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Continuing along with #3070. Note this is just a file rename, with BUILD edits; every file previously in semantics/ should show as moved (except maybe BUILDs, which split).
256 lines
9.9 KiB
C++
256 lines
9.9 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/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 "toolchain/lower/function_context.h"
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#include "toolchain/sem_ir/file.h"
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#include "toolchain/sem_ir/node.h"
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#include "toolchain/sem_ir/node_kind.h"
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namespace Carbon::Lower {
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FileContext::FileContext(llvm::LLVMContext& llvm_context,
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llvm::StringRef module_name,
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const SemIR::File& semantics_ir,
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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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semantics_ir_(&semantics_ir),
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vlog_stream_(vlog_stream) {
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CARBON_CHECK(!semantics_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 types.
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auto types = semantics_ir_->types();
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types_.resize_for_overwrite(types.size());
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for (auto [i, type] : llvm::enumerate(types)) {
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types_[i] = BuildType(type);
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}
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// Lower function declarations.
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functions_.resize_for_overwrite(semantics_ir_->functions_size());
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for (auto i : llvm::seq(semantics_ir_->functions_size())) {
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functions_[i] = BuildFunctionDeclaration(SemIR::FunctionId(i));
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}
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// TODO: Lower global variable declarations.
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// Lower function definitions.
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for (auto i : llvm::seq(semantics_ir_->functions_size())) {
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BuildFunctionDefinition(SemIR::FunctionId(i));
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}
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// TODO: Lower global variable initializers.
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return std::move(llvm_module_);
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}
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auto FileContext::BuildFunctionDeclaration(SemIR::FunctionId function_id)
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-> llvm::Function* {
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const auto& function = semantics_ir().GetFunction(function_id);
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const bool has_return_slot = function.return_slot_id.is_valid();
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auto& param_refs = semantics_ir().GetNodeBlock(function.param_refs_id);
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SemIR::InitializingRepresentation return_rep =
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function.return_type_id.is_valid()
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? SemIR::GetInitializingRepresentation(semantics_ir(),
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function.return_type_id)
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: SemIR::InitializingRepresentation{
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.kind = SemIR::InitializingRepresentation::None};
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CARBON_CHECK(return_rep.has_return_slot() == has_return_slot);
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llvm::SmallVector<llvm::Type*> param_types;
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// TODO: Consider either storing `param_node_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::NodeId> param_node_ids;
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param_types.reserve(has_return_slot + param_refs.size());
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param_node_ids.reserve(has_return_slot + param_refs.size());
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if (has_return_slot) {
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param_types.push_back(GetType(function.return_type_id)->getPointerTo());
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param_node_ids.push_back(function.return_slot_id);
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}
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for (auto param_ref_id : param_refs) {
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auto param_type_id = semantics_ir().GetNode(param_ref_id).type_id();
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switch (auto value_rep =
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SemIR::GetValueRepresentation(semantics_ir(), param_type_id);
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value_rep.kind) {
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case SemIR::ValueRepresentation::None:
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break;
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case SemIR::ValueRepresentation::Copy:
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case SemIR::ValueRepresentation::Custom:
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param_types.push_back(GetType(value_rep.type));
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param_node_ids.push_back(param_ref_id);
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break;
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case SemIR::ValueRepresentation::Pointer:
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param_types.push_back(GetType(value_rep.type)->getPointerTo());
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param_node_ids.push_back(param_ref_id);
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break;
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}
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}
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// If the initializing representation doesn't produce a value, set the return
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// type to void.
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llvm::Type* return_type =
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return_rep.kind == SemIR::InitializingRepresentation::ByCopy
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? GetType(function.return_type_id)
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: llvm::Type::getVoidTy(llvm_context());
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llvm::FunctionType* function_type =
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llvm::FunctionType::get(return_type, param_types, /*isVarArg=*/false);
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auto* llvm_function = llvm::Function::Create(
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function_type, llvm::Function::ExternalLinkage,
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semantics_ir().GetString(function.name_id), llvm_module());
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// Set up parameters and the return slot.
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for (auto [node_id, arg] :
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llvm::zip_equal(param_node_ids, llvm_function->args())) {
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if (node_id == function.return_slot_id) {
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arg.setName("return");
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arg.addAttr(llvm::Attribute::getWithStructRetType(
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llvm_context(), GetType(function.return_type_id)));
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} else {
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arg.setName(semantics_ir().GetString(
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semantics_ir().GetNode(node_id).GetAsParameter()));
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}
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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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-> void {
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const auto& function = semantics_ir().GetFunction(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 = GetFunction(function_id);
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FunctionContext function_lowering(*this, llvm_function);
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const bool has_return_slot = function.return_slot_id.is_valid();
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// Add parameters to locals.
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// TODO: This duplicates the mapping between semantics nodes and LLVM
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// function parameters that was already computed in BuildFunctionDeclaration.
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// We should only do that once.
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auto& param_refs = semantics_ir().GetNodeBlock(function.param_refs_id);
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int param_index = 0;
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if (has_return_slot) {
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function_lowering.SetLocal(function.return_slot_id,
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llvm_function->getArg(param_index));
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++param_index;
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}
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for (auto param_ref_id : param_refs) {
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auto param_type_id = semantics_ir().GetNode(param_ref_id).type_id();
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if (SemIR::GetValueRepresentation(semantics_ir(), param_type_id).kind ==
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SemIR::ValueRepresentation::None) {
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function_lowering.SetLocal(
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param_ref_id, llvm::PoisonValue::get(GetType(param_type_id)));
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} else {
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function_lowering.SetLocal(param_ref_id,
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llvm_function->getArg(param_index));
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++param_index;
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}
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}
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// Lower all blocks.
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for (auto block_id : body_block_ids) {
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CARBON_VLOG() << "Lowering " << block_id << "\n";
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auto* llvm_block = function_lowering.GetBlock(block_id);
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// Keep the LLVM blocks in lexical order.
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llvm_block->moveBefore(llvm_function->end());
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function_lowering.builder().SetInsertPoint(llvm_block);
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for (const auto& node_id : semantics_ir().GetNodeBlock(block_id)) {
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auto node = semantics_ir().GetNode(node_id);
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CARBON_VLOG() << "Lowering " << node_id << ": " << node << "\n";
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// clang warns on unhandled enum values; clang-tidy is incorrect here.
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// NOLINTNEXTLINE(bugprone-switch-missing-default-case)
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switch (node.kind()) {
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#define CARBON_SEMANTICS_NODE_KIND(Name) \
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case SemIR::NodeKind::Name: \
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Handle##Name(function_lowering, node_id, node); \
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break;
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#include "toolchain/sem_ir/node_kind.def"
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}
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}
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}
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}
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auto FileContext::BuildType(SemIR::NodeId node_id) -> llvm::Type* {
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switch (node_id.index) {
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case SemIR::BuiltinKind::FloatingPointType.AsInt():
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// TODO: Handle different sizes.
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return llvm::Type::getDoubleTy(*llvm_context_);
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case SemIR::BuiltinKind::IntegerType.AsInt():
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// TODO: Handle different sizes.
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return llvm::Type::getInt32Ty(*llvm_context_);
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case SemIR::BuiltinKind::BoolType.AsInt():
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// TODO: We may want to have different representations for `bool` storage
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// (`i8`) versus for `bool` values (`i1`).
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return llvm::Type::getInt1Ty(*llvm_context_);
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default:
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// Handled below.
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break;
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}
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auto node = semantics_ir_->GetNode(node_id);
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switch (node.kind()) {
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case SemIR::NodeKind::ArrayType: {
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auto [bound_node_id, type_id] = node.GetAsArrayType();
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return llvm::ArrayType::get(
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GetType(type_id), semantics_ir_->GetArrayBoundValue(bound_node_id));
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}
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case SemIR::NodeKind::ConstType:
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return GetType(node.GetAsConstType());
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case SemIR::NodeKind::PointerType:
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return llvm::PointerType::get(*llvm_context_, /*AddressSpace=*/0);
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case SemIR::NodeKind::StructType: {
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auto& refs = semantics_ir_->GetNodeBlock(node.GetAsStructType());
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llvm::SmallVector<llvm::Type*> subtypes;
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subtypes.reserve(refs.size());
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for (auto ref_id : refs) {
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auto [field_name_id, field_type_id] =
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semantics_ir_->GetNode(ref_id).GetAsStructTypeField();
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// TODO: Handle recursive types. The restriction for builtins prevents
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// recursion while still letting them cache.
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CARBON_CHECK(field_type_id.index < SemIR::BuiltinKind::ValidCount)
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<< field_type_id;
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subtypes.push_back(GetType(field_type_id));
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}
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return llvm::StructType::get(*llvm_context_, subtypes);
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}
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case SemIR::NodeKind::TupleType: {
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// TODO: Investigate special-casing handling of empty tuples so that they
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// can be collectively replaced with LLVM's void, particularly around
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// function returns. LLVM doesn't allow declaring variables with a void
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// type, so that may require significant special casing.
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auto& refs = semantics_ir_->GetTypeBlock(node.GetAsTupleType());
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llvm::SmallVector<llvm::Type*> subtypes;
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subtypes.reserve(refs.size());
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for (auto ref_id : refs) {
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subtypes.push_back(GetType(ref_id));
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}
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return llvm::StructType::get(*llvm_context_, subtypes);
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}
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default: {
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CARBON_FATAL() << "Cannot use node as type: " << node_id;
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}
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}
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}
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} // namespace Carbon::Lower
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