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This proposal renames the syntax used to mark an overriding definition of a virtual method from `impl fn` to `override fn` to avoid ambiguity: besides indicating an overriding virtual function, it can be parsed as an "impl" declaration when the construct following "impl" begins with a lambda introduced by "fn". Closes #5711 --------- Co-authored-by: Richard Smith <richard@metafoo.co.uk>
237 lines
9.2 KiB
C++
237 lines
9.2 KiB
C++
// Part of the Carbon Language project, under the Apache License v2.0 with LLVM
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// Exceptions. See /LICENSE for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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#ifndef CARBON_TOOLCHAIN_SEM_IR_FUNCTION_H_
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#define CARBON_TOOLCHAIN_SEM_IR_FUNCTION_H_
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#include "clang/AST/Decl.h"
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#include "toolchain/base/value_store.h"
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#include "toolchain/sem_ir/builtin_function_kind.h"
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#include "toolchain/sem_ir/clang_decl.h"
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#include "toolchain/sem_ir/entity_with_params_base.h"
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#include "toolchain/sem_ir/ids.h"
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#include "toolchain/sem_ir/inst_categories.h"
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#include "toolchain/sem_ir/typed_insts.h"
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namespace Carbon::SemIR {
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// Function-specific fields.
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struct FunctionFields {
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// Kinds of special functions.
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enum class SpecialFunctionKind : uint8_t {
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None,
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Builtin,
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Thunk,
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HasCppThunk,
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};
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// Kinds of virtual modifiers that can apply to functions.
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enum class VirtualModifier : uint8_t { None, Virtual, Abstract, Override };
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// The following members always have values, and do not change throughout the
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// lifetime of the function.
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// This block consists of references to the `AnyParam` insts that represent
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// the function's `Call` parameters. The "`Call` parameters" are the
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// parameters corresponding to the arguments that are passed to a `Call`
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// inst, so they do not include compile-time parameters, but they do include
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// the return slot.
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//
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// The parameters appear in declaration order: `self` (if present), then the
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// explicit runtime parameters, then the return slot (which is "declared" by
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// the function's return type declaration). This is not populated on imported
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// functions, because it is relevant only for a function definition.
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InstBlockId call_params_id;
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// A reference to the instruction in the entity's pattern block that depends
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// on all other pattern insts pertaining to the return slot pattern. This may
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// or may not be used by the function, depending on whether the return type
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// needs a return slot, but is always present if the function has a declared
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// return type.
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InstId return_slot_pattern_id;
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// Which kind of special function this is, if any. This is used in cases where
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// a special function would otherwise be indistinguishable from a normal
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// function.
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SpecialFunctionKind special_function_kind = SpecialFunctionKind::None;
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// Which, if any, virtual modifier (virtual, abstract, or impl) is applied to
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// this function.
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VirtualModifier virtual_modifier;
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// The index of the vtable slot for this virtual function. -1 if the function
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// is not virtual (ie: (virtual_modifier == None) == (virtual_index == -1)).
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int32_t virtual_index = -1;
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// The implicit self parameter pattern, if any, in
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// implicit_param_patterns_id from EntityWithParamsBase.
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InstId self_param_id = InstId::None;
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// Data that is specific to the special function kind. Use
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// `builtin_function_kind()`, `thunk_decl_id()` or `cpp_thunk_decl_id()` to
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// access this.
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AnyRawId special_function_kind_data = AnyRawId(AnyRawId::NoneIndex);
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// The following members are accumulated throughout the function definition.
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// A list of the statically reachable code blocks in the body of the
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// function, in lexical order. The first block is the entry block. This will
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// be empty for declarations that don't have a visible definition.
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llvm::SmallVector<InstBlockId> body_block_ids = {};
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// If the function is imported from C++, the Clang function declaration. Used
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// for mangling and inline function definition code generation. The AST is
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// owned by `CompileSubcommand` so we expect it to be live from `Function`
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// creation to mangling.
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ClangDeclId clang_decl_id = ClangDeclId::None;
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};
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// A function. See EntityWithParamsBase regarding the inheritance here.
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struct Function : public EntityWithParamsBase,
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public FunctionFields,
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public Printable<Function> {
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struct ParamPatternInfo {
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InstId inst_id;
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AnyParamPattern inst;
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EntityNameId entity_name_id;
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KnownInstId<VarPattern> var_pattern_id;
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};
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auto Print(llvm::raw_ostream& out) const -> void {
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out << "{";
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PrintBaseFields(out);
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if (call_params_id.has_value()) {
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out << ", call_params_id: " << call_params_id;
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}
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if (return_slot_pattern_id.has_value()) {
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out << ", return_slot_pattern: " << return_slot_pattern_id;
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}
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if (!body_block_ids.empty()) {
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out << llvm::formatv(
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", body: [{0}]",
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llvm::make_range(body_block_ids.begin(), body_block_ids.end()));
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}
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out << "}";
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}
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// Returns the builtin function kind for this function, or None if this is not
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// a builtin function.
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auto builtin_function_kind() const -> BuiltinFunctionKind {
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return special_function_kind == SpecialFunctionKind::Builtin
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? BuiltinFunctionKind::FromInt(special_function_kind_data.index)
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: BuiltinFunctionKind::None;
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}
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// Returns the declaration that this is a non C++ thunk for, or None if this
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// function is not a thunk.
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auto thunk_decl_id() const -> InstId {
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return special_function_kind == SpecialFunctionKind::Thunk
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? InstId(special_function_kind_data.index)
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: InstId::None;
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}
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// Returns the declaration of the thunk that should be called to call this
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// function, or None if this function is not a C++ function that requires
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// calling a thunk.
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auto cpp_thunk_decl_id() const -> InstId {
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return special_function_kind == SpecialFunctionKind::HasCppThunk
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? InstId(special_function_kind_data.index)
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: InstId::None;
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}
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// Given the ID of an instruction from `param_patterns_id` or
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// `implicit_param_patterns_id`, returns a `ParamPatternInfo` value with the
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// corresponding `Call` parameter pattern, its ID, and the entity_name_id of
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// the underlying binding pattern, or std::nullopt if there is no
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// corresponding `Call` parameter.
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// TODO: Remove this, by exposing `Call` parameter patterns instead of `Call`
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// parameters in EntityWithParams.
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static auto GetParamPatternInfoFromPatternId(const File& sem_ir,
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InstId param_pattern_id)
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-> std::optional<ParamPatternInfo>;
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// Gets the declared return type for a specific version of this function, or
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// the canonical return type for the original declaration no specific is
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// specified. Returns `None` if no return type was specified, in which
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// case the effective return type is an empty tuple.
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auto GetDeclaredReturnType(const File& file,
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SpecificId specific_id = SpecificId::None) const
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-> TypeId;
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// Sets that this function is a builtin function.
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auto SetBuiltinFunction(BuiltinFunctionKind kind) -> void {
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CARBON_CHECK(special_function_kind == SpecialFunctionKind::None);
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special_function_kind = SpecialFunctionKind::Builtin;
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special_function_kind_data = AnyRawId(kind.AsInt());
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}
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// Sets that this function is a thunk.
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auto SetThunk(InstId decl_id) -> void {
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CARBON_CHECK(special_function_kind == SpecialFunctionKind::None);
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special_function_kind = SpecialFunctionKind::Thunk;
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special_function_kind_data = AnyRawId(decl_id.index);
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}
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// Sets that this function is a C++ function that should be called using a C++
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// thunk.
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auto SetHasCppThunk(InstId decl_id) -> void {
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CARBON_CHECK(special_function_kind == SpecialFunctionKind::None);
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special_function_kind = SpecialFunctionKind::HasCppThunk;
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special_function_kind_data = AnyRawId(decl_id.index);
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}
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};
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using FunctionStore = ValueStore<FunctionId, Function>;
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class File;
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struct CalleeFunction : public Printable<CalleeFunction> {
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// The function. `None` if not a function.
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FunctionId function_id;
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// The specific that contains the function.
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SpecificId enclosing_specific_id;
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// The specific for the callee itself, in a resolved call.
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SpecificId resolved_specific_id;
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// The bound `Self` type or facet value. `None` if not a bound interface
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// member.
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InstId self_type_id;
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// The bound `self` parameter. `None` if not a method.
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InstId self_id;
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// True if an error instruction was found.
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bool is_error;
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auto Print(llvm::raw_ostream& out) const -> void {
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out << "{function_id: " << function_id
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<< ", enclosing_specific_id: " << enclosing_specific_id
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<< ", resolved_specific_id: " << resolved_specific_id
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<< ", self_type_id: " << self_type_id << ", self_id: " << self_id
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<< ", is_error: " << is_error << "}";
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}
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};
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// Returns information for the function corresponding to callee_id.
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auto GetCalleeFunction(const File& sem_ir, InstId callee_id,
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SpecificId specific_id = SpecificId::None)
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-> CalleeFunction;
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struct DecomposedVirtualFunction {
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// The canonical instruction from the `fn_decl_const_id`.
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InstId fn_decl_id;
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// The constant for the underlying instruction.
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ConstantId fn_decl_const_id;
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// The function.
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FunctionId function_id;
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// The specific for the function.
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SpecificId specific_id;
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};
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// Returns information for the virtual function table entry instruction.
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auto DecomposeVirtualFunction(const File& sem_ir, InstId fn_decl_id,
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SpecificId base_class_specific_id)
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-> DecomposedVirtualFunction;
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} // namespace Carbon::SemIR
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#endif // CARBON_TOOLCHAIN_SEM_IR_FUNCTION_H_
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