1 /* 2 * Copyright (C) 2008 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 <stdio.h> 18 #include <stdlib.h> 19 #include <string.h> 20 #include <unistd.h> 21 #include <fcntl.h> 22 #include <ctype.h> 23 #include <signal.h> 24 #include <sys/wait.h> 25 #include <sys/mount.h> 26 #include <sys/stat.h> 27 #include <sys/poll.h> 28 #include <errno.h> 29 #include <stdarg.h> 30 #include <mtd/mtd-user.h> 31 #include <sys/types.h> 32 #include <sys/socket.h> 33 #include <sys/un.h> 34 #include <sys/personality.h> 35 36 #ifdef HAVE_SELINUX 37 #include <selinux/selinux.h> 38 #include <selinux/label.h> 39 #include <selinux/android.h> 40 #endif 41 42 #include <libgen.h> 43 44 #include <cutils/list.h> 45 #include <cutils/sockets.h> 46 #include <cutils/iosched_policy.h> 47 #include <private/android_filesystem_config.h> 48 #include <termios.h> 49 50 #include <sys/system_properties.h> 51 52 #include "devices.h" 53 #include "init.h" 54 #include "log.h" 55 #include "property_service.h" 56 #include "bootchart.h" 57 #include "signal_handler.h" 58 #include "keychords.h" 59 #include "init_parser.h" 60 #include "util.h" 61 #include "ueventd.h" 62 #include "watchdogd.h" 63 64 #ifdef HAVE_SELINUX 65 struct selabel_handle *sehandle; 66 struct selabel_handle *sehandle_prop; 67 #endif 68 69 static int property_triggers_enabled = 0; 70 71 #if BOOTCHART 72 static int bootchart_count; 73 #endif 74 75 static char console[32]; 76 static char bootmode[32]; 77 static char hardware[32]; 78 static unsigned revision = 0; 79 static char qemu[32]; 80 81 #ifdef HAVE_SELINUX 82 static int selinux_enabled = 1; 83 #endif 84 85 static struct action *cur_action = NULL; 86 static struct command *cur_command = NULL; 87 static struct listnode *command_queue = NULL; 88 89 void notify_service_state(const char *name, const char *state) 90 { 91 char pname[PROP_NAME_MAX]; 92 int len = strlen(name); 93 if ((len + 10) > PROP_NAME_MAX) 94 return; 95 snprintf(pname, sizeof(pname), "init.svc.%s", name); 96 property_set(pname, state); 97 } 98 99 static int have_console; 100 static char *console_name = "/dev/console"; 101 static time_t process_needs_restart; 102 103 static const char *ENV[32]; 104 105 /* add_environment - add "key=value" to the current environment */ 106 int add_environment(const char *key, const char *val) 107 { 108 int n; 109 110 for (n = 0; n < 31; n++) { 111 if (!ENV[n]) { 112 size_t len = strlen(key) + strlen(val) + 2; 113 char *entry = malloc(len); 114 snprintf(entry, len, "%s=%s", key, val); 115 ENV[n] = entry; 116 return 0; 117 } 118 } 119 120 return 1; 121 } 122 123 static void zap_stdio(void) 124 { 125 int fd; 126 fd = open("/dev/null", O_RDWR); 127 dup2(fd, 0); 128 dup2(fd, 1); 129 dup2(fd, 2); 130 close(fd); 131 } 132 133 static void open_console() 134 { 135 int fd; 136 if ((fd = open(console_name, O_RDWR)) < 0) { 137 fd = open("/dev/null", O_RDWR); 138 } 139 ioctl(fd, TIOCSCTTY, 0); 140 dup2(fd, 0); 141 dup2(fd, 1); 142 dup2(fd, 2); 143 close(fd); 144 } 145 146 static void publish_socket(const char *name, int fd) 147 { 148 char key[64] = ANDROID_SOCKET_ENV_PREFIX; 149 char val[64]; 150 151 strlcpy(key + sizeof(ANDROID_SOCKET_ENV_PREFIX) - 1, 152 name, 153 sizeof(key) - sizeof(ANDROID_SOCKET_ENV_PREFIX)); 154 snprintf(val, sizeof(val), "%d", fd); 155 add_environment(key, val); 156 157 /* make sure we don't close-on-exec */ 158 fcntl(fd, F_SETFD, 0); 159 } 160 161 void service_start(struct service *svc, const char *dynamic_args) 162 { 163 struct stat s; 164 pid_t pid; 165 int needs_console; 166 int n; 167 #ifdef HAVE_SELINUX 168 char *scon = NULL; 169 int rc; 170 #endif 171 /* starting a service removes it from the disabled or reset 172 * state and immediately takes it out of the restarting 173 * state if it was in there 174 */ 175 svc->flags &= (~(SVC_DISABLED|SVC_RESTARTING|SVC_RESET)); 176 svc->time_started = 0; 177 178 /* running processes require no additional work -- if 179 * they're in the process of exiting, we've ensured 180 * that they will immediately restart on exit, unless 181 * they are ONESHOT 182 */ 183 if (svc->flags & SVC_RUNNING) { 184 return; 185 } 186 187 needs_console = (svc->flags & SVC_CONSOLE) ? 1 : 0; 188 if (needs_console && (!have_console)) { 189 ERROR("service '%s' requires console\n", svc->name); 190 svc->flags |= SVC_DISABLED; 191 return; 192 } 193 194 if (stat(svc->args[0], &s) != 0) { 195 ERROR("cannot find '%s', disabling '%s'\n", svc->args[0], svc->name); 196 svc->flags |= SVC_DISABLED; 197 return; 198 } 199 200 if ((!(svc->flags & SVC_ONESHOT)) && dynamic_args) { 201 ERROR("service '%s' must be one-shot to use dynamic args, disabling\n", 202 svc->args[0]); 203 svc->flags |= SVC_DISABLED; 204 return; 205 } 206 207 #ifdef HAVE_SELINUX 208 if (is_selinux_enabled() > 0) { 209 char *mycon = NULL, *fcon = NULL; 210 211 INFO("computing context for service '%s'\n", svc->args[0]); 212 rc = getcon(&mycon); 213 if (rc < 0) { 214 ERROR("could not get context while starting '%s'\n", svc->name); 215 return; 216 } 217 218 rc = getfilecon(svc->args[0], &fcon); 219 if (rc < 0) { 220 ERROR("could not get context while starting '%s'\n", svc->name); 221 freecon(mycon); 222 return; 223 } 224 225 rc = security_compute_create(mycon, fcon, string_to_security_class("process"), &scon); 226 freecon(mycon); 227 freecon(fcon); 228 if (rc < 0) { 229 ERROR("could not get context while starting '%s'\n", svc->name); 230 return; 231 } 232 } 233 #endif 234 235 NOTICE("starting '%s'\n", svc->name); 236 237 pid = fork(); 238 239 if (pid == 0) { 240 struct socketinfo *si; 241 struct svcenvinfo *ei; 242 char tmp[32]; 243 int fd, sz; 244 245 umask(077); 246 #ifdef __arm__ 247 /* 248 * b/7188322 - Temporarily revert to the compat memory layout 249 * to avoid breaking third party apps. 250 * 251 * THIS WILL GO AWAY IN A FUTURE ANDROID RELEASE. 252 * 253 * http://git.kernel.org/?p=linux/kernel/git/torvalds/linux-2.6.git;a=commitdiff;h=7dbaa466 254 * changes the kernel mapping from bottom up to top-down. 255 * This breaks some programs which improperly embed 256 * an out of date copy of Android's linker. 257 */ 258 int current = personality(0xffffFFFF); 259 personality(current | ADDR_COMPAT_LAYOUT); 260 #endif 261 if (properties_inited()) { 262 get_property_workspace(&fd, &sz); 263 sprintf(tmp, "%d,%d", dup(fd), sz); 264 add_environment("ANDROID_PROPERTY_WORKSPACE", tmp); 265 } 266 267 for (ei = svc->envvars; ei; ei = ei->next) 268 add_environment(ei->name, ei->value); 269 270 #ifdef HAVE_SELINUX 271 setsockcreatecon(scon); 272 #endif 273 274 for (si = svc->sockets; si; si = si->next) { 275 int socket_type = ( 276 !strcmp(si->type, "stream") ? SOCK_STREAM : 277 (!strcmp(si->type, "dgram") ? SOCK_DGRAM : SOCK_SEQPACKET)); 278 int s = create_socket(si->name, socket_type, 279 si->perm, si->uid, si->gid); 280 if (s >= 0) { 281 publish_socket(si->name, s); 282 } 283 } 284 285 #ifdef HAVE_SELINUX 286 freecon(scon); 287 scon = NULL; 288 setsockcreatecon(NULL); 289 #endif 290 291 if (svc->ioprio_class != IoSchedClass_NONE) { 292 if (android_set_ioprio(getpid(), svc->ioprio_class, svc->ioprio_pri)) { 293 ERROR("Failed to set pid %d ioprio = %d,%d: %s\n", 294 getpid(), svc->ioprio_class, svc->ioprio_pri, strerror(errno)); 295 } 296 } 297 298 if (needs_console) { 299 setsid(); 300 open_console(); 301 } else { 302 zap_stdio(); 303 } 304 305 #if 0 306 for (n = 0; svc->args[n]; n++) { 307 INFO("args[%d] = '%s'\n", n, svc->args[n]); 308 } 309 for (n = 0; ENV[n]; n++) { 310 INFO("env[%d] = '%s'\n", n, ENV[n]); 311 } 312 #endif 313 314 setpgid(0, getpid()); 315 316 /* as requested, set our gid, supplemental gids, and uid */ 317 if (svc->gid) { 318 if (setgid(svc->gid) != 0) { 319 ERROR("setgid failed: %s\n", strerror(errno)); 320 _exit(127); 321 } 322 } 323 if (svc->nr_supp_gids) { 324 if (setgroups(svc->nr_supp_gids, svc->supp_gids) != 0) { 325 ERROR("setgroups failed: %s\n", strerror(errno)); 326 _exit(127); 327 } 328 } 329 if (svc->uid) { 330 if (setuid(svc->uid) != 0) { 331 ERROR("setuid failed: %s\n", strerror(errno)); 332 _exit(127); 333 } 334 } 335 336 #ifdef HAVE_SELINUX 337 if (svc->seclabel) { 338 if (is_selinux_enabled() > 0 && setexeccon(svc->seclabel) < 0) { 339 ERROR("cannot setexeccon('%s'): %s\n", svc->seclabel, strerror(errno)); 340 _exit(127); 341 } 342 } 343 #endif 344 345 if (!dynamic_args) { 346 if (execve(svc->args[0], (char**) svc->args, (char**) ENV) < 0) { 347 ERROR("cannot execve('%s'): %s\n", svc->args[0], strerror(errno)); 348 } 349 } else { 350 char *arg_ptrs[INIT_PARSER_MAXARGS+1]; 351 int arg_idx = svc->nargs; 352 char *tmp = strdup(dynamic_args); 353 char *next = tmp; 354 char *bword; 355 356 /* Copy the static arguments */ 357 memcpy(arg_ptrs, svc->args, (svc->nargs * sizeof(char *))); 358 359 while((bword = strsep(&next, " "))) { 360 arg_ptrs[arg_idx++] = bword; 361 if (arg_idx == INIT_PARSER_MAXARGS) 362 break; 363 } 364 arg_ptrs[arg_idx] = '\0'; 365 execve(svc->args[0], (char**) arg_ptrs, (char**) ENV); 366 } 367 _exit(127); 368 } 369 370 #ifdef HAVE_SELINUX 371 freecon(scon); 372 #endif 373 374 if (pid < 0) { 375 ERROR("failed to start '%s'\n", svc->name); 376 svc->pid = 0; 377 return; 378 } 379 380 svc->time_started = gettime(); 381 svc->pid = pid; 382 svc->flags |= SVC_RUNNING; 383 384 if (properties_inited()) 385 notify_service_state(svc->name, "running"); 386 } 387 388 /* The how field should be either SVC_DISABLED or SVC_RESET */ 389 static void service_stop_or_reset(struct service *svc, int how) 390 { 391 /* we are no longer running, nor should we 392 * attempt to restart 393 */ 394 svc->flags &= (~(SVC_RUNNING|SVC_RESTARTING)); 395 396 if ((how != SVC_DISABLED) && (how != SVC_RESET)) { 397 /* Hrm, an illegal flag. Default to SVC_DISABLED */ 398 how = SVC_DISABLED; 399 } 400 /* if the service has not yet started, prevent 401 * it from auto-starting with its class 402 */ 403 if (how == SVC_RESET) { 404 svc->flags |= (svc->flags & SVC_RC_DISABLED) ? SVC_DISABLED : SVC_RESET; 405 } else { 406 svc->flags |= how; 407 } 408 409 if (svc->pid) { 410 NOTICE("service '%s' is being killed\n", svc->name); 411 kill(-svc->pid, SIGKILL); 412 notify_service_state(svc->name, "stopping"); 413 } else { 414 notify_service_state(svc->name, "stopped"); 415 } 416 } 417 418 void service_reset(struct service *svc) 419 { 420 service_stop_or_reset(svc, SVC_RESET); 421 } 422 423 void service_stop(struct service *svc) 424 { 425 service_stop_or_reset(svc, SVC_DISABLED); 426 } 427 428 void property_changed(const char *name, const char *value) 429 { 430 if (property_triggers_enabled) 431 queue_property_triggers(name, value); 432 } 433 434 static void restart_service_if_needed(struct service *svc) 435 { 436 time_t next_start_time = svc->time_started + 5; 437 438 if (next_start_time <= gettime()) { 439 svc->flags &= (~SVC_RESTARTING); 440 service_start(svc, NULL); 441 return; 442 } 443 444 if ((next_start_time < process_needs_restart) || 445 (process_needs_restart == 0)) { 446 process_needs_restart = next_start_time; 447 } 448 } 449 450 static void restart_processes() 451 { 452 process_needs_restart = 0; 453 service_for_each_flags(SVC_RESTARTING, 454 restart_service_if_needed); 455 } 456 457 static void msg_start(const char *name) 458 { 459 struct service *svc; 460 char *tmp = NULL; 461 char *args = NULL; 462 463 if (!strchr(name, ':')) 464 svc = service_find_by_name(name); 465 else { 466 tmp = strdup(name); 467 args = strchr(tmp, ':'); 468 *args = '\0'; 469 args++; 470 471 svc = service_find_by_name(tmp); 472 } 473 474 if (svc) { 475 service_start(svc, args); 476 } else { 477 ERROR("no such service '%s'\n", name); 478 } 479 if (tmp) 480 free(tmp); 481 } 482 483 static void msg_stop(const char *name) 484 { 485 struct service *svc = service_find_by_name(name); 486 487 if (svc) { 488 service_stop(svc); 489 } else { 490 ERROR("no such service '%s'\n", name); 491 } 492 } 493 494 void handle_control_message(const char *msg, const char *arg) 495 { 496 if (!strcmp(msg,"start")) { 497 msg_start(arg); 498 } else if (!strcmp(msg,"stop")) { 499 msg_stop(arg); 500 } else if (!strcmp(msg,"restart")) { 501 msg_stop(arg); 502 msg_start(arg); 503 } else { 504 ERROR("unknown control msg '%s'\n", msg); 505 } 506 } 507 508 static struct command *get_first_command(struct action *act) 509 { 510 struct listnode *node; 511 node = list_head(&act->commands); 512 if (!node || list_empty(&act->commands)) 513 return NULL; 514 515 return node_to_item(node, struct command, clist); 516 } 517 518 static struct command *get_next_command(struct action *act, struct command *cmd) 519 { 520 struct listnode *node; 521 node = cmd->clist.next; 522 if (!node) 523 return NULL; 524 if (node == &act->commands) 525 return NULL; 526 527 return node_to_item(node, struct command, clist); 528 } 529 530 static int is_last_command(struct action *act, struct command *cmd) 531 { 532 return (list_tail(&act->commands) == &cmd->clist); 533 } 534 535 void execute_one_command(void) 536 { 537 int ret; 538 539 if (!cur_action || !cur_command || is_last_command(cur_action, cur_command)) { 540 cur_action = action_remove_queue_head(); 541 cur_command = NULL; 542 if (!cur_action) 543 return; 544 INFO("processing action %p (%s)\n", cur_action, cur_action->name); 545 cur_command = get_first_command(cur_action); 546 } else { 547 cur_command = get_next_command(cur_action, cur_command); 548 } 549 550 if (!cur_command) 551 return; 552 553 ret = cur_command->func(cur_command->nargs, cur_command->args); 554 INFO("command '%s' r=%d\n", cur_command->args[0], ret); 555 } 556 557 static int wait_for_coldboot_done_action(int nargs, char **args) 558 { 559 int ret; 560 INFO("wait for %s\n", coldboot_done); 561 ret = wait_for_file(coldboot_done, COMMAND_RETRY_TIMEOUT); 562 if (ret) 563 ERROR("Timed out waiting for %s\n", coldboot_done); 564 return ret; 565 } 566 567 static int keychord_init_action(int nargs, char **args) 568 { 569 keychord_init(); 570 return 0; 571 } 572 573 static int console_init_action(int nargs, char **args) 574 { 575 int fd; 576 char tmp[PROP_VALUE_MAX]; 577 578 if (console[0]) { 579 snprintf(tmp, sizeof(tmp), "/dev/%s", console); 580 console_name = strdup(tmp); 581 } 582 583 fd = open(console_name, O_RDWR); 584 if (fd >= 0) 585 have_console = 1; 586 close(fd); 587 588 if( load_565rle_image(INIT_IMAGE_FILE) ) { 589 fd = open("/dev/tty0", O_WRONLY); 590 if (fd >= 0) { 591 const char *msg; 592 msg = "\n" 593 "\n" 594 "\n" 595 "\n" 596 "\n" 597 "\n" 598 "\n" // console is 40 cols x 30 lines 599 "\n" 600 "\n" 601 "\n" 602 "\n" 603 "\n" 604 "\n" 605 "\n" 606 " A N D R O I D "; 607 write(fd, msg, strlen(msg)); 608 close(fd); 609 } 610 } 611 return 0; 612 } 613 614 static void import_kernel_nv(char *name, int for_emulator) 615 { 616 char *value = strchr(name, '='); 617 int name_len = strlen(name); 618 619 if (value == 0) return; 620 *value++ = 0; 621 if (name_len == 0) return; 622 623 #ifdef HAVE_SELINUX 624 if (!strcmp(name,"selinux")) { 625 selinux_enabled = atoi(value); 626 } 627 #endif 628 629 if (for_emulator) { 630 /* in the emulator, export any kernel option with the 631 * ro.kernel. prefix */ 632 char buff[PROP_NAME_MAX]; 633 int len = snprintf( buff, sizeof(buff), "ro.kernel.%s", name ); 634 635 if (len < (int)sizeof(buff)) 636 property_set( buff, value ); 637 return; 638 } 639 640 if (!strcmp(name,"qemu")) { 641 strlcpy(qemu, value, sizeof(qemu)); 642 } else if (!strncmp(name, "androidboot.", 12) && name_len > 12) { 643 const char *boot_prop_name = name + 12; 644 char prop[PROP_NAME_MAX]; 645 int cnt; 646 647 cnt = snprintf(prop, sizeof(prop), "ro.boot.%s", boot_prop_name); 648 if (cnt < PROP_NAME_MAX) 649 property_set(prop, value); 650 } 651 } 652 653 static void export_kernel_boot_props(void) 654 { 655 char tmp[PROP_VALUE_MAX]; 656 const char *pval; 657 unsigned i; 658 struct { 659 const char *src_prop; 660 const char *dest_prop; 661 const char *def_val; 662 } prop_map[] = { 663 { "ro.boot.serialno", "ro.serialno", "", }, 664 { "ro.boot.mode", "ro.bootmode", "unknown", }, 665 { "ro.boot.baseband", "ro.baseband", "unknown", }, 666 { "ro.boot.bootloader", "ro.bootloader", "unknown", }, 667 }; 668 669 for (i = 0; i < ARRAY_SIZE(prop_map); i++) { 670 pval = property_get(prop_map[i].src_prop); 671 property_set(prop_map[i].dest_prop, pval ?: prop_map[i].def_val); 672 } 673 674 pval = property_get("ro.boot.console"); 675 if (pval) 676 strlcpy(console, pval, sizeof(console)); 677 678 /* save a copy for init's usage during boot */ 679 strlcpy(bootmode, property_get("ro.bootmode"), sizeof(bootmode)); 680 681 /* if this was given on kernel command line, override what we read 682 * before (e.g. from /proc/cpuinfo), if anything */ 683 pval = property_get("ro.boot.hardware"); 684 if (pval) 685 strlcpy(hardware, pval, sizeof(hardware)); 686 property_set("ro.hardware", hardware); 687 688 snprintf(tmp, PROP_VALUE_MAX, "%d", revision); 689 property_set("ro.revision", tmp); 690 691 /* TODO: these are obsolete. We should delete them */ 692 if (!strcmp(bootmode,"factory")) 693 property_set("ro.factorytest", "1"); 694 else if (!strcmp(bootmode,"factory2")) 695 property_set("ro.factorytest", "2"); 696 else 697 property_set("ro.factorytest", "0"); 698 } 699 700 static void process_kernel_cmdline(void) 701 { 702 /* don't expose the raw commandline to nonpriv processes */ 703 chmod("/proc/cmdline", 0440); 704 705 /* first pass does the common stuff, and finds if we are in qemu. 706 * second pass is only necessary for qemu to export all kernel params 707 * as props. 708 */ 709 import_kernel_cmdline(0, import_kernel_nv); 710 if (qemu[0]) 711 import_kernel_cmdline(1, import_kernel_nv); 712 713 /* now propogate the info given on command line to internal variables 714 * used by init as well as the current required properties 715 */ 716 export_kernel_boot_props(); 717 } 718 719 static int property_service_init_action(int nargs, char **args) 720 { 721 /* read any property files on system or data and 722 * fire up the property service. This must happen 723 * after the ro.foo properties are set above so 724 * that /data/local.prop cannot interfere with them. 725 */ 726 start_property_service(); 727 return 0; 728 } 729 730 static int signal_init_action(int nargs, char **args) 731 { 732 signal_init(); 733 return 0; 734 } 735 736 static int check_startup_action(int nargs, char **args) 737 { 738 /* make sure we actually have all the pieces we need */ 739 if ((get_property_set_fd() < 0) || 740 (get_signal_fd() < 0)) { 741 ERROR("init startup failure\n"); 742 exit(1); 743 } 744 745 /* signal that we hit this point */ 746 unlink("/dev/.booting"); 747 748 return 0; 749 } 750 751 static int queue_property_triggers_action(int nargs, char **args) 752 { 753 queue_all_property_triggers(); 754 /* enable property triggers */ 755 property_triggers_enabled = 1; 756 return 0; 757 } 758 759 #if BOOTCHART 760 static int bootchart_init_action(int nargs, char **args) 761 { 762 bootchart_count = bootchart_init(); 763 if (bootchart_count < 0) { 764 ERROR("bootcharting init failure\n"); 765 } else if (bootchart_count > 0) { 766 NOTICE("bootcharting started (period=%d ms)\n", bootchart_count*BOOTCHART_POLLING_MS); 767 } else { 768 NOTICE("bootcharting ignored\n"); 769 } 770 771 return 0; 772 } 773 #endif 774 775 #ifdef HAVE_SELINUX 776 static const struct selinux_opt seopts_prop[] = { 777 { SELABEL_OPT_PATH, "/data/system/property_contexts" }, 778 { SELABEL_OPT_PATH, "/property_contexts" }, 779 { 0, NULL } 780 }; 781 782 struct selabel_handle* selinux_android_prop_context_handle(void) 783 { 784 int i = 0; 785 struct selabel_handle* sehandle = NULL; 786 while ((sehandle == NULL) && seopts_prop[i].value) { 787 sehandle = selabel_open(SELABEL_CTX_ANDROID_PROP, &seopts_prop[i], 1); 788 i++; 789 } 790 791 if (!sehandle) { 792 ERROR("SELinux: Could not load property_contexts: %s\n", 793 strerror(errno)); 794 return NULL; 795 } 796 INFO("SELinux: Loaded property contexts from %s\n", seopts_prop[i - 1].value); 797 return sehandle; 798 } 799 800 void selinux_init_all_handles(void) 801 { 802 sehandle = selinux_android_file_context_handle(); 803 sehandle_prop = selinux_android_prop_context_handle(); 804 } 805 806 int selinux_reload_policy(void) 807 { 808 if (!selinux_enabled) { 809 return -1; 810 } 811 812 INFO("SELinux: Attempting to reload policy files\n"); 813 814 if (selinux_android_reload_policy() == -1) { 815 return -1; 816 } 817 818 if (sehandle) 819 selabel_close(sehandle); 820 821 if (sehandle_prop) 822 selabel_close(sehandle_prop); 823 824 selinux_init_all_handles(); 825 return 0; 826 } 827 828 int audit_callback(void *data, security_class_t cls, char *buf, size_t len) 829 { 830 snprintf(buf, len, "property=%s", !data ? "NULL" : (char *)data); 831 return 0; 832 } 833 834 #endif 835 836 int main(int argc, char **argv) 837 { 838 int fd_count = 0; 839 struct pollfd ufds[4]; 840 char *tmpdev; 841 char* debuggable; 842 char tmp[32]; 843 int property_set_fd_init = 0; 844 int signal_fd_init = 0; 845 int keychord_fd_init = 0; 846 bool is_charger = false; 847 848 if (!strcmp(basename(argv[0]), "ueventd")) 849 return ueventd_main(argc, argv); 850 851 if (!strcmp(basename(argv[0]), "watchdogd")) 852 return watchdogd_main(argc, argv); 853 854 /* clear the umask */ 855 umask(0); 856 857 /* Get the basic filesystem setup we need put 858 * together in the initramdisk on / and then we'll 859 * let the rc file figure out the rest. 860 */ 861 mkdir("/dev", 0755); 862 mkdir("/proc", 0755); 863 mkdir("/sys", 0755); 864 865 mount("tmpfs", "/dev", "tmpfs", MS_NOSUID, "mode=0755"); 866 mkdir("/dev/pts", 0755); 867 mkdir("/dev/socket", 0755); 868 mount("devpts", "/dev/pts", "devpts", 0, NULL); 869 mount("proc", "/proc", "proc", 0, NULL); 870 mount("sysfs", "/sys", "sysfs", 0, NULL); 871 872 /* indicate that booting is in progress to background fw loaders, etc */ 873 close(open("/dev/.booting", O_WRONLY | O_CREAT, 0000)); 874 875 /* We must have some place other than / to create the 876 * device nodes for kmsg and null, otherwise we won't 877 * be able to remount / read-only later on. 878 * Now that tmpfs is mounted on /dev, we can actually 879 * talk to the outside world. 880 */ 881 open_devnull_stdio(); 882 klog_init(); 883 property_init(); 884 885 get_hardware_name(hardware, &revision); 886 887 process_kernel_cmdline(); 888 889 #ifdef HAVE_SELINUX 890 union selinux_callback cb; 891 cb.func_log = klog_write; 892 selinux_set_callback(SELINUX_CB_LOG, cb); 893 894 cb.func_audit = audit_callback; 895 selinux_set_callback(SELINUX_CB_AUDIT, cb); 896 897 INFO("loading selinux policy\n"); 898 if (selinux_enabled) { 899 if (selinux_android_load_policy() < 0) { 900 selinux_enabled = 0; 901 INFO("SELinux: Disabled due to failed policy load\n"); 902 } else { 903 selinux_init_all_handles(); 904 } 905 } else { 906 INFO("SELinux: Disabled by command line option\n"); 907 } 908 /* These directories were necessarily created before initial policy load 909 * and therefore need their security context restored to the proper value. 910 * This must happen before /dev is populated by ueventd. 911 */ 912 restorecon("/dev"); 913 restorecon("/dev/socket"); 914 #endif 915 916 is_charger = !strcmp(bootmode, "charger"); 917 918 INFO("property init\n"); 919 if (!is_charger) 920 property_load_boot_defaults(); 921 922 INFO("reading config file\n"); 923 init_parse_config_file("/init.rc"); 924 925 action_for_each_trigger("early-init", action_add_queue_tail); 926 927 queue_builtin_action(wait_for_coldboot_done_action, "wait_for_coldboot_done"); 928 queue_builtin_action(keychord_init_action, "keychord_init"); 929 queue_builtin_action(console_init_action, "console_init"); 930 931 /* execute all the boot actions to get us started */ 932 action_for_each_trigger("init", action_add_queue_tail); 933 934 /* skip mounting filesystems in charger mode */ 935 if (!is_charger) { 936 action_for_each_trigger("early-fs", action_add_queue_tail); 937 action_for_each_trigger("fs", action_add_queue_tail); 938 action_for_each_trigger("post-fs", action_add_queue_tail); 939 action_for_each_trigger("post-fs-data", action_add_queue_tail); 940 } 941 942 queue_builtin_action(property_service_init_action, "property_service_init"); 943 queue_builtin_action(signal_init_action, "signal_init"); 944 queue_builtin_action(check_startup_action, "check_startup"); 945 946 if (is_charger) { 947 action_for_each_trigger("charger", action_add_queue_tail); 948 } else { 949 action_for_each_trigger("early-boot", action_add_queue_tail); 950 action_for_each_trigger("boot", action_add_queue_tail); 951 } 952 953 /* run all property triggers based on current state of the properties */ 954 queue_builtin_action(queue_property_triggers_action, "queue_property_triggers"); 955 956 957 #if BOOTCHART 958 queue_builtin_action(bootchart_init_action, "bootchart_init"); 959 #endif 960 961 for(;;) { 962 int nr, i, timeout = -1; 963 964 execute_one_command(); 965 restart_processes(); 966 967 if (!property_set_fd_init && get_property_set_fd() > 0) { 968 ufds[fd_count].fd = get_property_set_fd(); 969 ufds[fd_count].events = POLLIN; 970 ufds[fd_count].revents = 0; 971 fd_count++; 972 property_set_fd_init = 1; 973 } 974 if (!signal_fd_init && get_signal_fd() > 0) { 975 ufds[fd_count].fd = get_signal_fd(); 976 ufds[fd_count].events = POLLIN; 977 ufds[fd_count].revents = 0; 978 fd_count++; 979 signal_fd_init = 1; 980 } 981 if (!keychord_fd_init && get_keychord_fd() > 0) { 982 ufds[fd_count].fd = get_keychord_fd(); 983 ufds[fd_count].events = POLLIN; 984 ufds[fd_count].revents = 0; 985 fd_count++; 986 keychord_fd_init = 1; 987 } 988 989 if (process_needs_restart) { 990 timeout = (process_needs_restart - gettime()) * 1000; 991 if (timeout < 0) 992 timeout = 0; 993 } 994 995 if (!action_queue_empty() || cur_action) 996 timeout = 0; 997 998 #if BOOTCHART 999 if (bootchart_count > 0) { 1000 if (timeout < 0 || timeout > BOOTCHART_POLLING_MS) 1001 timeout = BOOTCHART_POLLING_MS; 1002 if (bootchart_step() < 0 || --bootchart_count == 0) { 1003 bootchart_finish(); 1004 bootchart_count = 0; 1005 } 1006 } 1007 #endif 1008 1009 nr = poll(ufds, fd_count, timeout); 1010 if (nr <= 0) 1011 continue; 1012 1013 for (i = 0; i < fd_count; i++) { 1014 if (ufds[i].revents == POLLIN) { 1015 if (ufds[i].fd == get_property_set_fd()) 1016 handle_property_set_fd(); 1017 else if (ufds[i].fd == get_keychord_fd()) 1018 handle_keychord(); 1019 else if (ufds[i].fd == get_signal_fd()) 1020 handle_signal(); 1021 } 1022 } 1023 } 1024 1025 return 0; 1026 } 1027