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Also propagate the pattern IR along with the pattern-match IR, and use it where appropriate. Strictly speaking, some parts of the pattern-match IR are allocated eagerly, while traversing the pattern's parse tree, but they still aren't actually emitted until we traverse the associated pattern insts. --------- Co-authored-by: Jon Ross-Perkins <jperkins@google.com>
330 lines
12 KiB
C++
330 lines
12 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/check/subst.h"
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#include "toolchain/check/eval.h"
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#include "toolchain/check/generic.h"
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#include "toolchain/sem_ir/copy_on_write_block.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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namespace Carbon::Check {
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namespace {
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// Information about an instruction that we are substituting into.
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struct WorklistItem {
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// The instruction that we are substituting into.
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SemIR::InstId inst_id;
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// Whether the operands of this instruction have been added to the worklist.
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bool is_expanded : 1;
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// The index of the worklist item to process after we finish updating this
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// one. For the final child of an instruction, this is the parent. For any
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// other child, this is the index of the next child of the parent. For the
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// root, this is -1.
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int next_index : 31;
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};
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// A list of instructions that we're currently in the process of substituting
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// into. For details of the algorithm used here, see `SubstConstant`.
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class Worklist {
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public:
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explicit Worklist(SemIR::InstId root_id) {
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worklist_.push_back(
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{.inst_id = root_id, .is_expanded = false, .next_index = -1});
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}
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auto operator[](int index) -> WorklistItem& { return worklist_[index]; }
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auto size() -> int { return worklist_.size(); }
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auto back() -> WorklistItem& { return worklist_.back(); }
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auto Push(SemIR::InstId inst_id) -> void {
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CARBON_CHECK(inst_id.is_valid());
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worklist_.push_back({.inst_id = inst_id,
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.is_expanded = false,
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.next_index = static_cast<int>(worklist_.size() + 1)});
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CARBON_CHECK(worklist_.back().next_index > 0, "Constant too large.");
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}
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auto Pop() -> SemIR::InstId { return worklist_.pop_back_val().inst_id; }
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private:
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// Constants can get pretty large, so use a large worklist. This should be
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// about 4KiB, which should be small enough to comfortably fit on the stack,
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// but large enough that it's unlikely that we'll need a heap allocation.
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llvm::SmallVector<WorklistItem, 512> worklist_;
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};
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} // namespace
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// Pushes the specified operand onto the worklist.
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static auto PushOperand(Context& context, Worklist& worklist,
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SemIR::IdKind kind, int32_t arg) -> void {
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switch (kind) {
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case SemIR::IdKind::For<SemIR::InstId>:
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if (SemIR::InstId inst_id(arg); inst_id.is_valid()) {
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worklist.Push(inst_id);
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}
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break;
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case SemIR::IdKind::For<SemIR::TypeId>:
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if (SemIR::TypeId type_id(arg); type_id.is_valid()) {
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worklist.Push(context.types().GetInstId(type_id));
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}
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break;
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case SemIR::IdKind::For<SemIR::InstBlockId>:
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for (auto inst_id : context.inst_blocks().Get(SemIR::InstBlockId(arg))) {
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worklist.Push(inst_id);
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}
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break;
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case SemIR::IdKind::For<SemIR::TypeBlockId>:
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for (auto type_id : context.type_blocks().Get(SemIR::TypeBlockId(arg))) {
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worklist.Push(context.types().GetInstId(type_id));
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}
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break;
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case SemIR::IdKind::For<SemIR::SpecificId>:
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if (auto specific_id = static_cast<SemIR::SpecificId>(arg);
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specific_id.is_valid()) {
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PushOperand(context, worklist, SemIR::IdKind::For<SemIR::InstBlockId>,
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context.specifics().Get(specific_id).args_id.index);
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}
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break;
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default:
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break;
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}
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}
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// Converts the operands of this instruction into `InstId`s and pushes them onto
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// the worklist.
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static auto ExpandOperands(Context& context, Worklist& worklist,
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SemIR::InstId inst_id) -> void {
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auto inst = context.insts().Get(inst_id);
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auto kinds = inst.ArgKinds();
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PushOperand(context, worklist, SemIR::IdKind::For<SemIR::TypeId>,
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inst.type_id().index);
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PushOperand(context, worklist, kinds.first, inst.arg0());
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PushOperand(context, worklist, kinds.second, inst.arg1());
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}
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// Pops the specified operand from the worklist and returns it.
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static auto PopOperand(Context& context, Worklist& worklist, SemIR::IdKind kind,
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int32_t arg) -> int32_t {
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switch (kind) {
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case SemIR::IdKind::For<SemIR::InstId>: {
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SemIR::InstId inst_id(arg);
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if (!inst_id.is_valid()) {
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return arg;
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}
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return worklist.Pop().index;
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}
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case SemIR::IdKind::For<SemIR::TypeId>: {
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SemIR::TypeId type_id(arg);
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if (!type_id.is_valid()) {
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return arg;
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}
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return context.GetTypeIdForTypeInst(worklist.Pop()).index;
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}
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case SemIR::IdKind::For<SemIR::InstBlockId>: {
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SemIR::InstBlockId old_inst_block_id(arg);
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auto size = context.inst_blocks().Get(old_inst_block_id).size();
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SemIR::CopyOnWriteInstBlock new_inst_block(context.sem_ir(),
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old_inst_block_id);
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for (auto i : llvm::reverse(llvm::seq(size))) {
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new_inst_block.Set(i, worklist.Pop());
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}
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return new_inst_block.GetCanonical().index;
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}
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case SemIR::IdKind::For<SemIR::TypeBlockId>: {
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SemIR::TypeBlockId old_type_block_id(arg);
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auto size = context.type_blocks().Get(old_type_block_id).size();
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SemIR::CopyOnWriteTypeBlock new_type_block(context.sem_ir(),
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old_type_block_id);
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for (auto i : llvm::index_range(0, size)) {
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new_type_block.Set(size - i - 1,
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context.GetTypeIdForTypeInst(worklist.Pop()));
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}
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return new_type_block.GetCanonical().index;
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}
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case SemIR::IdKind::For<SemIR::SpecificId>: {
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SemIR::SpecificId specific_id(arg);
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if (!specific_id.is_valid()) {
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return arg;
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}
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auto& specific = context.specifics().Get(specific_id);
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auto args_id =
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PopOperand(context, worklist, SemIR::IdKind::For<SemIR::InstBlockId>,
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specific.args_id.index);
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return MakeSpecific(context, specific.generic_id,
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SemIR::InstBlockId(args_id))
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.index;
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}
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default:
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return arg;
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}
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}
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// Pops the operands of the specified instruction off the worklist and rebuilds
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// the instruction with the updated operands if it has changed.
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static auto Rebuild(Context& context, Worklist& worklist, SemIR::InstId inst_id,
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const SubstInstCallbacks& callbacks) -> SemIR::InstId {
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auto inst = context.insts().Get(inst_id);
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auto kinds = inst.ArgKinds();
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// Note that we pop in reverse order because we pushed them in forwards order.
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int32_t arg1 = PopOperand(context, worklist, kinds.second, inst.arg1());
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int32_t arg0 = PopOperand(context, worklist, kinds.first, inst.arg0());
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int32_t type_id =
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PopOperand(context, worklist, SemIR::IdKind::For<SemIR::TypeId>,
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inst.type_id().index);
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if (type_id == inst.type_id().index && arg0 == inst.arg0() &&
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arg1 == inst.arg1()) {
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return inst_id;
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}
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// TODO: Do we need to require this type to be complete?
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inst.SetType(SemIR::TypeId(type_id));
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inst.SetArgs(arg0, arg1);
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return callbacks.Rebuild(inst_id, inst);
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}
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auto SubstInst(Context& context, SemIR::InstId inst_id,
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const SubstInstCallbacks& callbacks) -> SemIR::InstId {
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Worklist worklist(inst_id);
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// For each instruction that forms part of the constant, we will visit it
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// twice:
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//
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// - First, we visit it with `is_expanded == false`, we add all of its
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// operands onto the worklist, and process them by following this same
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// process.
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// - Then, once all operands are processed, we visit the instruction with
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// `is_expanded == true`, pop the operands back off the worklist, and if any
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// of them changed, rebuild this instruction.
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//
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// The second step is skipped if we can detect in the first step that the
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// instruction will not need to be rebuilt.
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int index = 0;
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while (index != -1) {
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auto& item = worklist[index];
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if (item.is_expanded) {
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// Rebuild this item if necessary. Note that this might pop items from the
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// worklist but does not reallocate, so does not invalidate `item`.
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item.inst_id = Rebuild(context, worklist, item.inst_id, callbacks);
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index = item.next_index;
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continue;
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}
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if (callbacks.Subst(item.inst_id)) {
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index = item.next_index;
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continue;
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}
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// Extract the operands of this item into the worklist. Note that this
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// modifies the worklist, so it's not safe to use `item` after
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// `ExpandOperands` returns.
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item.is_expanded = true;
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int first_operand = worklist.size();
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int next_index = item.next_index;
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ExpandOperands(context, worklist, item.inst_id);
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// If there are any operands, go and update them before rebuilding this
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// item.
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if (worklist.size() > first_operand) {
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worklist.back().next_index = index;
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index = first_operand;
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} else {
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// No need to rebuild this instruction: its operands can't be changed by
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// substitution because it has none.
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index = next_index;
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}
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}
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CARBON_CHECK(worklist.size() == 1,
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"Unexpected data left behind in work list");
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return worklist.back().inst_id;
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}
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namespace {
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// Callbacks for performing substitution of a set of Substitutions into a
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// symbolic constant.
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class SubstConstantCallbacks final : public SubstInstCallbacks {
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public:
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SubstConstantCallbacks(Context& context, Substitutions substitutions)
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: context_(context), substitutions_(substitutions) {}
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// Applies the given Substitutions to an instruction, in order to replace
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// BindSymbolicName instructions with the value of the binding.
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auto Subst(SemIR::InstId& inst_id) const -> bool override {
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if (context_.constant_values().Get(inst_id).is_template()) {
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// This instruction is a template constant, so can't contain any
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// bindings that need to be substituted.
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return true;
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}
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auto entity_name_id = SemIR::EntityNameId::Invalid;
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if (auto bind =
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context_.insts().TryGetAs<SemIR::BindSymbolicName>(inst_id)) {
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entity_name_id = bind->entity_name_id;
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} else if (auto bind =
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context_.insts().TryGetAs<SemIR::SymbolicBindingPattern>(
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inst_id)) {
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entity_name_id = bind->entity_name_id;
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} else {
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return false;
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}
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// This is a symbolic binding. Check if we're substituting it.
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// TODO: Consider building a hash map for substitutions. We might have a
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// lot of them.
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for (auto [bind_index, replacement_id] : substitutions_) {
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if (context_.entity_names().Get(entity_name_id).bind_index ==
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bind_index) {
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// This is the binding we're replacing. Perform substitution.
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inst_id = context_.constant_values().GetInstId(replacement_id);
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return true;
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}
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}
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// If it's not being substituted, don't look through it. Its constant
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// value doesn't depend on its operand.
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return true;
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}
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// Rebuilds an instruction by building a new constant.
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auto Rebuild(SemIR::InstId /*old_inst_id*/, SemIR::Inst new_inst) const
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-> SemIR::InstId override {
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auto result_id = TryEvalInst(context_, SemIR::InstId::Invalid, new_inst);
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CARBON_CHECK(result_id.is_constant(),
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"Substitution into constant produced non-constant");
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return context_.constant_values().GetInstId(result_id);
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}
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private:
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Context& context_;
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Substitutions substitutions_;
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};
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} // namespace
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auto SubstConstant(Context& context, SemIR::ConstantId const_id,
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Substitutions substitutions) -> SemIR::ConstantId {
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CARBON_CHECK(const_id.is_constant(), "Substituting into non-constant");
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if (substitutions.empty()) {
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// Nothing to substitute.
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return const_id;
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}
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if (!const_id.is_symbolic()) {
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// A template constant can't contain a reference to a symbolic binding.
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return const_id;
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}
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auto subst_inst_id =
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SubstInst(context, context.constant_values().GetInstId(const_id),
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SubstConstantCallbacks(context, substitutions));
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return context.constant_values().Get(subst_inst_id);
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}
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} // namespace Carbon::Check
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