//! Python extraction — a faithful Rust port of `TreeSitterExtractor`'s Python //! paths (src/extraction/tree-sitter.ts) plus languages/python.ts. //! //! Same porting contract as tsjs/java: behavior parity, bug-for-bug — //! including the quirks: decorates refs only fire for bare-identifier //! decorators (`@staticmethod` yes, `@app.route(...)` no — python's `call` //! kind isn't `call_expression`), module-level assignments always extract as //! `variable` (no isConst hook), and `self.method` fn-ref candidates carry the //! BARE attribute name. Python is not a TYPE_ANNOTATION language — no type //! refs anywhere. Files with parse errors defer to wasm. use crate::buffers::{ build_meta, edge_kind_index, node_kind_index, Arena, BoolFlags, EdgeRow, EmitOut, NodeRow, RefRow, StrRef, Tables, FLAG_IS_ASYNC, FLAG_IS_STATIC, FUNCTION_REF_CODE, NONE, NONE_STR, }; use crate::docstring::preceding_docstring; use crate::ids; use crate::textutil as util; use std::collections::{HashMap, HashSet}; use tree_sitter::{Node, Parser}; const MAX_VALUE_REF_NODES: usize = 20_000; struct Scope { row: u32, kind: &'static str, name: String, } #[derive(Default)] struct Extra { docstring: Option, signature: Option, is_async: Option, is_static: Option, } struct ValueScope<'t> { row: u32, node: Node<'t>, name: String, } struct Cand { from: u32, name: String, line: u32, column_byte: usize, row: usize, } pub struct Walker<'t> { src: &'t str, file_path: &'t str, line_starts: Vec, arena: Arena, tables: Tables, stack: Vec, node_ids: Vec, defined_fn_names: HashSet, imported_names: HashSet, fn_ref_cands: Vec, fs_values: HashMap, fs_value_counts: HashMap, value_scopes: Vec>, } pub fn extract(file_path: &str, source: &str) -> Result { let grammar = crate::langs::grammar_for("python").ok_or("no python grammar")?; let t0 = std::time::Instant::now(); let mut parser = Parser::new(); parser .set_language(&grammar) .map_err(|e| format!("set_language(python) failed: {e}"))?; let tree = parser .parse(source, None) .ok_or_else(|| "parser returned null tree".to_string())?; if tree.root_node().has_error() { return Err("defer: parse tree contains errors — wasm recovery is canonical".to_string()); } let mut w = Walker { src: source, file_path, line_starts: util::line_starts(source), arena: Arena::default(), tables: Tables::default(), stack: Vec::new(), node_ids: Vec::new(), defined_fn_names: HashSet::new(), imported_names: HashSet::new(), fn_ref_cands: Vec::new(), fs_values: HashMap::new(), fs_value_counts: HashMap::new(), value_scopes: Vec::new(), }; let line_count = source.bytes().filter(|b| *b == b'\n').count() as u32 + 1; let base_name = file_path.rsplit(['/', '\\']).next().unwrap_or(file_path); let mut flags = BoolFlags::default(); flags.set(crate::buffers::FLAG_IS_EXPORTED, false); let file_id = w.arena.put(&ids::file_node_id(file_path)); let name_ref = w.arena.put(base_name); let qn_ref = w.arena.put(file_path); w.tables.push_node(&NodeRow { kind: node_kind_index("file").unwrap(), visibility: 0, flags, start_line: 1, end_line: line_count, start_column: 0, end_column: 0, name: name_ref, qualified_name: qn_ref, id: file_id, docstring: NONE_STR, signature: NONE_STR, decorators: NONE_STR, type_parameters: NONE_STR, return_type: NONE_STR, extra_json: NONE_STR, }); w.node_ids.push(ids::file_node_id(file_path)); w.stack.push(Scope { row: 0, kind: "file", name: base_name.to_string() }); w.visit_node(tree.root_node()); w.flush_fn_ref_candidates(); w.flush_value_refs(tree.root_node()); w.stack.pop(); let duration_ms = t0.elapsed().as_secs_f64() * 1000.0; let meta = build_meta(&w.tables, w.arena.len(), NONE_STR, duration_ms); Ok(EmitOut { meta, nodes: w.tables.nodes, edges: w.tables.edges, refs: w.tables.refs, arena: w.arena.into_vec(), }) } impl<'t> Walker<'t> { fn text(&self, node: Node) -> &'t str { &self.src[node.byte_range()] } fn line_of(&self, node: Node) -> u32 { node.start_position().row as u32 + 1 } fn col_of(&self, node: Node) -> u32 { util::col16(self.src, &self.line_starts, node.start_position().row, node.start_byte()) } fn end_col_of(&self, node: Node) -> u32 { util::col16(self.src, &self.line_starts, node.end_position().row, node.end_byte()) } fn top_row(&self) -> u32 { self.stack.last().map(|s| s.row).unwrap_or(0) } fn inside_class_like(&self) -> bool { self.stack .last() .map(|s| matches!(s.kind, "class" | "struct" | "interface" | "trait" | "enum" | "module")) .unwrap_or(false) } fn push_ref_at(&mut self, from_row: u32, name: &str, kind_code: u8, node: Node) { let name_ref = self.arena.put(name); self.tables.push_ref(&RefRow { from_idx: from_row, kind: kind_code, line: self.line_of(node), column: self.col_of(node), reference_name: name_ref, candidates: NONE_STR, from_id_str: NONE_STR, }); if kind_code == edge_kind_index("imports").unwrap() { if util::simple_name().is_match(name) { self.imported_names.insert(name.to_string()); } else if let Some(c) = util::qualified_import().captures(name) { self.imported_names.insert(c[1].to_string()); } } } fn create_node(&mut self, kind: &'static str, name: &str, node: Node<'t>, extra: Extra) -> Option { if name.is_empty() { return None; } let start_line = self.line_of(node); let id = ids::node_id(self.file_path, kind, name, start_line); let end_line = node.end_position().row as u32 + 1; let qualified = { let mut parts: Vec<&str> = Vec::new(); for s in &self.stack { if s.kind != "file" { parts.push(&s.name); } } let mut qn = parts.join("::"); if !qn.is_empty() { qn.push_str("::"); } qn.push_str(name); qn }; let mut flags = BoolFlags::default(); if let Some(v) = extra.is_async { flags.set(FLAG_IS_ASYNC, v); } if let Some(v) = extra.is_static { flags.set(FLAG_IS_STATIC, v); } let name_ref = self.arena.put(name); let qn_ref = self.arena.put(&qualified); let id_ref = self.arena.put(&id); let doc_ref = opt_str(&mut self.arena, extra.docstring.as_deref()); let sig_ref = opt_str(&mut self.arena, extra.signature.as_deref()); let row = self.tables.push_node(&NodeRow { kind: node_kind_index(kind).unwrap(), visibility: 0, flags, start_line, end_line, start_column: self.col_of(node), end_column: self.end_col_of(node), name: name_ref, qualified_name: qn_ref, id: id_ref, docstring: doc_ref, signature: sig_ref, decorators: NONE_STR, type_parameters: NONE_STR, return_type: NONE_STR, extra_json: NONE_STR, }); self.node_ids.push(id); let parent_row = self.top_row(); self.tables.push_edge(&EdgeRow { source_idx: parent_row, target_idx: row, kind: edge_kind_index("contains").unwrap(), provenance: 0, line: NONE, column: NONE, metadata_json: NONE_STR, source_id_str: NONE_STR, target_id_str: NONE_STR, }); if kind == "function" || kind == "method" { self.defined_fn_names.insert(name.to_string()); } // captureValueRefScope let target_kind_ok = kind == "constant" || kind == "variable"; if target_kind_ok && util::utf16_len(name) >= 3 && util::has_upper_or_underscore().is_match(name) { let parent_ok = self .stack .last() .map(|s| matches!(s.kind, "file" | "class" | "module" | "struct" | "enum")) .unwrap_or(false); if parent_ok { self.fs_values.insert(name.to_string(), row); *self.fs_value_counts.entry(name.to_string()).or_insert(0) += 1; } } if matches!(kind, "function" | "method" | "constant" | "variable") { self.value_scopes.push(ValueScope { row, node, name: name.to_string() }); } Some(row) } fn extract_name(&self, node: Node) -> String { if let Some(name_node) = node.child_by_field_name("name") { return self.text(name_node).to_string(); } for i in 0..node.named_child_count() { if let Some(c) = node.named_child(i) { if matches!(c.kind(), "identifier" | "type_identifier" | "simple_identifier" | "constant") { return self.text(c).to_string(); } } } "".to_string() } /// pythonExtractor.getSignature: params + ` -> returnType`. fn signature_of(&self, node: Node) -> Option { let params = node.child_by_field_name("parameters")?; let mut sig = self.text(params).to_string(); if let Some(ret) = node.child_by_field_name("return_type") { sig.push_str(" -> "); sig.push_str(self.text(ret)); } Some(sig) } /// pythonExtractor.isAsync: the PREVIOUS SIBLING token is `async`. fn is_async(&self, node: Node) -> bool { node.prev_sibling().map(|p| p.kind() == "async").unwrap_or(false) } /// pythonExtractor.isStatic: preceding decorator mentioning `staticmethod`. fn is_static(&self, node: Node) -> bool { if let Some(prev) = node.prev_named_sibling() { if prev.kind() == "decorator" { return self.text(prev).contains("staticmethod"); } } false } // --- visitNode ------------------------------------------------------------ fn visit_node(&mut self, node: Node<'t>) { let kind = node.kind(); let mut skip_children = false; self.maybe_capture_fn_refs(node); if kind == "function_definition" { // functionTypes ∩ methodTypes: inside a class-like ⇒ method. if self.inside_class_like() { self.extract_method(node); } else { self.extract_function(node); } skip_children = true; } else if kind == "class_definition" { self.extract_class(node); skip_children = true; } else if kind == "assignment" && !self.inside_class_like() { self.extract_variable(node); self.scan_fn_ref_subtree(node, 0); skip_children = true; } else if kind == "import_statement" || kind == "import_from_statement" { self.extract_import(node); } else if kind == "call" { self.extract_call(node); } if !skip_children { for i in 0..node.named_child_count() { if let Some(c) = node.named_child(i) { self.visit_node(c); } } } } fn visit_function_body(&mut self, body: Node<'t>) { self.visit_for_calls_and_structure(body); } fn visit_for_calls_and_structure(&mut self, node: Node<'t>) { let kind = node.kind(); self.maybe_capture_fn_refs(node); if kind == "call" { self.extract_call(node); } // Nested NAMED functions become their own nodes. if kind == "function_definition" { let name = self.extract_name(node); if name != "" { self.extract_function(node); return; } } if kind == "class_definition" { self.extract_class(node); return; } for i in 0..node.named_child_count() { if let Some(c) = node.named_child(i) { self.visit_for_calls_and_structure(c); } } } // --- extractors -------------------------------------------------------------- fn extract_function(&mut self, node: Node<'t>) { let name = self.extract_name(node); if name == "" { if let Some(body) = node.child_by_field_name("body") { self.visit_function_body(body); } return; } let extra = Extra { docstring: preceding_docstring(node, self.src), signature: self.signature_of(node), is_async: Some(self.is_async(node)), is_static: Some(self.is_static(node)), }; let Some(row) = self.create_node("function", &name, node, extra) else { return }; // (python is not a TYPE_ANNOTATION language — no type refs) self.extract_decorators_for(node, row); self.stack.push(Scope { row, kind: "function", name }); if let Some(body) = node.child_by_field_name("body") { self.visit_function_body(body); } self.stack.pop(); } fn extract_method(&mut self, node: Node<'t>) { let name = self.extract_name(node); let extra = Extra { docstring: preceding_docstring(node, self.src), signature: self.signature_of(node), is_async: Some(self.is_async(node)), is_static: Some(self.is_static(node)), }; let Some(row) = self.create_node("method", &name, node, extra) else { return }; self.extract_decorators_for(node, row); self.stack.push(Scope { row, kind: "method", name }); if let Some(body) = node.child_by_field_name("body") { self.visit_function_body(body); } self.stack.pop(); } fn extract_class(&mut self, node: Node<'t>) { let name = self.extract_name(node); let extra = Extra { docstring: preceding_docstring(node, self.src), ..Extra::default() }; let Some(row) = self.create_node("class", &name, node, extra) else { return }; // Inheritance: `class Flask(Scaffold, Mixin):` — argument_list children. let extends_kind = edge_kind_index("extends").unwrap(); for i in 0..node.named_child_count() { let Some(child) = node.named_child(i) else { continue }; if child.kind() == "argument_list" { for j in 0..child.named_child_count() { let Some(arg) = child.named_child(j) else { continue }; if matches!(arg.kind(), "identifier" | "attribute") { let name = self.text(arg).to_string(); self.push_ref_at(row, &name, extends_kind, arg); } } } } self.extract_decorators_for(node, row); self.stack.push(Scope { row, kind: "class", name }); let body = node.child_by_field_name("body").unwrap_or(node); for i in 0..body.named_child_count() { if let Some(c) = body.named_child(i) { self.visit_node(c); } } self.stack.pop(); } /// extractVariable's python branch: `left = right` at module scope. fn extract_variable(&mut self, node: Node<'t>) { let docstring = preceding_docstring(node, self.src); let left = node.child_by_field_name("left").or_else(|| node.named_child(0)); let right = node.child_by_field_name("right").or_else(|| node.named_child(1)); let Some(left) = left else { return }; if !matches!(left.kind(), "identifier" | "constant") { return; } let name = self.text(left).to_string(); let signature = right.map(|r| util::init_signature(self.text(r))); // No isConst hook ⇒ always `variable` (UPPER_CASE constants included). self.create_node("variable", &name, node, Extra { docstring, signature, ..Extra::default() }); } fn extract_import(&mut self, node: Node<'t>) { let import_text = self.text(node).trim().to_string(); let imports_kind = edge_kind_index("imports").unwrap(); if node.kind() == "import_from_statement" { // Hook path: module_name field → import node + module ref, then // per-name binding refs (emitPyFromImportRefs). let Some(module_node) = node.child_by_field_name("module_name") else { return }; let module_name = self.text(module_node).to_string(); if module_name.is_empty() { return; } self.create_node( "import", &module_name, node, Extra { signature: Some(import_text), ..Extra::default() }, ); let parent = self.top_row(); self.push_ref_at(parent, &module_name.clone(), imports_kind, node); // emitPyFromImportRefs: one `imports` ref per imported name. for i in 0..node.named_child_count() { let Some(child) = node.named_child(i) else { continue }; if child.start_byte() == module_node.start_byte() && child.end_byte() == module_node.end_byte() { continue; } if child.kind() == "wildcard_import" { continue; } let name_node = match child.kind() { "aliased_import" => child .child_by_field_name("alias") .or_else(|| child.child_by_field_name("name")) .or_else(|| child.named_child(0)), "dotted_name" => Some(child), _ => None, }; let Some(name_node) = name_node else { continue }; let raw = self.text(name_node); let local = raw.rsplit('.').next().unwrap_or(""); if local.is_empty() { continue; } self.push_ref_at(parent, &local.to_string(), imports_kind, name_node); } return; } // import_statement: `import a.b, x as y` — one import node + module ref // per dotted name (the python multi-import branch). let parent = self.top_row(); for i in 0..node.named_child_count() { let Some(child) = node.named_child(i) else { continue }; if child.kind() == "dotted_name" { let name = self.text(child).to_string(); self.create_node( "import", &name, node, Extra { signature: Some(import_text.clone()), ..Extra::default() }, ); self.push_ref_at(parent, &name, imports_kind, child); } else if child.kind() == "aliased_import" { let dotted = (0..child.named_child_count()) .filter_map(|j| child.named_child(j)) .find(|c| c.kind() == "dotted_name"); if let Some(dotted) = dotted { let name = self.text(dotted).to_string(); self.create_node( "import", &name, node, Extra { signature: Some(import_text.clone()), ..Extra::default() }, ); self.push_ref_at(parent, &name, imports_kind, dotted); } } } } /// extractCall — python `call` through the generic tail (attribute callees). fn extract_call(&mut self, node: Node<'t>) { if self.stack.is_empty() { return; } let func = node .child_by_field_name("function") .or_else(|| node.named_child(0)); let mut callee_name = String::new(); if let Some(func) = func { if func.kind() == "attribute" { // `property` and `field` fields don't exist on attribute — // the generic path falls back to namedChild(1) (the attr name). let property = func .child_by_field_name("property") .or_else(|| func.child_by_field_name("field")) .or_else(|| func.named_child(1)); if let Some(property) = property { let method_name = self.text(property); let receiver = func .child_by_field_name("object") .or_else(|| func.child_by_field_name("operand")) .or_else(|| func.child_by_field_name("argument")) .or_else(|| func.named_child(0)); if let Some(r) = receiver { if is_literal_receiver(r.kind()) { return; } } let recv_ident = receiver.filter(|r| { matches!(r.kind(), "identifier" | "simple_identifier" | "field_identifier") }); if let Some(r) = recv_ident { let receiver_name = self.text(r); if !matches!(receiver_name, "self" | "this" | "cls" | "super") { callee_name = format!("{receiver_name}.{method_name}"); } else { callee_name = method_name.to_string(); } } else { callee_name = method_name.to_string(); } } } else { callee_name = self.text(func).to_string(); } } if !callee_name.is_empty() { if let Some(c) = util::paren_conversion().captures(&callee_name) { callee_name = c[1].to_string(); } let from = self.top_row(); self.push_ref_at(from, &callee_name.clone(), edge_kind_index("calls").unwrap(), node); } } /// extractDecoratorsFor — python decorators are PRECEDING SIBLINGS inside /// decorated_definition. Only bare-identifier decorators yield a target /// (python's `call` kind isn't `call_expression`, and `attribute` isn't in /// the target-kind list — mirrored exactly). fn extract_decorators_for(&mut self, decl: Node<'t>, decorated_row: u32) { for i in 0..decl.named_child_count() { if let Some(child) = decl.named_child(i) { self.consider_decorator(child, decorated_row); } } let Some(parent) = decl.parent() else { return }; let decl_start = decl.start_byte(); let mut decl_idx: isize = -1; for i in 0..parent.named_child_count() { if let Some(sib) = parent.named_child(i) { if sib.start_byte() == decl_start { decl_idx = i as isize; break; } } } if decl_idx > 0 { let mut j = decl_idx - 1; while j >= 0 { let Some(sib) = parent.named_child(j as usize) else { j -= 1; continue; }; if !matches!(sib.kind(), "decorator" | "annotation" | "marker_annotation") { break; } self.consider_decorator(sib, decorated_row); j -= 1; } } } fn consider_decorator(&mut self, n: Node<'t>, decorated_row: u32) { if !matches!(n.kind(), "decorator" | "annotation" | "marker_annotation" | "attribute") { return; } let mut target: Option = None; for i in 0..n.named_child_count() { let Some(child) = n.named_child(i) else { continue }; if child.kind() == "call_expression" { target = child.child_by_field_name("function").or_else(|| child.named_child(0)); if target.is_some() { break; } } if matches!( child.kind(), "identifier" | "member_expression" | "scoped_identifier" | "navigation_expression" | "user_type" | "type_identifier" ) { target = Some(child); break; } } let Some(target) = target else { return }; let mut name = self.text(target).to_string(); if let Some(lt) = name.find('<') { if lt > 0 { name.truncate(lt); } } let last_dot = name .rfind('.') .map(|i| i as isize) .unwrap_or(-1) .max(name.rfind("::").map(|i| i as isize).unwrap_or(-1)); if last_dot >= 0 { name = name[(last_dot as usize + 1)..].to_string(); if name.starts_with(':') || name.starts_with('.') { name.remove(0); } } let name = name.trim().to_string(); if name.is_empty() { return; } self.push_ref_at(decorated_row, &name, edge_kind_index("decorates").unwrap(), n); } // --- fn refs (PYTHON_SPEC) ------------------------------------------------------ fn maybe_capture_fn_refs(&mut self, node: Node<'t>) { let (mode, field): (&str, &str) = match node.kind() { "argument_list" => ("args", ""), "assignment" => ("rhs", "right"), "keyword_argument" => ("value", "value"), "pair" => ("value", "value"), "list" => ("list", ""), _ => return, }; if self.stack.is_empty() { return; } let from = self.top_row(); let mut values: Vec = Vec::new(); match mode { "args" | "list" => { for i in 0..node.named_child_count() { if let Some(c) = node.named_child(i) { values.push(c); } } } "rhs" => { if let Some(rhs) = node.child_by_field_name(field) { let lhs_text = node .child_by_field_name("left") .map(|l| self.text(l)) .unwrap_or(""); let lhs_last = util::lhs_last_name() .captures(lhs_text) .and_then(|c| c.get(1)) .map(|m| m.as_str()); if !(lhs_last.is_some() && lhs_last == Some(self.text(rhs).trim())) { values.push(rhs); } } } _ => { if let Some(v) = node.child_by_field_name(field) { values.push(v); } } } for v in values { let (name, anchor) = match v.kind() { "identifier" => (self.text(v).to_string(), v), // `self.handle_click` — object EXACTLY `self`; BARE attr name. "attribute" => { let obj = v.child_by_field_name("object"); let attr = v.child_by_field_name("attribute"); match (obj, attr) { (Some(o), Some(a)) if o.kind() == "identifier" && self.text(o) == "self" => { (self.text(a).to_string(), a) } _ => continue, } } _ => continue, }; if name.is_empty() || is_stoplisted(&name) { continue; } let p = anchor.start_position(); self.fn_ref_cands.push(Cand { from, name, line: p.row as u32 + 1, column_byte: anchor.start_byte(), row: p.row, }); } } fn scan_fn_ref_subtree(&mut self, node: Node<'t>, depth: u32) { if depth > 12 { return; } // Halts at functionTypes ∪ the fixed arrow/lambda list — python's // `lambda` kind is NOT in that list (mirrored). if depth > 0 && matches!( node.kind(), "function_definition" | "arrow_function" | "function_expression" | "lambda_literal" | "lambda_expression" ) { return; } self.maybe_capture_fn_refs(node); for i in 0..node.named_child_count() { if let Some(c) = node.named_child(i) { self.scan_fn_ref_subtree(c, depth + 1); } } } fn flush_fn_ref_candidates(&mut self) { let cands = std::mem::take(&mut self.fn_ref_cands); if cands.is_empty() || util::is_generated_file(self.file_path) { return; } let mut seen: HashSet<(String, String)> = HashSet::new(); for c in cands { if !c.name.starts_with("this.") && !c.name.contains("::") && !self.defined_fn_names.contains(&c.name) && !self.imported_names.contains(&c.name) { continue; } if !seen.insert((self.node_ids[c.from as usize].clone(), c.name.clone())) { continue; } let column = util::col16(self.src, &self.line_starts, c.row, c.column_byte); let name_ref = self.arena.put(&c.name); self.tables.push_ref(&RefRow { from_idx: c.from, kind: FUNCTION_REF_CODE, line: c.line, column, reference_name: name_ref, candidates: NONE_STR, from_id_str: NONE_STR, }); } } // --- value refs ------------------------------------------------------------------- fn flush_value_refs(&mut self, root: Node<'t>) { let scopes = std::mem::take(&mut self.value_scopes); let mut targets = std::mem::take(&mut self.fs_values); let counts = std::mem::take(&mut self.fs_value_counts); if std::env::var("CODEGRAPH_VALUE_REFS").as_deref() == Ok("0") { return; } if targets.is_empty() || scopes.is_empty() || util::is_generated_file(self.file_path) { return; } // Shadow prune — python's declarator shape is `assignment`. let mut decl_counts: HashMap<&str, u32> = HashMap::new(); let mut dstack: Vec = vec![root]; let mut dvisited = 0usize; while let Some(n) = dstack.pop() { if dvisited >= MAX_VALUE_REF_NODES { break; } dvisited += 1; if n.kind() == "assignment" { let left = n .child_by_field_name("left") .or_else(|| n.child_by_field_name("pattern")) .or_else(|| n.named_child(0)); if let Some(left) = left { if left.kind() == "identifier" { let nm = self.text(left); if targets.contains_key(nm) { *decl_counts.entry(nm).or_insert(0) += 1; } } else { for i in 0..left.named_child_count() { if let Some(c) = left.named_child(i) { if c.kind() == "identifier" { let nm = self.text(c); if targets.contains_key(nm) { *decl_counts.entry(nm).or_insert(0) += 1; } } } } } } } for i in 0..n.named_child_count() { if let Some(c) = n.named_child(i) { dstack.push(c); } } } let shadowed: Vec = decl_counts .iter() .filter(|(nm, c)| **c > counts.get(**nm).copied().unwrap_or(1)) .map(|(nm, _)| nm.to_string()) .collect(); for nm in shadowed { targets.remove(&nm); } if targets.is_empty() { return; } let refs_kind = edge_kind_index("references").unwrap(); for scope in &scopes { let mut seen: HashSet<&str> = HashSet::new(); let mut stack: Vec = vec![scope.node]; let mut visited = 0usize; while let Some(n) = stack.pop() { if visited >= MAX_VALUE_REF_NODES { break; } visited += 1; if matches!(n.kind(), "identifier" | "constant" | "name" | "simple_identifier") { let ref_name = self.text(n); if let Some(&target_row) = targets.get(ref_name) { let target_id = self.node_ids[target_row as usize].as_str(); if target_id != self.node_ids[scope.row as usize] && ref_name != scope.name && !seen.contains(&target_id) { seen.insert(target_id); let meta = self.arena.put(r#"{"valueRef":true}"#); self.tables.push_edge(&EdgeRow { source_idx: scope.row, target_idx: target_row, kind: refs_kind, provenance: 0, line: NONE, column: NONE, metadata_json: meta, source_id_str: NONE_STR, target_id_str: NONE_STR, }); } } } for i in 0..n.named_child_count() { if let Some(c) = n.named_child(i) { stack.push(c); } } } } } } /// NAME_STOPLIST (function-ref.ts). fn is_stoplisted(name: &str) -> bool { matches!( name, "this" | "self" | "super" | "null" | "nil" | "true" | "false" | "undefined" | "new" | "NULL" | "nullptr" | "None" ) } /// LITERAL_RECEIVER_TYPES membership (shared table; python names among them). fn is_literal_receiver(kind: &str) -> bool { matches!( kind, "string" | "string_literal" | "interpreted_string_literal" | "raw_string_literal" | "template_string" | "concatenated_string" | "formatted_string" | "f_string" | "line_string_literal" | "string_content" | "heredoc_body" | "number" | "number_literal" | "integer" | "integer_literal" | "float" | "float_literal" | "int_literal" | "decimal_integer_literal" | "real_literal" | "char_literal" | "character_literal" | "rune_literal" | "regex" | "regex_literal" | "true" | "false" | "boolean_literal" | "bool_literal" | "none" | "null" | "nil" | "null_literal" | "undefined" | "list" | "list_literal" | "array" | "array_literal" | "array_creation_expression" | "dictionary" | "dict_literal" | "object" | "tuple" | "set" ) } fn opt_str(arena: &mut Arena, s: Option<&str>) -> StrRef { match s { Some(s) => arena.put(s), None => NONE_STR, } }