1 /* 2 * Copyright (C) 2012-2014 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 #define LOG_TAG "DEBUG" 18 19 #include <dirent.h> 20 #include <errno.h> 21 #include <fcntl.h> 22 #include <inttypes.h> 23 #include <signal.h> 24 #include <stddef.h> 25 #include <stdio.h> 26 #include <stdlib.h> 27 #include <string.h> 28 #include <sys/ptrace.h> 29 #include <sys/stat.h> 30 #include <time.h> 31 32 #include <memory> 33 #include <string> 34 35 #include <android-base/file.h> 36 #include <android-base/stringprintf.h> 37 #include <android-base/unique_fd.h> 38 #include <android/log.h> 39 #include <backtrace/Backtrace.h> 40 #include <backtrace/BacktraceMap.h> 41 #include <cutils/properties.h> 42 #include <log/log.h> 43 #include <log/logprint.h> 44 #include <private/android_filesystem_config.h> 45 46 #include "debuggerd/handler.h" 47 48 #include "backtrace.h" 49 #include "elf_utils.h" 50 #include "machine.h" 51 #include "open_files_list.h" 52 #include "tombstone.h" 53 54 using android::base::StringPrintf; 55 56 #define STACK_WORDS 16 57 58 #define MAX_TOMBSTONES 10 59 #define TOMBSTONE_DIR "/data/tombstones" 60 #define TOMBSTONE_TEMPLATE (TOMBSTONE_DIR"/tombstone_%02d") 61 62 static bool signal_has_si_addr(int si_signo, int si_code) { 63 // Manually sent signals won't have si_addr. 64 if (si_code == SI_USER || si_code == SI_QUEUE || si_code == SI_TKILL) { 65 return false; 66 } 67 68 switch (si_signo) { 69 case SIGBUS: 70 case SIGFPE: 71 case SIGILL: 72 case SIGSEGV: 73 case SIGTRAP: 74 return true; 75 default: 76 return false; 77 } 78 } 79 80 static const char* get_signame(int sig) { 81 switch (sig) { 82 case SIGABRT: return "SIGABRT"; 83 case SIGBUS: return "SIGBUS"; 84 case SIGFPE: return "SIGFPE"; 85 case SIGILL: return "SIGILL"; 86 case SIGSEGV: return "SIGSEGV"; 87 #if defined(SIGSTKFLT) 88 case SIGSTKFLT: return "SIGSTKFLT"; 89 #endif 90 case SIGSTOP: return "SIGSTOP"; 91 case SIGSYS: return "SIGSYS"; 92 case SIGTRAP: return "SIGTRAP"; 93 case DEBUGGER_SIGNAL: return "<debuggerd signal>"; 94 default: return "?"; 95 } 96 } 97 98 static const char* get_sigcode(int signo, int code) { 99 // Try the signal-specific codes... 100 switch (signo) { 101 case SIGILL: 102 switch (code) { 103 case ILL_ILLOPC: return "ILL_ILLOPC"; 104 case ILL_ILLOPN: return "ILL_ILLOPN"; 105 case ILL_ILLADR: return "ILL_ILLADR"; 106 case ILL_ILLTRP: return "ILL_ILLTRP"; 107 case ILL_PRVOPC: return "ILL_PRVOPC"; 108 case ILL_PRVREG: return "ILL_PRVREG"; 109 case ILL_COPROC: return "ILL_COPROC"; 110 case ILL_BADSTK: return "ILL_BADSTK"; 111 } 112 static_assert(NSIGILL == ILL_BADSTK, "missing ILL_* si_code"); 113 break; 114 case SIGBUS: 115 switch (code) { 116 case BUS_ADRALN: return "BUS_ADRALN"; 117 case BUS_ADRERR: return "BUS_ADRERR"; 118 case BUS_OBJERR: return "BUS_OBJERR"; 119 case BUS_MCEERR_AR: return "BUS_MCEERR_AR"; 120 case BUS_MCEERR_AO: return "BUS_MCEERR_AO"; 121 } 122 static_assert(NSIGBUS == BUS_MCEERR_AO, "missing BUS_* si_code"); 123 break; 124 case SIGFPE: 125 switch (code) { 126 case FPE_INTDIV: return "FPE_INTDIV"; 127 case FPE_INTOVF: return "FPE_INTOVF"; 128 case FPE_FLTDIV: return "FPE_FLTDIV"; 129 case FPE_FLTOVF: return "FPE_FLTOVF"; 130 case FPE_FLTUND: return "FPE_FLTUND"; 131 case FPE_FLTRES: return "FPE_FLTRES"; 132 case FPE_FLTINV: return "FPE_FLTINV"; 133 case FPE_FLTSUB: return "FPE_FLTSUB"; 134 } 135 static_assert(NSIGFPE == FPE_FLTSUB, "missing FPE_* si_code"); 136 break; 137 case SIGSEGV: 138 switch (code) { 139 case SEGV_MAPERR: return "SEGV_MAPERR"; 140 case SEGV_ACCERR: return "SEGV_ACCERR"; 141 #if defined(SEGV_BNDERR) 142 case SEGV_BNDERR: return "SEGV_BNDERR"; 143 #endif 144 #if defined(SEGV_PKUERR) 145 case SEGV_PKUERR: return "SEGV_PKUERR"; 146 #endif 147 } 148 #if defined(SEGV_PKUERR) 149 static_assert(NSIGSEGV == SEGV_PKUERR, "missing SEGV_* si_code"); 150 #elif defined(SEGV_BNDERR) 151 static_assert(NSIGSEGV == SEGV_BNDERR, "missing SEGV_* si_code"); 152 #else 153 static_assert(NSIGSEGV == SEGV_ACCERR, "missing SEGV_* si_code"); 154 #endif 155 break; 156 #if defined(SYS_SECCOMP) // Our glibc is too old, and we build this for the host too. 157 case SIGSYS: 158 switch (code) { 159 case SYS_SECCOMP: return "SYS_SECCOMP"; 160 } 161 static_assert(NSIGSYS == SYS_SECCOMP, "missing SYS_* si_code"); 162 break; 163 #endif 164 case SIGTRAP: 165 switch (code) { 166 case TRAP_BRKPT: return "TRAP_BRKPT"; 167 case TRAP_TRACE: return "TRAP_TRACE"; 168 case TRAP_BRANCH: return "TRAP_BRANCH"; 169 case TRAP_HWBKPT: return "TRAP_HWBKPT"; 170 } 171 static_assert(NSIGTRAP == TRAP_HWBKPT, "missing TRAP_* si_code"); 172 break; 173 } 174 // Then the other codes... 175 switch (code) { 176 case SI_USER: return "SI_USER"; 177 case SI_KERNEL: return "SI_KERNEL"; 178 case SI_QUEUE: return "SI_QUEUE"; 179 case SI_TIMER: return "SI_TIMER"; 180 case SI_MESGQ: return "SI_MESGQ"; 181 case SI_ASYNCIO: return "SI_ASYNCIO"; 182 case SI_SIGIO: return "SI_SIGIO"; 183 case SI_TKILL: return "SI_TKILL"; 184 case SI_DETHREAD: return "SI_DETHREAD"; 185 } 186 // Then give up... 187 return "?"; 188 } 189 190 static void dump_header_info(log_t* log) { 191 char fingerprint[PROPERTY_VALUE_MAX]; 192 char revision[PROPERTY_VALUE_MAX]; 193 194 property_get("ro.build.fingerprint", fingerprint, "unknown"); 195 property_get("ro.revision", revision, "unknown"); 196 197 _LOG(log, logtype::HEADER, "Build fingerprint: '%s'\n", fingerprint); 198 _LOG(log, logtype::HEADER, "Revision: '%s'\n", revision); 199 _LOG(log, logtype::HEADER, "ABI: '%s'\n", ABI_STRING); 200 } 201 202 static void dump_probable_cause(log_t* log, const siginfo_t& si) { 203 std::string cause; 204 if (si.si_signo == SIGSEGV && si.si_code == SEGV_MAPERR) { 205 if (si.si_addr < reinterpret_cast<void*>(4096)) { 206 cause = StringPrintf("null pointer dereference"); 207 } else if (si.si_addr == reinterpret_cast<void*>(0xffff0ffc)) { 208 cause = "call to kuser_helper_version"; 209 } else if (si.si_addr == reinterpret_cast<void*>(0xffff0fe0)) { 210 cause = "call to kuser_get_tls"; 211 } else if (si.si_addr == reinterpret_cast<void*>(0xffff0fc0)) { 212 cause = "call to kuser_cmpxchg"; 213 } else if (si.si_addr == reinterpret_cast<void*>(0xffff0fa0)) { 214 cause = "call to kuser_memory_barrier"; 215 } else if (si.si_addr == reinterpret_cast<void*>(0xffff0f60)) { 216 cause = "call to kuser_cmpxchg64"; 217 } 218 } else if (si.si_signo == SIGSYS && si.si_code == SYS_SECCOMP) { 219 cause = StringPrintf("seccomp prevented call to disallowed %s system call %d", 220 ABI_STRING, si.si_syscall); 221 } 222 223 if (!cause.empty()) _LOG(log, logtype::HEADER, "Cause: %s\n", cause.c_str()); 224 } 225 226 static void dump_signal_info(log_t* log, const siginfo_t* siginfo) { 227 const siginfo_t& si = *siginfo; 228 char addr_desc[32]; // ", fault addr 0x1234" 229 if (signal_has_si_addr(si.si_signo, si.si_code)) { 230 snprintf(addr_desc, sizeof(addr_desc), "%p", si.si_addr); 231 } else { 232 snprintf(addr_desc, sizeof(addr_desc), "--------"); 233 } 234 235 _LOG(log, logtype::HEADER, "signal %d (%s), code %d (%s), fault addr %s\n", si.si_signo, 236 get_signame(si.si_signo), si.si_code, get_sigcode(si.si_signo, si.si_code), addr_desc); 237 238 dump_probable_cause(log, si); 239 } 240 241 static void dump_signal_info(log_t* log, pid_t tid) { 242 siginfo_t si; 243 memset(&si, 0, sizeof(si)); 244 if (ptrace(PTRACE_GETSIGINFO, tid, 0, &si) == -1) { 245 ALOGE("cannot get siginfo: %s\n", strerror(errno)); 246 return; 247 } 248 249 dump_signal_info(log, &si); 250 } 251 252 static void dump_thread_info(log_t* log, pid_t pid, pid_t tid, const char* process_name, 253 const char* thread_name) { 254 // Blacklist logd, logd.reader, logd.writer, logd.auditd, logd.control ... 255 // TODO: Why is this controlled by thread name? 256 if (strcmp(thread_name, "logd") == 0 || strncmp(thread_name, "logd.", 4) == 0) { 257 log->should_retrieve_logcat = false; 258 } 259 260 _LOG(log, logtype::HEADER, "pid: %d, tid: %d, name: %s >>> %s <<<\n", pid, tid, thread_name, 261 process_name); 262 } 263 264 static void dump_stack_segment( 265 Backtrace* backtrace, log_t* log, uintptr_t* sp, size_t words, int label) { 266 // Read the data all at once. 267 word_t stack_data[words]; 268 size_t bytes_read = backtrace->Read(*sp, reinterpret_cast<uint8_t*>(&stack_data[0]), sizeof(word_t) * words); 269 words = bytes_read / sizeof(word_t); 270 std::string line; 271 for (size_t i = 0; i < words; i++) { 272 line = " "; 273 if (i == 0 && label >= 0) { 274 // Print the label once. 275 line += StringPrintf("#%02d ", label); 276 } else { 277 line += " "; 278 } 279 line += StringPrintf("%" PRIPTR " %" PRIPTR, *sp, stack_data[i]); 280 281 backtrace_map_t map; 282 backtrace->FillInMap(stack_data[i], &map); 283 if (BacktraceMap::IsValid(map) && !map.name.empty()) { 284 line += " " + map.name; 285 uintptr_t offset = 0; 286 std::string func_name(backtrace->GetFunctionName(stack_data[i], &offset, &map)); 287 if (!func_name.empty()) { 288 line += " (" + func_name; 289 if (offset) { 290 line += StringPrintf("+%" PRIuPTR, offset); 291 } 292 line += ')'; 293 } 294 } 295 _LOG(log, logtype::STACK, "%s\n", line.c_str()); 296 297 *sp += sizeof(word_t); 298 } 299 } 300 301 static void dump_stack(Backtrace* backtrace, log_t* log) { 302 size_t first = 0, last; 303 for (size_t i = 0; i < backtrace->NumFrames(); i++) { 304 const backtrace_frame_data_t* frame = backtrace->GetFrame(i); 305 if (frame->sp) { 306 if (!first) { 307 first = i+1; 308 } 309 last = i; 310 } 311 } 312 if (!first) { 313 return; 314 } 315 first--; 316 317 // Dump a few words before the first frame. 318 word_t sp = backtrace->GetFrame(first)->sp - STACK_WORDS * sizeof(word_t); 319 dump_stack_segment(backtrace, log, &sp, STACK_WORDS, -1); 320 321 // Dump a few words from all successive frames. 322 // Only log the first 3 frames, put the rest in the tombstone. 323 for (size_t i = first; i <= last; i++) { 324 const backtrace_frame_data_t* frame = backtrace->GetFrame(i); 325 if (sp != frame->sp) { 326 _LOG(log, logtype::STACK, " ........ ........\n"); 327 sp = frame->sp; 328 } 329 if (i == last) { 330 dump_stack_segment(backtrace, log, &sp, STACK_WORDS, i); 331 if (sp < frame->sp + frame->stack_size) { 332 _LOG(log, logtype::STACK, " ........ ........\n"); 333 } 334 } else { 335 size_t words = frame->stack_size / sizeof(word_t); 336 if (words == 0) { 337 words = 1; 338 } else if (words > STACK_WORDS) { 339 words = STACK_WORDS; 340 } 341 dump_stack_segment(backtrace, log, &sp, words, i); 342 } 343 } 344 } 345 346 static std::string get_addr_string(uintptr_t addr) { 347 std::string addr_str; 348 #if defined(__LP64__) 349 addr_str = StringPrintf("%08x'%08x", 350 static_cast<uint32_t>(addr >> 32), 351 static_cast<uint32_t>(addr & 0xffffffff)); 352 #else 353 addr_str = StringPrintf("%08x", addr); 354 #endif 355 return addr_str; 356 } 357 358 static void dump_abort_message(Backtrace* backtrace, log_t* log, uintptr_t address) { 359 if (address == 0) { 360 return; 361 } 362 363 address += sizeof(size_t); // Skip the buffer length. 364 365 char msg[512]; 366 memset(msg, 0, sizeof(msg)); 367 char* p = &msg[0]; 368 while (p < &msg[sizeof(msg)]) { 369 word_t data; 370 size_t len = sizeof(word_t); 371 if (!backtrace->ReadWord(address, &data)) { 372 break; 373 } 374 address += sizeof(word_t); 375 376 while (len > 0 && (*p++ = (data >> (sizeof(word_t) - len) * 8) & 0xff) != 0) { 377 len--; 378 } 379 } 380 msg[sizeof(msg) - 1] = '\0'; 381 382 _LOG(log, logtype::HEADER, "Abort message: '%s'\n", msg); 383 } 384 385 static void dump_all_maps(Backtrace* backtrace, BacktraceMap* map, log_t* log, pid_t tid) { 386 bool print_fault_address_marker = false; 387 uintptr_t addr = 0; 388 siginfo_t si; 389 memset(&si, 0, sizeof(si)); 390 if (ptrace(PTRACE_GETSIGINFO, tid, 0, &si) != -1) { 391 print_fault_address_marker = signal_has_si_addr(si.si_signo, si.si_code); 392 addr = reinterpret_cast<uintptr_t>(si.si_addr); 393 } else { 394 ALOGE("Cannot get siginfo for %d: %s\n", tid, strerror(errno)); 395 } 396 397 ScopedBacktraceMapIteratorLock lock(map); 398 _LOG(log, logtype::MAPS, "\n"); 399 if (!print_fault_address_marker) { 400 _LOG(log, logtype::MAPS, "memory map:\n"); 401 } else { 402 _LOG(log, logtype::MAPS, "memory map: (fault address prefixed with --->)\n"); 403 if (map->begin() != map->end() && addr < map->begin()->start) { 404 _LOG(log, logtype::MAPS, "--->Fault address falls at %s before any mapped regions\n", 405 get_addr_string(addr).c_str()); 406 print_fault_address_marker = false; 407 } 408 } 409 410 std::string line; 411 for (BacktraceMap::const_iterator it = map->begin(); it != map->end(); ++it) { 412 line = " "; 413 if (print_fault_address_marker) { 414 if (addr < it->start) { 415 _LOG(log, logtype::MAPS, "--->Fault address falls at %s between mapped regions\n", 416 get_addr_string(addr).c_str()); 417 print_fault_address_marker = false; 418 } else if (addr >= it->start && addr < it->end) { 419 line = "--->"; 420 print_fault_address_marker = false; 421 } 422 } 423 line += get_addr_string(it->start) + '-' + get_addr_string(it->end - 1) + ' '; 424 if (it->flags & PROT_READ) { 425 line += 'r'; 426 } else { 427 line += '-'; 428 } 429 if (it->flags & PROT_WRITE) { 430 line += 'w'; 431 } else { 432 line += '-'; 433 } 434 if (it->flags & PROT_EXEC) { 435 line += 'x'; 436 } else { 437 line += '-'; 438 } 439 line += StringPrintf(" %8" PRIxPTR " %8" PRIxPTR, it->offset, it->end - it->start); 440 bool space_needed = true; 441 if (it->name.length() > 0) { 442 space_needed = false; 443 line += " " + it->name; 444 std::string build_id; 445 if ((it->flags & PROT_READ) && elf_get_build_id(backtrace, it->start, &build_id)) { 446 line += " (BuildId: " + build_id + ")"; 447 } 448 } 449 if (it->load_base != 0) { 450 if (space_needed) { 451 line += ' '; 452 } 453 line += StringPrintf(" (load base 0x%" PRIxPTR ")", it->load_base); 454 } 455 _LOG(log, logtype::MAPS, "%s\n", line.c_str()); 456 } 457 if (print_fault_address_marker) { 458 _LOG(log, logtype::MAPS, "--->Fault address falls at %s after any mapped regions\n", 459 get_addr_string(addr).c_str()); 460 } 461 } 462 463 static void dump_backtrace_and_stack(Backtrace* backtrace, log_t* log) { 464 if (backtrace->NumFrames()) { 465 _LOG(log, logtype::BACKTRACE, "\nbacktrace:\n"); 466 dump_backtrace_to_log(backtrace, log, " "); 467 468 _LOG(log, logtype::STACK, "\nstack:\n"); 469 dump_stack(backtrace, log); 470 } 471 } 472 473 // Weak noop implementation, real implementations are in <arch>/machine.cpp. 474 __attribute__((weak)) void dump_registers(log_t* log, const ucontext_t*) { 475 _LOG(log, logtype::REGISTERS, " register dumping unimplemented on this architecture"); 476 } 477 478 static void dump_thread(log_t* log, pid_t pid, pid_t tid, const std::string& process_name, 479 const std::string& thread_name, BacktraceMap* map, 480 uintptr_t abort_msg_address, bool primary_thread) { 481 log->current_tid = tid; 482 if (!primary_thread) { 483 _LOG(log, logtype::THREAD, "--- --- --- --- --- --- --- --- --- --- --- --- --- --- --- ---\n"); 484 } 485 dump_thread_info(log, pid, tid, process_name.c_str(), thread_name.c_str()); 486 dump_signal_info(log, tid); 487 488 std::unique_ptr<Backtrace> backtrace(Backtrace::Create(pid, tid, map)); 489 if (primary_thread) { 490 dump_abort_message(backtrace.get(), log, abort_msg_address); 491 } 492 dump_registers(log, tid); 493 if (backtrace->Unwind(0)) { 494 dump_backtrace_and_stack(backtrace.get(), log); 495 } else { 496 ALOGE("Unwind failed: pid = %d, tid = %d", pid, tid); 497 } 498 499 if (primary_thread) { 500 dump_memory_and_code(log, backtrace.get()); 501 if (map) { 502 dump_all_maps(backtrace.get(), map, log, tid); 503 } 504 } 505 506 log->current_tid = log->crashed_tid; 507 } 508 509 // Reads the contents of the specified log device, filters out the entries 510 // that don't match the specified pid, and writes them to the tombstone file. 511 // 512 // If "tail" is non-zero, log the last "tail" number of lines. 513 static EventTagMap* g_eventTagMap = NULL; 514 515 static void dump_log_file( 516 log_t* log, pid_t pid, const char* filename, unsigned int tail) { 517 bool first = true; 518 struct logger_list* logger_list; 519 520 if (!log->should_retrieve_logcat) { 521 return; 522 } 523 524 logger_list = android_logger_list_open( 525 android_name_to_log_id(filename), ANDROID_LOG_RDONLY | ANDROID_LOG_NONBLOCK, tail, pid); 526 527 if (!logger_list) { 528 ALOGE("Unable to open %s: %s\n", filename, strerror(errno)); 529 return; 530 } 531 532 struct log_msg log_entry; 533 534 while (true) { 535 ssize_t actual = android_logger_list_read(logger_list, &log_entry); 536 struct logger_entry* entry; 537 538 if (actual < 0) { 539 if (actual == -EINTR) { 540 // interrupted by signal, retry 541 continue; 542 } else if (actual == -EAGAIN) { 543 // non-blocking EOF; we're done 544 break; 545 } else { 546 ALOGE("Error while reading log: %s\n", strerror(-actual)); 547 break; 548 } 549 } else if (actual == 0) { 550 ALOGE("Got zero bytes while reading log: %s\n", strerror(errno)); 551 break; 552 } 553 554 // NOTE: if you ALOGV something here, this will spin forever, 555 // because you will be writing as fast as you're reading. Any 556 // high-frequency debug diagnostics should just be written to 557 // the tombstone file. 558 559 entry = &log_entry.entry_v1; 560 561 if (first) { 562 _LOG(log, logtype::LOGS, "--------- %slog %s\n", 563 tail ? "tail end of " : "", filename); 564 first = false; 565 } 566 567 // Msg format is: <priority:1><tag:N>\0<message:N>\0 568 // 569 // We want to display it in the same format as "logcat -v threadtime" 570 // (although in this case the pid is redundant). 571 static const char* kPrioChars = "!.VDIWEFS"; 572 unsigned hdr_size = log_entry.entry.hdr_size; 573 if (!hdr_size) { 574 hdr_size = sizeof(log_entry.entry_v1); 575 } 576 if ((hdr_size < sizeof(log_entry.entry_v1)) || 577 (hdr_size > sizeof(log_entry.entry))) { 578 continue; 579 } 580 char* msg = reinterpret_cast<char*>(log_entry.buf) + hdr_size; 581 582 char timeBuf[32]; 583 time_t sec = static_cast<time_t>(entry->sec); 584 struct tm tmBuf; 585 struct tm* ptm; 586 ptm = localtime_r(&sec, &tmBuf); 587 strftime(timeBuf, sizeof(timeBuf), "%m-%d %H:%M:%S", ptm); 588 589 if (log_entry.id() == LOG_ID_EVENTS) { 590 if (!g_eventTagMap) { 591 g_eventTagMap = android_openEventTagMap(NULL); 592 } 593 AndroidLogEntry e; 594 char buf[512]; 595 android_log_processBinaryLogBuffer(entry, &e, g_eventTagMap, buf, sizeof(buf)); 596 _LOG(log, logtype::LOGS, "%s.%03d %5d %5d %c %-8.*s: %s\n", 597 timeBuf, entry->nsec / 1000000, entry->pid, entry->tid, 598 'I', (int)e.tagLen, e.tag, e.message); 599 continue; 600 } 601 602 unsigned char prio = msg[0]; 603 char* tag = msg + 1; 604 msg = tag + strlen(tag) + 1; 605 606 // consume any trailing newlines 607 char* nl = msg + strlen(msg) - 1; 608 while (nl >= msg && *nl == '\n') { 609 *nl-- = '\0'; 610 } 611 612 char prioChar = (prio < strlen(kPrioChars) ? kPrioChars[prio] : '?'); 613 614 // Look for line breaks ('\n') and display each text line 615 // on a separate line, prefixed with the header, like logcat does. 616 do { 617 nl = strchr(msg, '\n'); 618 if (nl) { 619 *nl = '\0'; 620 ++nl; 621 } 622 623 _LOG(log, logtype::LOGS, "%s.%03d %5d %5d %c %-8s: %s\n", 624 timeBuf, entry->nsec / 1000000, entry->pid, entry->tid, 625 prioChar, tag, msg); 626 } while ((msg = nl)); 627 } 628 629 android_logger_list_free(logger_list); 630 } 631 632 // Dumps the logs generated by the specified pid to the tombstone, from both 633 // "system" and "main" log devices. Ideally we'd interleave the output. 634 static void dump_logs(log_t* log, pid_t pid, unsigned int tail) { 635 dump_log_file(log, pid, "system", tail); 636 dump_log_file(log, pid, "main", tail); 637 } 638 639 // Dumps all information about the specified pid to the tombstone. 640 static void dump_crash(log_t* log, BacktraceMap* map, const OpenFilesList* open_files, pid_t pid, 641 pid_t tid, const std::string& process_name, 642 const std::map<pid_t, std::string>& threads, uintptr_t abort_msg_address) { 643 // don't copy log messages to tombstone unless this is a dev device 644 char value[PROPERTY_VALUE_MAX]; 645 property_get("ro.debuggable", value, "0"); 646 bool want_logs = (value[0] == '1'); 647 648 _LOG(log, logtype::HEADER, 649 "*** *** *** *** *** *** *** *** *** *** *** *** *** *** *** ***\n"); 650 dump_header_info(log); 651 dump_thread(log, pid, tid, process_name, threads.find(tid)->second, map, abort_msg_address, true); 652 if (want_logs) { 653 dump_logs(log, pid, 5); 654 } 655 656 for (const auto& it : threads) { 657 pid_t thread_tid = it.first; 658 const std::string& thread_name = it.second; 659 660 if (thread_tid != tid) { 661 dump_thread(log, pid, thread_tid, process_name, thread_name, map, 0, false); 662 } 663 } 664 665 if (open_files) { 666 _LOG(log, logtype::OPEN_FILES, "\nopen files:\n"); 667 dump_open_files_list_to_log(*open_files, log, " "); 668 } 669 670 if (want_logs) { 671 dump_logs(log, pid, 0); 672 } 673 } 674 675 // open_tombstone - find an available tombstone slot, if any, of the 676 // form tombstone_XX where XX is 00 to MAX_TOMBSTONES-1, inclusive. If no 677 // file is available, we reuse the least-recently-modified file. 678 int open_tombstone(std::string* out_path) { 679 // In a single pass, find an available slot and, in case none 680 // exist, find and record the least-recently-modified file. 681 char path[128]; 682 int fd = -1; 683 int oldest = -1; 684 struct stat oldest_sb; 685 for (int i = 0; i < MAX_TOMBSTONES; i++) { 686 snprintf(path, sizeof(path), TOMBSTONE_TEMPLATE, i); 687 688 struct stat sb; 689 if (stat(path, &sb) == 0) { 690 if (oldest < 0 || sb.st_mtime < oldest_sb.st_mtime) { 691 oldest = i; 692 oldest_sb.st_mtime = sb.st_mtime; 693 } 694 continue; 695 } 696 if (errno != ENOENT) continue; 697 698 fd = open(path, O_CREAT | O_EXCL | O_WRONLY | O_NOFOLLOW | O_CLOEXEC, 0600); 699 if (fd < 0) continue; // raced ? 700 701 if (out_path) { 702 *out_path = path; 703 } 704 fchown(fd, AID_SYSTEM, AID_SYSTEM); 705 return fd; 706 } 707 708 if (oldest < 0) { 709 ALOGE("debuggerd: failed to find a valid tombstone, default to using tombstone 0.\n"); 710 oldest = 0; 711 } 712 713 // we didn't find an available file, so we clobber the oldest one 714 snprintf(path, sizeof(path), TOMBSTONE_TEMPLATE, oldest); 715 fd = open(path, O_CREAT | O_TRUNC | O_WRONLY | O_NOFOLLOW | O_CLOEXEC, 0600); 716 if (fd < 0) { 717 ALOGE("debuggerd: failed to open tombstone file '%s': %s\n", path, strerror(errno)); 718 return -1; 719 } 720 721 if (out_path) { 722 *out_path = path; 723 } 724 fchown(fd, AID_SYSTEM, AID_SYSTEM); 725 return fd; 726 } 727 728 void engrave_tombstone(int tombstone_fd, BacktraceMap* map, const OpenFilesList* open_files, 729 pid_t pid, pid_t tid, const std::string& process_name, 730 const std::map<pid_t, std::string>& threads, uintptr_t abort_msg_address, 731 std::string* amfd_data) { 732 log_t log; 733 log.current_tid = tid; 734 log.crashed_tid = tid; 735 log.tfd = tombstone_fd; 736 log.amfd_data = amfd_data; 737 dump_crash(&log, map, open_files, pid, tid, process_name, threads, abort_msg_address); 738 } 739 740 void engrave_tombstone_ucontext(int tombstone_fd, uintptr_t abort_msg_address, siginfo_t* siginfo, 741 ucontext_t* ucontext) { 742 pid_t pid = getpid(); 743 pid_t tid = gettid(); 744 745 log_t log; 746 log.current_tid = tid; 747 log.crashed_tid = tid; 748 log.tfd = tombstone_fd; 749 log.amfd_data = nullptr; 750 751 char thread_name[16]; 752 char process_name[128]; 753 754 read_with_default("/proc/self/comm", thread_name, sizeof(thread_name), "<unknown>"); 755 read_with_default("/proc/self/cmdline", process_name, sizeof(process_name), "<unknown>"); 756 757 _LOG(&log, logtype::HEADER, "*** *** *** *** *** *** *** *** *** *** *** *** *** *** *** ***\n"); 758 dump_header_info(&log); 759 dump_thread_info(&log, pid, tid, thread_name, process_name); 760 dump_signal_info(&log, siginfo); 761 762 std::unique_ptr<Backtrace> backtrace(Backtrace::Create(pid, tid)); 763 dump_abort_message(backtrace.get(), &log, abort_msg_address); 764 dump_registers(&log, ucontext); 765 766 // TODO: Dump registers from the ucontext. 767 if (backtrace->Unwind(0, ucontext)) { 768 dump_backtrace_and_stack(backtrace.get(), &log); 769 } else { 770 ALOGE("Unwind failed: pid = %d, tid = %d", pid, tid); 771 } 772 } 773