mirror of
https://github.com/github/codeql.git
synced 2026-08-02 00:13:00 +02:00
apply_rules_inner used to handle the "child was rewritten, so the parent needs new field IDs" case by cloning the parent node, swapping in the new fields, pushing the clone onto the arena, and returning the new Id. Every ancestor on the path from the rewrite up to the root was duplicated this way, with the originals retained as garbage in the arena. Switch to in-place mutation: assign `ast.nodes[id].fields = new_fields` and return the same Id. Rule firings still produce genuinely new nodes via BuildCtx (their structure differs from the input), but the ancestor-rebuild spine no longer copies anything. This is safe because apply_rules_inner already works entirely by Id: the field snapshot is cloned out before recursing, no &Node references are held across mutations of the arena, and captures are scoped to a single rule firing so the now-stable Ids do not break anything. Memory effect: a desugaring pass that rewrites R leaves of a tree of average depth d previously appended R*d ancestor clones to the arena. Now appends 0. With Ids stable for the lifetime of an Ast, the Node::id field becomes truly redundant and is removed (along with the Node::id() accessor). AstCursor switches from caching `node: &Node` to tracking `node_id: Id` and looking the node up via the arena on each access; ChildrenIter now yields Ids directly. A new AstCursor::node_id() method gives callers access to the cursor position by Id.
763 lines
22 KiB
Rust
763 lines
22 KiB
Rust
#![cfg(test)]
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use yeast::dump::dump_ast;
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use yeast::*;
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const OUTPUT_SCHEMA_YAML: &str = include_str!("node-types.yml");
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/// Helper: parse Ruby source with no rules, return dump.
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fn parse_and_dump(input: &str) -> String {
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let runner = Runner::new(tree_sitter_ruby::LANGUAGE.into(), &[]);
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let ast = runner.run(input).unwrap();
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dump_ast(&ast, ast.get_root(), input)
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}
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/// Helper: parse Ruby source with a custom output schema and a single
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/// phase of rules, return dump.
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fn run_and_dump(input: &str, rules: Vec<Rule>) -> String {
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run_phased_and_dump(input, vec![Phase::new("test", rules)])
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}
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/// Helper: parse Ruby source with a custom output schema and multiple
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/// rule phases, return dump.
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fn run_phased_and_dump(input: &str, phases: Vec<Phase>) -> String {
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let lang: tree_sitter::Language = tree_sitter_ruby::LANGUAGE.into();
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let schema =
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yeast::node_types_yaml::schema_from_yaml_with_language(OUTPUT_SCHEMA_YAML, &lang).unwrap();
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let runner = Runner::with_schema(lang, &schema, &phases);
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let ast = runner.run(input).unwrap();
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dump_ast(&ast, ast.get_root(), input)
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}
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/// Helper: like `run_and_dump`, but returns the runner error (if any)
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/// instead of unwrapping.
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fn run_and_get_error(input: &str, rules: Vec<Rule>) -> String {
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let lang: tree_sitter::Language = tree_sitter_ruby::LANGUAGE.into();
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let schema =
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yeast::node_types_yaml::schema_from_yaml_with_language(OUTPUT_SCHEMA_YAML, &lang).unwrap();
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let phases = vec![Phase::new("test", rules)];
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let runner = Runner::with_schema(lang, &schema, &phases);
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runner
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.run(input)
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.expect_err("expected runner to return an error")
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}
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/// Assert that a dump equals the expected string, treating the expected
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/// string as an indented multiline literal: leading/trailing blank lines
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/// are stripped, and the common leading indentation is removed from every
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/// line. This lets test assertions place the first line at the same
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/// indentation as the rest of the body.
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#[track_caller]
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fn assert_dump_eq(actual: &str, expected: &str) {
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let min_indent = expected
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.lines()
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.filter(|l| !l.trim().is_empty())
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.map(|l| l.len() - l.trim_start().len())
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.min()
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.unwrap_or(0);
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let dedented: String = expected
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.lines()
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.map(|l| {
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if l.len() >= min_indent {
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&l[min_indent..]
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} else {
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l
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}
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})
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.collect::<Vec<_>>()
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.join("\n");
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assert_eq!(actual.trim(), dedented.trim());
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}
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// ---- Parsing tests ----
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#[test]
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fn test_parse_assignment() {
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let dump = parse_and_dump("x = 1");
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assert_dump_eq(
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&dump,
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r#"
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program
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assignment
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left: identifier "x"
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right: integer "1"
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"#,
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);
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}
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#[test]
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fn test_parse_multiple_assignment() {
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let dump = parse_and_dump("x, y = foo()");
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assert_dump_eq(
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&dump,
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r#"
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program
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assignment
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left:
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left_assignment_list
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identifier "x"
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identifier "y"
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right:
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call
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arguments:
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argument_list
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method: identifier "foo"
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"#,
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);
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}
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#[test]
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fn test_parse_for_loop() {
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let dump = parse_and_dump("for x in list do\n y\nend");
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assert_dump_eq(
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&dump,
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r#"
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program
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for
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body:
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do
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identifier "y"
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pattern: identifier "x"
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value:
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in
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identifier "list"
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"#,
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);
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}
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// ---- Query tests ----
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#[test]
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fn test_query_match() {
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let runner = Runner::new(tree_sitter_ruby::LANGUAGE.into(), &[]);
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let ast = runner.run("x = 1").unwrap();
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let query = yeast::query!(
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(program
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child: (assignment
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left: (_) @left
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right: (_) @right
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)
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)
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);
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let mut captures = yeast::captures::Captures::new();
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let matched = query.do_match(&ast, ast.get_root(), &mut captures).unwrap();
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assert!(matched);
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assert!(captures.get_var("left").is_ok());
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assert!(captures.get_var("right").is_ok());
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}
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#[test]
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fn test_query_no_match() {
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let runner = Runner::new(tree_sitter_ruby::LANGUAGE.into(), &[]);
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let ast = runner.run("x = 1").unwrap();
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let query = yeast::query!(
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(program
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child: (call
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method: (_) @m
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)
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)
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);
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let mut captures = yeast::captures::Captures::new();
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let matched = query.do_match(&ast, ast.get_root(), &mut captures).unwrap();
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assert!(!matched);
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}
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#[test]
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fn test_query_repeated_capture() {
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let runner = Runner::new(tree_sitter_ruby::LANGUAGE.into(), &[]);
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let ast = runner.run("x, y, z = 1").unwrap();
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let query = yeast::query!(
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(assignment
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left: (left_assignment_list
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(identifier)* @names
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)
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)
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);
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// Match against the assignment node (first named child of program)
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let mut cursor = AstCursor::new(&ast);
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cursor.goto_first_child();
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let assignment_id = cursor.node_id();
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let mut captures = yeast::captures::Captures::new();
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let matched = query.do_match(&ast, assignment_id, &mut captures).unwrap();
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assert!(matched);
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assert_eq!(captures.get_all("names").len(), 3);
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}
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#[test]
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fn test_capture_unnamed_node_parenthesized() {
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// `("=") @op` captures the unnamed `=` token between left and right.
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let runner = Runner::new(tree_sitter_ruby::LANGUAGE.into(), &[]);
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let ast = runner.run("x = 1").unwrap();
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let query = yeast::query!(
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(assignment
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left: (_) @lhs
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("=") @op
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right: (_) @rhs
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)
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);
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let mut cursor = AstCursor::new(&ast);
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cursor.goto_first_child();
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let assignment_id = cursor.node_id();
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let mut captures = yeast::captures::Captures::new();
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let matched = query.do_match(&ast, assignment_id, &mut captures).unwrap();
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assert!(matched);
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let op_id = captures.get_var("op").unwrap();
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let op_node = ast.get_node(op_id).unwrap();
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assert_eq!(op_node.kind(), "=");
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assert!(!op_node.is_named());
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}
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#[test]
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fn test_capture_unnamed_node_bare_literal() {
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// `"=" @op` (without surrounding parens) is the same as `("=") @op`.
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let runner = Runner::new(tree_sitter_ruby::LANGUAGE.into(), &[]);
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let ast = runner.run("x = 1").unwrap();
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let query = yeast::query!(
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(assignment
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left: (_) @lhs
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"=" @op
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right: (_) @rhs
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)
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);
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let mut cursor = AstCursor::new(&ast);
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cursor.goto_first_child();
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let assignment_id = cursor.node_id();
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let mut captures = yeast::captures::Captures::new();
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let matched = query.do_match(&ast, assignment_id, &mut captures).unwrap();
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assert!(matched);
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let op_id = captures.get_var("op").unwrap();
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let op_node = ast.get_node(op_id).unwrap();
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assert_eq!(op_node.kind(), "=");
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assert!(!op_node.is_named());
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}
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#[test]
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fn test_bare_underscore_matches_unnamed() {
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// Bare `_` matches any node, including unnamed tokens, while `(_)`
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// matches only named nodes. Demonstrate by matching the unnamed `=`
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// token in the implicit `child` field of an `assignment`.
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let runner = Runner::new(tree_sitter_ruby::LANGUAGE.into(), &[]);
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let ast = runner.run("x = 1").unwrap();
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let mut cursor = AstCursor::new(&ast);
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cursor.goto_first_child();
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let assignment_id = cursor.node_id();
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// `(_)` skips unnamed children, so a query containing a single `(_)`
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// bare pattern fails to match the assignment (whose only unfielded
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// child is the unnamed `=`).
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let query_named = yeast::query!((assignment (_) @any));
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let mut captures = yeast::captures::Captures::new();
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let matched = query_named
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.do_match(&ast, assignment_id, &mut captures)
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.unwrap();
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assert!(
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!matched,
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"(_) should skip the unnamed `=` and fail to match"
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);
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// Bare `_` accepts the next child whatever it is, so it matches the
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// unnamed `=` token.
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let query_any = yeast::query!((assignment _ @any));
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let mut captures = yeast::captures::Captures::new();
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let matched = query_any
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.do_match(&ast, assignment_id, &mut captures)
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.unwrap();
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assert!(matched, "_ should match the unnamed `=`");
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let any_node = ast.get_node(captures.get_var("any").unwrap()).unwrap();
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assert_eq!(any_node.kind(), "=");
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assert!(!any_node.is_named());
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}
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#[test]
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fn test_bare_forms_in_field_position() {
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// The bare `_` and bare-literal forms should be accepted as a
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// field's value, not just in the bare-children position. This is
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// syntactic sugar for `(_)` / `("…")` and goes through the same
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// code paths.
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let runner = Runner::new(tree_sitter_ruby::LANGUAGE.into(), &[]);
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let ast = runner.run("x = 1").unwrap();
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let mut cursor = AstCursor::new(&ast);
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cursor.goto_first_child();
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let assignment_id = cursor.node_id();
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// Bare `_` in field position. Captures the named `identifier "x"`
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// child of the `left` field — bare `_` admits unnamed too, but the
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// first child of `left` happens to be named.
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let query = yeast::query!((assignment left: _ @lhs));
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let mut captures = yeast::captures::Captures::new();
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let matched = query.do_match(&ast, assignment_id, &mut captures).unwrap();
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assert!(matched);
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assert_eq!(
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ast.get_node(captures.get_var("lhs").unwrap())
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.unwrap()
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.kind(),
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"identifier"
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);
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// Bare literal in field position. Equivalent to `("=") @op`.
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let query = yeast::query!((assignment child: "=" @op));
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let mut captures = yeast::captures::Captures::new();
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let matched = query.do_match(&ast, assignment_id, &mut captures).unwrap();
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assert!(matched);
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let op = ast.get_node(captures.get_var("op").unwrap()).unwrap();
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assert_eq!(op.kind(), "=");
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assert!(!op.is_named());
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}
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#[test]
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fn test_forward_scan_finds_unnamed_token_late() {
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// The `do` named-wrapper node has three children in its implicit
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// `child` field, in source order: `do` (unnamed kw), the body
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// identifier, and `end` (unnamed kw). Forward-scan semantics let a
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// query for `("end")` skip past the first two and match the third.
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// Without forward-scan, the matcher took the first child unconditionally
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// and failed.
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let runner = Runner::new(tree_sitter_ruby::LANGUAGE.into(), &[]);
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let ast = runner.run("for x in list do\n y\nend").unwrap();
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// Navigate: program > for > do (the body wrapper).
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let mut cursor = AstCursor::new(&ast);
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cursor.goto_first_child(); // for
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cursor.goto_first_child(); // do (the body)
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while cursor.node().kind() != "do" || !cursor.node().is_named() {
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assert!(cursor.goto_next_sibling(), "expected to find named `do`");
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}
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let do_id = cursor.node_id();
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let query = yeast::query!((do ("end") @kw));
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let mut captures = yeast::captures::Captures::new();
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let matched = query.do_match(&ast, do_id, &mut captures).unwrap();
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assert!(matched, "forward-scan should find the `end` keyword");
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let kw = ast.get_node(captures.get_var("kw").unwrap()).unwrap();
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assert_eq!(kw.kind(), "end");
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assert!(!kw.is_named());
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}
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#[test]
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fn test_forward_scan_preserves_order() {
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// Bare patterns are scanned left-to-right and consume positions in
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// order. A query for ("end") then ("do") should fail because `do`
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// appears before `end` in the source order; once forward-scan has
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// consumed `end`, the iterator is exhausted.
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let runner = Runner::new(tree_sitter_ruby::LANGUAGE.into(), &[]);
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let ast = runner.run("for x in list do\n y\nend").unwrap();
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let mut cursor = AstCursor::new(&ast);
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cursor.goto_first_child();
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cursor.goto_first_child();
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while cursor.node().kind() != "do" || !cursor.node().is_named() {
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assert!(cursor.goto_next_sibling(), "expected to find named `do`");
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}
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let do_id = cursor.node_id();
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let query = yeast::query!((do ("end") @first ("do") @second));
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let mut captures = yeast::captures::Captures::new();
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let matched = query.do_match(&ast, do_id, &mut captures).unwrap();
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assert!(!matched, "scan must not go backwards");
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}
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// ---- Tree builder tests ----
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#[test]
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fn test_tree_builder() {
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let runner = Runner::new(tree_sitter_ruby::LANGUAGE.into(), &[]);
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let mut ast = runner.run("x = 1").unwrap();
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let input = "x = 1";
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let query = yeast::query!(
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(program
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child: (assignment
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left: (_) @left
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right: (_) @right
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)
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)
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);
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let mut captures = yeast::captures::Captures::new();
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query.do_match(&ast, ast.get_root(), &mut captures).unwrap();
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// Swap left and right
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let fresh = yeast::tree_builder::FreshScope::new();
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let mut ctx = yeast::build::BuildCtx::new(&mut ast, &captures, &fresh);
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let new_id = yeast::tree!(ctx,
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(program
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child: (assignment
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left: {ctx.capture("right")}
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right: {ctx.capture("left")}
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)
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)
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);
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let dump = dump_ast(ctx.ast, new_id, input);
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assert_dump_eq(
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&dump,
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r#"
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program
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assignment
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left: integer "1"
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right: identifier "x"
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"#,
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);
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}
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// ---- Rule tests ----
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|
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// These rules use field names from node-types.yml, which extends the
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// tree-sitter-ruby grammar with named fields for nodes that only have
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// unnamed children in tree-sitter (e.g. block_body.stmt, block_parameters.parameter).
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fn ruby_rules() -> Vec<Rule> {
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let assign_rule = yeast::rule!(
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(assignment
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left: (left_assignment_list
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(identifier)* @left
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)
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right: (_) @right
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)
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=>
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(assignment
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left: (identifier $tmp)
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right: {right}
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)
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{..left.iter().enumerate().map(|(i, &lhs)|
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yeast::tree!(
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(assignment
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left: {lhs}
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right: (element_reference
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object: (identifier $tmp)
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index: (integer #{i})
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)
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)
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)
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)}
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);
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|
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let for_rule = yeast::rule!(
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(for
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pattern: (_) @pat
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value: (in (_) @val)
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body: (do (_)* @body)
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)
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=>
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(call
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receiver: {val}
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method: (identifier "each")
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block: (block
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parameters: (block_parameters
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parameter: (identifier $tmp)
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)
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body: (block_body
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stmt: (assignment
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left: {pat}
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right: (identifier $tmp)
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)
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stmt: {..body}
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)
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)
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)
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);
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vec![assign_rule, for_rule]
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}
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|
|
#[test]
|
|
fn test_desugar_multiple_assignment() {
|
|
let dump = run_and_dump("x, y = e", ruby_rules());
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|
assert_dump_eq(
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|
&dump,
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|
r#"
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program
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assignment
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left: identifier "$tmp-0"
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right: identifier "e"
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|
assignment
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left: identifier "x"
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right:
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element_reference
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object: identifier "$tmp-0"
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index: integer "0"
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|
assignment
|
|
left: identifier "y"
|
|
right:
|
|
element_reference
|
|
object: identifier "$tmp-0"
|
|
index: integer "1"
|
|
"#,
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn test_desugar_for_loop() {
|
|
let dump = run_and_dump("for x in list do\n y\nend", ruby_rules());
|
|
assert_dump_eq(
|
|
&dump,
|
|
r#"
|
|
program
|
|
call
|
|
block:
|
|
block
|
|
body:
|
|
block_body
|
|
stmt:
|
|
assignment
|
|
left: identifier "x"
|
|
right: identifier "$tmp-0"
|
|
identifier "y"
|
|
parameters:
|
|
block_parameters
|
|
parameter: identifier "$tmp-0"
|
|
method: identifier "each"
|
|
receiver: identifier "list"
|
|
"#,
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn test_shorthand_rule() {
|
|
let rule = yeast::rule!(
|
|
(assignment
|
|
left: (_) @method
|
|
right: (_) @receiver
|
|
)
|
|
=> call
|
|
);
|
|
|
|
let dump = run_and_dump("x = 1", vec![rule]);
|
|
assert_dump_eq(
|
|
&dump,
|
|
r#"
|
|
program
|
|
call
|
|
method: identifier "x"
|
|
receiver: integer "1"
|
|
"#,
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn test_chained_rules_output_only_kind() {
|
|
// Exercise rule chaining where an intermediate kind exists only in the
|
|
// output schema (not in the input tree-sitter grammar):
|
|
// assignment → first_node (input → output-only)
|
|
// first_node → second_node (output-only → output-only)
|
|
// The matcher must look up `first_node` against the schema, which only
|
|
// knows about it via the YAML node-types file.
|
|
let assignment_to_first = yeast::rule!(
|
|
(assignment
|
|
left: (_) @left
|
|
right: (_) @right
|
|
)
|
|
=> first_node
|
|
);
|
|
let first_to_second = yeast::rule!(
|
|
(first_node
|
|
left: (_) @left
|
|
right: (_) @right
|
|
)
|
|
=> second_node
|
|
);
|
|
|
|
let dump = run_and_dump("x = 1", vec![assignment_to_first, first_to_second]);
|
|
assert_dump_eq(
|
|
&dump,
|
|
r#"
|
|
program
|
|
second_node
|
|
left: identifier "x"
|
|
right: integer "1"
|
|
"#,
|
|
);
|
|
}
|
|
|
|
// A rule that swaps `assignment.left` and `assignment.right`. Each
|
|
// application produces another `assignment` whose query the rule
|
|
// matches again, so without the once-per-node default it would loop.
|
|
fn swap_assignment_rule() -> Rule {
|
|
yeast::rule!(
|
|
(assignment
|
|
left: (_) @left
|
|
right: (_) @right
|
|
)
|
|
=>
|
|
(assignment
|
|
left: {right}
|
|
right: {left}
|
|
)
|
|
)
|
|
}
|
|
|
|
#[test]
|
|
fn test_repeated_rule_hits_depth_limit() {
|
|
// With `.repeated()` the rule is allowed to fire on its own output,
|
|
// which cycles forever and trips the rewrite-depth safety net.
|
|
let err = run_and_get_error("x = 1", vec![swap_assignment_rule().repeated()]);
|
|
assert!(
|
|
err.contains("exceeded maximum rewrite depth"),
|
|
"expected depth-limit error, got: {err}"
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn test_default_rule_fires_at_most_once_per_node() {
|
|
// Without `.repeated()` (the default), a rule fires at most once on a
|
|
// given node. The swap therefore happens exactly once and the desugaring
|
|
// terminates cleanly.
|
|
let dump = run_and_dump("x = 1", vec![swap_assignment_rule()]);
|
|
assert_dump_eq(
|
|
&dump,
|
|
r#"
|
|
program
|
|
assignment
|
|
left: integer "1"
|
|
right: identifier "x"
|
|
"#,
|
|
);
|
|
}
|
|
|
|
// ---- Phase tests ----
|
|
|
|
#[test]
|
|
fn test_phased_desugaring() {
|
|
// Two phases that could equally have been a single one with chained
|
|
// rules. Splitting them makes the intent (cleanup, then desugar)
|
|
// explicit and provides per-phase error messages.
|
|
let cleanup = vec![yeast::rule!(
|
|
(assignment
|
|
left: (_) @left
|
|
right: (_) @right
|
|
)
|
|
=> first_node
|
|
)];
|
|
let desugar = vec![yeast::rule!(
|
|
(first_node
|
|
left: (_) @left
|
|
right: (_) @right
|
|
)
|
|
=> second_node
|
|
)];
|
|
|
|
let dump = run_phased_and_dump(
|
|
"x = 1",
|
|
vec![
|
|
Phase::new("cleanup", cleanup),
|
|
Phase::new("desugar", desugar),
|
|
],
|
|
);
|
|
assert_dump_eq(
|
|
&dump,
|
|
r#"
|
|
program
|
|
second_node
|
|
left: identifier "x"
|
|
right: integer "1"
|
|
"#,
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn test_phase_error_includes_phase_name() {
|
|
// A repeated rule that loops; the error message should identify the
|
|
// phase that tripped the depth limit.
|
|
let lang: tree_sitter::Language = tree_sitter_ruby::LANGUAGE.into();
|
|
let schema =
|
|
yeast::node_types_yaml::schema_from_yaml_with_language(OUTPUT_SCHEMA_YAML, &lang).unwrap();
|
|
let phases = vec![Phase::new("buggy", vec![swap_assignment_rule().repeated()])];
|
|
let runner = Runner::with_schema(lang, &schema, &phases);
|
|
let err = runner
|
|
.run("x = 1")
|
|
.expect_err("expected runner to return an error");
|
|
assert!(
|
|
err.contains("Phase `buggy`"),
|
|
"error should mention the failing phase, got: {err}"
|
|
);
|
|
assert!(
|
|
err.contains("exceeded maximum rewrite depth"),
|
|
"error should mention the depth limit, got: {err}"
|
|
);
|
|
}
|
|
|
|
// ---- Cursor tests ----
|
|
|
|
#[test]
|
|
fn test_cursor_navigation() {
|
|
let runner = Runner::new(tree_sitter_ruby::LANGUAGE.into(), &[]);
|
|
let ast = runner.run("x = 1").unwrap();
|
|
let mut cursor = AstCursor::new(&ast);
|
|
|
|
// Start at root
|
|
assert_eq!(cursor.node().kind(), "program");
|
|
|
|
// Go to first child (assignment)
|
|
assert!(cursor.goto_first_child());
|
|
assert_eq!(cursor.node().kind(), "assignment");
|
|
|
|
// No sibling
|
|
assert!(!cursor.goto_next_sibling());
|
|
|
|
// Go to first child of assignment
|
|
assert!(cursor.goto_first_child());
|
|
assert!(cursor.node().is_named());
|
|
|
|
// Go back up
|
|
assert!(cursor.goto_parent());
|
|
assert_eq!(cursor.node().kind(), "assignment");
|
|
|
|
assert!(cursor.goto_parent());
|
|
assert_eq!(cursor.node().kind(), "program");
|
|
|
|
// Can't go further up
|
|
assert!(!cursor.goto_parent());
|
|
}
|
|
|
|
#[test]
|
|
fn test_desugar_for_with_multiple_assignment() {
|
|
let dump = run_and_dump("for a, b in list do\n x\nend", ruby_rules());
|
|
assert_dump_eq(
|
|
&dump,
|
|
r#"
|
|
program
|
|
call
|
|
block:
|
|
block
|
|
body:
|
|
block_body
|
|
stmt:
|
|
assignment
|
|
left: identifier "$tmp-1"
|
|
right: identifier "$tmp-0"
|
|
assignment
|
|
left: identifier "a"
|
|
right:
|
|
element_reference
|
|
object: identifier "$tmp-1"
|
|
index: integer "0"
|
|
assignment
|
|
left: identifier "b"
|
|
right:
|
|
element_reference
|
|
object: identifier "$tmp-1"
|
|
index: integer "1"
|
|
identifier "x"
|
|
parameters:
|
|
block_parameters
|
|
parameter: identifier "$tmp-0"
|
|
method: identifier "each"
|
|
receiver: identifier "list"
|
|
"#,
|
|
);
|
|
}
|