1use brokk_bifrost_core::analyzer::Language;
4use brokk_bifrost_core::analyzer::structural::adapter_helpers::{
5 attach_positional_argument_roles, attach_role_with_derived_name, attach_terminal_callee,
6 first_named_child,
7};
8use brokk_bifrost_core::analyzer::structural::callable::{
9 CallKind, CallShapeCoverage, CallSiteContext, CallSiteFacts,
10};
11use brokk_bifrost_core::analyzer::structural::edges::{
12 INVERSE_REFERENCE_EDGE_SUPPORT, ReferenceEdgeSupport,
13};
14use brokk_bifrost_core::analyzer::structural::facts::Span;
15use brokk_bifrost_core::analyzer::structural::kinds::{NormalizedKind, Role};
16use brokk_bifrost_core::analyzer::structural::materialization::{
17 CPP_MATERIALIZATION_SUPPORT, DeclarationMaterializationSupport,
18};
19use brokk_bifrost_core::analyzer::structural::occurrences::{
20 OccurrenceRole, OccurrenceRoleSupport,
21};
22use brokk_bifrost_core::analyzer::structural::resolution::{
23 CALLABLE_APPLICABILITY_ONLY_SUPPORT, LexicalEnvironmentSupport,
24};
25use brokk_bifrost_core::analyzer::structural::routes::{
26 IdentityAxis, IdentityRouteSupport, RouteHopKind,
27};
28use brokk_bifrost_core::analyzer::structural::spec::{RoleSink, StructuralSpec};
29use brokk_bifrost_core::hash::HashSet;
30use tree_sitter::Node;
31
32#[derive(Debug, Default)]
33pub struct CppStructuralSpec;
34
35pub static CPP_STRUCTURAL_SPEC: CppStructuralSpec = CppStructuralSpec;
36
37pub const CPP_KIND_TABLE: &[(&str, NormalizedKind)] = &[
38 ("call_expression", NormalizedKind::Call),
39 ("new_expression", NormalizedKind::Call),
40 ("field_expression", NormalizedKind::FieldAccess),
41 ("function_definition", NormalizedKind::Function),
42 ("lambda_expression", NormalizedKind::Lambda),
43 ("class_specifier", NormalizedKind::Class),
44 ("struct_specifier", NormalizedKind::Class),
45 ("union_specifier", NormalizedKind::Class),
46 ("alias_declaration", NormalizedKind::Declaration),
47 ("assignment_expression", NormalizedKind::Assignment),
48 ("init_declarator", NormalizedKind::Assignment),
49 ("preproc_include", NormalizedKind::Import),
50 ("identifier", NormalizedKind::Identifier),
51 ("field_identifier", NormalizedKind::Identifier),
52 ("namespace_identifier", NormalizedKind::Identifier),
53 ("qualified_identifier", NormalizedKind::Identifier),
54 ("type_identifier", NormalizedKind::Identifier),
55 ("template_function", NormalizedKind::Identifier),
56 ("template_method", NormalizedKind::Identifier),
57 ("template_type", NormalizedKind::Identifier),
58 ("dependent_name", NormalizedKind::Identifier),
59 ("destructor_name", NormalizedKind::Identifier),
60 ("operator_name", NormalizedKind::Identifier),
61 ("primitive_type", NormalizedKind::Identifier),
62 ("char_literal", NormalizedKind::StringLiteral),
63 ("string_literal", NormalizedKind::StringLiteral),
64 ("raw_string_literal", NormalizedKind::StringLiteral),
65 ("number_literal", NormalizedKind::NumericLiteral),
66 ("true", NormalizedKind::BooleanLiteral),
67 ("false", NormalizedKind::BooleanLiteral),
68 ("null", NormalizedKind::NullLiteral),
69 ("return_statement", NormalizedKind::Return),
70 ("throw_statement", NormalizedKind::Throw),
71 ("catch_clause", NormalizedKind::Catch),
72 ("if_statement", NormalizedKind::If),
73 ("for_statement", NormalizedKind::Loop),
74 ("while_statement", NormalizedKind::WhileLoop),
75 ("do_statement", NormalizedKind::WhileLoop),
76];
77
78pub fn is_recovered_designator_init_declarator(node: Node<'_>) -> bool {
86 if node.kind() != "init_declarator" {
87 return false;
88 }
89 let Some(identifier) = node.child_by_field_name("declarator") else {
90 return false;
91 };
92 if identifier.kind() != "identifier" || identifier.is_missing() {
93 return false;
94 }
95 let Some(previous) = node.prev_named_sibling() else {
96 return false;
97 };
98 if previous.kind() != "ERROR"
99 || previous.named_child_count() != 0
100 || previous.child_count() != 1
101 || previous.end_byte() != node.start_byte()
102 {
103 return false;
104 }
105 previous.child(0).is_some_and(|child| {
106 child.kind() == "."
107 && !child.is_named()
108 && child.start_byte() == previous.start_byte()
109 && child.end_byte() == previous.end_byte()
110 })
111}
112
113fn last_named_field_child<'tree>(node: Node<'tree>, field: &str) -> Option<Node<'tree>> {
114 let mut cursor = node.walk();
115 node.children_by_field_name(field, &mut cursor)
116 .filter(|child| child.is_named())
117 .last()
118}
119
120fn declarator_name_node<'tree>(declarator: Node<'tree>) -> Option<Node<'tree>> {
121 let mut current = declarator;
122 loop {
123 match current.kind() {
124 "identifier"
125 | "field_identifier"
126 | "namespace_identifier"
127 | "type_identifier"
128 | "destructor_name"
129 | "operator_name"
130 | "primitive_type" => return Some(current),
131 "qualified_identifier" => current = last_named_field_child(current, "name")?,
132 "dependent_name" | "template_function" | "template_method" | "template_type" => {
133 current = current.child_by_field_name("name")?;
134 }
135 "function_declarator"
136 | "pointer_declarator"
137 | "array_declarator"
138 | "init_declarator" => current = current.child_by_field_name("declarator")?,
139 "reference_declarator" | "parenthesized_declarator" => {
140 current = first_named_child(current)?;
141 }
142 _ => return None,
143 }
144 }
145}
146
147fn expression_name_node<'tree>(expression: Node<'tree>) -> Option<Node<'tree>> {
148 let mut current = expression;
149 loop {
150 match current.kind() {
151 "identifier"
152 | "field_identifier"
153 | "namespace_identifier"
154 | "type_identifier"
155 | "destructor_name"
156 | "operator_name"
157 | "primitive_type"
158 | "this" => return Some(current),
159 "qualified_identifier" => current = last_named_field_child(current, "name")?,
160 "dependent_name" | "template_function" | "template_method" | "template_type" => {
161 current = current.child_by_field_name("name")?;
162 }
163 "field_expression" => current = current.child_by_field_name("field")?,
164 "call_expression" => current = current.child_by_field_name("function")?,
165 "new_expression" => current = current.child_by_field_name("type")?,
166 "parenthesized_expression" => current = first_named_child(current)?,
167 _ => return declarator_name_node(current),
168 }
169 }
170}
171
172fn attach_qualified_scope_receiver(sink: &mut RoleSink<'_>, function: Node<'_>) {
173 if function.kind() != "qualified_identifier" {
174 return;
175 }
176 if let Some(scope) = function.child_by_field_name("scope") {
177 attach_role_with_derived_name(sink, Role::Receiver, scope, expression_name_node);
178 }
179}
180
181fn qualified_declarator_node(mut node: Node<'_>) -> Option<Node<'_>> {
182 loop {
183 if node.kind() == "qualified_identifier" {
184 return Some(node);
185 }
186 node = node
187 .child_by_field_name("declarator")
188 .or_else(|| node.child_by_field_name("name"))
189 .or_else(|| first_named_child(node))?;
190 }
191}
192
193fn node_text<'source>(node: Node<'_>, source: &'source str) -> Option<&'source str> {
194 node.utf8_text(source.as_bytes()).ok()
195}
196
197fn scoped_function_definition(node: Node<'_>) -> Option<Node<'_>> {
198 node.child_by_field_name("declarator")
199 .and_then(qualified_declarator_node)
200 .and_then(|qualified| qualified.child_by_field_name("scope"))
201}
202
203fn is_constructor_definition(node: Node<'_>, source: &str) -> bool {
204 node.child_by_field_name("declarator")
205 .and_then(qualified_declarator_node)
206 .and_then(|qualified| {
207 Some((
208 expression_name_node(qualified.child_by_field_name("scope")?)?,
209 expression_name_node(last_named_field_child(qualified, "name")?)?,
210 ))
211 })
212 .is_some_and(|(scope, name)| node_text(scope, source) == node_text(name, source))
213}
214
215fn unquoted_include_span(node: Node<'_>) -> Option<Span> {
216 if !matches!(node.kind(), "string_literal" | "system_lib_string") {
217 return None;
218 }
219 let start = node.start_byte().checked_add(1)?;
220 let end = node.end_byte().checked_sub(1)?;
221 (start <= end).then_some(Span {
222 start_byte: start,
223 end_byte: end,
224 })
225}
226
227fn function_like_macro_names(root: Node<'_>, source: &str) -> HashSet<String> {
235 let mut names = HashSet::default();
236 let mut stack = vec![root];
237 while let Some(node) = stack.pop() {
238 for index in 0..node.named_child_count() {
239 let Some(child) = node.named_child(index) else {
240 continue;
241 };
242 match child.kind() {
243 "preproc_function_def" => {
244 if let Some(name) = child.child_by_field_name("name") {
245 names.insert(source[name.start_byte()..name.end_byte()].to_owned());
246 }
247 }
248 "preproc_if" | "preproc_ifdef" | "preproc_else" | "preproc_elif"
249 | "preproc_elifdef" => stack.push(child),
250 _ => {}
251 }
252 }
253 }
254 names
255}
256
257fn cpp_member_terminal_name<'tree>(field: Node<'tree>) -> Option<Node<'tree>> {
258 let field = if field.kind() == "dependent_name" {
259 first_named_child(field)?
260 } else {
261 field
262 };
263 expression_name_node(field)
264}
265
266fn cpp_member_position(node: Node<'_>) -> Option<OccurrenceRole> {
276 if !matches!(
277 node.kind(),
278 "identifier" | "field_identifier" | "type_identifier" | "operator_name" | "destructor_name"
279 ) {
280 return None;
281 }
282
283 let mut current = node;
284 while let Some(parent) = current.parent() {
285 if parent.kind() == "field_expression" {
286 let field = parent.child_by_field_name("field")?;
287 return cpp_member_terminal_name(field)
288 .filter(|name| name.id() == node.id())
289 .map(|_| OccurrenceRole::MemberPosition);
290 }
291
292 if matches!(
295 parent.kind(),
296 "qualified_identifier" | "dependent_name" | "template_method" | "destructor_name"
297 ) {
298 current = parent;
299 } else {
300 return None;
301 }
302 }
303 None
304}
305
306impl StructuralSpec for CppStructuralSpec {
307 fn language(&self) -> Language {
308 Language::Cpp
309 }
310
311 fn supports_boolean_literal_value(&self) -> bool {
312 true
313 }
314
315 fn kind_table(&self) -> &'static [(&'static str, NormalizedKind)] {
316 CPP_KIND_TABLE
317 }
318
319 fn refine_kind(
320 &self,
321 node: Node<'_>,
322 kind: NormalizedKind,
323 enclosing: Option<NormalizedKind>,
324 source: &str,
325 _context: &CallSiteContext,
326 ) -> NormalizedKind {
327 if kind == NormalizedKind::Function
328 && (enclosing == Some(NormalizedKind::Class)
329 || scoped_function_definition(node).is_some())
330 {
331 if is_constructor_definition(node, source) {
332 NormalizedKind::Constructor
333 } else {
334 NormalizedKind::Method
335 }
336 } else {
337 kind
338 }
339 }
340
341 fn supports_kind(&self, kind: NormalizedKind) -> bool {
342 matches!(kind, NormalizedKind::Method | NormalizedKind::Constructor)
343 || self
344 .kind_table()
345 .iter()
346 .any(|(_, fact_kind)| fact_kind.satisfies(kind))
347 }
348
349 fn supports_role(&self, role: Role) -> bool {
350 !matches!(role, Role::Kwarg | Role::Decorator)
351 }
352
353 fn call_site_context(&self, root: Node<'_>, source: &str) -> CallSiteContext {
354 CallSiteContext::with_macro_derived_callees(function_like_macro_names(root, source))
355 }
356
357 fn call_site_facts(
370 &self,
371 node: Node<'_>,
372 source: &str,
373 context: &CallSiteContext,
374 ) -> Option<CallSiteFacts> {
375 if node.kind() == "new_expression" {
376 return Some(CallSiteFacts::of_kind(CallKind::Constructor));
377 }
378 let callee = node.child_by_field_name("function")?;
379 (callee.kind() == "identifier"
380 && context.is_macro_derived_callee(&source[callee.start_byte()..callee.end_byte()]))
381 .then(|| CallSiteFacts::of_coverage(CallShapeCoverage::UnknownMacroDerived))
382 }
383
384 fn occurrence_role_support(&self) -> &OccurrenceRoleSupport {
385 static SUPPORT: OccurrenceRoleSupport =
386 OccurrenceRoleSupport::NONE.supported(OccurrenceRole::MemberPosition);
387 &SUPPORT
388 }
389
390 fn lexical_environment_support(&self) -> &LexicalEnvironmentSupport {
391 &CALLABLE_APPLICABILITY_ONLY_SUPPORT
395 }
396
397 fn materialization_support(&self) -> &DeclarationMaterializationSupport {
398 &CPP_MATERIALIZATION_SUPPORT
399 }
400
401 fn reference_edge_support(&self) -> &ReferenceEdgeSupport {
402 &INVERSE_REFERENCE_EDGE_SUPPORT
403 }
404
405 fn identity_route_support(&self) -> &IdentityRouteSupport {
406 static SUPPORT: IdentityRouteSupport = IdentityRouteSupport::NONE
413 .supported_axis(IdentityAxis::CanonicalIdentity)
414 .supported_axis(IdentityAxis::PhysicalGrouping)
415 .supported_relation(RouteHopKind::NestedOwner);
416 &SUPPORT
417 }
418
419 fn extract(&self, node: Node<'_>, kind: NormalizedKind, sink: &mut RoleSink<'_>) {
420 if let Some(role) = cpp_member_position(node) {
421 sink.occurrence_role(node, role);
422 }
423
424 match kind {
425 NormalizedKind::Call => {
426 let function_field = if node.kind() == "new_expression" {
427 "type"
428 } else {
429 "function"
430 };
431 if let Some(function) = node.child_by_field_name(function_field) {
432 attach_terminal_callee(sink, function, expression_name_node(function));
433 if function.kind() == "field_expression"
434 && let Some(argument) = function.child_by_field_name("argument")
435 {
436 attach_role_with_derived_name(
437 sink,
438 Role::Receiver,
439 argument,
440 expression_name_node,
441 );
442 }
443 attach_qualified_scope_receiver(sink, function);
444 }
445 if let Some(arguments) = node.child_by_field_name("arguments") {
446 attach_positional_argument_roles(sink, arguments, expression_name_node);
447 }
448 }
449 NormalizedKind::FieldAccess => {
450 if let Some(field) = node.child_by_field_name("field") {
451 attach_role_with_derived_name(sink, Role::Field, field, expression_name_node);
452 if let Some(name) = expression_name_node(field) {
453 sink.set_name(name);
454 }
455 }
456 if let Some(argument) = node.child_by_field_name("argument") {
457 attach_role_with_derived_name(
458 sink,
459 Role::Object,
460 argument,
461 expression_name_node,
462 );
463 }
464 }
465 NormalizedKind::Function | NormalizedKind::Method | NormalizedKind::Constructor => {
466 if let Some(name) = node
467 .child_by_field_name("declarator")
468 .and_then(declarator_name_node)
469 {
470 sink.set_name(name);
471 }
472 }
473 NormalizedKind::Class | NormalizedKind::Declaration => {
474 if let Some(name) = node
475 .child_by_field_name("name")
476 .and_then(declarator_name_node)
477 .or_else(|| node.child_by_field_name("name"))
478 {
479 sink.set_name(name);
480 }
481 }
482 NormalizedKind::Assignment => match node.kind() {
483 "init_declarator" => {
484 if let Some(declarator) = node.child_by_field_name("declarator") {
485 attach_role_with_derived_name(
486 sink,
487 Role::Left,
488 declarator,
489 declarator_name_node,
490 );
491 if let Some(name) = declarator_name_node(declarator) {
492 sink.set_name(name);
493 }
494 }
495 if let Some(value) = node.child_by_field_name("value") {
496 attach_role_with_derived_name(
497 sink,
498 Role::Right,
499 value,
500 expression_name_node,
501 );
502 }
503 }
504 "assignment_expression" => {
505 if let Some(left) = node.child_by_field_name("left") {
506 attach_role_with_derived_name(sink, Role::Left, left, expression_name_node);
507 }
508 if let Some(right) = node.child_by_field_name("right") {
509 attach_role_with_derived_name(
510 sink,
511 Role::Right,
512 right,
513 expression_name_node,
514 );
515 }
516 }
517 _ => {}
518 },
519 NormalizedKind::Import => {
520 if let Some(path) = node.child_by_field_name("path") {
521 if let Some(name) = unquoted_include_span(path) {
522 sink.role_named_span(Role::Module, path, name);
523 } else {
524 attach_role_with_derived_name(
525 sink,
526 Role::Module,
527 path,
528 expression_name_node,
529 );
530 }
531 }
532 }
533 NormalizedKind::Identifier => match expression_name_node(node) {
534 Some(name) => sink.set_name(name),
535 None => sink.set_name(node),
536 },
537 _ => {}
538 }
539 }
540}
541
542#[cfg(test)]
543mod tests {
544 use super::cpp_member_position;
545 use brokk_bifrost_core::analyzer::structural::occurrences::OccurrenceRole;
546 use brokk_bifrost_core::analyzer::structural::spec::StructuralSpec;
547 use tree_sitter::Parser;
548
549 fn member_occurrences(source: &str) -> Vec<(usize, &str, OccurrenceRole)> {
550 let mut parser = Parser::new();
551 parser
552 .set_language(&tree_sitter_cpp::LANGUAGE.into())
553 .expect("C++ grammar");
554 let tree = parser.parse(source, None).expect("C++ parse");
555 assert!(
556 !tree.root_node().has_error(),
557 "{}",
558 tree.root_node().to_sexp()
559 );
560 let mut found = Vec::new();
561 let mut pending = vec![tree.root_node()];
562 while let Some(node) = pending.pop() {
563 if let Some(role) = cpp_member_position(node) {
564 found.push((
565 node.start_byte(),
566 &source[node.start_byte()..node.end_byte()],
567 role,
568 ));
569 }
570 for index in (0..node.named_child_count()).rev() {
571 if let Some(child) = node.named_child(index) {
572 pending.push(child);
573 }
574 }
575 }
576 found
577 }
578
579 #[test]
580 fn cpp_member_position_is_limited_to_member_access_and_calls() {
581 let source = concat!(
582 "struct Widget {\n",
583 " int value;\n",
584 " int method(int label) {\n",
585 " return this->value + label.value + label.method()\n",
586 " + label.template convert<int>() + label.ns::member;\n",
587 " }\n",
588 "};\n",
589 "int build(Widget widget) {\n",
590 " Widget result{.value = widget.value};\n",
591 " return widget.method(result.value);\n",
592 "}\n",
593 );
594 let found = member_occurrences(source);
595 let member_texts = found
596 .iter()
597 .map(|(_, text, role)| (*text, *role))
598 .collect::<Vec<_>>();
599
600 assert_eq!(
601 member_texts,
602 vec![
603 ("value", OccurrenceRole::MemberPosition),
604 ("value", OccurrenceRole::MemberPosition),
605 ("method", OccurrenceRole::MemberPosition),
606 ("convert", OccurrenceRole::MemberPosition),
607 ("member", OccurrenceRole::MemberPosition),
608 ("value", OccurrenceRole::MemberPosition),
609 ("method", OccurrenceRole::MemberPosition),
610 ("value", OccurrenceRole::MemberPosition),
611 ]
612 );
613
614 let at = |needle: &str| source.find(needle).expect("fixture token");
615 for receiver in ["this->", "label.value", "widget.value", "result.value"] {
616 let receiver_start = at(receiver);
617 assert!(
618 found.iter().all(|(offset, _, _)| *offset != receiver_start),
619 "receiver was classified: {receiver:?}"
620 );
621 }
622 let non_members = [
623 at("Widget {"),
624 at("int value") + "int ".len(),
625 at("int method") + "int ".len(),
626 at(".value =") + 1,
627 ];
628 for unrelated_start in non_members {
629 assert!(
630 found
631 .iter()
632 .all(|(offset, _, _)| *offset != unrelated_start),
633 "non-member identifier at byte {unrelated_start} was classified"
634 );
635 }
636 }
637
638 #[test]
639 fn cpp_member_position_support_declares_only_member_position() {
640 let support = super::CPP_STRUCTURAL_SPEC.occurrence_role_support();
641 assert!(support.is_supported(OccurrenceRole::MemberPosition));
642 for role in [
643 OccurrenceRole::ReceiverPosition,
644 OccurrenceRole::LabelOrKey,
645 OccurrenceRole::DeclarationName,
646 OccurrenceRole::ValueReference,
647 ] {
648 assert!(
649 !support.is_supported(role),
650 "unexpected C++ support for {role:?}"
651 );
652 }
653 }
654}