sys_sig.c revision 1.52 1 1.52 ryo /* $NetBSD: sys_sig.c,v 1.52 2021/09/23 06:58:47 ryo Exp $ */
2 1.2 ad
3 1.2 ad /*-
4 1.14 ad * Copyright (c) 2006, 2007, 2008 The NetBSD Foundation, Inc.
5 1.2 ad * All rights reserved.
6 1.2 ad *
7 1.2 ad * This code is derived from software contributed to The NetBSD Foundation
8 1.2 ad * by Andrew Doran.
9 1.2 ad *
10 1.2 ad * Redistribution and use in source and binary forms, with or without
11 1.2 ad * modification, are permitted provided that the following conditions
12 1.2 ad * are met:
13 1.2 ad * 1. Redistributions of source code must retain the above copyright
14 1.2 ad * notice, this list of conditions and the following disclaimer.
15 1.2 ad * 2. Redistributions in binary form must reproduce the above copyright
16 1.2 ad * notice, this list of conditions and the following disclaimer in the
17 1.2 ad * documentation and/or other materials provided with the distribution.
18 1.2 ad *
19 1.2 ad * THIS SOFTWARE IS PROVIDED BY THE NETBSD FOUNDATION, INC. AND CONTRIBUTORS
20 1.2 ad * ``AS IS'' AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED
21 1.2 ad * TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR
22 1.2 ad * PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE FOUNDATION OR CONTRIBUTORS
23 1.2 ad * BE LIABLE FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR
24 1.2 ad * CONSEQUENTIAL DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF
25 1.2 ad * SUBSTITUTE GOODS OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS
26 1.2 ad * INTERRUPTION) HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN
27 1.2 ad * CONTRACT, STRICT LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE)
28 1.2 ad * ARISING IN ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
29 1.2 ad * POSSIBILITY OF SUCH DAMAGE.
30 1.2 ad */
31 1.2 ad
32 1.2 ad /*
33 1.2 ad * Copyright (c) 1982, 1986, 1989, 1991, 1993
34 1.2 ad * The Regents of the University of California. All rights reserved.
35 1.2 ad * (c) UNIX System Laboratories, Inc.
36 1.2 ad * All or some portions of this file are derived from material licensed
37 1.2 ad * to the University of California by American Telephone and Telegraph
38 1.2 ad * Co. or Unix System Laboratories, Inc. and are reproduced herein with
39 1.2 ad * the permission of UNIX System Laboratories, Inc.
40 1.2 ad *
41 1.2 ad * Redistribution and use in source and binary forms, with or without
42 1.2 ad * modification, are permitted provided that the following conditions
43 1.2 ad * are met:
44 1.2 ad * 1. Redistributions of source code must retain the above copyright
45 1.2 ad * notice, this list of conditions and the following disclaimer.
46 1.2 ad * 2. Redistributions in binary form must reproduce the above copyright
47 1.2 ad * notice, this list of conditions and the following disclaimer in the
48 1.2 ad * documentation and/or other materials provided with the distribution.
49 1.2 ad * 3. Neither the name of the University nor the names of its contributors
50 1.2 ad * may be used to endorse or promote products derived from this software
51 1.2 ad * without specific prior written permission.
52 1.2 ad *
53 1.2 ad * THIS SOFTWARE IS PROVIDED BY THE REGENTS AND CONTRIBUTORS ``AS IS'' AND
54 1.2 ad * ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE
55 1.2 ad * IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE
56 1.2 ad * ARE DISCLAIMED. IN NO EVENT SHALL THE REGENTS OR CONTRIBUTORS BE LIABLE
57 1.2 ad * FOR ANY DIRECT, INDIRECT, INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL
58 1.2 ad * DAMAGES (INCLUDING, BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS
59 1.2 ad * OR SERVICES; LOSS OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION)
60 1.2 ad * HOWEVER CAUSED AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
61 1.2 ad * LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY
62 1.2 ad * OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF
63 1.2 ad * SUCH DAMAGE.
64 1.2 ad *
65 1.2 ad * @(#)kern_sig.c 8.14 (Berkeley) 5/14/95
66 1.2 ad */
67 1.2 ad
68 1.2 ad #include <sys/cdefs.h>
69 1.52 ryo __KERNEL_RCSID(0, "$NetBSD: sys_sig.c,v 1.52 2021/09/23 06:58:47 ryo Exp $");
70 1.45 christos
71 1.45 christos #include "opt_dtrace.h"
72 1.2 ad
73 1.2 ad #include <sys/param.h>
74 1.2 ad #include <sys/kernel.h>
75 1.2 ad #include <sys/signalvar.h>
76 1.2 ad #include <sys/proc.h>
77 1.2 ad #include <sys/pool.h>
78 1.2 ad #include <sys/syscallargs.h>
79 1.2 ad #include <sys/kauth.h>
80 1.2 ad #include <sys/wait.h>
81 1.2 ad #include <sys/kmem.h>
82 1.19 ad #include <sys/module.h>
83 1.45 christos #include <sys/sdt.h>
84 1.50 pgoyette #include <sys/compat_stub.h>
85 1.45 christos
86 1.45 christos SDT_PROVIDER_DECLARE(proc);
87 1.45 christos SDT_PROBE_DEFINE2(proc, kernel, , signal__clear,
88 1.45 christos "int", /* signal */
89 1.45 christos "ksiginfo_t *"); /* signal-info */
90 1.2 ad
91 1.2 ad int
92 1.25 rmind sys___sigaction_sigtramp(struct lwp *l,
93 1.25 rmind const struct sys___sigaction_sigtramp_args *uap, register_t *retval)
94 1.2 ad {
95 1.9 dsl /* {
96 1.2 ad syscallarg(int) signum;
97 1.2 ad syscallarg(const struct sigaction *) nsa;
98 1.2 ad syscallarg(struct sigaction *) osa;
99 1.2 ad syscallarg(void *) tramp;
100 1.2 ad syscallarg(int) vers;
101 1.9 dsl } */
102 1.2 ad struct sigaction nsa, osa;
103 1.2 ad int error;
104 1.2 ad
105 1.2 ad if (SCARG(uap, nsa)) {
106 1.2 ad error = copyin(SCARG(uap, nsa), &nsa, sizeof(nsa));
107 1.2 ad if (error)
108 1.2 ad return (error);
109 1.2 ad }
110 1.2 ad error = sigaction1(l, SCARG(uap, signum),
111 1.2 ad SCARG(uap, nsa) ? &nsa : 0, SCARG(uap, osa) ? &osa : 0,
112 1.2 ad SCARG(uap, tramp), SCARG(uap, vers));
113 1.2 ad if (error)
114 1.2 ad return (error);
115 1.2 ad if (SCARG(uap, osa)) {
116 1.2 ad error = copyout(&osa, SCARG(uap, osa), sizeof(osa));
117 1.2 ad if (error)
118 1.2 ad return (error);
119 1.2 ad }
120 1.25 rmind return 0;
121 1.2 ad }
122 1.2 ad
123 1.2 ad /*
124 1.2 ad * Manipulate signal mask. Note that we receive new mask, not pointer, and
125 1.2 ad * return old mask as return value; the library stub does the rest.
126 1.2 ad */
127 1.2 ad int
128 1.25 rmind sys___sigprocmask14(struct lwp *l, const struct sys___sigprocmask14_args *uap,
129 1.25 rmind register_t *retval)
130 1.2 ad {
131 1.9 dsl /* {
132 1.2 ad syscallarg(int) how;
133 1.2 ad syscallarg(const sigset_t *) set;
134 1.2 ad syscallarg(sigset_t *) oset;
135 1.9 dsl } */
136 1.2 ad struct proc *p = l->l_proc;
137 1.2 ad sigset_t nss, oss;
138 1.2 ad int error;
139 1.2 ad
140 1.2 ad if (SCARG(uap, set)) {
141 1.2 ad error = copyin(SCARG(uap, set), &nss, sizeof(nss));
142 1.2 ad if (error)
143 1.25 rmind return error;
144 1.2 ad }
145 1.14 ad mutex_enter(p->p_lock);
146 1.2 ad error = sigprocmask1(l, SCARG(uap, how),
147 1.2 ad SCARG(uap, set) ? &nss : 0, SCARG(uap, oset) ? &oss : 0);
148 1.14 ad mutex_exit(p->p_lock);
149 1.2 ad if (error)
150 1.25 rmind return error;
151 1.2 ad if (SCARG(uap, oset)) {
152 1.2 ad error = copyout(&oss, SCARG(uap, oset), sizeof(oss));
153 1.2 ad if (error)
154 1.25 rmind return error;
155 1.2 ad }
156 1.25 rmind return 0;
157 1.2 ad }
158 1.2 ad
159 1.2 ad int
160 1.25 rmind sys___sigpending14(struct lwp *l, const struct sys___sigpending14_args *uap,
161 1.25 rmind register_t *retval)
162 1.2 ad {
163 1.9 dsl /* {
164 1.2 ad syscallarg(sigset_t *) set;
165 1.9 dsl } */
166 1.2 ad sigset_t ss;
167 1.2 ad
168 1.2 ad sigpending1(l, &ss);
169 1.25 rmind return copyout(&ss, SCARG(uap, set), sizeof(ss));
170 1.2 ad }
171 1.2 ad
172 1.2 ad /*
173 1.2 ad * Suspend process until signal, providing mask to be set in the meantime.
174 1.2 ad * Note nonstandard calling convention: libc stub passes mask, not pointer,
175 1.2 ad * to save a copyin.
176 1.2 ad */
177 1.2 ad int
178 1.25 rmind sys___sigsuspend14(struct lwp *l, const struct sys___sigsuspend14_args *uap,
179 1.25 rmind register_t *retval)
180 1.2 ad {
181 1.9 dsl /* {
182 1.2 ad syscallarg(const sigset_t *) set;
183 1.9 dsl } */
184 1.2 ad sigset_t ss;
185 1.2 ad int error;
186 1.2 ad
187 1.2 ad if (SCARG(uap, set)) {
188 1.2 ad error = copyin(SCARG(uap, set), &ss, sizeof(ss));
189 1.2 ad if (error)
190 1.25 rmind return error;
191 1.2 ad }
192 1.25 rmind return sigsuspend1(l, SCARG(uap, set) ? &ss : 0);
193 1.2 ad }
194 1.2 ad
195 1.2 ad int
196 1.25 rmind sys___sigaltstack14(struct lwp *l, const struct sys___sigaltstack14_args *uap,
197 1.25 rmind register_t *retval)
198 1.2 ad {
199 1.9 dsl /* {
200 1.2 ad syscallarg(const struct sigaltstack *) nss;
201 1.2 ad syscallarg(struct sigaltstack *) oss;
202 1.9 dsl } */
203 1.2 ad struct sigaltstack nss, oss;
204 1.2 ad int error;
205 1.2 ad
206 1.2 ad if (SCARG(uap, nss)) {
207 1.2 ad error = copyin(SCARG(uap, nss), &nss, sizeof(nss));
208 1.2 ad if (error)
209 1.25 rmind return error;
210 1.2 ad }
211 1.2 ad error = sigaltstack1(l,
212 1.2 ad SCARG(uap, nss) ? &nss : 0, SCARG(uap, oss) ? &oss : 0);
213 1.2 ad if (error)
214 1.25 rmind return error;
215 1.2 ad if (SCARG(uap, oss)) {
216 1.2 ad error = copyout(&oss, SCARG(uap, oss), sizeof(oss));
217 1.2 ad if (error)
218 1.25 rmind return error;
219 1.2 ad }
220 1.25 rmind return 0;
221 1.2 ad }
222 1.2 ad
223 1.44 martin int
224 1.30 christos kill1(struct lwp *l, pid_t pid, ksiginfo_t *ksi, register_t *retval)
225 1.2 ad {
226 1.2 ad int error;
227 1.30 christos struct proc *p;
228 1.2 ad
229 1.30 christos if ((u_int)ksi->ksi_signo >= NSIG)
230 1.25 rmind return EINVAL;
231 1.30 christos
232 1.32 martin if (pid != l->l_proc->p_pid) {
233 1.32 martin if (ksi->ksi_pid != l->l_proc->p_pid)
234 1.32 martin return EPERM;
235 1.32 martin
236 1.32 martin if (ksi->ksi_uid != kauth_cred_geteuid(l->l_cred))
237 1.32 martin return EPERM;
238 1.32 martin
239 1.32 martin switch (ksi->ksi_code) {
240 1.32 martin case SI_USER:
241 1.32 martin case SI_QUEUE:
242 1.32 martin break;
243 1.32 martin default:
244 1.32 martin return EPERM;
245 1.32 martin }
246 1.32 martin }
247 1.30 christos
248 1.30 christos if (pid > 0) {
249 1.2 ad /* kill single process */
250 1.51 ad mutex_enter(&proc_lock);
251 1.38 christos p = proc_find_raw(pid);
252 1.38 christos if (p == NULL || (p->p_stat != SACTIVE && p->p_stat != SSTOP)) {
253 1.51 ad mutex_exit(&proc_lock);
254 1.38 christos /* IEEE Std 1003.1-2001: return success for zombies */
255 1.38 christos return p ? 0 : ESRCH;
256 1.13 ad }
257 1.14 ad mutex_enter(p->p_lock);
258 1.2 ad error = kauth_authorize_process(l->l_cred,
259 1.30 christos KAUTH_PROCESS_SIGNAL, p, KAUTH_ARG(ksi->ksi_signo),
260 1.2 ad NULL, NULL);
261 1.30 christos if (!error && ksi->ksi_signo) {
262 1.46 christos error = kpsignal2(p, ksi);
263 1.2 ad }
264 1.14 ad mutex_exit(p->p_lock);
265 1.51 ad mutex_exit(&proc_lock);
266 1.25 rmind return error;
267 1.2 ad }
268 1.30 christos
269 1.30 christos switch (pid) {
270 1.2 ad case -1: /* broadcast signal */
271 1.30 christos return killpg1(l, ksi, 0, 1);
272 1.2 ad case 0: /* signal own process group */
273 1.30 christos return killpg1(l, ksi, 0, 0);
274 1.2 ad default: /* negative explicit process group */
275 1.30 christos return killpg1(l, ksi, -pid, 0);
276 1.2 ad }
277 1.2 ad /* NOTREACHED */
278 1.2 ad }
279 1.2 ad
280 1.2 ad int
281 1.30 christos sys_sigqueueinfo(struct lwp *l, const struct sys_sigqueueinfo_args *uap,
282 1.30 christos register_t *retval)
283 1.30 christos {
284 1.30 christos /* {
285 1.30 christos syscallarg(pid_t int) pid;
286 1.30 christos syscallarg(const siginfo_t *) info;
287 1.30 christos } */
288 1.30 christos ksiginfo_t ksi;
289 1.30 christos int error;
290 1.30 christos
291 1.30 christos KSI_INIT(&ksi);
292 1.30 christos
293 1.30 christos if ((error = copyin(&SCARG(uap, info)->_info, &ksi.ksi_info,
294 1.30 christos sizeof(ksi.ksi_info))) != 0)
295 1.30 christos return error;
296 1.30 christos
297 1.30 christos return kill1(l, SCARG(uap, pid), &ksi, retval);
298 1.30 christos }
299 1.30 christos
300 1.30 christos int
301 1.30 christos sys_kill(struct lwp *l, const struct sys_kill_args *uap, register_t *retval)
302 1.30 christos {
303 1.30 christos /* {
304 1.30 christos syscallarg(pid_t) pid;
305 1.30 christos syscallarg(int) signum;
306 1.30 christos } */
307 1.30 christos ksiginfo_t ksi;
308 1.30 christos
309 1.30 christos KSI_INIT(&ksi);
310 1.30 christos
311 1.30 christos ksi.ksi_signo = SCARG(uap, signum);
312 1.30 christos ksi.ksi_code = SI_USER;
313 1.30 christos ksi.ksi_pid = l->l_proc->p_pid;
314 1.30 christos ksi.ksi_uid = kauth_cred_geteuid(l->l_cred);
315 1.30 christos
316 1.30 christos return kill1(l, SCARG(uap, pid), &ksi, retval);
317 1.30 christos }
318 1.30 christos
319 1.30 christos int
320 1.25 rmind sys_getcontext(struct lwp *l, const struct sys_getcontext_args *uap,
321 1.25 rmind register_t *retval)
322 1.2 ad {
323 1.9 dsl /* {
324 1.2 ad syscallarg(struct __ucontext *) ucp;
325 1.9 dsl } */
326 1.2 ad struct proc *p = l->l_proc;
327 1.2 ad ucontext_t uc;
328 1.2 ad
329 1.31 joerg memset(&uc, 0, sizeof(uc));
330 1.31 joerg
331 1.14 ad mutex_enter(p->p_lock);
332 1.2 ad getucontext(l, &uc);
333 1.14 ad mutex_exit(p->p_lock);
334 1.2 ad
335 1.25 rmind return copyout(&uc, SCARG(uap, ucp), sizeof (*SCARG(uap, ucp)));
336 1.2 ad }
337 1.2 ad
338 1.2 ad int
339 1.25 rmind sys_setcontext(struct lwp *l, const struct sys_setcontext_args *uap,
340 1.25 rmind register_t *retval)
341 1.2 ad {
342 1.9 dsl /* {
343 1.2 ad syscallarg(const ucontext_t *) ucp;
344 1.9 dsl } */
345 1.2 ad struct proc *p = l->l_proc;
346 1.2 ad ucontext_t uc;
347 1.2 ad int error;
348 1.2 ad
349 1.2 ad error = copyin(SCARG(uap, ucp), &uc, sizeof (uc));
350 1.2 ad if (error)
351 1.25 rmind return error;
352 1.25 rmind if ((uc.uc_flags & _UC_CPU) == 0)
353 1.25 rmind return EINVAL;
354 1.14 ad mutex_enter(p->p_lock);
355 1.2 ad error = setucontext(l, &uc);
356 1.14 ad mutex_exit(p->p_lock);
357 1.2 ad if (error)
358 1.25 rmind return error;
359 1.2 ad
360 1.25 rmind return EJUSTRETURN;
361 1.2 ad }
362 1.2 ad
363 1.2 ad /*
364 1.2 ad * sigtimedwait(2) system call, used also for implementation
365 1.2 ad * of sigwaitinfo() and sigwait().
366 1.2 ad *
367 1.2 ad * This only handles single LWP in signal wait. libpthread provides
368 1.43 snj * its own sigtimedwait() wrapper to DTRT WRT individual threads.
369 1.2 ad */
370 1.2 ad int
371 1.21 christos sys_____sigtimedwait50(struct lwp *l,
372 1.21 christos const struct sys_____sigtimedwait50_args *uap, register_t *retval)
373 1.2 ad {
374 1.2 ad
375 1.36 christos return sigtimedwait1(l, uap, retval, copyin, copyout, copyin, copyout);
376 1.2 ad }
377 1.2 ad
378 1.2 ad int
379 1.2 ad sigaction1(struct lwp *l, int signum, const struct sigaction *nsa,
380 1.2 ad struct sigaction *osa, const void *tramp, int vers)
381 1.2 ad {
382 1.2 ad struct proc *p;
383 1.2 ad struct sigacts *ps;
384 1.2 ad sigset_t tset;
385 1.2 ad int prop, error;
386 1.2 ad ksiginfoq_t kq;
387 1.20 ad static bool v0v1valid;
388 1.2 ad
389 1.2 ad if (signum <= 0 || signum >= NSIG)
390 1.25 rmind return EINVAL;
391 1.2 ad
392 1.2 ad p = l->l_proc;
393 1.2 ad error = 0;
394 1.2 ad ksiginfo_queue_init(&kq);
395 1.2 ad
396 1.2 ad /*
397 1.2 ad * Trampoline ABI version 0 is reserved for the legacy kernel
398 1.2 ad * provided on-stack trampoline. Conversely, if we are using a
399 1.2 ad * non-0 ABI version, we must have a trampoline. Only validate the
400 1.42 christos * vers if a new sigaction was supplied and there was an actual
401 1.42 christos * handler specified (not SIG_IGN or SIG_DFL), which don't require
402 1.42 christos * a trampoline. Emulations use legacy kernel trampolines with
403 1.42 christos * version 0, alternatively check for that too.
404 1.19 ad *
405 1.19 ad * If version < 2, we try to autoload the compat module. Note
406 1.19 ad * that we interlock with the unload check in compat_modcmd()
407 1.29 pgoyette * using kernconfig_lock. If the autoload fails, we don't try it
408 1.19 ad * again for this process.
409 1.19 ad */
410 1.42 christos if (nsa != NULL && nsa->sa_handler != SIG_IGN
411 1.42 christos && nsa->sa_handler != SIG_DFL) {
412 1.39 christos if (__predict_false(vers < 2)) {
413 1.52 ryo if (p->p_flag & PK_32) {
414 1.39 christos v0v1valid = true;
415 1.52 ryo } else if (vers == 0 &&
416 1.52 ryo p->p_sigctx.ps_sigcode != NULL) {
417 1.52 ryo /*
418 1.52 ryo * if sigcode is used for this emulation,
419 1.52 ryo * version 0 is allowed.
420 1.52 ryo */
421 1.52 ryo } else if ((p->p_lflag & PL_SIGCOMPAT) == 0) {
422 1.39 christos kernconfig_lock();
423 1.50 pgoyette (void)module_autoload("compat_16",
424 1.50 pgoyette MODULE_CLASS_ANY);
425 1.50 pgoyette if (sendsig_sigcontext_16_hook.hooked) {
426 1.39 christos /*
427 1.39 christos * We need to remember if the
428 1.39 christos * sigcontext method may be useable,
429 1.39 christos * because libc may use it even
430 1.39 christos * if siginfo is available.
431 1.39 christos */
432 1.39 christos v0v1valid = true;
433 1.39 christos }
434 1.51 ad mutex_enter(&proc_lock);
435 1.20 ad /*
436 1.39 christos * Prevent unload of compat module while
437 1.39 christos * this process remains.
438 1.20 ad */
439 1.39 christos p->p_lflag |= PL_SIGCOMPAT;
440 1.51 ad mutex_exit(&proc_lock);
441 1.39 christos kernconfig_unlock();
442 1.20 ad }
443 1.19 ad }
444 1.19 ad
445 1.20 ad switch (vers) {
446 1.20 ad case 0:
447 1.20 ad /* sigcontext, kernel supplied trampoline. */
448 1.52 ryo if (tramp != NULL ||
449 1.52 ryo (p->p_sigctx.ps_sigcode == NULL && !v0v1valid)) {
450 1.20 ad return EINVAL;
451 1.20 ad }
452 1.20 ad break;
453 1.20 ad case 1:
454 1.20 ad /* sigcontext, user supplied trampoline. */
455 1.20 ad if (tramp == NULL || !v0v1valid) {
456 1.20 ad return EINVAL;
457 1.20 ad }
458 1.20 ad break;
459 1.20 ad case 2:
460 1.20 ad case 3:
461 1.20 ad /* siginfo, user supplied trampoline. */
462 1.20 ad if (tramp == NULL) {
463 1.20 ad return EINVAL;
464 1.20 ad }
465 1.20 ad break;
466 1.20 ad default:
467 1.20 ad return EINVAL;
468 1.20 ad }
469 1.2 ad }
470 1.2 ad
471 1.14 ad mutex_enter(p->p_lock);
472 1.2 ad
473 1.2 ad ps = p->p_sigacts;
474 1.2 ad if (osa)
475 1.48 maxv sigaction_copy(osa, &SIGACTION_PS(ps, signum));
476 1.2 ad if (!nsa)
477 1.2 ad goto out;
478 1.2 ad
479 1.2 ad prop = sigprop[signum];
480 1.2 ad if ((nsa->sa_flags & ~SA_ALLBITS) || (prop & SA_CANTMASK)) {
481 1.2 ad error = EINVAL;
482 1.2 ad goto out;
483 1.2 ad }
484 1.2 ad
485 1.48 maxv sigaction_copy(&SIGACTION_PS(ps, signum), nsa);
486 1.2 ad ps->sa_sigdesc[signum].sd_tramp = tramp;
487 1.2 ad ps->sa_sigdesc[signum].sd_vers = vers;
488 1.2 ad sigminusset(&sigcantmask, &SIGACTION_PS(ps, signum).sa_mask);
489 1.2 ad
490 1.2 ad if ((prop & SA_NORESET) != 0)
491 1.2 ad SIGACTION_PS(ps, signum).sa_flags &= ~SA_RESETHAND;
492 1.2 ad
493 1.2 ad if (signum == SIGCHLD) {
494 1.2 ad if (nsa->sa_flags & SA_NOCLDSTOP)
495 1.2 ad p->p_sflag |= PS_NOCLDSTOP;
496 1.2 ad else
497 1.2 ad p->p_sflag &= ~PS_NOCLDSTOP;
498 1.2 ad if (nsa->sa_flags & SA_NOCLDWAIT) {
499 1.2 ad /*
500 1.2 ad * Paranoia: since SA_NOCLDWAIT is implemented by
501 1.2 ad * reparenting the dying child to PID 1 (and trust
502 1.2 ad * it to reap the zombie), PID 1 itself is forbidden
503 1.2 ad * to set SA_NOCLDWAIT.
504 1.2 ad */
505 1.2 ad if (p->p_pid == 1)
506 1.4 pavel p->p_flag &= ~PK_NOCLDWAIT;
507 1.2 ad else
508 1.4 pavel p->p_flag |= PK_NOCLDWAIT;
509 1.2 ad } else
510 1.4 pavel p->p_flag &= ~PK_NOCLDWAIT;
511 1.2 ad
512 1.2 ad if (nsa->sa_handler == SIG_IGN) {
513 1.2 ad /*
514 1.2 ad * Paranoia: same as above.
515 1.2 ad */
516 1.2 ad if (p->p_pid == 1)
517 1.4 pavel p->p_flag &= ~PK_CLDSIGIGN;
518 1.2 ad else
519 1.4 pavel p->p_flag |= PK_CLDSIGIGN;
520 1.2 ad } else
521 1.4 pavel p->p_flag &= ~PK_CLDSIGIGN;
522 1.2 ad }
523 1.2 ad
524 1.2 ad if ((nsa->sa_flags & SA_NODEFER) == 0)
525 1.2 ad sigaddset(&SIGACTION_PS(ps, signum).sa_mask, signum);
526 1.2 ad else
527 1.2 ad sigdelset(&SIGACTION_PS(ps, signum).sa_mask, signum);
528 1.2 ad
529 1.2 ad /*
530 1.2 ad * Set bit in p_sigctx.ps_sigignore for signals that are set to
531 1.2 ad * SIG_IGN, and for signals set to SIG_DFL where the default is to
532 1.2 ad * ignore. However, don't put SIGCONT in p_sigctx.ps_sigignore, as
533 1.2 ad * we have to restart the process.
534 1.2 ad */
535 1.2 ad if (nsa->sa_handler == SIG_IGN ||
536 1.2 ad (nsa->sa_handler == SIG_DFL && (prop & SA_IGNORE) != 0)) {
537 1.2 ad /* Never to be seen again. */
538 1.2 ad sigemptyset(&tset);
539 1.2 ad sigaddset(&tset, signum);
540 1.2 ad sigclearall(p, &tset, &kq);
541 1.2 ad if (signum != SIGCONT) {
542 1.2 ad /* Easier in psignal */
543 1.2 ad sigaddset(&p->p_sigctx.ps_sigignore, signum);
544 1.2 ad }
545 1.2 ad sigdelset(&p->p_sigctx.ps_sigcatch, signum);
546 1.2 ad } else {
547 1.2 ad sigdelset(&p->p_sigctx.ps_sigignore, signum);
548 1.2 ad if (nsa->sa_handler == SIG_DFL)
549 1.2 ad sigdelset(&p->p_sigctx.ps_sigcatch, signum);
550 1.2 ad else
551 1.2 ad sigaddset(&p->p_sigctx.ps_sigcatch, signum);
552 1.2 ad }
553 1.2 ad
554 1.2 ad /*
555 1.2 ad * Previously held signals may now have become visible. Ensure that
556 1.2 ad * we check for them before returning to userspace.
557 1.2 ad */
558 1.6 ad if (sigispending(l, 0)) {
559 1.6 ad lwp_lock(l);
560 1.6 ad l->l_flag |= LW_PENDSIG;
561 1.6 ad lwp_unlock(l);
562 1.6 ad }
563 1.25 rmind out:
564 1.14 ad mutex_exit(p->p_lock);
565 1.2 ad ksiginfo_queue_drain(&kq);
566 1.2 ad
567 1.25 rmind return error;
568 1.2 ad }
569 1.2 ad
570 1.2 ad int
571 1.2 ad sigprocmask1(struct lwp *l, int how, const sigset_t *nss, sigset_t *oss)
572 1.2 ad {
573 1.37 rmind sigset_t *mask = &l->l_sigmask;
574 1.37 rmind bool more;
575 1.2 ad
576 1.37 rmind KASSERT(mutex_owned(l->l_proc->p_lock));
577 1.2 ad
578 1.37 rmind if (oss) {
579 1.17 wrstuden *oss = *mask;
580 1.2 ad }
581 1.2 ad
582 1.37 rmind if (nss == NULL) {
583 1.37 rmind return 0;
584 1.37 rmind }
585 1.37 rmind
586 1.37 rmind switch (how) {
587 1.37 rmind case SIG_BLOCK:
588 1.37 rmind sigplusset(nss, mask);
589 1.37 rmind more = false;
590 1.37 rmind break;
591 1.37 rmind case SIG_UNBLOCK:
592 1.37 rmind sigminusset(nss, mask);
593 1.37 rmind more = true;
594 1.37 rmind break;
595 1.37 rmind case SIG_SETMASK:
596 1.37 rmind *mask = *nss;
597 1.37 rmind more = true;
598 1.37 rmind break;
599 1.37 rmind default:
600 1.37 rmind return EINVAL;
601 1.37 rmind }
602 1.37 rmind sigminusset(&sigcantmask, mask);
603 1.37 rmind if (more && sigispending(l, 0)) {
604 1.37 rmind /*
605 1.37 rmind * Check for pending signals on return to user.
606 1.37 rmind */
607 1.37 rmind lwp_lock(l);
608 1.37 rmind l->l_flag |= LW_PENDSIG;
609 1.37 rmind lwp_unlock(l);
610 1.37 rmind }
611 1.25 rmind return 0;
612 1.2 ad }
613 1.2 ad
614 1.2 ad void
615 1.2 ad sigpending1(struct lwp *l, sigset_t *ss)
616 1.2 ad {
617 1.2 ad struct proc *p = l->l_proc;
618 1.2 ad
619 1.14 ad mutex_enter(p->p_lock);
620 1.2 ad *ss = l->l_sigpend.sp_set;
621 1.2 ad sigplusset(&p->p_sigpend.sp_set, ss);
622 1.14 ad mutex_exit(p->p_lock);
623 1.2 ad }
624 1.2 ad
625 1.33 christos void
626 1.33 christos sigsuspendsetup(struct lwp *l, const sigset_t *ss)
627 1.2 ad {
628 1.25 rmind struct proc *p = l->l_proc;
629 1.2 ad
630 1.33 christos /*
631 1.33 christos * When returning from sigsuspend/pselect/pollts, we want
632 1.33 christos * the old mask to be restored after the
633 1.33 christos * signal handler has finished. Thus, we
634 1.33 christos * save it here and mark the sigctx structure
635 1.33 christos * to indicate this.
636 1.33 christos */
637 1.33 christos mutex_enter(p->p_lock);
638 1.33 christos l->l_sigrestore = 1;
639 1.33 christos l->l_sigoldmask = l->l_sigmask;
640 1.33 christos l->l_sigmask = *ss;
641 1.33 christos sigminusset(&sigcantmask, &l->l_sigmask);
642 1.2 ad
643 1.33 christos /* Check for pending signals when sleeping. */
644 1.33 christos if (sigispending(l, 0)) {
645 1.33 christos lwp_lock(l);
646 1.33 christos l->l_flag |= LW_PENDSIG;
647 1.33 christos lwp_unlock(l);
648 1.2 ad }
649 1.33 christos mutex_exit(p->p_lock);
650 1.33 christos }
651 1.33 christos
652 1.34 christos void
653 1.34 christos sigsuspendteardown(struct lwp *l)
654 1.34 christos {
655 1.34 christos struct proc *p = l->l_proc;
656 1.34 christos
657 1.34 christos mutex_enter(p->p_lock);
658 1.35 christos /* Check for pending signals when sleeping. */
659 1.34 christos if (l->l_sigrestore) {
660 1.35 christos if (sigispending(l, 0)) {
661 1.35 christos lwp_lock(l);
662 1.35 christos l->l_flag |= LW_PENDSIG;
663 1.35 christos lwp_unlock(l);
664 1.35 christos } else {
665 1.35 christos l->l_sigrestore = 0;
666 1.35 christos l->l_sigmask = l->l_sigoldmask;
667 1.35 christos }
668 1.34 christos }
669 1.34 christos mutex_exit(p->p_lock);
670 1.34 christos }
671 1.34 christos
672 1.33 christos int
673 1.33 christos sigsuspend1(struct lwp *l, const sigset_t *ss)
674 1.33 christos {
675 1.33 christos
676 1.33 christos if (ss)
677 1.33 christos sigsuspendsetup(l, ss);
678 1.2 ad
679 1.5 thorpej while (kpause("pause", true, 0, NULL) == 0)
680 1.2 ad ;
681 1.2 ad
682 1.2 ad /* always return EINTR rather than ERESTART... */
683 1.25 rmind return EINTR;
684 1.2 ad }
685 1.2 ad
686 1.2 ad int
687 1.2 ad sigaltstack1(struct lwp *l, const struct sigaltstack *nss,
688 1.25 rmind struct sigaltstack *oss)
689 1.2 ad {
690 1.2 ad struct proc *p = l->l_proc;
691 1.2 ad int error = 0;
692 1.2 ad
693 1.14 ad mutex_enter(p->p_lock);
694 1.2 ad
695 1.2 ad if (oss)
696 1.2 ad *oss = l->l_sigstk;
697 1.2 ad
698 1.2 ad if (nss) {
699 1.2 ad if (nss->ss_flags & ~SS_ALLBITS)
700 1.2 ad error = EINVAL;
701 1.2 ad else if (nss->ss_flags & SS_DISABLE) {
702 1.2 ad if (l->l_sigstk.ss_flags & SS_ONSTACK)
703 1.2 ad error = EINVAL;
704 1.2 ad } else if (nss->ss_size < MINSIGSTKSZ)
705 1.2 ad error = ENOMEM;
706 1.2 ad
707 1.2 ad if (!error)
708 1.2 ad l->l_sigstk = *nss;
709 1.2 ad }
710 1.2 ad
711 1.14 ad mutex_exit(p->p_lock);
712 1.2 ad
713 1.25 rmind return error;
714 1.2 ad }
715 1.2 ad
716 1.2 ad int
717 1.26 pooka sigtimedwait1(struct lwp *l, const struct sys_____sigtimedwait50_args *uap,
718 1.36 christos register_t *retval, copyin_t fetchss, copyout_t storeinf, copyin_t fetchts,
719 1.36 christos copyout_t storets)
720 1.2 ad {
721 1.9 dsl /* {
722 1.2 ad syscallarg(const sigset_t *) set;
723 1.2 ad syscallarg(siginfo_t *) info;
724 1.2 ad syscallarg(struct timespec *) timeout;
725 1.9 dsl } */
726 1.2 ad struct proc *p = l->l_proc;
727 1.25 rmind int error, signum, timo;
728 1.2 ad struct timespec ts, tsstart, tsnow;
729 1.24 rmind ksiginfo_t ksi;
730 1.2 ad
731 1.2 ad /*
732 1.2 ad * Calculate timeout, if it was specified.
733 1.40 apb *
734 1.40 apb * NULL pointer means an infinite timeout.
735 1.40 apb * {.tv_sec = 0, .tv_nsec = 0} means do not block.
736 1.2 ad */
737 1.2 ad if (SCARG(uap, timeout)) {
738 1.25 rmind error = (*fetchts)(SCARG(uap, timeout), &ts, sizeof(ts));
739 1.23 christos if (error)
740 1.23 christos return error;
741 1.2 ad
742 1.23 christos if ((error = itimespecfix(&ts)) != 0)
743 1.23 christos return error;
744 1.2 ad
745 1.23 christos timo = tstohz(&ts);
746 1.41 apb if (timo == 0) {
747 1.41 apb if (ts.tv_sec == 0 && ts.tv_nsec == 0)
748 1.41 apb timo = -1; /* do not block */
749 1.41 apb else
750 1.41 apb timo = 1; /* the shortest possible timeout */
751 1.41 apb }
752 1.2 ad
753 1.2 ad /*
754 1.2 ad * Remember current uptime, it would be used in
755 1.2 ad * ECANCELED/ERESTART case.
756 1.2 ad */
757 1.2 ad getnanouptime(&tsstart);
758 1.25 rmind } else {
759 1.25 rmind memset(&tsstart, 0, sizeof(tsstart)); /* XXXgcc */
760 1.41 apb timo = 0; /* infinite timeout */
761 1.2 ad }
762 1.2 ad
763 1.36 christos error = (*fetchss)(SCARG(uap, set), &l->l_sigwaitset,
764 1.2 ad sizeof(l->l_sigwaitset));
765 1.25 rmind if (error)
766 1.25 rmind return error;
767 1.2 ad
768 1.2 ad /*
769 1.2 ad * Silently ignore SA_CANTMASK signals. psignal1() would ignore
770 1.2 ad * SA_CANTMASK signals in waitset, we do this only for the below
771 1.2 ad * siglist check.
772 1.2 ad */
773 1.2 ad sigminusset(&sigcantmask, &l->l_sigwaitset);
774 1.2 ad
775 1.47 maxv memset(&ksi.ksi_info, 0, sizeof(ksi.ksi_info));
776 1.47 maxv
777 1.14 ad mutex_enter(p->p_lock);
778 1.2 ad
779 1.25 rmind /* Check for pending signals in the process, if no - then in LWP. */
780 1.24 rmind if ((signum = sigget(&p->p_sigpend, &ksi, 0, &l->l_sigwaitset)) == 0)
781 1.24 rmind signum = sigget(&l->l_sigpend, &ksi, 0, &l->l_sigwaitset);
782 1.2 ad
783 1.2 ad if (signum != 0) {
784 1.25 rmind /* If found a pending signal, just copy it out to the user. */
785 1.14 ad mutex_exit(p->p_lock);
786 1.2 ad goto out;
787 1.2 ad }
788 1.2 ad
789 1.41 apb if (timo < 0) {
790 1.41 apb /* If not allowed to block, return an error */
791 1.41 apb mutex_exit(p->p_lock);
792 1.41 apb return EAGAIN;
793 1.41 apb }
794 1.41 apb
795 1.2 ad /*
796 1.25 rmind * Set up the sigwait list and wait for signal to arrive.
797 1.25 rmind * We can either be woken up or time out.
798 1.2 ad */
799 1.24 rmind l->l_sigwaited = &ksi;
800 1.2 ad LIST_INSERT_HEAD(&p->p_sigwaiters, l, l_sigwaiter);
801 1.14 ad error = cv_timedwait_sig(&l->l_sigcv, p->p_lock, timo);
802 1.2 ad
803 1.2 ad /*
804 1.25 rmind * Need to find out if we woke as a result of _lwp_wakeup() or a
805 1.2 ad * signal outside our wait set.
806 1.2 ad */
807 1.2 ad if (l->l_sigwaited != NULL) {
808 1.2 ad if (error == EINTR) {
809 1.25 rmind /* Wakeup via _lwp_wakeup(). */
810 1.2 ad error = ECANCELED;
811 1.2 ad } else if (!error) {
812 1.25 rmind /* Spurious wakeup - arrange for syscall restart. */
813 1.2 ad error = ERESTART;
814 1.2 ad }
815 1.2 ad l->l_sigwaited = NULL;
816 1.2 ad LIST_REMOVE(l, l_sigwaiter);
817 1.2 ad }
818 1.14 ad mutex_exit(p->p_lock);
819 1.2 ad
820 1.2 ad /*
821 1.2 ad * If the sleep was interrupted (either by signal or wakeup), update
822 1.2 ad * the timeout and copyout new value back. It would be used when
823 1.2 ad * the syscall would be restarted or called again.
824 1.2 ad */
825 1.2 ad if (timo && (error == ERESTART || error == ECANCELED)) {
826 1.2 ad getnanouptime(&tsnow);
827 1.2 ad
828 1.25 rmind /* Compute how much time has passed since start. */
829 1.2 ad timespecsub(&tsnow, &tsstart, &tsnow);
830 1.25 rmind
831 1.25 rmind /* Substract passed time from timeout. */
832 1.2 ad timespecsub(&ts, &tsnow, &ts);
833 1.2 ad
834 1.2 ad if (ts.tv_sec < 0)
835 1.2 ad error = EAGAIN;
836 1.2 ad else {
837 1.25 rmind /* Copy updated timeout to userland. */
838 1.25 rmind error = (*storets)(&ts, SCARG(uap, timeout),
839 1.2 ad sizeof(ts));
840 1.2 ad }
841 1.2 ad }
842 1.25 rmind out:
843 1.2 ad /*
844 1.2 ad * If a signal from the wait set arrived, copy it to userland.
845 1.2 ad * Copy only the used part of siginfo, the padding part is
846 1.2 ad * left unchanged (userland is not supposed to touch it anyway).
847 1.2 ad */
848 1.27 drochner if (error == 0 && SCARG(uap, info)) {
849 1.25 rmind error = (*storeinf)(&ksi.ksi_info, SCARG(uap, info),
850 1.24 rmind sizeof(ksi.ksi_info));
851 1.25 rmind }
852 1.45 christos if (error == 0) {
853 1.27 drochner *retval = ksi.ksi_info._signo;
854 1.45 christos SDT_PROBE(proc, kernel, , signal__clear, *retval,
855 1.45 christos &ksi, 0, 0, 0);
856 1.45 christos }
857 1.2 ad return error;
858 1.2 ad }
859