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The first change here is to canonicalize away bit width when tracking integers in our shared value store. This lets us have a more definitive model of "what is the mathematical value". It also frees us to use more efficient bit widths when available, such as bits inside the ID itself. For canonicalizing, we try to minimize the width adjustments and maximize the use of the SSO in APInt, and so we never shrink belowe 64-bits and grow in multiples of the word bit width in the implementation. We also canonicalize to the signed 2s compliment representation so we can represent negative numbers in an intuitive way. The canonicalizing requires getting the bit width out of the type and adjusting to it within the toolchain when doing any kind of math, and this PR updates various places to do that, as well as adding some convenience APIs to assist. Then we take advantage of the canonical form and embed small integers into the ID itself rather than allocating storage for them and referencing them with an index. This is especially helpful for the pervasive small integers such as the sizes of types, arrays, etc. Those no longer require indirection at all. Various short-cut APIs to take advantage of this have also been added. This PR improves lexing by about 5% when there are lots of `i32` types. --------- Co-authored-by: Dana Jansens <danakj@orodu.net> Co-authored-by: Carbon Infra Bot <carbon-external-infra@google.com> Co-authored-by: Jon Ross-Perkins <jperkins@google.com>
283 lines
10 KiB
C++
283 lines
10 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/constant.h"
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#include "llvm/ADT/STLExtras.h"
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#include "llvm/IR/Constants.h"
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#include "llvm/IR/Value.h"
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#include "toolchain/base/kind_switch.h"
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#include "toolchain/lower/file_context.h"
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#include "toolchain/sem_ir/inst.h"
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#include "toolchain/sem_ir/typed_insts.h"
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namespace Carbon::Lower {
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// Context and shared functionality for lowering constant values.
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class ConstantContext {
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public:
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explicit ConstantContext(FileContext& file_context,
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llvm::MutableArrayRef<llvm::Constant*> constants)
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: file_context_(&file_context), constants_(constants) {}
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// Gets the lowered constant value for an instruction, which must have a
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// constant value that has already been lowered.
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auto GetConstant(SemIR::InstId inst_id) const -> llvm::Constant* {
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return GetConstant(file_context_->sem_ir().constant_values().Get(inst_id));
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}
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// Gets the lowered constant value for a constant that has already been
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// lowered.
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auto GetConstant(SemIR::ConstantId const_id) const -> llvm::Constant* {
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CARBON_CHECK(const_id.is_template(), "Unexpected constant ID {0}",
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const_id);
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auto inst_id =
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file_context_->sem_ir().constant_values().GetInstId(const_id);
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CARBON_CHECK(
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inst_id.index >= 0 && inst_id.index <= last_lowered_constant_index_,
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"Queried constant {0} with instruction {1} that has not been lowered "
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"yet",
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const_id, inst_id);
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return constants_[inst_id.index];
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}
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// Returns a constant for the case of a value that should never be used.
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auto GetUnusedConstant(SemIR::TypeId /*type_id*/) const -> llvm::Constant* {
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// TODO: Consider using a poison value of the appropriate type.
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return nullptr;
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}
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// Gets a callable's function. Returns nullptr for a builtin.
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auto GetFunction(SemIR::FunctionId function_id) -> llvm::Function* {
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return file_context_->GetFunction(function_id);
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}
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// Returns a lowered type for the given type_id.
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auto GetType(SemIR::TypeId type_id) const -> llvm::Type* {
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return file_context_->GetType(type_id);
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}
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// Returns a lowered value to use for a value of type `type`.
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auto GetTypeAsValue() const -> llvm::Constant* {
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return file_context_->GetTypeAsValue();
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}
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// Sets the index of the constant we most recently lowered. This is used to
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// check we don't look at constants that we've not lowered yet.
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auto SetLastLoweredConstantIndex(int32_t index) {
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last_lowered_constant_index_ = index;
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}
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auto llvm_context() const -> llvm::LLVMContext& {
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return file_context_->llvm_context();
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}
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auto llvm_module() const -> llvm::Module& {
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return file_context_->llvm_module();
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}
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auto sem_ir() const -> const SemIR::File& { return file_context_->sem_ir(); }
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private:
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FileContext* file_context_;
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llvm::MutableArrayRef<llvm::Constant*> constants_;
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int32_t last_lowered_constant_index_ = -1;
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};
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// Emits an aggregate constant of LLVM type `Type` whose elements are the
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// contents of `refs_id`.
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template <typename ConstantType, typename Type>
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static auto EmitAggregateConstant(ConstantContext& context,
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SemIR::InstBlockId refs_id, Type* llvm_type)
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-> llvm::Constant* {
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auto refs = context.sem_ir().inst_blocks().Get(refs_id);
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llvm::SmallVector<llvm::Constant*> elements;
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elements.reserve(refs.size());
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for (auto ref : refs) {
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elements.push_back(context.GetConstant(ref));
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}
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return ConstantType::get(llvm_type, elements);
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}
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// For each instruction InstT, there is a function below to convert it to an
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// `llvm::Constant*`:
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//
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// auto EmitAsConstant(ConstantContext& context, SemIR::InstT inst)
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// -> llvm::Constant*;
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template <typename InstT>
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requires(InstT::Kind.constant_kind() == SemIR::InstConstantKind::Never ||
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InstT::Kind.constant_kind() == SemIR::InstConstantKind::SymbolicOnly)
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static auto EmitAsConstant(ConstantContext& /*context*/, InstT inst)
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-> llvm::Constant* {
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CARBON_FATAL("Unexpected constant instruction kind {0}", inst);
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}
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// For constants that are always of type `type`, produce the trivial runtime
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// representation of type `type`.
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template <typename InstT>
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requires(InstT::Kind.is_type() == SemIR::InstIsType::Always)
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static auto EmitAsConstant(ConstantContext& context, InstT /*inst*/)
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-> llvm::Constant* {
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return context.GetTypeAsValue();
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}
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static auto EmitAsConstant(ConstantContext& context, SemIR::StructValue inst)
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-> llvm::Constant* {
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return EmitAggregateConstant<llvm::ConstantStruct>(
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context, inst.elements_id,
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cast<llvm::StructType>(context.GetType(inst.type_id)));
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}
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static auto EmitAsConstant(ConstantContext& context, SemIR::TupleValue inst)
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-> llvm::Constant* {
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// TODO: Add an ArrayValue instruction and stop using TupleValues to represent
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// array constants.
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if (context.sem_ir().types().Is<SemIR::ArrayType>(inst.type_id)) {
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return EmitAggregateConstant<llvm::ConstantArray>(
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context, inst.elements_id,
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cast<llvm::ArrayType>(context.GetType(inst.type_id)));
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}
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return EmitAggregateConstant<llvm::ConstantStruct>(
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context, inst.elements_id,
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cast<llvm::StructType>(context.GetType(inst.type_id)));
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}
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static auto EmitAsConstant(ConstantContext& /*context*/, SemIR::AddrOf /*inst*/)
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-> llvm::Constant* {
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// TODO: Constant lvalue support. For now we have no constant lvalues, so we
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// should never form a constant AddrOf.
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CARBON_FATAL("AddrOf constants not supported yet");
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}
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static auto EmitAsConstant(ConstantContext& context,
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SemIR::AssociatedEntity inst) -> llvm::Constant* {
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return context.GetUnusedConstant(inst.type_id);
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}
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static auto EmitAsConstant(ConstantContext& context, SemIR::BaseDecl inst)
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-> llvm::Constant* {
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return context.GetUnusedConstant(inst.type_id);
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}
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static auto EmitAsConstant(ConstantContext& context, SemIR::BoolLiteral inst)
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-> llvm::Constant* {
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return llvm::ConstantInt::get(llvm::Type::getInt1Ty(context.llvm_context()),
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inst.value.index);
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}
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static auto EmitAsConstant(ConstantContext& context, SemIR::BoundMethod inst)
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-> llvm::Constant* {
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// Propagate just the function; the object is separately provided to the
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// enclosing call as an implicit argument.
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return context.GetConstant(inst.function_id);
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}
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static auto EmitAsConstant(ConstantContext& context,
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SemIR::CompleteTypeWitness inst) -> llvm::Constant* {
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return context.GetUnusedConstant(inst.type_id);
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}
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static auto EmitAsConstant(ConstantContext& context, SemIR::FieldDecl inst)
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-> llvm::Constant* {
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return context.GetUnusedConstant(inst.type_id);
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}
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static auto EmitAsConstant(ConstantContext& context, SemIR::FloatLiteral inst)
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-> llvm::Constant* {
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const llvm::APFloat& value = context.sem_ir().floats().Get(inst.float_id);
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return llvm::ConstantFP::get(context.GetType(inst.type_id), value);
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}
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static auto EmitAsConstant(ConstantContext& context,
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SemIR::InterfaceWitness inst) -> llvm::Constant* {
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// TODO: For dynamic dispatch, we might want to lower witness tables as
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// constants.
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return context.GetUnusedConstant(inst.type_id);
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}
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static auto EmitAsConstant(ConstantContext& /*context*/,
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SemIR::ImplDecl /*inst*/) -> llvm::Constant* {
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// An ImplDecl isn't a value, so this constant value won't ever be used.
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// It also doesn't even have a type, so we can't use GetUnusedConstant.
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return nullptr;
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}
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static auto EmitAsConstant(ConstantContext& context, SemIR::IntValue inst)
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-> llvm::Constant* {
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auto* type = context.GetType(inst.type_id);
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// IntLiteral is represented as an empty struct. All other integer types are
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// represented as an LLVM integer type.
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auto* int_type = llvm::dyn_cast<llvm::IntegerType>(type);
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if (!int_type) {
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auto* struct_type = llvm::dyn_cast<llvm::StructType>(type);
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CARBON_CHECK(struct_type && struct_type->getNumElements() == 0);
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return llvm::ConstantStruct::get(struct_type);
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}
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auto val = context.sem_ir().ints().Get(inst.int_id);
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int bit_width = int_type->getBitWidth();
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bool is_signed = context.sem_ir().GetIntTypeInfo(inst.type_id).is_signed;
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return llvm::ConstantInt::get(type, is_signed ? val.sextOrTrunc(bit_width)
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: val.zextOrTrunc(bit_width));
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}
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static auto EmitAsConstant(ConstantContext& context, SemIR::Namespace inst)
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-> llvm::Constant* {
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return context.GetUnusedConstant(inst.type_id);
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}
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static auto EmitAsConstant(ConstantContext& context,
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SemIR::SpecificFunction inst) -> llvm::Constant* {
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return context.GetUnusedConstant(inst.type_id);
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}
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static auto EmitAsConstant(ConstantContext& /*context*/,
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SemIR::StringLiteral inst) -> llvm::Constant* {
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CARBON_FATAL("TODO: Add support: {0}", inst);
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}
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auto LowerConstants(FileContext& file_context,
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llvm::MutableArrayRef<llvm::Constant*> constants) -> void {
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ConstantContext context(file_context, constants);
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// Lower each constant in InstId order. This guarantees we lower the
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// dependencies of a constant before we lower the constant itself.
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for (auto [inst_id_val, const_id] :
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llvm::enumerate(file_context.sem_ir().constant_values().array_ref())) {
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if (!const_id.is_valid() || !const_id.is_template()) {
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// We are only interested in lowering template constants.
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continue;
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}
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auto inst_id = file_context.sem_ir().constant_values().GetInstId(const_id);
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if (inst_id.index != static_cast<int32_t>(inst_id_val)) {
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// This isn't the instruction that defines the constant.
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continue;
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}
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auto inst = file_context.sem_ir().insts().Get(inst_id);
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if (inst.type_id().is_valid() &&
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!file_context.sem_ir().types().IsComplete(inst.type_id())) {
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// If a constant doesn't have a complete type, that means we imported it
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// but didn't actually use it.
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continue;
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}
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llvm::Constant* value = nullptr;
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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 const_inst): { \
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value = EmitAsConstant(context, const_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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constants[inst_id.index] = value;
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context.SetLastLoweredConstantIndex(inst_id.index);
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}
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} // namespace Carbon::Lower
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} // namespace Carbon::Lower
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