1 // Copyright 2009 the V8 project authors. All rights reserved. 2 // Redistribution and use in source and binary forms, with or without 3 // modification, are permitted provided that the following conditions are 4 // met: 5 // 6 // * Redistributions of source code must retain the above copyright 7 // notice, this list of conditions and the following disclaimer. 8 // * Redistributions in binary form must reproduce the above 9 // copyright notice, this list of conditions and the following 10 // disclaimer in the documentation and/or other materials provided 11 // with the distribution. 12 // * Neither the name of Google Inc. nor the names of its 13 // contributors may be used to endorse or promote products derived 14 // from this software without specific prior written permission. 15 // 16 // THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS 17 // "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT 18 // LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR 19 // A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE COPYRIGHT 20 // OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, 21 // SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT 22 // LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, 23 // DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY 24 // THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT 25 // (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE 26 // OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE. 27 28 #include <stdarg.h> 29 30 #include "v8.h" 31 32 #include "bootstrapper.h" 33 #include "global-handles.h" 34 #include "log.h" 35 #include "macro-assembler.h" 36 #include "serialize.h" 37 #include "string-stream.h" 38 39 namespace v8 { 40 namespace internal { 41 42 #ifdef ENABLE_LOGGING_AND_PROFILING 43 44 // 45 // Sliding state window. Updates counters to keep track of the last 46 // window of kBufferSize states. This is useful to track where we 47 // spent our time. 48 // 49 class SlidingStateWindow { 50 public: 51 SlidingStateWindow(); 52 ~SlidingStateWindow(); 53 void AddState(StateTag state); 54 55 private: 56 static const int kBufferSize = 256; 57 int current_index_; 58 bool is_full_; 59 byte buffer_[kBufferSize]; 60 61 62 void IncrementStateCounter(StateTag state) { 63 Counters::state_counters[state].Increment(); 64 } 65 66 67 void DecrementStateCounter(StateTag state) { 68 Counters::state_counters[state].Decrement(); 69 } 70 }; 71 72 73 // 74 // The Profiler samples pc and sp values for the main thread. 75 // Each sample is appended to a circular buffer. 76 // An independent thread removes data and writes it to the log. 77 // This design minimizes the time spent in the sampler. 78 // 79 class Profiler: public Thread { 80 public: 81 Profiler(); 82 void Engage(); 83 void Disengage(); 84 85 // Inserts collected profiling data into buffer. 86 void Insert(TickSample* sample) { 87 if (paused_) 88 return; 89 90 if (Succ(head_) == tail_) { 91 overflow_ = true; 92 } else { 93 buffer_[head_] = *sample; 94 head_ = Succ(head_); 95 buffer_semaphore_->Signal(); // Tell we have an element. 96 } 97 } 98 99 // Waits for a signal and removes profiling data. 100 bool Remove(TickSample* sample) { 101 buffer_semaphore_->Wait(); // Wait for an element. 102 *sample = buffer_[tail_]; 103 bool result = overflow_; 104 tail_ = Succ(tail_); 105 overflow_ = false; 106 return result; 107 } 108 109 void Run(); 110 111 // Pause and Resume TickSample data collection. 112 static bool paused() { return paused_; } 113 static void pause() { paused_ = true; } 114 static void resume() { paused_ = false; } 115 116 private: 117 // Returns the next index in the cyclic buffer. 118 int Succ(int index) { return (index + 1) % kBufferSize; } 119 120 // Cyclic buffer for communicating profiling samples 121 // between the signal handler and the worker thread. 122 static const int kBufferSize = 128; 123 TickSample buffer_[kBufferSize]; // Buffer storage. 124 int head_; // Index to the buffer head. 125 int tail_; // Index to the buffer tail. 126 bool overflow_; // Tell whether a buffer overflow has occurred. 127 Semaphore* buffer_semaphore_; // Sempahore used for buffer synchronization. 128 129 // Tells whether profiler is engaged, that is, processing thread is stated. 130 bool engaged_; 131 132 // Tells whether worker thread should continue running. 133 bool running_; 134 135 // Tells whether we are currently recording tick samples. 136 static bool paused_; 137 }; 138 139 bool Profiler::paused_ = false; 140 141 142 // 143 // StackTracer implementation 144 // 145 void StackTracer::Trace(TickSample* sample) { 146 if (sample->state == GC) { 147 sample->frames_count = 0; 148 return; 149 } 150 151 const Address js_entry_sp = Top::js_entry_sp(Top::GetCurrentThread()); 152 if (js_entry_sp == 0) { 153 // Not executing JS now. 154 sample->frames_count = 0; 155 return; 156 } 157 158 const Address functionAddr = 159 sample->fp + JavaScriptFrameConstants::kFunctionOffset; 160 if (SafeStackFrameIterator::IsWithinBounds(sample->sp, js_entry_sp, 161 functionAddr)) { 162 sample->function = Memory::Address_at(functionAddr) - kHeapObjectTag; 163 } 164 165 int i = 0; 166 const Address callback = Logger::current_state_ != NULL ? 167 Logger::current_state_->external_callback() : NULL; 168 if (callback != NULL) { 169 sample->stack[i++] = callback; 170 } 171 172 SafeStackTraceFrameIterator it(sample->fp, sample->sp, 173 sample->sp, js_entry_sp); 174 while (!it.done() && i < TickSample::kMaxFramesCount) { 175 sample->stack[i++] = it.frame()->pc(); 176 it.Advance(); 177 } 178 sample->frames_count = i; 179 } 180 181 182 // 183 // Ticker used to provide ticks to the profiler and the sliding state 184 // window. 185 // 186 class Ticker: public Sampler { 187 public: 188 explicit Ticker(int interval): 189 Sampler(interval, FLAG_prof), window_(NULL), profiler_(NULL) {} 190 191 ~Ticker() { if (IsActive()) Stop(); } 192 193 void SampleStack(TickSample* sample) { 194 StackTracer::Trace(sample); 195 } 196 197 void Tick(TickSample* sample) { 198 if (profiler_) profiler_->Insert(sample); 199 if (window_) window_->AddState(sample->state); 200 } 201 202 void SetWindow(SlidingStateWindow* window) { 203 window_ = window; 204 if (!IsActive()) Start(); 205 } 206 207 void ClearWindow() { 208 window_ = NULL; 209 if (!profiler_ && IsActive()) Stop(); 210 } 211 212 void SetProfiler(Profiler* profiler) { 213 profiler_ = profiler; 214 if (!FLAG_prof_lazy && !IsActive()) Start(); 215 } 216 217 void ClearProfiler() { 218 profiler_ = NULL; 219 if (!window_ && IsActive()) Stop(); 220 } 221 222 private: 223 SlidingStateWindow* window_; 224 Profiler* profiler_; 225 }; 226 227 228 // 229 // SlidingStateWindow implementation. 230 // 231 SlidingStateWindow::SlidingStateWindow(): current_index_(0), is_full_(false) { 232 for (int i = 0; i < kBufferSize; i++) { 233 buffer_[i] = static_cast<byte>(OTHER); 234 } 235 Logger::ticker_->SetWindow(this); 236 } 237 238 239 SlidingStateWindow::~SlidingStateWindow() { 240 Logger::ticker_->ClearWindow(); 241 } 242 243 244 void SlidingStateWindow::AddState(StateTag state) { 245 if (is_full_) { 246 DecrementStateCounter(static_cast<StateTag>(buffer_[current_index_])); 247 } else if (current_index_ == kBufferSize - 1) { 248 is_full_ = true; 249 } 250 buffer_[current_index_] = static_cast<byte>(state); 251 IncrementStateCounter(state); 252 ASSERT(IsPowerOf2(kBufferSize)); 253 current_index_ = (current_index_ + 1) & (kBufferSize - 1); 254 } 255 256 257 // 258 // Profiler implementation. 259 // 260 Profiler::Profiler() 261 : head_(0), 262 tail_(0), 263 overflow_(false), 264 buffer_semaphore_(OS::CreateSemaphore(0)), 265 engaged_(false), 266 running_(false) { 267 } 268 269 270 void Profiler::Engage() { 271 if (engaged_) return; 272 engaged_ = true; 273 274 // TODO(mnaganov): This is actually "Chromium" mode. Flags need to be revised. 275 // http://code.google.com/p/v8/issues/detail?id=487 276 if (!FLAG_prof_lazy) { 277 OS::LogSharedLibraryAddresses(); 278 } 279 280 // Start thread processing the profiler buffer. 281 running_ = true; 282 Start(); 283 284 // Register to get ticks. 285 Logger::ticker_->SetProfiler(this); 286 287 Logger::ProfilerBeginEvent(); 288 Logger::LogAliases(); 289 } 290 291 292 void Profiler::Disengage() { 293 if (!engaged_) return; 294 295 // Stop receiving ticks. 296 Logger::ticker_->ClearProfiler(); 297 298 // Terminate the worker thread by setting running_ to false, 299 // inserting a fake element in the queue and then wait for 300 // the thread to terminate. 301 running_ = false; 302 TickSample sample; 303 // Reset 'paused_' flag, otherwise semaphore may not be signalled. 304 resume(); 305 Insert(&sample); 306 Join(); 307 308 LOG(UncheckedStringEvent("profiler", "end")); 309 } 310 311 312 void Profiler::Run() { 313 TickSample sample; 314 bool overflow = Logger::profiler_->Remove(&sample); 315 while (running_) { 316 LOG(TickEvent(&sample, overflow)); 317 overflow = Logger::profiler_->Remove(&sample); 318 } 319 } 320 321 322 // 323 // Logger class implementation. 324 // 325 Ticker* Logger::ticker_ = NULL; 326 Profiler* Logger::profiler_ = NULL; 327 VMState* Logger::current_state_ = NULL; 328 VMState Logger::bottom_state_(EXTERNAL); 329 SlidingStateWindow* Logger::sliding_state_window_ = NULL; 330 const char** Logger::log_events_ = NULL; 331 CompressionHelper* Logger::compression_helper_ = NULL; 332 bool Logger::is_logging_ = false; 333 int Logger::cpu_profiler_nesting_ = 0; 334 int Logger::heap_profiler_nesting_ = 0; 335 336 #define DECLARE_LONG_EVENT(ignore1, long_name, ignore2) long_name, 337 const char* kLongLogEventsNames[Logger::NUMBER_OF_LOG_EVENTS] = { 338 LOG_EVENTS_AND_TAGS_LIST(DECLARE_LONG_EVENT) 339 }; 340 #undef DECLARE_LONG_EVENT 341 342 #define DECLARE_SHORT_EVENT(ignore1, ignore2, short_name) short_name, 343 const char* kCompressedLogEventsNames[Logger::NUMBER_OF_LOG_EVENTS] = { 344 LOG_EVENTS_AND_TAGS_LIST(DECLARE_SHORT_EVENT) 345 }; 346 #undef DECLARE_SHORT_EVENT 347 348 349 void Logger::ProfilerBeginEvent() { 350 if (!Log::IsEnabled()) return; 351 LogMessageBuilder msg; 352 msg.Append("profiler,\"begin\",%d\n", kSamplingIntervalMs); 353 if (FLAG_compress_log) { 354 msg.Append("profiler,\"compression\",%d\n", kCompressionWindowSize); 355 } 356 msg.WriteToLogFile(); 357 } 358 359 360 void Logger::LogAliases() { 361 if (!Log::IsEnabled() || !FLAG_compress_log) return; 362 LogMessageBuilder msg; 363 for (int i = 0; i < NUMBER_OF_LOG_EVENTS; ++i) { 364 msg.Append("alias,%s,%s\n", 365 kCompressedLogEventsNames[i], kLongLogEventsNames[i]); 366 } 367 msg.WriteToLogFile(); 368 } 369 370 #endif // ENABLE_LOGGING_AND_PROFILING 371 372 373 void Logger::StringEvent(const char* name, const char* value) { 374 #ifdef ENABLE_LOGGING_AND_PROFILING 375 if (FLAG_log) UncheckedStringEvent(name, value); 376 #endif 377 } 378 379 380 #ifdef ENABLE_LOGGING_AND_PROFILING 381 void Logger::UncheckedStringEvent(const char* name, const char* value) { 382 if (!Log::IsEnabled()) return; 383 LogMessageBuilder msg; 384 msg.Append("%s,\"%s\"\n", name, value); 385 msg.WriteToLogFile(); 386 } 387 #endif 388 389 390 void Logger::IntEvent(const char* name, int value) { 391 #ifdef ENABLE_LOGGING_AND_PROFILING 392 if (!Log::IsEnabled() || !FLAG_log) return; 393 LogMessageBuilder msg; 394 msg.Append("%s,%d\n", name, value); 395 msg.WriteToLogFile(); 396 #endif 397 } 398 399 400 void Logger::HandleEvent(const char* name, Object** location) { 401 #ifdef ENABLE_LOGGING_AND_PROFILING 402 if (!Log::IsEnabled() || !FLAG_log_handles) return; 403 LogMessageBuilder msg; 404 msg.Append("%s,0x%" V8PRIxPTR "\n", name, location); 405 msg.WriteToLogFile(); 406 #endif 407 } 408 409 410 #ifdef ENABLE_LOGGING_AND_PROFILING 411 // ApiEvent is private so all the calls come from the Logger class. It is the 412 // caller's responsibility to ensure that log is enabled and that 413 // FLAG_log_api is true. 414 void Logger::ApiEvent(const char* format, ...) { 415 ASSERT(Log::IsEnabled() && FLAG_log_api); 416 LogMessageBuilder msg; 417 va_list ap; 418 va_start(ap, format); 419 msg.AppendVA(format, ap); 420 va_end(ap); 421 msg.WriteToLogFile(); 422 } 423 #endif 424 425 426 void Logger::ApiNamedSecurityCheck(Object* key) { 427 #ifdef ENABLE_LOGGING_AND_PROFILING 428 if (!Log::IsEnabled() || !FLAG_log_api) return; 429 if (key->IsString()) { 430 SmartPointer<char> str = 431 String::cast(key)->ToCString(DISALLOW_NULLS, ROBUST_STRING_TRAVERSAL); 432 ApiEvent("api,check-security,\"%s\"\n", *str); 433 } else if (key->IsUndefined()) { 434 ApiEvent("api,check-security,undefined\n"); 435 } else { 436 ApiEvent("api,check-security,['no-name']\n"); 437 } 438 #endif 439 } 440 441 442 void Logger::SharedLibraryEvent(const char* library_path, 443 uintptr_t start, 444 uintptr_t end) { 445 #ifdef ENABLE_LOGGING_AND_PROFILING 446 if (!Log::IsEnabled() || !FLAG_prof) return; 447 LogMessageBuilder msg; 448 msg.Append("shared-library,\"%s\",0x%08" V8PRIxPTR ",0x%08" V8PRIxPTR "\n", 449 library_path, 450 start, 451 end); 452 msg.WriteToLogFile(); 453 #endif 454 } 455 456 457 void Logger::SharedLibraryEvent(const wchar_t* library_path, 458 uintptr_t start, 459 uintptr_t end) { 460 #ifdef ENABLE_LOGGING_AND_PROFILING 461 if (!Log::IsEnabled() || !FLAG_prof) return; 462 LogMessageBuilder msg; 463 msg.Append("shared-library,\"%ls\",0x%08" V8PRIxPTR ",0x%08" V8PRIxPTR "\n", 464 library_path, 465 start, 466 end); 467 msg.WriteToLogFile(); 468 #endif 469 } 470 471 472 #ifdef ENABLE_LOGGING_AND_PROFILING 473 void Logger::LogRegExpSource(Handle<JSRegExp> regexp) { 474 // Prints "/" + re.source + "/" + 475 // (re.global?"g":"") + (re.ignorecase?"i":"") + (re.multiline?"m":"") 476 LogMessageBuilder msg; 477 478 Handle<Object> source = GetProperty(regexp, "source"); 479 if (!source->IsString()) { 480 msg.Append("no source"); 481 return; 482 } 483 484 switch (regexp->TypeTag()) { 485 case JSRegExp::ATOM: 486 msg.Append('a'); 487 break; 488 default: 489 break; 490 } 491 msg.Append('/'); 492 msg.AppendDetailed(*Handle<String>::cast(source), false); 493 msg.Append('/'); 494 495 // global flag 496 Handle<Object> global = GetProperty(regexp, "global"); 497 if (global->IsTrue()) { 498 msg.Append('g'); 499 } 500 // ignorecase flag 501 Handle<Object> ignorecase = GetProperty(regexp, "ignoreCase"); 502 if (ignorecase->IsTrue()) { 503 msg.Append('i'); 504 } 505 // multiline flag 506 Handle<Object> multiline = GetProperty(regexp, "multiline"); 507 if (multiline->IsTrue()) { 508 msg.Append('m'); 509 } 510 511 msg.WriteToLogFile(); 512 } 513 #endif // ENABLE_LOGGING_AND_PROFILING 514 515 516 void Logger::RegExpCompileEvent(Handle<JSRegExp> regexp, bool in_cache) { 517 #ifdef ENABLE_LOGGING_AND_PROFILING 518 if (!Log::IsEnabled() || !FLAG_log_regexp) return; 519 LogMessageBuilder msg; 520 msg.Append("regexp-compile,"); 521 LogRegExpSource(regexp); 522 msg.Append(in_cache ? ",hit\n" : ",miss\n"); 523 msg.WriteToLogFile(); 524 #endif 525 } 526 527 528 void Logger::LogRuntime(Vector<const char> format, JSArray* args) { 529 #ifdef ENABLE_LOGGING_AND_PROFILING 530 if (!Log::IsEnabled() || !FLAG_log_runtime) return; 531 HandleScope scope; 532 LogMessageBuilder msg; 533 for (int i = 0; i < format.length(); i++) { 534 char c = format[i]; 535 if (c == '%' && i <= format.length() - 2) { 536 i++; 537 ASSERT('0' <= format[i] && format[i] <= '9'); 538 Object* obj = args->GetElement(format[i] - '0'); 539 i++; 540 switch (format[i]) { 541 case 's': 542 msg.AppendDetailed(String::cast(obj), false); 543 break; 544 case 'S': 545 msg.AppendDetailed(String::cast(obj), true); 546 break; 547 case 'r': 548 Logger::LogRegExpSource(Handle<JSRegExp>(JSRegExp::cast(obj))); 549 break; 550 case 'x': 551 msg.Append("0x%x", Smi::cast(obj)->value()); 552 break; 553 case 'i': 554 msg.Append("%i", Smi::cast(obj)->value()); 555 break; 556 default: 557 UNREACHABLE(); 558 } 559 } else { 560 msg.Append(c); 561 } 562 } 563 msg.Append('\n'); 564 msg.WriteToLogFile(); 565 #endif 566 } 567 568 569 void Logger::ApiIndexedSecurityCheck(uint32_t index) { 570 #ifdef ENABLE_LOGGING_AND_PROFILING 571 if (!Log::IsEnabled() || !FLAG_log_api) return; 572 ApiEvent("api,check-security,%u\n", index); 573 #endif 574 } 575 576 577 void Logger::ApiNamedPropertyAccess(const char* tag, 578 JSObject* holder, 579 Object* name) { 580 #ifdef ENABLE_LOGGING_AND_PROFILING 581 ASSERT(name->IsString()); 582 if (!Log::IsEnabled() || !FLAG_log_api) return; 583 String* class_name_obj = holder->class_name(); 584 SmartPointer<char> class_name = 585 class_name_obj->ToCString(DISALLOW_NULLS, ROBUST_STRING_TRAVERSAL); 586 SmartPointer<char> property_name = 587 String::cast(name)->ToCString(DISALLOW_NULLS, ROBUST_STRING_TRAVERSAL); 588 Logger::ApiEvent("api,%s,\"%s\",\"%s\"\n", tag, *class_name, *property_name); 589 #endif 590 } 591 592 void Logger::ApiIndexedPropertyAccess(const char* tag, 593 JSObject* holder, 594 uint32_t index) { 595 #ifdef ENABLE_LOGGING_AND_PROFILING 596 if (!Log::IsEnabled() || !FLAG_log_api) return; 597 String* class_name_obj = holder->class_name(); 598 SmartPointer<char> class_name = 599 class_name_obj->ToCString(DISALLOW_NULLS, ROBUST_STRING_TRAVERSAL); 600 Logger::ApiEvent("api,%s,\"%s\",%u\n", tag, *class_name, index); 601 #endif 602 } 603 604 void Logger::ApiObjectAccess(const char* tag, JSObject* object) { 605 #ifdef ENABLE_LOGGING_AND_PROFILING 606 if (!Log::IsEnabled() || !FLAG_log_api) return; 607 String* class_name_obj = object->class_name(); 608 SmartPointer<char> class_name = 609 class_name_obj->ToCString(DISALLOW_NULLS, ROBUST_STRING_TRAVERSAL); 610 Logger::ApiEvent("api,%s,\"%s\"\n", tag, *class_name); 611 #endif 612 } 613 614 615 void Logger::ApiEntryCall(const char* name) { 616 #ifdef ENABLE_LOGGING_AND_PROFILING 617 if (!Log::IsEnabled() || !FLAG_log_api) return; 618 Logger::ApiEvent("api,%s\n", name); 619 #endif 620 } 621 622 623 void Logger::NewEvent(const char* name, void* object, size_t size) { 624 #ifdef ENABLE_LOGGING_AND_PROFILING 625 if (!Log::IsEnabled() || !FLAG_log) return; 626 LogMessageBuilder msg; 627 msg.Append("new,%s,0x%" V8PRIxPTR ",%u\n", name, object, 628 static_cast<unsigned int>(size)); 629 msg.WriteToLogFile(); 630 #endif 631 } 632 633 634 void Logger::DeleteEvent(const char* name, void* object) { 635 #ifdef ENABLE_LOGGING_AND_PROFILING 636 if (!Log::IsEnabled() || !FLAG_log) return; 637 LogMessageBuilder msg; 638 msg.Append("delete,%s,0x%" V8PRIxPTR "\n", name, object); 639 msg.WriteToLogFile(); 640 #endif 641 } 642 643 644 #ifdef ENABLE_LOGGING_AND_PROFILING 645 646 // A class that contains all common code dealing with record compression. 647 class CompressionHelper { 648 public: 649 explicit CompressionHelper(int window_size) 650 : compressor_(window_size), repeat_count_(0) { } 651 652 // Handles storing message in compressor, retrieving the previous one and 653 // prefixing it with repeat count, if needed. 654 // Returns true if message needs to be written to log. 655 bool HandleMessage(LogMessageBuilder* msg) { 656 if (!msg->StoreInCompressor(&compressor_)) { 657 // Current message repeats the previous one, don't write it. 658 ++repeat_count_; 659 return false; 660 } 661 if (repeat_count_ == 0) { 662 return msg->RetrieveCompressedPrevious(&compressor_); 663 } 664 OS::SNPrintF(prefix_, "%s,%d,", 665 Logger::log_events_[Logger::REPEAT_META_EVENT], 666 repeat_count_ + 1); 667 repeat_count_ = 0; 668 return msg->RetrieveCompressedPrevious(&compressor_, prefix_.start()); 669 } 670 671 private: 672 LogRecordCompressor compressor_; 673 int repeat_count_; 674 EmbeddedVector<char, 20> prefix_; 675 }; 676 677 #endif // ENABLE_LOGGING_AND_PROFILING 678 679 680 #ifdef ENABLE_LOGGING_AND_PROFILING 681 void Logger::CallbackEventInternal(const char* prefix, const char* name, 682 Address entry_point) { 683 if (!Log::IsEnabled() || !FLAG_log_code) return; 684 LogMessageBuilder msg; 685 msg.Append("%s,%s,", 686 log_events_[CODE_CREATION_EVENT], log_events_[CALLBACK_TAG]); 687 msg.AppendAddress(entry_point); 688 msg.Append(",1,\"%s%s\"", prefix, name); 689 if (FLAG_compress_log) { 690 ASSERT(compression_helper_ != NULL); 691 if (!compression_helper_->HandleMessage(&msg)) return; 692 } 693 msg.Append('\n'); 694 msg.WriteToLogFile(); 695 } 696 #endif 697 698 699 void Logger::CallbackEvent(String* name, Address entry_point) { 700 #ifdef ENABLE_LOGGING_AND_PROFILING 701 if (!Log::IsEnabled() || !FLAG_log_code) return; 702 SmartPointer<char> str = 703 name->ToCString(DISALLOW_NULLS, ROBUST_STRING_TRAVERSAL); 704 CallbackEventInternal("", *str, entry_point); 705 #endif 706 } 707 708 709 void Logger::GetterCallbackEvent(String* name, Address entry_point) { 710 #ifdef ENABLE_LOGGING_AND_PROFILING 711 if (!Log::IsEnabled() || !FLAG_log_code) return; 712 SmartPointer<char> str = 713 name->ToCString(DISALLOW_NULLS, ROBUST_STRING_TRAVERSAL); 714 CallbackEventInternal("get ", *str, entry_point); 715 #endif 716 } 717 718 719 void Logger::SetterCallbackEvent(String* name, Address entry_point) { 720 #ifdef ENABLE_LOGGING_AND_PROFILING 721 if (!Log::IsEnabled() || !FLAG_log_code) return; 722 SmartPointer<char> str = 723 name->ToCString(DISALLOW_NULLS, ROBUST_STRING_TRAVERSAL); 724 CallbackEventInternal("set ", *str, entry_point); 725 #endif 726 } 727 728 729 void Logger::CodeCreateEvent(LogEventsAndTags tag, 730 Code* code, 731 const char* comment) { 732 #ifdef ENABLE_LOGGING_AND_PROFILING 733 if (!Log::IsEnabled() || !FLAG_log_code) return; 734 LogMessageBuilder msg; 735 msg.Append("%s,%s,", log_events_[CODE_CREATION_EVENT], log_events_[tag]); 736 msg.AppendAddress(code->address()); 737 msg.Append(",%d,\"", code->ExecutableSize()); 738 for (const char* p = comment; *p != '\0'; p++) { 739 if (*p == '"') { 740 msg.Append('\\'); 741 } 742 msg.Append(*p); 743 } 744 msg.Append('"'); 745 if (FLAG_compress_log) { 746 ASSERT(compression_helper_ != NULL); 747 if (!compression_helper_->HandleMessage(&msg)) return; 748 } 749 msg.Append('\n'); 750 msg.WriteToLogFile(); 751 #endif 752 } 753 754 755 void Logger::CodeCreateEvent(LogEventsAndTags tag, Code* code, String* name) { 756 #ifdef ENABLE_LOGGING_AND_PROFILING 757 if (!Log::IsEnabled() || !FLAG_log_code) return; 758 LogMessageBuilder msg; 759 SmartPointer<char> str = 760 name->ToCString(DISALLOW_NULLS, ROBUST_STRING_TRAVERSAL); 761 msg.Append("%s,%s,", log_events_[CODE_CREATION_EVENT], log_events_[tag]); 762 msg.AppendAddress(code->address()); 763 msg.Append(",%d,\"%s\"", code->ExecutableSize(), *str); 764 if (FLAG_compress_log) { 765 ASSERT(compression_helper_ != NULL); 766 if (!compression_helper_->HandleMessage(&msg)) return; 767 } 768 msg.Append('\n'); 769 msg.WriteToLogFile(); 770 #endif 771 } 772 773 774 void Logger::CodeCreateEvent(LogEventsAndTags tag, 775 Code* code, String* name, 776 String* source, int line) { 777 #ifdef ENABLE_LOGGING_AND_PROFILING 778 if (!Log::IsEnabled() || !FLAG_log_code) return; 779 LogMessageBuilder msg; 780 SmartPointer<char> str = 781 name->ToCString(DISALLOW_NULLS, ROBUST_STRING_TRAVERSAL); 782 SmartPointer<char> sourcestr = 783 source->ToCString(DISALLOW_NULLS, ROBUST_STRING_TRAVERSAL); 784 msg.Append("%s,%s,", log_events_[CODE_CREATION_EVENT], log_events_[tag]); 785 msg.AppendAddress(code->address()); 786 msg.Append(",%d,\"%s %s:%d\"", 787 code->ExecutableSize(), *str, *sourcestr, line); 788 if (FLAG_compress_log) { 789 ASSERT(compression_helper_ != NULL); 790 if (!compression_helper_->HandleMessage(&msg)) return; 791 } 792 msg.Append('\n'); 793 msg.WriteToLogFile(); 794 #endif 795 } 796 797 798 void Logger::CodeCreateEvent(LogEventsAndTags tag, Code* code, int args_count) { 799 #ifdef ENABLE_LOGGING_AND_PROFILING 800 if (!Log::IsEnabled() || !FLAG_log_code) return; 801 LogMessageBuilder msg; 802 msg.Append("%s,%s,", log_events_[CODE_CREATION_EVENT], log_events_[tag]); 803 msg.AppendAddress(code->address()); 804 msg.Append(",%d,\"args_count: %d\"", code->ExecutableSize(), args_count); 805 if (FLAG_compress_log) { 806 ASSERT(compression_helper_ != NULL); 807 if (!compression_helper_->HandleMessage(&msg)) return; 808 } 809 msg.Append('\n'); 810 msg.WriteToLogFile(); 811 #endif 812 } 813 814 815 void Logger::RegExpCodeCreateEvent(Code* code, String* source) { 816 #ifdef ENABLE_LOGGING_AND_PROFILING 817 if (!Log::IsEnabled() || !FLAG_log_code) return; 818 LogMessageBuilder msg; 819 msg.Append("%s,%s,", 820 log_events_[CODE_CREATION_EVENT], log_events_[REG_EXP_TAG]); 821 msg.AppendAddress(code->address()); 822 msg.Append(",%d,\"", code->ExecutableSize()); 823 msg.AppendDetailed(source, false); 824 msg.Append('\"'); 825 if (FLAG_compress_log) { 826 ASSERT(compression_helper_ != NULL); 827 if (!compression_helper_->HandleMessage(&msg)) return; 828 } 829 msg.Append('\n'); 830 msg.WriteToLogFile(); 831 #endif 832 } 833 834 835 void Logger::CodeMoveEvent(Address from, Address to) { 836 #ifdef ENABLE_LOGGING_AND_PROFILING 837 MoveEventInternal(CODE_MOVE_EVENT, from, to); 838 #endif 839 } 840 841 842 void Logger::CodeDeleteEvent(Address from) { 843 #ifdef ENABLE_LOGGING_AND_PROFILING 844 DeleteEventInternal(CODE_DELETE_EVENT, from); 845 #endif 846 } 847 848 849 void Logger::SnapshotPositionEvent(Address addr, int pos) { 850 #ifdef ENABLE_LOGGING_AND_PROFILING 851 if (!Log::IsEnabled() || !FLAG_log_snapshot_positions) return; 852 LogMessageBuilder msg; 853 msg.Append("%s,", log_events_[SNAPSHOT_POSITION_EVENT]); 854 msg.AppendAddress(addr); 855 msg.Append(",%d", pos); 856 if (FLAG_compress_log) { 857 ASSERT(compression_helper_ != NULL); 858 if (!compression_helper_->HandleMessage(&msg)) return; 859 } 860 msg.Append('\n'); 861 msg.WriteToLogFile(); 862 #endif 863 } 864 865 866 void Logger::FunctionCreateEvent(JSFunction* function) { 867 #ifdef ENABLE_LOGGING_AND_PROFILING 868 static Address prev_code = NULL; 869 if (!Log::IsEnabled() || !FLAG_log_code) return; 870 LogMessageBuilder msg; 871 msg.Append("%s,", log_events_[FUNCTION_CREATION_EVENT]); 872 msg.AppendAddress(function->address()); 873 msg.Append(','); 874 msg.AppendAddress(function->code()->address(), prev_code); 875 prev_code = function->code()->address(); 876 if (FLAG_compress_log) { 877 ASSERT(compression_helper_ != NULL); 878 if (!compression_helper_->HandleMessage(&msg)) return; 879 } 880 msg.Append('\n'); 881 msg.WriteToLogFile(); 882 #endif 883 } 884 885 886 void Logger::FunctionMoveEvent(Address from, Address to) { 887 #ifdef ENABLE_LOGGING_AND_PROFILING 888 MoveEventInternal(FUNCTION_MOVE_EVENT, from, to); 889 #endif 890 } 891 892 893 void Logger::FunctionDeleteEvent(Address from) { 894 #ifdef ENABLE_LOGGING_AND_PROFILING 895 DeleteEventInternal(FUNCTION_DELETE_EVENT, from); 896 #endif 897 } 898 899 900 #ifdef ENABLE_LOGGING_AND_PROFILING 901 void Logger::MoveEventInternal(LogEventsAndTags event, 902 Address from, 903 Address to) { 904 static Address prev_to_ = NULL; 905 if (!Log::IsEnabled() || !FLAG_log_code) return; 906 LogMessageBuilder msg; 907 msg.Append("%s,", log_events_[event]); 908 msg.AppendAddress(from); 909 msg.Append(','); 910 msg.AppendAddress(to, prev_to_); 911 prev_to_ = to; 912 if (FLAG_compress_log) { 913 ASSERT(compression_helper_ != NULL); 914 if (!compression_helper_->HandleMessage(&msg)) return; 915 } 916 msg.Append('\n'); 917 msg.WriteToLogFile(); 918 } 919 #endif 920 921 922 #ifdef ENABLE_LOGGING_AND_PROFILING 923 void Logger::DeleteEventInternal(LogEventsAndTags event, Address from) { 924 if (!Log::IsEnabled() || !FLAG_log_code) return; 925 LogMessageBuilder msg; 926 msg.Append("%s,", log_events_[event]); 927 msg.AppendAddress(from); 928 if (FLAG_compress_log) { 929 ASSERT(compression_helper_ != NULL); 930 if (!compression_helper_->HandleMessage(&msg)) return; 931 } 932 msg.Append('\n'); 933 msg.WriteToLogFile(); 934 } 935 #endif 936 937 938 void Logger::ResourceEvent(const char* name, const char* tag) { 939 #ifdef ENABLE_LOGGING_AND_PROFILING 940 if (!Log::IsEnabled() || !FLAG_log) return; 941 LogMessageBuilder msg; 942 msg.Append("%s,%s,", name, tag); 943 944 uint32_t sec, usec; 945 if (OS::GetUserTime(&sec, &usec) != -1) { 946 msg.Append("%d,%d,", sec, usec); 947 } 948 msg.Append("%.0f", OS::TimeCurrentMillis()); 949 950 msg.Append('\n'); 951 msg.WriteToLogFile(); 952 #endif 953 } 954 955 956 void Logger::SuspectReadEvent(String* name, Object* obj) { 957 #ifdef ENABLE_LOGGING_AND_PROFILING 958 if (!Log::IsEnabled() || !FLAG_log_suspect) return; 959 LogMessageBuilder msg; 960 String* class_name = obj->IsJSObject() 961 ? JSObject::cast(obj)->class_name() 962 : Heap::empty_string(); 963 msg.Append("suspect-read,"); 964 msg.Append(class_name); 965 msg.Append(','); 966 msg.Append('"'); 967 msg.Append(name); 968 msg.Append('"'); 969 msg.Append('\n'); 970 msg.WriteToLogFile(); 971 #endif 972 } 973 974 975 void Logger::HeapSampleBeginEvent(const char* space, const char* kind) { 976 #ifdef ENABLE_LOGGING_AND_PROFILING 977 if (!Log::IsEnabled() || !FLAG_log_gc) return; 978 LogMessageBuilder msg; 979 // Using non-relative system time in order to be able to synchronize with 980 // external memory profiling events (e.g. DOM memory size). 981 msg.Append("heap-sample-begin,\"%s\",\"%s\",%.0f\n", 982 space, kind, OS::TimeCurrentMillis()); 983 msg.WriteToLogFile(); 984 #endif 985 } 986 987 988 void Logger::HeapSampleStats(const char* space, const char* kind, 989 int capacity, int used) { 990 #ifdef ENABLE_LOGGING_AND_PROFILING 991 if (!Log::IsEnabled() || !FLAG_log_gc) return; 992 LogMessageBuilder msg; 993 msg.Append("heap-sample-stats,\"%s\",\"%s\",%d,%d\n", 994 space, kind, capacity, used); 995 msg.WriteToLogFile(); 996 #endif 997 } 998 999 1000 void Logger::HeapSampleEndEvent(const char* space, const char* kind) { 1001 #ifdef ENABLE_LOGGING_AND_PROFILING 1002 if (!Log::IsEnabled() || !FLAG_log_gc) return; 1003 LogMessageBuilder msg; 1004 msg.Append("heap-sample-end,\"%s\",\"%s\"\n", space, kind); 1005 msg.WriteToLogFile(); 1006 #endif 1007 } 1008 1009 1010 void Logger::HeapSampleItemEvent(const char* type, int number, int bytes) { 1011 #ifdef ENABLE_LOGGING_AND_PROFILING 1012 if (!Log::IsEnabled() || !FLAG_log_gc) return; 1013 LogMessageBuilder msg; 1014 msg.Append("heap-sample-item,%s,%d,%d\n", type, number, bytes); 1015 msg.WriteToLogFile(); 1016 #endif 1017 } 1018 1019 1020 void Logger::HeapSampleJSConstructorEvent(const char* constructor, 1021 int number, int bytes) { 1022 #ifdef ENABLE_LOGGING_AND_PROFILING 1023 if (!Log::IsEnabled() || !FLAG_log_gc) return; 1024 LogMessageBuilder msg; 1025 msg.Append("heap-js-cons-item,%s,%d,%d\n", constructor, number, bytes); 1026 msg.WriteToLogFile(); 1027 #endif 1028 } 1029 1030 1031 void Logger::HeapSampleJSRetainersEvent( 1032 const char* constructor, const char* event) { 1033 #ifdef ENABLE_LOGGING_AND_PROFILING 1034 if (!Log::IsEnabled() || !FLAG_log_gc) return; 1035 // Event starts with comma, so we don't have it in the format string. 1036 static const char* event_text = "heap-js-ret-item,%s"; 1037 // We take placeholder strings into account, but it's OK to be conservative. 1038 static const int event_text_len = StrLength(event_text); 1039 const int cons_len = StrLength(constructor); 1040 const int event_len = StrLength(event); 1041 int pos = 0; 1042 // Retainer lists can be long. We may need to split them into multiple events. 1043 do { 1044 LogMessageBuilder msg; 1045 msg.Append(event_text, constructor); 1046 int to_write = event_len - pos; 1047 if (to_write > Log::kMessageBufferSize - (cons_len + event_text_len)) { 1048 int cut_pos = pos + Log::kMessageBufferSize - (cons_len + event_text_len); 1049 ASSERT(cut_pos < event_len); 1050 while (cut_pos > pos && event[cut_pos] != ',') --cut_pos; 1051 if (event[cut_pos] != ',') { 1052 // Crash in debug mode, skip in release mode. 1053 ASSERT(false); 1054 return; 1055 } 1056 // Append a piece of event that fits, without trailing comma. 1057 msg.AppendStringPart(event + pos, cut_pos - pos); 1058 // Start next piece with comma. 1059 pos = cut_pos; 1060 } else { 1061 msg.Append("%s", event + pos); 1062 pos += event_len; 1063 } 1064 msg.Append('\n'); 1065 msg.WriteToLogFile(); 1066 } while (pos < event_len); 1067 #endif 1068 } 1069 1070 1071 void Logger::HeapSampleJSProducerEvent(const char* constructor, 1072 Address* stack) { 1073 #ifdef ENABLE_LOGGING_AND_PROFILING 1074 if (!Log::IsEnabled() || !FLAG_log_gc) return; 1075 LogMessageBuilder msg; 1076 msg.Append("heap-js-prod-item,%s", constructor); 1077 while (*stack != NULL) { 1078 msg.Append(",0x%" V8PRIxPTR, *stack++); 1079 } 1080 msg.Append("\n"); 1081 msg.WriteToLogFile(); 1082 #endif 1083 } 1084 1085 1086 void Logger::DebugTag(const char* call_site_tag) { 1087 #ifdef ENABLE_LOGGING_AND_PROFILING 1088 if (!Log::IsEnabled() || !FLAG_log) return; 1089 LogMessageBuilder msg; 1090 msg.Append("debug-tag,%s\n", call_site_tag); 1091 msg.WriteToLogFile(); 1092 #endif 1093 } 1094 1095 1096 void Logger::DebugEvent(const char* event_type, Vector<uint16_t> parameter) { 1097 #ifdef ENABLE_LOGGING_AND_PROFILING 1098 if (!Log::IsEnabled() || !FLAG_log) return; 1099 StringBuilder s(parameter.length() + 1); 1100 for (int i = 0; i < parameter.length(); ++i) { 1101 s.AddCharacter(static_cast<char>(parameter[i])); 1102 } 1103 char* parameter_string = s.Finalize(); 1104 LogMessageBuilder msg; 1105 msg.Append("debug-queue-event,%s,%15.3f,%s\n", 1106 event_type, 1107 OS::TimeCurrentMillis(), 1108 parameter_string); 1109 DeleteArray(parameter_string); 1110 msg.WriteToLogFile(); 1111 #endif 1112 } 1113 1114 1115 #ifdef ENABLE_LOGGING_AND_PROFILING 1116 void Logger::TickEvent(TickSample* sample, bool overflow) { 1117 if (!Log::IsEnabled() || !FLAG_prof) return; 1118 static Address prev_sp = NULL; 1119 static Address prev_function = NULL; 1120 LogMessageBuilder msg; 1121 msg.Append("%s,", log_events_[TICK_EVENT]); 1122 Address prev_addr = sample->pc; 1123 msg.AppendAddress(prev_addr); 1124 msg.Append(','); 1125 msg.AppendAddress(sample->sp, prev_sp); 1126 prev_sp = sample->sp; 1127 msg.Append(','); 1128 msg.AppendAddress(sample->function, prev_function); 1129 prev_function = sample->function; 1130 msg.Append(",%d", static_cast<int>(sample->state)); 1131 if (overflow) { 1132 msg.Append(",overflow"); 1133 } 1134 for (int i = 0; i < sample->frames_count; ++i) { 1135 msg.Append(','); 1136 msg.AppendAddress(sample->stack[i], prev_addr); 1137 prev_addr = sample->stack[i]; 1138 } 1139 if (FLAG_compress_log) { 1140 ASSERT(compression_helper_ != NULL); 1141 if (!compression_helper_->HandleMessage(&msg)) return; 1142 } 1143 msg.Append('\n'); 1144 msg.WriteToLogFile(); 1145 } 1146 1147 1148 int Logger::GetActiveProfilerModules() { 1149 int result = PROFILER_MODULE_NONE; 1150 if (!profiler_->paused()) { 1151 result |= PROFILER_MODULE_CPU; 1152 } 1153 if (FLAG_log_gc) { 1154 result |= PROFILER_MODULE_HEAP_STATS | PROFILER_MODULE_JS_CONSTRUCTORS; 1155 } 1156 return result; 1157 } 1158 1159 1160 void Logger::PauseProfiler(int flags, int tag) { 1161 if (!Log::IsEnabled()) return; 1162 if (flags & PROFILER_MODULE_CPU) { 1163 // It is OK to have negative nesting. 1164 if (--cpu_profiler_nesting_ == 0) { 1165 profiler_->pause(); 1166 if (FLAG_prof_lazy) { 1167 if (!FLAG_sliding_state_window) ticker_->Stop(); 1168 FLAG_log_code = false; 1169 // Must be the same message as Log::kDynamicBufferSeal. 1170 LOG(UncheckedStringEvent("profiler", "pause")); 1171 } 1172 } 1173 } 1174 if (flags & 1175 (PROFILER_MODULE_HEAP_STATS | PROFILER_MODULE_JS_CONSTRUCTORS)) { 1176 if (--heap_profiler_nesting_ == 0) { 1177 FLAG_log_gc = false; 1178 } 1179 } 1180 if (tag != 0) { 1181 IntEvent("close-tag", tag); 1182 } 1183 if (GetActiveProfilerModules() == PROFILER_MODULE_NONE) { 1184 is_logging_ = false; 1185 } 1186 } 1187 1188 1189 void Logger::ResumeProfiler(int flags, int tag) { 1190 if (!Log::IsEnabled()) return; 1191 if (tag != 0) { 1192 IntEvent("open-tag", tag); 1193 } 1194 if (flags & PROFILER_MODULE_CPU) { 1195 if (cpu_profiler_nesting_++ == 0) { 1196 is_logging_ = true; 1197 if (FLAG_prof_lazy) { 1198 profiler_->Engage(); 1199 LOG(UncheckedStringEvent("profiler", "resume")); 1200 FLAG_log_code = true; 1201 LogCompiledFunctions(); 1202 LogFunctionObjects(); 1203 LogAccessorCallbacks(); 1204 if (!FLAG_sliding_state_window) ticker_->Start(); 1205 } 1206 profiler_->resume(); 1207 } 1208 } 1209 if (flags & 1210 (PROFILER_MODULE_HEAP_STATS | PROFILER_MODULE_JS_CONSTRUCTORS)) { 1211 if (heap_profiler_nesting_++ == 0) { 1212 is_logging_ = true; 1213 FLAG_log_gc = true; 1214 } 1215 } 1216 } 1217 1218 1219 // This function can be called when Log's mutex is acquired, 1220 // either from main or Profiler's thread. 1221 void Logger::StopLoggingAndProfiling() { 1222 Log::stop(); 1223 PauseProfiler(PROFILER_MODULE_CPU, 0); 1224 } 1225 1226 1227 bool Logger::IsProfilerSamplerActive() { 1228 return ticker_->IsActive(); 1229 } 1230 1231 1232 int Logger::GetLogLines(int from_pos, char* dest_buf, int max_size) { 1233 return Log::GetLogLines(from_pos, dest_buf, max_size); 1234 } 1235 1236 1237 static int EnumerateCompiledFunctions(Handle<SharedFunctionInfo>* sfis) { 1238 AssertNoAllocation no_alloc; 1239 int compiled_funcs_count = 0; 1240 HeapIterator iterator; 1241 for (HeapObject* obj = iterator.next(); obj != NULL; obj = iterator.next()) { 1242 if (!obj->IsSharedFunctionInfo()) continue; 1243 SharedFunctionInfo* sfi = SharedFunctionInfo::cast(obj); 1244 if (sfi->is_compiled() 1245 && (!sfi->script()->IsScript() 1246 || Script::cast(sfi->script())->HasValidSource())) { 1247 if (sfis != NULL) 1248 sfis[compiled_funcs_count] = Handle<SharedFunctionInfo>(sfi); 1249 ++compiled_funcs_count; 1250 } 1251 } 1252 return compiled_funcs_count; 1253 } 1254 1255 1256 void Logger::LogCodeObject(Object* object) { 1257 if (FLAG_log_code) { 1258 Code* code_object = Code::cast(object); 1259 LogEventsAndTags tag = Logger::STUB_TAG; 1260 const char* description = "Unknown code from the snapshot"; 1261 switch (code_object->kind()) { 1262 case Code::FUNCTION: 1263 return; // We log this later using LogCompiledFunctions. 1264 case Code::STUB: 1265 description = CodeStub::MajorName(code_object->major_key(), true); 1266 if (description == NULL) 1267 description = "A stub from the snapshot"; 1268 tag = Logger::STUB_TAG; 1269 break; 1270 case Code::BUILTIN: 1271 description = "A builtin from the snapshot"; 1272 tag = Logger::BUILTIN_TAG; 1273 break; 1274 case Code::KEYED_LOAD_IC: 1275 description = "A keyed load IC from the snapshot"; 1276 tag = Logger::KEYED_LOAD_IC_TAG; 1277 break; 1278 case Code::LOAD_IC: 1279 description = "A load IC from the snapshot"; 1280 tag = Logger::LOAD_IC_TAG; 1281 break; 1282 case Code::STORE_IC: 1283 description = "A store IC from the snapshot"; 1284 tag = Logger::STORE_IC_TAG; 1285 break; 1286 case Code::KEYED_STORE_IC: 1287 description = "A keyed store IC from the snapshot"; 1288 tag = Logger::KEYED_STORE_IC_TAG; 1289 break; 1290 case Code::CALL_IC: 1291 description = "A call IC from the snapshot"; 1292 tag = Logger::CALL_IC_TAG; 1293 break; 1294 } 1295 LOG(CodeCreateEvent(tag, code_object, description)); 1296 } 1297 } 1298 1299 1300 void Logger::LogCodeObjects() { 1301 AssertNoAllocation no_alloc; 1302 HeapIterator iterator; 1303 for (HeapObject* obj = iterator.next(); obj != NULL; obj = iterator.next()) { 1304 if (obj->IsCode()) LogCodeObject(obj); 1305 } 1306 } 1307 1308 1309 void Logger::LogCompiledFunctions() { 1310 HandleScope scope; 1311 const int compiled_funcs_count = EnumerateCompiledFunctions(NULL); 1312 Handle<SharedFunctionInfo>* sfis = 1313 NewArray< Handle<SharedFunctionInfo> >(compiled_funcs_count); 1314 EnumerateCompiledFunctions(sfis); 1315 1316 // During iteration, there can be heap allocation due to 1317 // GetScriptLineNumber call. 1318 for (int i = 0; i < compiled_funcs_count; ++i) { 1319 Handle<SharedFunctionInfo> shared = sfis[i]; 1320 Handle<String> name(String::cast(shared->name())); 1321 Handle<String> func_name(name->length() > 0 ? 1322 *name : shared->inferred_name()); 1323 if (shared->script()->IsScript()) { 1324 Handle<Script> script(Script::cast(shared->script())); 1325 if (script->name()->IsString()) { 1326 Handle<String> script_name(String::cast(script->name())); 1327 int line_num = GetScriptLineNumber(script, shared->start_position()); 1328 if (line_num > 0) { 1329 LOG(CodeCreateEvent(Logger::LAZY_COMPILE_TAG, 1330 shared->code(), *func_name, 1331 *script_name, line_num + 1)); 1332 } else { 1333 // Can't distinguish enum and script here, so always use Script. 1334 LOG(CodeCreateEvent(Logger::SCRIPT_TAG, 1335 shared->code(), *script_name)); 1336 } 1337 } else { 1338 LOG(CodeCreateEvent( 1339 Logger::LAZY_COMPILE_TAG, shared->code(), *func_name)); 1340 } 1341 } else if (shared->function_data()->IsFunctionTemplateInfo()) { 1342 // API function. 1343 FunctionTemplateInfo* fun_data = 1344 FunctionTemplateInfo::cast(shared->function_data()); 1345 Object* raw_call_data = fun_data->call_code(); 1346 if (!raw_call_data->IsUndefined()) { 1347 CallHandlerInfo* call_data = CallHandlerInfo::cast(raw_call_data); 1348 Object* callback_obj = call_data->callback(); 1349 Address entry_point = v8::ToCData<Address>(callback_obj); 1350 LOG(CallbackEvent(*func_name, entry_point)); 1351 } 1352 } else { 1353 LOG(CodeCreateEvent( 1354 Logger::LAZY_COMPILE_TAG, shared->code(), *func_name)); 1355 } 1356 } 1357 1358 DeleteArray(sfis); 1359 } 1360 1361 1362 void Logger::LogFunctionObjects() { 1363 AssertNoAllocation no_alloc; 1364 HeapIterator iterator; 1365 for (HeapObject* obj = iterator.next(); obj != NULL; obj = iterator.next()) { 1366 if (!obj->IsJSFunction()) continue; 1367 JSFunction* jsf = JSFunction::cast(obj); 1368 if (!jsf->is_compiled()) continue; 1369 LOG(FunctionCreateEvent(jsf)); 1370 } 1371 } 1372 1373 1374 void Logger::LogAccessorCallbacks() { 1375 AssertNoAllocation no_alloc; 1376 HeapIterator iterator; 1377 for (HeapObject* obj = iterator.next(); obj != NULL; obj = iterator.next()) { 1378 if (!obj->IsAccessorInfo()) continue; 1379 AccessorInfo* ai = AccessorInfo::cast(obj); 1380 if (!ai->name()->IsString()) continue; 1381 String* name = String::cast(ai->name()); 1382 Address getter_entry = v8::ToCData<Address>(ai->getter()); 1383 if (getter_entry != 0) { 1384 LOG(GetterCallbackEvent(name, getter_entry)); 1385 } 1386 Address setter_entry = v8::ToCData<Address>(ai->setter()); 1387 if (setter_entry != 0) { 1388 LOG(SetterCallbackEvent(name, setter_entry)); 1389 } 1390 } 1391 } 1392 1393 #endif 1394 1395 1396 bool Logger::Setup() { 1397 #ifdef ENABLE_LOGGING_AND_PROFILING 1398 // --log-all enables all the log flags. 1399 if (FLAG_log_all) { 1400 FLAG_log_runtime = true; 1401 FLAG_log_api = true; 1402 FLAG_log_code = true; 1403 FLAG_log_gc = true; 1404 FLAG_log_suspect = true; 1405 FLAG_log_handles = true; 1406 FLAG_log_regexp = true; 1407 } 1408 1409 // --prof implies --log-code. 1410 if (FLAG_prof) FLAG_log_code = true; 1411 1412 // --prof_lazy controls --log-code, implies --noprof_auto. 1413 if (FLAG_prof_lazy) { 1414 FLAG_log_code = false; 1415 FLAG_prof_auto = false; 1416 } 1417 1418 bool start_logging = FLAG_log || FLAG_log_runtime || FLAG_log_api 1419 || FLAG_log_code || FLAG_log_gc || FLAG_log_handles || FLAG_log_suspect 1420 || FLAG_log_regexp || FLAG_log_state_changes; 1421 1422 bool open_log_file = start_logging || FLAG_prof_lazy; 1423 1424 // If we're logging anything, we need to open the log file. 1425 if (open_log_file) { 1426 if (strcmp(FLAG_logfile, "-") == 0) { 1427 Log::OpenStdout(); 1428 } else if (strcmp(FLAG_logfile, "*") == 0) { 1429 Log::OpenMemoryBuffer(); 1430 } else if (strchr(FLAG_logfile, '%') != NULL) { 1431 // If there's a '%' in the log file name we have to expand 1432 // placeholders. 1433 HeapStringAllocator allocator; 1434 StringStream stream(&allocator); 1435 for (const char* p = FLAG_logfile; *p; p++) { 1436 if (*p == '%') { 1437 p++; 1438 switch (*p) { 1439 case '\0': 1440 // If there's a % at the end of the string we back up 1441 // one character so we can escape the loop properly. 1442 p--; 1443 break; 1444 case 't': { 1445 // %t expands to the current time in milliseconds. 1446 double time = OS::TimeCurrentMillis(); 1447 stream.Add("%.0f", FmtElm(time)); 1448 break; 1449 } 1450 case '%': 1451 // %% expands (contracts really) to %. 1452 stream.Put('%'); 1453 break; 1454 default: 1455 // All other %'s expand to themselves. 1456 stream.Put('%'); 1457 stream.Put(*p); 1458 break; 1459 } 1460 } else { 1461 stream.Put(*p); 1462 } 1463 } 1464 SmartPointer<const char> expanded = stream.ToCString(); 1465 Log::OpenFile(*expanded); 1466 } else { 1467 Log::OpenFile(FLAG_logfile); 1468 } 1469 } 1470 1471 current_state_ = &bottom_state_; 1472 1473 ticker_ = new Ticker(kSamplingIntervalMs); 1474 1475 if (FLAG_sliding_state_window && sliding_state_window_ == NULL) { 1476 sliding_state_window_ = new SlidingStateWindow(); 1477 } 1478 1479 log_events_ = FLAG_compress_log ? 1480 kCompressedLogEventsNames : kLongLogEventsNames; 1481 if (FLAG_compress_log) { 1482 compression_helper_ = new CompressionHelper(kCompressionWindowSize); 1483 } 1484 1485 is_logging_ = start_logging; 1486 1487 if (FLAG_prof) { 1488 profiler_ = new Profiler(); 1489 if (!FLAG_prof_auto) { 1490 profiler_->pause(); 1491 } else { 1492 is_logging_ = true; 1493 } 1494 if (!FLAG_prof_lazy) { 1495 profiler_->Engage(); 1496 } 1497 } 1498 1499 LogMessageBuilder::set_write_failure_handler(StopLoggingAndProfiling); 1500 1501 return true; 1502 1503 #else 1504 return false; 1505 #endif 1506 } 1507 1508 1509 void Logger::TearDown() { 1510 #ifdef ENABLE_LOGGING_AND_PROFILING 1511 LogMessageBuilder::set_write_failure_handler(NULL); 1512 1513 // Stop the profiler before closing the file. 1514 if (profiler_ != NULL) { 1515 profiler_->Disengage(); 1516 delete profiler_; 1517 profiler_ = NULL; 1518 } 1519 1520 delete compression_helper_; 1521 compression_helper_ = NULL; 1522 1523 delete sliding_state_window_; 1524 sliding_state_window_ = NULL; 1525 1526 delete ticker_; 1527 ticker_ = NULL; 1528 1529 Log::Close(); 1530 #endif 1531 } 1532 1533 1534 void Logger::EnableSlidingStateWindow() { 1535 #ifdef ENABLE_LOGGING_AND_PROFILING 1536 // If the ticker is NULL, Logger::Setup has not been called yet. In 1537 // that case, we set the sliding_state_window flag so that the 1538 // sliding window computation will be started when Logger::Setup is 1539 // called. 1540 if (ticker_ == NULL) { 1541 FLAG_sliding_state_window = true; 1542 return; 1543 } 1544 // Otherwise, if the sliding state window computation has not been 1545 // started we do it now. 1546 if (sliding_state_window_ == NULL) { 1547 sliding_state_window_ = new SlidingStateWindow(); 1548 } 1549 #endif 1550 } 1551 1552 1553 } } // namespace v8::internal 1554