2 * Emulation of Linux signals
4 * Copyright (c) 2003 Fabrice Bellard
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.
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.
16 * You should have received a copy of the GNU General Public License
17 * along with this program; if not, see <http://www.gnu.org/licenses/>.
19 #include "qemu/osdep.h"
21 #include "user-internals.h"
22 #include "signal-common.h"
23 #include "linux-user/trace.h"
25 /* Size of dummy stack frame allocated when calling signal handler.
26 See arch/powerpc/include/asm/ptrace.h. */
27 #if defined(TARGET_PPC64)
28 #define SIGNAL_FRAMESIZE 128
30 #define SIGNAL_FRAMESIZE 64
33 /* See arch/powerpc/include/asm/ucontext.h. Only used for 32-bit PPC;
34 on 64-bit PPC, sigcontext and mcontext are one and the same. */
35 struct target_mcontext
{
36 target_ulong mc_gregs
[48];
38 uint64_t mc_fregs
[33];
40 #if defined(TARGET_PPC64)
41 /* Pointer to the vector regs */
44 * On ppc64, this mcontext structure is naturally *unaligned*,
45 * or rather it is aligned on a 8 bytes boundary but not on
46 * a 16 byte boundary. This pad fixes it up. This is why we
47 * cannot use ppc_avr_t, which would force alignment. This is
48 * also why the vector regs are referenced in the ABI by the
49 * v_regs pointer above so any amount of padding can be added here.
52 /* VSCR and VRSAVE are saved separately. Also reserve space for VSX. */
54 uint64_t altivec
[34 + 16][2];
57 target_ulong mc_pad
[2];
59 /* We need to handle Altivec and SPE at the same time, which no
60 kernel needs to do. Fortunately, the kernel defines this bit to
61 be Altivec-register-large all the time, rather than trying to
62 twiddle it based on the specific platform. */
64 /* SPE vector registers. One extra for SPEFSCR. */
67 * Altivec vector registers. One extra for VRSAVE.
68 * On ppc32, we are already aligned to 16 bytes. We could
69 * use ppc_avr_t, but choose to share the same type as ppc64.
71 uint64_t altivec
[33][2];
76 /* See arch/powerpc/include/asm/sigcontext.h. */
77 struct target_sigcontext
{
78 target_ulong _unused
[4];
80 #if defined(TARGET_PPC64)
85 target_ulong regs
; /* struct pt_regs __user * */
86 #if defined(TARGET_PPC64)
87 struct target_mcontext mcontext
;
91 /* Indices for target_mcontext.mc_gregs, below.
92 See arch/powerpc/include/asm/ptrace.h for details. */
128 TARGET_PT_ORIG_R3
= 34,
133 /* Yes, there are two registers with #39. One is 64-bit only. */
135 TARGET_PT_SOFTE
= 39,
138 TARGET_PT_DSISR
= 42,
139 TARGET_PT_RESULT
= 43,
140 TARGET_PT_REGS_COUNT
= 44
144 struct target_ucontext
{
145 target_ulong tuc_flags
;
146 target_ulong tuc_link
; /* ucontext_t __user * */
147 struct target_sigaltstack tuc_stack
;
148 #if !defined(TARGET_PPC64)
150 target_ulong tuc_regs
; /* struct mcontext __user *
151 points to uc_mcontext field */
153 target_sigset_t tuc_sigmask
;
154 #if defined(TARGET_PPC64)
155 target_sigset_t unused
[15]; /* Allow for uc_sigmask growth */
156 struct target_sigcontext tuc_sigcontext
;
158 int32_t tuc_maskext
[30];
160 struct target_mcontext tuc_mcontext
;
164 /* See arch/powerpc/kernel/signal_32.c. */
165 struct target_sigframe
{
166 struct target_sigcontext sctx
;
167 struct target_mcontext mctx
;
171 #if defined(TARGET_PPC64)
173 #define TARGET_TRAMP_SIZE 6
175 struct target_rt_sigframe
{
176 /* sys_rt_sigreturn requires the ucontext be the first field */
177 struct target_ucontext uc
;
178 target_ulong _unused
[2];
179 uint32_t trampoline
[TARGET_TRAMP_SIZE
];
180 target_ulong pinfo
; /* struct siginfo __user * */
181 target_ulong puc
; /* void __user * */
182 struct target_siginfo info
;
183 /* 64 bit ABI allows for 288 bytes below sp before decrementing it. */
185 } __attribute__((aligned(16)));
189 struct target_rt_sigframe
{
190 struct target_siginfo info
;
191 struct target_ucontext uc
;
197 #if defined(TARGET_PPC64)
199 struct target_func_ptr
{
206 /* See arch/powerpc/kernel/signal.c. */
207 static target_ulong
get_sigframe(struct target_sigaction
*ka
,
213 oldsp
= target_sigsp(get_sp_from_cpustate(env
), ka
);
215 return (oldsp
- frame_size
) & ~0xFUL
;
218 #if ((defined(TARGET_WORDS_BIGENDIAN) && defined(HOST_WORDS_BIGENDIAN)) || \
219 (!defined(HOST_WORDS_BIGENDIAN) && !defined(TARGET_WORDS_BIGENDIAN)))
228 static void save_user_regs(CPUPPCState
*env
, struct target_mcontext
*frame
)
230 target_ulong msr
= env
->msr
;
232 target_ulong ccr
= 0;
234 /* In general, the kernel attempts to be intelligent about what it
235 needs to save for Altivec/FP/SPE registers. We don't care that
236 much, so we just go ahead and save everything. */
238 /* Save general registers. */
239 for (i
= 0; i
< ARRAY_SIZE(env
->gpr
); i
++) {
240 __put_user(env
->gpr
[i
], &frame
->mc_gregs
[i
]);
242 __put_user(env
->nip
, &frame
->mc_gregs
[TARGET_PT_NIP
]);
243 __put_user(env
->ctr
, &frame
->mc_gregs
[TARGET_PT_CTR
]);
244 __put_user(env
->lr
, &frame
->mc_gregs
[TARGET_PT_LNK
]);
245 __put_user(cpu_read_xer(env
), &frame
->mc_gregs
[TARGET_PT_XER
]);
247 for (i
= 0; i
< ARRAY_SIZE(env
->crf
); i
++) {
248 ccr
|= env
->crf
[i
] << (32 - ((i
+ 1) * 4));
250 __put_user(ccr
, &frame
->mc_gregs
[TARGET_PT_CCR
]);
252 /* Save Altivec registers if necessary. */
253 if (env
->insns_flags
& PPC_ALTIVEC
) {
255 for (i
= 0; i
< 32; i
++) {
256 ppc_avr_t
*avr
= cpu_avr_ptr(env
, i
);
257 ppc_avr_t
*vreg
= (ppc_avr_t
*)&frame
->mc_vregs
.altivec
[i
];
259 __put_user(avr
->u64
[PPC_VEC_HI
], &vreg
->u64
[0]);
260 __put_user(avr
->u64
[PPC_VEC_LO
], &vreg
->u64
[1]);
262 #if defined(TARGET_PPC64)
263 vrsave
= (uint32_t *)&frame
->mc_vregs
.altivec
[33];
264 /* 64-bit needs to put a pointer to the vectors in the frame */
265 __put_user(h2g(frame
->mc_vregs
.altivec
), &frame
->v_regs
);
267 vrsave
= (uint32_t *)&frame
->mc_vregs
.altivec
[32];
269 __put_user((uint32_t)env
->spr
[SPR_VRSAVE
], vrsave
);
272 #if defined(TARGET_PPC64)
273 /* Save VSX second halves */
274 if (env
->insns_flags2
& PPC2_VSX
) {
275 uint64_t *vsregs
= (uint64_t *)&frame
->mc_vregs
.altivec
[34];
276 for (i
= 0; i
< 32; i
++) {
277 uint64_t *vsrl
= cpu_vsrl_ptr(env
, i
);
278 __put_user(*vsrl
, &vsregs
[i
]);
283 /* Save floating point registers. */
284 if (env
->insns_flags
& PPC_FLOAT
) {
285 for (i
= 0; i
< 32; i
++) {
286 uint64_t *fpr
= cpu_fpr_ptr(env
, i
);
287 __put_user(*fpr
, &frame
->mc_fregs
[i
]);
289 __put_user((uint64_t) env
->fpscr
, &frame
->mc_fregs
[32]);
292 #if !defined(TARGET_PPC64)
293 /* Save SPE registers. The kernel only saves the high half. */
294 if (env
->insns_flags
& PPC_SPE
) {
295 for (i
= 0; i
< ARRAY_SIZE(env
->gprh
); i
++) {
296 __put_user(env
->gprh
[i
], &frame
->mc_vregs
.spe
[i
]);
298 __put_user(env
->spe_fscr
, &frame
->mc_vregs
.spe
[32]);
303 __put_user(msr
, &frame
->mc_gregs
[TARGET_PT_MSR
]);
306 static void encode_trampoline(int sigret
, uint32_t *tramp
)
308 /* Set up the sigreturn trampoline: li r0,sigret; sc. */
309 __put_user(0x38000000 | sigret
, &tramp
[0]);
310 __put_user(0x44000002, &tramp
[1]);
313 static void restore_user_regs(CPUPPCState
*env
,
314 struct target_mcontext
*frame
, int sig
)
316 target_ulong save_r2
= 0;
324 save_r2
= env
->gpr
[2];
327 /* Restore general registers. */
328 for (i
= 0; i
< ARRAY_SIZE(env
->gpr
); i
++) {
329 __get_user(env
->gpr
[i
], &frame
->mc_gregs
[i
]);
331 __get_user(env
->nip
, &frame
->mc_gregs
[TARGET_PT_NIP
]);
332 __get_user(env
->ctr
, &frame
->mc_gregs
[TARGET_PT_CTR
]);
333 __get_user(env
->lr
, &frame
->mc_gregs
[TARGET_PT_LNK
]);
335 __get_user(xer
, &frame
->mc_gregs
[TARGET_PT_XER
]);
336 cpu_write_xer(env
, xer
);
338 __get_user(ccr
, &frame
->mc_gregs
[TARGET_PT_CCR
]);
339 for (i
= 0; i
< ARRAY_SIZE(env
->crf
); i
++) {
340 env
->crf
[i
] = (ccr
>> (32 - ((i
+ 1) * 4))) & 0xf;
344 env
->gpr
[2] = save_r2
;
347 __get_user(msr
, &frame
->mc_gregs
[TARGET_PT_MSR
]);
349 /* If doing signal return, restore the previous little-endian mode. */
351 ppc_store_msr(env
, ((env
->msr
& ~(1ull << MSR_LE
)) |
352 (msr
& (1ull << MSR_LE
))));
355 /* Restore Altivec registers if necessary. */
356 if (env
->insns_flags
& PPC_ALTIVEC
) {
359 #if defined(TARGET_PPC64)
361 /* 64-bit needs to recover the pointer to the vectors from the frame */
362 __get_user(v_addr
, &frame
->v_regs
);
363 v_regs
= g2h(env_cpu(env
), v_addr
);
365 v_regs
= (ppc_avr_t
*)frame
->mc_vregs
.altivec
;
367 for (i
= 0; i
< 32; i
++) {
368 ppc_avr_t
*avr
= cpu_avr_ptr(env
, i
);
369 ppc_avr_t
*vreg
= &v_regs
[i
];
371 __get_user(avr
->u64
[PPC_VEC_HI
], &vreg
->u64
[0]);
372 __get_user(avr
->u64
[PPC_VEC_LO
], &vreg
->u64
[1]);
374 #if defined(TARGET_PPC64)
375 vrsave
= (uint32_t *)&v_regs
[33];
377 vrsave
= (uint32_t *)&v_regs
[32];
379 __get_user(env
->spr
[SPR_VRSAVE
], vrsave
);
382 #if defined(TARGET_PPC64)
383 /* Restore VSX second halves */
384 if (env
->insns_flags2
& PPC2_VSX
) {
385 uint64_t *vsregs
= (uint64_t *)&frame
->mc_vregs
.altivec
[34];
386 for (i
= 0; i
< 32; i
++) {
387 uint64_t *vsrl
= cpu_vsrl_ptr(env
, i
);
388 __get_user(*vsrl
, &vsregs
[i
]);
393 /* Restore floating point registers. */
394 if (env
->insns_flags
& PPC_FLOAT
) {
396 for (i
= 0; i
< 32; i
++) {
397 uint64_t *fpr
= cpu_fpr_ptr(env
, i
);
398 __get_user(*fpr
, &frame
->mc_fregs
[i
]);
400 __get_user(fpscr
, &frame
->mc_fregs
[32]);
401 env
->fpscr
= (uint32_t) fpscr
;
404 #if !defined(TARGET_PPC64)
405 /* Save SPE registers. The kernel only saves the high half. */
406 if (env
->insns_flags
& PPC_SPE
) {
407 for (i
= 0; i
< ARRAY_SIZE(env
->gprh
); i
++) {
408 __get_user(env
->gprh
[i
], &frame
->mc_vregs
.spe
[i
]);
410 __get_user(env
->spe_fscr
, &frame
->mc_vregs
.spe
[32]);
415 #if !defined(TARGET_PPC64)
416 void setup_frame(int sig
, struct target_sigaction
*ka
,
417 target_sigset_t
*set
, CPUPPCState
*env
)
419 struct target_sigframe
*frame
;
420 struct target_sigcontext
*sc
;
421 target_ulong frame_addr
, newsp
;
424 frame_addr
= get_sigframe(ka
, env
, sizeof(*frame
));
425 trace_user_setup_frame(env
, frame_addr
);
426 if (!lock_user_struct(VERIFY_WRITE
, frame
, frame_addr
, 1))
430 __put_user(ka
->_sa_handler
, &sc
->handler
);
431 __put_user(set
->sig
[0], &sc
->oldmask
);
432 __put_user(set
->sig
[1], &sc
->_unused
[3]);
433 __put_user(h2g(&frame
->mctx
), &sc
->regs
);
434 __put_user(sig
, &sc
->signal
);
436 /* Save user regs. */
437 save_user_regs(env
, &frame
->mctx
);
439 env
->lr
= default_sigreturn
;
441 /* Turn off all fp exceptions. */
444 /* Create a stack frame for the caller of the handler. */
445 newsp
= frame_addr
- SIGNAL_FRAMESIZE
;
446 err
|= put_user(env
->gpr
[1], newsp
, target_ulong
);
451 /* Set up registers for signal handler. */
454 env
->gpr
[4] = frame_addr
+ offsetof(struct target_sigframe
, sctx
);
456 env
->nip
= (target_ulong
) ka
->_sa_handler
;
458 /* Signal handlers are entered in big-endian mode. */
459 ppc_store_msr(env
, env
->msr
& ~(1ull << MSR_LE
));
461 unlock_user_struct(frame
, frame_addr
, 1);
465 unlock_user_struct(frame
, frame_addr
, 1);
468 #endif /* !defined(TARGET_PPC64) */
470 void setup_rt_frame(int sig
, struct target_sigaction
*ka
,
471 target_siginfo_t
*info
,
472 target_sigset_t
*set
, CPUPPCState
*env
)
474 struct target_rt_sigframe
*rt_sf
;
475 struct target_mcontext
*mctx
= 0;
476 target_ulong rt_sf_addr
, newsp
= 0;
478 #if defined(TARGET_PPC64)
479 struct target_sigcontext
*sc
= 0;
480 struct image_info
*image
= ((TaskState
*)thread_cpu
->opaque
)->info
;
483 rt_sf_addr
= get_sigframe(ka
, env
, sizeof(*rt_sf
));
484 if (!lock_user_struct(VERIFY_WRITE
, rt_sf
, rt_sf_addr
, 1))
487 tswap_siginfo(&rt_sf
->info
, info
);
489 __put_user(0, &rt_sf
->uc
.tuc_flags
);
490 __put_user(0, &rt_sf
->uc
.tuc_link
);
491 target_save_altstack(&rt_sf
->uc
.tuc_stack
, env
);
492 #if !defined(TARGET_PPC64)
493 __put_user(h2g (&rt_sf
->uc
.tuc_mcontext
),
494 &rt_sf
->uc
.tuc_regs
);
496 for(i
= 0; i
< TARGET_NSIG_WORDS
; i
++) {
497 __put_user(set
->sig
[i
], &rt_sf
->uc
.tuc_sigmask
.sig
[i
]);
500 #if defined(TARGET_PPC64)
501 mctx
= &rt_sf
->uc
.tuc_sigcontext
.mcontext
;
503 sc
= &rt_sf
->uc
.tuc_sigcontext
;
504 __put_user(h2g(mctx
), &sc
->regs
);
505 __put_user(sig
, &sc
->signal
);
507 mctx
= &rt_sf
->uc
.tuc_mcontext
;
510 save_user_regs(env
, mctx
);
512 env
->lr
= default_rt_sigreturn
;
514 /* Turn off all fp exceptions. */
517 /* Create a stack frame for the caller of the handler. */
518 newsp
= rt_sf_addr
- (SIGNAL_FRAMESIZE
+ 16);
519 err
|= put_user(env
->gpr
[1], newsp
, target_ulong
);
524 /* Set up registers for signal handler. */
526 env
->gpr
[3] = (target_ulong
) sig
;
527 env
->gpr
[4] = (target_ulong
) h2g(&rt_sf
->info
);
528 env
->gpr
[5] = (target_ulong
) h2g(&rt_sf
->uc
);
529 env
->gpr
[6] = (target_ulong
) h2g(rt_sf
);
531 #if defined(TARGET_PPC64)
532 if (get_ppc64_abi(image
) < 2) {
533 /* ELFv1 PPC64 function pointers are pointers to OPD entries. */
534 struct target_func_ptr
*handler
=
535 (struct target_func_ptr
*)g2h(env_cpu(env
), ka
->_sa_handler
);
536 env
->nip
= tswapl(handler
->entry
);
537 env
->gpr
[2] = tswapl(handler
->toc
);
539 /* ELFv2 PPC64 function pointers are entry points. R12 must also be set. */
540 env
->gpr
[12] = env
->nip
= ka
->_sa_handler
;
543 env
->nip
= (target_ulong
) ka
->_sa_handler
;
546 #ifdef TARGET_WORDS_BIGENDIAN
547 /* Signal handlers are entered in big-endian mode. */
548 ppc_store_msr(env
, env
->msr
& ~(1ull << MSR_LE
));
550 /* Signal handlers are entered in little-endian mode. */
551 ppc_store_msr(env
, env
->msr
| (1ull << MSR_LE
));
554 unlock_user_struct(rt_sf
, rt_sf_addr
, 1);
558 unlock_user_struct(rt_sf
, rt_sf_addr
, 1);
563 #if !defined(TARGET_PPC64)
564 long do_sigreturn(CPUPPCState
*env
)
566 struct target_sigcontext
*sc
= NULL
;
567 struct target_mcontext
*sr
= NULL
;
568 target_ulong sr_addr
= 0, sc_addr
;
572 sc_addr
= env
->gpr
[1] + SIGNAL_FRAMESIZE
;
573 if (!lock_user_struct(VERIFY_READ
, sc
, sc_addr
, 1))
576 __get_user(set
.sig
[0], &sc
->oldmask
);
577 __get_user(set
.sig
[1], &sc
->_unused
[3]);
579 target_to_host_sigset_internal(&blocked
, &set
);
580 set_sigmask(&blocked
);
582 __get_user(sr_addr
, &sc
->regs
);
583 if (!lock_user_struct(VERIFY_READ
, sr
, sr_addr
, 1))
585 restore_user_regs(env
, sr
, 1);
587 unlock_user_struct(sr
, sr_addr
, 1);
588 unlock_user_struct(sc
, sc_addr
, 1);
589 return -QEMU_ESIGRETURN
;
592 unlock_user_struct(sr
, sr_addr
, 1);
593 unlock_user_struct(sc
, sc_addr
, 1);
594 force_sig(TARGET_SIGSEGV
);
595 return -QEMU_ESIGRETURN
;
597 #endif /* !defined(TARGET_PPC64) */
599 /* See arch/powerpc/kernel/signal_32.c. */
600 static int do_setcontext(struct target_ucontext
*ucp
, CPUPPCState
*env
, int sig
)
602 struct target_mcontext
*mcp
;
603 target_ulong mcp_addr
;
607 if (copy_from_user(&set
, h2g(ucp
) + offsetof(struct target_ucontext
, tuc_sigmask
),
611 #if defined(TARGET_PPC64)
612 mcp_addr
= h2g(ucp
) +
613 offsetof(struct target_ucontext
, tuc_sigcontext
.mcontext
);
615 __get_user(mcp_addr
, &ucp
->tuc_regs
);
618 if (!lock_user_struct(VERIFY_READ
, mcp
, mcp_addr
, 1))
621 target_to_host_sigset_internal(&blocked
, &set
);
622 set_sigmask(&blocked
);
623 restore_user_regs(env
, mcp
, sig
);
625 unlock_user_struct(mcp
, mcp_addr
, 1);
629 long do_rt_sigreturn(CPUPPCState
*env
)
631 struct target_rt_sigframe
*rt_sf
= NULL
;
632 target_ulong rt_sf_addr
;
634 rt_sf_addr
= env
->gpr
[1] + SIGNAL_FRAMESIZE
+ 16;
635 if (!lock_user_struct(VERIFY_READ
, rt_sf
, rt_sf_addr
, 1))
638 if (do_setcontext(&rt_sf
->uc
, env
, 1))
641 target_restore_altstack(&rt_sf
->uc
.tuc_stack
, env
);
643 unlock_user_struct(rt_sf
, rt_sf_addr
, 1);
644 return -QEMU_ESIGRETURN
;
647 unlock_user_struct(rt_sf
, rt_sf_addr
, 1);
648 force_sig(TARGET_SIGSEGV
);
649 return -QEMU_ESIGRETURN
;
652 /* This syscall implements {get,set,swap}context for userland. */
653 abi_long
do_swapcontext(CPUArchState
*env
, abi_ulong uold_ctx
,
654 abi_ulong unew_ctx
, abi_long ctx_size
)
656 struct target_ucontext
*uctx
;
657 struct target_mcontext
*mctx
;
659 /* For ppc32, ctx_size is "reserved for future use".
660 * For ppc64, we do not yet support the VSX extension.
662 if (ctx_size
< sizeof(struct target_ucontext
)) {
663 return -TARGET_EINVAL
;
667 TaskState
*ts
= (TaskState
*)thread_cpu
->opaque
;
669 if (!lock_user_struct(VERIFY_WRITE
, uctx
, uold_ctx
, 1)) {
670 return -TARGET_EFAULT
;
674 mctx
= &uctx
->tuc_sigcontext
.mcontext
;
676 /* ??? The kernel aligns the pointer down here into padding, but
677 * in setup_rt_frame we don't. Be self-compatible for now.
679 mctx
= &uctx
->tuc_mcontext
;
680 __put_user(h2g(mctx
), &uctx
->tuc_regs
);
683 save_user_regs(env
, mctx
);
684 host_to_target_sigset(&uctx
->tuc_sigmask
, &ts
->signal_mask
);
686 unlock_user_struct(uctx
, uold_ctx
, 1);
692 if (!lock_user_struct(VERIFY_READ
, uctx
, unew_ctx
, 1)) {
693 return -TARGET_EFAULT
;
695 err
= do_setcontext(uctx
, env
, 0);
696 unlock_user_struct(uctx
, unew_ctx
, 1);
699 /* We cannot return to a partially updated context. */
700 force_sig(TARGET_SIGSEGV
);
702 return -QEMU_ESIGRETURN
;
708 void setup_sigtramp(abi_ulong sigtramp_page
)
710 uint32_t *tramp
= lock_user(VERIFY_WRITE
, sigtramp_page
, 2 * 8, 0);
711 assert(tramp
!= NULL
);
713 #ifdef TARGET_ARCH_HAS_SETUP_FRAME
714 default_sigreturn
= sigtramp_page
;
715 encode_trampoline(TARGET_NR_sigreturn
, tramp
+ 0);
718 default_rt_sigreturn
= sigtramp_page
+ 8;
719 encode_trampoline(TARGET_NR_rt_sigreturn
, tramp
+ 2);
721 unlock_user(tramp
, sigtramp_page
, 2 * 8);