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bellard31e31b82003-02-18 22:55:36 +00001/*
bellard66fb9762003-03-23 01:06:05 +00002 * Emulation of Linux signals
ths5fafdf22007-09-16 21:08:06 +00003 *
bellard31e31b82003-02-18 22:55:36 +00004 * Copyright (c) 2003 Fabrice Bellard
5 *
6 * This program is free software; you can redistribute it and/or modify
7 * it under the terms of the GNU General Public License as published by
8 * the Free Software Foundation; either version 2 of the License, or
9 * (at your option) any later version.
10 *
11 * This program is distributed in the hope that it will be useful,
12 * but WITHOUT ANY WARRANTY; without even the implied warranty of
13 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 * GNU General Public License for more details.
15 *
16 * You should have received a copy of the GNU General Public License
Blue Swirl8167ee82009-07-16 20:47:01 +000017 * along with this program; if not, see <http://www.gnu.org/licenses/>.
bellard31e31b82003-02-18 22:55:36 +000018 */
Peter Maydelld39594e2016-01-26 18:17:02 +000019#include "qemu/osdep.h"
Peter Maydella70dadc2016-05-27 15:51:59 +010020#include "qemu/bitops.h"
bellard31e31b82003-02-18 22:55:36 +000021#include <sys/ucontext.h>
Mika Westerbergedf8e2a2009-04-07 09:57:11 +030022#include <sys/resource.h>
bellard31e31b82003-02-18 22:55:36 +000023
bellard3ef693a2003-03-23 20:17:16 +000024#include "qemu.h"
Paolo Bonzinic8ee0a42015-11-13 13:52:21 +010025#include "trace.h"
Laurent Vivierbefb7442018-04-24 21:26:16 +020026#include "signal-common.h"
bellard66fb9762003-03-23 01:06:05 +000027
pbrook624f7972008-05-31 16:11:38 +000028static struct target_sigaction sigact_table[TARGET_NSIG];
bellard31e31b82003-02-18 22:55:36 +000029
ths5fafdf22007-09-16 21:08:06 +000030static void host_signal_handler(int host_signum, siginfo_t *info,
bellard66fb9762003-03-23 01:06:05 +000031 void *puc);
32
Laurent Vivier9fcff3a2020-02-12 13:56:57 +010033
34/*
35 * System includes define _NSIG as SIGRTMAX + 1,
36 * but qemu (like the kernel) defines TARGET_NSIG as TARGET_SIGRTMAX
37 * and the first signal is SIGHUP defined as 1
38 * Signal number 0 is reserved for use as kill(pid, 0), to test whether
39 * a process exists without sending it a signal.
40 */
41QEMU_BUILD_BUG_ON(__SIGRTMAX + 1 != _NSIG);
Arnaud Patard3ca05582009-03-30 01:18:20 +020042static uint8_t host_to_target_signal_table[_NSIG] = {
bellard9e5f5282003-07-13 17:33:54 +000043 [SIGHUP] = TARGET_SIGHUP,
44 [SIGINT] = TARGET_SIGINT,
45 [SIGQUIT] = TARGET_SIGQUIT,
46 [SIGILL] = TARGET_SIGILL,
47 [SIGTRAP] = TARGET_SIGTRAP,
48 [SIGABRT] = TARGET_SIGABRT,
bellard01e3b762003-09-30 21:10:14 +000049/* [SIGIOT] = TARGET_SIGIOT,*/
bellard9e5f5282003-07-13 17:33:54 +000050 [SIGBUS] = TARGET_SIGBUS,
51 [SIGFPE] = TARGET_SIGFPE,
52 [SIGKILL] = TARGET_SIGKILL,
53 [SIGUSR1] = TARGET_SIGUSR1,
54 [SIGSEGV] = TARGET_SIGSEGV,
55 [SIGUSR2] = TARGET_SIGUSR2,
56 [SIGPIPE] = TARGET_SIGPIPE,
57 [SIGALRM] = TARGET_SIGALRM,
58 [SIGTERM] = TARGET_SIGTERM,
59#ifdef SIGSTKFLT
60 [SIGSTKFLT] = TARGET_SIGSTKFLT,
61#endif
62 [SIGCHLD] = TARGET_SIGCHLD,
63 [SIGCONT] = TARGET_SIGCONT,
64 [SIGSTOP] = TARGET_SIGSTOP,
65 [SIGTSTP] = TARGET_SIGTSTP,
66 [SIGTTIN] = TARGET_SIGTTIN,
67 [SIGTTOU] = TARGET_SIGTTOU,
68 [SIGURG] = TARGET_SIGURG,
69 [SIGXCPU] = TARGET_SIGXCPU,
70 [SIGXFSZ] = TARGET_SIGXFSZ,
71 [SIGVTALRM] = TARGET_SIGVTALRM,
72 [SIGPROF] = TARGET_SIGPROF,
73 [SIGWINCH] = TARGET_SIGWINCH,
74 [SIGIO] = TARGET_SIGIO,
75 [SIGPWR] = TARGET_SIGPWR,
76 [SIGSYS] = TARGET_SIGSYS,
77 /* next signals stay the same */
78};
bellard9e5f5282003-07-13 17:33:54 +000079
Laurent Vivier9fcff3a2020-02-12 13:56:57 +010080static uint8_t target_to_host_signal_table[TARGET_NSIG + 1];
81
82/* valid sig is between 1 and _NSIG - 1 */
pbrook1d9d8b52009-04-16 15:17:02 +000083int host_to_target_signal(int sig)
bellard31e31b82003-02-18 22:55:36 +000084{
Laurent Vivier9fcff3a2020-02-12 13:56:57 +010085 if (sig < 1 || sig >= _NSIG) {
pbrook4cb05962008-05-30 18:05:19 +000086 return sig;
Laurent Vivier9fcff3a2020-02-12 13:56:57 +010087 }
bellard9e5f5282003-07-13 17:33:54 +000088 return host_to_target_signal_table[sig];
bellard31e31b82003-02-18 22:55:36 +000089}
90
Laurent Vivier9fcff3a2020-02-12 13:56:57 +010091/* valid sig is between 1 and TARGET_NSIG */
pbrook4cb05962008-05-30 18:05:19 +000092int target_to_host_signal(int sig)
bellard31e31b82003-02-18 22:55:36 +000093{
Laurent Vivier9fcff3a2020-02-12 13:56:57 +010094 if (sig < 1 || sig > TARGET_NSIG) {
pbrook4cb05962008-05-30 18:05:19 +000095 return sig;
Laurent Vivier9fcff3a2020-02-12 13:56:57 +010096 }
bellard9e5f5282003-07-13 17:33:54 +000097 return target_to_host_signal_table[sig];
bellard31e31b82003-02-18 22:55:36 +000098}
99
Anthony Liguoric227f092009-10-01 16:12:16 -0500100static inline void target_sigaddset(target_sigset_t *set, int signum)
pbrookf5545b52008-05-30 22:37:07 +0000101{
102 signum--;
103 abi_ulong mask = (abi_ulong)1 << (signum % TARGET_NSIG_BPW);
104 set->sig[signum / TARGET_NSIG_BPW] |= mask;
105}
106
Anthony Liguoric227f092009-10-01 16:12:16 -0500107static inline int target_sigismember(const target_sigset_t *set, int signum)
pbrookf5545b52008-05-30 22:37:07 +0000108{
109 signum--;
110 abi_ulong mask = (abi_ulong)1 << (signum % TARGET_NSIG_BPW);
111 return ((set->sig[signum / TARGET_NSIG_BPW] & mask) != 0);
112}
113
Laurent Vivierbefb7442018-04-24 21:26:16 +0200114void host_to_target_sigset_internal(target_sigset_t *d,
115 const sigset_t *s)
bellard66fb9762003-03-23 01:06:05 +0000116{
Laurent Vivier9fcff3a2020-02-12 13:56:57 +0100117 int host_sig, target_sig;
pbrookf5545b52008-05-30 22:37:07 +0000118 target_sigemptyset(d);
Laurent Vivier9fcff3a2020-02-12 13:56:57 +0100119 for (host_sig = 1; host_sig < _NSIG; host_sig++) {
120 target_sig = host_to_target_signal(host_sig);
121 if (target_sig < 1 || target_sig > TARGET_NSIG) {
122 continue;
123 }
124 if (sigismember(s, host_sig)) {
125 target_sigaddset(d, target_sig);
pbrookf5545b52008-05-30 22:37:07 +0000126 }
bellard9e5f5282003-07-13 17:33:54 +0000127 }
bellard66fb9762003-03-23 01:06:05 +0000128}
129
Anthony Liguoric227f092009-10-01 16:12:16 -0500130void host_to_target_sigset(target_sigset_t *d, const sigset_t *s)
bellard92319442004-06-19 16:58:13 +0000131{
Anthony Liguoric227f092009-10-01 16:12:16 -0500132 target_sigset_t d1;
bellard92319442004-06-19 16:58:13 +0000133 int i;
134
135 host_to_target_sigset_internal(&d1, s);
136 for(i = 0;i < TARGET_NSIG_WORDS; i++)
Matthias Brauncbb21ee2011-08-12 19:57:41 +0200137 d->sig[i] = tswapal(d1.sig[i]);
bellard92319442004-06-19 16:58:13 +0000138}
139
Laurent Vivierbefb7442018-04-24 21:26:16 +0200140void target_to_host_sigset_internal(sigset_t *d,
141 const target_sigset_t *s)
bellard66fb9762003-03-23 01:06:05 +0000142{
Laurent Vivier9fcff3a2020-02-12 13:56:57 +0100143 int host_sig, target_sig;
pbrookf5545b52008-05-30 22:37:07 +0000144 sigemptyset(d);
Laurent Vivier9fcff3a2020-02-12 13:56:57 +0100145 for (target_sig = 1; target_sig <= TARGET_NSIG; target_sig++) {
146 host_sig = target_to_host_signal(target_sig);
147 if (host_sig < 1 || host_sig >= _NSIG) {
148 continue;
149 }
150 if (target_sigismember(s, target_sig)) {
151 sigaddset(d, host_sig);
pbrookf5545b52008-05-30 22:37:07 +0000152 }
Timothy E Baldwinda7c8642016-05-12 18:47:27 +0100153 }
bellard66fb9762003-03-23 01:06:05 +0000154}
155
Anthony Liguoric227f092009-10-01 16:12:16 -0500156void target_to_host_sigset(sigset_t *d, const target_sigset_t *s)
bellard92319442004-06-19 16:58:13 +0000157{
Anthony Liguoric227f092009-10-01 16:12:16 -0500158 target_sigset_t s1;
bellard92319442004-06-19 16:58:13 +0000159 int i;
160
161 for(i = 0;i < TARGET_NSIG_WORDS; i++)
Matthias Brauncbb21ee2011-08-12 19:57:41 +0200162 s1.sig[i] = tswapal(s->sig[i]);
bellard92319442004-06-19 16:58:13 +0000163 target_to_host_sigset_internal(d, &s1);
164}
ths3b46e622007-09-17 08:09:54 +0000165
blueswir1992f48a2007-10-14 16:27:31 +0000166void host_to_target_old_sigset(abi_ulong *old_sigset,
bellard66fb9762003-03-23 01:06:05 +0000167 const sigset_t *sigset)
168{
Anthony Liguoric227f092009-10-01 16:12:16 -0500169 target_sigset_t d;
bellard9e5f5282003-07-13 17:33:54 +0000170 host_to_target_sigset(&d, sigset);
171 *old_sigset = d.sig[0];
bellard66fb9762003-03-23 01:06:05 +0000172}
173
ths5fafdf22007-09-16 21:08:06 +0000174void target_to_host_old_sigset(sigset_t *sigset,
blueswir1992f48a2007-10-14 16:27:31 +0000175 const abi_ulong *old_sigset)
bellard66fb9762003-03-23 01:06:05 +0000176{
Anthony Liguoric227f092009-10-01 16:12:16 -0500177 target_sigset_t d;
bellard9e5f5282003-07-13 17:33:54 +0000178 int i;
179
180 d.sig[0] = *old_sigset;
181 for(i = 1;i < TARGET_NSIG_WORDS; i++)
182 d.sig[i] = 0;
183 target_to_host_sigset(sigset, &d);
bellard66fb9762003-03-23 01:06:05 +0000184}
185
Peter Maydell3d3efba2016-05-27 15:51:49 +0100186int block_signals(void)
187{
188 TaskState *ts = (TaskState *)thread_cpu->opaque;
189 sigset_t set;
Peter Maydell3d3efba2016-05-27 15:51:49 +0100190
191 /* It's OK to block everything including SIGSEGV, because we won't
192 * run any further guest code before unblocking signals in
193 * process_pending_signals().
194 */
195 sigfillset(&set);
196 sigprocmask(SIG_SETMASK, &set, 0);
197
Eduardo Habkost9be38592016-06-13 18:57:58 -0300198 return atomic_xchg(&ts->signal_pending, 1);
Peter Maydell3d3efba2016-05-27 15:51:49 +0100199}
200
Alex Barcelo1c275922014-03-14 14:36:55 +0000201/* Wrapper for sigprocmask function
202 * Emulates a sigprocmask in a safe way for the guest. Note that set and oldset
Peter Maydell3d3efba2016-05-27 15:51:49 +0100203 * are host signal set, not guest ones. Returns -TARGET_ERESTARTSYS if
204 * a signal was already pending and the syscall must be restarted, or
205 * 0 on success.
206 * If set is NULL, this is guaranteed not to fail.
Alex Barcelo1c275922014-03-14 14:36:55 +0000207 */
208int do_sigprocmask(int how, const sigset_t *set, sigset_t *oldset)
209{
Peter Maydell3d3efba2016-05-27 15:51:49 +0100210 TaskState *ts = (TaskState *)thread_cpu->opaque;
211
212 if (oldset) {
213 *oldset = ts->signal_mask;
214 }
Peter Maydella7ec0f92014-03-14 14:36:56 +0000215
216 if (set) {
Peter Maydell3d3efba2016-05-27 15:51:49 +0100217 int i;
Peter Maydella7ec0f92014-03-14 14:36:56 +0000218
Peter Maydell3d3efba2016-05-27 15:51:49 +0100219 if (block_signals()) {
220 return -TARGET_ERESTARTSYS;
221 }
Peter Maydella7ec0f92014-03-14 14:36:56 +0000222
223 switch (how) {
224 case SIG_BLOCK:
Peter Maydell3d3efba2016-05-27 15:51:49 +0100225 sigorset(&ts->signal_mask, &ts->signal_mask, set);
Peter Maydella7ec0f92014-03-14 14:36:56 +0000226 break;
227 case SIG_UNBLOCK:
Peter Maydell3d3efba2016-05-27 15:51:49 +0100228 for (i = 1; i <= NSIG; ++i) {
229 if (sigismember(set, i)) {
230 sigdelset(&ts->signal_mask, i);
231 }
Peter Maydella7ec0f92014-03-14 14:36:56 +0000232 }
233 break;
234 case SIG_SETMASK:
Peter Maydell3d3efba2016-05-27 15:51:49 +0100235 ts->signal_mask = *set;
Peter Maydella7ec0f92014-03-14 14:36:56 +0000236 break;
237 default:
238 g_assert_not_reached();
239 }
Peter Maydell3d3efba2016-05-27 15:51:49 +0100240
241 /* Silently ignore attempts to change blocking status of KILL or STOP */
242 sigdelset(&ts->signal_mask, SIGKILL);
243 sigdelset(&ts->signal_mask, SIGSTOP);
Peter Maydella7ec0f92014-03-14 14:36:56 +0000244 }
Peter Maydell3d3efba2016-05-27 15:51:49 +0100245 return 0;
Alex Barcelo1c275922014-03-14 14:36:55 +0000246}
247
Richard Hendersone8f29042018-05-27 14:02:17 -0500248#if !defined(TARGET_NIOS2)
Peter Maydell3d3efba2016-05-27 15:51:49 +0100249/* Just set the guest's signal mask to the specified value; the
250 * caller is assumed to have called block_signals() already.
251 */
Laurent Vivierbefb7442018-04-24 21:26:16 +0200252void set_sigmask(const sigset_t *set)
Peter Maydell9eede5b2016-05-27 15:51:46 +0100253{
Peter Maydell3d3efba2016-05-27 15:51:49 +0100254 TaskState *ts = (TaskState *)thread_cpu->opaque;
255
256 ts->signal_mask = *set;
Peter Maydell9eede5b2016-05-27 15:51:46 +0100257}
258#endif
259
Laurent Vivier465e2372018-04-11 21:23:47 +0200260/* sigaltstack management */
261
262int on_sig_stack(unsigned long sp)
263{
Peter Maydell5bfce0b2019-07-25 14:16:45 +0100264 TaskState *ts = (TaskState *)thread_cpu->opaque;
265
266 return (sp - ts->sigaltstack_used.ss_sp
267 < ts->sigaltstack_used.ss_size);
Laurent Vivier465e2372018-04-11 21:23:47 +0200268}
269
270int sas_ss_flags(unsigned long sp)
271{
Peter Maydell5bfce0b2019-07-25 14:16:45 +0100272 TaskState *ts = (TaskState *)thread_cpu->opaque;
273
274 return (ts->sigaltstack_used.ss_size == 0 ? SS_DISABLE
Laurent Vivier465e2372018-04-11 21:23:47 +0200275 : on_sig_stack(sp) ? SS_ONSTACK : 0);
276}
277
278abi_ulong target_sigsp(abi_ulong sp, struct target_sigaction *ka)
279{
280 /*
281 * This is the X/Open sanctioned signal stack switching.
282 */
Peter Maydell5bfce0b2019-07-25 14:16:45 +0100283 TaskState *ts = (TaskState *)thread_cpu->opaque;
284
Laurent Vivier465e2372018-04-11 21:23:47 +0200285 if ((ka->sa_flags & TARGET_SA_ONSTACK) && !sas_ss_flags(sp)) {
Peter Maydell5bfce0b2019-07-25 14:16:45 +0100286 return ts->sigaltstack_used.ss_sp + ts->sigaltstack_used.ss_size;
Laurent Vivier465e2372018-04-11 21:23:47 +0200287 }
288 return sp;
289}
290
291void target_save_altstack(target_stack_t *uss, CPUArchState *env)
292{
Peter Maydell5bfce0b2019-07-25 14:16:45 +0100293 TaskState *ts = (TaskState *)thread_cpu->opaque;
294
295 __put_user(ts->sigaltstack_used.ss_sp, &uss->ss_sp);
Laurent Vivier465e2372018-04-11 21:23:47 +0200296 __put_user(sas_ss_flags(get_sp_from_cpustate(env)), &uss->ss_flags);
Peter Maydell5bfce0b2019-07-25 14:16:45 +0100297 __put_user(ts->sigaltstack_used.ss_size, &uss->ss_size);
Laurent Vivier465e2372018-04-11 21:23:47 +0200298}
299
bellard9de5e442003-03-23 16:49:39 +0000300/* siginfo conversion */
301
Anthony Liguoric227f092009-10-01 16:12:16 -0500302static inline void host_to_target_siginfo_noswap(target_siginfo_t *tinfo,
bellard9de5e442003-03-23 16:49:39 +0000303 const siginfo_t *info)
bellard66fb9762003-03-23 01:06:05 +0000304{
Richard Hendersona05c6402012-09-15 11:34:20 -0700305 int sig = host_to_target_signal(info->si_signo);
Peter Maydella70dadc2016-05-27 15:51:59 +0100306 int si_code = info->si_code;
307 int si_type;
bellard9de5e442003-03-23 16:49:39 +0000308 tinfo->si_signo = sig;
309 tinfo->si_errno = 0;
pbrookafd7cd92008-05-31 12:14:21 +0000310 tinfo->si_code = info->si_code;
Richard Hendersona05c6402012-09-15 11:34:20 -0700311
Peter Maydell55d72a72016-06-13 11:22:05 +0100312 /* This memset serves two purposes:
313 * (1) ensure we don't leak random junk to the guest later
314 * (2) placate false positives from gcc about fields
315 * being used uninitialized if it chooses to inline both this
316 * function and tswap_siginfo() into host_to_target_siginfo().
317 */
318 memset(tinfo->_sifields._pad, 0, sizeof(tinfo->_sifields._pad));
319
Peter Maydella70dadc2016-05-27 15:51:59 +0100320 /* This is awkward, because we have to use a combination of
321 * the si_code and si_signo to figure out which of the union's
322 * members are valid. (Within the host kernel it is always possible
323 * to tell, but the kernel carefully avoids giving userspace the
324 * high 16 bits of si_code, so we don't have the information to
325 * do this the easy way...) We therefore make our best guess,
326 * bearing in mind that a guest can spoof most of the si_codes
327 * via rt_sigqueueinfo() if it likes.
328 *
329 * Once we have made our guess, we record it in the top 16 bits of
330 * the si_code, so that tswap_siginfo() later can use it.
331 * tswap_siginfo() will strip these top bits out before writing
332 * si_code to the guest (sign-extending the lower bits).
333 */
334
335 switch (si_code) {
336 case SI_USER:
337 case SI_TKILL:
338 case SI_KERNEL:
339 /* Sent via kill(), tkill() or tgkill(), or direct from the kernel.
340 * These are the only unspoofable si_code values.
341 */
342 tinfo->_sifields._kill._pid = info->si_pid;
343 tinfo->_sifields._kill._uid = info->si_uid;
344 si_type = QEMU_SI_KILL;
345 break;
346 default:
347 /* Everything else is spoofable. Make best guess based on signal */
348 switch (sig) {
349 case TARGET_SIGCHLD:
350 tinfo->_sifields._sigchld._pid = info->si_pid;
351 tinfo->_sifields._sigchld._uid = info->si_uid;
352 tinfo->_sifields._sigchld._status
Timothy E Baldwinda7c8642016-05-12 18:47:27 +0100353 = host_to_target_waitstatus(info->si_status);
Peter Maydella70dadc2016-05-27 15:51:59 +0100354 tinfo->_sifields._sigchld._utime = info->si_utime;
355 tinfo->_sifields._sigchld._stime = info->si_stime;
356 si_type = QEMU_SI_CHLD;
357 break;
358 case TARGET_SIGIO:
359 tinfo->_sifields._sigpoll._band = info->si_band;
360 tinfo->_sifields._sigpoll._fd = info->si_fd;
361 si_type = QEMU_SI_POLL;
362 break;
363 default:
364 /* Assume a sigqueue()/mq_notify()/rt_sigqueueinfo() source. */
365 tinfo->_sifields._rt._pid = info->si_pid;
366 tinfo->_sifields._rt._uid = info->si_uid;
367 /* XXX: potential problem if 64 bit */
368 tinfo->_sifields._rt._sigval.sival_ptr
Timothy E Baldwinda7c8642016-05-12 18:47:27 +0100369 = (abi_ulong)(unsigned long)info->si_value.sival_ptr;
Peter Maydella70dadc2016-05-27 15:51:59 +0100370 si_type = QEMU_SI_RT;
371 break;
372 }
373 break;
bellard9de5e442003-03-23 16:49:39 +0000374 }
Peter Maydella70dadc2016-05-27 15:51:59 +0100375
376 tinfo->si_code = deposit32(si_code, 16, 16, si_type);
bellard66fb9762003-03-23 01:06:05 +0000377}
378
Laurent Vivierbefb7442018-04-24 21:26:16 +0200379void tswap_siginfo(target_siginfo_t *tinfo,
380 const target_siginfo_t *info)
bellard9de5e442003-03-23 16:49:39 +0000381{
Peter Maydella70dadc2016-05-27 15:51:59 +0100382 int si_type = extract32(info->si_code, 16, 16);
383 int si_code = sextract32(info->si_code, 0, 16);
Richard Hendersona05c6402012-09-15 11:34:20 -0700384
Peter Maydella70dadc2016-05-27 15:51:59 +0100385 __put_user(info->si_signo, &tinfo->si_signo);
386 __put_user(info->si_errno, &tinfo->si_errno);
387 __put_user(si_code, &tinfo->si_code);
388
389 /* We can use our internal marker of which fields in the structure
390 * are valid, rather than duplicating the guesswork of
391 * host_to_target_siginfo_noswap() here.
392 */
393 switch (si_type) {
394 case QEMU_SI_KILL:
395 __put_user(info->_sifields._kill._pid, &tinfo->_sifields._kill._pid);
396 __put_user(info->_sifields._kill._uid, &tinfo->_sifields._kill._uid);
397 break;
398 case QEMU_SI_TIMER:
399 __put_user(info->_sifields._timer._timer1,
400 &tinfo->_sifields._timer._timer1);
401 __put_user(info->_sifields._timer._timer2,
402 &tinfo->_sifields._timer._timer2);
403 break;
404 case QEMU_SI_POLL:
405 __put_user(info->_sifields._sigpoll._band,
406 &tinfo->_sifields._sigpoll._band);
407 __put_user(info->_sifields._sigpoll._fd,
408 &tinfo->_sifields._sigpoll._fd);
409 break;
410 case QEMU_SI_FAULT:
411 __put_user(info->_sifields._sigfault._addr,
412 &tinfo->_sifields._sigfault._addr);
413 break;
414 case QEMU_SI_CHLD:
415 __put_user(info->_sifields._sigchld._pid,
416 &tinfo->_sifields._sigchld._pid);
417 __put_user(info->_sifields._sigchld._uid,
418 &tinfo->_sifields._sigchld._uid);
419 __put_user(info->_sifields._sigchld._status,
420 &tinfo->_sifields._sigchld._status);
421 __put_user(info->_sifields._sigchld._utime,
422 &tinfo->_sifields._sigchld._utime);
423 __put_user(info->_sifields._sigchld._stime,
424 &tinfo->_sifields._sigchld._stime);
425 break;
426 case QEMU_SI_RT:
427 __put_user(info->_sifields._rt._pid, &tinfo->_sifields._rt._pid);
428 __put_user(info->_sifields._rt._uid, &tinfo->_sifields._rt._uid);
429 __put_user(info->_sifields._rt._sigval.sival_ptr,
430 &tinfo->_sifields._rt._sigval.sival_ptr);
431 break;
432 default:
433 g_assert_not_reached();
bellard9de5e442003-03-23 16:49:39 +0000434 }
435}
436
Anthony Liguoric227f092009-10-01 16:12:16 -0500437void host_to_target_siginfo(target_siginfo_t *tinfo, const siginfo_t *info)
bellard9de5e442003-03-23 16:49:39 +0000438{
Peter Maydell55d72a72016-06-13 11:22:05 +0100439 target_siginfo_t tgt_tmp;
440 host_to_target_siginfo_noswap(&tgt_tmp, info);
441 tswap_siginfo(tinfo, &tgt_tmp);
bellard9de5e442003-03-23 16:49:39 +0000442}
443
444/* XXX: we support only POSIX RT signals are used. */
thsaa1f17c2007-07-11 22:48:58 +0000445/* XXX: find a solution for 64 bit (additional malloced data is needed) */
Anthony Liguoric227f092009-10-01 16:12:16 -0500446void target_to_host_siginfo(siginfo_t *info, const target_siginfo_t *tinfo)
bellard66fb9762003-03-23 01:06:05 +0000447{
Peter Maydell90c0f082016-05-27 15:52:01 +0100448 /* This conversion is used only for the rt_sigqueueinfo syscall,
449 * and so we know that the _rt fields are the valid ones.
450 */
451 abi_ulong sival_ptr;
452
453 __get_user(info->si_signo, &tinfo->si_signo);
454 __get_user(info->si_errno, &tinfo->si_errno);
455 __get_user(info->si_code, &tinfo->si_code);
456 __get_user(info->si_pid, &tinfo->_sifields._rt._pid);
457 __get_user(info->si_uid, &tinfo->_sifields._rt._uid);
458 __get_user(sival_ptr, &tinfo->_sifields._rt._sigval.sival_ptr);
459 info->si_value.sival_ptr = (void *)(long)sival_ptr;
bellard66fb9762003-03-23 01:06:05 +0000460}
461
aurel32ca587a82008-12-18 22:44:13 +0000462static int fatal_signal (int sig)
463{
464 switch (sig) {
465 case TARGET_SIGCHLD:
466 case TARGET_SIGURG:
467 case TARGET_SIGWINCH:
468 /* Ignored by default. */
469 return 0;
470 case TARGET_SIGCONT:
471 case TARGET_SIGSTOP:
472 case TARGET_SIGTSTP:
473 case TARGET_SIGTTIN:
474 case TARGET_SIGTTOU:
475 /* Job control signals. */
476 return 0;
477 default:
478 return 1;
479 }
480}
481
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300482/* returns 1 if given signal should dump core if not handled */
483static int core_dump_signal(int sig)
484{
485 switch (sig) {
486 case TARGET_SIGABRT:
487 case TARGET_SIGFPE:
488 case TARGET_SIGILL:
489 case TARGET_SIGQUIT:
490 case TARGET_SIGSEGV:
491 case TARGET_SIGTRAP:
492 case TARGET_SIGBUS:
493 return (1);
494 default:
495 return (0);
496 }
497}
498
Laurent Vivier365510f2020-02-12 13:56:56 +0100499static void signal_table_init(void)
500{
501 int host_sig, target_sig;
502
503 /*
504 * Nasty hack: Reverse SIGRTMIN and SIGRTMAX to avoid overlap with
505 * host libpthread signals. This assumes no one actually uses SIGRTMAX :-/
506 * To fix this properly we need to do manual signal delivery multiplexed
507 * over a single host signal.
508 */
509 host_to_target_signal_table[__SIGRTMIN] = __SIGRTMAX;
510 host_to_target_signal_table[__SIGRTMAX] = __SIGRTMIN;
511
512 /* generate signal conversion tables */
513 for (host_sig = 1; host_sig < _NSIG; host_sig++) {
514 if (host_to_target_signal_table[host_sig] == 0) {
515 host_to_target_signal_table[host_sig] = host_sig;
516 }
Laurent Vivier365510f2020-02-12 13:56:56 +0100517 target_sig = host_to_target_signal_table[host_sig];
Laurent Vivier9fcff3a2020-02-12 13:56:57 +0100518 if (target_sig <= TARGET_NSIG) {
519 target_to_host_signal_table[target_sig] = host_sig;
520 }
Laurent Vivier365510f2020-02-12 13:56:56 +0100521 }
522}
523
bellard31e31b82003-02-18 22:55:36 +0000524void signal_init(void)
525{
Peter Maydell3d3efba2016-05-27 15:51:49 +0100526 TaskState *ts = (TaskState *)thread_cpu->opaque;
bellard31e31b82003-02-18 22:55:36 +0000527 struct sigaction act;
pbrook624f7972008-05-31 16:11:38 +0000528 struct sigaction oact;
Laurent Vivier365510f2020-02-12 13:56:56 +0100529 int i;
pbrook624f7972008-05-31 16:11:38 +0000530 int host_sig;
bellard31e31b82003-02-18 22:55:36 +0000531
Laurent Vivier365510f2020-02-12 13:56:56 +0100532 /* initialize signal conversion tables */
533 signal_table_init();
ths3b46e622007-09-17 08:09:54 +0000534
Peter Maydell3d3efba2016-05-27 15:51:49 +0100535 /* Set the signal mask from the host mask. */
536 sigprocmask(0, 0, &ts->signal_mask);
537
bellard9de5e442003-03-23 16:49:39 +0000538 sigfillset(&act.sa_mask);
bellard31e31b82003-02-18 22:55:36 +0000539 act.sa_flags = SA_SIGINFO;
540 act.sa_sigaction = host_signal_handler;
pbrook624f7972008-05-31 16:11:38 +0000541 for(i = 1; i <= TARGET_NSIG; i++) {
Alex Bennée716cdbe2019-05-02 15:58:46 +0100542#ifdef TARGET_GPROF
Laurent Vivier9fcff3a2020-02-12 13:56:57 +0100543 if (i == TARGET_SIGPROF) {
Alex Bennée716cdbe2019-05-02 15:58:46 +0100544 continue;
545 }
546#endif
pbrook624f7972008-05-31 16:11:38 +0000547 host_sig = target_to_host_signal(i);
548 sigaction(host_sig, NULL, &oact);
549 if (oact.sa_sigaction == (void *)SIG_IGN) {
550 sigact_table[i - 1]._sa_handler = TARGET_SIG_IGN;
551 } else if (oact.sa_sigaction == (void *)SIG_DFL) {
552 sigact_table[i - 1]._sa_handler = TARGET_SIG_DFL;
553 }
554 /* If there's already a handler installed then something has
555 gone horribly wrong, so don't even try to handle that case. */
aurel32ca587a82008-12-18 22:44:13 +0000556 /* Install some handlers for our own use. We need at least
557 SIGSEGV and SIGBUS, to detect exceptions. We can not just
558 trap all signals because it affects syscall interrupt
559 behavior. But do trap all default-fatal signals. */
560 if (fatal_signal (i))
pbrook624f7972008-05-31 16:11:38 +0000561 sigaction(host_sig, &act, NULL);
bellard31e31b82003-02-18 22:55:36 +0000562 }
bellard31e31b82003-02-18 22:55:36 +0000563}
564
Peter Maydellc599d4d2016-07-28 16:44:49 +0100565/* Force a synchronously taken signal. The kernel force_sig() function
566 * also forces the signal to "not blocked, not ignored", but for QEMU
567 * that work is done in process_pending_signals().
568 */
Laurent Vivierbefb7442018-04-24 21:26:16 +0200569void force_sig(int sig)
Peter Maydellc599d4d2016-07-28 16:44:49 +0100570{
571 CPUState *cpu = thread_cpu;
572 CPUArchState *env = cpu->env_ptr;
573 target_siginfo_t info;
574
575 info.si_signo = sig;
576 info.si_errno = 0;
577 info.si_code = TARGET_SI_KERNEL;
578 info._sifields._kill._pid = 0;
579 info._sifields._kill._uid = 0;
580 queue_signal(env, info.si_signo, QEMU_SI_KILL, &info);
581}
Peter Maydell09391662016-07-28 16:44:47 +0100582
583/* Force a SIGSEGV if we couldn't write to memory trying to set
584 * up the signal frame. oldsig is the signal we were trying to handle
585 * at the point of failure.
586 */
Michael Clark47ae93c2018-03-03 01:31:11 +1300587#if !defined(TARGET_RISCV)
Laurent Vivierbefb7442018-04-24 21:26:16 +0200588void force_sigsegv(int oldsig)
Peter Maydell09391662016-07-28 16:44:47 +0100589{
Peter Maydell09391662016-07-28 16:44:47 +0100590 if (oldsig == SIGSEGV) {
591 /* Make sure we don't try to deliver the signal again; this will
Peter Maydellc599d4d2016-07-28 16:44:49 +0100592 * end up with handle_pending_signal() calling dump_core_and_abort().
Peter Maydell09391662016-07-28 16:44:47 +0100593 */
594 sigact_table[oldsig - 1]._sa_handler = TARGET_SIG_DFL;
595 }
Peter Maydellc4b35742016-07-28 16:44:50 +0100596 force_sig(TARGET_SIGSEGV);
Peter Maydell09391662016-07-28 16:44:47 +0100597}
bellard66fb9762003-03-23 01:06:05 +0000598
Michael Clark47ae93c2018-03-03 01:31:11 +1300599#endif
600
bellard9de5e442003-03-23 16:49:39 +0000601/* abort execution with signal */
Peter Maydellc599d4d2016-07-28 16:44:49 +0100602static void QEMU_NORETURN dump_core_and_abort(int target_sig)
bellard66fb9762003-03-23 01:06:05 +0000603{
Andreas Färber0429a972013-08-26 18:14:44 +0200604 CPUState *cpu = thread_cpu;
605 CPUArchState *env = cpu->env_ptr;
606 TaskState *ts = (TaskState *)cpu->opaque;
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300607 int host_sig, core_dumped = 0;
aurel32603e4fd2009-04-15 16:18:38 +0000608 struct sigaction act;
Paolo Bonzinic8ee0a42015-11-13 13:52:21 +0100609
Riku Voipio66393fb2009-12-04 15:16:32 +0200610 host_sig = target_to_host_signal(target_sig);
Paolo Bonzinic8ee0a42015-11-13 13:52:21 +0100611 trace_user_force_sig(env, target_sig, host_sig);
Andreas Färbera2247f82013-06-09 19:47:04 +0200612 gdb_signalled(env, target_sig);
aurel32603e4fd2009-04-15 16:18:38 +0000613
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300614 /* dump core if supported by target binary format */
Riku Voipio66393fb2009-12-04 15:16:32 +0200615 if (core_dump_signal(target_sig) && (ts->bprm->core_dump != NULL)) {
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300616 stop_all_tasks();
617 core_dumped =
Andreas Färbera2247f82013-06-09 19:47:04 +0200618 ((*ts->bprm->core_dump)(target_sig, env) == 0);
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300619 }
620 if (core_dumped) {
621 /* we already dumped the core of target process, we don't want
622 * a coredump of qemu itself */
623 struct rlimit nodump;
624 getrlimit(RLIMIT_CORE, &nodump);
625 nodump.rlim_cur=0;
626 setrlimit(RLIMIT_CORE, &nodump);
627 (void) fprintf(stderr, "qemu: uncaught target signal %d (%s) - %s\n",
Riku Voipio66393fb2009-12-04 15:16:32 +0200628 target_sig, strsignal(host_sig), "core dumped" );
Mika Westerbergedf8e2a2009-04-07 09:57:11 +0300629 }
630
Stefan Weil0c587512011-04-28 17:20:32 +0200631 /* The proper exit code for dying from an uncaught signal is
aurel32603e4fd2009-04-15 16:18:38 +0000632 * -<signal>. The kernel doesn't allow exit() or _exit() to pass
633 * a negative value. To get the proper exit code we need to
634 * actually die from an uncaught signal. Here the default signal
635 * handler is installed, we send ourself a signal and we wait for
636 * it to arrive. */
637 sigfillset(&act.sa_mask);
638 act.sa_handler = SIG_DFL;
Peter Maydell3a5d30b2014-02-17 18:55:32 +0000639 act.sa_flags = 0;
aurel32603e4fd2009-04-15 16:18:38 +0000640 sigaction(host_sig, &act, NULL);
641
642 /* For some reason raise(host_sig) doesn't send the signal when
643 * statically linked on x86-64. */
644 kill(getpid(), host_sig);
645
646 /* Make sure the signal isn't masked (just reuse the mask inside
647 of act) */
648 sigdelset(&act.sa_mask, host_sig);
649 sigsuspend(&act.sa_mask);
650
651 /* unreachable */
Blue Swirla6c6f762010-03-13 14:18:50 +0000652 abort();
bellard66fb9762003-03-23 01:06:05 +0000653}
654
bellard9de5e442003-03-23 16:49:39 +0000655/* queue a signal so that it will be send to the virtual CPU as soon
656 as possible */
Peter Maydell9d2803f2016-07-28 16:44:46 +0100657int queue_signal(CPUArchState *env, int sig, int si_type,
658 target_siginfo_t *info)
bellard31e31b82003-02-18 22:55:36 +0000659{
Richard Henderson29a0af62019-03-22 16:07:18 -0700660 CPUState *cpu = env_cpu(env);
Andreas Färber0429a972013-08-26 18:14:44 +0200661 TaskState *ts = cpu->opaque;
bellard66fb9762003-03-23 01:06:05 +0000662
Paolo Bonzinic8ee0a42015-11-13 13:52:21 +0100663 trace_user_queue_signal(env, sig);
Peter Maydella7ec0f92014-03-14 14:36:56 +0000664
Peter Maydell9d2803f2016-07-28 16:44:46 +0100665 info->si_code = deposit32(info->si_code, 16, 16, si_type);
Peter Maydella70dadc2016-05-27 15:51:59 +0100666
Timothy E Baldwin655ed672016-05-27 15:51:53 +0100667 ts->sync_signal.info = *info;
668 ts->sync_signal.pending = sig;
Timothy E Baldwin907f5fd2016-05-27 15:51:52 +0100669 /* signal that a new signal is pending */
670 atomic_set(&ts->signal_pending, 1);
671 return 1; /* indicates that the signal was queued */
bellard9de5e442003-03-23 16:49:39 +0000672}
673
Timothy E Baldwin4d330ce2016-05-12 18:47:46 +0100674#ifndef HAVE_SAFE_SYSCALL
675static inline void rewind_if_in_safe_syscall(void *puc)
676{
677 /* Default version: never rewind */
678}
679#endif
680
ths5fafdf22007-09-16 21:08:06 +0000681static void host_signal_handler(int host_signum, siginfo_t *info,
bellard9de5e442003-03-23 16:49:39 +0000682 void *puc)
683{
Andreas Färbera2247f82013-06-09 19:47:04 +0200684 CPUArchState *env = thread_cpu->env_ptr;
Richard Henderson29a0af62019-03-22 16:07:18 -0700685 CPUState *cpu = env_cpu(env);
Timothy E Baldwin655ed672016-05-27 15:51:53 +0100686 TaskState *ts = cpu->opaque;
687
bellard9de5e442003-03-23 16:49:39 +0000688 int sig;
Anthony Liguoric227f092009-10-01 16:12:16 -0500689 target_siginfo_t tinfo;
Peter Maydell3d3efba2016-05-27 15:51:49 +0100690 ucontext_t *uc = puc;
Timothy E Baldwin655ed672016-05-27 15:51:53 +0100691 struct emulated_sigtable *k;
bellard9de5e442003-03-23 16:49:39 +0000692
693 /* the CPU emulator uses some host signals to detect exceptions,
aurel32eaa449b2009-01-03 13:14:52 +0000694 we forward to it some signals */
aurel32ca587a82008-12-18 22:44:13 +0000695 if ((host_signum == SIGSEGV || host_signum == SIGBUS)
aurel32eaa449b2009-01-03 13:14:52 +0000696 && info->si_code > 0) {
bellardb346ff42003-06-15 20:05:50 +0000697 if (cpu_signal_handler(host_signum, info, puc))
bellard9de5e442003-03-23 16:49:39 +0000698 return;
699 }
700
701 /* get target signal number */
702 sig = host_to_target_signal(host_signum);
703 if (sig < 1 || sig > TARGET_NSIG)
704 return;
Paolo Bonzinic8ee0a42015-11-13 13:52:21 +0100705 trace_user_host_signal(env, host_signum, sig);
Timothy E Baldwin4d330ce2016-05-12 18:47:46 +0100706
707 rewind_if_in_safe_syscall(puc);
708
bellard9de5e442003-03-23 16:49:39 +0000709 host_to_target_siginfo_noswap(&tinfo, info);
Timothy E Baldwin655ed672016-05-27 15:51:53 +0100710 k = &ts->sigtab[sig - 1];
711 k->info = tinfo;
712 k->pending = sig;
713 ts->signal_pending = 1;
Peter Maydell3d3efba2016-05-27 15:51:49 +0100714
Timothy E Baldwin655ed672016-05-27 15:51:53 +0100715 /* Block host signals until target signal handler entered. We
716 * can't block SIGSEGV or SIGBUS while we're executing guest
717 * code in case the guest code provokes one in the window between
718 * now and it getting out to the main loop. Signals will be
719 * unblocked again in process_pending_signals().
Peter Maydell1d48fdd2016-06-14 12:49:18 +0100720 *
721 * WARNING: we cannot use sigfillset() here because the uc_sigmask
722 * field is a kernel sigset_t, which is much smaller than the
723 * libc sigset_t which sigfillset() operates on. Using sigfillset()
724 * would write 0xff bytes off the end of the structure and trash
725 * data on the struct.
726 * We can't use sizeof(uc->uc_sigmask) either, because the libc
727 * headers define the struct field with the wrong (too large) type.
Timothy E Baldwin655ed672016-05-27 15:51:53 +0100728 */
Peter Maydell1d48fdd2016-06-14 12:49:18 +0100729 memset(&uc->uc_sigmask, 0xff, SIGSET_T_SIZE);
Timothy E Baldwin655ed672016-05-27 15:51:53 +0100730 sigdelset(&uc->uc_sigmask, SIGSEGV);
731 sigdelset(&uc->uc_sigmask, SIGBUS);
732
733 /* interrupt the virtual CPU as soon as possible */
734 cpu_exit(thread_cpu);
bellard31e31b82003-02-18 22:55:36 +0000735}
736
ths0da46a62007-10-20 20:23:07 +0000737/* do_sigaltstack() returns target values and errnos. */
bellard579a97f2007-11-11 14:26:47 +0000738/* compare linux/kernel/signal.c:do_sigaltstack() */
739abi_long do_sigaltstack(abi_ulong uss_addr, abi_ulong uoss_addr, abi_ulong sp)
thsa04e1342007-09-27 13:57:58 +0000740{
741 int ret;
742 struct target_sigaltstack oss;
Peter Maydell5bfce0b2019-07-25 14:16:45 +0100743 TaskState *ts = (TaskState *)thread_cpu->opaque;
thsa04e1342007-09-27 13:57:58 +0000744
745 /* XXX: test errors */
bellard579a97f2007-11-11 14:26:47 +0000746 if(uoss_addr)
thsa04e1342007-09-27 13:57:58 +0000747 {
Peter Maydell5bfce0b2019-07-25 14:16:45 +0100748 __put_user(ts->sigaltstack_used.ss_sp, &oss.ss_sp);
749 __put_user(ts->sigaltstack_used.ss_size, &oss.ss_size);
thsa04e1342007-09-27 13:57:58 +0000750 __put_user(sas_ss_flags(sp), &oss.ss_flags);
751 }
752
bellard579a97f2007-11-11 14:26:47 +0000753 if(uss_addr)
thsa04e1342007-09-27 13:57:58 +0000754 {
bellard579a97f2007-11-11 14:26:47 +0000755 struct target_sigaltstack *uss;
756 struct target_sigaltstack ss;
Tom Musta0903c8b2014-08-12 13:53:40 -0500757 size_t minstacksize = TARGET_MINSIGSTKSZ;
758
759#if defined(TARGET_PPC64)
760 /* ELF V2 for PPC64 has a 4K minimum stack size for signal handlers */
761 struct image_info *image = ((TaskState *)thread_cpu->opaque)->info;
762 if (get_ppc64_abi(image) > 1) {
763 minstacksize = 4096;
764 }
765#endif
thsa04e1342007-09-27 13:57:58 +0000766
Paolo Bonzini7d374352018-12-13 23:37:37 +0100767 ret = -TARGET_EFAULT;
Riku Voipio9eeb8302014-04-23 11:26:34 +0300768 if (!lock_user_struct(VERIFY_READ, uss, uss_addr, 1)) {
thsa04e1342007-09-27 13:57:58 +0000769 goto out;
Riku Voipio9eeb8302014-04-23 11:26:34 +0300770 }
771 __get_user(ss.ss_sp, &uss->ss_sp);
772 __get_user(ss.ss_size, &uss->ss_size);
773 __get_user(ss.ss_flags, &uss->ss_flags);
bellard579a97f2007-11-11 14:26:47 +0000774 unlock_user_struct(uss, uss_addr, 0);
thsa04e1342007-09-27 13:57:58 +0000775
Paolo Bonzini7d374352018-12-13 23:37:37 +0100776 ret = -TARGET_EPERM;
777 if (on_sig_stack(sp))
thsa04e1342007-09-27 13:57:58 +0000778 goto out;
779
Paolo Bonzini7d374352018-12-13 23:37:37 +0100780 ret = -TARGET_EINVAL;
781 if (ss.ss_flags != TARGET_SS_DISABLE
thsa04e1342007-09-27 13:57:58 +0000782 && ss.ss_flags != TARGET_SS_ONSTACK
783 && ss.ss_flags != 0)
784 goto out;
785
Paolo Bonzini7d374352018-12-13 23:37:37 +0100786 if (ss.ss_flags == TARGET_SS_DISABLE) {
thsa04e1342007-09-27 13:57:58 +0000787 ss.ss_size = 0;
788 ss.ss_sp = 0;
Paolo Bonzini7d374352018-12-13 23:37:37 +0100789 } else {
ths0da46a62007-10-20 20:23:07 +0000790 ret = -TARGET_ENOMEM;
Tom Musta0903c8b2014-08-12 13:53:40 -0500791 if (ss.ss_size < minstacksize) {
thsa04e1342007-09-27 13:57:58 +0000792 goto out;
Tom Musta0903c8b2014-08-12 13:53:40 -0500793 }
Paolo Bonzini7d374352018-12-13 23:37:37 +0100794 }
thsa04e1342007-09-27 13:57:58 +0000795
Peter Maydell5bfce0b2019-07-25 14:16:45 +0100796 ts->sigaltstack_used.ss_sp = ss.ss_sp;
797 ts->sigaltstack_used.ss_size = ss.ss_size;
thsa04e1342007-09-27 13:57:58 +0000798 }
799
bellard579a97f2007-11-11 14:26:47 +0000800 if (uoss_addr) {
ths0da46a62007-10-20 20:23:07 +0000801 ret = -TARGET_EFAULT;
bellard579a97f2007-11-11 14:26:47 +0000802 if (copy_to_user(uoss_addr, &oss, sizeof(oss)))
thsa04e1342007-09-27 13:57:58 +0000803 goto out;
thsa04e1342007-09-27 13:57:58 +0000804 }
805
806 ret = 0;
807out:
808 return ret;
809}
810
Timothy E Baldwinef6a7782016-05-27 15:51:54 +0100811/* do_sigaction() return target values and host errnos */
bellard66fb9762003-03-23 01:06:05 +0000812int do_sigaction(int sig, const struct target_sigaction *act,
813 struct target_sigaction *oact)
bellard31e31b82003-02-18 22:55:36 +0000814{
pbrook624f7972008-05-31 16:11:38 +0000815 struct target_sigaction *k;
bellard773b93e2004-01-04 17:15:59 +0000816 struct sigaction act1;
817 int host_sig;
ths0da46a62007-10-20 20:23:07 +0000818 int ret = 0;
bellard31e31b82003-02-18 22:55:36 +0000819
Timothy E Baldwinef6a7782016-05-27 15:51:54 +0100820 if (sig < 1 || sig > TARGET_NSIG || sig == TARGET_SIGKILL || sig == TARGET_SIGSTOP) {
821 return -TARGET_EINVAL;
822 }
823
824 if (block_signals()) {
825 return -TARGET_ERESTARTSYS;
826 }
827
bellard66fb9762003-03-23 01:06:05 +0000828 k = &sigact_table[sig - 1];
bellard66fb9762003-03-23 01:06:05 +0000829 if (oact) {
Richard Hendersond2565872013-01-04 16:39:32 -0800830 __put_user(k->_sa_handler, &oact->_sa_handler);
831 __put_user(k->sa_flags, &oact->sa_flags);
Richard Henderson7f047de2017-10-31 13:53:52 +0100832#ifdef TARGET_ARCH_HAS_SA_RESTORER
Richard Hendersond2565872013-01-04 16:39:32 -0800833 __put_user(k->sa_restorer, &oact->sa_restorer);
ths388bb212007-05-13 13:58:00 +0000834#endif
Richard Hendersond2565872013-01-04 16:39:32 -0800835 /* Not swapped. */
pbrook624f7972008-05-31 16:11:38 +0000836 oact->sa_mask = k->sa_mask;
bellard66fb9762003-03-23 01:06:05 +0000837 }
838 if (act) {
pbrook624f7972008-05-31 16:11:38 +0000839 /* FIXME: This is not threadsafe. */
Richard Hendersond2565872013-01-04 16:39:32 -0800840 __get_user(k->_sa_handler, &act->_sa_handler);
841 __get_user(k->sa_flags, &act->sa_flags);
Richard Henderson7f047de2017-10-31 13:53:52 +0100842#ifdef TARGET_ARCH_HAS_SA_RESTORER
Richard Hendersond2565872013-01-04 16:39:32 -0800843 __get_user(k->sa_restorer, &act->sa_restorer);
ths388bb212007-05-13 13:58:00 +0000844#endif
Richard Hendersond2565872013-01-04 16:39:32 -0800845 /* To be swapped in target_to_host_sigset. */
pbrook624f7972008-05-31 16:11:38 +0000846 k->sa_mask = act->sa_mask;
bellard773b93e2004-01-04 17:15:59 +0000847
848 /* we update the host linux signal state */
849 host_sig = target_to_host_signal(sig);
850 if (host_sig != SIGSEGV && host_sig != SIGBUS) {
851 sigfillset(&act1.sa_mask);
852 act1.sa_flags = SA_SIGINFO;
pbrook624f7972008-05-31 16:11:38 +0000853 if (k->sa_flags & TARGET_SA_RESTART)
bellard773b93e2004-01-04 17:15:59 +0000854 act1.sa_flags |= SA_RESTART;
855 /* NOTE: it is important to update the host kernel signal
856 ignore state to avoid getting unexpected interrupted
857 syscalls */
pbrook624f7972008-05-31 16:11:38 +0000858 if (k->_sa_handler == TARGET_SIG_IGN) {
bellard773b93e2004-01-04 17:15:59 +0000859 act1.sa_sigaction = (void *)SIG_IGN;
pbrook624f7972008-05-31 16:11:38 +0000860 } else if (k->_sa_handler == TARGET_SIG_DFL) {
aurel32ca587a82008-12-18 22:44:13 +0000861 if (fatal_signal (sig))
862 act1.sa_sigaction = host_signal_handler;
863 else
864 act1.sa_sigaction = (void *)SIG_DFL;
bellard773b93e2004-01-04 17:15:59 +0000865 } else {
866 act1.sa_sigaction = host_signal_handler;
867 }
ths0da46a62007-10-20 20:23:07 +0000868 ret = sigaction(host_sig, &act1, NULL);
bellard773b93e2004-01-04 17:15:59 +0000869 }
bellard66fb9762003-03-23 01:06:05 +0000870 }
ths0da46a62007-10-20 20:23:07 +0000871 return ret;
bellard66fb9762003-03-23 01:06:05 +0000872}
bellard31e31b82003-02-18 22:55:36 +0000873
Peter Maydell31efaef2016-07-06 15:09:29 +0100874static void handle_pending_signal(CPUArchState *cpu_env, int sig,
875 struct emulated_sigtable *k)
Peter Maydelleb552502016-05-27 15:51:43 +0100876{
Richard Henderson29a0af62019-03-22 16:07:18 -0700877 CPUState *cpu = env_cpu(cpu_env);
Peter Maydelleb552502016-05-27 15:51:43 +0100878 abi_ulong handler;
Peter Maydell3d3efba2016-05-27 15:51:49 +0100879 sigset_t set;
Peter Maydelleb552502016-05-27 15:51:43 +0100880 target_sigset_t target_old_set;
881 struct target_sigaction *sa;
Peter Maydelleb552502016-05-27 15:51:43 +0100882 TaskState *ts = cpu->opaque;
Peter Maydelleb552502016-05-27 15:51:43 +0100883
Paolo Bonzinic8ee0a42015-11-13 13:52:21 +0100884 trace_user_handle_signal(cpu_env, sig);
bellard66fb9762003-03-23 01:06:05 +0000885 /* dequeue signal */
Timothy E Baldwin907f5fd2016-05-27 15:51:52 +0100886 k->pending = 0;
ths3b46e622007-09-17 08:09:54 +0000887
Andreas Färberdb6b81d2013-06-27 19:49:31 +0200888 sig = gdb_handlesig(cpu, sig);
bellard1fddef42005-04-17 19:16:13 +0000889 if (!sig) {
aurel32ca587a82008-12-18 22:44:13 +0000890 sa = NULL;
891 handler = TARGET_SIG_IGN;
892 } else {
893 sa = &sigact_table[sig - 1];
894 handler = sa->_sa_handler;
bellard1fddef42005-04-17 19:16:13 +0000895 }
bellard66fb9762003-03-23 01:06:05 +0000896
Peter Maydell0cb581d2016-07-18 18:12:24 +0100897 if (do_strace) {
898 print_taken_signal(sig, &k->info);
899 }
900
bellard66fb9762003-03-23 01:06:05 +0000901 if (handler == TARGET_SIG_DFL) {
aurel32ca587a82008-12-18 22:44:13 +0000902 /* default handler : ignore some signal. The other are job control or fatal */
903 if (sig == TARGET_SIGTSTP || sig == TARGET_SIGTTIN || sig == TARGET_SIGTTOU) {
904 kill(getpid(),SIGSTOP);
905 } else if (sig != TARGET_SIGCHLD &&
906 sig != TARGET_SIGURG &&
907 sig != TARGET_SIGWINCH &&
908 sig != TARGET_SIGCONT) {
Peter Maydellc599d4d2016-07-28 16:44:49 +0100909 dump_core_and_abort(sig);
bellard66fb9762003-03-23 01:06:05 +0000910 }
911 } else if (handler == TARGET_SIG_IGN) {
912 /* ignore sig */
913 } else if (handler == TARGET_SIG_ERR) {
Peter Maydellc599d4d2016-07-28 16:44:49 +0100914 dump_core_and_abort(sig);
bellard66fb9762003-03-23 01:06:05 +0000915 } else {
bellard9de5e442003-03-23 16:49:39 +0000916 /* compute the blocked signals during the handler execution */
Peter Maydell3d3efba2016-05-27 15:51:49 +0100917 sigset_t *blocked_set;
918
pbrook624f7972008-05-31 16:11:38 +0000919 target_to_host_sigset(&set, &sa->sa_mask);
bellard9de5e442003-03-23 16:49:39 +0000920 /* SA_NODEFER indicates that the current signal should not be
921 blocked during the handler */
pbrook624f7972008-05-31 16:11:38 +0000922 if (!(sa->sa_flags & TARGET_SA_NODEFER))
bellard9de5e442003-03-23 16:49:39 +0000923 sigaddset(&set, target_to_host_signal(sig));
ths3b46e622007-09-17 08:09:54 +0000924
bellard9de5e442003-03-23 16:49:39 +0000925 /* save the previous blocked signal state to restore it at the
926 end of the signal execution (see do_sigreturn) */
Peter Maydell3d3efba2016-05-27 15:51:49 +0100927 host_to_target_sigset_internal(&target_old_set, &ts->signal_mask);
928
929 /* block signals in the handler */
930 blocked_set = ts->in_sigsuspend ?
931 &ts->sigsuspend_mask : &ts->signal_mask;
932 sigorset(&ts->signal_mask, blocked_set, &set);
933 ts->in_sigsuspend = 0;
bellard9de5e442003-03-23 16:49:39 +0000934
bellardbc8a22c2003-03-30 21:02:40 +0000935 /* if the CPU is in VM86 mode, we restore the 32 bit values */
j_mayer84409dd2007-04-06 08:56:50 +0000936#if defined(TARGET_I386) && !defined(TARGET_X86_64)
bellardbc8a22c2003-03-30 21:02:40 +0000937 {
938 CPUX86State *env = cpu_env;
939 if (env->eflags & VM_MASK)
940 save_v86_state(env);
941 }
942#endif
bellard9de5e442003-03-23 16:49:39 +0000943 /* prepare the stack frame of the virtual CPU */
Laurent Viviercb6ac802018-04-24 21:26:35 +0200944#if defined(TARGET_ARCH_HAS_SETUP_FRAME)
945 if (sa->sa_flags & TARGET_SA_SIGINFO) {
946 setup_rt_frame(sig, sa, &k->info, &target_old_set, cpu_env);
947 } else {
948 setup_frame(sig, sa, &target_old_set, cpu_env);
949 }
950#else
Richard Hendersonff970902013-02-10 10:30:42 -0800951 /* These targets do not have traditional signals. */
Timothy E Baldwin907f5fd2016-05-27 15:51:52 +0100952 setup_rt_frame(sig, sa, &k->info, &target_old_set, cpu_env);
Richard Hendersonff970902013-02-10 10:30:42 -0800953#endif
Peter Maydell7ec87e02016-05-27 15:51:45 +0100954 if (sa->sa_flags & TARGET_SA_RESETHAND) {
pbrook624f7972008-05-31 16:11:38 +0000955 sa->_sa_handler = TARGET_SIG_DFL;
Peter Maydell7ec87e02016-05-27 15:51:45 +0100956 }
bellard31e31b82003-02-18 22:55:36 +0000957 }
bellard31e31b82003-02-18 22:55:36 +0000958}
Peter Maydelle902d582016-05-27 15:51:44 +0100959
960void process_pending_signals(CPUArchState *cpu_env)
961{
Richard Henderson29a0af62019-03-22 16:07:18 -0700962 CPUState *cpu = env_cpu(cpu_env);
Peter Maydelle902d582016-05-27 15:51:44 +0100963 int sig;
964 TaskState *ts = cpu->opaque;
Peter Maydell3d3efba2016-05-27 15:51:49 +0100965 sigset_t set;
966 sigset_t *blocked_set;
Peter Maydelle902d582016-05-27 15:51:44 +0100967
Peter Maydell3d3efba2016-05-27 15:51:49 +0100968 while (atomic_read(&ts->signal_pending)) {
969 /* FIXME: This is not threadsafe. */
970 sigfillset(&set);
971 sigprocmask(SIG_SETMASK, &set, 0);
Peter Maydelle902d582016-05-27 15:51:44 +0100972
Peter Maydell8bd37732016-07-28 16:44:45 +0100973 restart_scan:
Timothy E Baldwin655ed672016-05-27 15:51:53 +0100974 sig = ts->sync_signal.pending;
975 if (sig) {
976 /* Synchronous signals are forced,
977 * see force_sig_info() and callers in Linux
978 * Note that not all of our queue_signal() calls in QEMU correspond
979 * to force_sig_info() calls in Linux (some are send_sig_info()).
980 * However it seems like a kernel bug to me to allow the process
981 * to block a synchronous signal since it could then just end up
982 * looping round and round indefinitely.
983 */
984 if (sigismember(&ts->signal_mask, target_to_host_signal_table[sig])
985 || sigact_table[sig - 1]._sa_handler == TARGET_SIG_IGN) {
986 sigdelset(&ts->signal_mask, target_to_host_signal_table[sig]);
987 sigact_table[sig - 1]._sa_handler = TARGET_SIG_DFL;
988 }
989
Peter Maydell31efaef2016-07-06 15:09:29 +0100990 handle_pending_signal(cpu_env, sig, &ts->sync_signal);
Timothy E Baldwin655ed672016-05-27 15:51:53 +0100991 }
992
Peter Maydell3d3efba2016-05-27 15:51:49 +0100993 for (sig = 1; sig <= TARGET_NSIG; sig++) {
994 blocked_set = ts->in_sigsuspend ?
995 &ts->sigsuspend_mask : &ts->signal_mask;
996
997 if (ts->sigtab[sig - 1].pending &&
998 (!sigismember(blocked_set,
Timothy E Baldwin655ed672016-05-27 15:51:53 +0100999 target_to_host_signal_table[sig]))) {
Peter Maydell31efaef2016-07-06 15:09:29 +01001000 handle_pending_signal(cpu_env, sig, &ts->sigtab[sig - 1]);
Peter Maydell8bd37732016-07-28 16:44:45 +01001001 /* Restart scan from the beginning, as handle_pending_signal
1002 * might have resulted in a new synchronous signal (eg SIGSEGV).
1003 */
1004 goto restart_scan;
Peter Maydell3d3efba2016-05-27 15:51:49 +01001005 }
Peter Maydelle902d582016-05-27 15:51:44 +01001006 }
Peter Maydell3d3efba2016-05-27 15:51:49 +01001007
1008 /* if no signal is pending, unblock signals and recheck (the act
1009 * of unblocking might cause us to take another host signal which
1010 * will set signal_pending again).
1011 */
1012 atomic_set(&ts->signal_pending, 0);
1013 ts->in_sigsuspend = 0;
1014 set = ts->signal_mask;
1015 sigdelset(&set, SIGSEGV);
1016 sigdelset(&set, SIGBUS);
1017 sigprocmask(SIG_SETMASK, &set, 0);
Peter Maydelle902d582016-05-27 15:51:44 +01001018 }
Peter Maydell3d3efba2016-05-27 15:51:49 +01001019 ts->in_sigsuspend = 0;
Peter Maydelle902d582016-05-27 15:51:44 +01001020}