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The source line debug info generation assumed that the function would have debug info. Check for a non-null di_subprogram_ to ensure we are emitting debug info for the function. Rather than checking the di_builder_ - this way if we implement `nodebug` function attributes, it'll fall out naturally (by creating a null di_subprogram_) rather than having to come back and change this from "is debug info enabled" to "is debug info enabled for this function" later on.
217 lines
8.2 KiB
C++
217 lines
8.2 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/function_context.h"
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#include "common/vlog.h"
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#include "toolchain/base/kind_switch.h"
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#include "toolchain/sem_ir/file.h"
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namespace Carbon::Lower {
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FunctionContext::FunctionContext(FileContext& file_context,
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llvm::Function* function,
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llvm::DISubprogram* di_subprogram,
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llvm::raw_ostream* vlog_stream)
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: file_context_(&file_context),
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function_(function),
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builder_(file_context.llvm_context(), llvm::ConstantFolder(),
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Inserter(file_context.inst_namer())),
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di_subprogram_(di_subprogram),
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vlog_stream_(vlog_stream) {
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function_->setSubprogram(di_subprogram_);
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}
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auto FunctionContext::GetBlock(SemIR::InstBlockId block_id)
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-> llvm::BasicBlock* {
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auto result = blocks_.Insert(block_id, [&] {
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llvm::StringRef label_name;
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if (const auto* inst_namer = file_context_->inst_namer()) {
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label_name = inst_namer->GetUnscopedLabelFor(block_id);
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}
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return llvm::BasicBlock::Create(llvm_context(), label_name, function_);
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});
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return result.value();
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}
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auto FunctionContext::TryToReuseBlock(SemIR::InstBlockId block_id,
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llvm::BasicBlock* block) -> bool {
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if (!blocks_.Insert(block_id, block).is_inserted()) {
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return false;
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}
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if (block == synthetic_block_) {
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synthetic_block_ = nullptr;
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}
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if (const auto* inst_namer = file_context_->inst_namer()) {
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block->setName(inst_namer->GetUnscopedLabelFor(block_id));
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}
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return true;
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}
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auto FunctionContext::LowerBlock(SemIR::InstBlockId block_id) -> void {
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for (auto inst_id : sem_ir().inst_blocks().Get(block_id)) {
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LowerInst(inst_id);
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}
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}
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// Handles typed instructions for LowerInst. Many instructions lower using
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// HandleInst, but others are unsupported or have trivial lowering.
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//
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// This only calls HandleInst for versions that should have implementations. A
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// different approach would be to have the logic below implemented as HandleInst
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// overloads. However, forward declarations of HandleInst exist for all `InstT`
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// types, which would make getting the right overload resolution complex.
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template <typename InstT>
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static auto LowerInstHelper(FunctionContext& context, SemIR::InstId inst_id,
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InstT inst) {
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if constexpr (!InstT::Kind.is_lowered()) {
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CARBON_FATAL()
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<< "Encountered an instruction that isn't expected to lower. It's "
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"possible that logic needs to be changed in order to stop "
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"showing this instruction in lowered contexts. Instruction: "
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<< inst;
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} else if constexpr (InstT::Kind.constant_kind() ==
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SemIR::InstConstantKind::Always) {
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CARBON_FATAL() << "Missing constant value for constant instruction "
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<< inst;
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} else if constexpr (InstT::Kind.is_type() == SemIR::InstIsType::Always) {
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// For instructions that are always of type `type`, produce the trivial
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// runtime representation of type `type`.
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context.SetLocal(inst_id, context.GetTypeAsValue());
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} else {
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HandleInst(context, inst_id, inst);
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}
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}
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// TODO: Consider renaming Handle##Name, instead relying on typed_inst overload
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// resolution. That would allow putting the nonexistent handler implementations
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// in `requires`-style overloads.
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// NOLINTNEXTLINE(readability-function-size): The define confuses lint.
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auto FunctionContext::LowerInst(SemIR::InstId inst_id) -> void {
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// Skip over constants. `FileContext::GetGlobal` lowers them as needed.
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if (sem_ir().constant_values().Get(inst_id).is_constant()) {
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return;
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}
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auto inst = sem_ir().insts().Get(inst_id);
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CARBON_VLOG() << "Lowering " << inst_id << ": " << inst << "\n";
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builder_.getInserter().SetCurrentInstId(inst_id);
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if (di_subprogram_) {
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auto loc = file_context_->GetDiagnosticLoc(inst_id);
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builder_.SetCurrentDebugLocation(
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llvm::DILocation::get(builder_.getContext(), loc.line_number,
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loc.column_number, di_subprogram_));
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}
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CARBON_KIND_SWITCH(inst) {
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#define CARBON_SEM_IR_INST_KIND(Name) \
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case CARBON_KIND(SemIR::Name typed_inst): { \
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LowerInstHelper(*this, inst_id, typed_inst); \
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break; \
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}
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#include "toolchain/sem_ir/inst_kind.def"
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}
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builder_.getInserter().SetCurrentInstId(SemIR::InstId::Invalid);
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if (di_subprogram_) {
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builder_.SetCurrentDebugLocation(llvm::DebugLoc());
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}
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}
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auto FunctionContext::GetBlockArg(SemIR::InstBlockId block_id,
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SemIR::TypeId type_id) -> llvm::PHINode* {
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llvm::BasicBlock* block = GetBlock(block_id);
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// Find the existing phi, if any.
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auto phis = block->phis();
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if (!phis.empty()) {
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CARBON_CHECK(std::next(phis.begin()) == phis.end())
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<< "Expected at most one phi, found "
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<< std::distance(phis.begin(), phis.end());
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return &*phis.begin();
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}
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// The number of predecessor slots to reserve.
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static constexpr unsigned NumReservedPredecessors = 2;
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auto* phi = llvm::PHINode::Create(GetType(type_id), NumReservedPredecessors);
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phi->insertInto(block, block->begin());
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return phi;
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}
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auto FunctionContext::MakeSyntheticBlock() -> llvm::BasicBlock* {
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synthetic_block_ = llvm::BasicBlock::Create(llvm_context(), "", function_);
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return synthetic_block_;
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}
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auto FunctionContext::FinishInit(SemIR::TypeId type_id, SemIR::InstId dest_id,
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SemIR::InstId source_id) -> void {
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switch (SemIR::InitRepr::ForType(sem_ir(), type_id).kind) {
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case SemIR::InitRepr::None:
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break;
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case SemIR::InitRepr::InPlace:
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if (sem_ir().constant_values().Get(source_id).is_constant()) {
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// When initializing from a constant, emission of the source doesn't
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// initialize the destination. Copy the constant value instead.
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CopyValue(type_id, source_id, dest_id);
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}
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break;
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case SemIR::InitRepr::ByCopy:
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CopyValue(type_id, source_id, dest_id);
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break;
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case SemIR::InitRepr::Incomplete:
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CARBON_FATAL() << "Lowering aggregate initialization of incomplete type "
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<< sem_ir().types().GetAsInst(type_id);
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}
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}
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auto FunctionContext::CopyValue(SemIR::TypeId type_id, SemIR::InstId source_id,
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SemIR::InstId dest_id) -> void {
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switch (auto rep = SemIR::ValueRepr::ForType(sem_ir(), type_id); rep.kind) {
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case SemIR::ValueRepr::Unknown:
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CARBON_FATAL() << "Attempt to copy incomplete type";
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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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builder().CreateStore(GetValue(source_id), GetValue(dest_id));
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break;
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case SemIR::ValueRepr::Pointer:
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CopyObject(type_id, source_id, dest_id);
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break;
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case SemIR::ValueRepr::Custom:
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CARBON_FATAL() << "TODO: Add support for CopyValue with custom value rep";
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}
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}
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auto FunctionContext::CopyObject(SemIR::TypeId type_id, SemIR::InstId source_id,
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SemIR::InstId dest_id) -> void {
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const auto& layout = llvm_module().getDataLayout();
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auto* type = GetType(type_id);
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// TODO: Compute known alignment of the source and destination, which may
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// be greater than the alignment computed by LLVM.
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auto align = layout.getABITypeAlign(type);
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// TODO: Attach !tbaa.struct metadata indicating which portions of the
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// type we actually need to copy and which are padding.
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builder().CreateMemCpy(GetValue(dest_id), align, GetValue(source_id), align,
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layout.getTypeAllocSize(type));
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}
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auto FunctionContext::Inserter::InsertHelper(
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llvm::Instruction* inst, const llvm::Twine& name,
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llvm::BasicBlock::iterator insert_pt) const -> void {
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llvm::StringRef base_name;
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llvm::StringRef separator;
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if (inst_namer_ && !inst->getType()->isVoidTy()) {
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base_name = inst_namer_->GetUnscopedNameFor(inst_id_);
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}
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if (!base_name.empty() && !name.isTriviallyEmpty()) {
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separator = ".";
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}
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IRBuilderDefaultInserter::InsertHelper(inst, base_name + separator + name,
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insert_pt);
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}
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} // namespace Carbon::Lower
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