rudb_bind/statement.rs
1//! From an `Ast` to a `Bound`, which is a statement rather than a query.
2//!
3//! A `SELECT` binds to a [`Plan`] and nothing else, and that is why [`bind`](crate::bind) can hand
4//! one back. `CREATE TABLE`, `DROP TABLE` and `INSERT` are not plans and are deliberately not being
5//! made into plans. A `Node::CreateTable` would be a node with no columns, no rows, no cost and no
6//! reason to be pushed past anything, which is to say a node the optimizer has to be told to leave
7//! alone and the executor has to special case at the root. `spec/09-optimizer.md` section 9.1 says
8//! every node in a plan produces rows, and a DDL statement does not, so it goes beside the plan and
9//! not inside it.
10//!
11//! What each variant carries is the statement with every name and type already resolved, so the
12//! thing that runs it does catalog calls and nothing else. An `INSERT` in particular arrives with
13//! a plan whose output is exactly the target's columns in the target's order and the target's
14//! types, with the casts and the nulls for unmentioned columns already in it, so appending is a
15//! loop over chunks.
16
17use rudb_catalog::{Catalog, Entry, QualifiedName, duplicate_check, same_name};
18use rudb_common::{Error, Field, LogicalType, Result, Value};
19use rudb_parse::ast::{self, Ast};
20use rudb_parse::{NONE, parse_ast};
21use rudb_plan::{Expr, ExprRef, Node, Plan};
22
23use crate::binder::Binder;
24use crate::parameters::Parameters;
25
26/// One statement, bound.
27///
28/// Not `#[non_exhaustive]`. A new variant here is a new kind of statement, and the compiler
29/// pointing at every place that has to decide what to do with it is the whole value of the enum.
30#[derive(Debug)]
31pub enum Bound {
32 /// A query, which is the only one of these that produces rows.
33 Query(Plan),
34 /// `CREATE TABLE`.
35 CreateTable(CreateTable),
36 /// `CREATE VIEW`.
37 CreateView(CreateView),
38 /// `DROP TABLE` or `DROP VIEW`.
39 DropTable(DropTable),
40 /// `INSERT INTO`.
41 Insert(Insert),
42}
43
44/// A bound `CREATE TABLE`.
45#[derive(Debug)]
46pub struct CreateTable {
47 /// The full name the table gets.
48 pub name: QualifiedName,
49 /// The columns, in order, with the types already resolved. For a `CREATE TABLE AS` these are
50 /// the query's output types under whatever names the statement or the query gave them.
51 pub columns: Vec<Field>,
52 /// The query to fill it from, for a `CREATE TABLE AS`.
53 pub source: Option<Plan>,
54 /// Whether an existing table of that name is left alone rather than being an error.
55 pub if_not_exists: bool,
56 /// Whether an existing table of that name is dropped first.
57 pub or_replace: bool,
58}
59
60/// A bound `CREATE VIEW`.
61///
62/// The body is the text that was written rather than the plan it bound to. It was bound once on the
63/// way through here, which is what refuses a view over a table that is not there, and the plan that
64/// came out of that is then thrown away, because a view follows the tables underneath it and a plan
65/// cannot. See [`rudb_catalog::View`].
66#[derive(Debug)]
67pub struct CreateView {
68 /// The full name the view gets.
69 pub name: QualifiedName,
70 /// The body, as written.
71 pub sql: String,
72 /// The column names the statement gave, which rename a prefix of what the body produces.
73 pub aliases: Vec<String>,
74 /// Whether an existing entry of that name is left alone rather than being an error.
75 pub if_not_exists: bool,
76 /// Whether an existing entry of that name is dropped first.
77 pub or_replace: bool,
78}
79
80/// A bound `DROP TABLE` or `DROP VIEW`.
81#[derive(Debug)]
82pub struct DropTable {
83 /// The tables or views to drop, already resolved. With `IF EXISTS` a name that does not resolve
84 /// is not in here at all, which is what makes running this a sequence of drops that cannot
85 /// fail for being missing. Dropping one of these as the wrong type still can, because `DROP
86 /// TABLE IF EXISTS v` where `v` is a view is an error in DuckDB and was measured to be one.
87 pub names: Vec<QualifiedName>,
88 /// Which of the two the statement said it was dropping.
89 pub kind: Entry,
90}
91
92/// A bound `INSERT`.
93#[derive(Debug)]
94pub struct Insert {
95 /// The table to append to.
96 pub name: QualifiedName,
97 /// The rows to append. The output is the table's columns, in the table's order, with the
98 /// table's types, so nothing between here and the append has a decision left to make.
99 pub source: Plan,
100}
101
102/// Binds one parsed statement against a catalog.
103///
104/// # Errors
105///
106/// If the script does not hold exactly one statement, if a name does not resolve, if a type does
107/// not work out, or if the statement uses something that is not bound yet.
108pub fn bind_statement(ast: &Ast, catalog: &Catalog) -> Result<Bound> {
109 bind_statement_with(ast, catalog, &Parameters::new())
110}
111
112/// Binds one parsed statement against a catalog, with values for its parameters.
113///
114/// This is the prepared statement path. The statement is parsed once and bound once per set of
115/// values, so a parameter is a constant by the time the plan exists and everything after the binder
116/// sees an ordinary query. That is why there is no parameter in `rudb_plan::Expr`.
117///
118/// # Errors
119///
120/// Everything [`bind_statement`] reports, plus an error for a parameter that was given no value.
121pub fn bind_statement_with(ast: &Ast, catalog: &Catalog, parameters: &Parameters) -> Result<Bound> {
122 let statement = match ast.statements.as_slice() {
123 [statement] => *statement,
124 [] => return Err(Error::binder("no statement to bind")),
125 _ => return Err(Error::not_implemented("a script of more than one statement")),
126 };
127 match statement {
128 ast::Statement::Query(query) => {
129 let mut binder = Binder::with(catalog, parameters);
130 let (root, _) = binder.bind_query(ast, query)?;
131 Ok(Bound::Query(finish(binder, root)?))
132 }
133 ast::Statement::CreateTable(index) => create_table(ast, catalog, parameters, index),
134 ast::Statement::CreateView(index) => create_view(ast, catalog, parameters, index),
135 ast::Statement::DropTable(index) => drop_table(ast, catalog, index),
136 ast::Statement::Insert(index) => insert(ast, catalog, parameters, index),
137 }
138}
139
140/// Parses and binds one statement, which is the whole front end in one call.
141///
142/// # Errors
143///
144/// Anything the parser or the binder reports.
145pub fn bind_statement_sql(sql: &str, catalog: &Catalog) -> Result<Bound> {
146 let ast = parse_ast(sql)?;
147 bind_statement(&ast, catalog)
148}
149
150/// Roots a binder's plan and checks it.
151fn finish(binder: Binder<'_>, root: rudb_plan::NodeRef) -> Result<Plan> {
152 let mut plan = binder.into_plan();
153 plan.set_root(root);
154 plan.validate()?;
155 Ok(plan)
156}
157
158fn create_table(
159 ast: &Ast,
160 catalog: &Catalog,
161 parameters: &Parameters,
162 index: ast::CreateTableRef,
163) -> Result<Bound> {
164 let written = ast.create_table(index);
165 if written.temporary {
166 // A temporary table lives in the `temp` catalog and is dropped when the connection goes,
167 // and there is neither a `temp` catalog nor a connection yet. Making one in `memory` that
168 // never goes away would answer a later `SELECT` with rows DuckDB would not have.
169 return Err(Error::not_implemented("CREATE TEMPORARY TABLE"));
170 }
171 let parts: Vec<&str> = ast.name(written.name).collect();
172 let name = catalog.resolve_for_create(&parts)?;
173 let defs = ast.column_defs(written.columns);
174 let (columns, source) = if written.query == NONE {
175 let mut columns = Vec::with_capacity(defs.len());
176 for def in defs {
177 let text = ast.string(def.ty);
178 if text.is_empty() {
179 return Err(Error::binder(format!(
180 "Column \"{}\" was declared without a type",
181 ast.string(def.name)
182 )));
183 }
184 let ty = LogicalType::parse(text)?;
185 let column = ast.string(def.name);
186 columns.push(if def.not_null {
187 Field::required(column, ty)
188 } else {
189 Field::new(column, ty)
190 });
191 }
192 (columns, None)
193 } else {
194 let mut binder = Binder::with(catalog, parameters);
195 let (root, scope) = binder.bind_query(ast, written.query)?;
196 if defs.len() > scope.len() {
197 // DuckDB's sentence, typo and all. A column list shorter than the query is fine and
198 // renames a prefix, so only this direction is an error.
199 return Err(Error::binder("Target table has more colum names than query result."));
200 }
201 let mut columns = Vec::with_capacity(scope.len());
202 for (at, column) in scope.columns.iter().enumerate() {
203 let named = match defs.get(at) {
204 Some(def) => ast.string(def.name).to_string(),
205 None => column.name.clone(),
206 };
207 columns.push(Field::new(named, column.ty.clone()));
208 }
209 if defs.is_empty() {
210 deduplicate(&mut columns);
211 }
212 (columns, Some(finish(binder, root)?))
213 };
214 duplicate_check(&columns)?;
215 Ok(Bound::CreateTable(CreateTable {
216 name,
217 columns,
218 source,
219 if_not_exists: written.if_not_exists,
220 or_replace: written.or_replace,
221 }))
222}
223
224/// Renames the columns a query repeated, which is what makes `CREATE TABLE t AS SELECT 1 AS a, 2 AS
225/// a` a table rather than an error.
226///
227/// A query is allowed to produce two columns of one name and `SELECT 1 AS a, 2 AS a` prints two
228/// columns called `a`, so a statement that turns a query into a table has to decide what to do with
229/// that, and DuckDB renames rather than refusing. The suffix is `_1`, then `_2`, counting up until
230/// the name is free, so a query that already has an `a_1` in it pushes the renamed column to `a_2`
231/// rather than colliding with it.
232///
233/// This only runs when the statement wrote no column list. With a list, even a short one, duckdb
234/// v1.4.1 takes the names as they come and a repeat is an error, so `CREATE TABLE t (z) AS SELECT 1
235/// AS a, 2 AS a` is a table of `z` and `a` and adding a third `a` to that query is a refusal.
236fn deduplicate(columns: &mut [Field]) {
237 for at in 0..columns.len() {
238 let taken = |name: &str, upto: usize, columns: &[Field]| {
239 columns[..upto].iter().any(|held| same_name(&held.name, name))
240 };
241 if !taken(&columns[at].name, at, columns) {
242 continue;
243 }
244 let mut suffix = 1;
245 let mut candidate = format!("{}_{suffix}", columns[at].name);
246 while taken(&candidate, at, columns) {
247 suffix += 1;
248 candidate = format!("{}_{suffix}", columns[at].name);
249 }
250 columns[at].name = candidate;
251 }
252}
253
254/// Binds a `CREATE VIEW`, which means binding the body and then throwing the plan away.
255///
256/// Throwing it away is the point. The body is bound here so that a view over a table that is not
257/// there is refused now rather than at the first select, and so that the column list can be checked
258/// against what the body actually produces. What the catalog keeps is the text, because a view
259/// follows the tables underneath it and a plan is a photograph of the day it was built.
260fn create_view(
261 ast: &Ast,
262 catalog: &Catalog,
263 parameters: &Parameters,
264 index: ast::CreateViewRef,
265) -> Result<Bound> {
266 let written = ast.create_view(index);
267 if written.temporary {
268 // Same reason as a temporary table: there is no `temp` catalog and no connection for one to
269 // belong to, and a view in `memory` that never goes away is not the thing that was asked
270 // for.
271 return Err(Error::not_implemented("CREATE TEMPORARY VIEW"));
272 }
273 let parts: Vec<&str> = ast.name(written.name).collect();
274 let name = catalog.resolve_for_create(&parts)?;
275 let aliases: Vec<String> = ast.name(written.columns).map(str::to_string).collect();
276
277 let mut binder = Binder::with(catalog, parameters);
278 let (_, scope) = binder.bind_query(ast, written.query)?;
279 if aliases.len() > scope.len() {
280 return Err(Error::binder("More VIEW aliases than columns in query result"));
281 }
282
283 Ok(Bound::CreateView(CreateView {
284 name,
285 sql: ast.string(written.sql).to_string(),
286 aliases,
287 if_not_exists: written.if_not_exists,
288 or_replace: written.or_replace,
289 }))
290}
291
292fn drop_table(ast: &Ast, catalog: &Catalog, index: ast::DropTableRef) -> Result<Bound> {
293 let written = ast.drop_table(index);
294 let kind = if written.view { Entry::View } else { Entry::Table };
295 let mut names = Vec::new();
296 for &name in ast.name_list(written.names) {
297 let parts: Vec<&str> = ast.name(name).collect();
298 // The statement said which of the two it meant, so a name that is not there is a missing
299 // one of those and not a missing table.
300 match catalog.resolve_as(&parts, kind) {
301 Ok(resolved) => names.push(resolved),
302 Err(error) if written.if_exists => drop(error),
303 Err(error) => return Err(error),
304 }
305 }
306 Ok(Bound::DropTable(DropTable { names, kind }))
307}
308
309fn insert(
310 ast: &Ast,
311 catalog: &Catalog,
312 parameters: &Parameters,
313 index: ast::InsertRef,
314) -> Result<Bound> {
315 let written = ast.insert(index);
316 let parts: Vec<&str> = ast.name(written.name).collect();
317 let name = catalog.resolve(&parts)?;
318 if catalog.entry(&name)? == Entry::View {
319 // The binary's sentence, article and all. A view has no rows of its own to append to, and
320 // an updatable view is a rule about rewriting the insert that neither database has.
321 return Err(Error::catalog(format!("{} is not an table", name.table)));
322 }
323 let fields: Vec<Field> = catalog.table(&name)?.columns().to_vec();
324
325 // Which table column each source column lands in. Without a column list that is the first n
326 // columns in order, and with one it is whatever the list says, which is also the check that
327 // the list names columns the table has and names none of them twice.
328 let targets: Vec<usize> = if written.columns.is_empty() {
329 (0..fields.len()).collect()
330 } else {
331 let mut targets = Vec::new();
332 for column in ast.name(written.columns) {
333 let at = fields.iter().position(|field| same_name(&field.name, column)).ok_or_else(
334 || {
335 Error::binder(format!(
336 "Table \"{}\" does not have a column named \"{column}\"",
337 name.table
338 ))
339 },
340 )?;
341 if targets.contains(&at) {
342 return Err(Error::binder(format!(
343 "Column \"{column}\" is named twice in the same INSERT"
344 )));
345 }
346 targets.push(at);
347 }
348 targets
349 };
350
351 let mut binder = Binder::with(catalog, parameters);
352 let (root, scope) = binder.bind_query(ast, written.source)?;
353 if scope.len() != targets.len() {
354 return Err(Error::binder(format!(
355 "Table \"{}\" has {} columns but {} values were supplied",
356 name.table,
357 targets.len(),
358 scope.len()
359 )));
360 }
361
362 // The projection that makes the source look exactly like the table. Every column the statement
363 // did not name becomes a null of the column's own type, so the append never has to know that a
364 // column list was written at all.
365 let mut exprs: Vec<ExprRef> = Vec::with_capacity(fields.len());
366 let mut names = Vec::with_capacity(fields.len());
367 for (at, field) in fields.iter().enumerate() {
368 let expr = match targets.iter().position(|&target| target == at) {
369 Some(from) => {
370 let column = &scope.columns[from];
371 let expr =
372 binder.plan_mut().add_expr(Expr::Column(column.binding), column.ty.clone());
373 binder.cast_to(expr, &field.ty)
374 }
375 None => {
376 // A typed null rather than `add_constant`, which would give it the null type and
377 // make the column's type depend on whether a row happened to be inserted into it.
378 let value = binder.plan_mut().add_value(Value::Null);
379 binder.plan_mut().add_expr(Expr::Constant(value), field.ty.clone())
380 }
381 };
382 exprs.push(expr);
383 let interned = binder.plan_mut().intern(&field.name);
384 names.push(interned);
385 }
386 let exprs = binder.plan_mut().add_expr_list(&exprs);
387 let names = binder.plan_mut().add_name_list(&names);
388 let index = binder.fresh_index();
389 let root = binder.plan_mut().add_node(Node::Project { input: root, index, exprs, names });
390 Ok(Bound::Insert(Insert { name, source: finish(binder, root)? }))
391}