forked from OSchip/llvm-project
252 lines
8.8 KiB
C++
252 lines
8.8 KiB
C++
//===- unittests/Interpreter/InterpreterTest.cpp --- Interpreter tests ----===//
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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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// Unit tests for Clang's Interpreter library.
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//
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//===----------------------------------------------------------------------===//
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#include "clang/Interpreter/Interpreter.h"
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#include "clang/AST/Decl.h"
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#include "clang/AST/DeclGroup.h"
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#include "clang/AST/Mangle.h"
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#include "clang/Frontend/CompilerInstance.h"
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#include "clang/Frontend/TextDiagnosticPrinter.h"
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#include "clang/Sema/Lookup.h"
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#include "clang/Sema/Sema.h"
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#include "llvm/Support/TargetSelect.h"
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#include "gmock/gmock.h"
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#include "gtest/gtest.h"
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using namespace clang;
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namespace {
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using Args = std::vector<const char *>;
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static std::unique_ptr<Interpreter>
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createInterpreter(const Args &ExtraArgs = {},
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DiagnosticConsumer *Client = nullptr) {
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Args ClangArgs = {"-Xclang", "-emit-llvm-only"};
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ClangArgs.insert(ClangArgs.end(), ExtraArgs.begin(), ExtraArgs.end());
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auto CI = cantFail(clang::IncrementalCompilerBuilder::create(ClangArgs));
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if (Client)
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CI->getDiagnostics().setClient(Client, /*ShouldOwnClient=*/false);
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return cantFail(clang::Interpreter::create(std::move(CI)));
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}
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static size_t DeclsSize(TranslationUnitDecl *PTUDecl) {
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return std::distance(PTUDecl->decls().begin(), PTUDecl->decls().end());
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}
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TEST(InterpreterTest, Sanity) {
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std::unique_ptr<Interpreter> Interp = createInterpreter();
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using PTU = PartialTranslationUnit;
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PTU &R1(cantFail(Interp->Parse("void g(); void g() {}")));
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EXPECT_EQ(2U, DeclsSize(R1.TUPart));
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PTU &R2(cantFail(Interp->Parse("int i;")));
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EXPECT_EQ(1U, DeclsSize(R2.TUPart));
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}
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static std::string DeclToString(Decl *D) {
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return llvm::cast<NamedDecl>(D)->getQualifiedNameAsString();
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}
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TEST(InterpreterTest, IncrementalInputTopLevelDecls) {
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std::unique_ptr<Interpreter> Interp = createInterpreter();
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auto R1 = Interp->Parse("int var1 = 42; int f() { return var1; }");
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// gtest doesn't expand into explicit bool conversions.
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EXPECT_TRUE(!!R1);
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auto R1DeclRange = R1->TUPart->decls();
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EXPECT_EQ(2U, DeclsSize(R1->TUPart));
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EXPECT_EQ("var1", DeclToString(*R1DeclRange.begin()));
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EXPECT_EQ("f", DeclToString(*(++R1DeclRange.begin())));
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auto R2 = Interp->Parse("int var2 = f();");
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EXPECT_TRUE(!!R2);
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auto R2DeclRange = R2->TUPart->decls();
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EXPECT_EQ(1U, DeclsSize(R2->TUPart));
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EXPECT_EQ("var2", DeclToString(*R2DeclRange.begin()));
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}
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TEST(InterpreterTest, Errors) {
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Args ExtraArgs = {"-Xclang", "-diagnostic-log-file", "-Xclang", "-"};
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// Create the diagnostic engine with unowned consumer.
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std::string DiagnosticOutput;
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llvm::raw_string_ostream DiagnosticsOS(DiagnosticOutput);
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auto DiagPrinter = std::make_unique<TextDiagnosticPrinter>(
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DiagnosticsOS, new DiagnosticOptions());
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auto Interp = createInterpreter(ExtraArgs, DiagPrinter.get());
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auto Err = Interp->Parse("intentional_error v1 = 42; ").takeError();
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using ::testing::HasSubstr;
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EXPECT_THAT(DiagnosticsOS.str(),
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HasSubstr("error: unknown type name 'intentional_error'"));
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EXPECT_EQ("Parsing failed.", llvm::toString(std::move(Err)));
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auto RecoverErr = Interp->Parse("int var1 = 42;");
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EXPECT_TRUE(!!RecoverErr);
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}
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// Here we test whether the user can mix declarations and statements. The
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// interpreter should be smart enough to recognize the declarations from the
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// statements and wrap the latter into a declaration, producing valid code.
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TEST(InterpreterTest, DeclsAndStatements) {
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Args ExtraArgs = {"-Xclang", "-diagnostic-log-file", "-Xclang", "-"};
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// Create the diagnostic engine with unowned consumer.
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std::string DiagnosticOutput;
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llvm::raw_string_ostream DiagnosticsOS(DiagnosticOutput);
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auto DiagPrinter = std::make_unique<TextDiagnosticPrinter>(
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DiagnosticsOS, new DiagnosticOptions());
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auto Interp = createInterpreter(ExtraArgs, DiagPrinter.get());
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auto R1 = Interp->Parse(
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"int var1 = 42; extern \"C\" int printf(const char*, ...);");
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// gtest doesn't expand into explicit bool conversions.
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EXPECT_TRUE(!!R1);
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auto *PTU1 = R1->TUPart;
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EXPECT_EQ(2U, DeclsSize(PTU1));
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// FIXME: Add support for wrapping and running statements.
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auto R2 = Interp->Parse("var1++; printf(\"var1 value %d\\n\", var1);");
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EXPECT_FALSE(!!R2);
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using ::testing::HasSubstr;
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EXPECT_THAT(DiagnosticsOS.str(),
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HasSubstr("error: unknown type name 'var1'"));
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auto Err = R2.takeError();
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EXPECT_EQ("Parsing failed.", llvm::toString(std::move(Err)));
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}
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static std::string MangleName(NamedDecl *ND) {
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ASTContext &C = ND->getASTContext();
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std::unique_ptr<MangleContext> MangleC(C.createMangleContext());
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std::string mangledName;
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llvm::raw_string_ostream RawStr(mangledName);
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MangleC->mangleName(ND, RawStr);
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return RawStr.str();
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}
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struct LLVMInitRAII {
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LLVMInitRAII() {
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llvm::InitializeNativeTarget();
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llvm::InitializeNativeTargetAsmPrinter();
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}
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~LLVMInitRAII() { llvm::llvm_shutdown(); }
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} LLVMInit;
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#ifdef _AIX
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TEST(IncrementalProcessing, DISABLED_FindMangledNameSymbol) {
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#else
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TEST(IncrementalProcessing, FindMangledNameSymbol) {
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#endif
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std::unique_ptr<Interpreter> Interp = createInterpreter();
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auto &PTU(cantFail(Interp->Parse("int f(const char*) {return 0;}")));
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EXPECT_EQ(1U, DeclsSize(PTU.TUPart));
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auto R1DeclRange = PTU.TUPart->decls();
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NamedDecl *FD = cast<FunctionDecl>(*R1DeclRange.begin());
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// Lower the PTU
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if (llvm::Error Err = Interp->Execute(PTU)) {
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// We cannot execute on the platform.
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consumeError(std::move(Err));
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return;
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}
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std::string MangledName = MangleName(FD);
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auto Addr = cantFail(Interp->getSymbolAddress(MangledName));
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EXPECT_NE(0U, Addr);
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GlobalDecl GD(FD);
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EXPECT_EQ(Addr, cantFail(Interp->getSymbolAddress(GD)));
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}
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static void *AllocateObject(TypeDecl *TD, Interpreter &Interp) {
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std::string Name = TD->getQualifiedNameAsString();
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const clang::Type *RDTy = TD->getTypeForDecl();
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clang::ASTContext &C = Interp.getCompilerInstance()->getASTContext();
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size_t Size = C.getTypeSize(RDTy);
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void *Addr = malloc(Size);
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// Tell the interpreter to call the default ctor with this memory. Synthesize:
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// new (loc) ClassName;
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static unsigned Counter = 0;
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std::stringstream SS;
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SS << "auto _v" << Counter++ << " = "
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<< "new ((void*)"
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// Windows needs us to prefix the hexadecimal value of a pointer with '0x'.
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<< std::hex << std::showbase << (size_t)Addr << ")" << Name << "();";
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auto R = Interp.ParseAndExecute(SS.str());
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if (!R)
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return nullptr;
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return Addr;
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}
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static NamedDecl *LookupSingleName(Interpreter &Interp, const char *Name) {
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Sema &SemaRef = Interp.getCompilerInstance()->getSema();
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ASTContext &C = SemaRef.getASTContext();
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DeclarationName DeclName = &C.Idents.get(Name);
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LookupResult R(SemaRef, DeclName, SourceLocation(), Sema::LookupOrdinaryName);
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SemaRef.LookupName(R, SemaRef.TUScope);
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assert(!R.empty());
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return R.getFoundDecl();
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}
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#ifdef _AIX
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TEST(IncrementalProcessing, DISABLED_InstantiateTemplate) {
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#else
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TEST(IncrementalProcessing, InstantiateTemplate) {
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#endif
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// FIXME: We cannot yet handle delayed template parsing. If we run with
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// -fdelayed-template-parsing we try adding the newly created decl to the
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// active PTU which causes an assert.
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std::vector<const char *> Args = {"-fno-delayed-template-parsing"};
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std::unique_ptr<Interpreter> Interp = createInterpreter(Args);
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llvm::cantFail(Interp->Parse("void* operator new(__SIZE_TYPE__, void* __p);"
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"extern \"C\" int printf(const char*,...);"
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"class A {};"
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"struct B {"
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" template<typename T>"
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" int callme(T) { return 42; }"
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"};"));
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auto &PTU = llvm::cantFail(Interp->Parse("auto _t = &B::callme<A*>;"));
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auto PTUDeclRange = PTU.TUPart->decls();
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EXPECT_EQ(1, std::distance(PTUDeclRange.begin(), PTUDeclRange.end()));
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// Lower the PTU
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if (llvm::Error Err = Interp->Execute(PTU)) {
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// We cannot execute on the platform.
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consumeError(std::move(Err));
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return;
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}
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TypeDecl *TD = cast<TypeDecl>(LookupSingleName(*Interp, "A"));
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void *NewA = AllocateObject(TD, *Interp);
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// Find back the template specialization
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VarDecl *VD = static_cast<VarDecl *>(*PTUDeclRange.begin());
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UnaryOperator *UO = llvm::cast<UnaryOperator>(VD->getInit());
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NamedDecl *TmpltSpec = llvm::cast<DeclRefExpr>(UO->getSubExpr())->getDecl();
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std::string MangledName = MangleName(TmpltSpec);
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typedef int (*TemplateSpecFn)(void *);
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auto fn = (TemplateSpecFn)cantFail(Interp->getSymbolAddress(MangledName));
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EXPECT_EQ(42, fn(NewA));
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}
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} // end anonymous namespace
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