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31e31b8a 1/*
66fb9763 2 * Emulation of Linux signals
5fafdf24 3 *
31e31b8a
FB
4 * 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
8167ee88 17 * along with this program; if not, see <http://www.gnu.org/licenses/>.
31e31b8a 18 */
d39594e9 19#include "qemu/osdep.h"
a70dadc7 20#include "qemu/bitops.h"
31e31b8a 21#include <sys/ucontext.h>
edf8e2af 22#include <sys/resource.h>
31e31b8a 23
3ef693a0 24#include "qemu.h"
7d99a001 25#include "qemu-common.h"
992f48a0 26#include "target_signal.h"
c8ee0a44 27#include "trace.h"
66fb9763 28
249c4c32 29static struct target_sigaltstack target_sigaltstack_used = {
a04e134a
TS
30 .ss_sp = 0,
31 .ss_size = 0,
32 .ss_flags = TARGET_SS_DISABLE,
33};
34
624f7979 35static struct target_sigaction sigact_table[TARGET_NSIG];
31e31b8a 36
5fafdf24 37static void host_signal_handler(int host_signum, siginfo_t *info,
66fb9763
FB
38 void *puc);
39
3ca05588 40static uint8_t host_to_target_signal_table[_NSIG] = {
9e5f5284
FB
41 [SIGHUP] = TARGET_SIGHUP,
42 [SIGINT] = TARGET_SIGINT,
43 [SIGQUIT] = TARGET_SIGQUIT,
44 [SIGILL] = TARGET_SIGILL,
45 [SIGTRAP] = TARGET_SIGTRAP,
46 [SIGABRT] = TARGET_SIGABRT,
01e3b763 47/* [SIGIOT] = TARGET_SIGIOT,*/
9e5f5284
FB
48 [SIGBUS] = TARGET_SIGBUS,
49 [SIGFPE] = TARGET_SIGFPE,
50 [SIGKILL] = TARGET_SIGKILL,
51 [SIGUSR1] = TARGET_SIGUSR1,
52 [SIGSEGV] = TARGET_SIGSEGV,
53 [SIGUSR2] = TARGET_SIGUSR2,
54 [SIGPIPE] = TARGET_SIGPIPE,
55 [SIGALRM] = TARGET_SIGALRM,
56 [SIGTERM] = TARGET_SIGTERM,
57#ifdef SIGSTKFLT
58 [SIGSTKFLT] = TARGET_SIGSTKFLT,
59#endif
60 [SIGCHLD] = TARGET_SIGCHLD,
61 [SIGCONT] = TARGET_SIGCONT,
62 [SIGSTOP] = TARGET_SIGSTOP,
63 [SIGTSTP] = TARGET_SIGTSTP,
64 [SIGTTIN] = TARGET_SIGTTIN,
65 [SIGTTOU] = TARGET_SIGTTOU,
66 [SIGURG] = TARGET_SIGURG,
67 [SIGXCPU] = TARGET_SIGXCPU,
68 [SIGXFSZ] = TARGET_SIGXFSZ,
69 [SIGVTALRM] = TARGET_SIGVTALRM,
70 [SIGPROF] = TARGET_SIGPROF,
71 [SIGWINCH] = TARGET_SIGWINCH,
72 [SIGIO] = TARGET_SIGIO,
73 [SIGPWR] = TARGET_SIGPWR,
74 [SIGSYS] = TARGET_SIGSYS,
75 /* next signals stay the same */
624f7979 76 /* Nasty hack: Reverse SIGRTMIN and SIGRTMAX to avoid overlap with
b4916d7b 77 host libpthread signals. This assumes no one actually uses SIGRTMAX :-/
624f7979
PB
78 To fix this properly we need to do manual signal delivery multiplexed
79 over a single host signal. */
80 [__SIGRTMIN] = __SIGRTMAX,
81 [__SIGRTMAX] = __SIGRTMIN,
9e5f5284 82};
3ca05588 83static uint8_t target_to_host_signal_table[_NSIG];
9e5f5284 84
a04e134a
TS
85static inline int on_sig_stack(unsigned long sp)
86{
87 return (sp - target_sigaltstack_used.ss_sp
88 < target_sigaltstack_used.ss_size);
89}
90
91static inline int sas_ss_flags(unsigned long sp)
92{
93 return (target_sigaltstack_used.ss_size == 0 ? SS_DISABLE
94 : on_sig_stack(sp) ? SS_ONSTACK : 0);
95}
96
1d9d8b55 97int host_to_target_signal(int sig)
31e31b8a 98{
167c50d8 99 if (sig < 0 || sig >= _NSIG)
4cb05961 100 return sig;
9e5f5284 101 return host_to_target_signal_table[sig];
31e31b8a
FB
102}
103
4cb05961 104int target_to_host_signal(int sig)
31e31b8a 105{
167c50d8 106 if (sig < 0 || sig >= _NSIG)
4cb05961 107 return sig;
9e5f5284 108 return target_to_host_signal_table[sig];
31e31b8a
FB
109}
110
c227f099 111static inline void target_sigemptyset(target_sigset_t *set)
f5545b5c
PB
112{
113 memset(set, 0, sizeof(*set));
114}
115
c227f099 116static inline void target_sigaddset(target_sigset_t *set, int signum)
f5545b5c
PB
117{
118 signum--;
119 abi_ulong mask = (abi_ulong)1 << (signum % TARGET_NSIG_BPW);
120 set->sig[signum / TARGET_NSIG_BPW] |= mask;
121}
122
c227f099 123static inline int target_sigismember(const target_sigset_t *set, int signum)
f5545b5c
PB
124{
125 signum--;
126 abi_ulong mask = (abi_ulong)1 << (signum % TARGET_NSIG_BPW);
127 return ((set->sig[signum / TARGET_NSIG_BPW] & mask) != 0);
128}
129
c227f099 130static void host_to_target_sigset_internal(target_sigset_t *d,
9231944d 131 const sigset_t *s)
66fb9763
FB
132{
133 int i;
f5545b5c
PB
134 target_sigemptyset(d);
135 for (i = 1; i <= TARGET_NSIG; i++) {
136 if (sigismember(s, i)) {
137 target_sigaddset(d, host_to_target_signal(i));
138 }
66fb9763
FB
139 }
140}
141
c227f099 142void host_to_target_sigset(target_sigset_t *d, const sigset_t *s)
9231944d 143{
c227f099 144 target_sigset_t d1;
9231944d
FB
145 int i;
146
147 host_to_target_sigset_internal(&d1, s);
148 for(i = 0;i < TARGET_NSIG_WORDS; i++)
cbb21eed 149 d->sig[i] = tswapal(d1.sig[i]);
9231944d
FB
150}
151
8fcd3692 152static void target_to_host_sigset_internal(sigset_t *d,
c227f099 153 const target_sigset_t *s)
66fb9763
FB
154{
155 int i;
f5545b5c
PB
156 sigemptyset(d);
157 for (i = 1; i <= TARGET_NSIG; i++) {
158 if (target_sigismember(s, i)) {
159 sigaddset(d, target_to_host_signal(i));
160 }
da7c8647 161 }
66fb9763
FB
162}
163
c227f099 164void target_to_host_sigset(sigset_t *d, const target_sigset_t *s)
9231944d 165{
c227f099 166 target_sigset_t s1;
9231944d
FB
167 int i;
168
169 for(i = 0;i < TARGET_NSIG_WORDS; i++)
cbb21eed 170 s1.sig[i] = tswapal(s->sig[i]);
9231944d
FB
171 target_to_host_sigset_internal(d, &s1);
172}
3b46e624 173
992f48a0 174void host_to_target_old_sigset(abi_ulong *old_sigset,
66fb9763
FB
175 const sigset_t *sigset)
176{
c227f099 177 target_sigset_t d;
9e5f5284
FB
178 host_to_target_sigset(&d, sigset);
179 *old_sigset = d.sig[0];
66fb9763
FB
180}
181
5fafdf24 182void target_to_host_old_sigset(sigset_t *sigset,
992f48a0 183 const abi_ulong *old_sigset)
66fb9763 184{
c227f099 185 target_sigset_t d;
9e5f5284
FB
186 int i;
187
188 d.sig[0] = *old_sigset;
189 for(i = 1;i < TARGET_NSIG_WORDS; i++)
190 d.sig[i] = 0;
191 target_to_host_sigset(sigset, &d);
66fb9763
FB
192}
193
3d3efba0
PM
194int block_signals(void)
195{
196 TaskState *ts = (TaskState *)thread_cpu->opaque;
197 sigset_t set;
3d3efba0
PM
198
199 /* It's OK to block everything including SIGSEGV, because we won't
200 * run any further guest code before unblocking signals in
201 * process_pending_signals().
202 */
203 sigfillset(&set);
204 sigprocmask(SIG_SETMASK, &set, 0);
205
9be38598 206 return atomic_xchg(&ts->signal_pending, 1);
3d3efba0
PM
207}
208
1c275925
AB
209/* Wrapper for sigprocmask function
210 * Emulates a sigprocmask in a safe way for the guest. Note that set and oldset
3d3efba0
PM
211 * are host signal set, not guest ones. Returns -TARGET_ERESTARTSYS if
212 * a signal was already pending and the syscall must be restarted, or
213 * 0 on success.
214 * If set is NULL, this is guaranteed not to fail.
1c275925
AB
215 */
216int do_sigprocmask(int how, const sigset_t *set, sigset_t *oldset)
217{
3d3efba0
PM
218 TaskState *ts = (TaskState *)thread_cpu->opaque;
219
220 if (oldset) {
221 *oldset = ts->signal_mask;
222 }
a7ec0f98
PM
223
224 if (set) {
3d3efba0 225 int i;
a7ec0f98 226
3d3efba0
PM
227 if (block_signals()) {
228 return -TARGET_ERESTARTSYS;
229 }
a7ec0f98
PM
230
231 switch (how) {
232 case SIG_BLOCK:
3d3efba0 233 sigorset(&ts->signal_mask, &ts->signal_mask, set);
a7ec0f98
PM
234 break;
235 case SIG_UNBLOCK:
3d3efba0
PM
236 for (i = 1; i <= NSIG; ++i) {
237 if (sigismember(set, i)) {
238 sigdelset(&ts->signal_mask, i);
239 }
a7ec0f98
PM
240 }
241 break;
242 case SIG_SETMASK:
3d3efba0 243 ts->signal_mask = *set;
a7ec0f98
PM
244 break;
245 default:
246 g_assert_not_reached();
247 }
a7ec0f98 248
3d3efba0
PM
249 /* Silently ignore attempts to change blocking status of KILL or STOP */
250 sigdelset(&ts->signal_mask, SIGKILL);
251 sigdelset(&ts->signal_mask, SIGSTOP);
a7ec0f98 252 }
3d3efba0 253 return 0;
1c275925
AB
254}
255
9eede5b6 256#if !defined(TARGET_OPENRISC) && !defined(TARGET_UNICORE32) && \
1c1df019 257 !defined(TARGET_NIOS2)
3d3efba0
PM
258/* Just set the guest's signal mask to the specified value; the
259 * caller is assumed to have called block_signals() already.
260 */
9eede5b6
PM
261static void set_sigmask(const sigset_t *set)
262{
3d3efba0
PM
263 TaskState *ts = (TaskState *)thread_cpu->opaque;
264
265 ts->signal_mask = *set;
9eede5b6
PM
266}
267#endif
268
9de5e440
FB
269/* siginfo conversion */
270
c227f099 271static inline void host_to_target_siginfo_noswap(target_siginfo_t *tinfo,
9de5e440 272 const siginfo_t *info)
66fb9763 273{
a05c6409 274 int sig = host_to_target_signal(info->si_signo);
a70dadc7
PM
275 int si_code = info->si_code;
276 int si_type;
9de5e440
FB
277 tinfo->si_signo = sig;
278 tinfo->si_errno = 0;
afd7cd92 279 tinfo->si_code = info->si_code;
a05c6409 280
55d72a7e
PM
281 /* This memset serves two purposes:
282 * (1) ensure we don't leak random junk to the guest later
283 * (2) placate false positives from gcc about fields
284 * being used uninitialized if it chooses to inline both this
285 * function and tswap_siginfo() into host_to_target_siginfo().
286 */
287 memset(tinfo->_sifields._pad, 0, sizeof(tinfo->_sifields._pad));
288
a70dadc7
PM
289 /* This is awkward, because we have to use a combination of
290 * the si_code and si_signo to figure out which of the union's
291 * members are valid. (Within the host kernel it is always possible
292 * to tell, but the kernel carefully avoids giving userspace the
293 * high 16 bits of si_code, so we don't have the information to
294 * do this the easy way...) We therefore make our best guess,
295 * bearing in mind that a guest can spoof most of the si_codes
296 * via rt_sigqueueinfo() if it likes.
297 *
298 * Once we have made our guess, we record it in the top 16 bits of
299 * the si_code, so that tswap_siginfo() later can use it.
300 * tswap_siginfo() will strip these top bits out before writing
301 * si_code to the guest (sign-extending the lower bits).
302 */
303
304 switch (si_code) {
305 case SI_USER:
306 case SI_TKILL:
307 case SI_KERNEL:
308 /* Sent via kill(), tkill() or tgkill(), or direct from the kernel.
309 * These are the only unspoofable si_code values.
310 */
311 tinfo->_sifields._kill._pid = info->si_pid;
312 tinfo->_sifields._kill._uid = info->si_uid;
313 si_type = QEMU_SI_KILL;
314 break;
315 default:
316 /* Everything else is spoofable. Make best guess based on signal */
317 switch (sig) {
318 case TARGET_SIGCHLD:
319 tinfo->_sifields._sigchld._pid = info->si_pid;
320 tinfo->_sifields._sigchld._uid = info->si_uid;
321 tinfo->_sifields._sigchld._status
da7c8647 322 = host_to_target_waitstatus(info->si_status);
a70dadc7
PM
323 tinfo->_sifields._sigchld._utime = info->si_utime;
324 tinfo->_sifields._sigchld._stime = info->si_stime;
325 si_type = QEMU_SI_CHLD;
326 break;
327 case TARGET_SIGIO:
328 tinfo->_sifields._sigpoll._band = info->si_band;
329 tinfo->_sifields._sigpoll._fd = info->si_fd;
330 si_type = QEMU_SI_POLL;
331 break;
332 default:
333 /* Assume a sigqueue()/mq_notify()/rt_sigqueueinfo() source. */
334 tinfo->_sifields._rt._pid = info->si_pid;
335 tinfo->_sifields._rt._uid = info->si_uid;
336 /* XXX: potential problem if 64 bit */
337 tinfo->_sifields._rt._sigval.sival_ptr
da7c8647 338 = (abi_ulong)(unsigned long)info->si_value.sival_ptr;
a70dadc7
PM
339 si_type = QEMU_SI_RT;
340 break;
341 }
342 break;
9de5e440 343 }
a70dadc7
PM
344
345 tinfo->si_code = deposit32(si_code, 16, 16, si_type);
9de5e440
FB
346}
347
c227f099
AL
348static void tswap_siginfo(target_siginfo_t *tinfo,
349 const target_siginfo_t *info)
9de5e440 350{
a70dadc7
PM
351 int si_type = extract32(info->si_code, 16, 16);
352 int si_code = sextract32(info->si_code, 0, 16);
353
354 __put_user(info->si_signo, &tinfo->si_signo);
355 __put_user(info->si_errno, &tinfo->si_errno);
356 __put_user(si_code, &tinfo->si_code);
357
358 /* We can use our internal marker of which fields in the structure
359 * are valid, rather than duplicating the guesswork of
360 * host_to_target_siginfo_noswap() here.
361 */
362 switch (si_type) {
363 case QEMU_SI_KILL:
364 __put_user(info->_sifields._kill._pid, &tinfo->_sifields._kill._pid);
365 __put_user(info->_sifields._kill._uid, &tinfo->_sifields._kill._uid);
366 break;
367 case QEMU_SI_TIMER:
368 __put_user(info->_sifields._timer._timer1,
369 &tinfo->_sifields._timer._timer1);
370 __put_user(info->_sifields._timer._timer2,
371 &tinfo->_sifields._timer._timer2);
372 break;
373 case QEMU_SI_POLL:
374 __put_user(info->_sifields._sigpoll._band,
375 &tinfo->_sifields._sigpoll._band);
376 __put_user(info->_sifields._sigpoll._fd,
377 &tinfo->_sifields._sigpoll._fd);
378 break;
379 case QEMU_SI_FAULT:
380 __put_user(info->_sifields._sigfault._addr,
381 &tinfo->_sifields._sigfault._addr);
382 break;
383 case QEMU_SI_CHLD:
384 __put_user(info->_sifields._sigchld._pid,
385 &tinfo->_sifields._sigchld._pid);
386 __put_user(info->_sifields._sigchld._uid,
387 &tinfo->_sifields._sigchld._uid);
388 __put_user(info->_sifields._sigchld._status,
389 &tinfo->_sifields._sigchld._status);
390 __put_user(info->_sifields._sigchld._utime,
391 &tinfo->_sifields._sigchld._utime);
392 __put_user(info->_sifields._sigchld._stime,
393 &tinfo->_sifields._sigchld._stime);
394 break;
395 case QEMU_SI_RT:
396 __put_user(info->_sifields._rt._pid, &tinfo->_sifields._rt._pid);
397 __put_user(info->_sifields._rt._uid, &tinfo->_sifields._rt._uid);
398 __put_user(info->_sifields._rt._sigval.sival_ptr,
399 &tinfo->_sifields._rt._sigval.sival_ptr);
400 break;
401 default:
402 g_assert_not_reached();
9de5e440
FB
403 }
404}
405
c227f099 406void host_to_target_siginfo(target_siginfo_t *tinfo, const siginfo_t *info)
9de5e440 407{
55d72a7e
PM
408 target_siginfo_t tgt_tmp;
409 host_to_target_siginfo_noswap(&tgt_tmp, info);
410 tswap_siginfo(tinfo, &tgt_tmp);
66fb9763
FB
411}
412
9de5e440 413/* XXX: we support only POSIX RT signals are used. */
aa1f17c1 414/* XXX: find a solution for 64 bit (additional malloced data is needed) */
c227f099 415void target_to_host_siginfo(siginfo_t *info, const target_siginfo_t *tinfo)
66fb9763 416{
90c0f080
PM
417 /* This conversion is used only for the rt_sigqueueinfo syscall,
418 * and so we know that the _rt fields are the valid ones.
419 */
420 abi_ulong sival_ptr;
421
422 __get_user(info->si_signo, &tinfo->si_signo);
423 __get_user(info->si_errno, &tinfo->si_errno);
424 __get_user(info->si_code, &tinfo->si_code);
425 __get_user(info->si_pid, &tinfo->_sifields._rt._pid);
426 __get_user(info->si_uid, &tinfo->_sifields._rt._uid);
427 __get_user(sival_ptr, &tinfo->_sifields._rt._sigval.sival_ptr);
428 info->si_value.sival_ptr = (void *)(long)sival_ptr;
66fb9763
FB
429}
430
ca587a8e
AJ
431static int fatal_signal (int sig)
432{
433 switch (sig) {
434 case TARGET_SIGCHLD:
435 case TARGET_SIGURG:
436 case TARGET_SIGWINCH:
437 /* Ignored by default. */
438 return 0;
439 case TARGET_SIGCONT:
440 case TARGET_SIGSTOP:
441 case TARGET_SIGTSTP:
442 case TARGET_SIGTTIN:
443 case TARGET_SIGTTOU:
444 /* Job control signals. */
445 return 0;
446 default:
447 return 1;
448 }
449}
450
edf8e2af
MW
451/* returns 1 if given signal should dump core if not handled */
452static int core_dump_signal(int sig)
453{
454 switch (sig) {
455 case TARGET_SIGABRT:
456 case TARGET_SIGFPE:
457 case TARGET_SIGILL:
458 case TARGET_SIGQUIT:
459 case TARGET_SIGSEGV:
460 case TARGET_SIGTRAP:
461 case TARGET_SIGBUS:
462 return (1);
463 default:
464 return (0);
465 }
466}
467
31e31b8a
FB
468void signal_init(void)
469{
3d3efba0 470 TaskState *ts = (TaskState *)thread_cpu->opaque;
31e31b8a 471 struct sigaction act;
624f7979 472 struct sigaction oact;
9e5f5284 473 int i, j;
624f7979 474 int host_sig;
31e31b8a 475
9e5f5284 476 /* generate signal conversion tables */
3ca05588 477 for(i = 1; i < _NSIG; i++) {
9e5f5284
FB
478 if (host_to_target_signal_table[i] == 0)
479 host_to_target_signal_table[i] = i;
480 }
3ca05588 481 for(i = 1; i < _NSIG; i++) {
9e5f5284
FB
482 j = host_to_target_signal_table[i];
483 target_to_host_signal_table[j] = i;
484 }
3b46e624 485
3d3efba0
PM
486 /* Set the signal mask from the host mask. */
487 sigprocmask(0, 0, &ts->signal_mask);
488
9de5e440
FB
489 /* set all host signal handlers. ALL signals are blocked during
490 the handlers to serialize them. */
624f7979
PB
491 memset(sigact_table, 0, sizeof(sigact_table));
492
9de5e440 493 sigfillset(&act.sa_mask);
31e31b8a
FB
494 act.sa_flags = SA_SIGINFO;
495 act.sa_sigaction = host_signal_handler;
624f7979
PB
496 for(i = 1; i <= TARGET_NSIG; i++) {
497 host_sig = target_to_host_signal(i);
498 sigaction(host_sig, NULL, &oact);
499 if (oact.sa_sigaction == (void *)SIG_IGN) {
500 sigact_table[i - 1]._sa_handler = TARGET_SIG_IGN;
501 } else if (oact.sa_sigaction == (void *)SIG_DFL) {
502 sigact_table[i - 1]._sa_handler = TARGET_SIG_DFL;
503 }
504 /* If there's already a handler installed then something has
505 gone horribly wrong, so don't even try to handle that case. */
ca587a8e
AJ
506 /* Install some handlers for our own use. We need at least
507 SIGSEGV and SIGBUS, to detect exceptions. We can not just
508 trap all signals because it affects syscall interrupt
509 behavior. But do trap all default-fatal signals. */
510 if (fatal_signal (i))
624f7979 511 sigaction(host_sig, &act, NULL);
31e31b8a 512 }
66fb9763
FB
513}
514
1c1df019 515#ifndef TARGET_UNICORE32
c599d4d6
PM
516/* Force a synchronously taken signal. The kernel force_sig() function
517 * also forces the signal to "not blocked, not ignored", but for QEMU
518 * that work is done in process_pending_signals().
519 */
520static void force_sig(int sig)
521{
522 CPUState *cpu = thread_cpu;
523 CPUArchState *env = cpu->env_ptr;
524 target_siginfo_t info;
525
526 info.si_signo = sig;
527 info.si_errno = 0;
528 info.si_code = TARGET_SI_KERNEL;
529 info._sifields._kill._pid = 0;
530 info._sifields._kill._uid = 0;
531 queue_signal(env, info.si_signo, QEMU_SI_KILL, &info);
532}
09391669
PM
533
534/* Force a SIGSEGV if we couldn't write to memory trying to set
535 * up the signal frame. oldsig is the signal we were trying to handle
536 * at the point of failure.
537 */
538static void force_sigsegv(int oldsig)
539{
09391669
PM
540 if (oldsig == SIGSEGV) {
541 /* Make sure we don't try to deliver the signal again; this will
c599d4d6 542 * end up with handle_pending_signal() calling dump_core_and_abort().
09391669
PM
543 */
544 sigact_table[oldsig - 1]._sa_handler = TARGET_SIG_DFL;
545 }
c4b35744 546 force_sig(TARGET_SIGSEGV);
09391669
PM
547}
548#endif
66fb9763 549
9de5e440 550/* abort execution with signal */
c599d4d6 551static void QEMU_NORETURN dump_core_and_abort(int target_sig)
66fb9763 552{
0429a971
AF
553 CPUState *cpu = thread_cpu;
554 CPUArchState *env = cpu->env_ptr;
555 TaskState *ts = (TaskState *)cpu->opaque;
edf8e2af 556 int host_sig, core_dumped = 0;
603e4fd7 557 struct sigaction act;
c8ee0a44 558
66393fb9 559 host_sig = target_to_host_signal(target_sig);
c8ee0a44 560 trace_user_force_sig(env, target_sig, host_sig);
a2247f8e 561 gdb_signalled(env, target_sig);
603e4fd7 562
edf8e2af 563 /* dump core if supported by target binary format */
66393fb9 564 if (core_dump_signal(target_sig) && (ts->bprm->core_dump != NULL)) {
edf8e2af
MW
565 stop_all_tasks();
566 core_dumped =
a2247f8e 567 ((*ts->bprm->core_dump)(target_sig, env) == 0);
edf8e2af
MW
568 }
569 if (core_dumped) {
570 /* we already dumped the core of target process, we don't want
571 * a coredump of qemu itself */
572 struct rlimit nodump;
573 getrlimit(RLIMIT_CORE, &nodump);
574 nodump.rlim_cur=0;
575 setrlimit(RLIMIT_CORE, &nodump);
576 (void) fprintf(stderr, "qemu: uncaught target signal %d (%s) - %s\n",
66393fb9 577 target_sig, strsignal(host_sig), "core dumped" );
edf8e2af
MW
578 }
579
0c58751c 580 /* The proper exit code for dying from an uncaught signal is
603e4fd7
AJ
581 * -<signal>. The kernel doesn't allow exit() or _exit() to pass
582 * a negative value. To get the proper exit code we need to
583 * actually die from an uncaught signal. Here the default signal
584 * handler is installed, we send ourself a signal and we wait for
585 * it to arrive. */
586 sigfillset(&act.sa_mask);
587 act.sa_handler = SIG_DFL;
3a5d30bf 588 act.sa_flags = 0;
603e4fd7
AJ
589 sigaction(host_sig, &act, NULL);
590
591 /* For some reason raise(host_sig) doesn't send the signal when
592 * statically linked on x86-64. */
593 kill(getpid(), host_sig);
594
595 /* Make sure the signal isn't masked (just reuse the mask inside
596 of act) */
597 sigdelset(&act.sa_mask, host_sig);
598 sigsuspend(&act.sa_mask);
599
600 /* unreachable */
a6c6f76c 601 abort();
66fb9763
FB
602}
603
9de5e440
FB
604/* queue a signal so that it will be send to the virtual CPU as soon
605 as possible */
9d2803f7
PM
606int queue_signal(CPUArchState *env, int sig, int si_type,
607 target_siginfo_t *info)
31e31b8a 608{
0429a971
AF
609 CPUState *cpu = ENV_GET_CPU(env);
610 TaskState *ts = cpu->opaque;
66fb9763 611
c8ee0a44 612 trace_user_queue_signal(env, sig);
907f5fdd 613
9d2803f7 614 info->si_code = deposit32(info->si_code, 16, 16, si_type);
a70dadc7 615
655ed67c
TB
616 ts->sync_signal.info = *info;
617 ts->sync_signal.pending = sig;
907f5fdd
TB
618 /* signal that a new signal is pending */
619 atomic_set(&ts->signal_pending, 1);
620 return 1; /* indicates that the signal was queued */
9de5e440
FB
621}
622
4d330cee
TB
623#ifndef HAVE_SAFE_SYSCALL
624static inline void rewind_if_in_safe_syscall(void *puc)
625{
626 /* Default version: never rewind */
627}
628#endif
629
5fafdf24 630static void host_signal_handler(int host_signum, siginfo_t *info,
9de5e440
FB
631 void *puc)
632{
a2247f8e 633 CPUArchState *env = thread_cpu->env_ptr;
655ed67c
TB
634 CPUState *cpu = ENV_GET_CPU(env);
635 TaskState *ts = cpu->opaque;
636
9de5e440 637 int sig;
c227f099 638 target_siginfo_t tinfo;
3d3efba0 639 ucontext_t *uc = puc;
655ed67c 640 struct emulated_sigtable *k;
9de5e440
FB
641
642 /* the CPU emulator uses some host signals to detect exceptions,
eaa449b9 643 we forward to it some signals */
ca587a8e 644 if ((host_signum == SIGSEGV || host_signum == SIGBUS)
eaa449b9 645 && info->si_code > 0) {
b346ff46 646 if (cpu_signal_handler(host_signum, info, puc))
9de5e440
FB
647 return;
648 }
649
650 /* get target signal number */
651 sig = host_to_target_signal(host_signum);
652 if (sig < 1 || sig > TARGET_NSIG)
653 return;
c8ee0a44 654 trace_user_host_signal(env, host_signum, sig);
4d330cee
TB
655
656 rewind_if_in_safe_syscall(puc);
657
9de5e440 658 host_to_target_siginfo_noswap(&tinfo, info);
655ed67c
TB
659 k = &ts->sigtab[sig - 1];
660 k->info = tinfo;
661 k->pending = sig;
662 ts->signal_pending = 1;
663
664 /* Block host signals until target signal handler entered. We
665 * can't block SIGSEGV or SIGBUS while we're executing guest
666 * code in case the guest code provokes one in the window between
667 * now and it getting out to the main loop. Signals will be
668 * unblocked again in process_pending_signals().
1d48fdd9
PM
669 *
670 * WARNING: we cannot use sigfillset() here because the uc_sigmask
671 * field is a kernel sigset_t, which is much smaller than the
672 * libc sigset_t which sigfillset() operates on. Using sigfillset()
673 * would write 0xff bytes off the end of the structure and trash
674 * data on the struct.
675 * We can't use sizeof(uc->uc_sigmask) either, because the libc
676 * headers define the struct field with the wrong (too large) type.
655ed67c 677 */
1d48fdd9 678 memset(&uc->uc_sigmask, 0xff, SIGSET_T_SIZE);
655ed67c
TB
679 sigdelset(&uc->uc_sigmask, SIGSEGV);
680 sigdelset(&uc->uc_sigmask, SIGBUS);
3d3efba0 681
655ed67c
TB
682 /* interrupt the virtual CPU as soon as possible */
683 cpu_exit(thread_cpu);
66fb9763
FB
684}
685
0da46a6e 686/* do_sigaltstack() returns target values and errnos. */
579a97f7
FB
687/* compare linux/kernel/signal.c:do_sigaltstack() */
688abi_long do_sigaltstack(abi_ulong uss_addr, abi_ulong uoss_addr, abi_ulong sp)
a04e134a
TS
689{
690 int ret;
691 struct target_sigaltstack oss;
692
693 /* XXX: test errors */
579a97f7 694 if(uoss_addr)
a04e134a
TS
695 {
696 __put_user(target_sigaltstack_used.ss_sp, &oss.ss_sp);
697 __put_user(target_sigaltstack_used.ss_size, &oss.ss_size);
698 __put_user(sas_ss_flags(sp), &oss.ss_flags);
699 }
700
579a97f7 701 if(uss_addr)
a04e134a 702 {
579a97f7
FB
703 struct target_sigaltstack *uss;
704 struct target_sigaltstack ss;
0903c8be
TM
705 size_t minstacksize = TARGET_MINSIGSTKSZ;
706
707#if defined(TARGET_PPC64)
708 /* ELF V2 for PPC64 has a 4K minimum stack size for signal handlers */
709 struct image_info *image = ((TaskState *)thread_cpu->opaque)->info;
710 if (get_ppc64_abi(image) > 1) {
711 minstacksize = 4096;
712 }
713#endif
a04e134a 714
0da46a6e 715 ret = -TARGET_EFAULT;
9eeb8306 716 if (!lock_user_struct(VERIFY_READ, uss, uss_addr, 1)) {
a04e134a 717 goto out;
9eeb8306
RV
718 }
719 __get_user(ss.ss_sp, &uss->ss_sp);
720 __get_user(ss.ss_size, &uss->ss_size);
721 __get_user(ss.ss_flags, &uss->ss_flags);
579a97f7 722 unlock_user_struct(uss, uss_addr, 0);
a04e134a 723
0da46a6e 724 ret = -TARGET_EPERM;
a04e134a
TS
725 if (on_sig_stack(sp))
726 goto out;
727
0da46a6e 728 ret = -TARGET_EINVAL;
a04e134a
TS
729 if (ss.ss_flags != TARGET_SS_DISABLE
730 && ss.ss_flags != TARGET_SS_ONSTACK
731 && ss.ss_flags != 0)
732 goto out;
733
734 if (ss.ss_flags == TARGET_SS_DISABLE) {
735 ss.ss_size = 0;
736 ss.ss_sp = 0;
737 } else {
0da46a6e 738 ret = -TARGET_ENOMEM;
0903c8be 739 if (ss.ss_size < minstacksize) {
a04e134a 740 goto out;
0903c8be 741 }
a04e134a
TS
742 }
743
744 target_sigaltstack_used.ss_sp = ss.ss_sp;
745 target_sigaltstack_used.ss_size = ss.ss_size;
746 }
747
579a97f7 748 if (uoss_addr) {
0da46a6e 749 ret = -TARGET_EFAULT;
579a97f7 750 if (copy_to_user(uoss_addr, &oss, sizeof(oss)))
a04e134a 751 goto out;
a04e134a
TS
752 }
753
754 ret = 0;
755out:
756 return ret;
757}
758
ef6a778e 759/* do_sigaction() return target values and host errnos */
66fb9763
FB
760int do_sigaction(int sig, const struct target_sigaction *act,
761 struct target_sigaction *oact)
762{
624f7979 763 struct target_sigaction *k;
773b93ee
FB
764 struct sigaction act1;
765 int host_sig;
0da46a6e 766 int ret = 0;
66fb9763 767
ef6a778e
TB
768 if (sig < 1 || sig > TARGET_NSIG || sig == TARGET_SIGKILL || sig == TARGET_SIGSTOP) {
769 return -TARGET_EINVAL;
770 }
771
772 if (block_signals()) {
773 return -TARGET_ERESTARTSYS;
774 }
775
66fb9763 776 k = &sigact_table[sig - 1];
66fb9763 777 if (oact) {
d2565875
RH
778 __put_user(k->_sa_handler, &oact->_sa_handler);
779 __put_user(k->sa_flags, &oact->sa_flags);
388bb21a 780#if !defined(TARGET_MIPS)
d2565875 781 __put_user(k->sa_restorer, &oact->sa_restorer);
388bb21a 782#endif
d2565875 783 /* Not swapped. */
624f7979 784 oact->sa_mask = k->sa_mask;
66fb9763
FB
785 }
786 if (act) {
624f7979 787 /* FIXME: This is not threadsafe. */
d2565875
RH
788 __get_user(k->_sa_handler, &act->_sa_handler);
789 __get_user(k->sa_flags, &act->sa_flags);
388bb21a 790#if !defined(TARGET_MIPS)
d2565875 791 __get_user(k->sa_restorer, &act->sa_restorer);
388bb21a 792#endif
d2565875 793 /* To be swapped in target_to_host_sigset. */
624f7979 794 k->sa_mask = act->sa_mask;
773b93ee
FB
795
796 /* we update the host linux signal state */
797 host_sig = target_to_host_signal(sig);
798 if (host_sig != SIGSEGV && host_sig != SIGBUS) {
799 sigfillset(&act1.sa_mask);
800 act1.sa_flags = SA_SIGINFO;
624f7979 801 if (k->sa_flags & TARGET_SA_RESTART)
773b93ee
FB
802 act1.sa_flags |= SA_RESTART;
803 /* NOTE: it is important to update the host kernel signal
804 ignore state to avoid getting unexpected interrupted
805 syscalls */
624f7979 806 if (k->_sa_handler == TARGET_SIG_IGN) {
773b93ee 807 act1.sa_sigaction = (void *)SIG_IGN;
624f7979 808 } else if (k->_sa_handler == TARGET_SIG_DFL) {
ca587a8e
AJ
809 if (fatal_signal (sig))
810 act1.sa_sigaction = host_signal_handler;
811 else
812 act1.sa_sigaction = (void *)SIG_DFL;
773b93ee
FB
813 } else {
814 act1.sa_sigaction = host_signal_handler;
815 }
0da46a6e 816 ret = sigaction(host_sig, &act1, NULL);
773b93ee 817 }
66fb9763 818 }
0da46a6e 819 return ret;
66fb9763
FB
820}
821
1c1df019
PK
822#if defined(TARGET_I386)
823/* from the Linux kernel - /arch/x86/include/uapi/asm/sigcontext.h */
66fb9763
FB
824
825struct target_fpreg {
da7c8647
TB
826 uint16_t significand[4];
827 uint16_t exponent;
66fb9763
FB
828};
829
830struct target_fpxreg {
da7c8647
TB
831 uint16_t significand[4];
832 uint16_t exponent;
833 uint16_t padding[3];
66fb9763
FB
834};
835
836struct target_xmmreg {
1c1df019 837 uint32_t element[4];
66fb9763
FB
838};
839
1c1df019 840struct target_fpstate_32 {
da7c8647 841 /* Regular FPU environment */
1c1df019
PK
842 uint32_t cw;
843 uint32_t sw;
844 uint32_t tag;
845 uint32_t ipoff;
846 uint32_t cssel;
847 uint32_t dataoff;
848 uint32_t datasel;
849 struct target_fpreg st[8];
da7c8647
TB
850 uint16_t status;
851 uint16_t magic; /* 0xffff = regular FPU data only */
852
853 /* FXSR FPU environment */
1c1df019
PK
854 uint32_t _fxsr_env[6]; /* FXSR FPU env is ignored */
855 uint32_t mxcsr;
856 uint32_t reserved;
857 struct target_fpxreg fxsr_st[8]; /* FXSR FPU reg data is ignored */
858 struct target_xmmreg xmm[8];
859 uint32_t padding[56];
66fb9763
FB
860};
861
1c1df019
PK
862struct target_fpstate_64 {
863 /* FXSAVE format */
864 uint16_t cw;
865 uint16_t sw;
866 uint16_t twd;
867 uint16_t fop;
868 uint64_t rip;
869 uint64_t rdp;
870 uint32_t mxcsr;
871 uint32_t mxcsr_mask;
872 uint32_t st_space[32];
873 uint32_t xmm_space[64];
874 uint32_t reserved[24];
875};
66fb9763 876
1c1df019
PK
877#ifndef TARGET_X86_64
878# define target_fpstate target_fpstate_32
879#else
880# define target_fpstate target_fpstate_64
881#endif
882
883struct target_sigcontext_32 {
da7c8647
TB
884 uint16_t gs, __gsh;
885 uint16_t fs, __fsh;
886 uint16_t es, __esh;
887 uint16_t ds, __dsh;
1c1df019
PK
888 uint32_t edi;
889 uint32_t esi;
890 uint32_t ebp;
891 uint32_t esp;
892 uint32_t ebx;
893 uint32_t edx;
894 uint32_t ecx;
895 uint32_t eax;
896 uint32_t trapno;
897 uint32_t err;
898 uint32_t eip;
da7c8647 899 uint16_t cs, __csh;
1c1df019
PK
900 uint32_t eflags;
901 uint32_t esp_at_signal;
da7c8647 902 uint16_t ss, __ssh;
1c1df019
PK
903 uint32_t fpstate; /* pointer */
904 uint32_t oldmask;
905 uint32_t cr2;
66fb9763
FB
906};
907
1c1df019
PK
908struct target_sigcontext_64 {
909 uint64_t r8;
910 uint64_t r9;
911 uint64_t r10;
912 uint64_t r11;
913 uint64_t r12;
914 uint64_t r13;
915 uint64_t r14;
916 uint64_t r15;
917
918 uint64_t rdi;
919 uint64_t rsi;
920 uint64_t rbp;
921 uint64_t rbx;
922 uint64_t rdx;
923 uint64_t rax;
924 uint64_t rcx;
925 uint64_t rsp;
926 uint64_t rip;
927
928 uint64_t eflags;
929
930 uint16_t cs;
931 uint16_t gs;
932 uint16_t fs;
933 uint16_t ss;
934
935 uint64_t err;
936 uint64_t trapno;
937 uint64_t oldmask;
938 uint64_t cr2;
939
940 uint64_t fpstate; /* pointer */
941 uint64_t padding[8];
942};
943
944#ifndef TARGET_X86_64
945# define target_sigcontext target_sigcontext_32
946#else
947# define target_sigcontext target_sigcontext_64
948#endif
949
950/* see Linux/include/uapi/asm-generic/ucontext.h */
66fb9763 951struct target_ucontext {
da7c8647
TB
952 abi_ulong tuc_flags;
953 abi_ulong tuc_link;
954 target_stack_t tuc_stack;
955 struct target_sigcontext tuc_mcontext;
956 target_sigset_t tuc_sigmask; /* mask last for extensibility */
66fb9763
FB
957};
958
1c1df019
PK
959#ifndef TARGET_X86_64
960struct sigframe {
992f48a0 961 abi_ulong pretcode;
66fb9763
FB
962 int sig;
963 struct target_sigcontext sc;
964 struct target_fpstate fpstate;
992f48a0 965 abi_ulong extramask[TARGET_NSIG_WORDS-1];
66fb9763
FB
966 char retcode[8];
967};
968
1c1df019 969struct rt_sigframe {
992f48a0 970 abi_ulong pretcode;
66fb9763 971 int sig;
992f48a0
BS
972 abi_ulong pinfo;
973 abi_ulong puc;
66fb9763
FB
974 struct target_siginfo info;
975 struct target_ucontext uc;
976 struct target_fpstate fpstate;
977 char retcode[8];
978};
979
1c1df019
PK
980#else
981
982struct rt_sigframe {
983 abi_ulong pretcode;
984 struct target_ucontext uc;
985 struct target_siginfo info;
986 struct target_fpstate fpstate;
987};
988
989#endif
990
66fb9763
FB
991/*
992 * Set up a signal frame.
993 */
994
66fb9763 995/* XXX: save x87 state */
41ecc72b
RV
996static void setup_sigcontext(struct target_sigcontext *sc,
997 struct target_fpstate *fpstate, CPUX86State *env, abi_ulong mask,
998 abi_ulong fpstate_addr)
66fb9763 999{
27103424 1000 CPUState *cs = CPU(x86_env_get_cpu(env));
1c1df019 1001#ifndef TARGET_X86_64
27103424 1002 uint16_t magic;
66fb9763 1003
da7c8647 1004 /* already locked in setup_frame() */
1d8b512b
RV
1005 __put_user(env->segs[R_GS].selector, (unsigned int *)&sc->gs);
1006 __put_user(env->segs[R_FS].selector, (unsigned int *)&sc->fs);
1007 __put_user(env->segs[R_ES].selector, (unsigned int *)&sc->es);
1008 __put_user(env->segs[R_DS].selector, (unsigned int *)&sc->ds);
1009 __put_user(env->regs[R_EDI], &sc->edi);
1010 __put_user(env->regs[R_ESI], &sc->esi);
1011 __put_user(env->regs[R_EBP], &sc->ebp);
1012 __put_user(env->regs[R_ESP], &sc->esp);
1013 __put_user(env->regs[R_EBX], &sc->ebx);
1014 __put_user(env->regs[R_EDX], &sc->edx);
1015 __put_user(env->regs[R_ECX], &sc->ecx);
1016 __put_user(env->regs[R_EAX], &sc->eax);
1017 __put_user(cs->exception_index, &sc->trapno);
1018 __put_user(env->error_code, &sc->err);
1019 __put_user(env->eip, &sc->eip);
1020 __put_user(env->segs[R_CS].selector, (unsigned int *)&sc->cs);
1021 __put_user(env->eflags, &sc->eflags);
1022 __put_user(env->regs[R_ESP], &sc->esp_at_signal);
1023 __put_user(env->segs[R_SS].selector, (unsigned int *)&sc->ss);
ed2dcdf6 1024
da7c8647
TB
1025 cpu_x86_fsave(env, fpstate_addr, 1);
1026 fpstate->status = fpstate->sw;
1027 magic = 0xffff;
1d8b512b
RV
1028 __put_user(magic, &fpstate->magic);
1029 __put_user(fpstate_addr, &sc->fpstate);
ed2dcdf6 1030
da7c8647 1031 /* non-iBCS2 extensions.. */
1d8b512b
RV
1032 __put_user(mask, &sc->oldmask);
1033 __put_user(env->cr[2], &sc->cr2);
1c1df019
PK
1034#else
1035 __put_user(env->regs[R_EDI], &sc->rdi);
1036 __put_user(env->regs[R_ESI], &sc->rsi);
1037 __put_user(env->regs[R_EBP], &sc->rbp);
1038 __put_user(env->regs[R_ESP], &sc->rsp);
1039 __put_user(env->regs[R_EBX], &sc->rbx);
1040 __put_user(env->regs[R_EDX], &sc->rdx);
1041 __put_user(env->regs[R_ECX], &sc->rcx);
1042 __put_user(env->regs[R_EAX], &sc->rax);
1043
1044 __put_user(env->regs[8], &sc->r8);
1045 __put_user(env->regs[9], &sc->r9);
1046 __put_user(env->regs[10], &sc->r10);
1047 __put_user(env->regs[11], &sc->r11);
1048 __put_user(env->regs[12], &sc->r12);
1049 __put_user(env->regs[13], &sc->r13);
1050 __put_user(env->regs[14], &sc->r14);
1051 __put_user(env->regs[15], &sc->r15);
1052
1053 __put_user(cs->exception_index, &sc->trapno);
1054 __put_user(env->error_code, &sc->err);
1055 __put_user(env->eip, &sc->rip);
1056
1057 __put_user(env->eflags, &sc->eflags);
1058 __put_user(env->segs[R_CS].selector, &sc->cs);
1059 __put_user((uint16_t)0, &sc->gs);
1060 __put_user((uint16_t)0, &sc->fs);
1061 __put_user(env->segs[R_SS].selector, &sc->ss);
1062
1063 __put_user(mask, &sc->oldmask);
1064 __put_user(env->cr[2], &sc->cr2);
1065
1066 /* fpstate_addr must be 16 byte aligned for fxsave */
1067 assert(!(fpstate_addr & 0xf));
1068
1069 cpu_x86_fxsave(env, fpstate_addr);
1070 __put_user(fpstate_addr, &sc->fpstate);
1071#endif
31e31b8a
FB
1072}
1073
66fb9763
FB
1074/*
1075 * Determine which stack to use..
1076 */
31e31b8a 1077
579a97f7 1078static inline abi_ulong
624f7979 1079get_sigframe(struct target_sigaction *ka, CPUX86State *env, size_t frame_size)
31e31b8a 1080{
da7c8647 1081 unsigned long esp;
66fb9763 1082
da7c8647
TB
1083 /* Default to using normal stack */
1084 esp = env->regs[R_ESP];
1c1df019
PK
1085#ifdef TARGET_X86_64
1086 esp -= 128; /* this is the redzone */
1087#endif
1088
da7c8647
TB
1089 /* This is the X/Open sanctioned signal stack switching. */
1090 if (ka->sa_flags & TARGET_SA_ONSTACK) {
1091 if (sas_ss_flags(esp) == 0) {
1092 esp = target_sigaltstack_used.ss_sp + target_sigaltstack_used.ss_size;
a04e134a 1093 }
da7c8647 1094 } else {
1c1df019 1095#ifndef TARGET_X86_64
da7c8647 1096 /* This is the legacy signal stack switching. */
a52c757c 1097 if ((env->segs[R_SS].selector & 0xffff) != __USER_DS &&
da7c8647
TB
1098 !(ka->sa_flags & TARGET_SA_RESTORER) &&
1099 ka->sa_restorer) {
624f7979 1100 esp = (unsigned long) ka->sa_restorer;
da7c8647 1101 }
1c1df019 1102#endif
da7c8647 1103 }
1c1df019
PK
1104
1105#ifndef TARGET_X86_64
da7c8647 1106 return (esp - frame_size) & -8ul;
1c1df019
PK
1107#else
1108 return ((esp - frame_size) & (~15ul)) - 8;
1109#endif
66fb9763
FB
1110}
1111
1c1df019 1112#ifndef TARGET_X86_64
579a97f7 1113/* compare linux/arch/i386/kernel/signal.c:setup_frame() */
624f7979 1114static void setup_frame(int sig, struct target_sigaction *ka,
da7c8647 1115 target_sigset_t *set, CPUX86State *env)
66fb9763 1116{
da7c8647
TB
1117 abi_ulong frame_addr;
1118 struct sigframe *frame;
1119 int i;
66fb9763 1120
da7c8647
TB
1121 frame_addr = get_sigframe(ka, env, sizeof(*frame));
1122 trace_user_setup_frame(env, frame_addr);
66fb9763 1123
da7c8647
TB
1124 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0))
1125 goto give_sigsegv;
579a97f7 1126
b6e2c935 1127 __put_user(sig, &frame->sig);
66fb9763 1128
da7c8647
TB
1129 setup_sigcontext(&frame->sc, &frame->fpstate, env, set->sig[0],
1130 frame_addr + offsetof(struct sigframe, fpstate));
66fb9763 1131
7df2fa36
RV
1132 for(i = 1; i < TARGET_NSIG_WORDS; i++) {
1133 __put_user(set->sig[i], &frame->extramask[i - 1]);
1134 }
66fb9763 1135
da7c8647
TB
1136 /* Set up to return from userspace. If provided, use a stub
1137 already in userspace. */
1138 if (ka->sa_flags & TARGET_SA_RESTORER) {
1d8b512b 1139 __put_user(ka->sa_restorer, &frame->pretcode);
da7c8647
TB
1140 } else {
1141 uint16_t val16;
1142 abi_ulong retcode_addr;
1143 retcode_addr = frame_addr + offsetof(struct sigframe, retcode);
1d8b512b 1144 __put_user(retcode_addr, &frame->pretcode);
da7c8647
TB
1145 /* This is popl %eax ; movl $,%eax ; int $0x80 */
1146 val16 = 0xb858;
1d8b512b
RV
1147 __put_user(val16, (uint16_t *)(frame->retcode+0));
1148 __put_user(TARGET_NR_sigreturn, (int *)(frame->retcode+2));
da7c8647 1149 val16 = 0x80cd;
1d8b512b 1150 __put_user(val16, (uint16_t *)(frame->retcode+6));
da7c8647 1151 }
66fb9763 1152
da7c8647
TB
1153 /* Set up registers for signal handler */
1154 env->regs[R_ESP] = frame_addr;
1155 env->eip = ka->_sa_handler;
66fb9763 1156
da7c8647
TB
1157 cpu_x86_load_seg(env, R_DS, __USER_DS);
1158 cpu_x86_load_seg(env, R_ES, __USER_DS);
1159 cpu_x86_load_seg(env, R_SS, __USER_DS);
1160 cpu_x86_load_seg(env, R_CS, __USER_CS);
1161 env->eflags &= ~TF_MASK;
66fb9763 1162
da7c8647 1163 unlock_user_struct(frame, frame_addr, 1);
579a97f7 1164
da7c8647 1165 return;
66fb9763
FB
1166
1167give_sigsegv:
09391669 1168 force_sigsegv(sig);
66fb9763 1169}
1c1df019 1170#endif
66fb9763 1171
1c1df019 1172/* compare linux/arch/x86/kernel/signal.c:setup_rt_frame() */
624f7979 1173static void setup_rt_frame(int sig, struct target_sigaction *ka,
c227f099 1174 target_siginfo_t *info,
da7c8647 1175 target_sigset_t *set, CPUX86State *env)
66fb9763 1176{
1c1df019
PK
1177 abi_ulong frame_addr;
1178#ifndef TARGET_X86_64
1179 abi_ulong addr;
1180#endif
da7c8647
TB
1181 struct rt_sigframe *frame;
1182 int i;
66fb9763 1183
da7c8647
TB
1184 frame_addr = get_sigframe(ka, env, sizeof(*frame));
1185 trace_user_setup_rt_frame(env, frame_addr);
66fb9763 1186
da7c8647
TB
1187 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0))
1188 goto give_sigsegv;
66fb9763 1189
1c1df019
PK
1190 /* These fields are only in rt_sigframe on 32 bit */
1191#ifndef TARGET_X86_64
b6e2c935 1192 __put_user(sig, &frame->sig);
da7c8647 1193 addr = frame_addr + offsetof(struct rt_sigframe, info);
1d8b512b 1194 __put_user(addr, &frame->pinfo);
da7c8647 1195 addr = frame_addr + offsetof(struct rt_sigframe, uc);
1d8b512b 1196 __put_user(addr, &frame->puc);
1c1df019
PK
1197#endif
1198 if (ka->sa_flags & TARGET_SA_SIGINFO) {
1199 tswap_siginfo(&frame->info, info);
1200 }
31e31b8a 1201
da7c8647 1202 /* Create the ucontext. */
1d8b512b
RV
1203 __put_user(0, &frame->uc.tuc_flags);
1204 __put_user(0, &frame->uc.tuc_link);
1205 __put_user(target_sigaltstack_used.ss_sp, &frame->uc.tuc_stack.ss_sp);
1206 __put_user(sas_ss_flags(get_sp_from_cpustate(env)),
1207 &frame->uc.tuc_stack.ss_flags);
1208 __put_user(target_sigaltstack_used.ss_size,
1209 &frame->uc.tuc_stack.ss_size);
41ecc72b
RV
1210 setup_sigcontext(&frame->uc.tuc_mcontext, &frame->fpstate, env,
1211 set->sig[0], frame_addr + offsetof(struct rt_sigframe, fpstate));
1212
0188fadb
RV
1213 for(i = 0; i < TARGET_NSIG_WORDS; i++) {
1214 __put_user(set->sig[i], &frame->uc.tuc_sigmask.sig[i]);
1215 }
31e31b8a 1216
da7c8647
TB
1217 /* Set up to return from userspace. If provided, use a stub
1218 already in userspace. */
1c1df019 1219#ifndef TARGET_X86_64
da7c8647 1220 if (ka->sa_flags & TARGET_SA_RESTORER) {
1d8b512b 1221 __put_user(ka->sa_restorer, &frame->pretcode);
da7c8647
TB
1222 } else {
1223 uint16_t val16;
1224 addr = frame_addr + offsetof(struct rt_sigframe, retcode);
1d8b512b 1225 __put_user(addr, &frame->pretcode);
da7c8647 1226 /* This is movl $,%eax ; int $0x80 */
1d8b512b
RV
1227 __put_user(0xb8, (char *)(frame->retcode+0));
1228 __put_user(TARGET_NR_rt_sigreturn, (int *)(frame->retcode+1));
da7c8647 1229 val16 = 0x80cd;
1d8b512b 1230 __put_user(val16, (uint16_t *)(frame->retcode+5));
da7c8647 1231 }
1c1df019
PK
1232#else
1233 /* XXX: Would be slightly better to return -EFAULT here if test fails
1234 assert(ka->sa_flags & TARGET_SA_RESTORER); */
1235 __put_user(ka->sa_restorer, &frame->pretcode);
1236#endif
66fb9763 1237
da7c8647
TB
1238 /* Set up registers for signal handler */
1239 env->regs[R_ESP] = frame_addr;
1240 env->eip = ka->_sa_handler;
66fb9763 1241
1c1df019
PK
1242#ifndef TARGET_X86_64
1243 env->regs[R_EAX] = sig;
1244 env->regs[R_EDX] = (unsigned long)&frame->info;
1245 env->regs[R_ECX] = (unsigned long)&frame->uc;
1246#else
1247 env->regs[R_EAX] = 0;
1248 env->regs[R_EDI] = sig;
1249 env->regs[R_ESI] = (unsigned long)&frame->info;
1250 env->regs[R_EDX] = (unsigned long)&frame->uc;
1251#endif
1252
da7c8647
TB
1253 cpu_x86_load_seg(env, R_DS, __USER_DS);
1254 cpu_x86_load_seg(env, R_ES, __USER_DS);
da7c8647 1255 cpu_x86_load_seg(env, R_CS, __USER_CS);
1c1df019 1256 cpu_x86_load_seg(env, R_SS, __USER_DS);
da7c8647 1257 env->eflags &= ~TF_MASK;
66fb9763 1258
da7c8647 1259 unlock_user_struct(frame, frame_addr, 1);
579a97f7 1260
da7c8647 1261 return;
66fb9763
FB
1262
1263give_sigsegv:
09391669 1264 force_sigsegv(sig);
66fb9763
FB
1265}
1266
1267static int
0284b03b 1268restore_sigcontext(CPUX86State *env, struct target_sigcontext *sc)
66fb9763 1269{
da7c8647
TB
1270 unsigned int err = 0;
1271 abi_ulong fpstate_addr;
1272 unsigned int tmpflags;
1273
1c1df019 1274#ifndef TARGET_X86_64
da7c8647
TB
1275 cpu_x86_load_seg(env, R_GS, tswap16(sc->gs));
1276 cpu_x86_load_seg(env, R_FS, tswap16(sc->fs));
1277 cpu_x86_load_seg(env, R_ES, tswap16(sc->es));
1278 cpu_x86_load_seg(env, R_DS, tswap16(sc->ds));
1279
1280 env->regs[R_EDI] = tswapl(sc->edi);
1281 env->regs[R_ESI] = tswapl(sc->esi);
1282 env->regs[R_EBP] = tswapl(sc->ebp);
1283 env->regs[R_ESP] = tswapl(sc->esp);
1284 env->regs[R_EBX] = tswapl(sc->ebx);
1285 env->regs[R_EDX] = tswapl(sc->edx);
1286 env->regs[R_ECX] = tswapl(sc->ecx);
0284b03b 1287 env->regs[R_EAX] = tswapl(sc->eax);
1c1df019 1288
da7c8647 1289 env->eip = tswapl(sc->eip);
1c1df019
PK
1290#else
1291 env->regs[8] = tswapl(sc->r8);
1292 env->regs[9] = tswapl(sc->r9);
1293 env->regs[10] = tswapl(sc->r10);
1294 env->regs[11] = tswapl(sc->r11);
1295 env->regs[12] = tswapl(sc->r12);
1296 env->regs[13] = tswapl(sc->r13);
1297 env->regs[14] = tswapl(sc->r14);
1298 env->regs[15] = tswapl(sc->r15);
1299
1300 env->regs[R_EDI] = tswapl(sc->rdi);
1301 env->regs[R_ESI] = tswapl(sc->rsi);
1302 env->regs[R_EBP] = tswapl(sc->rbp);
1303 env->regs[R_EBX] = tswapl(sc->rbx);
1304 env->regs[R_EDX] = tswapl(sc->rdx);
1305 env->regs[R_EAX] = tswapl(sc->rax);
1306 env->regs[R_ECX] = tswapl(sc->rcx);
1307 env->regs[R_ESP] = tswapl(sc->rsp);
1308
1309 env->eip = tswapl(sc->rip);
1310#endif
da7c8647
TB
1311
1312 cpu_x86_load_seg(env, R_CS, lduw_p(&sc->cs) | 3);
1313 cpu_x86_load_seg(env, R_SS, lduw_p(&sc->ss) | 3);
1314
1315 tmpflags = tswapl(sc->eflags);
1316 env->eflags = (env->eflags & ~0x40DD5) | (tmpflags & 0x40DD5);
1317 // regs->orig_eax = -1; /* disable syscall checks */
1318
1319 fpstate_addr = tswapl(sc->fpstate);
1320 if (fpstate_addr != 0) {
1321 if (!access_ok(VERIFY_READ, fpstate_addr,
1322 sizeof(struct target_fpstate)))
1323 goto badframe;
1c1df019 1324#ifndef TARGET_X86_64
da7c8647 1325 cpu_x86_frstor(env, fpstate_addr, 1);
1c1df019
PK
1326#else
1327 cpu_x86_fxrstor(env, fpstate_addr);
1328#endif
da7c8647 1329 }
ed2dcdf6 1330
da7c8647 1331 return err;
66fb9763 1332badframe:
da7c8647 1333 return 1;
66fb9763
FB
1334}
1335
1c1df019
PK
1336/* Note: there is no sigreturn on x86_64, there is only rt_sigreturn */
1337#ifndef TARGET_X86_64
66fb9763
FB
1338long do_sigreturn(CPUX86State *env)
1339{
579a97f7
FB
1340 struct sigframe *frame;
1341 abi_ulong frame_addr = env->regs[R_ESP] - 8;
c227f099 1342 target_sigset_t target_set;
66fb9763 1343 sigset_t set;
0284b03b 1344 int i;
66fb9763 1345
c8ee0a44 1346 trace_user_do_sigreturn(env, frame_addr);
579a97f7
FB
1347 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1))
1348 goto badframe;
66fb9763 1349 /* set blocked signals */
f5f601af 1350 __get_user(target_set.sig[0], &frame->sc.oldmask);
9231944d 1351 for(i = 1; i < TARGET_NSIG_WORDS; i++) {
f5f601af 1352 __get_user(target_set.sig[i], &frame->extramask[i - 1]);
9231944d 1353 }
66fb9763 1354
9231944d 1355 target_to_host_sigset_internal(&set, &target_set);
9eede5b6 1356 set_sigmask(&set);
3b46e624 1357
66fb9763 1358 /* restore registers */
0284b03b 1359 if (restore_sigcontext(env, &frame->sc))
66fb9763 1360 goto badframe;
579a97f7 1361 unlock_user_struct(frame, frame_addr, 0);
0284b03b 1362 return -TARGET_QEMU_ESIGRETURN;
66fb9763
FB
1363
1364badframe:
579a97f7 1365 unlock_user_struct(frame, frame_addr, 0);
66fb9763 1366 force_sig(TARGET_SIGSEGV);
c599d4d6 1367 return -TARGET_QEMU_ESIGRETURN;
66fb9763 1368}
1c1df019 1369#endif
66fb9763
FB
1370
1371long do_rt_sigreturn(CPUX86State *env)
1372{
da7c8647
TB
1373 abi_ulong frame_addr;
1374 struct rt_sigframe *frame;
1375 sigset_t set;
66fb9763 1376
1c1df019 1377 frame_addr = env->regs[R_ESP] - sizeof(abi_ulong);
da7c8647
TB
1378 trace_user_do_rt_sigreturn(env, frame_addr);
1379 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1))
1380 goto badframe;
1381 target_to_host_sigset(&set, &frame->uc.tuc_sigmask);
9eede5b6 1382 set_sigmask(&set);
5fafdf24 1383
0284b03b 1384 if (restore_sigcontext(env, &frame->uc.tuc_mcontext)) {
da7c8647
TB
1385 goto badframe;
1386 }
66fb9763 1387
da7c8647
TB
1388 if (do_sigaltstack(frame_addr + offsetof(struct rt_sigframe, uc.tuc_stack), 0,
1389 get_sp_from_cpustate(env)) == -EFAULT) {
1390 goto badframe;
1391 }
a04e134a 1392
da7c8647 1393 unlock_user_struct(frame, frame_addr, 0);
0284b03b 1394 return -TARGET_QEMU_ESIGRETURN;
66fb9763
FB
1395
1396badframe:
da7c8647
TB
1397 unlock_user_struct(frame, frame_addr, 0);
1398 force_sig(TARGET_SIGSEGV);
c599d4d6 1399 return -TARGET_QEMU_ESIGRETURN;
66fb9763
FB
1400}
1401
1744aea1
AS
1402#elif defined(TARGET_AARCH64)
1403
1404struct target_sigcontext {
1405 uint64_t fault_address;
1406 /* AArch64 registers */
1407 uint64_t regs[31];
1408 uint64_t sp;
1409 uint64_t pc;
1410 uint64_t pstate;
1411 /* 4K reserved for FP/SIMD state and future expansion */
1412 char __reserved[4096] __attribute__((__aligned__(16)));
1413};
1414
1415struct target_ucontext {
1416 abi_ulong tuc_flags;
1417 abi_ulong tuc_link;
1418 target_stack_t tuc_stack;
1419 target_sigset_t tuc_sigmask;
1420 /* glibc uses a 1024-bit sigset_t */
1421 char __unused[1024 / 8 - sizeof(target_sigset_t)];
1422 /* last for future expansion */
1423 struct target_sigcontext tuc_mcontext;
1424};
1425
1426/*
1427 * Header to be used at the beginning of structures extending the user
1428 * context. Such structures must be placed after the rt_sigframe on the stack
1429 * and be 16-byte aligned. The last structure must be a dummy one with the
1430 * magic and size set to 0.
1431 */
1432struct target_aarch64_ctx {
1433 uint32_t magic;
1434 uint32_t size;
1435};
1436
1437#define TARGET_FPSIMD_MAGIC 0x46508001
1438
1439struct target_fpsimd_context {
1440 struct target_aarch64_ctx head;
1441 uint32_t fpsr;
1442 uint32_t fpcr;
1443 uint64_t vregs[32 * 2]; /* really uint128_t vregs[32] */
1444};
1445
1446/*
1447 * Auxiliary context saved in the sigcontext.__reserved array. Not exported to
1448 * user space as it will change with the addition of new context. User space
1449 * should check the magic/size information.
1450 */
1451struct target_aux_context {
1452 struct target_fpsimd_context fpsimd;
1453 /* additional context to be added before "end" */
1454 struct target_aarch64_ctx end;
1455};
1456
1457struct target_rt_sigframe {
1458 struct target_siginfo info;
1459 struct target_ucontext uc;
1460 uint64_t fp;
1461 uint64_t lr;
1462 uint32_t tramp[2];
1463};
1464
1465static int target_setup_sigframe(struct target_rt_sigframe *sf,
1466 CPUARMState *env, target_sigset_t *set)
1467{
1468 int i;
1469 struct target_aux_context *aux =
1470 (struct target_aux_context *)sf->uc.tuc_mcontext.__reserved;
1471
1472 /* set up the stack frame for unwinding */
1473 __put_user(env->xregs[29], &sf->fp);
1474 __put_user(env->xregs[30], &sf->lr);
1475
1476 for (i = 0; i < 31; i++) {
1477 __put_user(env->xregs[i], &sf->uc.tuc_mcontext.regs[i]);
1478 }
1479 __put_user(env->xregs[31], &sf->uc.tuc_mcontext.sp);
1480 __put_user(env->pc, &sf->uc.tuc_mcontext.pc);
d356312f 1481 __put_user(pstate_read(env), &sf->uc.tuc_mcontext.pstate);
1744aea1 1482
7af03928 1483 __put_user(env->exception.vaddress, &sf->uc.tuc_mcontext.fault_address);
1744aea1
AS
1484
1485 for (i = 0; i < TARGET_NSIG_WORDS; i++) {
1486 __put_user(set->sig[i], &sf->uc.tuc_sigmask.sig[i]);
1487 }
1488
1489 for (i = 0; i < 32; i++) {
1490#ifdef TARGET_WORDS_BIGENDIAN
1491 __put_user(env->vfp.regs[i * 2], &aux->fpsimd.vregs[i * 2 + 1]);
1492 __put_user(env->vfp.regs[i * 2 + 1], &aux->fpsimd.vregs[i * 2]);
1493#else
1494 __put_user(env->vfp.regs[i * 2], &aux->fpsimd.vregs[i * 2]);
1495 __put_user(env->vfp.regs[i * 2 + 1], &aux->fpsimd.vregs[i * 2 + 1]);
1496#endif
1497 }
e0ee138b
WN
1498 __put_user(vfp_get_fpsr(env), &aux->fpsimd.fpsr);
1499 __put_user(vfp_get_fpcr(env), &aux->fpsimd.fpcr);
1744aea1
AS
1500 __put_user(TARGET_FPSIMD_MAGIC, &aux->fpsimd.head.magic);
1501 __put_user(sizeof(struct target_fpsimd_context),
1502 &aux->fpsimd.head.size);
1503
1504 /* set the "end" magic */
1505 __put_user(0, &aux->end.magic);
1506 __put_user(0, &aux->end.size);
1507
1508 return 0;
1509}
1510
1511static int target_restore_sigframe(CPUARMState *env,
1512 struct target_rt_sigframe *sf)
1513{
1514 sigset_t set;
1515 int i;
1516 struct target_aux_context *aux =
1517 (struct target_aux_context *)sf->uc.tuc_mcontext.__reserved;
e0ee138b 1518 uint32_t magic, size, fpsr, fpcr;
d356312f 1519 uint64_t pstate;
1744aea1
AS
1520
1521 target_to_host_sigset(&set, &sf->uc.tuc_sigmask);
9eede5b6 1522 set_sigmask(&set);
1744aea1
AS
1523
1524 for (i = 0; i < 31; i++) {
1525 __get_user(env->xregs[i], &sf->uc.tuc_mcontext.regs[i]);
1526 }
1527
1528 __get_user(env->xregs[31], &sf->uc.tuc_mcontext.sp);
1529 __get_user(env->pc, &sf->uc.tuc_mcontext.pc);
d356312f
PM
1530 __get_user(pstate, &sf->uc.tuc_mcontext.pstate);
1531 pstate_write(env, pstate);
1744aea1
AS
1532
1533 __get_user(magic, &aux->fpsimd.head.magic);
1534 __get_user(size, &aux->fpsimd.head.size);
1535
1536 if (magic != TARGET_FPSIMD_MAGIC
1537 || size != sizeof(struct target_fpsimd_context)) {
1538 return 1;
1539 }
1540
4cf23480
PM
1541 for (i = 0; i < 32; i++) {
1542#ifdef TARGET_WORDS_BIGENDIAN
1543 __get_user(env->vfp.regs[i * 2], &aux->fpsimd.vregs[i * 2 + 1]);
1544 __get_user(env->vfp.regs[i * 2 + 1], &aux->fpsimd.vregs[i * 2]);
1545#else
1546 __get_user(env->vfp.regs[i * 2], &aux->fpsimd.vregs[i * 2]);
1547 __get_user(env->vfp.regs[i * 2 + 1], &aux->fpsimd.vregs[i * 2 + 1]);
1548#endif
1744aea1 1549 }
e0ee138b
WN
1550 __get_user(fpsr, &aux->fpsimd.fpsr);
1551 vfp_set_fpsr(env, fpsr);
1552 __get_user(fpcr, &aux->fpsimd.fpcr);
1553 vfp_set_fpcr(env, fpcr);
1744aea1
AS
1554
1555 return 0;
1556}
1557
1558static abi_ulong get_sigframe(struct target_sigaction *ka, CPUARMState *env)
1559{
1560 abi_ulong sp;
1561
1562 sp = env->xregs[31];
1563
1564 /*
1565 * This is the X/Open sanctioned signal stack switching.
1566 */
b545f63f 1567 if ((ka->sa_flags & TARGET_SA_ONSTACK) && !sas_ss_flags(sp)) {
1744aea1
AS
1568 sp = target_sigaltstack_used.ss_sp + target_sigaltstack_used.ss_size;
1569 }
1570
1571 sp = (sp - sizeof(struct target_rt_sigframe)) & ~15;
1572
1573 return sp;
1574}
1575
1576static void target_setup_frame(int usig, struct target_sigaction *ka,
1577 target_siginfo_t *info, target_sigset_t *set,
1578 CPUARMState *env)
1579{
1580 struct target_rt_sigframe *frame;
8a3ae910 1581 abi_ulong frame_addr, return_addr;
1744aea1
AS
1582
1583 frame_addr = get_sigframe(ka, env);
c8ee0a44 1584 trace_user_setup_frame(env, frame_addr);
1744aea1
AS
1585 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
1586 goto give_sigsegv;
1587 }
1588
1589 __put_user(0, &frame->uc.tuc_flags);
1590 __put_user(0, &frame->uc.tuc_link);
1591
1592 __put_user(target_sigaltstack_used.ss_sp,
1593 &frame->uc.tuc_stack.ss_sp);
1594 __put_user(sas_ss_flags(env->xregs[31]),
1595 &frame->uc.tuc_stack.ss_flags);
1596 __put_user(target_sigaltstack_used.ss_size,
1597 &frame->uc.tuc_stack.ss_size);
1598 target_setup_sigframe(frame, env, set);
8a3ae910
MM
1599 if (ka->sa_flags & TARGET_SA_RESTORER) {
1600 return_addr = ka->sa_restorer;
1601 } else {
1602 /* mov x8,#__NR_rt_sigreturn; svc #0 */
1603 __put_user(0xd2801168, &frame->tramp[0]);
1604 __put_user(0xd4000001, &frame->tramp[1]);
1605 return_addr = frame_addr + offsetof(struct target_rt_sigframe, tramp);
1606 }
1744aea1
AS
1607 env->xregs[0] = usig;
1608 env->xregs[31] = frame_addr;
1609 env->xregs[29] = env->xregs[31] + offsetof(struct target_rt_sigframe, fp);
1610 env->pc = ka->_sa_handler;
8a3ae910 1611 env->xregs[30] = return_addr;
1744aea1 1612 if (info) {
f6c7a05b 1613 tswap_siginfo(&frame->info, info);
1744aea1
AS
1614 env->xregs[1] = frame_addr + offsetof(struct target_rt_sigframe, info);
1615 env->xregs[2] = frame_addr + offsetof(struct target_rt_sigframe, uc);
1616 }
1617
1618 unlock_user_struct(frame, frame_addr, 1);
1619 return;
1620
1621 give_sigsegv:
1622 unlock_user_struct(frame, frame_addr, 1);
09391669 1623 force_sigsegv(usig);
1744aea1
AS
1624}
1625
1626static void setup_rt_frame(int sig, struct target_sigaction *ka,
1627 target_siginfo_t *info, target_sigset_t *set,
1628 CPUARMState *env)
1629{
1630 target_setup_frame(sig, ka, info, set, env);
1631}
1632
1633static void setup_frame(int sig, struct target_sigaction *ka,
1634 target_sigset_t *set, CPUARMState *env)
1635{
1636 target_setup_frame(sig, ka, 0, set, env);
1637}
1638
1639long do_rt_sigreturn(CPUARMState *env)
1640{
7f72cd23 1641 struct target_rt_sigframe *frame = NULL;
1744aea1
AS
1642 abi_ulong frame_addr = env->xregs[31];
1643
c8ee0a44 1644 trace_user_do_rt_sigreturn(env, frame_addr);
1744aea1
AS
1645 if (frame_addr & 15) {
1646 goto badframe;
1647 }
1648
1649 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1)) {
1650 goto badframe;
1651 }
1652
1653 if (target_restore_sigframe(env, frame)) {
1654 goto badframe;
1655 }
1656
1657 if (do_sigaltstack(frame_addr +
1658 offsetof(struct target_rt_sigframe, uc.tuc_stack),
1659 0, get_sp_from_cpustate(env)) == -EFAULT) {
1660 goto badframe;
1661 }
1662
1663 unlock_user_struct(frame, frame_addr, 0);
f0267ef7 1664 return -TARGET_QEMU_ESIGRETURN;
1744aea1
AS
1665
1666 badframe:
1667 unlock_user_struct(frame, frame_addr, 0);
1668 force_sig(TARGET_SIGSEGV);
c599d4d6 1669 return -TARGET_QEMU_ESIGRETURN;
1744aea1
AS
1670}
1671
1672long do_sigreturn(CPUARMState *env)
1673{
1674 return do_rt_sigreturn(env);
1675}
1676
43fff238
FB
1677#elif defined(TARGET_ARM)
1678
1679struct target_sigcontext {
da7c8647
TB
1680 abi_ulong trap_no;
1681 abi_ulong error_code;
1682 abi_ulong oldmask;
1683 abi_ulong arm_r0;
1684 abi_ulong arm_r1;
1685 abi_ulong arm_r2;
1686 abi_ulong arm_r3;
1687 abi_ulong arm_r4;
1688 abi_ulong arm_r5;
1689 abi_ulong arm_r6;
1690 abi_ulong arm_r7;
1691 abi_ulong arm_r8;
1692 abi_ulong arm_r9;
1693 abi_ulong arm_r10;
1694 abi_ulong arm_fp;
1695 abi_ulong arm_ip;
1696 abi_ulong arm_sp;
1697 abi_ulong arm_lr;
1698 abi_ulong arm_pc;
1699 abi_ulong arm_cpsr;
1700 abi_ulong fault_address;
43fff238
FB
1701};
1702
a745ec6d
PB
1703struct target_ucontext_v1 {
1704 abi_ulong tuc_flags;
1705 abi_ulong tuc_link;
c227f099 1706 target_stack_t tuc_stack;
a745ec6d 1707 struct target_sigcontext tuc_mcontext;
c227f099 1708 target_sigset_t tuc_sigmask; /* mask last for extensibility */
a745ec6d
PB
1709};
1710
1711struct target_ucontext_v2 {
992f48a0
BS
1712 abi_ulong tuc_flags;
1713 abi_ulong tuc_link;
c227f099 1714 target_stack_t tuc_stack;
b8076a74 1715 struct target_sigcontext tuc_mcontext;
c227f099 1716 target_sigset_t tuc_sigmask; /* mask last for extensibility */
5f0b7c88 1717 char __unused[128 - sizeof(target_sigset_t)];
a745ec6d 1718 abi_ulong tuc_regspace[128] __attribute__((__aligned__(8)));
43fff238
FB
1719};
1720
0d871bdb
PM
1721struct target_user_vfp {
1722 uint64_t fpregs[32];
1723 abi_ulong fpscr;
1724};
1725
1726struct target_user_vfp_exc {
1727 abi_ulong fpexc;
1728 abi_ulong fpinst;
1729 abi_ulong fpinst2;
1730};
1731
1732struct target_vfp_sigframe {
1733 abi_ulong magic;
1734 abi_ulong size;
1735 struct target_user_vfp ufp;
1736 struct target_user_vfp_exc ufp_exc;
1737} __attribute__((__aligned__(8)));
1738
08e11256
PM
1739struct target_iwmmxt_sigframe {
1740 abi_ulong magic;
1741 abi_ulong size;
1742 uint64_t regs[16];
1743 /* Note that not all the coprocessor control registers are stored here */
1744 uint32_t wcssf;
1745 uint32_t wcasf;
1746 uint32_t wcgr0;
1747 uint32_t wcgr1;
1748 uint32_t wcgr2;
1749 uint32_t wcgr3;
1750} __attribute__((__aligned__(8)));
1751
0d871bdb 1752#define TARGET_VFP_MAGIC 0x56465001
08e11256 1753#define TARGET_IWMMXT_MAGIC 0x12ef842a
0d871bdb 1754
a8c33204 1755struct sigframe_v1
43fff238
FB
1756{
1757 struct target_sigcontext sc;
992f48a0
BS
1758 abi_ulong extramask[TARGET_NSIG_WORDS-1];
1759 abi_ulong retcode;
43fff238
FB
1760};
1761
a8c33204
PB
1762struct sigframe_v2
1763{
1764 struct target_ucontext_v2 uc;
1765 abi_ulong retcode;
1766};
1767
a745ec6d 1768struct rt_sigframe_v1
43fff238 1769{
f8b0aa25
FB
1770 abi_ulong pinfo;
1771 abi_ulong puc;
43fff238 1772 struct target_siginfo info;
a745ec6d
PB
1773 struct target_ucontext_v1 uc;
1774 abi_ulong retcode;
1775};
1776
1777struct rt_sigframe_v2
1778{
1779 struct target_siginfo info;
1780 struct target_ucontext_v2 uc;
992f48a0 1781 abi_ulong retcode;
43fff238
FB
1782};
1783
1784#define TARGET_CONFIG_CPU_32 1
1785
1786/*
1787 * For ARM syscalls, we encode the syscall number into the instruction.
1788 */
1789#define SWI_SYS_SIGRETURN (0xef000000|(TARGET_NR_sigreturn + ARM_SYSCALL_BASE))
1790#define SWI_SYS_RT_SIGRETURN (0xef000000|(TARGET_NR_rt_sigreturn + ARM_SYSCALL_BASE))
1791
1792/*
1793 * For Thumb syscalls, we pass the syscall number via r7. We therefore
1794 * need two 16-bit instructions.
1795 */
1796#define SWI_THUMB_SIGRETURN (0xdf00 << 16 | 0x2700 | (TARGET_NR_sigreturn))
1797#define SWI_THUMB_RT_SIGRETURN (0xdf00 << 16 | 0x2700 | (TARGET_NR_rt_sigreturn))
1798
992f48a0 1799static const abi_ulong retcodes[4] = {
43fff238
FB
1800 SWI_SYS_SIGRETURN, SWI_THUMB_SIGRETURN,
1801 SWI_SYS_RT_SIGRETURN, SWI_THUMB_RT_SIGRETURN
1802};
1803
1804
05390248 1805static inline int valid_user_regs(CPUARMState *regs)
43fff238
FB
1806{
1807 return 1;
1808}
1809
a8c33204 1810static void
43fff238 1811setup_sigcontext(struct target_sigcontext *sc, /*struct _fpstate *fpstate,*/
05390248 1812 CPUARMState *env, abi_ulong mask)
43fff238 1813{
a0e1e6d7
PB
1814 __put_user(env->regs[0], &sc->arm_r0);
1815 __put_user(env->regs[1], &sc->arm_r1);
1816 __put_user(env->regs[2], &sc->arm_r2);
1817 __put_user(env->regs[3], &sc->arm_r3);
1818 __put_user(env->regs[4], &sc->arm_r4);
1819 __put_user(env->regs[5], &sc->arm_r5);
1820 __put_user(env->regs[6], &sc->arm_r6);
1821 __put_user(env->regs[7], &sc->arm_r7);
1822 __put_user(env->regs[8], &sc->arm_r8);
1823 __put_user(env->regs[9], &sc->arm_r9);
1824 __put_user(env->regs[10], &sc->arm_r10);
1825 __put_user(env->regs[11], &sc->arm_fp);
1826 __put_user(env->regs[12], &sc->arm_ip);
1827 __put_user(env->regs[13], &sc->arm_sp);
1828 __put_user(env->regs[14], &sc->arm_lr);
1829 __put_user(env->regs[15], &sc->arm_pc);
43fff238 1830#ifdef TARGET_CONFIG_CPU_32
a0e1e6d7 1831 __put_user(cpsr_read(env), &sc->arm_cpsr);
43fff238
FB
1832#endif
1833
a0e1e6d7
PB
1834 __put_user(/* current->thread.trap_no */ 0, &sc->trap_no);
1835 __put_user(/* current->thread.error_code */ 0, &sc->error_code);
1836 __put_user(/* current->thread.address */ 0, &sc->fault_address);
1837 __put_user(mask, &sc->oldmask);
43fff238
FB
1838}
1839
579a97f7 1840static inline abi_ulong
05390248 1841get_sigframe(struct target_sigaction *ka, CPUARMState *regs, int framesize)
43fff238 1842{
a0e1e6d7
PB
1843 unsigned long sp = regs->regs[13];
1844
1845 /*
1846 * This is the X/Open sanctioned signal stack switching.
1847 */
1848 if ((ka->sa_flags & TARGET_SA_ONSTACK) && !sas_ss_flags(sp)) {
1849 sp = target_sigaltstack_used.ss_sp + target_sigaltstack_used.ss_size;
1850 }
1851 /*
1852 * ATPCS B01 mandates 8-byte alignment
1853 */
1854 return (sp - framesize) & ~7;
43fff238
FB
1855}
1856
0188fadb 1857static void
05390248 1858setup_return(CPUARMState *env, struct target_sigaction *ka,
da7c8647 1859 abi_ulong *rc, abi_ulong frame_addr, int usig, abi_ulong rc_addr)
43fff238 1860{
a0e1e6d7
PB
1861 abi_ulong handler = ka->_sa_handler;
1862 abi_ulong retcode;
1863 int thumb = handler & 1;
1864 uint32_t cpsr = cpsr_read(env);
43fff238 1865
a0e1e6d7
PB
1866 cpsr &= ~CPSR_IT;
1867 if (thumb) {
1868 cpsr |= CPSR_T;
1869 } else {
1870 cpsr &= ~CPSR_T;
1871 }
43fff238 1872
a0e1e6d7
PB
1873 if (ka->sa_flags & TARGET_SA_RESTORER) {
1874 retcode = ka->sa_restorer;
1875 } else {
1876 unsigned int idx = thumb;
1877
1878 if (ka->sa_flags & TARGET_SA_SIGINFO) {
1879 idx += 2;
1880 }
43fff238 1881
0188fadb 1882 __put_user(retcodes[idx], rc);
ca8a277c 1883
a0e1e6d7
PB
1884 retcode = rc_addr + thumb;
1885 }
43fff238 1886
a0e1e6d7
PB
1887 env->regs[0] = usig;
1888 env->regs[13] = frame_addr;
1889 env->regs[14] = retcode;
1890 env->regs[15] = handler & (thumb ? ~1 : ~3);
1891 cpsr_write(env, cpsr, CPSR_IT | CPSR_T, CPSRWriteByInstr);
43fff238
FB
1892}
1893
05390248 1894static abi_ulong *setup_sigframe_v2_vfp(abi_ulong *regspace, CPUARMState *env)
0d871bdb
PM
1895{
1896 int i;
1897 struct target_vfp_sigframe *vfpframe;
1898 vfpframe = (struct target_vfp_sigframe *)regspace;
1899 __put_user(TARGET_VFP_MAGIC, &vfpframe->magic);
1900 __put_user(sizeof(*vfpframe), &vfpframe->size);
1901 for (i = 0; i < 32; i++) {
005e1a0a 1902 __put_user(float64_val(env->vfp.regs[i]), &vfpframe->ufp.fpregs[i]);
0d871bdb
PM
1903 }
1904 __put_user(vfp_get_fpscr(env), &vfpframe->ufp.fpscr);
1905 __put_user(env->vfp.xregs[ARM_VFP_FPEXC], &vfpframe->ufp_exc.fpexc);
1906 __put_user(env->vfp.xregs[ARM_VFP_FPINST], &vfpframe->ufp_exc.fpinst);
1907 __put_user(env->vfp.xregs[ARM_VFP_FPINST2], &vfpframe->ufp_exc.fpinst2);
1908 return (abi_ulong*)(vfpframe+1);
1909}
1910
05390248
AF
1911static abi_ulong *setup_sigframe_v2_iwmmxt(abi_ulong *regspace,
1912 CPUARMState *env)
08e11256
PM
1913{
1914 int i;
1915 struct target_iwmmxt_sigframe *iwmmxtframe;
1916 iwmmxtframe = (struct target_iwmmxt_sigframe *)regspace;
1917 __put_user(TARGET_IWMMXT_MAGIC, &iwmmxtframe->magic);
1918 __put_user(sizeof(*iwmmxtframe), &iwmmxtframe->size);
1919 for (i = 0; i < 16; i++) {
1920 __put_user(env->iwmmxt.regs[i], &iwmmxtframe->regs[i]);
1921 }
1922 __put_user(env->vfp.xregs[ARM_IWMMXT_wCSSF], &iwmmxtframe->wcssf);
1923 __put_user(env->vfp.xregs[ARM_IWMMXT_wCASF], &iwmmxtframe->wcssf);
1924 __put_user(env->vfp.xregs[ARM_IWMMXT_wCGR0], &iwmmxtframe->wcgr0);
1925 __put_user(env->vfp.xregs[ARM_IWMMXT_wCGR1], &iwmmxtframe->wcgr1);
1926 __put_user(env->vfp.xregs[ARM_IWMMXT_wCGR2], &iwmmxtframe->wcgr2);
1927 __put_user(env->vfp.xregs[ARM_IWMMXT_wCGR3], &iwmmxtframe->wcgr3);
1928 return (abi_ulong*)(iwmmxtframe+1);
1929}
1930
a8c33204 1931static void setup_sigframe_v2(struct target_ucontext_v2 *uc,
05390248 1932 target_sigset_t *set, CPUARMState *env)
a8c33204
PB
1933{
1934 struct target_sigaltstack stack;
1935 int i;
0d871bdb 1936 abi_ulong *regspace;
a8c33204
PB
1937
1938 /* Clear all the bits of the ucontext we don't use. */
1939 memset(uc, 0, offsetof(struct target_ucontext_v2, tuc_mcontext));
1940
1941 memset(&stack, 0, sizeof(stack));
1942 __put_user(target_sigaltstack_used.ss_sp, &stack.ss_sp);
1943 __put_user(target_sigaltstack_used.ss_size, &stack.ss_size);
1944 __put_user(sas_ss_flags(get_sp_from_cpustate(env)), &stack.ss_flags);
1945 memcpy(&uc->tuc_stack, &stack, sizeof(stack));
1946
1947 setup_sigcontext(&uc->tuc_mcontext, env, set->sig[0]);
0d871bdb
PM
1948 /* Save coprocessor signal frame. */
1949 regspace = uc->tuc_regspace;
1950 if (arm_feature(env, ARM_FEATURE_VFP)) {
1951 regspace = setup_sigframe_v2_vfp(regspace, env);
1952 }
08e11256
PM
1953 if (arm_feature(env, ARM_FEATURE_IWMMXT)) {
1954 regspace = setup_sigframe_v2_iwmmxt(regspace, env);
1955 }
1956
0d871bdb
PM
1957 /* Write terminating magic word */
1958 __put_user(0, regspace);
1959
a8c33204
PB
1960 for(i = 0; i < TARGET_NSIG_WORDS; i++) {
1961 __put_user(set->sig[i], &uc->tuc_sigmask.sig[i]);
1962 }
1963}
1964
579a97f7 1965/* compare linux/arch/arm/kernel/signal.c:setup_frame() */
624f7979 1966static void setup_frame_v1(int usig, struct target_sigaction *ka,
05390248 1967 target_sigset_t *set, CPUARMState *regs)
43fff238 1968{
da7c8647
TB
1969 struct sigframe_v1 *frame;
1970 abi_ulong frame_addr = get_sigframe(ka, regs, sizeof(*frame));
1971 int i;
43fff238 1972
da7c8647
TB
1973 trace_user_setup_frame(regs, frame_addr);
1974 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
28298c91 1975 goto sigsegv;
da7c8647 1976 }
579a97f7 1977
da7c8647 1978 setup_sigcontext(&frame->sc, regs, set->sig[0]);
43fff238 1979
0188fadb
RV
1980 for(i = 1; i < TARGET_NSIG_WORDS; i++) {
1981 __put_user(set->sig[i], &frame->extramask[i - 1]);
1982 }
43fff238 1983
da7c8647
TB
1984 setup_return(regs, ka, &frame->retcode, frame_addr, usig,
1985 frame_addr + offsetof(struct sigframe_v1, retcode));
579a97f7 1986
da7c8647 1987 unlock_user_struct(frame, frame_addr, 1);
28298c91
PM
1988 return;
1989sigsegv:
1990 force_sigsegv(usig);
a8c33204
PB
1991}
1992
624f7979 1993static void setup_frame_v2(int usig, struct target_sigaction *ka,
05390248 1994 target_sigset_t *set, CPUARMState *regs)
a8c33204 1995{
da7c8647
TB
1996 struct sigframe_v2 *frame;
1997 abi_ulong frame_addr = get_sigframe(ka, regs, sizeof(*frame));
a8c33204 1998
da7c8647
TB
1999 trace_user_setup_frame(regs, frame_addr);
2000 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
28298c91 2001 goto sigsegv;
da7c8647 2002 }
a8c33204 2003
da7c8647 2004 setup_sigframe_v2(&frame->uc, set, regs);
a8c33204 2005
da7c8647
TB
2006 setup_return(regs, ka, &frame->retcode, frame_addr, usig,
2007 frame_addr + offsetof(struct sigframe_v2, retcode));
a8c33204 2008
da7c8647 2009 unlock_user_struct(frame, frame_addr, 1);
28298c91
PM
2010 return;
2011sigsegv:
2012 force_sigsegv(usig);
a8c33204
PB
2013}
2014
624f7979 2015static void setup_frame(int usig, struct target_sigaction *ka,
05390248 2016 target_sigset_t *set, CPUARMState *regs)
a8c33204
PB
2017{
2018 if (get_osversion() >= 0x020612) {
2019 setup_frame_v2(usig, ka, set, regs);
2020 } else {
2021 setup_frame_v1(usig, ka, set, regs);
2022 }
43fff238
FB
2023}
2024
579a97f7 2025/* compare linux/arch/arm/kernel/signal.c:setup_rt_frame() */
624f7979 2026static void setup_rt_frame_v1(int usig, struct target_sigaction *ka,
c227f099 2027 target_siginfo_t *info,
05390248 2028 target_sigset_t *set, CPUARMState *env)
43fff238 2029{
da7c8647
TB
2030 struct rt_sigframe_v1 *frame;
2031 abi_ulong frame_addr = get_sigframe(ka, env, sizeof(*frame));
2032 struct target_sigaltstack stack;
2033 int i;
2034 abi_ulong info_addr, uc_addr;
43fff238 2035
da7c8647
TB
2036 trace_user_setup_rt_frame(env, frame_addr);
2037 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
28298c91 2038 goto sigsegv;
da7c8647 2039 }
edf779ff 2040
da7c8647
TB
2041 info_addr = frame_addr + offsetof(struct rt_sigframe_v1, info);
2042 __put_user(info_addr, &frame->pinfo);
2043 uc_addr = frame_addr + offsetof(struct rt_sigframe_v1, uc);
2044 __put_user(uc_addr, &frame->puc);
2045 tswap_siginfo(&frame->info, info);
43fff238 2046
da7c8647
TB
2047 /* Clear all the bits of the ucontext we don't use. */
2048 memset(&frame->uc, 0, offsetof(struct target_ucontext_v1, tuc_mcontext));
43fff238 2049
da7c8647
TB
2050 memset(&stack, 0, sizeof(stack));
2051 __put_user(target_sigaltstack_used.ss_sp, &stack.ss_sp);
2052 __put_user(target_sigaltstack_used.ss_size, &stack.ss_size);
2053 __put_user(sas_ss_flags(get_sp_from_cpustate(env)), &stack.ss_flags);
2054 memcpy(&frame->uc.tuc_stack, &stack, sizeof(stack));
a04e134a 2055
da7c8647
TB
2056 setup_sigcontext(&frame->uc.tuc_mcontext, env, set->sig[0]);
2057 for(i = 0; i < TARGET_NSIG_WORDS; i++) {
2058 __put_user(set->sig[i], &frame->uc.tuc_sigmask.sig[i]);
2059 }
43fff238 2060
da7c8647
TB
2061 setup_return(env, ka, &frame->retcode, frame_addr, usig,
2062 frame_addr + offsetof(struct rt_sigframe_v1, retcode));
a745ec6d 2063
da7c8647
TB
2064 env->regs[1] = info_addr;
2065 env->regs[2] = uc_addr;
a745ec6d 2066
da7c8647 2067 unlock_user_struct(frame, frame_addr, 1);
28298c91
PM
2068 return;
2069sigsegv:
2070 force_sigsegv(usig);
a745ec6d
PB
2071}
2072
624f7979 2073static void setup_rt_frame_v2(int usig, struct target_sigaction *ka,
c227f099 2074 target_siginfo_t *info,
05390248 2075 target_sigset_t *set, CPUARMState *env)
a745ec6d 2076{
da7c8647
TB
2077 struct rt_sigframe_v2 *frame;
2078 abi_ulong frame_addr = get_sigframe(ka, env, sizeof(*frame));
2079 abi_ulong info_addr, uc_addr;
a745ec6d 2080
da7c8647
TB
2081 trace_user_setup_rt_frame(env, frame_addr);
2082 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
28298c91 2083 goto sigsegv;
da7c8647 2084 }
a745ec6d 2085
da7c8647
TB
2086 info_addr = frame_addr + offsetof(struct rt_sigframe_v2, info);
2087 uc_addr = frame_addr + offsetof(struct rt_sigframe_v2, uc);
2088 tswap_siginfo(&frame->info, info);
a745ec6d 2089
da7c8647 2090 setup_sigframe_v2(&frame->uc, set, env);
a745ec6d 2091
da7c8647
TB
2092 setup_return(env, ka, &frame->retcode, frame_addr, usig,
2093 frame_addr + offsetof(struct rt_sigframe_v2, retcode));
a745ec6d 2094
da7c8647
TB
2095 env->regs[1] = info_addr;
2096 env->regs[2] = uc_addr;
43fff238 2097
da7c8647 2098 unlock_user_struct(frame, frame_addr, 1);
28298c91
PM
2099 return;
2100sigsegv:
2101 force_sigsegv(usig);
43fff238
FB
2102}
2103
624f7979 2104static void setup_rt_frame(int usig, struct target_sigaction *ka,
c227f099 2105 target_siginfo_t *info,
05390248 2106 target_sigset_t *set, CPUARMState *env)
a745ec6d
PB
2107{
2108 if (get_osversion() >= 0x020612) {
2109 setup_rt_frame_v2(usig, ka, info, set, env);
2110 } else {
2111 setup_rt_frame_v1(usig, ka, info, set, env);
2112 }
2113}
2114
43fff238 2115static int
05390248 2116restore_sigcontext(CPUARMState *env, struct target_sigcontext *sc)
43fff238 2117{
da7c8647
TB
2118 int err = 0;
2119 uint32_t cpsr;
43fff238 2120
1d8b512b
RV
2121 __get_user(env->regs[0], &sc->arm_r0);
2122 __get_user(env->regs[1], &sc->arm_r1);
2123 __get_user(env->regs[2], &sc->arm_r2);
2124 __get_user(env->regs[3], &sc->arm_r3);
2125 __get_user(env->regs[4], &sc->arm_r4);
2126 __get_user(env->regs[5], &sc->arm_r5);
2127 __get_user(env->regs[6], &sc->arm_r6);
2128 __get_user(env->regs[7], &sc->arm_r7);
2129 __get_user(env->regs[8], &sc->arm_r8);
2130 __get_user(env->regs[9], &sc->arm_r9);
2131 __get_user(env->regs[10], &sc->arm_r10);
2132 __get_user(env->regs[11], &sc->arm_fp);
2133 __get_user(env->regs[12], &sc->arm_ip);
2134 __get_user(env->regs[13], &sc->arm_sp);
2135 __get_user(env->regs[14], &sc->arm_lr);
2136 __get_user(env->regs[15], &sc->arm_pc);
43fff238 2137#ifdef TARGET_CONFIG_CPU_32
1d8b512b 2138 __get_user(cpsr, &sc->arm_cpsr);
50866ba5 2139 cpsr_write(env, cpsr, CPSR_USER | CPSR_EXEC, CPSRWriteByInstr);
43fff238
FB
2140#endif
2141
da7c8647 2142 err |= !valid_user_regs(env);
43fff238 2143
da7c8647 2144 return err;
43fff238
FB
2145}
2146
05390248 2147static long do_sigreturn_v1(CPUARMState *env)
43fff238 2148{
da7c8647
TB
2149 abi_ulong frame_addr;
2150 struct sigframe_v1 *frame = NULL;
2151 target_sigset_t set;
2152 sigset_t host_set;
2153 int i;
978fae9f 2154
da7c8647
TB
2155 /*
2156 * Since we stacked the signal on a 64-bit boundary,
2157 * then 'sp' should be word aligned here. If it's
2158 * not, then the user is trying to mess with us.
2159 */
2160 frame_addr = env->regs[13];
2161 trace_user_do_sigreturn(env, frame_addr);
2162 if (frame_addr & 7) {
2163 goto badframe;
2164 }
2165
2166 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1)) {
2167 goto badframe;
2168 }
43fff238 2169
f5f601af
RV
2170 __get_user(set.sig[0], &frame->sc.oldmask);
2171 for(i = 1; i < TARGET_NSIG_WORDS; i++) {
2172 __get_user(set.sig[i], &frame->extramask[i - 1]);
2173 }
43fff238 2174
da7c8647 2175 target_to_host_sigset_internal(&host_set, &set);
9eede5b6 2176 set_sigmask(&host_set);
43fff238 2177
da7c8647
TB
2178 if (restore_sigcontext(env, &frame->sc)) {
2179 goto badframe;
2180 }
43fff238
FB
2181
2182#if 0
da7c8647
TB
2183 /* Send SIGTRAP if we're single-stepping */
2184 if (ptrace_cancel_bpt(current))
2185 send_sig(SIGTRAP, current, 1);
43fff238 2186#endif
da7c8647 2187 unlock_user_struct(frame, frame_addr, 0);
f0267ef7 2188 return -TARGET_QEMU_ESIGRETURN;
43fff238
FB
2189
2190badframe:
c599d4d6
PM
2191 force_sig(TARGET_SIGSEGV);
2192 return -TARGET_QEMU_ESIGRETURN;
43fff238
FB
2193}
2194
05390248 2195static abi_ulong *restore_sigframe_v2_vfp(CPUARMState *env, abi_ulong *regspace)
5f9099d9
PM
2196{
2197 int i;
2198 abi_ulong magic, sz;
2199 uint32_t fpscr, fpexc;
2200 struct target_vfp_sigframe *vfpframe;
2201 vfpframe = (struct target_vfp_sigframe *)regspace;
2202
2203 __get_user(magic, &vfpframe->magic);
2204 __get_user(sz, &vfpframe->size);
2205 if (magic != TARGET_VFP_MAGIC || sz != sizeof(*vfpframe)) {
2206 return 0;
2207 }
2208 for (i = 0; i < 32; i++) {
005e1a0a 2209 __get_user(float64_val(env->vfp.regs[i]), &vfpframe->ufp.fpregs[i]);
5f9099d9
PM
2210 }
2211 __get_user(fpscr, &vfpframe->ufp.fpscr);
2212 vfp_set_fpscr(env, fpscr);
2213 __get_user(fpexc, &vfpframe->ufp_exc.fpexc);
2214 /* Sanitise FPEXC: ensure VFP is enabled, FPINST2 is invalid
2215 * and the exception flag is cleared
2216 */
2217 fpexc |= (1 << 30);
2218 fpexc &= ~((1 << 31) | (1 << 28));
2219 env->vfp.xregs[ARM_VFP_FPEXC] = fpexc;
2220 __get_user(env->vfp.xregs[ARM_VFP_FPINST], &vfpframe->ufp_exc.fpinst);
2221 __get_user(env->vfp.xregs[ARM_VFP_FPINST2], &vfpframe->ufp_exc.fpinst2);
2222 return (abi_ulong*)(vfpframe + 1);
2223}
2224
05390248
AF
2225static abi_ulong *restore_sigframe_v2_iwmmxt(CPUARMState *env,
2226 abi_ulong *regspace)
a59d69da
PM
2227{
2228 int i;
2229 abi_ulong magic, sz;
2230 struct target_iwmmxt_sigframe *iwmmxtframe;
2231 iwmmxtframe = (struct target_iwmmxt_sigframe *)regspace;
2232
2233 __get_user(magic, &iwmmxtframe->magic);
2234 __get_user(sz, &iwmmxtframe->size);
2235 if (magic != TARGET_IWMMXT_MAGIC || sz != sizeof(*iwmmxtframe)) {
2236 return 0;
2237 }
2238 for (i = 0; i < 16; i++) {
2239 __get_user(env->iwmmxt.regs[i], &iwmmxtframe->regs[i]);
2240 }
2241 __get_user(env->vfp.xregs[ARM_IWMMXT_wCSSF], &iwmmxtframe->wcssf);
2242 __get_user(env->vfp.xregs[ARM_IWMMXT_wCASF], &iwmmxtframe->wcssf);
2243 __get_user(env->vfp.xregs[ARM_IWMMXT_wCGR0], &iwmmxtframe->wcgr0);
2244 __get_user(env->vfp.xregs[ARM_IWMMXT_wCGR1], &iwmmxtframe->wcgr1);
2245 __get_user(env->vfp.xregs[ARM_IWMMXT_wCGR2], &iwmmxtframe->wcgr2);
2246 __get_user(env->vfp.xregs[ARM_IWMMXT_wCGR3], &iwmmxtframe->wcgr3);
2247 return (abi_ulong*)(iwmmxtframe + 1);
2248}
2249
45eafb4d
TB
2250static int do_sigframe_return_v2(CPUARMState *env,
2251 target_ulong context_addr,
a8c33204
PB
2252 struct target_ucontext_v2 *uc)
2253{
2254 sigset_t host_set;
5f9099d9 2255 abi_ulong *regspace;
a8c33204
PB
2256
2257 target_to_host_sigset(&host_set, &uc->tuc_sigmask);
9eede5b6 2258 set_sigmask(&host_set);
a8c33204
PB
2259
2260 if (restore_sigcontext(env, &uc->tuc_mcontext))
2261 return 1;
2262
5f9099d9
PM
2263 /* Restore coprocessor signal frame */
2264 regspace = uc->tuc_regspace;
2265 if (arm_feature(env, ARM_FEATURE_VFP)) {
2266 regspace = restore_sigframe_v2_vfp(env, regspace);
2267 if (!regspace) {
2268 return 1;
2269 }
2270 }
a59d69da
PM
2271 if (arm_feature(env, ARM_FEATURE_IWMMXT)) {
2272 regspace = restore_sigframe_v2_iwmmxt(env, regspace);
2273 if (!regspace) {
2274 return 1;
2275 }
2276 }
5f9099d9 2277
45eafb4d
TB
2278 if (do_sigaltstack(context_addr
2279 + offsetof(struct target_ucontext_v2, tuc_stack),
2280 0, get_sp_from_cpustate(env)) == -EFAULT) {
a8c33204 2281 return 1;
45eafb4d 2282 }
a8c33204
PB
2283
2284#if 0
2285 /* Send SIGTRAP if we're single-stepping */
2286 if (ptrace_cancel_bpt(current))
da7c8647 2287 send_sig(SIGTRAP, current, 1);
a8c33204
PB
2288#endif
2289
2290 return 0;
2291}
2292
05390248 2293static long do_sigreturn_v2(CPUARMState *env)
a8c33204 2294{
da7c8647
TB
2295 abi_ulong frame_addr;
2296 struct sigframe_v2 *frame = NULL;
2297
2298 /*
2299 * Since we stacked the signal on a 64-bit boundary,
2300 * then 'sp' should be word aligned here. If it's
2301 * not, then the user is trying to mess with us.
2302 */
2303 frame_addr = env->regs[13];
2304 trace_user_do_sigreturn(env, frame_addr);
2305 if (frame_addr & 7) {
2306 goto badframe;
2307 }
978fae9f 2308
da7c8647
TB
2309 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1)) {
2310 goto badframe;
2311 }
a8c33204 2312
45eafb4d
TB
2313 if (do_sigframe_return_v2(env,
2314 frame_addr
2315 + offsetof(struct sigframe_v2, uc),
2316 &frame->uc)) {
da7c8647
TB
2317 goto badframe;
2318 }
a8c33204 2319
da7c8647 2320 unlock_user_struct(frame, frame_addr, 0);
f0267ef7 2321 return -TARGET_QEMU_ESIGRETURN;
a8c33204
PB
2322
2323badframe:
da7c8647 2324 unlock_user_struct(frame, frame_addr, 0);
c599d4d6
PM
2325 force_sig(TARGET_SIGSEGV);
2326 return -TARGET_QEMU_ESIGRETURN;
a8c33204
PB
2327}
2328
05390248 2329long do_sigreturn(CPUARMState *env)
a8c33204
PB
2330{
2331 if (get_osversion() >= 0x020612) {
2332 return do_sigreturn_v2(env);
2333 } else {
2334 return do_sigreturn_v1(env);
2335 }
2336}
2337
05390248 2338static long do_rt_sigreturn_v1(CPUARMState *env)
43fff238 2339{
da7c8647
TB
2340 abi_ulong frame_addr;
2341 struct rt_sigframe_v1 *frame = NULL;
2342 sigset_t host_set;
978fae9f 2343
da7c8647
TB
2344 /*
2345 * Since we stacked the signal on a 64-bit boundary,
2346 * then 'sp' should be word aligned here. If it's
2347 * not, then the user is trying to mess with us.
2348 */
2349 frame_addr = env->regs[13];
2350 trace_user_do_rt_sigreturn(env, frame_addr);
2351 if (frame_addr & 7) {
2352 goto badframe;
2353 }
a745ec6d 2354
da7c8647
TB
2355 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1)) {
2356 goto badframe;
2357 }
2358
2359 target_to_host_sigset(&host_set, &frame->uc.tuc_sigmask);
9eede5b6 2360 set_sigmask(&host_set);
a745ec6d 2361
da7c8647
TB
2362 if (restore_sigcontext(env, &frame->uc.tuc_mcontext)) {
2363 goto badframe;
2364 }
a745ec6d 2365
da7c8647
TB
2366 if (do_sigaltstack(frame_addr + offsetof(struct rt_sigframe_v1, uc.tuc_stack), 0, get_sp_from_cpustate(env)) == -EFAULT)
2367 goto badframe;
a745ec6d
PB
2368
2369#if 0
da7c8647
TB
2370 /* Send SIGTRAP if we're single-stepping */
2371 if (ptrace_cancel_bpt(current))
2372 send_sig(SIGTRAP, current, 1);
a745ec6d 2373#endif
da7c8647 2374 unlock_user_struct(frame, frame_addr, 0);
f0267ef7 2375 return -TARGET_QEMU_ESIGRETURN;
a745ec6d
PB
2376
2377badframe:
da7c8647 2378 unlock_user_struct(frame, frame_addr, 0);
c599d4d6
PM
2379 force_sig(TARGET_SIGSEGV);
2380 return -TARGET_QEMU_ESIGRETURN;
a745ec6d
PB
2381}
2382
05390248 2383static long do_rt_sigreturn_v2(CPUARMState *env)
a745ec6d 2384{
da7c8647
TB
2385 abi_ulong frame_addr;
2386 struct rt_sigframe_v2 *frame = NULL;
978fae9f 2387
da7c8647
TB
2388 /*
2389 * Since we stacked the signal on a 64-bit boundary,
2390 * then 'sp' should be word aligned here. If it's
2391 * not, then the user is trying to mess with us.
2392 */
2393 frame_addr = env->regs[13];
2394 trace_user_do_rt_sigreturn(env, frame_addr);
2395 if (frame_addr & 7) {
2396 goto badframe;
2397 }
2398
2399 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1)) {
2400 goto badframe;
2401 }
43fff238 2402
45eafb4d
TB
2403 if (do_sigframe_return_v2(env,
2404 frame_addr
2405 + offsetof(struct rt_sigframe_v2, uc),
2406 &frame->uc)) {
da7c8647
TB
2407 goto badframe;
2408 }
a04e134a 2409
da7c8647 2410 unlock_user_struct(frame, frame_addr, 0);
f0267ef7 2411 return -TARGET_QEMU_ESIGRETURN;
43fff238
FB
2412
2413badframe:
da7c8647 2414 unlock_user_struct(frame, frame_addr, 0);
c599d4d6
PM
2415 force_sig(TARGET_SIGSEGV);
2416 return -TARGET_QEMU_ESIGRETURN;
43fff238
FB
2417}
2418
05390248 2419long do_rt_sigreturn(CPUARMState *env)
a745ec6d
PB
2420{
2421 if (get_osversion() >= 0x020612) {
2422 return do_rt_sigreturn_v2(env);
2423 } else {
2424 return do_rt_sigreturn_v1(env);
2425 }
2426}
2427
6d5e216d 2428#elif defined(TARGET_SPARC)
80a9d035 2429
6d5e216d
FB
2430#define __SUNOS_MAXWIN 31
2431
2432/* This is what SunOS does, so shall I. */
2433struct target_sigcontext {
da7c8647 2434 abi_ulong sigc_onstack; /* state to restore */
6d5e216d 2435
da7c8647
TB
2436 abi_ulong sigc_mask; /* sigmask to restore */
2437 abi_ulong sigc_sp; /* stack pointer */
2438 abi_ulong sigc_pc; /* program counter */
2439 abi_ulong sigc_npc; /* next program counter */
2440 abi_ulong sigc_psr; /* for condition codes etc */
2441 abi_ulong sigc_g1; /* User uses these two registers */
2442 abi_ulong sigc_o0; /* within the trampoline code. */
6d5e216d 2443
da7c8647 2444 /* Now comes information regarding the users window set
6d5e216d
FB
2445 * at the time of the signal.
2446 */
da7c8647 2447 abi_ulong sigc_oswins; /* outstanding windows */
6d5e216d 2448
da7c8647
TB
2449 /* stack ptrs for each regwin buf */
2450 char *sigc_spbuf[__SUNOS_MAXWIN];
6d5e216d 2451
da7c8647
TB
2452 /* Windows to restore after signal */
2453 struct {
2454 abi_ulong locals[8];
2455 abi_ulong ins[8];
2456 } sigc_wbuf[__SUNOS_MAXWIN];
6d5e216d
FB
2457};
2458/* A Sparc stack frame */
2459struct sparc_stackf {
da7c8647
TB
2460 abi_ulong locals[8];
2461 abi_ulong ins[8];
2462 /* It's simpler to treat fp and callers_pc as elements of ins[]
e321c34a
PM
2463 * since we never need to access them ourselves.
2464 */
da7c8647
TB
2465 char *structptr;
2466 abi_ulong xargs[6];
2467 abi_ulong xxargs[1];
6d5e216d
FB
2468};
2469
2470typedef struct {
da7c8647
TB
2471 struct {
2472 abi_ulong psr;
2473 abi_ulong pc;
2474 abi_ulong npc;
2475 abi_ulong y;
2476 abi_ulong u_regs[16]; /* globals and ins */
2477 } si_regs;
2478 int si_mask;
6d5e216d
FB
2479} __siginfo_t;
2480
2481typedef struct {
da7c8647
TB
2482 abi_ulong si_float_regs[32];
2483 unsigned long si_fsr;
2484 unsigned long si_fpqdepth;
2485 struct {
2486 unsigned long *insn_addr;
2487 unsigned long insn;
2488 } si_fpqueue [16];
c227f099 2489} qemu_siginfo_fpu_t;
6d5e216d
FB
2490
2491
2492struct target_signal_frame {
da7c8647
TB
2493 struct sparc_stackf ss;
2494 __siginfo_t info;
2495 abi_ulong fpu_save;
2496 abi_ulong insns[2] __attribute__ ((aligned (8)));
2497 abi_ulong extramask[TARGET_NSIG_WORDS - 1];
2498 abi_ulong extra_size; /* Should be 0 */
2499 qemu_siginfo_fpu_t fpu_state;
6d5e216d
FB
2500};
2501struct target_rt_signal_frame {
da7c8647
TB
2502 struct sparc_stackf ss;
2503 siginfo_t info;
2504 abi_ulong regs[20];
2505 sigset_t mask;
2506 abi_ulong fpu_save;
2507 unsigned int insns[2];
2508 stack_t stack;
2509 unsigned int extra_size; /* Should be 0 */
2510 qemu_siginfo_fpu_t fpu_state;
6d5e216d
FB
2511};
2512
e80cfcfc
FB
2513#define UREG_O0 16
2514#define UREG_O6 22
2515#define UREG_I0 0
2516#define UREG_I1 1
2517#define UREG_I2 2
5bfb56b2
BS
2518#define UREG_I3 3
2519#define UREG_I4 4
2520#define UREG_I5 5
e80cfcfc
FB
2521#define UREG_I6 6
2522#define UREG_I7 7
2523#define UREG_L0 8
6d5e216d
FB
2524#define UREG_FP UREG_I6
2525#define UREG_SP UREG_O6
2526
624f7979 2527static inline abi_ulong get_sigframe(struct target_sigaction *sa,
05390248
AF
2528 CPUSPARCState *env,
2529 unsigned long framesize)
6d5e216d 2530{
da7c8647 2531 abi_ulong sp;
6d5e216d 2532
da7c8647 2533 sp = env->regwptr[UREG_FP];
6d5e216d 2534
da7c8647
TB
2535 /* This is the X/Open sanctioned signal stack switching. */
2536 if (sa->sa_flags & TARGET_SA_ONSTACK) {
2537 if (!on_sig_stack(sp)
2538 && !((target_sigaltstack_used.ss_sp + target_sigaltstack_used.ss_size) & 7)) {
2539 sp = target_sigaltstack_used.ss_sp + target_sigaltstack_used.ss_size;
2540 }
2541 }
2542 return sp - framesize;
6d5e216d
FB
2543}
2544
2545static int
05390248 2546setup___siginfo(__siginfo_t *si, CPUSPARCState *env, abi_ulong mask)
6d5e216d 2547{
da7c8647 2548 int err = 0, i;
6d5e216d 2549
1d8b512b
RV
2550 __put_user(env->psr, &si->si_regs.psr);
2551 __put_user(env->pc, &si->si_regs.pc);
2552 __put_user(env->npc, &si->si_regs.npc);
2553 __put_user(env->y, &si->si_regs.y);
da7c8647 2554 for (i=0; i < 8; i++) {
1d8b512b 2555 __put_user(env->gregs[i], &si->si_regs.u_regs[i]);
da7c8647
TB
2556 }
2557 for (i=0; i < 8; i++) {
1d8b512b 2558 __put_user(env->regwptr[UREG_I0 + i], &si->si_regs.u_regs[i+8]);
da7c8647 2559 }
1d8b512b 2560 __put_user(mask, &si->si_mask);
da7c8647 2561 return err;
6d5e216d 2562}
e80cfcfc 2563
80a9d035 2564#if 0
6d5e216d
FB
2565static int
2566setup_sigcontext(struct target_sigcontext *sc, /*struct _fpstate *fpstate,*/
05390248 2567 CPUSPARCState *env, unsigned long mask)
6d5e216d 2568{
da7c8647 2569 int err = 0;
6d5e216d 2570
1d8b512b
RV
2571 __put_user(mask, &sc->sigc_mask);
2572 __put_user(env->regwptr[UREG_SP], &sc->sigc_sp);
2573 __put_user(env->pc, &sc->sigc_pc);
2574 __put_user(env->npc, &sc->sigc_npc);
2575 __put_user(env->psr, &sc->sigc_psr);
2576 __put_user(env->gregs[1], &sc->sigc_g1);
2577 __put_user(env->regwptr[UREG_O0], &sc->sigc_o0);
6d5e216d 2578
da7c8647 2579 return err;
6d5e216d 2580}
80a9d035 2581#endif
6d5e216d
FB
2582#define NF_ALIGNEDSZ (((sizeof(struct target_signal_frame) + 7) & (~7)))
2583
624f7979 2584static void setup_frame(int sig, struct target_sigaction *ka,
05390248 2585 target_sigset_t *set, CPUSPARCState *env)
6d5e216d 2586{
da7c8647
TB
2587 abi_ulong sf_addr;
2588 struct target_signal_frame *sf;
2589 int sigframe_size, err, i;
6d5e216d 2590
da7c8647
TB
2591 /* 1. Make sure everything is clean */
2592 //synchronize_user_stack();
6d5e216d 2593
da7c8647
TB
2594 sigframe_size = NF_ALIGNEDSZ;
2595 sf_addr = get_sigframe(ka, env, sigframe_size);
2596 trace_user_setup_frame(env, sf_addr);
6d5e216d 2597
da7c8647
TB
2598 sf = lock_user(VERIFY_WRITE, sf_addr,
2599 sizeof(struct target_signal_frame), 0);
2600 if (!sf) {
2601 goto sigsegv;
2602 }
6d5e216d 2603#if 0
da7c8647
TB
2604 if (invalid_frame_pointer(sf, sigframe_size))
2605 goto sigill_and_return;
6d5e216d 2606#endif
da7c8647
TB
2607 /* 2. Save the current process state */
2608 err = setup___siginfo(&sf->info, env, set->sig[0]);
1d8b512b 2609 __put_user(0, &sf->extra_size);
6d5e216d 2610
da7c8647
TB
2611 //save_fpu_state(regs, &sf->fpu_state);
2612 //__put_user(&sf->fpu_state, &sf->fpu_save);
6d5e216d 2613
1d8b512b 2614 __put_user(set->sig[0], &sf->info.si_mask);
da7c8647 2615 for (i = 0; i < TARGET_NSIG_WORDS - 1; i++) {
1d8b512b 2616 __put_user(set->sig[i + 1], &sf->extramask[i]);
da7c8647 2617 }
6d5e216d 2618
da7c8647 2619 for (i = 0; i < 8; i++) {
1d8b512b 2620 __put_user(env->regwptr[i + UREG_L0], &sf->ss.locals[i]);
da7c8647
TB
2621 }
2622 for (i = 0; i < 8; i++) {
1d8b512b 2623 __put_user(env->regwptr[i + UREG_I0], &sf->ss.ins[i]);
da7c8647
TB
2624 }
2625 if (err)
2626 goto sigsegv;
2627
2628 /* 3. signal handler back-trampoline and parameters */
2629 env->regwptr[UREG_FP] = sf_addr;
2630 env->regwptr[UREG_I0] = sig;
2631 env->regwptr[UREG_I1] = sf_addr +
2632 offsetof(struct target_signal_frame, info);
2633 env->regwptr[UREG_I2] = sf_addr +
2634 offsetof(struct target_signal_frame, info);
2635
2636 /* 4. signal handler */
2637 env->pc = ka->_sa_handler;
2638 env->npc = (env->pc + 4);
2639 /* 5. return to kernel instructions */
2640 if (ka->sa_restorer) {
2641 env->regwptr[UREG_I7] = ka->sa_restorer;
2642 } else {
2643 uint32_t val32;
2644
2645 env->regwptr[UREG_I7] = sf_addr +
2646 offsetof(struct target_signal_frame, insns) - 2 * 4;
2647
2648 /* mov __NR_sigreturn, %g1 */
2649 val32 = 0x821020d8;
1d8b512b 2650 __put_user(val32, &sf->insns[0]);
6d5e216d 2651
da7c8647
TB
2652 /* t 0x10 */
2653 val32 = 0x91d02010;
1d8b512b 2654 __put_user(val32, &sf->insns[1]);
da7c8647
TB
2655 if (err)
2656 goto sigsegv;
6d5e216d 2657
da7c8647
TB
2658 /* Flush instruction space. */
2659 // flush_sig_insns(current->mm, (unsigned long) &(sf->insns[0]));
2660 // tb_flush(env);
2661 }
2662 unlock_user(sf, sf_addr, sizeof(struct target_signal_frame));
2663 return;
459a4017
FB
2664#if 0
2665sigill_and_return:
da7c8647 2666 force_sig(TARGET_SIGILL);
459a4017 2667#endif
6d5e216d 2668sigsegv:
da7c8647 2669 unlock_user(sf, sf_addr, sizeof(struct target_signal_frame));
09391669 2670 force_sigsegv(sig);
6d5e216d 2671}
6d5e216d 2672
624f7979 2673static void setup_rt_frame(int sig, struct target_sigaction *ka,
c227f099 2674 target_siginfo_t *info,
05390248 2675 target_sigset_t *set, CPUSPARCState *env)
6d5e216d
FB
2676{
2677 fprintf(stderr, "setup_rt_frame: not implemented\n");
2678}
2679
05390248 2680long do_sigreturn(CPUSPARCState *env)
6d5e216d 2681{
da7c8647
TB
2682 abi_ulong sf_addr;
2683 struct target_signal_frame *sf;
2684 uint32_t up_psr, pc, npc;
2685 target_sigset_t set;
2686 sigset_t host_set;
2687 int err=0, i;
6d5e216d 2688
da7c8647
TB
2689 sf_addr = env->regwptr[UREG_FP];
2690 trace_user_do_sigreturn(env, sf_addr);
2691 if (!lock_user_struct(VERIFY_READ, sf, sf_addr, 1)) {
2692 goto segv_and_exit;
2693 }
6d5e216d 2694
da7c8647 2695 /* 1. Make sure we are not getting garbage from the user */
6d5e216d 2696
da7c8647
TB
2697 if (sf_addr & 3)
2698 goto segv_and_exit;
6d5e216d 2699
da7c8647
TB
2700 __get_user(pc, &sf->info.si_regs.pc);
2701 __get_user(npc, &sf->info.si_regs.npc);
6d5e216d 2702
da7c8647
TB
2703 if ((pc | npc) & 3) {
2704 goto segv_and_exit;
2705 }
6d5e216d 2706
da7c8647
TB
2707 /* 2. Restore the state */
2708 __get_user(up_psr, &sf->info.si_regs.psr);
e80cfcfc 2709
da7c8647
TB
2710 /* User can only change condition codes and FPU enabling in %psr. */
2711 env->psr = (up_psr & (PSR_ICC /* | PSR_EF */))
2712 | (env->psr & ~(PSR_ICC /* | PSR_EF */));
a315a145 2713
da7c8647
TB
2714 env->pc = pc;
2715 env->npc = npc;
2716 __get_user(env->y, &sf->info.si_regs.y);
2717 for (i=0; i < 8; i++) {
2718 __get_user(env->gregs[i], &sf->info.si_regs.u_regs[i]);
2719 }
2720 for (i=0; i < 8; i++) {
2721 __get_user(env->regwptr[i + UREG_I0], &sf->info.si_regs.u_regs[i+8]);
2722 }
6d5e216d 2723
da7c8647 2724 /* FIXME: implement FPU save/restore:
2aec3a27
PM
2725 * __get_user(fpu_save, &sf->fpu_save);
2726 * if (fpu_save)
2727 * err |= restore_fpu_state(env, fpu_save);
2728 */
6d5e216d 2729
da7c8647 2730 /* This is pretty much atomic, no amount locking would prevent
6d5e216d
FB
2731 * the races which exist anyways.
2732 */
da7c8647
TB
2733 __get_user(set.sig[0], &sf->info.si_mask);
2734 for(i = 1; i < TARGET_NSIG_WORDS; i++) {
2735 __get_user(set.sig[i], &sf->extramask[i - 1]);
2736 }
e80cfcfc 2737
da7c8647 2738 target_to_host_sigset_internal(&host_set, &set);
9eede5b6 2739 set_sigmask(&host_set);
6d5e216d 2740
da7c8647
TB
2741 if (err) {
2742 goto segv_and_exit;
2743 }
2744 unlock_user_struct(sf, sf_addr, 0);
c0bea68f 2745 return -TARGET_QEMU_ESIGRETURN;
6d5e216d
FB
2746
2747segv_and_exit:
da7c8647
TB
2748 unlock_user_struct(sf, sf_addr, 0);
2749 force_sig(TARGET_SIGSEGV);
c599d4d6 2750 return -TARGET_QEMU_ESIGRETURN;
6d5e216d
FB
2751}
2752
05390248 2753long do_rt_sigreturn(CPUSPARCState *env)
6d5e216d 2754{
c8ee0a44 2755 trace_user_do_rt_sigreturn(env, 0);
6d5e216d 2756 fprintf(stderr, "do_rt_sigreturn: not implemented\n");
f8b0aa25 2757 return -TARGET_ENOSYS;
6d5e216d
FB
2758}
2759
459a4017 2760#if defined(TARGET_SPARC64) && !defined(TARGET_ABI32)
5bfb56b2
BS
2761#define MC_TSTATE 0
2762#define MC_PC 1
2763#define MC_NPC 2
2764#define MC_Y 3
2765#define MC_G1 4
2766#define MC_G2 5
2767#define MC_G3 6
2768#define MC_G4 7
2769#define MC_G5 8
2770#define MC_G6 9
2771#define MC_G7 10
2772#define MC_O0 11
2773#define MC_O1 12
2774#define MC_O2 13
2775#define MC_O3 14
2776#define MC_O4 15
2777#define MC_O5 16
2778#define MC_O6 17
2779#define MC_O7 18
2780#define MC_NGREG 19
2781
c227f099
AL
2782typedef abi_ulong target_mc_greg_t;
2783typedef target_mc_greg_t target_mc_gregset_t[MC_NGREG];
5bfb56b2
BS
2784
2785struct target_mc_fq {
992f48a0 2786 abi_ulong *mcfq_addr;
5bfb56b2
BS
2787 uint32_t mcfq_insn;
2788};
2789
2790struct target_mc_fpu {
2791 union {
2792 uint32_t sregs[32];
2793 uint64_t dregs[32];
2794 //uint128_t qregs[16];
2795 } mcfpu_fregs;
992f48a0
BS
2796 abi_ulong mcfpu_fsr;
2797 abi_ulong mcfpu_fprs;
2798 abi_ulong mcfpu_gsr;
5bfb56b2
BS
2799 struct target_mc_fq *mcfpu_fq;
2800 unsigned char mcfpu_qcnt;
2801 unsigned char mcfpu_qentsz;
2802 unsigned char mcfpu_enab;
2803};
c227f099 2804typedef struct target_mc_fpu target_mc_fpu_t;
5bfb56b2
BS
2805
2806typedef struct {
c227f099
AL
2807 target_mc_gregset_t mc_gregs;
2808 target_mc_greg_t mc_fp;
2809 target_mc_greg_t mc_i7;
2810 target_mc_fpu_t mc_fpregs;
2811} target_mcontext_t;
5bfb56b2
BS
2812
2813struct target_ucontext {
60e99246
AJ
2814 struct target_ucontext *tuc_link;
2815 abi_ulong tuc_flags;
2816 target_sigset_t tuc_sigmask;
2817 target_mcontext_t tuc_mcontext;
5bfb56b2
BS
2818};
2819
2820/* A V9 register window */
2821struct target_reg_window {
992f48a0
BS
2822 abi_ulong locals[8];
2823 abi_ulong ins[8];
5bfb56b2
BS
2824};
2825
2826#define TARGET_STACK_BIAS 2047
2827
2828/* {set, get}context() needed for 64-bit SparcLinux userland. */
2829void sparc64_set_context(CPUSPARCState *env)
2830{
459a4017
FB
2831 abi_ulong ucp_addr;
2832 struct target_ucontext *ucp;
c227f099 2833 target_mc_gregset_t *grp;
992f48a0 2834 abi_ulong pc, npc, tstate;
459a4017 2835 abi_ulong fp, i7, w_addr;
5bfb56b2 2836 unsigned int i;
5bfb56b2 2837
459a4017 2838 ucp_addr = env->regwptr[UREG_I0];
da7c8647 2839 if (!lock_user_struct(VERIFY_READ, ucp, ucp_addr, 1)) {
459a4017 2840 goto do_sigsegv;
da7c8647 2841 }
60e99246 2842 grp = &ucp->tuc_mcontext.mc_gregs;
1d8b512b
RV
2843 __get_user(pc, &((*grp)[MC_PC]));
2844 __get_user(npc, &((*grp)[MC_NPC]));
da7c8647 2845 if ((pc | npc) & 3) {
5bfb56b2 2846 goto do_sigsegv;
da7c8647 2847 }
5bfb56b2 2848 if (env->regwptr[UREG_I1]) {
c227f099 2849 target_sigset_t target_set;
5bfb56b2
BS
2850 sigset_t set;
2851
2852 if (TARGET_NSIG_WORDS == 1) {
be3ef5c7 2853 __get_user(target_set.sig[0], &ucp->tuc_sigmask.sig[0]);
5bfb56b2 2854 } else {
459a4017 2855 abi_ulong *src, *dst;
60e99246 2856 src = ucp->tuc_sigmask.sig;
459a4017 2857 dst = target_set.sig;
0d9e61c2 2858 for (i = 0; i < TARGET_NSIG_WORDS; i++, dst++, src++) {
1d8b512b 2859 __get_user(*dst, src);
0d9e61c2 2860 }
5bfb56b2
BS
2861 }
2862 target_to_host_sigset_internal(&set, &target_set);
9eede5b6 2863 set_sigmask(&set);
5bfb56b2
BS
2864 }
2865 env->pc = pc;
2866 env->npc = npc;
1d8b512b
RV
2867 __get_user(env->y, &((*grp)[MC_Y]));
2868 __get_user(tstate, &((*grp)[MC_TSTATE]));
5bfb56b2 2869 env->asi = (tstate >> 24) & 0xff;
5a834bb4
BS
2870 cpu_put_ccr(env, tstate >> 32);
2871 cpu_put_cwp64(env, tstate & 0x1f);
1d8b512b
RV
2872 __get_user(env->gregs[1], (&(*grp)[MC_G1]));
2873 __get_user(env->gregs[2], (&(*grp)[MC_G2]));
2874 __get_user(env->gregs[3], (&(*grp)[MC_G3]));
2875 __get_user(env->gregs[4], (&(*grp)[MC_G4]));
2876 __get_user(env->gregs[5], (&(*grp)[MC_G5]));
2877 __get_user(env->gregs[6], (&(*grp)[MC_G6]));
2878 __get_user(env->gregs[7], (&(*grp)[MC_G7]));
2879 __get_user(env->regwptr[UREG_I0], (&(*grp)[MC_O0]));
2880 __get_user(env->regwptr[UREG_I1], (&(*grp)[MC_O1]));
2881 __get_user(env->regwptr[UREG_I2], (&(*grp)[MC_O2]));
2882 __get_user(env->regwptr[UREG_I3], (&(*grp)[MC_O3]));
2883 __get_user(env->regwptr[UREG_I4], (&(*grp)[MC_O4]));
2884 __get_user(env->regwptr[UREG_I5], (&(*grp)[MC_O5]));
2885 __get_user(env->regwptr[UREG_I6], (&(*grp)[MC_O6]));
2886 __get_user(env->regwptr[UREG_I7], (&(*grp)[MC_O7]));
2887
2888 __get_user(fp, &(ucp->tuc_mcontext.mc_fp));
2889 __get_user(i7, &(ucp->tuc_mcontext.mc_i7));
579a97f7 2890
459a4017 2891 w_addr = TARGET_STACK_BIAS+env->regwptr[UREG_I6];
da7c8647
TB
2892 if (put_user(fp, w_addr + offsetof(struct target_reg_window, ins[6]),
2893 abi_ulong) != 0) {
459a4017 2894 goto do_sigsegv;
da7c8647
TB
2895 }
2896 if (put_user(i7, w_addr + offsetof(struct target_reg_window, ins[7]),
2897 abi_ulong) != 0) {
459a4017 2898 goto do_sigsegv;
da7c8647 2899 }
c7b016ba
PM
2900 /* FIXME this does not match how the kernel handles the FPU in
2901 * its sparc64_set_context implementation. In particular the FPU
2902 * is only restored if fenab is non-zero in:
2903 * __get_user(fenab, &(ucp->tuc_mcontext.mc_fpregs.mcfpu_enab));
2904 */
be3ef5c7 2905 __get_user(env->fprs, &(ucp->tuc_mcontext.mc_fpregs.mcfpu_fprs));
459a4017 2906 {
30038fd8
RH
2907 uint32_t *src = ucp->tuc_mcontext.mc_fpregs.mcfpu_fregs.sregs;
2908 for (i = 0; i < 64; i++, src++) {
2909 if (i & 1) {
1d8b512b 2910 __get_user(env->fpr[i/2].l.lower, src);
30038fd8 2911 } else {
1d8b512b 2912 __get_user(env->fpr[i/2].l.upper, src);
30038fd8
RH
2913 }
2914 }
459a4017 2915 }
1d8b512b
RV
2916 __get_user(env->fsr,
2917 &(ucp->tuc_mcontext.mc_fpregs.mcfpu_fsr));
2918 __get_user(env->gsr,
2919 &(ucp->tuc_mcontext.mc_fpregs.mcfpu_gsr));
459a4017 2920 unlock_user_struct(ucp, ucp_addr, 0);
5bfb56b2 2921 return;
da7c8647 2922do_sigsegv:
459a4017 2923 unlock_user_struct(ucp, ucp_addr, 0);
66393fb9 2924 force_sig(TARGET_SIGSEGV);
5bfb56b2
BS
2925}
2926
2927void sparc64_get_context(CPUSPARCState *env)
2928{
459a4017
FB
2929 abi_ulong ucp_addr;
2930 struct target_ucontext *ucp;
c227f099
AL
2931 target_mc_gregset_t *grp;
2932 target_mcontext_t *mcp;
459a4017 2933 abi_ulong fp, i7, w_addr;
5bfb56b2
BS
2934 int err;
2935 unsigned int i;
c227f099 2936 target_sigset_t target_set;
5bfb56b2
BS
2937 sigset_t set;
2938
459a4017 2939 ucp_addr = env->regwptr[UREG_I0];
da7c8647 2940 if (!lock_user_struct(VERIFY_WRITE, ucp, ucp_addr, 0)) {
459a4017 2941 goto do_sigsegv;
da7c8647 2942 }
459a4017 2943
60e99246 2944 mcp = &ucp->tuc_mcontext;
5bfb56b2
BS
2945 grp = &mcp->mc_gregs;
2946
2947 /* Skip over the trap instruction, first. */
2948 env->pc = env->npc;
2949 env->npc += 4;
2950
3d3efba0
PM
2951 /* If we're only reading the signal mask then do_sigprocmask()
2952 * is guaranteed not to fail, which is important because we don't
2953 * have any way to signal a failure or restart this operation since
2954 * this is not a normal syscall.
2955 */
2956 err = do_sigprocmask(0, NULL, &set);
2957 assert(err == 0);
5bfb56b2 2958 host_to_target_sigset_internal(&target_set, &set);
459a4017 2959 if (TARGET_NSIG_WORDS == 1) {
1d8b512b
RV
2960 __put_user(target_set.sig[0],
2961 (abi_ulong *)&ucp->tuc_sigmask);
459a4017
FB
2962 } else {
2963 abi_ulong *src, *dst;
2964 src = target_set.sig;
60e99246 2965 dst = ucp->tuc_sigmask.sig;
0d9e61c2 2966 for (i = 0; i < TARGET_NSIG_WORDS; i++, dst++, src++) {
1d8b512b 2967 __put_user(*src, dst);
0d9e61c2 2968 }
5bfb56b2
BS
2969 if (err)
2970 goto do_sigsegv;
2971 }
2972
459a4017 2973 /* XXX: tstate must be saved properly */
1d8b512b
RV
2974 // __put_user(env->tstate, &((*grp)[MC_TSTATE]));
2975 __put_user(env->pc, &((*grp)[MC_PC]));
2976 __put_user(env->npc, &((*grp)[MC_NPC]));
2977 __put_user(env->y, &((*grp)[MC_Y]));
2978 __put_user(env->gregs[1], &((*grp)[MC_G1]));
2979 __put_user(env->gregs[2], &((*grp)[MC_G2]));
2980 __put_user(env->gregs[3], &((*grp)[MC_G3]));
2981 __put_user(env->gregs[4], &((*grp)[MC_G4]));
2982 __put_user(env->gregs[5], &((*grp)[MC_G5]));
2983 __put_user(env->gregs[6], &((*grp)[MC_G6]));
2984 __put_user(env->gregs[7], &((*grp)[MC_G7]));
2985 __put_user(env->regwptr[UREG_I0], &((*grp)[MC_O0]));
2986 __put_user(env->regwptr[UREG_I1], &((*grp)[MC_O1]));
2987 __put_user(env->regwptr[UREG_I2], &((*grp)[MC_O2]));
2988 __put_user(env->regwptr[UREG_I3], &((*grp)[MC_O3]));
2989 __put_user(env->regwptr[UREG_I4], &((*grp)[MC_O4]));
2990 __put_user(env->regwptr[UREG_I5], &((*grp)[MC_O5]));
2991 __put_user(env->regwptr[UREG_I6], &((*grp)[MC_O6]));
2992 __put_user(env->regwptr[UREG_I7], &((*grp)[MC_O7]));
579a97f7 2993
459a4017
FB
2994 w_addr = TARGET_STACK_BIAS+env->regwptr[UREG_I6];
2995 fp = i7 = 0;
da7c8647
TB
2996 if (get_user(fp, w_addr + offsetof(struct target_reg_window, ins[6]),
2997 abi_ulong) != 0) {
459a4017 2998 goto do_sigsegv;
da7c8647
TB
2999 }
3000 if (get_user(i7, w_addr + offsetof(struct target_reg_window, ins[7]),
3001 abi_ulong) != 0) {
459a4017 3002 goto do_sigsegv;
da7c8647 3003 }
1d8b512b
RV
3004 __put_user(fp, &(mcp->mc_fp));
3005 __put_user(i7, &(mcp->mc_i7));
5bfb56b2 3006
459a4017 3007 {
30038fd8
RH
3008 uint32_t *dst = ucp->tuc_mcontext.mc_fpregs.mcfpu_fregs.sregs;
3009 for (i = 0; i < 64; i++, dst++) {
3010 if (i & 1) {
1d8b512b 3011 __put_user(env->fpr[i/2].l.lower, dst);
30038fd8 3012 } else {
1d8b512b 3013 __put_user(env->fpr[i/2].l.upper, dst);
30038fd8
RH
3014 }
3015 }
459a4017 3016 }
1d8b512b
RV
3017 __put_user(env->fsr, &(mcp->mc_fpregs.mcfpu_fsr));
3018 __put_user(env->gsr, &(mcp->mc_fpregs.mcfpu_gsr));
3019 __put_user(env->fprs, &(mcp->mc_fpregs.mcfpu_fprs));
5bfb56b2
BS
3020
3021 if (err)
3022 goto do_sigsegv;
459a4017 3023 unlock_user_struct(ucp, ucp_addr, 1);
5bfb56b2 3024 return;
da7c8647 3025do_sigsegv:
459a4017 3026 unlock_user_struct(ucp, ucp_addr, 1);
66393fb9 3027 force_sig(TARGET_SIGSEGV);
5bfb56b2
BS
3028}
3029#endif
ff970904 3030#elif defined(TARGET_MIPS) || defined(TARGET_MIPS64)
106ec879 3031
ff970904 3032# if defined(TARGET_ABI_MIPSO32)
106ec879
FB
3033struct target_sigcontext {
3034 uint32_t sc_regmask; /* Unused */
3035 uint32_t sc_status;
3036 uint64_t sc_pc;
3037 uint64_t sc_regs[32];
3038 uint64_t sc_fpregs[32];
3039 uint32_t sc_ownedfp; /* Unused */
3040 uint32_t sc_fpc_csr;
3041 uint32_t sc_fpc_eir; /* Unused */
3042 uint32_t sc_used_math;
3043 uint32_t sc_dsp; /* dsp status, was sc_ssflags */
94c5495d 3044 uint32_t pad0;
106ec879
FB
3045 uint64_t sc_mdhi;
3046 uint64_t sc_mdlo;
3047 target_ulong sc_hi1; /* Was sc_cause */
3048 target_ulong sc_lo1; /* Was sc_badvaddr */
3049 target_ulong sc_hi2; /* Was sc_sigset[4] */
3050 target_ulong sc_lo2;
3051 target_ulong sc_hi3;
3052 target_ulong sc_lo3;
3053};
ff970904
RH
3054# else /* N32 || N64 */
3055struct target_sigcontext {
3056 uint64_t sc_regs[32];
3057 uint64_t sc_fpregs[32];
3058 uint64_t sc_mdhi;
3059 uint64_t sc_hi1;
3060 uint64_t sc_hi2;
3061 uint64_t sc_hi3;
3062 uint64_t sc_mdlo;
3063 uint64_t sc_lo1;
3064 uint64_t sc_lo2;
3065 uint64_t sc_lo3;
3066 uint64_t sc_pc;
3067 uint32_t sc_fpc_csr;
3068 uint32_t sc_used_math;
3069 uint32_t sc_dsp;
3070 uint32_t sc_reserved;
3071};
3072# endif /* O32 */
106ec879
FB
3073
3074struct sigframe {
3075 uint32_t sf_ass[4]; /* argument save space for o32 */
3076 uint32_t sf_code[2]; /* signal trampoline */
3077 struct target_sigcontext sf_sc;
c227f099 3078 target_sigset_t sf_mask;
106ec879
FB
3079};
3080
0b1bcb00 3081struct target_ucontext {
60e99246
AJ
3082 target_ulong tuc_flags;
3083 target_ulong tuc_link;
3084 target_stack_t tuc_stack;
94c5495d 3085 target_ulong pad0;
60e99246
AJ
3086 struct target_sigcontext tuc_mcontext;
3087 target_sigset_t tuc_sigmask;
0b1bcb00
PB
3088};
3089
3090struct target_rt_sigframe {
3091 uint32_t rs_ass[4]; /* argument save space for o32 */
3092 uint32_t rs_code[2]; /* signal trampoline */
3093 struct target_siginfo rs_info;
3094 struct target_ucontext rs_uc;
3095};
3096
106ec879
FB
3097/* Install trampoline to jump back from signal handler */
3098static inline int install_sigtramp(unsigned int *tramp, unsigned int syscall)
3099{
084d0497 3100 int err = 0;
106ec879
FB
3101
3102 /*
084d0497
RH
3103 * Set up the return code ...
3104 *
3105 * li v0, __NR__foo_sigreturn
3106 * syscall
3107 */
106ec879 3108
1d8b512b
RV
3109 __put_user(0x24020000 + syscall, tramp + 0);
3110 __put_user(0x0000000c , tramp + 1);
106ec879
FB
3111 return err;
3112}
3113
41ecc72b 3114static inline void setup_sigcontext(CPUMIPSState *regs,
da7c8647 3115 struct target_sigcontext *sc)
106ec879 3116{
084d0497 3117 int i;
106ec879 3118
1d8b512b 3119 __put_user(exception_resume_pc(regs), &sc->sc_pc);
1239b472 3120 regs->hflags &= ~MIPS_HFLAG_BMASK;
106ec879 3121
084d0497
RH
3122 __put_user(0, &sc->sc_regs[0]);
3123 for (i = 1; i < 32; ++i) {
1d8b512b 3124 __put_user(regs->active_tc.gpr[i], &sc->sc_regs[i]);
084d0497 3125 }
106ec879 3126
1d8b512b
RV
3127 __put_user(regs->active_tc.HI[0], &sc->sc_mdhi);
3128 __put_user(regs->active_tc.LO[0], &sc->sc_mdlo);
106ec879 3129
084d0497
RH
3130 /* Rather than checking for dsp existence, always copy. The storage
3131 would just be garbage otherwise. */
1d8b512b
RV
3132 __put_user(regs->active_tc.HI[1], &sc->sc_hi1);
3133 __put_user(regs->active_tc.HI[2], &sc->sc_hi2);
3134 __put_user(regs->active_tc.HI[3], &sc->sc_hi3);
3135 __put_user(regs->active_tc.LO[1], &sc->sc_lo1);
3136 __put_user(regs->active_tc.LO[2], &sc->sc_lo2);
3137 __put_user(regs->active_tc.LO[3], &sc->sc_lo3);
084d0497
RH
3138 {
3139 uint32_t dsp = cpu_rddsp(0x3ff, regs);
1d8b512b 3140 __put_user(dsp, &sc->sc_dsp);
106ec879 3141 }
106ec879 3142
1d8b512b 3143 __put_user(1, &sc->sc_used_math);
106ec879 3144
084d0497 3145 for (i = 0; i < 32; ++i) {
1d8b512b 3146 __put_user(regs->active_fpu.fpr[i].d, &sc->sc_fpregs[i]);
106ec879 3147 }
106ec879
FB
3148}
3149
016d2e1d 3150static inline void
05390248 3151restore_sigcontext(CPUMIPSState *regs, struct target_sigcontext *sc)
106ec879 3152{
084d0497 3153 int i;
106ec879 3154
1d8b512b 3155 __get_user(regs->CP0_EPC, &sc->sc_pc);
106ec879 3156
1d8b512b
RV
3157 __get_user(regs->active_tc.HI[0], &sc->sc_mdhi);
3158 __get_user(regs->active_tc.LO[0], &sc->sc_mdlo);
106ec879 3159
084d0497 3160 for (i = 1; i < 32; ++i) {
1d8b512b 3161 __get_user(regs->active_tc.gpr[i], &sc->sc_regs[i]);
106ec879 3162 }
106ec879 3163
1d8b512b
RV
3164 __get_user(regs->active_tc.HI[1], &sc->sc_hi1);
3165 __get_user(regs->active_tc.HI[2], &sc->sc_hi2);
3166 __get_user(regs->active_tc.HI[3], &sc->sc_hi3);
3167 __get_user(regs->active_tc.LO[1], &sc->sc_lo1);
3168 __get_user(regs->active_tc.LO[2], &sc->sc_lo2);
3169 __get_user(regs->active_tc.LO[3], &sc->sc_lo3);
084d0497
RH
3170 {
3171 uint32_t dsp;
1d8b512b 3172 __get_user(dsp, &sc->sc_dsp);
084d0497
RH
3173 cpu_wrdsp(dsp, 0x3ff, regs);
3174 }
106ec879 3175
084d0497 3176 for (i = 0; i < 32; ++i) {
1d8b512b 3177 __get_user(regs->active_fpu.fpr[i].d, &sc->sc_fpregs[i]);
106ec879 3178 }
106ec879 3179}
ff970904 3180
106ec879
FB
3181/*
3182 * Determine which stack to use..
3183 */
579a97f7 3184static inline abi_ulong
05390248 3185get_sigframe(struct target_sigaction *ka, CPUMIPSState *regs, size_t frame_size)
106ec879
FB
3186{
3187 unsigned long sp;
3188
3189 /* Default to using normal stack */
b5dc7732 3190 sp = regs->active_tc.gpr[29];
106ec879
FB
3191
3192 /*
93148aa5 3193 * FPU emulator may have its own trampoline active just
106ec879
FB
3194 * above the user stack, 16-bytes before the next lowest
3195 * 16 byte boundary. Try to avoid trashing it.
3196 */
3197 sp -= 32;
3198
106ec879 3199 /* This is the X/Open sanctioned signal stack switching. */
624f7979 3200 if ((ka->sa_flags & TARGET_SA_ONSTACK) && (sas_ss_flags (sp) == 0)) {
a04e134a
TS
3201 sp = target_sigaltstack_used.ss_sp + target_sigaltstack_used.ss_size;
3202 }
106ec879 3203
579a97f7 3204 return (sp - frame_size) & ~7;
106ec879
FB
3205}
3206
ea3164aa
KCY
3207static void mips_set_hflags_isa_mode_from_pc(CPUMIPSState *env)
3208{
3209 if (env->insn_flags & (ASE_MIPS16 | ASE_MICROMIPS)) {
3210 env->hflags &= ~MIPS_HFLAG_M16;
3211 env->hflags |= (env->active_tc.PC & 1) << MIPS_HFLAG_M16_SHIFT;
3212 env->active_tc.PC &= ~(target_ulong) 1;
3213 }
3214}
3215
ff970904 3216# if defined(TARGET_ABI_MIPSO32)
579a97f7 3217/* compare linux/arch/mips/kernel/signal.c:setup_frame() */
624f7979 3218static void setup_frame(int sig, struct target_sigaction * ka,
05390248 3219 target_sigset_t *set, CPUMIPSState *regs)
106ec879
FB
3220{
3221 struct sigframe *frame;
579a97f7 3222 abi_ulong frame_addr;
106ec879
FB
3223 int i;
3224
579a97f7 3225 frame_addr = get_sigframe(ka, regs, sizeof(*frame));
c8ee0a44 3226 trace_user_setup_frame(regs, frame_addr);
da7c8647
TB
3227 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
3228 goto give_sigsegv;
3229 }
106ec879
FB
3230
3231 install_sigtramp(frame->sf_code, TARGET_NR_sigreturn);
3232
41ecc72b 3233 setup_sigcontext(regs, &frame->sf_sc);
106ec879
FB
3234
3235 for(i = 0; i < TARGET_NSIG_WORDS; i++) {
0188fadb 3236 __put_user(set->sig[i], &frame->sf_mask.sig[i]);
106ec879
FB
3237 }
3238
3239 /*
3240 * Arguments to signal handler:
3241 *
3242 * a0 = signal number
3243 * a1 = 0 (should be cause)
3244 * a2 = pointer to struct sigcontext
3245 *
3246 * $25 and PC point to the signal handler, $29 points to the
3247 * struct sigframe.
3248 */
b5dc7732
TS
3249 regs->active_tc.gpr[ 4] = sig;
3250 regs->active_tc.gpr[ 5] = 0;
3251 regs->active_tc.gpr[ 6] = frame_addr + offsetof(struct sigframe, sf_sc);
3252 regs->active_tc.gpr[29] = frame_addr;
3253 regs->active_tc.gpr[31] = frame_addr + offsetof(struct sigframe, sf_code);
106ec879
FB
3254 /* The original kernel code sets CP0_EPC to the handler
3255 * since it returns to userland using eret
3256 * we cannot do this here, and we must set PC directly */
b5dc7732 3257 regs->active_tc.PC = regs->active_tc.gpr[25] = ka->_sa_handler;
ea3164aa 3258 mips_set_hflags_isa_mode_from_pc(regs);
579a97f7 3259 unlock_user_struct(frame, frame_addr, 1);
106ec879
FB
3260 return;
3261
3262give_sigsegv:
09391669 3263 force_sigsegv(sig);
106ec879
FB
3264}
3265
05390248 3266long do_sigreturn(CPUMIPSState *regs)
106ec879 3267{
388bb21a 3268 struct sigframe *frame;
579a97f7 3269 abi_ulong frame_addr;
388bb21a 3270 sigset_t blocked;
c227f099 3271 target_sigset_t target_set;
388bb21a 3272 int i;
106ec879 3273
b5dc7732 3274 frame_addr = regs->active_tc.gpr[29];
c8ee0a44 3275 trace_user_do_sigreturn(regs, frame_addr);
579a97f7 3276 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1))
da7c8647 3277 goto badframe;
106ec879 3278
388bb21a 3279 for(i = 0; i < TARGET_NSIG_WORDS; i++) {
f5f601af 3280 __get_user(target_set.sig[i], &frame->sf_mask.sig[i]);
388bb21a 3281 }
106ec879 3282
388bb21a 3283 target_to_host_sigset_internal(&blocked, &target_set);
9eede5b6 3284 set_sigmask(&blocked);
106ec879 3285
016d2e1d 3286 restore_sigcontext(regs, &frame->sf_sc);
106ec879
FB
3287
3288#if 0
388bb21a
TS
3289 /*
3290 * Don't let your children do this ...
3291 */
3292 __asm__ __volatile__(
106ec879
FB
3293 "move\t$29, %0\n\t"
3294 "j\tsyscall_exit"
3295 :/* no outputs */
3296 :"r" (&regs));
388bb21a 3297 /* Unreached */
106ec879 3298#endif
3b46e624 3299
b5dc7732 3300 regs->active_tc.PC = regs->CP0_EPC;
ea3164aa 3301 mips_set_hflags_isa_mode_from_pc(regs);
388bb21a 3302 /* I am not sure this is right, but it seems to work
106ec879
FB
3303 * maybe a problem with nested signals ? */
3304 regs->CP0_EPC = 0;
0b1bcb00 3305 return -TARGET_QEMU_ESIGRETURN;
106ec879
FB
3306
3307badframe:
c599d4d6
PM
3308 force_sig(TARGET_SIGSEGV);
3309 return -TARGET_QEMU_ESIGRETURN;
106ec879 3310}
ff970904 3311# endif /* O32 */
106ec879 3312
624f7979 3313static void setup_rt_frame(int sig, struct target_sigaction *ka,
c227f099 3314 target_siginfo_t *info,
05390248 3315 target_sigset_t *set, CPUMIPSState *env)
106ec879 3316{
0b1bcb00
PB
3317 struct target_rt_sigframe *frame;
3318 abi_ulong frame_addr;
3319 int i;
3320
3321 frame_addr = get_sigframe(ka, env, sizeof(*frame));
c8ee0a44 3322 trace_user_setup_rt_frame(env, frame_addr);
da7c8647
TB
3323 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
3324 goto give_sigsegv;
3325 }
0b1bcb00
PB
3326
3327 install_sigtramp(frame->rs_code, TARGET_NR_rt_sigreturn);
3328
f6c7a05b 3329 tswap_siginfo(&frame->rs_info, info);
0b1bcb00 3330
60e99246
AJ
3331 __put_user(0, &frame->rs_uc.tuc_flags);
3332 __put_user(0, &frame->rs_uc.tuc_link);
3333 __put_user(target_sigaltstack_used.ss_sp, &frame->rs_uc.tuc_stack.ss_sp);
3334 __put_user(target_sigaltstack_used.ss_size, &frame->rs_uc.tuc_stack.ss_size);
0b1bcb00 3335 __put_user(sas_ss_flags(get_sp_from_cpustate(env)),
60e99246 3336 &frame->rs_uc.tuc_stack.ss_flags);
0b1bcb00 3337
60e99246 3338 setup_sigcontext(env, &frame->rs_uc.tuc_mcontext);
0b1bcb00
PB
3339
3340 for(i = 0; i < TARGET_NSIG_WORDS; i++) {
60e99246 3341 __put_user(set->sig[i], &frame->rs_uc.tuc_sigmask.sig[i]);
0b1bcb00
PB
3342 }
3343
3344 /*
3345 * Arguments to signal handler:
3346 *
3347 * a0 = signal number
02d2bd5d 3348 * a1 = pointer to siginfo_t
04b33e21 3349 * a2 = pointer to ucontext_t
0b1bcb00
PB
3350 *
3351 * $25 and PC point to the signal handler, $29 points to the
3352 * struct sigframe.
3353 */
3354 env->active_tc.gpr[ 4] = sig;
3355 env->active_tc.gpr[ 5] = frame_addr
3356 + offsetof(struct target_rt_sigframe, rs_info);
3357 env->active_tc.gpr[ 6] = frame_addr
3358 + offsetof(struct target_rt_sigframe, rs_uc);
3359 env->active_tc.gpr[29] = frame_addr;
3360 env->active_tc.gpr[31] = frame_addr
3361 + offsetof(struct target_rt_sigframe, rs_code);
3362 /* The original kernel code sets CP0_EPC to the handler
3363 * since it returns to userland using eret
3364 * we cannot do this here, and we must set PC directly */
3365 env->active_tc.PC = env->active_tc.gpr[25] = ka->_sa_handler;
ea3164aa 3366 mips_set_hflags_isa_mode_from_pc(env);
0b1bcb00
PB
3367 unlock_user_struct(frame, frame_addr, 1);
3368 return;
3369
3370give_sigsegv:
3371 unlock_user_struct(frame, frame_addr, 1);
09391669 3372 force_sigsegv(sig);
106ec879
FB
3373}
3374
05390248 3375long do_rt_sigreturn(CPUMIPSState *env)
106ec879 3376{
0b1bcb00
PB
3377 struct target_rt_sigframe *frame;
3378 abi_ulong frame_addr;
3379 sigset_t blocked;
3380
0b1bcb00 3381 frame_addr = env->active_tc.gpr[29];
c8ee0a44 3382 trace_user_do_rt_sigreturn(env, frame_addr);
da7c8647
TB
3383 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1)) {
3384 goto badframe;
3385 }
0b1bcb00 3386
60e99246 3387 target_to_host_sigset(&blocked, &frame->rs_uc.tuc_sigmask);
9eede5b6 3388 set_sigmask(&blocked);
0b1bcb00 3389
016d2e1d 3390 restore_sigcontext(env, &frame->rs_uc.tuc_mcontext);
0b1bcb00
PB
3391
3392 if (do_sigaltstack(frame_addr +
da7c8647
TB
3393 offsetof(struct target_rt_sigframe, rs_uc.tuc_stack),
3394 0, get_sp_from_cpustate(env)) == -EFAULT)
0b1bcb00
PB
3395 goto badframe;
3396
3397 env->active_tc.PC = env->CP0_EPC;
ea3164aa 3398 mips_set_hflags_isa_mode_from_pc(env);
0b1bcb00
PB
3399 /* I am not sure this is right, but it seems to work
3400 * maybe a problem with nested signals ? */
3401 env->CP0_EPC = 0;
3402 return -TARGET_QEMU_ESIGRETURN;
3403
3404badframe:
c599d4d6
PM
3405 force_sig(TARGET_SIGSEGV);
3406 return -TARGET_QEMU_ESIGRETURN;
106ec879 3407}
6d5e216d 3408
c3b5bc8a
TS
3409#elif defined(TARGET_SH4)
3410
3411/*
3412 * code and data structures from linux kernel:
3413 * include/asm-sh/sigcontext.h
3414 * arch/sh/kernel/signal.c
3415 */
3416
3417struct target_sigcontext {
3418 target_ulong oldmask;
3419
3420 /* CPU registers */
3421 target_ulong sc_gregs[16];
3422 target_ulong sc_pc;
3423 target_ulong sc_pr;
3424 target_ulong sc_sr;
3425 target_ulong sc_gbr;
3426 target_ulong sc_mach;
3427 target_ulong sc_macl;
3428
3429 /* FPU registers */
3430 target_ulong sc_fpregs[16];
3431 target_ulong sc_xfpregs[16];
3432 unsigned int sc_fpscr;
3433 unsigned int sc_fpul;
3434 unsigned int sc_ownedfp;
3435};
3436
3437struct target_sigframe
3438{
3439 struct target_sigcontext sc;
3440 target_ulong extramask[TARGET_NSIG_WORDS-1];
3441 uint16_t retcode[3];
3442};
3443
3444
3445struct target_ucontext {
60e99246
AJ
3446 target_ulong tuc_flags;
3447 struct target_ucontext *tuc_link;
3448 target_stack_t tuc_stack;
3449 struct target_sigcontext tuc_mcontext;
3450 target_sigset_t tuc_sigmask; /* mask last for extensibility */
c3b5bc8a
TS
3451};
3452
3453struct target_rt_sigframe
3454{
3455 struct target_siginfo info;
3456 struct target_ucontext uc;
3457 uint16_t retcode[3];
3458};
3459
3460
3461#define MOVW(n) (0x9300|((n)-2)) /* Move mem word at PC+n to R3 */
3462#define TRAP_NOARG 0xc310 /* Syscall w/no args (NR in R3) SH3/4 */
3463
624f7979 3464static abi_ulong get_sigframe(struct target_sigaction *ka,
da7c8647 3465 unsigned long sp, size_t frame_size)
c3b5bc8a 3466{
624f7979 3467 if ((ka->sa_flags & TARGET_SA_ONSTACK) && (sas_ss_flags(sp) == 0)) {
c3b5bc8a
TS
3468 sp = target_sigaltstack_used.ss_sp + target_sigaltstack_used.ss_size;
3469 }
3470
3471 return (sp - frame_size) & -8ul;
3472}
3473
b0e4f0ed
RH
3474/* Notice when we're in the middle of a gUSA region and reset.
3475 Note that this will only occur for !parallel_cpus, as we will
3476 translate such sequences differently in a parallel context. */
3477static void unwind_gusa(CPUSH4State *regs)
3478{
3479 /* If the stack pointer is sufficiently negative, and we haven't
3480 completed the sequence, then reset to the entry to the region. */
3481 /* ??? The SH4 kernel checks for and address above 0xC0000000.
3482 However, the page mappings in qemu linux-user aren't as restricted
3483 and we wind up with the normal stack mapped above 0xF0000000.
3484 That said, there is no reason why the kernel should be allowing
3485 a gUSA region that spans 1GB. Use a tighter check here, for what
3486 can actually be enabled by the immediate move. */
3487 if (regs->gregs[15] >= -128u && regs->pc < regs->gregs[0]) {
3488 /* Reset the PC to before the gUSA region, as computed from
3489 R0 = region end, SP = -(region size), plus one more for the
3490 insn that actually initializes SP to the region size. */
3491 regs->pc = regs->gregs[0] + regs->gregs[15] - 2;
3492
3493 /* Reset the SP to the saved version in R1. */
3494 regs->gregs[15] = regs->gregs[1];
3495 }
3496}
3497
41ecc72b 3498static void setup_sigcontext(struct target_sigcontext *sc,
da7c8647 3499 CPUSH4State *regs, unsigned long mask)
c3b5bc8a 3500{
d8714436 3501 int i;
c3b5bc8a 3502
1d8b512b 3503#define COPY(x) __put_user(regs->x, &sc->sc_##x)
c3b5bc8a
TS
3504 COPY(gregs[0]); COPY(gregs[1]);
3505 COPY(gregs[2]); COPY(gregs[3]);
3506 COPY(gregs[4]); COPY(gregs[5]);
3507 COPY(gregs[6]); COPY(gregs[7]);
3508 COPY(gregs[8]); COPY(gregs[9]);
3509 COPY(gregs[10]); COPY(gregs[11]);
3510 COPY(gregs[12]); COPY(gregs[13]);
3511 COPY(gregs[14]); COPY(gregs[15]);
3512 COPY(gbr); COPY(mach);
3513 COPY(macl); COPY(pr);
3514 COPY(sr); COPY(pc);
3515#undef COPY
3516
d8714436 3517 for (i=0; i<16; i++) {
1d8b512b 3518 __put_user(regs->fregs[i], &sc->sc_fpregs[i]);
d8714436 3519 }
1d8b512b
RV
3520 __put_user(regs->fpscr, &sc->sc_fpscr);
3521 __put_user(regs->fpul, &sc->sc_fpul);
c3b5bc8a
TS
3522
3523 /* non-iBCS2 extensions.. */
1d8b512b 3524 __put_user(mask, &sc->oldmask);
c3b5bc8a
TS
3525}
3526
ba412496 3527static void restore_sigcontext(CPUSH4State *regs, struct target_sigcontext *sc)
c3b5bc8a 3528{
d8714436 3529 int i;
c3b5bc8a 3530
1d8b512b 3531#define COPY(x) __get_user(regs->x, &sc->sc_##x)
ba412496 3532 COPY(gregs[0]); COPY(gregs[1]);
c3b5bc8a
TS
3533 COPY(gregs[2]); COPY(gregs[3]);
3534 COPY(gregs[4]); COPY(gregs[5]);
3535 COPY(gregs[6]); COPY(gregs[7]);
3536 COPY(gregs[8]); COPY(gregs[9]);
3537 COPY(gregs[10]); COPY(gregs[11]);
3538 COPY(gregs[12]); COPY(gregs[13]);
3539 COPY(gregs[14]); COPY(gregs[15]);
3540 COPY(gbr); COPY(mach);
3541 COPY(macl); COPY(pr);
3542 COPY(sr); COPY(pc);
3543#undef COPY
3544
d8714436 3545 for (i=0; i<16; i++) {
1d8b512b 3546 __get_user(regs->fregs[i], &sc->sc_fpregs[i]);
d8714436 3547 }
1d8b512b
RV
3548 __get_user(regs->fpscr, &sc->sc_fpscr);
3549 __get_user(regs->fpul, &sc->sc_fpul);
c3b5bc8a
TS
3550
3551 regs->tra = -1; /* disable syscall checks */
b0e9c51a 3552 regs->flags &= ~(DELAY_SLOT_MASK | GUSA_MASK);
c3b5bc8a
TS
3553}
3554
624f7979 3555static void setup_frame(int sig, struct target_sigaction *ka,
05390248 3556 target_sigset_t *set, CPUSH4State *regs)
c3b5bc8a
TS
3557{
3558 struct target_sigframe *frame;
3559 abi_ulong frame_addr;
3560 int i;
c3b5bc8a 3561
b0e4f0ed
RH
3562 unwind_gusa(regs);
3563
c3b5bc8a 3564 frame_addr = get_sigframe(ka, regs->gregs[15], sizeof(*frame));
c8ee0a44 3565 trace_user_setup_frame(regs, frame_addr);
da7c8647
TB
3566 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
3567 goto give_sigsegv;
3568 }
c3b5bc8a 3569
41ecc72b 3570 setup_sigcontext(&frame->sc, regs, set->sig[0]);
c3b5bc8a
TS
3571
3572 for (i = 0; i < TARGET_NSIG_WORDS - 1; i++) {
1d8b512b 3573 __put_user(set->sig[i + 1], &frame->extramask[i]);
c3b5bc8a
TS
3574 }
3575
3576 /* Set up to return from userspace. If provided, use a stub
3577 already in userspace. */
624f7979
PB
3578 if (ka->sa_flags & TARGET_SA_RESTORER) {
3579 regs->pr = (unsigned long) ka->sa_restorer;
c3b5bc8a
TS
3580 } else {
3581 /* Generate return code (system call to sigreturn) */
2a0fa68f
LV
3582 abi_ulong retcode_addr = frame_addr +
3583 offsetof(struct target_sigframe, retcode);
1d8b512b
RV
3584 __put_user(MOVW(2), &frame->retcode[0]);
3585 __put_user(TRAP_NOARG, &frame->retcode[1]);
3586 __put_user((TARGET_NR_sigreturn), &frame->retcode[2]);
2a0fa68f 3587 regs->pr = (unsigned long) retcode_addr;
c3b5bc8a
TS
3588 }
3589
c3b5bc8a 3590 /* Set up registers for signal handler */
cb9c6268 3591 regs->gregs[15] = frame_addr;
b6e2c935 3592 regs->gregs[4] = sig; /* Arg for signal handler */
c3b5bc8a 3593 regs->gregs[5] = 0;
cb9c6268 3594 regs->gregs[6] = frame_addr += offsetof(typeof(*frame), sc);
624f7979 3595 regs->pc = (unsigned long) ka->_sa_handler;
b0e9c51a 3596 regs->flags &= ~(DELAY_SLOT_MASK | GUSA_MASK);
c3b5bc8a
TS
3597
3598 unlock_user_struct(frame, frame_addr, 1);
3599 return;
3600
3601give_sigsegv:
3602 unlock_user_struct(frame, frame_addr, 1);
09391669 3603 force_sigsegv(sig);
c3b5bc8a
TS
3604}
3605
624f7979 3606static void setup_rt_frame(int sig, struct target_sigaction *ka,
c227f099 3607 target_siginfo_t *info,
05390248 3608 target_sigset_t *set, CPUSH4State *regs)
c3b5bc8a
TS
3609{
3610 struct target_rt_sigframe *frame;
3611 abi_ulong frame_addr;
3612 int i;
c3b5bc8a 3613
b0e4f0ed
RH
3614 unwind_gusa(regs);
3615
c3b5bc8a 3616 frame_addr = get_sigframe(ka, regs->gregs[15], sizeof(*frame));
c8ee0a44 3617 trace_user_setup_rt_frame(regs, frame_addr);
da7c8647
TB
3618 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
3619 goto give_sigsegv;
3620 }
c3b5bc8a 3621
f6c7a05b 3622 tswap_siginfo(&frame->info, info);
c3b5bc8a
TS
3623
3624 /* Create the ucontext. */
1d8b512b
RV
3625 __put_user(0, &frame->uc.tuc_flags);
3626 __put_user(0, (unsigned long *)&frame->uc.tuc_link);
3627 __put_user((unsigned long)target_sigaltstack_used.ss_sp,
3628 &frame->uc.tuc_stack.ss_sp);
3629 __put_user(sas_ss_flags(regs->gregs[15]),
3630 &frame->uc.tuc_stack.ss_flags);
3631 __put_user(target_sigaltstack_used.ss_size,
3632 &frame->uc.tuc_stack.ss_size);
3633 setup_sigcontext(&frame->uc.tuc_mcontext,
da7c8647 3634 regs, set->sig[0]);
c3b5bc8a 3635 for(i = 0; i < TARGET_NSIG_WORDS; i++) {
1d8b512b 3636 __put_user(set->sig[i], &frame->uc.tuc_sigmask.sig[i]);
c3b5bc8a
TS
3637 }
3638
3639 /* Set up to return from userspace. If provided, use a stub
3640 already in userspace. */
624f7979
PB
3641 if (ka->sa_flags & TARGET_SA_RESTORER) {
3642 regs->pr = (unsigned long) ka->sa_restorer;
c3b5bc8a
TS
3643 } else {
3644 /* Generate return code (system call to sigreturn) */
2a0fa68f
LV
3645 abi_ulong retcode_addr = frame_addr +
3646 offsetof(struct target_rt_sigframe, retcode);
1d8b512b
RV
3647 __put_user(MOVW(2), &frame->retcode[0]);
3648 __put_user(TRAP_NOARG, &frame->retcode[1]);
3649 __put_user((TARGET_NR_rt_sigreturn), &frame->retcode[2]);
2a0fa68f 3650 regs->pr = (unsigned long) retcode_addr;
c3b5bc8a
TS
3651 }
3652
c3b5bc8a 3653 /* Set up registers for signal handler */
cb9c6268 3654 regs->gregs[15] = frame_addr;
b6e2c935 3655 regs->gregs[4] = sig; /* Arg for signal handler */
cb9c6268
EI
3656 regs->gregs[5] = frame_addr + offsetof(typeof(*frame), info);
3657 regs->gregs[6] = frame_addr + offsetof(typeof(*frame), uc);
624f7979 3658 regs->pc = (unsigned long) ka->_sa_handler;
b0e9c51a 3659 regs->flags &= ~(DELAY_SLOT_MASK | GUSA_MASK);
c3b5bc8a
TS
3660
3661 unlock_user_struct(frame, frame_addr, 1);
3662 return;
3663
3664give_sigsegv:
3665 unlock_user_struct(frame, frame_addr, 1);
09391669 3666 force_sigsegv(sig);
c3b5bc8a
TS
3667}
3668
05390248 3669long do_sigreturn(CPUSH4State *regs)
c3b5bc8a
TS
3670{
3671 struct target_sigframe *frame;
3672 abi_ulong frame_addr;
3673 sigset_t blocked;
c227f099 3674 target_sigset_t target_set;
c3b5bc8a
TS
3675 int i;
3676 int err = 0;
3677
c3b5bc8a 3678 frame_addr = regs->gregs[15];
c8ee0a44 3679 trace_user_do_sigreturn(regs, frame_addr);
da7c8647
TB
3680 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1)) {
3681 goto badframe;
3682 }
c3b5bc8a 3683
1d8b512b 3684 __get_user(target_set.sig[0], &frame->sc.oldmask);
c3b5bc8a 3685 for(i = 1; i < TARGET_NSIG_WORDS; i++) {
1d8b512b 3686 __get_user(target_set.sig[i], &frame->extramask[i - 1]);
c3b5bc8a
TS
3687 }
3688
3689 if (err)
3690 goto badframe;
3691
3692 target_to_host_sigset_internal(&blocked, &target_set);
9eede5b6 3693 set_sigmask(&blocked);
c3b5bc8a 3694
ba412496 3695 restore_sigcontext(regs, &frame->sc);
c3b5bc8a
TS
3696
3697 unlock_user_struct(frame, frame_addr, 0);
ba412496 3698 return -TARGET_QEMU_ESIGRETURN;
c3b5bc8a
TS
3699
3700badframe:
3701 unlock_user_struct(frame, frame_addr, 0);
3702 force_sig(TARGET_SIGSEGV);
c599d4d6 3703 return -TARGET_QEMU_ESIGRETURN;
c3b5bc8a
TS
3704}
3705
05390248 3706long do_rt_sigreturn(CPUSH4State *regs)
c3b5bc8a
TS
3707{
3708 struct target_rt_sigframe *frame;
3709 abi_ulong frame_addr;
3710 sigset_t blocked;
3711
c3b5bc8a 3712 frame_addr = regs->gregs[15];
c8ee0a44 3713 trace_user_do_rt_sigreturn(regs, frame_addr);
da7c8647
TB
3714 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1)) {
3715 goto badframe;
3716 }
c3b5bc8a 3717
60e99246 3718 target_to_host_sigset(&blocked, &frame->uc.tuc_sigmask);
9eede5b6 3719 set_sigmask(&blocked);
c3b5bc8a 3720
ba412496 3721 restore_sigcontext(regs, &frame->uc.tuc_mcontext);
c3b5bc8a
TS
3722
3723 if (do_sigaltstack(frame_addr +
da7c8647
TB
3724 offsetof(struct target_rt_sigframe, uc.tuc_stack),
3725 0, get_sp_from_cpustate(regs)) == -EFAULT) {
c3b5bc8a 3726 goto badframe;
da7c8647 3727 }
c3b5bc8a
TS
3728
3729 unlock_user_struct(frame, frame_addr, 0);
ba412496 3730 return -TARGET_QEMU_ESIGRETURN;
c3b5bc8a
TS
3731
3732badframe:
3733 unlock_user_struct(frame, frame_addr, 0);
3734 force_sig(TARGET_SIGSEGV);
c599d4d6 3735 return -TARGET_QEMU_ESIGRETURN;
c3b5bc8a 3736}
b779e29e
EI
3737#elif defined(TARGET_MICROBLAZE)
3738
3739struct target_sigcontext {
3740 struct target_pt_regs regs; /* needs to be first */
3741 uint32_t oldmask;
3742};
3743
b2178704
EI
3744struct target_stack_t {
3745 abi_ulong ss_sp;
3746 int ss_flags;
3747 unsigned int ss_size;
3748};
3749
3750struct target_ucontext {
f711df67
RH
3751 abi_ulong tuc_flags;
3752 abi_ulong tuc_link;
3753 struct target_stack_t tuc_stack;
3754 struct target_sigcontext tuc_mcontext;
3755 uint32_t tuc_extramask[TARGET_NSIG_WORDS - 1];
b2178704
EI
3756};
3757
b779e29e
EI
3758/* Signal frames. */
3759struct target_signal_frame {
b2178704 3760 struct target_ucontext uc;
b779e29e
EI
3761 uint32_t extramask[TARGET_NSIG_WORDS - 1];
3762 uint32_t tramp[2];
3763};
3764
3765struct rt_signal_frame {
02d2bd5d 3766 siginfo_t info;
04b33e21 3767 ucontext_t uc;
b779e29e
EI
3768 uint32_t tramp[2];
3769};
3770
05390248 3771static void setup_sigcontext(struct target_sigcontext *sc, CPUMBState *env)
b779e29e
EI
3772{
3773 __put_user(env->regs[0], &sc->regs.r0);
3774 __put_user(env->regs[1], &sc->regs.r1);
3775 __put_user(env->regs[2], &sc->regs.r2);
3776 __put_user(env->regs[3], &sc->regs.r3);
3777 __put_user(env->regs[4], &sc->regs.r4);
3778 __put_user(env->regs[5], &sc->regs.r5);
3779 __put_user(env->regs[6], &sc->regs.r6);
3780 __put_user(env->regs[7], &sc->regs.r7);
3781 __put_user(env->regs[8], &sc->regs.r8);
3782 __put_user(env->regs[9], &sc->regs.r9);
3783 __put_user(env->regs[10], &sc->regs.r10);
3784 __put_user(env->regs[11], &sc->regs.r11);
3785 __put_user(env->regs[12], &sc->regs.r12);
3786 __put_user(env->regs[13], &sc->regs.r13);
3787 __put_user(env->regs[14], &sc->regs.r14);
3788 __put_user(env->regs[15], &sc->regs.r15);
3789 __put_user(env->regs[16], &sc->regs.r16);
3790 __put_user(env->regs[17], &sc->regs.r17);
3791 __put_user(env->regs[18], &sc->regs.r18);
3792 __put_user(env->regs[19], &sc->regs.r19);
3793 __put_user(env->regs[20], &sc->regs.r20);
3794 __put_user(env->regs[21], &sc->regs.r21);
3795 __put_user(env->regs[22], &sc->regs.r22);
3796 __put_user(env->regs[23], &sc->regs.r23);
3797 __put_user(env->regs[24], &sc->regs.r24);
3798 __put_user(env->regs[25], &sc->regs.r25);
3799 __put_user(env->regs[26], &sc->regs.r26);
3800 __put_user(env->regs[27], &sc->regs.r27);
3801 __put_user(env->regs[28], &sc->regs.r28);
3802 __put_user(env->regs[29], &sc->regs.r29);
3803 __put_user(env->regs[30], &sc->regs.r30);
3804 __put_user(env->regs[31], &sc->regs.r31);
3805 __put_user(env->sregs[SR_PC], &sc->regs.pc);
3806}
3807
05390248 3808static void restore_sigcontext(struct target_sigcontext *sc, CPUMBState *env)
b779e29e
EI
3809{
3810 __get_user(env->regs[0], &sc->regs.r0);
3811 __get_user(env->regs[1], &sc->regs.r1);
3812 __get_user(env->regs[2], &sc->regs.r2);
3813 __get_user(env->regs[3], &sc->regs.r3);
3814 __get_user(env->regs[4], &sc->regs.r4);
3815 __get_user(env->regs[5], &sc->regs.r5);
3816 __get_user(env->regs[6], &sc->regs.r6);
3817 __get_user(env->regs[7], &sc->regs.r7);
3818 __get_user(env->regs[8], &sc->regs.r8);
3819 __get_user(env->regs[9], &sc->regs.r9);
3820 __get_user(env->regs[10], &sc->regs.r10);
3821 __get_user(env->regs[11], &sc->regs.r11);
3822 __get_user(env->regs[12], &sc->regs.r12);
3823 __get_user(env->regs[13], &sc->regs.r13);
3824 __get_user(env->regs[14], &sc->regs.r14);
3825 __get_user(env->regs[15], &sc->regs.r15);
3826 __get_user(env->regs[16], &sc->regs.r16);
3827 __get_user(env->regs[17], &sc->regs.r17);
3828 __get_user(env->regs[18], &sc->regs.r18);
3829 __get_user(env->regs[19], &sc->regs.r19);
3830 __get_user(env->regs[20], &sc->regs.r20);
3831 __get_user(env->regs[21], &sc->regs.r21);
3832 __get_user(env->regs[22], &sc->regs.r22);
3833 __get_user(env->regs[23], &sc->regs.r23);
3834 __get_user(env->regs[24], &sc->regs.r24);
3835 __get_user(env->regs[25], &sc->regs.r25);
3836 __get_user(env->regs[26], &sc->regs.r26);
3837 __get_user(env->regs[27], &sc->regs.r27);
3838 __get_user(env->regs[28], &sc->regs.r28);
3839 __get_user(env->regs[29], &sc->regs.r29);
3840 __get_user(env->regs[30], &sc->regs.r30);
3841 __get_user(env->regs[31], &sc->regs.r31);
3842 __get_user(env->sregs[SR_PC], &sc->regs.pc);
3843}
3844
3845static abi_ulong get_sigframe(struct target_sigaction *ka,
05390248 3846 CPUMBState *env, int frame_size)
b779e29e
EI
3847{
3848 abi_ulong sp = env->regs[1];
3849
b545f63f 3850 if ((ka->sa_flags & TARGET_SA_ONSTACK) != 0 && !on_sig_stack(sp)) {
b779e29e 3851 sp = target_sigaltstack_used.ss_sp + target_sigaltstack_used.ss_size;
b545f63f 3852 }
b779e29e
EI
3853
3854 return ((sp - frame_size) & -8UL);
3855}
3856
3857static void setup_frame(int sig, struct target_sigaction *ka,
05390248 3858 target_sigset_t *set, CPUMBState *env)
b779e29e
EI
3859{
3860 struct target_signal_frame *frame;
3861 abi_ulong frame_addr;
b779e29e
EI
3862 int i;
3863
3864 frame_addr = get_sigframe(ka, env, sizeof *frame);
c8ee0a44 3865 trace_user_setup_frame(env, frame_addr);
b779e29e
EI
3866 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0))
3867 goto badframe;
3868
3869 /* Save the mask. */
1d8b512b 3870 __put_user(set->sig[0], &frame->uc.tuc_mcontext.oldmask);
b779e29e
EI
3871
3872 for(i = 1; i < TARGET_NSIG_WORDS; i++) {
0188fadb 3873 __put_user(set->sig[i], &frame->extramask[i - 1]);
b779e29e
EI
3874 }
3875
f711df67 3876 setup_sigcontext(&frame->uc.tuc_mcontext, env);
b779e29e
EI
3877
3878 /* Set up to return from userspace. If provided, use a stub
3879 already in userspace. */
3880 /* minus 8 is offset to cater for "rtsd r15,8" offset */
3881 if (ka->sa_flags & TARGET_SA_RESTORER) {
3882 env->regs[15] = ((unsigned long)ka->sa_restorer)-8;
3883 } else {
3884 uint32_t t;
3885 /* Note, these encodings are _big endian_! */
3886 /* addi r12, r0, __NR_sigreturn */
3887 t = 0x31800000UL | TARGET_NR_sigreturn;
1d8b512b 3888 __put_user(t, frame->tramp + 0);
b779e29e
EI
3889 /* brki r14, 0x8 */
3890 t = 0xb9cc0008UL;
1d8b512b 3891 __put_user(t, frame->tramp + 1);
b779e29e
EI
3892
3893 /* Return from sighandler will jump to the tramp.
3894 Negative 8 offset because return is rtsd r15, 8 */
166c97ed
CG
3895 env->regs[15] = frame_addr + offsetof(struct target_signal_frame, tramp)
3896 - 8;
b779e29e
EI
3897 }
3898
b779e29e 3899 /* Set up registers for signal handler */
cb9c6268 3900 env->regs[1] = frame_addr;
b779e29e
EI
3901 /* Signal handler args: */
3902 env->regs[5] = sig; /* Arg 0: signum */
187b4e08 3903 env->regs[6] = 0;
cb9c6268
EI
3904 /* arg 1: sigcontext */
3905 env->regs[7] = frame_addr += offsetof(typeof(*frame), uc);
b779e29e
EI
3906
3907 /* Offset of 4 to handle microblaze rtid r14, 0 */
3908 env->sregs[SR_PC] = (unsigned long)ka->_sa_handler;
3909
3910 unlock_user_struct(frame, frame_addr, 1);
3911 return;
da7c8647 3912badframe:
09391669 3913 force_sigsegv(sig);
b779e29e
EI
3914}
3915
3916static void setup_rt_frame(int sig, struct target_sigaction *ka,
c227f099 3917 target_siginfo_t *info,
05390248 3918 target_sigset_t *set, CPUMBState *env)
b779e29e
EI
3919{
3920 fprintf(stderr, "Microblaze setup_rt_frame: not implemented\n");
3921}
3922
05390248 3923long do_sigreturn(CPUMBState *env)
b779e29e
EI
3924{
3925 struct target_signal_frame *frame;
3926 abi_ulong frame_addr;
c227f099 3927 target_sigset_t target_set;
b779e29e
EI
3928 sigset_t set;
3929 int i;
3930
3931 frame_addr = env->regs[R_SP];
c8ee0a44 3932 trace_user_do_sigreturn(env, frame_addr);
b779e29e
EI
3933 /* Make sure the guest isn't playing games. */
3934 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 1))
3935 goto badframe;
3936
3937 /* Restore blocked signals */
f5f601af 3938 __get_user(target_set.sig[0], &frame->uc.tuc_mcontext.oldmask);
b779e29e 3939 for(i = 1; i < TARGET_NSIG_WORDS; i++) {
da7c8647 3940 __get_user(target_set.sig[i], &frame->extramask[i - 1]);
b779e29e
EI
3941 }
3942 target_to_host_sigset_internal(&set, &target_set);
9eede5b6 3943 set_sigmask(&set);
b779e29e 3944
f711df67 3945 restore_sigcontext(&frame->uc.tuc_mcontext, env);
b779e29e
EI
3946 /* We got here through a sigreturn syscall, our path back is via an
3947 rtb insn so setup r14 for that. */
3948 env->regs[14] = env->sregs[SR_PC];
da7c8647 3949
b779e29e 3950 unlock_user_struct(frame, frame_addr, 0);
4134ecfe 3951 return -TARGET_QEMU_ESIGRETURN;
da7c8647 3952badframe:
b779e29e 3953 force_sig(TARGET_SIGSEGV);
c599d4d6 3954 return -TARGET_QEMU_ESIGRETURN;
b779e29e
EI
3955}
3956
05390248 3957long do_rt_sigreturn(CPUMBState *env)
b779e29e 3958{
c8ee0a44 3959 trace_user_do_rt_sigreturn(env, 0);
b779e29e
EI
3960 fprintf(stderr, "Microblaze do_rt_sigreturn: not implemented\n");
3961 return -TARGET_ENOSYS;
3962}
3963
b6d3abda
EI
3964#elif defined(TARGET_CRIS)
3965
3966struct target_sigcontext {
da7c8647
TB
3967 struct target_pt_regs regs; /* needs to be first */
3968 uint32_t oldmask;
3969 uint32_t usp; /* usp before stacking this gunk on it */
b6d3abda
EI
3970};
3971
3972/* Signal frames. */
3973struct target_signal_frame {
da7c8647
TB
3974 struct target_sigcontext sc;
3975 uint32_t extramask[TARGET_NSIG_WORDS - 1];
3976 uint16_t retcode[4]; /* Trampoline code. */
b6d3abda
EI
3977};
3978
3979struct rt_signal_frame {
da7c8647
TB
3980 siginfo_t *pinfo;
3981 void *puc;
3982 siginfo_t info;
04b33e21 3983 ucontext_t uc;
da7c8647 3984 uint16_t retcode[4]; /* Trampoline code. */
b6d3abda
EI
3985};
3986
05390248 3987static void setup_sigcontext(struct target_sigcontext *sc, CPUCRISState *env)
b6d3abda 3988{
da7c8647
TB
3989 __put_user(env->regs[0], &sc->regs.r0);
3990 __put_user(env->regs[1], &sc->regs.r1);
3991 __put_user(env->regs[2], &sc->regs.r2);
3992 __put_user(env->regs[3], &sc->regs.r3);
3993 __put_user(env->regs[4], &sc->regs.r4);
3994 __put_user(env->regs[5], &sc->regs.r5);
3995 __put_user(env->regs[6], &sc->regs.r6);
3996 __put_user(env->regs[7], &sc->regs.r7);
3997 __put_user(env->regs[8], &sc->regs.r8);
3998 __put_user(env->regs[9], &sc->regs.r9);
3999 __put_user(env->regs[10], &sc->regs.r10);
4000 __put_user(env->regs[11], &sc->regs.r11);
4001 __put_user(env->regs[12], &sc->regs.r12);
4002 __put_user(env->regs[13], &sc->regs.r13);
4003 __put_user(env->regs[14], &sc->usp);
4004 __put_user(env->regs[15], &sc->regs.acr);
4005 __put_user(env->pregs[PR_MOF], &sc->regs.mof);
4006 __put_user(env->pregs[PR_SRP], &sc->regs.srp);
4007 __put_user(env->pc, &sc->regs.erp);
b6d3abda 4008}
9664d928 4009
05390248 4010static void restore_sigcontext(struct target_sigcontext *sc, CPUCRISState *env)
b6d3abda 4011{
da7c8647
TB
4012 __get_user(env->regs[0], &sc->regs.r0);
4013 __get_user(env->regs[1], &sc->regs.r1);
4014 __get_user(env->regs[2], &sc->regs.r2);
4015 __get_user(env->regs[3], &sc->regs.r3);
4016 __get_user(env->regs[4], &sc->regs.r4);
4017 __get_user(env->regs[5], &sc->regs.r5);
4018 __get_user(env->regs[6], &sc->regs.r6);
4019 __get_user(env->regs[7], &sc->regs.r7);
4020 __get_user(env->regs[8], &sc->regs.r8);
4021 __get_user(env->regs[9], &sc->regs.r9);
4022 __get_user(env->regs[10], &sc->regs.r10);
4023 __get_user(env->regs[11], &sc->regs.r11);
4024 __get_user(env->regs[12], &sc->regs.r12);
4025 __get_user(env->regs[13], &sc->regs.r13);
4026 __get_user(env->regs[14], &sc->usp);
4027 __get_user(env->regs[15], &sc->regs.acr);
4028 __get_user(env->pregs[PR_MOF], &sc->regs.mof);
4029 __get_user(env->pregs[PR_SRP], &sc->regs.srp);
4030 __get_user(env->pc, &sc->regs.erp);
9664d928
EI
4031}
4032
05390248 4033static abi_ulong get_sigframe(CPUCRISState *env, int framesize)
9664d928 4034{
da7c8647
TB
4035 abi_ulong sp;
4036 /* Align the stack downwards to 4. */
4037 sp = (env->regs[R_SP] & ~3);
4038 return sp - framesize;
b6d3abda
EI
4039}
4040
624f7979 4041static void setup_frame(int sig, struct target_sigaction *ka,
05390248 4042 target_sigset_t *set, CPUCRISState *env)
b6d3abda 4043{
da7c8647
TB
4044 struct target_signal_frame *frame;
4045 abi_ulong frame_addr;
4046 int i;
4047
4048 frame_addr = get_sigframe(env, sizeof *frame);
4049 trace_user_setup_frame(env, frame_addr);
4050 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0))
4051 goto badframe;
4052
4053 /*
4054 * The CRIS signal return trampoline. A real linux/CRIS kernel doesn't
4055 * use this trampoline anymore but it sets it up for GDB.
4056 * In QEMU, using the trampoline simplifies things a bit so we use it.
4057 *
4058 * This is movu.w __NR_sigreturn, r9; break 13;
4059 */
1d8b512b
RV
4060 __put_user(0x9c5f, frame->retcode+0);
4061 __put_user(TARGET_NR_sigreturn,
4062 frame->retcode + 1);
4063 __put_user(0xe93d, frame->retcode + 2);
b6d3abda 4064
da7c8647 4065 /* Save the mask. */
1d8b512b 4066 __put_user(set->sig[0], &frame->sc.oldmask);
b6d3abda 4067
0188fadb
RV
4068 for(i = 1; i < TARGET_NSIG_WORDS; i++) {
4069 __put_user(set->sig[i], &frame->extramask[i - 1]);
4070 }
b6d3abda 4071
da7c8647 4072 setup_sigcontext(&frame->sc, env);
b6d3abda 4073
da7c8647
TB
4074 /* Move the stack and setup the arguments for the handler. */
4075 env->regs[R_SP] = frame_addr;
4076 env->regs[10] = sig;
4077 env->pc = (unsigned long) ka->_sa_handler;
4078 /* Link SRP so the guest returns through the trampoline. */
4079 env->pregs[PR_SRP] = frame_addr + offsetof(typeof(*frame), retcode);
b6d3abda 4080
da7c8647
TB
4081 unlock_user_struct(frame, frame_addr, 1);
4082 return;
4083badframe:
09391669 4084 force_sigsegv(sig);
b6d3abda
EI
4085}
4086
624f7979 4087static void setup_rt_frame(int sig, struct target_sigaction *ka,
c227f099 4088 target_siginfo_t *info,
05390248 4089 target_sigset_t *set, CPUCRISState *env)
b6d3abda
EI
4090{
4091 fprintf(stderr, "CRIS setup_rt_frame: not implemented\n");
4092}
4093
05390248 4094long do_sigreturn(CPUCRISState *env)
b6d3abda 4095{
da7c8647
TB
4096 struct target_signal_frame *frame;
4097 abi_ulong frame_addr;
4098 target_sigset_t target_set;
4099 sigset_t set;
4100 int i;
b6d3abda 4101
da7c8647
TB
4102 frame_addr = env->regs[R_SP];
4103 trace_user_do_sigreturn(env, frame_addr);
4104 /* Make sure the guest isn't playing games. */
4105 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 1)) {
4106 goto badframe;
4107 }
b6d3abda 4108
da7c8647 4109 /* Restore blocked signals */
f5f601af 4110 __get_user(target_set.sig[0], &frame->sc.oldmask);
da7c8647 4111 for(i = 1; i < TARGET_NSIG_WORDS; i++) {
f5f601af 4112 __get_user(target_set.sig[i], &frame->extramask[i - 1]);
da7c8647
TB
4113 }
4114 target_to_host_sigset_internal(&set, &target_set);
9eede5b6 4115 set_sigmask(&set);
b6d3abda 4116
da7c8647
TB
4117 restore_sigcontext(&frame->sc, env);
4118 unlock_user_struct(frame, frame_addr, 0);
62050865 4119 return -TARGET_QEMU_ESIGRETURN;
da7c8647
TB
4120badframe:
4121 force_sig(TARGET_SIGSEGV);
c599d4d6 4122 return -TARGET_QEMU_ESIGRETURN;
b6d3abda
EI
4123}
4124
05390248 4125long do_rt_sigreturn(CPUCRISState *env)
b6d3abda 4126{
c8ee0a44 4127 trace_user_do_rt_sigreturn(env, 0);
b6d3abda
EI
4128 fprintf(stderr, "CRIS do_rt_sigreturn: not implemented\n");
4129 return -TARGET_ENOSYS;
4130}
c3b5bc8a 4131
a0a839b6
MV
4132#elif defined(TARGET_NIOS2)
4133
4134#define MCONTEXT_VERSION 2
4135
4136struct target_sigcontext {
4137 int version;
4138 unsigned long gregs[32];
4139};
4140
4141struct target_ucontext {
4142 abi_ulong tuc_flags;
4143 abi_ulong tuc_link;
4144 target_stack_t tuc_stack;
4145 struct target_sigcontext tuc_mcontext;
4146 target_sigset_t tuc_sigmask; /* mask last for extensibility */
4147};
4148
4149struct target_rt_sigframe {
4150 struct target_siginfo info;
4151 struct target_ucontext uc;
4152};
4153
4154static unsigned long sigsp(unsigned long sp, struct target_sigaction *ka)
4155{
4156 if (unlikely((ka->sa_flags & SA_ONSTACK)) && !sas_ss_flags(sp)) {
4157#ifdef CONFIG_STACK_GROWSUP
4158 return target_sigaltstack_used.ss_sp;
4159#else
4160 return target_sigaltstack_used.ss_sp + target_sigaltstack_used.ss_size;
4161#endif
4162 }
4163 return sp;
4164}
4165
4166static int rt_setup_ucontext(struct target_ucontext *uc, CPUNios2State *env)
4167{
4168 unsigned long *gregs = uc->tuc_mcontext.gregs;
4169
4170 __put_user(MCONTEXT_VERSION, &uc->tuc_mcontext.version);
4171 __put_user(env->regs[1], &gregs[0]);
4172 __put_user(env->regs[2], &gregs[1]);
4173 __put_user(env->regs[3], &gregs[2]);
4174 __put_user(env->regs[4], &gregs[3]);
4175 __put_user(env->regs[5], &gregs[4]);
4176 __put_user(env->regs[6], &gregs[5]);
4177 __put_user(env->regs[7], &gregs[6]);
4178 __put_user(env->regs[8], &gregs[7]);
4179 __put_user(env->regs[9], &gregs[8]);
4180 __put_user(env->regs[10], &gregs[9]);
4181 __put_user(env->regs[11], &gregs[10]);
4182 __put_user(env->regs[12], &gregs[11]);
4183 __put_user(env->regs[13], &gregs[12]);
4184 __put_user(env->regs[14], &gregs[13]);
4185 __put_user(env->regs[15], &gregs[14]);
4186 __put_user(env->regs[16], &gregs[15]);
4187 __put_user(env->regs[17], &gregs[16]);
4188 __put_user(env->regs[18], &gregs[17]);
4189 __put_user(env->regs[19], &gregs[18]);
4190 __put_user(env->regs[20], &gregs[19]);
4191 __put_user(env->regs[21], &gregs[20]);
4192 __put_user(env->regs[22], &gregs[21]);
4193 __put_user(env->regs[23], &gregs[22]);
4194 __put_user(env->regs[R_RA], &gregs[23]);
4195 __put_user(env->regs[R_FP], &gregs[24]);
4196 __put_user(env->regs[R_GP], &gregs[25]);
4197 __put_user(env->regs[R_EA], &gregs[27]);
4198 __put_user(env->regs[R_SP], &gregs[28]);
4199
4200 return 0;
4201}
4202
4203static int rt_restore_ucontext(CPUNios2State *env, struct target_ucontext *uc,
4204 int *pr2)
4205{
4206 int temp;
4207 abi_ulong off, frame_addr = env->regs[R_SP];
4208 unsigned long *gregs = uc->tuc_mcontext.gregs;
4209 int err;
4210
4211 /* Always make any pending restarted system calls return -EINTR */
4212 /* current->restart_block.fn = do_no_restart_syscall; */
4213
4214 __get_user(temp, &uc->tuc_mcontext.version);
4215 if (temp != MCONTEXT_VERSION) {
4216 return 1;
4217 }
4218
4219 /* restore passed registers */
4220 __get_user(env->regs[1], &gregs[0]);
4221 __get_user(env->regs[2], &gregs[1]);
4222 __get_user(env->regs[3], &gregs[2]);
4223 __get_user(env->regs[4], &gregs[3]);
4224 __get_user(env->regs[5], &gregs[4]);
4225 __get_user(env->regs[6], &gregs[5]);
4226 __get_user(env->regs[7], &gregs[6]);
4227 __get_user(env->regs[8], &gregs[7]);
4228 __get_user(env->regs[9], &gregs[8]);
4229 __get_user(env->regs[10], &gregs[9]);
4230 __get_user(env->regs[11], &gregs[10]);
4231 __get_user(env->regs[12], &gregs[11]);
4232 __get_user(env->regs[13], &gregs[12]);
4233 __get_user(env->regs[14], &gregs[13]);
4234 __get_user(env->regs[15], &gregs[14]);
4235 __get_user(env->regs[16], &gregs[15]);
4236 __get_user(env->regs[17], &gregs[16]);
4237 __get_user(env->regs[18], &gregs[17]);
4238 __get_user(env->regs[19], &gregs[18]);
4239 __get_user(env->regs[20], &gregs[19]);
4240 __get_user(env->regs[21], &gregs[20]);
4241 __get_user(env->regs[22], &gregs[21]);
4242 __get_user(env->regs[23], &gregs[22]);
4243 /* gregs[23] is handled below */
4244 /* Verify, should this be settable */
4245 __get_user(env->regs[R_FP], &gregs[24]);
4246 /* Verify, should this be settable */
4247 __get_user(env->regs[R_GP], &gregs[25]);
4248 /* Not really necessary no user settable bits */
4249 __get_user(temp, &gregs[26]);
4250 __get_user(env->regs[R_EA], &gregs[27]);
4251
4252 __get_user(env->regs[R_RA], &gregs[23]);
4253 __get_user(env->regs[R_SP], &gregs[28]);
4254
4255 off = offsetof(struct target_rt_sigframe, uc.tuc_stack);
4256 err = do_sigaltstack(frame_addr + off, 0, get_sp_from_cpustate(env));
4257 if (err == -EFAULT) {
4258 return 1;
4259 }
4260
4261 *pr2 = env->regs[2];
4262 return 0;
4263}
4264
4265static void *get_sigframe(struct target_sigaction *ka, CPUNios2State *env,
4266 size_t frame_size)
4267{
4268 unsigned long usp;
4269
4270 /* Default to using normal stack. */
4271 usp = env->regs[R_SP];
4272
4273 /* This is the X/Open sanctioned signal stack switching. */
4274 usp = sigsp(usp, ka);
4275
4276 /* Verify, is it 32 or 64 bit aligned */
4277 return (void *)((usp - frame_size) & -8UL);
4278}
4279
4280static void setup_rt_frame(int sig, struct target_sigaction *ka,
4281 target_siginfo_t *info,
4282 target_sigset_t *set,
4283 CPUNios2State *env)
4284{
4285 struct target_rt_sigframe *frame;
4286 int i, err = 0;
4287
4288 frame = get_sigframe(ka, env, sizeof(*frame));
4289
4290 if (ka->sa_flags & SA_SIGINFO) {
4291 tswap_siginfo(&frame->info, info);
4292 }
4293
4294 /* Create the ucontext. */
4295 __put_user(0, &frame->uc.tuc_flags);
4296 __put_user(0, &frame->uc.tuc_link);
4297 __put_user(target_sigaltstack_used.ss_sp, &frame->uc.tuc_stack.ss_sp);
4298 __put_user(sas_ss_flags(env->regs[R_SP]), &frame->uc.tuc_stack.ss_flags);
4299 __put_user(target_sigaltstack_used.ss_size, &frame->uc.tuc_stack.ss_size);
4300 err |= rt_setup_ucontext(&frame->uc, env);
4301 for (i = 0; i < TARGET_NSIG_WORDS; i++) {
4302 __put_user((abi_ulong)set->sig[i],
4303 (abi_ulong *)&frame->uc.tuc_sigmask.sig[i]);
4304 }
4305
4306 if (err) {
4307 goto give_sigsegv;
4308 }
4309
4310 /* Set up to return from userspace; jump to fixed address sigreturn
4311 trampoline on kuser page. */
4312 env->regs[R_RA] = (unsigned long) (0x1044);
4313
4314 /* Set up registers for signal handler */
4315 env->regs[R_SP] = (unsigned long) frame;
4316 env->regs[4] = (unsigned long) sig;
4317 env->regs[5] = (unsigned long) &frame->info;
4318 env->regs[6] = (unsigned long) &frame->uc;
4319 env->regs[R_EA] = (unsigned long) ka->_sa_handler;
4320 return;
4321
4322give_sigsegv:
4323 if (sig == TARGET_SIGSEGV) {
4324 ka->_sa_handler = TARGET_SIG_DFL;
4325 }
4326 force_sigsegv(sig);
4327 return;
4328}
4329
4330long do_sigreturn(CPUNios2State *env)
4331{
4332 trace_user_do_sigreturn(env, 0);
4333 fprintf(stderr, "do_sigreturn: not implemented\n");
4334 return -TARGET_ENOSYS;
4335}
4336
4337long do_rt_sigreturn(CPUNios2State *env)
4338{
4339 /* Verify, can we follow the stack back */
4340 abi_ulong frame_addr = env->regs[R_SP];
4341 struct target_rt_sigframe *frame;
4342 sigset_t set;
4343 int rval;
4344
4345 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1)) {
4346 goto badframe;
4347 }
4348
4349 target_to_host_sigset(&set, &frame->uc.tuc_sigmask);
4350 do_sigprocmask(SIG_SETMASK, &set, NULL);
4351
4352 if (rt_restore_ucontext(env, &frame->uc, &rval)) {
4353 goto badframe;
4354 }
4355
4356 unlock_user_struct(frame, frame_addr, 0);
4357 return rval;
4358
4359badframe:
4360 unlock_user_struct(frame, frame_addr, 0);
4361 force_sig(TARGET_SIGSEGV);
4362 return 0;
4363}
4364/* TARGET_NIOS2 */
4365
d962783e
JL
4366#elif defined(TARGET_OPENRISC)
4367
4368struct target_sigcontext {
4369 struct target_pt_regs regs;
4370 abi_ulong oldmask;
4371 abi_ulong usp;
4372};
4373
4374struct target_ucontext {
4375 abi_ulong tuc_flags;
4376 abi_ulong tuc_link;
4377 target_stack_t tuc_stack;
4378 struct target_sigcontext tuc_mcontext;
4379 target_sigset_t tuc_sigmask; /* mask last for extensibility */
4380};
4381
4382struct target_rt_sigframe {
4383 abi_ulong pinfo;
4384 uint64_t puc;
4385 struct target_siginfo info;
4386 struct target_sigcontext sc;
4387 struct target_ucontext uc;
4388 unsigned char retcode[16]; /* trampoline code */
4389};
4390
4391/* This is the asm-generic/ucontext.h version */
4392#if 0
4393static int restore_sigcontext(CPUOpenRISCState *regs,
4394 struct target_sigcontext *sc)
4395{
4396 unsigned int err = 0;
4397 unsigned long old_usp;
4398
4399 /* Alwys make any pending restarted system call return -EINTR */
4400 current_thread_info()->restart_block.fn = do_no_restart_syscall;
4401
4402 /* restore the regs from &sc->regs (same as sc, since regs is first)
4403 * (sc is already checked for VERIFY_READ since the sigframe was
4404 * checked in sys_sigreturn previously)
4405 */
4406
4407 if (copy_from_user(regs, &sc, sizeof(struct target_pt_regs))) {
4408 goto badframe;
4409 }
4410
4411 /* make sure the U-flag is set so user-mode cannot fool us */
4412
4413 regs->sr &= ~SR_SM;
4414
4415 /* restore the old USP as it was before we stacked the sc etc.
4416 * (we cannot just pop the sigcontext since we aligned the sp and
4417 * stuff after pushing it)
4418 */
4419
1d8b512b 4420 __get_user(old_usp, &sc->usp);
d962783e
JL
4421 phx_signal("old_usp 0x%lx", old_usp);
4422
4423 __PHX__ REALLY /* ??? */
4424 wrusp(old_usp);
4425 regs->gpr[1] = old_usp;
4426
4427 /* TODO: the other ports use regs->orig_XX to disable syscall checks
4428 * after this completes, but we don't use that mechanism. maybe we can
4429 * use it now ?
4430 */
4431
4432 return err;
4433
4434badframe:
4435 return 1;
4436}
4437#endif
4438
4439/* Set up a signal frame. */
4440
41ecc72b 4441static void setup_sigcontext(struct target_sigcontext *sc,
da7c8647
TB
4442 CPUOpenRISCState *regs,
4443 unsigned long mask)
d962783e 4444{
d89e71e8 4445 unsigned long usp = cpu_get_gpr(regs, 1);
d962783e
JL
4446
4447 /* copy the regs. they are first in sc so we can use sc directly */
4448
1d8b512b 4449 /*copy_to_user(&sc, regs, sizeof(struct target_pt_regs));*/
d962783e
JL
4450
4451 /* Set the frametype to CRIS_FRAME_NORMAL for the execution of
4452 the signal handler. The frametype will be restored to its previous
4453 value in restore_sigcontext. */
4454 /*regs->frametype = CRIS_FRAME_NORMAL;*/
4455
4456 /* then some other stuff */
1d8b512b 4457 __put_user(mask, &sc->oldmask);
41ecc72b 4458 __put_user(usp, &sc->usp);
d962783e
JL
4459}
4460
4461static inline unsigned long align_sigframe(unsigned long sp)
4462{
9be38598 4463 return sp & ~3UL;
d962783e
JL
4464}
4465
4466static inline abi_ulong get_sigframe(struct target_sigaction *ka,
4467 CPUOpenRISCState *regs,
4468 size_t frame_size)
4469{
d89e71e8 4470 unsigned long sp = cpu_get_gpr(regs, 1);
d962783e
JL
4471 int onsigstack = on_sig_stack(sp);
4472
4473 /* redzone */
4474 /* This is the X/Open sanctioned signal stack switching. */
b545f63f 4475 if ((ka->sa_flags & TARGET_SA_ONSTACK) != 0 && !onsigstack) {
d962783e
JL
4476 sp = target_sigaltstack_used.ss_sp + target_sigaltstack_used.ss_size;
4477 }
4478
4479 sp = align_sigframe(sp - frame_size);
4480
4481 /*
4482 * If we are on the alternate signal stack and would overflow it, don't.
4483 * Return an always-bogus address instead so we will die with SIGSEGV.
4484 */
4485
4486 if (onsigstack && !likely(on_sig_stack(sp))) {
4487 return -1L;
4488 }
4489
4490 return sp;
4491}
4492
d962783e
JL
4493static void setup_rt_frame(int sig, struct target_sigaction *ka,
4494 target_siginfo_t *info,
4495 target_sigset_t *set, CPUOpenRISCState *env)
4496{
4497 int err = 0;
4498 abi_ulong frame_addr;
4499 unsigned long return_ip;
4500 struct target_rt_sigframe *frame;
4501 abi_ulong info_addr, uc_addr;
4502
d962783e 4503 frame_addr = get_sigframe(ka, env, sizeof(*frame));
c8ee0a44 4504 trace_user_setup_rt_frame(env, frame_addr);
d962783e
JL
4505 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
4506 goto give_sigsegv;
4507 }
4508
4509 info_addr = frame_addr + offsetof(struct target_rt_sigframe, info);
1d8b512b 4510 __put_user(info_addr, &frame->pinfo);
d962783e 4511 uc_addr = frame_addr + offsetof(struct target_rt_sigframe, uc);
1d8b512b 4512 __put_user(uc_addr, &frame->puc);
d962783e
JL
4513
4514 if (ka->sa_flags & SA_SIGINFO) {
f6c7a05b 4515 tswap_siginfo(&frame->info, info);
d962783e
JL
4516 }
4517
04b33e21 4518 /*err |= __clear_user(&frame->uc, offsetof(ucontext_t, uc_mcontext));*/
1d8b512b
RV
4519 __put_user(0, &frame->uc.tuc_flags);
4520 __put_user(0, &frame->uc.tuc_link);
4521 __put_user(target_sigaltstack_used.ss_sp,
4522 &frame->uc.tuc_stack.ss_sp);
d89e71e8
SH
4523 __put_user(sas_ss_flags(cpu_get_gpr(env, 1)),
4524 &frame->uc.tuc_stack.ss_flags);
1d8b512b
RV
4525 __put_user(target_sigaltstack_used.ss_size,
4526 &frame->uc.tuc_stack.ss_size);
41ecc72b 4527 setup_sigcontext(&frame->sc, env, set->sig[0]);
d962783e
JL
4528
4529 /*err |= copy_to_user(frame->uc.tuc_sigmask, set, sizeof(*set));*/
4530
d962783e
JL
4531 /* trampoline - the desired return ip is the retcode itself */
4532 return_ip = (unsigned long)&frame->retcode;
4533 /* This is l.ori r11,r0,__NR_sigreturn, l.sys 1 */
1d8b512b
RV
4534 __put_user(0xa960, (short *)(frame->retcode + 0));
4535 __put_user(TARGET_NR_rt_sigreturn, (short *)(frame->retcode + 2));
4536 __put_user(0x20000001, (unsigned long *)(frame->retcode + 4));
4537 __put_user(0x15000000, (unsigned long *)(frame->retcode + 8));
d962783e
JL
4538
4539 if (err) {
4540 goto give_sigsegv;
4541 }
4542
4543 /* TODO what is the current->exec_domain stuff and invmap ? */
4544
4545 /* Set up registers for signal handler */
4546 env->pc = (unsigned long)ka->_sa_handler; /* what we enter NOW */
d89e71e8
SH
4547 cpu_set_gpr(env, 9, (unsigned long)return_ip); /* what we enter LATER */
4548 cpu_set_gpr(env, 3, (unsigned long)sig); /* arg 1: signo */
4549 cpu_set_gpr(env, 4, (unsigned long)&frame->info); /* arg 2: (siginfo_t*) */
4550 cpu_set_gpr(env, 5, (unsigned long)&frame->uc); /* arg 3: ucontext */
d962783e
JL
4551
4552 /* actually move the usp to reflect the stacked frame */
d89e71e8 4553 cpu_set_gpr(env, 1, (unsigned long)frame);
d962783e
JL
4554
4555 return;
4556
4557give_sigsegv:
4558 unlock_user_struct(frame, frame_addr, 1);
09391669 4559 force_sigsegv(sig);
d962783e
JL
4560}
4561
4562long do_sigreturn(CPUOpenRISCState *env)
4563{
c8ee0a44
PB
4564 trace_user_do_sigreturn(env, 0);
4565 fprintf(stderr, "do_sigreturn: not implemented\n");
d962783e
JL
4566 return -TARGET_ENOSYS;
4567}
4568
4569long do_rt_sigreturn(CPUOpenRISCState *env)
4570{
c8ee0a44
PB
4571 trace_user_do_rt_sigreturn(env, 0);
4572 fprintf(stderr, "do_rt_sigreturn: not implemented\n");
d962783e
JL
4573 return -TARGET_ENOSYS;
4574}
4575/* TARGET_OPENRISC */
4576
a4c075f1
UH
4577#elif defined(TARGET_S390X)
4578
4579#define __NUM_GPRS 16
4580#define __NUM_FPRS 16
4581#define __NUM_ACRS 16
4582
4583#define S390_SYSCALL_SIZE 2
4584#define __SIGNAL_FRAMESIZE 160 /* FIXME: 31-bit mode -> 96 */
4585
4586#define _SIGCONTEXT_NSIG 64
4587#define _SIGCONTEXT_NSIG_BPW 64 /* FIXME: 31-bit mode -> 32 */
4588#define _SIGCONTEXT_NSIG_WORDS (_SIGCONTEXT_NSIG / _SIGCONTEXT_NSIG_BPW)
4589#define _SIGMASK_COPY_SIZE (sizeof(unsigned long)*_SIGCONTEXT_NSIG_WORDS)
4590#define PSW_ADDR_AMODE 0x0000000000000000UL /* 0x80000000UL for 31-bit */
4591#define S390_SYSCALL_OPCODE ((uint16_t)0x0a00)
4592
4593typedef struct {
4594 target_psw_t psw;
4595 target_ulong gprs[__NUM_GPRS];
4596 unsigned int acrs[__NUM_ACRS];
4597} target_s390_regs_common;
4598
4599typedef struct {
4600 unsigned int fpc;
4601 double fprs[__NUM_FPRS];
4602} target_s390_fp_regs;
4603
4604typedef struct {
4605 target_s390_regs_common regs;
4606 target_s390_fp_regs fpregs;
4607} target_sigregs;
4608
4609struct target_sigcontext {
4610 target_ulong oldmask[_SIGCONTEXT_NSIG_WORDS];
4611 target_sigregs *sregs;
4612};
4613
4614typedef struct {
4615 uint8_t callee_used_stack[__SIGNAL_FRAMESIZE];
4616 struct target_sigcontext sc;
4617 target_sigregs sregs;
4618 int signo;
4619 uint8_t retcode[S390_SYSCALL_SIZE];
4620} sigframe;
4621
4622struct target_ucontext {
6fea2ea4
PM
4623 target_ulong tuc_flags;
4624 struct target_ucontext *tuc_link;
4625 target_stack_t tuc_stack;
4626 target_sigregs tuc_mcontext;
4627 target_sigset_t tuc_sigmask; /* mask last for extensibility */
a4c075f1
UH
4628};
4629
4630typedef struct {
4631 uint8_t callee_used_stack[__SIGNAL_FRAMESIZE];
4632 uint8_t retcode[S390_SYSCALL_SIZE];
4633 struct target_siginfo info;
4634 struct target_ucontext uc;
4635} rt_sigframe;
4636
4637static inline abi_ulong
05390248 4638get_sigframe(struct target_sigaction *ka, CPUS390XState *env, size_t frame_size)
a4c075f1
UH
4639{
4640 abi_ulong sp;
4641
4642 /* Default to using normal stack */
4643 sp = env->regs[15];
4644
4645 /* This is the X/Open sanctioned signal stack switching. */
4646 if (ka->sa_flags & TARGET_SA_ONSTACK) {
4647 if (!sas_ss_flags(sp)) {
4648 sp = target_sigaltstack_used.ss_sp +
4649 target_sigaltstack_used.ss_size;
4650 }
4651 }
4652
4653 /* This is the legacy signal stack switching. */
4654 else if (/* FIXME !user_mode(regs) */ 0 &&
4655 !(ka->sa_flags & TARGET_SA_RESTORER) &&
4656 ka->sa_restorer) {
4657 sp = (abi_ulong) ka->sa_restorer;
4658 }
4659
4660 return (sp - frame_size) & -8ul;
4661}
4662
05390248 4663static void save_sigregs(CPUS390XState *env, target_sigregs *sregs)
a4c075f1
UH
4664{
4665 int i;
4666 //save_access_regs(current->thread.acrs); FIXME
4667
4668 /* Copy a 'clean' PSW mask to the user to avoid leaking
4669 information about whether PER is currently on. */
4670 __put_user(env->psw.mask, &sregs->regs.psw.mask);
4671 __put_user(env->psw.addr, &sregs->regs.psw.addr);
4672 for (i = 0; i < 16; i++) {
4673 __put_user(env->regs[i], &sregs->regs.gprs[i]);
4674 }
4675 for (i = 0; i < 16; i++) {
4676 __put_user(env->aregs[i], &sregs->regs.acrs[i]);
4677 }
4678 /*
4679 * We have to store the fp registers to current->thread.fp_regs
4680 * to merge them with the emulated registers.
4681 */
4682 //save_fp_regs(&current->thread.fp_regs); FIXME
4683 for (i = 0; i < 16; i++) {
c498d8e3 4684 __put_user(get_freg(env, i)->ll, &sregs->fpregs.fprs[i]);
a4c075f1
UH
4685 }
4686}
4687
4688static void setup_frame(int sig, struct target_sigaction *ka,
05390248 4689 target_sigset_t *set, CPUS390XState *env)
a4c075f1
UH
4690{
4691 sigframe *frame;
4692 abi_ulong frame_addr;
4693
4694 frame_addr = get_sigframe(ka, env, sizeof(*frame));
c8ee0a44 4695 trace_user_setup_frame(env, frame_addr);
a4c075f1 4696 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
da7c8647 4697 goto give_sigsegv;
a4c075f1
UH
4698 }
4699
0188fadb 4700 __put_user(set->sig[0], &frame->sc.oldmask[0]);
a4c075f1
UH
4701
4702 save_sigregs(env, &frame->sregs);
4703
4704 __put_user((abi_ulong)(unsigned long)&frame->sregs,
4705 (abi_ulong *)&frame->sc.sregs);
4706
4707 /* Set up to return from userspace. If provided, use a stub
4708 already in userspace. */
4709 if (ka->sa_flags & TARGET_SA_RESTORER) {
da7c8647
TB
4710 env->regs[14] = (unsigned long)
4711 ka->sa_restorer | PSW_ADDR_AMODE;
a4c075f1 4712 } else {
5b1d59d0
CG
4713 env->regs[14] = (frame_addr + offsetof(sigframe, retcode))
4714 | PSW_ADDR_AMODE;
da7c8647
TB
4715 __put_user(S390_SYSCALL_OPCODE | TARGET_NR_sigreturn,
4716 (uint16_t *)(frame->retcode));
a4c075f1
UH
4717 }
4718
4719 /* Set up backchain. */
0188fadb 4720 __put_user(env->regs[15], (abi_ulong *) frame);
a4c075f1
UH
4721
4722 /* Set up registers for signal handler */
cb9c6268 4723 env->regs[15] = frame_addr;
a4c075f1
UH
4724 env->psw.addr = (target_ulong) ka->_sa_handler | PSW_ADDR_AMODE;
4725
4726 env->regs[2] = sig; //map_signal(sig);
cb9c6268 4727 env->regs[3] = frame_addr += offsetof(typeof(*frame), sc);
a4c075f1
UH
4728
4729 /* We forgot to include these in the sigcontext.
4730 To avoid breaking binary compatibility, they are passed as args. */
4731 env->regs[4] = 0; // FIXME: no clue... current->thread.trap_no;
4732 env->regs[5] = 0; // FIXME: no clue... current->thread.prot_addr;
4733
4734 /* Place signal number on stack to allow backtrace from handler. */
c1bc91c3 4735 __put_user(env->regs[2], &frame->signo);
a4c075f1
UH
4736 unlock_user_struct(frame, frame_addr, 1);
4737 return;
4738
4739give_sigsegv:
09391669 4740 force_sigsegv(sig);
a4c075f1
UH
4741}
4742
4743static void setup_rt_frame(int sig, struct target_sigaction *ka,
4744 target_siginfo_t *info,
05390248 4745 target_sigset_t *set, CPUS390XState *env)
a4c075f1
UH
4746{
4747 int i;
4748 rt_sigframe *frame;
4749 abi_ulong frame_addr;
4750
4751 frame_addr = get_sigframe(ka, env, sizeof *frame);
c8ee0a44 4752 trace_user_setup_rt_frame(env, frame_addr);
a4c075f1
UH
4753 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
4754 goto give_sigsegv;
4755 }
4756
f6c7a05b 4757 tswap_siginfo(&frame->info, info);
a4c075f1
UH
4758
4759 /* Create the ucontext. */
6fea2ea4
PM
4760 __put_user(0, &frame->uc.tuc_flags);
4761 __put_user((abi_ulong)0, (abi_ulong *)&frame->uc.tuc_link);
4762 __put_user(target_sigaltstack_used.ss_sp, &frame->uc.tuc_stack.ss_sp);
a4c075f1 4763 __put_user(sas_ss_flags(get_sp_from_cpustate(env)),
da7c8647 4764 &frame->uc.tuc_stack.ss_flags);
6fea2ea4
PM
4765 __put_user(target_sigaltstack_used.ss_size, &frame->uc.tuc_stack.ss_size);
4766 save_sigregs(env, &frame->uc.tuc_mcontext);
a4c075f1
UH
4767 for (i = 0; i < TARGET_NSIG_WORDS; i++) {
4768 __put_user((abi_ulong)set->sig[i],
da7c8647 4769 (abi_ulong *)&frame->uc.tuc_sigmask.sig[i]);
a4c075f1
UH
4770 }
4771
4772 /* Set up to return from userspace. If provided, use a stub
4773 already in userspace. */
4774 if (ka->sa_flags & TARGET_SA_RESTORER) {
4775 env->regs[14] = (unsigned long) ka->sa_restorer | PSW_ADDR_AMODE;
4776 } else {
4777 env->regs[14] = (unsigned long) frame->retcode | PSW_ADDR_AMODE;
0188fadb
RV
4778 __put_user(S390_SYSCALL_OPCODE | TARGET_NR_rt_sigreturn,
4779 (uint16_t *)(frame->retcode));
a4c075f1
UH
4780 }
4781
4782 /* Set up backchain. */
0188fadb 4783 __put_user(env->regs[15], (abi_ulong *) frame);
a4c075f1
UH
4784
4785 /* Set up registers for signal handler */
cb9c6268 4786 env->regs[15] = frame_addr;
a4c075f1
UH
4787 env->psw.addr = (target_ulong) ka->_sa_handler | PSW_ADDR_AMODE;
4788
4789 env->regs[2] = sig; //map_signal(sig);
cb9c6268
EI
4790 env->regs[3] = frame_addr + offsetof(typeof(*frame), info);
4791 env->regs[4] = frame_addr + offsetof(typeof(*frame), uc);
a4c075f1
UH
4792 return;
4793
4794give_sigsegv:
09391669 4795 force_sigsegv(sig);
a4c075f1
UH
4796}
4797
4798static int
05390248 4799restore_sigregs(CPUS390XState *env, target_sigregs *sc)
a4c075f1
UH
4800{
4801 int err = 0;
4802 int i;
4803
4804 for (i = 0; i < 16; i++) {
1d8b512b 4805 __get_user(env->regs[i], &sc->regs.gprs[i]);
a4c075f1
UH
4806 }
4807
1d8b512b 4808 __get_user(env->psw.mask, &sc->regs.psw.mask);
c8ee0a44
PB
4809 trace_user_s390x_restore_sigregs(env, (unsigned long long)sc->regs.psw.addr,
4810 (unsigned long long)env->psw.addr);
1d8b512b 4811 __get_user(env->psw.addr, &sc->regs.psw.addr);
a4c075f1
UH
4812 /* FIXME: 31-bit -> | PSW_ADDR_AMODE */
4813
4814 for (i = 0; i < 16; i++) {
1d8b512b 4815 __get_user(env->aregs[i], &sc->regs.acrs[i]);
a4c075f1
UH
4816 }
4817 for (i = 0; i < 16; i++) {
c498d8e3 4818 __get_user(get_freg(env, i)->ll, &sc->fpregs.fprs[i]);
a4c075f1
UH
4819 }
4820
4821 return err;
4822}
4823
05390248 4824long do_sigreturn(CPUS390XState *env)
a4c075f1
UH
4825{
4826 sigframe *frame;
4827 abi_ulong frame_addr = env->regs[15];
a4c075f1
UH
4828 target_sigset_t target_set;
4829 sigset_t set;
4830
c8ee0a44 4831 trace_user_do_sigreturn(env, frame_addr);
a4c075f1
UH
4832 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1)) {
4833 goto badframe;
4834 }
f5f601af 4835 __get_user(target_set.sig[0], &frame->sc.oldmask[0]);
a4c075f1
UH
4836
4837 target_to_host_sigset_internal(&set, &target_set);
9eede5b6 4838 set_sigmask(&set); /* ~_BLOCKABLE? */
a4c075f1
UH
4839
4840 if (restore_sigregs(env, &frame->sregs)) {
4841 goto badframe;
4842 }
4843
4844 unlock_user_struct(frame, frame_addr, 0);
47405ab6 4845 return -TARGET_QEMU_ESIGRETURN;
a4c075f1
UH
4846
4847badframe:
a4c075f1 4848 force_sig(TARGET_SIGSEGV);
c599d4d6 4849 return -TARGET_QEMU_ESIGRETURN;
a4c075f1
UH
4850}
4851
05390248 4852long do_rt_sigreturn(CPUS390XState *env)
a4c075f1
UH
4853{
4854 rt_sigframe *frame;
4855 abi_ulong frame_addr = env->regs[15];
a4c075f1
UH
4856 sigset_t set;
4857
c8ee0a44 4858 trace_user_do_rt_sigreturn(env, frame_addr);
a4c075f1
UH
4859 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1)) {
4860 goto badframe;
4861 }
6fea2ea4 4862 target_to_host_sigset(&set, &frame->uc.tuc_sigmask);
a4c075f1 4863
9eede5b6 4864 set_sigmask(&set); /* ~_BLOCKABLE? */
a4c075f1 4865
6fea2ea4 4866 if (restore_sigregs(env, &frame->uc.tuc_mcontext)) {
a4c075f1
UH
4867 goto badframe;
4868 }
4869
6fea2ea4 4870 if (do_sigaltstack(frame_addr + offsetof(rt_sigframe, uc.tuc_stack), 0,
a4c075f1
UH
4871 get_sp_from_cpustate(env)) == -EFAULT) {
4872 goto badframe;
4873 }
4874 unlock_user_struct(frame, frame_addr, 0);
47405ab6 4875 return -TARGET_QEMU_ESIGRETURN;
a4c075f1
UH
4876
4877badframe:
4878 unlock_user_struct(frame, frame_addr, 0);
4879 force_sig(TARGET_SIGSEGV);
c599d4d6 4880 return -TARGET_QEMU_ESIGRETURN;
a4c075f1
UH
4881}
4882
61e75fec 4883#elif defined(TARGET_PPC)
bcd4933a
NF
4884
4885/* Size of dummy stack frame allocated when calling signal handler.
4886 See arch/powerpc/include/asm/ptrace.h. */
4887#if defined(TARGET_PPC64)
4888#define SIGNAL_FRAMESIZE 128
4889#else
4890#define SIGNAL_FRAMESIZE 64
4891#endif
4892
61e75fec
TM
4893/* See arch/powerpc/include/asm/ucontext.h. Only used for 32-bit PPC;
4894 on 64-bit PPC, sigcontext and mcontext are one and the same. */
4895struct target_mcontext {
4896 target_ulong mc_gregs[48];
4897 /* Includes fpscr. */
4898 uint64_t mc_fregs[33];
95cda4c4
BH
4899#if defined(TARGET_PPC64)
4900 /* Pointer to the vector regs */
4901 target_ulong v_regs;
4902#else
61e75fec 4903 target_ulong mc_pad[2];
95cda4c4 4904#endif
61e75fec
TM
4905 /* We need to handle Altivec and SPE at the same time, which no
4906 kernel needs to do. Fortunately, the kernel defines this bit to
4907 be Altivec-register-large all the time, rather than trying to
4908 twiddle it based on the specific platform. */
4909 union {
4910 /* SPE vector registers. One extra for SPEFSCR. */
4911 uint32_t spe[33];
4912 /* Altivec vector registers. The packing of VSCR and VRSAVE
4913 varies depending on whether we're PPC64 or not: PPC64 splits
95cda4c4
BH
4914 them apart; PPC32 stuffs them together.
4915 We also need to account for the VSX registers on PPC64
4916 */
61e75fec 4917#if defined(TARGET_PPC64)
95cda4c4
BH
4918#define QEMU_NVRREG (34 + 16)
4919 /* On ppc64, this mcontext structure is naturally *unaligned*,
4920 * or rather it is aligned on a 8 bytes boundary but not on
4921 * a 16 bytes one. This pad fixes it up. This is also why the
4922 * vector regs are referenced by the v_regs pointer above so
4923 * any amount of padding can be added here
4924 */
4925 target_ulong pad;
61e75fec 4926#else
95cda4c4 4927 /* On ppc32, we are already aligned to 16 bytes */
61e75fec
TM
4928#define QEMU_NVRREG 33
4929#endif
95cda4c4
BH
4930 /* We cannot use ppc_avr_t here as we do *not* want the implied
4931 * 16-bytes alignment that would result from it. This would have
4932 * the effect of making the whole struct target_mcontext aligned
4933 * which breaks the layout of struct target_ucontext on ppc64.
4934 */
4935 uint64_t altivec[QEMU_NVRREG][2];
61e75fec 4936#undef QEMU_NVRREG
95cda4c4 4937 } mc_vregs;
61e75fec
TM
4938};
4939
bcd4933a
NF
4940/* See arch/powerpc/include/asm/sigcontext.h. */
4941struct target_sigcontext {
4942 target_ulong _unused[4];
4943 int32_t signal;
4944#if defined(TARGET_PPC64)
4945 int32_t pad0;
4946#endif
4947 target_ulong handler;
4948 target_ulong oldmask;
4949 target_ulong regs; /* struct pt_regs __user * */
61e75fec
TM
4950#if defined(TARGET_PPC64)
4951 struct target_mcontext mcontext;
4952#endif
bcd4933a
NF
4953};
4954
4955/* Indices for target_mcontext.mc_gregs, below.
4956 See arch/powerpc/include/asm/ptrace.h for details. */
4957enum {
4958 TARGET_PT_R0 = 0,
4959 TARGET_PT_R1 = 1,
4960 TARGET_PT_R2 = 2,
4961 TARGET_PT_R3 = 3,
4962 TARGET_PT_R4 = 4,
4963 TARGET_PT_R5 = 5,
4964 TARGET_PT_R6 = 6,
4965 TARGET_PT_R7 = 7,
4966 TARGET_PT_R8 = 8,
4967 TARGET_PT_R9 = 9,
4968 TARGET_PT_R10 = 10,
4969 TARGET_PT_R11 = 11,
4970 TARGET_PT_R12 = 12,
4971 TARGET_PT_R13 = 13,
4972 TARGET_PT_R14 = 14,
4973 TARGET_PT_R15 = 15,
4974 TARGET_PT_R16 = 16,
4975 TARGET_PT_R17 = 17,
4976 TARGET_PT_R18 = 18,
4977 TARGET_PT_R19 = 19,
4978 TARGET_PT_R20 = 20,
4979 TARGET_PT_R21 = 21,
4980 TARGET_PT_R22 = 22,
4981 TARGET_PT_R23 = 23,
4982 TARGET_PT_R24 = 24,
4983 TARGET_PT_R25 = 25,
4984 TARGET_PT_R26 = 26,
4985 TARGET_PT_R27 = 27,
4986 TARGET_PT_R28 = 28,
4987 TARGET_PT_R29 = 29,
4988 TARGET_PT_R30 = 30,
4989 TARGET_PT_R31 = 31,
4990 TARGET_PT_NIP = 32,
4991 TARGET_PT_MSR = 33,
4992 TARGET_PT_ORIG_R3 = 34,
4993 TARGET_PT_CTR = 35,
4994 TARGET_PT_LNK = 36,
4995 TARGET_PT_XER = 37,
4996 TARGET_PT_CCR = 38,
4997 /* Yes, there are two registers with #39. One is 64-bit only. */
4998 TARGET_PT_MQ = 39,
4999 TARGET_PT_SOFTE = 39,
5000 TARGET_PT_TRAP = 40,
5001 TARGET_PT_DAR = 41,
5002 TARGET_PT_DSISR = 42,
5003 TARGET_PT_RESULT = 43,
5004 TARGET_PT_REGS_COUNT = 44
5005};
5006
bcd4933a
NF
5007
5008struct target_ucontext {
60e99246 5009 target_ulong tuc_flags;
04b33e21 5010 target_ulong tuc_link; /* ucontext_t __user * */
60e99246 5011 struct target_sigaltstack tuc_stack;
bcd4933a 5012#if !defined(TARGET_PPC64)
60e99246
AJ
5013 int32_t tuc_pad[7];
5014 target_ulong tuc_regs; /* struct mcontext __user *
bcd4933a
NF
5015 points to uc_mcontext field */
5016#endif
60e99246 5017 target_sigset_t tuc_sigmask;
bcd4933a 5018#if defined(TARGET_PPC64)
c227f099 5019 target_sigset_t unused[15]; /* Allow for uc_sigmask growth */
61e75fec 5020 struct target_sigcontext tuc_sigcontext;
bcd4933a 5021#else
60e99246
AJ
5022 int32_t tuc_maskext[30];
5023 int32_t tuc_pad2[3];
5024 struct target_mcontext tuc_mcontext;
bcd4933a
NF
5025#endif
5026};
5027
5028/* See arch/powerpc/kernel/signal_32.c. */
5029struct target_sigframe {
5030 struct target_sigcontext sctx;
5031 struct target_mcontext mctx;
5032 int32_t abigap[56];
5033};
5034
61e75fec
TM
5035#if defined(TARGET_PPC64)
5036
5037#define TARGET_TRAMP_SIZE 6
5038
5039struct target_rt_sigframe {
da7c8647
TB
5040 /* sys_rt_sigreturn requires the ucontext be the first field */
5041 struct target_ucontext uc;
5042 target_ulong _unused[2];
5043 uint32_t trampoline[TARGET_TRAMP_SIZE];
5044 target_ulong pinfo; /* struct siginfo __user * */
5045 target_ulong puc; /* void __user * */
5046 struct target_siginfo info;
5047 /* 64 bit ABI allows for 288 bytes below sp before decrementing it. */
5048 char abigap[288];
61e75fec
TM
5049} __attribute__((aligned(16)));
5050
5051#else
5052
bcd4933a
NF
5053struct target_rt_sigframe {
5054 struct target_siginfo info;
5055 struct target_ucontext uc;
5056 int32_t abigap[56];
5057};
5058
61e75fec
TM
5059#endif
5060
8d6ab333
TM
5061#if defined(TARGET_PPC64)
5062
5063struct target_func_ptr {
5064 target_ulong entry;
5065 target_ulong toc;
5066};
5067
5068#endif
5069
bcd4933a
NF
5070/* We use the mc_pad field for the signal return trampoline. */
5071#define tramp mc_pad
5072
5073/* See arch/powerpc/kernel/signal.c. */
5074static target_ulong get_sigframe(struct target_sigaction *ka,
05390248 5075 CPUPPCState *env,
bcd4933a
NF
5076 int frame_size)
5077{
9be38598 5078 target_ulong oldsp;
bcd4933a
NF
5079
5080 oldsp = env->gpr[1];
5081
5082 if ((ka->sa_flags & TARGET_SA_ONSTACK) &&
da7c8647 5083 (sas_ss_flags(oldsp) == 0)) {
bcd4933a
NF
5084 oldsp = (target_sigaltstack_used.ss_sp
5085 + target_sigaltstack_used.ss_size);
5086 }
5087
9be38598 5088 return (oldsp - frame_size) & ~0xFUL;
bcd4933a
NF
5089}
5090
95cda4c4
BH
5091#if ((defined(TARGET_WORDS_BIGENDIAN) && defined(HOST_WORDS_BIGENDIAN)) || \
5092 (!defined(HOST_WORDS_BIGENDIAN) && !defined(TARGET_WORDS_BIGENDIAN)))
5093#define PPC_VEC_HI 0
5094#define PPC_VEC_LO 1
5095#else
5096#define PPC_VEC_HI 1
5097#define PPC_VEC_LO 0
5098#endif
5099
5100
7678108b 5101static void save_user_regs(CPUPPCState *env, struct target_mcontext *frame)
bcd4933a
NF
5102{
5103 target_ulong msr = env->msr;
5104 int i;
5105 target_ulong ccr = 0;
5106
5107 /* In general, the kernel attempts to be intelligent about what it
5108 needs to save for Altivec/FP/SPE registers. We don't care that
5109 much, so we just go ahead and save everything. */
5110
5111 /* Save general registers. */
5112 for (i = 0; i < ARRAY_SIZE(env->gpr); i++) {
da7c8647 5113 __put_user(env->gpr[i], &frame->mc_gregs[i]);
bcd4933a 5114 }
c650c008
RV
5115 __put_user(env->nip, &frame->mc_gregs[TARGET_PT_NIP]);
5116 __put_user(env->ctr, &frame->mc_gregs[TARGET_PT_CTR]);
5117 __put_user(env->lr, &frame->mc_gregs[TARGET_PT_LNK]);
5118 __put_user(env->xer, &frame->mc_gregs[TARGET_PT_XER]);
bcd4933a
NF
5119
5120 for (i = 0; i < ARRAY_SIZE(env->crf); i++) {
5121 ccr |= env->crf[i] << (32 - ((i + 1) * 4));
5122 }
c650c008 5123 __put_user(ccr, &frame->mc_gregs[TARGET_PT_CCR]);
bcd4933a
NF
5124
5125 /* Save Altivec registers if necessary. */
5126 if (env->insns_flags & PPC_ALTIVEC) {
95cda4c4 5127 uint32_t *vrsave;
bcd4933a 5128 for (i = 0; i < ARRAY_SIZE(env->avr); i++) {
c227f099 5129 ppc_avr_t *avr = &env->avr[i];
95cda4c4 5130 ppc_avr_t *vreg = (ppc_avr_t *)&frame->mc_vregs.altivec[i];
bcd4933a 5131
95cda4c4
BH
5132 __put_user(avr->u64[PPC_VEC_HI], &vreg->u64[0]);
5133 __put_user(avr->u64[PPC_VEC_LO], &vreg->u64[1]);
bcd4933a
NF
5134 }
5135 /* Set MSR_VR in the saved MSR value to indicate that
5136 frame->mc_vregs contains valid data. */
5137 msr |= MSR_VR;
95cda4c4
BH
5138#if defined(TARGET_PPC64)
5139 vrsave = (uint32_t *)&frame->mc_vregs.altivec[33];
5140 /* 64-bit needs to put a pointer to the vectors in the frame */
5141 __put_user(h2g(frame->mc_vregs.altivec), &frame->v_regs);
5142#else
5143 vrsave = (uint32_t *)&frame->mc_vregs.altivec[32];
5144#endif
5145 __put_user((uint32_t)env->spr[SPR_VRSAVE], vrsave);
5146 }
5147
5148 /* Save VSX second halves */
5149 if (env->insns_flags2 & PPC2_VSX) {
5150 uint64_t *vsregs = (uint64_t *)&frame->mc_vregs.altivec[34];
5151 for (i = 0; i < ARRAY_SIZE(env->vsr); i++) {
5152 __put_user(env->vsr[i], &vsregs[i]);
5153 }
bcd4933a
NF
5154 }
5155
5156 /* Save floating point registers. */
5157 if (env->insns_flags & PPC_FLOAT) {
5158 for (i = 0; i < ARRAY_SIZE(env->fpr); i++) {
c650c008 5159 __put_user(env->fpr[i], &frame->mc_fregs[i]);
bcd4933a 5160 }
c650c008 5161 __put_user((uint64_t) env->fpscr, &frame->mc_fregs[32]);
bcd4933a
NF
5162 }
5163
5164 /* Save SPE registers. The kernel only saves the high half. */
5165 if (env->insns_flags & PPC_SPE) {
5166#if defined(TARGET_PPC64)
5167 for (i = 0; i < ARRAY_SIZE(env->gpr); i++) {
c650c008 5168 __put_user(env->gpr[i] >> 32, &frame->mc_vregs.spe[i]);
bcd4933a
NF
5169 }
5170#else
5171 for (i = 0; i < ARRAY_SIZE(env->gprh); i++) {
c650c008 5172 __put_user(env->gprh[i], &frame->mc_vregs.spe[i]);
bcd4933a
NF
5173 }
5174#endif
5175 /* Set MSR_SPE in the saved MSR value to indicate that
5176 frame->mc_vregs contains valid data. */
5177 msr |= MSR_SPE;
c650c008 5178 __put_user(env->spe_fscr, &frame->mc_vregs.spe[32]);
bcd4933a
NF
5179 }
5180
5181 /* Store MSR. */
c650c008 5182 __put_user(msr, &frame->mc_gregs[TARGET_PT_MSR]);
7678108b 5183}
bcd4933a 5184
7678108b
TM
5185static void encode_trampoline(int sigret, uint32_t *tramp)
5186{
bcd4933a
NF
5187 /* Set up the sigreturn trampoline: li r0,sigret; sc. */
5188 if (sigret) {
7678108b
TM
5189 __put_user(0x38000000 | sigret, &tramp[0]);
5190 __put_user(0x44000002, &tramp[1]);
bcd4933a 5191 }
bcd4933a
NF
5192}
5193
c650c008
RV
5194static void restore_user_regs(CPUPPCState *env,
5195 struct target_mcontext *frame, int sig)
bcd4933a
NF
5196{
5197 target_ulong save_r2 = 0;
5198 target_ulong msr;
5199 target_ulong ccr;
5200
5201 int i;
5202
5203 if (!sig) {
5204 save_r2 = env->gpr[2];
5205 }
5206
5207 /* Restore general registers. */
5208 for (i = 0; i < ARRAY_SIZE(env->gpr); i++) {
c650c008 5209 __get_user(env->gpr[i], &frame->mc_gregs[i]);
bcd4933a 5210 }
c650c008
RV
5211 __get_user(env->nip, &frame->mc_gregs[TARGET_PT_NIP]);
5212 __get_user(env->ctr, &frame->mc_gregs[TARGET_PT_CTR]);
5213 __get_user(env->lr, &frame->mc_gregs[TARGET_PT_LNK]);
5214 __get_user(env->xer, &frame->mc_gregs[TARGET_PT_XER]);
5215 __get_user(ccr, &frame->mc_gregs[TARGET_PT_CCR]);
bcd4933a
NF
5216
5217 for (i = 0; i < ARRAY_SIZE(env->crf); i++) {
5218 env->crf[i] = (ccr >> (32 - ((i + 1) * 4))) & 0xf;
5219 }
5220
5221 if (!sig) {
5222 env->gpr[2] = save_r2;
5223 }
5224 /* Restore MSR. */
c650c008 5225 __get_user(msr, &frame->mc_gregs[TARGET_PT_MSR]);
bcd4933a
NF
5226
5227 /* If doing signal return, restore the previous little-endian mode. */
5228 if (sig)
49e55cba 5229 env->msr = (env->msr & ~(1ull << MSR_LE)) | (msr & (1ull << MSR_LE));
bcd4933a
NF
5230
5231 /* Restore Altivec registers if necessary. */
5232 if (env->insns_flags & PPC_ALTIVEC) {
95cda4c4
BH
5233 ppc_avr_t *v_regs;
5234 uint32_t *vrsave;
5235#if defined(TARGET_PPC64)
5236 uint64_t v_addr;
5237 /* 64-bit needs to recover the pointer to the vectors from the frame */
5238 __get_user(v_addr, &frame->v_regs);
5239 v_regs = g2h(v_addr);
5240#else
5241 v_regs = (ppc_avr_t *)frame->mc_vregs.altivec;
5242#endif
bcd4933a 5243 for (i = 0; i < ARRAY_SIZE(env->avr); i++) {
c227f099 5244 ppc_avr_t *avr = &env->avr[i];
95cda4c4 5245 ppc_avr_t *vreg = &v_regs[i];
bcd4933a 5246
95cda4c4
BH
5247 __get_user(avr->u64[PPC_VEC_HI], &vreg->u64[0]);
5248 __get_user(avr->u64[PPC_VEC_LO], &vreg->u64[1]);
bcd4933a
NF
5249 }
5250 /* Set MSR_VEC in the saved MSR value to indicate that
5251 frame->mc_vregs contains valid data. */
95cda4c4
BH
5252#if defined(TARGET_PPC64)
5253 vrsave = (uint32_t *)&v_regs[33];
5254#else
5255 vrsave = (uint32_t *)&v_regs[32];
5256#endif
5257 __get_user(env->spr[SPR_VRSAVE], vrsave);
5258 }
5259
5260 /* Restore VSX second halves */
5261 if (env->insns_flags2 & PPC2_VSX) {
5262 uint64_t *vsregs = (uint64_t *)&frame->mc_vregs.altivec[34];
5263 for (i = 0; i < ARRAY_SIZE(env->vsr); i++) {
5264 __get_user(env->vsr[i], &vsregs[i]);
5265 }
bcd4933a
NF
5266 }
5267
5268 /* Restore floating point registers. */
5269 if (env->insns_flags & PPC_FLOAT) {
5270 uint64_t fpscr;
5271 for (i = 0; i < ARRAY_SIZE(env->fpr); i++) {
c650c008 5272 __get_user(env->fpr[i], &frame->mc_fregs[i]);
bcd4933a 5273 }
c650c008 5274 __get_user(fpscr, &frame->mc_fregs[32]);
bcd4933a
NF
5275 env->fpscr = (uint32_t) fpscr;
5276 }
5277
5278 /* Save SPE registers. The kernel only saves the high half. */
5279 if (env->insns_flags & PPC_SPE) {
5280#if defined(TARGET_PPC64)
5281 for (i = 0; i < ARRAY_SIZE(env->gpr); i++) {
5282 uint32_t hi;
5283
c650c008 5284 __get_user(hi, &frame->mc_vregs.spe[i]);
bcd4933a
NF
5285 env->gpr[i] = ((uint64_t)hi << 32) | ((uint32_t) env->gpr[i]);
5286 }
5287#else
5288 for (i = 0; i < ARRAY_SIZE(env->gprh); i++) {
c650c008 5289 __get_user(env->gprh[i], &frame->mc_vregs.spe[i]);
bcd4933a
NF
5290 }
5291#endif
c650c008 5292 __get_user(env->spe_fscr, &frame->mc_vregs.spe[32]);
bcd4933a 5293 }
bcd4933a
NF
5294}
5295
95cda4c4 5296#if !defined(TARGET_PPC64)
bcd4933a 5297static void setup_frame(int sig, struct target_sigaction *ka,
05390248 5298 target_sigset_t *set, CPUPPCState *env)
bcd4933a
NF
5299{
5300 struct target_sigframe *frame;
5301 struct target_sigcontext *sc;
5302 target_ulong frame_addr, newsp;
5303 int err = 0;
bcd4933a
NF
5304
5305 frame_addr = get_sigframe(ka, env, sizeof(*frame));
c8ee0a44 5306 trace_user_setup_frame(env, frame_addr);
bcd4933a
NF
5307 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 1))
5308 goto sigsegv;
5309 sc = &frame->sctx;
5310
1d8b512b
RV
5311 __put_user(ka->_sa_handler, &sc->handler);
5312 __put_user(set->sig[0], &sc->oldmask);
1d8b512b 5313 __put_user(set->sig[1], &sc->_unused[3]);
1d8b512b
RV
5314 __put_user(h2g(&frame->mctx), &sc->regs);
5315 __put_user(sig, &sc->signal);
bcd4933a
NF
5316
5317 /* Save user regs. */
7678108b
TM
5318 save_user_regs(env, &frame->mctx);
5319
5320 /* Construct the trampoline code on the stack. */
5321 encode_trampoline(TARGET_NR_sigreturn, (uint32_t *)&frame->mctx.tramp);
bcd4933a
NF
5322
5323 /* The kernel checks for the presence of a VDSO here. We don't
5324 emulate a vdso, so use a sigreturn system call. */
5325 env->lr = (target_ulong) h2g(frame->mctx.tramp);
5326
5327 /* Turn off all fp exceptions. */
5328 env->fpscr = 0;
5329
5330 /* Create a stack frame for the caller of the handler. */
5331 newsp = frame_addr - SIGNAL_FRAMESIZE;
beb526b1 5332 err |= put_user(env->gpr[1], newsp, target_ulong);
bcd4933a
NF
5333
5334 if (err)
5335 goto sigsegv;
5336
5337 /* Set up registers for signal handler. */
5338 env->gpr[1] = newsp;
b6e2c935 5339 env->gpr[3] = sig;
61993a67 5340 env->gpr[4] = frame_addr + offsetof(struct target_sigframe, sctx);
8d6ab333 5341
bcd4933a 5342 env->nip = (target_ulong) ka->_sa_handler;
8d6ab333 5343
bcd4933a 5344 /* Signal handlers are entered in big-endian mode. */
49e55cba 5345 env->msr &= ~(1ull << MSR_LE);
bcd4933a
NF
5346
5347 unlock_user_struct(frame, frame_addr, 1);
5348 return;
5349
5350sigsegv:
5351 unlock_user_struct(frame, frame_addr, 1);
09391669 5352 force_sigsegv(sig);
bcd4933a 5353}
95cda4c4 5354#endif /* !defined(TARGET_PPC64) */
bcd4933a
NF
5355
5356static void setup_rt_frame(int sig, struct target_sigaction *ka,
c227f099 5357 target_siginfo_t *info,
05390248 5358 target_sigset_t *set, CPUPPCState *env)
bcd4933a
NF
5359{
5360 struct target_rt_sigframe *rt_sf;
61e75fec
TM
5361 uint32_t *trampptr = 0;
5362 struct target_mcontext *mctx = 0;
bcd4933a
NF
5363 target_ulong rt_sf_addr, newsp = 0;
5364 int i, err = 0;
14585580 5365#if defined(TARGET_PPC64)
26920a29 5366 struct target_sigcontext *sc = 0;
14585580
TM
5367 struct image_info *image = ((TaskState *)thread_cpu->opaque)->info;
5368#endif
bcd4933a
NF
5369
5370 rt_sf_addr = get_sigframe(ka, env, sizeof(*rt_sf));
5371 if (!lock_user_struct(VERIFY_WRITE, rt_sf, rt_sf_addr, 1))
5372 goto sigsegv;
5373
f6c7a05b 5374 tswap_siginfo(&rt_sf->info, info);
bcd4933a 5375
1d8b512b
RV
5376 __put_user(0, &rt_sf->uc.tuc_flags);
5377 __put_user(0, &rt_sf->uc.tuc_link);
5378 __put_user((target_ulong)target_sigaltstack_used.ss_sp,
5379 &rt_sf->uc.tuc_stack.ss_sp);
5380 __put_user(sas_ss_flags(env->gpr[1]),
5381 &rt_sf->uc.tuc_stack.ss_flags);
5382 __put_user(target_sigaltstack_used.ss_size,
5383 &rt_sf->uc.tuc_stack.ss_size);
61e75fec 5384#if !defined(TARGET_PPC64)
1d8b512b
RV
5385 __put_user(h2g (&rt_sf->uc.tuc_mcontext),
5386 &rt_sf->uc.tuc_regs);
61e75fec 5387#endif
bcd4933a 5388 for(i = 0; i < TARGET_NSIG_WORDS; i++) {
1d8b512b 5389 __put_user(set->sig[i], &rt_sf->uc.tuc_sigmask.sig[i]);
bcd4933a
NF
5390 }
5391
61e75fec
TM
5392#if defined(TARGET_PPC64)
5393 mctx = &rt_sf->uc.tuc_sigcontext.mcontext;
5394 trampptr = &rt_sf->trampoline[0];
26920a29
JRZ
5395
5396 sc = &rt_sf->uc.tuc_sigcontext;
5397 __put_user(h2g(mctx), &sc->regs);
5398 __put_user(sig, &sc->signal);
61e75fec
TM
5399#else
5400 mctx = &rt_sf->uc.tuc_mcontext;
5401 trampptr = (uint32_t *)&rt_sf->uc.tuc_mcontext.tramp;
5402#endif
5403
5404 save_user_regs(env, mctx);
5405 encode_trampoline(TARGET_NR_rt_sigreturn, trampptr);
bcd4933a
NF
5406
5407 /* The kernel checks for the presence of a VDSO here. We don't
5408 emulate a vdso, so use a sigreturn system call. */
61e75fec 5409 env->lr = (target_ulong) h2g(trampptr);
bcd4933a
NF
5410
5411 /* Turn off all fp exceptions. */
5412 env->fpscr = 0;
5413
5414 /* Create a stack frame for the caller of the handler. */
5415 newsp = rt_sf_addr - (SIGNAL_FRAMESIZE + 16);
fbdc200a 5416 err |= put_user(env->gpr[1], newsp, target_ulong);
bcd4933a
NF
5417
5418 if (err)
5419 goto sigsegv;
5420
5421 /* Set up registers for signal handler. */
5422 env->gpr[1] = newsp;
b6e2c935 5423 env->gpr[3] = (target_ulong) sig;
bcd4933a
NF
5424 env->gpr[4] = (target_ulong) h2g(&rt_sf->info);
5425 env->gpr[5] = (target_ulong) h2g(&rt_sf->uc);
5426 env->gpr[6] = (target_ulong) h2g(rt_sf);
8d6ab333
TM
5427
5428#if defined(TARGET_PPC64)
14585580
TM
5429 if (get_ppc64_abi(image) < 2) {
5430 /* ELFv1 PPC64 function pointers are pointers to OPD entries. */
5431 struct target_func_ptr *handler =
5432 (struct target_func_ptr *)g2h(ka->_sa_handler);
5433 env->nip = tswapl(handler->entry);
5434 env->gpr[2] = tswapl(handler->toc);
5435 } else {
5436 /* ELFv2 PPC64 function pointers are entry points, but R12
5437 * must also be set */
5438 env->nip = tswapl((target_ulong) ka->_sa_handler);
5439 env->gpr[12] = env->nip;
5440 }
8d6ab333 5441#else
bcd4933a 5442 env->nip = (target_ulong) ka->_sa_handler;
8d6ab333
TM
5443#endif
5444
bcd4933a 5445 /* Signal handlers are entered in big-endian mode. */
49e55cba 5446 env->msr &= ~(1ull << MSR_LE);
bcd4933a
NF
5447
5448 unlock_user_struct(rt_sf, rt_sf_addr, 1);
5449 return;
5450
5451sigsegv:
5452 unlock_user_struct(rt_sf, rt_sf_addr, 1);
09391669 5453 force_sigsegv(sig);
bcd4933a
NF
5454
5455}
5456
95cda4c4 5457#if !defined(TARGET_PPC64)
05390248 5458long do_sigreturn(CPUPPCState *env)
bcd4933a
NF
5459{
5460 struct target_sigcontext *sc = NULL;
5461 struct target_mcontext *sr = NULL;
b04636f8 5462 target_ulong sr_addr = 0, sc_addr;
bcd4933a 5463 sigset_t blocked;
c227f099 5464 target_sigset_t set;
bcd4933a
NF
5465
5466 sc_addr = env->gpr[1] + SIGNAL_FRAMESIZE;
5467 if (!lock_user_struct(VERIFY_READ, sc, sc_addr, 1))
5468 goto sigsegv;
5469
5470#if defined(TARGET_PPC64)
61e75fec 5471 set.sig[0] = sc->oldmask + ((uint64_t)(sc->_unused[3]) << 32);
bcd4933a 5472#else
f5f601af
RV
5473 __get_user(set.sig[0], &sc->oldmask);
5474 __get_user(set.sig[1], &sc->_unused[3]);
bcd4933a
NF
5475#endif
5476 target_to_host_sigset_internal(&blocked, &set);
9eede5b6 5477 set_sigmask(&blocked);
bcd4933a 5478
f5f601af 5479 __get_user(sr_addr, &sc->regs);
bcd4933a
NF
5480 if (!lock_user_struct(VERIFY_READ, sr, sr_addr, 1))
5481 goto sigsegv;
c650c008 5482 restore_user_regs(env, sr, 1);
bcd4933a
NF
5483
5484 unlock_user_struct(sr, sr_addr, 1);
5485 unlock_user_struct(sc, sc_addr, 1);
5486 return -TARGET_QEMU_ESIGRETURN;
5487
5488sigsegv:
5489 unlock_user_struct(sr, sr_addr, 1);
5490 unlock_user_struct(sc, sc_addr, 1);
66393fb9 5491 force_sig(TARGET_SIGSEGV);
c599d4d6 5492 return -TARGET_QEMU_ESIGRETURN;
bcd4933a 5493}
95cda4c4 5494#endif /* !defined(TARGET_PPC64) */
bcd4933a
NF
5495
5496/* See arch/powerpc/kernel/signal_32.c. */
05390248 5497static int do_setcontext(struct target_ucontext *ucp, CPUPPCState *env, int sig)
bcd4933a
NF
5498{
5499 struct target_mcontext *mcp;
5500 target_ulong mcp_addr;
5501 sigset_t blocked;
c227f099 5502 target_sigset_t set;
bcd4933a 5503
60e99246 5504 if (copy_from_user(&set, h2g(ucp) + offsetof(struct target_ucontext, tuc_sigmask),
bcd4933a
NF
5505 sizeof (set)))
5506 return 1;
5507
19774ec5
TM
5508#if defined(TARGET_PPC64)
5509 mcp_addr = h2g(ucp) +
5510 offsetof(struct target_ucontext, tuc_sigcontext.mcontext);
5511#else
9e918dc9 5512 __get_user(mcp_addr, &ucp->tuc_regs);
19774ec5 5513#endif
bcd4933a
NF
5514
5515 if (!lock_user_struct(VERIFY_READ, mcp, mcp_addr, 1))
5516 return 1;
5517
5518 target_to_host_sigset_internal(&blocked, &set);
9eede5b6 5519 set_sigmask(&blocked);
c650c008 5520 restore_user_regs(env, mcp, sig);
bcd4933a
NF
5521
5522 unlock_user_struct(mcp, mcp_addr, 1);
5523 return 0;
bcd4933a
NF
5524}
5525
05390248 5526long do_rt_sigreturn(CPUPPCState *env)
bcd4933a
NF
5527{
5528 struct target_rt_sigframe *rt_sf = NULL;
5529 target_ulong rt_sf_addr;
5530
5531 rt_sf_addr = env->gpr[1] + SIGNAL_FRAMESIZE + 16;
5532 if (!lock_user_struct(VERIFY_READ, rt_sf, rt_sf_addr, 1))
5533 goto sigsegv;
5534
5535 if (do_setcontext(&rt_sf->uc, env, 1))
5536 goto sigsegv;
5537
5538 do_sigaltstack(rt_sf_addr
60e99246 5539 + offsetof(struct target_rt_sigframe, uc.tuc_stack),
bcd4933a
NF
5540 0, env->gpr[1]);
5541
5542 unlock_user_struct(rt_sf, rt_sf_addr, 1);
5543 return -TARGET_QEMU_ESIGRETURN;
5544
5545sigsegv:
5546 unlock_user_struct(rt_sf, rt_sf_addr, 1);
66393fb9 5547 force_sig(TARGET_SIGSEGV);
c599d4d6 5548 return -TARGET_QEMU_ESIGRETURN;
bcd4933a
NF
5549}
5550
492a8744
LV
5551#elif defined(TARGET_M68K)
5552
5553struct target_sigcontext {
5554 abi_ulong sc_mask;
5555 abi_ulong sc_usp;
5556 abi_ulong sc_d0;
5557 abi_ulong sc_d1;
5558 abi_ulong sc_a0;
5559 abi_ulong sc_a1;
5560 unsigned short sc_sr;
5561 abi_ulong sc_pc;
5562};
5563
5564struct target_sigframe
5565{
5566 abi_ulong pretcode;
5567 int sig;
5568 int code;
5569 abi_ulong psc;
5570 char retcode[8];
5571 abi_ulong extramask[TARGET_NSIG_WORDS-1];
5572 struct target_sigcontext sc;
5573};
da7c8647 5574
c227f099 5575typedef int target_greg_t;
7181155d 5576#define TARGET_NGREG 18
c227f099 5577typedef target_greg_t target_gregset_t[TARGET_NGREG];
7181155d
LV
5578
5579typedef struct target_fpregset {
5580 int f_fpcntl[3];
5581 int f_fpregs[8*3];
c227f099 5582} target_fpregset_t;
7181155d
LV
5583
5584struct target_mcontext {
5585 int version;
c227f099
AL
5586 target_gregset_t gregs;
5587 target_fpregset_t fpregs;
7181155d
LV
5588};
5589
5590#define TARGET_MCONTEXT_VERSION 2
5591
5592struct target_ucontext {
60e99246
AJ
5593 abi_ulong tuc_flags;
5594 abi_ulong tuc_link;
5595 target_stack_t tuc_stack;
5596 struct target_mcontext tuc_mcontext;
5597 abi_long tuc_filler[80];
5598 target_sigset_t tuc_sigmask;
7181155d
LV
5599};
5600
5601struct target_rt_sigframe
5602{
5603 abi_ulong pretcode;
5604 int sig;
5605 abi_ulong pinfo;
5606 abi_ulong puc;
5607 char retcode[8];
5608 struct target_siginfo info;
5609 struct target_ucontext uc;
5610};
492a8744 5611
41ecc72b 5612static void setup_sigcontext(struct target_sigcontext *sc, CPUM68KState *env,
da7c8647 5613 abi_ulong mask)
492a8744 5614{
1d8b512b
RV
5615 __put_user(mask, &sc->sc_mask);
5616 __put_user(env->aregs[7], &sc->sc_usp);
5617 __put_user(env->dregs[0], &sc->sc_d0);
5618 __put_user(env->dregs[1], &sc->sc_d1);
5619 __put_user(env->aregs[0], &sc->sc_a0);
5620 __put_user(env->aregs[1], &sc->sc_a1);
5621 __put_user(env->sr, &sc->sc_sr);
5622 __put_user(env->pc, &sc->sc_pc);
492a8744
LV
5623}
5624
016d2e1d 5625static void
7ccb84a9 5626restore_sigcontext(CPUM68KState *env, struct target_sigcontext *sc)
492a8744 5627{
492a8744
LV
5628 int temp;
5629
1d8b512b 5630 __get_user(env->aregs[7], &sc->sc_usp);
7ccb84a9 5631 __get_user(env->dregs[0], &sc->sc_d0);
1d8b512b
RV
5632 __get_user(env->dregs[1], &sc->sc_d1);
5633 __get_user(env->aregs[0], &sc->sc_a0);
5634 __get_user(env->aregs[1], &sc->sc_a1);
5635 __get_user(env->pc, &sc->sc_pc);
5636 __get_user(temp, &sc->sc_sr);
492a8744 5637 env->sr = (env->sr & 0xff00) | (temp & 0xff);
492a8744
LV
5638}
5639
5640/*
5641 * Determine which stack to use..
5642 */
5643static inline abi_ulong
05390248
AF
5644get_sigframe(struct target_sigaction *ka, CPUM68KState *regs,
5645 size_t frame_size)
492a8744
LV
5646{
5647 unsigned long sp;
5648
5649 sp = regs->aregs[7];
5650
5651 /* This is the X/Open sanctioned signal stack switching. */
5652 if ((ka->sa_flags & TARGET_SA_ONSTACK) && (sas_ss_flags (sp) == 0)) {
5653 sp = target_sigaltstack_used.ss_sp + target_sigaltstack_used.ss_size;
5654 }
5655
5656 return ((sp - frame_size) & -8UL);
5657}
5658
5659static void setup_frame(int sig, struct target_sigaction *ka,
05390248 5660 target_sigset_t *set, CPUM68KState *env)
492a8744
LV
5661{
5662 struct target_sigframe *frame;
5663 abi_ulong frame_addr;
5664 abi_ulong retcode_addr;
5665 abi_ulong sc_addr;
492a8744
LV
5666 int i;
5667
5668 frame_addr = get_sigframe(ka, env, sizeof *frame);
c8ee0a44 5669 trace_user_setup_frame(env, frame_addr);
da7c8647
TB
5670 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
5671 goto give_sigsegv;
5672 }
492a8744 5673
1d8b512b 5674 __put_user(sig, &frame->sig);
492a8744
LV
5675
5676 sc_addr = frame_addr + offsetof(struct target_sigframe, sc);
1d8b512b 5677 __put_user(sc_addr, &frame->psc);
492a8744 5678
41ecc72b 5679 setup_sigcontext(&frame->sc, env, set->sig[0]);
492a8744
LV
5680
5681 for(i = 1; i < TARGET_NSIG_WORDS; i++) {
0188fadb 5682 __put_user(set->sig[i], &frame->extramask[i - 1]);
492a8744
LV
5683 }
5684
5685 /* Set up to return from userspace. */
5686
5687 retcode_addr = frame_addr + offsetof(struct target_sigframe, retcode);
1d8b512b 5688 __put_user(retcode_addr, &frame->pretcode);
492a8744
LV
5689
5690 /* moveq #,d0; trap #0 */
5691
1d8b512b 5692 __put_user(0x70004e40 + (TARGET_NR_sigreturn << 16),
da7c8647 5693 (uint32_t *)(frame->retcode));
492a8744 5694
492a8744
LV
5695 /* Set up to return from userspace */
5696
5697 env->aregs[7] = frame_addr;
5698 env->pc = ka->_sa_handler;
5699
5700 unlock_user_struct(frame, frame_addr, 1);
5701 return;
5702
5703give_sigsegv:
09391669 5704 force_sigsegv(sig);
492a8744
LV
5705}
5706
7181155d 5707static inline int target_rt_setup_ucontext(struct target_ucontext *uc,
05390248 5708 CPUM68KState *env)
7181155d 5709{
60e99246 5710 target_greg_t *gregs = uc->tuc_mcontext.gregs;
3219de45 5711 uint32_t sr = cpu_m68k_get_ccr(env);
7181155d 5712
1d8b512b
RV
5713 __put_user(TARGET_MCONTEXT_VERSION, &uc->tuc_mcontext.version);
5714 __put_user(env->dregs[0], &gregs[0]);
5715 __put_user(env->dregs[1], &gregs[1]);
5716 __put_user(env->dregs[2], &gregs[2]);
5717 __put_user(env->dregs[3], &gregs[3]);
5718 __put_user(env->dregs[4], &gregs[4]);
5719 __put_user(env->dregs[5], &gregs[5]);
5720 __put_user(env->dregs[6], &gregs[6]);
5721 __put_user(env->dregs[7], &gregs[7]);
5722 __put_user(env->aregs[0], &gregs[8]);
5723 __put_user(env->aregs[1], &gregs[9]);
5724 __put_user(env->aregs[2], &gregs[10]);
5725 __put_user(env->aregs[3], &gregs[11]);
5726 __put_user(env->aregs[4], &gregs[12]);
5727 __put_user(env->aregs[5], &gregs[13]);
5728 __put_user(env->aregs[6], &gregs[14]);
5729 __put_user(env->aregs[7], &gregs[15]);
5730 __put_user(env->pc, &gregs[16]);
3219de45 5731 __put_user(sr, &gregs[17]);
7181155d 5732
1d8b512b 5733 return 0;
7181155d 5734}
da7c8647 5735
05390248 5736static inline int target_rt_restore_ucontext(CPUM68KState *env,
7ccb84a9 5737 struct target_ucontext *uc)
7181155d
LV
5738{
5739 int temp;
60e99246 5740 target_greg_t *gregs = uc->tuc_mcontext.gregs;
7181155d 5741
1d8b512b 5742 __get_user(temp, &uc->tuc_mcontext.version);
7181155d
LV
5743 if (temp != TARGET_MCONTEXT_VERSION)
5744 goto badframe;
5745
5746 /* restore passed registers */
1d8b512b
RV
5747 __get_user(env->dregs[0], &gregs[0]);
5748 __get_user(env->dregs[1], &gregs[1]);
5749 __get_user(env->dregs[2], &gregs[2]);
5750 __get_user(env->dregs[3], &gregs[3]);
5751 __get_user(env->dregs[4], &gregs[4]);
5752 __get_user(env->dregs[5], &gregs[5]);
5753 __get_user(env->dregs[6], &gregs[6]);
5754 __get_user(env->dregs[7], &gregs[7]);
5755 __get_user(env->aregs[0], &gregs[8]);
5756 __get_user(env->aregs[1], &gregs[9]);
5757 __get_user(env->aregs[2], &gregs[10]);
5758 __get_user(env->aregs[3], &gregs[11]);
5759 __get_user(env->aregs[4], &gregs[12]);
5760 __get_user(env->aregs[5], &gregs[13]);
5761 __get_user(env->aregs[6], &gregs[14]);
5762 __get_user(env->aregs[7], &gregs[15]);
5763 __get_user(env->pc, &gregs[16]);
5764 __get_user(temp, &gregs[17]);
3219de45 5765 cpu_m68k_set_ccr(env, temp);
7181155d 5766
1d8b512b 5767 return 0;
7181155d
LV
5768
5769badframe:
5770 return 1;
5771}
5772
492a8744 5773static void setup_rt_frame(int sig, struct target_sigaction *ka,
c227f099 5774 target_siginfo_t *info,
05390248 5775 target_sigset_t *set, CPUM68KState *env)
492a8744 5776{
7181155d
LV
5777 struct target_rt_sigframe *frame;
5778 abi_ulong frame_addr;
5779 abi_ulong retcode_addr;
5780 abi_ulong info_addr;
5781 abi_ulong uc_addr;
5782 int err = 0;
5783 int i;
5784
5785 frame_addr = get_sigframe(ka, env, sizeof *frame);
c8ee0a44 5786 trace_user_setup_rt_frame(env, frame_addr);
da7c8647
TB
5787 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
5788 goto give_sigsegv;
5789 }
7181155d 5790
1d8b512b 5791 __put_user(sig, &frame->sig);
7181155d
LV
5792
5793 info_addr = frame_addr + offsetof(struct target_rt_sigframe, info);
1d8b512b 5794 __put_user(info_addr, &frame->pinfo);
7181155d
LV
5795
5796 uc_addr = frame_addr + offsetof(struct target_rt_sigframe, uc);
1d8b512b 5797 __put_user(uc_addr, &frame->puc);
7181155d 5798
f6c7a05b 5799 tswap_siginfo(&frame->info, info);
7181155d
LV
5800
5801 /* Create the ucontext */
5802
1d8b512b
RV
5803 __put_user(0, &frame->uc.tuc_flags);
5804 __put_user(0, &frame->uc.tuc_link);
5805 __put_user(target_sigaltstack_used.ss_sp,
5806 &frame->uc.tuc_stack.ss_sp);
5807 __put_user(sas_ss_flags(env->aregs[7]),
da7c8647 5808 &frame->uc.tuc_stack.ss_flags);
1d8b512b
RV
5809 __put_user(target_sigaltstack_used.ss_size,
5810 &frame->uc.tuc_stack.ss_size);
7181155d
LV
5811 err |= target_rt_setup_ucontext(&frame->uc, env);
5812
5813 if (err)
da7c8647 5814 goto give_sigsegv;
7181155d
LV
5815
5816 for(i = 0; i < TARGET_NSIG_WORDS; i++) {
0188fadb 5817 __put_user(set->sig[i], &frame->uc.tuc_sigmask.sig[i]);
7181155d
LV
5818 }
5819
5820 /* Set up to return from userspace. */
5821
5822 retcode_addr = frame_addr + offsetof(struct target_sigframe, retcode);
1d8b512b 5823 __put_user(retcode_addr, &frame->pretcode);
7181155d
LV
5824
5825 /* moveq #,d0; notb d0; trap #0 */
5826
1d8b512b 5827 __put_user(0x70004600 + ((TARGET_NR_rt_sigreturn ^ 0xff) << 16),
1669add7
PM
5828 (uint32_t *)(frame->retcode + 0));
5829 __put_user(0x4e40, (uint16_t *)(frame->retcode + 4));
7181155d
LV
5830
5831 if (err)
5832 goto give_sigsegv;
5833
5834 /* Set up to return from userspace */
5835
5836 env->aregs[7] = frame_addr;
5837 env->pc = ka->_sa_handler;
5838
5839 unlock_user_struct(frame, frame_addr, 1);
5840 return;
5841
5842give_sigsegv:
5843 unlock_user_struct(frame, frame_addr, 1);
09391669 5844 force_sigsegv(sig);
492a8744
LV
5845}
5846
05390248 5847long do_sigreturn(CPUM68KState *env)
492a8744
LV
5848{
5849 struct target_sigframe *frame;
5850 abi_ulong frame_addr = env->aregs[7] - 4;
c227f099 5851 target_sigset_t target_set;
492a8744 5852 sigset_t set;
7ccb84a9 5853 int i;
492a8744 5854
c8ee0a44 5855 trace_user_do_sigreturn(env, frame_addr);
492a8744
LV
5856 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1))
5857 goto badframe;
5858
5859 /* set blocked signals */
5860
f5f601af 5861 __get_user(target_set.sig[0], &frame->sc.sc_mask);
492a8744
LV
5862
5863 for(i = 1; i < TARGET_NSIG_WORDS; i++) {
f5f601af 5864 __get_user(target_set.sig[i], &frame->extramask[i - 1]);
492a8744
LV
5865 }
5866
5867 target_to_host_sigset_internal(&set, &target_set);
9eede5b6 5868 set_sigmask(&set);
492a8744
LV
5869
5870 /* restore registers */
5871
7ccb84a9 5872 restore_sigcontext(env, &frame->sc);
492a8744
LV
5873
5874 unlock_user_struct(frame, frame_addr, 0);
7ccb84a9 5875 return -TARGET_QEMU_ESIGRETURN;
492a8744
LV
5876
5877badframe:
492a8744 5878 force_sig(TARGET_SIGSEGV);
c599d4d6 5879 return -TARGET_QEMU_ESIGRETURN;
492a8744
LV
5880}
5881
05390248 5882long do_rt_sigreturn(CPUM68KState *env)
492a8744 5883{
7181155d
LV
5884 struct target_rt_sigframe *frame;
5885 abi_ulong frame_addr = env->aregs[7] - 4;
7181155d 5886 sigset_t set;
7181155d 5887
c8ee0a44 5888 trace_user_do_rt_sigreturn(env, frame_addr);
7181155d
LV
5889 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1))
5890 goto badframe;
5891
59ebb6e4 5892 target_to_host_sigset(&set, &frame->uc.tuc_sigmask);
9eede5b6 5893 set_sigmask(&set);
7181155d
LV
5894
5895 /* restore registers */
5896
7ccb84a9 5897 if (target_rt_restore_ucontext(env, &frame->uc))
7181155d
LV
5898 goto badframe;
5899
5900 if (do_sigaltstack(frame_addr +
60e99246 5901 offsetof(struct target_rt_sigframe, uc.tuc_stack),
7181155d
LV
5902 0, get_sp_from_cpustate(env)) == -EFAULT)
5903 goto badframe;
5904
5905 unlock_user_struct(frame, frame_addr, 0);
7ccb84a9 5906 return -TARGET_QEMU_ESIGRETURN;
7181155d
LV
5907
5908badframe:
5909 unlock_user_struct(frame, frame_addr, 0);
5910 force_sig(TARGET_SIGSEGV);
c599d4d6 5911 return -TARGET_QEMU_ESIGRETURN;
492a8744
LV
5912}
5913
6049f4f8
RH
5914#elif defined(TARGET_ALPHA)
5915
5916struct target_sigcontext {
5917 abi_long sc_onstack;
5918 abi_long sc_mask;
5919 abi_long sc_pc;
5920 abi_long sc_ps;
5921 abi_long sc_regs[32];
5922 abi_long sc_ownedfp;
5923 abi_long sc_fpregs[32];
5924 abi_ulong sc_fpcr;
5925 abi_ulong sc_fp_control;
5926 abi_ulong sc_reserved1;
5927 abi_ulong sc_reserved2;
5928 abi_ulong sc_ssize;
5929 abi_ulong sc_sbase;
5930 abi_ulong sc_traparg_a0;
5931 abi_ulong sc_traparg_a1;
5932 abi_ulong sc_traparg_a2;
5933 abi_ulong sc_fp_trap_pc;
5934 abi_ulong sc_fp_trigger_sum;
5935 abi_ulong sc_fp_trigger_inst;
5936};
5937
5938struct target_ucontext {
60e99246
AJ
5939 abi_ulong tuc_flags;
5940 abi_ulong tuc_link;
5941 abi_ulong tuc_osf_sigmask;
5942 target_stack_t tuc_stack;
5943 struct target_sigcontext tuc_mcontext;
5944 target_sigset_t tuc_sigmask;
6049f4f8
RH
5945};
5946
5947struct target_sigframe {
5948 struct target_sigcontext sc;
5949 unsigned int retcode[3];
5950};
5951
5952struct target_rt_sigframe {
5953 target_siginfo_t info;
5954 struct target_ucontext uc;
5955 unsigned int retcode[3];
5956};
5957
5958#define INSN_MOV_R30_R16 0x47fe0410
5959#define INSN_LDI_R0 0x201f0000
5960#define INSN_CALLSYS 0x00000083
5961
41ecc72b 5962static void setup_sigcontext(struct target_sigcontext *sc, CPUAlphaState *env,
da7c8647 5963 abi_ulong frame_addr, target_sigset_t *set)
6049f4f8 5964{
41ecc72b 5965 int i;
6049f4f8 5966
1d8b512b
RV
5967 __put_user(on_sig_stack(frame_addr), &sc->sc_onstack);
5968 __put_user(set->sig[0], &sc->sc_mask);
5969 __put_user(env->pc, &sc->sc_pc);
5970 __put_user(8, &sc->sc_ps);
6049f4f8
RH
5971
5972 for (i = 0; i < 31; ++i) {
1d8b512b 5973 __put_user(env->ir[i], &sc->sc_regs[i]);
6049f4f8 5974 }
1d8b512b 5975 __put_user(0, &sc->sc_regs[31]);
6049f4f8
RH
5976
5977 for (i = 0; i < 31; ++i) {
1d8b512b 5978 __put_user(env->fir[i], &sc->sc_fpregs[i]);
6049f4f8 5979 }
1d8b512b
RV
5980 __put_user(0, &sc->sc_fpregs[31]);
5981 __put_user(cpu_alpha_load_fpcr(env), &sc->sc_fpcr);
6049f4f8 5982
1d8b512b
RV
5983 __put_user(0, &sc->sc_traparg_a0); /* FIXME */
5984 __put_user(0, &sc->sc_traparg_a1); /* FIXME */
5985 __put_user(0, &sc->sc_traparg_a2); /* FIXME */
6049f4f8
RH
5986}
5987
016d2e1d 5988static void restore_sigcontext(CPUAlphaState *env,
da7c8647 5989 struct target_sigcontext *sc)
6049f4f8
RH
5990{
5991 uint64_t fpcr;
016d2e1d 5992 int i;
6049f4f8 5993
1d8b512b 5994 __get_user(env->pc, &sc->sc_pc);
6049f4f8
RH
5995
5996 for (i = 0; i < 31; ++i) {
1d8b512b 5997 __get_user(env->ir[i], &sc->sc_regs[i]);
6049f4f8
RH
5998 }
5999 for (i = 0; i < 31; ++i) {
1d8b512b 6000 __get_user(env->fir[i], &sc->sc_fpregs[i]);
6049f4f8
RH
6001 }
6002
1d8b512b 6003 __get_user(fpcr, &sc->sc_fpcr);
6049f4f8 6004 cpu_alpha_store_fpcr(env, fpcr);
6049f4f8
RH
6005}
6006
6007static inline abi_ulong get_sigframe(struct target_sigaction *sa,
05390248
AF
6008 CPUAlphaState *env,
6009 unsigned long framesize)
6049f4f8
RH
6010{
6011 abi_ulong sp = env->ir[IR_SP];
6012
6013 /* This is the X/Open sanctioned signal stack switching. */
6014 if ((sa->sa_flags & TARGET_SA_ONSTACK) != 0 && !sas_ss_flags(sp)) {
6015 sp = target_sigaltstack_used.ss_sp + target_sigaltstack_used.ss_size;
6016 }
6017 return (sp - framesize) & -32;
6018}
6019
6020static void setup_frame(int sig, struct target_sigaction *ka,
05390248 6021 target_sigset_t *set, CPUAlphaState *env)
6049f4f8
RH
6022{
6023 abi_ulong frame_addr, r26;
6024 struct target_sigframe *frame;
6025 int err = 0;
6026
6027 frame_addr = get_sigframe(ka, env, sizeof(*frame));
c8ee0a44 6028 trace_user_setup_frame(env, frame_addr);
6049f4f8
RH
6029 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
6030 goto give_sigsegv;
6031 }
6032
41ecc72b 6033 setup_sigcontext(&frame->sc, env, frame_addr, set);
6049f4f8
RH
6034
6035 if (ka->sa_restorer) {
6036 r26 = ka->sa_restorer;
6037 } else {
1d8b512b
RV
6038 __put_user(INSN_MOV_R30_R16, &frame->retcode[0]);
6039 __put_user(INSN_LDI_R0 + TARGET_NR_sigreturn,
6040 &frame->retcode[1]);
6041 __put_user(INSN_CALLSYS, &frame->retcode[2]);
6049f4f8
RH
6042 /* imb() */
6043 r26 = frame_addr;
6044 }
6045
6046 unlock_user_struct(frame, frame_addr, 1);
6047
6048 if (err) {
da7c8647 6049give_sigsegv:
09391669
PM
6050 force_sigsegv(sig);
6051 return;
6049f4f8
RH
6052 }
6053
6054 env->ir[IR_RA] = r26;
6055 env->ir[IR_PV] = env->pc = ka->_sa_handler;
6056 env->ir[IR_A0] = sig;
6057 env->ir[IR_A1] = 0;
6058 env->ir[IR_A2] = frame_addr + offsetof(struct target_sigframe, sc);
6059 env->ir[IR_SP] = frame_addr;
6060}
6061
6062static void setup_rt_frame(int sig, struct target_sigaction *ka,
6063 target_siginfo_t *info,
05390248 6064 target_sigset_t *set, CPUAlphaState *env)
6049f4f8
RH
6065{
6066 abi_ulong frame_addr, r26;
6067 struct target_rt_sigframe *frame;
6068 int i, err = 0;
6069
6070 frame_addr = get_sigframe(ka, env, sizeof(*frame));
c8ee0a44 6071 trace_user_setup_rt_frame(env, frame_addr);
6049f4f8
RH
6072 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
6073 goto give_sigsegv;
6074 }
6075
f6c7a05b 6076 tswap_siginfo(&frame->info, info);
6049f4f8 6077
1d8b512b
RV
6078 __put_user(0, &frame->uc.tuc_flags);
6079 __put_user(0, &frame->uc.tuc_link);
6080 __put_user(set->sig[0], &frame->uc.tuc_osf_sigmask);
6081 __put_user(target_sigaltstack_used.ss_sp,
6082 &frame->uc.tuc_stack.ss_sp);
6083 __put_user(sas_ss_flags(env->ir[IR_SP]),
6084 &frame->uc.tuc_stack.ss_flags);
6085 __put_user(target_sigaltstack_used.ss_size,
6086 &frame->uc.tuc_stack.ss_size);
41ecc72b 6087 setup_sigcontext(&frame->uc.tuc_mcontext, env, frame_addr, set);
6049f4f8 6088 for (i = 0; i < TARGET_NSIG_WORDS; ++i) {
1d8b512b 6089 __put_user(set->sig[i], &frame->uc.tuc_sigmask.sig[i]);
6049f4f8
RH
6090 }
6091
6092 if (ka->sa_restorer) {
6093 r26 = ka->sa_restorer;
6094 } else {
1d8b512b
RV
6095 __put_user(INSN_MOV_R30_R16, &frame->retcode[0]);
6096 __put_user(INSN_LDI_R0 + TARGET_NR_rt_sigreturn,
6097 &frame->retcode[1]);
6098 __put_user(INSN_CALLSYS, &frame->retcode[2]);
6049f4f8
RH
6099 /* imb(); */
6100 r26 = frame_addr;
6101 }
6102
6103 if (err) {
da7c8647 6104give_sigsegv:
09391669
PM
6105 force_sigsegv(sig);
6106 return;
6049f4f8
RH
6107 }
6108
6109 env->ir[IR_RA] = r26;
6110 env->ir[IR_PV] = env->pc = ka->_sa_handler;
6111 env->ir[IR_A0] = sig;
6112 env->ir[IR_A1] = frame_addr + offsetof(struct target_rt_sigframe, info);
6113 env->ir[IR_A2] = frame_addr + offsetof(struct target_rt_sigframe, uc);
6114 env->ir[IR_SP] = frame_addr;
6115}
6116
05390248 6117long do_sigreturn(CPUAlphaState *env)
6049f4f8
RH
6118{
6119 struct target_sigcontext *sc;
6120 abi_ulong sc_addr = env->ir[IR_A0];
6121 target_sigset_t target_set;
6122 sigset_t set;
6123
6124 if (!lock_user_struct(VERIFY_READ, sc, sc_addr, 1)) {
6125 goto badframe;
6126 }
6127
6128 target_sigemptyset(&target_set);
f5f601af 6129 __get_user(target_set.sig[0], &sc->sc_mask);
6049f4f8
RH
6130
6131 target_to_host_sigset_internal(&set, &target_set);
9eede5b6 6132 set_sigmask(&set);
6049f4f8 6133
016d2e1d 6134 restore_sigcontext(env, sc);
6049f4f8 6135 unlock_user_struct(sc, sc_addr, 0);
338c858c 6136 return -TARGET_QEMU_ESIGRETURN;
6049f4f8 6137
da7c8647 6138badframe:
6049f4f8 6139 force_sig(TARGET_SIGSEGV);
c599d4d6 6140 return -TARGET_QEMU_ESIGRETURN;
6049f4f8
RH
6141}
6142
05390248 6143long do_rt_sigreturn(CPUAlphaState *env)
6049f4f8
RH
6144{
6145 abi_ulong frame_addr = env->ir[IR_A0];
6146 struct target_rt_sigframe *frame;
6147 sigset_t set;
6148
c8ee0a44 6149 trace_user_do_rt_sigreturn(env, frame_addr);
6049f4f8
RH
6150 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1)) {
6151 goto badframe;
6152 }
60e99246 6153 target_to_host_sigset(&set, &frame->uc.tuc_sigmask);
9eede5b6 6154 set_sigmask(&set);
6049f4f8 6155
016d2e1d 6156 restore_sigcontext(env, &frame->uc.tuc_mcontext);
6049f4f8 6157 if (do_sigaltstack(frame_addr + offsetof(struct target_rt_sigframe,
60e99246 6158 uc.tuc_stack),
6049f4f8
RH
6159 0, env->ir[IR_SP]) == -EFAULT) {
6160 goto badframe;
6161 }
6162
6163 unlock_user_struct(frame, frame_addr, 0);
338c858c 6164 return -TARGET_QEMU_ESIGRETURN;
6049f4f8
RH
6165
6166
da7c8647 6167badframe:
6049f4f8
RH
6168 unlock_user_struct(frame, frame_addr, 0);
6169 force_sig(TARGET_SIGSEGV);
c599d4d6 6170 return -TARGET_QEMU_ESIGRETURN;
6049f4f8
RH
6171}
6172
bf0f60a6
CG
6173#elif defined(TARGET_TILEGX)
6174
6175struct target_sigcontext {
6176 union {
6177 /* General-purpose registers. */
6178 abi_ulong gregs[56];
6179 struct {
6180 abi_ulong __gregs[53];
6181 abi_ulong tp; /* Aliases gregs[TREG_TP]. */
6182 abi_ulong sp; /* Aliases gregs[TREG_SP]. */
6183 abi_ulong lr; /* Aliases gregs[TREG_LR]. */
6184 };
6185 };
6186 abi_ulong pc; /* Program counter. */
6187 abi_ulong ics; /* In Interrupt Critical Section? */
6188 abi_ulong faultnum; /* Fault number. */
6189 abi_ulong pad[5];
6190};
6191
6192struct target_ucontext {
6193 abi_ulong tuc_flags;
6194 abi_ulong tuc_link;
6195 target_stack_t tuc_stack;
6196 struct target_sigcontext tuc_mcontext;
6197 target_sigset_t tuc_sigmask; /* mask last for extensibility */
6198};
6199
6200struct target_rt_sigframe {
6201 unsigned char save_area[16]; /* caller save area */
6202 struct target_siginfo info;
6203 struct target_ucontext uc;
f1d9d107 6204 abi_ulong retcode[2];
bf0f60a6
CG
6205};
6206
f1d9d107
CG
6207#define INSN_MOVELI_R10_139 0x00045fe551483000ULL /* { moveli r10, 139 } */
6208#define INSN_SWINT1 0x286b180051485000ULL /* { swint1 } */
6209
6210
bf0f60a6
CG
6211static void setup_sigcontext(struct target_sigcontext *sc,
6212 CPUArchState *env, int signo)
6213{
6214 int i;
6215
6216 for (i = 0; i < TILEGX_R_COUNT; ++i) {
6217 __put_user(env->regs[i], &sc->gregs[i]);
6218 }
6219
6220 __put_user(env->pc, &sc->pc);
6221 __put_user(0, &sc->ics);
6222 __put_user(signo, &sc->faultnum);
6223}
6224
6225static void restore_sigcontext(CPUTLGState *env, struct target_sigcontext *sc)
6226{
6227 int i;
6228
6229 for (i = 0; i < TILEGX_R_COUNT; ++i) {
6230 __get_user(env->regs[i], &sc->gregs[i]);
6231 }
6232
6233 __get_user(env->pc, &sc->pc);
6234}
6235
6236static abi_ulong get_sigframe(struct target_sigaction *ka, CPUArchState *env,
6237 size_t frame_size)
6238{
6239 unsigned long sp = env->regs[TILEGX_R_SP];
6240
6241 if (on_sig_stack(sp) && !likely(on_sig_stack(sp - frame_size))) {
6242 return -1UL;
6243 }
6244
6245 if ((ka->sa_flags & SA_ONSTACK) && !sas_ss_flags(sp)) {
6246 sp = target_sigaltstack_used.ss_sp + target_sigaltstack_used.ss_size;
6247 }
6248
6249 sp -= frame_size;
6250 sp &= -16UL;
6251 return sp;
6252}
6253
6254static void setup_rt_frame(int sig, struct target_sigaction *ka,
6255 target_siginfo_t *info,
6256 target_sigset_t *set, CPUArchState *env)
6257{
6258 abi_ulong frame_addr;
6259 struct target_rt_sigframe *frame;
6260 unsigned long restorer;
6261
6262 frame_addr = get_sigframe(ka, env, sizeof(*frame));
c8ee0a44 6263 trace_user_setup_rt_frame(env, frame_addr);
bf0f60a6
CG
6264 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
6265 goto give_sigsegv;
6266 }
6267
6268 /* Always write at least the signal number for the stack backtracer. */
6269 if (ka->sa_flags & TARGET_SA_SIGINFO) {
6270 /* At sigreturn time, restore the callee-save registers too. */
6271 tswap_siginfo(&frame->info, info);
6272 /* regs->flags |= PT_FLAGS_RESTORE_REGS; FIXME: we can skip it? */
6273 } else {
6274 __put_user(info->si_signo, &frame->info.si_signo);
6275 }
6276
6277 /* Create the ucontext. */
6278 __put_user(0, &frame->uc.tuc_flags);
6279 __put_user(0, &frame->uc.tuc_link);
6280 __put_user(target_sigaltstack_used.ss_sp, &frame->uc.tuc_stack.ss_sp);
6281 __put_user(sas_ss_flags(env->regs[TILEGX_R_SP]),
6282 &frame->uc.tuc_stack.ss_flags);
6283 __put_user(target_sigaltstack_used.ss_size, &frame->uc.tuc_stack.ss_size);
6284 setup_sigcontext(&frame->uc.tuc_mcontext, env, info->si_signo);
6285
bf0f60a6 6286 if (ka->sa_flags & TARGET_SA_RESTORER) {
f1d9d107
CG
6287 restorer = (unsigned long) ka->sa_restorer;
6288 } else {
6289 __put_user(INSN_MOVELI_R10_139, &frame->retcode[0]);
6290 __put_user(INSN_SWINT1, &frame->retcode[1]);
6291 restorer = frame_addr + offsetof(struct target_rt_sigframe, retcode);
bf0f60a6
CG
6292 }
6293 env->pc = (unsigned long) ka->_sa_handler;
6294 env->regs[TILEGX_R_SP] = (unsigned long) frame;
6295 env->regs[TILEGX_R_LR] = restorer;
6296 env->regs[0] = (unsigned long) sig;
6297 env->regs[1] = (unsigned long) &frame->info;
6298 env->regs[2] = (unsigned long) &frame->uc;
6299 /* regs->flags |= PT_FLAGS_CALLER_SAVES; FIXME: we can skip it? */
6300
6301 unlock_user_struct(frame, frame_addr, 1);
6302 return;
6303
6304give_sigsegv:
09391669 6305 force_sigsegv(sig);
bf0f60a6
CG
6306}
6307
6308long do_rt_sigreturn(CPUTLGState *env)
6309{
6310 abi_ulong frame_addr = env->regs[TILEGX_R_SP];
6311 struct target_rt_sigframe *frame;
6312 sigset_t set;
6313
c8ee0a44 6314 trace_user_do_rt_sigreturn(env, frame_addr);
bf0f60a6
CG
6315 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1)) {
6316 goto badframe;
6317 }
6318 target_to_host_sigset(&set, &frame->uc.tuc_sigmask);
9eede5b6 6319 set_sigmask(&set);
bf0f60a6
CG
6320
6321 restore_sigcontext(env, &frame->uc.tuc_mcontext);
6322 if (do_sigaltstack(frame_addr + offsetof(struct target_rt_sigframe,
6323 uc.tuc_stack),
6324 0, env->regs[TILEGX_R_SP]) == -EFAULT) {
6325 goto badframe;
6326 }
6327
6328 unlock_user_struct(frame, frame_addr, 0);
a9175169 6329 return -TARGET_QEMU_ESIGRETURN;
bf0f60a6
CG
6330
6331
6332 badframe:
6333 unlock_user_struct(frame, frame_addr, 0);
6334 force_sig(TARGET_SIGSEGV);
c599d4d6 6335 return -TARGET_QEMU_ESIGRETURN;
bf0f60a6
CG
6336}
6337
1659e38e
RH
6338#elif defined(TARGET_HPPA)
6339
6340struct target_sigcontext {
6341 abi_ulong sc_flags;
6342 abi_ulong sc_gr[32];
6343 uint64_t sc_fr[32];
6344 abi_ulong sc_iasq[2];
6345 abi_ulong sc_iaoq[2];
6346 abi_ulong sc_sar;
6347};
6348
6349struct target_ucontext {
6350 abi_uint tuc_flags;
6351 abi_ulong tuc_link;
6352 target_stack_t tuc_stack;
6353 abi_uint pad[1];
6354 struct target_sigcontext tuc_mcontext;
6355 target_sigset_t tuc_sigmask;
6356};
6357
6358struct target_rt_sigframe {
6359 abi_uint tramp[9];
6360 target_siginfo_t info;
6361 struct target_ucontext uc;
6362 /* hidden location of upper halves of pa2.0 64-bit gregs */
6363};
6364
6365static void setup_sigcontext(struct target_sigcontext *sc, CPUArchState *env)
6366{
6367 int flags = 0;
6368 int i;
6369
6370 /* ??? if on_sig_stack, flags |= 1 (PARISC_SC_FLAG_ONSTACK). */
6371
6372 if (env->iaoq_f < TARGET_PAGE_SIZE) {
6373 /* In the gateway page, executing a syscall. */
6374 flags |= 2; /* PARISC_SC_FLAG_IN_SYSCALL */
6375 __put_user(env->gr[31], &sc->sc_iaoq[0]);
6376 __put_user(env->gr[31] + 4, &sc->sc_iaoq[1]);
6377 } else {
6378 __put_user(env->iaoq_f, &sc->sc_iaoq[0]);
6379 __put_user(env->iaoq_b, &sc->sc_iaoq[1]);
6380 }
6381 __put_user(0, &sc->sc_iasq[0]);
6382 __put_user(0, &sc->sc_iasq[1]);
6383 __put_user(flags, &sc->sc_flags);
6384
6385 __put_user(cpu_hppa_get_psw(env), &sc->sc_gr[0]);
6386 for (i = 1; i < 32; ++i) {
6387 __put_user(env->gr[i], &sc->sc_gr[i]);
6388 }
6389
6390 __put_user((uint64_t)env->fr0_shadow << 32, &sc->sc_fr[0]);
6391 for (i = 1; i < 32; ++i) {
6392 __put_user(env->fr[i], &sc->sc_fr[i]);
6393 }
6394
6395 __put_user(env->sar, &sc->sc_sar);
6396}
6397
6398static void restore_sigcontext(CPUArchState *env, struct target_sigcontext *sc)
6399{
6400 target_ulong psw;
6401 int i;
6402
6403 __get_user(psw, &sc->sc_gr[0]);
6404 cpu_hppa_put_psw(env, psw);
6405
6406 for (i = 1; i < 32; ++i) {
6407 __get_user(env->gr[i], &sc->sc_gr[i]);
6408 }
6409 for (i = 0; i < 32; ++i) {
6410 __get_user(env->fr[i], &sc->sc_fr[i]);
6411 }
6412 cpu_hppa_loaded_fr0(env);
6413
6414 __get_user(env->iaoq_f, &sc->sc_iaoq[0]);
6415 __get_user(env->iaoq_b, &sc->sc_iaoq[1]);
6416 __get_user(env->sar, &sc->sc_sar);
6417}
6418
6419/* No, this doesn't look right, but it's copied straight from the kernel. */
6420#define PARISC_RT_SIGFRAME_SIZE32 \
6421 ((sizeof(struct target_rt_sigframe) + 48 + 64) & -64)
6422
6423static void setup_rt_frame(int sig, struct target_sigaction *ka,
6424 target_siginfo_t *info,
6425 target_sigset_t *set, CPUArchState *env)
6426{
6427 abi_ulong frame_addr, sp, haddr;
6428 struct target_rt_sigframe *frame;
6429 int i;
6430
6431 sp = env->gr[30];
6432 if (ka->sa_flags & TARGET_SA_ONSTACK) {
6433 if (sas_ss_flags(sp) == 0) {
6434 sp = (target_sigaltstack_used.ss_sp + 0x7f) & ~0x3f;
6435 }
6436 }
6437 frame_addr = QEMU_ALIGN_UP(sp, 64);
6438 sp = frame_addr + PARISC_RT_SIGFRAME_SIZE32;
6439
6440 trace_user_setup_rt_frame(env, frame_addr);
6441
6442 if (!lock_user_struct(VERIFY_WRITE, frame, frame_addr, 0)) {
6443 goto give_sigsegv;
6444 }
6445
6446 tswap_siginfo(&frame->info, info);
6447 frame->uc.tuc_flags = 0;
6448 frame->uc.tuc_link = 0;
6449
6450 __put_user(target_sigaltstack_used.ss_sp, &frame->uc.tuc_stack.ss_sp);
6451 __put_user(sas_ss_flags(get_sp_from_cpustate(env)),
6452 &frame->uc.tuc_stack.ss_flags);
6453 __put_user(target_sigaltstack_used.ss_size,
6454 &frame->uc.tuc_stack.ss_size);
6455
6456 for (i = 0; i < TARGET_NSIG_WORDS; i++) {
6457 __put_user(set->sig[i], &frame->uc.tuc_sigmask.sig[i]);
6458 }
6459
6460 setup_sigcontext(&frame->uc.tuc_mcontext, env);
6461
6462 __put_user(0x34190000, frame->tramp + 0); /* ldi 0,%r25 */
6463 __put_user(0x3414015a, frame->tramp + 1); /* ldi __NR_rt_sigreturn,%r20 */
6464 __put_user(0xe4008200, frame->tramp + 2); /* be,l 0x100(%sr2,%r0) */
6465 __put_user(0x08000240, frame->tramp + 3); /* nop */
6466
6467 unlock_user_struct(frame, frame_addr, 1);
6468
6469 env->gr[2] = h2g(frame->tramp);
6470 env->gr[30] = sp;
6471 env->gr[26] = sig;
6472 env->gr[25] = h2g(&frame->info);
6473 env->gr[24] = h2g(&frame->uc);
6474
6475 haddr = ka->_sa_handler;
6476 if (haddr & 2) {
6477 /* Function descriptor. */
6478 target_ulong *fdesc, dest;
6479
6480 haddr &= -4;
6481 if (!lock_user_struct(VERIFY_READ, fdesc, haddr, 1)) {
6482 goto give_sigsegv;
6483 }
6484 __get_user(dest, fdesc);
6485 __get_user(env->gr[19], fdesc + 1);
6486 unlock_user_struct(fdesc, haddr, 1);
6487 haddr = dest;
6488 }
6489 env->iaoq_f = haddr;
6490 env->iaoq_b = haddr + 4;;
6491 return;
6492
6493 give_sigsegv:
6494 force_sigsegv(sig);
6495}
6496
6497long do_rt_sigreturn(CPUArchState *env)
6498{
6499 abi_ulong frame_addr = env->gr[30] - PARISC_RT_SIGFRAME_SIZE32;
6500 struct target_rt_sigframe *frame;
6501 sigset_t set;
6502
6503 trace_user_do_rt_sigreturn(env, frame_addr);
6504 if (!lock_user_struct(VERIFY_READ, frame, frame_addr, 1)) {
6505 goto badframe;
6506 }
6507 target_to_host_sigset(&set, &frame->uc.tuc_sigmask);
6508 set_sigmask(&set);
6509
6510 restore_sigcontext(env, &frame->uc.tuc_mcontext);
6511 unlock_user_struct(frame, frame_addr, 0);
6512
6513 if (do_sigaltstack(frame_addr + offsetof(struct target_rt_sigframe,
6514 uc.tuc_stack),
6515 0, env->gr[30]) == -EFAULT) {
6516 goto badframe;
6517 }
6518
6519 unlock_user_struct(frame, frame_addr, 0);
6520 return -TARGET_QEMU_ESIGRETURN;
6521
6522 badframe:
6523 force_sig(TARGET_SIGSEGV);
6524 return -TARGET_QEMU_ESIGRETURN;
6525}
6526
b346ff46
FB
6527#else
6528
624f7979 6529static void setup_frame(int sig, struct target_sigaction *ka,
da7c8647 6530 target_sigset_t *set, CPUArchState *env)
b346ff46
FB
6531{
6532 fprintf(stderr, "setup_frame: not implemented\n");
6533}
6534
624f7979 6535static void setup_rt_frame(int sig, struct target_sigaction *ka,
c227f099 6536 target_siginfo_t *info,
da7c8647 6537 target_sigset_t *set, CPUArchState *env)
b346ff46
FB
6538{
6539 fprintf(stderr, "setup_rt_frame: not implemented\n");
6540}
6541
9349b4f9 6542long do_sigreturn(CPUArchState *env)
b346ff46
FB
6543{
6544 fprintf(stderr, "do_sigreturn: not implemented\n");
f8b0aa25 6545 return -TARGET_ENOSYS;
b346ff46
FB
6546}
6547
9349b4f9 6548long do_rt_sigreturn(CPUArchState *env)
b346ff46
FB
6549{
6550 fprintf(stderr, "do_rt_sigreturn: not implemented\n");
f8b0aa25 6551 return -TARGET_ENOSYS;
b346ff46
FB
6552}
6553
66fb9763
FB
6554#endif
6555
31efaef1
PM
6556static void handle_pending_signal(CPUArchState *cpu_env, int sig,
6557 struct emulated_sigtable *k)
eb552501
PM
6558{
6559 CPUState *cpu = ENV_GET_CPU(cpu_env);
6560 abi_ulong handler;
3d3efba0 6561 sigset_t set;
eb552501
PM
6562 target_sigset_t target_old_set;
6563 struct target_sigaction *sa;
eb552501 6564 TaskState *ts = cpu->opaque;
66fb9763 6565
c8ee0a44 6566 trace_user_handle_signal(cpu_env, sig);
66fb9763 6567 /* dequeue signal */
907f5fdd 6568 k->pending = 0;
3b46e624 6569
db6b81d4 6570 sig = gdb_handlesig(cpu, sig);
1fddef4b 6571 if (!sig) {
ca587a8e
AJ
6572 sa = NULL;
6573 handler = TARGET_SIG_IGN;
6574 } else {
6575 sa = &sigact_table[sig - 1];
6576 handler = sa->_sa_handler;
1fddef4b 6577 }
66fb9763 6578
0cb581d6
PM
6579 if (do_strace) {
6580 print_taken_signal(sig, &k->info);
6581 }
6582
66fb9763 6583 if (handler == TARGET_SIG_DFL) {
ca587a8e
AJ
6584 /* default handler : ignore some signal. The other are job control or fatal */
6585 if (sig == TARGET_SIGTSTP || sig == TARGET_SIGTTIN || sig == TARGET_SIGTTOU) {
6586 kill(getpid(),SIGSTOP);
6587 } else if (sig != TARGET_SIGCHLD &&
6588 sig != TARGET_SIGURG &&
6589 sig != TARGET_SIGWINCH &&
6590 sig != TARGET_SIGCONT) {
c599d4d6 6591 dump_core_and_abort(sig);
66fb9763
FB
6592 }
6593 } else if (handler == TARGET_SIG_IGN) {
6594 /* ignore sig */
6595 } else if (handler == TARGET_SIG_ERR) {
c599d4d6 6596 dump_core_and_abort(sig);
66fb9763 6597 } else {
9de5e440 6598 /* compute the blocked signals during the handler execution */
3d3efba0
PM
6599 sigset_t *blocked_set;
6600
624f7979 6601 target_to_host_sigset(&set, &sa->sa_mask);
9de5e440
FB
6602 /* SA_NODEFER indicates that the current signal should not be
6603 blocked during the handler */
624f7979 6604 if (!(sa->sa_flags & TARGET_SA_NODEFER))
9de5e440 6605 sigaddset(&set, target_to_host_signal(sig));
3b46e624 6606
9de5e440
FB
6607 /* save the previous blocked signal state to restore it at the
6608 end of the signal execution (see do_sigreturn) */
3d3efba0
PM
6609 host_to_target_sigset_internal(&target_old_set, &ts->signal_mask);
6610
6611 /* block signals in the handler */
6612 blocked_set = ts->in_sigsuspend ?
6613 &ts->sigsuspend_mask : &ts->signal_mask;
6614 sigorset(&ts->signal_mask, blocked_set, &set);
6615 ts->in_sigsuspend = 0;
9de5e440 6616
bc8a22cc 6617 /* if the CPU is in VM86 mode, we restore the 32 bit values */
84409ddb 6618#if defined(TARGET_I386) && !defined(TARGET_X86_64)
bc8a22cc
FB
6619 {
6620 CPUX86State *env = cpu_env;
6621 if (env->eflags & VM_MASK)
6622 save_v86_state(env);
6623 }
6624#endif
9de5e440 6625 /* prepare the stack frame of the virtual CPU */
d0924a26 6626#if defined(TARGET_ABI_MIPSN32) || defined(TARGET_ABI_MIPSN64) \
95cda4c4 6627 || defined(TARGET_OPENRISC) || defined(TARGET_TILEGX) \
a0a839b6 6628 || defined(TARGET_PPC64) || defined(TARGET_HPPA) \
1c1df019 6629 || defined(TARGET_NIOS2) || defined(TARGET_X86_64)
ff970904 6630 /* These targets do not have traditional signals. */
907f5fdd 6631 setup_rt_frame(sig, sa, &k->info, &target_old_set, cpu_env);
ff970904 6632#else
624f7979 6633 if (sa->sa_flags & TARGET_SA_SIGINFO)
907f5fdd 6634 setup_rt_frame(sig, sa, &k->info, &target_old_set, cpu_env);
66fb9763 6635 else
624f7979 6636 setup_frame(sig, sa, &target_old_set, cpu_env);
ff970904 6637#endif
7ec87e06 6638 if (sa->sa_flags & TARGET_SA_RESETHAND) {
624f7979 6639 sa->_sa_handler = TARGET_SIG_DFL;
7ec87e06 6640 }
31e31b8a 6641 }
66fb9763 6642}
e902d588
PM
6643
6644void process_pending_signals(CPUArchState *cpu_env)
6645{
6646 CPUState *cpu = ENV_GET_CPU(cpu_env);
6647 int sig;
6648 TaskState *ts = cpu->opaque;
3d3efba0
PM
6649 sigset_t set;
6650 sigset_t *blocked_set;
e902d588 6651
3d3efba0
PM
6652 while (atomic_read(&ts->signal_pending)) {
6653 /* FIXME: This is not threadsafe. */
6654 sigfillset(&set);
6655 sigprocmask(SIG_SETMASK, &set, 0);
6656
8bd3773c 6657 restart_scan:
655ed67c
TB
6658 sig = ts->sync_signal.pending;
6659 if (sig) {
6660 /* Synchronous signals are forced,
6661 * see force_sig_info() and callers in Linux
6662 * Note that not all of our queue_signal() calls in QEMU correspond
6663 * to force_sig_info() calls in Linux (some are send_sig_info()).
6664 * However it seems like a kernel bug to me to allow the process
6665 * to block a synchronous signal since it could then just end up
6666 * looping round and round indefinitely.
6667 */
6668 if (sigismember(&ts->signal_mask, target_to_host_signal_table[sig])
6669 || sigact_table[sig - 1]._sa_handler == TARGET_SIG_IGN) {
6670 sigdelset(&ts->signal_mask, target_to_host_signal_table[sig]);
6671 sigact_table[sig - 1]._sa_handler = TARGET_SIG_DFL;
6672 }
6673
31efaef1 6674 handle_pending_signal(cpu_env, sig, &ts->sync_signal);
655ed67c
TB
6675 }
6676
3d3efba0
PM
6677 for (sig = 1; sig <= TARGET_NSIG; sig++) {
6678 blocked_set = ts->in_sigsuspend ?
6679 &ts->sigsuspend_mask : &ts->signal_mask;
6680
6681 if (ts->sigtab[sig - 1].pending &&
6682 (!sigismember(blocked_set,
655ed67c 6683 target_to_host_signal_table[sig]))) {
31efaef1 6684 handle_pending_signal(cpu_env, sig, &ts->sigtab[sig - 1]);
8bd3773c
PM
6685 /* Restart scan from the beginning, as handle_pending_signal
6686 * might have resulted in a new synchronous signal (eg SIGSEGV).
6687 */
6688 goto restart_scan;
3d3efba0 6689 }
e902d588 6690 }
3d3efba0
PM
6691
6692 /* if no signal is pending, unblock signals and recheck (the act
6693 * of unblocking might cause us to take another host signal which
6694 * will set signal_pending again).
6695 */
6696 atomic_set(&ts->signal_pending, 0);
6697 ts->in_sigsuspend = 0;
6698 set = ts->signal_mask;
6699 sigdelset(&set, SIGSEGV);
6700 sigdelset(&set, SIGBUS);
6701 sigprocmask(SIG_SETMASK, &set, 0);
6702 }
6703 ts->in_sigsuspend = 0;
e902d588 6704}
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