mirror of
https://github.com/elicpeter/nyx.git
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* refactor: Update comments for clarity and add expectations.json files for performance metrics * feat: Implement FP guard for JS/TS local-collection receivers to suppress missing ownership checks * feat: Enhance Rust parameter handling to classify local collections and prevent false ownership checks * refactor: Simplify code formatting for better readability in multiple files * refactor: Improve UTF-8 sequence length handling and enhance clarity in loop iteration * feat: Update Java and Python patterns to include new security rules * refactor: Improve comment clarity and consistency across multiple Rust files * refactor: Simplify code formatting for improved readability in integration tests and module files * refactor: Improve comment formatting and enhance clarity in assertions across multiple files
614 lines
24 KiB
Rust
614 lines
24 KiB
Rust
//! Rust-specific module-path derivation and `use` declaration resolution.
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//!
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//! This module is entirely Rust-flavored helpers for the cross-file call graph.
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//! Other languages do not need it. The two pieces are:
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//!
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//! * [`derive_module_path`], given a Rust source file path and an optional
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//! crate root, produce its canonical crate-relative module path
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//! (`src/foo/bar.rs` → `"foo::bar"`, `src/lib.rs` → `""`).
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//!
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//! * [`parse_rust_use_map`], walk the top-level `use_declaration` nodes of a
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//! parsed tree and produce a [`RustUseMap`] mapping local aliases to fully
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//! qualified paths plus a list of wildcard imports.
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//!
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//! The output is consumed by call-graph resolution in `callgraph.rs` to
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//! disambiguate same-name functions defined in different Rust modules.
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//!
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//! ## Forms recognised by `parse_rust_use_map`
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//!
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//! * `use crate::auth::token::validate;` → `{"validate" → "crate::auth::token::validate"}`
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//! * `use crate::auth::token::{validate, verify};` → both mapped
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//! * `use crate::auth::token::validate as ok;` → `{"ok" → "crate::auth::token::validate"}`
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//! * `use crate::auth::token::*;` → recorded in `wildcards`
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//! * Nested groups like `use a::{b::c, d::e};` → each leaf mapped under its own prefix
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//!
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//! ## Deliberately not supported (yet)
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//!
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//! * Macro-expanded `use` statements
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//! * `pub use` re-exports across modules
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//! * `extern crate alias_name;`
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//! * Self-prefixed imports (`use self::sub::foo;`), treated as `self::sub::foo`
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//!
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//! These are flagged in the final pass-1 telemetry but do not block resolution.
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use std::collections::BTreeMap;
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use std::path::Path;
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use tree_sitter::{Node, Tree};
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/// Per-file Rust import surface produced once during pass 1.
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///
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/// `aliases` maps local identifiers to their fully qualified paths
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/// (`"validate"` → `"crate::auth::token::validate"`). `wildcards` records the
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/// fully qualified prefixes of every `use ::*` import in declaration order.
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#[derive(Debug, Default, Clone, PartialEq, Eq)]
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pub struct RustUseMap {
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pub aliases: BTreeMap<String, String>,
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pub wildcards: Vec<String>,
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}
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impl RustUseMap {
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pub fn is_empty(&self) -> bool {
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self.aliases.is_empty() && self.wildcards.is_empty()
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}
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}
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// ─────────────────────────────────────────────────────────────────────────────
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// Module path derivation
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// ─────────────────────────────────────────────────────────────────────────────
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/// Find the crate root by walking up from `file_path` looking for `Cargo.toml`.
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///
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/// Returns the directory containing the `Cargo.toml`, or `None` if no parent
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/// has one. When `scan_root` is provided we stop at the scan root rather than
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/// climbing past it, so a project nested inside the workspace does not pick
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/// up an outer crate's `Cargo.toml`.
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fn find_crate_root(file_path: &Path, scan_root: Option<&Path>) -> Option<std::path::PathBuf> {
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let mut cur = file_path.parent()?;
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loop {
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if cur.join("Cargo.toml").is_file() {
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return Some(cur.to_path_buf());
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}
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if let Some(root) = scan_root
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&& cur == root
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{
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return None;
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}
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cur = cur.parent()?;
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}
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}
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/// Derive the crate-relative module path for a Rust source file.
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///
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/// Standard Rust layout:
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/// * `src/lib.rs` / `src/main.rs` / `src/bin/foo.rs` → `""` (top-level)
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/// * `src/foo.rs` → `"foo"`
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/// * `src/foo/mod.rs` → `"foo"`
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/// * `src/foo/bar.rs` → `"foo::bar"`
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///
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/// Returns `None` when the file is not under a recognised `src/` tree of any
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/// crate root, or when the file extension is not `.rs`.
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///
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/// `scan_root` is the project root used everywhere else for namespace
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/// normalization. When supplied it bounds the search for `Cargo.toml`.
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pub fn derive_module_path(file_path: &Path, scan_root: Option<&Path>) -> Option<String> {
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if file_path.extension().and_then(|s| s.to_str()) != Some("rs") {
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return None;
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}
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let crate_root =
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find_crate_root(file_path, scan_root).or_else(|| scan_root.map(|p| p.to_path_buf()))?;
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let rel = file_path.strip_prefix(&crate_root).ok()?;
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let mut segments: Vec<&str> = rel.iter().filter_map(|s| s.to_str()).collect();
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// Strip a leading `src` directory if present. Files outside `src/` (e.g.
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// tests, examples, build.rs) get a `None` here, we do not have a stable
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// module path for them and resolution should fall back to file-based.
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match segments.first().copied() {
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Some("src") => {
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segments.remove(0);
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}
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_ => return None,
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}
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if segments.is_empty() {
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return None;
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}
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let last = segments.pop()?;
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let leaf = match last {
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"lib.rs" | "main.rs" | "mod.rs" => None,
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other => other.strip_suffix(".rs").map(|s| s.to_string()),
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};
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// `src/bin/foo.rs` is conventionally a separate binary; treat it as
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// top-level rather than module `bin::foo`.
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if matches!(segments.first().copied(), Some("bin")) {
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return Some(String::new());
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}
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let mut path = segments.join("::");
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if let Some(name) = leaf {
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if !path.is_empty() {
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path.push_str("::");
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}
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path.push_str(&name);
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}
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Some(path)
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}
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// ─────────────────────────────────────────────────────────────────────────────
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// Use-declaration parsing
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// ─────────────────────────────────────────────────────────────────────────────
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/// Parse every top-level `use_declaration` of a Rust source tree into a
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/// [`RustUseMap`].
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///
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/// The walk only inspects direct children of the source root. Nested `use`s
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/// inside functions or impls are deliberately skipped, their scope is local
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/// and does not influence the cross-file call graph at the module level.
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pub fn parse_rust_use_map(src: &[u8], tree: &Tree) -> RustUseMap {
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let mut map = RustUseMap::default();
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let root = tree.root_node();
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let mut cursor = root.walk();
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for child in root.named_children(&mut cursor) {
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if child.kind() != "use_declaration" {
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continue;
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}
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// The argument field on use_declaration holds the use_clause body.
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let arg = match child.child_by_field_name("argument") {
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Some(n) => n,
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None => {
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// tree-sitter-rust 0.24 sometimes exposes the body as a named
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// child instead of a field, fall back to the first named child.
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match child.named_child(0) {
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Some(n) => n,
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None => continue,
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}
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}
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};
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collect_use_paths(arg, src, &[], &mut map);
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}
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map
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}
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/// Recursively flatten a use clause into `(local_alias, fully_qualified)`
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/// entries, accumulating segments along the way.
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///
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/// `prefix` carries the parent path segments already consumed (so a nested
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/// `b::c` inside `a::{b::c}` is flattened to `a::b::c`).
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fn collect_use_paths(node: Node<'_>, src: &[u8], prefix: &[String], map: &mut RustUseMap) {
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match node.kind() {
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// `crate::auth::token::validate`, terminal scoped path, leaf is the alias.
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"scoped_identifier" => {
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let segments = scoped_segments(node, src);
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if segments.is_empty() {
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return;
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}
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let full = join_segments(prefix, &segments);
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let leaf = segments.last().cloned().unwrap_or_default();
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if !leaf.is_empty() {
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map.aliases.insert(leaf, full);
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}
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}
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// `validate`, bare identifier (e.g. `use foo::validate`).
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"identifier" => {
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let name = node_text(node, src).to_string();
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if name.is_empty() {
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return;
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}
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let mut segs = prefix.to_vec();
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segs.push(name.clone());
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map.aliases.insert(name, segs.join("::"));
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}
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// `crate::auth::token::{validate, verify}`, left side is the prefix,
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// right side is a use_list of further use clauses.
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"scoped_use_list" => {
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// path field carries the prefix; the list field carries the body.
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let path_node = node
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.child_by_field_name("path")
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.or_else(|| node.named_child(0));
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let mut new_prefix: Vec<String> = prefix.to_vec();
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if let Some(p) = path_node {
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let segs = scoped_segments_or_ident(p, src);
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new_prefix.extend(segs);
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}
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let list_node = node.child_by_field_name("list").or_else(|| {
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let mut found = None;
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for i in 0..node.named_child_count() as u32 {
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if let Some(n) = node.named_child(i)
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&& n.kind() == "use_list"
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{
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found = Some(n);
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break;
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}
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}
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found
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});
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if let Some(list) = list_node {
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let mut cursor = list.walk();
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for c in list.named_children(&mut cursor) {
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collect_use_paths(c, src, &new_prefix, map);
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}
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}
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}
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// Bare `use_list`, e.g. `use {foo, bar};` (rare at top level).
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"use_list" => {
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let mut cursor = node.walk();
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for c in node.named_children(&mut cursor) {
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collect_use_paths(c, src, prefix, map);
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}
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}
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// `crate::auth::token::validate as ok`, alias the leaf identifier.
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"use_as_clause" => {
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let path_node = node
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.child_by_field_name("path")
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.or_else(|| node.named_child(0));
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let alias_node = node
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.child_by_field_name("alias")
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.or_else(|| node.named_child(1));
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let alias = alias_node.map(|n| node_text(n, src).to_string());
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if let (Some(p), Some(alias_name)) = (path_node, alias)
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&& !alias_name.is_empty()
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{
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let segs = scoped_segments_or_ident(p, src);
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let full = join_segments(prefix, &segs);
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map.aliases.insert(alias_name, full);
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}
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}
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// `crate::auth::token::*`, record the prefix as a wildcard import.
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"use_wildcard" => {
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// The wildcard's child is the path being wildcarded.
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let path_node = node.named_child(0);
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if let Some(p) = path_node {
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let segs = scoped_segments_or_ident(p, src);
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let full = join_segments(prefix, &segs);
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if !full.is_empty() {
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map.wildcards.push(full);
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}
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}
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}
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_ => {
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// Unknown/unsupported form (e.g. macro_invocation in use position,
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// attribute-prefixed clauses), flag in pass-1 telemetry, skip
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// here to keep the walk total.
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}
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}
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}
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/// Pull dotted identifier segments out of a `scoped_identifier` node.
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fn scoped_segments(node: Node<'_>, src: &[u8]) -> Vec<String> {
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let mut segs = Vec::new();
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if let Some(path) = node.child_by_field_name("path") {
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let inner = scoped_segments_or_ident(path, src);
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segs.extend(inner);
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}
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if let Some(name) = node.child_by_field_name("name") {
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let n = node_text(name, src).to_string();
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if !n.is_empty() {
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segs.push(n);
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}
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}
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if segs.is_empty() {
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// Fallback: split by `::` from the raw text.
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let raw = node_text(node, src);
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for part in raw.split("::") {
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if !part.is_empty() {
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segs.push(part.to_string());
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}
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}
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}
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segs
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}
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/// Helper that handles both `scoped_identifier` and bare `identifier` nodes.
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fn scoped_segments_or_ident(node: Node<'_>, src: &[u8]) -> Vec<String> {
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match node.kind() {
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"scoped_identifier" => scoped_segments(node, src),
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"identifier" | "crate" | "self" | "super" => {
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vec![node_text(node, src).to_string()]
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}
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_ => {
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let raw = node_text(node, src);
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raw.split("::")
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.filter(|s| !s.is_empty())
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.map(|s| s.to_string())
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.collect()
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}
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}
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}
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fn node_text<'a>(node: Node<'_>, src: &'a [u8]) -> &'a str {
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std::str::from_utf8(&src[node.byte_range()]).unwrap_or("")
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}
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fn join_segments(prefix: &[String], suffix: &[String]) -> String {
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let mut all: Vec<&str> = prefix.iter().map(String::as_str).collect();
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all.extend(suffix.iter().map(String::as_str));
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all.join("::")
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}
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// ─────────────────────────────────────────────────────────────────────────────
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// Resolution helpers
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// ─────────────────────────────────────────────────────────────────────────────
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/// Resolve a Rust callee `(qualifier, name)` against a use map.
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///
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/// Resolution order:
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/// 1. If the call is qualified (`Some(qualifier)`):
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/// a. Try the full qualifier as an exact alias (e.g. `use foo::bar::baz; baz::quux();`
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/// lifts `baz` → `foo::bar::baz`).
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/// b. Otherwise try the qualifier's first segment as an alias and graft
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/// the remaining segments + `name` on top.
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/// 2. If the call is unqualified, try `name` directly in the alias map.
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/// 3. Otherwise return `None` and let the caller fall back to wildcards or
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/// bare-name lookup.
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///
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/// Returns the fully qualified callee path, e.g. `"crate::auth::token::validate"`.
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pub fn resolve_with_use_map(
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use_map: &RustUseMap,
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qualifier: Option<&str>,
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name: &str,
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) -> Option<String> {
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if let Some(q) = qualifier.filter(|q| !q.is_empty()) {
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if let Some(full) = use_map.aliases.get(q) {
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return Some(format!("{full}::{name}"));
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}
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let mut segments = q.split("::");
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if let Some(first) = segments.next()
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&& let Some(full) = use_map.aliases.get(first)
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{
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let rest: Vec<&str> = segments.collect();
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let mut joined = full.clone();
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for r in rest {
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joined.push_str("::");
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joined.push_str(r);
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}
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joined.push_str("::");
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joined.push_str(name);
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return Some(joined);
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}
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return None;
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}
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use_map.aliases.get(name).cloned()
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}
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/// Given a fully qualified callee path (e.g. `"crate::auth::token::validate"`),
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/// strip the leading `crate::` segment so it lines up with module paths
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/// computed by [`derive_module_path`] (which are crate-relative and do not
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/// include `crate::`).
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///
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/// Returns the (module_path, name) pair, e.g. `("auth::token", "validate")`.
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/// If the input has no `::` separators the module path is empty.
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pub fn split_module_and_name(qualified: &str) -> (String, String) {
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let trimmed = qualified.strip_prefix("crate::").unwrap_or(qualified);
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if let Some(pos) = trimmed.rfind("::") {
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(trimmed[..pos].to_string(), trimmed[pos + 2..].to_string())
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} else {
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(String::new(), trimmed.to_string())
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}
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}
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// ─────────────────────────────────────────────────────────────────────────────
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// Tests
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// ─────────────────────────────────────────────────────────────────────────────
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#[cfg(test)]
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mod tests {
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use super::*;
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use std::path::PathBuf;
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use tree_sitter::Parser;
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fn parse(src: &str) -> Tree {
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let mut parser = Parser::new();
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parser
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.set_language(&tree_sitter_rust::LANGUAGE.into())
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.unwrap();
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parser.parse(src, None).unwrap()
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}
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// ── derive_module_path ─────────────────────────────────────────────
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#[test]
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fn module_path_lib_root() {
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let root = PathBuf::from("/proj");
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std::fs::create_dir_all("/tmp/nyx_mp_test_lib").ok();
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std::fs::write("/tmp/nyx_mp_test_lib/Cargo.toml", "").ok();
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std::fs::create_dir_all("/tmp/nyx_mp_test_lib/src").ok();
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std::fs::write("/tmp/nyx_mp_test_lib/src/lib.rs", "").ok();
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let p = PathBuf::from("/tmp/nyx_mp_test_lib/src/lib.rs");
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assert_eq!(derive_module_path(&p, Some(&root)), Some(String::new()));
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}
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#[test]
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fn module_path_top_module() {
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let dir = PathBuf::from("/tmp/nyx_mp_test_top");
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std::fs::create_dir_all(dir.join("src")).ok();
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std::fs::write(dir.join("Cargo.toml"), "").ok();
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std::fs::write(dir.join("src/foo.rs"), "").ok();
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let p = dir.join("src/foo.rs");
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assert_eq!(derive_module_path(&p, None), Some("foo".to_string()));
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}
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#[test]
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fn module_path_mod_rs() {
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let dir = PathBuf::from("/tmp/nyx_mp_test_modrs");
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std::fs::create_dir_all(dir.join("src/foo")).ok();
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std::fs::write(dir.join("Cargo.toml"), "").ok();
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std::fs::write(dir.join("src/foo/mod.rs"), "").ok();
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let p = dir.join("src/foo/mod.rs");
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assert_eq!(derive_module_path(&p, None), Some("foo".to_string()));
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}
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#[test]
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|
fn module_path_nested() {
|
|
let dir = PathBuf::from("/tmp/nyx_mp_test_nested");
|
|
std::fs::create_dir_all(dir.join("src/foo")).ok();
|
|
std::fs::write(dir.join("Cargo.toml"), "").ok();
|
|
std::fs::write(dir.join("src/foo/bar.rs"), "").ok();
|
|
let p = dir.join("src/foo/bar.rs");
|
|
assert_eq!(derive_module_path(&p, None), Some("foo::bar".to_string()));
|
|
}
|
|
|
|
#[test]
|
|
fn module_path_no_cargo_toml_with_scan_root() {
|
|
// No Cargo.toml anywhere, fall back to scan root.
|
|
let dir = PathBuf::from("/tmp/nyx_mp_test_no_cargo");
|
|
std::fs::create_dir_all(dir.join("src")).ok();
|
|
// Make sure no Cargo.toml exists.
|
|
let _ = std::fs::remove_file(dir.join("Cargo.toml"));
|
|
std::fs::write(dir.join("src/foo.rs"), "").ok();
|
|
let p = dir.join("src/foo.rs");
|
|
assert_eq!(derive_module_path(&p, Some(&dir)), Some("foo".to_string()));
|
|
}
|
|
|
|
#[test]
|
|
fn module_path_non_rust_returns_none() {
|
|
let p = PathBuf::from("/tmp/whatever/src/lib.py");
|
|
assert_eq!(derive_module_path(&p, None), None);
|
|
}
|
|
|
|
// ── parse_rust_use_map ─────────────────────────────────────────────
|
|
|
|
#[test]
|
|
fn use_map_simple() {
|
|
let src = b"use crate::auth::token::validate;";
|
|
let tree = parse(std::str::from_utf8(src).unwrap());
|
|
let m = parse_rust_use_map(src, &tree);
|
|
assert_eq!(
|
|
m.aliases.get("validate").map(String::as_str),
|
|
Some("crate::auth::token::validate")
|
|
);
|
|
assert!(m.wildcards.is_empty());
|
|
}
|
|
|
|
#[test]
|
|
fn use_map_list() {
|
|
let src = b"use crate::auth::token::{validate, verify};";
|
|
let tree = parse(std::str::from_utf8(src).unwrap());
|
|
let m = parse_rust_use_map(src, &tree);
|
|
assert_eq!(
|
|
m.aliases.get("validate").map(String::as_str),
|
|
Some("crate::auth::token::validate")
|
|
);
|
|
assert_eq!(
|
|
m.aliases.get("verify").map(String::as_str),
|
|
Some("crate::auth::token::verify")
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn use_map_alias() {
|
|
let src = b"use crate::auth::token::validate as ok;";
|
|
let tree = parse(std::str::from_utf8(src).unwrap());
|
|
let m = parse_rust_use_map(src, &tree);
|
|
assert_eq!(
|
|
m.aliases.get("ok").map(String::as_str),
|
|
Some("crate::auth::token::validate")
|
|
);
|
|
assert!(!m.aliases.contains_key("validate"), "alias only");
|
|
}
|
|
|
|
#[test]
|
|
fn use_map_wildcard() {
|
|
let src = b"use crate::auth::token::*;";
|
|
let tree = parse(std::str::from_utf8(src).unwrap());
|
|
let m = parse_rust_use_map(src, &tree);
|
|
assert!(m.aliases.is_empty());
|
|
assert_eq!(m.wildcards, vec!["crate::auth::token".to_string()]);
|
|
}
|
|
|
|
#[test]
|
|
fn use_map_nested_group() {
|
|
let src = b"use crate::a::{b::c, d::e};";
|
|
let tree = parse(std::str::from_utf8(src).unwrap());
|
|
let m = parse_rust_use_map(src, &tree);
|
|
assert_eq!(
|
|
m.aliases.get("c").map(String::as_str),
|
|
Some("crate::a::b::c")
|
|
);
|
|
assert_eq!(
|
|
m.aliases.get("e").map(String::as_str),
|
|
Some("crate::a::d::e")
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn use_map_malformed_does_not_panic() {
|
|
// Truncated input, must not panic.
|
|
let src = b"use crate::auth::";
|
|
let tree = parse(std::str::from_utf8(src).unwrap());
|
|
let _ = parse_rust_use_map(src, &tree);
|
|
}
|
|
|
|
#[test]
|
|
fn use_map_skips_inner_function_uses() {
|
|
// Inner `use` inside a function body should not appear in the top-level map.
|
|
let src = b"fn main() { use crate::inner::helper; helper(); }";
|
|
let tree = parse(std::str::from_utf8(src).unwrap());
|
|
let m = parse_rust_use_map(src, &tree);
|
|
assert!(
|
|
!m.aliases.contains_key("helper"),
|
|
"inner uses should not leak into the top-level map"
|
|
);
|
|
}
|
|
|
|
// ── resolve_with_use_map ───────────────────────────────────────────
|
|
|
|
#[test]
|
|
fn resolve_unqualified_alias() {
|
|
let mut m = RustUseMap::default();
|
|
m.aliases.insert(
|
|
"validate".to_string(),
|
|
"crate::auth::token::validate".to_string(),
|
|
);
|
|
assert_eq!(
|
|
resolve_with_use_map(&m, None, "validate"),
|
|
Some("crate::auth::token::validate".to_string())
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn resolve_qualified_via_alias_prefix() {
|
|
// `use crate::auth::token; token::validate(...)` lifts `token`.
|
|
let mut m = RustUseMap::default();
|
|
m.aliases
|
|
.insert("token".to_string(), "crate::auth::token".to_string());
|
|
assert_eq!(
|
|
resolve_with_use_map(&m, Some("token"), "validate"),
|
|
Some("crate::auth::token::validate".to_string())
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn resolve_unqualified_unknown_returns_none() {
|
|
let m = RustUseMap::default();
|
|
assert_eq!(resolve_with_use_map(&m, None, "validate"), None);
|
|
}
|
|
|
|
// ── split_module_and_name ──────────────────────────────────────────
|
|
|
|
#[test]
|
|
fn split_strips_crate_prefix() {
|
|
assert_eq!(
|
|
split_module_and_name("crate::auth::token::validate"),
|
|
("auth::token".to_string(), "validate".to_string())
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn split_no_crate_prefix() {
|
|
assert_eq!(
|
|
split_module_and_name("auth::token::validate"),
|
|
("auth::token".to_string(), "validate".to_string())
|
|
);
|
|
}
|
|
|
|
#[test]
|
|
fn split_bare_name() {
|
|
assert_eq!(
|
|
split_module_and_name("validate"),
|
|
(String::new(), "validate".to_string())
|
|
);
|
|
}
|
|
}
|