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By adding an `ImportDecl` instruction, this creates something that can be referenced through `ImportIRInst`. packages/no_prelude/implicit_imports_entities.carbon is getting a test of this (import_conflict and import_conflict_reverse). Also re-packs ImportIR from 24 bytes to 16 on 64-bit, since I'm touching everywhere that makes one anyways.
916 lines
25 KiB
C++
916 lines
25 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/sem_ir/formatter.h"
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#include "common/ostream.h"
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#include "llvm/ADT/Sequence.h"
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#include "llvm/ADT/StringExtras.h"
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#include "llvm/Support/SaveAndRestore.h"
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#include "toolchain/base/kind_switch.h"
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#include "toolchain/base/value_store.h"
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#include "toolchain/lex/tokenized_buffer.h"
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#include "toolchain/parse/tree.h"
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#include "toolchain/sem_ir/builtin_function_kind.h"
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#include "toolchain/sem_ir/function.h"
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#include "toolchain/sem_ir/ids.h"
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#include "toolchain/sem_ir/inst_namer.h"
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#include "toolchain/sem_ir/name_scope.h"
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#include "toolchain/sem_ir/typed_insts.h"
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namespace Carbon::SemIR {
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// Formatter for printing textual Semantics IR.
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class Formatter {
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public:
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enum class AddSpace : bool { Before, After };
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explicit Formatter(const Lex::TokenizedBuffer& tokenized_buffer,
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const Parse::Tree& parse_tree, const File& sem_ir,
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llvm::raw_ostream& out)
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: sem_ir_(sem_ir),
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out_(out),
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inst_namer_(tokenized_buffer, parse_tree, sem_ir) {}
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// Prints the SemIR.
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//
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// Constants are printed first and may be referenced by later sections,
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// including file-scoped instructions. The file scope may contain entity
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// declarations which are defined later, such as classes.
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auto Format() -> void {
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out_ << "--- " << sem_ir_.filename() << "\n\n";
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FormatConstants();
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out_ << inst_namer_.GetScopeName(InstNamer::ScopeId::File) << " ";
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OpenBrace();
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// TODO: Handle the case where there are multiple top-level instruction
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// blocks. For example, there may be branching in the initializer of a
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// global or a type expression.
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if (auto block_id = sem_ir_.top_inst_block_id(); block_id.is_valid()) {
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llvm::SaveAndRestore file_scope(scope_, InstNamer::ScopeId::File);
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FormatCodeBlock(block_id);
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}
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CloseBrace();
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out_ << '\n';
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for (int i : llvm::seq(sem_ir_.interfaces().size())) {
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FormatInterface(InterfaceId(i));
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}
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for (int i : llvm::seq(sem_ir_.impls().size())) {
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FormatImpl(ImplId(i));
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}
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for (int i : llvm::seq(sem_ir_.classes().size())) {
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FormatClass(ClassId(i));
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}
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for (int i : llvm::seq(sem_ir_.functions().size())) {
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FormatFunction(FunctionId(i));
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}
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// End-of-file newline.
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out_ << "\n";
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}
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// Begins a braced block. Writes an open brace, and prepares to insert a
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// newline after it if the braced block is non-empty.
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auto OpenBrace() -> void {
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// Put the constant value of an instruction before any braced block, rather
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// than at the end.
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FormatPendingConstantValue(AddSpace::After);
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out_ << '{';
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indent_ += 2;
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after_open_brace_ = true;
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}
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// Ends a braced block by writing a close brace.
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auto CloseBrace() -> void {
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indent_ -= 2;
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if (!after_open_brace_) {
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Indent();
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}
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out_ << '}';
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after_open_brace_ = false;
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}
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// Adds beginning-of-line indentation. If we're at the start of a braced
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// block, first starts a new line.
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auto Indent(int offset = 0) -> void {
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if (after_open_brace_) {
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out_ << '\n';
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after_open_brace_ = false;
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}
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out_.indent(indent_ + offset);
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}
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// Adds beginning-of-label indentation. This is one level less than normal
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// indentation. Labels also get a preceding blank line unless they're at the
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// start of a block.
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auto IndentLabel() -> void {
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CARBON_CHECK(indent_ >= 2);
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if (!after_open_brace_) {
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out_ << '\n';
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}
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Indent(-2);
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}
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// Wraps the current line, prior to some text that we expect to be quite long
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// and more readable on a separate line. This is indented two levels more than
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// the ambient text.
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auto WrapLine() -> void {
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out_ << '\n';
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Indent(4);
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}
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auto FormatConstants() -> void {
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if (!sem_ir_.constants().size()) {
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return;
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}
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llvm::SaveAndRestore constants_scope(scope_, InstNamer::ScopeId::Constants);
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out_ << inst_namer_.GetScopeName(InstNamer::ScopeId::Constants) << " ";
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OpenBrace();
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FormatCodeBlock(sem_ir_.constants().array_ref());
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CloseBrace();
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out_ << "\n\n";
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}
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auto FormatClass(ClassId id) -> void {
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const Class& class_info = sem_ir_.classes().Get(id);
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out_ << "\nclass ";
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FormatClassName(id);
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if (class_info.generic_id.is_valid()) {
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FormatGeneric(class_info.generic_id);
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}
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llvm::SaveAndRestore class_scope(scope_, inst_namer_.GetScopeFor(id));
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if (class_info.scope_id.is_valid()) {
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out_ << ' ';
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OpenBrace();
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FormatCodeBlock(class_info.body_block_id);
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FormatNameScope(class_info.scope_id, "!members:\n");
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CloseBrace();
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out_ << '\n';
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} else {
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out_ << ";\n";
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}
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}
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auto FormatInterface(InterfaceId id) -> void {
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const Interface& interface_info = sem_ir_.interfaces().Get(id);
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out_ << "\ninterface ";
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FormatInterfaceName(id);
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if (interface_info.generic_id.is_valid()) {
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FormatGeneric(interface_info.generic_id);
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}
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llvm::SaveAndRestore interface_scope(scope_, inst_namer_.GetScopeFor(id));
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if (interface_info.scope_id.is_valid()) {
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out_ << ' ';
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OpenBrace();
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FormatCodeBlock(interface_info.body_block_id);
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// Always include the !members label because we always list the witness in
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// this section.
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IndentLabel();
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out_ << "!members:\n";
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FormatNameScope(interface_info.scope_id);
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Indent();
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out_ << "witness = ";
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FormatArg(interface_info.associated_entities_id);
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out_ << "\n";
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CloseBrace();
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out_ << '\n';
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} else {
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out_ << ";\n";
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}
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}
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auto FormatImpl(ImplId id) -> void {
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const Impl& impl_info = sem_ir_.impls().Get(id);
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out_ << "\nimpl ";
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FormatImplName(id);
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out_ << ": ";
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// TODO: Include the deduced parameter list if present.
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FormatType(impl_info.self_id);
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out_ << " as ";
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FormatType(impl_info.constraint_id);
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llvm::SaveAndRestore impl_scope(scope_, inst_namer_.GetScopeFor(id));
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if (impl_info.scope_id.is_valid()) {
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out_ << ' ';
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OpenBrace();
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FormatCodeBlock(impl_info.body_block_id);
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// Print the !members label even if the name scope is empty because we
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// always list the witness in this section.
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IndentLabel();
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out_ << "!members:\n";
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FormatNameScope(impl_info.scope_id);
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Indent();
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out_ << "witness = ";
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FormatArg(impl_info.witness_id);
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out_ << "\n";
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CloseBrace();
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out_ << '\n';
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} else {
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out_ << ";\n";
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}
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}
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auto FormatFunction(FunctionId id) -> void {
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const Function& fn = sem_ir_.functions().Get(id);
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out_ << "\n";
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if (fn.is_extern) {
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out_ << "extern ";
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}
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out_ << "fn ";
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FormatFunctionName(id);
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llvm::SaveAndRestore function_scope(scope_, inst_namer_.GetScopeFor(id));
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if (fn.implicit_param_refs_id.is_valid()) {
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out_ << "[";
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FormatParamList(fn.implicit_param_refs_id);
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out_ << "]";
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}
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if (fn.param_refs_id.is_valid()) {
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out_ << "(";
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FormatParamList(fn.param_refs_id);
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out_ << ")";
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}
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if (fn.return_storage_id.is_valid()) {
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out_ << " -> ";
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if (!fn.body_block_ids.empty() && fn.has_return_slot()) {
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FormatInstName(fn.return_storage_id);
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out_ << ": ";
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}
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FormatType(sem_ir_.insts().Get(fn.return_storage_id).type_id());
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}
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if (fn.builtin_kind != BuiltinFunctionKind::None) {
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out_ << " = \"";
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out_.write_escaped(fn.builtin_kind.name(),
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/*UseHexEscapes=*/true);
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out_ << "\"";
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}
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if (fn.generic_id.is_valid()) {
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FormatGeneric(fn.generic_id);
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}
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if (!fn.body_block_ids.empty()) {
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out_ << ' ';
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OpenBrace();
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for (auto block_id : fn.body_block_ids) {
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IndentLabel();
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FormatLabel(block_id);
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out_ << ":\n";
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FormatCodeBlock(block_id);
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}
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CloseBrace();
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out_ << '\n';
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} else {
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out_ << ";\n";
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}
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}
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auto FormatGeneric(GenericId generic_id) -> void {
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WrapLine();
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out_ << "generic [";
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FormatParamList(sem_ir_.generics().Get(generic_id).bindings_id);
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out_ << "]";
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}
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auto FormatParamList(InstBlockId param_refs_id) -> void {
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llvm::ListSeparator sep;
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for (InstId param_id : sem_ir_.inst_blocks().Get(param_refs_id)) {
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out_ << sep;
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if (!param_id.is_valid()) {
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out_ << "invalid";
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continue;
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}
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if (auto addr = sem_ir_.insts().TryGetAs<SemIR::AddrPattern>(param_id)) {
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out_ << "addr ";
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param_id = addr->inner_id;
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}
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FormatInstName(param_id);
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out_ << ": ";
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FormatType(sem_ir_.insts().Get(param_id).type_id());
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}
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}
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auto FormatCodeBlock(InstBlockId block_id) -> void {
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if (block_id.is_valid()) {
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FormatCodeBlock(sem_ir_.inst_blocks().Get(block_id));
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}
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}
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auto FormatCodeBlock(llvm::ArrayRef<InstId> block) -> void {
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for (const InstId inst_id : block) {
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FormatInstruction(inst_id);
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}
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}
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auto FormatTrailingBlock(InstBlockId block_id) -> void {
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out_ << ' ';
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OpenBrace();
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FormatCodeBlock(block_id);
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CloseBrace();
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}
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auto FormatNameScope(NameScopeId id, llvm::StringRef label = "") -> void {
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const auto& scope = sem_ir_.name_scopes().Get(id);
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if (scope.names.empty() && scope.extended_scopes.empty() &&
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!scope.has_error) {
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// Name scope is empty.
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return;
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}
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if (!label.empty()) {
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IndentLabel();
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out_ << label;
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}
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for (auto [name_id, inst_id, access_kind] : scope.names) {
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Indent();
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out_ << ".";
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FormatName(name_id);
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switch (access_kind) {
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case SemIR::AccessKind::Public:
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break;
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case SemIR::AccessKind::Protected:
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out_ << " [protected]";
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break;
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case SemIR::AccessKind::Private:
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out_ << " [private]";
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break;
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}
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out_ << " = ";
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FormatInstName(inst_id);
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out_ << "\n";
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}
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for (auto extended_scope_id : scope.extended_scopes) {
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// TODO: Print this scope in a better way.
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Indent();
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out_ << "extend " << extended_scope_id << "\n";
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}
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if (scope.has_error) {
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Indent();
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out_ << "has_error\n";
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}
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}
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auto FormatInstruction(InstId inst_id) -> void {
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if (!inst_id.is_valid()) {
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Indent();
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out_ << "invalid\n";
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return;
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}
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FormatInstruction(inst_id, sem_ir_.insts().Get(inst_id));
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}
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auto FormatInstruction(InstId inst_id, Inst inst) -> void {
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CARBON_KIND_SWITCH(inst) {
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#define CARBON_SEM_IR_INST_KIND(InstT) \
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case CARBON_KIND(InstT typed_inst): { \
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FormatInstruction(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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}
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template <typename InstT>
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auto FormatInstruction(InstId inst_id, InstT inst) -> void {
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Indent();
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FormatInstructionLHS(inst_id, inst);
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out_ << InstT::Kind.ir_name();
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pending_constant_value_ = sem_ir_.constant_values().Get(inst_id);
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pending_constant_value_is_self_ =
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sem_ir_.constant_values().GetInstId(pending_constant_value_) == inst_id;
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FormatInstructionRHS(inst);
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FormatPendingConstantValue(AddSpace::Before);
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out_ << "\n";
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}
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// Don't print a constant for ImportRefUnloaded.
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auto FormatInstruction(InstId inst_id, ImportRefUnloaded inst) -> void {
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Indent();
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FormatInstructionLHS(inst_id, inst);
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out_ << ImportRefUnloaded::Kind.ir_name();
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FormatInstructionRHS(inst);
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out_ << "\n";
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}
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// If there is a pending constant value attached to the current instruction,
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// print it now and clear it out. The constant value gets printed before the
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// first braced block argument, or at the end of the instruction if there are
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// no such arguments.
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auto FormatPendingConstantValue(AddSpace space_where) -> void {
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if (pending_constant_value_ == ConstantId::NotConstant) {
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return;
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}
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if (space_where == AddSpace::Before) {
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out_ << ' ';
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}
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out_ << '[';
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if (pending_constant_value_.is_valid()) {
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out_ << (pending_constant_value_.is_symbolic() ? "symbolic" : "template");
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if (!pending_constant_value_is_self_) {
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out_ << " = ";
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FormatInstName(
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sem_ir_.constant_values().GetInstId(pending_constant_value_));
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// TODO: For a symbolic constant, include the generic and index.
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}
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} else {
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out_ << pending_constant_value_;
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}
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out_ << ']';
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if (space_where == AddSpace::After) {
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out_ << ' ';
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}
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pending_constant_value_ = ConstantId::NotConstant;
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}
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auto FormatInstructionLHS(InstId inst_id, Inst inst) -> void {
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switch (inst.kind().value_kind()) {
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case InstValueKind::Typed:
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FormatInstName(inst_id);
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out_ << ": ";
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switch (GetExprCategory(sem_ir_, inst_id)) {
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case ExprCategory::NotExpr:
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case ExprCategory::Error:
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case ExprCategory::Value:
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case ExprCategory::Mixed:
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break;
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case ExprCategory::DurableRef:
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case ExprCategory::EphemeralRef:
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out_ << "ref ";
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break;
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case ExprCategory::Initializing:
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out_ << "init ";
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break;
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}
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FormatType(inst.type_id());
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out_ << " = ";
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break;
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case InstValueKind::None:
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break;
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}
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}
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// Format ImportDecl with its name.
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auto FormatInstructionLHS(InstId inst_id, ImportDecl /*inst*/) -> void {
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FormatInstName(inst_id);
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out_ << " = ";
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}
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// Print ImportRefUnloaded with type-like semantics even though it lacks a
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// type_id.
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auto FormatInstructionLHS(InstId inst_id, ImportRefUnloaded /*inst*/)
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-> void {
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FormatInstName(inst_id);
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out_ << " = ";
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}
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template <typename InstT>
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auto FormatInstructionRHS(InstT inst) -> void {
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// By default, an instruction has a comma-separated argument list.
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using Info = Internal::InstLikeTypeInfo<InstT>;
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if constexpr (Info::NumArgs == 2) {
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FormatArgs(Info::template Get<0>(inst), Info::template Get<1>(inst));
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} else if constexpr (Info::NumArgs == 1) {
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FormatArgs(Info::template Get<0>(inst));
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} else {
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FormatArgs();
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}
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}
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auto FormatInstructionRHS(BindSymbolicName inst) -> void {
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// A BindSymbolicName with no value is a purely symbolic binding, such as
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// the `Self` in an interface. Don't print out `invalid` for the value.
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if (inst.value_id.is_valid()) {
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FormatArgs(inst.bind_name_id, inst.value_id);
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} else {
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FormatArgs(inst.bind_name_id);
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}
|
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}
|
|
|
|
auto FormatInstructionRHS(BlockArg inst) -> void {
|
|
out_ << " ";
|
|
FormatLabel(inst.block_id);
|
|
}
|
|
|
|
auto FormatInstructionRHS(Namespace inst) -> void {
|
|
if (inst.import_id.is_valid()) {
|
|
FormatArgs(inst.import_id, inst.name_scope_id);
|
|
} else {
|
|
FormatArgs(inst.name_scope_id);
|
|
}
|
|
}
|
|
|
|
auto FormatInstruction(InstId /*inst_id*/, BranchIf inst) -> void {
|
|
if (!in_terminator_sequence_) {
|
|
Indent();
|
|
}
|
|
out_ << "if ";
|
|
FormatInstName(inst.cond_id);
|
|
out_ << " " << Branch::Kind.ir_name() << " ";
|
|
FormatLabel(inst.target_id);
|
|
out_ << " else ";
|
|
in_terminator_sequence_ = true;
|
|
}
|
|
|
|
auto FormatInstruction(InstId /*inst_id*/, BranchWithArg inst) -> void {
|
|
if (!in_terminator_sequence_) {
|
|
Indent();
|
|
}
|
|
out_ << BranchWithArg::Kind.ir_name() << " ";
|
|
FormatLabel(inst.target_id);
|
|
out_ << "(";
|
|
FormatInstName(inst.arg_id);
|
|
out_ << ")\n";
|
|
in_terminator_sequence_ = false;
|
|
}
|
|
|
|
auto FormatInstruction(InstId /*inst_id*/, Branch inst) -> void {
|
|
if (!in_terminator_sequence_) {
|
|
Indent();
|
|
}
|
|
out_ << Branch::Kind.ir_name() << " ";
|
|
FormatLabel(inst.target_id);
|
|
out_ << "\n";
|
|
in_terminator_sequence_ = false;
|
|
}
|
|
|
|
auto FormatInstructionRHS(Call inst) -> void {
|
|
out_ << " ";
|
|
FormatArg(inst.callee_id);
|
|
|
|
if (!inst.args_id.is_valid()) {
|
|
out_ << "(<invalid>)";
|
|
return;
|
|
}
|
|
|
|
llvm::ArrayRef<InstId> args = sem_ir_.inst_blocks().Get(inst.args_id);
|
|
|
|
bool has_return_slot = GetInitRepr(sem_ir_, inst.type_id).has_return_slot();
|
|
InstId return_slot_id = InstId::Invalid;
|
|
if (has_return_slot) {
|
|
return_slot_id = args.back();
|
|
args = args.drop_back();
|
|
}
|
|
|
|
llvm::ListSeparator sep;
|
|
out_ << '(';
|
|
for (auto inst_id : args) {
|
|
out_ << sep;
|
|
FormatArg(inst_id);
|
|
}
|
|
out_ << ')';
|
|
|
|
if (has_return_slot) {
|
|
FormatReturnSlot(return_slot_id);
|
|
}
|
|
}
|
|
|
|
auto FormatInstructionRHS(ArrayInit inst) -> void {
|
|
FormatArgs(inst.inits_id);
|
|
FormatReturnSlot(inst.dest_id);
|
|
}
|
|
|
|
auto FormatInstructionRHS(InitializeFrom inst) -> void {
|
|
FormatArgs(inst.src_id);
|
|
FormatReturnSlot(inst.dest_id);
|
|
}
|
|
|
|
auto FormatInstructionRHS(ReturnExpr ret) -> void {
|
|
FormatArgs(ret.expr_id);
|
|
if (ret.dest_id.is_valid()) {
|
|
FormatReturnSlot(ret.dest_id);
|
|
}
|
|
}
|
|
|
|
auto FormatInstructionRHS(StructInit init) -> void {
|
|
FormatArgs(init.elements_id);
|
|
FormatReturnSlot(init.dest_id);
|
|
}
|
|
|
|
auto FormatInstructionRHS(TupleInit init) -> void {
|
|
FormatArgs(init.elements_id);
|
|
FormatReturnSlot(init.dest_id);
|
|
}
|
|
|
|
auto FormatInstructionRHS(FunctionDecl inst) -> void {
|
|
FormatArgs(inst.function_id);
|
|
FormatTrailingBlock(inst.decl_block_id);
|
|
}
|
|
|
|
auto FormatInstructionRHS(ClassDecl inst) -> void {
|
|
FormatArgs(inst.class_id);
|
|
FormatTrailingBlock(inst.decl_block_id);
|
|
}
|
|
|
|
auto FormatInstructionRHS(ClassType inst) -> void {
|
|
if (inst.instance_id.is_valid()) {
|
|
FormatArgs(inst.class_id, inst.instance_id);
|
|
} else {
|
|
FormatArgs(inst.class_id);
|
|
}
|
|
}
|
|
|
|
auto FormatInstructionRHS(ImplDecl inst) -> void {
|
|
FormatArgs(inst.impl_id);
|
|
FormatTrailingBlock(inst.decl_block_id);
|
|
}
|
|
|
|
auto FormatInstructionRHS(InterfaceDecl inst) -> void {
|
|
FormatArgs(inst.interface_id);
|
|
FormatTrailingBlock(inst.decl_block_id);
|
|
}
|
|
|
|
auto FormatInstructionRHS(InterfaceType inst) -> void {
|
|
if (inst.instance_id.is_valid()) {
|
|
FormatArgs(inst.interface_id, inst.instance_id);
|
|
} else {
|
|
FormatArgs(inst.interface_id);
|
|
}
|
|
}
|
|
|
|
auto FormatInstructionRHS(IntLiteral inst) -> void {
|
|
out_ << " ";
|
|
sem_ir_.ints()
|
|
.Get(inst.int_id)
|
|
.print(out_, sem_ir_.types().IsSignedInt(inst.type_id));
|
|
}
|
|
|
|
auto FormatInstructionRHS(FloatLiteral inst) -> void {
|
|
llvm::SmallVector<char, 16> buffer;
|
|
sem_ir_.floats().Get(inst.float_id).toString(buffer);
|
|
out_ << " " << buffer;
|
|
}
|
|
|
|
auto FormatInstructionRHS(ImportRefUnloaded inst) -> void {
|
|
FormatArgs(inst.import_ir_inst_id);
|
|
out_ << ", unloaded";
|
|
}
|
|
|
|
auto FormatInstructionRHS(ImportRefLoaded inst) -> void {
|
|
FormatArgs(inst.import_ir_inst_id);
|
|
out_ << ", loaded";
|
|
}
|
|
|
|
auto FormatInstructionRHS(SpliceBlock inst) -> void {
|
|
FormatArgs(inst.result_id);
|
|
FormatTrailingBlock(inst.block_id);
|
|
}
|
|
|
|
// StructTypeFields are formatted as part of their StructType.
|
|
auto FormatInstruction(InstId /*inst_id*/, StructTypeField /*inst*/) -> void {
|
|
}
|
|
|
|
auto FormatInstructionRHS(StructType inst) -> void {
|
|
out_ << " {";
|
|
llvm::ListSeparator sep;
|
|
for (auto field_id : sem_ir_.inst_blocks().Get(inst.fields_id)) {
|
|
out_ << sep << ".";
|
|
auto field = sem_ir_.insts().GetAs<StructTypeField>(field_id);
|
|
FormatName(field.name_id);
|
|
out_ << ": ";
|
|
FormatType(field.field_type_id);
|
|
}
|
|
out_ << "}";
|
|
}
|
|
|
|
auto FormatArgs() -> void {}
|
|
|
|
template <typename... Args>
|
|
auto FormatArgs(Args... args) -> void {
|
|
out_ << ' ';
|
|
llvm::ListSeparator sep;
|
|
((out_ << sep, FormatArg(args)), ...);
|
|
}
|
|
|
|
auto FormatArg(BoolValue v) -> void { out_ << v; }
|
|
|
|
auto FormatArg(BuiltinKind kind) -> void { out_ << kind.label(); }
|
|
|
|
auto FormatArg(BindNameId id) -> void {
|
|
const auto& info = sem_ir_.bind_names().Get(id);
|
|
FormatName(info.name_id);
|
|
if (info.bind_index.is_valid()) {
|
|
out_ << " " << info.bind_index.index;
|
|
}
|
|
}
|
|
|
|
auto FormatArg(FunctionId id) -> void { FormatFunctionName(id); }
|
|
|
|
auto FormatArg(ClassId id) -> void { FormatClassName(id); }
|
|
|
|
auto FormatArg(InterfaceId id) -> void { FormatInterfaceName(id); }
|
|
|
|
auto FormatArg(IntKind k) -> void { k.Print(out_); }
|
|
|
|
auto FormatArg(FloatKind k) -> void { k.Print(out_); }
|
|
|
|
auto FormatArg(ImplId id) -> void { FormatImplName(id); }
|
|
|
|
auto FormatArg(ImportIRId id) -> void { out_ << id; }
|
|
|
|
auto FormatArg(ImportIRInstId id) -> void {
|
|
// Don't format the inst_id because it refers to a different IR.
|
|
// TODO: Consider a better way to format the InstID from other IRs.
|
|
auto import_ir_inst = sem_ir_.import_ir_insts().Get(id);
|
|
out_ << import_ir_inst.ir_id << ", " << import_ir_inst.inst_id;
|
|
}
|
|
|
|
auto FormatArg(IntId id) -> void {
|
|
// We don't know the signedness to use here. Default to unsigned.
|
|
sem_ir_.ints().Get(id).print(out_, /*isSigned=*/false);
|
|
}
|
|
|
|
auto FormatArg(LocId id) -> void {
|
|
if (id.is_import_ir_inst_id()) {
|
|
out_ << "{";
|
|
FormatArg(id.import_ir_inst_id());
|
|
out_ << "}";
|
|
} else {
|
|
// TODO: For a NodeId, this prints the index of the node. Do we want it to
|
|
// print a line number or something in order to make it less dependent on
|
|
// parse?
|
|
out_ << id;
|
|
}
|
|
}
|
|
|
|
auto FormatArg(ElementIndex index) -> void { out_ << index; }
|
|
|
|
auto FormatArg(NameScopeId id) -> void {
|
|
OpenBrace();
|
|
FormatNameScope(id);
|
|
CloseBrace();
|
|
}
|
|
|
|
auto FormatArg(InstId id) -> void { FormatInstName(id); }
|
|
|
|
auto FormatArg(InstBlockId id) -> void {
|
|
if (!id.is_valid()) {
|
|
out_ << "invalid";
|
|
return;
|
|
}
|
|
|
|
out_ << '(';
|
|
llvm::ListSeparator sep;
|
|
for (auto inst_id : sem_ir_.inst_blocks().Get(id)) {
|
|
out_ << sep;
|
|
FormatArg(inst_id);
|
|
}
|
|
out_ << ')';
|
|
}
|
|
|
|
auto FormatArg(GenericInstanceId id) -> void {
|
|
const auto& instance = sem_ir_.generic_instances().Get(id);
|
|
FormatArg(instance.args_id);
|
|
}
|
|
|
|
auto FormatArg(RealId id) -> void {
|
|
// TODO: Format with a `.` when the exponent is near zero.
|
|
const auto& real = sem_ir_.reals().Get(id);
|
|
real.mantissa.print(out_, /*isSigned=*/false);
|
|
out_ << (real.is_decimal ? 'e' : 'p') << real.exponent;
|
|
}
|
|
|
|
auto FormatArg(StringLiteralValueId id) -> void {
|
|
out_ << '"';
|
|
out_.write_escaped(sem_ir_.string_literal_values().Get(id),
|
|
/*UseHexEscapes=*/true);
|
|
out_ << '"';
|
|
}
|
|
|
|
auto FormatArg(NameId id) -> void { FormatName(id); }
|
|
|
|
auto FormatArg(TypeId id) -> void { FormatType(id); }
|
|
|
|
auto FormatArg(TypeBlockId id) -> void {
|
|
out_ << '(';
|
|
llvm::ListSeparator sep;
|
|
for (auto type_id : sem_ir_.type_blocks().Get(id)) {
|
|
out_ << sep;
|
|
FormatArg(type_id);
|
|
}
|
|
out_ << ')';
|
|
}
|
|
|
|
auto FormatReturnSlot(InstId dest_id) -> void {
|
|
out_ << " to ";
|
|
FormatArg(dest_id);
|
|
}
|
|
|
|
auto FormatName(NameId id) -> void {
|
|
out_ << sem_ir_.names().GetFormatted(id);
|
|
}
|
|
|
|
auto FormatInstName(InstId id) -> void {
|
|
out_ << inst_namer_.GetNameFor(scope_, id);
|
|
}
|
|
|
|
auto FormatLabel(InstBlockId id) -> void {
|
|
out_ << inst_namer_.GetLabelFor(scope_, id);
|
|
}
|
|
|
|
auto FormatFunctionName(FunctionId id) -> void {
|
|
out_ << inst_namer_.GetNameFor(id);
|
|
}
|
|
|
|
auto FormatClassName(ClassId id) -> void {
|
|
out_ << inst_namer_.GetNameFor(id);
|
|
}
|
|
|
|
auto FormatInterfaceName(InterfaceId id) -> void {
|
|
out_ << inst_namer_.GetNameFor(id);
|
|
}
|
|
|
|
auto FormatImplName(ImplId id) -> void { out_ << inst_namer_.GetNameFor(id); }
|
|
|
|
auto FormatType(TypeId id) -> void {
|
|
if (!id.is_valid()) {
|
|
out_ << "invalid";
|
|
} else {
|
|
// Types are formatted in the `constants` scope because they only refer to
|
|
// constants.
|
|
llvm::SaveAndRestore file_scope(scope_, InstNamer::ScopeId::Constants);
|
|
FormatInstName(sem_ir_.types().GetInstId(id));
|
|
}
|
|
}
|
|
|
|
private:
|
|
const File& sem_ir_;
|
|
llvm::raw_ostream& out_;
|
|
InstNamer inst_namer_;
|
|
|
|
// The current scope that we are formatting within. References to names in
|
|
// this scope will not have a `@scope.` prefix added.
|
|
InstNamer::ScopeId scope_ = InstNamer::ScopeId::None;
|
|
|
|
// Whether we are formatting in a terminator sequence, that is, a sequence of
|
|
// branches at the end of a block. The entirety of a terminator sequence is
|
|
// formatted on a single line, despite being multiple instructions.
|
|
bool in_terminator_sequence_ = false;
|
|
|
|
// The indent depth to use for new instructions.
|
|
int indent_ = 0;
|
|
|
|
// Whether we are currently formatting immediately after an open brace. If so,
|
|
// a newline will be inserted before the next line indent.
|
|
bool after_open_brace_ = false;
|
|
|
|
// The constant value of the current instruction, if it has one that has not
|
|
// yet been printed. The value `NotConstant` is used as a sentinel to indicate
|
|
// there is nothing to print.
|
|
ConstantId pending_constant_value_ = ConstantId::NotConstant;
|
|
|
|
// Whether `pending_constant_value_`'s instruction is the same as the
|
|
// instruction currently being printed. If true, only the phase of the
|
|
// constant is printed, and the value is omitted.
|
|
bool pending_constant_value_is_self_ = false;
|
|
};
|
|
|
|
auto FormatFile(const Lex::TokenizedBuffer& tokenized_buffer,
|
|
const Parse::Tree& parse_tree, const File& sem_ir,
|
|
llvm::raw_ostream& out) -> void {
|
|
Formatter(tokenized_buffer, parse_tree, sem_ir, out).Format();
|
|
}
|
|
|
|
} // namespace Carbon::SemIR
|