file_context.cpp 45 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/lower/file_context.h"
  5. #include <memory>
  6. #include <optional>
  7. #include <string>
  8. #include <utility>
  9. #include "clang/CodeGen/ModuleBuilder.h"
  10. #include "common/check.h"
  11. #include "common/pretty_stack_trace_function.h"
  12. #include "common/vlog.h"
  13. #include "llvm/ADT/STLExtras.h"
  14. #include "llvm/ADT/Sequence.h"
  15. #include "llvm/Linker/Linker.h"
  16. #include "llvm/Transforms/Utils/BasicBlockUtils.h"
  17. #include "llvm/Transforms/Utils/ModuleUtils.h"
  18. #include "toolchain/base/kind_switch.h"
  19. #include "toolchain/lower/clang_global_decl.h"
  20. #include "toolchain/lower/constant.h"
  21. #include "toolchain/lower/function_context.h"
  22. #include "toolchain/lower/mangler.h"
  23. #include "toolchain/lower/options.h"
  24. #include "toolchain/lower/specific_coalescer.h"
  25. #include "toolchain/sem_ir/absolute_node_id.h"
  26. #include "toolchain/sem_ir/diagnostic_loc_converter.h"
  27. #include "toolchain/sem_ir/entry_point.h"
  28. #include "toolchain/sem_ir/expr_info.h"
  29. #include "toolchain/sem_ir/file.h"
  30. #include "toolchain/sem_ir/function.h"
  31. #include "toolchain/sem_ir/generic.h"
  32. #include "toolchain/sem_ir/ids.h"
  33. #include "toolchain/sem_ir/inst.h"
  34. #include "toolchain/sem_ir/inst_categories.h"
  35. #include "toolchain/sem_ir/inst_kind.h"
  36. #include "toolchain/sem_ir/pattern.h"
  37. #include "toolchain/sem_ir/stringify.h"
  38. #include "toolchain/sem_ir/typed_insts.h"
  39. namespace Carbon::Lower {
  40. FileContext::FileContext(Context& context, const SemIR::File& sem_ir,
  41. const SemIR::InstNamer* inst_namer,
  42. llvm::raw_ostream* vlog_stream)
  43. : context_(&context),
  44. sem_ir_(&sem_ir),
  45. inst_namer_(inst_namer),
  46. vlog_stream_(vlog_stream),
  47. functions_(LoweredFunctionStore::MakeForOverwrite(sem_ir.functions())),
  48. specific_functions_(sem_ir.specifics(), nullptr),
  49. types_(LoweredTypeStore::MakeWithExplicitSize(sem_ir.insts().GetIdTag(),
  50. sem_ir.insts().size(),
  51. {nullptr, nullptr})),
  52. constants_(LoweredConstantStore::MakeWithExplicitSize(
  53. sem_ir.insts().GetIdTag(), sem_ir.insts().size(), nullptr)),
  54. lowered_specifics_(sem_ir.generics(),
  55. llvm::SmallVector<SemIR::SpecificId>()),
  56. coalescer_(vlog_stream_, sem_ir.specifics()),
  57. vtables_(decltype(vtables_)::MakeForOverwrite(sem_ir.vtables())),
  58. specific_vtables_(sem_ir.specifics(), nullptr) {
  59. // Initialization that relies on invariants of the class.
  60. cpp_code_generator_ = CreateCppCodeGenerator();
  61. CARBON_CHECK(!sem_ir.has_errors(),
  62. "Generating LLVM IR from invalid SemIR::File is unsupported.");
  63. }
  64. // TODO: Move this to lower.cpp.
  65. auto FileContext::PrepareToLower() -> void {
  66. if (cpp_code_generator_) {
  67. // Clang code generation should not actually modify the AST, but isn't
  68. // const-correct.
  69. cpp_code_generator_->Initialize(
  70. const_cast<clang::ASTContext&>(cpp_file()->ast_context()));
  71. // Emit any top-level declarations now.
  72. cpp_file()->VisitLocalTopLevelDecls([&](const clang::Decl* decl) {
  73. // CodeGenerator won't modify the declaration it's given, but we can
  74. // only call it via the ASTConsumer interface which doesn't know that.
  75. auto* non_const_decl = const_cast<clang::Decl*>(decl);
  76. cpp_code_generator_->HandleTopLevelDecl(
  77. clang::DeclGroupRef(non_const_decl));
  78. });
  79. }
  80. // Lower all types that were required to be complete.
  81. for (auto type_id : sem_ir_->types().complete_types()) {
  82. if (type_id.index >= 0) {
  83. types_.Set(type_id, BuildType(sem_ir_->types().GetInstId(type_id)));
  84. }
  85. }
  86. // Lower function declarations.
  87. for (auto [id, _] : sem_ir_->functions().enumerate()) {
  88. functions_.Set(id, BuildFunctionDecl(id));
  89. }
  90. // TODO: Split vtable declaration creation from definition creation to avoid
  91. // redundant vtable definitions for imported vtables.
  92. for (const auto& [id, vtable] : sem_ir_->vtables().enumerate()) {
  93. const auto& class_info = sem_ir().classes().Get(vtable.class_id);
  94. // Vtables can't be generated for generics, only for their specifics - and
  95. // must be done lazily based on the use of those specifics.
  96. if (!class_info.generic_id.has_value()) {
  97. vtables_.Set(id, BuildVtable(vtable, SemIR::SpecificId::None));
  98. }
  99. }
  100. // Lower constants.
  101. LowerConstants(*this, constants_);
  102. }
  103. // TODO: Move this to lower.cpp.
  104. auto FileContext::LowerDefinitions() -> void {
  105. // Lower global variable definitions.
  106. // TODO: Storing both a `constants_` array and a separate `global_variables_`
  107. // map is redundant.
  108. for (auto inst_id :
  109. sem_ir().inst_blocks().Get(sem_ir().top_inst_block_id())) {
  110. // Only `VarStorage` indicates a global variable declaration in the
  111. // top instruction block.
  112. if (auto var = sem_ir().insts().TryGetAs<SemIR::VarStorage>(inst_id)) {
  113. // Get the global variable declaration. We created this when lowering the
  114. // constant unless the variable is unnamed, in which case we need to
  115. // create it now.
  116. llvm::GlobalVariable* llvm_var = nullptr;
  117. if (auto const_id = sem_ir().constant_values().Get(inst_id);
  118. const_id.is_constant()) {
  119. llvm_var = cast<llvm::GlobalVariable>(GetConstant(const_id, inst_id));
  120. } else {
  121. llvm_var = BuildGlobalVariableDecl(*var);
  122. }
  123. // Convert the declaration of this variable into a definition by adding an
  124. // initializer.
  125. global_variables_.Insert(inst_id, llvm_var);
  126. llvm_var->setInitializer(
  127. llvm::Constant::getNullValue(llvm_var->getValueType()));
  128. }
  129. }
  130. // Lower function definitions.
  131. for (auto [id, fn_info] : sem_ir_->functions().enumerate()) {
  132. // If we created a declaration and the function definition is not imported,
  133. // build a definition.
  134. if (functions_.Get(id) && fn_info.definition_id.has_value() &&
  135. !sem_ir().insts().GetImportSource(fn_info.definition_id).has_value()) {
  136. BuildFunctionDefinition(id);
  137. }
  138. }
  139. // Append `__global_init` to `llvm::global_ctors` to initialize global
  140. // variables.
  141. if (auto global_ctor_id = sem_ir().global_ctor_id();
  142. global_ctor_id.has_value()) {
  143. const auto& global_ctor = sem_ir().functions().Get(global_ctor_id);
  144. BuildFunctionBody(global_ctor_id, SemIR::SpecificId::None, global_ctor,
  145. *this, global_ctor);
  146. llvm::appendToGlobalCtors(llvm_module(),
  147. GetFunction(sem_ir().global_ctor_id()),
  148. /*Priority=*/0);
  149. }
  150. }
  151. auto FileContext::Finalize() -> void {
  152. if (cpp_code_generator_) {
  153. // Clang code generation should not actually modify the AST, but isn't
  154. // const-correct.
  155. cpp_code_generator_->HandleTranslationUnit(
  156. const_cast<clang::ASTContext&>(cpp_file()->ast_context()));
  157. bool link_error = llvm::Linker::linkModules(
  158. /*Dest=*/llvm_module(),
  159. /*Src=*/std::unique_ptr<llvm::Module>(
  160. cpp_code_generator_->ReleaseModule()));
  161. CARBON_CHECK(!link_error);
  162. }
  163. // Find equivalent specifics (from the same generic), replace all uses and
  164. // remove duplicately lowered function definitions.
  165. coalescer_.CoalesceEquivalentSpecifics(lowered_specifics_,
  166. specific_functions_);
  167. }
  168. auto FileContext::CreateCppCodeGenerator()
  169. -> std::unique_ptr<clang::CodeGenerator> {
  170. if (!cpp_file()) {
  171. return nullptr;
  172. }
  173. RawStringOstream clang_module_name_stream;
  174. clang_module_name_stream << llvm_module().getName() << ".clang";
  175. // Do not emit Clang's name and version as the creator of the output file.
  176. cpp_code_gen_options_.EmitVersionIdentMetadata = false;
  177. return std::unique_ptr<clang::CodeGenerator>(clang::CreateLLVMCodeGen(
  178. cpp_file()->diagnostics(), clang_module_name_stream.TakeStr(),
  179. context().file_system(), cpp_header_search_options_,
  180. cpp_preprocessor_options_, cpp_code_gen_options_, llvm_context()));
  181. }
  182. auto FileContext::GetConstant(SemIR::ConstantId const_id,
  183. SemIR::InstId use_inst_id) -> llvm::Value* {
  184. auto const_inst_id = sem_ir().constant_values().GetInstId(const_id);
  185. auto* const_value = constants_.Get(const_inst_id);
  186. // For value expressions and initializing expressions, the value produced by
  187. // a constant instruction is a value representation of the constant. For
  188. // initializing expressions, `FinishInit` will perform a copy if needed.
  189. switch (auto cat = SemIR::GetExprCategory(sem_ir(), const_inst_id)) {
  190. case SemIR::ExprCategory::Value:
  191. case SemIR::ExprCategory::Initializing:
  192. break;
  193. case SemIR::ExprCategory::DurableRef:
  194. case SemIR::ExprCategory::EphemeralRef:
  195. // Constant reference expressions lower to an address.
  196. return const_value;
  197. case SemIR::ExprCategory::NotExpr:
  198. case SemIR::ExprCategory::Error:
  199. case SemIR::ExprCategory::Pattern:
  200. case SemIR::ExprCategory::Mixed:
  201. CARBON_FATAL("Unexpected category {0} for lowered constant {1}", cat,
  202. sem_ir().insts().Get(const_inst_id));
  203. };
  204. auto value_rep = SemIR::ValueRepr::ForType(
  205. sem_ir(), sem_ir().insts().Get(const_inst_id).type_id());
  206. if (value_rep.kind != SemIR::ValueRepr::Pointer) {
  207. return const_value;
  208. }
  209. // The value representation is a pointer. Generate a variable to hold the
  210. // value, or find and reuse an existing one.
  211. if (auto result = global_variables().Lookup(const_inst_id)) {
  212. return result.value();
  213. }
  214. // Include both the name of the constant, if any, and the point of use in
  215. // the name of the variable.
  216. llvm::StringRef const_name;
  217. llvm::StringRef use_name;
  218. if (inst_namer_) {
  219. const_name = inst_namer_->GetUnscopedNameFor(const_inst_id);
  220. if (use_inst_id.has_value()) {
  221. use_name = inst_namer_->GetUnscopedNameFor(use_inst_id);
  222. }
  223. }
  224. // We always need to give the global a name even if the instruction namer
  225. // doesn't have one to use.
  226. if (const_name.empty()) {
  227. const_name = "const";
  228. }
  229. if (use_name.empty()) {
  230. use_name = "anon";
  231. }
  232. llvm::StringRef sep = (use_name[0] == '.') ? "" : ".";
  233. auto* global_variable = new llvm::GlobalVariable(
  234. llvm_module(), GetType(sem_ir().GetPointeeType(value_rep.type_id)),
  235. /*isConstant=*/true, llvm::GlobalVariable::InternalLinkage, const_value,
  236. const_name + sep + use_name);
  237. global_variables_.Insert(const_inst_id, global_variable);
  238. return global_variable;
  239. }
  240. auto FileContext::GetOrCreateFunction(SemIR::FunctionId function_id,
  241. SemIR::SpecificId specific_id)
  242. -> llvm::Function* {
  243. // If we have already lowered a declaration of this function, just return it.
  244. auto** result = GetFunctionAddr(function_id, specific_id);
  245. if (!*result) {
  246. *result = BuildFunctionDecl(function_id, specific_id);
  247. }
  248. return *result;
  249. }
  250. auto FileContext::BuildFunctionTypeInfo(const SemIR::Function& function,
  251. SemIR::SpecificId specific_id)
  252. -> FunctionTypeInfo {
  253. const auto return_info =
  254. SemIR::ReturnTypeInfo::ForFunction(sem_ir(), function, specific_id);
  255. if (!return_info.is_valid()) {
  256. // The return type has not been completed, create a trivial type instead.
  257. return {.type =
  258. llvm::FunctionType::get(llvm::Type::getVoidTy(llvm_context()),
  259. /*isVarArg=*/false)};
  260. }
  261. auto get_llvm_type = [&](SemIR::TypeId type_id) -> llvm::Type* {
  262. if (!type_id.has_value()) {
  263. return nullptr;
  264. }
  265. return GetType(type_id);
  266. };
  267. // TODO: expose the `Call` parameter patterns in `Function`, and use them here
  268. // instead of reconstructing them via the syntactic parameter lists.
  269. auto implicit_param_patterns =
  270. sem_ir().inst_blocks().GetOrEmpty(function.implicit_param_patterns_id);
  271. auto param_patterns =
  272. sem_ir().inst_blocks().GetOrEmpty(function.param_patterns_id);
  273. auto* return_type = get_llvm_type(return_info.type_id);
  274. llvm::SmallVector<llvm::Type*> param_types;
  275. // Compute the return type to use for the LLVM function. If the initializing
  276. // representation doesn't produce a value, set the return type to void.
  277. // TODO: For the `Run` entry point, remap return type to i32 if it doesn't
  278. // return a value.
  279. llvm::Type* function_return_type =
  280. (return_info.is_valid() &&
  281. return_info.init_repr.kind == SemIR::InitRepr::ByCopy)
  282. ? return_type
  283. : llvm::Type::getVoidTy(llvm_context());
  284. // TODO: Consider either storing `param_inst_ids` somewhere so that we can
  285. // reuse it from `BuildFunctionDefinition` and when building calls, or factor
  286. // out a mechanism to compute the mapping between parameters and arguments on
  287. // demand.
  288. llvm::SmallVector<SemIR::InstId> param_inst_ids;
  289. auto max_llvm_params = (return_info.has_return_slot() ? 1 : 0) +
  290. implicit_param_patterns.size() + param_patterns.size();
  291. param_types.reserve(max_llvm_params);
  292. param_inst_ids.reserve(max_llvm_params);
  293. auto return_param_id = SemIR::InstId::None;
  294. if (return_info.has_return_slot()) {
  295. param_types.push_back(
  296. llvm::PointerType::get(llvm_context(), /*AddressSpace=*/0));
  297. return_param_id = function.return_slot_pattern_id;
  298. param_inst_ids.push_back(return_param_id);
  299. }
  300. for (auto param_pattern_id : llvm::concat<const SemIR::InstId>(
  301. implicit_param_patterns, param_patterns)) {
  302. // TODO: Handle a general pattern here, rather than assuming that each
  303. // parameter pattern contains at most one binding.
  304. auto param_pattern_info = SemIR::Function::GetParamPatternInfoFromPatternId(
  305. sem_ir(), param_pattern_id);
  306. if (!param_pattern_info) {
  307. continue;
  308. }
  309. // TODO: Use a more general mechanism to determine if the binding is a
  310. // reference binding.
  311. if (param_pattern_info->inst.kind == SemIR::RefParamPattern::Kind ||
  312. param_pattern_info->inst.kind == SemIR::VarParamPattern::Kind) {
  313. param_types.push_back(
  314. llvm::PointerType::get(llvm_context(), /*AddressSpace=*/0));
  315. param_inst_ids.push_back(param_pattern_id);
  316. continue;
  317. }
  318. auto param_type_id = ExtractScrutineeType(
  319. sem_ir(), SemIR::GetTypeOfInstInSpecific(sem_ir(), specific_id,
  320. param_pattern_info->inst_id));
  321. CARBON_CHECK(
  322. !param_type_id.AsConstantId().is_symbolic(),
  323. "Found symbolic type id after resolution when lowering type {0}.",
  324. param_pattern_info->inst.type_id);
  325. switch (auto value_rep = SemIR::ValueRepr::ForType(sem_ir(), param_type_id);
  326. value_rep.kind) {
  327. case SemIR::ValueRepr::Unknown:
  328. // This parameter type is incomplete. Fallback to describing the
  329. // function type as `void()`.
  330. return {.type = llvm::FunctionType::get(
  331. llvm::Type::getVoidTy(llvm_context()),
  332. /*isVarArg=*/false)};
  333. case SemIR::ValueRepr::Dependent:
  334. CARBON_FATAL("Lowering function with dependent parameter type");
  335. case SemIR::ValueRepr::None:
  336. break;
  337. case SemIR::ValueRepr::Copy:
  338. case SemIR::ValueRepr::Custom:
  339. case SemIR::ValueRepr::Pointer:
  340. auto* param_types_to_add = get_llvm_type(value_rep.type_id);
  341. param_types.push_back(param_types_to_add);
  342. param_inst_ids.push_back(param_pattern_id);
  343. break;
  344. }
  345. }
  346. return {.type = llvm::FunctionType::get(function_return_type, param_types,
  347. /*isVarArg=*/false),
  348. .param_inst_ids = std::move(param_inst_ids),
  349. .return_type = return_type,
  350. .return_param_id = return_param_id};
  351. }
  352. auto FileContext::HandleReferencedCppFunction(clang::FunctionDecl* cpp_decl)
  353. -> void {
  354. clang::FunctionDecl* cpp_def = cpp_decl->getDefinition();
  355. if (!cpp_def) {
  356. return;
  357. }
  358. // Create the LLVM function (`CodeGenModule::GetOrCreateLLVMFunction()`)
  359. // so that code generation (`CodeGenModule::EmitGlobal()`) would see this
  360. // function name (`CodeGenModule::getMangledName()`), and will generate
  361. // its definition.
  362. llvm::Constant* function_address =
  363. cpp_code_generator_->GetAddrOfGlobal(CreateGlobalDecl(cpp_def),
  364. /*isForDefinition=*/false);
  365. CARBON_CHECK(function_address);
  366. }
  367. auto FileContext::HandleReferencedSpecificFunction(
  368. SemIR::FunctionId function_id, SemIR::SpecificId specific_id,
  369. llvm::Type* llvm_type) -> void {
  370. CARBON_CHECK(specific_id.has_value());
  371. // Add this specific function to a list of specific functions whose
  372. // definitions we need to emit.
  373. // TODO: Don't do this if we know this function is emitted as a
  374. // non-discardable symbol in the IR for some other file.
  375. context().AddPendingSpecificFunctionDefinition({.context = this,
  376. .function_id = function_id,
  377. .specific_id = specific_id});
  378. // Create a unique fingerprint for the function type.
  379. // For now, we compute the function type fingerprint only for specifics,
  380. // though we might need it for all functions in order to create a canonical
  381. // fingerprint across translation units.
  382. coalescer_.CreateTypeFingerprint(specific_id, llvm_type);
  383. }
  384. auto FileContext::BuildFunctionDecl(SemIR::FunctionId function_id,
  385. SemIR::SpecificId specific_id)
  386. -> llvm::Function* {
  387. const auto& function = sem_ir().functions().Get(function_id);
  388. // Don't lower generic functions. Note that associated functions in interfaces
  389. // have `Self` in scope, so are implicitly generic functions.
  390. if (function.generic_id.has_value() && !specific_id.has_value()) {
  391. return nullptr;
  392. }
  393. // Don't lower builtins.
  394. if (function.builtin_function_kind() != SemIR::BuiltinFunctionKind::None) {
  395. return nullptr;
  396. }
  397. // Don't lower C++ functions that use a thunk. We will never reference them
  398. // directly, and their signatures would not be expected to match the
  399. // corresponding C++ function anyway.
  400. if (function.special_function_kind ==
  401. SemIR::Function::SpecialFunctionKind::HasCppThunk) {
  402. return nullptr;
  403. }
  404. // TODO: Consider tracking whether the function has been used, and only
  405. // lowering it if it's needed.
  406. auto function_type_info = BuildFunctionTypeInfo(function, specific_id);
  407. // TODO: For an imported inline function, consider generating an
  408. // `available_externally` definition.
  409. auto linkage = specific_id.has_value() ? llvm::Function::LinkOnceODRLinkage
  410. : llvm::Function::ExternalLinkage;
  411. Mangler m(*this);
  412. std::string mangled_name = m.Mangle(function_id, specific_id);
  413. if (auto* existing = llvm_module().getFunction(mangled_name)) {
  414. // We might have already lowered this function while lowering a different
  415. // file. That's OK.
  416. // TODO: Check-fail or maybe diagnose if the two LLVM functions are not
  417. // produced by declarations of the same Carbon function. Name collisions
  418. // between non-private members of the same library should have been
  419. // diagnosed by check if detected, but it's not clear that check will always
  420. // be able to see this problem. In theory, name collisions could also occur
  421. // due to fingerprint collision.
  422. return existing;
  423. }
  424. // If this is a C++ function, tell Clang that we referenced it.
  425. if (auto clang_decl_id = sem_ir().functions().Get(function_id).clang_decl_id;
  426. clang_decl_id.has_value()) {
  427. CARBON_CHECK(!specific_id.has_value(),
  428. "Specific functions cannot have C++ definitions");
  429. HandleReferencedCppFunction(
  430. sem_ir().clang_decls().Get(clang_decl_id).key.decl->getAsFunction());
  431. // TODO: Check that the signature and mangling generated by Clang and the
  432. // one we generated are the same.
  433. }
  434. // If this is a specific function, we may need to do additional work to emit
  435. // its definition.
  436. if (specific_id.has_value()) {
  437. HandleReferencedSpecificFunction(function_id, specific_id,
  438. function_type_info.type);
  439. }
  440. auto* llvm_function = llvm::Function::Create(function_type_info.type, linkage,
  441. mangled_name, llvm_module());
  442. CARBON_CHECK(llvm_function->getName() == mangled_name,
  443. "Mangled name collision: {0}", mangled_name);
  444. // Set up parameters and the return slot.
  445. for (auto [inst_id, arg] : llvm::zip_equal(function_type_info.param_inst_ids,
  446. llvm_function->args())) {
  447. auto name_id = SemIR::NameId::None;
  448. if (inst_id == function_type_info.return_param_id) {
  449. name_id = SemIR::NameId::ReturnSlot;
  450. arg.addAttr(llvm::Attribute::getWithStructRetType(
  451. llvm_context(), function_type_info.return_type));
  452. } else {
  453. name_id = SemIR::GetPrettyNameFromPatternId(sem_ir(), inst_id);
  454. }
  455. arg.setName(sem_ir().names().GetIRBaseName(name_id));
  456. }
  457. return llvm_function;
  458. }
  459. // Find the file and function ID describing the definition of a function.
  460. static auto GetFunctionDefinition(const SemIR::File* decl_ir,
  461. SemIR::FunctionId function_id)
  462. -> std::pair<const SemIR::File*, SemIR::FunctionId> {
  463. // Find the file containing the definition.
  464. auto decl_id = decl_ir->functions().Get(function_id).definition_id;
  465. if (!decl_id.has_value()) {
  466. // Function is not defined.
  467. return {nullptr, SemIR::FunctionId::None};
  468. }
  469. // Find the function declaration this function was originally imported from.
  470. while (true) {
  471. auto import_inst_id = decl_ir->insts().GetImportSource(decl_id);
  472. if (!import_inst_id.has_value()) {
  473. break;
  474. }
  475. auto import_inst = decl_ir->import_ir_insts().Get(import_inst_id);
  476. decl_ir = decl_ir->import_irs().Get(import_inst.ir_id()).sem_ir;
  477. decl_id = import_inst.inst_id();
  478. }
  479. auto decl_ir_function_id =
  480. decl_ir->insts().GetAs<SemIR::FunctionDecl>(decl_id).function_id;
  481. return {decl_ir, decl_ir_function_id};
  482. }
  483. auto FileContext::BuildFunctionDefinition(SemIR::FunctionId function_id,
  484. SemIR::SpecificId specific_id)
  485. -> void {
  486. auto [definition_ir, definition_ir_function_id] =
  487. GetFunctionDefinition(&sem_ir(), function_id);
  488. if (!definition_ir) {
  489. // Function is probably defined in another file; not an error.
  490. return;
  491. }
  492. const auto& definition_function =
  493. definition_ir->functions().Get(definition_ir_function_id);
  494. BuildFunctionBody(
  495. function_id, specific_id, sem_ir().functions().Get(function_id),
  496. context().GetFileContext(definition_ir), definition_function);
  497. }
  498. auto FileContext::BuildFunctionBody(SemIR::FunctionId function_id,
  499. SemIR::SpecificId specific_id,
  500. const SemIR::Function& declaration_function,
  501. FileContext& definition_context,
  502. const SemIR::Function& definition_function)
  503. -> void {
  504. // On crash, report the function we were lowering.
  505. PrettyStackTraceFunction stack_trace_entry([&](llvm::raw_ostream& output) {
  506. SemIR::DiagnosticLocConverter converter(
  507. &context().tree_and_subtrees_getters(), &sem_ir());
  508. auto converted =
  509. converter.Convert(SemIR::LocId(declaration_function.definition_id),
  510. /*token_only=*/false);
  511. converted.loc.FormatLocation(output);
  512. output << "Lowering function ";
  513. if (specific_id.has_value()) {
  514. output << SemIR::StringifySpecific(sem_ir(), specific_id);
  515. } else {
  516. output << SemIR::StringifyConstantInst(
  517. sem_ir(), declaration_function.definition_id);
  518. }
  519. output << "\n";
  520. // Crash output has a tab indent; try to indent slightly past that.
  521. converted.loc.FormatSnippet(output, /*indent=*/10);
  522. });
  523. // Note that `definition_function` is potentially from a different SemIR::File
  524. // than the one that this file context represents. Any lowering done for
  525. // values derived from `definition_function` should use `definition_context`
  526. // instead of our context.
  527. const auto& definition_ir = definition_context.sem_ir();
  528. auto* llvm_function = GetFunction(function_id, specific_id);
  529. CARBON_CHECK(llvm_function,
  530. "Attempting to define function that was not declared");
  531. const auto& body_block_ids = definition_function.body_block_ids;
  532. CARBON_DCHECK(!body_block_ids.empty(),
  533. "No function body blocks found during lowering.");
  534. // Store which specifics were already lowered (with definitions) for each
  535. // generic.
  536. if (declaration_function.generic_id.has_value() && specific_id.has_value()) {
  537. // TODO: We should track this in the definition context instead so that we
  538. // can deduplicate specifics from different files.
  539. AddLoweredSpecificForGeneric(declaration_function.generic_id, specific_id);
  540. }
  541. // Set attributes on the function definition.
  542. {
  543. llvm::AttrBuilder attr_builder(llvm_context());
  544. attr_builder.addAttribute(llvm::Attribute::NoUnwind);
  545. // TODO: We should take the opt level from the SemIR file; it might not be
  546. // the same for all files in a compilation.
  547. if (context().opt_level() == Lower::OptimizationLevel::None) {
  548. // --optimize=none disables all optimizations for this function.
  549. attr_builder.addAttribute(llvm::Attribute::OptimizeNone);
  550. attr_builder.addAttribute(llvm::Attribute::NoInline);
  551. } else {
  552. // Otherwise, always inline thunks.
  553. if (definition_function.special_function_kind ==
  554. SemIR::Function::SpecialFunctionKind::Thunk) {
  555. attr_builder.addAttribute(llvm::Attribute::AlwaysInline);
  556. }
  557. // Convert --optimize=size into optsize and minsize.
  558. if (context().opt_level() == Lower::OptimizationLevel::Size) {
  559. attr_builder.addAttribute(llvm::Attribute::OptimizeForSize);
  560. attr_builder.addAttribute(llvm::Attribute::MinSize);
  561. }
  562. // TODO: Should we generate an InlineHint for some functions? Perhaps for
  563. // those defined in the API file?
  564. }
  565. llvm_function->addFnAttrs(attr_builder);
  566. }
  567. auto* subprogram =
  568. BuildDISubprogram(declaration_function, specific_id, llvm_function);
  569. FunctionContext function_lowering(
  570. definition_context, llvm_function, *this, specific_id,
  571. coalescer_.InitializeFingerprintForSpecific(specific_id), subprogram,
  572. vlog_stream_);
  573. // Add parameters to locals.
  574. // TODO: This duplicates the mapping between sem_ir instructions and LLVM
  575. // function parameters that was already computed in BuildFunctionDecl.
  576. // We should only do that once.
  577. auto call_param_ids = definition_ir.inst_blocks().GetOrEmpty(
  578. definition_function.call_params_id);
  579. int param_index = 0;
  580. // TODO: Find a way to ensure this code and the function-call lowering use
  581. // the same parameter ordering.
  582. // Lowers the given parameter. Must be called in LLVM calling convention
  583. // parameter order.
  584. auto lower_param = [&](SemIR::InstId param_id) {
  585. // Get the value of the parameter from the function argument.
  586. llvm::Value* param_value;
  587. // The `type_id` of a parameter tracks the parameter's type.
  588. CARBON_CHECK(definition_ir.insts().Is<SemIR::AnyParam>(param_id));
  589. auto param_type = function_lowering.GetTypeIdOfInst(param_id);
  590. if (function_lowering.GetValueRepr(param_type).repr.kind !=
  591. SemIR::ValueRepr::None) {
  592. param_value = llvm_function->getArg(param_index);
  593. ++param_index;
  594. } else {
  595. param_value =
  596. llvm::PoisonValue::get(function_lowering.GetType(param_type));
  597. }
  598. // The value of the parameter is the value of the argument.
  599. function_lowering.SetLocal(param_id, param_value);
  600. };
  601. // Lower the return slot parameter.
  602. if (declaration_function.return_slot_pattern_id.has_value()) {
  603. auto call_param_id = call_param_ids.consume_back();
  604. // The LLVM calling convention has the return slot first rather than last.
  605. // Note that this queries whether there is a return slot at the LLVM level,
  606. // whereas `function.return_slot_pattern_id.has_value()` queries whether
  607. // there is a return slot at the SemIR level.
  608. if (SemIR::ReturnTypeInfo::ForFunction(sem_ir(), declaration_function,
  609. specific_id)
  610. .has_return_slot()) {
  611. lower_param(call_param_id);
  612. } else {
  613. // The return slot might still be mentioned as a destination location, but
  614. // shouldn't actually be used for anything, so we can use a poison value
  615. // for it.
  616. function_lowering.SetLocal(call_param_id,
  617. llvm::PoisonValue::get(llvm::PointerType::get(
  618. llvm_context(), /*AddressSpace=*/0)));
  619. }
  620. }
  621. // Lower the remaining call parameters.
  622. for (auto param_id : call_param_ids) {
  623. lower_param(param_id);
  624. }
  625. auto decl_block_id = SemIR::InstBlockId::None;
  626. if (function_id == sem_ir().global_ctor_id()) {
  627. decl_block_id = SemIR::InstBlockId::Empty;
  628. } else {
  629. decl_block_id =
  630. definition_ir.insts()
  631. .GetAs<SemIR::FunctionDecl>(definition_function.latest_decl_id())
  632. .decl_block_id;
  633. }
  634. // Lowers the contents of decl_block_id into the corresponding LLVM block,
  635. // creating it if it doesn't already exist.
  636. auto lower_block = [&](SemIR::InstBlockId block_id) {
  637. CARBON_VLOG("Lowering {0}\n", block_id);
  638. auto* llvm_block = function_lowering.GetBlock(block_id);
  639. // Keep the LLVM blocks in lexical order.
  640. llvm_block->moveBefore(llvm_function->end());
  641. function_lowering.builder().SetInsertPoint(llvm_block);
  642. function_lowering.LowerBlockContents(block_id);
  643. };
  644. lower_block(decl_block_id);
  645. // If the decl block is empty, reuse it as the first body block. We don't do
  646. // this when the decl block is non-empty so that any branches back to the
  647. // first body block don't also re-execute the decl.
  648. llvm::BasicBlock* block = function_lowering.builder().GetInsertBlock();
  649. if (block->empty() &&
  650. function_lowering.TryToReuseBlock(body_block_ids.front(), block)) {
  651. // Reuse this block as the first block of the function body.
  652. } else {
  653. function_lowering.builder().CreateBr(
  654. function_lowering.GetBlock(body_block_ids.front()));
  655. }
  656. // Lower all blocks.
  657. for (auto block_id : body_block_ids) {
  658. lower_block(block_id);
  659. }
  660. // LLVM requires that the entry block has no predecessors.
  661. auto* entry_block = &llvm_function->getEntryBlock();
  662. if (entry_block->hasNPredecessorsOrMore(1)) {
  663. auto* new_entry_block = llvm::BasicBlock::Create(
  664. llvm_context(), "entry", llvm_function, entry_block);
  665. llvm::BranchInst::Create(entry_block, new_entry_block);
  666. }
  667. // Emit fingerprint accumulated inside the function context.
  668. function_lowering.EmitFinalFingerprint();
  669. context().di_builder().finalizeSubprogram(subprogram);
  670. }
  671. auto FileContext::BuildDISubroutineType(const SemIR::Function& function,
  672. SemIR::SpecificId specific_id)
  673. -> llvm::DISubroutineType* {
  674. auto implicit_param_patterns =
  675. sem_ir().inst_blocks().GetOrEmpty(function.implicit_param_patterns_id);
  676. auto param_patterns =
  677. sem_ir().inst_blocks().GetOrEmpty(function.param_patterns_id);
  678. auto* void_pointer_debug_type =
  679. context().di_builder().createPointerType(nullptr, 8);
  680. auto get_debug_type = [&](SemIR::TypeId type_id) -> llvm::DIType* {
  681. CARBON_CHECK(type_id.has_value());
  682. if (auto* type = GetTypeAndDIType(type_id).llvm_di_type) {
  683. return type;
  684. }
  685. return void_pointer_debug_type;
  686. };
  687. auto return_info =
  688. SemIR::ReturnTypeInfo::ForFunction(sem_ir(), function, specific_id);
  689. if (function.return_slot_pattern_id.has_value()) {
  690. // TODO: If int_repr.kind == SemIR::InitRepr::ByCopy - be sure the return
  691. // type is tagged with indirect calling convention.
  692. }
  693. // TODO: Expose the `Call` parameter patterns in `Function`, and use them
  694. // here.
  695. llvm::SmallVector<llvm::Metadata*, 16> element_types;
  696. element_types.push_back(return_info.type_id.has_value()
  697. ? get_debug_type(return_info.type_id)
  698. : nullptr);
  699. for (auto param_pattern_id : llvm::concat<const SemIR::InstId>(
  700. implicit_param_patterns, param_patterns)) {
  701. auto param_pattern_info = SemIR::Function::GetParamPatternInfoFromPatternId(
  702. sem_ir(), param_pattern_id);
  703. if (!param_pattern_info) {
  704. continue;
  705. }
  706. if (param_pattern_info->inst.kind == SemIR::RefParamPattern::Kind) {
  707. // TODO: Maybe make the parameter type a reference type.
  708. }
  709. auto param_type_id = ExtractScrutineeType(
  710. sem_ir(), SemIR::GetTypeOfInstInSpecific(sem_ir(), specific_id,
  711. param_pattern_info->inst_id));
  712. switch (auto value_rep = SemIR::ValueRepr::ForType(sem_ir(), param_type_id);
  713. value_rep.kind) {
  714. case SemIR::ValueRepr::Unknown:
  715. CARBON_FATAL("Lowering function with incomplete parameter type");
  716. case SemIR::ValueRepr::Dependent:
  717. CARBON_FATAL("Lowering function with dependent parameter type");
  718. case SemIR::ValueRepr::None:
  719. break;
  720. case SemIR::ValueRepr::Copy:
  721. case SemIR::ValueRepr::Custom:
  722. case SemIR::ValueRepr::Pointer:
  723. auto* param_type = get_debug_type(value_rep.type_id);
  724. element_types.push_back(param_type);
  725. break;
  726. }
  727. }
  728. return context().di_builder().createSubroutineType(
  729. context().di_builder().getOrCreateTypeArray(element_types),
  730. llvm::DINode::FlagZero);
  731. }
  732. auto FileContext::BuildDISubprogram(const SemIR::Function& function,
  733. SemIR::SpecificId specific_id,
  734. const llvm::Function* llvm_function)
  735. -> llvm::DISubprogram* {
  736. if (!context().di_compile_unit()) {
  737. return nullptr;
  738. }
  739. auto name = sem_ir().names().GetAsStringIfIdentifier(function.name_id);
  740. CARBON_CHECK(name, "Unexpected special name for function: {0}",
  741. function.name_id);
  742. auto loc = GetLocForDI(function.definition_id);
  743. llvm::DISubroutineType* subroutine_type =
  744. BuildDISubroutineType(function, specific_id);
  745. auto* subprogram = context().di_builder().createFunction(
  746. context().di_compile_unit(), *name, llvm_function->getName(),
  747. /*File=*/context().di_builder().createFile(loc.filename, ""),
  748. /*LineNo=*/loc.line_number, subroutine_type,
  749. /*ScopeLine=*/0, llvm::DINode::FlagZero,
  750. llvm::DISubprogram::SPFlagDefinition);
  751. // Add a variable for each parameter, as that is where DWARF debug information
  752. // comes from.
  753. for (auto [argument_number, type] :
  754. llvm::enumerate(llvm::drop_begin(subroutine_type->getTypeArray()))) {
  755. context().di_builder().createParameterVariable(
  756. subprogram, "", argument_number + 1, nullptr, 0, type,
  757. /*AlwaysPreserve=*/true);
  758. }
  759. return subprogram;
  760. }
  761. // BuildTypeForInst is used to construct types for FileContext::BuildType below.
  762. // Implementations return the LLVM type for the instruction. This first overload
  763. // is the fallback handler for non-type instructions.
  764. template <typename InstT>
  765. requires(InstT::Kind.is_type() == SemIR::InstIsType::Never)
  766. static auto BuildTypeForInst(FileContext& /*context*/, InstT inst)
  767. -> FileContext::LoweredTypes {
  768. CARBON_FATAL("Cannot use inst as type: {0}", inst);
  769. }
  770. template <typename InstT>
  771. requires(InstT::Kind.is_symbolic_when_type())
  772. static auto BuildTypeForInst(FileContext& context, InstT /*inst*/)
  773. -> FileContext::LoweredTypes {
  774. // Treat non-monomorphized symbolic types as opaque.
  775. return {llvm::StructType::get(context.llvm_context()), nullptr};
  776. }
  777. static auto BuildTypeForInst(FileContext& context, SemIR::ArrayType inst)
  778. -> FileContext::LoweredTypes {
  779. return {llvm::ArrayType::get(
  780. context.GetType(context.sem_ir().types().GetTypeIdForTypeInstId(
  781. inst.element_type_inst_id)),
  782. *context.sem_ir().GetArrayBoundValue(inst.bound_id)),
  783. nullptr};
  784. }
  785. static auto BuildTypeForInst(FileContext& context, SemIR::BoolType /*inst*/)
  786. -> FileContext::LoweredTypes {
  787. // TODO: We may want to have different representations for `bool` storage
  788. // (`i8`) versus for `bool` values (`i1`).
  789. return {llvm::Type::getInt1Ty(context.llvm_context()), nullptr};
  790. }
  791. static auto BuildTypeForInst(FileContext& context, SemIR::ClassType inst)
  792. -> FileContext::LoweredTypes {
  793. auto object_repr_id = context.sem_ir()
  794. .classes()
  795. .Get(inst.class_id)
  796. .GetObjectRepr(context.sem_ir(), inst.specific_id);
  797. return context.GetTypeAndDIType(object_repr_id);
  798. }
  799. template <typename InstT>
  800. requires(SemIR::Internal::HasInstCategory<SemIR::AnyQualifiedType, InstT>)
  801. static auto BuildTypeForInst(FileContext& context, InstT inst)
  802. -> FileContext::LoweredTypes {
  803. return {context.GetType(
  804. context.sem_ir().types().GetTypeIdForTypeInstId(inst.inner_id)),
  805. nullptr};
  806. }
  807. static auto BuildTypeForInst(FileContext& context, SemIR::CustomLayoutType inst)
  808. -> FileContext::LoweredTypes {
  809. auto layout = context.sem_ir().custom_layouts().Get(inst.layout_id);
  810. return {llvm::ArrayType::get(llvm::Type::getInt8Ty(context.llvm_context()),
  811. layout[SemIR::CustomLayoutId::SizeIndex]),
  812. nullptr};
  813. }
  814. static auto BuildTypeForInst(FileContext& context,
  815. SemIR::ImplWitnessAssociatedConstant inst)
  816. -> FileContext::LoweredTypes {
  817. return {context.GetType(inst.type_id), nullptr};
  818. }
  819. static auto BuildTypeForInst(FileContext& /*context*/,
  820. SemIR::ErrorInst /*inst*/)
  821. -> FileContext::LoweredTypes {
  822. // This is a complete type but uses of it should never be lowered.
  823. return {nullptr, nullptr};
  824. }
  825. static auto BuildTypeForInst(FileContext& context, SemIR::FloatType inst)
  826. -> FileContext::LoweredTypes {
  827. return {llvm::Type::getFloatingPointTy(context.llvm_context(),
  828. inst.float_kind.Semantics()),
  829. nullptr};
  830. }
  831. static auto BuildTypeForInst(FileContext& context, SemIR::IntType inst)
  832. -> FileContext::LoweredTypes {
  833. auto width_inst =
  834. context.sem_ir().insts().TryGetAs<SemIR::IntValue>(inst.bit_width_id);
  835. CARBON_CHECK(width_inst, "Can't lower int type with symbolic width");
  836. auto width = context.sem_ir().ints().Get(width_inst->int_id).getZExtValue();
  837. return {llvm::IntegerType::get(context.llvm_context(), width),
  838. context.context().di_builder().createBasicType(
  839. "int", width,
  840. inst.int_kind.is_signed() ? llvm::dwarf::DW_ATE_signed
  841. : llvm::dwarf::DW_ATE_unsigned)};
  842. }
  843. static auto BuildTypeForInst(FileContext& context, SemIR::PointerType /*inst*/)
  844. -> FileContext::LoweredTypes {
  845. return {llvm::PointerType::get(context.llvm_context(), /*AddressSpace=*/0),
  846. nullptr};
  847. }
  848. static auto BuildTypeForInst(FileContext& /*context*/,
  849. SemIR::PatternType /*inst*/)
  850. -> FileContext::LoweredTypes {
  851. CARBON_FATAL("Unexpected pattern type in lowering");
  852. }
  853. static auto BuildTypeForInst(FileContext& context, SemIR::StructType inst)
  854. -> FileContext::LoweredTypes {
  855. auto fields = context.sem_ir().struct_type_fields().Get(inst.fields_id);
  856. llvm::SmallVector<llvm::Type*> subtypes;
  857. subtypes.reserve(fields.size());
  858. for (auto field : fields) {
  859. subtypes.push_back(context.GetType(
  860. context.sem_ir().types().GetTypeIdForTypeInstId(field.type_inst_id)));
  861. }
  862. return {llvm::StructType::get(context.llvm_context(), subtypes), nullptr};
  863. }
  864. static auto BuildTypeForInst(FileContext& context, SemIR::TupleType inst)
  865. -> FileContext::LoweredTypes {
  866. // TODO: Investigate special-casing handling of empty tuples so that they
  867. // can be collectively replaced with LLVM's void, particularly around
  868. // function returns. LLVM doesn't allow declaring variables with a void
  869. // type, so that may require significant special casing.
  870. auto elements = context.sem_ir().inst_blocks().Get(inst.type_elements_id);
  871. llvm::SmallVector<llvm::Type*> subtypes;
  872. subtypes.reserve(elements.size());
  873. for (auto type_id : context.sem_ir().types().GetBlockAsTypeIds(elements)) {
  874. subtypes.push_back(context.GetType(type_id));
  875. }
  876. return {llvm::StructType::get(context.llvm_context(), subtypes), nullptr};
  877. }
  878. static auto BuildTypeForInst(FileContext& context, SemIR::TypeType /*inst*/)
  879. -> FileContext::LoweredTypes {
  880. return {context.GetTypeType(), nullptr};
  881. }
  882. static auto BuildTypeForInst(FileContext& context, SemIR::VtableType /*inst*/)
  883. -> FileContext::LoweredTypes {
  884. return {llvm::Type::getVoidTy(context.llvm_context()), nullptr};
  885. }
  886. static auto BuildTypeForInst(FileContext& context,
  887. SemIR::SpecificFunctionType /*inst*/)
  888. -> FileContext::LoweredTypes {
  889. return {llvm::PointerType::get(context.llvm_context(), 0), nullptr};
  890. }
  891. template <typename InstT>
  892. requires(InstT::Kind.template IsAnyOf<
  893. SemIR::AssociatedEntityType, SemIR::AutoType, SemIR::BoundMethodType,
  894. SemIR::CharLiteralType, SemIR::CppOverloadSetType, SemIR::FacetType,
  895. SemIR::FloatLiteralType, SemIR::FunctionType,
  896. SemIR::FunctionTypeWithSelfType, SemIR::GenericClassType,
  897. SemIR::GenericInterfaceType, SemIR::GenericNamedConstraintType,
  898. SemIR::InstType, SemIR::IntLiteralType, SemIR::NamespaceType,
  899. SemIR::RequireSpecificDefinitionType, SemIR::UnboundElementType,
  900. SemIR::WhereExpr, SemIR::WitnessType>())
  901. static auto BuildTypeForInst(FileContext& context, InstT /*inst*/)
  902. -> FileContext::LoweredTypes {
  903. // Return an empty struct as a placeholder.
  904. // TODO: Should we model an interface as a witness table, or an associated
  905. // entity as an index?
  906. return {llvm::StructType::get(context.llvm_context()), nullptr};
  907. }
  908. auto FileContext::BuildType(SemIR::InstId inst_id) -> LoweredTypes {
  909. // Use overload resolution to select the implementation, producing compile
  910. // errors when BuildTypeForInst isn't defined for a given instruction.
  911. CARBON_KIND_SWITCH(sem_ir_->insts().Get(inst_id)) {
  912. #define CARBON_SEM_IR_INST_KIND(Name) \
  913. case CARBON_KIND(SemIR::Name inst): { \
  914. return BuildTypeForInst(*this, inst); \
  915. }
  916. #include "toolchain/sem_ir/inst_kind.def"
  917. }
  918. }
  919. auto FileContext::BuildGlobalVariableDecl(SemIR::VarStorage var_storage)
  920. -> llvm::GlobalVariable* {
  921. Mangler m(*this);
  922. auto mangled_name = m.MangleGlobalVariable(var_storage.pattern_id);
  923. auto linkage = llvm::GlobalVariable::ExternalLinkage;
  924. // If the variable doesn't have an externally-visible name, demote it to
  925. // internal linkage and invent a plausible name that shouldn't collide with
  926. // any of our real manglings.
  927. if (mangled_name.empty()) {
  928. linkage = llvm::GlobalVariable::InternalLinkage;
  929. if (inst_namer_) {
  930. mangled_name =
  931. ("var.anon" + inst_namer_->GetUnscopedNameFor(var_storage.pattern_id))
  932. .str();
  933. }
  934. }
  935. auto* type = GetType(var_storage.type_id);
  936. return new llvm::GlobalVariable(llvm_module(), type,
  937. /*isConstant=*/false, linkage,
  938. /*Initializer=*/nullptr, mangled_name);
  939. }
  940. auto FileContext::GetLocForDI(SemIR::InstId inst_id) -> Context::LocForDI {
  941. return context().GetLocForDI(
  942. GetAbsoluteNodeId(sem_ir_, SemIR::LocId(inst_id)).back());
  943. }
  944. auto FileContext::BuildVtable(const SemIR::Vtable& vtable,
  945. SemIR::SpecificId specific_id)
  946. -> llvm::GlobalVariable* {
  947. const auto& class_info = sem_ir().classes().Get(vtable.class_id);
  948. Mangler m(*this);
  949. std::string mangled_name = m.MangleVTable(class_info, specific_id);
  950. if (sem_ir()
  951. .insts()
  952. .GetImportSource(class_info.first_owning_decl_id)
  953. .has_value()) {
  954. // Emit a declaration of an imported vtable using a(n opaque) pointer type.
  955. // This doesn't have to match the definition that appears elsewhere, it'll
  956. // still get merged correctly.
  957. auto* gv = new llvm::GlobalVariable(
  958. llvm_module(),
  959. llvm::PointerType::get(llvm_context(), /*AddressSpace=*/0),
  960. /*isConstant=*/true, llvm::GlobalValue::ExternalLinkage, nullptr,
  961. mangled_name);
  962. gv->setUnnamedAddr(llvm::GlobalValue::UnnamedAddr::Global);
  963. return gv;
  964. }
  965. auto vtable_inst_block =
  966. sem_ir().inst_blocks().Get(vtable.virtual_functions_id);
  967. auto* entry_type = llvm::IntegerType::getInt32Ty(llvm_context());
  968. auto* table_type = llvm::ArrayType::get(entry_type, vtable_inst_block.size());
  969. auto* llvm_vtable = new llvm::GlobalVariable(
  970. llvm_module(), table_type, /*isConstant=*/true,
  971. llvm::GlobalValue::ExternalLinkage, nullptr, mangled_name);
  972. auto* i32_type = llvm::IntegerType::getInt32Ty(llvm_context());
  973. auto* i64_type = llvm::IntegerType::getInt64Ty(llvm_context());
  974. auto* vtable_const_int =
  975. llvm::ConstantExpr::getPtrToInt(llvm_vtable, i64_type);
  976. llvm::SmallVector<llvm::Constant*> vfuncs;
  977. vfuncs.reserve(vtable_inst_block.size());
  978. for (auto fn_decl_id : vtable_inst_block) {
  979. auto [_1, _2, fn_id, fn_specific_id] =
  980. DecomposeVirtualFunction(sem_ir(), fn_decl_id, specific_id);
  981. vfuncs.push_back(llvm::ConstantExpr::getTrunc(
  982. llvm::ConstantExpr::getSub(
  983. llvm::ConstantExpr::getPtrToInt(
  984. GetOrCreateFunction(fn_id, fn_specific_id), i64_type),
  985. vtable_const_int),
  986. i32_type));
  987. }
  988. llvm_vtable->setInitializer(llvm::ConstantArray::get(table_type, vfuncs));
  989. llvm_vtable->setUnnamedAddr(llvm::GlobalValue::UnnamedAddr::Global);
  990. return llvm_vtable;
  991. }
  992. } // namespace Carbon::Lower