Fixes #1581. ## What was wrong `codegraph init` / `codegraph index` died with `Segmentation fault` — the whole CLI process, not a parse worker — on a C/C++ file with very deep brace nesting (llvm's `clang/test/Parser/parser_overflow.c`, 16,384 nested `{`). The reporter's diagnosis is exactly right: tree-sitter's parser is iterative, so the file parses fine, and then the native kernel's **recursive walker** (`visit_node` → `visit_for_calls_and_structure` → …, one frame per AST level) overflowed the thread's stack. A native overflow can't be caught the way a wasm abort can, and a parse worker is a thread of the `codegraph` process, so the SIGSEGV took the entire indexer down — no message, no per-file fallback, no partial index. Two things made "just give the worker a bigger stack" the wrong fix: - it only moves the cliff — reproduced here: the reporter's 16,384-deep file kills a default 4 MiB worker (rc=132 on macOS / 139 on Linux), and a 100k-deep file kills the 8 MiB **main** thread too; - the walkers are shared by every kernel-routed language (20 of them), and each has several recursion points with different frame sizes, so no single stack size is a provable bound. Meanwhile the wasm path already handles this shape gracefully: its JS walker catches its own `RangeError` per file and stores a partial result with a `parse_error`. The kernel just needed a way to get there instead of dying. ## What this does **The kernel guards its own recursion against the calling thread's real stack bounds and defers a too-deep file to wasm** — the same `defer:` routing signal it already uses for files with parse errors, which `src/extraction/kernel/index.ts` treats as "take the wasm path for this file", silently. - `codegraph-kernel/src/stack.rs`: per-thread stack bounds from the OS, computed once per thread and cached — glibc/musl `pthread_getattr_np` + `pthread_attr_getstack`, macOS `pthread_get_stackaddr_np` + `pthread_get_stacksize_np`, Win32 `GetCurrentThreadStackLimits` (a hand-declared `kernel32` extern; no `windows-sys`). `exhausted()` is one thread-local load and one compare: true once the stack pointer is within a 256 KiB red zone of the limit, and it latches a flag. Where the OS can't report bounds it falls back to a fixed 1 MiB descent budget measured from the entry stack pointer — safe on anything from Node's 4 MiB worker default up. So the guard is exact on the 4 MiB worker, the 8 MiB main thread, and any `resourceLimits.stackSizeMb` alike. - `stack_guard!()` (defined in `lib.rs`) is the first statement of every recursive walker function — all **150** self-recursive or on-cycle functions across the 15 walker modules, found by script (every cycle in the call graph, not just direct self-calls). It returns `Default::default()` (`()`, `false`, `None`, `""`) so an exhausted walk simply stops descending; a hook returning `false` sends its caller down the generic child walk, whose own guard returns at once. - `extract_file` runs the whole walk under `stack::run_guarded`: if the flag is set afterwards the (truncated) result is discarded and replaced by `defer: nesting too deep for the native walker — wasm recovery handles it`. - `parse-pool.ts`: a comment at `new Worker(scriptPath)` records why there is deliberately no `resourceLimits.stackSizeMb` bump. - No new crates beyond `libc` as a direct unix dependency (already in `Cargo.lock` transitively). No wire/ABI change. Net effect for the reporter's repo: `deep.c` goes to the wasm path, lands as `function foo` plus a recorded parse warning, and the other 31,607 files index normally. `CODEGRAPH_KERNEL=0` and the `exclude` workaround are no longer needed. ## Tests **Rust unit tests** (`cargo test`, 21 passed — 7 new in `stack.rs`): the walkers for C, C++, Rust, TypeScript and Python are driven on a **1 MiB** thread (a quarter of Node's worker default) with 30k-deep nesting and must return `defer:` instead of crashing; shallow files are untouched; the latch resets between runs; the OS bounds are sane on the main thread and describe a small thread's own stack. **`__tests__/kernel-deep-nesting.test.ts`** (new, 8 tests — skips without a staged `.node`, fails under `CODEGRAPH_KERNEL_EXPECT=1` if the kernel is missing, like the other kernel suites): - every default-routed language (all 20) survives a 60k-deep expression on the main thread — clean result or the wasm fallback's partial result, never a crash; - the reporter's exact 16,384-brace C file is indexed (partial) on the main thread; - 200-deep expressions in every language still take the kernel path clean (the guard never trips on normal code); - inside a **default-sized 4 MiB `worker_threads` Worker** through `dist/`: the reporter's `deep.c` and a 60k-deep expression in every language come back `deferred` with exit 0, and a normal file still extracts natively; - end-to-end through the built CLI: `codegraph init` on a repo holding `deep.c` + `ok.c` exits 0 and records both files, with both functions. **Existing kernel suites**: all 15 (`kernel-*-parity`, `kernel-scaffold`, `kernel-retry-materialize`, `kernel-grammar-parity`) pass unchanged, 147 tests — the guard never fires on the parity fixtures. **Reporter's probes** (`one.js` from the issue, default 4 MiB worker, this build): `deep.c` → `deferred`, exitCode=0 (was rc=132/139); `deep100k.c` → `deferred`, exitCode=0. Main thread: `deep.c` / `deep100k.c` → wasm partial with `Parse error: Maximum call stack size exceeded`; a 6,000-term binary expression and a 3,000-branch `else if` chain stay on the kernel path with clean results. **Perf** (same `dist/`, only the `.node` swapped via `CODEGRAPH_KERNEL_PATH`; interleaved main/new ×3, `codegraph init`, macOS arm64): | repo | main (median) | guarded (median) | nodes / edges | |---|---|---|---| | express (141 files) | 0.60 s (0.58–0.65) | 0.61 s (0.58–0.61) | 1,084 / identical | | redis (786 C/H files) | 4.44 s (4.39–4.66) | 4.49 s (4.41–4.70) | 19,942 / 76,446 identical | Within run-to-run noise, as expected for one TLS load + compare per recursion entry. **Linux (Docker, `node:22-bookworm`, kernel built in-container, `docker run --rm --init`)** — the reporter's platform and the glibc `pthread_getattr_np` bounds path: ``` === platform === Linux efe3cc86947b 6.12.54-linuxkit #1 SMP Tue Nov 4 21:21:47 UTC 2025 aarch64 GNU/Linux v22.22.3 -rwxr-xr-x 1 root root 35332288 Aug 22 18:02 codegraph-kernel/prebuilds/linux-arm64/codegraph-kernel.node === reporter repro (issue #1581): 16,384-brace deep.c, codegraph init === │ └ Done init exit code: 0 file: deep.c file: deep100k.c file: ok.c function: add function: bar function: foo === worker probe: kernel raw extract in a default 4 MiB worker === deep.c: deferred deep.c: worker exitCode=0 deep100k.c: deferred deep100k.c: worker exitCode=0 ok.c: kernel nodes=2 ok.c: worker exitCode=0 === cargo test stack:: (glibc pthread_getattr_np bounds path) === test stack::tests::os_bounds_are_sane_on_this_platform ... ok test stack::tests::small_stack_reports_its_own_bounds ... ok test stack::tests::normal_files_are_untouched_by_the_guard ... ok test stack::tests::deep_braces_c_defer_instead_of_crashing ... ok test stack::tests::latch_resets_between_runs ... ok test stack::tests::deep_parens_cpp_rust_ts_python_defer_instead_of_crashing ... ok test result: ok. 6 passed; 0 failed; 0 ignored; 0 measured; 15 filtered out; finished in 0.23s === vitest: kernel-deep-nesting + kernel-scaffold === ✓ __tests__/kernel-scaffold.test.ts (10 tests) 30ms ✓ __tests__/kernel-deep-nesting.test.ts (8 tests) 36989ms Test Files 2 passed (2) Tests 18 passed (18) ``` (The pre-fix crash was reproduced on macOS — rc=132 in a default worker, rc=139 on the main thread at 100k depth — not re-run inside this container; the reporter's Linux x86_64 trace is the SIGSEGV form of the same overflow.) **Windows (Parallels ARM64 VM, MSVC 14.44, `cargo 1.97`, kernel built on the VM, `GetCurrentThreadStackLimits` path)**: ``` head: cbf8485 fix(kernel): guard the native walkers against stack overflow and defer deep files to wasm (#1581) === cargo build --release (win32-arm64) === Finished `release` profile [optimized] target(s) in 2m 04s staged: 35086848 bytes === cargo test (stack guard unit tests) === test stack::tests::normal_files_are_untouched_by_the_guard ... ok test stack::tests::os_bounds_are_sane_on_this_platform ... ok test stack::tests::small_stack_reports_its_own_bounds ... ok test stack::tests::deep_braces_c_defer_instead_of_crashing ... ok test stack::tests::latch_resets_between_runs ... ok test stack::tests::deep_parens_cpp_rust_ts_python_defer_instead_of_crashing ... ok test result: ok. 6 passed; 0 failed; 0 ignored; 0 measured; 15 filtered out; finished in 0.49s === reporter repro: codegraph init on a 16,384-brace deep.c === └ Done init exit code: 0 === vitest: deep-nesting + scaffold (CODEGRAPH_KERNEL_EXPECT=1) === ✓ __tests__/kernel-scaffold.test.ts (10 tests) 55ms ✓ __tests__/kernel-deep-nesting.test.ts (8 tests) 67239ms ✓ every default-routed language survives a 60k-deep expression on the main thread 52801ms ✓ inside a default-sized (4 MiB) parse worker, through dist/ > defers a 60k-deep expression in every default-routed language 13050ms ✓ end-to-end: codegraph init on a repo holding the deep file > exits 0 and records deep.c alongside the normal files 936ms Test Files 2 passed (2) Tests 18 passed (18) ``` (The end-to-end test is what reads the Windows index back through `node:sqlite` — `files` = `deep.c`, `ok.c`; functions `add`, `foo`.) Full `npm test` on this branch (macOS arm64, kernel staged): **190 files passed, 3,185 tests passed, 10 skipped, 0 failed.** Clippy note: `cargo clippy` on the current toolchain (1.92) reports 18 pre-existing lints (`manual_contains`, `unnecessary_to_owned`, …) in walker code this PR only touched by inserting guard lines; none are in `stack.rs`/`lib.rs`. Left alone to keep the diff reviewable. 🤖 Generated with [Claude Code](https://claude.com/claude-code) https://claude.ai/code/session_01LxZj6W6Y1SHXwvpT3uwJpK
1501 lines
62 KiB
Rust
1501 lines
62 KiB
Rust
//! Rust-language extraction — a faithful port of `TreeSitterExtractor`'s rust
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//! paths (src/extraction/tree-sitter.ts) plus languages/rust.ts. ("rustlang"
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//! because `rust` alone collides with the kernel's own implementation
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//! language.) Survey artifact: docs/design/rust-lang-kernel-port-checklist.md.
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//!
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//! Rust's shape quirks, mirrored exactly (bug-for-bug, all verified against
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//! the TS reference):
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//! - `isAsync` is dead code upstream: it scans DIRECT children for an `async`
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//! token, but the grammar nests it inside `function_modifiers` — every rust
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//! fn/method carries isAsync **false** (present-false, never absent).
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//! - impl blocks push NO scope: members re-dispatch at file scope, so an impl
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//! associated `const` becomes a FILE-level `variable`, and the method↔owner
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//! `contains` edge is a source-order name scan (an impl ABOVE its struct
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//! gets no edge). The receiver (method QN prefix, `contains` owner,
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//! `implements` source) is the impl_item's `type` field via
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//! impl_type_name — both sides moved to the grammar's trait:/type: fields
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//! together in #1588 (the earlier positional scan qualified every
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//! parameterized impl's methods by the TRAIT).
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//! - `const_item`/`static_item` ride the generic extractVariable fallback:
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//! kind is always `variable`, no signature, and EVERY direct `identifier`
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//! child mints a node (`const MAX: u32 = OTHER;` → two nodes, `MAX` + the
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//! phantom `OTHER`). Top-level initializer values are never body-walked.
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//! - Unit structs (`struct Unit;`, no body field) mint NO node; `mod_item`
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//! mints no module node and adds no QN prefix.
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//! - Chained-call re-encode is scoped_identifier-gated (`Foo::new().bar()` →
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//! `Foo::new().bar`); a call through a field of the enclosing type keeps
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//! the owner-field shape (`self.inner.run()` → `self.inner.run`, #1585);
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//! instance chains, parens, `.await`, deeper/non-self field chains, and
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//! bare `self` receivers all collapse to the bare method name (`self` is
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//! node kind `self`, not `identifier`, so it dodges SKIP_RECEIVERS by
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//! falling through). Turbofish callees keep the raw `helper::<T>` text.
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//! - `use` emits an import node named by the ROOT module (`crate`/`self`/…),
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//! one root `imports` ref, then one FULL-path `imports` ref per binding;
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//! `use x::*` (use_wildcard) emits nothing at all.
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//! - Trait supertraits come only from `trait_bounds`; a scoped supertrait
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//! (`fmt::Debug`) matches no case and is silently dropped.
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//! - Rocket `routes!`/`catchers!` are extracted ONLY inside function bodies,
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//! and only when the macro name is a bare identifier.
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//! - A rust type alias emits NO ref to its aliased type (the shared code
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//! reads a `value` field; rust's field is `type`).
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//! - An `attribute_item` between a doc comment and its item breaks the
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//! docstring sibling chain (`#[derive(..)]` kills the docstring).
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//! Files with parse errors defer to wasm.
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use crate::buffers::{
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build_meta, edge_kind_index, node_kind_index, Arena, BoolFlags, EdgeRow, EmitOut, NodeRow,
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RefRow, StrRef, Tables, FLAG_IS_ASYNC, FLAG_IS_EXPORTED, FUNCTION_REF_CODE, NONE, NONE_STR,
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};
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use crate::docstring::preceding_docstring;
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use crate::ids;
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use crate::textutil as util;
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use regex::Regex;
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use std::collections::{HashMap, HashSet};
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use std::sync::OnceLock;
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use tree_sitter::{Node, Parser};
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const MAX_VALUE_REF_NODES: usize = 20_000;
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/// JS `/<[^>]*>/g` — the non-nested generic strip (breaks on nested generics
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/// by design: `Result<Vec<Foo>, E>` → `Result, E>` → returnType undefined).
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fn generic_angle_re() -> &'static Regex {
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static RE: OnceLock<Regex> = OnceLock::new();
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RE.get_or_init(|| Regex::new(r"<[^>]*>").unwrap())
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}
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/// JS `/^[A-Za-z_]\w*$/` (ASCII \w — the regex crate's \w is Unicode).
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fn simple_ident_re() -> &'static Regex {
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static RE: OnceLock<Regex> = OnceLock::new();
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RE.get_or_init(|| Regex::new(r"^[A-Za-z_][0-9A-Za-z_]*$").unwrap())
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}
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struct Scope {
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row: u32,
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kind: &'static str,
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name: String,
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}
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#[derive(Default)]
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struct Extra {
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docstring: Option<String>,
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signature: Option<String>,
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return_type: Option<String>,
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qualified_name: Option<String>,
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visibility: Option<u8>,
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is_exported: Option<bool>,
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is_async: Option<bool>,
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}
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struct ValueScope<'t> {
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row: u32,
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node: Node<'t>,
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name: String,
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}
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struct Cand {
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from: u32,
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name: String,
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line: u32,
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column_byte: usize,
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row: usize,
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}
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/// Per-node metadata for the receiver-method owner lookup and
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/// findNodeByName (mirrors the TS scans over `this.nodes` — FIRST match
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/// wins, earlier-in-file only).
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struct NodeMeta {
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kind: &'static str,
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name: String,
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}
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pub struct Walker<'t> {
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src: &'t str,
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file_path: &'t str,
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line_starts: Vec<usize>,
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arena: Arena,
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tables: Tables,
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stack: Vec<Scope>,
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nodes_meta: Vec<NodeMeta>,
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node_ids: Vec<String>,
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defined_fn_names: HashSet<String>,
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imported_names: HashSet<String>,
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fn_ref_cands: Vec<Cand>,
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fs_values: HashMap<String, u32>,
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fs_value_counts: HashMap<String, u32>,
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value_scopes: Vec<ValueScope<'t>>,
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}
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pub fn extract(file_path: &str, source: &str) -> Result<EmitOut, String> {
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let grammar = crate::langs::grammar_for("rust").ok_or("no rust grammar")?;
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let t0 = std::time::Instant::now();
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let mut parser = Parser::new();
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parser
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.set_language(&grammar)
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.map_err(|e| format!("set_language(rust) failed: {e}"))?;
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let tree = parser
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.parse(source, None)
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.ok_or_else(|| "parser returned null tree".to_string())?;
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if tree.root_node().has_error() {
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return Err("defer: parse tree contains errors — wasm recovery is canonical".to_string());
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}
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let mut w = Walker {
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src: source,
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file_path,
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line_starts: util::line_starts(source),
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arena: Arena::default(),
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tables: Tables::default(),
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stack: Vec::new(),
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nodes_meta: Vec::new(),
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node_ids: Vec::new(),
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defined_fn_names: HashSet::new(),
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imported_names: HashSet::new(),
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fn_ref_cands: Vec::new(),
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fs_values: HashMap::new(),
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fs_value_counts: HashMap::new(),
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value_scopes: Vec::new(),
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};
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let line_count = source.bytes().filter(|b| *b == b'\n').count() as u32 + 1;
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let base_name = file_path.rsplit(['/', '\\']).next().unwrap_or(file_path);
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let mut flags = BoolFlags::default();
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flags.set(FLAG_IS_EXPORTED, false);
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let file_id = w.arena.put(&ids::file_node_id(file_path));
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let name_ref = w.arena.put(base_name);
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let qn_ref = w.arena.put(file_path);
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w.tables.push_node(&NodeRow {
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kind: node_kind_index("file").unwrap(),
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visibility: 0,
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flags,
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start_line: 1,
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end_line: line_count,
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start_column: 0,
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end_column: 0,
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name: name_ref,
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qualified_name: qn_ref,
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id: file_id,
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docstring: NONE_STR,
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signature: NONE_STR,
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decorators: NONE_STR,
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type_parameters: NONE_STR,
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return_type: NONE_STR,
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extra_json: NONE_STR,
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});
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w.nodes_meta.push(NodeMeta { kind: "file", name: base_name.to_string() });
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w.node_ids.push(ids::file_node_id(file_path));
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w.stack.push(Scope { row: 0, kind: "file", name: base_name.to_string() });
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w.visit_node(tree.root_node());
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w.flush_fn_ref_candidates();
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w.flush_value_refs(tree.root_node());
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w.stack.pop();
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let duration_ms = t0.elapsed().as_secs_f64() * 1000.0;
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let meta = build_meta(&w.tables, w.arena.len(), NONE_STR, duration_ms);
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Ok(EmitOut {
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meta,
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nodes: w.tables.nodes,
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edges: w.tables.edges,
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refs: w.tables.refs,
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arena: w.arena.into_vec(),
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})
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}
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impl<'t> Walker<'t> {
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fn text(&self, node: Node) -> &'t str {
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&self.src[node.byte_range()]
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}
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fn line_of(&self, node: Node) -> u32 {
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node.start_position().row as u32 + 1
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}
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fn col_of(&self, node: Node) -> u32 {
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util::col16(self.src, &self.line_starts, node.start_position().row, node.start_byte())
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}
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fn end_col_of(&self, node: Node) -> u32 {
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util::col16(self.src, &self.line_starts, node.end_position().row, node.end_byte())
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}
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fn top_row(&self) -> u32 {
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self.stack.last().map(|s| s.row).unwrap_or(0)
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}
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/// isInsideClassLikeNode — stack TOP only, file doesn't count.
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fn inside_class_like(&self) -> bool {
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self.stack
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.last()
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.map(|s| matches!(s.kind, "class" | "struct" | "union" | "interface" | "trait" | "enum" | "module"))
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.unwrap_or(false)
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}
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fn push_ref_at(&mut self, from_row: u32, name: &str, kind_code: u8, node: Node) {
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let name_ref = self.arena.put(name);
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self.tables.push_ref(&RefRow {
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from_idx: from_row,
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kind: kind_code,
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line: self.line_of(node),
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column: self.col_of(node),
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reference_name: name_ref,
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candidates: NONE_STR,
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from_id_str: NONE_STR,
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});
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if kind_code == edge_kind_index("imports").unwrap() {
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if util::simple_name().is_match(name) {
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self.imported_names.insert(name.to_string());
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} else if let Some(c) = util::qualified_import().captures(name) {
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// `::`-separated rust paths match NEITHER regex (separators are
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// `.`/`\`), so multi-segment use-imports contribute nothing to
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// the fn-ref gate — the rust gate is effectively same-file-only.
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self.imported_names.insert(c[1].to_string());
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}
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}
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}
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fn create_node(&mut self, kind: &'static str, name: &str, node: Node<'t>, extra: Extra) -> Option<u32> {
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if name.is_empty() {
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return None;
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}
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let start_line = self.line_of(node);
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let id = ids::node_id(self.file_path, kind, name, start_line);
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let end_line = node.end_position().row as u32 + 1;
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let qualified = extra.qualified_name.unwrap_or_else(|| {
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let mut parts: Vec<&str> = Vec::new();
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for s in &self.stack {
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if s.kind != "file" {
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parts.push(&s.name);
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}
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}
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let mut qn = parts.join("::");
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if !qn.is_empty() {
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qn.push_str("::");
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}
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qn.push_str(name);
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qn
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});
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let mut flags = BoolFlags::default();
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if let Some(v) = extra.is_exported {
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flags.set(FLAG_IS_EXPORTED, v);
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}
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if let Some(v) = extra.is_async {
|
|
flags.set(FLAG_IS_ASYNC, 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 ret_ref = opt_str(&mut self.arena, extra.return_type.as_deref());
|
|
let row = self.tables.push_node(&NodeRow {
|
|
kind: node_kind_index(kind).unwrap(),
|
|
visibility: extra.visibility.unwrap_or(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: ret_ref,
|
|
extra_json: NONE_STR,
|
|
});
|
|
self.nodes_meta.push(NodeMeta { kind, name: name.to_string() });
|
|
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: rust consts are kind `variable` — still targets.
|
|
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" | "union" | "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)
|
|
}
|
|
|
|
/// extractName — nameField `name`, else the identifier-like child scan.
|
|
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();
|
|
}
|
|
}
|
|
}
|
|
"<anonymous>".to_string()
|
|
}
|
|
|
|
/// rustExtractor.getSignature: raw params text + ` -> ` + raw return type.
|
|
fn signature_of(&self, node: Node) -> Option<String> {
|
|
let params = node.child_by_field_name("parameters")?;
|
|
let mut sig = self.text(params).to_string();
|
|
if let Some(rt) = node.child_by_field_name("return_type") {
|
|
sig.push_str(" -> ");
|
|
sig.push_str(self.text(rt));
|
|
}
|
|
Some(sig)
|
|
}
|
|
|
|
/// rustExtractor.getVisibility: direct `visibility_modifier` child whose
|
|
/// text contains `pub` → public, else private; none → private.
|
|
fn visibility_of(&self, node: Node) -> u8 {
|
|
for i in 0..node.child_count() {
|
|
if let Some(c) = node.child(i) {
|
|
if c.kind() == "visibility_modifier" {
|
|
return if self.text(c).contains("pub") { 1 } else { 2 };
|
|
}
|
|
}
|
|
}
|
|
2 // private — Rust defaults to private
|
|
}
|
|
|
|
/// extractRustReturnType (languages/rust.ts:14).
|
|
fn return_type_of(&self, node: Node) -> Option<String> {
|
|
let mut rt = node.child_by_field_name("return_type")?;
|
|
if rt.kind() == "reference_type" {
|
|
rt = (0..rt.named_child_count())
|
|
.filter_map(|i| rt.named_child(i))
|
|
.find(|c| matches!(c.kind(), "type_identifier" | "scoped_type_identifier" | "generic_type"))
|
|
.unwrap_or(rt);
|
|
}
|
|
if matches!(rt.kind(), "primitive_type" | "unit_type" | "tuple_type") {
|
|
return None;
|
|
}
|
|
let text = self.text(rt).trim();
|
|
let stripped = generic_angle_re().replace_all(text, "");
|
|
let last = stripped.rsplit("::").next().unwrap_or("").trim();
|
|
if last.is_empty() || !simple_ident_re().is_match(last) {
|
|
return None;
|
|
}
|
|
Some(if last == "Self" { "self".to_string() } else { last.to_string() })
|
|
}
|
|
|
|
/// rustImplTypeName (languages/rust.ts) — the implementing type's simple
|
|
/// name for an impl block, from the grammar's `type` field (#1588):
|
|
/// `impl<T> Tr for G<T>` / `impl<'a> Iterator for Parents<'a>` /
|
|
/// `impl Tr for &Foo` / `impl Tr for m::Foo` → `G` / `Parents` / `Foo` /
|
|
/// `Foo`. Shapes naming no single type (tuple, `dyn Tr`, pointer,
|
|
/// primitive, fn type…) → None. Mirrored byte-for-byte — change both.
|
|
fn impl_type_name(&self, ty: Option<Node>) -> Option<String> {
|
|
let ty = ty?;
|
|
match ty.kind() {
|
|
"type_identifier" | "identifier" => Some(self.text(ty).to_string()),
|
|
"generic_type" => self.impl_type_name(ty.child_by_field_name("type")),
|
|
"scoped_type_identifier" | "scoped_identifier" => {
|
|
self.impl_type_name(ty.child_by_field_name("name"))
|
|
}
|
|
"reference_type" => self.impl_type_name(ty.child_by_field_name("type")),
|
|
_ => None,
|
|
}
|
|
}
|
|
|
|
/// rustExtractor.getReceiverType: parent-walk to the nearest impl_item and
|
|
/// read its `type` field (impl_type_name). The pre-#1588 rule took the
|
|
/// LAST direct type_identifier child, which for `impl Trait for Generic<T>`
|
|
/// was the TRAIT — so every parameterized impl's methods were qualified by
|
|
/// the trait.
|
|
fn receiver_type_of(&self, node: Node) -> Option<String> {
|
|
let mut parent = node.parent();
|
|
while let Some(p) = parent {
|
|
if p.kind() == "impl_item" {
|
|
return self.impl_type_name(p.child_by_field_name("type"));
|
|
}
|
|
parent = p.parent();
|
|
}
|
|
None
|
|
}
|
|
|
|
// --- visitNode ------------------------------------------------------------
|
|
|
|
fn visit_node(&mut self, node: Node<'t>) {
|
|
stack_guard!();
|
|
let kind = node.kind();
|
|
let mut skip_children = false;
|
|
|
|
self.maybe_capture_fn_refs(node);
|
|
|
|
if matches!(kind, "function_item" | "function_signature_item") {
|
|
self.extract_fn_or_method(node);
|
|
skip_children = true;
|
|
} else if kind == "trait_item" {
|
|
self.extract_interface(node);
|
|
skip_children = true;
|
|
} else if kind == "struct_item" {
|
|
self.extract_aggregate(node, "struct");
|
|
skip_children = true;
|
|
} else if kind == "union_item" {
|
|
self.extract_aggregate(node, "union");
|
|
skip_children = true;
|
|
} else if kind == "enum_item" {
|
|
self.extract_enum(node);
|
|
skip_children = true;
|
|
} else if kind == "type_item" {
|
|
self.extract_type_alias(node);
|
|
// extractTypeAlias returns false for rust (plain alias) — children
|
|
// are visited (nothing in them has a branch).
|
|
} else if matches!(kind, "let_declaration" | "const_item" | "static_item")
|
|
&& !self.inside_class_like()
|
|
{
|
|
// Inside a class-like scope the gate fails and the else-ladder
|
|
// falls through with children VISITED — a trait const's value
|
|
// expression emits calls refs from the trait node.
|
|
self.extract_variable(node);
|
|
self.scan_fn_ref_subtree(node, 0);
|
|
skip_children = true;
|
|
} else if kind == "use_declaration" {
|
|
self.extract_import(node);
|
|
// importTypes branch never sets skipChildren.
|
|
} else if kind == "call_expression" {
|
|
self.extract_call(node);
|
|
} else if kind == "struct_expression" {
|
|
self.extract_instantiation(node);
|
|
} else if kind == "impl_item" {
|
|
// Emits the implements back-reference; skipChildren stays false so
|
|
// the declaration_list is visited at FILE scope (impl pushes
|
|
// nothing on the stack).
|
|
self.extract_rust_impl_item(node);
|
|
}
|
|
|
|
if !skip_children {
|
|
for i in 0..node.named_child_count() {
|
|
if let Some(c) = node.named_child(i) {
|
|
self.visit_node(c);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
// --- extractors --------------------------------------------------------------
|
|
|
|
/// extractFunction/extractMethod, decision resolved once: method iff a
|
|
/// receiver is found (fn inside an impl — including a NESTED fn inside an
|
|
/// impl method's body, whose parent walk passes through the outer fn) or
|
|
/// the stack top is class-like (trait members).
|
|
fn extract_fn_or_method(&mut self, node: Node<'t>) {
|
|
stack_guard!();
|
|
let receiver = self.receiver_type_of(node);
|
|
let as_method = receiver.is_some() || self.inside_class_like();
|
|
|
|
let name = self.extract_name(node);
|
|
if name == "<anonymous>" {
|
|
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),
|
|
visibility: Some(self.visibility_of(node)),
|
|
// isAsync hook exists but never finds a direct `async` child (it
|
|
// nests in function_modifiers) — present-false on every node.
|
|
is_async: Some(false),
|
|
return_type: self.return_type_of(node),
|
|
qualified_name: receiver.as_ref().map(|r| format!("{r}::{name}")),
|
|
..Extra::default() // isExported hook absent → flag not set
|
|
};
|
|
let kind: &'static str = if as_method { "method" } else { "function" };
|
|
let Some(row) = self.create_node(kind, &name, node, extra) else { return };
|
|
|
|
// Contains edge from the owner: receiver present AND not class-like —
|
|
// FIRST earlier-in-file struct/class/enum/trait of the receiver's name.
|
|
if as_method && !self.inside_class_like() {
|
|
if let Some(receiver) = &receiver {
|
|
let owner_row = self
|
|
.nodes_meta
|
|
.iter()
|
|
.position(|m| {
|
|
m.name == *receiver
|
|
&& matches!(m.kind, "struct" | "union" | "class" | "enum" | "trait")
|
|
})
|
|
.map(|i| i as u32);
|
|
if let Some(owner_row) = owner_row {
|
|
self.tables.push_edge(&EdgeRow {
|
|
source_idx: owner_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,
|
|
});
|
|
}
|
|
}
|
|
}
|
|
|
|
self.extract_type_annotations(node, row);
|
|
// extractDecoratorsFor: rust attribute_items are siblings, not
|
|
// decorator/annotation/attribute node types — complete no-op.
|
|
self.stack.push(Scope { row, kind, name });
|
|
if let Some(body) = node.child_by_field_name("body") {
|
|
self.visit_function_body(body);
|
|
}
|
|
self.stack.pop();
|
|
}
|
|
|
|
/// extractInterface — kind `trait` (interfaceKind), inheritance from
|
|
/// trait_bounds, body children visited with the trait pushed.
|
|
fn extract_interface(&mut self, node: Node<'t>) {
|
|
stack_guard!();
|
|
let name = self.extract_name(node);
|
|
let extra = Extra {
|
|
docstring: preceding_docstring(node, self.src),
|
|
..Extra::default() // no visibility/isExported on the interface path
|
|
};
|
|
let Some(row) = self.create_node("trait", &name, node, extra) else { return };
|
|
self.extract_inheritance(node, row);
|
|
|
|
self.stack.push(Scope { row, kind: "trait", 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();
|
|
}
|
|
|
|
/// Extract a Rust struct or union with a body; unit structs remain skipped.
|
|
fn extract_aggregate(&mut self, node: Node<'t>, kind: &'static str) {
|
|
stack_guard!();
|
|
let Some(body) = node.child_by_field_name("body") else { return };
|
|
let name = self.extract_name(node);
|
|
let extra = Extra {
|
|
docstring: preceding_docstring(node, self.src),
|
|
visibility: Some(self.visibility_of(node)),
|
|
..Extra::default()
|
|
};
|
|
let Some(row) = self.create_node(kind, &name, node, extra) else { return };
|
|
self.extract_inheritance(node, row);
|
|
|
|
self.stack.push(Scope { row, kind, name });
|
|
for i in 0..body.named_child_count() {
|
|
if let Some(c) = body.named_child(i) {
|
|
self.visit_node(c);
|
|
}
|
|
}
|
|
self.stack.pop();
|
|
}
|
|
|
|
/// extractEnum — body required; enum_variant children → enum_member nodes
|
|
/// (name field only, payloads never walked); other children re-dispatched.
|
|
fn extract_enum(&mut self, node: Node<'t>) {
|
|
stack_guard!();
|
|
let Some(body) = node.child_by_field_name("body") else { return };
|
|
let name = self.extract_name(node);
|
|
let extra = Extra {
|
|
docstring: preceding_docstring(node, self.src),
|
|
visibility: Some(self.visibility_of(node)),
|
|
..Extra::default()
|
|
};
|
|
let Some(row) = self.create_node("enum", &name, node, extra) else { return };
|
|
self.extract_inheritance(node, row);
|
|
|
|
self.stack.push(Scope { row, kind: "enum", name });
|
|
for i in 0..body.named_child_count() {
|
|
let Some(c) = body.named_child(i) else { continue };
|
|
if c.kind() == "enum_variant" {
|
|
if let Some(name_node) = c.child_by_field_name("name") {
|
|
let vname = self.text(name_node).to_string();
|
|
self.create_node("enum_member", &vname, c, Extra::default());
|
|
}
|
|
} else {
|
|
self.visit_node(c);
|
|
}
|
|
}
|
|
self.stack.pop();
|
|
}
|
|
|
|
/// extractTypeAlias — plain `type_alias` node. QUIRK: the alias-value ref
|
|
/// walk reads a `value` field; rust type_item's field is `type` → no ref
|
|
/// to the aliased type. Returns children-visited (false) like the TS.
|
|
fn extract_type_alias(&mut self, node: Node<'t>) {
|
|
let name = self.extract_name(node);
|
|
if name == "<anonymous>" {
|
|
return;
|
|
}
|
|
let extra = Extra {
|
|
docstring: preceding_docstring(node, self.src),
|
|
..Extra::default()
|
|
};
|
|
self.create_node("type_alias", &name, node, extra);
|
|
}
|
|
|
|
/// extractVariable's generic fallback: kind is ALWAYS `variable` (no
|
|
/// isConst hook), every direct `identifier` child mints a node positioned
|
|
/// at the CHILD, docstring shared, isExported present-false, no signature,
|
|
/// and the initializer value is never body-walked.
|
|
fn extract_variable(&mut self, node: Node<'t>) {
|
|
let docstring = preceding_docstring(node, self.src);
|
|
for i in 0..node.named_child_count() {
|
|
let Some(child) = node.named_child(i) else { continue };
|
|
if child.kind() != "identifier" {
|
|
continue;
|
|
}
|
|
let name = self.text(child).to_string();
|
|
if !name.is_empty() {
|
|
self.create_node(
|
|
"variable",
|
|
&name,
|
|
child,
|
|
Extra {
|
|
docstring: docstring.clone(),
|
|
is_exported: Some(false),
|
|
..Extra::default()
|
|
},
|
|
);
|
|
}
|
|
}
|
|
}
|
|
|
|
/// extractImport via the rust hook: import node named by the ROOT module +
|
|
/// one generic root `imports` ref + per-binding FULL-path refs.
|
|
/// `use x::*;` (use_wildcard) → hook returns null → nothing at all.
|
|
fn extract_import(&mut self, node: Node<'t>) {
|
|
let use_arg = (0..node.named_child_count())
|
|
.filter_map(|i| node.named_child(i))
|
|
.find(|c| matches!(c.kind(), "scoped_use_list" | "scoped_identifier" | "use_list" | "identifier"));
|
|
let Some(use_arg) = use_arg else { return };
|
|
|
|
let module_name = self.root_module(use_arg);
|
|
let signature = self.text(node).trim().to_string();
|
|
self.create_node(
|
|
"import",
|
|
&module_name.clone(),
|
|
node,
|
|
Extra { signature: Some(signature), ..Extra::default() },
|
|
);
|
|
let parent = self.top_row();
|
|
let imports_kind = edge_kind_index("imports").unwrap();
|
|
if !module_name.is_empty() {
|
|
self.push_ref_at(parent, &module_name, imports_kind, node);
|
|
}
|
|
self.emit_use_binding_refs(node, parent);
|
|
}
|
|
|
|
/// getRootModule (languages/rust.ts:124).
|
|
fn root_module(&self, n: Node) -> String {
|
|
stack_guard!();
|
|
let Some(first) = n.named_child(0) else {
|
|
return self.text(n).to_string();
|
|
};
|
|
match first.kind() {
|
|
"identifier" | "crate" | "super" | "self" => self.text(first).to_string(),
|
|
"scoped_identifier" => self.root_module(first),
|
|
_ => self.text(first).to_string(),
|
|
}
|
|
}
|
|
|
|
/// emitRustUseBindingRefs (tree-sitter.ts:3451) — one FULL-path `imports`
|
|
/// ref per binding; `Path as Alias` links the source path; leaves that are
|
|
/// only `self`/`super`/`crate`/`*` are skipped.
|
|
fn emit_use_binding_refs(&mut self, node: Node<'t>, from_row: u32) {
|
|
let mut paths: Vec<(String, Node)> = Vec::new();
|
|
fn join(prefix: &str, seg: &str) -> String {
|
|
if prefix.is_empty() { seg.to_string() } else { format!("{prefix}::{seg}") }
|
|
}
|
|
fn collect<'t>(w: &Walker<'t>, n: Node<'t>, prefix: &str, paths: &mut Vec<(String, Node<'t>)>) {
|
|
stack_guard!();
|
|
match n.kind() {
|
|
"identifier" => paths.push((join(prefix, w.text(n)), n)),
|
|
"scoped_identifier" => {
|
|
let full = w.text(n).trim();
|
|
paths.push((
|
|
if prefix.is_empty() { full.to_string() } else { format!("{prefix}::{full}") },
|
|
n,
|
|
));
|
|
}
|
|
"scoped_use_list" => {
|
|
let seg = n
|
|
.child_by_field_name("path")
|
|
.map(|p| w.text(p).trim().to_string())
|
|
.unwrap_or_default();
|
|
let new_prefix = if seg.is_empty() { prefix.to_string() } else { join(prefix, &seg) };
|
|
let list = n.child_by_field_name("list").or_else(|| {
|
|
(0..n.named_child_count())
|
|
.filter_map(|i| n.named_child(i))
|
|
.find(|c| c.kind() == "use_list")
|
|
});
|
|
if let Some(list) = list {
|
|
collect(w, list, &new_prefix, paths);
|
|
}
|
|
}
|
|
"use_list" => {
|
|
for i in 0..n.named_child_count() {
|
|
if let Some(c) = n.named_child(i) {
|
|
collect(w, c, prefix, paths);
|
|
}
|
|
}
|
|
}
|
|
"use_as_clause" => {
|
|
let p = n.child_by_field_name("path").or_else(|| n.named_child(0));
|
|
if let Some(p) = p {
|
|
collect(w, p, prefix, paths);
|
|
}
|
|
}
|
|
_ => {} // visibility_modifier, use_wildcard, bare crate/self/super
|
|
}
|
|
}
|
|
for i in 0..node.named_child_count() {
|
|
if let Some(c) = node.named_child(i) {
|
|
collect(self, c, "", &mut paths);
|
|
}
|
|
}
|
|
let imports_kind = edge_kind_index("imports").unwrap();
|
|
for (text, n) in paths {
|
|
let leaf = text.rsplit("::").next().unwrap_or("");
|
|
if leaf.is_empty() || matches!(leaf, "self" | "super" | "crate" | "*") {
|
|
continue;
|
|
}
|
|
self.push_ref_at(from_row, &text, imports_kind, n);
|
|
}
|
|
}
|
|
|
|
/// extractCall — the rust paths of the generic else-branch (4312+).
|
|
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() == "field_expression" {
|
|
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; // emit NOTHING (#1230)
|
|
}
|
|
}
|
|
if let Some(r) = receiver {
|
|
match r.kind() {
|
|
// rust `self` is node kind `self`, NOT `identifier` —
|
|
// it dodges this branch and falls to the bare-name
|
|
// fallthrough (same net effect as SKIP_RECEIVERS).
|
|
"identifier" | "simple_identifier" | "field_identifier" => {
|
|
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();
|
|
}
|
|
}
|
|
"call_expression" => {
|
|
// Chained-call re-encode: ONLY an associated-
|
|
// function chain (`Foo::new().bar()`, inner
|
|
// callee a scoped_identifier). Instance chains
|
|
// keep the bare method name.
|
|
let inner_fn = r.child_by_field_name("function");
|
|
let reencode =
|
|
inner_fn.map(|f| f.kind() == "scoped_identifier").unwrap_or(false);
|
|
if reencode {
|
|
let inner: String = self
|
|
.text(inner_fn.unwrap())
|
|
.replace("->", ".")
|
|
.chars()
|
|
.filter(|c| !c.is_whitespace())
|
|
.collect();
|
|
callee_name = format!("{inner}().{method_name}");
|
|
} else {
|
|
callee_name = method_name.to_string();
|
|
}
|
|
}
|
|
"field_expression" => {
|
|
// `self.<field>.<method>()` — a call through a
|
|
// field of the enclosing type (#1585): keep the
|
|
// `self.` prefix so the resolver can type the
|
|
// field from the owner struct's declaration
|
|
// (or leave it unresolved). Any other
|
|
// field_expression receiver — a deeper chain,
|
|
// a non-self base — keeps the bare name.
|
|
let base = r.child_by_field_name("value");
|
|
let field = r.child_by_field_name("field");
|
|
match (base, field) {
|
|
(Some(b), Some(f))
|
|
if b.kind() == "self" && f.kind() == "field_identifier" =>
|
|
{
|
|
let field_name = self.text(f);
|
|
callee_name = format!("self.{field_name}.{method_name}");
|
|
}
|
|
_ => callee_name = method_name.to_string(),
|
|
}
|
|
}
|
|
_ => {
|
|
// parenthesized, await_expression, `self` —
|
|
// bare method name.
|
|
callee_name = method_name.to_string();
|
|
}
|
|
}
|
|
} else {
|
|
callee_name = method_name.to_string();
|
|
}
|
|
}
|
|
} else if matches!(func.kind(), "scoped_identifier" | "scoped_call_expression") {
|
|
callee_name = self.text(func).to_string();
|
|
} else {
|
|
// identifier; generic_function keeps the raw turbofish text
|
|
// (`helper::<T>` — unresolvable downstream, preserved).
|
|
callee_name = self.text(func).to_string();
|
|
}
|
|
}
|
|
|
|
if !callee_name.is_empty() {
|
|
// Parenthesized-callee normalization — `(f)(x)` → `f`.
|
|
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);
|
|
}
|
|
}
|
|
|
|
/// extractInstantiation — struct_expression via the GENERIC path: strip
|
|
/// from the first `<`, keep the trailing `::`/`.` segment (JS slice
|
|
/// semantics: slice(lastDot+1) after a `::` leaves one `:`, then ONE
|
|
/// leading `[:.]` is stripped).
|
|
fn extract_instantiation(&mut self, node: Node<'t>) {
|
|
if self.stack.is_empty() {
|
|
return;
|
|
}
|
|
let ctor = node
|
|
.child_by_field_name("constructor")
|
|
.or_else(|| node.child_by_field_name("type"))
|
|
.or_else(|| node.child_by_field_name("name"))
|
|
.or_else(|| node.named_child(0));
|
|
let Some(ctor) = ctor else { return };
|
|
|
|
let mut class_name = self.text(ctor).to_string();
|
|
if let Some(lt) = class_name.find('<') {
|
|
if lt > 0 {
|
|
class_name.truncate(lt);
|
|
}
|
|
}
|
|
let last_dot = class_name.rfind('.').map(|i| i as i64).unwrap_or(-1);
|
|
let last_colon = class_name.rfind("::").map(|i| i as i64).unwrap_or(-1);
|
|
let last = last_dot.max(last_colon);
|
|
if last >= 0 {
|
|
class_name = class_name[(last + 1) as usize..].to_string();
|
|
if let Some(rest) = class_name.strip_prefix(&[':', '.'][..]) {
|
|
class_name = rest.to_string();
|
|
}
|
|
}
|
|
let class_name = class_name.trim().to_string();
|
|
|
|
if !class_name.is_empty() {
|
|
let from = self.top_row();
|
|
self.push_ref_at(from, &class_name, edge_kind_index("instantiates").unwrap(), node);
|
|
}
|
|
}
|
|
|
|
/// extractRustRouteMacro — body-walker-only; bare `routes`/`catchers`
|
|
/// identifiers only (`rocket::routes![…]` is skipped); identifier runs in
|
|
/// the token tree join with `::`, flushed on `,` and at end.
|
|
fn extract_rust_route_macro(&mut self, node: Node<'t>) {
|
|
let Some(macro_name) = node.named_child(0) else { return };
|
|
let name = self.text(macro_name);
|
|
if name != "routes" && name != "catchers" {
|
|
return;
|
|
}
|
|
let token_tree = (0..node.named_child_count())
|
|
.filter_map(|i| node.named_child(i))
|
|
.find(|c| c.kind() == "token_tree");
|
|
let Some(token_tree) = token_tree else { return };
|
|
if self.stack.is_empty() {
|
|
return;
|
|
}
|
|
let from = self.top_row();
|
|
let refs_kind = edge_kind_index("references").unwrap();
|
|
|
|
let mut parts: Vec<&str> = Vec::new();
|
|
let mut line = 0u32;
|
|
let mut column_byte = 0usize;
|
|
let mut row = 0usize;
|
|
macro_rules! flush {
|
|
() => {
|
|
if !parts.is_empty() {
|
|
let joined = parts.join("::");
|
|
let column = util::col16(self.src, &self.line_starts, row, column_byte);
|
|
let name_ref = self.arena.put(&joined);
|
|
self.tables.push_ref(&RefRow {
|
|
from_idx: from,
|
|
kind: refs_kind,
|
|
line,
|
|
column,
|
|
reference_name: name_ref,
|
|
candidates: NONE_STR,
|
|
from_id_str: NONE_STR,
|
|
});
|
|
parts.clear();
|
|
}
|
|
};
|
|
}
|
|
for i in 0..token_tree.child_count() {
|
|
let Some(t) = token_tree.child(i) else { continue };
|
|
if t.kind() == "identifier" {
|
|
if parts.is_empty() {
|
|
line = t.start_position().row as u32 + 1;
|
|
column_byte = t.start_byte();
|
|
row = t.start_position().row;
|
|
}
|
|
parts.push(self.text(t));
|
|
} else if t.kind() == "," {
|
|
flush!();
|
|
}
|
|
}
|
|
flush!();
|
|
}
|
|
|
|
/// extractInheritance — the rust-reachable cases: trait_bounds
|
|
/// (supertraits; a scoped `fmt::Debug` bound matches NO case and is
|
|
/// dropped), the Go embedding check on field_declaration (inert in rust —
|
|
/// every field has a field_identifier), and the field_declaration_list
|
|
/// recursion that reaches it.
|
|
fn extract_inheritance(&mut self, node: Node<'t>, class_row: u32) {
|
|
stack_guard!();
|
|
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 };
|
|
match child.kind() {
|
|
"trait_bounds" => {
|
|
for j in 0..child.named_child_count() {
|
|
let Some(bound) = child.named_child(j) else { continue };
|
|
let type_node: Option<Node> = match bound.kind() {
|
|
"type_identifier" => Some(bound),
|
|
"generic_type" => (0..bound.named_child_count())
|
|
.filter_map(|k| bound.named_child(k))
|
|
.find(|c| c.kind() == "type_identifier"),
|
|
"higher_ranked_trait_bound" => {
|
|
let generic = (0..bound.named_child_count())
|
|
.filter_map(|k| bound.named_child(k))
|
|
.find(|c| c.kind() == "generic_type");
|
|
generic
|
|
.and_then(|g| {
|
|
(0..g.named_child_count())
|
|
.filter_map(|k| g.named_child(k))
|
|
.find(|c| c.kind() == "type_identifier")
|
|
})
|
|
.or_else(|| {
|
|
(0..bound.named_child_count())
|
|
.filter_map(|k| bound.named_child(k))
|
|
.find(|c| c.kind() == "type_identifier")
|
|
})
|
|
}
|
|
_ => None, // scoped_type_identifier: dropped (quirk)
|
|
};
|
|
if let Some(tn) = type_node {
|
|
let name = self.text(tn).to_string();
|
|
self.push_ref_at(class_row, &name, extends_kind, tn);
|
|
}
|
|
}
|
|
}
|
|
"field_declaration" => {
|
|
let has_field_identifier = (0..child.named_child_count())
|
|
.filter_map(|j| child.named_child(j))
|
|
.any(|c| c.kind() == "field_identifier");
|
|
if !has_field_identifier {
|
|
let type_id = (0..child.named_child_count())
|
|
.filter_map(|j| child.named_child(j))
|
|
.find(|c| c.kind() == "type_identifier");
|
|
if let Some(type_id) = type_id {
|
|
let name = self.text(type_id).to_string();
|
|
self.push_ref_at(class_row, &name, extends_kind, type_id);
|
|
}
|
|
}
|
|
}
|
|
"field_declaration_list" | "class_heritage" => {
|
|
self.extract_inheritance(child, class_row);
|
|
}
|
|
_ => {}
|
|
}
|
|
}
|
|
}
|
|
|
|
/// extractRustImplItem — `impl Trait for Type` back-reference from the
|
|
/// grammar's `trait` / `type` fields (#1588; an inherent impl has no
|
|
/// `trait` field and emits nothing). Target = FIRST earlier node of kind
|
|
/// struct/union/enum/class (never trait) named by impl_type_name; ref FROM
|
|
/// the type's node, named by the trait's full text (scoped path / generic
|
|
/// args kept), at the trait node's position.
|
|
fn extract_rust_impl_item(&mut self, node: Node<'t>) {
|
|
let Some(trait_node) = node.child_by_field_name("trait") else {
|
|
return;
|
|
};
|
|
let trait_name = self.text(trait_node).to_string();
|
|
let Some(type_name) = self.impl_type_name(node.child_by_field_name("type")) else {
|
|
return;
|
|
};
|
|
|
|
let target_row = self
|
|
.nodes_meta
|
|
.iter()
|
|
.position(|m| m.name == type_name && matches!(m.kind, "struct" | "union" | "enum" | "class"))
|
|
.map(|i| i as u32);
|
|
if let Some(target_row) = target_row {
|
|
self.push_ref_at(target_row, &trait_name, edge_kind_index("implements").unwrap(), trait_node);
|
|
}
|
|
}
|
|
|
|
/// extractTypeAnnotations — parameters + return_type subtrees, one
|
|
/// `references` ref per type_identifier leaf not in BUILTIN_TYPES. The
|
|
/// trailing `type_annotation` child lookup is included for fidelity (the
|
|
/// rust grammar has no such node — always a no-op).
|
|
fn extract_type_annotations(&mut self, node: Node<'t>, from_row: u32) {
|
|
if let Some(params) = node.child_by_field_name("parameters") {
|
|
self.extract_type_refs_from_subtree(params, from_row);
|
|
}
|
|
if let Some(ret) = node.child_by_field_name("return_type") {
|
|
self.extract_type_refs_from_subtree(ret, from_row);
|
|
}
|
|
let type_annotation = (0..node.named_child_count())
|
|
.filter_map(|i| node.named_child(i))
|
|
.find(|c| c.kind() == "type_annotation");
|
|
if let Some(ta) = type_annotation {
|
|
self.extract_type_refs_from_subtree(ta, from_row);
|
|
}
|
|
}
|
|
|
|
fn extract_type_refs_from_subtree(&mut self, node: Node<'t>, from_row: u32) {
|
|
stack_guard!();
|
|
if node.kind() == "type_identifier" {
|
|
let type_name = self.text(node).to_string();
|
|
if !type_name.is_empty() && !is_builtin_type(&type_name) {
|
|
self.push_ref_at(from_row, &type_name, edge_kind_index("references").unwrap(), node);
|
|
}
|
|
return;
|
|
}
|
|
for i in 0..node.named_child_count() {
|
|
if let Some(c) = node.named_child(i) {
|
|
self.extract_type_refs_from_subtree(c, from_row);
|
|
}
|
|
}
|
|
}
|
|
|
|
// --- visitFunctionBody -----------------------------------------------------
|
|
|
|
fn visit_function_body(&mut self, body: Node<'t>) {
|
|
stack_guard!();
|
|
self.visit_for_calls_and_structure(body);
|
|
}
|
|
|
|
fn visit_for_calls_and_structure(&mut self, node: Node<'t>) {
|
|
stack_guard!();
|
|
let kind = node.kind();
|
|
self.maybe_capture_fn_refs(node);
|
|
|
|
// Rocket route macros: handler paths live in a raw token tree.
|
|
if kind == "macro_invocation" {
|
|
self.extract_rust_route_macro(node);
|
|
}
|
|
|
|
if kind == "call_expression" {
|
|
self.extract_call(node);
|
|
} else if kind == "struct_expression" {
|
|
self.extract_instantiation(node);
|
|
}
|
|
|
|
// Nested NAMED fns become their own nodes (a nested fn inside an impl
|
|
// method walks up to the impl and indexes as a METHOD).
|
|
if matches!(kind, "function_item" | "function_signature_item") {
|
|
let name = self.extract_name(node);
|
|
if name != "<anonymous>" {
|
|
self.extract_fn_or_method(node);
|
|
return;
|
|
}
|
|
}
|
|
|
|
// Structural nodes inside bodies.
|
|
if kind == "struct_item" {
|
|
self.extract_aggregate(node, "struct");
|
|
return;
|
|
}
|
|
if kind == "union_item" {
|
|
self.extract_aggregate(node, "union");
|
|
return;
|
|
}
|
|
if kind == "enum_item" {
|
|
self.extract_enum(node);
|
|
return;
|
|
}
|
|
if kind == "trait_item" {
|
|
self.extract_interface(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);
|
|
}
|
|
}
|
|
}
|
|
|
|
// --- fn refs (RUST_SPEC) ----------------------------------------------------
|
|
|
|
/// maybeCaptureFnRefs with RUST_SPEC's dispatch: arguments→args,
|
|
/// assignment_expression→rhs(right), field_initializer→value(value),
|
|
/// array_expression→list, static_item/let_declaration→varinit(value).
|
|
/// No layers/unwrap/special — only bare identifiers qualify (`&handler`
|
|
/// captures nothing). QUIRK: const_item is NOT in the dispatch.
|
|
fn maybe_capture_fn_refs(&mut self, node: Node<'t>) {
|
|
enum Mode {
|
|
Args,
|
|
Rhs,
|
|
Value,
|
|
List,
|
|
Varinit,
|
|
}
|
|
let mode = match node.kind() {
|
|
"arguments" => Mode::Args,
|
|
"assignment_expression" => Mode::Rhs,
|
|
"field_initializer" => Mode::Value,
|
|
"array_expression" => Mode::List,
|
|
"static_item" | "let_declaration" => Mode::Varinit,
|
|
_ => return,
|
|
};
|
|
if self.stack.is_empty() {
|
|
return;
|
|
}
|
|
let from = self.top_row();
|
|
|
|
let mut values: Vec<Node> = Vec::new();
|
|
match mode {
|
|
Mode::Args | Mode::List => {
|
|
for i in 0..node.named_child_count() {
|
|
if let Some(c) = node.named_child(i) {
|
|
values.push(c);
|
|
}
|
|
}
|
|
}
|
|
Mode::Rhs => {
|
|
if let Some(rhs) = node.child_by_field_name("right") {
|
|
// Param-storage skip: `o.cb = cb`.
|
|
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);
|
|
}
|
|
}
|
|
}
|
|
Mode::Value => {
|
|
let v = node.child_by_field_name("value").or_else(|| {
|
|
if node.named_child_count() > 0 {
|
|
node.named_child(node.named_child_count() - 1)
|
|
} else {
|
|
None
|
|
}
|
|
});
|
|
if let Some(v) = v {
|
|
values.push(v);
|
|
}
|
|
}
|
|
Mode::Varinit => {
|
|
// Destructuring skip: a tuple/struct pattern LHS extracts data,
|
|
// never a function alias (static_item's name is an identifier,
|
|
// let_declaration's `pattern` field can be a pattern).
|
|
let name_node = node
|
|
.child_by_field_name("name")
|
|
.or_else(|| node.child_by_field_name("pattern"));
|
|
if let Some(nn) = name_node {
|
|
if matches!(
|
|
nn.kind(),
|
|
"object_pattern" | "array_pattern" | "tuple_pattern" | "struct_pattern"
|
|
) {
|
|
return;
|
|
}
|
|
}
|
|
if let Some(v) = node.child_by_field_name("value") {
|
|
values.push(v);
|
|
}
|
|
}
|
|
}
|
|
|
|
for v in values {
|
|
// normalizeValue: idTypes = {identifier} only, no layers/unwrap.
|
|
if v.kind() == "identifier" {
|
|
let name = self.text(v).to_string();
|
|
if name.is_empty() || is_stoplisted(&name) {
|
|
continue;
|
|
}
|
|
let p = v.start_position();
|
|
self.fn_ref_cands.push(Cand {
|
|
from,
|
|
name,
|
|
line: p.row as u32 + 1,
|
|
column_byte: v.start_byte(),
|
|
row: p.row,
|
|
});
|
|
}
|
|
}
|
|
}
|
|
|
|
fn scan_fn_ref_subtree(&mut self, node: Node<'t>, depth: u32) {
|
|
stack_guard!();
|
|
if depth > 12 {
|
|
return;
|
|
}
|
|
if depth > 0
|
|
&& matches!(
|
|
node.kind(),
|
|
"function_item" | "function_signature_item" | "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 — rust declarator shapes: const_item/static_item (name
|
|
// field) and let_declaration (the shadow source: `pattern` field; a
|
|
// tuple pattern bumps every named child).
|
|
let mut decl_counts: HashMap<&str, u32> = HashMap::new();
|
|
let mut bump = |decl_counts: &mut HashMap<&'t str, u32>, name_node: Option<Node<'t>>, src: &'t str, targets: &HashMap<String, u32>| {
|
|
if let Some(n) = name_node {
|
|
if matches!(n.kind(), "identifier" | "simple_identifier") {
|
|
let nm = &src[n.byte_range()];
|
|
if targets.contains_key(nm) {
|
|
*decl_counts.entry(nm).or_insert(0) += 1;
|
|
}
|
|
}
|
|
}
|
|
};
|
|
let mut dstack: Vec<Node> = vec![root];
|
|
let mut dvisited = 0usize;
|
|
while let Some(n) = dstack.pop() {
|
|
if dvisited >= MAX_VALUE_REF_NODES {
|
|
break;
|
|
}
|
|
dvisited += 1;
|
|
match n.kind() {
|
|
"const_item" | "static_item" => {
|
|
bump(&mut decl_counts, n.child_by_field_name("name"), self.src, &targets)
|
|
}
|
|
"let_declaration" => {
|
|
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" {
|
|
bump(&mut decl_counts, Some(left), self.src, &targets);
|
|
} else {
|
|
for i in 0..left.named_child_count() {
|
|
bump(&mut decl_counts, left.named_child(i), self.src, &targets);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
_ => {}
|
|
}
|
|
for i in 0..n.named_child_count() {
|
|
if let Some(c) = n.named_child(i) {
|
|
dstack.push(c);
|
|
}
|
|
}
|
|
}
|
|
let shadowed: Vec<String> = 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<Node> = 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);
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
fn is_stoplisted(name: &str) -> bool {
|
|
matches!(
|
|
name,
|
|
"this" | "self" | "super" | "null" | "nil" | "true" | "false" | "undefined" | "new"
|
|
| "NULL" | "nullptr" | "None"
|
|
)
|
|
}
|
|
|
|
/// LITERAL_RECEIVER_TYPES (shared table).
|
|
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"
|
|
)
|
|
}
|
|
|
|
/// BUILTIN_TYPES (shared table — port the WHOLE set: a rust `String`
|
|
/// type_identifier IS suppressed via the Scala row).
|
|
fn is_builtin_type(name: &str) -> bool {
|
|
matches!(
|
|
name,
|
|
"string" | "number" | "boolean" | "void" | "null" | "undefined" | "never" | "any"
|
|
| "unknown" | "object" | "symbol" | "bigint" | "true" | "false"
|
|
| "str" | "bool" | "i8" | "i16" | "i32" | "i64" | "i128" | "isize"
|
|
| "u8" | "u16" | "u32" | "u64" | "u128" | "usize" | "f32" | "f64" | "char"
|
|
| "int" | "long" | "short" | "byte" | "float" | "double"
|
|
| "int8" | "int16" | "int32" | "int64" | "uint8" | "uint16" | "uint32" | "uint64"
|
|
| "float32" | "float64" | "complex64" | "complex128" | "rune" | "error"
|
|
| "Int" | "Long" | "Short" | "Byte" | "Float" | "Double" | "Boolean" | "Char"
|
|
| "Unit" | "String" | "Any" | "AnyRef" | "AnyVal" | "Nothing" | "Null"
|
|
)
|
|
}
|
|
|
|
fn opt_str(arena: &mut Arena, s: Option<&str>) -> StrRef {
|
|
match s {
|
|
Some(s) => arena.put(s),
|
|
None => NONE_STR,
|
|
}
|
|
}
|