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Also add the code to support interop with simple assignment. This doesn't yet work because we don't support overloaded simple assignment in general yet.
346 lines
12 KiB
C++
346 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/cpp/operators.h"
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#include "clang/Sema/Overload.h"
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#include "clang/Sema/Sema.h"
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#include "toolchain/check/core_identifier.h"
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#include "toolchain/check/cpp/import.h"
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#include "toolchain/check/cpp/location.h"
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#include "toolchain/check/cpp/overload_resolution.h"
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#include "toolchain/check/cpp/type_mapping.h"
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#include "toolchain/check/inst.h"
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#include "toolchain/check/type.h"
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#include "toolchain/check/type_completion.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::Check {
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// Maps Carbon operator interface and operator names to Clang operator kinds.
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static auto GetClangOperatorKind(Context& context, SemIR::LocId loc_id,
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CoreIdentifier interface_name,
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CoreIdentifier op_name)
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-> std::optional<clang::OverloadedOperatorKind> {
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switch (interface_name) {
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// Unary operators.
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case CoreIdentifier::Destroy:
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case CoreIdentifier::As:
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case CoreIdentifier::ImplicitAs:
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case CoreIdentifier::UnsafeAs:
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case CoreIdentifier::Copy: {
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// TODO: Support destructors and conversions.
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return std::nullopt;
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}
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// Increment and decrement.
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case CoreIdentifier::Inc: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_PlusPlus;
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}
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case CoreIdentifier::Dec: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_MinusMinus;
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}
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// Arithmetic.
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case CoreIdentifier::Negate: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_Minus;
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}
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// Bitwise.
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case CoreIdentifier::BitComplement: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_Tilde;
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}
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// Binary operators.
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// Arithmetic operators.
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case CoreIdentifier::AddWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_Plus;
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}
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case CoreIdentifier::SubWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_Minus;
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}
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case CoreIdentifier::MulWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_Star;
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}
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case CoreIdentifier::DivWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_Slash;
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}
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case CoreIdentifier::ModWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_Percent;
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}
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// Bitwise operators.
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case CoreIdentifier::BitAndWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_Amp;
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}
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case CoreIdentifier::BitOrWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_Pipe;
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}
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case CoreIdentifier::BitXorWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_Caret;
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}
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case CoreIdentifier::LeftShiftWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_LessLess;
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}
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case CoreIdentifier::RightShiftWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_GreaterGreater;
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}
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// Assignment.
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case CoreIdentifier::AssignWith: {
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// TODO: This is not yet reached because we don't use the `AssignWith`
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// interface for assignment yet.
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_Equal;
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}
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// Compound assignment arithmetic operators.
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case CoreIdentifier::AddAssignWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_PlusEqual;
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}
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case CoreIdentifier::SubAssignWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_MinusEqual;
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}
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case CoreIdentifier::MulAssignWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_StarEqual;
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}
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case CoreIdentifier::DivAssignWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_SlashEqual;
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}
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case CoreIdentifier::ModAssignWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_PercentEqual;
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}
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// Compound assignment bitwise operators.
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case CoreIdentifier::BitAndAssignWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_AmpEqual;
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}
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case CoreIdentifier::BitOrAssignWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_PipeEqual;
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}
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case CoreIdentifier::BitXorAssignWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_CaretEqual;
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}
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case CoreIdentifier::LeftShiftAssignWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_LessLessEqual;
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}
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case CoreIdentifier::RightShiftAssignWith: {
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CARBON_CHECK(op_name == CoreIdentifier::Op);
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return clang::OO_GreaterGreaterEqual;
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}
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// Relational operators.
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case CoreIdentifier::EqWith: {
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if (op_name == CoreIdentifier::Equal) {
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return clang::OO_EqualEqual;
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}
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CARBON_CHECK(op_name == CoreIdentifier::NotEqual);
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return clang::OO_ExclaimEqual;
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}
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case CoreIdentifier::OrderedWith: {
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switch (op_name) {
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case CoreIdentifier::Less:
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return clang::OO_Less;
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case CoreIdentifier::Greater:
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return clang::OO_Greater;
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case CoreIdentifier::LessOrEquivalent:
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return clang::OO_LessEqual;
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case CoreIdentifier::GreaterOrEquivalent:
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return clang::OO_GreaterEqual;
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default:
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CARBON_FATAL("Unexpected OrderedWith op `{0}`", op_name);
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}
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}
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// Array indexing.
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case CoreIdentifier::IndexWith: {
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CARBON_CHECK(op_name == CoreIdentifier::At);
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return clang::OO_Subscript;
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}
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default: {
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context.TODO(loc_id, llvm::formatv("Unsupported operator interface `{0}`",
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interface_name));
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return std::nullopt;
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}
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}
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}
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auto LookupCppOperator(Context& context, SemIR::LocId loc_id, Operator op,
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llvm::ArrayRef<SemIR::InstId> arg_ids) -> SemIR::InstId {
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// Register an annotation scope to flush any Clang diagnostics when we return.
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// This is important to ensure that Clang diagnostics are properly interleaved
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// with Carbon diagnostics.
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Diagnostics::AnnotationScope annotate_diagnostics(&context.emitter(),
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[](auto& /*builder*/) {});
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auto op_kind =
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GetClangOperatorKind(context, loc_id, op.interface_name, op.op_name);
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if (!op_kind) {
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return SemIR::InstId::None;
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}
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// Make sure all operands are complete before lookup.
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for (SemIR::InstId arg_id : arg_ids) {
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SemIR::TypeId arg_type_id = context.insts().Get(arg_id).type_id();
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if (!RequireCompleteType(context, arg_type_id, loc_id, [&] {
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CARBON_DIAGNOSTIC(
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IncompleteOperandTypeInCppOperatorLookup, Error,
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"looking up a C++ operator with incomplete operand type {0}",
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SemIR::TypeId);
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return context.emitter().Build(
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loc_id, IncompleteOperandTypeInCppOperatorLookup, arg_type_id);
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})) {
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return SemIR::ErrorInst::InstId;
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}
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}
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auto maybe_arg_exprs = InventClangArgs(context, arg_ids);
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if (!maybe_arg_exprs.has_value()) {
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return SemIR::ErrorInst::InstId;
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}
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auto& arg_exprs = *maybe_arg_exprs;
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clang::SourceLocation loc = GetCppLocation(context, loc_id);
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clang::OverloadCandidateSet::OperatorRewriteInfo operator_rewrite_info(
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*op_kind, loc, /*AllowRewritten=*/true);
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clang::OverloadCandidateSet candidate_set(
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loc, clang::OverloadCandidateSet::CSK_Operator, operator_rewrite_info);
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clang::Sema& sema = context.clang_sema();
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// This works for both unary and binary operators.
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sema.LookupOverloadedBinOp(candidate_set, *op_kind, clang::UnresolvedSet<0>{},
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arg_exprs);
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clang::OverloadCandidateSet::iterator best_viable_fn;
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switch (candidate_set.BestViableFunction(sema, loc, best_viable_fn)) {
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case clang::OverloadingResult::OR_Success: {
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if (!best_viable_fn->Function) {
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// The best viable candidate was a builtin. Let the Carbon operator
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// machinery handle that.
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return SemIR::InstId::None;
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}
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if (best_viable_fn->RewriteKind) {
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context.TODO(
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loc_id,
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llvm::formatv("Rewriting operator{0} using {1} is not supported",
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clang::getOperatorSpelling(
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candidate_set.getRewriteInfo().OriginalOperator),
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best_viable_fn->Function->getNameAsString()));
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return SemIR::ErrorInst::InstId;
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}
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sema.MarkFunctionReferenced(loc, best_viable_fn->Function);
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auto result_id = ImportCppFunctionDecl(
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context, loc_id, best_viable_fn->Function,
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// If this is an operator method, the first arg will be used as self.
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arg_ids.size() -
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(isa<clang::CXXMethodDecl>(best_viable_fn->Function) ? 1 : 0));
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if (auto fn_decl =
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context.insts().TryGetAsWithId<SemIR::FunctionDecl>(result_id)) {
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CheckCppOverloadAccess(context, loc_id, best_viable_fn->FoundDecl,
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fn_decl->inst_id);
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} else {
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CARBON_CHECK(result_id == SemIR::ErrorInst::InstId);
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}
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return result_id;
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}
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case clang::OverloadingResult::OR_No_Viable_Function: {
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// OK, didn't find a viable C++ candidate, but this is not an error, as
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// there might be a Carbon candidate.
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return SemIR::InstId::None;
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}
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case clang::OverloadingResult::OR_Ambiguous: {
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const char* spelling = clang::getOperatorSpelling(*op_kind);
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candidate_set.NoteCandidates(
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clang::PartialDiagnosticAt(
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loc, sema.PDiag(clang::diag::err_ovl_ambiguous_oper_binary)
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<< spelling << arg_exprs[0]->getType()
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<< arg_exprs[1]->getType()),
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sema, clang::OCD_AmbiguousCandidates, arg_exprs, spelling, loc);
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return SemIR::ErrorInst::InstId;
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}
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case clang::OverloadingResult::OR_Deleted:
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const char* spelling = clang::getOperatorSpelling(*op_kind);
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auto* message = best_viable_fn->Function->getDeletedMessage();
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// The best viable function might be a different operator if the best
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// candidate is a rewritten candidate, so use the operator kind of the
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// candidate itself in the diagnostic.
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candidate_set.NoteCandidates(
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clang::PartialDiagnosticAt(
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loc, sema.PDiag(clang::diag::err_ovl_deleted_oper)
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<< clang::getOperatorSpelling(
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best_viable_fn->Function->getOverloadedOperator())
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<< (message != nullptr)
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<< (message ? message->getString() : llvm::StringRef())),
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sema, clang::OCD_AllCandidates, arg_exprs, spelling, loc);
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return SemIR::ErrorInst::InstId;
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}
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}
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auto IsCppOperatorMethodDecl(clang::Decl* decl) -> bool {
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auto* clang_method_decl = dyn_cast<clang::CXXMethodDecl>(decl);
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return clang_method_decl && clang_method_decl->isOverloadedOperator();
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}
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static auto GetAsCppFunctionDecl(Context& context, SemIR::InstId inst_id)
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-> clang::FunctionDecl* {
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auto function_type = context.types().TryGetAs<SemIR::FunctionType>(
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context.insts().Get(inst_id).type_id());
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if (!function_type) {
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return nullptr;
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}
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SemIR::ClangDeclId clang_decl_id =
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context.functions().Get(function_type->function_id).clang_decl_id;
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return clang_decl_id.has_value()
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? dyn_cast<clang::FunctionDecl>(
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context.clang_decls().Get(clang_decl_id).key.decl)
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: nullptr;
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}
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auto IsCppOperatorMethod(Context& context, SemIR::InstId inst_id) -> bool {
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auto* function_decl = GetAsCppFunctionDecl(context, inst_id);
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return function_decl && IsCppOperatorMethodDecl(function_decl);
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}
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auto IsCppConstructorOrNonMethodOperator(Context& context,
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SemIR::InstId inst_id) -> bool {
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auto* function_decl = GetAsCppFunctionDecl(context, inst_id);
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if (!function_decl) {
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return false;
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}
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if (isa<clang::CXXConstructorDecl>(function_decl)) {
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return true;
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}
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return !isa<clang::CXXMethodDecl>(function_decl) &&
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function_decl->isOverloadedOperator();
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}
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} // namespace Carbon::Check
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