1 //===-- Timer.cpp - Interval Timing Support -------------------------------===// 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 Interval Timing implementation. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "llvm/Support/Timer.h" 15 #include "llvm/ADT/Statistic.h" 16 #include "llvm/ADT/StringMap.h" 17 #include "llvm/Support/CommandLine.h" 18 #include "llvm/Support/FileSystem.h" 19 #include "llvm/Support/Format.h" 20 #include "llvm/Support/ManagedStatic.h" 21 #include "llvm/Support/Mutex.h" 22 #include "llvm/Support/Process.h" 23 #include "llvm/Support/raw_ostream.h" 24 #include "llvm/Support/YAMLTraits.h" 25 using namespace llvm; 26 27 // This ugly hack is brought to you courtesy of constructor/destructor ordering 28 // being unspecified by C++. Basically the problem is that a Statistic object 29 // gets destroyed, which ends up calling 'GetLibSupportInfoOutputFile()' 30 // (below), which calls this function. LibSupportInfoOutputFilename used to be 31 // a global variable, but sometimes it would get destroyed before the Statistic, 32 // causing havoc to ensue. We "fix" this by creating the string the first time 33 // it is needed and never destroying it. 34 static ManagedStatic<std::string> LibSupportInfoOutputFilename; 35 static std::string &getLibSupportInfoOutputFilename() { 36 return *LibSupportInfoOutputFilename; 37 } 38 39 static ManagedStatic<sys::SmartMutex<true> > TimerLock; 40 41 namespace { 42 static cl::opt<bool> 43 TrackSpace("track-memory", cl::desc("Enable -time-passes memory " 44 "tracking (this may be slow)"), 45 cl::Hidden); 46 47 static cl::opt<std::string, true> 48 InfoOutputFilename("info-output-file", cl::value_desc("filename"), 49 cl::desc("File to append -stats and -timer output to"), 50 cl::Hidden, cl::location(getLibSupportInfoOutputFilename())); 51 } 52 53 std::unique_ptr<raw_fd_ostream> llvm::CreateInfoOutputFile() { 54 const std::string &OutputFilename = getLibSupportInfoOutputFilename(); 55 if (OutputFilename.empty()) 56 return llvm::make_unique<raw_fd_ostream>(2, false); // stderr. 57 if (OutputFilename == "-") 58 return llvm::make_unique<raw_fd_ostream>(1, false); // stdout. 59 60 // Append mode is used because the info output file is opened and closed 61 // each time -stats or -time-passes wants to print output to it. To 62 // compensate for this, the test-suite Makefiles have code to delete the 63 // info output file before running commands which write to it. 64 std::error_code EC; 65 auto Result = llvm::make_unique<raw_fd_ostream>( 66 OutputFilename, EC, sys::fs::F_Append | sys::fs::F_Text); 67 if (!EC) 68 return Result; 69 70 errs() << "Error opening info-output-file '" 71 << OutputFilename << " for appending!\n"; 72 return llvm::make_unique<raw_fd_ostream>(2, false); // stderr. 73 } 74 75 static TimerGroup *getDefaultTimerGroup() { 76 static TimerGroup DefaultTimerGroup("misc", "Miscellaneous Ungrouped Timers"); 77 return &DefaultTimerGroup; 78 } 79 80 //===----------------------------------------------------------------------===// 81 // Timer Implementation 82 //===----------------------------------------------------------------------===// 83 84 void Timer::init(StringRef Name, StringRef Description) { 85 init(Name, Description, *getDefaultTimerGroup()); 86 } 87 88 void Timer::init(StringRef Name, StringRef Description, TimerGroup &tg) { 89 assert(!TG && "Timer already initialized"); 90 this->Name.assign(Name.begin(), Name.end()); 91 this->Description.assign(Description.begin(), Description.end()); 92 Running = Triggered = false; 93 TG = &tg; 94 TG->addTimer(*this); 95 } 96 97 Timer::~Timer() { 98 if (!TG) return; // Never initialized, or already cleared. 99 TG->removeTimer(*this); 100 } 101 102 static inline size_t getMemUsage() { 103 if (!TrackSpace) return 0; 104 return sys::Process::GetMallocUsage(); 105 } 106 107 TimeRecord TimeRecord::getCurrentTime(bool Start) { 108 using Seconds = std::chrono::duration<double, std::ratio<1>>; 109 TimeRecord Result; 110 sys::TimePoint<> now; 111 std::chrono::nanoseconds user, sys; 112 113 if (Start) { 114 Result.MemUsed = getMemUsage(); 115 sys::Process::GetTimeUsage(now, user, sys); 116 } else { 117 sys::Process::GetTimeUsage(now, user, sys); 118 Result.MemUsed = getMemUsage(); 119 } 120 121 Result.WallTime = Seconds(now.time_since_epoch()).count(); 122 Result.UserTime = Seconds(user).count(); 123 Result.SystemTime = Seconds(sys).count(); 124 return Result; 125 } 126 127 void Timer::startTimer() { 128 assert(!Running && "Cannot start a running timer"); 129 Running = Triggered = true; 130 StartTime = TimeRecord::getCurrentTime(true); 131 } 132 133 void Timer::stopTimer() { 134 assert(Running && "Cannot stop a paused timer"); 135 Running = false; 136 Time += TimeRecord::getCurrentTime(false); 137 Time -= StartTime; 138 } 139 140 void Timer::clear() { 141 Running = Triggered = false; 142 Time = StartTime = TimeRecord(); 143 } 144 145 static void printVal(double Val, double Total, raw_ostream &OS) { 146 if (Total < 1e-7) // Avoid dividing by zero. 147 OS << " ----- "; 148 else 149 OS << format(" %7.4f (%5.1f%%)", Val, Val*100/Total); 150 } 151 152 void TimeRecord::print(const TimeRecord &Total, raw_ostream &OS) const { 153 if (Total.getUserTime()) 154 printVal(getUserTime(), Total.getUserTime(), OS); 155 if (Total.getSystemTime()) 156 printVal(getSystemTime(), Total.getSystemTime(), OS); 157 if (Total.getProcessTime()) 158 printVal(getProcessTime(), Total.getProcessTime(), OS); 159 printVal(getWallTime(), Total.getWallTime(), OS); 160 161 OS << " "; 162 163 if (Total.getMemUsed()) 164 OS << format("%9" PRId64 " ", (int64_t)getMemUsed()); 165 } 166 167 168 //===----------------------------------------------------------------------===// 169 // NamedRegionTimer Implementation 170 //===----------------------------------------------------------------------===// 171 172 namespace { 173 174 typedef StringMap<Timer> Name2TimerMap; 175 176 class Name2PairMap { 177 StringMap<std::pair<TimerGroup*, Name2TimerMap> > Map; 178 public: 179 ~Name2PairMap() { 180 for (StringMap<std::pair<TimerGroup*, Name2TimerMap> >::iterator 181 I = Map.begin(), E = Map.end(); I != E; ++I) 182 delete I->second.first; 183 } 184 185 Timer &get(StringRef Name, StringRef Description, StringRef GroupName, 186 StringRef GroupDescription) { 187 sys::SmartScopedLock<true> L(*TimerLock); 188 189 std::pair<TimerGroup*, Name2TimerMap> &GroupEntry = Map[GroupName]; 190 191 if (!GroupEntry.first) 192 GroupEntry.first = new TimerGroup(GroupName, GroupDescription); 193 194 Timer &T = GroupEntry.second[Name]; 195 if (!T.isInitialized()) 196 T.init(Name, Description, *GroupEntry.first); 197 return T; 198 } 199 }; 200 201 } 202 203 static ManagedStatic<Name2PairMap> NamedGroupedTimers; 204 205 NamedRegionTimer::NamedRegionTimer(StringRef Name, StringRef Description, 206 StringRef GroupName, 207 StringRef GroupDescription, bool Enabled) 208 : TimeRegion(!Enabled ? nullptr 209 : &NamedGroupedTimers->get(Name, Description, GroupName, 210 GroupDescription)) {} 211 212 //===----------------------------------------------------------------------===// 213 // TimerGroup Implementation 214 //===----------------------------------------------------------------------===// 215 216 /// This is the global list of TimerGroups, maintained by the TimerGroup 217 /// ctor/dtor and is protected by the TimerLock lock. 218 static TimerGroup *TimerGroupList = nullptr; 219 220 TimerGroup::TimerGroup(StringRef Name, StringRef Description) 221 : Name(Name.begin(), Name.end()), 222 Description(Description.begin(), Description.end()) { 223 // Add the group to TimerGroupList. 224 sys::SmartScopedLock<true> L(*TimerLock); 225 if (TimerGroupList) 226 TimerGroupList->Prev = &Next; 227 Next = TimerGroupList; 228 Prev = &TimerGroupList; 229 TimerGroupList = this; 230 } 231 232 TimerGroup::~TimerGroup() { 233 // If the timer group is destroyed before the timers it owns, accumulate and 234 // print the timing data. 235 while (FirstTimer) 236 removeTimer(*FirstTimer); 237 238 // Remove the group from the TimerGroupList. 239 sys::SmartScopedLock<true> L(*TimerLock); 240 *Prev = Next; 241 if (Next) 242 Next->Prev = Prev; 243 } 244 245 246 void TimerGroup::removeTimer(Timer &T) { 247 sys::SmartScopedLock<true> L(*TimerLock); 248 249 // If the timer was started, move its data to TimersToPrint. 250 if (T.hasTriggered()) 251 TimersToPrint.emplace_back(T.Time, T.Name, T.Description); 252 253 T.TG = nullptr; 254 255 // Unlink the timer from our list. 256 *T.Prev = T.Next; 257 if (T.Next) 258 T.Next->Prev = T.Prev; 259 260 // Print the report when all timers in this group are destroyed if some of 261 // them were started. 262 if (FirstTimer || TimersToPrint.empty()) 263 return; 264 265 std::unique_ptr<raw_ostream> OutStream = CreateInfoOutputFile(); 266 PrintQueuedTimers(*OutStream); 267 } 268 269 void TimerGroup::addTimer(Timer &T) { 270 sys::SmartScopedLock<true> L(*TimerLock); 271 272 // Add the timer to our list. 273 if (FirstTimer) 274 FirstTimer->Prev = &T.Next; 275 T.Next = FirstTimer; 276 T.Prev = &FirstTimer; 277 FirstTimer = &T; 278 } 279 280 void TimerGroup::PrintQueuedTimers(raw_ostream &OS) { 281 // Sort the timers in descending order by amount of time taken. 282 std::sort(TimersToPrint.begin(), TimersToPrint.end()); 283 284 TimeRecord Total; 285 for (const PrintRecord &Record : TimersToPrint) 286 Total += Record.Time; 287 288 // Print out timing header. 289 OS << "===" << std::string(73, '-') << "===\n"; 290 // Figure out how many spaces to indent TimerGroup name. 291 unsigned Padding = (80-Description.length())/2; 292 if (Padding > 80) Padding = 0; // Don't allow "negative" numbers 293 OS.indent(Padding) << Description << '\n'; 294 OS << "===" << std::string(73, '-') << "===\n"; 295 296 // If this is not an collection of ungrouped times, print the total time. 297 // Ungrouped timers don't really make sense to add up. We still print the 298 // TOTAL line to make the percentages make sense. 299 if (this != getDefaultTimerGroup()) 300 OS << format(" Total Execution Time: %5.4f seconds (%5.4f wall clock)\n", 301 Total.getProcessTime(), Total.getWallTime()); 302 OS << '\n'; 303 304 if (Total.getUserTime()) 305 OS << " ---User Time---"; 306 if (Total.getSystemTime()) 307 OS << " --System Time--"; 308 if (Total.getProcessTime()) 309 OS << " --User+System--"; 310 OS << " ---Wall Time---"; 311 if (Total.getMemUsed()) 312 OS << " ---Mem---"; 313 OS << " --- Name ---\n"; 314 315 // Loop through all of the timing data, printing it out. 316 for (const PrintRecord &Record : make_range(TimersToPrint.rbegin(), 317 TimersToPrint.rend())) { 318 Record.Time.print(Total, OS); 319 OS << Record.Description << '\n'; 320 } 321 322 Total.print(Total, OS); 323 OS << "Total\n\n"; 324 OS.flush(); 325 326 TimersToPrint.clear(); 327 } 328 329 void TimerGroup::prepareToPrintList() { 330 // See if any of our timers were started, if so add them to TimersToPrint and 331 // reset them. 332 for (Timer *T = FirstTimer; T; T = T->Next) { 333 if (!T->hasTriggered()) continue; 334 TimersToPrint.emplace_back(T->Time, T->Name, T->Description); 335 336 // Clear out the time. 337 T->clear(); 338 } 339 } 340 341 void TimerGroup::print(raw_ostream &OS) { 342 sys::SmartScopedLock<true> L(*TimerLock); 343 344 prepareToPrintList(); 345 346 // If any timers were started, print the group. 347 if (!TimersToPrint.empty()) 348 PrintQueuedTimers(OS); 349 } 350 351 void TimerGroup::printAll(raw_ostream &OS) { 352 sys::SmartScopedLock<true> L(*TimerLock); 353 354 for (TimerGroup *TG = TimerGroupList; TG; TG = TG->Next) 355 TG->print(OS); 356 } 357 358 void TimerGroup::printJSONValue(raw_ostream &OS, const PrintRecord &R, 359 const char *suffix, double Value) { 360 assert(!yaml::needsQuotes(Name) && "TimerGroup name needs no quotes"); 361 assert(!yaml::needsQuotes(R.Name) && "Timer name needs no quotes"); 362 OS << "\t\"time." << Name << '.' << R.Name << suffix << "\": " << Value; 363 } 364 365 const char *TimerGroup::printJSONValues(raw_ostream &OS, const char *delim) { 366 prepareToPrintList(); 367 for (const PrintRecord &R : TimersToPrint) { 368 OS << delim; 369 delim = ",\n"; 370 371 const TimeRecord &T = R.Time; 372 printJSONValue(OS, R, ".wall", T.getWallTime()); 373 OS << delim; 374 printJSONValue(OS, R, ".user", T.getUserTime()); 375 OS << delim; 376 printJSONValue(OS, R, ".sys", T.getSystemTime()); 377 } 378 TimersToPrint.clear(); 379 return delim; 380 } 381 382 const char *TimerGroup::printAllJSONValues(raw_ostream &OS, const char *delim) { 383 sys::SmartScopedLock<true> L(*TimerLock); 384 for (TimerGroup *TG = TimerGroupList; TG; TG = TG->Next) 385 delim = TG->printJSONValues(OS, delim); 386 return delim; 387 } 388 389 void TimerGroup::ConstructTimerLists() { 390 (void)*NamedGroupedTimers; 391 } 392