padlock_source/frontends/
go.rs1use padlock_core::arch::ArchConfig;
7use padlock_core::ir::{AccessPattern, Field, StructLayout, TypeInfo};
8use tree_sitter::{Node, Parser};
9
10fn go_type_size_align(ty: &str, arch: &'static ArchConfig) -> (usize, usize) {
13 match ty.trim() {
14 "bool" => (1, 1),
15 "int8" | "uint8" | "byte" => (1, 1),
16 "int16" | "uint16" => (2, 2),
17 "int32" | "uint32" | "rune" | "float32" => (4, 4),
18 "int64" | "uint64" | "float64" | "complex64" => (8, 8),
19 "complex128" => (16, 16),
20 "int" | "uint" => (arch.pointer_size, arch.pointer_size),
21 "uintptr" => (arch.pointer_size, arch.pointer_size),
22 "string" => (arch.pointer_size * 2, arch.pointer_size), ty if ty.starts_with("[]") => (arch.pointer_size * 3, arch.pointer_size), ty if ty.starts_with("map[") || ty.starts_with("chan ") => {
25 (arch.pointer_size, arch.pointer_size)
26 }
27 ty if ty.starts_with('*') => (arch.pointer_size, arch.pointer_size),
28 "error" => (arch.pointer_size * 2, arch.pointer_size),
30 _ => (arch.pointer_size, arch.pointer_size),
31 }
32}
33
34fn extract_structs(source: &str, root: Node<'_>, arch: &'static ArchConfig) -> Vec<StructLayout> {
37 let mut layouts = Vec::new();
38 let mut stack = vec![root];
39
40 while let Some(node) = stack.pop() {
41 for i in (0..node.child_count()).rev() {
42 if let Some(c) = node.child(i) {
43 stack.push(c);
44 }
45 }
46
47 if node.kind() == "type_declaration" {
49 if let Some(layout) = parse_type_declaration(source, node, arch) {
50 layouts.push(layout);
51 }
52 }
53 }
54 layouts
55}
56
57fn parse_type_declaration(
58 source: &str,
59 node: Node<'_>,
60 arch: &'static ArchConfig,
61) -> Option<StructLayout> {
62 let source_line = node.start_position().row as u32 + 1;
63 for i in 0..node.child_count() {
65 let child = node.child(i)?;
66 if child.kind() == "type_spec" {
67 return parse_type_spec(source, child, arch, source_line);
68 }
69 }
70 None
71}
72
73fn parse_type_spec(
74 source: &str,
75 node: Node<'_>,
76 arch: &'static ArchConfig,
77 source_line: u32,
78) -> Option<StructLayout> {
79 let mut name: Option<String> = None;
80 let mut struct_node: Option<Node> = None;
81
82 for i in 0..node.child_count() {
83 let child = node.child(i)?;
84 match child.kind() {
85 "type_identifier" => name = Some(source[child.byte_range()].to_string()),
86 "struct_type" => struct_node = Some(child),
87 _ => {}
88 }
89 }
90
91 let name = name?;
92 let struct_node = struct_node?;
93 parse_struct_type(source, struct_node, name, arch, source_line)
94}
95
96fn parse_struct_type(
97 source: &str,
98 node: Node<'_>,
99 name: String,
100 arch: &'static ArchConfig,
101 source_line: u32,
102) -> Option<StructLayout> {
103 let mut raw_fields: Vec<(String, String, Option<String>)> = Vec::new();
104
105 for i in 0..node.child_count() {
106 let child = node.child(i)?;
107 if child.kind() == "field_declaration_list" {
108 for j in 0..child.child_count() {
109 let field_node = child.child(j)?;
110 if field_node.kind() == "field_declaration" {
111 collect_field_declarations(source, field_node, &mut raw_fields);
112 }
113 }
114 }
115 }
116
117 if raw_fields.is_empty() {
118 return None;
119 }
120
121 let mut offset = 0usize;
123 let mut struct_align = 1usize;
124 let mut fields: Vec<Field> = Vec::new();
125
126 for (fname, ty_name, guard) in raw_fields {
127 let (size, align) = go_type_size_align(&ty_name, arch);
128 if align > 0 {
129 offset = offset.next_multiple_of(align);
130 }
131 struct_align = struct_align.max(align);
132 let access = if let Some(g) = guard {
133 AccessPattern::Concurrent {
134 guard: Some(g),
135 is_atomic: false,
136 }
137 } else {
138 AccessPattern::Unknown
139 };
140 fields.push(Field {
141 name: fname,
142 ty: TypeInfo::Primitive {
143 name: ty_name,
144 size,
145 align,
146 },
147 offset,
148 size,
149 align,
150 source_file: None,
151 source_line: None,
152 access,
153 });
154 offset += size;
155 }
156 if struct_align > 0 {
157 offset = offset.next_multiple_of(struct_align);
158 }
159
160 Some(StructLayout {
161 name,
162 total_size: offset,
163 align: struct_align,
164 fields,
165 source_file: None,
166 source_line: Some(source_line),
167 arch,
168 is_packed: false,
169 is_union: false,
170 })
171}
172
173pub fn extract_guard_from_go_comment(comment: &str) -> Option<String> {
180 let c = comment.trim();
181 let body = c.strip_prefix("//").map(str::trim)?;
183
184 if let Some(rest) = body.strip_prefix("padlock:guard=") {
186 let guard = rest.trim();
187 if !guard.is_empty() {
188 return Some(guard.to_string());
189 }
190 }
191 if let Some(rest) = body
193 .strip_prefix("guarded_by:")
194 .or_else(|| body.strip_prefix("guarded_by ="))
195 {
196 let guard = rest.trim();
197 if !guard.is_empty() {
198 return Some(guard.to_string());
199 }
200 }
201 if let Some(rest) = body.strip_prefix("+checklocksprotects:") {
203 let guard = rest.trim();
204 if !guard.is_empty() {
205 return Some(guard.to_string());
206 }
207 }
208 None
209}
210
211fn trailing_comment_on_line(source: &str, node: Node<'_>) -> Option<String> {
213 let end = node.end_byte();
216 if end >= source.len() {
217 return None;
218 }
219 let rest = &source[end..];
220 let line = rest.lines().next().unwrap_or("");
222 line.find("//").map(|pos| line[pos..].to_string())
224}
225
226fn collect_field_declarations(
227 source: &str,
228 node: Node<'_>,
229 out: &mut Vec<(String, String, Option<String>)>,
230) {
231 let mut field_names: Vec<String> = Vec::new();
233 let mut ty_text: Option<String> = None;
234
235 for i in 0..node.child_count() {
236 if let Some(child) = node.child(i) {
237 match child.kind() {
238 "field_identifier" => field_names.push(source[child.byte_range()].to_string()),
239 "type_identifier" | "pointer_type" | "qualified_type" | "slice_type"
240 | "map_type" | "channel_type" | "array_type" => {
241 ty_text = Some(source[child.byte_range()].trim().to_string());
242 }
243 _ => {}
244 }
245 }
246 }
247
248 if let Some(ty) = ty_text {
249 let guard =
251 trailing_comment_on_line(source, node).and_then(|c| extract_guard_from_go_comment(&c));
252 for name in field_names {
253 out.push((name, ty.clone(), guard.clone()));
254 }
255 }
256}
257
258pub fn parse_go(source: &str, arch: &'static ArchConfig) -> anyhow::Result<Vec<StructLayout>> {
261 let mut parser = Parser::new();
262 parser.set_language(&tree_sitter_go::language())?;
263 let tree = parser
264 .parse(source, None)
265 .ok_or_else(|| anyhow::anyhow!("tree-sitter-go parse failed"))?;
266 Ok(extract_structs(source, tree.root_node(), arch))
267}
268
269#[cfg(test)]
272mod tests {
273 use super::*;
274 use padlock_core::arch::X86_64_SYSV;
275
276 #[test]
277 fn parse_simple_go_struct() {
278 let src = r#"
279package main
280type Point struct {
281 X int32
282 Y int32
283}
284"#;
285 let layouts = parse_go(src, &X86_64_SYSV).unwrap();
286 assert_eq!(layouts.len(), 1);
287 assert_eq!(layouts[0].name, "Point");
288 assert_eq!(layouts[0].fields.len(), 2);
289 }
290
291 #[test]
292 fn go_layout_with_padding() {
293 let src = "package p\ntype T struct { A bool; B int64 }";
294 let layouts = parse_go(src, &X86_64_SYSV).unwrap();
295 assert_eq!(layouts.len(), 1);
296 let l = &layouts[0];
297 assert_eq!(l.fields[0].offset, 0);
298 assert_eq!(l.fields[1].offset, 8); }
300
301 #[test]
302 fn go_string_is_two_words() {
303 let src = "package p\ntype S struct { Name string }";
304 let layouts = parse_go(src, &X86_64_SYSV).unwrap();
305 assert_eq!(layouts[0].fields[0].size, 16); }
307
308 #[test]
311 fn extract_guard_padlock_form() {
312 assert_eq!(
313 extract_guard_from_go_comment("// padlock:guard=mu"),
314 Some("mu".to_string())
315 );
316 }
317
318 #[test]
319 fn extract_guard_guarded_by_form() {
320 assert_eq!(
321 extract_guard_from_go_comment("// guarded_by: counter_lock"),
322 Some("counter_lock".to_string())
323 );
324 }
325
326 #[test]
327 fn extract_guard_checklocksprotects_form() {
328 assert_eq!(
329 extract_guard_from_go_comment("// +checklocksprotects:mu"),
330 Some("mu".to_string())
331 );
332 }
333
334 #[test]
335 fn extract_guard_no_match_returns_none() {
336 assert!(extract_guard_from_go_comment("// just a comment").is_none());
337 assert!(extract_guard_from_go_comment("// TODO: fix this").is_none());
338 }
339
340 #[test]
341 fn go_struct_padlock_guard_annotation_sets_concurrent() {
342 let src = r#"package p
343type Cache struct {
344 Readers int64 // padlock:guard=mu
345 Writers int64 // padlock:guard=other_mu
346 Mu sync.Mutex
347}
348"#;
349 let layouts = parse_go(src, &X86_64_SYSV).unwrap();
350 let l = &layouts[0];
351 if let AccessPattern::Concurrent { guard, .. } = &l.fields[0].access {
353 assert_eq!(guard.as_deref(), Some("mu"));
354 } else {
355 panic!(
356 "expected Concurrent for Readers, got {:?}",
357 l.fields[0].access
358 );
359 }
360 if let AccessPattern::Concurrent { guard, .. } = &l.fields[1].access {
361 assert_eq!(guard.as_deref(), Some("other_mu"));
362 } else {
363 panic!(
364 "expected Concurrent for Writers, got {:?}",
365 l.fields[1].access
366 );
367 }
368 }
369
370 #[test]
371 fn go_struct_different_guards_same_cache_line_is_false_sharing() {
372 let src = r#"package p
373type HotPath struct {
374 Readers int64 // padlock:guard=lock_a
375 Writers int64 // padlock:guard=lock_b
376}
377"#;
378 let layouts = parse_go(src, &X86_64_SYSV).unwrap();
379 assert!(padlock_core::analysis::false_sharing::has_false_sharing(
380 &layouts[0]
381 ));
382 }
383
384 #[test]
385 fn go_struct_same_guard_is_not_false_sharing() {
386 let src = r#"package p
387type Safe struct {
388 A int64 // padlock:guard=mu
389 B int64 // padlock:guard=mu
390}
391"#;
392 let layouts = parse_go(src, &X86_64_SYSV).unwrap();
393 assert!(!padlock_core::analysis::false_sharing::has_false_sharing(
394 &layouts[0]
395 ));
396 }
397}