1 1.4 rillig /* $NetBSD: sig.c,v 1.4 2021/11/27 22:16:41 rillig Exp $ */ 2 1.1 christos 3 1.1 christos /* 4 1.1 christos * Copyright (c) 1980, 1993 5 1.1 christos * The Regents of the University of California. All rights reserved. 6 1.1 christos * 7 1.1 christos * Redistribution and use in source and binary forms, with or without 8 1.1 christos * modification, are permitted provided that the following conditions 9 1.1 christos * are met: 10 1.1 christos * 1. Redistributions of source code must retain the above copyright 11 1.1 christos * notice, this list of conditions and the following disclaimer. 12 1.1 christos * 2. Redistributions in binary form must reproduce the above copyright 13 1.1 christos * notice, this list of conditions and the following disclaimer in the 14 1.1 christos * documentation and/or other materials provided with the distribution. 15 1.1 christos * 3. Neither the name of the University nor the names of its contributors 16 1.1 christos * may be used to endorse or promote products derived from this software 17 1.1 christos * without specific prior written permission. 18 1.1 christos * 19 1.1 christos * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND 20 1.1 christos * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE 21 1.1 christos * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE 22 1.1 christos * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE 23 1.1 christos * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL 24 1.1 christos * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS 25 1.1 christos * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) 26 1.1 christos * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT 27 1.1 christos * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY 28 1.1 christos * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF 29 1.1 christos * SUCH DAMAGE. 30 1.1 christos */ 31 1.1 christos 32 1.1 christos #include <sys/cdefs.h> 33 1.1 christos #ifndef lint 34 1.4 rillig __RCSID("$NetBSD: sig.c,v 1.4 2021/11/27 22:16:41 rillig Exp $"); 35 1.1 christos #endif /* not lint */ 36 1.1 christos 37 1.1 christos #include <assert.h> 38 1.1 christos #include <util.h> 39 1.1 christos #include <sys/queue.h> 40 1.1 christos 41 1.1 christos #include "rcv.h" 42 1.1 christos #include "extern.h" 43 1.1 christos #include "sig.h" 44 1.1 christos 45 1.1 christos /* 46 1.1 christos * Mail -- a mail program 47 1.1 christos * 48 1.1 christos * Signal routines. 49 1.1 christos */ 50 1.1 christos 51 1.1 christos static sig_t sigarray[NSIG]; 52 1.1 christos 53 1.1 christos typedef struct q_entry_s { 54 1.1 christos int qe_signo; 55 1.1 christos sig_t qe_handler; 56 1.1 christos struct q_entry_s *qe_next; 57 1.1 christos } q_entry_t; 58 1.1 christos 59 1.1 christos static struct { 60 1.1 christos q_entry_t *qe_first; 61 1.1 christos q_entry_t **qe_last; 62 1.2 dyoung } sigq = { NULL, &sigq.qe_first }; 63 1.1 christos #define SIGQUEUE_INIT(p) do {\ 64 1.1 christos (p)->qe_first = NULL;\ 65 1.1 christos (p)->qe_last = &((p)->qe_first);\ 66 1.4 rillig } while (0) 67 1.1 christos 68 1.1 christos /* 69 1.1 christos * The routines alloc_entry() and free_entry() manage the queue 70 1.1 christos * elements. 71 1.1 christos * 72 1.1 christos * Currently, they just assign one element per signo from a fix array 73 1.1 christos * as we don't support POSIX signal queues. We leave them as this may 74 1.1 christos * change in the future and the modifications will be isolated. 75 1.1 christos */ 76 1.1 christos static q_entry_t * 77 1.1 christos alloc_entry(int signo) 78 1.1 christos { 79 1.1 christos static q_entry_t entries[NSIG]; 80 1.1 christos q_entry_t *e; 81 1.1 christos 82 1.1 christos /* 83 1.1 christos * We currently only post one signal per signal number, so 84 1.1 christos * there is no need to make this complicated. 85 1.1 christos */ 86 1.1 christos e = &entries[signo]; 87 1.1 christos if (e->qe_signo != 0) 88 1.1 christos return NULL; 89 1.1 christos 90 1.1 christos e->qe_signo = signo; 91 1.1 christos e->qe_handler = sigarray[signo]; 92 1.1 christos e->qe_next = NULL; 93 1.1 christos 94 1.1 christos return e; 95 1.1 christos } 96 1.1 christos 97 1.1 christos static void 98 1.1 christos free_entry(q_entry_t *e) 99 1.1 christos { 100 1.1 christos 101 1.1 christos e->qe_signo = 0; 102 1.1 christos e->qe_handler = NULL; 103 1.1 christos e->qe_next = NULL; 104 1.1 christos } 105 1.1 christos 106 1.1 christos /* 107 1.2 dyoung * Attempt to post a signal to the sigq. 108 1.1 christos */ 109 1.1 christos static void 110 1.1 christos sig_post(int signo) 111 1.1 christos { 112 1.1 christos q_entry_t *e; 113 1.1 christos 114 1.1 christos if (sigarray[signo] == SIG_DFL || sigarray[signo] == SIG_IGN) 115 1.1 christos return; 116 1.1 christos 117 1.1 christos e = alloc_entry(signo); 118 1.1 christos if (e != NULL) { 119 1.2 dyoung *sigq.qe_last = e; 120 1.2 dyoung sigq.qe_last = &e->qe_next; 121 1.1 christos } 122 1.1 christos } 123 1.1 christos 124 1.1 christos /* 125 1.2 dyoung * Check the sigq for any pending signals. If any are found, 126 1.1 christos * preform the required actions and remove them from the queue. 127 1.1 christos */ 128 1.1 christos PUBLIC void 129 1.1 christos sig_check(void) 130 1.1 christos { 131 1.1 christos q_entry_t *e; 132 1.1 christos sigset_t nset; 133 1.1 christos sigset_t oset; 134 1.1 christos void (*handler)(int); 135 1.1 christos int signo; 136 1.1 christos 137 1.1 christos (void)sigfillset(&nset); 138 1.1 christos (void)sigprocmask(SIG_SETMASK, &nset, &oset); 139 1.1 christos 140 1.2 dyoung while ((e = sigq.qe_first) != NULL) { 141 1.1 christos signo = e->qe_signo; 142 1.1 christos handler = e->qe_handler; 143 1.1 christos 144 1.1 christos /* 145 1.1 christos * Remove the entry from the queue and free it. 146 1.1 christos */ 147 1.2 dyoung sigq.qe_first = e->qe_next; 148 1.2 dyoung if (sigq.qe_first == NULL) 149 1.2 dyoung sigq.qe_last = &sigq.qe_first; 150 1.1 christos free_entry(e); 151 1.1 christos 152 1.1 christos if (handler == SIG_DFL || handler == SIG_IGN) { 153 1.1 christos assert(/*CONSTCOND*/ 0); /* These should not get posted. */ 154 1.1 christos } 155 1.1 christos else { 156 1.1 christos (void)sigprocmask(SIG_SETMASK, &oset, NULL); 157 1.1 christos handler(signo); 158 1.1 christos (void)sigprocmask(SIG_SETMASK, &nset, NULL); 159 1.1 christos } 160 1.1 christos } 161 1.1 christos (void)sigprocmask(SIG_SETMASK, &oset, NULL); 162 1.1 christos } 163 1.1 christos 164 1.1 christos PUBLIC sig_t 165 1.3 christos sig_current(int signo) 166 1.3 christos { 167 1.3 christos assert(signo > 0 && signo < NSIG); 168 1.3 christos return sigarray[signo]; 169 1.3 christos } 170 1.3 christos 171 1.3 christos PUBLIC sig_t 172 1.1 christos sig_signal(int signo, sig_t handler) 173 1.1 christos { 174 1.1 christos sig_t old_handler; 175 1.1 christos sigset_t nset; 176 1.1 christos sigset_t oset; 177 1.1 christos 178 1.1 christos assert(signo > 0 && signo < NSIG); 179 1.1 christos 180 1.1 christos (void)sigemptyset(&nset); 181 1.1 christos (void)sigaddset(&nset, signo); 182 1.1 christos (void)sigprocmask(SIG_BLOCK, &nset, &oset); 183 1.1 christos 184 1.1 christos old_handler = sigarray[signo]; 185 1.1 christos sigarray[signo] = handler; 186 1.1 christos 187 1.1 christos (void)sigprocmask(SIG_SETMASK, &oset, NULL); 188 1.1 christos 189 1.1 christos return old_handler; 190 1.1 christos } 191 1.1 christos 192 1.1 christos static void 193 1.1 christos do_default_handler(int signo, int flags) 194 1.1 christos { 195 1.1 christos struct sigaction nsa; 196 1.1 christos struct sigaction osa; 197 1.1 christos sigset_t nset; 198 1.1 christos sigset_t oset; 199 1.1 christos int save_errno; 200 1.1 christos 201 1.1 christos save_errno = errno; 202 1.1 christos (void)sigemptyset(&nsa.sa_mask); 203 1.1 christos nsa.sa_flags = flags; 204 1.1 christos nsa.sa_handler = SIG_DFL; 205 1.1 christos (void)sigaction(signo, &nsa, &osa); 206 1.1 christos 207 1.1 christos (void)sigemptyset(&nset); 208 1.1 christos (void)sigaddset(&nset, signo); 209 1.1 christos (void)sigprocmask(SIG_UNBLOCK, &nset, &oset); 210 1.1 christos 211 1.1 christos (void)kill(0, signo); 212 1.1 christos 213 1.1 christos (void)sigprocmask(SIG_SETMASK, &oset, NULL); 214 1.1 christos (void)sigaction(signo, &osa, NULL); 215 1.1 christos errno = save_errno; 216 1.1 christos } 217 1.1 christos 218 1.1 christos /* 219 1.1 christos * Our generic signal handler. 220 1.1 christos */ 221 1.1 christos static void 222 1.1 christos sig_handler(int signo) 223 1.1 christos { 224 1.1 christos sigset_t nset; 225 1.1 christos sigset_t oset; 226 1.1 christos 227 1.1 christos (void)sigfillset(&nset); 228 1.1 christos (void)sigprocmask(SIG_SETMASK, &nset, &oset); 229 1.1 christos 230 1.1 christos assert (signo > 0 && signo < NSIG); /* Should be guaranteed. */ 231 1.1 christos 232 1.1 christos sig_post(signo); 233 1.1 christos 234 1.1 christos switch (signo) { 235 1.1 christos case SIGCONT: 236 1.1 christos assert(/*CONSTCOND*/ 0); /* We should not be seeing these. */ 237 1.1 christos do_default_handler(signo, 0); 238 1.1 christos break; 239 1.1 christos 240 1.1 christos case SIGTSTP: 241 1.1 christos case SIGTTIN: 242 1.1 christos case SIGTTOU: 243 1.1 christos do_default_handler(signo, 0); 244 1.1 christos break; 245 1.1 christos 246 1.1 christos case SIGINT: 247 1.1 christos case SIGHUP: 248 1.1 christos case SIGQUIT: 249 1.1 christos case SIGPIPE: 250 1.1 christos default: 251 1.1 christos if (sigarray[signo] == SIG_DFL) 252 1.1 christos do_default_handler(signo, SA_RESTART); 253 1.1 christos break; 254 1.1 christos } 255 1.1 christos (void)sigprocmask(SIG_SETMASK, &oset, NULL); 256 1.1 christos } 257 1.1 christos 258 1.1 christos /* 259 1.1 christos * Setup the signal handlers. 260 1.1 christos */ 261 1.1 christos PUBLIC void 262 1.1 christos sig_setup(void) 263 1.1 christos { 264 1.1 christos sigset_t nset; 265 1.1 christos sigset_t oset; 266 1.1 christos struct sigaction sa; 267 1.1 christos struct sigaction osa; 268 1.1 christos 269 1.1 christos /* Block all signals while setting things. */ 270 1.1 christos (void)sigfillset(&nset); 271 1.1 christos (void)sigprocmask(SIG_BLOCK, &nset, &oset); 272 1.1 christos 273 1.1 christos /* 274 1.1 christos * Flow Control - SIGTSTP, SIGTTIN, SIGTTOU, SIGCONT: 275 1.1 christos * 276 1.1 christos * We grab SIGTSTP, SIGTTIN, and SIGTTOU so that we post the 277 1.1 christos * signals before suspending so that they are available when 278 1.1 christos * we resume. If we were to use SIGCONT instead, they will 279 1.1 christos * not get posted until SIGCONT is unblocked, even though the 280 1.1 christos * process has resumed. 281 1.1 christos * 282 1.1 christos * NOTE: We default these to SA_RESTART here, but we need to 283 1.1 christos * change this in certain cases, e.g., when reading from a 284 1.1 christos * tty. 285 1.1 christos */ 286 1.1 christos (void)sigemptyset(&sa.sa_mask); 287 1.1 christos sa.sa_flags = SA_RESTART; 288 1.1 christos sa.sa_handler = sig_handler; 289 1.1 christos (void)sigaction(SIGTSTP, &sa, NULL); 290 1.1 christos (void)sigaction(SIGTTIN, &sa, NULL); 291 1.1 christos (void)sigaction(SIGTTOU, &sa, NULL); 292 1.1 christos 293 1.1 christos /* 294 1.1 christos * SIGHUP, SIGINT, and SIGQUIT: 295 1.1 christos * 296 1.1 christos * SIGHUP and SIGINT are trapped unless they are being 297 1.1 christos * ignored. 298 1.1 christos * 299 1.1 christos * Currently, we let the default handler deal with SIGQUIT. 300 1.1 christos */ 301 1.1 christos (void)sigemptyset(&sa.sa_mask); 302 1.1 christos sa.sa_flags = 0; 303 1.1 christos sa.sa_handler = sig_handler; 304 1.1 christos 305 1.1 christos if (sigaction(SIGHUP, &sa, &osa) != -1 && osa.sa_handler == SIG_IGN) 306 1.1 christos (void)signal(SIGHUP, SIG_IGN); 307 1.1 christos 308 1.1 christos if (sigaction(SIGINT, &sa, &osa) != -1 && osa.sa_handler == SIG_IGN) 309 1.1 christos (void)signal(SIGINT, SIG_IGN); 310 1.1 christos #if 0 311 1.1 christos if (signal(SIGQUIT, SIG_DFL) == SIG_IGN) 312 1.1 christos (void)signal(SIGQUIT, SIG_IGN); 313 1.1 christos #endif 314 1.1 christos /* 315 1.1 christos * SIGCHLD and SIGPIPE: 316 1.1 christos * 317 1.1 christos * SIGCHLD is setup early in main. The handler lives in 318 1.1 christos * popen.c as it uses internals of that module. 319 1.1 christos * 320 1.1 christos * SIGPIPE is grabbed here. It is only used in 321 1.1 christos * lex.c:setup_piping(), cmd1.c:type1(), and cmd1.c:pipecmd(). 322 1.1 christos */ 323 1.1 christos (void)sigemptyset(&sa.sa_mask); 324 1.1 christos sa.sa_flags = 0; 325 1.1 christos sa.sa_handler = sig_handler; 326 1.1 christos (void)sigaction(SIGPIPE, &sa, NULL); 327 1.1 christos 328 1.1 christos /* 329 1.1 christos * Make sure our structures are initialized. 330 1.1 christos * XXX: This should be unnecessary. 331 1.1 christos */ 332 1.1 christos (void)memset(sigarray, 0, sizeof(sigarray)); 333 1.2 dyoung SIGQUEUE_INIT(&sigq); 334 1.1 christos 335 1.1 christos /* Restore the signal mask. */ 336 1.1 christos (void)sigprocmask(SIG_SETMASK, &oset, NULL); 337 1.1 christos } 338 1.1 christos 339 1.1 christos static struct { /* data shared by sig_hold() and sig_release() */ 340 1.1 christos int depth; /* depth of sig_hold() */ 341 1.1 christos sigset_t oset; /* old signal mask saved by sig_hold() */ 342 1.1 christos } hold; 343 1.1 christos 344 1.1 christos /* 345 1.1 christos * Hold signals SIGHUP, SIGINT, and SIGQUIT. 346 1.1 christos */ 347 1.1 christos PUBLIC void 348 1.1 christos sig_hold(void) 349 1.1 christos { 350 1.1 christos sigset_t nset; 351 1.1 christos 352 1.1 christos if (hold.depth++ == 0) { 353 1.1 christos (void)sigemptyset(&nset); 354 1.1 christos (void)sigaddset(&nset, SIGHUP); 355 1.1 christos (void)sigaddset(&nset, SIGINT); 356 1.1 christos (void)sigaddset(&nset, SIGQUIT); 357 1.1 christos (void)sigprocmask(SIG_BLOCK, &nset, &hold.oset); 358 1.1 christos } 359 1.1 christos } 360 1.1 christos 361 1.1 christos /* 362 1.1 christos * Release signals SIGHUP, SIGINT, and SIGQUIT. 363 1.1 christos */ 364 1.1 christos PUBLIC void 365 1.1 christos sig_release(void) 366 1.1 christos { 367 1.1 christos 368 1.1 christos if (--hold.depth == 0) 369 1.1 christos (void)sigprocmask(SIG_SETMASK, &hold.oset, NULL); 370 1.1 christos } 371 1.1 christos 372 1.1 christos /* 373 1.1 christos * Unblock and ignore a signal. 374 1.1 christos */ 375 1.1 christos PUBLIC int 376 1.1 christos sig_ignore(int sig, struct sigaction *osa, sigset_t *oset) 377 1.1 christos { 378 1.1 christos struct sigaction act; 379 1.1 christos sigset_t nset; 380 1.1 christos int error; 381 1.1 christos 382 1.1 christos (void)sigemptyset(&act.sa_mask); 383 1.1 christos act.sa_flags = SA_RESTART; 384 1.1 christos act.sa_handler = SIG_IGN; 385 1.1 christos error = sigaction(sig, &act, osa); 386 1.1 christos 387 1.1 christos if (error != -1) { 388 1.1 christos (void)sigemptyset(&nset); 389 1.1 christos (void)sigaddset(&nset, sig); 390 1.1 christos (void)sigprocmask(SIG_UNBLOCK, &nset, oset); 391 1.1 christos } else if (oset != NULL) 392 1.1 christos (void)sigprocmask(SIG_UNBLOCK, NULL, oset); 393 1.1 christos 394 1.1 christos return error; 395 1.1 christos } 396 1.1 christos 397 1.1 christos /* 398 1.1 christos * Restore a signal and the current signal mask. 399 1.1 christos */ 400 1.1 christos PUBLIC int 401 1.1 christos sig_restore(int sig, struct sigaction *osa, sigset_t *oset) 402 1.1 christos { 403 1.1 christos int error; 404 1.1 christos 405 1.1 christos error = 0; 406 1.1 christos if (oset) 407 1.1 christos error = sigprocmask(SIG_SETMASK, oset, NULL); 408 1.1 christos if (osa) 409 1.1 christos error = sigaction(sig, osa, NULL); 410 1.1 christos 411 1.1 christos return error; 412 1.1 christos } 413 1.1 christos 414 1.1 christos /* 415 1.1 christos * Change the current flags and (optionally) return the old sigaction 416 1.1 christos * structure so we can restore things later. This is used to turn 417 1.1 christos * SA_RESTART on or off. 418 1.1 christos */ 419 1.1 christos PUBLIC int 420 1.1 christos sig_setflags(int signo, int flags, struct sigaction *osa) 421 1.1 christos { 422 1.1 christos struct sigaction sa; 423 1.1 christos 424 1.1 christos if (sigaction(signo, NULL, &sa) == -1) 425 1.1 christos return -1; 426 1.1 christos if (osa) 427 1.1 christos *osa = sa; 428 1.1 christos sa.sa_flags = flags; 429 1.1 christos return sigaction(signo, &sa, NULL); 430 1.1 christos } 431 1.1 christos 432