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`GetCallee` is sometimes called on a spliced instruction, and is checking its exact inst operand to see if it's a `BoundMethod`. This fails if the `BoundMethod` is wrapped in another instruction, such as a splice. Normally our approach for such a situation would be to constant-evaluate the operand, but that doesn't work here because the `BoundMethod` will be non-constant if its bound `self` is. So instead we now step through splice instructions manually when looking for the `BoundMethod`.
182 lines
6.7 KiB
C++
182 lines
6.7 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/function.h"
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#include <optional>
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#include <variant>
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#include "toolchain/base/kind_switch.h"
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#include "toolchain/base/value_store_impl.h"
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#include "toolchain/sem_ir/file.h"
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#include "toolchain/sem_ir/generic.h"
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#include "toolchain/sem_ir/ids.h"
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#include "toolchain/sem_ir/typed_insts.h"
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namespace Carbon::SemIR {
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auto TryGetCalleeAsBoundMethod(const File& sem_ir, InstId callee_id,
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SpecificId caller_specific_id)
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-> std::optional<BoundMethod> {
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// Step through splices before checking for a bound method. Unfortunately we
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// can't just look at the constant value of callee_id here, because bound
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// methods are non-constant if their `self` is, so we do a mini-eval here.
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while (true) {
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auto inst = sem_ir.insts().Get(callee_id);
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if (auto splice_inst = inst.TryAs<SpliceInst>()) {
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auto inst_value_id = GetConstantValueInSpecific(
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sem_ir, caller_specific_id, splice_inst->inst_id);
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if (!inst_value_id.is_concrete()) {
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break;
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}
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callee_id = sem_ir.constant_values()
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.GetInstAs<SemIR::InstValue>(inst_value_id)
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.inst_id;
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} else if (auto splice_block = inst.TryAs<SpliceBlock>()) {
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callee_id = splice_block->result_id;
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} else {
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break;
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}
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}
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return sem_ir.insts().TryGetAs<BoundMethod>(callee_id);
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}
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auto GetCallee(const File& sem_ir, InstId callee_id,
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SpecificId caller_specific_id) -> Callee {
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CalleeFunction fn = {.function_id = FunctionId::None,
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.enclosing_specific_id = SpecificId::None,
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.resolved_specific_id = SpecificId::None,
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.self_type_id = InstId::None,
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.self_id = InstId::None};
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if (auto bound_method =
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TryGetCalleeAsBoundMethod(sem_ir, callee_id, caller_specific_id)) {
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fn.self_id = bound_method->object_id;
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callee_id = bound_method->function_decl_id;
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}
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if (caller_specific_id.has_value()) {
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callee_id = sem_ir.constant_values().GetInstIdIfValid(
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GetConstantValueInSpecific(sem_ir, caller_specific_id, callee_id));
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CARBON_CHECK(callee_id.has_value(),
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"Invalid callee id in a specific context");
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}
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auto val_id = sem_ir.constant_values().GetConstantInstId(callee_id);
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if (!val_id.has_value()) {
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return CalleeNonFunction();
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}
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if (auto specific_function =
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sem_ir.insts().TryGetAs<SpecificFunction>(val_id)) {
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fn.resolved_specific_id = specific_function->specific_id;
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val_id = sem_ir.constant_values().GetConstantInstId(
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specific_function->callee_id);
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} else if (auto specific_impl_function =
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sem_ir.insts().TryGetAs<SpecificImplFunction>(val_id)) {
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fn.resolved_specific_id = specific_impl_function->specific_id;
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val_id = sem_ir.constant_values().GetConstantInstId(
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specific_impl_function->callee_id);
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}
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if (!val_id.has_value()) {
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return CalleeNonFunction();
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}
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// Identify the function we're calling by its type.
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auto fn_type_inst_id =
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sem_ir.types().GetTypeInstId(sem_ir.insts().Get(val_id).type_id());
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if (auto cpp_overload_set_type =
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sem_ir.insts().TryGetAs<CppOverloadSetType>(fn_type_inst_id)) {
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CARBON_CHECK(!fn.resolved_specific_id.has_value(),
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"Only `SpecificFunction` will be resolved, not C++ overloads");
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return CalleeCppOverloadSet{
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.cpp_overload_set_id = cpp_overload_set_type->overload_set_id,
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.self_id = fn.self_id};
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}
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if (auto impl_fn_type =
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sem_ir.insts().TryGetAs<FunctionTypeWithSelfType>(fn_type_inst_id)) {
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// Combine the associated function's `Self` with the interface function
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// data.
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fn.self_type_id = impl_fn_type->self_id;
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fn_type_inst_id = impl_fn_type->interface_function_type_id;
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}
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auto fn_type_val_id =
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sem_ir.constant_values().GetConstantInstId(fn_type_inst_id);
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if (fn_type_val_id == ErrorInst::InstId) {
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return CalleeError();
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}
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auto fn_type = sem_ir.insts().TryGetAs<FunctionType>(fn_type_val_id);
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if (!fn_type) {
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return CalleeNonFunction();
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}
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fn.function_id = fn_type->function_id;
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fn.enclosing_specific_id = fn_type->specific_id;
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return fn;
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}
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auto GetCalleeAsFunction(const File& sem_ir, InstId callee_id,
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SpecificId caller_specific_id) -> CalleeFunction {
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auto callee = GetCallee(sem_ir, callee_id, caller_specific_id);
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CARBON_CHECK(std::holds_alternative<CalleeFunction>(callee));
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return std::get<CalleeFunction>(callee);
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}
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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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// Remap the base's vtable entry to the appropriate constant usable in
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// the context of the derived class (for the specific for the base
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// class, for instance).
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auto fn_decl_const_id =
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GetConstantValueInSpecific(sem_ir, base_class_specific_id, fn_decl_id);
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fn_decl_id = sem_ir.constant_values().GetInstId(fn_decl_const_id);
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auto specific_id = SpecificId::None;
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auto callee_id = fn_decl_id;
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if (auto specific_function =
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sem_ir.insts().TryGetAs<SpecificFunction>(fn_decl_id)) {
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specific_id = specific_function->specific_id;
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callee_id = specific_function->callee_id;
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}
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// Identify the function we're calling by its type.
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auto fn_type_inst =
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sem_ir.types().GetAsInst(sem_ir.insts().Get(callee_id).type_id());
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return {.fn_decl_id = fn_decl_id,
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.fn_decl_const_id = fn_decl_const_id,
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.function_id = fn_type_inst.As<FunctionType>().function_id,
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.specific_id = specific_id};
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}
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auto Function::GetDeclaredReturnType(const File& file,
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SpecificId specific_id) const -> TypeId {
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if (!return_type_inst_id.has_value()) {
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return TypeId::None;
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}
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return file.types().GetTypeIdForTypeConstantId(
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GetConstantValueInSpecific(file, specific_id, return_type_inst_id));
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}
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auto Function::GetDeclaredReturnForm(const File& file,
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SpecificId specific_id) const -> InstId {
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if (!return_form_inst_id.has_value()) {
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// Treat as equivalent to `-> ()`.
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return InstId::None;
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}
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auto return_form_constant_id =
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GetConstantValueInSpecific(file, specific_id, return_form_inst_id);
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return file.constant_values().GetInstId(return_form_constant_id);
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}
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} // namespace Carbon::SemIR
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namespace Carbon {
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template class ValueStore<SemIR::FunctionId, SemIR::Function,
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Tag<SemIR::CheckIRId>>;
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} // namespace Carbon
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