| OLD | NEW |
| 1 // Copyright 2012 the V8 project authors. All rights reserved. | 1 // Copyright 2012 the V8 project authors. All rights reserved. |
| 2 // Redistribution and use in source and binary forms, with or without | 2 // Redistribution and use in source and binary forms, with or without |
| 3 // modification, are permitted provided that the following conditions are | 3 // modification, are permitted provided that the following conditions are |
| 4 // met: | 4 // met: |
| 5 // | 5 // |
| 6 // * Redistributions of source code must retain the above copyright | 6 // * Redistributions of source code must retain the above copyright |
| 7 // notice, this list of conditions and the following disclaimer. | 7 // notice, this list of conditions and the following disclaimer. |
| 8 // * Redistributions in binary form must reproduce the above | 8 // * Redistributions in binary form must reproduce the above |
| 9 // copyright notice, this list of conditions and the following | 9 // copyright notice, this list of conditions and the following |
| 10 // disclaimer in the documentation and/or other materials provided | 10 // disclaimer in the documentation and/or other materials provided |
| (...skipping 130 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 141 switch (feature) { | 141 switch (feature) { |
| 142 case VFP2: | 142 case VFP2: |
| 143 search_string = "vfp"; | 143 search_string = "vfp"; |
| 144 break; | 144 break; |
| 145 case VFP3: | 145 case VFP3: |
| 146 search_string = "vfpv3"; | 146 search_string = "vfpv3"; |
| 147 break; | 147 break; |
| 148 case ARMv7: | 148 case ARMv7: |
| 149 search_string = "ARMv7"; | 149 search_string = "ARMv7"; |
| 150 break; | 150 break; |
| 151 case SUDIV: |
| 152 search_string = "idiva"; |
| 153 break; |
| 151 default: | 154 default: |
| 152 UNREACHABLE(); | 155 UNREACHABLE(); |
| 153 } | 156 } |
| 154 | 157 |
| 155 if (CPUInfoContainsString(search_string)) { | 158 if (CPUInfoContainsString(search_string)) { |
| 156 return true; | 159 return true; |
| 157 } | 160 } |
| 158 | 161 |
| 159 if (feature == VFP3) { | 162 if (feature == VFP3) { |
| 160 // Some old kernels will report vfp not vfpv3. Here we make a last attempt | 163 // Some old kernels will report vfp not vfpv3. Here we make a last attempt |
| (...skipping 844 matching lines...) Expand 10 before | Expand all | Expand 10 after Loading... |
| 1005 return; | 1008 return; |
| 1006 } | 1009 } |
| 1007 if (v8::Locker::IsActive() && | 1010 if (v8::Locker::IsActive() && |
| 1008 !isolate->thread_manager()->IsLockedByCurrentThread()) { | 1011 !isolate->thread_manager()->IsLockedByCurrentThread()) { |
| 1009 return; | 1012 return; |
| 1010 } | 1013 } |
| 1011 | 1014 |
| 1012 Sampler* sampler = isolate->logger()->sampler(); | 1015 Sampler* sampler = isolate->logger()->sampler(); |
| 1013 if (sampler == NULL || !sampler->IsActive()) return; | 1016 if (sampler == NULL || !sampler->IsActive()) return; |
| 1014 | 1017 |
| 1015 TickSample sample_obj; | 1018 TickSample* sample = CpuProfiler::StartTickSampleEvent(isolate); |
| 1016 TickSample* sample = CpuProfiler::TickSampleEvent(isolate); | 1019 if (sample == NULL) return; |
| 1017 if (sample == NULL) sample = &sample_obj; | |
| 1018 | 1020 |
| 1019 // Extracting the sample from the context is extremely machine dependent. | 1021 // Extracting the sample from the context is extremely machine dependent. |
| 1020 ucontext_t* ucontext = reinterpret_cast<ucontext_t*>(context); | 1022 ucontext_t* ucontext = reinterpret_cast<ucontext_t*>(context); |
| 1021 mcontext_t& mcontext = ucontext->uc_mcontext; | 1023 mcontext_t& mcontext = ucontext->uc_mcontext; |
| 1022 sample->state = isolate->current_vm_state(); | 1024 sample->state = isolate->current_vm_state(); |
| 1023 #if V8_HOST_ARCH_IA32 | 1025 #if V8_HOST_ARCH_IA32 |
| 1024 sample->pc = reinterpret_cast<Address>(mcontext.gregs[REG_EIP]); | 1026 sample->pc = reinterpret_cast<Address>(mcontext.gregs[REG_EIP]); |
| 1025 sample->sp = reinterpret_cast<Address>(mcontext.gregs[REG_ESP]); | 1027 sample->sp = reinterpret_cast<Address>(mcontext.gregs[REG_ESP]); |
| 1026 sample->fp = reinterpret_cast<Address>(mcontext.gregs[REG_EBP]); | 1028 sample->fp = reinterpret_cast<Address>(mcontext.gregs[REG_EBP]); |
| 1027 #elif V8_HOST_ARCH_X64 | 1029 #elif V8_HOST_ARCH_X64 |
| (...skipping 14 matching lines...) Expand all Loading... |
| 1042 sample->fp = reinterpret_cast<Address>(mcontext.arm_fp); | 1044 sample->fp = reinterpret_cast<Address>(mcontext.arm_fp); |
| 1043 #endif // defined(__GLIBC__) && !defined(__UCLIBC__) && | 1045 #endif // defined(__GLIBC__) && !defined(__UCLIBC__) && |
| 1044 // (__GLIBC__ < 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ <= 3)) | 1046 // (__GLIBC__ < 2 || (__GLIBC__ == 2 && __GLIBC_MINOR__ <= 3)) |
| 1045 #elif V8_HOST_ARCH_MIPS | 1047 #elif V8_HOST_ARCH_MIPS |
| 1046 sample->pc = reinterpret_cast<Address>(mcontext.pc); | 1048 sample->pc = reinterpret_cast<Address>(mcontext.pc); |
| 1047 sample->sp = reinterpret_cast<Address>(mcontext.gregs[29]); | 1049 sample->sp = reinterpret_cast<Address>(mcontext.gregs[29]); |
| 1048 sample->fp = reinterpret_cast<Address>(mcontext.gregs[30]); | 1050 sample->fp = reinterpret_cast<Address>(mcontext.gregs[30]); |
| 1049 #endif // V8_HOST_ARCH_* | 1051 #endif // V8_HOST_ARCH_* |
| 1050 sampler->SampleStack(sample); | 1052 sampler->SampleStack(sample); |
| 1051 sampler->Tick(sample); | 1053 sampler->Tick(sample); |
| 1054 CpuProfiler::FinishTickSampleEvent(isolate); |
| 1052 } | 1055 } |
| 1053 | 1056 |
| 1054 | 1057 |
| 1058 class CpuProfilerSignalHandler { |
| 1059 public: |
| 1060 static void SetUp() { if (!mutex_) mutex_ = OS::CreateMutex(); } |
| 1061 static void TearDown() { delete mutex_; } |
| 1062 |
| 1063 static void InstallSignalHandler() { |
| 1064 struct sigaction sa; |
| 1065 ScopedLock lock(mutex_); |
| 1066 if (signal_handler_installed_counter_ > 0) { |
| 1067 signal_handler_installed_counter_++; |
| 1068 return; |
| 1069 } |
| 1070 sa.sa_sigaction = ProfilerSignalHandler; |
| 1071 sigemptyset(&sa.sa_mask); |
| 1072 sa.sa_flags = SA_RESTART | SA_SIGINFO; |
| 1073 if (sigaction(SIGPROF, &sa, &old_signal_handler_) == 0) { |
| 1074 signal_handler_installed_counter_++; |
| 1075 } |
| 1076 } |
| 1077 |
| 1078 static void RestoreSignalHandler() { |
| 1079 ScopedLock lock(mutex_); |
| 1080 if (signal_handler_installed_counter_ == 0) |
| 1081 return; |
| 1082 if (signal_handler_installed_counter_ == 1) { |
| 1083 sigaction(SIGPROF, &old_signal_handler_, 0); |
| 1084 } |
| 1085 signal_handler_installed_counter_--; |
| 1086 } |
| 1087 |
| 1088 static bool signal_handler_installed() { |
| 1089 return signal_handler_installed_counter_ > 0; |
| 1090 } |
| 1091 |
| 1092 private: |
| 1093 static int signal_handler_installed_counter_; |
| 1094 static struct sigaction old_signal_handler_; |
| 1095 static Mutex* mutex_; |
| 1096 }; |
| 1097 |
| 1098 |
| 1099 int CpuProfilerSignalHandler::signal_handler_installed_counter_ = 0; |
| 1100 struct sigaction CpuProfilerSignalHandler::old_signal_handler_; |
| 1101 Mutex* CpuProfilerSignalHandler::mutex_ = NULL; |
| 1102 |
| 1103 |
| 1055 class Sampler::PlatformData : public Malloced { | 1104 class Sampler::PlatformData : public Malloced { |
| 1056 public: | 1105 public: |
| 1057 PlatformData() : vm_tid_(GetThreadID()) {} | 1106 PlatformData() |
| 1107 : vm_tgid_(getpid()), |
| 1108 vm_tid_(GetThreadID()) {} |
| 1058 | 1109 |
| 1059 int vm_tid() const { return vm_tid_; } | 1110 void SendProfilingSignal() { |
| 1111 if (!CpuProfilerSignalHandler::signal_handler_installed()) return; |
| 1112 // Glibc doesn't provide a wrapper for tgkill(2). |
| 1113 #if defined(ANDROID) |
| 1114 syscall(__NR_tgkill, vm_tgid_, vm_tid_, SIGPROF); |
| 1115 #else |
| 1116 syscall(SYS_tgkill, vm_tgid_, vm_tid_, SIGPROF); |
| 1117 #endif |
| 1118 } |
| 1060 | 1119 |
| 1061 private: | 1120 private: |
| 1121 const int vm_tgid_; |
| 1062 const int vm_tid_; | 1122 const int vm_tid_; |
| 1063 }; | 1123 }; |
| 1064 | 1124 |
| 1065 | 1125 |
| 1066 class SignalSender : public Thread { | 1126 class SignalSender : public Thread { |
| 1067 public: | 1127 public: |
| 1068 enum SleepInterval { | 1128 enum SleepInterval { |
| 1069 HALF_INTERVAL, | 1129 HALF_INTERVAL, |
| 1070 FULL_INTERVAL | 1130 FULL_INTERVAL |
| 1071 }; | 1131 }; |
| 1072 | 1132 |
| 1073 static const int kSignalSenderStackSize = 64 * KB; | 1133 static const int kSignalSenderStackSize = 64 * KB; |
| 1074 | 1134 |
| 1075 explicit SignalSender(int interval) | 1135 explicit SignalSender(int interval) |
| 1076 : Thread(Thread::Options("SignalSender", kSignalSenderStackSize)), | 1136 : Thread(Thread::Options("SignalSender", kSignalSenderStackSize)), |
| 1077 vm_tgid_(getpid()), | |
| 1078 interval_(interval) {} | 1137 interval_(interval) {} |
| 1079 | 1138 |
| 1080 static void SetUp() { if (!mutex_) mutex_ = OS::CreateMutex(); } | 1139 static void SetUp() { if (!mutex_) mutex_ = OS::CreateMutex(); } |
| 1081 static void TearDown() { delete mutex_; } | 1140 static void TearDown() { delete mutex_; } |
| 1082 | 1141 |
| 1083 static void InstallSignalHandler() { | |
| 1084 struct sigaction sa; | |
| 1085 sa.sa_sigaction = ProfilerSignalHandler; | |
| 1086 sigemptyset(&sa.sa_mask); | |
| 1087 sa.sa_flags = SA_RESTART | SA_SIGINFO; | |
| 1088 signal_handler_installed_ = | |
| 1089 (sigaction(SIGPROF, &sa, &old_signal_handler_) == 0); | |
| 1090 } | |
| 1091 | |
| 1092 static void RestoreSignalHandler() { | |
| 1093 if (signal_handler_installed_) { | |
| 1094 sigaction(SIGPROF, &old_signal_handler_, 0); | |
| 1095 signal_handler_installed_ = false; | |
| 1096 } | |
| 1097 } | |
| 1098 | |
| 1099 static void AddActiveSampler(Sampler* sampler) { | 1142 static void AddActiveSampler(Sampler* sampler) { |
| 1100 ScopedLock lock(mutex_); | 1143 ScopedLock lock(mutex_); |
| 1101 SamplerRegistry::AddActiveSampler(sampler); | 1144 SamplerRegistry::AddActiveSampler(sampler); |
| 1102 if (instance_ == NULL) { | 1145 if (instance_ == NULL) { |
| 1103 // Start a thread that will send SIGPROF signal to VM threads, | 1146 // Start a thread that will send SIGPROF signal to VM threads, |
| 1104 // when CPU profiling will be enabled. | 1147 // when CPU profiling will be enabled. |
| 1105 instance_ = new SignalSender(sampler->interval()); | 1148 instance_ = new SignalSender(sampler->interval()); |
| 1106 instance_->Start(); | 1149 instance_->Start(); |
| 1107 } else { | 1150 } else { |
| 1108 ASSERT(instance_->interval_ == sampler->interval()); | 1151 ASSERT(instance_->interval_ == sampler->interval()); |
| 1109 } | 1152 } |
| 1110 } | 1153 } |
| 1111 | 1154 |
| 1112 static void RemoveActiveSampler(Sampler* sampler) { | 1155 static void RemoveActiveSampler(Sampler* sampler) { |
| 1113 ScopedLock lock(mutex_); | 1156 ScopedLock lock(mutex_); |
| 1114 SamplerRegistry::RemoveActiveSampler(sampler); | 1157 SamplerRegistry::RemoveActiveSampler(sampler); |
| 1115 if (SamplerRegistry::GetState() == SamplerRegistry::HAS_NO_SAMPLERS) { | 1158 if (SamplerRegistry::GetState() == SamplerRegistry::HAS_NO_SAMPLERS) { |
| 1116 RuntimeProfiler::StopRuntimeProfilerThreadBeforeShutdown(instance_); | 1159 RuntimeProfiler::StopRuntimeProfilerThreadBeforeShutdown(instance_); |
| 1117 delete instance_; | 1160 delete instance_; |
| 1118 instance_ = NULL; | 1161 instance_ = NULL; |
| 1119 RestoreSignalHandler(); | |
| 1120 } | 1162 } |
| 1121 } | 1163 } |
| 1122 | 1164 |
| 1123 // Implement Thread::Run(). | 1165 // Implement Thread::Run(). |
| 1124 virtual void Run() { | 1166 virtual void Run() { |
| 1125 SamplerRegistry::State state; | 1167 SamplerRegistry::State state; |
| 1126 while ((state = SamplerRegistry::GetState()) != | 1168 while ((state = SamplerRegistry::GetState()) != |
| 1127 SamplerRegistry::HAS_NO_SAMPLERS) { | 1169 SamplerRegistry::HAS_NO_SAMPLERS) { |
| 1128 bool cpu_profiling_enabled = | 1170 if (rate_limiter_.SuspendIfNecessary()) continue; |
| 1129 (state == SamplerRegistry::HAS_CPU_PROFILING_SAMPLERS); | 1171 if (RuntimeProfiler::IsEnabled()) { |
| 1130 bool runtime_profiler_enabled = RuntimeProfiler::IsEnabled(); | |
| 1131 if (cpu_profiling_enabled && !signal_handler_installed_) { | |
| 1132 InstallSignalHandler(); | |
| 1133 } else if (!cpu_profiling_enabled && signal_handler_installed_) { | |
| 1134 RestoreSignalHandler(); | |
| 1135 } | |
| 1136 // When CPU profiling is enabled both JavaScript and C++ code is | |
| 1137 // profiled. We must not suspend. | |
| 1138 if (!cpu_profiling_enabled) { | |
| 1139 if (rate_limiter_.SuspendIfNecessary()) continue; | |
| 1140 } | |
| 1141 if (cpu_profiling_enabled && runtime_profiler_enabled) { | |
| 1142 if (!SamplerRegistry::IterateActiveSamplers(&DoCpuProfile, this)) { | |
| 1143 return; | |
| 1144 } | |
| 1145 Sleep(HALF_INTERVAL); | |
| 1146 if (!SamplerRegistry::IterateActiveSamplers(&DoRuntimeProfile, NULL)) { | 1172 if (!SamplerRegistry::IterateActiveSamplers(&DoRuntimeProfile, NULL)) { |
| 1147 return; | 1173 return; |
| 1148 } | 1174 } |
| 1149 Sleep(HALF_INTERVAL); | |
| 1150 } else { | |
| 1151 if (cpu_profiling_enabled) { | |
| 1152 if (!SamplerRegistry::IterateActiveSamplers(&DoCpuProfile, | |
| 1153 this)) { | |
| 1154 return; | |
| 1155 } | |
| 1156 } | |
| 1157 if (runtime_profiler_enabled) { | |
| 1158 if (!SamplerRegistry::IterateActiveSamplers(&DoRuntimeProfile, | |
| 1159 NULL)) { | |
| 1160 return; | |
| 1161 } | |
| 1162 } | |
| 1163 Sleep(FULL_INTERVAL); | |
| 1164 } | 1175 } |
| 1176 Sleep(FULL_INTERVAL); |
| 1165 } | 1177 } |
| 1166 } | 1178 } |
| 1167 | 1179 |
| 1168 static void DoCpuProfile(Sampler* sampler, void* raw_sender) { | |
| 1169 if (!sampler->IsProfiling()) return; | |
| 1170 SignalSender* sender = reinterpret_cast<SignalSender*>(raw_sender); | |
| 1171 sender->SendProfilingSignal(sampler->platform_data()->vm_tid()); | |
| 1172 } | |
| 1173 | |
| 1174 static void DoRuntimeProfile(Sampler* sampler, void* ignored) { | 1180 static void DoRuntimeProfile(Sampler* sampler, void* ignored) { |
| 1175 if (!sampler->isolate()->IsInitialized()) return; | 1181 if (!sampler->isolate()->IsInitialized()) return; |
| 1176 sampler->isolate()->runtime_profiler()->NotifyTick(); | 1182 sampler->isolate()->runtime_profiler()->NotifyTick(); |
| 1177 } | 1183 } |
| 1178 | 1184 |
| 1179 void SendProfilingSignal(int tid) { | |
| 1180 if (!signal_handler_installed_) return; | |
| 1181 // Glibc doesn't provide a wrapper for tgkill(2). | |
| 1182 #if defined(ANDROID) | |
| 1183 syscall(__NR_tgkill, vm_tgid_, tid, SIGPROF); | |
| 1184 #else | |
| 1185 syscall(SYS_tgkill, vm_tgid_, tid, SIGPROF); | |
| 1186 #endif | |
| 1187 } | |
| 1188 | |
| 1189 void Sleep(SleepInterval full_or_half) { | 1185 void Sleep(SleepInterval full_or_half) { |
| 1190 // Convert ms to us and subtract 100 us to compensate delays | 1186 // Convert ms to us and subtract 100 us to compensate delays |
| 1191 // occuring during signal delivery. | 1187 // occuring during signal delivery. |
| 1192 useconds_t interval = interval_ * 1000 - 100; | 1188 useconds_t interval = interval_ * 1000 - 100; |
| 1193 if (full_or_half == HALF_INTERVAL) interval /= 2; | 1189 if (full_or_half == HALF_INTERVAL) interval /= 2; |
| 1194 #if defined(ANDROID) | 1190 #if defined(ANDROID) |
| 1195 usleep(interval); | 1191 usleep(interval); |
| 1196 #else | 1192 #else |
| 1197 int result = usleep(interval); | 1193 int result = usleep(interval); |
| 1198 #ifdef DEBUG | 1194 #ifdef DEBUG |
| 1199 if (result != 0 && errno != EINTR) { | 1195 if (result != 0 && errno != EINTR) { |
| 1200 fprintf(stderr, | 1196 fprintf(stderr, |
| 1201 "SignalSender usleep error; interval = %u, errno = %d\n", | 1197 "SignalSender usleep error; interval = %u, errno = %d\n", |
| 1202 interval, | 1198 interval, |
| 1203 errno); | 1199 errno); |
| 1204 ASSERT(result == 0 || errno == EINTR); | 1200 ASSERT(result == 0 || errno == EINTR); |
| 1205 } | 1201 } |
| 1206 #endif // DEBUG | 1202 #endif // DEBUG |
| 1207 USE(result); | 1203 USE(result); |
| 1208 #endif // ANDROID | 1204 #endif // ANDROID |
| 1209 } | 1205 } |
| 1210 | 1206 |
| 1211 const int vm_tgid_; | |
| 1212 const int interval_; | 1207 const int interval_; |
| 1213 RuntimeProfilerRateLimiter rate_limiter_; | 1208 RuntimeProfilerRateLimiter rate_limiter_; |
| 1214 | 1209 |
| 1215 // Protects the process wide state below. | 1210 // Protects the process wide state below. |
| 1216 static Mutex* mutex_; | 1211 static Mutex* mutex_; |
| 1217 static SignalSender* instance_; | 1212 static SignalSender* instance_; |
| 1218 static bool signal_handler_installed_; | |
| 1219 static struct sigaction old_signal_handler_; | |
| 1220 | 1213 |
| 1221 private: | 1214 private: |
| 1222 DISALLOW_COPY_AND_ASSIGN(SignalSender); | 1215 DISALLOW_COPY_AND_ASSIGN(SignalSender); |
| 1223 }; | 1216 }; |
| 1224 | 1217 |
| 1225 | 1218 |
| 1226 Mutex* SignalSender::mutex_ = NULL; | 1219 Mutex* SignalSender::mutex_ = NULL; |
| 1227 SignalSender* SignalSender::instance_ = NULL; | 1220 SignalSender* SignalSender::instance_ = NULL; |
| 1228 struct sigaction SignalSender::old_signal_handler_; | |
| 1229 bool SignalSender::signal_handler_installed_ = false; | |
| 1230 | 1221 |
| 1231 | 1222 |
| 1232 void OS::SetUp() { | 1223 void OS::SetUp() { |
| 1233 // Seed the random number generator. We preserve microsecond resolution. | 1224 // Seed the random number generator. We preserve microsecond resolution. |
| 1234 uint64_t seed = Ticks() ^ (getpid() << 16); | 1225 uint64_t seed = Ticks() ^ (getpid() << 16); |
| 1235 srandom(static_cast<unsigned int>(seed)); | 1226 srandom(static_cast<unsigned int>(seed)); |
| 1236 limit_mutex = CreateMutex(); | 1227 limit_mutex = CreateMutex(); |
| 1237 | 1228 |
| 1238 #ifdef __arm__ | 1229 #ifdef __arm__ |
| 1239 // When running on ARM hardware check that the EABI used by V8 and | 1230 // When running on ARM hardware check that the EABI used by V8 and |
| 1240 // by the C code is the same. | 1231 // by the C code is the same. |
| 1241 bool hard_float = OS::ArmUsingHardFloat(); | 1232 bool hard_float = OS::ArmUsingHardFloat(); |
| 1242 if (hard_float) { | 1233 if (hard_float) { |
| 1243 #if !USE_EABI_HARDFLOAT | 1234 #if !USE_EABI_HARDFLOAT |
| 1244 PrintF("ERROR: Binary compiled with -mfloat-abi=hard but without " | 1235 PrintF("ERROR: Binary compiled with -mfloat-abi=hard but without " |
| 1245 "-DUSE_EABI_HARDFLOAT\n"); | 1236 "-DUSE_EABI_HARDFLOAT\n"); |
| 1246 exit(1); | 1237 exit(1); |
| 1247 #endif | 1238 #endif |
| 1248 } else { | 1239 } else { |
| 1249 #if USE_EABI_HARDFLOAT | 1240 #if USE_EABI_HARDFLOAT |
| 1250 PrintF("ERROR: Binary not compiled with -mfloat-abi=hard but with " | 1241 PrintF("ERROR: Binary not compiled with -mfloat-abi=hard but with " |
| 1251 "-DUSE_EABI_HARDFLOAT\n"); | 1242 "-DUSE_EABI_HARDFLOAT\n"); |
| 1252 exit(1); | 1243 exit(1); |
| 1253 #endif | 1244 #endif |
| 1254 } | 1245 } |
| 1255 #endif | 1246 #endif |
| 1256 SignalSender::SetUp(); | 1247 SignalSender::SetUp(); |
| 1248 CpuProfilerSignalHandler::SetUp(); |
| 1257 } | 1249 } |
| 1258 | 1250 |
| 1259 | 1251 |
| 1260 void OS::TearDown() { | 1252 void OS::TearDown() { |
| 1261 SignalSender::TearDown(); | 1253 SignalSender::TearDown(); |
| 1254 CpuProfilerSignalHandler::TearDown(); |
| 1262 delete limit_mutex; | 1255 delete limit_mutex; |
| 1263 } | 1256 } |
| 1264 | 1257 |
| 1265 | 1258 |
| 1266 Sampler::Sampler(Isolate* isolate, int interval) | 1259 Sampler::Sampler(Isolate* isolate, int interval) |
| 1267 : isolate_(isolate), | 1260 : isolate_(isolate), |
| 1268 interval_(interval), | 1261 interval_(interval), |
| 1269 profiling_(false), | 1262 profiling_(false), |
| 1270 active_(false), | 1263 active_(false), |
| 1271 samples_taken_(0) { | 1264 samples_taken_(0) { |
| 1272 data_ = new PlatformData; | 1265 data_ = new PlatformData; |
| 1273 } | 1266 } |
| 1274 | 1267 |
| 1275 | 1268 |
| 1276 Sampler::~Sampler() { | 1269 Sampler::~Sampler() { |
| 1277 ASSERT(!IsActive()); | 1270 ASSERT(!IsActive()); |
| 1278 delete data_; | 1271 delete data_; |
| 1279 } | 1272 } |
| 1280 | 1273 |
| 1281 | 1274 |
| 1275 void Sampler::DoSample() { |
| 1276 platform_data()->SendProfilingSignal(); |
| 1277 } |
| 1278 |
| 1279 |
| 1282 void Sampler::Start() { | 1280 void Sampler::Start() { |
| 1283 ASSERT(!IsActive()); | 1281 ASSERT(!IsActive()); |
| 1282 CpuProfilerSignalHandler::InstallSignalHandler(); |
| 1284 SetActive(true); | 1283 SetActive(true); |
| 1285 SignalSender::AddActiveSampler(this); | 1284 SignalSender::AddActiveSampler(this); |
| 1286 } | 1285 } |
| 1287 | 1286 |
| 1288 | 1287 |
| 1289 void Sampler::Stop() { | 1288 void Sampler::Stop() { |
| 1290 ASSERT(IsActive()); | 1289 ASSERT(IsActive()); |
| 1290 CpuProfilerSignalHandler::RestoreSignalHandler(); |
| 1291 SignalSender::RemoveActiveSampler(this); | 1291 SignalSender::RemoveActiveSampler(this); |
| 1292 SetActive(false); | 1292 SetActive(false); |
| 1293 } | 1293 } |
| 1294 | 1294 |
| 1295 | 1295 |
| 1296 } } // namespace v8::internal | 1296 } } // namespace v8::internal |
| OLD | NEW |