1 //===-- Timer.cpp - Interval Timing Support -------------------------------===// 2 // 3 // The LLVM Compiler Infrastructure 4 // 5 // This file was developed by the LLVM research group and is distributed under 6 // the University of Illinois Open Source License. See LICENSE.TXT for details. 7 // 8 //===----------------------------------------------------------------------===// 9 // 10 // Interval Timing implementation. 11 // 12 //===----------------------------------------------------------------------===// 13 14 #include "llvm/Support/Timer.h" 15 #include "llvm/Support/CommandLine.h" 16 #include <algorithm> 17 #include <iostream> 18 #include <functional> 19 #include <fstream> 20 #include <map> 21 #include "llvm/Config/sys/resource.h" 22 #include "llvm/Config/sys/time.h" 23 #include "llvm/Config/unistd.h" 24 #include "llvm/Config/malloc.h" 25 #include "llvm/Config/windows.h" 26 using namespace llvm; 27 28 // GetLibSupportInfoOutputFile - Return a file stream to print our output on. 29 namespace llvm { extern std::ostream *GetLibSupportInfoOutputFile(); } 30 31 // getLibSupportInfoOutputFilename - This ugly hack is brought to you courtesy 32 // of constructor/destructor ordering being unspecified by C++. Basically the 33 // problem is that a Statistic<> object gets destroyed, which ends up calling 34 // 'GetLibSupportInfoOutputFile()' (below), which calls this function. 35 // LibSupportInfoOutputFilename used to be a global variable, but sometimes it 36 // would get destroyed before the Statistic, causing havoc to ensue. We "fix" 37 // this by creating the string the first time it is needed and never destroying 38 // it. 39 static std::string &getLibSupportInfoOutputFilename() { 40 static std::string *LibSupportInfoOutputFilename = new std::string(); 41 return *LibSupportInfoOutputFilename; 42 } 43 44 namespace { 45 #ifdef HAVE_MALLINFO 46 cl::opt<bool> 47 TrackSpace("track-memory", cl::desc("Enable -time-passes memory " 48 "tracking (this may be slow)"), 49 cl::Hidden); 50 #endif 51 52 cl::opt<std::string, true> 53 InfoOutputFilename("info-output-file", cl::value_desc("filename"), 54 cl::desc("File to append -stats and -timer output to"), 55 cl::Hidden, cl::location(getLibSupportInfoOutputFilename())); 56 } 57 58 static TimerGroup *DefaultTimerGroup = 0; 59 static TimerGroup *getDefaultTimerGroup() { 60 if (DefaultTimerGroup) return DefaultTimerGroup; 61 return DefaultTimerGroup = new TimerGroup("Miscellaneous Ungrouped Timers"); 62 } 63 64 Timer::Timer(const std::string &N) 65 : Elapsed(0), UserTime(0), SystemTime(0), MemUsed(0), PeakMem(0), Name(N), 66 Started(false), TG(getDefaultTimerGroup()) { 67 TG->addTimer(); 68 } 69 70 Timer::Timer(const std::string &N, TimerGroup &tg) 71 : Elapsed(0), UserTime(0), SystemTime(0), MemUsed(0), PeakMem(0), Name(N), 72 Started(false), TG(&tg) { 73 TG->addTimer(); 74 } 75 76 Timer::Timer(const Timer &T) { 77 TG = T.TG; 78 if (TG) TG->addTimer(); 79 operator=(T); 80 } 81 82 83 // Copy ctor, initialize with no TG member. 84 Timer::Timer(bool, const Timer &T) { 85 TG = T.TG; // Avoid assertion in operator= 86 operator=(T); // Copy contents 87 TG = 0; 88 } 89 90 91 Timer::~Timer() { 92 if (TG) { 93 if (Started) { 94 Started = false; 95 TG->addTimerToPrint(*this); 96 } 97 TG->removeTimer(); 98 } 99 } 100 101 static long getMemUsage() { 102 #ifdef HAVE_MALLINFO 103 if (TrackSpace) { 104 struct mallinfo MI = mallinfo(); 105 return MI.uordblks/*+MI.hblkhd*/; 106 } 107 #endif 108 return 0; 109 } 110 111 struct TimeRecord { 112 double Elapsed, UserTime, SystemTime; 113 long MemUsed; 114 }; 115 116 static TimeRecord getTimeRecord(bool Start) { 117 #if defined(HAVE_WINDOWS_H) 118 unsigned __int64 ProcCreate, ProcExit, KernelTime, UserTime, CurTime; 119 120 GetProcessTimes(GetCurrentProcess(), (FILETIME*)&ProcCreate, 121 (FILETIME*)&ProcExit, (FILETIME*)&KernelTime, 122 (FILETIME*)&UserTime); 123 GetSystemTimeAsFileTime((FILETIME*)&CurTime); 124 125 // FILETIME's are # of 100 nanosecond ticks. 126 double ScaleFactor = 1.0/(10*1000*1000); 127 128 TimeRecord Result; 129 Result.Elapsed = (CurTime-ProcCreate)*ScaleFactor; // Wall time 130 Result.UserTime = UserTime*ScaleFactor; 131 Result.SystemTime = KernelTime*ScaleFactor; 132 return Result; 133 #elif defined(HAVE_GETRUSAGE) 134 struct rusage RU; 135 struct timeval T; 136 long MemUsed = 0; 137 if (Start) { 138 MemUsed = getMemUsage(); 139 if (getrusage(RUSAGE_SELF, &RU)) 140 perror("getrusage call failed: -time-passes info incorrect!"); 141 } 142 gettimeofday(&T, 0); 143 144 if (!Start) { 145 if (getrusage(RUSAGE_SELF, &RU)) 146 perror("getrusage call failed: -time-passes info incorrect!"); 147 MemUsed = getMemUsage(); 148 } 149 150 TimeRecord Result; 151 Result.Elapsed = T.tv_sec + T.tv_usec/1000000.0; 152 Result.UserTime = RU.ru_utime.tv_sec + RU.ru_utime.tv_usec/1000000.0; 153 Result.SystemTime = RU.ru_stime.tv_sec + RU.ru_stime.tv_usec/1000000.0; 154 Result.MemUsed = MemUsed; 155 return Result; 156 #else 157 // Can't get resource usage. 158 return TimeRecord(); 159 #endif 160 } 161 162 static std::vector<Timer*> ActiveTimers; 163 164 void Timer::startTimer() { 165 Started = true; 166 TimeRecord TR = getTimeRecord(true); 167 Elapsed -= TR.Elapsed; 168 UserTime -= TR.UserTime; 169 SystemTime -= TR.SystemTime; 170 MemUsed -= TR.MemUsed; 171 PeakMemBase = TR.MemUsed; 172 ActiveTimers.push_back(this); 173 } 174 175 void Timer::stopTimer() { 176 TimeRecord TR = getTimeRecord(false); 177 Elapsed += TR.Elapsed; 178 UserTime += TR.UserTime; 179 SystemTime += TR.SystemTime; 180 MemUsed += TR.MemUsed; 181 182 if (ActiveTimers.back() == this) { 183 ActiveTimers.pop_back(); 184 } else { 185 std::vector<Timer*>::iterator I = 186 std::find(ActiveTimers.begin(), ActiveTimers.end(), this); 187 assert(I != ActiveTimers.end() && "stop but no startTimer?"); 188 ActiveTimers.erase(I); 189 } 190 } 191 192 void Timer::sum(const Timer &T) { 193 Elapsed += T.Elapsed; 194 UserTime += T.UserTime; 195 SystemTime += T.SystemTime; 196 MemUsed += T.MemUsed; 197 PeakMem += T.PeakMem; 198 } 199 200 /// addPeakMemoryMeasurement - This method should be called whenever memory 201 /// usage needs to be checked. It adds a peak memory measurement to the 202 /// currently active timers, which will be printed when the timer group prints 203 /// 204 void Timer::addPeakMemoryMeasurement() { 205 long MemUsed = getMemUsage(); 206 207 for (std::vector<Timer*>::iterator I = ActiveTimers.begin(), 208 E = ActiveTimers.end(); I != E; ++I) 209 (*I)->PeakMem = std::max((*I)->PeakMem, MemUsed-(*I)->PeakMemBase); 210 } 211 212 //===----------------------------------------------------------------------===// 213 // NamedRegionTimer Implementation 214 //===----------------------------------------------------------------------===// 215 216 static Timer &getNamedRegionTimer(const std::string &Name) { 217 static std::map<std::string, Timer> NamedTimers; 218 219 std::map<std::string, Timer>::iterator I = NamedTimers.lower_bound(Name); 220 if (I != NamedTimers.end() && I->first == Name) 221 return I->second; 222 223 return NamedTimers.insert(I, std::make_pair(Name, Timer(Name)))->second; 224 } 225 226 NamedRegionTimer::NamedRegionTimer(const std::string &Name) 227 : TimeRegion(getNamedRegionTimer(Name)) {} 228 229 230 //===----------------------------------------------------------------------===// 231 // TimerGroup Implementation 232 //===----------------------------------------------------------------------===// 233 234 // printAlignedFP - Simulate the printf "%A.Bf" format, where A is the 235 // TotalWidth size, and B is the AfterDec size. 236 // 237 static void printAlignedFP(double Val, unsigned AfterDec, unsigned TotalWidth, 238 std::ostream &OS) { 239 assert(TotalWidth >= AfterDec+1 && "Bad FP Format!"); 240 OS.width(TotalWidth-AfterDec-1); 241 char OldFill = OS.fill(); 242 OS.fill(' '); 243 OS << (int)Val; // Integer part; 244 OS << "."; 245 OS.width(AfterDec); 246 OS.fill('0'); 247 unsigned ResultFieldSize = 1; 248 while (AfterDec--) ResultFieldSize *= 10; 249 OS << (int)(Val*ResultFieldSize) % ResultFieldSize; 250 OS.fill(OldFill); 251 } 252 253 static void printVal(double Val, double Total, std::ostream &OS) { 254 if (Total < 1e-7) // Avoid dividing by zero... 255 OS << " ----- "; 256 else { 257 OS << " "; 258 printAlignedFP(Val, 4, 7, OS); 259 OS << " ("; 260 printAlignedFP(Val*100/Total, 1, 5, OS); 261 OS << "%)"; 262 } 263 } 264 265 void Timer::print(const Timer &Total, std::ostream &OS) { 266 if (Total.UserTime) 267 printVal(UserTime, Total.UserTime, OS); 268 if (Total.SystemTime) 269 printVal(SystemTime, Total.SystemTime, OS); 270 if (Total.getProcessTime()) 271 printVal(getProcessTime(), Total.getProcessTime(), OS); 272 printVal(Elapsed, Total.Elapsed, OS); 273 274 OS << " "; 275 276 if (Total.MemUsed) { 277 OS.width(9); 278 OS << MemUsed << " "; 279 } 280 if (Total.PeakMem) { 281 if (PeakMem) { 282 OS.width(9); 283 OS << PeakMem << " "; 284 } else 285 OS << " "; 286 } 287 OS << Name << "\n"; 288 289 Started = false; // Once printed, don't print again 290 } 291 292 // GetLibSupportInfoOutputFile - Return a file stream to print our output on... 293 std::ostream * 294 llvm::GetLibSupportInfoOutputFile() { 295 std::string &LibSupportInfoOutputFilename = getLibSupportInfoOutputFilename(); 296 if (LibSupportInfoOutputFilename.empty()) 297 return &std::cerr; 298 if (LibSupportInfoOutputFilename == "-") 299 return &std::cout; 300 301 std::ostream *Result = new std::ofstream(LibSupportInfoOutputFilename.c_str(), 302 std::ios::app); 303 if (!Result->good()) { 304 std::cerr << "Error opening info-output-file '" 305 << LibSupportInfoOutputFilename << " for appending!\n"; 306 delete Result; 307 return &std::cerr; 308 } 309 return Result; 310 } 311 312 313 void TimerGroup::removeTimer() { 314 if (--NumTimers == 0 && !TimersToPrint.empty()) { // Print timing report... 315 // Sort the timers in descending order by amount of time taken... 316 std::sort(TimersToPrint.begin(), TimersToPrint.end(), 317 std::greater<Timer>()); 318 319 // Figure out how many spaces to indent TimerGroup name... 320 unsigned Padding = (80-Name.length())/2; 321 if (Padding > 80) Padding = 0; // Don't allow "negative" numbers 322 323 std::ostream *OutStream = GetLibSupportInfoOutputFile(); 324 325 ++NumTimers; 326 { // Scope to contain Total timer... don't allow total timer to drop us to 327 // zero timers... 328 Timer Total("TOTAL"); 329 330 for (unsigned i = 0, e = TimersToPrint.size(); i != e; ++i) 331 Total.sum(TimersToPrint[i]); 332 333 // Print out timing header... 334 *OutStream << "===" << std::string(73, '-') << "===\n" 335 << std::string(Padding, ' ') << Name << "\n" 336 << "===" << std::string(73, '-') 337 << "===\n Total Execution Time: "; 338 339 printAlignedFP(Total.getProcessTime(), 4, 5, *OutStream); 340 *OutStream << " seconds ("; 341 printAlignedFP(Total.getWallTime(), 4, 5, *OutStream); 342 *OutStream << " wall clock)\n\n"; 343 344 if (Total.UserTime) 345 *OutStream << " ---User Time---"; 346 if (Total.SystemTime) 347 *OutStream << " --System Time--"; 348 if (Total.getProcessTime()) 349 *OutStream << " --User+System--"; 350 *OutStream << " ---Wall Time---"; 351 if (Total.getMemUsed()) 352 *OutStream << " ---Mem---"; 353 if (Total.getPeakMem()) 354 *OutStream << " -PeakMem-"; 355 *OutStream << " --- Name ---\n"; 356 357 // Loop through all of the timing data, printing it out... 358 for (unsigned i = 0, e = TimersToPrint.size(); i != e; ++i) 359 TimersToPrint[i].print(Total, *OutStream); 360 361 Total.print(Total, *OutStream); 362 *OutStream << std::endl; // Flush output 363 } 364 --NumTimers; 365 366 TimersToPrint.clear(); 367 368 if (OutStream != &std::cerr && OutStream != &std::cout) 369 delete OutStream; // Close the file... 370 } 371 372 // Delete default timer group! 373 if (NumTimers == 0 && this == DefaultTimerGroup) { 374 delete DefaultTimerGroup; 375 DefaultTimerGroup = 0; 376 } 377 } 378 379