1 //===- BugDriver.cpp - Top-Level BugPoint class implementation ------------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file is distributed under the University of Illinois Open Source 6 // License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // This class contains all of the shared state and information that is used by 11 // the BugPoint tool to track down errors in optimizations. This class is the 12 // main driver class that invokes all sub-functionality. 13 // 14 //===----------------------------------------------------------------------===// 15 16 #include "BugDriver.h" 17 #include "ToolRunner.h" 18 #include "llvm/IR/Module.h" 19 #include "llvm/IR/Verifier.h" 20 #include "llvm/IRReader/IRReader.h" 21 #include "llvm/Linker/Linker.h" 22 #include "llvm/Pass.h" 23 #include "llvm/Support/CommandLine.h" 24 #include "llvm/Support/FileUtilities.h" 25 #include "llvm/Support/Host.h" 26 #include "llvm/Support/SourceMgr.h" 27 #include "llvm/Support/raw_ostream.h" 28 #include <memory> 29 using namespace llvm; 30 31 namespace llvm { 32 Triple TargetTriple; 33 } 34 35 DiscardTemp::~DiscardTemp() { 36 if (SaveTemps) { 37 if (Error E = File.keep()) 38 errs() << "Failed to keep temp file " << toString(std::move(E)) << '\n'; 39 return; 40 } 41 if (Error E = File.discard()) 42 errs() << "Failed to delete temp file " << toString(std::move(E)) << '\n'; 43 } 44 45 // Anonymous namespace to define command line options for debugging. 46 // 47 namespace { 48 // Output - The user can specify a file containing the expected output of the 49 // program. If this filename is set, it is used as the reference diff source, 50 // otherwise the raw input run through an interpreter is used as the reference 51 // source. 52 // 53 cl::opt<std::string> OutputFile("output", 54 cl::desc("Specify a reference program output " 55 "(for miscompilation detection)")); 56 } 57 58 /// If we reduce or update the program somehow, call this method to update 59 /// bugdriver with it. This deletes the old module and sets the specified one 60 /// as the current program. 61 void BugDriver::setNewProgram(std::unique_ptr<Module> M) { 62 Program = std::move(M); 63 } 64 65 /// getPassesString - Turn a list of passes into a string which indicates the 66 /// command line options that must be passed to add the passes. 67 /// 68 std::string llvm::getPassesString(const std::vector<std::string> &Passes) { 69 std::string Result; 70 for (unsigned i = 0, e = Passes.size(); i != e; ++i) { 71 if (i) 72 Result += " "; 73 Result += "-"; 74 Result += Passes[i]; 75 } 76 return Result; 77 } 78 79 BugDriver::BugDriver(const char *toolname, bool find_bugs, unsigned timeout, 80 unsigned memlimit, bool use_valgrind, LLVMContext &ctxt) 81 : Context(ctxt), ToolName(toolname), ReferenceOutputFile(OutputFile), 82 Program(nullptr), Interpreter(nullptr), SafeInterpreter(nullptr), 83 cc(nullptr), run_find_bugs(find_bugs), Timeout(timeout), 84 MemoryLimit(memlimit), UseValgrind(use_valgrind) {} 85 86 BugDriver::~BugDriver() { 87 if (Interpreter != SafeInterpreter) 88 delete Interpreter; 89 delete SafeInterpreter; 90 delete cc; 91 } 92 93 std::unique_ptr<Module> llvm::parseInputFile(StringRef Filename, 94 LLVMContext &Ctxt) { 95 SMDiagnostic Err; 96 std::unique_ptr<Module> Result = parseIRFile(Filename, Err, Ctxt); 97 if (!Result) { 98 Err.print("bugpoint", errs()); 99 return Result; 100 } 101 102 if (verifyModule(*Result, &errs())) { 103 errs() << "bugpoint: " << Filename << ": error: input module is broken!\n"; 104 return std::unique_ptr<Module>(); 105 } 106 107 // If we don't have an override triple, use the first one to configure 108 // bugpoint, or use the host triple if none provided. 109 if (TargetTriple.getTriple().empty()) { 110 Triple TheTriple(Result->getTargetTriple()); 111 112 if (TheTriple.getTriple().empty()) 113 TheTriple.setTriple(sys::getDefaultTargetTriple()); 114 115 TargetTriple.setTriple(TheTriple.getTriple()); 116 } 117 118 Result->setTargetTriple(TargetTriple.getTriple()); // override the triple 119 return Result; 120 } 121 122 std::unique_ptr<Module> BugDriver::swapProgramIn(std::unique_ptr<Module> M) { 123 std::unique_ptr<Module> OldProgram = std::move(Program); 124 Program = std::move(M); 125 return OldProgram; 126 } 127 128 // This method takes the specified list of LLVM input files, attempts to load 129 // them, either as assembly or bitcode, then link them together. It returns 130 // true on failure (if, for example, an input bitcode file could not be 131 // parsed), and false on success. 132 // 133 bool BugDriver::addSources(const std::vector<std::string> &Filenames) { 134 assert(!Program && "Cannot call addSources multiple times!"); 135 assert(!Filenames.empty() && "Must specify at least on input filename!"); 136 137 // Load the first input file. 138 Program = parseInputFile(Filenames[0], Context); 139 if (!Program) 140 return true; 141 142 outs() << "Read input file : '" << Filenames[0] << "'\n"; 143 144 for (unsigned i = 1, e = Filenames.size(); i != e; ++i) { 145 std::unique_ptr<Module> M = parseInputFile(Filenames[i], Context); 146 if (!M.get()) 147 return true; 148 149 outs() << "Linking in input file: '" << Filenames[i] << "'\n"; 150 if (Linker::linkModules(*Program, std::move(M))) 151 return true; 152 } 153 154 outs() << "*** All input ok\n"; 155 156 // All input files read successfully! 157 return false; 158 } 159 160 /// run - The top level method that is invoked after all of the instance 161 /// variables are set up from command line arguments. 162 /// 163 Error BugDriver::run() { 164 if (run_find_bugs) { 165 // Rearrange the passes and apply them to the program. Repeat this process 166 // until the user kills the program or we find a bug. 167 return runManyPasses(PassesToRun); 168 } 169 170 // If we're not running as a child, the first thing that we must do is 171 // determine what the problem is. Does the optimization series crash the 172 // compiler, or does it produce illegal code? We make the top-level 173 // decision by trying to run all of the passes on the input program, 174 // which should generate a bitcode file. If it does generate a bitcode 175 // file, then we know the compiler didn't crash, so try to diagnose a 176 // miscompilation. 177 if (!PassesToRun.empty()) { 178 outs() << "Running selected passes on program to test for crash: "; 179 if (runPasses(*Program, PassesToRun)) 180 return debugOptimizerCrash(); 181 } 182 183 // Set up the execution environment, selecting a method to run LLVM bitcode. 184 if (Error E = initializeExecutionEnvironment()) 185 return E; 186 187 // Test to see if we have a code generator crash. 188 outs() << "Running the code generator to test for a crash: "; 189 if (Error E = compileProgram(*Program)) { 190 outs() << toString(std::move(E)); 191 return debugCodeGeneratorCrash(); 192 } 193 outs() << '\n'; 194 195 // Run the raw input to see where we are coming from. If a reference output 196 // was specified, make sure that the raw output matches it. If not, it's a 197 // problem in the front-end or the code generator. 198 // 199 bool CreatedOutput = false; 200 if (ReferenceOutputFile.empty()) { 201 outs() << "Generating reference output from raw program: "; 202 if (Error E = createReferenceFile(*Program)) { 203 errs() << toString(std::move(E)); 204 return debugCodeGeneratorCrash(); 205 } 206 CreatedOutput = true; 207 } 208 209 // Make sure the reference output file gets deleted on exit from this 210 // function, if appropriate. 211 std::string ROF(ReferenceOutputFile); 212 FileRemover RemoverInstance(ROF, CreatedOutput && !SaveTemps); 213 214 // Diff the output of the raw program against the reference output. If it 215 // matches, then we assume there is a miscompilation bug and try to 216 // diagnose it. 217 outs() << "*** Checking the code generator...\n"; 218 Expected<bool> Diff = diffProgram(*Program, "", "", false); 219 if (Error E = Diff.takeError()) { 220 errs() << toString(std::move(E)); 221 return debugCodeGeneratorCrash(); 222 } 223 if (!*Diff) { 224 outs() << "\n*** Output matches: Debugging miscompilation!\n"; 225 if (Error E = debugMiscompilation()) { 226 errs() << toString(std::move(E)); 227 return debugCodeGeneratorCrash(); 228 } 229 return Error::success(); 230 } 231 232 outs() << "\n*** Input program does not match reference diff!\n"; 233 outs() << "Debugging code generator problem!\n"; 234 if (Error E = debugCodeGenerator()) { 235 errs() << toString(std::move(E)); 236 return debugCodeGeneratorCrash(); 237 } 238 return Error::success(); 239 } 240 241 void llvm::PrintFunctionList(const std::vector<Function *> &Funcs) { 242 unsigned NumPrint = Funcs.size(); 243 if (NumPrint > 10) 244 NumPrint = 10; 245 for (unsigned i = 0; i != NumPrint; ++i) 246 outs() << " " << Funcs[i]->getName(); 247 if (NumPrint < Funcs.size()) 248 outs() << "... <" << Funcs.size() << " total>"; 249 outs().flush(); 250 } 251 252 void llvm::PrintGlobalVariableList(const std::vector<GlobalVariable *> &GVs) { 253 unsigned NumPrint = GVs.size(); 254 if (NumPrint > 10) 255 NumPrint = 10; 256 for (unsigned i = 0; i != NumPrint; ++i) 257 outs() << " " << GVs[i]->getName(); 258 if (NumPrint < GVs.size()) 259 outs() << "... <" << GVs.size() << " total>"; 260 outs().flush(); 261 } 262