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| 1 // Copyright 2013 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 #if defined(__linux__) || defined(__FreeBSD__) || defined(__OpenBSD__) \ |
| 29 || defined(__NetBSD__) || defined(__sun) |
| 30 |
| 31 #include <errno.h> |
| 32 #include <pthread.h> |
| 33 #include <signal.h> |
| 34 #include <sys/time.h> |
| 35 #include <sys/syscall.h> |
| 36 #include <ucontext.h> |
| 37 #include <unistd.h> |
| 38 |
| 39 #endif |
| 40 |
| 41 // GLibc on ARM defines mcontext_t has a typedef for 'struct sigcontext'. |
| 42 // Old versions of the C library <signal.h> didn't define the type. |
| 43 #if defined(__ANDROID__) && !defined(__BIONIC_HAVE_UCONTEXT_T) && \ |
| 44 defined(__arm__) && !defined(__BIONIC_HAVE_STRUCT_SIGCONTEXT) |
| 45 #include <asm/sigcontext.h> |
| 46 #endif |
| 47 |
| 48 #include "v8.h" |
| 49 |
| 50 #include "log.h" |
| 51 #include "platform.h" |
| 52 #include "simulator.h" |
| 53 #include "v8threads.h" |
| 54 |
| 55 |
| 56 namespace v8 { |
| 57 namespace internal { |
| 58 |
| 59 |
| 60 #if defined(__linux__) || defined(__FreeBSD__) || defined(__OpenBSD__) \ |
| 61 || defined(__NetBSD__) || defined(__sun) |
| 62 |
| 63 #if defined(__ANDROID__) && !defined(__BIONIC_HAVE_UCONTEXT_T) |
| 64 |
| 65 // Not all versions of Android's C library provide ucontext_t. |
| 66 // Detect this and provide custom but compatible definitions. Note that these |
| 67 // follow the GLibc naming convention to access register values from |
| 68 // mcontext_t. |
| 69 // |
| 70 // See http://code.google.com/p/android/issues/detail?id=34784 |
| 71 |
| 72 #if defined(__arm__) |
| 73 |
| 74 typedef struct sigcontext mcontext_t; |
| 75 |
| 76 typedef struct ucontext { |
| 77 uint32_t uc_flags; |
| 78 struct ucontext* uc_link; |
| 79 stack_t uc_stack; |
| 80 mcontext_t uc_mcontext; |
| 81 // Other fields are not used by V8, don't define them here. |
| 82 } ucontext_t; |
| 83 |
| 84 #elif defined(__mips__) |
| 85 // MIPS version of sigcontext, for Android bionic. |
| 86 typedef struct { |
| 87 uint32_t regmask; |
| 88 uint32_t status; |
| 89 uint64_t pc; |
| 90 uint64_t gregs[32]; |
| 91 uint64_t fpregs[32]; |
| 92 uint32_t acx; |
| 93 uint32_t fpc_csr; |
| 94 uint32_t fpc_eir; |
| 95 uint32_t used_math; |
| 96 uint32_t dsp; |
| 97 uint64_t mdhi; |
| 98 uint64_t mdlo; |
| 99 uint32_t hi1; |
| 100 uint32_t lo1; |
| 101 uint32_t hi2; |
| 102 uint32_t lo2; |
| 103 uint32_t hi3; |
| 104 uint32_t lo3; |
| 105 } mcontext_t; |
| 106 |
| 107 typedef struct ucontext { |
| 108 uint32_t uc_flags; |
| 109 struct ucontext* uc_link; |
| 110 stack_t uc_stack; |
| 111 mcontext_t uc_mcontext; |
| 112 // Other fields are not used by V8, don't define them here. |
| 113 } ucontext_t; |
| 114 |
| 115 #elif defined(__i386__) |
| 116 // x86 version for Android. |
| 117 typedef struct { |
| 118 uint32_t gregs[19]; |
| 119 void* fpregs; |
| 120 uint32_t oldmask; |
| 121 uint32_t cr2; |
| 122 } mcontext_t; |
| 123 |
| 124 typedef uint32_t kernel_sigset_t[2]; // x86 kernel uses 64-bit signal masks |
| 125 typedef struct ucontext { |
| 126 uint32_t uc_flags; |
| 127 struct ucontext* uc_link; |
| 128 stack_t uc_stack; |
| 129 mcontext_t uc_mcontext; |
| 130 // Other fields are not used by V8, don't define them here. |
| 131 } ucontext_t; |
| 132 enum { REG_EBP = 6, REG_ESP = 7, REG_EIP = 14 }; |
| 133 #endif |
| 134 |
| 135 #endif // __ANDROID__ && !defined(__BIONIC_HAVE_UCONTEXT_T) |
| 136 |
| 137 |
| 138 static pthread_t GetThreadID() { |
| 139 #if defined(__ANDROID__) |
| 140 // Android's C library provides gettid(2). |
| 141 return gettid(); |
| 142 #elif defined(__linux__) |
| 143 // Glibc doesn't provide a wrapper for gettid(2). |
| 144 return syscall(SYS_gettid); |
| 145 #elif defined(__FreeBSD__) || defined(__OpenBSD__) || defined(__NetBSD__) \ |
| 146 || defined(__sun) |
| 147 return pthread_self(); |
| 148 #endif |
| 149 } |
| 150 |
| 151 |
| 152 class Sampler::PlatformData : public Malloced { |
| 153 public: |
| 154 PlatformData() |
| 155 : vm_tid_(GetThreadID()), |
| 156 profiled_thread_id_(ThreadId::Current()) {} |
| 157 |
| 158 pthread_t vm_tid() const { return vm_tid_; } |
| 159 ThreadId profiled_thread_id() { return profiled_thread_id_; } |
| 160 |
| 161 private: |
| 162 pthread_t vm_tid_; |
| 163 ThreadId profiled_thread_id_; |
| 164 }; |
| 165 |
| 166 |
| 167 static void ProfilerSignalHandler(int signal, siginfo_t* info, void* context) { |
| 168 #if defined(__native_client__) |
| 169 // As Native Client does not support signal handling, profiling |
| 170 // is disabled. |
| 171 return; |
| 172 #else |
| 173 USE(info); |
| 174 if (signal != SIGPROF) return; |
| 175 Isolate* isolate = Isolate::UncheckedCurrent(); |
| 176 if (isolate == NULL || !isolate->IsInitialized() || !isolate->IsInUse()) { |
| 177 // We require a fully initialized and entered isolate. |
| 178 return; |
| 179 } |
| 180 if (v8::Locker::IsActive() && |
| 181 !isolate->thread_manager()->IsLockedByCurrentThread()) { |
| 182 return; |
| 183 } |
| 184 |
| 185 Sampler* sampler = isolate->logger()->sampler(); |
| 186 if (sampler == NULL || !sampler->IsActive()) return; |
| 187 |
| 188 #if defined(USE_SIMULATOR) |
| 189 #if V8_TARGET_ARCH_ARM || V8_TARGET_ARCH_MIPS |
| 190 ThreadId thread_id = sampler->platform_data()->profiled_thread_id(); |
| 191 Isolate::PerIsolateThreadData* per_thread_data = isolate-> |
| 192 FindPerThreadDataForThread(thread_id); |
| 193 if (!per_thread_data) return; |
| 194 Simulator* sim = per_thread_data->simulator(); |
| 195 // Check if there is active simulator before allocating TickSample. |
| 196 if (!sim) return; |
| 197 #endif |
| 198 #endif // USE_SIMULATOR |
| 199 |
| 200 TickSample sample_obj; |
| 201 TickSample* sample = isolate->cpu_profiler()->TickSampleEvent(); |
| 202 if (sample == NULL) sample = &sample_obj; |
| 203 |
| 204 #if defined(USE_SIMULATOR) |
| 205 #if V8_TARGET_ARCH_ARM |
| 206 sample->pc = reinterpret_cast<Address>(sim->get_register(Simulator::pc)); |
| 207 sample->sp = reinterpret_cast<Address>(sim->get_register(Simulator::sp)); |
| 208 sample->fp = reinterpret_cast<Address>(sim->get_register(Simulator::r11)); |
| 209 #elif V8_TARGET_ARCH_MIPS |
| 210 sample->pc = reinterpret_cast<Address>(sim->get_register(Simulator::pc)); |
| 211 sample->sp = reinterpret_cast<Address>(sim->get_register(Simulator::sp)); |
| 212 sample->fp = reinterpret_cast<Address>(sim->get_register(Simulator::fp)); |
| 213 #endif // V8_TARGET_ARCH_* |
| 214 #else |
| 215 // Extracting the sample from the context is extremely machine dependent. |
| 216 ucontext_t* ucontext = reinterpret_cast<ucontext_t*>(context); |
| 217 mcontext_t& mcontext = ucontext->uc_mcontext; |
| 218 sample->state = isolate->current_vm_state(); |
| 219 #if defined(__linux__) |
| 220 #if V8_HOST_ARCH_IA32 |
| 221 sample->pc = reinterpret_cast<Address>(mcontext.gregs[REG_EIP]); |
| 222 sample->sp = reinterpret_cast<Address>(mcontext.gregs[REG_ESP]); |
| 223 sample->fp = reinterpret_cast<Address>(mcontext.gregs[REG_EBP]); |
| 224 #elif V8_HOST_ARCH_X64 |
| 225 sample->pc = reinterpret_cast<Address>(mcontext.gregs[REG_RIP]); |
| 226 sample->sp = reinterpret_cast<Address>(mcontext.gregs[REG_RSP]); |
| 227 sample->fp = reinterpret_cast<Address>(mcontext.gregs[REG_RBP]); |
| 228 #elif V8_HOST_ARCH_ARM |
| 229 #if defined(__GLIBC__) && !defined(__UCLIBC__) && \ |
| 230 (__GLIBC__ < 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ <= 3)) |
| 231 // Old GLibc ARM versions used a gregs[] array to access the register |
| 232 // values from mcontext_t. |
| 233 sample->pc = reinterpret_cast<Address>(mcontext.gregs[R15]); |
| 234 sample->sp = reinterpret_cast<Address>(mcontext.gregs[R13]); |
| 235 sample->fp = reinterpret_cast<Address>(mcontext.gregs[R11]); |
| 236 #else |
| 237 sample->pc = reinterpret_cast<Address>(mcontext.arm_pc); |
| 238 sample->sp = reinterpret_cast<Address>(mcontext.arm_sp); |
| 239 sample->fp = reinterpret_cast<Address>(mcontext.arm_fp); |
| 240 #endif // defined(__GLIBC__) && !defined(__UCLIBC__) && |
| 241 // (__GLIBC__ < 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ <= 3)) |
| 242 #elif V8_HOST_ARCH_MIPS |
| 243 sample->pc = reinterpret_cast<Address>(mcontext.pc); |
| 244 sample->sp = reinterpret_cast<Address>(mcontext.gregs[29]); |
| 245 sample->fp = reinterpret_cast<Address>(mcontext.gregs[30]); |
| 246 #endif // V8_HOST_ARCH_* |
| 247 #elif defined(__FreeBSD__) |
| 248 #if V8_HOST_ARCH_IA32 |
| 249 sample->pc = reinterpret_cast<Address>(mcontext.mc_eip); |
| 250 sample->sp = reinterpret_cast<Address>(mcontext.mc_esp); |
| 251 sample->fp = reinterpret_cast<Address>(mcontext.mc_ebp); |
| 252 #elif V8_HOST_ARCH_X64 |
| 253 sample->pc = reinterpret_cast<Address>(mcontext.mc_rip); |
| 254 sample->sp = reinterpret_cast<Address>(mcontext.mc_rsp); |
| 255 sample->fp = reinterpret_cast<Address>(mcontext.mc_rbp); |
| 256 #elif V8_HOST_ARCH_ARM |
| 257 sample->pc = reinterpret_cast<Address>(mcontext.mc_r15); |
| 258 sample->sp = reinterpret_cast<Address>(mcontext.mc_r13); |
| 259 sample->fp = reinterpret_cast<Address>(mcontext.mc_r11); |
| 260 #endif // V8_HOST_ARCH_* |
| 261 #elif defined(__NetBSD__) |
| 262 #if V8_HOST_ARCH_IA32 |
| 263 sample->pc = reinterpret_cast<Address>(mcontext.__gregs[_REG_EIP]); |
| 264 sample->sp = reinterpret_cast<Address>(mcontext.__gregs[_REG_ESP]); |
| 265 sample->fp = reinterpret_cast<Address>(mcontext.__gregs[_REG_EBP]); |
| 266 #elif V8_HOST_ARCH_X64 |
| 267 sample->pc = reinterpret_cast<Address>(mcontext.__gregs[_REG_RIP]); |
| 268 sample->sp = reinterpret_cast<Address>(mcontext.__gregs[_REG_RSP]); |
| 269 sample->fp = reinterpret_cast<Address>(mcontext.__gregs[_REG_RBP]); |
| 270 #endif // V8_HOST_ARCH_* |
| 271 #elif defined(__OpenBSD__) |
| 272 USE(mcontext); |
| 273 #if V8_HOST_ARCH_IA32 |
| 274 sample->pc = reinterpret_cast<Address>(ucontext->sc_eip); |
| 275 sample->sp = reinterpret_cast<Address>(ucontext->sc_esp); |
| 276 sample->fp = reinterpret_cast<Address>(ucontext->sc_ebp); |
| 277 #elif V8_HOST_ARCH_X64 |
| 278 sample->pc = reinterpret_cast<Address>(ucontext->sc_rip); |
| 279 sample->sp = reinterpret_cast<Address>(ucontext->sc_rsp); |
| 280 sample->fp = reinterpret_cast<Address>(ucontext->sc_rbp); |
| 281 #endif // V8_HOST_ARCH_* |
| 282 #elif defined(__sun) |
| 283 sample->pc = reinterpret_cast<Address>(mcontext.gregs[REG_PC]); |
| 284 sample->sp = reinterpret_cast<Address>(mcontext.gregs[REG_SP]); |
| 285 sample->fp = reinterpret_cast<Address>(mcontext.gregs[REG_FP]); |
| 286 #endif // __sun |
| 287 #endif // USE_SIMULATOR |
| 288 |
| 289 sampler->SampleStack(sample); |
| 290 sampler->Tick(sample); |
| 291 #endif // __native_client__ |
| 292 } |
| 293 |
| 294 |
| 295 class SignalSender : public Thread { |
| 296 public: |
| 297 static const int kSignalSenderStackSize = 64 * KB; |
| 298 |
| 299 explicit SignalSender(int interval) |
| 300 : Thread(Thread::Options("SignalSender", kSignalSenderStackSize)), |
| 301 vm_tgid_(getpid()), |
| 302 interval_(interval) {} |
| 303 |
| 304 static void SetUp() { if (!mutex_) mutex_ = OS::CreateMutex(); } |
| 305 static void TearDown() { delete mutex_; } |
| 306 |
| 307 static void InstallSignalHandler() { |
| 308 struct sigaction sa; |
| 309 sa.sa_sigaction = ProfilerSignalHandler; |
| 310 sigemptyset(&sa.sa_mask); |
| 311 sa.sa_flags = SA_RESTART | SA_SIGINFO; |
| 312 signal_handler_installed_ = |
| 313 (sigaction(SIGPROF, &sa, &old_signal_handler_) == 0); |
| 314 } |
| 315 |
| 316 static void RestoreSignalHandler() { |
| 317 if (signal_handler_installed_) { |
| 318 sigaction(SIGPROF, &old_signal_handler_, 0); |
| 319 signal_handler_installed_ = false; |
| 320 } |
| 321 } |
| 322 |
| 323 static void AddActiveSampler(Sampler* sampler) { |
| 324 ScopedLock lock(mutex_); |
| 325 SamplerRegistry::AddActiveSampler(sampler); |
| 326 if (instance_ == NULL) { |
| 327 // Start a thread that will send SIGPROF signal to VM threads, |
| 328 // when CPU profiling will be enabled. |
| 329 instance_ = new SignalSender(sampler->interval()); |
| 330 instance_->StartSynchronously(); |
| 331 } else { |
| 332 ASSERT(instance_->interval_ == sampler->interval()); |
| 333 } |
| 334 } |
| 335 |
| 336 static void RemoveActiveSampler(Sampler* sampler) { |
| 337 ScopedLock lock(mutex_); |
| 338 SamplerRegistry::RemoveActiveSampler(sampler); |
| 339 if (SamplerRegistry::GetState() == SamplerRegistry::HAS_NO_SAMPLERS) { |
| 340 instance_->Join(); |
| 341 delete instance_; |
| 342 instance_ = NULL; |
| 343 RestoreSignalHandler(); |
| 344 } |
| 345 } |
| 346 |
| 347 // Implement Thread::Run(). |
| 348 virtual void Run() { |
| 349 SamplerRegistry::State state; |
| 350 while ((state = SamplerRegistry::GetState()) != |
| 351 SamplerRegistry::HAS_NO_SAMPLERS) { |
| 352 // When CPU profiling is enabled both JavaScript and C++ code is |
| 353 // profiled. We must not suspend. |
| 354 if (state == SamplerRegistry::HAS_CPU_PROFILING_SAMPLERS) { |
| 355 if (!signal_handler_installed_) InstallSignalHandler(); |
| 356 SamplerRegistry::IterateActiveSamplers(&DoCpuProfile, this); |
| 357 } else { |
| 358 if (signal_handler_installed_) RestoreSignalHandler(); |
| 359 } |
| 360 Sleep(); // TODO(svenpanne) Figure out if OS:Sleep(interval_) is enough. |
| 361 } |
| 362 } |
| 363 |
| 364 static void DoCpuProfile(Sampler* sampler, void* raw_sender) { |
| 365 if (!sampler->IsProfiling()) return; |
| 366 SignalSender* sender = reinterpret_cast<SignalSender*>(raw_sender); |
| 367 sender->SendProfilingSignal(sampler->platform_data()->vm_tid()); |
| 368 } |
| 369 |
| 370 void SendProfilingSignal(int tid) { |
| 371 if (!signal_handler_installed_) return; |
| 372 // Glibc doesn't provide a wrapper for tgkill(2). |
| 373 #if defined(ANDROID) |
| 374 syscall(__NR_tgkill, vm_tgid_, tid, SIGPROF); |
| 375 #elif defined(__FreeBSD__) || defined(__OpenBSD__) || defined(__NetBSD__) \ |
| 376 || defined(__sun) |
| 377 pthread_kill(tid, SIGPROF); |
| 378 #else |
| 379 int result = syscall(SYS_tgkill, vm_tgid_, tid, SIGPROF); |
| 380 USE(result); |
| 381 ASSERT(result == 0); |
| 382 #endif |
| 383 } |
| 384 |
| 385 void Sleep() { |
| 386 // Convert ms to us and subtract 100 us to compensate delays |
| 387 // occuring during signal delivery. |
| 388 useconds_t interval = interval_ * 1000 - 100; |
| 389 #if defined(ANDROID) |
| 390 usleep(interval); |
| 391 #else |
| 392 int result = usleep(interval); |
| 393 #ifdef DEBUG |
| 394 if (result != 0 && errno != EINTR) { |
| 395 fprintf(stderr, |
| 396 "SignalSender usleep error; interval = %u, errno = %d\n", |
| 397 interval, |
| 398 errno); |
| 399 ASSERT(result == 0 || errno == EINTR); |
| 400 } |
| 401 #endif // DEBUG |
| 402 USE(result); |
| 403 #endif // ANDROID |
| 404 } |
| 405 |
| 406 const int vm_tgid_; |
| 407 const int interval_; |
| 408 |
| 409 // Protects the process wide state below. |
| 410 static Mutex* mutex_; |
| 411 static SignalSender* instance_; |
| 412 static bool signal_handler_installed_; |
| 413 static struct sigaction old_signal_handler_; |
| 414 |
| 415 private: |
| 416 DISALLOW_COPY_AND_ASSIGN(SignalSender); |
| 417 }; |
| 418 |
| 419 |
| 420 Mutex* SignalSender::mutex_ = NULL; |
| 421 SignalSender* SignalSender::instance_ = NULL; |
| 422 struct sigaction SignalSender::old_signal_handler_; |
| 423 bool SignalSender::signal_handler_installed_ = false; |
| 424 |
| 425 |
| 426 void Sampler::SetUp() { |
| 427 SignalSender::SetUp(); |
| 428 } |
| 429 |
| 430 |
| 431 void Sampler::TearDown() { |
| 432 SignalSender::TearDown(); |
| 433 } |
| 434 |
| 435 |
| 436 Sampler::Sampler(Isolate* isolate, int interval) |
| 437 : isolate_(isolate), |
| 438 interval_(interval), |
| 439 profiling_(false), |
| 440 active_(false), |
| 441 samples_taken_(0) { |
| 442 data_ = new PlatformData; |
| 443 } |
| 444 |
| 445 |
| 446 Sampler::~Sampler() { |
| 447 ASSERT(!IsActive()); |
| 448 delete data_; |
| 449 } |
| 450 |
| 451 void Sampler::Start() { |
| 452 ASSERT(!IsActive()); |
| 453 SetActive(true); |
| 454 SignalSender::AddActiveSampler(this); |
| 455 } |
| 456 |
| 457 |
| 458 void Sampler::Stop() { |
| 459 ASSERT(IsActive()); |
| 460 SignalSender::RemoveActiveSampler(this); |
| 461 SetActive(false); |
| 462 } |
| 463 |
| 464 #else |
| 465 |
| 466 void Sampler::SetUp() { |
| 467 } |
| 468 |
| 469 |
| 470 void Sampler::TearDown() { |
| 471 } |
| 472 |
| 473 #endif // __linux__ || _*BSD__ || __sun |
| 474 |
| 475 void Sampler::SampleStack(TickSample* sample) { |
| 476 StackTracer::Trace(isolate_, sample); |
| 477 if (++samples_taken_ < 0) samples_taken_ = 0; |
| 478 } |
| 479 |
| 480 } } // namespace v8::internal |
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