Flang driver was already able to enable the CUDA language feature base on the file extension but there was no command line option. This PR adds one.
240 lines
7.8 KiB
C++
240 lines
7.8 KiB
C++
//===--- FrontendAction.cpp -----------------------------------------------===//
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//
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// Part of the LLVM Project, under the Apache License v2.0 with LLVM Exceptions.
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// See https://llvm.org/LICENSE.txt for license information.
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// SPDX-License-Identifier: Apache-2.0 WITH LLVM-exception
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//
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//===----------------------------------------------------------------------===//
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//
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// Coding style: https://mlir.llvm.org/getting_started/DeveloperGuide/
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//
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//===----------------------------------------------------------------------===//
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#include "flang/Frontend/FrontendAction.h"
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#include "flang/Frontend/CompilerInstance.h"
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#include "flang/Frontend/FrontendActions.h"
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#include "flang/Frontend/FrontendOptions.h"
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#include "flang/Frontend/FrontendPluginRegistry.h"
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#include "clang/Basic/DiagnosticFrontend.h"
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#include "llvm/Support/Errc.h"
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#include "llvm/Support/VirtualFileSystem.h"
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using namespace Fortran::frontend;
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LLVM_INSTANTIATE_REGISTRY(FrontendPluginRegistry)
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void FrontendAction::setCurrentInput(const FrontendInputFile &input) {
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this->currentInput = input;
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}
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// Call this method if BeginSourceFile fails.
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// Deallocate compiler instance, input and output descriptors
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static void beginSourceFileCleanUp(FrontendAction &fa, CompilerInstance &ci) {
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ci.clearOutputFiles(/*EraseFiles=*/true);
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fa.setCurrentInput(FrontendInputFile());
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fa.setInstance(nullptr);
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}
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bool FrontendAction::beginSourceFile(CompilerInstance &ci,
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const FrontendInputFile &realInput) {
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FrontendInputFile input(realInput);
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// Return immediately if the input file does not exist or is not a file. Note
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// that we cannot check this for input from stdin.
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if (input.getFile() != "-") {
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if (!llvm::sys::fs::is_regular_file(input.getFile())) {
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// Create an diagnostic ID to report
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unsigned diagID;
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if (llvm::vfs::getRealFileSystem()->exists(input.getFile())) {
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ci.getDiagnostics().Report(clang::diag::err_fe_error_reading)
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<< input.getFile() << "not a regular file";
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diagID = ci.getDiagnostics().getCustomDiagID(
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clang::DiagnosticsEngine::Error, "%0 is not a regular file");
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} else {
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diagID = ci.getDiagnostics().getCustomDiagID(
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clang::DiagnosticsEngine::Error, "%0 does not exist");
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}
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// Report the diagnostic and return
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ci.getDiagnostics().Report(diagID) << input.getFile();
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beginSourceFileCleanUp(*this, ci);
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return false;
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}
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}
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assert(!instance && "Already processing a source file!");
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assert(!realInput.isEmpty() && "Unexpected empty filename!");
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setCurrentInput(realInput);
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setInstance(&ci);
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if (!ci.hasAllSources()) {
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beginSourceFileCleanUp(*this, ci);
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return false;
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}
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auto &invoc = ci.getInvocation();
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// Include command-line and predefined preprocessor macros. Use either:
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// * `-cpp/-nocpp`, or
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// * the file extension (if the user didn't express any preference)
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// to decide whether to include them or not.
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if ((invoc.getPreprocessorOpts().macrosFlag == PPMacrosFlag::Include) ||
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(invoc.getPreprocessorOpts().macrosFlag == PPMacrosFlag::Unknown &&
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getCurrentInput().getMustBePreprocessed())) {
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invoc.setDefaultPredefinitions();
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invoc.collectMacroDefinitions();
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}
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if (!invoc.getFortranOpts().features.IsEnabled(
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Fortran::common::LanguageFeature::CUDA)) {
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// Enable CUDA Fortran if source file is *.cuf/*.CUF and not already
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// enabled.
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invoc.getFortranOpts().features.Enable(
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Fortran::common::LanguageFeature::CUDA,
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getCurrentInput().getIsCUDAFortran());
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}
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// Decide between fixed and free form (if the user didn't express any
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// preference, use the file extension to decide)
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if (invoc.getFrontendOpts().fortranForm == FortranForm::Unknown) {
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invoc.getFortranOpts().isFixedForm = getCurrentInput().getIsFixedForm();
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}
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if (!beginSourceFileAction()) {
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beginSourceFileCleanUp(*this, ci);
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return false;
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}
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return true;
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}
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bool FrontendAction::shouldEraseOutputFiles() {
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return getInstance().getDiagnostics().hasErrorOccurred();
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}
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llvm::Error FrontendAction::execute() {
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executeAction();
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return llvm::Error::success();
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}
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void FrontendAction::endSourceFile() {
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CompilerInstance &ci = getInstance();
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// Cleanup the output streams, and erase the output files if instructed by the
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// FrontendAction.
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ci.clearOutputFiles(/*EraseFiles=*/shouldEraseOutputFiles());
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setInstance(nullptr);
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setCurrentInput(FrontendInputFile());
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}
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bool FrontendAction::runPrescan() {
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CompilerInstance &ci = this->getInstance();
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std::string currentInputPath{getCurrentFileOrBufferName()};
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Fortran::parser::Options parserOptions = ci.getInvocation().getFortranOpts();
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if (ci.getInvocation().getFrontendOpts().fortranForm ==
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FortranForm::Unknown) {
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// Switch between fixed and free form format based on the input file
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// extension.
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//
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// Ideally we should have all Fortran options set before entering this
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// method (i.e. before processing any specific input files). However, we
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// can't decide between fixed and free form based on the file extension
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// earlier than this.
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parserOptions.isFixedForm = getCurrentInput().getIsFixedForm();
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}
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// Prescan. In case of failure, report and return.
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ci.getParsing().Prescan(currentInputPath, parserOptions);
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return !reportFatalScanningErrors();
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}
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bool FrontendAction::runParse() {
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CompilerInstance &ci = this->getInstance();
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// Parse. In case of failure, report and return.
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ci.getParsing().Parse(llvm::outs());
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if (reportFatalParsingErrors()) {
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return false;
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}
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// Report the diagnostics from getParsing
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ci.getParsing().messages().Emit(llvm::errs(), ci.getAllCookedSources());
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return true;
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}
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bool FrontendAction::runSemanticChecks() {
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CompilerInstance &ci = this->getInstance();
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std::optional<parser::Program> &parseTree{ci.getParsing().parseTree()};
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assert(parseTree && "Cannot run semantic checks without a parse tree!");
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// Prepare semantics
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ci.setSemantics(std::make_unique<Fortran::semantics::Semantics>(
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ci.getSemanticsContext(), *parseTree,
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ci.getInvocation().getDebugModuleDir()));
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auto &semantics = ci.getSemantics();
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// Run semantic checks
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semantics.Perform();
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if (reportFatalSemanticErrors()) {
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return false;
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}
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// Report the diagnostics from the semantic checks
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semantics.EmitMessages(ci.getSemaOutputStream());
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return true;
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}
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bool FrontendAction::generateRtTypeTables() {
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getInstance().setRtTyTables(
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std::make_unique<Fortran::semantics::RuntimeDerivedTypeTables>(
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BuildRuntimeDerivedTypeTables(getInstance().getSemanticsContext())));
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// The runtime derived type information table builder may find additional
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// semantic errors. Report them.
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if (reportFatalSemanticErrors()) {
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return false;
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}
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return true;
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}
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template <unsigned N>
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bool FrontendAction::reportFatalErrors(const char (&message)[N]) {
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if (!instance->getParsing().messages().empty() &&
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(instance->getInvocation().getWarnAsErr() ||
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instance->getParsing().messages().AnyFatalError())) {
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const unsigned diagID = instance->getDiagnostics().getCustomDiagID(
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clang::DiagnosticsEngine::Error, message);
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instance->getDiagnostics().Report(diagID) << getCurrentFileOrBufferName();
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instance->getParsing().messages().Emit(llvm::errs(),
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instance->getAllCookedSources());
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return true;
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}
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return false;
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}
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bool FrontendAction::reportFatalSemanticErrors() {
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auto &diags = instance->getDiagnostics();
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auto &sema = instance->getSemantics();
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if (instance->getSemantics().AnyFatalError()) {
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unsigned diagID = diags.getCustomDiagID(clang::DiagnosticsEngine::Error,
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"Semantic errors in %0");
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diags.Report(diagID) << getCurrentFileOrBufferName();
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sema.EmitMessages(instance->getSemaOutputStream());
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return true;
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}
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return false;
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}
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