1 //===------------------ llvm-opt-report/OptReport.cpp ---------------------===// 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 /// \file 11 /// \brief This file implements a tool that can parse the YAML optimization 12 /// records and generate an optimization summary annotated source listing 13 /// report. 14 /// 15 //===----------------------------------------------------------------------===// 16 17 #include "llvm/Support/CommandLine.h" 18 #include "llvm/Demangle/Demangle.h" 19 #include "llvm/Support/Error.h" 20 #include "llvm/Support/ErrorOr.h" 21 #include "llvm/Support/FileSystem.h" 22 #include "llvm/Support/Format.h" 23 #include "llvm/Support/LineIterator.h" 24 #include "llvm/Support/FileSystem.h" 25 #include "llvm/Support/MemoryBuffer.h" 26 #include "llvm/Support/Path.h" 27 #include "llvm/Support/Program.h" 28 #include "llvm/Support/raw_ostream.h" 29 #include "llvm/Support/Signals.h" 30 #include "llvm/Support/YAMLTraits.h" 31 #include <cstdlib> 32 #include <map> 33 #include <set> 34 35 using namespace llvm; 36 using namespace llvm::yaml; 37 38 static cl::opt<bool> Help("h", cl::desc("Alias for -help"), cl::Hidden); 39 40 // Mark all our options with this category, everything else (except for -version 41 // and -help) will be hidden. 42 static cl::OptionCategory 43 OptReportCategory("llvm-opt-report options"); 44 45 static cl::opt<std::string> 46 InputFileName(cl::Positional, cl::desc("<input>"), cl::init("-"), 47 cl::cat(OptReportCategory)); 48 49 static cl::opt<std::string> 50 OutputFileName("o", cl::desc("Output file"), cl::init("-"), 51 cl::cat(OptReportCategory)); 52 53 static cl::opt<std::string> 54 InputRelDir("r", cl::desc("Root for relative input paths"), cl::init(""), 55 cl::cat(OptReportCategory)); 56 57 static cl::opt<bool> 58 Succinct("s", cl::desc("Don't include vectorization factors, etc."), 59 cl::init(false), cl::cat(OptReportCategory)); 60 61 static cl::opt<bool> 62 NoDemangle("no-demangle", cl::desc("Don't demangle function names"), 63 cl::init(false), cl::cat(OptReportCategory)); 64 65 namespace { 66 // For each location in the source file, the common per-transformation state 67 // collected. 68 struct OptReportLocationItemInfo { 69 bool Analyzed = false; 70 bool Transformed = false; 71 72 OptReportLocationItemInfo &operator |= ( 73 const OptReportLocationItemInfo &RHS) { 74 Analyzed |= RHS.Analyzed; 75 Transformed |= RHS.Transformed; 76 77 return *this; 78 } 79 80 bool operator < (const OptReportLocationItemInfo &RHS) const { 81 if (Analyzed < RHS.Analyzed) 82 return true; 83 else if (Analyzed > RHS.Analyzed) 84 return false; 85 else if (Transformed < RHS.Transformed) 86 return true; 87 return false; 88 } 89 }; 90 91 // The per-location information collected for producing an optimization report. 92 struct OptReportLocationInfo { 93 OptReportLocationItemInfo Inlined; 94 OptReportLocationItemInfo Unrolled; 95 OptReportLocationItemInfo Vectorized; 96 97 int VectorizationFactor = 1; 98 int InterleaveCount = 1; 99 int UnrollCount = 1; 100 101 OptReportLocationInfo &operator |= (const OptReportLocationInfo &RHS) { 102 Inlined |= RHS.Inlined; 103 Unrolled |= RHS.Unrolled; 104 Vectorized |= RHS.Vectorized; 105 106 VectorizationFactor = 107 std::max(VectorizationFactor, RHS.VectorizationFactor); 108 InterleaveCount = std::max(InterleaveCount, RHS.InterleaveCount); 109 UnrollCount = std::max(UnrollCount, RHS.UnrollCount); 110 111 return *this; 112 } 113 114 bool operator < (const OptReportLocationInfo &RHS) const { 115 if (Inlined < RHS.Inlined) 116 return true; 117 else if (RHS.Inlined < Inlined) 118 return false; 119 else if (Unrolled < RHS.Unrolled) 120 return true; 121 else if (RHS.Unrolled < Unrolled) 122 return false; 123 else if (Vectorized < RHS.Vectorized) 124 return true; 125 else if (RHS.Vectorized < Vectorized || Succinct) 126 return false; 127 else if (VectorizationFactor < RHS.VectorizationFactor) 128 return true; 129 else if (VectorizationFactor > RHS.VectorizationFactor) 130 return false; 131 else if (InterleaveCount < RHS.InterleaveCount) 132 return true; 133 else if (InterleaveCount > RHS.InterleaveCount) 134 return false; 135 else if (UnrollCount < RHS.UnrollCount) 136 return true; 137 return false; 138 } 139 }; 140 141 typedef std::map<std::string, std::map<int, std::map<std::string, std::map<int, 142 OptReportLocationInfo>>>> LocationInfoTy; 143 } // anonymous namespace 144 145 static void collectLocationInfo(yaml::Stream &Stream, 146 LocationInfoTy &LocationInfo) { 147 SmallVector<char, 8> Tmp; 148 149 // Note: We're using the YAML parser here directly, instead of using the 150 // YAMLTraits implementation, because the YAMLTraits implementation does not 151 // support a way to handle only a subset of the input keys (it will error out 152 // if there is an input key that you don't map to your class), and 153 // furthermore, it does not provide a way to handle the Args sequence of 154 // key/value pairs, where the order must be captured and the 'String' key 155 // might be repeated. 156 for (auto &Doc : Stream) { 157 auto *Root = dyn_cast<yaml::MappingNode>(Doc.getRoot()); 158 if (!Root) 159 continue; 160 161 bool Transformed = Root->getRawTag() == "!Passed"; 162 std::string Pass, File, Function; 163 int Line = 0, Column = 1; 164 165 int VectorizationFactor = 1; 166 int InterleaveCount = 1; 167 int UnrollCount = 1; 168 169 for (auto &RootChild : *Root) { 170 auto *Key = dyn_cast<yaml::ScalarNode>(RootChild.getKey()); 171 if (!Key) 172 continue; 173 StringRef KeyName = Key->getValue(Tmp); 174 if (KeyName == "Pass") { 175 auto *Value = dyn_cast<yaml::ScalarNode>(RootChild.getValue()); 176 if (!Value) 177 continue; 178 Pass = Value->getValue(Tmp); 179 } else if (KeyName == "Function") { 180 auto *Value = dyn_cast<yaml::ScalarNode>(RootChild.getValue()); 181 if (!Value) 182 continue; 183 Function = Value->getValue(Tmp); 184 } else if (KeyName == "DebugLoc") { 185 auto *DebugLoc = dyn_cast<yaml::MappingNode>(RootChild.getValue()); 186 if (!DebugLoc) 187 continue; 188 189 for (auto &DLChild : *DebugLoc) { 190 auto *DLKey = dyn_cast<yaml::ScalarNode>(DLChild.getKey()); 191 if (!DLKey) 192 continue; 193 StringRef DLKeyName = DLKey->getValue(Tmp); 194 if (DLKeyName == "File") { 195 auto *Value = dyn_cast<yaml::ScalarNode>(DLChild.getValue()); 196 if (!Value) 197 continue; 198 File = Value->getValue(Tmp); 199 } else if (DLKeyName == "Line") { 200 auto *Value = dyn_cast<yaml::ScalarNode>(DLChild.getValue()); 201 if (!Value) 202 continue; 203 Value->getValue(Tmp).getAsInteger(10, Line); 204 } else if (DLKeyName == "Column") { 205 auto *Value = dyn_cast<yaml::ScalarNode>(DLChild.getValue()); 206 if (!Value) 207 continue; 208 Value->getValue(Tmp).getAsInteger(10, Column); 209 } 210 } 211 } else if (KeyName == "Args") { 212 auto *Args = dyn_cast<yaml::SequenceNode>(RootChild.getValue()); 213 if (!Args) 214 continue; 215 for (auto &ArgChild : *Args) { 216 auto *ArgMap = dyn_cast<yaml::MappingNode>(&ArgChild); 217 if (!ArgMap) 218 continue; 219 for (auto &ArgKV : *ArgMap) { 220 auto *ArgKey = dyn_cast<yaml::ScalarNode>(ArgKV.getKey()); 221 if (!ArgKey) 222 continue; 223 StringRef ArgKeyName = ArgKey->getValue(Tmp); 224 if (ArgKeyName == "VectorizationFactor") { 225 auto *Value = dyn_cast<yaml::ScalarNode>(ArgKV.getValue()); 226 if (!Value) 227 continue; 228 Value->getValue(Tmp).getAsInteger(10, VectorizationFactor); 229 } else if (ArgKeyName == "InterleaveCount") { 230 auto *Value = dyn_cast<yaml::ScalarNode>(ArgKV.getValue()); 231 if (!Value) 232 continue; 233 Value->getValue(Tmp).getAsInteger(10, InterleaveCount); 234 } else if (ArgKeyName == "UnrollCount") { 235 auto *Value = dyn_cast<yaml::ScalarNode>(ArgKV.getValue()); 236 if (!Value) 237 continue; 238 Value->getValue(Tmp).getAsInteger(10, UnrollCount); 239 } 240 } 241 } 242 } 243 } 244 245 if (Line < 1 || File.empty()) 246 continue; 247 248 // We track information on both actual and potential transformations. This 249 // way, if there are multiple possible things on a line that are, or could 250 // have been transformed, we can indicate that explicitly in the output. 251 auto UpdateLLII = [Transformed](OptReportLocationItemInfo &LLII) { 252 LLII.Analyzed = true; 253 if (Transformed) 254 LLII.Transformed = true; 255 }; 256 257 if (Pass == "inline") { 258 auto &LI = LocationInfo[File][Line][Function][Column]; 259 UpdateLLII(LI.Inlined); 260 } else if (Pass == "loop-unroll") { 261 auto &LI = LocationInfo[File][Line][Function][Column]; 262 LI.UnrollCount = UnrollCount; 263 UpdateLLII(LI.Unrolled); 264 } else if (Pass == "loop-vectorize") { 265 auto &LI = LocationInfo[File][Line][Function][Column]; 266 LI.VectorizationFactor = VectorizationFactor; 267 LI.InterleaveCount = InterleaveCount; 268 UpdateLLII(LI.Vectorized); 269 } 270 } 271 } 272 273 static bool readLocationInfo(LocationInfoTy &LocationInfo) { 274 ErrorOr<std::unique_ptr<MemoryBuffer>> Buf = 275 MemoryBuffer::getFileOrSTDIN(InputFileName); 276 if (std::error_code EC = Buf.getError()) { 277 errs() << "error: Can't open file " << InputFileName << ": " << 278 EC.message() << "\n"; 279 return false; 280 } 281 282 SourceMgr SM; 283 yaml::Stream Stream(Buf.get()->getBuffer(), SM); 284 collectLocationInfo(Stream, LocationInfo); 285 286 return true; 287 } 288 289 static bool writeReport(LocationInfoTy &LocationInfo) { 290 std::error_code EC; 291 llvm::raw_fd_ostream OS(OutputFileName, EC, 292 llvm::sys::fs::F_Text); 293 if (EC) { 294 errs() << "error: Can't open file " << OutputFileName << ": " << 295 EC.message() << "\n"; 296 return false; 297 } 298 299 bool FirstFile = true; 300 for (auto &FI : LocationInfo) { 301 SmallString<128> FileName(FI.first); 302 if (!InputRelDir.empty()) { 303 if (std::error_code EC = sys::fs::make_absolute(InputRelDir, FileName)) { 304 errs() << "error: Can't resolve file path to " << FileName << ": " << 305 EC.message() << "\n"; 306 return false; 307 } 308 } 309 310 const auto &FileInfo = FI.second; 311 312 ErrorOr<std::unique_ptr<MemoryBuffer>> Buf = 313 MemoryBuffer::getFile(FileName); 314 if (std::error_code EC = Buf.getError()) { 315 errs() << "error: Can't open file " << FileName << ": " << 316 EC.message() << "\n"; 317 return false; 318 } 319 320 if (FirstFile) 321 FirstFile = false; 322 else 323 OS << "\n"; 324 325 OS << "< " << FileName << "\n"; 326 327 // Figure out how many characters we need for the vectorization factors 328 // and similar. 329 OptReportLocationInfo MaxLI; 330 for (auto &FLI : FileInfo) 331 for (auto &FI : FLI.second) 332 for (auto &LI : FI.second) 333 MaxLI |= LI.second; 334 335 bool NothingInlined = !MaxLI.Inlined.Transformed; 336 bool NothingUnrolled = !MaxLI.Unrolled.Transformed; 337 bool NothingVectorized = !MaxLI.Vectorized.Transformed; 338 339 unsigned VFDigits = llvm::utostr(MaxLI.VectorizationFactor).size(); 340 unsigned ICDigits = llvm::utostr(MaxLI.InterleaveCount).size(); 341 unsigned UCDigits = llvm::utostr(MaxLI.UnrollCount).size(); 342 343 // Figure out how many characters we need for the line numbers. 344 int64_t NumLines = 0; 345 for (line_iterator LI(*Buf.get(), false); LI != line_iterator(); ++LI) 346 ++NumLines; 347 348 unsigned LNDigits = llvm::utostr(NumLines).size(); 349 350 for (line_iterator LI(*Buf.get(), false); LI != line_iterator(); ++LI) { 351 int64_t L = LI.line_number(); 352 auto LII = FileInfo.find(L); 353 354 auto PrintLine = [&](bool PrintFuncName, 355 const std::set<std::string> &FuncNameSet) { 356 OptReportLocationInfo LLI; 357 358 std::map<int, OptReportLocationInfo> ColsInfo; 359 unsigned InlinedCols = 0, UnrolledCols = 0, VectorizedCols = 0; 360 361 if (LII != FileInfo.end() && !FuncNameSet.empty()) { 362 const auto &LineInfo = LII->second; 363 364 for (auto &CI : LineInfo.find(*FuncNameSet.begin())->second) { 365 int Col = CI.first; 366 ColsInfo[Col] = CI.second; 367 InlinedCols += CI.second.Inlined.Analyzed; 368 UnrolledCols += CI.second.Unrolled.Analyzed; 369 VectorizedCols += CI.second.Vectorized.Analyzed; 370 LLI |= CI.second; 371 } 372 } 373 374 if (PrintFuncName) { 375 OS << " > "; 376 377 bool FirstFunc = true; 378 for (const auto &FuncName : FuncNameSet) { 379 if (FirstFunc) 380 FirstFunc = false; 381 else 382 OS << ", "; 383 384 bool Printed = false; 385 if (!NoDemangle) { 386 int Status = 0; 387 char *Demangled = 388 itaniumDemangle(FuncName.c_str(), nullptr, nullptr, &Status); 389 if (Demangled && Status == 0) { 390 OS << Demangled; 391 Printed = true; 392 } 393 394 if (Demangled) 395 std::free(Demangled); 396 } 397 398 if (!Printed) 399 OS << FuncName; 400 } 401 402 OS << ":\n"; 403 } 404 405 // We try to keep the output as concise as possible. If only one thing on 406 // a given line could have been inlined, vectorized, etc. then we can put 407 // the marker on the source line itself. If there are multiple options 408 // then we want to distinguish them by placing the marker for each 409 // transformation on a separate line following the source line. When we 410 // do this, we use a '^' character to point to the appropriate column in 411 // the source line. 412 413 std::string USpaces(Succinct ? 0 : UCDigits, ' '); 414 std::string VSpaces(Succinct ? 0 : VFDigits + ICDigits + 1, ' '); 415 416 auto UStr = [UCDigits](OptReportLocationInfo &LLI) { 417 std::string R; 418 raw_string_ostream RS(R); 419 420 if (!Succinct) { 421 RS << LLI.UnrollCount; 422 RS << std::string(UCDigits - RS.str().size(), ' '); 423 } 424 425 return RS.str(); 426 }; 427 428 auto VStr = [VFDigits, 429 ICDigits](OptReportLocationInfo &LLI) -> std::string { 430 std::string R; 431 raw_string_ostream RS(R); 432 433 if (!Succinct) { 434 RS << LLI.VectorizationFactor << "," << LLI.InterleaveCount; 435 RS << std::string(VFDigits + ICDigits + 1 - RS.str().size(), ' '); 436 } 437 438 return RS.str(); 439 }; 440 441 OS << llvm::format_decimal(L, LNDigits) << " "; 442 OS << (LLI.Inlined.Transformed && InlinedCols < 2 ? "I" : 443 (NothingInlined ? "" : " ")); 444 OS << (LLI.Unrolled.Transformed && UnrolledCols < 2 ? 445 "U" + UStr(LLI) : (NothingUnrolled ? "" : " " + USpaces)); 446 OS << (LLI.Vectorized.Transformed && VectorizedCols < 2 ? 447 "V" + VStr(LLI) : (NothingVectorized ? "" : " " + VSpaces)); 448 449 OS << " | " << *LI << "\n"; 450 451 for (auto &J : ColsInfo) { 452 if ((J.second.Inlined.Transformed && InlinedCols > 1) || 453 (J.second.Unrolled.Transformed && UnrolledCols > 1) || 454 (J.second.Vectorized.Transformed && VectorizedCols > 1)) { 455 OS << std::string(LNDigits + 1, ' '); 456 OS << (J.second.Inlined.Transformed && 457 InlinedCols > 1 ? "I" : (NothingInlined ? "" : " ")); 458 OS << (J.second.Unrolled.Transformed && 459 UnrolledCols > 1 ? "U" + UStr(J.second) : 460 (NothingUnrolled ? "" : " " + USpaces)); 461 OS << (J.second.Vectorized.Transformed && 462 VectorizedCols > 1 ? "V" + VStr(J.second) : 463 (NothingVectorized ? "" : " " + VSpaces)); 464 465 OS << " | " << std::string(J.first - 1, ' ') << "^\n"; 466 } 467 } 468 }; 469 470 // We need to figure out if the optimizations for this line were the same 471 // in each function context. If not, then we want to group the similar 472 // function contexts together and display each group separately. If 473 // they're all the same, then we only display the line once without any 474 // additional markings. 475 std::map<std::map<int, OptReportLocationInfo>, 476 std::set<std::string>> UniqueLIs; 477 478 OptReportLocationInfo AllLI; 479 if (LII != FileInfo.end()) { 480 const auto &FuncLineInfo = LII->second; 481 for (const auto &FLII : FuncLineInfo) { 482 UniqueLIs[FLII.second].insert(FLII.first); 483 484 for (const auto &OI : FLII.second) 485 AllLI |= OI.second; 486 } 487 } 488 489 bool NothingHappened = !AllLI.Inlined.Transformed && 490 !AllLI.Unrolled.Transformed && 491 !AllLI.Vectorized.Transformed; 492 if (UniqueLIs.size() > 1 && !NothingHappened) { 493 OS << " [[\n"; 494 for (const auto &FSLI : UniqueLIs) 495 PrintLine(true, FSLI.second); 496 OS << " ]]\n"; 497 } else if (UniqueLIs.size() == 1) { 498 PrintLine(false, UniqueLIs.begin()->second); 499 } else { 500 PrintLine(false, std::set<std::string>()); 501 } 502 } 503 } 504 505 return true; 506 } 507 508 int main(int argc, const char **argv) { 509 sys::PrintStackTraceOnErrorSignal(argv[0]); 510 511 cl::HideUnrelatedOptions(OptReportCategory); 512 cl::ParseCommandLineOptions( 513 argc, argv, 514 "A tool to generate an optimization report from YAML optimization" 515 " record files.\n"); 516 517 if (Help) 518 cl::PrintHelpMessage(); 519 520 LocationInfoTy LocationInfo; 521 if (!readLocationInfo(LocationInfo)) 522 return 1; 523 if (!writeReport(LocationInfo)) 524 return 1; 525 526 return 0; 527 } 528 529