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Resolve instruction id depending on the context from which a function is called. Calling a function in a function context that does not have a definition emitted before reaching lowering will cause a crash. This needs a change in check/eval layer.
706 lines
28 KiB
C++
706 lines
28 KiB
C++
// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
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// Exceptions. See /LICENSE for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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#include "toolchain/lower/file_context.h"
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#include "common/check.h"
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#include "common/vlog.h"
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#include "llvm/ADT/STLExtras.h"
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#include "llvm/ADT/Sequence.h"
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#include "llvm/Transforms/Utils/ModuleUtils.h"
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#include "toolchain/base/kind_switch.h"
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#include "toolchain/lower/constant.h"
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#include "toolchain/lower/function_context.h"
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#include "toolchain/lower/mangler.h"
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#include "toolchain/sem_ir/absolute_node_id.h"
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#include "toolchain/sem_ir/entry_point.h"
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#include "toolchain/sem_ir/file.h"
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#include "toolchain/sem_ir/function.h"
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#include "toolchain/sem_ir/generic.h"
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#include "toolchain/sem_ir/ids.h"
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#include "toolchain/sem_ir/inst.h"
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#include "toolchain/sem_ir/inst_kind.h"
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#include "toolchain/sem_ir/typed_insts.h"
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namespace Carbon::Lower {
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FileContext::FileContext(
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llvm::LLVMContext& llvm_context,
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std::optional<llvm::ArrayRef<Parse::GetTreeAndSubtreesFn>>
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tree_and_subtrees_getters_for_debug_info,
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llvm::StringRef module_name, const SemIR::File& sem_ir,
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const SemIR::InstNamer* inst_namer, llvm::raw_ostream* vlog_stream)
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: llvm_context_(&llvm_context),
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llvm_module_(std::make_unique<llvm::Module>(module_name, llvm_context)),
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di_builder_(*llvm_module_),
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di_compile_unit_(
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tree_and_subtrees_getters_for_debug_info
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? BuildDICompileUnit(module_name, *llvm_module_, di_builder_)
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: nullptr),
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tree_and_subtrees_getters_for_debug_info_(
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tree_and_subtrees_getters_for_debug_info),
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sem_ir_(&sem_ir),
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inst_namer_(inst_namer),
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vlog_stream_(vlog_stream) {
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CARBON_CHECK(!sem_ir.has_errors(),
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"Generating LLVM IR from invalid SemIR::File is unsupported.");
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}
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// TODO: Move this to lower.cpp.
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auto FileContext::Run() -> std::unique_ptr<llvm::Module> {
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CARBON_CHECK(llvm_module_, "Run can only be called once.");
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// Lower all types that were required to be complete.
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types_.resize(sem_ir_->insts().size());
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for (auto type_id : sem_ir_->types().complete_types()) {
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if (type_id.index >= 0) {
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types_[type_id.index] = BuildType(sem_ir_->types().GetInstId(type_id));
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}
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}
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// Lower function declarations.
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functions_.resize_for_overwrite(sem_ir_->functions().size());
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for (auto [id, _] : sem_ir_->functions().enumerate()) {
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functions_[id.index] = BuildFunctionDecl(id);
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}
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// Specific functions are lowered when we emit a reference to them.
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specific_functions_.resize(sem_ir_->specifics().size());
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// Lower global variable declarations.
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for (auto inst_id :
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sem_ir().inst_blocks().Get(sem_ir().top_inst_block_id())) {
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// Only `VarStorage` indicates a global variable declaration in the
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// top instruction block.
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if (auto var = sem_ir().insts().TryGetAs<SemIR::VarStorage>(inst_id)) {
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global_variables_.Insert(inst_id, BuildGlobalVariableDecl(*var));
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}
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}
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// Lower constants.
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constants_.resize(sem_ir_->insts().size());
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LowerConstants(*this, constants_);
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// Lower function definitions.
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for (auto [id, _] : sem_ir_->functions().enumerate()) {
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BuildFunctionDefinition(id);
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}
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// Lower function definitions for generics.
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// This cannot be a range-based loop, as new definitions can be added
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// while building other definitions.
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// NOLINTNEXTLINE
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for (size_t i = 0; i != specific_function_definitions_.size(); ++i) {
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auto [function_id, specific_id] = specific_function_definitions_[i];
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BuildFunctionDefinition(function_id, specific_id);
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}
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// Append `__global_init` to `llvm::global_ctors` to initialize global
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// variables.
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if (sem_ir().global_ctor_id().has_value()) {
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llvm::appendToGlobalCtors(llvm_module(),
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GetFunction(sem_ir().global_ctor_id()),
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/*Priority=*/0);
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}
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return std::move(llvm_module_);
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}
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auto FileContext::BuildDICompileUnit(llvm::StringRef module_name,
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llvm::Module& llvm_module,
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llvm::DIBuilder& di_builder)
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-> llvm::DICompileUnit* {
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llvm_module.addModuleFlag(llvm::Module::Max, "Dwarf Version", 5);
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llvm_module.addModuleFlag(llvm::Module::Warning, "Debug Info Version",
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llvm::DEBUG_METADATA_VERSION);
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// TODO: Include directory path in the compile_unit_file.
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llvm::DIFile* compile_unit_file = di_builder.createFile(module_name, "");
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// TODO: Introduce a new language code for Carbon. C works well for now since
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// it's something debuggers will already know/have support for at least.
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// Probably have to bump to C++ at some point for virtual functions,
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// templates, etc.
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return di_builder.createCompileUnit(llvm::dwarf::DW_LANG_C, compile_unit_file,
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"carbon",
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/*isOptimized=*/false, /*Flags=*/"",
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/*RV=*/0);
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}
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auto FileContext::GetGlobal(SemIR::InstId inst_id,
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SemIR::SpecificId specific_id) -> llvm::Value* {
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auto const_id = GetConstantValueInSpecific(sem_ir(), specific_id, inst_id);
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if (const_id.is_concrete()) {
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auto const_inst_id = sem_ir().constant_values().GetInstId(const_id);
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// For value expressions and initializing expressions, the value produced by
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// a constant instruction is a value representation of the constant. For
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// initializing expressions, `FinishInit` will perform a copy if needed.
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// TODO: Handle reference expression constants.
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auto* const_value = constants_[const_inst_id.index];
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// If we want a pointer to the constant, materialize a global to hold it.
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// TODO: We could reuse the same global if the constant is used more than
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// once.
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auto value_rep = SemIR::ValueRepr::ForType(
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sem_ir(), sem_ir().insts().Get(const_inst_id).type_id());
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if (value_rep.kind == SemIR::ValueRepr::Pointer) {
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// Include both the name of the constant, if any, and the point of use in
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// the name of the variable.
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llvm::StringRef const_name;
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llvm::StringRef use_name;
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if (inst_namer_) {
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const_name = inst_namer_->GetUnscopedNameFor(const_inst_id);
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use_name = inst_namer_->GetUnscopedNameFor(inst_id);
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}
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// We always need to give the global a name even if the instruction namer
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// doesn't have one to use.
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if (const_name.empty()) {
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const_name = "const";
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}
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if (use_name.empty()) {
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use_name = "anon";
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}
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llvm::StringRef sep = (use_name[0] == '.') ? "" : ".";
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return new llvm::GlobalVariable(
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llvm_module(), GetType(sem_ir().GetPointeeType(value_rep.type_id)),
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/*isConstant=*/true, llvm::GlobalVariable::InternalLinkage,
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const_value, const_name + sep + use_name);
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}
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// Otherwise, we can use the constant value directly.
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return const_value;
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}
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CARBON_FATAL("Missing value: {0} {1} {2}", inst_id, specific_id,
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sem_ir().insts().Get(inst_id));
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}
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auto FileContext::GetOrCreateFunction(SemIR::FunctionId function_id,
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SemIR::SpecificId specific_id)
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-> llvm::Function* {
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// Non-generic functions are declared eagerly.
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if (!specific_id.has_value()) {
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return GetFunction(function_id);
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}
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if (auto* result = specific_functions_[specific_id.index]) {
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return result;
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}
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auto* result = BuildFunctionDecl(function_id, specific_id);
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// TODO: Add this function to a list of specific functions whose definitions
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// we need to emit.
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specific_functions_[specific_id.index] = result;
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// TODO: Use this to generate definitions for these functions.
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specific_function_definitions_.push_back({function_id, specific_id});
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return result;
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}
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auto FileContext::BuildFunctionTypeInfo(const SemIR::Function& function,
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SemIR::SpecificId specific_id)
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-> FunctionTypeInfo {
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const auto return_info =
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SemIR::ReturnTypeInfo::ForFunction(sem_ir(), function, specific_id);
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if (!return_info.is_valid()) {
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// The return type has not been completed, create a trivial type instead.
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return {.type =
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llvm::FunctionType::get(llvm::Type::getVoidTy(llvm_context()),
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/*isVarArg=*/false)};
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}
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// TODO nit: add is_symbolic() to type_id to forward to
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// type_id.AsConstantId().is_symbolic(). Update call below too.
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auto get_llvm_type = [&](SemIR::TypeId type_id) -> llvm::Type* {
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if (!type_id.has_value()) {
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return nullptr;
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}
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return GetType(SemIR::GetTypeInSpecific(sem_ir(), specific_id, type_id));
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};
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auto implicit_param_patterns =
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sem_ir().inst_blocks().GetOrEmpty(function.implicit_param_patterns_id);
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// TODO: Include parameters corresponding to positional parameters.
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auto param_patterns =
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sem_ir().inst_blocks().GetOrEmpty(function.param_patterns_id);
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auto* return_type = get_llvm_type(return_info.type_id);
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llvm::SmallVector<llvm::Type*> param_types;
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// Compute the return type to use for the LLVM function. If the initializing
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// representation doesn't produce a value, set the return type to void.
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// TODO: For the `Run` entry point, remap return type to i32 if it doesn't
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// return a value.
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llvm::Type* function_return_type =
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(return_info.is_valid() &&
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return_info.init_repr.kind == SemIR::InitRepr::ByCopy)
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? return_type
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: llvm::Type::getVoidTy(llvm_context());
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// TODO: Consider either storing `param_inst_ids` somewhere so that we can
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// reuse it from `BuildFunctionDefinition` and when building calls, or factor
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// out a mechanism to compute the mapping between parameters and arguments on
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// demand.
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llvm::SmallVector<SemIR::InstId> param_inst_ids;
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auto max_llvm_params = (return_info.has_return_slot() ? 1 : 0) +
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implicit_param_patterns.size() + param_patterns.size();
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param_types.reserve(max_llvm_params);
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param_inst_ids.reserve(max_llvm_params);
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auto return_param_id = SemIR::InstId::None;
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if (return_info.has_return_slot()) {
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param_types.push_back(
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llvm::PointerType::get(return_type, /*AddressSpace=*/0));
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return_param_id = function.return_slot_pattern_id;
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param_inst_ids.push_back(return_param_id);
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}
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for (auto param_pattern_id : llvm::concat<const SemIR::InstId>(
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implicit_param_patterns, param_patterns)) {
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auto param_pattern_info = SemIR::Function::GetParamPatternInfoFromPatternId(
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sem_ir(), param_pattern_id);
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if (!param_pattern_info) {
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continue;
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}
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auto param_type_id = SemIR::GetTypeInSpecific(
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sem_ir(), specific_id, param_pattern_info->inst.type_id);
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CARBON_CHECK(
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!param_type_id.AsConstantId().is_symbolic(),
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"Found symbolic type id after resolution when lowering type {0}.",
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param_pattern_info->inst.type_id);
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switch (auto value_rep = SemIR::ValueRepr::ForType(sem_ir(), param_type_id);
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value_rep.kind) {
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case SemIR::ValueRepr::Unknown:
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// This parameter type is incomplete. Fallback to describing the
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// function type as `void()`.
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return {.type = llvm::FunctionType::get(
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llvm::Type::getVoidTy(llvm_context()),
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/*isVarArg=*/false)};
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case SemIR::ValueRepr::None:
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break;
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case SemIR::ValueRepr::Copy:
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case SemIR::ValueRepr::Custom:
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case SemIR::ValueRepr::Pointer:
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auto* param_types_to_add = get_llvm_type(value_rep.type_id);
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param_types.push_back(param_types_to_add);
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param_inst_ids.push_back(param_pattern_id);
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break;
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}
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}
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return {.type = llvm::FunctionType::get(function_return_type, param_types,
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/*isVarArg=*/false),
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.param_inst_ids = std::move(param_inst_ids),
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.return_type = return_type,
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.return_param_id = return_param_id};
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}
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auto FileContext::BuildFunctionDecl(SemIR::FunctionId function_id,
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SemIR::SpecificId specific_id)
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-> llvm::Function* {
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const auto& function = sem_ir().functions().Get(function_id);
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// Don't lower generic functions. Note that associated functions in interfaces
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// have `Self` in scope, so are implicitly generic functions.
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if (function.generic_id.has_value() && !specific_id.has_value()) {
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return nullptr;
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}
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// Don't lower builtins.
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if (function.builtin_function_kind != SemIR::BuiltinFunctionKind::None) {
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return nullptr;
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}
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// TODO: Consider tracking whether the function has been used, and only
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// lowering it if it's needed.
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auto function_type_info = BuildFunctionTypeInfo(function, specific_id);
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Mangler m(*this);
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std::string mangled_name = m.Mangle(function_id, specific_id);
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auto* llvm_function = llvm::Function::Create(function_type_info.type,
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llvm::Function::ExternalLinkage,
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mangled_name, llvm_module());
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CARBON_CHECK(llvm_function->getName() == mangled_name,
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"Mangled name collision: {0}", mangled_name);
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// Set up parameters and the return slot.
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for (auto [inst_id, arg] : llvm::zip_equal(function_type_info.param_inst_ids,
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llvm_function->args())) {
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auto name_id = SemIR::NameId::None;
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if (inst_id == function_type_info.return_param_id) {
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name_id = SemIR::NameId::ReturnSlot;
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arg.addAttr(llvm::Attribute::getWithStructRetType(
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llvm_context(), function_type_info.return_type));
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} else {
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name_id = SemIR::Function::GetNameFromPatternId(sem_ir(), inst_id);
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}
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arg.setName(sem_ir().names().GetIRBaseName(name_id));
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}
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return llvm_function;
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}
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auto FileContext::BuildFunctionDefinition(SemIR::FunctionId function_id,
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SemIR::SpecificId specific_id)
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-> void {
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const auto& function = sem_ir().functions().Get(function_id);
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const auto& body_block_ids = function.body_block_ids;
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if (body_block_ids.empty()) {
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// Function is probably defined in another file; not an error.
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return;
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}
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llvm::Function* llvm_function;
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if (specific_id.has_value()) {
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llvm_function = specific_functions_[specific_id.index];
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} else {
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llvm_function = GetFunction(function_id);
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if (!llvm_function) {
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// We chose not to lower this function at all, for example because it's a
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// generic function.
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return;
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}
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}
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// For non-generics we do not lower. For generics, the llvm function was
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// created via GetOrCreateFunction prior to this when building the
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// declaration.
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BuildFunctionBody(function_id, function, llvm_function, specific_id);
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}
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auto FileContext::BuildFunctionBody(SemIR::FunctionId function_id,
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const SemIR::Function& function,
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llvm::Function* llvm_function,
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SemIR::SpecificId specific_id) -> void {
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const auto& body_block_ids = function.body_block_ids;
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CARBON_DCHECK(llvm_function, "LLVM Function not found when lowering body.");
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CARBON_DCHECK(!body_block_ids.empty(),
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"No function body blocks found during lowering.");
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FunctionContext function_lowering(*this, llvm_function, specific_id,
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BuildDISubprogram(function, llvm_function),
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vlog_stream_);
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// Add parameters to locals.
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// TODO: This duplicates the mapping between sem_ir instructions and LLVM
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// function parameters that was already computed in BuildFunctionDecl.
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// We should only do that once.
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auto call_param_ids =
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sem_ir().inst_blocks().GetOrEmpty(function.call_params_id);
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int param_index = 0;
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// TODO: Find a way to ensure this code and the function-call lowering use
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// the same parameter ordering.
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// Lowers the given parameter. Must be called in LLVM calling convention
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// parameter order.
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auto lower_param = [&](SemIR::InstId param_id) {
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// Get the value of the parameter from the function argument.
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auto param_inst = sem_ir().insts().GetAs<SemIR::AnyParam>(param_id);
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llvm::Value* param_value;
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if (SemIR::ValueRepr::ForType(sem_ir(), param_inst.type_id).kind !=
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SemIR::ValueRepr::None) {
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param_value = llvm_function->getArg(param_index);
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++param_index;
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} else {
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param_value = llvm::PoisonValue::get(GetType(
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SemIR::GetTypeInSpecific(sem_ir(), specific_id, param_inst.type_id)));
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}
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// The value of the parameter is the value of the argument.
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function_lowering.SetLocal(param_id, param_value);
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};
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// The subset of call_param_ids that is already in the order that the LLVM
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// calling convention expects.
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llvm::ArrayRef<SemIR::InstId> sequential_param_ids;
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if (function.return_slot_pattern_id.has_value()) {
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// The LLVM calling convention has the return slot first rather than last.
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// Note that this queries whether there is a return slot at the LLVM level,
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// whereas `function.return_slot_pattern_id.has_value()` queries whether
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// there is a return slot at the SemIR level.
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if (SemIR::ReturnTypeInfo::ForFunction(sem_ir(), function, specific_id)
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.has_return_slot()) {
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lower_param(call_param_ids.back());
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}
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sequential_param_ids = call_param_ids.drop_back();
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} else {
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sequential_param_ids = call_param_ids;
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}
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for (auto param_id : sequential_param_ids) {
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lower_param(param_id);
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}
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auto decl_block_id = SemIR::InstBlockId::None;
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if (function_id == sem_ir().global_ctor_id()) {
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decl_block_id = SemIR::InstBlockId::Empty;
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} else {
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decl_block_id = sem_ir()
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.insts()
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.GetAs<SemIR::FunctionDecl>(function.latest_decl_id())
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.decl_block_id;
|
|
}
|
|
|
|
// Lowers the contents of block_id into the corresponding LLVM block,
|
|
// creating it if it doesn't already exist.
|
|
auto lower_block = [&](SemIR::InstBlockId block_id) {
|
|
CARBON_VLOG("Lowering {0}\n", block_id);
|
|
auto* llvm_block = function_lowering.GetBlock(block_id);
|
|
// Keep the LLVM blocks in lexical order.
|
|
llvm_block->moveBefore(llvm_function->end());
|
|
function_lowering.builder().SetInsertPoint(llvm_block);
|
|
function_lowering.LowerBlockContents(block_id);
|
|
};
|
|
|
|
lower_block(decl_block_id);
|
|
|
|
// If the decl block is empty, reuse it as the first body block. We don't do
|
|
// this when the decl block is non-empty so that any branches back to the
|
|
// first body block don't also re-execute the decl.
|
|
llvm::BasicBlock* block = function_lowering.builder().GetInsertBlock();
|
|
if (block->empty() &&
|
|
function_lowering.TryToReuseBlock(body_block_ids.front(), block)) {
|
|
// Reuse this block as the first block of the function body.
|
|
} else {
|
|
function_lowering.builder().CreateBr(
|
|
function_lowering.GetBlock(body_block_ids.front()));
|
|
}
|
|
|
|
// Lower all blocks.
|
|
for (auto block_id : body_block_ids) {
|
|
lower_block(block_id);
|
|
}
|
|
|
|
// LLVM requires that the entry block has no predecessors.
|
|
auto* entry_block = &llvm_function->getEntryBlock();
|
|
if (entry_block->hasNPredecessorsOrMore(1)) {
|
|
auto* new_entry_block = llvm::BasicBlock::Create(
|
|
llvm_context(), "entry", llvm_function, entry_block);
|
|
llvm::BranchInst::Create(entry_block, new_entry_block);
|
|
}
|
|
}
|
|
|
|
auto FileContext::BuildDISubprogram(const SemIR::Function& function,
|
|
const llvm::Function* llvm_function)
|
|
-> llvm::DISubprogram* {
|
|
if (!di_compile_unit_) {
|
|
return nullptr;
|
|
}
|
|
auto name = sem_ir().names().GetAsStringIfIdentifier(function.name_id);
|
|
CARBON_CHECK(name, "Unexpected special name for function: {0}",
|
|
function.name_id);
|
|
auto loc = GetLocForDI(function.definition_id);
|
|
// TODO: Add more details here, including real subroutine type (once type
|
|
// information is built), etc.
|
|
return di_builder_.createFunction(
|
|
di_compile_unit_, *name, llvm_function->getName(),
|
|
/*File=*/di_builder_.createFile(loc.filename, ""),
|
|
/*LineNo=*/loc.line_number,
|
|
di_builder_.createSubroutineType(
|
|
di_builder_.getOrCreateTypeArray(std::nullopt)),
|
|
/*ScopeLine=*/0, llvm::DINode::FlagZero,
|
|
llvm::DISubprogram::SPFlagDefinition);
|
|
}
|
|
|
|
// BuildTypeForInst is used to construct types for FileContext::BuildType below.
|
|
// Implementations return the LLVM type for the instruction. This first overload
|
|
// is the fallback handler for non-type instructions.
|
|
template <typename InstT>
|
|
requires(InstT::Kind.is_type() == SemIR::InstIsType::Never)
|
|
static auto BuildTypeForInst(FileContext& /*context*/, InstT inst)
|
|
-> llvm::Type* {
|
|
CARBON_FATAL("Cannot use inst as type: {0}", inst);
|
|
}
|
|
|
|
template <typename InstT>
|
|
requires(InstT::Kind.constant_kind() ==
|
|
SemIR::InstConstantKind::SymbolicOnly &&
|
|
InstT::Kind.is_type() != SemIR::InstIsType::Never)
|
|
static auto BuildTypeForInst(FileContext& context, InstT /*inst*/)
|
|
-> llvm::Type* {
|
|
// Treat non-monomorphized symbolic types as opaque.
|
|
return llvm::StructType::get(context.llvm_context());
|
|
}
|
|
|
|
static auto BuildTypeForInst(FileContext& context, SemIR::ArrayType inst)
|
|
-> llvm::Type* {
|
|
return llvm::ArrayType::get(
|
|
context.GetType(inst.element_type_id),
|
|
*context.sem_ir().GetArrayBoundValue(inst.bound_id));
|
|
}
|
|
|
|
static auto BuildTypeForInst(FileContext& /*context*/, SemIR::AutoType inst)
|
|
-> llvm::Type* {
|
|
CARBON_FATAL("Unexpected builtin type in lowering: {0}", inst);
|
|
}
|
|
|
|
static auto BuildTypeForInst(FileContext& context, SemIR::BoolType /*inst*/)
|
|
-> llvm::Type* {
|
|
// TODO: We may want to have different representations for `bool` storage
|
|
// (`i8`) versus for `bool` values (`i1`).
|
|
return llvm::Type::getInt1Ty(context.llvm_context());
|
|
}
|
|
|
|
static auto BuildTypeForInst(FileContext& context, SemIR::ClassType inst)
|
|
-> llvm::Type* {
|
|
auto object_repr_id = context.sem_ir()
|
|
.classes()
|
|
.Get(inst.class_id)
|
|
.GetObjectRepr(context.sem_ir(), inst.specific_id);
|
|
return context.GetType(object_repr_id);
|
|
}
|
|
|
|
static auto BuildTypeForInst(FileContext& context, SemIR::ConstType inst)
|
|
-> llvm::Type* {
|
|
return context.GetType(inst.inner_id);
|
|
}
|
|
|
|
static auto BuildTypeForInst(FileContext& /*context*/,
|
|
SemIR::ErrorInst /*inst*/) -> llvm::Type* {
|
|
// This is a complete type but uses of it should never be lowered.
|
|
return nullptr;
|
|
}
|
|
|
|
static auto BuildTypeForInst(FileContext& context, SemIR::FloatType /*inst*/)
|
|
-> llvm::Type* {
|
|
// TODO: Handle different sizes.
|
|
return llvm::Type::getDoubleTy(context.llvm_context());
|
|
}
|
|
|
|
static auto BuildTypeForInst(FileContext& context, SemIR::IntType inst)
|
|
-> llvm::Type* {
|
|
auto width =
|
|
context.sem_ir().insts().TryGetAs<SemIR::IntValue>(inst.bit_width_id);
|
|
CARBON_CHECK(width, "Can't lower int type with symbolic width");
|
|
return llvm::IntegerType::get(
|
|
context.llvm_context(),
|
|
context.sem_ir().ints().Get(width->int_id).getZExtValue());
|
|
}
|
|
|
|
static auto BuildTypeForInst(FileContext& context,
|
|
SemIR::LegacyFloatType /*inst*/) -> llvm::Type* {
|
|
return llvm::Type::getDoubleTy(context.llvm_context());
|
|
}
|
|
|
|
static auto BuildTypeForInst(FileContext& context, SemIR::PointerType /*inst*/)
|
|
-> llvm::Type* {
|
|
return llvm::PointerType::get(context.llvm_context(), /*AddressSpace=*/0);
|
|
}
|
|
|
|
static auto BuildTypeForInst(FileContext& context, SemIR::StructType inst)
|
|
-> llvm::Type* {
|
|
auto fields = context.sem_ir().struct_type_fields().Get(inst.fields_id);
|
|
llvm::SmallVector<llvm::Type*> subtypes;
|
|
subtypes.reserve(fields.size());
|
|
for (auto field : fields) {
|
|
subtypes.push_back(context.GetType(field.type_id));
|
|
}
|
|
return llvm::StructType::get(context.llvm_context(), subtypes);
|
|
}
|
|
|
|
static auto BuildTypeForInst(FileContext& context, SemIR::TupleType inst)
|
|
-> llvm::Type* {
|
|
// TODO: Investigate special-casing handling of empty tuples so that they
|
|
// can be collectively replaced with LLVM's void, particularly around
|
|
// function returns. LLVM doesn't allow declaring variables with a void
|
|
// type, so that may require significant special casing.
|
|
auto elements = context.sem_ir().type_blocks().Get(inst.elements_id);
|
|
llvm::SmallVector<llvm::Type*> subtypes;
|
|
subtypes.reserve(elements.size());
|
|
for (auto element_id : elements) {
|
|
subtypes.push_back(context.GetType(element_id));
|
|
}
|
|
return llvm::StructType::get(context.llvm_context(), subtypes);
|
|
}
|
|
|
|
static auto BuildTypeForInst(FileContext& context, SemIR::TypeType /*inst*/)
|
|
-> llvm::Type* {
|
|
return context.GetTypeType();
|
|
}
|
|
|
|
static auto BuildTypeForInst(FileContext& context, SemIR::VtableType /*inst*/)
|
|
-> llvm::Type* {
|
|
return llvm::Type::getVoidTy(context.llvm_context());
|
|
}
|
|
|
|
template <typename InstT>
|
|
requires(InstT::Kind.template IsAnyOf<SemIR::SpecificFunctionType,
|
|
SemIR::StringType>())
|
|
static auto BuildTypeForInst(FileContext& context, InstT /*inst*/)
|
|
-> llvm::Type* {
|
|
// TODO: Decide how we want to represent `StringType`.
|
|
return llvm::PointerType::get(context.llvm_context(), 0);
|
|
}
|
|
|
|
template <typename InstT>
|
|
requires(InstT::Kind
|
|
.template IsAnyOf<SemIR::BoundMethodType, SemIR::IntLiteralType,
|
|
SemIR::NamespaceType, SemIR::WitnessType>())
|
|
static auto BuildTypeForInst(FileContext& context, InstT /*inst*/)
|
|
-> llvm::Type* {
|
|
// Return an empty struct as a placeholder.
|
|
return llvm::StructType::get(context.llvm_context());
|
|
}
|
|
|
|
template <typename InstT>
|
|
requires(InstT::Kind.template IsAnyOf<
|
|
SemIR::AssociatedEntityType, SemIR::FacetType, SemIR::FunctionType,
|
|
SemIR::FunctionTypeWithSelfType, SemIR::GenericClassType,
|
|
SemIR::GenericInterfaceType, SemIR::UnboundElementType,
|
|
SemIR::WhereExpr>())
|
|
static auto BuildTypeForInst(FileContext& context, InstT /*inst*/)
|
|
-> llvm::Type* {
|
|
// Return an empty struct as a placeholder.
|
|
// TODO: Should we model an interface as a witness table, or an associated
|
|
// entity as an index?
|
|
return llvm::StructType::get(context.llvm_context());
|
|
}
|
|
|
|
auto FileContext::BuildType(SemIR::InstId inst_id) -> llvm::Type* {
|
|
// Use overload resolution to select the implementation, producing compile
|
|
// errors when BuildTypeForInst isn't defined for a given instruction.
|
|
CARBON_KIND_SWITCH(sem_ir_->insts().Get(inst_id)) {
|
|
#define CARBON_SEM_IR_INST_KIND(Name) \
|
|
case CARBON_KIND(SemIR::Name inst): { \
|
|
return BuildTypeForInst(*this, inst); \
|
|
}
|
|
#include "toolchain/sem_ir/inst_kind.def"
|
|
}
|
|
}
|
|
|
|
auto FileContext::BuildGlobalVariableDecl(SemIR::VarStorage var_storage)
|
|
-> llvm::GlobalVariable* {
|
|
// TODO: Mangle name.
|
|
auto mangled_name =
|
|
*sem_ir().names().GetAsStringIfIdentifier(var_storage.pretty_name_id);
|
|
auto* type = GetType(var_storage.type_id);
|
|
return new llvm::GlobalVariable(
|
|
llvm_module(), type,
|
|
/*isConstant=*/false, llvm::GlobalVariable::InternalLinkage,
|
|
llvm::Constant::getNullValue(type), mangled_name);
|
|
}
|
|
|
|
auto FileContext::GetLocForDI(SemIR::InstId inst_id) -> LocForDI {
|
|
SemIR::AbsoluteNodeId resolved = GetAbsoluteNodeId(sem_ir_, inst_id).back();
|
|
const auto& tree_and_subtrees =
|
|
(*tree_and_subtrees_getters_for_debug_info_)[resolved.check_ir_id
|
|
.index]();
|
|
const auto& tokens = tree_and_subtrees.tree().tokens();
|
|
|
|
if (resolved.node_id.has_value()) {
|
|
auto token = tree_and_subtrees.GetSubtreeTokenRange(resolved.node_id).begin;
|
|
return {.filename = tokens.source().filename(),
|
|
.line_number = tokens.GetLineNumber(token),
|
|
.column_number = tokens.GetColumnNumber(token)};
|
|
} else {
|
|
return {.filename = tokens.source().filename(),
|
|
.line_number = 0,
|
|
.column_number = 0};
|
|
}
|
|
}
|
|
|
|
} // namespace Carbon::Lower
|