1 1.109 jmcneill /* $NetBSD: init.c,v 1.109 2021/10/11 20:23:25 jmcneill Exp $ */ 2 1.19 cgd 3 1.8 cgd /*- 4 1.15 pk * Copyright (c) 1991, 1993 5 1.15 pk * The Regents of the University of California. All rights reserved. 6 1.1 cgd * 7 1.8 cgd * This code is derived from software contributed to Berkeley by 8 1.8 cgd * Donn Seeley at Berkeley Software Design, Inc. 9 1.8 cgd * 10 1.1 cgd * Redistribution and use in source and binary forms, with or without 11 1.1 cgd * modification, are permitted provided that the following conditions 12 1.1 cgd * are met: 13 1.1 cgd * 1. Redistributions of source code must retain the above copyright 14 1.1 cgd * notice, this list of conditions and the following disclaimer. 15 1.1 cgd * 2. Redistributions in binary form must reproduce the above copyright 16 1.1 cgd * notice, this list of conditions and the following disclaimer in the 17 1.1 cgd * documentation and/or other materials provided with the distribution. 18 1.61 agc * 3. Neither the name of the University nor the names of its contributors 19 1.8 cgd * may be used to endorse or promote products derived from this software 20 1.1 cgd * without specific prior written permission. 21 1.1 cgd * 22 1.8 cgd * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 23 1.1 cgd * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 24 1.1 cgd * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 25 1.8 cgd * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 26 1.1 cgd * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 27 1.1 cgd * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 28 1.1 cgd * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 29 1.1 cgd * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 30 1.1 cgd * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 31 1.1 cgd * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 32 1.1 cgd * SUCH DAMAGE. 33 1.1 cgd */ 34 1.3 cgd 35 1.26 perry #include <sys/cdefs.h> 36 1.8 cgd #ifndef lint 37 1.96 lukem __COPYRIGHT("@(#) Copyright (c) 1991, 1993\ 38 1.96 lukem The Regents of the University of California. All rights reserved."); 39 1.8 cgd #endif /* not lint */ 40 1.8 cgd 41 1.8 cgd #ifndef lint 42 1.19 cgd #if 0 43 1.25 perry static char sccsid[] = "@(#)init.c 8.2 (Berkeley) 4/28/95"; 44 1.19 cgd #else 45 1.109 jmcneill __RCSID("$NetBSD: init.c,v 1.109 2021/10/11 20:23:25 jmcneill Exp $"); 46 1.19 cgd #endif 47 1.8 cgd #endif /* not lint */ 48 1.8 cgd 49 1.8 cgd #include <sys/param.h> 50 1.8 cgd #include <sys/sysctl.h> 51 1.1 cgd #include <sys/wait.h> 52 1.28 christos #include <sys/mman.h> 53 1.28 christos #include <sys/stat.h> 54 1.28 christos #include <sys/mount.h> 55 1.28 christos #include <machine/cpu.h> 56 1.8 cgd 57 1.8 cgd #include <db.h> 58 1.8 cgd #include <errno.h> 59 1.8 cgd #include <fcntl.h> 60 1.8 cgd #include <signal.h> 61 1.8 cgd #include <stdio.h> 62 1.8 cgd #include <stdlib.h> 63 1.8 cgd #include <string.h> 64 1.8 cgd #include <syslog.h> 65 1.8 cgd #include <time.h> 66 1.1 cgd #include <ttyent.h> 67 1.1 cgd #include <unistd.h> 68 1.22 jtc #include <util.h> 69 1.28 christos #include <paths.h> 70 1.28 christos #include <err.h> 71 1.104 christos #ifdef SUPPORT_UTMP 72 1.104 christos #include <utmp.h> 73 1.104 christos #endif 74 1.104 christos #ifdef SUPPORT_UTMPX 75 1.104 christos #include <utmpx.h> 76 1.104 christos #endif 77 1.1 cgd 78 1.8 cgd #include <stdarg.h> 79 1.8 cgd 80 1.8 cgd #ifdef SECURE 81 1.5 cgd #include <pwd.h> 82 1.5 cgd #endif 83 1.5 cgd 84 1.8 cgd #include "pathnames.h" 85 1.8 cgd 86 1.62 dsl #define XSTR(x) #x 87 1.62 dsl #define STR(x) XSTR(x) 88 1.62 dsl 89 1.8 cgd /* 90 1.8 cgd * Sleep times; used to prevent thrashing. 91 1.8 cgd */ 92 1.8 cgd #define GETTY_SPACING 5 /* N secs minimum getty spacing */ 93 1.8 cgd #define GETTY_SLEEP 30 /* sleep N secs after spacing problem */ 94 1.109 jmcneill #define GETTY_NSPACE 5 /* N retries before spacing problem */ 95 1.8 cgd #define WINDOW_WAIT 3 /* wait N secs after starting window */ 96 1.8 cgd #define STALL_TIMEOUT 30 /* wait N secs after warning */ 97 1.8 cgd #define DEATH_WATCH 10 /* wait N secs for procs to die */ 98 1.8 cgd 99 1.101 joerg static const struct timespec dtrtime = {.tv_sec = 0, .tv_nsec = 250000}; 100 1.56 lukem 101 1.56 lukem #if defined(RESCUEDIR) 102 1.56 lukem #define INIT_BSHELL RESCUEDIR "/sh" 103 1.56 lukem #define INIT_MOUNT_MFS RESCUEDIR "/mount_mfs" 104 1.56 lukem #define INIT_PATH RESCUEDIR ":" _PATH_STDPATH 105 1.56 lukem #else 106 1.56 lukem #define INIT_BSHELL _PATH_BSHELL 107 1.56 lukem #define INIT_MOUNT_MFS "/sbin/mount_mfs" 108 1.56 lukem #define INIT_PATH _PATH_STDPATH 109 1.52 lukem #endif 110 1.52 lukem 111 1.101 joerg static void handle(sig_t, ...); 112 1.101 joerg static void delset(sigset_t *, ...); 113 1.27 perry 114 1.107 christos static void stall(const char *, ...) __sysloglike(1, 2); 115 1.107 christos static void warning(const char *, ...) __sysloglike(1, 2); 116 1.107 christos static void emergency(const char *, ...) __sysloglike(1, 2); 117 1.101 joerg __dead static void disaster(int); 118 1.101 joerg static void badsys(int); 119 1.8 cgd 120 1.8 cgd /* 121 1.8 cgd * We really need a recursive typedef... 122 1.8 cgd * The following at least guarantees that the return type of (*state_t)() 123 1.8 cgd * is sufficiently wide to hold a function pointer. 124 1.8 cgd */ 125 1.39 wiz typedef long (*state_func_t)(void); 126 1.39 wiz typedef state_func_t (*state_t)(void); 127 1.8 cgd 128 1.77 christos #define DEATH 'd' 129 1.77 christos #define SINGLE_USER 's' 130 1.77 christos #define RUNCOM 'r' 131 1.77 christos #define READ_TTYS 't' 132 1.77 christos #define MULTI_USER 'm' 133 1.77 christos #define CLEAN_TTYS 'T' 134 1.77 christos #define CATATONIA 'c' 135 1.77 christos 136 1.101 joerg static state_func_t single_user(void); 137 1.102 christos #ifndef LETS_GET_SMALL 138 1.101 joerg static state_func_t runcom(void); 139 1.101 joerg static state_func_t read_ttys(void); 140 1.101 joerg static state_func_t multi_user(void); 141 1.101 joerg static state_func_t clean_ttys(void); 142 1.101 joerg static state_func_t catatonia(void); 143 1.101 joerg static state_func_t death(void); 144 1.102 christos #endif 145 1.8 cgd 146 1.101 joerg static enum { AUTOBOOT, FASTBOOT } runcom_mode = AUTOBOOT; 147 1.8 cgd 148 1.101 joerg static void transition(state_t); 149 1.101 joerg static void setctty(const char *); 150 1.8 cgd 151 1.8 cgd typedef struct init_session { 152 1.8 cgd int se_index; /* index of entry in ttys file */ 153 1.8 cgd pid_t se_process; /* controlling process */ 154 1.77 christos struct timeval se_started; /* used to avoid thrashing */ 155 1.109 jmcneill int se_nspace; /* spacing count */ 156 1.8 cgd int se_flags; /* status of session */ 157 1.8 cgd #define SE_SHUTDOWN 0x1 /* session won't be restarted */ 158 1.21 mycroft #define SE_PRESENT 0x2 /* session is in /etc/ttys */ 159 1.8 cgd char *se_device; /* filename of port */ 160 1.8 cgd char *se_getty; /* what to run on that port */ 161 1.8 cgd char **se_getty_argv; /* pre-parsed argument array */ 162 1.8 cgd char *se_window; /* window system (started only once) */ 163 1.8 cgd char **se_window_argv; /* pre-parsed argument array */ 164 1.8 cgd struct init_session *se_prev; 165 1.8 cgd struct init_session *se_next; 166 1.8 cgd } session_t; 167 1.8 cgd 168 1.101 joerg static void collect_child(pid_t, int); 169 1.102 christos static int clang; 170 1.101 joerg static void transition_handler(int); 171 1.101 joerg static void alrm_handler(int); 172 1.101 joerg static int has_securelevel(void); 173 1.102 christos static int securelevel_present; 174 1.102 christos 175 1.102 christos #ifndef LETS_GET_SMALL 176 1.102 christos static int do_setttyent(void); 177 1.102 christos static void start_window_system(session_t *); 178 1.102 christos static char **construct_argv(char *); 179 1.102 christos static int setupargv(session_t *, struct ttyent *); 180 1.102 christos static pid_t start_getty(session_t *); 181 1.102 christos static void free_session(session_t *); 182 1.102 christos static session_t *new_session(session_t *, int, struct ttyent *); 183 1.102 christos static session_t *sessions; 184 1.101 joerg static void setsecuritylevel(int); 185 1.101 joerg static int getsecuritylevel(void); 186 1.101 joerg static int start_session_db(void); 187 1.101 joerg static void add_session(session_t *); 188 1.101 joerg static void del_session(session_t *); 189 1.101 joerg static session_t *find_session(pid_t); 190 1.101 joerg static DB *session_db; 191 1.101 joerg static state_t requested_transition = runcom; 192 1.73 salo 193 1.101 joerg static void clear_session_logs(session_t *, int); 194 1.101 joerg static state_func_t runetcrc(int); 195 1.77 christos #ifdef SUPPORT_UTMPX 196 1.77 christos static struct timeval boot_time; 197 1.101 joerg static state_t current_state = death; 198 1.77 christos static void session_utmpx(const session_t *, int); 199 1.77 christos static void make_utmpx(const char *, const char *, int, pid_t, 200 1.77 christos const struct timeval *, int); 201 1.77 christos static char get_runlevel(const state_t); 202 1.77 christos static void utmpx_set_runlevel(char, char); 203 1.77 christos #endif 204 1.73 salo 205 1.73 salo #ifdef CHROOT 206 1.101 joerg static int did_multiuser_chroot = 0; 207 1.101 joerg static char rootdir[PATH_MAX]; 208 1.101 joerg static int shouldchroot(void); 209 1.101 joerg static int createsysctlnode(void); 210 1.73 salo #endif /* CHROOT */ 211 1.73 salo 212 1.73 salo #else /* LETS_GET_SMALL */ 213 1.101 joerg static state_t requested_transition = single_user; 214 1.73 salo #endif /* !LETS_GET_SMALL */ 215 1.73 salo 216 1.45 abs #ifdef MFS_DEV_IF_NO_CONSOLE 217 1.58 christos 218 1.45 abs static int mfs_dev(void); 219 1.58 christos 220 1.28 christos #endif 221 1.28 christos 222 1.8 cgd /* 223 1.8 cgd * The mother of all processes. 224 1.8 cgd */ 225 1.8 cgd int 226 1.43 lukem main(int argc, char **argv) 227 1.8 cgd { 228 1.8 cgd struct sigaction sa; 229 1.8 cgd sigset_t mask; 230 1.37 soren #ifndef LETS_GET_SMALL 231 1.37 soren int c; 232 1.8 cgd 233 1.77 christos #ifdef SUPPORT_UTMPX 234 1.77 christos (void)gettimeofday(&boot_time, NULL); 235 1.77 christos #endif /* SUPPORT_UTMPX */ 236 1.77 christos 237 1.8 cgd /* Dispose of random users. */ 238 1.8 cgd if (getuid() != 0) { 239 1.28 christos errno = EPERM; 240 1.87 cbiere err(1, NULL); 241 1.8 cgd } 242 1.8 cgd 243 1.8 cgd /* System V users like to reexec init. */ 244 1.28 christos if (getpid() != 1) 245 1.87 cbiere errx(1, "already running"); 246 1.28 christos #endif 247 1.8 cgd 248 1.8 cgd /* 249 1.8 cgd * Create an initial session. 250 1.8 cgd */ 251 1.8 cgd if (setsid() < 0) 252 1.28 christos warn("initial setsid() failed"); 253 1.12 cgd 254 1.12 cgd /* 255 1.12 cgd * Establish an initial user so that programs running 256 1.12 cgd * single user do not freak out and die (like passwd). 257 1.12 cgd */ 258 1.12 cgd if (setlogin("root") < 0) 259 1.28 christos warn("setlogin() failed"); 260 1.28 christos 261 1.28 christos 262 1.45 abs #ifdef MFS_DEV_IF_NO_CONSOLE 263 1.45 abs if (mfs_dev() == -1) 264 1.45 abs requested_transition = single_user; 265 1.28 christos #endif 266 1.28 christos 267 1.28 christos #ifndef LETS_GET_SMALL 268 1.28 christos /* 269 1.28 christos * Note that this does NOT open a file... 270 1.28 christos * Does 'init' deserve its own facility number? 271 1.28 christos */ 272 1.42 lukem openlog("init", LOG_CONS, LOG_AUTH); 273 1.28 christos #endif /* LETS_GET_SMALL */ 274 1.28 christos 275 1.8 cgd 276 1.13 cgd #ifndef LETS_GET_SMALL 277 1.8 cgd /* 278 1.8 cgd * This code assumes that we always get arguments through flags, 279 1.8 cgd * never through bits set in some random machine register. 280 1.8 cgd */ 281 1.8 cgd while ((c = getopt(argc, argv, "sf")) != -1) 282 1.8 cgd switch (c) { 283 1.8 cgd case 's': 284 1.8 cgd requested_transition = single_user; 285 1.8 cgd break; 286 1.8 cgd case 'f': 287 1.8 cgd runcom_mode = FASTBOOT; 288 1.8 cgd break; 289 1.8 cgd default: 290 1.80 christos warning("unrecognized flag `%c'", c); 291 1.8 cgd break; 292 1.8 cgd } 293 1.8 cgd 294 1.8 cgd if (optind != argc) 295 1.8 cgd warning("ignoring excess arguments"); 296 1.13 cgd #else /* LETS_GET_SMALL */ 297 1.13 cgd requested_transition = single_user; 298 1.13 cgd #endif /* LETS_GET_SMALL */ 299 1.8 cgd 300 1.8 cgd /* 301 1.8 cgd * We catch or block signals rather than ignore them, 302 1.8 cgd * so that they get reset on exec. 303 1.8 cgd */ 304 1.8 cgd handle(badsys, SIGSYS, 0); 305 1.8 cgd handle(disaster, SIGABRT, SIGFPE, SIGILL, SIGSEGV, 306 1.8 cgd SIGBUS, SIGXCPU, SIGXFSZ, 0); 307 1.8 cgd handle(transition_handler, SIGHUP, SIGTERM, SIGTSTP, 0); 308 1.8 cgd handle(alrm_handler, SIGALRM, 0); 309 1.47 christos (void)sigfillset(&mask); 310 1.8 cgd delset(&mask, SIGABRT, SIGFPE, SIGILL, SIGSEGV, SIGBUS, SIGSYS, 311 1.47 christos SIGXCPU, SIGXFSZ, SIGHUP, SIGTERM, SIGTSTP, SIGALRM, 0); 312 1.47 christos (void)sigprocmask(SIG_SETMASK, &mask, NULL); 313 1.47 christos (void)sigemptyset(&sa.sa_mask); 314 1.8 cgd sa.sa_flags = 0; 315 1.8 cgd sa.sa_handler = SIG_IGN; 316 1.47 christos (void)sigaction(SIGTTIN, &sa, NULL); 317 1.47 christos (void)sigaction(SIGTTOU, &sa, NULL); 318 1.8 cgd 319 1.8 cgd /* 320 1.8 cgd * Paranoia. 321 1.8 cgd */ 322 1.47 christos (void)close(0); 323 1.47 christos (void)close(1); 324 1.47 christos (void)close(2); 325 1.8 cgd 326 1.73 salo #if !defined(LETS_GET_SMALL) && defined(CHROOT) 327 1.73 salo /* Create "init.root" sysctl node. */ 328 1.84 christos (void)createsysctlnode(); 329 1.73 salo #endif /* !LETS_GET_SMALL && CHROOT*/ 330 1.73 salo 331 1.8 cgd /* 332 1.100 elad * Securelevel might not be supported by the kernel. Query for it, and 333 1.100 elad * set a variable indicating whether we should attempt anything with it 334 1.100 elad * or not. 335 1.100 elad */ 336 1.100 elad securelevel_present = has_securelevel(); 337 1.100 elad 338 1.100 elad /* 339 1.8 cgd * Start the state machine. 340 1.8 cgd */ 341 1.8 cgd transition(requested_transition); 342 1.8 cgd 343 1.8 cgd /* 344 1.8 cgd * Should never reach here. 345 1.8 cgd */ 346 1.8 cgd return 1; 347 1.8 cgd } 348 1.8 cgd 349 1.8 cgd /* 350 1.8 cgd * Associate a function with a signal handler. 351 1.8 cgd */ 352 1.101 joerg static void 353 1.8 cgd handle(sig_t handler, ...) 354 1.8 cgd { 355 1.8 cgd int sig; 356 1.8 cgd struct sigaction sa; 357 1.33 thorpej sigset_t mask_everything; 358 1.8 cgd va_list ap; 359 1.8 cgd 360 1.8 cgd va_start(ap, handler); 361 1.7 cgd 362 1.8 cgd sa.sa_handler = handler; 363 1.47 christos (void)sigfillset(&mask_everything); 364 1.1 cgd 365 1.27 perry while ((sig = va_arg(ap, int)) != 0) { 366 1.8 cgd sa.sa_mask = mask_everything; 367 1.8 cgd /* XXX SA_RESTART? */ 368 1.8 cgd sa.sa_flags = sig == SIGCHLD ? SA_NOCLDSTOP : 0; 369 1.47 christos (void)sigaction(sig, &sa, NULL); 370 1.8 cgd } 371 1.8 cgd va_end(ap); 372 1.8 cgd } 373 1.1 cgd 374 1.8 cgd /* 375 1.8 cgd * Delete a set of signals from a mask. 376 1.8 cgd */ 377 1.101 joerg static void 378 1.8 cgd delset(sigset_t *maskp, ...) 379 1.8 cgd { 380 1.8 cgd int sig; 381 1.8 cgd va_list ap; 382 1.8 cgd 383 1.8 cgd va_start(ap, maskp); 384 1.1 cgd 385 1.27 perry while ((sig = va_arg(ap, int)) != 0) 386 1.47 christos (void)sigdelset(maskp, sig); 387 1.8 cgd va_end(ap); 388 1.8 cgd } 389 1.8 cgd 390 1.91 dsl #if 0 /* Enable to get error messages from init ! */ 391 1.91 dsl #define vsyslog(level, fmt, ap) print_console(level, fmt, ap) 392 1.91 dsl #define closelog() 393 1.91 dsl 394 1.91 dsl static void 395 1.91 dsl print_console(int level, const char *message, va_list ap) 396 1.91 dsl { 397 1.91 dsl /* 398 1.91 dsl * XXX: syslog seems to just plain not work in console-only 399 1.91 dsl * XXX: situation... that should be fixed. Let's leave this 400 1.91 dsl * XXX: note + code here in case someone gets in trouble and 401 1.91 dsl * XXX: wants to debug. -- Jachym Holecek <freza (at) liberouter.org> 402 1.91 dsl */ 403 1.91 dsl char errbuf[1024]; 404 1.91 dsl int fd, len; 405 1.91 dsl 406 1.91 dsl /* We can't do anything on errors, anyway... */ 407 1.91 dsl fd = open(_PATH_CONSOLE, O_WRONLY); 408 1.91 dsl if (fd == -1) 409 1.91 dsl return ; 410 1.91 dsl 411 1.91 dsl /* %m will get lost... */ 412 1.91 dsl len = vsnprintf(errbuf, sizeof(errbuf), message, ap); 413 1.91 dsl (void)write(fd, (void *)errbuf, len); 414 1.91 dsl (void)close(fd); 415 1.91 dsl } 416 1.91 dsl #endif 417 1.91 dsl 418 1.8 cgd /* 419 1.8 cgd * Log a message and sleep for a while (to give someone an opportunity 420 1.8 cgd * to read it and to save log or hardcopy output if the problem is chronic). 421 1.8 cgd * NB: should send a message to the session logger to avoid blocking. 422 1.8 cgd */ 423 1.101 joerg static void 424 1.28 christos stall(const char *message, ...) 425 1.8 cgd { 426 1.8 cgd va_list ap; 427 1.8 cgd 428 1.8 cgd va_start(ap, message); 429 1.8 cgd vsyslog(LOG_ALERT, message, ap); 430 1.8 cgd va_end(ap); 431 1.24 mycroft closelog(); 432 1.47 christos (void)sleep(STALL_TIMEOUT); 433 1.8 cgd } 434 1.8 cgd 435 1.8 cgd /* 436 1.8 cgd * Like stall(), but doesn't sleep. 437 1.8 cgd * If cpp had variadic macros, the two functions could be #defines for another. 438 1.8 cgd * NB: should send a message to the session logger to avoid blocking. 439 1.8 cgd */ 440 1.101 joerg static void 441 1.28 christos warning(const char *message, ...) 442 1.8 cgd { 443 1.8 cgd va_list ap; 444 1.8 cgd 445 1.8 cgd va_start(ap, message); 446 1.8 cgd vsyslog(LOG_ALERT, message, ap); 447 1.8 cgd va_end(ap); 448 1.24 mycroft closelog(); 449 1.8 cgd } 450 1.1 cgd 451 1.8 cgd /* 452 1.8 cgd * Log an emergency message. 453 1.8 cgd * NB: should send a message to the session logger to avoid blocking. 454 1.8 cgd */ 455 1.101 joerg static void 456 1.28 christos emergency(const char *message, ...) 457 1.8 cgd { 458 1.8 cgd va_list ap; 459 1.8 cgd 460 1.8 cgd va_start(ap, message); 461 1.8 cgd vsyslog(LOG_EMERG, message, ap); 462 1.8 cgd va_end(ap); 463 1.24 mycroft closelog(); 464 1.8 cgd } 465 1.1 cgd 466 1.8 cgd /* 467 1.8 cgd * Catch a SIGSYS signal. 468 1.8 cgd * 469 1.8 cgd * These may arise if a system does not support sysctl. 470 1.8 cgd * We tolerate up to 25 of these, then throw in the towel. 471 1.8 cgd */ 472 1.101 joerg static void 473 1.39 wiz badsys(int sig) 474 1.1 cgd { 475 1.8 cgd static int badcount = 0; 476 1.8 cgd 477 1.8 cgd if (badcount++ < 25) 478 1.8 cgd return; 479 1.8 cgd disaster(sig); 480 1.1 cgd } 481 1.1 cgd 482 1.8 cgd /* 483 1.8 cgd * Catch an unexpected signal. 484 1.8 cgd */ 485 1.101 joerg static void 486 1.39 wiz disaster(int sig) 487 1.8 cgd { 488 1.43 lukem 489 1.20 jtc emergency("fatal signal: %s", strsignal(sig)); 490 1.47 christos (void)sleep(STALL_TIMEOUT); 491 1.8 cgd _exit(sig); /* reboot */ 492 1.8 cgd } 493 1.8 cgd 494 1.8 cgd /* 495 1.100 elad * Check if securelevel is present. 496 1.100 elad */ 497 1.101 joerg static int 498 1.100 elad has_securelevel(void) 499 1.100 elad { 500 1.100 elad #ifdef KERN_SECURELVL 501 1.100 elad int name[2], curlevel; 502 1.100 elad size_t len; 503 1.100 elad 504 1.100 elad name[0] = CTL_KERN; 505 1.100 elad name[1] = KERN_SECURELVL; 506 1.100 elad len = sizeof curlevel; 507 1.100 elad if (sysctl(name, 2, &curlevel, &len, NULL, 0) == -1) { 508 1.100 elad /* If it doesn't exist, it's okay. */ 509 1.100 elad if (errno == ENOENT) 510 1.100 elad return 0; 511 1.100 elad } 512 1.100 elad return 1; 513 1.100 elad #else 514 1.100 elad return 0; 515 1.100 elad #endif 516 1.100 elad } 517 1.100 elad 518 1.100 elad /* 519 1.8 cgd * Get the security level of the kernel. 520 1.8 cgd */ 521 1.101 joerg static int 522 1.39 wiz getsecuritylevel(void) 523 1.1 cgd { 524 1.8 cgd #ifdef KERN_SECURELVL 525 1.8 cgd int name[2], curlevel; 526 1.8 cgd size_t len; 527 1.8 cgd 528 1.100 elad if (!securelevel_present) 529 1.100 elad return -1; 530 1.100 elad 531 1.8 cgd name[0] = CTL_KERN; 532 1.8 cgd name[1] = KERN_SECURELVL; 533 1.8 cgd len = sizeof curlevel; 534 1.8 cgd if (sysctl(name, 2, &curlevel, &len, NULL, 0) == -1) { 535 1.47 christos emergency("cannot get kernel security level: %m"); 536 1.93 dyoung return -1; 537 1.8 cgd } 538 1.93 dyoung return curlevel; 539 1.8 cgd #else 540 1.93 dyoung return -1; 541 1.8 cgd #endif 542 1.1 cgd } 543 1.1 cgd 544 1.8 cgd /* 545 1.8 cgd * Set the security level of the kernel. 546 1.8 cgd */ 547 1.101 joerg static void 548 1.39 wiz setsecuritylevel(int newlevel) 549 1.1 cgd { 550 1.8 cgd #ifdef KERN_SECURELVL 551 1.8 cgd int name[2], curlevel; 552 1.1 cgd 553 1.100 elad if (!securelevel_present) 554 1.100 elad return; 555 1.100 elad 556 1.8 cgd curlevel = getsecuritylevel(); 557 1.8 cgd if (newlevel == curlevel) 558 1.8 cgd return; 559 1.8 cgd name[0] = CTL_KERN; 560 1.8 cgd name[1] = KERN_SECURELVL; 561 1.8 cgd if (sysctl(name, 2, NULL, NULL, &newlevel, sizeof newlevel) == -1) { 562 1.80 christos emergency("cannot change kernel security level from" 563 1.47 christos " %d to %d: %m", curlevel, newlevel); 564 1.8 cgd return; 565 1.1 cgd } 566 1.8 cgd #ifdef SECURE 567 1.8 cgd warning("kernel security level changed from %d to %d", 568 1.8 cgd curlevel, newlevel); 569 1.8 cgd #endif 570 1.8 cgd #endif 571 1.1 cgd } 572 1.1 cgd 573 1.8 cgd /* 574 1.8 cgd * Change states in the finite state machine. 575 1.8 cgd * The initial state is passed as an argument. 576 1.8 cgd */ 577 1.101 joerg static void 578 1.39 wiz transition(state_t s) 579 1.1 cgd { 580 1.43 lukem 581 1.55 christos if (s == NULL) 582 1.55 christos return; 583 1.77 christos for (;;) { 584 1.78 he #ifdef SUPPORT_UTMPX 585 1.77 christos #ifndef LETS_GET_SMALL 586 1.77 christos utmpx_set_runlevel(get_runlevel(current_state), 587 1.77 christos get_runlevel(s)); 588 1.79 he current_state = s; 589 1.77 christos #endif 590 1.77 christos #endif 591 1.47 christos s = (state_t)(*s)(); 592 1.77 christos } 593 1.1 cgd } 594 1.1 cgd 595 1.64 christos #ifndef LETS_GET_SMALL 596 1.8 cgd /* 597 1.8 cgd * Close out the accounting files for a login session. 598 1.8 cgd * NB: should send a message to the session logger to avoid blocking. 599 1.8 cgd */ 600 1.101 joerg static void 601 1.50 christos clear_session_logs(session_t *sp, int status) 602 1.8 cgd { 603 1.83 isaki #if defined(SUPPORT_UTMP) || defined(SUPPORT_UTMPX) 604 1.8 cgd char *line = sp->se_device + sizeof(_PATH_DEV) - 1; 605 1.83 isaki #endif 606 1.55 christos 607 1.50 christos #ifdef SUPPORT_UTMPX 608 1.51 christos if (logoutx(line, status, DEAD_PROCESS)) 609 1.50 christos logwtmpx(line, "", "", status, DEAD_PROCESS); 610 1.50 christos #endif 611 1.50 christos #ifdef SUPPORT_UTMP 612 1.8 cgd if (logout(line)) 613 1.8 cgd logwtmp(line, "", ""); 614 1.50 christos #endif 615 1.8 cgd } 616 1.64 christos #endif 617 1.1 cgd 618 1.8 cgd /* 619 1.8 cgd * Start a session and allocate a controlling terminal. 620 1.8 cgd * Only called by children of init after forking. 621 1.8 cgd */ 622 1.101 joerg static void 623 1.40 wiz setctty(const char *name) 624 1.1 cgd { 625 1.8 cgd int fd; 626 1.1 cgd 627 1.84 christos (void)revoke(name); 628 1.84 christos (void)nanosleep(&dtrtime, NULL); /* leave DTR low for a bit */ 629 1.8 cgd if ((fd = open(name, O_RDWR)) == -1) { 630 1.8 cgd stall("can't open %s: %m", name); 631 1.87 cbiere _exit(1); 632 1.7 cgd } 633 1.8 cgd if (login_tty(fd) == -1) { 634 1.8 cgd stall("can't get %s for controlling terminal: %m", name); 635 1.91 dsl _exit(2); 636 1.8 cgd } 637 1.8 cgd } 638 1.8 cgd 639 1.8 cgd /* 640 1.8 cgd * Bring the system up single user. 641 1.8 cgd */ 642 1.101 joerg static state_func_t 643 1.39 wiz single_user(void) 644 1.8 cgd { 645 1.8 cgd pid_t pid, wpid; 646 1.8 cgd int status; 647 1.34 tls int from_securitylevel; 648 1.8 cgd sigset_t mask; 649 1.55 christos struct sigaction sa, satstp, sahup; 650 1.31 perry #ifdef ALTSHELL 651 1.56 lukem const char *shell = INIT_BSHELL; 652 1.31 perry #endif 653 1.70 christos const char *argv[2]; 654 1.8 cgd #ifdef SECURE 655 1.8 cgd struct ttyent *typ; 656 1.10 cgd struct passwd *pp; 657 1.8 cgd char *clear, *password; 658 1.7 cgd #endif 659 1.26 perry #ifdef ALTSHELL 660 1.26 perry char altshell[128]; 661 1.26 perry #endif /* ALTSHELL */ 662 1.7 cgd 663 1.73 salo #if !defined(LETS_GET_SMALL) && defined(CHROOT) 664 1.73 salo /* Clear previous idea, just in case. */ 665 1.73 salo did_multiuser_chroot = 0; 666 1.73 salo #endif /* !LETS_GET_SMALL && CHROOT */ 667 1.73 salo 668 1.8 cgd /* 669 1.8 cgd * If the kernel is in secure mode, downgrade it to insecure mode. 670 1.8 cgd */ 671 1.34 tls from_securitylevel = getsecuritylevel(); 672 1.34 tls if (from_securitylevel > 0) 673 1.8 cgd setsecuritylevel(0); 674 1.8 cgd 675 1.55 christos (void)sigemptyset(&sa.sa_mask); 676 1.55 christos sa.sa_flags = 0; 677 1.55 christos sa.sa_handler = SIG_IGN; 678 1.55 christos (void)sigaction(SIGTSTP, &sa, &satstp); 679 1.55 christos (void)sigaction(SIGHUP, &sa, &sahup); 680 1.8 cgd if ((pid = fork()) == 0) { 681 1.8 cgd /* 682 1.8 cgd * Start the single user session. 683 1.8 cgd */ 684 1.63 dsl if (access(_PATH_CONSTTY, F_OK) == 0) 685 1.63 dsl setctty(_PATH_CONSTTY); 686 1.63 dsl else 687 1.63 dsl setctty(_PATH_CONSOLE); 688 1.8 cgd 689 1.8 cgd #ifdef SECURE 690 1.8 cgd /* 691 1.8 cgd * Check the root password. 692 1.8 cgd * We don't care if the console is 'on' by default; 693 1.8 cgd * it's the only tty that can be 'off' and 'secure'. 694 1.8 cgd */ 695 1.10 cgd typ = getttynam("console"); 696 1.10 cgd pp = getpwnam("root"); 697 1.34 tls if (typ && (from_securitylevel >=2 || (typ->ty_status 698 1.34 tls & TTY_SECURE) == 0) && pp && *pp->pw_passwd != '\0') { 699 1.47 christos (void)fprintf(stderr, 700 1.26 perry "Enter root password, or ^D to go multi-user\n"); 701 1.8 cgd for (;;) { 702 1.8 cgd clear = getpass("Password:"); 703 1.8 cgd if (clear == 0 || *clear == '\0') 704 1.87 cbiere _exit(0); 705 1.8 cgd password = crypt(clear, pp->pw_passwd); 706 1.47 christos (void)memset(clear, 0, _PASSWORD_LEN); 707 1.8 cgd if (strcmp(password, pp->pw_passwd) == 0) 708 1.8 cgd break; 709 1.80 christos warning("single-user login failed"); 710 1.1 cgd } 711 1.8 cgd } 712 1.84 christos (void)endttyent(); 713 1.10 cgd endpwent(); 714 1.9 cgd #endif /* SECURE */ 715 1.1 cgd 716 1.26 perry #ifdef ALTSHELL 717 1.47 christos (void)fprintf(stderr, 718 1.52 lukem "Enter pathname of shell or RETURN for %s: ", shell); 719 1.38 wiz if (fgets(altshell, sizeof(altshell), stdin) == NULL) { 720 1.38 wiz altshell[0] = '\0'; 721 1.38 wiz } else { 722 1.38 wiz /* nuke \n */ 723 1.38 wiz char *p; 724 1.38 wiz 725 1.41 wiz if ((p = strchr(altshell, '\n')) != NULL) 726 1.38 wiz *p = '\0'; 727 1.38 wiz } 728 1.26 perry 729 1.26 perry if (altshell[0]) 730 1.26 perry shell = altshell; 731 1.26 perry #endif /* ALTSHELL */ 732 1.8 cgd 733 1.8 cgd /* 734 1.8 cgd * Unblock signals. 735 1.8 cgd * We catch all the interesting ones, 736 1.8 cgd * and those are reset to SIG_DFL on exec. 737 1.8 cgd */ 738 1.47 christos (void)sigemptyset(&mask); 739 1.47 christos (void)sigprocmask(SIG_SETMASK, &mask, NULL); 740 1.8 cgd 741 1.8 cgd /* 742 1.8 cgd * Fire off a shell. 743 1.8 cgd * If the default one doesn't work, try the Bourne shell. 744 1.8 cgd */ 745 1.8 cgd argv[0] = "-sh"; 746 1.8 cgd argv[1] = 0; 747 1.84 christos (void)setenv("PATH", INIT_PATH, 1); 748 1.26 perry #ifdef ALTSHELL 749 1.26 perry if (altshell[0]) 750 1.26 perry argv[0] = altshell; 751 1.70 christos (void)execv(shell, __UNCONST(argv)); 752 1.80 christos emergency("can't exec `%s' for single user: %m", shell); 753 1.26 perry argv[0] = "-sh"; 754 1.26 perry #endif /* ALTSHELL */ 755 1.70 christos (void)execv(INIT_BSHELL, __UNCONST(argv)); 756 1.80 christos emergency("can't exec `%s' for single user: %m", INIT_BSHELL); 757 1.67 mycroft (void)sleep(STALL_TIMEOUT); 758 1.91 dsl _exit(3); 759 1.8 cgd } 760 1.8 cgd 761 1.8 cgd if (pid == -1) { 762 1.8 cgd /* 763 1.8 cgd * We are seriously hosed. Do our best. 764 1.8 cgd */ 765 1.80 christos emergency("can't fork single-user shell: %m, trying again"); 766 1.47 christos while (waitpid(-1, NULL, WNOHANG) > 0) 767 1.8 cgd continue; 768 1.55 christos (void)sigaction(SIGTSTP, &satstp, NULL); 769 1.55 christos (void)sigaction(SIGHUP, &sahup, NULL); 770 1.93 dyoung return (state_func_t)single_user; 771 1.1 cgd } 772 1.8 cgd 773 1.8 cgd requested_transition = 0; 774 1.8 cgd do { 775 1.8 cgd if ((wpid = waitpid(-1, &status, WUNTRACED)) != -1) 776 1.50 christos collect_child(wpid, status); 777 1.8 cgd if (wpid == -1) { 778 1.8 cgd if (errno == EINTR) 779 1.8 cgd continue; 780 1.47 christos warning("wait for single-user shell failed: %m; " 781 1.47 christos "restarting"); 782 1.47 christos return (state_func_t)single_user; 783 1.8 cgd } 784 1.8 cgd if (wpid == pid && WIFSTOPPED(status)) { 785 1.80 christos warning("shell stopped, restarting"); 786 1.84 christos (void)kill(pid, SIGCONT); 787 1.8 cgd wpid = -1; 788 1.8 cgd } 789 1.8 cgd } while (wpid != pid && !requested_transition); 790 1.1 cgd 791 1.55 christos if (requested_transition) { 792 1.55 christos (void)sigaction(SIGTSTP, &satstp, NULL); 793 1.55 christos (void)sigaction(SIGHUP, &sahup, NULL); 794 1.47 christos return (state_func_t)requested_transition; 795 1.55 christos } 796 1.1 cgd 797 1.49 mycroft if (WIFSIGNALED(status)) { 798 1.49 mycroft if (WTERMSIG(status) == SIGKILL) { 799 1.49 mycroft /* executed /sbin/reboot; wait for the end quietly */ 800 1.49 mycroft sigset_t s; 801 1.49 mycroft 802 1.49 mycroft (void)sigfillset(&s); 803 1.49 mycroft for (;;) 804 1.49 mycroft (void)sigsuspend(&s); 805 1.8 cgd } else { 806 1.91 dsl warning("single user shell terminated (%x), restarting", 807 1.91 dsl status); 808 1.55 christos (void)sigaction(SIGTSTP, &satstp, NULL); 809 1.55 christos (void)sigaction(SIGHUP, &sahup, NULL); 810 1.93 dyoung return (state_func_t)single_user; 811 1.1 cgd } 812 1.8 cgd } 813 1.8 cgd 814 1.8 cgd runcom_mode = FASTBOOT; 815 1.55 christos (void)sigaction(SIGTSTP, &satstp, NULL); 816 1.55 christos (void)sigaction(SIGHUP, &sahup, NULL); 817 1.13 cgd #ifndef LETS_GET_SMALL 818 1.93 dyoung return (state_func_t)runcom; 819 1.13 cgd #else /* LETS_GET_SMALL */ 820 1.93 dyoung return (state_func_t)single_user; 821 1.13 cgd #endif /* LETS_GET_SMALL */ 822 1.8 cgd } 823 1.8 cgd 824 1.13 cgd #ifndef LETS_GET_SMALL 825 1.73 salo 826 1.73 salo /* ARGSUSED */ 827 1.101 joerg static state_func_t 828 1.73 salo runetcrc(int trychroot) 829 1.8 cgd { 830 1.8 cgd pid_t pid, wpid; 831 1.8 cgd int status; 832 1.70 christos const char *argv[4]; 833 1.8 cgd struct sigaction sa; 834 1.8 cgd 835 1.47 christos switch ((pid = fork())) { 836 1.47 christos case 0: 837 1.47 christos (void)sigemptyset(&sa.sa_mask); 838 1.8 cgd sa.sa_flags = 0; 839 1.8 cgd sa.sa_handler = SIG_IGN; 840 1.47 christos (void)sigaction(SIGTSTP, &sa, NULL); 841 1.47 christos (void)sigaction(SIGHUP, &sa, NULL); 842 1.8 cgd 843 1.8 cgd setctty(_PATH_CONSOLE); 844 1.8 cgd 845 1.8 cgd argv[0] = "sh"; 846 1.8 cgd argv[1] = _PATH_RUNCOM; 847 1.73 salo argv[2] = (runcom_mode == AUTOBOOT ? "autoboot" : 0); 848 1.8 cgd argv[3] = 0; 849 1.8 cgd 850 1.47 christos (void)sigprocmask(SIG_SETMASK, &sa.sa_mask, NULL); 851 1.8 cgd 852 1.73 salo #ifdef CHROOT 853 1.73 salo if (trychroot) 854 1.73 salo if (chroot(rootdir) != 0) { 855 1.80 christos warning("failed to chroot to `%s': %m", 856 1.73 salo rootdir); 857 1.91 dsl _exit(4); /* force single user mode */ 858 1.73 salo } 859 1.73 salo #endif /* CHROOT */ 860 1.73 salo 861 1.70 christos (void)execv(INIT_BSHELL, __UNCONST(argv)); 862 1.80 christos stall("can't exec `%s' for `%s': %m", INIT_BSHELL, _PATH_RUNCOM); 863 1.91 dsl _exit(5); /* force single user mode */ 864 1.47 christos /*NOTREACHED*/ 865 1.47 christos case -1: 866 1.80 christos emergency("can't fork for `%s' on `%s': %m", INIT_BSHELL, 867 1.47 christos _PATH_RUNCOM); 868 1.47 christos while (waitpid(-1, NULL, WNOHANG) > 0) 869 1.1 cgd continue; 870 1.47 christos (void)sleep(STALL_TIMEOUT); 871 1.47 christos return (state_func_t)single_user; 872 1.47 christos default: 873 1.47 christos break; 874 1.8 cgd } 875 1.8 cgd 876 1.8 cgd /* 877 1.8 cgd * Copied from single_user(). This is a bit paranoid. 878 1.8 cgd */ 879 1.8 cgd do { 880 1.8 cgd if ((wpid = waitpid(-1, &status, WUNTRACED)) != -1) 881 1.50 christos collect_child(wpid, status); 882 1.8 cgd if (wpid == -1) { 883 1.8 cgd if (errno == EINTR) 884 1.8 cgd continue; 885 1.80 christos warning("wait for `%s' on `%s' failed: %m; going to " 886 1.56 lukem "single user mode", INIT_BSHELL, _PATH_RUNCOM); 887 1.47 christos return (state_func_t)single_user; 888 1.8 cgd } 889 1.8 cgd if (wpid == pid && WIFSTOPPED(status)) { 890 1.80 christos warning("`%s' on `%s' stopped, restarting", 891 1.56 lukem INIT_BSHELL, _PATH_RUNCOM); 892 1.47 christos (void)kill(pid, SIGCONT); 893 1.8 cgd wpid = -1; 894 1.8 cgd } 895 1.8 cgd } while (wpid != pid); 896 1.8 cgd 897 1.8 cgd if (WIFSIGNALED(status) && WTERMSIG(status) == SIGTERM && 898 1.8 cgd requested_transition == catatonia) { 899 1.8 cgd /* /etc/rc executed /sbin/reboot; wait for the end quietly */ 900 1.8 cgd sigset_t s; 901 1.8 cgd 902 1.47 christos (void)sigfillset(&s); 903 1.8 cgd for (;;) 904 1.47 christos (void)sigsuspend(&s); 905 1.8 cgd } 906 1.8 cgd 907 1.8 cgd if (!WIFEXITED(status)) { 908 1.80 christos warning("`%s' on `%s' terminated abnormally, going to " 909 1.56 lukem "single user mode", INIT_BSHELL, _PATH_RUNCOM); 910 1.47 christos return (state_func_t)single_user; 911 1.8 cgd } 912 1.8 cgd 913 1.8 cgd if (WEXITSTATUS(status)) 914 1.47 christos return (state_func_t)single_user; 915 1.8 cgd 916 1.93 dyoung return (state_func_t)read_ttys; 917 1.73 salo } 918 1.73 salo 919 1.73 salo /* 920 1.73 salo * Run the system startup script. 921 1.73 salo */ 922 1.101 joerg static state_func_t 923 1.73 salo runcom(void) 924 1.73 salo { 925 1.73 salo state_func_t next_step; 926 1.73 salo 927 1.73 salo /* Run /etc/rc and choose next state depending on the result. */ 928 1.73 salo next_step = runetcrc(0); 929 1.93 dyoung if (next_step != (state_func_t)read_ttys) 930 1.93 dyoung return (state_func_t)next_step; 931 1.73 salo 932 1.73 salo #ifdef CHROOT 933 1.73 salo /* 934 1.73 salo * If init.root sysctl does not point to "/", we'll chroot and run 935 1.73 salo * The Real(tm) /etc/rc now. Global variable rootdir will tell us 936 1.73 salo * where to go. 937 1.73 salo */ 938 1.73 salo if (shouldchroot()) { 939 1.73 salo next_step = runetcrc(1); 940 1.93 dyoung if (next_step != (state_func_t)read_ttys) 941 1.93 dyoung return (state_func_t)next_step; 942 1.73 salo 943 1.73 salo did_multiuser_chroot = 1; 944 1.73 salo } else { 945 1.73 salo did_multiuser_chroot = 0; 946 1.73 salo } 947 1.73 salo #endif /* CHROOT */ 948 1.73 salo 949 1.73 salo /* 950 1.108 msaitoh * Regardless of whether in chroot or not, we booted successfully. 951 1.73 salo * It's time to spawn gettys (ie. next_step's value at this point). 952 1.73 salo */ 953 1.8 cgd runcom_mode = AUTOBOOT; /* the default */ 954 1.8 cgd /* NB: should send a message to the session logger to avoid blocking. */ 955 1.51 christos #ifdef SUPPORT_UTMPX 956 1.50 christos logwtmpx("~", "reboot", "", 0, INIT_PROCESS); 957 1.50 christos #endif 958 1.51 christos #ifdef SUPPORT_UTMP 959 1.8 cgd logwtmp("~", "reboot", ""); 960 1.50 christos #endif 961 1.93 dyoung return (state_func_t)read_ttys; 962 1.8 cgd } 963 1.8 cgd 964 1.8 cgd /* 965 1.8 cgd * Open the session database. 966 1.8 cgd * 967 1.8 cgd * NB: We could pass in the size here; is it necessary? 968 1.8 cgd */ 969 1.101 joerg static int 970 1.39 wiz start_session_db(void) 971 1.8 cgd { 972 1.43 lukem 973 1.8 cgd if (session_db && (*session_db->close)(session_db)) 974 1.47 christos emergency("session database close: %m"); 975 1.8 cgd if ((session_db = dbopen(NULL, O_RDWR, 0, DB_HASH, NULL)) == 0) { 976 1.47 christos emergency("session database open: %m"); 977 1.93 dyoung return 1; 978 1.8 cgd } 979 1.93 dyoung return 0; 980 1.8 cgd 981 1.8 cgd } 982 1.8 cgd 983 1.8 cgd /* 984 1.8 cgd * Add a new login session. 985 1.8 cgd */ 986 1.101 joerg static void 987 1.39 wiz add_session(session_t *sp) 988 1.8 cgd { 989 1.8 cgd DBT key; 990 1.8 cgd DBT data; 991 1.8 cgd 992 1.55 christos if (session_db == NULL) 993 1.55 christos return; 994 1.55 christos 995 1.8 cgd key.data = &sp->se_process; 996 1.8 cgd key.size = sizeof sp->se_process; 997 1.8 cgd data.data = &sp; 998 1.8 cgd data.size = sizeof sp; 999 1.8 cgd 1000 1.8 cgd if ((*session_db->put)(session_db, &key, &data, 0)) 1001 1.47 christos emergency("insert %d: %m", sp->se_process); 1002 1.77 christos #ifdef SUPPORT_UTMPX 1003 1.77 christos session_utmpx(sp, 1); 1004 1.77 christos #endif 1005 1.8 cgd } 1006 1.8 cgd 1007 1.8 cgd /* 1008 1.8 cgd * Delete an old login session. 1009 1.8 cgd */ 1010 1.101 joerg static void 1011 1.39 wiz del_session(session_t *sp) 1012 1.8 cgd { 1013 1.8 cgd DBT key; 1014 1.8 cgd 1015 1.8 cgd key.data = &sp->se_process; 1016 1.8 cgd key.size = sizeof sp->se_process; 1017 1.8 cgd 1018 1.8 cgd if ((*session_db->del)(session_db, &key, 0)) 1019 1.47 christos emergency("delete %d: %m", sp->se_process); 1020 1.77 christos #ifdef SUPPORT_UTMPX 1021 1.77 christos session_utmpx(sp, 0); 1022 1.77 christos #endif 1023 1.8 cgd } 1024 1.8 cgd 1025 1.8 cgd /* 1026 1.8 cgd * Look up a login session by pid. 1027 1.8 cgd */ 1028 1.101 joerg static session_t * 1029 1.8 cgd find_session(pid_t pid) 1030 1.8 cgd { 1031 1.8 cgd DBT key; 1032 1.8 cgd DBT data; 1033 1.8 cgd session_t *ret; 1034 1.8 cgd 1035 1.55 christos if (session_db == NULL) 1036 1.55 christos return NULL; 1037 1.55 christos 1038 1.8 cgd key.data = &pid; 1039 1.8 cgd key.size = sizeof pid; 1040 1.8 cgd if ((*session_db->get)(session_db, &key, &data, 0) != 0) 1041 1.8 cgd return 0; 1042 1.47 christos (void)memmove(&ret, data.data, sizeof(ret)); 1043 1.8 cgd return ret; 1044 1.8 cgd } 1045 1.8 cgd 1046 1.8 cgd /* 1047 1.8 cgd * Construct an argument vector from a command line. 1048 1.8 cgd */ 1049 1.101 joerg static char ** 1050 1.39 wiz construct_argv(char *command) 1051 1.8 cgd { 1052 1.27 perry int argc = 0; 1053 1.47 christos char **argv = malloc(((strlen(command) + 1) / 2 + 1) * sizeof (char *)); 1054 1.8 cgd static const char separators[] = " \t"; 1055 1.8 cgd 1056 1.71 chris if (argv == NULL) 1057 1.93 dyoung return NULL; 1058 1.71 chris 1059 1.71 chris if ((argv[argc++] = strtok(command, separators)) == 0) { 1060 1.71 chris free(argv); 1061 1.93 dyoung return NULL; 1062 1.71 chris } 1063 1.47 christos while ((argv[argc++] = strtok(NULL, separators)) != NULL) 1064 1.8 cgd continue; 1065 1.93 dyoung return argv; 1066 1.8 cgd } 1067 1.8 cgd 1068 1.8 cgd /* 1069 1.8 cgd * Deallocate a session descriptor. 1070 1.8 cgd */ 1071 1.101 joerg static void 1072 1.39 wiz free_session(session_t *sp) 1073 1.8 cgd { 1074 1.43 lukem 1075 1.8 cgd free(sp->se_device); 1076 1.8 cgd if (sp->se_getty) { 1077 1.8 cgd free(sp->se_getty); 1078 1.8 cgd free(sp->se_getty_argv); 1079 1.8 cgd } 1080 1.8 cgd if (sp->se_window) { 1081 1.8 cgd free(sp->se_window); 1082 1.8 cgd free(sp->se_window_argv); 1083 1.8 cgd } 1084 1.8 cgd free(sp); 1085 1.8 cgd } 1086 1.8 cgd 1087 1.8 cgd /* 1088 1.8 cgd * Allocate a new session descriptor. 1089 1.8 cgd */ 1090 1.101 joerg static session_t * 1091 1.39 wiz new_session(session_t *sprev, int session_index, struct ttyent *typ) 1092 1.8 cgd { 1093 1.27 perry session_t *sp; 1094 1.8 cgd 1095 1.47 christos if ((typ->ty_status & TTY_ON) == 0 || typ->ty_name == NULL || 1096 1.27 perry typ->ty_getty == NULL) 1097 1.93 dyoung return NULL; 1098 1.8 cgd 1099 1.47 christos sp = malloc(sizeof (session_t)); 1100 1.55 christos if (sp == NULL) 1101 1.55 christos return NULL; 1102 1.84 christos (void)memset(sp, 0, sizeof *sp); 1103 1.8 cgd 1104 1.21 mycroft sp->se_flags = SE_PRESENT; 1105 1.8 cgd sp->se_index = session_index; 1106 1.8 cgd 1107 1.59 itojun (void)asprintf(&sp->se_device, "%s%s", _PATH_DEV, typ->ty_name); 1108 1.105 msaitoh if (!sp->se_device) { 1109 1.105 msaitoh free(sp); 1110 1.59 itojun return NULL; 1111 1.105 msaitoh } 1112 1.8 cgd 1113 1.8 cgd if (setupargv(sp, typ) == 0) { 1114 1.8 cgd free_session(sp); 1115 1.93 dyoung return NULL; 1116 1.8 cgd } 1117 1.8 cgd 1118 1.27 perry sp->se_next = NULL; 1119 1.27 perry if (sprev == NULL) { 1120 1.8 cgd sessions = sp; 1121 1.27 perry sp->se_prev = NULL; 1122 1.8 cgd } else { 1123 1.8 cgd sprev->se_next = sp; 1124 1.8 cgd sp->se_prev = sprev; 1125 1.8 cgd } 1126 1.8 cgd 1127 1.93 dyoung return sp; 1128 1.8 cgd } 1129 1.8 cgd 1130 1.8 cgd /* 1131 1.8 cgd * Calculate getty and if useful window argv vectors. 1132 1.8 cgd */ 1133 1.101 joerg static int 1134 1.39 wiz setupargv(session_t *sp, struct ttyent *typ) 1135 1.8 cgd { 1136 1.8 cgd 1137 1.8 cgd if (sp->se_getty) { 1138 1.8 cgd free(sp->se_getty); 1139 1.8 cgd free(sp->se_getty_argv); 1140 1.8 cgd } 1141 1.59 itojun (void)asprintf(&sp->se_getty, "%s %s", typ->ty_getty, typ->ty_name); 1142 1.59 itojun if (!sp->se_getty) 1143 1.93 dyoung return 0; 1144 1.8 cgd sp->se_getty_argv = construct_argv(sp->se_getty); 1145 1.27 perry if (sp->se_getty_argv == NULL) { 1146 1.80 christos warning("can't parse getty for port `%s'", sp->se_device); 1147 1.8 cgd free(sp->se_getty); 1148 1.27 perry sp->se_getty = NULL; 1149 1.93 dyoung return 0; 1150 1.8 cgd } 1151 1.8 cgd if (typ->ty_window) { 1152 1.8 cgd if (sp->se_window) 1153 1.8 cgd free(sp->se_window); 1154 1.8 cgd sp->se_window = strdup(typ->ty_window); 1155 1.8 cgd sp->se_window_argv = construct_argv(sp->se_window); 1156 1.27 perry if (sp->se_window_argv == NULL) { 1157 1.80 christos warning("can't parse window for port `%s'", 1158 1.47 christos sp->se_device); 1159 1.8 cgd free(sp->se_window); 1160 1.27 perry sp->se_window = NULL; 1161 1.93 dyoung return 0; 1162 1.1 cgd } 1163 1.8 cgd } 1164 1.93 dyoung return 1; 1165 1.8 cgd } 1166 1.8 cgd 1167 1.8 cgd /* 1168 1.8 cgd * Walk the list of ttys and create sessions for each active line. 1169 1.8 cgd */ 1170 1.101 joerg static state_func_t 1171 1.39 wiz read_ttys(void) 1172 1.8 cgd { 1173 1.8 cgd int session_index = 0; 1174 1.27 perry session_t *sp, *snext; 1175 1.27 perry struct ttyent *typ; 1176 1.8 cgd 1177 1.77 christos #ifdef SUPPORT_UTMPX 1178 1.77 christos if (sessions == NULL) { 1179 1.77 christos struct stat st; 1180 1.77 christos 1181 1.77 christos make_utmpx("", BOOT_MSG, BOOT_TIME, 0, &boot_time, 0); 1182 1.77 christos 1183 1.77 christos /* 1184 1.99 mbalmer * If wtmpx is not empty, pick the down time from there 1185 1.77 christos */ 1186 1.87 cbiere if (stat(_PATH_WTMPX, &st) != -1 && st.st_size != 0) { 1187 1.77 christos struct timeval down_time; 1188 1.77 christos 1189 1.77 christos TIMESPEC_TO_TIMEVAL(&down_time, 1190 1.77 christos st.st_atime > st.st_mtime ? 1191 1.77 christos &st.st_atimespec : &st.st_mtimespec); 1192 1.77 christos make_utmpx("", DOWN_MSG, DOWN_TIME, 0, &down_time, 0); 1193 1.77 christos } 1194 1.77 christos } 1195 1.77 christos #endif 1196 1.8 cgd /* 1197 1.8 cgd * Destroy any previous session state. 1198 1.8 cgd * There shouldn't be any, but just in case... 1199 1.8 cgd */ 1200 1.8 cgd for (sp = sessions; sp; sp = snext) { 1201 1.64 christos #ifndef LETS_GET_SMALL 1202 1.8 cgd if (sp->se_process) 1203 1.50 christos clear_session_logs(sp, 0); 1204 1.64 christos #endif 1205 1.8 cgd snext = sp->se_next; 1206 1.8 cgd free_session(sp); 1207 1.8 cgd } 1208 1.27 perry sessions = NULL; 1209 1.73 salo 1210 1.73 salo if (start_session_db()) { 1211 1.80 christos warning("start_session_db failed, death"); 1212 1.73 salo #ifdef CHROOT 1213 1.73 salo /* If /etc/rc ran in chroot, we want to kill any survivors. */ 1214 1.73 salo if (did_multiuser_chroot) 1215 1.73 salo return (state_func_t)death; 1216 1.73 salo else 1217 1.73 salo #endif /* CHROOT */ 1218 1.73 salo return (state_func_t)single_user; 1219 1.73 salo } 1220 1.73 salo 1221 1.84 christos (void)do_setttyent(); 1222 1.8 cgd 1223 1.8 cgd /* 1224 1.8 cgd * Allocate a session entry for each active port. 1225 1.8 cgd * Note that sp starts at 0. 1226 1.8 cgd */ 1227 1.27 perry while ((typ = getttyent()) != NULL) 1228 1.27 perry if ((snext = new_session(sp, ++session_index, typ)) != NULL) 1229 1.8 cgd sp = snext; 1230 1.84 christos (void)endttyent(); 1231 1.8 cgd 1232 1.47 christos return (state_func_t)multi_user; 1233 1.8 cgd } 1234 1.8 cgd 1235 1.8 cgd /* 1236 1.8 cgd * Start a window system running. 1237 1.8 cgd */ 1238 1.101 joerg static void 1239 1.39 wiz start_window_system(session_t *sp) 1240 1.8 cgd { 1241 1.8 cgd pid_t pid; 1242 1.8 cgd sigset_t mask; 1243 1.8 cgd 1244 1.8 cgd if ((pid = fork()) == -1) { 1245 1.80 christos emergency("can't fork for window system on port `%s': %m", 1246 1.47 christos sp->se_device); 1247 1.8 cgd /* hope that getty fails and we can try again */ 1248 1.8 cgd return; 1249 1.8 cgd } 1250 1.8 cgd 1251 1.8 cgd if (pid) 1252 1.8 cgd return; 1253 1.8 cgd 1254 1.84 christos (void)sigemptyset(&mask); 1255 1.84 christos (void)sigprocmask(SIG_SETMASK, &mask, NULL); 1256 1.8 cgd 1257 1.8 cgd if (setsid() < 0) 1258 1.80 christos emergency("setsid failed (window): %m"); 1259 1.8 cgd 1260 1.47 christos (void)execv(sp->se_window_argv[0], sp->se_window_argv); 1261 1.80 christos stall("can't exec window system `%s' for port `%s': %m", 1262 1.47 christos sp->se_window_argv[0], sp->se_device); 1263 1.91 dsl _exit(6); 1264 1.8 cgd } 1265 1.8 cgd 1266 1.8 cgd /* 1267 1.8 cgd * Start a login session running. 1268 1.8 cgd */ 1269 1.101 joerg static pid_t 1270 1.39 wiz start_getty(session_t *sp) 1271 1.8 cgd { 1272 1.8 cgd pid_t pid; 1273 1.8 cgd sigset_t mask; 1274 1.47 christos time_t current_time = time(NULL); 1275 1.109 jmcneill bool do_sleep = false; 1276 1.109 jmcneill 1277 1.109 jmcneill if (current_time >= sp->se_started.tv_sec && 1278 1.109 jmcneill current_time - sp->se_started.tv_sec < GETTY_SPACING) { 1279 1.109 jmcneill if (++sp->se_nspace > GETTY_NSPACE) { 1280 1.109 jmcneill sp->se_nspace = 0; 1281 1.109 jmcneill do_sleep = true; 1282 1.109 jmcneill } 1283 1.109 jmcneill } else { 1284 1.109 jmcneill sp->se_nspace = 0; 1285 1.109 jmcneill } 1286 1.8 cgd 1287 1.8 cgd /* 1288 1.8 cgd * fork(), not vfork() -- we can't afford to block. 1289 1.8 cgd */ 1290 1.8 cgd if ((pid = fork()) == -1) { 1291 1.80 christos emergency("can't fork for getty on port `%s': %m", 1292 1.80 christos sp->se_device); 1293 1.8 cgd return -1; 1294 1.8 cgd } 1295 1.8 cgd 1296 1.8 cgd if (pid) 1297 1.8 cgd return pid; 1298 1.8 cgd 1299 1.73 salo #ifdef CHROOT 1300 1.73 salo /* If /etc/rc did proceed inside chroot, we have to try as well. */ 1301 1.73 salo if (did_multiuser_chroot) 1302 1.73 salo if (chroot(rootdir) != 0) { 1303 1.80 christos stall("can't chroot getty `%s' inside `%s': %m", 1304 1.73 salo sp->se_getty_argv[0], rootdir); 1305 1.91 dsl _exit(7); 1306 1.73 salo } 1307 1.73 salo #endif /* CHROOT */ 1308 1.73 salo 1309 1.109 jmcneill if (do_sleep) { 1310 1.80 christos warning("getty repeating too quickly on port `%s', sleeping", 1311 1.47 christos sp->se_device); 1312 1.47 christos (void)sleep(GETTY_SLEEP); 1313 1.8 cgd } 1314 1.8 cgd 1315 1.8 cgd if (sp->se_window) { 1316 1.8 cgd start_window_system(sp); 1317 1.47 christos (void)sleep(WINDOW_WAIT); 1318 1.1 cgd } 1319 1.8 cgd 1320 1.47 christos (void)sigemptyset(&mask); 1321 1.47 christos (void)sigprocmask(SIG_SETMASK, &mask, (sigset_t *) 0); 1322 1.8 cgd 1323 1.47 christos (void)execv(sp->se_getty_argv[0], sp->se_getty_argv); 1324 1.80 christos stall("can't exec getty `%s' for port `%s': %m", 1325 1.47 christos sp->se_getty_argv[0], sp->se_device); 1326 1.91 dsl _exit(8); 1327 1.47 christos /*NOTREACHED*/ 1328 1.1 cgd } 1329 1.77 christos #ifdef SUPPORT_UTMPX 1330 1.77 christos static void 1331 1.77 christos session_utmpx(const session_t *sp, int add) 1332 1.77 christos { 1333 1.77 christos const char *name = sp->se_getty ? sp->se_getty : 1334 1.77 christos (sp->se_window ? sp->se_window : ""); 1335 1.77 christos const char *line = sp->se_device + sizeof(_PATH_DEV) - 1; 1336 1.77 christos 1337 1.77 christos make_utmpx(name, line, add ? LOGIN_PROCESS : DEAD_PROCESS, 1338 1.77 christos sp->se_process, &sp->se_started, sp->se_index); 1339 1.77 christos } 1340 1.77 christos 1341 1.77 christos static void 1342 1.77 christos make_utmpx(const char *name, const char *line, int type, pid_t pid, 1343 1.77 christos const struct timeval *tv, int session) 1344 1.77 christos { 1345 1.77 christos struct utmpx ut; 1346 1.87 cbiere const char *eline; 1347 1.77 christos 1348 1.77 christos (void)memset(&ut, 0, sizeof(ut)); 1349 1.77 christos (void)strlcpy(ut.ut_name, name, sizeof(ut.ut_name)); 1350 1.77 christos ut.ut_type = type; 1351 1.77 christos (void)strlcpy(ut.ut_line, line, sizeof(ut.ut_line)); 1352 1.77 christos ut.ut_pid = pid; 1353 1.77 christos if (tv) 1354 1.77 christos ut.ut_tv = *tv; 1355 1.77 christos else 1356 1.77 christos (void)gettimeofday(&ut.ut_tv, NULL); 1357 1.77 christos ut.ut_session = session; 1358 1.77 christos 1359 1.87 cbiere eline = line + strlen(line); 1360 1.97 lukem if ((size_t)(eline - line) >= sizeof(ut.ut_id)) 1361 1.87 cbiere line = eline - sizeof(ut.ut_id); 1362 1.77 christos (void)strncpy(ut.ut_id, line, sizeof(ut.ut_id)); 1363 1.77 christos 1364 1.77 christos if (pututxline(&ut) == NULL) 1365 1.80 christos warning("can't add utmpx record for `%s': %m", ut.ut_line); 1366 1.84 christos endutxent(); 1367 1.77 christos } 1368 1.77 christos 1369 1.77 christos static char 1370 1.77 christos get_runlevel(const state_t s) 1371 1.77 christos { 1372 1.77 christos if (s == (state_t)single_user) 1373 1.77 christos return SINGLE_USER; 1374 1.77 christos if (s == (state_t)runcom) 1375 1.77 christos return RUNCOM; 1376 1.77 christos if (s == (state_t)read_ttys) 1377 1.77 christos return READ_TTYS; 1378 1.77 christos if (s == (state_t)multi_user) 1379 1.77 christos return MULTI_USER; 1380 1.77 christos if (s == (state_t)clean_ttys) 1381 1.77 christos return CLEAN_TTYS; 1382 1.77 christos if (s == (state_t)catatonia) 1383 1.77 christos return CATATONIA; 1384 1.77 christos return DEATH; 1385 1.77 christos } 1386 1.77 christos 1387 1.77 christos static void 1388 1.77 christos utmpx_set_runlevel(char old, char new) 1389 1.77 christos { 1390 1.77 christos struct utmpx ut; 1391 1.77 christos 1392 1.81 christos /* 1393 1.81 christos * Don't record any transitions until we did the first transition 1394 1.81 christos * to read ttys, which is when we are guaranteed to have a read-write 1395 1.81 christos * /var. Perhaps use a different variable for this? 1396 1.81 christos */ 1397 1.81 christos if (sessions == NULL) 1398 1.81 christos return; 1399 1.81 christos 1400 1.77 christos (void)memset(&ut, 0, sizeof(ut)); 1401 1.77 christos (void)snprintf(ut.ut_line, sizeof(ut.ut_line), RUNLVL_MSG, new); 1402 1.77 christos ut.ut_type = RUN_LVL; 1403 1.77 christos (void)gettimeofday(&ut.ut_tv, NULL); 1404 1.77 christos ut.ut_exit.e_exit = old; 1405 1.77 christos ut.ut_exit.e_termination = new; 1406 1.77 christos if (pututxline(&ut) == NULL) 1407 1.80 christos warning("can't add utmpx record for `runlevel': %m"); 1408 1.84 christos endutxent(); 1409 1.77 christos } 1410 1.77 christos #endif /* SUPPORT_UTMPX */ 1411 1.77 christos 1412 1.13 cgd #endif /* LETS_GET_SMALL */ 1413 1.1 cgd 1414 1.8 cgd /* 1415 1.8 cgd * Collect exit status for a child. 1416 1.8 cgd * If an exiting login, start a new login running. 1417 1.8 cgd */ 1418 1.101 joerg static void 1419 1.50 christos collect_child(pid_t pid, int status) 1420 1.1 cgd { 1421 1.13 cgd #ifndef LETS_GET_SMALL 1422 1.27 perry session_t *sp, *sprev, *snext; 1423 1.8 cgd 1424 1.8 cgd if (! sessions) 1425 1.8 cgd return; 1426 1.8 cgd 1427 1.47 christos if ((sp = find_session(pid)) == NULL) 1428 1.8 cgd return; 1429 1.1 cgd 1430 1.50 christos clear_session_logs(sp, status); 1431 1.8 cgd del_session(sp); 1432 1.8 cgd sp->se_process = 0; 1433 1.8 cgd 1434 1.8 cgd if (sp->se_flags & SE_SHUTDOWN) { 1435 1.27 perry if ((sprev = sp->se_prev) != NULL) 1436 1.8 cgd sprev->se_next = sp->se_next; 1437 1.8 cgd else 1438 1.8 cgd sessions = sp->se_next; 1439 1.27 perry if ((snext = sp->se_next) != NULL) 1440 1.8 cgd snext->se_prev = sp->se_prev; 1441 1.8 cgd free_session(sp); 1442 1.1 cgd return; 1443 1.1 cgd } 1444 1.8 cgd 1445 1.8 cgd if ((pid = start_getty(sp)) == -1) { 1446 1.8 cgd /* serious trouble */ 1447 1.8 cgd requested_transition = clean_ttys; 1448 1.1 cgd return; 1449 1.1 cgd } 1450 1.8 cgd 1451 1.8 cgd sp->se_process = pid; 1452 1.77 christos (void)gettimeofday(&sp->se_started, NULL); 1453 1.8 cgd add_session(sp); 1454 1.13 cgd #endif /* LETS_GET_SMALL */ 1455 1.8 cgd } 1456 1.8 cgd 1457 1.8 cgd /* 1458 1.8 cgd * Catch a signal and request a state transition. 1459 1.8 cgd */ 1460 1.101 joerg static void 1461 1.39 wiz transition_handler(int sig) 1462 1.8 cgd { 1463 1.8 cgd 1464 1.8 cgd switch (sig) { 1465 1.13 cgd #ifndef LETS_GET_SMALL 1466 1.8 cgd case SIGHUP: 1467 1.8 cgd requested_transition = clean_ttys; 1468 1.8 cgd break; 1469 1.8 cgd case SIGTERM: 1470 1.8 cgd requested_transition = death; 1471 1.8 cgd break; 1472 1.8 cgd case SIGTSTP: 1473 1.8 cgd requested_transition = catatonia; 1474 1.8 cgd break; 1475 1.13 cgd #endif /* LETS_GET_SMALL */ 1476 1.8 cgd default: 1477 1.8 cgd requested_transition = 0; 1478 1.8 cgd break; 1479 1.8 cgd } 1480 1.8 cgd } 1481 1.8 cgd 1482 1.13 cgd #ifndef LETS_GET_SMALL 1483 1.8 cgd /* 1484 1.8 cgd * Take the system multiuser. 1485 1.8 cgd */ 1486 1.101 joerg static state_func_t 1487 1.39 wiz multi_user(void) 1488 1.8 cgd { 1489 1.8 cgd pid_t pid; 1490 1.50 christos int status; 1491 1.27 perry session_t *sp; 1492 1.8 cgd 1493 1.8 cgd requested_transition = 0; 1494 1.8 cgd 1495 1.8 cgd /* 1496 1.8 cgd * If the administrator has not set the security level to -1 1497 1.8 cgd * to indicate that the kernel should not run multiuser in secure 1498 1.8 cgd * mode, and the run script has not set a higher level of security 1499 1.8 cgd * than level 1, then put the kernel into secure mode. 1500 1.8 cgd */ 1501 1.8 cgd if (getsecuritylevel() == 0) 1502 1.8 cgd setsecuritylevel(1); 1503 1.8 cgd 1504 1.8 cgd for (sp = sessions; sp; sp = sp->se_next) { 1505 1.8 cgd if (sp->se_process) 1506 1.8 cgd continue; 1507 1.8 cgd if ((pid = start_getty(sp)) == -1) { 1508 1.8 cgd /* serious trouble */ 1509 1.8 cgd requested_transition = clean_ttys; 1510 1.1 cgd break; 1511 1.8 cgd } 1512 1.8 cgd sp->se_process = pid; 1513 1.77 christos (void)gettimeofday(&sp->se_started, NULL); 1514 1.8 cgd add_session(sp); 1515 1.1 cgd } 1516 1.8 cgd 1517 1.8 cgd while (!requested_transition) 1518 1.50 christos if ((pid = waitpid(-1, &status, 0)) != -1) 1519 1.50 christos collect_child(pid, status); 1520 1.8 cgd 1521 1.47 christos return (state_func_t)requested_transition; 1522 1.1 cgd } 1523 1.1 cgd 1524 1.8 cgd /* 1525 1.8 cgd * This is an n-squared algorithm. We hope it isn't run often... 1526 1.8 cgd */ 1527 1.101 joerg static state_func_t 1528 1.39 wiz clean_ttys(void) 1529 1.1 cgd { 1530 1.27 perry session_t *sp, *sprev; 1531 1.27 perry struct ttyent *typ; 1532 1.27 perry int session_index = 0; 1533 1.27 perry int devlen; 1534 1.8 cgd 1535 1.21 mycroft for (sp = sessions; sp; sp = sp->se_next) 1536 1.21 mycroft sp->se_flags &= ~SE_PRESENT; 1537 1.21 mycroft 1538 1.84 christos (void)do_setttyent(); 1539 1.73 salo 1540 1.8 cgd devlen = sizeof(_PATH_DEV) - 1; 1541 1.27 perry while ((typ = getttyent()) != NULL) { 1542 1.8 cgd ++session_index; 1543 1.8 cgd 1544 1.8 cgd for (sprev = 0, sp = sessions; sp; sprev = sp, sp = sp->se_next) 1545 1.8 cgd if (strcmp(typ->ty_name, sp->se_device + devlen) == 0) 1546 1.8 cgd break; 1547 1.8 cgd 1548 1.8 cgd if (sp) { 1549 1.21 mycroft sp->se_flags |= SE_PRESENT; 1550 1.8 cgd if (sp->se_index != session_index) { 1551 1.80 christos warning("port `%s' changed utmp index from " 1552 1.47 christos "%d to %d", sp->se_device, sp->se_index, 1553 1.47 christos session_index); 1554 1.8 cgd sp->se_index = session_index; 1555 1.8 cgd } 1556 1.8 cgd if ((typ->ty_status & TTY_ON) == 0 || 1557 1.8 cgd typ->ty_getty == 0) { 1558 1.8 cgd sp->se_flags |= SE_SHUTDOWN; 1559 1.55 christos if (sp->se_process != 0) 1560 1.55 christos (void)kill(sp->se_process, SIGHUP); 1561 1.8 cgd continue; 1562 1.8 cgd } 1563 1.8 cgd sp->se_flags &= ~SE_SHUTDOWN; 1564 1.8 cgd if (setupargv(sp, typ) == 0) { 1565 1.80 christos warning("can't parse getty for port `%s'", 1566 1.47 christos sp->se_device); 1567 1.8 cgd sp->se_flags |= SE_SHUTDOWN; 1568 1.55 christos if (sp->se_process != 0) 1569 1.55 christos (void)kill(sp->se_process, SIGHUP); 1570 1.109 jmcneill } else { 1571 1.109 jmcneill sp->se_nspace = 0; 1572 1.8 cgd } 1573 1.8 cgd continue; 1574 1.8 cgd } 1575 1.8 cgd 1576 1.84 christos (void)new_session(sprev, session_index, typ); 1577 1.8 cgd } 1578 1.8 cgd 1579 1.84 christos (void)endttyent(); 1580 1.21 mycroft 1581 1.21 mycroft for (sp = sessions; sp; sp = sp->se_next) 1582 1.21 mycroft if ((sp->se_flags & SE_PRESENT) == 0) { 1583 1.21 mycroft sp->se_flags |= SE_SHUTDOWN; 1584 1.55 christos if (sp->se_process != 0) 1585 1.55 christos (void)kill(sp->se_process, SIGHUP); 1586 1.21 mycroft } 1587 1.1 cgd 1588 1.47 christos return (state_func_t)multi_user; 1589 1.1 cgd } 1590 1.1 cgd 1591 1.8 cgd /* 1592 1.8 cgd * Block further logins. 1593 1.8 cgd */ 1594 1.101 joerg static state_func_t 1595 1.39 wiz catatonia(void) 1596 1.1 cgd { 1597 1.27 perry session_t *sp; 1598 1.8 cgd 1599 1.8 cgd for (sp = sessions; sp; sp = sp->se_next) 1600 1.8 cgd sp->se_flags |= SE_SHUTDOWN; 1601 1.1 cgd 1602 1.47 christos return (state_func_t)multi_user; 1603 1.1 cgd } 1604 1.13 cgd #endif /* LETS_GET_SMALL */ 1605 1.1 cgd 1606 1.8 cgd /* 1607 1.8 cgd * Note SIGALRM. 1608 1.8 cgd */ 1609 1.101 joerg static void 1610 1.47 christos /*ARGSUSED*/ 1611 1.39 wiz alrm_handler(int sig) 1612 1.1 cgd { 1613 1.43 lukem 1614 1.8 cgd clang = 1; 1615 1.1 cgd } 1616 1.1 cgd 1617 1.13 cgd #ifndef LETS_GET_SMALL 1618 1.8 cgd /* 1619 1.8 cgd * Bring the system down to single user. 1620 1.8 cgd */ 1621 1.101 joerg static state_func_t 1622 1.39 wiz death(void) 1623 1.1 cgd { 1624 1.27 perry session_t *sp; 1625 1.50 christos int i, status; 1626 1.8 cgd pid_t pid; 1627 1.8 cgd static const int death_sigs[3] = { SIGHUP, SIGTERM, SIGKILL }; 1628 1.8 cgd 1629 1.8 cgd for (sp = sessions; sp; sp = sp->se_next) 1630 1.8 cgd sp->se_flags |= SE_SHUTDOWN; 1631 1.8 cgd 1632 1.8 cgd /* NB: should send a message to the session logger to avoid blocking. */ 1633 1.50 christos #ifdef SUPPORT_UTMPX 1634 1.50 christos logwtmpx("~", "shutdown", "", 0, INIT_PROCESS); 1635 1.50 christos #endif 1636 1.50 christos #ifdef SUPPORT_UTMP 1637 1.8 cgd logwtmp("~", "shutdown", ""); 1638 1.50 christos #endif 1639 1.8 cgd 1640 1.8 cgd for (i = 0; i < 3; ++i) { 1641 1.8 cgd if (kill(-1, death_sigs[i]) == -1 && errno == ESRCH) 1642 1.47 christos return (state_func_t)single_user; 1643 1.8 cgd 1644 1.8 cgd clang = 0; 1645 1.84 christos (void)alarm(DEATH_WATCH); 1646 1.8 cgd do 1647 1.50 christos if ((pid = waitpid(-1, &status, 0)) != -1) 1648 1.50 christos collect_child(pid, status); 1649 1.8 cgd while (clang == 0 && errno != ECHILD); 1650 1.8 cgd 1651 1.8 cgd if (errno == ECHILD) 1652 1.47 christos return (state_func_t)single_user; 1653 1.8 cgd } 1654 1.8 cgd 1655 1.8 cgd warning("some processes would not die; ps axl advised"); 1656 1.8 cgd 1657 1.47 christos return (state_func_t)single_user; 1658 1.1 cgd } 1659 1.13 cgd #endif /* LETS_GET_SMALL */ 1660 1.28 christos 1661 1.45 abs #ifdef MFS_DEV_IF_NO_CONSOLE 1662 1.28 christos 1663 1.45 abs static int 1664 1.45 abs mfs_dev(void) 1665 1.28 christos { 1666 1.28 christos /* 1667 1.28 christos * We cannot print errors so we bail out silently... 1668 1.28 christos */ 1669 1.28 christos pid_t pid; 1670 1.30 drochner int status; 1671 1.46 lukem 1672 1.45 abs /* If we have /dev/console, assume all is OK */ 1673 1.91 dsl if (access(_PATH_CONSOLE, F_OK) == 0) 1674 1.91 dsl return 0; 1675 1.28 christos 1676 1.91 dsl #if 0 /* Useful for testing MAKEDEV */ 1677 1.91 dsl /* Mount an mfs over /mnt so we can create a console entry */ 1678 1.28 christos switch ((pid = fork())) { 1679 1.28 christos case 0: 1680 1.62 dsl (void)execl(INIT_MOUNT_MFS, "mount_mfs", 1681 1.62 dsl "-b", "4096", "-f", "512", 1682 1.91 dsl "-s", 64, "-n", 10, 1683 1.68 dan "-p", "0755", 1684 1.91 dsl "swap", "/mnt", NULL); 1685 1.91 dsl _exit(9); 1686 1.47 christos /*NOTREACHED*/ 1687 1.28 christos 1688 1.28 christos case -1: 1689 1.45 abs return(-1); 1690 1.28 christos 1691 1.28 christos default: 1692 1.28 christos if (waitpid(pid, &status, 0) == -1) 1693 1.45 abs return(-1); 1694 1.28 christos if (status != 0) 1695 1.45 abs return(-1); 1696 1.28 christos break; 1697 1.28 christos } 1698 1.28 christos 1699 1.91 dsl { 1700 1.95 christos dev_t dev; 1701 1.28 christos #ifdef CPU_CONSDEV 1702 1.91 dsl static int name[2] = { CTL_MACHDEP, CPU_CONSDEV }; 1703 1.91 dsl size_t olen; 1704 1.91 dsl olen = sizeof(dev); 1705 1.91 dsl if (sysctl(name, sizeof(name) / sizeof(name[0]), &dev, &olen, 1706 1.91 dsl NULL, 0) == -1) 1707 1.46 lukem #endif 1708 1.91 dsl dev = makedev(0, 0); 1709 1.95 christos 1710 1.95 christos /* Make a console for us, so we can see things happening */ 1711 1.95 christos if (mknod("/mnt/console", 0666 | S_IFCHR, dev) == -1) 1712 1.95 christos return(-1); 1713 1.95 christos (void)freopen("/mnt/console", "a", stderr); 1714 1.91 dsl } 1715 1.28 christos 1716 1.91 dsl #endif 1717 1.28 christos 1718 1.28 christos /* Run the makedev script to create devices */ 1719 1.28 christos switch ((pid = fork())) { 1720 1.28 christos case 0: 1721 1.84 christos (void)dup2(2, 1); /* Give the script stdout */ 1722 1.60 dsl if (chdir("/dev") == 0) 1723 1.62 dsl (void)execl(INIT_BSHELL, "sh", 1724 1.91 dsl access("./MAKEDEV", X_OK) == 0 1725 1.91 dsl ? "./MAKEDEV" : "/etc/MAKEDEV", 1726 1.94 apb "-MM", "init", NULL); 1727 1.91 dsl _exit(10); 1728 1.73 salo /* NOTREACHED */ 1729 1.28 christos 1730 1.28 christos case -1: 1731 1.60 dsl break; 1732 1.28 christos 1733 1.28 christos default: 1734 1.28 christos if (waitpid(pid, &status, 0) == -1) 1735 1.60 dsl break; 1736 1.98 apb if (status != 0) 1737 1.106 christos warn("MAKEDEV exit status %d", status); 1738 1.98 apb /* 1739 1.98 apb * If /dev/console got created, then return 0 1740 1.98 apb * regardless of MAKEDEV exit status. 1741 1.98 apb */ 1742 1.91 dsl if (access(_PATH_CONSOLE, F_OK) == 0) 1743 1.91 dsl return 0; 1744 1.91 dsl _exit(11); 1745 1.28 christos } 1746 1.47 christos warn("Unable to run MAKEDEV"); 1747 1.91 dsl _exit(12); 1748 1.28 christos } 1749 1.28 christos #endif 1750 1.73 salo 1751 1.102 christos #ifndef LETS_GET_SMALL 1752 1.101 joerg static int 1753 1.73 salo do_setttyent(void) 1754 1.73 salo { 1755 1.84 christos (void)endttyent(); 1756 1.73 salo #ifdef CHROOT 1757 1.73 salo if (did_multiuser_chroot) { 1758 1.73 salo char path[PATH_MAX]; 1759 1.73 salo 1760 1.84 christos (void)snprintf(path, sizeof(path), "%s/%s", rootdir, _PATH_TTYS); 1761 1.73 salo 1762 1.73 salo return setttyentpath(path); 1763 1.73 salo } else 1764 1.73 salo #endif /* CHROOT */ 1765 1.73 salo return setttyent(); 1766 1.73 salo } 1767 1.102 christos #endif 1768 1.73 salo 1769 1.73 salo #if !defined(LETS_GET_SMALL) && defined(CHROOT) 1770 1.73 salo 1771 1.101 joerg static int 1772 1.103 matt createsysctlnode(void) 1773 1.73 salo { 1774 1.73 salo struct sysctlnode node; 1775 1.73 salo int mib[2]; 1776 1.73 salo size_t len; 1777 1.73 salo 1778 1.73 salo /* 1779 1.73 salo * Create top-level dynamic sysctl node. Its child nodes will only 1780 1.73 salo * be readable by the superuser, since regular mortals should not 1781 1.76 elad * care ("Sssh, it's a secret!"). 1782 1.73 salo */ 1783 1.73 salo len = sizeof(struct sysctlnode); 1784 1.73 salo mib[0] = CTL_CREATE; 1785 1.73 salo 1786 1.84 christos (void)memset(&node, 0, len); 1787 1.73 salo node.sysctl_flags = SYSCTL_VERSION | CTLFLAG_READWRITE | 1788 1.74 elad CTLFLAG_PRIVATE | CTLTYPE_NODE; 1789 1.73 salo node.sysctl_num = CTL_CREATE; 1790 1.84 christos (void)snprintf(node.sysctl_name, SYSCTL_NAMELEN, "init"); 1791 1.73 salo if (sysctl(&mib[0], 1, &node, &len, &node, len) == -1) { 1792 1.80 christos warning("could not create init node: %m"); 1793 1.93 dyoung return -1; 1794 1.73 salo } 1795 1.73 salo 1796 1.73 salo /* 1797 1.73 salo * Create second level dynamic node capable of holding pathname. 1798 1.73 salo * Provide "/" as the default value. 1799 1.73 salo */ 1800 1.73 salo len = sizeof(struct sysctlnode); 1801 1.73 salo mib[0] = node.sysctl_num; 1802 1.73 salo mib[1] = CTL_CREATE; 1803 1.73 salo 1804 1.84 christos (void)memset(&node, 0, len); 1805 1.73 salo node.sysctl_flags = SYSCTL_VERSION | CTLFLAG_READWRITE | 1806 1.75 elad CTLTYPE_STRING | CTLFLAG_OWNDATA; 1807 1.73 salo node.sysctl_size = _POSIX_PATH_MAX; 1808 1.73 salo node.sysctl_data = __UNCONST("/"); 1809 1.73 salo node.sysctl_num = CTL_CREATE; 1810 1.84 christos (void)snprintf(node.sysctl_name, SYSCTL_NAMELEN, "root"); 1811 1.73 salo if (sysctl(&mib[0], 2, NULL, NULL, &node, len) == -1) { 1812 1.80 christos warning("could not create init.root node: %m"); 1813 1.93 dyoung return -1; 1814 1.73 salo } 1815 1.73 salo 1816 1.93 dyoung return 0; 1817 1.73 salo } 1818 1.73 salo 1819 1.101 joerg static int 1820 1.101 joerg shouldchroot(void) 1821 1.73 salo { 1822 1.73 salo struct sysctlnode node; 1823 1.73 salo size_t len, cnt; 1824 1.73 salo int mib; 1825 1.73 salo 1826 1.73 salo len = sizeof(struct sysctlnode); 1827 1.73 salo 1828 1.73 salo if (sysctlbyname("init.root", rootdir, &len, NULL, 0) == -1) { 1829 1.80 christos warning("could not read init.root: %m"); 1830 1.73 salo 1831 1.73 salo /* Child killed our node. Recreate it. */ 1832 1.73 salo if (errno == ENOENT) { 1833 1.73 salo /* Destroy whatever is left, recreate from scratch. */ 1834 1.73 salo if (sysctlnametomib("init", &mib, &cnt) != -1) { 1835 1.84 christos (void)memset(&node, 0, sizeof(node)); 1836 1.73 salo node.sysctl_flags = SYSCTL_VERSION; 1837 1.73 salo node.sysctl_num = mib; 1838 1.73 salo mib = CTL_DESTROY; 1839 1.73 salo 1840 1.73 salo (void)sysctl(&mib, 1, NULL, NULL, &node, 1841 1.73 salo sizeof(node)); 1842 1.73 salo } 1843 1.73 salo 1844 1.84 christos (void)createsysctlnode(); 1845 1.73 salo } 1846 1.73 salo 1847 1.73 salo /* We certainly won't chroot. */ 1848 1.93 dyoung return 0; 1849 1.73 salo } 1850 1.73 salo 1851 1.73 salo if (rootdir[len] != '\0' || strlen(rootdir) != len - 1) { 1852 1.73 salo warning("init.root is not a string"); 1853 1.93 dyoung return 0; 1854 1.73 salo } 1855 1.73 salo 1856 1.73 salo if (strcmp(rootdir, "/") == 0) 1857 1.93 dyoung return 0; 1858 1.73 salo 1859 1.93 dyoung return 1; 1860 1.73 salo } 1861 1.73 salo 1862 1.73 salo #endif /* !LETS_GET_SMALL && CHROOT */ 1863