BY {items}");
2180 }
2181 if query.limit != NONE {
2182 let percent = if query.limit_percent { "%" } else { "" };
2183 out += &format!(" LIMIT {}{percent}", show(ast, query.limit));
2184 }
2185 if query.offset != NONE {
2186 out += &format!(" OFFSET {}", show(ast, query.offset));
2187 }
2188 out
2189 }
2190
2191 fn round(query: &str) -> String {
2193 let ast = parse_ast(query).unwrap_or_else(|error| panic!("{query}: {error}"));
2194 assert_eq!(ast.statements.len(), 1, "{query} is one statement");
2195 let Statement::Query(index) = ast.statements[0] else {
2196 panic!("{query} is not a query");
2197 };
2198 show_query(&ast, index)
2199 }
2200
2201 fn round_statement(query: &str) -> String {
2203 let ast = parse_ast(query).unwrap_or_else(|error| panic!("{query}: {error}"));
2204 assert_eq!(ast.statements.len(), 1, "{query} is one statement");
2205 match ast.statements[0] {
2206 Statement::Query(index) => show_query(&ast, index),
2207 Statement::CreateTable(index) => {
2208 let create = ast.create_table(index);
2209 let mut out = "CREATE".to_string();
2210 if create.or_replace {
2211 out += " OR REPLACE";
2212 }
2213 if create.temporary {
2214 out += " TEMPORARY";
2215 }
2216 out += " TABLE";
2217 if create.if_not_exists {
2218 out += " IF NOT EXISTS";
2219 }
2220 out += &format!(" {}", ast.name_text(create.name));
2221 let columns = ast
2222 .column_defs(create.columns)
2223 .iter()
2224 .map(|def| {
2225 let ty = match def.ty {
2226 NONE => String::new(),
2227 other => format!(" {}", ast.string(other)),
2228 };
2229 let null = if def.not_null { " NOT NULL" } else { "" };
2230 format!("{}{ty}{null}", ast.string(def.name))
2231 })
2232 .collect::<Vec<_>>()
2233 .join(", ");
2234 if !columns.is_empty() || create.query == NONE {
2235 out += &format!(" ({columns})");
2236 }
2237 if create.query != NONE {
2238 out += &format!(" AS {}", show_query(&ast, create.query));
2239 }
2240 out
2241 }
2242 Statement::CreateView(index) => {
2243 let create = ast.create_view(index);
2244 let mut out = "CREATE".to_string();
2245 if create.or_replace {
2246 out += " OR REPLACE";
2247 }
2248 if create.temporary {
2249 out += " TEMPORARY";
2250 }
2251 out += " VIEW";
2252 if create.if_not_exists {
2253 out += " IF NOT EXISTS";
2254 }
2255 out += &format!(" {}", ast.name_text(create.name));
2256 if !create.columns.is_empty() {
2257 let columns = ast.name(create.columns).collect::<Vec<_>>().join(", ");
2258 out += &format!(" ({columns})");
2259 }
2260 out + &format!(" AS {}", show_query(&ast, create.query))
2261 }
2262 Statement::DropTable(index) => {
2263 let drop = ast.drop_table(index);
2264 let mut out = if drop.view { "DROP VIEW" } else { "DROP TABLE" }.to_string();
2265 if drop.if_exists {
2266 out += " IF EXISTS";
2267 }
2268 let names = ast
2269 .name_list(drop.names)
2270 .iter()
2271 .map(|&name| ast.name_text(name))
2272 .collect::<Vec<_>>()
2273 .join(", ");
2274 out + &format!(" {names}")
2275 }
2276 Statement::Insert(index) => {
2277 let insert = ast.insert(index);
2278 let mut out = format!("INSERT INTO {}", ast.name_text(insert.name));
2279 if !insert.columns.is_empty() {
2280 let columns = ast.name(insert.columns).collect::<Vec<_>>().join(", ");
2281 out += &format!(" ({columns})");
2282 }
2283 out + &format!(" {}", show_query(&ast, insert.source))
2284 }
2285 Statement::Set(index) => {
2286 let setting = ast.setting(index);
2287 let scope = match setting.scope.keyword() {
2288 "" => String::new(),
2289 word => format!(" {word}"),
2290 };
2291 format!("SET{scope} {} = {}", ast.string(setting.name), show(&ast, setting.value))
2292 }
2293 Statement::Reset(index) => {
2294 let setting = ast.setting(index);
2295 let scope = match setting.scope.keyword() {
2296 "" => String::new(),
2297 word => format!(" {word}"),
2298 };
2299 format!("RESET{scope} {}", ast.string(setting.name))
2300 }
2301 }
2302 }
2303
2304 #[test]
2305 fn a_set_keeps_its_name_its_scope_and_its_value() {
2306 assert_eq!(round_statement("SET memory_limit = '1GB'"), "SET memory_limit = '1GB'");
2307 assert_eq!(round_statement("set threads=4"), "SET threads = 4");
2308 assert_eq!(round_statement("SET GLOBAL threads = 4"), "SET GLOBAL threads = 4");
2309 assert_eq!(round_statement("SET SESSION threads = 4"), "SET SESSION threads = 4");
2310 assert_eq!(round_statement("SET LOCAL threads = 4"), "SET LOCAL threads = 4");
2311 assert_eq!(round_statement("RESET memory_limit"), "RESET memory_limit");
2312 assert_eq!(round_statement("RESET GLOBAL memory_limit"), "RESET GLOBAL memory_limit");
2313 }
2314
2315 #[test]
2316 fn the_two_other_things_the_word_set_starts_are_refused_rather_than_read_as_settings() {
2317 for statement in ["SET VARIABLE x = 1", "SET SCHEMA 'main'", "SET TIME ZONE 'UTC'"] {
2321 let error = parse_ast(statement).expect_err(statement);
2322 assert_eq!(error.code().duckdb_name(), "Not implemented Error", "{statement}");
2323 }
2324 }
2325
2326 #[test]
2327 fn a_setting_written_with_a_list_of_values_is_refused_rather_than_taking_the_first() {
2328 let error = parse_ast("SET search_path = a, b").expect_err("a list of two");
2329 assert_eq!(error.code().duckdb_name(), "Not implemented Error");
2330 }
2331
2332 #[test]
2333 fn the_query_m0_has_to_run_transforms() {
2334 assert_eq!(round("SELECT * FROM t WHERE x > 5"), "SELECT * FROM t WHERE (x Gt 5)");
2335 }
2336
2337 #[test]
2338 fn a_replace_list_rides_on_the_star_it_changes() {
2339 assert_eq!(
2342 round("SELECT * REPLACE (a + 1 AS a) FROM t"),
2343 "SELECT * REPLACE ((a Add 1) AS a) FROM t"
2344 );
2345 assert_eq!(
2346 round("SELECT * REPLACE a + 1 AS a FROM t"),
2347 "SELECT * REPLACE ((a Add 1) AS a) FROM t"
2348 );
2349 assert_eq!(
2350 round("SELECT t.* REPLACE (make_date(a) AS a, b * 2 AS b) FROM t"),
2351 "SELECT t.* REPLACE (make_date(a) AS a, (b Multiply 2) AS b) FROM t"
2352 );
2353 }
2354
2355 #[test]
2356 fn one_column_cannot_be_replaced_twice() {
2357 let error = parse_ast("SELECT * REPLACE (a + 1 AS a, a + 2 AS A) FROM t").unwrap_err();
2360 assert_eq!(error.to_string(), "Parser Error: Duplicate entry \"A\" in REPLACE list");
2361 }
2362
2363 #[test]
2364 fn a_table_function_argument_can_have_a_name_written_in_front_of_it() {
2365 for spelling in
2368 ["binary_as_string := True", "binary_as_string => True", "binary_as_string = True"]
2369 {
2370 assert_eq!(
2371 round(&format!("SELECT * FROM read_parquet('f.parquet', {spelling})")),
2372 "SELECT * FROM read_parquet('f.parquet', binary_as_string := TRUE)",
2373 "{spelling}"
2374 );
2375 }
2376 }
2377
2378 #[test]
2379 fn an_equality_that_is_not_a_bare_name_stays_an_argument() {
2380 assert_eq!(round("SELECT * FROM f(t.a = 1)"), "SELECT * FROM f((t.a Eq 1))");
2383 assert_eq!(round("SELECT * FROM f(1 = 1)"), "SELECT * FROM f((1 Eq 1))");
2384 }
2385
2386 #[test]
2387 fn a_create_table_keeps_its_types_as_text() {
2388 assert_eq!(
2389 round_statement("CREATE TABLE t (a INTEGER, b VARCHAR NOT NULL)"),
2390 "CREATE TABLE t (a INTEGER, b VARCHAR NOT NULL)"
2391 );
2392 assert_eq!(
2396 round_statement("CREATE TABLE t (a DECIMAL(18, 3), b STRUCT(x INT))"),
2397 "CREATE TABLE t (a DECIMAL(18, 3), b STRUCT(x INT))"
2398 );
2399 }
2400
2401 #[test]
2402 fn the_modifiers_on_a_create_table_survive() {
2403 assert_eq!(
2404 round_statement("CREATE OR REPLACE TEMPORARY TABLE s.t (a INT)"),
2405 "CREATE OR REPLACE TEMPORARY TABLE s.t (a INT)"
2406 );
2407 assert_eq!(
2408 round_statement("CREATE TEMPORARY TABLE IF NOT EXISTS s.t (a INT)"),
2409 "CREATE TEMPORARY TABLE IF NOT EXISTS s.t (a INT)"
2410 );
2411 }
2412
2413 #[test]
2414 fn or_replace_and_if_not_exists_in_one_statement_is_refused_here_and_not_later() {
2415 for sql in [
2419 "CREATE OR REPLACE TABLE IF NOT EXISTS t (a INT)",
2420 "CREATE OR REPLACE VIEW IF NOT EXISTS v AS SELECT 1",
2421 ] {
2422 let error = parse_ast(sql).unwrap_err().to_string();
2423 assert_eq!(
2424 error,
2425 "Parser Error: Cannot specify both OR REPLACE and IF NOT EXISTS within single \
2426 create statement"
2427 );
2428 }
2429 }
2430
2431 #[test]
2432 fn a_create_table_as_carries_the_query_and_not_the_types() {
2433 assert_eq!(
2434 round_statement("CREATE TABLE t AS SELECT a FROM u"),
2435 "CREATE TABLE t AS SELECT a FROM u"
2436 );
2437 assert_eq!(
2440 round_statement("CREATE TABLE t (x, y) AS SELECT a, b FROM u"),
2441 "CREATE TABLE t (x, y) AS SELECT a, b FROM u"
2442 );
2443 }
2444
2445 #[test]
2446 fn a_create_view_carries_its_body_twice_over() {
2447 assert_eq!(
2448 round_statement("CREATE VIEW v AS SELECT a FROM u"),
2449 "CREATE VIEW v AS SELECT a FROM u"
2450 );
2451 assert_eq!(
2452 round_statement("CREATE OR REPLACE VIEW main.v (x, y) AS SELECT a, b FROM u"),
2453 "CREATE OR REPLACE VIEW main.v (x, y) AS SELECT a, b FROM u"
2454 );
2455 let ast = parse_ast("CREATE VIEW v (x) AS SELECT a FROM u WHERE a > 1").expect("parses");
2458 let Statement::CreateView(index) = ast.statements[0] else {
2459 panic!("not a create view");
2460 };
2461 assert_eq!(ast.string(ast.create_view(index).sql), "SELECT a FROM u WHERE a > 1");
2462 }
2463
2464 #[test]
2465 fn a_drop_view_is_not_a_drop_table() {
2466 assert_eq!(round_statement("DROP VIEW IF EXISTS a, b"), "DROP VIEW IF EXISTS a, b");
2467 assert_eq!(round_statement("DROP TABLE a"), "DROP TABLE a");
2468 }
2469
2470 #[test]
2471 fn a_drop_table_is_a_list_of_qualified_names() {
2472 assert_eq!(round_statement("DROP TABLE t"), "DROP TABLE t");
2473 assert_eq!(round_statement("DROP TABLE IF EXISTS a, b.c"), "DROP TABLE IF EXISTS a, b.c");
2474 }
2475
2476 #[test]
2477 fn dropping_something_that_is_neither_a_table_nor_a_view_is_refused() {
2478 let error = parse_ast("DROP MATERIALIZED VIEW v").unwrap_err().to_string();
2482 assert!(error.starts_with("Not implemented Error"), "{error}");
2483 }
2484
2485 #[test]
2486 fn both_spellings_of_insert_arrive_at_a_query() {
2487 assert_eq!(
2488 round_statement("INSERT INTO t VALUES (1, 'a'), (2, 'b')"),
2489 "INSERT INTO t VALUES (1, 'a'), (2, 'b')"
2490 );
2491 assert_eq!(
2492 round_statement("INSERT INTO t (a, b) SELECT x, y FROM u"),
2493 "INSERT INTO t (a, b) SELECT x, y FROM u"
2494 );
2495 }
2496
2497 #[test]
2498 fn an_insert_clause_that_changes_the_answer_is_refused() {
2499 for query in [
2500 "INSERT INTO t VALUES (1) RETURNING *",
2501 "INSERT OR REPLACE INTO t VALUES (1)",
2502 "INSERT INTO t BY NAME SELECT 1 AS a",
2503 "INSERT INTO t VALUES (1) ON CONFLICT DO NOTHING",
2504 "INSERT INTO t DEFAULT VALUES",
2505 ] {
2506 let error = parse_ast(query).unwrap_err().to_string();
2507 assert!(error.starts_with("Not implemented Error"), "{query} gave {error}");
2508 }
2509 }
2510
2511 #[test]
2512 fn a_column_constraint_that_is_not_not_null_is_refused() {
2513 for query in [
2517 "CREATE TABLE t (a INT PRIMARY KEY)",
2518 "CREATE TABLE t (a INT UNIQUE)",
2519 "CREATE TABLE t (a INT CHECK (a > 0))",
2520 "CREATE TABLE t (a INT DEFAULT 1)",
2521 "CREATE TABLE t (a INT REFERENCES u (b))",
2522 "CREATE TABLE t (a INT, PRIMARY KEY (a))",
2523 ] {
2524 let error = parse_ast(query).unwrap_err().to_string();
2525 assert!(error.starts_with("Not implemented Error"), "{query} gave {error}");
2526 }
2527 }
2528
2529 #[test]
2530 fn values_is_a_query_on_its_own_and_in_a_from() {
2531 assert_eq!(round("VALUES (1), (2)"), "VALUES (1), (2)");
2532 assert_eq!(
2536 round("SELECT * FROM (VALUES (1, 2), (3, 4)) t(a, b)"),
2537 "SELECT * FROM (VALUES (1, 2), (3, 4)) AS t"
2538 );
2539 assert_eq!(
2540 round("SELECT * FROM VALUES (1, 2), (3, 4) AS t(a, b)"),
2541 "SELECT * FROM VALUES (1, 2), (3, 4) AS t"
2542 );
2543 assert_eq!(round("VALUES (1), (2, 3)"), "VALUES (1), (2, 3)");
2546 }
2547
2548 #[test]
2556 fn describe_rewrites_a_name_into_a_star_over_it() {
2557 assert_eq!(round("DESCRIBE SELECT 1 AS a"), "DESCRIBE SELECT 1 AS a");
2558 assert_eq!(round("DESCRIBE t"), "DESCRIBE SELECT * FROM t");
2559 assert_eq!(round("DESC t"), "DESCRIBE SELECT * FROM t");
2560 assert_eq!(round("DESCRIBE 'x.parquet'"), "DESCRIBE SELECT * FROM x.parquet");
2561 assert_eq!(
2563 round("SELECT column_name FROM (DESCRIBE SELECT 1 AS a)"),
2564 "SELECT column_name FROM (DESCRIBE SELECT 1 AS a)"
2565 );
2566 assert_eq!(round("DESCRIBE DESCRIBE SELECT 1 AS a"), "DESCRIBE DESCRIBE SELECT 1 AS a");
2567 }
2568
2569 #[test]
2576 fn summarize_is_refused_even_though_it_parses_as_a_describe() {
2577 for query in ["SUMMARIZE t", "SUMMARIZE SELECT 1"] {
2578 let error = parse_ast(query).expect_err("summarize is not implemented");
2579 let message = error.to_string();
2580 assert!(message.starts_with("Not implemented Error"), "{query} failed with {message}");
2581 }
2582 }
2583
2584 #[test]
2585 fn every_statement_in_the_corpus_gets_a_defined_answer() {
2586 let mut done = 0;
2591 for query in CORPUS {
2592 match parse_ast(query) {
2593 Ok(ast) => {
2594 assert_eq!(ast.statements.len(), 1, "{query}");
2595 done += 1;
2596 }
2597 Err(error) => {
2598 let message = error.to_string();
2599 assert!(
2600 message.starts_with("Not implemented Error"),
2601 "{query} failed with {message}, which is not a not-implemented error"
2602 );
2603 }
2604 }
2605 }
2606 assert!(done >= 23, "only {done} of the corpus transforms, which is fewer than it was");
2609 }
2610
2611 #[test]
2612 fn the_ast_is_far_smaller_than_the_parse_tree() {
2613 let query = CORPUS[4];
2614 let tree = parse(query).unwrap();
2615 let ast = parse_ast(query).unwrap();
2616 assert!(
2619 ast.node_count() * 20 < tree.arena_len(),
2620 "{} ast nodes against {} parse nodes",
2621 ast.node_count(),
2622 tree.arena_len()
2623 );
2624 }
2625
2626 #[test]
2627 fn precedence_comes_out_of_the_chain_and_into_the_tree() {
2628 assert_eq!(round("SELECT 1 + 2 * 3"), "SELECT (1 Add (2 Multiply 3))");
2629 assert_eq!(round("SELECT (1 + 2) * 3"), "SELECT ((1 Add 2) Multiply 3)");
2630 assert_eq!(round("SELECT 1 + 2 + 3"), "SELECT ((1 Add 2) Add 3)");
2631 assert_eq!(round("SELECT 1 - 2 - 3"), "SELECT ((1 Subtract 2) Subtract 3)");
2632 assert_eq!(
2633 round("SELECT a OR b AND c"),
2634 "SELECT (a Or (b And c))",
2635 "and binds tighter than or"
2636 );
2637 }
2638
2639 #[test]
2640 fn a_double_negation_is_two_nodes_and_not_none() {
2641 assert_eq!(round("SELECT NOT NOT a"), "SELECT (Not (Not a))");
2645 }
2646
2647 #[test]
2648 fn a_parenthesised_single_expression_is_not_a_row() {
2649 assert_eq!(round("SELECT (a)"), "SELECT a");
2650 assert_eq!(round("SELECT (a, b)"), "SELECT ROW(a, b)");
2651 }
2652
2653 #[test]
2654 fn a_bracketed_list_is_a_list_of_however_many_items_were_written() {
2655 assert_eq!(round("SELECT [a]"), "SELECT [a]");
2658 assert_eq!(round("SELECT [1, 2, 3]"), "SELECT [1, 2, 3]");
2659 assert_eq!(round("SELECT []"), "SELECT []");
2660 assert_eq!(round("SELECT ['a.parquet', 'b.parquet']"), "SELECT ['a.parquet', 'b.parquet']");
2661 }
2662
2663 #[test]
2664 fn a_parameter_carries_its_identifier_however_it_was_written() {
2665 assert_eq!(round("SELECT $1"), "SELECT $1");
2666 assert_eq!(round("SELECT ?1"), "SELECT $1");
2667 assert_eq!(round("SELECT $name"), "SELECT $name");
2668 assert_eq!(round("SELECT ? + $2"), "SELECT ($1 Add $2)");
2671 assert_eq!(round("SELECT ?, ?, ?"), "SELECT $1, $2, $3");
2672 }
2673
2674 #[test]
2675 fn the_parameters_of_a_statement_are_listed_once_each_in_written_order() {
2676 let ast = parse_ast("SELECT $b, $a, $b WHERE $a").expect("parses");
2677 assert_eq!(ast.parameters(), vec!["b", "a"]);
2678 assert!(parse_ast("SELECT 1").expect("parses").parameters().is_empty());
2679 }
2680
2681 #[test]
2682 fn the_three_ways_to_write_an_alias_all_arrive() {
2683 assert_eq!(round("SELECT a AS b"), "SELECT a AS b");
2684 assert_eq!(round("SELECT a b"), "SELECT a AS b");
2685 assert_eq!(round("SELECT b: a"), "SELECT a AS b");
2686 assert_eq!(round("SELECT a"), "SELECT a", "and no alias when none was written");
2687 }
2688
2689 #[test]
2690 fn a_from_with_no_select_selects_everything() {
2691 assert_eq!(round("FROM t"), "SELECT * FROM t");
2694 assert_eq!(round("FROM t SELECT a"), "SELECT a FROM t");
2695 }
2696
2697 #[test]
2698 fn joins_nest_to_the_left() {
2699 assert_eq!(
2700 round("SELECT * FROM a JOIN b ON a.i = b.i LEFT JOIN c USING (k)"),
2701 "SELECT * FROM ((a Inner JOIN b ON (a.i Eq b.i)) Left JOIN c USING (k))"
2702 );
2703 assert_eq!(
2704 round("SELECT * FROM a NATURAL JOIN b"),
2705 "SELECT * FROM (a NATURAL Inner JOIN b)"
2706 );
2707 assert_eq!(round("SELECT * FROM a CROSS JOIN b"), "SELECT * FROM (a Cross JOIN b)");
2708 assert_eq!(
2709 round("SELECT * FROM a POSITIONAL JOIN b"),
2710 "SELECT * FROM (a Positional JOIN b)"
2711 );
2712 assert_eq!(round("SELECT * FROM a, b"), "SELECT * FROM a, b", "a comma is not a join node");
2713 }
2714
2715 #[test]
2716 fn a_qualified_name_keeps_its_parts_however_it_was_spelled() {
2717 assert_eq!(round("SELECT a"), "SELECT a");
2721 assert_eq!(round("SELECT t.a"), "SELECT t.a");
2722 assert_eq!(round("SELECT s.t.a"), "SELECT s.t.a");
2723 assert_eq!(round("SELECT c.s.t.a"), "SELECT c.s.t.a");
2724 assert_eq!(round("SELECT * FROM s.t"), "SELECT * FROM s.t");
2725 }
2726
2727 #[test]
2728 fn a_star_can_be_qualified() {
2729 assert_eq!(round("SELECT *"), "SELECT *");
2730 assert_eq!(round("SELECT t.*"), "SELECT t.*");
2731 assert_eq!(round("SELECT s.t.*"), "SELECT s.t.*");
2732 }
2733
2734 #[test]
2735 fn a_quoted_identifier_keeps_its_case_and_loses_its_quotes() {
2736 let ast = parse_ast("SELECT \"Mixed Case\", \"a\"\"b\"").unwrap();
2740 assert_eq!(ast.strings[0], "Mixed Case");
2741 assert_eq!(ast.strings[1], "a\"b");
2742 }
2743
2744 #[test]
2745 fn a_string_literal_is_decoded_and_adjacent_ones_are_joined() {
2746 assert_eq!(round("SELECT 'it''s'"), "SELECT 'it's'");
2747 assert_eq!(round("SELECT 'a'\n'b'"), "SELECT 'ab'", "the standard's adjacency rule");
2748 }
2749
2750 #[test]
2751 fn the_null_and_boolean_tests_are_postfix_unary_operators() {
2752 assert_eq!(round("SELECT x IS NULL"), "SELECT (IsNull x)");
2753 assert_eq!(round("SELECT x IS NOT NULL"), "SELECT (IsNotNull x)");
2754 assert_eq!(round("SELECT x ISNULL"), "SELECT (IsNull x)");
2755 assert_eq!(round("SELECT x NOTNULL"), "SELECT (IsNotNull x)");
2756 assert_eq!(round("SELECT x IS TRUE"), "SELECT (IsTrue x)");
2757 assert_eq!(round("SELECT x IS NOT FALSE"), "SELECT (IsNotFalse x)");
2758 assert_eq!(round("SELECT x IS DISTINCT FROM y"), "SELECT (x IsDistinctFrom y)");
2759 assert_eq!(round("SELECT x IS NOT DISTINCT FROM y"), "SELECT (x IsNotDistinctFrom y)");
2760 }
2761
2762 #[test]
2763 fn the_like_family_folds_its_negation_into_the_operator() {
2764 assert_eq!(round("SELECT x LIKE 'a'"), "SELECT (x Like 'a')");
2765 assert_eq!(round("SELECT x NOT LIKE 'a'"), "SELECT (x NotLike 'a')");
2766 assert_eq!(round("SELECT x ILIKE 'a'"), "SELECT (x ILike 'a')");
2767 assert_eq!(round("SELECT x ~~ 'a'"), "SELECT (x Like 'a')", "the operator spelling");
2768 assert_eq!(round("SELECT x !~~ 'a'"), "SELECT (x NotLike 'a')");
2769 assert_eq!(round("SELECT x SIMILAR TO 'a'"), "SELECT (x SimilarTo 'a')");
2770 assert_eq!(round("SELECT x NOT GLOB 'a'"), "SELECT (Not (x Glob 'a'))");
2772 }
2773
2774 #[test]
2775 fn between_and_in_carry_their_negation_as_a_flag() {
2776 assert_eq!(round("SELECT x BETWEEN 1 AND 2"), "SELECT (x BETWEEN 1 AND 2)");
2777 assert_eq!(round("SELECT x NOT BETWEEN 1 AND 2"), "SELECT (NOT x BETWEEN 1 AND 2)");
2778 assert_eq!(round("SELECT x IN (1, 2)"), "SELECT (x IN [1, 2])");
2779 assert_eq!(round("SELECT x NOT IN (1, 2)"), "SELECT (NOT x IN [1, 2])");
2780 }
2781
2782 #[test]
2783 fn both_spellings_of_a_cast_are_the_same_node() {
2784 assert_eq!(round("SELECT CAST(x AS BIGINT)"), "SELECT CAST(x AS BIGINT)");
2785 assert_eq!(round("SELECT x::BIGINT"), "SELECT CAST(x AS BIGINT)");
2786 assert_eq!(round("SELECT TRY_CAST(x AS BIGINT)"), "SELECT TRY_CAST(x AS BIGINT)");
2787 assert_eq!(
2788 round("SELECT x::DECIMAL(18, 3)"),
2789 "SELECT CAST(x AS DECIMAL(18, 3))",
2790 "the type is kept as text because parsing it is the type system's job"
2791 );
2792 }
2793
2794 #[test]
2795 fn a_case_keeps_its_arms_in_order() {
2796 assert_eq!(
2797 round("SELECT CASE WHEN a THEN 1 WHEN b THEN 2 ELSE 3 END"),
2798 "SELECT CASE - WHEN a THEN 1 WHEN b THEN 2 ELSE 3 END"
2799 );
2800 assert_eq!(
2801 round("SELECT CASE x WHEN 1 THEN 'a' END"),
2802 "SELECT CASE x WHEN 1 THEN 'a' ELSE - END",
2803 "a simple case keeps the operand and a missing else is not an implicit null yet"
2804 );
2805 }
2806
2807 #[test]
2808 fn a_field_access_and_a_method_call_are_ordinary_function_calls() {
2809 assert_eq!(round("SELECT (f(x)).y"), "SELECT struct_extract(f(x), 'y')");
2812 assert_eq!(round("SELECT a[1]"), "SELECT array_extract(a, 1)");
2813 }
2814
2815 #[test]
2816 fn an_aggregate_keeps_its_distinct() {
2817 assert_eq!(round("SELECT count(*)"), "SELECT count(*)");
2818 assert_eq!(round("SELECT count(DISTINCT x)"), "SELECT count(DISTINCT x)");
2819 assert_eq!(round("SELECT count(ALL x)"), "SELECT count(x)");
2820 assert_eq!(round("SELECT main.count(x)"), "SELECT main.count(x)");
2821 }
2822
2823 #[test]
2824 fn the_modifiers_hang_off_the_query_and_not_off_the_select() {
2825 assert_eq!(
2829 round("SELECT 1 UNION ALL SELECT 2 ORDER BY 1"),
2830 "(SELECT 1 Union All SELECT 2) ORDER BY 1 Unstated Unstated"
2831 );
2832 assert_eq!(
2833 round("SELECT a FROM t UNION SELECT b FROM u EXCEPT SELECT c FROM v"),
2834 "((SELECT a FROM t Union Unstated SELECT b FROM u) Except Unstated SELECT c FROM v)",
2835 "set operators are left associative"
2836 );
2837 assert_eq!(
2838 round("SELECT 1 UNION SELECT 2 INTERSECT SELECT 3"),
2839 "(SELECT 1 Union Unstated (SELECT 2 Intersect Unstated SELECT 3))",
2840 "and intersect binds tighter than the other two"
2841 );
2842 }
2843
2844 #[test]
2845 fn the_sort_and_limit_clauses_keep_what_was_written() {
2846 assert_eq!(
2847 round("SELECT a FROM t ORDER BY a"),
2848 "SELECT a FROM t ORDER BY a Unstated Unstated"
2849 );
2850 assert_eq!(
2851 round("SELECT a FROM t ORDER BY a DESC NULLS LAST"),
2852 "SELECT a FROM t ORDER BY a Descending Last"
2853 );
2854 assert_eq!(round("SELECT a FROM t ORDER BY ALL"), "SELECT a FROM t ORDER BY ALL");
2855 assert_eq!(round("SELECT a FROM t GROUP BY ALL"), "SELECT a FROM t GROUP BY ALL");
2856 assert_eq!(round("SELECT a FROM t LIMIT 10 OFFSET 5"), "SELECT a FROM t LIMIT 10 OFFSET 5");
2857 assert_eq!(round("SELECT a FROM t OFFSET 5 LIMIT 10"), "SELECT a FROM t LIMIT 10 OFFSET 5");
2858 assert_eq!(round("SELECT a FROM t LIMIT 10%"), "SELECT a FROM t LIMIT 10%");
2859 assert_eq!(round("SELECT a FROM t LIMIT ALL"), "SELECT a FROM t", "which is no limit");
2860 }
2861
2862 #[test]
2863 fn a_subquery_appears_in_both_places_it_can() {
2864 assert_eq!(
2865 round("SELECT * FROM (SELECT x FROM t) AS s"),
2866 "SELECT * FROM (SELECT x FROM t) AS s"
2867 );
2868 assert_eq!(round("SELECT (SELECT 1)"), "SELECT (SELECT 1)");
2869 }
2870
2871 #[test]
2872 fn distinct_on_keeps_its_expressions() {
2873 assert_eq!(round("SELECT DISTINCT a"), "SELECT DISTINCT a");
2874 assert_eq!(round("SELECT ALL a"), "SELECT a", "which is the default written out");
2875 assert_eq!(round("SELECT DISTINCT ON (a, b) a"), "SELECT DISTINCT ON (a, b) a");
2876 }
2877
2878 #[test]
2879 fn an_operator_the_dialect_does_not_name_is_kept_by_name() {
2880 assert_eq!(round("SELECT a <=> b"), "SELECT (a <=> b)");
2886 assert!(parse_ast("SELECT a foo b").is_err(), "a bare word is not an operator");
2887 }
2888
2889 #[test]
2890 fn a_script_is_a_list_of_statements() {
2891 let ast = parse_ast("SELECT 1; SELECT 2;").unwrap();
2892 assert_eq!(ast.statements.len(), 2);
2893 let Statement::Query(second) = ast.statements[1] else {
2897 panic!("the second statement is a query");
2898 };
2899 assert_eq!(show_query(&ast, second), "SELECT 2");
2900 }
2901
2902 #[test]
2903 fn an_unsupported_construct_names_itself_and_what_was_written() {
2904 let error = parse_ast("ALTER TABLE t ADD COLUMN a INTEGER").unwrap_err().to_string();
2905 assert!(error.starts_with("Not implemented Error"), "{error}");
2906 assert!(error.contains("ALTER TABLE t ADD COLUMN a INTEGER"), "{error}");
2907 assert!(error.contains("AlterStatement"), "{error}");
2908 }
2909
2910 #[test]
2911 fn a_long_construct_is_cut_short_in_the_message() {
2912 let query = format!("ALTER TABLE t ADD COLUMN {} INTEGER", "a".repeat(80));
2913 let error = parse_ast(&query).unwrap_err().to_string();
2914 assert!(error.contains("..."), "{error}");
2915 assert!(error.len() < 200, "{error}");
2916 }
2917
2918 #[test]
2919 fn the_transformer_never_panics_on_anything_the_matcher_accepts() {
2920 for query in [
2924 "SELECT",
2925 "FROM t SELECT",
2926 "SELECT * FROM t WHERE",
2927 "SELECT ()",
2928 "SELECT a FROM t GROUP BY ()",
2929 ] {
2930 let answer = parse_ast(query);
2931 if let Err(error) = answer {
2932 let message = error.to_string();
2933 assert!(
2934 message.starts_with("Not implemented Error")
2935 || message.starts_with("Parser Error"),
2936 "{query} failed with {message}"
2937 );
2938 }
2939 }
2940 }
2941
2942 #[test]
2943 fn a_file_name_in_a_from_clause_is_a_table_name_with_the_quotes_off() {
2944 assert_eq!(round("SELECT * FROM 'hits.parquet'"), "SELECT * FROM hits.parquet");
2948 assert_eq!(round("SELECT * FROM \"hits.parquet\""), "SELECT * FROM hits.parquet");
2949 assert_eq!(round("SELECT * FROM 'hits.parquet' AS h"), "SELECT * FROM hits.parquet AS h");
2950 }
2951
2952 #[test]
2953 fn a_function_call_in_a_from_clause_is_a_source_and_not_an_expression() {
2954 assert_eq!(round("SELECT * FROM range(3)"), "SELECT * FROM range(3)");
2955 assert_eq!(round("SELECT * FROM range(1, 10, 2)"), "SELECT * FROM range(1, 10, 2)");
2956 assert_eq!(round("SELECT * FROM main.range(3)"), "SELECT * FROM main.range(3)");
2957 assert_eq!(round("SELECT * FROM range(3) AS t"), "SELECT * FROM range(3) AS t");
2958 assert_eq!(round("SELECT * FROM some_function()"), "SELECT * FROM some_function()");
2961 }
2962
2963 #[test]
2964 fn the_forms_of_a_table_function_this_does_not_cover_are_turned_away_by_name() {
2965 for query in [
2966 "SELECT * FROM range(3) WITH ORDINALITY",
2967 "SELECT * FROM LATERAL range(3)",
2968 "SELECT * FROM t: range(3)",
2969 ] {
2970 let error = parse_ast(query).unwrap_err().to_string();
2971 assert!(error.contains("grammar rule"), "{query} failed with {error}");
2972 }
2973 }
2974
2975 #[test]
2976 fn interning_means_a_name_written_twice_is_stored_once() {
2977 let ast = parse_ast("SELECT a, a, a FROM t WHERE a = a").unwrap();
2978 assert_eq!(ast.strings.iter().filter(|text| *text == "a").count(), 1);
2979 }
2980}