1 /* 2 * Copyright 2016 The Android Open Source Project 3 * 4 * Licensed under the Apache License, Version 2.0 (the "License"); 5 * you may not use this file except in compliance with the License. 6 * You may obtain a copy of the License at 7 * 8 * http://www.apache.org/licenses/LICENSE-2.0 9 * 10 * Unless required by applicable law or agreed to in writing, software 11 * distributed under the License is distributed on an "AS IS" BASIS, 12 * WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied. 13 * See the License for the specific language governing permissions and 14 * limitations under the License. 15 */ 16 17 #include "jit_logger.h" 18 19 #include "arch/instruction_set.h" 20 #include "art_method-inl.h" 21 #include "base/time_utils.h" 22 #include "base/unix_file/fd_file.h" 23 #include "driver/compiler_driver.h" 24 #include "jit/jit.h" 25 #include "jit/jit_code_cache.h" 26 #include "oat_file-inl.h" 27 28 namespace art { 29 namespace jit { 30 31 #ifdef ART_TARGET_ANDROID 32 static const char* kLogPrefix = "/data/misc/trace"; 33 #else 34 static const char* kLogPrefix = "/tmp"; 35 #endif 36 37 // File format of perf-PID.map: 38 // +---------------------+ 39 // |ADDR SIZE symbolname1| 40 // |ADDR SIZE symbolname2| 41 // |... | 42 // +---------------------+ 43 void JitLogger::OpenPerfMapLog() { 44 std::string pid_str = std::to_string(getpid()); 45 std::string perf_filename = std::string(kLogPrefix) + "/perf-" + pid_str + ".map"; 46 perf_file_.reset(OS::CreateEmptyFileWriteOnly(perf_filename.c_str())); 47 if (perf_file_ == nullptr) { 48 LOG(ERROR) << "Could not create perf file at " << perf_filename << 49 " Are you on a user build? Perf only works on userdebug/eng builds"; 50 } 51 } 52 53 void JitLogger::WritePerfMapLog(const void* ptr, size_t code_size, ArtMethod* method) { 54 if (perf_file_ != nullptr) { 55 std::string method_name = method->PrettyMethod(); 56 57 std::ostringstream stream; 58 stream << std::hex 59 << reinterpret_cast<uintptr_t>(ptr) 60 << " " 61 << code_size 62 << " " 63 << method_name 64 << std::endl; 65 std::string str = stream.str(); 66 bool res = perf_file_->WriteFully(str.c_str(), str.size()); 67 if (!res) { 68 LOG(WARNING) << "Failed to write jitted method info in log: write failure."; 69 } 70 } else { 71 LOG(WARNING) << "Failed to write jitted method info in log: log file doesn't exist."; 72 } 73 } 74 75 void JitLogger::ClosePerfMapLog() { 76 if (perf_file_ != nullptr) { 77 UNUSED(perf_file_->Flush()); 78 UNUSED(perf_file_->Close()); 79 } 80 } 81 82 // File format of jit-PID.jump: 83 // 84 // +--------------------------------+ 85 // | PerfJitHeader | 86 // +--------------------------------+ 87 // | PerfJitCodeLoad { | . 88 // | struct PerfJitBase; | . 89 // | uint32_t process_id_; | . 90 // | uint32_t thread_id_; | . 91 // | uint64_t vma_; | . 92 // | uint64_t code_address_; | . 93 // | uint64_t code_size_; | . 94 // | uint64_t code_id_; | . 95 // | } | . 96 // +- -+ . 97 // | method_name'\0' | +--> one jitted method 98 // +- -+ . 99 // | jitted code binary | . 100 // | ... | . 101 // +--------------------------------+ . 102 // | PerfJitCodeDebugInfo { | . 103 // | struct PerfJitBase; | . 104 // | uint64_t address_; | . 105 // | uint64_t entry_count_; | . 106 // | struct PerfJitDebugEntry; | . 107 // | } | . 108 // +--------------------------------+ 109 // | PerfJitCodeLoad | 110 // ... 111 // 112 struct PerfJitHeader { 113 uint32_t magic_; // Characters "JiTD" 114 uint32_t version_; // Header version 115 uint32_t size_; // Total size of header 116 uint32_t elf_mach_target_; // Elf mach target 117 uint32_t reserved_; // Reserved, currently not used 118 uint32_t process_id_; // Process ID of the JIT compiler 119 uint64_t time_stamp_; // Timestamp when the header is generated 120 uint64_t flags_; // Currently the flags are only used for choosing clock for timestamp, 121 // we set it to 0 to tell perf that we use CLOCK_MONOTONIC clock. 122 static const uint32_t kMagic = 0x4A695444; // "JiTD" 123 static const uint32_t kVersion = 1; 124 }; 125 126 // Each record starts with such basic information: event type, total size, and timestamp. 127 struct PerfJitBase { 128 enum PerfJitEvent { 129 // A jitted code load event. 130 // In ART JIT, it is used to log a new method is jit compiled and committed to jit-code-cache. 131 // Note that such kLoad event supports code cache GC in ART JIT. 132 // For every kLoad event recorded in jit-PID.dump and every perf sample recorded in perf.data, 133 // each event/sample has time stamp. In case code cache GC happens in ART JIT, and a new 134 // jitted method is committed to the same address of a previously deleted method, 135 // the time stamp information can help profiler to tell whether this sample belongs to the 136 // era of the first jitted method, or does it belong to the period of the second jitted method. 137 // JitCodeCache doesn't have to record any event on 'code delete'. 138 kLoad = 0, 139 140 // A jitted code move event, i,e. a jitted code moved from one address to another address. 141 // It helps profiler to map samples to the right symbol even when the code is moved. 142 // In ART JIT, this event can help log such behavior: 143 // A jitted method is recorded in previous kLoad event, but due to some reason, 144 // it is moved to another address in jit-code-cache. 145 kMove = 1, 146 147 // Logs debug line/column information. 148 kDebugInfo = 2, 149 150 // Logs JIT VM end of life event. 151 kClose = 3 152 }; 153 uint32_t event_; // Must be one of the events defined in PerfJitEvent. 154 uint32_t size_; // Total size of this event record. 155 // For example, for kLoad event, size of the event record is: 156 // sizeof(PerfJitCodeLoad) + method_name.size() + compiled code size. 157 uint64_t time_stamp_; // Timestamp for the event. 158 }; 159 160 // Logs a jitted code load event (kLoad). 161 // In ART JIT, it is used to log a new method is jit compiled and commited to jit-code-cache. 162 struct PerfJitCodeLoad : PerfJitBase { 163 uint32_t process_id_; // Process ID who performs the jit code load. 164 // In ART JIT, it is the pid of the JIT compiler. 165 uint32_t thread_id_; // Thread ID who performs the jit code load. 166 // In ART JIT, it is the tid of the JIT compiler. 167 uint64_t vma_; // Address of the code section. In ART JIT, because code_address_ 168 // uses absolute address, this field is 0. 169 uint64_t code_address_; // Address where is jitted code is loaded. 170 uint64_t code_size_; // Size of the jitted code. 171 uint64_t code_id_; // Unique ID for each jitted code. 172 }; 173 174 // This structure is for source line/column mapping. 175 // Currently this feature is not implemented in ART JIT yet. 176 struct PerfJitDebugEntry { 177 uint64_t address_; // Code address which maps to the line/column in source. 178 uint32_t line_number_; // Source line number starting at 1. 179 uint32_t column_; // Column discriminator, default 0. 180 const char name_[0]; // Followed by null-terminated name or \0xff\0 if same as previous. 181 }; 182 183 // Logs debug line information (kDebugInfo). 184 // This structure is for source line/column mapping. 185 // Currently this feature is not implemented in ART JIT yet. 186 struct PerfJitCodeDebugInfo : PerfJitBase { 187 uint64_t address_; // Starting code address which the debug info describes. 188 uint64_t entry_count_; // How many instances of PerfJitDebugEntry. 189 PerfJitDebugEntry entries_[0]; // Followed by entry_count_ instances of PerfJitDebugEntry. 190 }; 191 192 static uint32_t GetElfMach() { 193 #if defined(__arm__) 194 static const uint32_t kElfMachARM = 0x28; 195 return kElfMachARM; 196 #elif defined(__aarch64__) 197 static const uint32_t kElfMachARM64 = 0xB7; 198 return kElfMachARM64; 199 #elif defined(__i386__) 200 static const uint32_t kElfMachIA32 = 0x3; 201 return kElfMachIA32; 202 #elif defined(__x86_64__) 203 static const uint32_t kElfMachX64 = 0x3E; 204 return kElfMachX64; 205 #else 206 UNIMPLEMENTED(WARNING) << "Unsupported architecture in JitLogger"; 207 return 0; 208 #endif 209 } 210 211 void JitLogger::OpenMarkerFile() { 212 int fd = jit_dump_file_->Fd(); 213 // The 'perf inject' tool requires that the jit-PID.dump file 214 // must have a mmap(PROT_READ|PROT_EXEC) record in perf.data. 215 marker_address_ = mmap(nullptr, kPageSize, PROT_READ | PROT_EXEC, MAP_PRIVATE, fd, 0); 216 if (marker_address_ == MAP_FAILED) { 217 LOG(WARNING) << "Failed to create record in perf.data. JITed code profiling will not work."; 218 return; 219 } 220 } 221 222 void JitLogger::CloseMarkerFile() { 223 if (marker_address_ != nullptr) { 224 munmap(marker_address_, kPageSize); 225 } 226 } 227 228 void JitLogger::WriteJitDumpDebugInfo() { 229 // In the future, we can add java source file line/column mapping here. 230 } 231 232 void JitLogger::WriteJitDumpHeader() { 233 PerfJitHeader header; 234 235 std::memset(&header, 0, sizeof(header)); 236 header.magic_ = PerfJitHeader::kMagic; 237 header.version_ = PerfJitHeader::kVersion; 238 header.size_ = sizeof(header); 239 header.elf_mach_target_ = GetElfMach(); 240 header.process_id_ = static_cast<uint32_t>(getpid()); 241 header.time_stamp_ = art::NanoTime(); // CLOCK_MONOTONIC clock is required. 242 header.flags_ = 0; 243 244 bool res = jit_dump_file_->WriteFully(reinterpret_cast<const char*>(&header), sizeof(header)); 245 if (!res) { 246 LOG(WARNING) << "Failed to write profiling log. The 'perf inject' tool will not work."; 247 } 248 } 249 250 void JitLogger::OpenJitDumpLog() { 251 std::string pid_str = std::to_string(getpid()); 252 std::string jitdump_filename = std::string(kLogPrefix) + "/jit-" + pid_str + ".dump"; 253 254 jit_dump_file_.reset(OS::CreateEmptyFile(jitdump_filename.c_str())); 255 if (jit_dump_file_ == nullptr) { 256 LOG(ERROR) << "Could not create jit dump file at " << jitdump_filename << 257 " Are you on a user build? Perf only works on userdebug/eng builds"; 258 return; 259 } 260 261 OpenMarkerFile(); 262 263 // Continue to write jit-PID.dump file even above OpenMarkerFile() fails. 264 // Even if that means 'perf inject' tool cannot work, developers can still use other tools 265 // to map the samples in perf.data to the information (symbol,address,code) recorded 266 // in the jit-PID.dump file, and still proceed the jitted code analysis. 267 WriteJitDumpHeader(); 268 } 269 270 void JitLogger::WriteJitDumpLog(const void* ptr, size_t code_size, ArtMethod* method) { 271 if (jit_dump_file_ != nullptr) { 272 std::string method_name = method->PrettyMethod(); 273 274 PerfJitCodeLoad jit_code; 275 std::memset(&jit_code, 0, sizeof(jit_code)); 276 jit_code.event_ = PerfJitCodeLoad::kLoad; 277 jit_code.size_ = sizeof(jit_code) + method_name.size() + 1 + code_size; 278 jit_code.time_stamp_ = art::NanoTime(); // CLOCK_MONOTONIC clock is required. 279 jit_code.process_id_ = static_cast<uint32_t>(getpid()); 280 jit_code.thread_id_ = static_cast<uint32_t>(art::GetTid()); 281 jit_code.vma_ = 0x0; 282 jit_code.code_address_ = reinterpret_cast<uint64_t>(ptr); 283 jit_code.code_size_ = code_size; 284 jit_code.code_id_ = code_index_++; 285 286 // Write one complete jitted method info, including: 287 // - PerfJitCodeLoad structure 288 // - Method name 289 // - Complete generated code of this method 290 // 291 // Use UNUSED() here to avoid compiler warnings. 292 UNUSED(jit_dump_file_->WriteFully(reinterpret_cast<const char*>(&jit_code), sizeof(jit_code))); 293 UNUSED(jit_dump_file_->WriteFully(method_name.c_str(), method_name.size() + 1)); 294 UNUSED(jit_dump_file_->WriteFully(ptr, code_size)); 295 296 WriteJitDumpDebugInfo(); 297 } 298 } 299 300 void JitLogger::CloseJitDumpLog() { 301 if (jit_dump_file_ != nullptr) { 302 CloseMarkerFile(); 303 UNUSED(jit_dump_file_->Flush()); 304 UNUSED(jit_dump_file_->Close()); 305 } 306 } 307 308 } // namespace jit 309 } // namespace art 310