better rust parser
This commit is contained in:
+284
-84
@@ -7,7 +7,7 @@ use std::fs;
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use std::process;
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use syn::{
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spanned::Spanned, Attribute, FnArg, Item, ItemEnum, ItemFn, ItemImpl, ItemMod, ItemStruct,
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ItemTrait, Pat, Type, Visibility,
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ItemTrait, Pat, Type, UseTree, UseTreeKind, Visibility,
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};
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#[derive(Serialize)]
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@@ -26,6 +26,8 @@ struct RustDecl {
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return_type: Option<String>,
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parameters: Vec<String>,
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docstring: Option<String>,
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imports: Vec<String>, // Track imports for cross-file relationships
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calls: Vec<String>, // Track function calls
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}
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fn main() {
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@@ -53,37 +55,73 @@ fn main() {
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};
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let mut decls = Vec::new();
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let mut imports = Vec::new(); // Collect imports separately
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// Process declarations
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// Process imports first
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for item in &syntax.items {
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if let Item::Use(item_use) = item {
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let import_paths = extract_use_paths(&item_use.tree);
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imports.extend(import_paths.clone());
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for path in &import_paths {
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decls.push(RustDecl {
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name: path.clone(),
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type_: "import".to_string(),
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start_line: get_span_start(&item_use.span()),
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end_line: get_span_end(&item_use.span()),
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visibility: visibility_to_string(&item_use.vis),
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is_async: false,
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is_unsafe: false,
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generics: vec![],
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traits: vec![],
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fields: vec![],
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methods: vec![],
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return_type: None,
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parameters: vec![path.clone()],
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docstring: extract_docstring(&item_use.attrs),
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imports: vec![],
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calls: vec![],
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});
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}
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}
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}
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// Process other declarations with import context
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for item in &syntax.items {
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match item {
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Item::Fn(item_fn) => {
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if let Some(decl) = parse_function(&item_fn) {
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if let Some(mut decl) = parse_function(&item_fn, &content) {
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decl.imports = imports.clone(); // Add imports to function context
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decls.push(decl);
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}
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}
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Item::Struct(item_struct) => {
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if let Some(decl) = parse_struct(&item_struct) {
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if let Some(mut decl) = parse_struct(&item_struct) {
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decl.imports = imports.clone();
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decls.push(decl);
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}
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}
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Item::Enum(item_enum) => {
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if let Some(decl) = parse_enum(&item_enum) {
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if let Some(mut decl) = parse_enum(&item_enum) {
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decl.imports = imports.clone();
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decls.push(decl);
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}
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}
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Item::Trait(item_trait) => {
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if let Some(decl) = parse_trait(&item_trait) {
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if let Some(mut decl) = parse_trait(&item_trait) {
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decl.imports = imports.clone();
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decls.push(decl);
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}
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}
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Item::Impl(item_impl) => {
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if let Some(decl) = parse_impl(&item_impl) {
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if let Some(mut decl) = parse_impl(&item_impl, &content) {
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decl.imports = imports.clone();
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decls.push(decl);
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}
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}
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Item::Mod(item_mod) => {
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if let Some(decl) = parse_mod(&item_mod) {
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if let Some(mut decl) = parse_mod(&item_mod) {
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decl.imports = imports.clone();
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decls.push(decl);
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}
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}
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@@ -91,43 +129,74 @@ fn main() {
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}
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}
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for item in &syntax.items {
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if let Item::Use(item_use) = item {
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let path = use_tree_to_string(&item_use.tree);
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decls.push(RustDecl {
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name: path.clone(),
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type_: "import".to_string(),
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start_line: 0,
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end_line: 0,
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visibility: "".to_string(),
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is_async: false,
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is_unsafe: false,
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generics: vec![],
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traits: vec![],
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fields: vec![],
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methods: vec![],
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return_type: None,
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parameters: vec![path],
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docstring: None,
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});
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}
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}
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let output = serde_json::to_string(&decls).unwrap_or_else(|_| "[]".to_string());
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println!("{}", output);
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}
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fn span_start_end<T: Spanned>(node: &T) -> (usize, usize) {
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// Requires proc-macro2 "span-locations" feature.
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let span = node.span();
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let start = span.start().line;
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let end = span.end().line;
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(start, end)
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// Better span handling (requires proc-macro2 "span-locations" feature)
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fn get_span_start(span: &proc_macro2::Span) -> usize {
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span.start().line
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}
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fn parse_function(item_fn: &ItemFn) -> Option<RustDecl> {
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let (start_line, end_line) = span_start_end(item_fn);
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fn get_span_end(span: &proc_macro2::Span) -> usize {
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span.end().line
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}
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// Enhanced import extraction
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fn extract_use_paths(tree: &UseTree) -> Vec<String> {
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let mut paths = Vec::new();
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extract_use_paths_recursive(tree, "", &mut paths);
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paths
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}
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fn extract_use_paths_recursive(tree: &UseTree, current_path: &str, paths: &mut Vec<String>) {
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match tree {
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UseTree::Path(path) => {
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let new_path = if current_path.is_empty() {
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path.ident.to_string()
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} else {
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format!("{}::{}", current_path, path.ident)
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};
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extract_use_paths_recursive(&path.tree, &new_path, paths);
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}
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UseTree::Name(name) => {
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let full_path = if current_path.is_empty() {
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name.ident.to_string()
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} else {
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format!("{}::{}", current_path, name.ident)
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};
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paths.push(full_path);
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}
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UseTree::Rename(rename) => {
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let full_path = if current_path.is_empty() {
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rename.ident.to_string()
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} else {
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format!("{}::{}", current_path, rename.ident)
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};
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paths.push(full_path);
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}
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UseTree::Glob(_) => {
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if !current_path.is_empty() {
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paths.push(format!("{}::*", current_path));
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} else {
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// top-level glob — represent as "*"
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paths.push("*".to_string());
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}
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}
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UseTree::Group(group) => {
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for item in &group.items {
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extract_use_paths_recursive(item, current_path, paths);
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}
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}
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// If the AST contains other nodes, ignore them (keeps function exhaustive)
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_ => {}
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}
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}
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// Enhanced function parsing with call detection
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fn parse_function(item_fn: &ItemFn, file_content: &str) -> Option<RustDecl> {
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let start_line = get_span_start(&item_fn.span());
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let end_line = get_span_end(&item_fn.span());
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let mut parameters = Vec::new();
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for input in &item_fn.sig.inputs {
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@@ -149,6 +218,9 @@ fn parse_function(item_fn: &ItemFn) -> Option<RustDecl> {
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syn::ReturnType::Type(_, ty) => Some(type_to_string(&*ty)),
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};
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// Extract function calls from body
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let calls = extract_function_calls(&item_fn.block, file_content);
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Some(RustDecl {
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name: item_fn.sig.ident.to_string(),
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type_: "function".to_string(),
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@@ -170,16 +242,100 @@ fn parse_function(item_fn: &ItemFn) -> Option<RustDecl> {
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return_type,
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parameters,
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docstring: extract_docstring(&item_fn.attrs),
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imports: Vec::new(), // Filled by caller
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calls,
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})
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}
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// Simple function call extraction using regex on tokenized block
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fn extract_function_calls(block: &syn::Block, _file_content: &str) -> Vec<String> {
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let mut calls = Vec::new();
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let content = quote::ToTokens::to_token_stream(block).to_string();
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// Basic regex to find function-like identifiers followed by '('
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let re = Regex::new(r"\b([a-zA-Z_][a-zA-Z0-9_]*)\s*\(").unwrap();
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for cap in re.captures_iter(&content) {
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if let Some(name) = cap.get(1) {
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let call = name.as_str().to_string();
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// Filter out common keywords and types, and constructors (capitalized)
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if !is_rust_keyword(&call) && !call.chars().next().map_or(false, |c| c.is_uppercase()) {
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calls.push(call);
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}
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}
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}
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// Deduplicate while preserving order
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let mut deduped = Vec::new();
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for c in calls {
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if !deduped.contains(&c) {
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deduped.push(c);
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}
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}
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deduped
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}
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fn is_rust_keyword(word: &str) -> bool {
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matches!(
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word,
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"if" | "else"
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| "for"
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| "while"
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| "loop"
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| "match"
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| "return"
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| "break"
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| "continue"
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| "let"
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| "mut"
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| "const"
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| "static"
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| "fn"
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| "struct"
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| "enum"
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| "trait"
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| "impl"
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| "mod"
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| "use"
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| "pub"
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| "crate"
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| "self"
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| "super"
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| "async"
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| "await"
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| "unsafe"
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| "dyn"
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| "move"
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| "where"
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| "in"
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| "type"
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| "as"
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| "ref"
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| "box"
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| "true"
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| "false"
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| "Some"
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| "None"
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| "Ok"
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| "Err"
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)
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}
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// Update other parse functions to include the new fields...
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fn parse_struct(item_struct: &ItemStruct) -> Option<RustDecl> {
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let (start_line, end_line) = span_start_end(item_struct);
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let start_line = get_span_start(&item_struct.span());
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let end_line = get_span_end(&item_struct.span());
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let fields: Vec<String> = item_struct
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.fields
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.iter()
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.filter_map(|field| field.ident.as_ref().map(|ident| ident.to_string()))
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.filter_map(|field| {
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// field.ident is Option<Ident> for named fields; for tuple structs it's None
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field.ident.as_ref().map(|ident| {
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let field_name = ident.to_string();
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let field_type = type_to_string(&field.ty);
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format!("{}: {}", field_name, field_type)
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})
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})
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.collect();
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Some(RustDecl {
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@@ -202,11 +358,14 @@ fn parse_struct(item_struct: &ItemStruct) -> Option<RustDecl> {
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return_type: None,
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parameters: Vec::new(),
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docstring: extract_docstring(&item_struct.attrs),
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imports: Vec::new(), // Filled by caller
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calls: Vec::new(),
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})
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}
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fn parse_enum(item_enum: &ItemEnum) -> Option<RustDecl> {
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let (start_line, end_line) = span_start_end(item_enum);
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let start_line = get_span_start(&item_enum.span());
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let end_line = get_span_end(&item_enum.span());
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let variants: Vec<String> = item_enum
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.variants
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@@ -234,11 +393,14 @@ fn parse_enum(item_enum: &ItemEnum) -> Option<RustDecl> {
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return_type: None,
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parameters: Vec::new(),
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docstring: extract_docstring(&item_enum.attrs),
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imports: Vec::new(),
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calls: Vec::new(),
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})
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}
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fn parse_trait(item_trait: &ItemTrait) -> Option<RustDecl> {
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let (start_line, end_line) = span_start_end(item_trait);
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let start_line = get_span_start(&item_trait.span());
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let end_line = get_span_end(&item_trait.span());
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let methods: Vec<String> = item_trait
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.items
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@@ -272,11 +434,14 @@ fn parse_trait(item_trait: &ItemTrait) -> Option<RustDecl> {
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return_type: None,
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parameters: Vec::new(),
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docstring: extract_docstring(&item_trait.attrs),
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imports: Vec::new(),
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calls: Vec::new(),
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})
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}
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fn parse_impl(item_impl: &ItemImpl) -> Option<RustDecl> {
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let (start_line, end_line) = span_start_end(item_impl);
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fn parse_impl(item_impl: &ItemImpl, file_content: &str) -> Option<RustDecl> {
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let start_line = get_span_start(&item_impl.span());
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let end_line = get_span_end(&item_impl.span());
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let target = type_to_string(&*item_impl.self_ty);
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@@ -293,21 +458,33 @@ fn parse_impl(item_impl: &ItemImpl) -> Option<RustDecl> {
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.collect();
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// If this impl implements a trait, extract its path
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let implements = item_impl
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let implements: Vec<String> = item_impl
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.trait_
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.as_ref()
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.map(|(_, path, _)| path_to_string(path))
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.into_iter()
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.collect::<Vec<_>>();
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.collect();
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// Prefer the first trait name (if any) as the identifier; otherwise fall back to the target type
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let name = if !implements.is_empty() {
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implements[0].clone()
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} else {
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target
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target.clone()
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};
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// Extract any docstring attached to the impl block
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// Extract calls across all method bodies in the impl (basic)
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let mut calls = Vec::new();
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for item in &item_impl.items {
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if let syn::ImplItem::Fn(method) = item {
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let body_calls = extract_function_calls(&method.block, file_content);
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for c in body_calls {
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if !calls.contains(&c) {
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calls.push(c);
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}
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}
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}
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}
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let docstring = extract_docstring(&item_impl.attrs);
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Some(RustDecl {
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@@ -330,27 +507,14 @@ fn parse_impl(item_impl: &ItemImpl) -> Option<RustDecl> {
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return_type: None,
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parameters: Vec::new(),
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docstring,
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imports: Vec::new(),
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calls,
|
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})
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}
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/// Pull a concatenated doc‑string from a list of attributes.
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/// Handles both `///` comments (converted to `#[doc = "..."]` by syn)
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/// and explicit `#[doc = "..."]` attributes.
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fn extract_docstring(attrs: &[Attribute]) -> Option<String> {
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// Convert the attribute’s token stream back to source‑like text.
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let text = attrs
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.iter()
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.map(|a| a.to_token_stream().to_string())
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.collect::<Vec<_>>()
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.join("\n");
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let re = Regex::new(r#"(?m)^\s*(?:///|#\[\s*doc\s*=\s*")(.+?)(?:")?$"#).ok()?;
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re.captures(&text)
|
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.and_then(|c| c.get(1).map(|m| m.as_str().to_string()))
|
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}
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fn parse_mod(item_mod: &ItemMod) -> Option<RustDecl> {
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let (start_line, end_line) = span_start_end(item_mod);
|
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let start_line = get_span_start(&item_mod.span());
|
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let end_line = get_span_end(&item_mod.span());
|
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|
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Some(RustDecl {
|
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name: item_mod.ident.to_string(),
|
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@@ -367,6 +531,8 @@ fn parse_mod(item_mod: &ItemMod) -> Option<RustDecl> {
|
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return_type: None,
|
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parameters: Vec::new(),
|
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docstring: extract_docstring(&item_mod.attrs),
|
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imports: Vec::new(),
|
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calls: Vec::new(),
|
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})
|
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}
|
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|
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@@ -375,25 +541,28 @@ fn visibility_to_string(vis: &Visibility) -> String {
|
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Visibility::Public(_) => "pub".to_string(),
|
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Visibility::Restricted(r) => {
|
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// pub(crate) or pub(in ...)
|
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format!("pub({})", quote::ToTokens::to_token_stream(r).to_string())
|
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quote::ToTokens::to_token_stream(r).to_string()
|
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}
|
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_ => "private".to_string(),
|
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}
|
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}
|
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|
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fn type_to_string(ty: &Type) -> String {
|
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// Simple string representation for common types
|
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match ty {
|
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Type::Path(type_path) => type_path
|
||||
.path
|
||||
.segments
|
||||
.last()
|
||||
.iter()
|
||||
.map(|seg| seg.ident.to_string())
|
||||
.unwrap_or_else(|| "unknown".to_string()),
|
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.collect::<Vec<_>>()
|
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.join("::"),
|
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Type::Reference(type_ref) => {
|
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// type_ref.elem is Box<Type>
|
||||
format!("&{}", type_to_string(&*type_ref.elem))
|
||||
}
|
||||
Type::Tuple(tuple) => {
|
||||
let elems: Vec<String> = tuple.elems.iter().map(type_to_string).collect();
|
||||
format!("({})", elems.join(", "))
|
||||
}
|
||||
_ => quote::ToTokens::to_token_stream(ty).to_string(),
|
||||
}
|
||||
}
|
||||
@@ -414,19 +583,50 @@ fn generic_param_to_string(param: &syn::GenericParam) -> String {
|
||||
}
|
||||
}
|
||||
|
||||
fn use_tree_to_string(tree: &syn::UseTree) -> String {
|
||||
match tree {
|
||||
syn::UseTree::Path(p) => {
|
||||
let base = p.ident.to_string();
|
||||
let nested = use_tree_to_string(&*p.tree);
|
||||
format!("{}::{}", base, nested)
|
||||
}
|
||||
syn::UseTree::Name(n) => n.ident.to_string(),
|
||||
syn::UseTree::Rename(r) => r.ident.to_string(),
|
||||
syn::UseTree::Glob(_) => "*".to_string(),
|
||||
syn::UseTree::Group(g) => {
|
||||
let items: Vec<String> = g.items.iter().map(use_tree_to_string).collect();
|
||||
items.join("::")
|
||||
/// Pull a concatenated doc-string from a list of attributes.
|
||||
/// Handles both `///` comments (converted to `#[doc = "..."]` by syn)
|
||||
/// and explicit `#[doc = "..."]` attributes.
|
||||
fn extract_docstring(attrs: &[Attribute]) -> Option<String> {
|
||||
// Prefer parsing doc attributes explicitly
|
||||
let mut lines: Vec<String> = Vec::new();
|
||||
|
||||
for attr in attrs {
|
||||
// If attribute path is "doc", try to parse the meta and extract the literal
|
||||
if attr.path().is_ident("doc") {
|
||||
if let Ok(syn::Meta::NameValue(nv)) = attr.parse_meta() {
|
||||
if let syn::Lit::Str(litstr) = nv.lit {
|
||||
lines.push(litstr.value());
|
||||
}
|
||||
} else {
|
||||
// Fallback: stringify the tokens and try regex extraction
|
||||
let tok = attr.to_token_stream().to_string();
|
||||
let re = Regex::new(r#"(?m)#\s*\[\s*doc\s*=\s*"(.+?)"\s*\]"#).ok();
|
||||
if let Some(re) = re {
|
||||
if let Some(cap) = re.captures(&tok) {
|
||||
if let Some(m) = cap.get(1) {
|
||||
lines.push(m.as_str().to_string());
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
} else {
|
||||
// capture leading "///" style comments as attributes may not always be "doc"
|
||||
let tok = attr.to_token_stream().to_string();
|
||||
// crude fallback to capture /// "..." inside tokens
|
||||
let re_line = Regex::new(r#"(?m)///\s*(.+)$"#).ok();
|
||||
if let Some(re_line) = re_line {
|
||||
for cap in re_line.captures_iter(&tok) {
|
||||
if let Some(m) = cap.get(1) {
|
||||
lines.push(m.as_str().to_string());
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
}
|
||||
|
||||
if lines.is_empty() {
|
||||
None
|
||||
} else {
|
||||
Some(lines.join("\n"))
|
||||
}
|
||||
}
|
||||
|
||||
Reference in New Issue
Block a user