tombstone.cpp revision 77b00ed429a66d0943f0b6af0b57f08577816fe3
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
54using 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
62static 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
80static 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
98static 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
190static 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
202static 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
226static 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
241static 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
252static 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
264static 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
301static 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
346static 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
358static 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
385static 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
463static 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
478static 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.
513static EventTagMap* g_eventTagMap = NULL;
514
515static 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.
634static 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.
640static 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.
678int 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
728void 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
740void 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  dump_thread_info(&log, pid, tid, thread_name, process_name);
758  dump_signal_info(&log, siginfo);
759
760  std::unique_ptr<Backtrace> backtrace(Backtrace::Create(pid, tid));
761  dump_abort_message(backtrace.get(), &log, abort_msg_address);
762  dump_registers(&log, ucontext);
763
764  // TODO: Dump registers from the ucontext.
765  if (backtrace->Unwind(0, ucontext)) {
766    dump_backtrace_and_stack(backtrace.get(), &log);
767  } else {
768    ALOGE("Unwind failed: pid = %d, tid = %d", pid, tid);
769  }
770}
771