blob: 5860bf9c38560e0651c57c94d14cf466a088db8d [file] [log] [blame]
Wichert Akkerman76baf7c1999-02-19 00:21:36 +00001/*
2 * Copyright (c) 1991, 1992 Paul Kranenburg <pk@cs.few.eur.nl>
3 * Copyright (c) 1993 Branko Lankester <branko@hacktic.nl>
4 * Copyright (c) 1993, 1994, 1995, 1996 Rick Sladkey <jrs@world.std.com>
5 * All rights reserved.
6 *
7 * Redistribution and use in source and binary forms, with or without
8 * modification, are permitted provided that the following conditions
9 * are met:
10 * 1. Redistributions of source code must retain the above copyright
11 * notice, this list of conditions and the following disclaimer.
12 * 2. Redistributions in binary form must reproduce the above copyright
13 * notice, this list of conditions and the following disclaimer in the
14 * documentation and/or other materials provided with the distribution.
15 * 3. The name of the author may not be used to endorse or promote products
16 * derived from this software without specific prior written permission.
17 *
18 * THIS SOFTWARE IS PROVIDED BY THE AUTHOR ``AS IS'' AND ANY EXPRESS OR
19 * IMPLIED WARRANTIES, INCLUDING, BUT NOT LIMITED TO, THE IMPLIED WARRANTIES
20 * OF MERCHANTABILITY AND FITNESS FOR A PARTICULAR PURPOSE ARE DISCLAIMED.
21 * IN NO EVENT SHALL THE AUTHOR BE LIABLE FOR ANY DIRECT, INDIRECT,
22 * INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING, BUT
23 * NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS OF USE,
24 * DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED AND ON ANY
25 * THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT LIABILITY, OR TORT
26 * (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN ANY WAY OUT OF THE USE OF
27 * THIS SOFTWARE, EVEN IF ADVISED OF THE POSSIBILITY OF SUCH DAMAGE.
28 *
29 * $Id$
30 */
31
32#include "defs.h"
33
34/* ugly hack to make header file do what I want - davidw */
35#ifdef __arm__
36#undef __USE_POSIX199309
37#endif
38
39#include <signal.h>
40#include <sys/user.h>
41#include <fcntl.h>
Wichert Akkerman90470761999-03-17 00:42:25 +000042#if __GLIBC__ == 2 && __GLIBC_MINOR__ >= 1 && (defined(I386) || defined(M68K))
Wichert Akkerman76baf7c1999-02-19 00:21:36 +000043# include <sys/reg.h>
44#endif
45
46#ifdef SVR4
47#include <sys/ucontext.h>
48#endif /* SVR4 */
49
50#ifdef LINUX
51#include <linux/ptrace.h>
52#ifdef HAVE_ASM_SIGCONTEXT_H
53#include <asm/sigcontext.h>
54#ifdef SPARC
55typedef struct {
56 struct pt_regs si_regs;
57 int si_mask;
58} m_siginfo_t;
59#endif
60#else /* !HAVE_ASM_SIGCONTEXT_H */
61#ifdef I386
62struct sigcontext_struct {
63 unsigned short gs, __gsh;
64 unsigned short fs, __fsh;
65 unsigned short es, __esh;
66 unsigned short ds, __dsh;
67 unsigned long edi;
68 unsigned long esi;
69 unsigned long ebp;
70 unsigned long esp;
71 unsigned long ebx;
72 unsigned long edx;
73 unsigned long ecx;
74 unsigned long eax;
75 unsigned long trapno;
76 unsigned long err;
77 unsigned long eip;
78 unsigned short cs, __csh;
79 unsigned long eflags;
80 unsigned long esp_at_signal;
81 unsigned short ss, __ssh;
82 unsigned long i387;
83 unsigned long oldmask;
84 unsigned long cr2;
85};
86#else /* !I386 */
87#ifdef M68K
88struct sigcontext_struct
89{
90 unsigned long sc_mask;
91 unsigned long sc_usp;
92 unsigned long sc_d0;
93 unsigned long sc_d1;
94 unsigned long sc_a0;
95 unsigned long sc_a1;
96 unsigned short sc_sr;
97 unsigned long sc_pc;
98 unsigned short sc_formatvec;
99};
100#endif /* M68K */
101#endif /* !I386 */
102#endif /* !HAVE_ASM_SIGCONTEXT_H */
103#ifndef NSIG
104#define NSIG 32
105#endif
106#ifdef ARM
107#undef NSIG
108#define NSIG 32
109#endif
110#endif /* LINUX */
111
112char *signalent0[] = {
113#include "signalent.h"
114};
115int nsignals0 = sizeof signalent0 / sizeof signalent0[0];
116
117#if SUPPORTED_PERSONALITIES >= 2
118char *signalent1[] = {
119#include "signalent1.h"
120};
121int nsignals1 = sizeof signalent1 / sizeof signalent1[0];
122#endif /* SUPPORTED_PERSONALITIES >= 2 */
123
124#if SUPPORTED_PERSONALITIES >= 3
125char *signalent2[] = {
126#include "signalent2.h"
127};
128int nsignals2 = sizeof signalent2 / sizeof signalent2[0];
129#endif /* SUPPORTED_PERSONALITIES >= 3 */
130
131char **signalent;
132int nsignals;
133
134#ifdef SUNOS4
135
136static struct xlat sigvec_flags[] = {
137 { SV_ONSTACK, "SV_ONSTACK" },
138 { SV_INTERRUPT, "SV_INTERRUPT" },
139 { SV_RESETHAND, "SV_RESETHAND" },
140 { SA_NOCLDSTOP, "SA_NOCLDSTOP" },
141 { 0, NULL },
142};
143
144#endif /* SUNOS4 */
145
146#ifdef HAVE_SIGACTION
147
148static struct xlat sigact_flags[] = {
149#ifdef SA_STACK
150 { SA_STACK, "SA_STACK" },
151#endif
152#ifdef SA_RESTART
153 { SA_RESTART, "SA_RESTART" },
154#endif
155#ifdef SA_INTERRUPT
156 { SA_INTERRUPT, "SA_INTERRUPT" },
157#endif
158#ifdef SA_NOMASK
159 { SA_NOMASK, "SA_NOMASK" },
160#endif
161#ifdef SA_ONESHOT
162 { SA_ONESHOT, "SA_ONESHOT" },
163#endif
164#ifdef SA_SIGINFO
165 { SA_SIGINFO, "SA_SIGINFO" },
166#endif
167#ifdef SA_RESETHAND
168 { SA_RESETHAND, "SA_RESETHAND" },
169#endif
170#ifdef SA_ONSTACK
171 { SA_ONSTACK, "SA_ONSTACK" },
172#endif
173#ifdef SA_NODEFER
174 { SA_NODEFER, "SA_NODEFER" },
175#endif
176#ifdef SA_NOCLDSTOP
177 { SA_NOCLDSTOP, "SA_NOCLDSTOP" },
178#endif
179#ifdef SA_NOCLDWAIT
180 { SA_NOCLDWAIT, "SA_NOCLDWAIT" },
181#endif
182#ifdef _SA_BSDCALL
183 { _SA_BSDCALL, "_SA_BSDCALL" },
184#endif
185 { 0, NULL },
186};
187
188static struct xlat sigprocmaskcmds[] = {
189 { SIG_BLOCK, "SIG_BLOCK" },
190 { SIG_UNBLOCK, "SIG_UNBLOCK" },
191 { SIG_SETMASK, "SIG_SETMASK" },
192#ifdef SIG_SETMASK32
193 { SIG_SETMASK32,"SIG_SETMASK32" },
194#endif
195 { 0, NULL },
196};
197
198#endif /* HAVE_SIGACTION */
199
200
201static char *
202sprintsigmask(s, mask)
203char *s;
204sigset_t *mask;
205{
206 int i, nsigs;
207 char *format;
208 static char outstr[256];
209
210 strcpy(outstr, s);
211 s = outstr + strlen(outstr);
212 nsigs = 0;
Wichert Akkerman5daa0281999-03-15 19:49:42 +0000213 for (i = 1; i < nsignals; i++) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000214 if (sigismember(mask, i) == 1)
215 nsigs++;
216 }
217 if (nsigs >= nsignals * 2 / 3) {
218 *s++ = '~';
Wichert Akkerman5daa0281999-03-15 19:49:42 +0000219 for (i = 1; i < nsignals; i++) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000220 switch (sigismember(mask, i)) {
221 case 1:
222 sigdelset(mask, i);
223 break;
224 case 0:
225 sigaddset(mask, i);
226 break;
227 }
228 }
229 }
230 format = "%s";
231 *s++ = '[';
Wichert Akkerman5daa0281999-03-15 19:49:42 +0000232 for (i = 1; i < nsignals; i++) {
Wichert Akkerman76baf7c1999-02-19 00:21:36 +0000233 if (sigismember(mask, i) == 1) {
234 sprintf(s, format, signalent[i] + 3); s += strlen(s);
235 format = " %s";
236 }
237 }
238 *s++ = ']';
239 *s = '\0';
240 return outstr;
241}
242
243static void
244printsigmask(mask)
245sigset_t *mask;
246{
247 tprintf("%s", sprintsigmask("", mask));
248}
249
250void
251printsignal(nr)
252int nr;
253{
254 if (nr > 0 && nr < nsignals)
255 tprintf("%s", signalent[nr]);
256 else
257 tprintf("%d", nr);
258}
259
260/*
261 * Check process TCP for the disposition of signal SIG.
262 * Return 1 if the process would somehow manage to survive signal SIG,
263 * else return 0. This routine will never be called with SIGKILL.
264 */
265int
266sigishandled(tcp, sig)
267struct tcb *tcp;
268int sig;
269{
270#ifdef LINUX
271 int sfd;
272 char sname[32];
273 char buf[1024];
274 char *s;
275 int i;
276 int signalled, blocked, ignored, caught;
277
278 /* This is incredibly costly but it's worth it. */
279 sprintf(sname, "/proc/%d/stat", tcp->pid);
280 if ((sfd = open(sname, O_RDONLY)) == -1) {
281 perror(sname);
282 return 1;
283 }
284 i = read(sfd, buf, 1024);
285 buf[i] = '\0';
286 close(sfd);
287 /*
288 * Skip the extraneous fields. This loses if the
289 * command name has any spaces in it. So be it.
290 */
291 for (i = 0, s = buf; i < 30; i++) {
292 while (*++s != ' ') {
293 if (!*s)
294 break;
295 }
296 }
297 if (sscanf(s, "%d%d%d%d",
298 &signalled, &blocked, &ignored, &caught) != 4) {
299 fprintf(stderr, "/proc/pid/stat format error\n");
300 return 1;
301 }
302#ifdef DEBUG
303 fprintf(stderr, "sigs: %08x %08x %08x %08x\n",
304 signalled, blocked, ignored, caught);
305#endif
306 if ((ignored & sigmask(sig)) || (caught & sigmask(sig)))
307 return 1;
308#endif /* LINUX */
309
310#ifdef SUNOS4
311 void (*u_signal)();
312
313 if (upeek(tcp->pid, uoff(u_signal[0]) + sig*sizeof(u_signal),
314 (long *) &u_signal) < 0) {
315 return 0;
316 }
317 if (u_signal != SIG_DFL)
318 return 1;
319#endif /* SUNOS4 */
320
321#ifdef SVR4
322 /*
323 * Since procfs doesn't interfere with wait I think it is safe
324 * to punt on this question. If not, the information is there.
325 */
326 return 1;
327#else /* !SVR4 */
328 switch (sig) {
329 case SIGCONT:
330 case SIGSTOP:
331 case SIGTSTP:
332 case SIGTTIN:
333 case SIGTTOU:
334 case SIGCHLD:
335 case SIGIO:
336#if defined(SIGURG) && SIGURG != SIGIO
337 case SIGURG:
338#endif
339 case SIGWINCH:
340 /* Gloria Gaynor says ... */
341 return 1;
342 default:
343 break;
344 }
345 return 0;
346#endif /* !SVR4 */
347}
348
349#if defined(SUNOS4)
350
351int
352sys_sigvec(tcp)
353struct tcb *tcp;
354{
355 struct sigvec sv;
356 long addr;
357
358 if (entering(tcp)) {
359 printsignal(tcp->u_arg[0]);
360 tprintf(", ");
361 addr = tcp->u_arg[1];
362 } else {
363 addr = tcp->u_arg[2];
364 }
365 if (addr == 0)
366 tprintf("NULL");
367 else if (!verbose(tcp))
368 tprintf("%#lx", addr);
369 else if (umove(tcp, addr, &sv) < 0)
370 tprintf("{...}");
371 else {
372 switch ((int) sv.sv_handler) {
373 case (int) SIG_ERR:
374 tprintf("{SIG_ERR}");
375 break;
376 case (int) SIG_DFL:
377 tprintf("{SIG_DFL}");
378 break;
379 case (int) SIG_IGN:
380 if (tcp->u_arg[0] == SIGTRAP) {
381 tcp->flags |= TCB_SIGTRAPPED;
382 kill(tcp->pid, SIGSTOP);
383 }
384 tprintf("{SIG_IGN}");
385 break;
386 case (int) SIG_HOLD:
387 if (tcp->u_arg[0] == SIGTRAP) {
388 tcp->flags |= TCB_SIGTRAPPED;
389 kill(tcp->pid, SIGSTOP);
390 }
391 tprintf("SIG_HOLD");
392 break;
393 default:
394 if (tcp->u_arg[0] == SIGTRAP) {
395 tcp->flags |= TCB_SIGTRAPPED;
396 kill(tcp->pid, SIGSTOP);
397 }
398 tprintf("{%#lx, ", (unsigned long) sv.sv_handler);
399 printsigmask(&sv.sv_mask);
400 tprintf(", ");
401 if (!printflags(sigvec_flags, sv.sv_flags))
402 tprintf("0");
403 tprintf("}");
404 }
405 }
406 if (entering(tcp))
407 tprintf(", ");
408 return 0;
409}
410
411int
412sys_sigpause(tcp)
413struct tcb *tcp;
414{
415 if (entering(tcp)) { /* WTA: UD had a bug here: he forgot the braces */
416 sigset_t sigm = tcp->u_arg[0];
417 printsigmask(&sigm);
418 }
419 return 0;
420}
421
422int
423sys_sigstack(tcp)
424struct tcb *tcp;
425{
426 struct sigstack ss;
427 long addr;
428
429 if (entering(tcp))
430 addr = tcp->u_arg[0];
431 else
432 addr = tcp->u_arg[1];
433 if (addr == 0)
434 tprintf("NULL");
435 else if (umove(tcp, addr, &ss) < 0)
436 tprintf("%#lx", addr);
437 else {
438 tprintf("{ss_sp %#lx ", (unsigned long) ss.ss_sp);
439 tprintf("ss_onstack %s}", ss.ss_onstack ? "YES" : "NO");
440 }
441 if (entering(tcp))
442 tprintf(", ");
443 return 0;
444}
445
446int
447sys_sigcleanup(tcp)
448struct tcb *tcp;
449{
450 return 0;
451}
452
453#endif /* SUNOS4 */
454
455#ifndef SVR4
456
457int
458sys_sigsetmask(tcp)
459struct tcb *tcp;
460{
461 if (entering(tcp)) {
462#ifdef LINUX
463 sigset_t sigm;
464 sigemptyset(&sigm);
465 sigm.__val[0] = tcp->u_arg[0];
466#else
467 sigset_t sigm = tcp->u_arg[0];
468#endif
469 printsigmask(&sigm);
470 if ((tcp->u_arg[0] & sigmask(SIGTRAP))) {
471 /* Mark attempt to block SIGTRAP */
472 tcp->flags |= TCB_SIGTRAPPED;
473 /* Send unblockable signal */
474 kill(tcp->pid, SIGSTOP);
475 }
476 }
477 else if (!syserror(tcp)) {
478#ifdef LINUX
479 sigset_t sigm;
480 sigemptyset(&sigm);
481 sigm.__val[0] = tcp->u_rval;
482#else
483 sigset_t sigm = tcp->u_rval;
484#endif
485 tcp->auxstr = sprintsigmask("old mask ", &sigm);
486
487 return RVAL_HEX | RVAL_STR;
488 }
489 return 0;
490}
491
492int
493sys_sigblock(tcp)
494struct tcb *tcp;
495{
496 return sys_sigsetmask(tcp);
497}
498
499#endif /* !SVR4 */
500
501#ifdef HAVE_SIGACTION
502
503#ifdef LINUX
504struct old_sigaction {
505 __sighandler_t __sa_handler;
506 unsigned long sa_mask;
507 unsigned long sa_flags;
508 void (*sa_restorer)(void);
509};
510#endif
511
512int
513sys_sigaction(tcp)
514struct tcb *tcp;
515{
516 long addr;
517#ifdef LINUX
518 sigset_t sigset;
519 struct old_sigaction sa;
520 sigemptyset(&sigset);
521#else
522 struct sigaction sa;
523#endif
524
525
526 if (entering(tcp)) {
527 printsignal(tcp->u_arg[0]);
528 tprintf(", ");
529 addr = tcp->u_arg[1];
530 } else
531 addr = tcp->u_arg[2];
532 if (addr == 0)
533 tprintf("NULL");
534 else if (!verbose(tcp))
535 tprintf("%#lx", addr);
536 else if (umove(tcp, addr, &sa) < 0)
537 tprintf("{...}");
538 else {
539 switch ((long) sa.__sa_handler) {
540 case (long) SIG_ERR:
541 tprintf("{SIG_ERR}");
542 break;
543 case (long) SIG_DFL:
544 tprintf("{SIG_DFL}");
545 break;
546 case (long) SIG_IGN:
547#ifndef SVR4
548 if (tcp->u_arg[0] == SIGTRAP) {
549 tcp->flags |= TCB_SIGTRAPPED;
550 kill(tcp->pid, SIGSTOP);
551 }
552#endif /* !SVR4 */
553 tprintf("{SIG_IGN}");
554 break;
555 default:
556#ifndef SVR4
557 if (tcp->u_arg[0] == SIGTRAP) {
558 tcp->flags |= TCB_SIGTRAPPED;
559 kill(tcp->pid, SIGSTOP);
560 }
561#endif /* !SVR4 */
562 tprintf("{%#lx, ", (long) sa.__sa_handler);
563#ifdef LINUX
564 sigset.__val[0] = sa.sa_mask;
565 printsigmask(&sigset);
566#else
567 printsigmask(&sa.sa_mask);
568#endif
569 tprintf(", ");
570 if (!printflags(sigact_flags, sa.sa_flags))
571 tprintf("0");
572 tprintf("}");
573 }
574 }
575 if (entering(tcp))
576 tprintf(", ");
577#ifdef LINUX
578 else
579 tprintf(", %#lx", (unsigned long) sa.sa_restorer);
580#endif
581 return 0;
582}
583
584int
585sys_signal(tcp)
586struct tcb *tcp;
587{
588 if (entering(tcp)) {
589 printsignal(tcp->u_arg[0]);
590 switch (tcp->u_arg[1]) {
591 case (int) SIG_ERR:
592 tprintf("SIG_ERR");
593 break;
594 case (int) SIG_DFL:
595 tprintf("SIG_DFL");
596 break;
597 case (int) SIG_IGN:
598#ifndef SVR4
599 if (tcp->u_arg[0] == SIGTRAP) {
600 tcp->flags |= TCB_SIGTRAPPED;
601 kill(tcp->pid, SIGSTOP);
602 }
603#endif /* !SVR4 */
604 tprintf("SIG_IGN");
605 break;
606 default:
607#ifndef SVR4
608 if (tcp->u_arg[0] == SIGTRAP) {
609 tcp->flags |= TCB_SIGTRAPPED;
610 kill(tcp->pid, SIGSTOP);
611 }
612#endif /* !SVR4 */
613 tprintf("%#lx", tcp->u_arg[1]);
614 }
615 }
616 return 0;
617}
618
619#endif /* HAVE_SIGACTION */
620
621#ifdef LINUX
622
623int
624sys_sigreturn(tcp)
625struct tcb *tcp;
626{
627#ifdef I386
628 long esp;
629 struct sigcontext_struct sc;
630
631 if (entering(tcp)) {
632 tcp->u_arg[0] = 0;
633 if (upeek(tcp->pid, 4*UESP, &esp) < 0)
634 return 0;
635 if (umove(tcp, esp, &sc) < 0)
636 return 0;
637 tcp->u_arg[0] = 1;
638 tcp->u_arg[1] = sc.oldmask;
639 }
640 else {
641 sigset_t sigm;
642 sigemptyset(&sigm);
643 sigm.__val[0] = tcp->u_arg[1];
644 tcp->u_rval = tcp->u_error = 0;
645 if (tcp->u_arg[0] == 0)
646 return 0;
647 tcp->auxstr = sprintsigmask("mask now ", &sigm);
648 return RVAL_NONE | RVAL_STR;
649 }
650 return 0;
651#else /* !I386 */
652#ifdef POWERPC
653 long esp;
654 struct sigcontext_struct sc;
655
656 if (entering(tcp)) {
657 tcp->u_arg[0] = 0;
658 if (upeek(tcp->pid, 4*PT_R1, &esp) < 0)
659 return 0;
660 if (umove(tcp, esp, &sc) < 0)
661 return 0;
662 tcp->u_arg[0] = 1;
663 tcp->u_arg[1] = sc.oldmask;
664 }
665 else {
666 sigset_t sigm;
667 sigemptyset(&sigm);
668 sigm.__val[0] = tcp->u_arg[1];
669 tcp->u_rval = tcp->u_error = 0;
670 if (tcp->u_arg[0] == 0)
671 return 0;
672 tcp->auxstr = sprintsigmask("mask now ", &sigm);
673 return RVAL_NONE | RVAL_STR;
674 }
675 return 0;
676#else /* !POWERPC */
677#ifdef M68K
678 long usp;
679 struct sigcontext_struct sc;
680
681 if (entering(tcp)) {
682 tcp->u_arg[0] = 0;
683 if (upeek(tcp->pid, 4*PT_USP, &usp) < 0)
684 return 0;
685 if (umove(tcp, usp, &sc) < 0)
686 return 0;
687 tcp->u_arg[0] = 1;
688 tcp->u_arg[1] = sc.sc_mask;
689 }
690 else {
691 sigset_t sigm;
692 sigemptyset(&sigm);
693 sigm.__val[0] = tcp->u_arg[1];
694 tcp->u_rval = tcp->u_error = 0;
695 if (tcp->u_arg[0] == 0)
696 return 0;
697 tcp->auxstr = sprintsigmask("mask now ", &sigm);
698 return RVAL_NONE | RVAL_STR;
699 }
700 return 0;
701#else /* !M68K */
702#ifdef ALPHA
703 long fp;
704 struct sigcontext_struct sc;
705
706 if (entering(tcp)) {
707 tcp->u_arg[0] = 0;
708 if (upeek(tcp->pid, REG_FP, &fp) < 0)
709 return 0;
710 if (umove(tcp, fp, &sc) < 0)
711 return 0;
712 tcp->u_arg[0] = 1;
713 tcp->u_arg[1] = sc.sc_mask;
714 }
715 else {
716 sigset_t sigm;
717 sigemptyset(&sigm);
718 sigm.__val[0] = tcp->u_arg[1];
719 tcp->u_rval = tcp->u_error = 0;
720 if (tcp->u_arg[0] == 0)
721 return 0;
722 tcp->auxstr = sprintsigmask("mask now ", &sigm);
723 return RVAL_NONE | RVAL_STR;
724 }
725 return 0;
726#else
727#ifdef SPARC
728 long i1;
729 struct pt_regs regs;
730 m_siginfo_t si;
731
732 if(ptrace(PTRACE_GETREGS, tcp->pid, (char *)&regs, 0) < 0) {
733 perror("sigreturn: PTRACE_GETREGS ");
734 return 0;
735 }
736 memmove (&regs.u_regs [1], &regs.u_regs [0],
737 sizeof (regs.u_regs) - sizeof (regs.u_regs [0]));
738 if(entering(tcp)) {
739 tcp->u_arg[0] = 0;
740 i1 = regs.u_regs[UREG_I1];
741 if(umove(tcp, i1, &si) < 0) {
742 perror("sigreturn: umove ");
743 return 0;
744 }
745 tcp->u_arg[0] = 1;
746 tcp->u_arg[1] = si.si_mask;
747 } else {
748 sigset_t sigm;
749 sigemptyset(&sigm);
750 sigm.__val[0] = tcp->u_arg[1];
751 tcp->u_rval = tcp->u_error = 0;
752 if(tcp->u_arg[0] == 0)
753 return 0;
754 tcp->auxstr = sprintsigmask("mask now ", &sigm);
755 return RVAL_NONE | RVAL_STR;
756 }
757 return 0;
758#endif /* SPARC */
759#endif /* ALPHA */
760#endif /* !M68K */
761#endif /* !POWERPC */
762#endif /* !I386 */
763}
764
765int
766sys_siggetmask(tcp)
767struct tcb *tcp;
768{
769 if (exiting(tcp)) {
770#ifdef LINUX
771 sigset_t sigm;
772 sigemptyset(&sigm);
773 sigm.__val[0] = tcp->u_rval;
774#else
775 sigset_t sigm = tcp->u_rval;
776#endif
777 tcp->auxstr = sprintsigmask("mask ", &sigm);
778 }
779 return RVAL_HEX | RVAL_STR;
780}
781
782int
783sys_sigsuspend(tcp)
784struct tcb *tcp;
785{
786 if (entering(tcp)) {
787 sigset_t sigm;
788 sigemptyset(&sigm);
789 sigm.__val[0] = tcp->u_arg[2];
790#if 0
791 /* first two are not really arguments, but print them anyway */
792 /* nevermind, they are an anachronism now, too bad... */
793 tprintf("%d, %#x, ", tcp->u_arg[0], tcp->u_arg[1]);
794#endif
795 printsigmask(&sigm);
796 }
797 return 0;
798}
799
800#endif /* LINUX */
801
802#ifdef SVR4
803
804int
805sys_sigsuspend(tcp)
806struct tcb *tcp;
807{
808 sigset_t sigset;
809
810 if (entering(tcp)) {
811 if (umove(tcp, tcp->u_arg[0], &sigset) < 0)
812 tprintf("[?]");
813 else
814 printsigmask(sigset);
815 }
816 return 0;
817}
818static struct xlat ucontext_flags[] = {
819 { UC_SIGMASK, "UC_SIGMASK" },
820 { UC_STACK, "UC_STACK" },
821 { UC_CPU, "UC_CPU" },
822#ifdef UC_FPU
823 { UC_FPU, "UC_FPU" },
824#endif
825#ifdef UC_INTR
826 { UC_INTR, "UC_INTR" },
827#endif
828 { 0, NULL },
829};
830
831#endif
832
833#if defined SVR4 || defined LINUX
834#if defined LINUX && !defined SS_ONSTACK
835#define SS_ONSTACK 1
836#define SS_DISABLE 2
837#if __GLIBC_MINOR__ == 0
838typedef struct
839{
840 __ptr_t ss_sp;
841 int ss_flags;
842 size_t ss_size;
843} stack_t;
844#endif
845#endif
846
847static struct xlat sigaltstack_flags[] = {
848 { SS_ONSTACK, "SS_ONSTACK" },
849 { SS_DISABLE, "SS_DISABLE" },
850 { 0, NULL },
851};
852#endif
853
854#ifdef SVR4
855static void
856printcontext(tcp, ucp)
857struct tcb *tcp;
858ucontext_t *ucp;
859{
860 tprintf("{");
861 if (!abbrev(tcp)) {
862 tprintf("uc_flags=");
863 if (!printflags(ucontext_flags, ucp->uc_flags))
864 tprintf("0");
865 tprintf(", uc_link=%#lx, ", (unsigned long) ucp->uc_link);
866 }
867 tprintf("uc_sigmask=");
868 printsigmask(ucp->uc_sigmask);
869 if (!abbrev(tcp)) {
870 tprintf(", uc_stack={ss_sp=%#lx, ss_size=%d, ss_flags=",
871 (unsigned long) ucp->uc_stack.ss_sp,
872 ucp->uc_stack.ss_size);
873 if (!printflags(sigaltstack_flags, ucp->uc_stack.ss_flags))
874 tprintf("0");
875 tprintf("}");
876 }
877 tprintf(", ...}");
878}
879
880int
881sys_getcontext(tcp)
882struct tcb *tcp;
883{
884 ucontext_t uc;
885
886 if (entering(tcp)) {
887 if (!tcp->u_arg[0])
888 tprintf("NULL");
889 else if (umove(tcp, tcp->u_arg[0], &uc) < 0)
890 tprintf("{...}");
891 else
892 printcontext(tcp, &uc);
893 }
894 return 0;
895}
896
897int
898sys_setcontext(tcp)
899struct tcb *tcp;
900{
901 ucontext_t uc;
902
903 if (entering(tcp)) {
904 if (!tcp->u_arg[0])
905 tprintf("NULL");
906 else if (umove(tcp, tcp->u_arg[0], &uc) < 0)
907 tprintf("{...}");
908 else
909 printcontext(tcp, &uc);
910 }
911 else {
912 tcp->u_rval = tcp->u_error = 0;
913 if (tcp->u_arg[0] == 0)
914 return 0;
915 return RVAL_NONE;
916 }
917 return 0;
918}
919
920#endif /* SVR4 */
921
922#ifdef LINUX
923
924static int
925print_stack_t(tcp, addr)
926struct tcb *tcp;
927unsigned long addr;
928{
929 stack_t ss;
930 if (umove(tcp, addr, &ss) < 0)
931 return -1;
932 tprintf("{ss_sp=%#lx, ss_flags=", (unsigned long) ss.ss_sp);
933 if (!printflags(sigaltstack_flags, ss.ss_flags))
934 tprintf("0");
935 tprintf(", ss_size=%lu}", (unsigned long) ss.ss_size);
936 return 0;
937}
938
939int
940sys_sigaltstack(tcp)
941 struct tcb *tcp;
942{
943 if (entering(tcp)) {
944 if (tcp->u_arg[0] == 0)
945 tprintf("NULL");
946 else if (print_stack_t(tcp, tcp->u_arg[0]) < 0)
947 return -1;
948 }
949 else {
950 tprintf(", ");
951 if (tcp->u_arg[1] == 0)
952 tprintf("NULL");
953 else if (print_stack_t(tcp, tcp->u_arg[1]) < 0)
954 return -1;
955 }
956 return 0;
957}
958#endif
959
960#ifdef HAVE_SIGACTION
961
962int
963sys_sigprocmask(tcp)
964struct tcb *tcp;
965{
966#ifdef ALPHA
967 if (entering(tcp)) {
968 printxval(sigprocmaskcmds, tcp->u_arg[0], "SIG_???");
969 tprintf(", ");
970 printsigmask(tcp->u_arg[1]);
971 }
972 else if (!syserror(tcp)) {
973 tcp->auxstr = sprintsigmask("old mask ", tcp->u_rval);
974 return RVAL_HEX | RVAL_STR;
975 }
976#else /* !ALPHA */
977 sigset_t sigset;
978#ifdef LINUX
979 sigemptyset(&sigset);
980#endif
981
982 if (entering(tcp)) {
983#ifdef SVR4
984 if (tcp->u_arg[0] == 0)
985 tprintf("0");
986 else
987#endif /* SVR4 */
988 printxval(sigprocmaskcmds, tcp->u_arg[0], "SIG_???");
989 tprintf(", ");
990 if (!tcp->u_arg[1])
991 tprintf("NULL, ");
992#ifdef LINUX
993 else if (umoven(tcp, tcp->u_arg[1], 4, (char *) &sigset.__val[0]) < 0)
994 tprintf("%#lx, ", tcp->u_arg[1]);
995#else
996 else if (umove(tcp, tcp->u_arg[1], &sigset) < 0)
997 tprintf("%#lx, ", tcp->u_arg[1]);
998#endif
999 else {
1000 printsigmask(&sigset);
1001 tprintf(", ");
1002 }
1003 }
1004 else {
1005 if (!tcp->u_arg[2])
1006 tprintf("NULL");
1007 else if (syserror(tcp))
1008 tprintf("%#lx", tcp->u_arg[2]);
1009#ifdef LINUX
1010 else if (umoven(tcp, tcp->u_arg[2], 4, (char *) &sigset.__val[0]) < 0)
1011 tprintf("[?]");
1012#else
1013 else if (umove(tcp, tcp->u_arg[2], &sigset) < 0)
1014 tprintf("[?]");
1015#endif
1016 else
1017 printsigmask(&sigset);
1018 }
1019#endif /* !ALPHA */
1020 return 0;
1021}
1022
1023#endif /* HAVE_SIGACTION */
1024
1025int
1026sys_kill(tcp)
1027struct tcb *tcp;
1028{
1029 if (entering(tcp)) {
1030 long sig = tcp->u_arg[1];
1031
1032 if (sig >= 0 && sig < NSIG)
1033 tprintf("%ld, %s", tcp->u_arg[0], signalent[sig]);
1034 else
1035 tprintf("%ld, %ld", tcp->u_arg[0], sig);
1036 }
1037 return 0;
1038}
1039
1040int
1041sys_killpg(tcp)
1042struct tcb *tcp;
1043{
1044 return sys_kill(tcp);
1045}
1046
1047int
1048sys_sigpending(tcp)
1049struct tcb *tcp;
1050{
1051 sigset_t sigset;
1052#ifdef LINUX
1053 sigemptyset(&sigset);
1054#endif
1055
1056 if (exiting(tcp)) {
1057 if (syserror(tcp))
1058 tprintf("%#lx", tcp->u_arg[0]);
1059#ifdef LINUX
1060 else if (umoven(tcp, tcp->u_arg[0], 4, (char *) &sigset.__val[0]) < 0)
1061 tprintf("[?]");
1062#else
1063 else if (umove(tcp, tcp->u_arg[0], &sigset) < 0)
1064 tprintf("[?]");
1065#endif
1066 else
1067 printsigmask(sigset);
1068 }
1069 return 0;
1070}
1071
1072#ifdef LINUX
1073
1074 int
1075sys_rt_sigprocmask(tcp)
1076 struct tcb *tcp;
1077{
1078 sigset_t sigset;
1079
1080 if (entering(tcp)) {
1081 printxval(sigprocmaskcmds, tcp->u_arg[0], "SIG_???");
1082 tprintf(", ");
1083 if (!tcp->u_arg[1])
1084 tprintf("NULL, ");
1085 else if (umove(tcp, tcp->u_arg[1], &sigset) < 0)
1086 tprintf("%#lx, ", tcp->u_arg[1]);
1087 else {
1088 printsigmask(&sigset);
1089 tprintf(", ");
1090 }
1091 }
1092 else {
1093 if (!tcp->u_arg[2])
1094
1095 tprintf("NULL");
1096 else if (syserror(tcp))
1097 tprintf("%#lx", tcp->u_arg[2]);
1098 else if (umove(tcp, tcp->u_arg[2], &sigset) < 0)
1099 tprintf("[?]");
1100 else
1101 printsigmask(&sigset);
1102 tprintf(", %lu", tcp->u_arg[4]);
1103 }
1104 return 0;
1105}
1106
1107#if __GLIBC_MINOR__ < 1
1108/* Type for data associated with a signal. */
1109typedef union sigval
1110{
1111 int sival_int;
1112 void *sival_ptr;
1113} sigval_t;
1114
1115# define __SI_MAX_SIZE 128
1116# define __SI_PAD_SIZE ((__SI_MAX_SIZE / sizeof (int)) - 3)
1117
1118typedef struct siginfo
1119{
1120 int si_signo; /* Signal number. */
1121 int si_errno; /* If non-zero, an errno value associated with
1122 this signal, as defined in <errno.h>. */
1123 int si_code; /* Signal code. */
1124
1125 union
1126 {
1127 int _pad[__SI_PAD_SIZE];
1128
1129 /* kill(). */
1130 struct
1131 {
1132 __pid_t si_pid; /* Sending process ID. */
1133 __uid_t si_uid; /* Real user ID of sending process. */
1134 } _kill;
1135
1136 /* POSIX.1b timers. */
1137 struct
1138 {
1139 unsigned int _timer1;
1140 unsigned int _timer2;
1141 } _timer;
1142
1143 /* POSIX.1b signals. */
1144 struct
1145 {
1146 __pid_t si_pid; /* Sending process ID. */
1147 __uid_t si_uid; /* Real user ID of sending process. */
1148 sigval_t si_sigval; /* Signal value. */
1149 } _rt;
1150
1151 /* SIGCHLD. */
1152 struct
1153 {
1154 __pid_t si_pid; /* Which child. */
1155 int si_status; /* Exit value or signal. */
1156 __clock_t si_utime;
1157 __clock_t si_stime;
1158 } _sigchld;
1159
1160 /* SIGILL, SIGFPE, SIGSEGV, SIGBUS. */
1161 struct
1162 {
1163 void *si_addr; /* Faulting insn/memory ref. */
1164 } _sigfault;
1165
1166 /* SIGPOLL. */
1167 struct
1168 {
1169 int si_band; /* Band event for SIGPOLL. */
1170 int si_fd;
1171 } _sigpoll;
1172 } _sifields;
1173} siginfo_t;
1174#endif
1175
1176/* Structure describing the action to be taken when a signal arrives. */
1177struct new_sigaction
1178{
1179 union
1180 {
1181 __sighandler_t __sa_handler;
1182 void (*__sa_sigaction) (int, siginfo_t *, void *);
1183 }
1184 __sigaction_handler;
1185 unsigned long sa_flags;
1186 void (*sa_restorer) (void);
1187 unsigned long int sa_mask[2];
1188};
1189
1190
1191 int
1192sys_rt_sigaction(tcp)
1193 struct tcb *tcp;
1194{
1195 struct new_sigaction sa;
1196 sigset_t sigset;
1197 long addr;
1198 sigemptyset(&sigset);
1199
1200 if (entering(tcp)) {
1201 printsignal(tcp->u_arg[0]);
1202 tprintf(", ");
1203 addr = tcp->u_arg[1];
1204 } else
1205 addr = tcp->u_arg[2];
1206 if (addr == 0)
1207 tprintf("NULL");
1208 else if (!verbose(tcp))
1209 tprintf("%#lx", addr);
1210 else if (umove(tcp, addr, &sa) < 0)
1211 tprintf("{...}");
1212 else {
1213 switch ((long) sa.__sigaction_handler.__sa_handler) {
1214 case (long) SIG_ERR:
1215 tprintf("{SIG_ERR}");
1216 break;
1217 case (long) SIG_DFL:
1218 tprintf("{SIG_DFL}");
1219 break;
1220 case (long) SIG_IGN:
1221 tprintf("{SIG_IGN}");
1222 break;
1223 default:
1224 tprintf("{%#lx, ",
1225 (long) sa.__sigaction_handler.__sa_handler);
1226 sigset.__val[0] = sa.sa_mask[0];
1227 sigset.__val[1] = sa.sa_mask[1];
1228 printsigmask(&sigset);
1229 tprintf(", ");
1230 if (!printflags(sigact_flags, sa.sa_flags))
1231 tprintf("0");
1232 tprintf("}");
1233 }
1234 }
1235 if (entering(tcp))
1236 tprintf(", ");
1237 else
1238 tprintf(", %lu", addr = tcp->u_arg[3]);
1239 return 0;
1240}
1241
1242 int
1243sys_rt_sigpending(tcp)
1244 struct tcb *tcp;
1245{
1246 sigset_t sigset;
1247 sigemptyset(&sigset);
1248
1249 if (exiting(tcp)) {
1250 if (syserror(tcp))
1251 tprintf("%#lx", tcp->u_arg[0]);
1252 else if (umoven(tcp, tcp->u_arg[0], tcp->u_arg[1],
1253 (char *) &sigset.__val[0]) < 0)
1254 tprintf("[?]");
1255 else
1256 printsigmask(sigset);
1257 }
1258 return 0;
1259}
1260 int
1261sys_rt_sigsuspend(tcp)
1262 struct tcb *tcp;
1263{
1264 if (entering(tcp)) {
1265 sigset_t sigm;
1266 sigemptyset(&sigm);
1267 umoven(tcp, tcp->u_arg[0], tcp->u_arg[1], (char *) &sigm);
1268 printsigmask(&sigm);
1269 }
1270 return 0;
1271}
1272#ifndef ILL_ILLOPC
1273#define ILL_ILLOPC 1 /* illegal opcode */
1274#define ILL_ILLOPN 2 /* illegal operand */
1275#define ILL_ILLADR 3 /* illegal addressing mode */
1276#define ILL_ILLTRP 4 /* illegal trap */
1277#define ILL_PRVOPC 5 /* privileged opcode */
1278#define ILL_PRVREG 6 /* privileged register */
1279#define ILL_COPROC 7 /* coprocessor error */
1280#define ILL_BADSTK 8 /* internal stack error */
1281#define FPE_INTDIV 1 /* integer divide by zero */
1282#define FPE_INTOVF 2 /* integer overflow */
1283#define FPE_FLTDIV 3 /* floating point divide by zero */
1284#define FPE_FLTOVF 4 /* floating point overflow */
1285#define FPE_FLTUND 5 /* floating point underflow */
1286#define FPE_FLTRES 6 /* floating point inexact result */
1287#define FPE_FLTINV 7 /* floating point invalid operation */
1288#define FPE_FLTSUB 8 /* subscript out of range */
1289#define SEGV_MAPERR 1 /* address not mapped to object */
1290#define SEGV_ACCERR 2 /* invalid permissions for mapped object */
1291#define BUS_ADRALN 1 /* invalid address alignment */
1292#define BUS_ADRERR 2 /* non-existant physical address */
1293#define BUS_OBJERR 3 /* object specific hardware error */
1294#define TRAP_BRKPT 1 /* process breakpoint */
1295#define TRAP_TRACE 2 /* process trace trap */
1296#define CLD_EXITED 1 /* child has exited */
1297#define CLD_KILLED 2 /* child was killed */
1298#define CLD_DUMPED 3 /* child terminated abnormally */
1299#define CLD_TRAPPED 4 /* traced child has trapped */
1300#define CLD_STOPPED 5 /* child has stopped */
1301#define CLD_CONTINUED 6 /* stopped child has continued */
1302#define POLL_IN 1 /* data input available */
1303#define POLL_OUT 2 /* output buffers available */
1304#define POLL_MSG 3 /* input message available */
1305#define POLL_ERR 4 /* i/o error */
1306#define POLL_PRI 5 /* high priority input available */
1307#define POLL_HUP 6 /* device disconnected */
1308#define SI_USER 0 /* sent by kill, sigsend, raise */
1309#define SI_QUEUE -1 /* sent by sigqueue */
1310#define SI_TIMER -2 /* sent by timer expiration */
1311#define SI_MESGQ -3 /* sent by real time mesq state change */
1312#define SI_ASYNCIO -4 /* sent by AIO completion */
1313#else
1314#undef si_pid
1315#undef si_uid
1316#undef si_status
1317#undef si_utime
1318#undef si_stime
1319#undef si_value
1320#undef si_int
1321#undef si_ptr
1322#undef si_addr
1323#undef si_band
1324#undef si_fd
1325#endif
1326
1327static struct xlat sigill_flags[] = {
1328 {ILL_ILLOPC, "ILL_ILLOPC"},
1329 {ILL_ILLOPN, "ILL_ILLOPN"},
1330 {ILL_ILLADR, "ILL_ILLADR"},
1331 {ILL_ILLTRP, "ILL_ILLTRP"},
1332 {ILL_PRVOPC, "ILL_PRVOPC"},
1333 {ILL_PRVREG, "ILL_PRVREG"},
1334 {ILL_COPROC, "ILL_COPROC"},
1335 {ILL_BADSTK, "ILL_BADSTK"},
1336 {0, NULL}
1337};
1338
1339static struct xlat sigfpe_flags[] = {
1340 {FPE_INTDIV, "FPE_INTDIV"},
1341 {FPE_INTOVF, "FPE_INTOVF"},
1342 {FPE_FLTDIV, "FPE_FLTDIV"},
1343 {FPE_FLTOVF, "FPE_FLTOVF"},
1344 {FPE_FLTUND, "FPE_FLTUND"},
1345 {FPE_FLTRES, "FPE_FLTRES"},
1346 {FPE_FLTINV, "FPE_FLTINV"},
1347 {FPE_FLTSUB, "FPE_FLTSUB"},
1348 {0, NULL}
1349};
1350
1351static struct xlat sigsegv_flags[] = {
1352 {SEGV_MAPERR, "SEGV_MAPERR"},
1353 {SEGV_ACCERR, "SEGV_ACCERR"},
1354 {0, NULL}
1355};
1356
1357static struct xlat sigbus_flags[] = {
1358 {BUS_ADRALN, "BUS_ADRALN"},
1359 {BUS_ADRERR, "BUS_ADRERR"},
1360 {BUS_OBJERR, "BUS_OBJERR"},
1361 {0, NULL}
1362};
1363
1364static struct xlat sigtrap_flags[] = {
1365 {TRAP_BRKPT, "TRAP_BRKPT"},
1366 {TRAP_TRACE, "TRAP_TRACE"},
1367 {0, NULL}
1368};
1369
1370static struct xlat sigchld_flags[] = {
1371 {CLD_EXITED, "CLD_EXITED"},
1372 {CLD_KILLED, "CLD_KILLED"},
1373 {CLD_DUMPED, "CLD_DUMPED"},
1374 {CLD_TRAPPED, "CLD_TRAPPED"},
1375 {CLD_STOPPED, "CLD_STOPPED"},
1376 {CLD_CONTINUED, "CLD_CONTINUED"},
1377 {0, NULL}
1378};
1379
1380static struct xlat sigpoll_flags[] = {
1381 {POLL_IN, "POLL_IN"},
1382 {POLL_OUT, "POLL_OUT"},
1383 {POLL_MSG, "POLL_MSG"},
1384 {POLL_ERR, "POLL_ERR"},
1385 {POLL_PRI, "POLL_PRI"},
1386 {POLL_HUP, "POLL_HUP"},
1387 {0, NULL}
1388};
1389
1390static struct xlat siginfo_flags[] = {
1391 {SI_USER, "SI_USER"},
1392 {SI_QUEUE, "SI_QUEUE"},
1393 {SI_TIMER, "SI_TIMER"},
1394 {SI_MESGQ, "SI_MESGQ"},
1395 {SI_ASYNCIO, "SI_ASYNCIO"},
1396 {0, NULL}
1397};
1398
1399 static void
1400printsiginfo(tcp, si)
1401 struct tcb *tcp;
1402 siginfo_t *si;
1403{
1404 tprintf("{si_signo=");
1405 printsignal(si->si_signo);
1406 tprintf(", si_errno=%d, si_code=", si->si_errno);
1407 switch(si->si_signo)
1408 {
1409 case SIGILL:
1410 if (!printflags(sigill_flags, si->si_code))
1411 tprintf("%d /* ILL_??? */", si->si_code);
1412 tprintf(", si_addr=%lx",
1413 (unsigned long) si->_sifields._sigfault.si_addr);
1414 break;
1415 case SIGFPE:
1416 if (!printflags(sigfpe_flags, si->si_code))
1417 tprintf("%d /* FPE_??? */", si->si_code);
1418 tprintf(", si_addr=%lx",
1419 (unsigned long) si->_sifields._sigfault.si_addr);
1420 break;
1421 case SIGSEGV:
1422 if (!printflags(sigsegv_flags, si->si_code))
1423 tprintf("%d /* SEGV_??? */", si->si_code);
1424 tprintf(", si_addr=%lx",
1425 (unsigned long) si->_sifields._sigfault.si_addr);
1426 break;
1427 case SIGBUS:
1428 if (!printflags(sigbus_flags, si->si_code))
1429 tprintf("%d /* BUS_??? */", si->si_code);
1430 tprintf(", si_addr=%lx",
1431 (unsigned long) si->_sifields._sigfault.si_addr);
1432 break;
1433 case SIGTRAP:
1434 if (!printflags(sigtrap_flags, si->si_code))
1435 tprintf("%d /* TRAP_??? */", si->si_code);
1436 break;
1437 case SIGCHLD:
1438 if (!printflags(sigchld_flags, si->si_code))
1439 tprintf("%d /* CLD_??? */", si->si_code);
1440 if (!verbose(tcp))
1441 tprintf(", ...");
1442 else
1443 tprintf(", si_pid=%d, si_uid=%d, si_status=%d, si_utime=%lu, si_stime=%lu",
1444 si->_sifields._kill.si_pid,
1445 si->_sifields._kill.si_uid,
1446 si->_sifields._sigchld.si_status,
1447 si->_sifields._sigchld.si_utime,
1448 si->_sifields._sigchld.si_stime);
1449 break;
1450 case SIGPOLL:
1451 if (!printflags(sigpoll_flags, si->si_code))
1452 tprintf("%d /* POLL_??? */", si->si_code);
1453 if (si->si_code == POLL_IN
1454 || si->si_code == POLL_OUT
1455 || si->si_code == POLL_MSG)
1456 tprintf(", si_bind=%lu, si_fd=%d",
1457 (unsigned long) si->_sifields._sigpoll.si_band,
1458 si->_sifields._sigpoll.si_fd);
1459 break;
1460 default:
1461 if (!printflags(siginfo_flags, si->si_code))
1462 tprintf("%d /* SI_??? */", si->si_code);
1463 tprintf(", si_pid=%lu, si_uid=%lu, si_value={",
1464 (unsigned long) si->_sifields._rt.si_pid,
1465 (unsigned long) si->_sifields._rt.si_uid);
1466 if (!verbose(tcp))
1467 tprintf("...");
1468 else {
1469 tprintf("sival_int=%u, sival_ptr=%#lx",
1470 si->_sifields._rt.si_sigval.sival_int,
1471 (unsigned long) si->_sifields._rt.si_sigval.sival_ptr);
1472 }
1473 tprintf("}");
1474 break;
1475 }
1476 tprintf("}");
1477}
1478
1479 int
1480sys_rt_sigqueueinfo(tcp)
1481 struct tcb *tcp;
1482{
1483 if (entering(tcp)) {
1484 siginfo_t si;
1485 tprintf("%lu, ", tcp->u_arg[0]);
1486 printsignal(tcp->u_arg[1]);
1487 tprintf(", ");
1488 if (umove(tcp, tcp->u_arg[2], &si) < 0)
1489 tprintf("%#lx", tcp->u_arg[2]);
1490 else
1491 printsiginfo(&si);
1492 }
1493 return 0;
1494}
1495
1496int sys_rt_sigtimedwait(tcp)
1497 struct tcb *tcp;
1498{
1499 if (entering(tcp)) {
1500 sigset_t sigset;
1501 sigemptyset(&sigset);
1502
1503 if (umoven(tcp, tcp->u_arg[0], tcp->u_arg[3],
1504 (char *) &sigset.__val[0]) < 0)
1505 tprintf("[?]");
1506 else
1507 printsigmask(sigset);
1508 tprintf(", ");
1509 }
1510 else {
1511 if (syserror(tcp))
1512 tprintf("%#lx", tcp->u_arg[0]);
1513 else {
1514 siginfo_t si;
1515 if (umove(tcp, tcp->u_arg[1], &si) < 0)
1516 tprintf("%#lx", tcp->u_arg[1]);
1517 else
1518 printsiginfo(&si);
1519 /* XXX For now */
1520 tprintf(", %#lx", tcp->u_arg[2]);
1521 tprintf(", %d", (int) tcp->u_arg[3]);
1522 }
1523 }
1524 return 0;
1525};
1526
1527#endif /* LINUX */
1528