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      1 /*
      2  * Copyright 2006, 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 <arpa/inet.h>
     18 #include <dirent.h>
     19 #include <elf.h>
     20 #include <errno.h>
     21 #include <fcntl.h>
     22 #include <pthread.h>
     23 #include <signal.h>
     24 #include <stdarg.h>
     25 #include <stdio.h>
     26 #include <sys/poll.h>
     27 #include <sys/prctl.h>
     28 #include <sys/ptrace.h>
     29 #include <sys/socket.h>
     30 #include <sys/stat.h>
     31 #include <sys/types.h>
     32 #include <sys/wait.h>
     33 #include <sys/un.h>
     34 #include <time.h>
     35 
     36 #include <memory>
     37 #include <set>
     38 #include <string>
     39 
     40 #include <selinux/android.h>
     41 
     42 #include <log/logger.h>
     43 
     44 #include <android-base/file.h>
     45 #include <android-base/unique_fd.h>
     46 #include <cutils/debugger.h>
     47 #include <cutils/properties.h>
     48 #include <cutils/sockets.h>
     49 #include <nativehelper/ScopedFd.h>
     50 
     51 #include <linux/input.h>
     52 
     53 #include <private/android_filesystem_config.h>
     54 
     55 #include "backtrace.h"
     56 #include "getevent.h"
     57 #include "signal_sender.h"
     58 #include "tombstone.h"
     59 #include "utility.h"
     60 
     61 // If the 32 bit executable is compiled on a 64 bit system,
     62 // use the 32 bit socket name.
     63 #if defined(TARGET_IS_64_BIT) && !defined(__LP64__)
     64 #define SOCKET_NAME DEBUGGER32_SOCKET_NAME
     65 #else
     66 #define SOCKET_NAME DEBUGGER_SOCKET_NAME
     67 #endif
     68 
     69 struct debugger_request_t {
     70   debugger_action_t action;
     71   pid_t pid, tid;
     72   uid_t uid, gid;
     73   uintptr_t abort_msg_address;
     74   int32_t original_si_code;
     75 };
     76 
     77 static void wait_for_user_action(const debugger_request_t& request) {
     78   // Explain how to attach the debugger.
     79   ALOGI("***********************************************************\n"
     80         "* Process %d has been suspended while crashing.\n"
     81         "* To attach gdbserver and start gdb, run this on the host:\n"
     82         "*\n"
     83         "*     gdbclient.py -p %d\n"
     84         "*\n"
     85         "* Wait for gdb to start, then press the VOLUME DOWN key\n"
     86         "* to let the process continue crashing.\n"
     87         "***********************************************************",
     88         request.pid, request.tid);
     89 
     90   // Wait for VOLUME DOWN.
     91   while (true) {
     92     input_event e;
     93     if (get_event(&e, -1) == 0) {
     94       if (e.type == EV_KEY && e.code == KEY_VOLUMEDOWN && e.value == 0) {
     95         break;
     96       }
     97     }
     98   }
     99 
    100   ALOGI("debuggerd resuming process %d", request.pid);
    101 }
    102 
    103 static int get_process_info(pid_t tid, pid_t* out_pid, uid_t* out_uid, uid_t* out_gid) {
    104   char path[64];
    105   snprintf(path, sizeof(path), "/proc/%d/status", tid);
    106 
    107   FILE* fp = fopen(path, "r");
    108   if (!fp) {
    109     return -1;
    110   }
    111 
    112   int fields = 0;
    113   char line[1024];
    114   while (fgets(line, sizeof(line), fp)) {
    115     size_t len = strlen(line);
    116     if (len > 6 && !memcmp(line, "Tgid:\t", 6)) {
    117       *out_pid = atoi(line + 6);
    118       fields |= 1;
    119     } else if (len > 5 && !memcmp(line, "Uid:\t", 5)) {
    120       *out_uid = atoi(line + 5);
    121       fields |= 2;
    122     } else if (len > 5 && !memcmp(line, "Gid:\t", 5)) {
    123       *out_gid = atoi(line + 5);
    124       fields |= 4;
    125     }
    126   }
    127   fclose(fp);
    128   return fields == 7 ? 0 : -1;
    129 }
    130 
    131 /*
    132  * Corresponds with debugger_action_t enum type in
    133  * include/cutils/debugger.h.
    134  */
    135 static const char *debuggerd_perms[] = {
    136   NULL, /* crash is only used on self, no check applied */
    137   "dump_tombstone",
    138   "dump_backtrace"
    139 };
    140 
    141 static int audit_callback(void* data, security_class_t /* cls */, char* buf, size_t len)
    142 {
    143     struct debugger_request_t* req = reinterpret_cast<debugger_request_t*>(data);
    144 
    145     if (!req) {
    146         ALOGE("No debuggerd request audit data");
    147         return 0;
    148     }
    149 
    150     snprintf(buf, len, "pid=%d uid=%d gid=%d", req->pid, req->uid, req->gid);
    151     return 0;
    152 }
    153 
    154 static bool selinux_action_allowed(int s, debugger_request_t* request)
    155 {
    156   char *scon = NULL, *tcon = NULL;
    157   const char *tclass = "debuggerd";
    158   const char *perm;
    159   bool allowed = false;
    160 
    161   if (request->action <= 0 || request->action >= (sizeof(debuggerd_perms)/sizeof(debuggerd_perms[0]))) {
    162     ALOGE("SELinux:  No permission defined for debugger action %d", request->action);
    163     return false;
    164   }
    165 
    166   perm = debuggerd_perms[request->action];
    167 
    168   if (getpeercon(s, &scon) < 0) {
    169     ALOGE("Cannot get peer context from socket\n");
    170     goto out;
    171   }
    172 
    173   if (getpidcon(request->tid, &tcon) < 0) {
    174     ALOGE("Cannot get context for tid %d\n", request->tid);
    175     goto out;
    176   }
    177 
    178   allowed = (selinux_check_access(scon, tcon, tclass, perm, reinterpret_cast<void*>(request)) == 0);
    179 
    180 out:
    181    freecon(scon);
    182    freecon(tcon);
    183    return allowed;
    184 }
    185 
    186 static bool pid_contains_tid(pid_t pid, pid_t tid) {
    187   char task_path[PATH_MAX];
    188   if (snprintf(task_path, PATH_MAX, "/proc/%d/task/%d", pid, tid) >= PATH_MAX) {
    189     ALOGE("debuggerd: task path overflow (pid = %d, tid = %d)\n", pid, tid);
    190     exit(1);
    191   }
    192 
    193   return access(task_path, F_OK) == 0;
    194 }
    195 
    196 static int read_request(int fd, debugger_request_t* out_request) {
    197   ucred cr;
    198   socklen_t len = sizeof(cr);
    199   int status = getsockopt(fd, SOL_SOCKET, SO_PEERCRED, &cr, &len);
    200   if (status != 0) {
    201     ALOGE("cannot get credentials");
    202     return -1;
    203   }
    204 
    205   ALOGV("reading tid");
    206   fcntl(fd, F_SETFL, O_NONBLOCK);
    207 
    208   pollfd pollfds[1];
    209   pollfds[0].fd = fd;
    210   pollfds[0].events = POLLIN;
    211   pollfds[0].revents = 0;
    212   status = TEMP_FAILURE_RETRY(poll(pollfds, 1, 3000));
    213   if (status != 1) {
    214     ALOGE("timed out reading tid (from pid=%d uid=%d)\n", cr.pid, cr.uid);
    215     return -1;
    216   }
    217 
    218   debugger_msg_t msg;
    219   memset(&msg, 0, sizeof(msg));
    220   status = TEMP_FAILURE_RETRY(read(fd, &msg, sizeof(msg)));
    221   if (status < 0) {
    222     ALOGE("read failure? %s (pid=%d uid=%d)\n", strerror(errno), cr.pid, cr.uid);
    223     return -1;
    224   }
    225   if (status != sizeof(debugger_msg_t)) {
    226     ALOGE("invalid crash request of size %d (from pid=%d uid=%d)\n", status, cr.pid, cr.uid);
    227     return -1;
    228   }
    229 
    230   out_request->action = static_cast<debugger_action_t>(msg.action);
    231   out_request->tid = msg.tid;
    232   out_request->pid = cr.pid;
    233   out_request->uid = cr.uid;
    234   out_request->gid = cr.gid;
    235   out_request->abort_msg_address = msg.abort_msg_address;
    236   out_request->original_si_code = msg.original_si_code;
    237 
    238   if (msg.action == DEBUGGER_ACTION_CRASH) {
    239     // Ensure that the tid reported by the crashing process is valid.
    240     // This check needs to happen again after ptracing the requested thread to prevent a race.
    241     if (!pid_contains_tid(out_request->pid, out_request->tid)) {
    242       ALOGE("tid %d does not exist in pid %d. ignoring debug request\n", out_request->tid,
    243             out_request->pid);
    244       return -1;
    245     }
    246   } else if (cr.uid == 0 || (cr.uid == AID_SYSTEM && msg.action == DEBUGGER_ACTION_DUMP_BACKTRACE)) {
    247     // Only root or system can ask us to attach to any process and dump it explicitly.
    248     // However, system is only allowed to collect backtraces but cannot dump tombstones.
    249     status = get_process_info(out_request->tid, &out_request->pid,
    250                               &out_request->uid, &out_request->gid);
    251     if (status < 0) {
    252       ALOGE("tid %d does not exist. ignoring explicit dump request\n", out_request->tid);
    253       return -1;
    254     }
    255 
    256     if (!selinux_action_allowed(fd, out_request))
    257       return -1;
    258   } else {
    259     // No one else is allowed to dump arbitrary processes.
    260     return -1;
    261   }
    262   return 0;
    263 }
    264 
    265 static int activity_manager_connect() {
    266   android::base::unique_fd amfd(socket(PF_UNIX, SOCK_STREAM, 0));
    267   if (amfd.get() < -1) {
    268     ALOGE("debuggerd: Unable to connect to activity manager (socket failed: %s)", strerror(errno));
    269     return -1;
    270   }
    271 
    272   struct sockaddr_un address;
    273   memset(&address, 0, sizeof(address));
    274   address.sun_family = AF_UNIX;
    275   // The path used here must match the value defined in NativeCrashListener.java.
    276   strncpy(address.sun_path, "/data/system/ndebugsocket", sizeof(address.sun_path));
    277   if (TEMP_FAILURE_RETRY(connect(amfd.get(), reinterpret_cast<struct sockaddr*>(&address),
    278                                  sizeof(address))) == -1) {
    279     ALOGE("debuggerd: Unable to connect to activity manager (connect failed: %s)", strerror(errno));
    280     return -1;
    281   }
    282 
    283   struct timeval tv;
    284   memset(&tv, 0, sizeof(tv));
    285   tv.tv_sec = 1;  // tight leash
    286   if (setsockopt(amfd.get(), SOL_SOCKET, SO_SNDTIMEO, &tv, sizeof(tv)) == -1) {
    287     ALOGE("debuggerd: Unable to connect to activity manager (setsockopt SO_SNDTIMEO failed: %s)",
    288           strerror(errno));
    289     return -1;
    290   }
    291 
    292   tv.tv_sec = 3;  // 3 seconds on handshake read
    293   if (setsockopt(amfd.get(), SOL_SOCKET, SO_RCVTIMEO, &tv, sizeof(tv)) == -1) {
    294     ALOGE("debuggerd: Unable to connect to activity manager (setsockopt SO_RCVTIMEO failed: %s)",
    295           strerror(errno));
    296     return -1;
    297   }
    298 
    299   return amfd.release();
    300 }
    301 
    302 static void activity_manager_write(int pid, int signal, int amfd, const std::string& amfd_data) {
    303   if (amfd == -1) {
    304     return;
    305   }
    306 
    307   // Activity Manager protocol: binary 32-bit network-byte-order ints for the
    308   // pid and signal number, followed by the raw text of the dump, culminating
    309   // in a zero byte that marks end-of-data.
    310   uint32_t datum = htonl(pid);
    311   if (!android::base::WriteFully(amfd, &datum, 4)) {
    312     ALOGE("AM pid write failed: %s\n", strerror(errno));
    313     return;
    314   }
    315   datum = htonl(signal);
    316   if (!android::base::WriteFully(amfd, &datum, 4)) {
    317     ALOGE("AM signal write failed: %s\n", strerror(errno));
    318     return;
    319   }
    320 
    321   if (!android::base::WriteFully(amfd, amfd_data.c_str(), amfd_data.size())) {
    322     ALOGE("AM data write failed: %s\n", strerror(errno));
    323     return;
    324   }
    325 
    326   // Send EOD to the Activity Manager, then wait for its ack to avoid racing
    327   // ahead and killing the target out from under it.
    328   uint8_t eodMarker = 0;
    329   if (!android::base::WriteFully(amfd, &eodMarker, 1)) {
    330     ALOGE("AM eod write failed: %s\n", strerror(errno));
    331     return;
    332   }
    333   // 3 sec timeout reading the ack; we're fine if the read fails.
    334   android::base::ReadFully(amfd, &eodMarker, 1);
    335 }
    336 
    337 static bool should_attach_gdb(const debugger_request_t& request) {
    338   if (request.action == DEBUGGER_ACTION_CRASH) {
    339     return property_get_bool("debug.debuggerd.wait_for_gdb", false);
    340   }
    341   return false;
    342 }
    343 
    344 #if defined(__LP64__)
    345 static bool is32bit(pid_t tid) {
    346   char* exeline;
    347   if (asprintf(&exeline, "/proc/%d/exe", tid) == -1) {
    348     return false;
    349   }
    350   int fd = TEMP_FAILURE_RETRY(open(exeline, O_RDONLY | O_CLOEXEC));
    351   int saved_errno = errno;
    352   free(exeline);
    353   if (fd == -1) {
    354     ALOGW("Failed to open /proc/%d/exe %s", tid, strerror(saved_errno));
    355     return false;
    356   }
    357 
    358   char ehdr[EI_NIDENT];
    359   ssize_t bytes = TEMP_FAILURE_RETRY(read(fd, &ehdr, sizeof(ehdr)));
    360   close(fd);
    361   if (bytes != (ssize_t) sizeof(ehdr) || memcmp(ELFMAG, ehdr, SELFMAG) != 0) {
    362     return false;
    363   }
    364   if (ehdr[EI_CLASS] == ELFCLASS32) {
    365     return true;
    366   }
    367   return false;
    368 }
    369 
    370 static void redirect_to_32(int fd, debugger_request_t* request) {
    371   debugger_msg_t msg;
    372   memset(&msg, 0, sizeof(msg));
    373   msg.tid = request->tid;
    374   msg.action = request->action;
    375 
    376   int sock_fd = socket_local_client(DEBUGGER32_SOCKET_NAME, ANDROID_SOCKET_NAMESPACE_ABSTRACT,
    377                                     SOCK_STREAM | SOCK_CLOEXEC);
    378   if (sock_fd < 0) {
    379     ALOGE("Failed to connect to debuggerd32: %s", strerror(errno));
    380     return;
    381   }
    382 
    383   if (TEMP_FAILURE_RETRY(write(sock_fd, &msg, sizeof(msg))) != (ssize_t) sizeof(msg)) {
    384     ALOGE("Failed to write request to debuggerd32 socket: %s", strerror(errno));
    385     close(sock_fd);
    386     return;
    387   }
    388 
    389   char ack;
    390   if (TEMP_FAILURE_RETRY(read(sock_fd, &ack, 1)) == -1) {
    391     ALOGE("Failed to read ack from debuggerd32 socket: %s", strerror(errno));
    392     close(sock_fd);
    393     return;
    394   }
    395 
    396   char buffer[1024];
    397   ssize_t bytes_read;
    398   while ((bytes_read = TEMP_FAILURE_RETRY(read(sock_fd, buffer, sizeof(buffer)))) > 0) {
    399     ssize_t bytes_to_send = bytes_read;
    400     ssize_t bytes_written;
    401     do {
    402       bytes_written = TEMP_FAILURE_RETRY(write(fd, buffer + bytes_read - bytes_to_send,
    403                                                bytes_to_send));
    404       if (bytes_written == -1) {
    405         if (errno == EAGAIN) {
    406           // Retry the write.
    407           continue;
    408         }
    409         ALOGE("Error while writing data to fd: %s", strerror(errno));
    410         break;
    411       }
    412       bytes_to_send -= bytes_written;
    413     } while (bytes_written != 0 && bytes_to_send > 0);
    414     if (bytes_to_send != 0) {
    415         ALOGE("Failed to write all data to fd: read %zd, sent %zd", bytes_read, bytes_to_send);
    416         break;
    417     }
    418   }
    419   close(sock_fd);
    420 }
    421 #endif
    422 
    423 // Attach to a thread, and verify that it's still a member of the given process
    424 static bool ptrace_attach_thread(pid_t pid, pid_t tid) {
    425   if (ptrace(PTRACE_ATTACH, tid, 0, 0) != 0) {
    426     return false;
    427   }
    428 
    429   // Make sure that the task we attached to is actually part of the pid we're dumping.
    430   if (!pid_contains_tid(pid, tid)) {
    431     if (ptrace(PTRACE_DETACH, tid, 0, 0) != 0) {
    432       ALOGE("debuggerd: failed to detach from thread '%d'", tid);
    433       exit(1);
    434     }
    435     return false;
    436   }
    437 
    438   return true;
    439 }
    440 
    441 static void ptrace_siblings(pid_t pid, pid_t main_tid, std::set<pid_t>& tids) {
    442   char task_path[PATH_MAX];
    443 
    444   if (snprintf(task_path, PATH_MAX, "/proc/%d/task", pid) >= PATH_MAX) {
    445     ALOGE("debuggerd: task path overflow (pid = %d)\n", pid);
    446     abort();
    447   }
    448 
    449   std::unique_ptr<DIR, int (*)(DIR*)> d(opendir(task_path), closedir);
    450 
    451   // Bail early if the task directory cannot be opened.
    452   if (!d) {
    453     ALOGE("debuggerd: failed to open /proc/%d/task: %s", pid, strerror(errno));
    454     return;
    455   }
    456 
    457   struct dirent* de;
    458   while ((de = readdir(d.get())) != NULL) {
    459     // Ignore "." and "..".
    460     if (!strcmp(de->d_name, ".") || !strcmp(de->d_name, "..")) {
    461       continue;
    462     }
    463 
    464     char* end;
    465     pid_t tid = strtoul(de->d_name, &end, 10);
    466     if (*end) {
    467       continue;
    468     }
    469 
    470     if (tid == main_tid) {
    471       continue;
    472     }
    473 
    474     if (!ptrace_attach_thread(pid, tid)) {
    475       ALOGE("debuggerd: ptrace attach to %d failed: %s", tid, strerror(errno));
    476       continue;
    477     }
    478 
    479     tids.insert(tid);
    480   }
    481 }
    482 
    483 static bool perform_dump(const debugger_request_t& request, int fd, int tombstone_fd,
    484                          BacktraceMap* backtrace_map, const std::set<pid_t>& siblings,
    485                          int* crash_signal, std::string* amfd_data) {
    486   if (TEMP_FAILURE_RETRY(write(fd, "\0", 1)) != 1) {
    487     ALOGE("debuggerd: failed to respond to client: %s\n", strerror(errno));
    488     return false;
    489   }
    490 
    491   int total_sleep_time_usec = 0;
    492   while (true) {
    493     int signal = wait_for_signal(request.tid, &total_sleep_time_usec);
    494     switch (signal) {
    495       case -1:
    496         ALOGE("debuggerd: timed out waiting for signal");
    497         return false;
    498 
    499       case SIGSTOP:
    500         if (request.action == DEBUGGER_ACTION_DUMP_TOMBSTONE) {
    501           ALOGV("debuggerd: stopped -- dumping to tombstone");
    502           engrave_tombstone(tombstone_fd, backtrace_map, request.pid, request.tid, siblings, signal,
    503                             request.original_si_code, request.abort_msg_address, amfd_data);
    504         } else if (request.action == DEBUGGER_ACTION_DUMP_BACKTRACE) {
    505           ALOGV("debuggerd: stopped -- dumping to fd");
    506           dump_backtrace(fd, backtrace_map, request.pid, request.tid, siblings, nullptr);
    507         } else {
    508           ALOGV("debuggerd: stopped -- continuing");
    509           if (ptrace(PTRACE_CONT, request.tid, 0, 0) != 0) {
    510             ALOGE("debuggerd: ptrace continue failed: %s", strerror(errno));
    511             return false;
    512           }
    513           continue;  // loop again
    514         }
    515         break;
    516 
    517       case SIGABRT:
    518       case SIGBUS:
    519       case SIGFPE:
    520       case SIGILL:
    521       case SIGSEGV:
    522 #ifdef SIGSTKFLT
    523       case SIGSTKFLT:
    524 #endif
    525       case SIGSYS:
    526       case SIGTRAP:
    527         ALOGV("stopped -- fatal signal\n");
    528         *crash_signal = signal;
    529         engrave_tombstone(tombstone_fd, backtrace_map, request.pid, request.tid, siblings, signal,
    530                           request.original_si_code, request.abort_msg_address, amfd_data);
    531         break;
    532 
    533       default:
    534         ALOGE("debuggerd: process stopped due to unexpected signal %d\n", signal);
    535         break;
    536     }
    537     break;
    538   }
    539 
    540   return true;
    541 }
    542 
    543 static bool drop_privileges() {
    544   // AID_LOG: for reading the logs data associated with the crashing process.
    545   // AID_READPROC: for reading /proc/<PID>/{comm,cmdline}.
    546   gid_t groups[] = { AID_DEBUGGERD, AID_LOG, AID_READPROC };
    547   if (setgroups(sizeof(groups)/sizeof(groups[0]), groups) != 0) {
    548     ALOGE("debuggerd: failed to setgroups: %s", strerror(errno));
    549     return false;
    550   }
    551 
    552   if (setresgid(AID_DEBUGGERD, AID_DEBUGGERD, AID_DEBUGGERD) != 0) {
    553     ALOGE("debuggerd: failed to setresgid: %s", strerror(errno));
    554     return false;
    555   }
    556 
    557   if (setresuid(AID_DEBUGGERD, AID_DEBUGGERD, AID_DEBUGGERD) != 0) {
    558     ALOGE("debuggerd: failed to setresuid: %s", strerror(errno));
    559     return false;
    560   }
    561 
    562   return true;
    563 }
    564 
    565 static void worker_process(int fd, debugger_request_t& request) {
    566   // Open the tombstone file if we need it.
    567   std::string tombstone_path;
    568   int tombstone_fd = -1;
    569   switch (request.action) {
    570     case DEBUGGER_ACTION_DUMP_TOMBSTONE:
    571     case DEBUGGER_ACTION_CRASH:
    572       tombstone_fd = open_tombstone(&tombstone_path);
    573       if (tombstone_fd == -1) {
    574         ALOGE("debuggerd: failed to open tombstone file: %s\n", strerror(errno));
    575         exit(1);
    576       }
    577       break;
    578 
    579     case DEBUGGER_ACTION_DUMP_BACKTRACE:
    580       break;
    581 
    582     default:
    583       ALOGE("debuggerd: unexpected request action: %d", request.action);
    584       exit(1);
    585   }
    586 
    587   // At this point, the thread that made the request is blocked in
    588   // a read() call.  If the thread has crashed, then this gives us
    589   // time to PTRACE_ATTACH to it before it has a chance to really fault.
    590   //
    591   // The PTRACE_ATTACH sends a SIGSTOP to the target process, but it
    592   // won't necessarily have stopped by the time ptrace() returns.  (We
    593   // currently assume it does.)  We write to the file descriptor to
    594   // ensure that it can run as soon as we call PTRACE_CONT below.
    595   // See details in bionic/libc/linker/debugger.c, in function
    596   // debugger_signal_handler().
    597 
    598   // Attach to the target process.
    599   if (!ptrace_attach_thread(request.pid, request.tid)) {
    600     ALOGE("debuggerd: ptrace attach failed: %s", strerror(errno));
    601     exit(1);
    602   }
    603 
    604   // DEBUGGER_ACTION_CRASH requests can come from arbitrary processes and the tid field in the
    605   // request is sent from the other side. If an attacker can cause a process to be spawned with the
    606   // pid of their process, they could trick debuggerd into dumping that process by exiting after
    607   // sending the request. Validate the trusted request.uid/gid to defend against this.
    608   if (request.action == DEBUGGER_ACTION_CRASH) {
    609     pid_t pid;
    610     uid_t uid;
    611     gid_t gid;
    612     if (get_process_info(request.tid, &pid, &uid, &gid) != 0) {
    613       ALOGE("debuggerd: failed to get process info for tid '%d'", request.tid);
    614       exit(1);
    615     }
    616 
    617     if (pid != request.pid || uid != request.uid || gid != request.gid) {
    618       ALOGE(
    619         "debuggerd: attached task %d does not match request: "
    620         "expected pid=%d,uid=%d,gid=%d, actual pid=%d,uid=%d,gid=%d",
    621         request.tid, request.pid, request.uid, request.gid, pid, uid, gid);
    622       exit(1);
    623     }
    624   }
    625 
    626   // Don't attach to the sibling threads if we want to attach gdb.
    627   // Supposedly, it makes the process less reliable.
    628   bool attach_gdb = should_attach_gdb(request);
    629   if (attach_gdb) {
    630     // Open all of the input devices we need to listen for VOLUMEDOWN before dropping privileges.
    631     if (init_getevent() != 0) {
    632       ALOGE("debuggerd: failed to initialize input device, not waiting for gdb");
    633       attach_gdb = false;
    634     }
    635 
    636   }
    637 
    638   std::set<pid_t> siblings;
    639   if (!attach_gdb) {
    640     ptrace_siblings(request.pid, request.tid, siblings);
    641   }
    642 
    643   // Generate the backtrace map before dropping privileges.
    644   std::unique_ptr<BacktraceMap> backtrace_map(BacktraceMap::Create(request.pid));
    645 
    646   int amfd = -1;
    647   std::unique_ptr<std::string> amfd_data;
    648   if (request.action == DEBUGGER_ACTION_CRASH) {
    649     // Connect to the activity manager before dropping privileges.
    650     amfd = activity_manager_connect();
    651     amfd_data.reset(new std::string);
    652   }
    653 
    654   bool succeeded = false;
    655 
    656   // Now that we've done everything that requires privileges, we can drop them.
    657   if (!drop_privileges()) {
    658     ALOGE("debuggerd: failed to drop privileges, exiting");
    659     _exit(1);
    660   }
    661 
    662   int crash_signal = SIGKILL;
    663   succeeded = perform_dump(request, fd, tombstone_fd, backtrace_map.get(), siblings,
    664                            &crash_signal, amfd_data.get());
    665   if (succeeded) {
    666     if (request.action == DEBUGGER_ACTION_DUMP_TOMBSTONE) {
    667       if (!tombstone_path.empty()) {
    668         android::base::WriteFully(fd, tombstone_path.c_str(), tombstone_path.length());
    669       }
    670     }
    671   }
    672 
    673   if (attach_gdb) {
    674     // Tell the signal process to send SIGSTOP to the target.
    675     if (!send_signal(request.pid, 0, SIGSTOP)) {
    676       ALOGE("debuggerd: failed to stop process for gdb attach: %s", strerror(errno));
    677       attach_gdb = false;
    678     }
    679   }
    680 
    681   if (!attach_gdb) {
    682     // Tell the Activity Manager about the crashing process. If we are
    683     // waiting for gdb to attach, do not send this or Activity Manager
    684     // might kill the process before anyone can attach.
    685     activity_manager_write(request.pid, crash_signal, amfd, *amfd_data.get());
    686   }
    687 
    688   if (ptrace(PTRACE_DETACH, request.tid, 0, 0) != 0) {
    689     ALOGE("debuggerd: ptrace detach from %d failed: %s", request.tid, strerror(errno));
    690   }
    691 
    692   for (pid_t sibling : siblings) {
    693     ptrace(PTRACE_DETACH, sibling, 0, 0);
    694   }
    695 
    696   // Send the signal back to the process if it crashed and we're not waiting for gdb.
    697   if (!attach_gdb && request.action == DEBUGGER_ACTION_CRASH) {
    698     if (!send_signal(request.pid, request.tid, crash_signal)) {
    699       ALOGE("debuggerd: failed to kill process %d: %s", request.pid, strerror(errno));
    700     }
    701   }
    702 
    703   // Wait for gdb, if requested.
    704   if (attach_gdb) {
    705     wait_for_user_action(request);
    706 
    707     // Now tell the activity manager about this process.
    708     activity_manager_write(request.pid, crash_signal, amfd, *amfd_data.get());
    709 
    710     // Tell the signal process to send SIGCONT to the target.
    711     if (!send_signal(request.pid, 0, SIGCONT)) {
    712       ALOGE("debuggerd: failed to resume process %d: %s", request.pid, strerror(errno));
    713     }
    714 
    715     uninit_getevent();
    716   }
    717 
    718   close(amfd);
    719 
    720   exit(!succeeded);
    721 }
    722 
    723 static void monitor_worker_process(int child_pid, const debugger_request_t& request) {
    724   struct timespec timeout = {.tv_sec = 10, .tv_nsec = 0 };
    725   if (should_attach_gdb(request)) {
    726     // If wait_for_gdb is enabled, set the timeout to something large.
    727     timeout.tv_sec = INT_MAX;
    728   }
    729 
    730   sigset_t signal_set;
    731   sigemptyset(&signal_set);
    732   sigaddset(&signal_set, SIGCHLD);
    733 
    734   bool kill_worker = false;
    735   bool kill_target = false;
    736   bool kill_self = false;
    737 
    738   int status;
    739   siginfo_t siginfo;
    740   int signal = TEMP_FAILURE_RETRY(sigtimedwait(&signal_set, &siginfo, &timeout));
    741   if (signal == SIGCHLD) {
    742     pid_t rc = waitpid(-1, &status, WNOHANG | WUNTRACED);
    743     if (rc != child_pid) {
    744       ALOGE("debuggerd: waitpid returned unexpected pid (%d), committing murder-suicide", rc);
    745 
    746       if (WIFEXITED(status)) {
    747         ALOGW("debuggerd: pid %d exited with status %d", rc, WEXITSTATUS(status));
    748       } else if (WIFSIGNALED(status)) {
    749         ALOGW("debuggerd: pid %d received signal %d", rc, WTERMSIG(status));
    750       } else if (WIFSTOPPED(status)) {
    751         ALOGW("debuggerd: pid %d stopped by signal %d", rc, WSTOPSIG(status));
    752       } else if (WIFCONTINUED(status)) {
    753         ALOGW("debuggerd: pid %d continued", rc);
    754       }
    755 
    756       kill_worker = true;
    757       kill_target = true;
    758       kill_self = true;
    759     } else if (WIFSIGNALED(status)) {
    760       ALOGE("debuggerd: worker process %d terminated due to signal %d", child_pid, WTERMSIG(status));
    761       kill_worker = false;
    762       kill_target = true;
    763     } else if (WIFSTOPPED(status)) {
    764       ALOGE("debuggerd: worker process %d stopped due to signal %d", child_pid, WSTOPSIG(status));
    765       kill_worker = true;
    766       kill_target = true;
    767     }
    768   } else {
    769     ALOGE("debuggerd: worker process %d timed out", child_pid);
    770     kill_worker = true;
    771     kill_target = true;
    772   }
    773 
    774   if (kill_worker) {
    775     // Something bad happened, kill the worker.
    776     if (kill(child_pid, SIGKILL) != 0) {
    777       ALOGE("debuggerd: failed to kill worker process %d: %s", child_pid, strerror(errno));
    778     } else {
    779       waitpid(child_pid, &status, 0);
    780     }
    781   }
    782 
    783   int exit_signal = SIGCONT;
    784   if (kill_target && request.action == DEBUGGER_ACTION_CRASH) {
    785     ALOGE("debuggerd: killing target %d", request.pid);
    786     exit_signal = SIGKILL;
    787   } else {
    788     ALOGW("debuggerd: resuming target %d", request.pid);
    789   }
    790 
    791   if (kill(request.pid, exit_signal) != 0) {
    792     ALOGE("debuggerd: failed to send signal %d to target: %s", exit_signal, strerror(errno));
    793   }
    794 
    795   if (kill_self) {
    796     stop_signal_sender();
    797     _exit(1);
    798   }
    799 }
    800 
    801 static void handle_request(int fd) {
    802   ALOGV("handle_request(%d)\n", fd);
    803 
    804   ScopedFd closer(fd);
    805   debugger_request_t request;
    806   memset(&request, 0, sizeof(request));
    807   int status = read_request(fd, &request);
    808   if (status != 0) {
    809     return;
    810   }
    811 
    812   ALOGW("debuggerd: handling request: pid=%d uid=%d gid=%d tid=%d\n", request.pid, request.uid,
    813         request.gid, request.tid);
    814 
    815 #if defined(__LP64__)
    816   // On 64 bit systems, requests to dump 32 bit and 64 bit tids come
    817   // to the 64 bit debuggerd. If the process is a 32 bit executable,
    818   // redirect the request to the 32 bit debuggerd.
    819   if (is32bit(request.tid)) {
    820     // Only dump backtrace and dump tombstone requests can be redirected.
    821     if (request.action == DEBUGGER_ACTION_DUMP_BACKTRACE ||
    822         request.action == DEBUGGER_ACTION_DUMP_TOMBSTONE) {
    823       redirect_to_32(fd, &request);
    824     } else {
    825       ALOGE("debuggerd: Not allowed to redirect action %d to 32 bit debuggerd\n", request.action);
    826     }
    827     return;
    828   }
    829 #endif
    830 
    831   // Fork a child to handle the rest of the request.
    832   pid_t fork_pid = fork();
    833   if (fork_pid == -1) {
    834     ALOGE("debuggerd: failed to fork: %s\n", strerror(errno));
    835   } else if (fork_pid == 0) {
    836     worker_process(fd, request);
    837   } else {
    838     monitor_worker_process(fork_pid, request);
    839   }
    840 }
    841 
    842 static int do_server() {
    843   // debuggerd crashes can't be reported to debuggerd.
    844   // Reset all of the crash handlers.
    845   signal(SIGABRT, SIG_DFL);
    846   signal(SIGBUS, SIG_DFL);
    847   signal(SIGFPE, SIG_DFL);
    848   signal(SIGILL, SIG_DFL);
    849   signal(SIGSEGV, SIG_DFL);
    850 #ifdef SIGSTKFLT
    851   signal(SIGSTKFLT, SIG_DFL);
    852 #endif
    853   signal(SIGTRAP, SIG_DFL);
    854 
    855   // Ignore failed writes to closed sockets
    856   signal(SIGPIPE, SIG_IGN);
    857 
    858   // Block SIGCHLD so we can sigtimedwait for it.
    859   sigset_t sigchld;
    860   sigemptyset(&sigchld);
    861   sigaddset(&sigchld, SIGCHLD);
    862   sigprocmask(SIG_SETMASK, &sigchld, nullptr);
    863 
    864   int s = socket_local_server(SOCKET_NAME, ANDROID_SOCKET_NAMESPACE_ABSTRACT,
    865                               SOCK_STREAM | SOCK_CLOEXEC);
    866   if (s == -1) return 1;
    867 
    868   // Fork a process that stays root, and listens on a pipe to pause and resume the target.
    869   if (!start_signal_sender()) {
    870     ALOGE("debuggerd: failed to fork signal sender");
    871     return 1;
    872   }
    873 
    874   ALOGI("debuggerd: starting\n");
    875 
    876   for (;;) {
    877     sockaddr_storage ss;
    878     sockaddr* addrp = reinterpret_cast<sockaddr*>(&ss);
    879     socklen_t alen = sizeof(ss);
    880 
    881     ALOGV("waiting for connection\n");
    882     int fd = accept4(s, addrp, &alen, SOCK_CLOEXEC);
    883     if (fd == -1) {
    884       ALOGE("accept failed: %s\n", strerror(errno));
    885       continue;
    886     }
    887 
    888     handle_request(fd);
    889   }
    890   return 0;
    891 }
    892 
    893 static int do_explicit_dump(pid_t tid, bool dump_backtrace) {
    894   fprintf(stdout, "Sending request to dump task %d.\n", tid);
    895 
    896   if (dump_backtrace) {
    897     fflush(stdout);
    898     if (dump_backtrace_to_file(tid, fileno(stdout)) < 0) {
    899       fputs("Error dumping backtrace.\n", stderr);
    900       return 1;
    901     }
    902   } else {
    903     char tombstone_path[PATH_MAX];
    904     if (dump_tombstone(tid, tombstone_path, sizeof(tombstone_path)) < 0) {
    905       fputs("Error dumping tombstone.\n", stderr);
    906       return 1;
    907     }
    908     fprintf(stderr, "Tombstone written to: %s\n", tombstone_path);
    909   }
    910   return 0;
    911 }
    912 
    913 static void usage() {
    914   fputs("Usage: -b [<tid>]\n"
    915         "  -b dump backtrace to console, otherwise dump full tombstone file\n"
    916         "\n"
    917         "If tid specified, sends a request to debuggerd to dump that task.\n"
    918         "Otherwise, starts the debuggerd server.\n", stderr);
    919 }
    920 
    921 int main(int argc, char** argv) {
    922   union selinux_callback cb;
    923   if (argc == 1) {
    924     cb.func_audit = audit_callback;
    925     selinux_set_callback(SELINUX_CB_AUDIT, cb);
    926     cb.func_log = selinux_log_callback;
    927     selinux_set_callback(SELINUX_CB_LOG, cb);
    928     return do_server();
    929   }
    930 
    931   bool dump_backtrace = false;
    932   bool have_tid = false;
    933   pid_t tid = 0;
    934   for (int i = 1; i < argc; i++) {
    935     if (!strcmp(argv[i], "-b")) {
    936       dump_backtrace = true;
    937     } else if (!have_tid) {
    938       tid = atoi(argv[i]);
    939       have_tid = true;
    940     } else {
    941       usage();
    942       return 1;
    943     }
    944   }
    945   if (!have_tid) {
    946     usage();
    947     return 1;
    948   }
    949   return do_explicit_dump(tid, dump_backtrace);
    950 }
    951