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rudb_parse/
ast.rs

1//! rudb's abstract syntax tree.
2//!
3//! The parse tree the matcher produces is DuckDB's grammar, faithfully. That is the point of it and
4//! it is also why nothing downstream should read it: a bump of the vendored grammar is allowed to
5//! rename `BetweenInLikeExpression`, and if the binder is matching on that name then the bump is a
6//! rewrite. This module is the boundary. It is ours, it changes when we decide it changes, and
7//! `transform` is the one place that knows both shapes.
8//!
9//! Everything is an arena with `u32` indices, per `spec/04-architecture.md` section 4.5. There is
10//! no `Box` and no `Vec` inside a node. A list of children is a [`Slice`] into a side vector, which
11//! means a node is a fixed size, the whole tree is a handful of allocations, and walking it is a
12//! sequential read rather than a pointer chase per node. It also means an `Ast` is `Clone` and
13//! `Send` without any thought, and that a subtree can be addressed by a `u32` in a plan or an
14//! error without borrowing anything.
15//!
16//! The one cost is that you cannot hold a reference to a node and index the arena at the same time,
17//! so the code reads a node out by value first. Nodes are small and `Copy`, so that is a register
18//! move.
19
20use rudb_common::Span;
21
22use crate::matcher::NONE;
23
24/// A run of items in one of the side vectors.
25///
26/// Empty is `len == 0`, and `start` is then meaningless rather than wrong. There is no `Option`
27/// wrapper because an absent list and an empty list are the same thing everywhere this is used.
28#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
29pub struct Slice {
30    /// The first item.
31    pub start: u32,
32    /// How many items.
33    pub len: u32,
34}
35
36impl Slice {
37    /// Whether the run is empty.
38    pub const fn is_empty(self) -> bool {
39        self.len == 0
40    }
41
42    /// The run as a range, for indexing the backing vector.
43    pub const fn range(self) -> std::ops::Range<usize> {
44        self.start as usize..(self.start + self.len) as usize
45    }
46}
47
48/// An index into `Ast::strings`.
49pub type StrRef = u32;
50/// An index into `Ast::exprs`.
51pub type ExprRef = u32;
52/// An index into `Ast::sources`.
53pub type SourceRef = u32;
54/// An index into `Ast::queries`.
55pub type QueryRef = u32;
56/// An index into `Ast::selects`.
57pub type SelectRef = u32;
58/// An index into `Ast::create_tables`.
59pub type CreateTableRef = u32;
60/// An index into `Ast::create_views`.
61pub type CreateViewRef = u32;
62/// An index into `Ast::drop_tables`.
63pub type DropTableRef = u32;
64/// An index into `Ast::inserts`.
65pub type InsertRef = u32;
66/// An index into `Ast::settings`.
67pub type SettingRef = u32;
68/// An index into `Ast::windows`.
69pub type WindowRef = u32;
70
71/// One statement.
72///
73/// Seven of the twenty seven the grammar reaches. The rest are a transform error naming the rule
74/// rather than a variant that nothing fills in, so that adding one is a compile error somewhere
75/// useful rather than a silent `todo!()`.
76#[derive(Debug, Clone, Copy, PartialEq, Eq)]
77pub enum Statement {
78    /// A query, meaning a `SELECT` or a set operation over two of them.
79    Query(QueryRef),
80    /// `CREATE TABLE`.
81    CreateTable(CreateTableRef),
82    /// `CREATE VIEW`.
83    CreateView(CreateViewRef),
84    /// `DROP TABLE` or `DROP VIEW`, which are one rule in the grammar and one statement here.
85    DropTable(DropTableRef),
86    /// `INSERT INTO`.
87    Insert(InsertRef),
88    /// `SET name = value`.
89    Set(SettingRef),
90    /// `RESET name`, which is the same shape with nothing on the right of it.
91    Reset(SettingRef),
92    /// `CHECKPOINT` or `FORCE CHECKPOINT`.
93    Checkpoint,
94    /// `EXPLAIN` over a query, and whether `ANALYZE` was asked for.
95    ///
96    /// The query rather than a statement, because the grammar lets every statement be explained
97    /// and a plan is the only thing there is to show. `EXPLAIN INSERT` is a refusal rather than a
98    /// plan of the source, since the source is not what the statement does.
99    ///
100    /// `ANALYZE` means the query is run and the plan is printed with what happened on it, so it is
101    /// a flag on the same statement rather than a statement of its own. Everything between the
102    /// parser and the printer is the same either way, which is the point: the analyzed plan has to
103    /// be the plan that ran.
104    Explain { query: QueryRef, analyze: bool },
105}
106
107/// `SET name = value` and `RESET name`.
108///
109/// One struct for the two, because `RESET name` is `SET name` with no value and giving it its own
110/// arena would mean two of everything to say the same thing twice.
111#[derive(Debug, Clone, Copy, PartialEq, Eq)]
112pub struct Setting {
113    /// The setting name, as written.
114    pub name: StrRef,
115    /// The scope word, if one was written.
116    pub scope: Scope,
117    /// The value, or `NONE` for a `RESET`.
118    ///
119    /// An expression rather than text. `SET memory_limit = '1GB'` writes a string and `SET threads
120    /// = 4` writes a number, and what a setting does with either is the setting's business.
121    pub value: ExprRef,
122    /// Whether the statement was written as a bare `PRAGMA name`.
123    ///
124    /// `PRAGMA disable_optimizer` is a `SET` with the name and the value both folded into one word,
125    /// and which word means what is the catalog's business rather than the parser's, so it arrives
126    /// here as a name with no value and this flag to say that no value is not a `RESET`.
127    pub pragma: bool,
128}
129
130/// Which copy of a setting a statement means.
131#[derive(Debug, Clone, Copy, PartialEq, Eq, Default)]
132pub enum Scope {
133    /// No scope word, which every setting reads as the one it has.
134    #[default]
135    Unwritten,
136    /// `GLOBAL`.
137    Global,
138    /// `SESSION`.
139    Session,
140    /// `LOCAL`.
141    Local,
142}
143
144impl Scope {
145    /// The word that was written, for the sentence an error prints.
146    #[must_use]
147    pub const fn keyword(self) -> &'static str {
148        match self {
149            Self::Unwritten => "",
150            Self::Global => "GLOBAL",
151            Self::Session => "SESSION",
152            Self::Local => "LOCAL",
153        }
154    }
155}
156
157/// `CREATE TABLE name (columns)` or `CREATE TABLE name AS query`.
158///
159/// Exactly one of `columns` and `query` says what the table is. A column list is the ordinary form
160/// and `query` is `CREATE TABLE AS`, where the columns come from what the query produced and the
161/// only thing the syntax contributes is optionally renaming them, which is `columns` with the types
162/// left as `NONE`.
163#[derive(Debug, Clone, Copy, PartialEq, Eq)]
164pub struct CreateTable {
165    /// The table name, as a run of [`Slice`] parts, outermost first.
166    pub name: Slice,
167    /// The column definitions, as a run of [`ColumnDef`].
168    pub columns: Slice,
169    /// The `AS` query, or `NONE`.
170    pub query: QueryRef,
171    /// Whether `IF NOT EXISTS` was written.
172    pub if_not_exists: bool,
173    /// Whether `OR REPLACE` was written.
174    pub or_replace: bool,
175    /// Whether `TEMP` or `TEMPORARY` was written.
176    pub temporary: bool,
177}
178
179/// One column of a `CREATE TABLE`.
180///
181/// The type is the text as written rather than a resolved type, because resolving a type is the
182/// binder's job and this crate is syntax. `VARCHAR(10)` and `STRUCT(a INTEGER)` reach the binder
183/// as themselves.
184#[derive(Debug, Clone, Copy, PartialEq, Eq)]
185pub struct ColumnDef {
186    /// The column name.
187    pub name: StrRef,
188    /// The type as written, or `NONE` when the definition had none, which only `CREATE TABLE AS`
189    /// allows.
190    pub ty: StrRef,
191    /// Whether `NOT NULL` was written.
192    pub not_null: bool,
193}
194
195/// `CREATE VIEW name (columns) AS query`.
196///
197/// The body is kept twice over, as a bound reference into this same arena and as the text that was
198/// written. Both are needed and they are needed for different things. The reference is what binds
199/// the body at creation, which is where a view over a table that is not there is refused. The text
200/// is what the catalog keeps, because a view is bound again at every reference rather than frozen
201/// at creation: a view over `SELECT * FROM t` follows `t` when a column is added to it, which was
202/// measured, and the only way to follow it is to have the query to bind again.
203#[derive(Debug, Clone, Copy, PartialEq, Eq)]
204pub struct CreateView {
205    /// The view name, as a run of [`Slice`] parts, outermost first.
206    pub name: Slice,
207    /// The column aliases, as a run of parts, empty when the statement wrote no list.
208    pub columns: Slice,
209    /// The body.
210    pub query: QueryRef,
211    /// The body as it was written, which is what the catalog keeps.
212    pub sql: StrRef,
213    /// Whether `IF NOT EXISTS` was written.
214    pub if_not_exists: bool,
215    /// Whether `OR REPLACE` was written.
216    pub or_replace: bool,
217    /// Whether `TEMP` or `TEMPORARY` was written.
218    pub temporary: bool,
219}
220
221/// `DROP TABLE a, b` or `DROP VIEW a, b`.
222#[derive(Debug, Clone, Copy, PartialEq, Eq)]
223pub struct DropTable {
224    /// The names, as a run of [`Slice`] into `Ast::name_lists`, each of which is a run of parts.
225    pub names: Slice,
226    /// Whether `IF EXISTS` was written.
227    pub if_exists: bool,
228    /// Whether `VIEW` was written where `TABLE` could have been. Dropping one as the other is an
229    /// error rather than a synonym, so which word was written has to survive the transform.
230    pub view: bool,
231}
232
233/// `INSERT INTO name (columns) query`.
234#[derive(Debug, Clone, Copy, PartialEq, Eq)]
235pub struct Insert {
236    /// The table name, as a run of parts, outermost first.
237    pub name: Slice,
238    /// The column list, as a run of parts, empty when the statement did not write one.
239    pub columns: Slice,
240    /// What produces the rows, which is a `VALUES` clause or any other query.
241    pub source: QueryRef,
242}
243
244/// A query: a body, plus the modifiers that apply to whatever the body produced.
245///
246/// The split is the grammar's, not an invention. `SelectStatementInternal <- WithClause?
247/// SelectSetOpChain ResultModifiers?` puts `ORDER BY` and `LIMIT` outside the set operator chain,
248/// which is the only place they can go and be right: `a UNION b ORDER BY x` sorts the union and not
249/// the second half of it. Hanging them off `Select` instead would have made that unrepresentable.
250#[derive(Debug, Clone, Copy, PartialEq, Eq)]
251pub struct Query {
252    /// What produces the rows.
253    pub body: QueryBody,
254    /// The `ORDER BY` list, as a run of [`OrderItem`].
255    pub order_by: Slice,
256    /// Whether the clause was `ORDER BY ALL`.
257    pub order_by_all: bool,
258    /// The `LIMIT` expression, or `NONE`.
259    pub limit: ExprRef,
260    /// Whether the limit was a percentage rather than a row count.
261    pub limit_percent: bool,
262    /// The `OFFSET` expression, or `NONE`.
263    pub offset: ExprRef,
264}
265
266impl Query {
267    /// A query with no modifiers on it.
268    pub const fn bare(body: QueryBody) -> Self {
269        Self {
270            body,
271            order_by: Slice { start: 0, len: 0 },
272            order_by_all: false,
273            limit: NONE,
274            limit_percent: false,
275            offset: NONE,
276        }
277    }
278}
279
280/// What produces the rows of a query.
281#[derive(Debug, Clone, Copy, PartialEq, Eq)]
282pub enum QueryBody {
283    /// One `SELECT ... FROM ... WHERE ...` block.
284    Select(SelectRef),
285    /// `UNION`, `EXCEPT` or `INTERSECT` over two queries.
286    SetOp {
287        /// Which operator.
288        op: SetOp,
289        /// Whether duplicates survive.
290        quantifier: Quantifier,
291        /// Whether the columns are matched up by name rather than by position.
292        by_name: bool,
293        /// The query on the left.
294        left: QueryRef,
295        /// The query on the right.
296        right: QueryRef,
297    },
298    /// `VALUES (1, 'a'), (2, 'b')`, as a run of [`Slice`] in `Ast::rows`.
299    ///
300    /// A row count and a column count and nothing else, so it is a query body rather than a
301    /// statement of its own. That is also what makes `INSERT INTO t VALUES (1)` and
302    /// `INSERT INTO t SELECT 1` the same shape by the time anything downstream sees them, which is
303    /// the reason the insert walker does not have two arms.
304    Values(Slice),
305    /// `DESCRIBE SELECT ...`, `DESCRIBE t` and `DESCRIBE 'file.parquet'`.
306    ///
307    /// A query body rather than a statement, because that is where the grammar puts it:
308    /// `SelectStatementType <- ... / DescribeStatement / ...`, so `FROM (DESCRIBE SELECT 1)` is a
309    /// subquery over one and needs no rule of its own. The two spellings that name something
310    /// instead of writing a query arrive here as `DESCRIBE SELECT * FROM that`, which is not a
311    /// shortcut: on the reference binary `DESCRIBE t` and `DESCRIBE SELECT * FROM t` produce the
312    /// same six columns and the same rows, down to the primary key and the default.
313    Describe(QueryRef),
314    /// `SHOW name`, resolved as a setting or a deprecated table description while binding.
315    Show { name: Slice, relation: QueryRef },
316}
317
318/// Which set operator.
319#[derive(Debug, Clone, Copy, PartialEq, Eq)]
320pub enum SetOp {
321    /// `UNION`.
322    Union,
323    /// `EXCEPT`.
324    Except,
325    /// `INTERSECT`.
326    Intersect,
327}
328
329/// Whether a set operator or an aggregate keeps duplicates.
330///
331/// `Unstated` is not the same as `All` even though the two agree for `UNION`, because they disagree
332/// for `INTERSECT` in some dialects and because an error message that says what was written is
333/// better than one that says what it was taken to mean.
334#[derive(Debug, Clone, Copy, PartialEq, Eq)]
335pub enum Quantifier {
336    /// Neither word was written.
337    Unstated,
338    /// `ALL`.
339    All,
340    /// `DISTINCT`.
341    Distinct,
342}
343
344/// What the `DISTINCT` clause of a select said.
345#[derive(Debug, Clone, Copy, PartialEq, Eq)]
346pub enum Distinct {
347    /// No clause, or the no-op `SELECT ALL`.
348    No,
349    /// `SELECT DISTINCT`.
350    Yes,
351    /// `SELECT DISTINCT ON (a, b)`, holding the expressions in the parentheses.
352    On(Slice),
353}
354
355/// One select block.
356///
357/// Every optional expression is `NONE` when it is absent rather than an `Option<u32>`, which keeps
358/// the struct at forty bytes and keeps the absent case spelled the same way it is spelled in the
359/// parse tree arena.
360#[derive(Debug, Clone, Copy, PartialEq, Eq)]
361pub struct Select {
362    /// The `DISTINCT` clause.
363    pub distinct: Distinct,
364    /// The target list, as a run of [`Target`].
365    pub targets: Slice,
366    /// The `FROM` list, as a run of [`SourceRef`]. Several entries mean a cross product.
367    pub from: Slice,
368    /// The `WHERE` expression, or `NONE`.
369    pub filter: ExprRef,
370    /// The `GROUP BY` list, as a run of [`ExprRef`].
371    pub group_by: Slice,
372    /// Whether the clause was `GROUP BY ALL`.
373    pub group_by_all: bool,
374    /// The `HAVING` expression, or `NONE`.
375    pub having: ExprRef,
376}
377
378impl Select {
379    /// An empty select, which is what the transformer fills in from.
380    pub const fn empty() -> Self {
381        Self {
382            distinct: Distinct::No,
383            targets: Slice { start: 0, len: 0 },
384            from: Slice { start: 0, len: 0 },
385            filter: NONE,
386            group_by: Slice { start: 0, len: 0 },
387            group_by_all: false,
388            having: NONE,
389        }
390    }
391}
392
393/// One entry of a target list.
394#[derive(Debug, Clone, Copy, PartialEq, Eq)]
395pub struct Target {
396    /// What is being selected.
397    pub expr: ExprRef,
398    /// The alias, or `NONE`. The binder invents one when there is none, because what it invents
399    /// depends on the expression and that is a binder question rather than a parser question.
400    pub alias: StrRef,
401}
402
403/// One entry of an order by list.
404#[derive(Debug, Clone, Copy, PartialEq, Eq)]
405pub struct OrderItem {
406    /// What to sort on.
407    pub expr: ExprRef,
408    /// The direction.
409    pub order: Order,
410    /// Where nulls go.
411    pub nulls: Nulls,
412}
413
414/// Sort direction, with the unwritten case kept apart from the default it resolves to.
415#[derive(Debug, Clone, Copy, PartialEq, Eq)]
416pub enum Order {
417    /// Nothing was written.
418    Unstated,
419    /// `ASC` or `ASCENDING`.
420    Ascending,
421    /// `DESC` or `DESCENDING`.
422    Descending,
423}
424
425/// Null placement in a sort.
426#[derive(Debug, Clone, Copy, PartialEq, Eq)]
427pub enum Nulls {
428    /// Nothing was written, so the session default applies.
429    Unstated,
430    /// `NULLS FIRST`.
431    First,
432    /// `NULLS LAST`.
433    Last,
434}
435
436/// How a window frame measures the distance to its bounds.
437#[derive(Debug, Clone, Copy, PartialEq, Eq)]
438pub enum WindowUnit {
439    /// `ROWS`, so a bound counts rows.
440    Rows,
441    /// `RANGE`, so a bound is a value offset from the current row's sort key.
442    Range,
443    /// `GROUPS`, so a bound counts runs of rows that tie on the sort key.
444    Groups,
445}
446
447/// One end of a window frame.
448#[derive(Debug, Clone, Copy, PartialEq, Eq)]
449pub enum WindowBound {
450    /// `UNBOUNDED PRECEDING`, the first row of the partition.
451    UnboundedPreceding,
452    /// `n PRECEDING`, holding the offset expression.
453    Preceding(ExprRef),
454    /// `CURRENT ROW`.
455    CurrentRow,
456    /// `n FOLLOWING`, holding the offset expression.
457    Following(ExprRef),
458    /// `UNBOUNDED FOLLOWING`, the last row of the partition.
459    UnboundedFollowing,
460}
461
462/// Which peers of the current row the frame drops once its bounds have been applied.
463#[derive(Debug, Clone, Copy, PartialEq, Eq)]
464pub enum WindowExclude {
465    /// `EXCLUDE NO OTHERS`, which is also what an unwritten clause means.
466    NoOthers,
467    /// `EXCLUDE CURRENT ROW`.
468    CurrentRow,
469    /// `EXCLUDE GROUP`, dropping the current row and everything that ties with it.
470    Group,
471    /// `EXCLUDE TIES`, dropping everything that ties with the current row but keeping it.
472    Ties,
473}
474
475/// Everything inside the parentheses of an `OVER`.
476///
477/// A named window is resolved here rather than downstream, because the resolution is a parser
478/// question on the reference binary: a reference to a window nobody defined is a `Parser Error`
479/// there, and a view written with `OVER w` comes back out of the catalog with the definition
480/// inlined. So nothing after the transform ever sees a name, and there is no window clause on
481/// [`Select`] for it to see one in.
482#[derive(Debug, Clone, Copy, PartialEq, Eq)]
483pub struct WindowSpec {
484    /// The `PARTITION BY` list, as a run of [`ExprRef`], empty when there was no clause.
485    pub partition: Slice,
486    /// The `ORDER BY` list, as a run of [`OrderItem`], empty when there was no clause.
487    pub order: Slice,
488    /// Which of the three units the bounds are measured in.
489    pub unit: WindowUnit,
490    /// Where the frame starts.
491    pub start: WindowBound,
492    /// Where the frame ends.
493    pub end: WindowBound,
494    /// Which peers the frame drops.
495    pub exclude: WindowExclude,
496}
497
498impl WindowSpec {
499    /// The frame a window with no frame clause gets, which the standard fixes and DuckDB follows.
500    pub const DEFAULT_UNIT: WindowUnit = WindowUnit::Range;
501    /// The start a window with no frame clause gets.
502    pub const DEFAULT_START: WindowBound = WindowBound::UnboundedPreceding;
503    /// The end a window with no frame clause gets.
504    pub const DEFAULT_END: WindowBound = WindowBound::CurrentRow;
505
506    /// A window with no clauses at all, which is what `OVER ()` means.
507    pub const fn empty() -> Self {
508        Self {
509            partition: Slice { start: 0, len: 0 },
510            order: Slice { start: 0, len: 0 },
511            unit: Self::DEFAULT_UNIT,
512            start: Self::DEFAULT_START,
513            end: Self::DEFAULT_END,
514            exclude: WindowExclude::NoOthers,
515        }
516    }
517
518    /// Whether the frame is the one an unwritten frame clause means.
519    ///
520    /// This is what decides whether the frame is printed, which is not a matter of taste: the
521    /// printed form is the column name a window target gets when the query wrote no alias, so
522    /// `SELECT sum(x) OVER (ORDER BY x)` has to be named without a frame in it to agree with the
523    /// reference binary.
524    pub fn frame_is_default(&self) -> bool {
525        self.unit == Self::DEFAULT_UNIT
526            && self.start == Self::DEFAULT_START
527            && self.end == Self::DEFAULT_END
528            && self.exclude == WindowExclude::NoOthers
529    }
530}
531
532/// One entry in a `FROM` clause, which is a tree because joins nest.
533#[derive(Debug, Clone, Copy, PartialEq, Eq)]
534pub enum Source {
535    /// A named table, possibly qualified by schema and catalog.
536    Table {
537        /// The name, as a run of [`StrRef`] in `Ast::parts`, outermost first.
538        name: Slice,
539        /// The alias, or `NONE`.
540        alias: StrRef,
541        /// Column aliases from `AS t(a, b)`, as a run of [`StrRef`].
542        columns: Slice,
543    },
544    /// A parenthesised query in the `FROM` clause.
545    Subquery {
546        /// The query.
547        query: QueryRef,
548        /// The alias, or `NONE`.
549        alias: StrRef,
550        /// Column aliases, as a run of [`StrRef`].
551        columns: Slice,
552    },
553    /// A function call where a table goes, such as `range(10)`.
554    ///
555    /// Held with the name as a qualified run rather than a single string, because `main.range(10)`
556    /// is legal and a function in a schema that does not exist has to say so rather than being
557    /// looked up unqualified and found.
558    Function {
559        /// The name, as a run of [`StrRef`] in `Ast::parts`, outermost first.
560        name: Slice,
561        /// The arguments, as a run of [`Target`] where the alias is the parameter name and is
562        /// `NONE` for a positional one.
563        args: Slice,
564        /// The alias, or `NONE`.
565        alias: StrRef,
566        /// Column aliases from `AS t(a, b)`, as a run of [`StrRef`].
567        columns: Slice,
568        /// Whether the call was written as `PRAGMA name` rather than as a function call.
569        ///
570        /// The two are the same query, because `PRAGMA table_info('t')` is rewritten to
571        /// `SELECT * FROM pragma_table_info('t')` here the way upstream rewrites it, and the
572        /// rewritten form is what the plan and the deparser see. What the flag is for is the two
573        /// messages a bad call produces, which upstream writes in the spelling the user used:
574        /// `table_info()` rather than `pragma_table_info()`, and a candidate line reading
575        /// `PRAGMA "table_info"(VARCHAR)`. A user who wrote a pragma and is told about a function
576        /// they did not name has been handed the rewrite to debug rather than their own statement.
577        pragma: bool,
578    },
579    /// A `VALUES` in the `FROM` clause.
580    Values {
581        /// The rows, as a run of [`Slice`] in `Ast::rows`.
582        rows: Slice,
583        /// The alias, or `NONE`.
584        alias: StrRef,
585        /// Column aliases, as a run of [`StrRef`].
586        columns: Slice,
587    },
588    /// Two sources joined.
589    Join {
590        /// The left side.
591        left: SourceRef,
592        /// The right side.
593        right: SourceRef,
594        /// Which join.
595        kind: JoinKind,
596        /// Whether it was written `NATURAL`.
597        natural: bool,
598        /// The `ON` expression, or `NONE`.
599        on: ExprRef,
600        /// The `USING` column list, as a run of [`StrRef`].
601        using: Slice,
602    },
603}
604
605/// Which join.
606#[derive(Debug, Clone, Copy, PartialEq, Eq)]
607pub enum JoinKind {
608    /// `[INNER] JOIN`.
609    Inner,
610    /// `LEFT [OUTER] JOIN`.
611    Left,
612    /// `RIGHT [OUTER] JOIN`.
613    Right,
614    /// `FULL [OUTER] JOIN`.
615    Full,
616    /// `SEMI JOIN`.
617    Semi,
618    /// `ANTI JOIN`.
619    Anti,
620    /// `CROSS JOIN`.
621    Cross,
622    /// `POSITIONAL JOIN`, which is DuckDB's own and pairs rows by ordinal.
623    Positional,
624}
625
626/// One expression.
627///
628/// Twenty four bytes, which is the widest variant rounded up. The precedence chain in the grammar
629/// does not survive into here: twenty levels of `X <- Y Tail*` become one [`Expr::Binary`] tree,
630/// because the levels exist to make the grammar unambiguous and mean nothing afterwards.
631#[derive(Debug, Clone, Copy, PartialEq, Eq)]
632pub enum Expr {
633    /// `*`, or `t.*` with a qualifier.
634    Star {
635        /// The qualifier, as a run of [`StrRef`], empty for a bare star.
636        qualifier: Slice,
637        /// `REPLACE (expression AS column)`, as a run of [`Target`] where the alias is the column
638        /// being replaced, empty for a star with no replace list.
639        ///
640        /// A [`Target`] rather than a type of its own because a replacement is an expression and a
641        /// name, which is exactly what a target is, and because that puts it in the arena every
642        /// other expression and name pair already lives in.
643        replacements: Slice,
644    },
645    /// A column reference, qualified or not.
646    Column {
647        /// The name, as a run of [`StrRef`], outermost first, so `s.t.a` is three parts.
648        name: Slice,
649    },
650    /// A literal, kept as the text that was written.
651    Literal {
652        /// Which kind.
653        kind: LiteralKind,
654        /// The text, with quotes stripped and escapes resolved for a string, `NONE` for a keyword
655        /// literal like `NULL` where the kind already says everything.
656        text: StrRef,
657    },
658    /// A prefix or postfix operator.
659    Unary {
660        /// Which operator.
661        op: UnaryOp,
662        /// What it applies to.
663        operand: ExprRef,
664    },
665    /// An infix operator.
666    Binary {
667        /// Which operator.
668        op: BinaryOp,
669        /// The left operand.
670        left: ExprRef,
671        /// The right operand.
672        right: ExprRef,
673    },
674    /// A function call.
675    Function {
676        /// The name, as a run of [`StrRef`], so `main.count` is two parts.
677        name: Slice,
678        /// The arguments, as a run of [`ExprRef`].
679        args: Slice,
680        /// Whether the call said `DISTINCT`.
681        distinct: bool,
682    },
683    /// A function call with an `OVER` on the end of it.
684    ///
685    /// Kept apart from [`Expr::Function`] rather than given an optional window, because the two
686    /// are different things by every rule that applies to them: a window call is refused in a
687    /// `WHERE` and in a `HAVING`, it may not appear inside an aggregate, and it resolves against a
688    /// different set of names. A variant that only some of the code has to remember to look at is
689    /// a variant the rest of the code gets wrong.
690    Window {
691        /// The name, as a run of [`StrRef`], so `main.sum` is two parts.
692        name: Slice,
693        /// The arguments, as a run of [`ExprRef`].
694        args: Slice,
695        /// Whether the call said `DISTINCT`.
696        distinct: bool,
697        /// Whether the call said `IGNORE NULLS`. `RESPECT NULLS` is the default and is not kept,
698        /// because the reference binary drops it: a view written with it comes back without it.
699        ignore_nulls: bool,
700        /// The window itself, into `Ast::windows`.
701        spec: WindowRef,
702    },
703    /// `CAST(x AS t)` or `TRY_CAST(x AS t)`.
704    Cast {
705        /// What is being cast.
706        operand: ExprRef,
707        /// The target type, as the text it was written with. Parsing it is `rudb-common`'s job and
708        /// doing it here would put the type system in the parser.
709        ty: StrRef,
710        /// Whether a failure yields null rather than an error.
711        try_cast: bool,
712    },
713    /// `CASE`, searched or simple.
714    Case {
715        /// The operand of a simple `CASE x WHEN`, or `NONE` for a searched one.
716        operand: ExprRef,
717        /// The arms, as a run of [`CaseArm`].
718        arms: Slice,
719        /// The `ELSE`, or `NONE`.
720        otherwise: ExprRef,
721    },
722    /// `x BETWEEN a AND b`.
723    Between {
724        /// What is being tested.
725        operand: ExprRef,
726        /// The lower bound.
727        low: ExprRef,
728        /// The upper bound.
729        high: ExprRef,
730        /// Whether it was written `NOT BETWEEN`.
731        negated: bool,
732    },
733    /// `x IN (a, b, c)`.
734    In {
735        /// What is being tested.
736        operand: ExprRef,
737        /// The list, as a run of [`ExprRef`].
738        list: Slice,
739        /// Whether it was written `NOT IN`.
740        negated: bool,
741    },
742    /// `x IN (SELECT ...)` or its negation.
743    InSubquery {
744        /// What is being tested.
745        operand: ExprRef,
746        /// The query producing the candidates.
747        query: QueryRef,
748        /// Whether it was written `NOT IN`.
749        negated: bool,
750    },
751    /// `x op ANY (SELECT ...)` or `x op ALL (SELECT ...)`.
752    QuantifiedSubquery {
753        /// The value on the left of the comparison.
754        operand: ExprRef,
755        /// The comparison applied to each candidate.
756        op: BinaryOp,
757        /// The query producing the candidates.
758        query: QueryRef,
759        /// Whether the quantifier was `ALL` rather than `ANY`.
760        all: bool,
761    },
762    /// A prepared statement parameter, written `?`, `?1`, `$1` or `$name`.
763    Parameter {
764        /// The identifier, which is the number for a positional one and the word for a named one.
765        /// A bare `?` is numbered by where it was written, so the identifier is there either way.
766        name: StrRef,
767    },
768    /// A bracketed list of expressions, `[a, b, c]`, which is a LIST value.
769    List {
770        /// The items, as a run of [`ExprRef`], in the order they were written.
771        items: Slice,
772    },
773    /// A parenthesised list of more than one expression, which is a row value.
774    Row {
775        /// The items, as a run of [`ExprRef`].
776        items: Slice,
777    },
778    /// A scalar subquery, `(SELECT ...)` where an expression is expected.
779    Subquery {
780        /// The query.
781        query: QueryRef,
782    },
783    /// `EXISTS (SELECT ...)` or its negation.
784    Exists {
785        /// The query whose cardinality is tested.
786        query: QueryRef,
787        /// Whether `NOT` was written before `EXISTS`.
788        negated: bool,
789    },
790}
791
792/// One `WHEN a THEN b`.
793#[derive(Debug, Clone, Copy, PartialEq, Eq)]
794pub struct CaseArm {
795    /// The `WHEN`.
796    pub when: ExprRef,
797    /// The `THEN`.
798    pub then: ExprRef,
799}
800
801/// Which literal.
802#[derive(Debug, Clone, Copy, PartialEq, Eq)]
803pub enum LiteralKind {
804    /// A number, kept as text because the width it wants depends on where it lands.
805    Number,
806    /// A string.
807    String,
808    /// A blob, kept as the text a blob prints as, which is the text a cast reads it back from.
809    Blob,
810    /// `NULL`.
811    Null,
812    /// `TRUE`.
813    True,
814    /// `FALSE`.
815    False,
816}
817
818/// A prefix or postfix operator.
819#[derive(Debug, Clone, Copy, PartialEq, Eq)]
820pub enum UnaryOp {
821    /// `NOT x`.
822    Not,
823    /// `-x`.
824    Negate,
825    /// `+x`, which is a no-op that still has to survive to the binder so that `+'a'` errors.
826    Plus,
827    /// `~x`.
828    BitNot,
829    /// `x!`.
830    Factorial,
831    /// `x IS NULL` or `x ISNULL`.
832    IsNull,
833    /// `x IS NOT NULL` or `x NOTNULL`.
834    IsNotNull,
835    /// `x IS TRUE`.
836    IsTrue,
837    /// `x IS NOT TRUE`.
838    IsNotTrue,
839    /// `x IS FALSE`.
840    IsFalse,
841    /// `x IS NOT FALSE`.
842    IsNotFalse,
843    /// `x IS UNKNOWN`.
844    IsUnknown,
845    /// `x IS NOT UNKNOWN`.
846    IsNotUnknown,
847}
848
849/// An infix operator.
850///
851/// The list is the dialect and not a general idea of what operators are. `Named` is the one open
852/// door, because `OperatorLiteral` in the grammar takes any run of operator characters that is not
853/// already a token, and rejecting that here would reject SQL DuckDB accepts.
854#[derive(Debug, Clone, Copy, PartialEq, Eq)]
855pub enum BinaryOp {
856    /// `OR`.
857    Or,
858    /// `AND`.
859    And,
860    /// `=` or `==`.
861    Eq,
862    /// `!=` or `<>`.
863    NotEq,
864    /// `<`.
865    Lt,
866    /// `>`.
867    Gt,
868    /// `<=`.
869    LtEq,
870    /// `>=`.
871    GtEq,
872    /// `IS DISTINCT FROM`.
873    IsDistinctFrom,
874    /// `IS NOT DISTINCT FROM`.
875    IsNotDistinctFrom,
876    /// `+`.
877    Add,
878    /// `-`.
879    Subtract,
880    /// `*`.
881    Multiply,
882    /// `/`.
883    Divide,
884    /// `//`, integer division.
885    IntegerDivide,
886    /// `%`.
887    Modulo,
888    /// `^` or `**`.
889    Power,
890    /// `&`.
891    BitAnd,
892    /// `|`.
893    BitOr,
894    /// `<<`.
895    ShiftLeft,
896    /// `>>`.
897    ShiftRight,
898    /// `||`.
899    Concat,
900    /// `LIKE` or `~~`.
901    Like,
902    /// `NOT LIKE` or `!~~`.
903    NotLike,
904    /// `ILIKE` or `~~*`.
905    ILike,
906    /// `NOT ILIKE` or `!~~*`.
907    NotILike,
908    /// `GLOB` or `~~~`.
909    Glob,
910    /// `SIMILAR TO`.
911    SimilarTo,
912    /// `NOT SIMILAR TO`.
913    NotSimilarTo,
914    /// `~`, a regex match.
915    Regex,
916    /// `!~`, a negated regex match.
917    NotRegex,
918    /// `~*`, a case insensitive regex match.
919    RegexInsensitive,
920    /// `!~*`, a negated case insensitive regex match.
921    NotRegexInsensitive,
922    /// `COLLATE`.
923    Collate,
924    /// `AT TIME ZONE`.
925    AtTimeZone,
926    /// `->`.
927    Arrow,
928    /// `->>`.
929    LongArrow,
930    /// `@>`, contains.
931    Contains,
932    /// `<@`, contained by.
933    ContainedBy,
934    /// `&&`, overlaps.
935    Overlaps,
936    /// `^@`, starts with.
937    StartsWith,
938    /// `<<=`, an inet operator.
939    InetContainedByOrEq,
940    /// `>>=`, an inet operator.
941    InetContainsOrEq,
942    /// An operator the dialect does not name, which DuckDB resolves as a binary function of that
943    /// name. `a <=> b` is the shape.
944    Named(StrRef),
945}
946
947/// A parsed statement or script, with every arena it points into.
948///
949/// Cheap to clone, cheap to send, and self contained: no index in here refers to anything outside
950/// it, and nothing in here borrows the query text. The text is copied into `strings` on the way in,
951/// which costs one allocation per distinct identifier and buys an `Ast` that outlives the string it
952/// came from.
953#[derive(Debug, Clone, Default, PartialEq, Eq)]
954pub struct Ast {
955    /// The statements in the script, in order.
956    pub statements: Vec<Statement>,
957    /// The query arena.
958    pub queries: Vec<Query>,
959    /// Source ranges parallel to `queries`.
960    pub query_spans: Vec<Span>,
961    /// The select arena.
962    pub selects: Vec<Select>,
963    /// The expression arena.
964    pub exprs: Vec<Expr>,
965    /// Source ranges parallel to `exprs`.
966    pub expr_spans: Vec<Span>,
967    /// The from-item arena.
968    pub sources: Vec<Source>,
969    /// Interned text. Identifiers keep the case they were written in, because DuckDB does not fold
970    /// it at any point, including for quoted identifiers.
971    pub strings: Vec<String>,
972    /// Backing store for every [`Slice`] of names.
973    pub parts: Vec<StrRef>,
974    /// Backing store for every [`Slice`] of expressions.
975    pub expr_lists: Vec<ExprRef>,
976    /// Backing store for every [`Slice`] of from items.
977    pub source_lists: Vec<SourceRef>,
978    /// Backing store for every [`Slice`] of target list entries.
979    pub targets: Vec<Target>,
980    /// Backing store for every [`Slice`] of order by entries.
981    pub order_items: Vec<OrderItem>,
982    /// Backing store for every [`Slice`] of case arms.
983    pub case_arms: Vec<CaseArm>,
984    /// The `CREATE TABLE` arena.
985    pub create_tables: Vec<CreateTable>,
986    /// The `CREATE VIEW` arena.
987    pub create_views: Vec<CreateView>,
988    /// The `DROP TABLE` arena.
989    pub drop_tables: Vec<DropTable>,
990    /// The `INSERT` arena.
991    pub inserts: Vec<Insert>,
992    /// The `SET` and `RESET` arena.
993    pub settings: Vec<Setting>,
994    /// Backing store for every [`Slice`] of column definitions.
995    pub column_defs: Vec<ColumnDef>,
996    /// Backing store for every [`Slice`] of names, which is a name list rather than a name.
997    pub name_lists: Vec<Slice>,
998    /// Backing store for the rows of a `VALUES`, each of which is a run of expressions.
999    pub rows: Vec<Slice>,
1000    /// The window arena, holding what was inside the parentheses of every `OVER`.
1001    pub windows: Vec<WindowSpec>,
1002}
1003
1004impl Ast {
1005    /// The source range of an expression.
1006    pub fn expr_span(&self, expr: ExprRef) -> Span {
1007        self.expr_spans[expr as usize]
1008    }
1009
1010    /// The source range of a query.
1011    pub fn query_span(&self, query: QueryRef) -> Span {
1012        self.query_spans[query as usize]
1013    }
1014
1015    /// The text behind a [`StrRef`], or the empty string for `NONE`.
1016    pub fn string(&self, index: StrRef) -> &str {
1017        if index == NONE { "" } else { &self.strings[index as usize] }
1018    }
1019
1020    /// Every parameter identifier the statement uses, once each, in the order they were written.
1021    ///
1022    /// The arena is built as the walk goes, so its order is the written order, and a parameter used
1023    /// twice is one identifier here because it is one value to provide.
1024    pub fn parameters(&self) -> Vec<&str> {
1025        let mut found: Vec<&str> = Vec::new();
1026        for expr in &self.exprs {
1027            if let Expr::Parameter { name } = *expr {
1028                let name = self.string(name);
1029                if !found.contains(&name) {
1030                    found.push(name);
1031                }
1032            }
1033        }
1034        found
1035    }
1036
1037    /// The parts of a name, outermost first.
1038    pub fn name(&self, slice: Slice) -> impl Iterator<Item = &str> {
1039        self.parts[slice.range()].iter().map(|&part| self.string(part))
1040    }
1041
1042    /// A name written back out with dots between the parts, for error messages and tests.
1043    pub fn name_text(&self, slice: Slice) -> String {
1044        self.name(slice).collect::<Vec<_>>().join(".")
1045    }
1046
1047    /// One expression.
1048    pub fn expr(&self, index: ExprRef) -> Expr {
1049        self.exprs[index as usize]
1050    }
1051
1052    /// One from item.
1053    pub fn source(&self, index: SourceRef) -> Source {
1054        self.sources[index as usize]
1055    }
1056
1057    /// One query.
1058    pub fn query(&self, index: QueryRef) -> Query {
1059        self.queries[index as usize]
1060    }
1061
1062    /// One select block.
1063    pub fn select(&self, index: SelectRef) -> Select {
1064        self.selects[index as usize]
1065    }
1066
1067    /// One window.
1068    pub fn window(&self, index: WindowRef) -> WindowSpec {
1069        self.windows[index as usize]
1070    }
1071
1072    /// The expressions of a list.
1073    pub fn expr_list(&self, slice: Slice) -> &[ExprRef] {
1074        &self.expr_lists[slice.range()]
1075    }
1076
1077    /// The from items of a list.
1078    pub fn source_list(&self, slice: Slice) -> &[SourceRef] {
1079        &self.source_lists[slice.range()]
1080    }
1081
1082    /// The entries of a target list.
1083    pub fn target_list(&self, slice: Slice) -> &[Target] {
1084        &self.targets[slice.range()]
1085    }
1086
1087    /// The entries of an order by list.
1088    pub fn order_list(&self, slice: Slice) -> &[OrderItem] {
1089        &self.order_items[slice.range()]
1090    }
1091
1092    /// The arms of a case.
1093    pub fn arm_list(&self, slice: Slice) -> &[CaseArm] {
1094        &self.case_arms[slice.range()]
1095    }
1096
1097    /// One `CREATE TABLE`.
1098    pub fn create_table(&self, index: CreateTableRef) -> CreateTable {
1099        self.create_tables[index as usize]
1100    }
1101
1102    /// One `CREATE VIEW`.
1103    pub fn create_view(&self, index: CreateViewRef) -> CreateView {
1104        self.create_views[index as usize]
1105    }
1106
1107    /// One `DROP TABLE`.
1108    pub fn drop_table(&self, index: DropTableRef) -> DropTable {
1109        self.drop_tables[index as usize]
1110    }
1111
1112    /// One `INSERT`.
1113    pub fn insert(&self, index: InsertRef) -> Insert {
1114        self.inserts[index as usize]
1115    }
1116
1117    /// One `SET` or `RESET`.
1118    pub fn setting(&self, index: SettingRef) -> Setting {
1119        self.settings[index as usize]
1120    }
1121
1122    /// The column definitions of a `CREATE TABLE`.
1123    pub fn column_defs(&self, slice: Slice) -> &[ColumnDef] {
1124        &self.column_defs[slice.range()]
1125    }
1126
1127    /// The names of a name list, each of which is itself a run of parts.
1128    pub fn name_list(&self, slice: Slice) -> &[Slice] {
1129        &self.name_lists[slice.range()]
1130    }
1131
1132    /// The rows of a `VALUES`, each of which is itself a run of expressions.
1133    pub fn rows(&self, slice: Slice) -> &[Slice] {
1134        &self.rows[slice.range()]
1135    }
1136
1137    /// How many nodes the whole tree is, across every arena.
1138    ///
1139    /// The number to watch when the transformer changes. A parse tree of five thousand nodes that
1140    /// becomes an AST of thirty is the twenty precedence levels being thrown away, which is the
1141    /// whole reason this module exists.
1142    pub fn node_count(&self) -> usize {
1143        self.queries.len() + self.selects.len() + self.exprs.len() + self.sources.len()
1144    }
1145}