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			232 lines
		
	
	
		
			7.4 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
			
		
		
	
	
			232 lines
		
	
	
		
			7.4 KiB
		
	
	
	
		
			C++
		
	
	
	
	
	
| //===- llvm/unittest/Bitcode/BitReaderTest.cpp - Tests for BitReader ------===//
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| //
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| //                     The LLVM Compiler Infrastructure
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| //
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| // This file is distributed under the University of Illinois Open Source
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| // License. See LICENSE.TXT for details.
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| //
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| //===----------------------------------------------------------------------===//
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| 
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| #include "llvm/ADT/SmallString.h"
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| #include "llvm/AsmParser/Parser.h"
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| #include "llvm/Bitcode/BitstreamWriter.h"
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| #include "llvm/Bitcode/ReaderWriter.h"
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| #include "llvm/IR/Constants.h"
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| #include "llvm/IR/Instructions.h"
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| #include "llvm/IR/LLVMContext.h"
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| #include "llvm/IR/Module.h"
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| #include "llvm/IR/Verifier.h"
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| #include "llvm/Support/Debug.h"
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| #include "llvm/Support/MemoryBuffer.h"
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| #include "llvm/Support/SourceMgr.h"
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| #include "gtest/gtest.h"
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| 
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| using namespace llvm;
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| 
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| namespace {
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| 
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| std::unique_ptr<Module> parseAssembly(const char *Assembly) {
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|   SMDiagnostic Error;
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|   std::unique_ptr<Module> M =
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|       parseAssemblyString(Assembly, Error, getGlobalContext());
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| 
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|   std::string ErrMsg;
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|   raw_string_ostream OS(ErrMsg);
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|   Error.print("", OS);
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| 
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|   // A failure here means that the test itself is buggy.
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|   if (!M)
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|     report_fatal_error(OS.str().c_str());
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| 
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|   return M;
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| }
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| 
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| static void writeModuleToBuffer(std::unique_ptr<Module> Mod,
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|                                 SmallVectorImpl<char> &Buffer) {
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|   raw_svector_ostream OS(Buffer);
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|   WriteBitcodeToFile(Mod.get(), OS);
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| }
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| 
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| static std::unique_ptr<Module> getLazyModuleFromAssembly(LLVMContext &Context,
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|                                                          SmallString<1024> &Mem,
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|                                                          const char *Assembly) {
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|   writeModuleToBuffer(parseAssembly(Assembly), Mem);
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|   std::unique_ptr<MemoryBuffer> Buffer =
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|       MemoryBuffer::getMemBuffer(Mem.str(), "test", false);
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|   ErrorOr<Module *> ModuleOrErr =
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|       getLazyBitcodeModule(std::move(Buffer), Context);
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|   return std::unique_ptr<Module>(ModuleOrErr.get());
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| }
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| 
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| TEST(BitReaderTest, DematerializeFunctionPreservesLinkageType) {
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|   SmallString<1024> Mem;
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| 
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|   LLVMContext Context;
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|   std::unique_ptr<Module> M = getLazyModuleFromAssembly(
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|       Context, Mem, "define internal i32 @func() {\n"
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|                       "ret i32 0\n"
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|                     "}\n");
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| 
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| 
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|   M->getFunction("func")->materialize();
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|   EXPECT_FALSE(M->getFunction("func")->empty());
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|   EXPECT_TRUE(M->getFunction("func")->getLinkage() ==
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|               GlobalValue::InternalLinkage);
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| 
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|   // Check that the linkage type is preserved after dematerialization.
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|   M->getFunction("func")->dematerialize();
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|   EXPECT_TRUE(M->getFunction("func")->empty());
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|   EXPECT_TRUE(M->getFunction("func")->getLinkage() ==
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|               GlobalValue::InternalLinkage);
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| }
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| 
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| // Tests that lazy evaluation can parse functions out of order.
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| TEST(BitReaderTest, MaterializeFunctionsOutOfOrder) {
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|   SmallString<1024> Mem;
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|   LLVMContext Context;
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|   std::unique_ptr<Module> M = getLazyModuleFromAssembly(
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|       Context, Mem, "define void @f() {\n"
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|                     "  unreachable\n"
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|                     "}\n"
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|                     "define void @g() {\n"
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|                     "  unreachable\n"
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|                     "}\n"
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|                     "define void @h() {\n"
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|                     "  unreachable\n"
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|                     "}\n"
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|                     "define void @j() {\n"
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|                     "  unreachable\n"
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|                     "}\n");
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| 
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|   Function *F = M->getFunction("f");
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|   Function *G = M->getFunction("g");
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|   Function *H = M->getFunction("h");
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|   Function *J = M->getFunction("j");
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| 
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|   // Initially all functions are not materialized (no basic blocks).
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|   EXPECT_TRUE(F->empty());
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|   EXPECT_TRUE(G->empty());
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|   EXPECT_TRUE(H->empty());
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|   EXPECT_TRUE(J->empty());
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| 
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|   // Materialize h.
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|   H->materialize();
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|   EXPECT_TRUE(F->empty());
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|   EXPECT_TRUE(G->empty());
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|   EXPECT_FALSE(H->empty());
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|   EXPECT_TRUE(J->empty());
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| 
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|   // Materialize g.
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|   G->materialize();
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|   EXPECT_TRUE(F->empty());
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|   EXPECT_FALSE(G->empty());
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|   EXPECT_FALSE(H->empty());
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|   EXPECT_TRUE(J->empty());
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| 
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|   // Materialize j.
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|   J->materialize();
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|   EXPECT_TRUE(F->empty());
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|   EXPECT_FALSE(G->empty());
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|   EXPECT_FALSE(H->empty());
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|   EXPECT_FALSE(J->empty());
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| 
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|   // Materialize f.
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|   F->materialize();
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|   EXPECT_FALSE(F->empty());
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|   EXPECT_FALSE(G->empty());
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|   EXPECT_FALSE(H->empty());
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|   EXPECT_FALSE(J->empty());
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| }
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| 
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| TEST(BitReaderTest, MaterializeFunctionsForBlockAddr) { // PR11677
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|   SmallString<1024> Mem;
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| 
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|   LLVMContext Context;
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|   std::unique_ptr<Module> M = getLazyModuleFromAssembly(
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|       Context, Mem, "@table = constant i8* blockaddress(@func, %bb)\n"
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|                     "define void @func() {\n"
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|                     "  unreachable\n"
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|                     "bb:\n"
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|                     "  unreachable\n"
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|                     "}\n");
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| 
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|   // Try (and fail) to dematerialize @func.
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|   M->getFunction("func")->dematerialize();
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|   EXPECT_FALSE(M->getFunction("func")->empty());
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| }
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| 
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| TEST(BitReaderTest, MaterializeFunctionsForBlockAddrInFunctionBefore) {
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|   SmallString<1024> Mem;
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| 
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|   LLVMContext Context;
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|   std::unique_ptr<Module> M = getLazyModuleFromAssembly(
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|       Context, Mem, "define i8* @before() {\n"
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|                     "  ret i8* blockaddress(@func, %bb)\n"
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|                     "}\n"
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|                     "define void @other() {\n"
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|                     "  unreachable\n"
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|                     "}\n"
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|                     "define void @func() {\n"
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|                     "  unreachable\n"
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|                     "bb:\n"
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|                     "  unreachable\n"
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|                     "}\n");
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|   EXPECT_TRUE(M->getFunction("before")->empty());
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|   EXPECT_TRUE(M->getFunction("func")->empty());
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| 
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|   // Materialize @before, pulling in @func.
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|   EXPECT_FALSE(M->getFunction("before")->materialize());
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|   EXPECT_FALSE(M->getFunction("func")->empty());
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|   EXPECT_TRUE(M->getFunction("other")->empty());
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| 
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|   // Try (and fail) to dematerialize @func.
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|   M->getFunction("func")->dematerialize();
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|   EXPECT_FALSE(M->getFunction("func")->empty());
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| }
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| 
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| TEST(BitReaderTest, MaterializeFunctionsForBlockAddrInFunctionAfter) {
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|   SmallString<1024> Mem;
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| 
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|   LLVMContext Context;
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|   std::unique_ptr<Module> M = getLazyModuleFromAssembly(
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|       Context, Mem, "define void @func() {\n"
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|                     "  unreachable\n"
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|                     "bb:\n"
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|                     "  unreachable\n"
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|                     "}\n"
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|                     "define void @other() {\n"
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|                     "  unreachable\n"
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|                     "}\n"
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|                     "define i8* @after() {\n"
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|                     "  ret i8* blockaddress(@func, %bb)\n"
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|                     "}\n");
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|   EXPECT_TRUE(M->getFunction("after")->empty());
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|   EXPECT_TRUE(M->getFunction("func")->empty());
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| 
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|   // Materialize @after, pulling in @func.
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|   EXPECT_FALSE(M->getFunction("after")->materialize());
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|   EXPECT_FALSE(M->getFunction("func")->empty());
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|   EXPECT_TRUE(M->getFunction("other")->empty());
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| 
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|   // Try (and fail) to dematerialize @func.
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|   M->getFunction("func")->dematerialize();
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|   EXPECT_FALSE(M->getFunction("func")->empty());
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|   EXPECT_FALSE(verifyModule(*M, &dbgs()));
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| }
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| 
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| } // end namespace
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