semantics_parse_tree_handler.cpp 33 KB

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  1. // Part of the Carbon Language project, under the Apache License v2.0 with LLVM
  2. // Exceptions. See /LICENSE for license information.
  3. // SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
  4. #include "toolchain/semantics/semantics_parse_tree_handler.h"
  5. #include <functional>
  6. #include <utility>
  7. #include "common/vlog.h"
  8. #include "llvm/Support/PrettyStackTrace.h"
  9. #include "toolchain/diagnostics/diagnostic_kind.h"
  10. #include "toolchain/lexer/token_kind.h"
  11. #include "toolchain/lexer/tokenized_buffer.h"
  12. #include "toolchain/parser/parse_node_kind.h"
  13. #include "toolchain/semantics/semantics_builtin_kind.h"
  14. #include "toolchain/semantics/semantics_ir.h"
  15. #include "toolchain/semantics/semantics_node.h"
  16. #include "toolchain/semantics/semantics_node_block_stack.h"
  17. namespace Carbon {
  18. CARBON_DIAGNOSTIC(SemanticsTodo, Error, "Semantics TODO: {0}", std::string);
  19. class PrettyStackTraceFunction : public llvm::PrettyStackTraceEntry {
  20. public:
  21. explicit PrettyStackTraceFunction(std::function<void(llvm::raw_ostream&)> fn)
  22. : fn_(std::move(fn)) {}
  23. ~PrettyStackTraceFunction() override = default;
  24. auto print(llvm::raw_ostream& output) const -> void override { fn_(output); }
  25. private:
  26. const std::function<void(llvm::raw_ostream&)> fn_;
  27. };
  28. auto SemanticsParseTreeHandler::Build() -> void {
  29. PrettyStackTraceFunction pretty_node_stack([&](llvm::raw_ostream& output) {
  30. node_stack_.PrintForStackDump(output);
  31. });
  32. PrettyStackTraceFunction pretty_node_block_stack(
  33. [&](llvm::raw_ostream& output) {
  34. node_block_stack_.PrintForStackDump(output);
  35. });
  36. // Add a block for the ParseTree.
  37. node_block_stack_.Push();
  38. PushScope();
  39. // Loops over all nodes in the tree. On some errors, this may return early,
  40. // for example if an unrecoverable state is encountered.
  41. for (auto parse_node : parse_tree_->postorder()) {
  42. switch (auto parse_kind = parse_tree_->node_kind(parse_node)) {
  43. #define CARBON_PARSE_NODE_KIND(Name) \
  44. case ParseNodeKind::Name: { \
  45. if (!Handle##Name(parse_node)) { \
  46. return; \
  47. } \
  48. break; \
  49. }
  50. #include "toolchain/parser/parse_node_kind.def"
  51. }
  52. }
  53. // Pop information for the file-level scope.
  54. node_block_stack_.Pop();
  55. PopScope();
  56. // Information in all the various context objects should be cleaned up as
  57. // various pieces of context go out of scope. At this point, nothing should
  58. // remain.
  59. // node_stack_ will still contain top-level entities.
  60. CARBON_CHECK(name_lookup_.empty()) << name_lookup_.size();
  61. CARBON_CHECK(scope_stack_.empty()) << scope_stack_.size();
  62. CARBON_CHECK(node_block_stack_.empty()) << node_block_stack_.size();
  63. CARBON_CHECK(params_or_args_stack_.empty()) << params_or_args_stack_.size();
  64. }
  65. auto SemanticsParseTreeHandler::AddNode(SemanticsNode node) -> SemanticsNodeId {
  66. auto block = node_block_stack_.PeekForAdd();
  67. CARBON_VLOG() << "AddNode " << block << ": " << node << "\n";
  68. return semantics_->AddNode(block, node);
  69. }
  70. auto SemanticsParseTreeHandler::AddNodeAndPush(ParseTree::Node parse_node,
  71. SemanticsNode node) -> void {
  72. auto node_id = AddNode(node);
  73. node_stack_.Push(parse_node, node_id);
  74. }
  75. auto SemanticsParseTreeHandler::BindName(ParseTree::Node name_node,
  76. SemanticsNodeId type_id,
  77. SemanticsNodeId target_id)
  78. -> SemanticsStringId {
  79. CARBON_CHECK(parse_tree_->node_kind(name_node) == ParseNodeKind::DeclaredName)
  80. << parse_tree_->node_kind(name_node);
  81. auto name_str = parse_tree_->GetNodeText(name_node);
  82. auto name_id = semantics_->AddString(name_str);
  83. AddNode(SemanticsNode::MakeBindName(name_node, type_id, name_id, target_id));
  84. auto [it, inserted] = current_scope().names.insert(name_id);
  85. if (inserted) {
  86. name_lookup_[name_id].push_back(target_id);
  87. } else {
  88. CARBON_DIAGNOSTIC(NameRedefined, Error, "Redefining {0} in the same scope.",
  89. llvm::StringRef);
  90. CARBON_DIAGNOSTIC(PreviousDefinition, Note, "Previous definition is here.");
  91. auto prev_def_id = name_lookup_[name_id].back();
  92. auto prev_def = semantics_->GetNode(prev_def_id);
  93. emitter_->Build(name_node, NameRedefined, name_str)
  94. .Note(prev_def.parse_node(), PreviousDefinition)
  95. .Emit();
  96. }
  97. return name_id;
  98. }
  99. auto SemanticsParseTreeHandler::PushScope() -> void {
  100. scope_stack_.push_back({});
  101. }
  102. auto SemanticsParseTreeHandler::PopScope() -> void {
  103. auto scope = scope_stack_.pop_back_val();
  104. for (const auto& str_id : scope.names) {
  105. auto it = name_lookup_.find(str_id);
  106. if (it->second.size() == 1) {
  107. // Erase names that no longer resolve.
  108. name_lookup_.erase(it);
  109. } else {
  110. it->second.pop_back();
  111. }
  112. }
  113. }
  114. auto SemanticsParseTreeHandler::CanTypeConvert(SemanticsNodeId from_type,
  115. SemanticsNodeId to_type)
  116. -> SemanticsNodeId {
  117. // TODO: This should attempt implicit conversions, but there's not enough
  118. // implemented to do that right now.
  119. if (from_type == SemanticsNodeId::BuiltinInvalidType ||
  120. to_type == SemanticsNodeId::BuiltinInvalidType) {
  121. return SemanticsNodeId::BuiltinInvalidType;
  122. }
  123. if (from_type == to_type) {
  124. return from_type;
  125. }
  126. return SemanticsNodeId::Invalid;
  127. }
  128. auto SemanticsParseTreeHandler::TryTypeConversion(ParseTree::Node parse_node,
  129. SemanticsNodeId lhs_id,
  130. SemanticsNodeId rhs_id,
  131. bool /*can_convert_lhs*/)
  132. -> SemanticsNodeId {
  133. auto lhs_type = semantics_->GetType(lhs_id);
  134. auto rhs_type = semantics_->GetType(rhs_id);
  135. // TODO: CanTypeConvert can be assumed to handle rhs conversions, and we'll
  136. // either want to call it twice or refactor it to be aware of lhs conversions.
  137. auto type = CanTypeConvert(rhs_type, lhs_type);
  138. if (type.is_valid()) {
  139. return type;
  140. }
  141. // TODO: This should use type names instead of nodes.
  142. CARBON_DIAGNOSTIC(TypeMismatch, Error,
  143. "Type mismatch: lhs is {0}, rhs is {1}", SemanticsNodeId,
  144. SemanticsNodeId);
  145. emitter_->Emit(parse_node, TypeMismatch, lhs_type, rhs_type);
  146. return SemanticsNodeId::BuiltinInvalidType;
  147. }
  148. auto SemanticsParseTreeHandler::TryTypeConversionOnArgs(
  149. ParseTree::Node arg_parse_node, SemanticsNodeBlockId /*arg_ir_id*/,
  150. SemanticsNodeBlockId arg_refs_id, ParseTree::Node param_parse_node,
  151. SemanticsNodeBlockId param_refs_id) -> bool {
  152. CARBON_DIAGNOSTIC(NoMatchingCall, Error, "No matching callable was found.");
  153. // If both arguments and parameters are empty, return quickly. Otherwise,
  154. // we'll fetch both so that errors are consistent.
  155. if (arg_refs_id == SemanticsNodeBlockId::Empty &&
  156. param_refs_id == SemanticsNodeBlockId::Empty) {
  157. return true;
  158. }
  159. auto arg_refs = semantics_->GetNodeBlock(arg_refs_id);
  160. auto param_refs = semantics_->GetNodeBlock(param_refs_id);
  161. // If sizes mismatch, fail early.
  162. if (arg_refs.size() != param_refs.size()) {
  163. CARBON_DIAGNOSTIC(CallArgCountMismatch, Note,
  164. "Received {0} argument(s), but require {1} argument(s).",
  165. int, int);
  166. emitter_->Build(arg_parse_node, NoMatchingCall)
  167. .Note(param_parse_node, CallArgCountMismatch, arg_refs.size(),
  168. param_refs.size())
  169. .Emit();
  170. return false;
  171. }
  172. // Check type conversions per-element.
  173. // TODO: arg_ir_id is passed so that implicit conversions can be inserted.
  174. // It's currently not supported, but will be needed.
  175. for (size_t i = 0; i < arg_refs.size(); ++i) {
  176. const auto& arg_ref = arg_refs[i];
  177. auto arg_ref_type = semantics_->GetType(arg_ref);
  178. const auto& param_ref = param_refs[i];
  179. auto param_ref_type = semantics_->GetType(param_ref);
  180. auto result_type = CanTypeConvert(arg_ref_type, param_ref_type);
  181. if (!result_type.is_valid()) {
  182. // TODO: This should use type names instead of nodes.
  183. CARBON_DIAGNOSTIC(
  184. CallArgTypeMismatch, Note,
  185. "Type mismatch: cannot convert argument {0} from {1} to {2}.", size_t,
  186. SemanticsNodeId, SemanticsNodeId);
  187. emitter_->Build(arg_parse_node, NoMatchingCall)
  188. .Note(param_parse_node, CallArgTypeMismatch, i, arg_ref_type,
  189. param_ref_type)
  190. .Emit();
  191. return false;
  192. }
  193. }
  194. return true;
  195. }
  196. auto SemanticsParseTreeHandler::ParamOrArgStart() -> void {
  197. params_or_args_stack_.Push();
  198. node_block_stack_.Push();
  199. }
  200. auto SemanticsParseTreeHandler::ParamOrArgComma(ParseTree::Node parse_node)
  201. -> bool {
  202. node_stack_.Push(parse_node);
  203. // Copy the last node added to the IR block into the params block.
  204. if (!ParamOrArgSave()) {
  205. emitter_->Emit(
  206. parse_node, SemanticsTodo,
  207. "Should have a param before comma, will need error recovery");
  208. return false;
  209. }
  210. return true;
  211. }
  212. auto SemanticsParseTreeHandler::ParamOrArgEnd(
  213. ParseNodeKind start_kind, ParseNodeKind comma_kind,
  214. std::function<bool(SemanticsNodeBlockId, SemanticsNodeBlockId)> on_start)
  215. -> bool {
  216. // If there's a node in the IR block that has yet to be added to the params
  217. // block, add it now.
  218. ParamOrArgSave();
  219. while (true) {
  220. auto parse_kind = parse_tree_->node_kind(node_stack_.PeekParseNode());
  221. if (parse_kind == start_kind) {
  222. return on_start(node_block_stack_.Pop(), params_or_args_stack_.Pop());
  223. } else if (parse_kind == comma_kind) {
  224. node_stack_.PopAndDiscardSoloParseNode(comma_kind);
  225. } else {
  226. node_stack_.PopAndIgnore();
  227. }
  228. }
  229. }
  230. auto SemanticsParseTreeHandler::ParamOrArgSave() -> bool {
  231. // Copy the last node added to the IR block into the params block.
  232. auto ir_id = node_block_stack_.Peek();
  233. if (!ir_id.is_valid()) {
  234. return false;
  235. }
  236. // We get params before ir because it may add a node block, which can
  237. // invalidate the ir reference.
  238. auto& params = semantics_->GetNodeBlock(params_or_args_stack_.PeekForAdd());
  239. auto& ir = semantics_->GetNodeBlock(ir_id);
  240. CARBON_CHECK(!ir.empty())
  241. << "Should only have a valid ID if a node was added";
  242. auto& param = ir.back();
  243. if (!params.empty() && param == params.back()) {
  244. // The param was already added after a comma.
  245. return false;
  246. }
  247. params.push_back(ir.back());
  248. return true;
  249. }
  250. auto SemanticsParseTreeHandler::HandleAddress(ParseTree::Node parse_node)
  251. -> bool {
  252. emitter_->Emit(parse_node, SemanticsTodo, "HandleAddress");
  253. return false;
  254. }
  255. auto SemanticsParseTreeHandler::HandleBreakStatement(ParseTree::Node parse_node)
  256. -> bool {
  257. emitter_->Emit(parse_node, SemanticsTodo, "HandleBreakStatement");
  258. return false;
  259. }
  260. auto SemanticsParseTreeHandler::HandleBreakStatementStart(
  261. ParseTree::Node parse_node) -> bool {
  262. emitter_->Emit(parse_node, SemanticsTodo, "HandleBreakStatementStart");
  263. return false;
  264. }
  265. auto SemanticsParseTreeHandler::HandleCallExpression(ParseTree::Node parse_node)
  266. -> bool {
  267. auto on_start = [&](SemanticsNodeBlockId ir_id,
  268. SemanticsNodeBlockId refs_id) -> bool {
  269. // TODO: Convert to call expression.
  270. auto [call_expr_parse_node, name_id] = node_stack_.PopForParseNodeAndNodeId(
  271. ParseNodeKind::CallExpressionStart);
  272. auto name_node = semantics_->GetNode(name_id);
  273. if (name_node.kind() != SemanticsNodeKind::FunctionDeclaration) {
  274. // TODO: Work on error.
  275. emitter_->Emit(parse_node, SemanticsTodo, "Not a callable name");
  276. node_stack_.Push(parse_node, name_id);
  277. return true;
  278. }
  279. auto callable_id = name_node.GetAsFunctionDeclaration();
  280. auto callable = semantics_->GetCallable(callable_id);
  281. if (!TryTypeConversionOnArgs(call_expr_parse_node, ir_id, refs_id,
  282. name_node.parse_node(),
  283. callable.param_refs_id)) {
  284. node_stack_.Push(parse_node, SemanticsNodeId::BuiltinInvalidType);
  285. return true;
  286. }
  287. auto call_id = semantics_->AddCall({ir_id, refs_id});
  288. // TODO: Propagate return types from callable.
  289. auto call_node_id = AddNode(SemanticsNode::MakeCall(
  290. call_expr_parse_node, SemanticsNodeId::BuiltinEmptyTuple, call_id,
  291. callable_id));
  292. node_stack_.Push(parse_node, call_node_id);
  293. return true;
  294. };
  295. return ParamOrArgEnd(ParseNodeKind::CallExpressionStart,
  296. ParseNodeKind::CallExpressionComma, on_start);
  297. }
  298. auto SemanticsParseTreeHandler::HandleCallExpressionComma(
  299. ParseTree::Node parse_node) -> bool {
  300. return ParamOrArgComma(parse_node);
  301. }
  302. auto SemanticsParseTreeHandler::HandleCallExpressionStart(
  303. ParseTree::Node parse_node) -> bool {
  304. auto name_id = node_stack_.PopForNodeId(ParseNodeKind::NameReference);
  305. node_stack_.Push(parse_node, name_id);
  306. ParamOrArgStart();
  307. return true;
  308. }
  309. auto SemanticsParseTreeHandler::HandleCodeBlock(ParseTree::Node parse_node)
  310. -> bool {
  311. emitter_->Emit(parse_node, SemanticsTodo, "HandleCodeBlock");
  312. return false;
  313. }
  314. auto SemanticsParseTreeHandler::HandleCodeBlockStart(ParseTree::Node parse_node)
  315. -> bool {
  316. emitter_->Emit(parse_node, SemanticsTodo, "HandleCodeBlockStart");
  317. return false;
  318. }
  319. auto SemanticsParseTreeHandler::HandleContinueStatement(
  320. ParseTree::Node parse_node) -> bool {
  321. emitter_->Emit(parse_node, SemanticsTodo, "HandleContinueStatement");
  322. return false;
  323. }
  324. auto SemanticsParseTreeHandler::HandleContinueStatementStart(
  325. ParseTree::Node parse_node) -> bool {
  326. emitter_->Emit(parse_node, SemanticsTodo, "HandleContinueStatementStart");
  327. return false;
  328. }
  329. auto SemanticsParseTreeHandler::HandleDeclaredName(ParseTree::Node parse_node)
  330. -> bool {
  331. // The parent is responsible for binding the name.
  332. node_stack_.Push(parse_node);
  333. return true;
  334. }
  335. auto SemanticsParseTreeHandler::HandleDeducedParameterList(
  336. ParseTree::Node parse_node) -> bool {
  337. emitter_->Emit(parse_node, SemanticsTodo, "HandleDeducedParameterList");
  338. return false;
  339. }
  340. auto SemanticsParseTreeHandler::HandleDeducedParameterListStart(
  341. ParseTree::Node parse_node) -> bool {
  342. emitter_->Emit(parse_node, SemanticsTodo, "HandleDeducedParameterListStart");
  343. return false;
  344. }
  345. auto SemanticsParseTreeHandler::HandleDesignatedName(ParseTree::Node parse_node)
  346. -> bool {
  347. emitter_->Emit(parse_node, SemanticsTodo, "HandleDesignatedName");
  348. return false;
  349. }
  350. auto SemanticsParseTreeHandler::HandleDesignatorExpression(
  351. ParseTree::Node parse_node) -> bool {
  352. emitter_->Emit(parse_node, SemanticsTodo, "HandleDesignatorExpression");
  353. return false;
  354. }
  355. auto SemanticsParseTreeHandler::HandleEmptyDeclaration(
  356. ParseTree::Node parse_node) -> bool {
  357. // Empty declarations have no actions associated, but we still balance the
  358. // tree.
  359. node_stack_.Push(parse_node);
  360. return true;
  361. }
  362. auto SemanticsParseTreeHandler::HandleExpressionStatement(
  363. ParseTree::Node parse_node) -> bool {
  364. // Pop the expression without investigating its contents.
  365. // TODO: This will probably eventually need to do some "do not discard"
  366. // analysis.
  367. node_stack_.PopAndDiscardId();
  368. node_stack_.Push(parse_node);
  369. return true;
  370. }
  371. auto SemanticsParseTreeHandler::HandleFileEnd(ParseTree::Node /*parse_node*/)
  372. -> bool {
  373. // Do nothing, no need to balance this node.
  374. return true;
  375. }
  376. auto SemanticsParseTreeHandler::HandleForHeader(ParseTree::Node parse_node)
  377. -> bool {
  378. emitter_->Emit(parse_node, SemanticsTodo, "HandleForHeader");
  379. return false;
  380. }
  381. auto SemanticsParseTreeHandler::HandleForHeaderStart(ParseTree::Node parse_node)
  382. -> bool {
  383. emitter_->Emit(parse_node, SemanticsTodo, "HandleForHeaderStart");
  384. return false;
  385. }
  386. auto SemanticsParseTreeHandler::HandleForIn(ParseTree::Node parse_node)
  387. -> bool {
  388. emitter_->Emit(parse_node, SemanticsTodo, "HandleForIn");
  389. return false;
  390. }
  391. auto SemanticsParseTreeHandler::HandleForStatement(ParseTree::Node parse_node)
  392. -> bool {
  393. emitter_->Emit(parse_node, SemanticsTodo, "HandleForStatement");
  394. return false;
  395. }
  396. auto SemanticsParseTreeHandler::HandleFunctionDeclaration(
  397. ParseTree::Node parse_node) -> bool {
  398. emitter_->Emit(parse_node, SemanticsTodo, "HandleFunctionDeclaration");
  399. return false;
  400. }
  401. auto SemanticsParseTreeHandler::HandleFunctionDefinition(
  402. ParseTree::Node parse_node) -> bool {
  403. // Merges code block children up under the FunctionDefinitionStart.
  404. while (parse_tree_->node_kind(node_stack_.PeekParseNode()) !=
  405. ParseNodeKind::FunctionDefinitionStart) {
  406. node_stack_.PopAndIgnore();
  407. }
  408. auto decl_id =
  409. node_stack_.PopForNodeId(ParseNodeKind::FunctionDefinitionStart);
  410. return_scope_stack_.pop_back();
  411. PopScope();
  412. auto block_id = node_block_stack_.Pop();
  413. AddNode(SemanticsNode::MakeFunctionDefinition(parse_node, decl_id, block_id));
  414. node_stack_.Push(parse_node);
  415. return true;
  416. }
  417. auto SemanticsParseTreeHandler::HandleFunctionDefinitionStart(
  418. ParseTree::Node parse_node) -> bool {
  419. SemanticsNodeId return_type_id = SemanticsNodeId::Invalid;
  420. if (parse_tree_->node_kind(node_stack_.PeekParseNode()) ==
  421. ParseNodeKind::ReturnType) {
  422. return_type_id = node_stack_.PopForNodeId(ParseNodeKind::ReturnType);
  423. }
  424. node_stack_.PopForSoloParseNode(ParseNodeKind::ParameterList);
  425. auto [param_ir_id, param_refs_id] = finished_params_stack_.pop_back_val();
  426. auto name_node = node_stack_.PopForSoloParseNode(ParseNodeKind::DeclaredName);
  427. auto fn_node =
  428. node_stack_.PopForSoloParseNode(ParseNodeKind::FunctionIntroducer);
  429. auto callable_id =
  430. semantics_->AddCallable({.param_ir_id = param_ir_id,
  431. .param_refs_id = param_refs_id,
  432. .return_type_id = return_type_id});
  433. auto decl_id =
  434. AddNode(SemanticsNode::MakeFunctionDeclaration(fn_node, callable_id));
  435. // TODO: Propagate the type of the function.
  436. BindName(name_node, SemanticsNodeId::Invalid, decl_id);
  437. node_block_stack_.Push();
  438. PushScope();
  439. return_scope_stack_.push_back(decl_id);
  440. node_stack_.Push(parse_node, decl_id);
  441. return true;
  442. }
  443. auto SemanticsParseTreeHandler::HandleFunctionIntroducer(
  444. ParseTree::Node parse_node) -> bool {
  445. // No action, just a bracketing node.
  446. node_stack_.Push(parse_node);
  447. return true;
  448. }
  449. auto SemanticsParseTreeHandler::HandleIfCondition(ParseTree::Node parse_node)
  450. -> bool {
  451. emitter_->Emit(parse_node, SemanticsTodo, "HandleIfCondition");
  452. return false;
  453. }
  454. auto SemanticsParseTreeHandler::HandleIfConditionStart(
  455. ParseTree::Node parse_node) -> bool {
  456. emitter_->Emit(parse_node, SemanticsTodo, "HandleIfConditionStart");
  457. return false;
  458. }
  459. auto SemanticsParseTreeHandler::HandleIfStatement(ParseTree::Node parse_node)
  460. -> bool {
  461. emitter_->Emit(parse_node, SemanticsTodo, "HandleIfStatement");
  462. return false;
  463. }
  464. auto SemanticsParseTreeHandler::HandleIfStatementElse(
  465. ParseTree::Node parse_node) -> bool {
  466. emitter_->Emit(parse_node, SemanticsTodo, "HandleIfStatementElse");
  467. return false;
  468. }
  469. auto SemanticsParseTreeHandler::HandleInfixOperator(ParseTree::Node parse_node)
  470. -> bool {
  471. auto rhs_id = node_stack_.PopForNodeId();
  472. auto lhs_id = node_stack_.PopForNodeId();
  473. SemanticsNodeId result_type =
  474. TryTypeConversion(parse_node, lhs_id, rhs_id, /*can_convert_lhs=*/true);
  475. // Figure out the operator for the token.
  476. auto token = parse_tree_->node_token(parse_node);
  477. switch (auto token_kind = tokens_->GetKind(token)) {
  478. case TokenKind::Plus:
  479. AddNodeAndPush(parse_node, SemanticsNode::MakeBinaryOperatorAdd(
  480. parse_node, result_type, lhs_id, rhs_id));
  481. break;
  482. default:
  483. emitter_->Emit(parse_node, SemanticsTodo,
  484. llvm::formatv("Handle {0}", token_kind));
  485. return false;
  486. }
  487. return true;
  488. }
  489. auto SemanticsParseTreeHandler::HandleInterfaceBody(ParseTree::Node parse_node)
  490. -> bool {
  491. emitter_->Emit(parse_node, SemanticsTodo, "HandleInterfaceBody");
  492. return false;
  493. }
  494. auto SemanticsParseTreeHandler::HandleInterfaceBodyStart(
  495. ParseTree::Node parse_node) -> bool {
  496. emitter_->Emit(parse_node, SemanticsTodo, "HandleInterfaceBodyStart");
  497. return false;
  498. }
  499. auto SemanticsParseTreeHandler::HandleInterfaceDefinition(
  500. ParseTree::Node parse_node) -> bool {
  501. emitter_->Emit(parse_node, SemanticsTodo, "HandleInterfaceDefinition");
  502. return false;
  503. }
  504. auto SemanticsParseTreeHandler::HandleLiteral(ParseTree::Node parse_node)
  505. -> bool {
  506. auto token = parse_tree_->node_token(parse_node);
  507. switch (auto token_kind = tokens_->GetKind(token)) {
  508. case TokenKind::IntegerLiteral: {
  509. auto id =
  510. semantics_->AddIntegerLiteral(tokens_->GetIntegerLiteral(token));
  511. AddNodeAndPush(parse_node,
  512. SemanticsNode::MakeIntegerLiteral(parse_node, id));
  513. break;
  514. }
  515. case TokenKind::RealLiteral: {
  516. auto token_value = tokens_->GetRealLiteral(token);
  517. auto id =
  518. semantics_->AddRealLiteral({.mantissa = token_value.Mantissa(),
  519. .exponent = token_value.Exponent(),
  520. .is_decimal = token_value.IsDecimal()});
  521. AddNodeAndPush(parse_node,
  522. SemanticsNode::MakeRealLiteral(parse_node, id));
  523. break;
  524. }
  525. case TokenKind::StringLiteral: {
  526. auto id = semantics_->AddString(tokens_->GetStringLiteral(token));
  527. AddNodeAndPush(parse_node,
  528. SemanticsNode::MakeStringLiteral(parse_node, id));
  529. break;
  530. }
  531. case TokenKind::IntegerTypeLiteral: {
  532. auto text = tokens_->GetTokenText(token);
  533. if (text != "i32") {
  534. emitter_->Emit(parse_node, SemanticsTodo,
  535. "Currently only i32 is allowed");
  536. return false;
  537. }
  538. node_stack_.Push(parse_node, SemanticsNodeId::BuiltinIntegerType);
  539. break;
  540. }
  541. case TokenKind::FloatingPointTypeLiteral: {
  542. auto text = tokens_->GetTokenText(token);
  543. if (text != "f64") {
  544. emitter_->Emit(parse_node, SemanticsTodo,
  545. "Currently only f64 is allowed");
  546. return false;
  547. }
  548. node_stack_.Push(parse_node, SemanticsNodeId::BuiltinFloatingPointType);
  549. break;
  550. }
  551. case TokenKind::StringTypeLiteral: {
  552. node_stack_.Push(parse_node, SemanticsNodeId::BuiltinStringType);
  553. break;
  554. }
  555. default: {
  556. emitter_->Emit(parse_node, SemanticsTodo,
  557. llvm::formatv("Handle {0}", token_kind));
  558. return false;
  559. }
  560. }
  561. return true;
  562. }
  563. auto SemanticsParseTreeHandler::HandleNameReference(ParseTree::Node parse_node)
  564. -> bool {
  565. auto name_str = parse_tree_->GetNodeText(parse_node);
  566. auto name_not_found = [&] {
  567. CARBON_DIAGNOSTIC(NameNotFound, Error, "Name {0} not found",
  568. llvm::StringRef);
  569. emitter_->Emit(parse_node, NameNotFound, name_str);
  570. node_stack_.Push(parse_node, SemanticsNodeId::BuiltinInvalidType);
  571. };
  572. auto name_id = semantics_->GetString(name_str);
  573. if (!name_id) {
  574. name_not_found();
  575. return true;
  576. }
  577. auto it = name_lookup_.find(*name_id);
  578. if (it == name_lookup_.end()) {
  579. name_not_found();
  580. return true;
  581. }
  582. CARBON_CHECK(!it->second.empty()) << "Should have been erased: " << name_str;
  583. // TODO: Check for ambiguous lookups.
  584. node_stack_.Push(parse_node, it->second.back());
  585. return true;
  586. }
  587. auto SemanticsParseTreeHandler::HandlePackageApi(ParseTree::Node parse_node)
  588. -> bool {
  589. emitter_->Emit(parse_node, SemanticsTodo, "HandlePackageApi");
  590. return false;
  591. }
  592. auto SemanticsParseTreeHandler::HandlePackageDirective(
  593. ParseTree::Node parse_node) -> bool {
  594. emitter_->Emit(parse_node, SemanticsTodo, "HandlePackageDirective");
  595. return false;
  596. }
  597. auto SemanticsParseTreeHandler::HandlePackageImpl(ParseTree::Node parse_node)
  598. -> bool {
  599. emitter_->Emit(parse_node, SemanticsTodo, "HandlePackageImpl");
  600. return false;
  601. }
  602. auto SemanticsParseTreeHandler::HandlePackageIntroducer(
  603. ParseTree::Node parse_node) -> bool {
  604. emitter_->Emit(parse_node, SemanticsTodo, "HandlePackageIntroducer");
  605. return false;
  606. }
  607. auto SemanticsParseTreeHandler::HandlePackageLibrary(ParseTree::Node parse_node)
  608. -> bool {
  609. emitter_->Emit(parse_node, SemanticsTodo, "HandlePackageLibrary");
  610. return false;
  611. }
  612. auto SemanticsParseTreeHandler::HandleParameterList(ParseTree::Node parse_node)
  613. -> bool {
  614. auto on_start = [&](SemanticsNodeBlockId ir_id,
  615. SemanticsNodeBlockId refs_id) -> bool {
  616. PopScope();
  617. node_stack_.PopAndDiscardSoloParseNode(ParseNodeKind::ParameterListStart);
  618. finished_params_stack_.push_back({ir_id, refs_id});
  619. node_stack_.Push(parse_node);
  620. return true;
  621. };
  622. return ParamOrArgEnd(ParseNodeKind::ParameterListStart,
  623. ParseNodeKind::ParameterListComma, on_start);
  624. }
  625. auto SemanticsParseTreeHandler::HandleParameterListComma(
  626. ParseTree::Node parse_node) -> bool {
  627. return ParamOrArgComma(parse_node);
  628. }
  629. auto SemanticsParseTreeHandler::HandleParameterListStart(
  630. ParseTree::Node parse_node) -> bool {
  631. PushScope();
  632. node_stack_.Push(parse_node);
  633. ParamOrArgStart();
  634. return true;
  635. }
  636. auto SemanticsParseTreeHandler::HandleParenExpression(
  637. ParseTree::Node parse_node) -> bool {
  638. emitter_->Emit(parse_node, SemanticsTodo, "HandleParenExpression");
  639. return false;
  640. }
  641. auto SemanticsParseTreeHandler::HandleParenExpressionOrTupleLiteralStart(
  642. ParseTree::Node parse_node) -> bool {
  643. emitter_->Emit(parse_node, SemanticsTodo,
  644. "HandleParenExpressionOrTupleLiteralStart");
  645. return false;
  646. }
  647. auto SemanticsParseTreeHandler::HandlePatternBinding(ParseTree::Node parse_node)
  648. -> bool {
  649. auto type = node_stack_.PopForNodeId();
  650. // Get the name.
  651. auto name_node = node_stack_.PopForSoloParseNode();
  652. // Allocate storage, linked to the name for error locations.
  653. auto storage_id = AddNode(SemanticsNode::MakeVarStorage(name_node, type));
  654. // Bind the name to storage.
  655. auto name_id = BindName(name_node, type, storage_id);
  656. // If this node's result is used, it'll be for either the name or the storage
  657. // address. The storage address can be found through the name, so we push the
  658. // name.
  659. node_stack_.Push(parse_node, name_id);
  660. return true;
  661. }
  662. auto SemanticsParseTreeHandler::HandlePostfixOperator(
  663. ParseTree::Node parse_node) -> bool {
  664. emitter_->Emit(parse_node, SemanticsTodo, "HandlePostfixOperator");
  665. return false;
  666. }
  667. auto SemanticsParseTreeHandler::HandlePrefixOperator(ParseTree::Node parse_node)
  668. -> bool {
  669. emitter_->Emit(parse_node, SemanticsTodo, "HandlePrefixOperator");
  670. return false;
  671. }
  672. auto SemanticsParseTreeHandler::HandleReturnStatement(
  673. ParseTree::Node parse_node) -> bool {
  674. CARBON_CHECK(!return_scope_stack_.empty());
  675. const auto& fn_node = semantics_->GetNode(return_scope_stack_.back());
  676. const auto callable =
  677. semantics_->GetCallable(fn_node.GetAsFunctionDeclaration());
  678. if (parse_tree_->node_kind(node_stack_.PeekParseNode()) ==
  679. ParseNodeKind::ReturnStatementStart) {
  680. node_stack_.PopAndDiscardSoloParseNode(ParseNodeKind::ReturnStatementStart);
  681. if (callable.return_type_id.is_valid()) {
  682. // TODO: Stringify types, add a note pointing at the return
  683. // type's parse node.
  684. CARBON_DIAGNOSTIC(ReturnStatementMissingExpression, Error,
  685. "Must return a {0}.", SemanticsNodeId);
  686. emitter_
  687. ->Build(parse_node, ReturnStatementMissingExpression,
  688. callable.return_type_id)
  689. .Emit();
  690. }
  691. AddNodeAndPush(parse_node, SemanticsNode::MakeReturn(parse_node));
  692. } else {
  693. const auto arg = node_stack_.PopForNodeId();
  694. auto arg_type = semantics_->GetType(arg);
  695. node_stack_.PopAndDiscardSoloParseNode(ParseNodeKind::ReturnStatementStart);
  696. if (!callable.return_type_id.is_valid()) {
  697. CARBON_DIAGNOSTIC(
  698. ReturnStatementDisallowExpression, Error,
  699. "No return expression should be provided in this context.");
  700. CARBON_DIAGNOSTIC(ReturnStatementImplicitNote, Note,
  701. "There was no return type provided.");
  702. emitter_->Build(parse_node, ReturnStatementDisallowExpression)
  703. .Note(fn_node.parse_node(), ReturnStatementImplicitNote)
  704. .Emit();
  705. } else {
  706. const auto new_type = CanTypeConvert(arg_type, callable.return_type_id);
  707. if (!new_type.is_valid()) {
  708. // TODO: Stringify types, add a note pointing at the return
  709. // type's parse node.
  710. CARBON_DIAGNOSTIC(ReturnStatementTypeMismatch, Error,
  711. "Cannot convert {0} to {1}.", SemanticsNodeId,
  712. SemanticsNodeId);
  713. emitter_
  714. ->Build(parse_node, ReturnStatementTypeMismatch, arg_type,
  715. callable.return_type_id)
  716. .Emit();
  717. }
  718. arg_type = new_type;
  719. }
  720. AddNodeAndPush(parse_node, SemanticsNode::MakeReturnExpression(
  721. parse_node, arg_type, arg));
  722. }
  723. return true;
  724. }
  725. auto SemanticsParseTreeHandler::HandleReturnStatementStart(
  726. ParseTree::Node parse_node) -> bool {
  727. // No action, just a bracketing node.
  728. node_stack_.Push(parse_node);
  729. return true;
  730. }
  731. auto SemanticsParseTreeHandler::HandleReturnType(ParseTree::Node parse_node)
  732. -> bool {
  733. // Propagate the type expression.
  734. node_stack_.Push(parse_node, node_stack_.PopForNodeId());
  735. return true;
  736. }
  737. auto SemanticsParseTreeHandler::HandleSelfDeducedParameter(
  738. ParseTree::Node parse_node) -> bool {
  739. emitter_->Emit(parse_node, SemanticsTodo, "HandleSelfDeducedParameter");
  740. return false;
  741. }
  742. auto SemanticsParseTreeHandler::HandleSelfType(ParseTree::Node parse_node)
  743. -> bool {
  744. emitter_->Emit(parse_node, SemanticsTodo, "HandleSelfType");
  745. return false;
  746. }
  747. auto SemanticsParseTreeHandler::HandleStructComma(ParseTree::Node parse_node)
  748. -> bool {
  749. emitter_->Emit(parse_node, SemanticsTodo, "HandleStructComma");
  750. return false;
  751. }
  752. auto SemanticsParseTreeHandler::HandleStructFieldDesignator(
  753. ParseTree::Node parse_node) -> bool {
  754. emitter_->Emit(parse_node, SemanticsTodo, "HandleStructFieldDesignator");
  755. return false;
  756. }
  757. auto SemanticsParseTreeHandler::HandleStructFieldType(
  758. ParseTree::Node parse_node) -> bool {
  759. emitter_->Emit(parse_node, SemanticsTodo, "HandleStructFieldType");
  760. return false;
  761. }
  762. auto SemanticsParseTreeHandler::HandleStructFieldUnknown(
  763. ParseTree::Node parse_node) -> bool {
  764. emitter_->Emit(parse_node, SemanticsTodo, "HandleStructFieldUnknown");
  765. return false;
  766. }
  767. auto SemanticsParseTreeHandler::HandleStructFieldValue(
  768. ParseTree::Node parse_node) -> bool {
  769. emitter_->Emit(parse_node, SemanticsTodo, "HandleStructFieldValue");
  770. return false;
  771. }
  772. auto SemanticsParseTreeHandler::HandleStructLiteral(ParseTree::Node parse_node)
  773. -> bool {
  774. emitter_->Emit(parse_node, SemanticsTodo, "HandleStructLiteral");
  775. return false;
  776. }
  777. auto SemanticsParseTreeHandler::HandleStructLiteralOrStructTypeLiteralStart(
  778. ParseTree::Node parse_node) -> bool {
  779. emitter_->Emit(parse_node, SemanticsTodo,
  780. "HandleStructLiteralOrStructTypeLiteralStart");
  781. return false;
  782. }
  783. auto SemanticsParseTreeHandler::HandleStructTypeLiteral(
  784. ParseTree::Node parse_node) -> bool {
  785. emitter_->Emit(parse_node, SemanticsTodo, "HandleStructTypeLiteral");
  786. return false;
  787. }
  788. auto SemanticsParseTreeHandler::HandleTupleLiteral(ParseTree::Node parse_node)
  789. -> bool {
  790. emitter_->Emit(parse_node, SemanticsTodo, "HandleTupleLiteral");
  791. return false;
  792. }
  793. auto SemanticsParseTreeHandler::HandleTupleLiteralComma(
  794. ParseTree::Node parse_node) -> bool {
  795. emitter_->Emit(parse_node, SemanticsTodo, "HandleTupleLiteralComma");
  796. return false;
  797. }
  798. auto SemanticsParseTreeHandler::HandleVariableDeclaration(
  799. ParseTree::Node parse_node) -> bool {
  800. auto last_child = node_stack_.PopForParseNodeAndNodeId();
  801. if (parse_tree_->node_kind(last_child.first) !=
  802. ParseNodeKind::PatternBinding) {
  803. auto storage_id =
  804. node_stack_.PopForNodeId(ParseNodeKind::VariableInitializer);
  805. auto binding = node_stack_.PopForParseNodeAndNameId();
  806. // Restore the name now that the initializer is complete.
  807. AddNameToLookup(binding.second, storage_id);
  808. auto storage_type =
  809. TryTypeConversion(parse_node, storage_id, last_child.second,
  810. /*can_convert_lhs=*/false);
  811. AddNode(SemanticsNode::MakeAssign(parse_node, storage_type, storage_id,
  812. last_child.second));
  813. }
  814. node_stack_.PopAndDiscardSoloParseNode(ParseNodeKind::VariableIntroducer);
  815. node_stack_.Push(parse_node);
  816. return true;
  817. }
  818. auto SemanticsParseTreeHandler::HandleVariableIntroducer(
  819. ParseTree::Node parse_node) -> bool {
  820. // No action, just a bracketing node.
  821. node_stack_.Push(parse_node);
  822. return true;
  823. }
  824. auto SemanticsParseTreeHandler::HandleVariableInitializer(
  825. ParseTree::Node parse_node) -> bool {
  826. // Temporarily remove name lookup entries added by the `var`. These will be
  827. // restored by `VariableDeclaration`.
  828. // Save the storage ID.
  829. auto it = name_lookup_.find(node_stack_.PeekForNameId());
  830. CARBON_CHECK(it != name_lookup_.end());
  831. CARBON_CHECK(!it->second.empty());
  832. auto storage_id = it->second.back();
  833. // Pop the name from lookup.
  834. if (it->second.size() == 1) {
  835. // Erase names that no longer resolve.
  836. name_lookup_.erase(it);
  837. } else {
  838. it->second.pop_back();
  839. }
  840. node_stack_.Push(parse_node, storage_id);
  841. return true;
  842. }
  843. auto SemanticsParseTreeHandler::HandleWhileCondition(ParseTree::Node parse_node)
  844. -> bool {
  845. emitter_->Emit(parse_node, SemanticsTodo, "HandleWhileCondition");
  846. return false;
  847. }
  848. auto SemanticsParseTreeHandler::HandleWhileConditionStart(
  849. ParseTree::Node parse_node) -> bool {
  850. emitter_->Emit(parse_node, SemanticsTodo, "HandleWhileConditionStart");
  851. return false;
  852. }
  853. auto SemanticsParseTreeHandler::HandleWhileStatement(ParseTree::Node parse_node)
  854. -> bool {
  855. emitter_->Emit(parse_node, SemanticsTodo, "HandleWhileStatement");
  856. return false;
  857. }
  858. } // namespace Carbon