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We don't yet populate the bases or fields, so the class types show up as empty classes in C++ for now. But we do allow calls to static member functions.
292 lines
12 KiB
C++
292 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/export.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/type_mapping.h"
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#include "toolchain/check/function.h"
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#include "toolchain/check/thunk.h"
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#include "toolchain/check/type.h"
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#include "toolchain/sem_ir/mangler.h"
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namespace Carbon::Check {
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// Create a `clang::FunctionDecl` for the given Carbon function. This
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// can be used to call the Carbon function from C++. The Carbon
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// function's ABI must be compatible with C++.
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//
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// The resulting decl is used to allow a generated C++ function to call
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// a generated Carbon function.
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static auto BuildCppFunctionDeclForCarbonFn(Context& context,
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SemIR::LocId loc_id,
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SemIR::FunctionId function_id)
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-> clang::FunctionDecl* {
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auto clang_loc = GetCppLocation(context, loc_id);
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const SemIR::Function& function = context.functions().Get(function_id);
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// Get parameters types.
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auto carbon_function_params =
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context.inst_blocks().Get(function.call_param_patterns_id);
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llvm::SmallVector<clang::QualType> cpp_param_types;
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for (auto param_inst_id : carbon_function_params) {
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auto scrutinee_type_id = ExtractScrutineeType(
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context.sem_ir(), context.insts().Get(param_inst_id).type_id());
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auto cpp_type = MapToCppType(context, scrutinee_type_id);
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if (cpp_type.isNull()) {
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context.TODO(loc_id, "failed to map C++ type to Carbon");
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return nullptr;
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}
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auto ref_type = context.ast_context().getLValueReferenceType(cpp_type);
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cpp_param_types.push_back(ref_type);
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}
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CARBON_CHECK(function.return_type_inst_id == SemIR::TypeInstId::None);
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auto cpp_return_type = context.ast_context().VoidTy;
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auto cpp_function_type = context.ast_context().getFunctionType(
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cpp_return_type, cpp_param_types,
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clang::FunctionProtoType::ExtProtoInfo());
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auto* identifier_info = GetClangIdentifierInfo(context, function.name_id);
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CARBON_CHECK(identifier_info, "function with non-identifier name {0}",
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function.name_id);
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auto* function_decl = clang::FunctionDecl::Create(
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context.ast_context(), context.ast_context().getTranslationUnitDecl(),
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/*StartLoc=*/clang_loc, /*NLoc=*/clang_loc, identifier_info,
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cpp_function_type, /*TInfo=*/nullptr, clang::SC_Extern);
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// Build parameter decls.
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llvm::SmallVector<clang::ParmVarDecl*> param_var_decls;
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for (auto [i, type] : llvm::enumerate(cpp_param_types)) {
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clang::ParmVarDecl* param = clang::ParmVarDecl::Create(
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context.ast_context(), function_decl, /*StartLoc=*/clang_loc,
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/*IdLoc=*/clang_loc, /*Id=*/nullptr, type, /*TInfo=*/nullptr,
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clang::SC_None, /*DefArg=*/nullptr);
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param_var_decls.push_back(param);
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}
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function_decl->setParams(param_var_decls);
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// Mangle the function name and attach it to the `FunctionDecl`.
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SemIR::Mangler m(context.sem_ir(), context.total_ir_count());
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std::string mangled_name = m.Mangle(function_id, SemIR::SpecificId::None);
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function_decl->addAttr(
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clang::AsmLabelAttr::Create(context.ast_context(), mangled_name));
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return function_decl;
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}
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// Create the declaration of the C++ thunk.
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static auto BuildCppToCarbonThunkDecl(
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Context& context, SemIR::LocId loc_id, clang::DeclContext* decl_context,
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clang::DeclarationName thunk_name,
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llvm::ArrayRef<clang::QualType> thunk_param_types) -> clang::FunctionDecl* {
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clang::ASTContext& ast_context = context.ast_context();
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auto clang_loc = GetCppLocation(context, loc_id);
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clang::DeclarationNameInfo name_info(thunk_name, clang_loc);
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auto ext_proto_info = clang::FunctionProtoType::ExtProtoInfo();
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clang::QualType thunk_function_type = ast_context.getFunctionType(
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ast_context.VoidTy, thunk_param_types, ext_proto_info);
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auto* tinfo =
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ast_context.getTrivialTypeSourceInfo(thunk_function_type, clang_loc);
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const bool uses_fp_intrin = false;
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const bool inline_specified = true;
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const auto constexpr_kind = clang::ConstexprSpecKind::Unspecified;
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const auto trailing_requires_clause = clang::AssociatedConstraint();
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clang::FunctionDecl* thunk_function_decl = nullptr;
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if (auto* parent_class = dyn_cast<clang::CXXRecordDecl>(decl_context)) {
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// TODO: Support non-static methods.
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thunk_function_decl = clang::CXXMethodDecl::Create(
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ast_context, parent_class, clang_loc, name_info, thunk_function_type,
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tinfo, clang::SC_Static, uses_fp_intrin, inline_specified,
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constexpr_kind, clang_loc, trailing_requires_clause);
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// TODO: Map Carbon access to C++ access.
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thunk_function_decl->setAccess(clang::AS_public);
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} else {
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thunk_function_decl = clang::FunctionDecl::Create(
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ast_context, decl_context, clang_loc, name_info, thunk_function_type,
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tinfo, clang::SC_None, uses_fp_intrin, inline_specified,
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/*hasWrittenPrototype=*/true, constexpr_kind, trailing_requires_clause);
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}
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decl_context->addDecl(thunk_function_decl);
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llvm::SmallVector<clang::ParmVarDecl*> param_var_decls;
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for (auto [i, type] : llvm::enumerate(thunk_param_types)) {
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clang::ParmVarDecl* thunk_param = clang::ParmVarDecl::Create(
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ast_context, thunk_function_decl, /*StartLoc=*/clang_loc,
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/*IdLoc=*/clang_loc, /*Id=*/nullptr, type,
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/*TInfo=*/nullptr, clang::SC_None, /*DefArg=*/nullptr);
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param_var_decls.push_back(thunk_param);
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}
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thunk_function_decl->setParams(param_var_decls);
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// Force the thunk to be inlined and discarded.
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thunk_function_decl->addAttr(
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clang::AlwaysInlineAttr::CreateImplicit(ast_context));
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thunk_function_decl->addAttr(
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clang::InternalLinkageAttr::CreateImplicit(ast_context));
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return thunk_function_decl;
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}
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// Create the body of a C++ thunk that calls a Carbon thunk. The
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// arguments are passed by reference to the callee.
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static auto BuildCppToCarbonThunkBody(clang::Sema& sema,
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clang::FunctionDecl* function_decl,
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clang::FunctionDecl* callee_function_decl)
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-> clang::StmtResult {
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clang::SourceLocation clang_loc = function_decl->getLocation();
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clang::ExprResult callee = sema.BuildDeclRefExpr(
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callee_function_decl, callee_function_decl->getType(), clang::VK_PRValue,
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clang_loc);
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llvm::SmallVector<clang::Expr*> call_args;
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for (auto* param : function_decl->parameters()) {
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clang::Expr* call_arg =
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sema.BuildDeclRefExpr(param, param->getType().getNonReferenceType(),
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clang::VK_LValue, clang_loc);
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call_args.push_back(call_arg);
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}
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clang::ExprResult call = sema.BuildCallExpr(nullptr, callee.get(), clang_loc,
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call_args, clang_loc);
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CARBON_CHECK(call.isUsable());
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return call.get();
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}
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// Create a C++ thunk that calls the Carbon thunk. The C++ thunk's
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// parameter types are mapped from the parameters of the target function
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// with `MapToCppType`. (Note that the target function here is the
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// callee of the Carbon thunk.)
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static auto BuildCppToCarbonThunk(
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Context& context, SemIR::LocId loc_id, clang::DeclContext* decl_context,
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llvm::StringRef base_name, clang::FunctionDecl* carbon_function_decl,
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llvm::ArrayRef<SemIR::TypeId> callee_param_type_ids)
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-> clang::FunctionDecl* {
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// Create the thunk's name.
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llvm::SmallString<64> thunk_name = base_name;
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thunk_name += "__cpp_thunk";
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auto& thunk_ident = context.ast_context().Idents.get(thunk_name);
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llvm::SmallVector<clang::QualType> param_types;
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for (auto type_id : callee_param_type_ids) {
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auto cpp_type = MapToCppType(context, type_id);
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if (cpp_type.isNull()) {
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context.TODO(loc_id, "failed to map C++ type to Carbon");
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return nullptr;
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}
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param_types.push_back(cpp_type);
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}
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auto* thunk_function_decl = BuildCppToCarbonThunkDecl(
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context, loc_id, decl_context, &thunk_ident, param_types);
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// Build the thunk function body.
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clang::Sema& sema = context.clang_sema();
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clang::Sema::ContextRAII context_raii(sema, thunk_function_decl);
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sema.ActOnStartOfFunctionDef(nullptr, thunk_function_decl);
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clang::StmtResult body = BuildCppToCarbonThunkBody(sema, thunk_function_decl,
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carbon_function_decl);
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sema.ActOnFinishFunctionBody(thunk_function_decl, body.get());
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CARBON_CHECK(!body.isInvalid());
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context.clang_sema().getASTConsumer().HandleTopLevelDecl(
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clang::DeclGroupRef(thunk_function_decl));
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return thunk_function_decl;
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}
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// Create a Carbon thunk that calls `callee`. The thunk's parameters are
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// all references to the callee parameter type.
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static auto BuildCarbonToCarbonThunk(
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Context& context, SemIR::LocId loc_id, const SemIR::Function& callee,
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llvm::ArrayRef<SemIR::TypeId> callee_param_type_ids) -> SemIR::FunctionId {
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// Create the thunk's name.
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llvm::SmallString<64> thunk_name =
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context.names().GetFormatted(callee.name_id);
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thunk_name += "__carbon_thunk";
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auto& ident = context.ast_context().Idents.get(thunk_name);
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auto thunk_name_id =
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SemIR::NameId::ForIdentifier(context.identifiers().Add(ident.getName()));
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auto carbon_thunk_function_id =
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MakeGeneratedFunctionDecl(context, loc_id,
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{.parent_scope_id = callee.parent_scope_id,
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.name_id = thunk_name_id,
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.param_type_ids = callee_param_type_ids,
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.params_are_refs = true})
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.second;
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BuildThunkDefinition(context, carbon_thunk_function_id,
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carbon_thunk_function_id, callee.first_decl_id(),
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callee.first_decl_id());
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return carbon_thunk_function_id;
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}
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auto GetReverseInteropFunctionDecl(Context& context, SemIR::LocId loc_id,
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clang::DeclContext& decl_context,
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SemIR::FunctionId callee_function_id)
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-> clang::FunctionDecl* {
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const SemIR::Function& callee = context.functions().Get(callee_function_id);
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if (callee.return_type_inst_id != SemIR::TypeInstId::None) {
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context.TODO(loc_id,
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"unsupported: C++ calling a Carbon function with "
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"return type other than `()`");
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return nullptr;
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}
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if (callee.generic_id.has_value()) {
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context.TODO(loc_id,
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"unsupported: C++ calling a Carbon function with "
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"generic parameters");
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return nullptr;
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}
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if (callee.call_param_ranges.implicit_size() != 0) {
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context.TODO(loc_id,
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"unsupported: C++ calling a Carbon function with "
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"an implicit parameter");
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return nullptr;
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}
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// Get the parameter types of the Carbon function being called.
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auto callee_function_params =
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context.inst_blocks().Get(callee.call_param_patterns_id);
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llvm::SmallVector<SemIR::TypeId> callee_param_type_ids;
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for (auto callee_param_inst_id : callee_function_params) {
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auto scrutinee_type_id = ExtractScrutineeType(
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context.sem_ir(), context.insts().Get(callee_param_inst_id).type_id());
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callee_param_type_ids.push_back(scrutinee_type_id);
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}
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// Create a Carbon thunk that calls the callee. The thunk's parameters
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// are all references so that the ABI is compatible with C++ callers.
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auto carbon_thunk_function_id =
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BuildCarbonToCarbonThunk(context, loc_id, callee, callee_param_type_ids);
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// Create a `clang::FunctionDecl` that can be used to call the Carbon thunk.
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auto* carbon_function_decl = BuildCppFunctionDeclForCarbonFn(
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context, loc_id, carbon_thunk_function_id);
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if (!carbon_function_decl) {
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return nullptr;
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}
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// Create a C++ thunk that calls the Carbon thunk.
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return BuildCppToCarbonThunk(context, loc_id, &decl_context,
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context.names().GetFormatted(callee.name_id),
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carbon_function_decl, callee_param_type_ids);
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}
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} // namespace Carbon::Check
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