2 * linux/arch/parisc/kernel/signal.c: Architecture-specific signal
5 * Copyright (C) 2000 David Huggins-Daines <dhd@debian.org>
6 * Copyright (C) 2000 Linuxcare, Inc.
8 * Based on the ia64, i386, and alpha versions.
10 * Like the IA-64, we are a recent enough port (we are *starting*
11 * with glibc2.2) that we do not need to support the old non-realtime
12 * Linux signals. Therefore we don't. HP/UX signals will go in
13 * arch/parisc/hpux/signal.c when we figure out how to do them.
16 #include <linux/sched.h>
18 #include <linux/smp.h>
19 #include <linux/kernel.h>
20 #include <linux/signal.h>
21 #include <linux/errno.h>
22 #include <linux/wait.h>
23 #include <linux/ptrace.h>
24 #include <linux/tracehook.h>
25 #include <linux/unistd.h>
26 #include <linux/stddef.h>
27 #include <linux/compat.h>
28 #include <linux/elf.h>
29 #include <asm/ucontext.h>
30 #include <asm/rt_sigframe.h>
31 #include <asm/uaccess.h>
32 #include <asm/pgalloc.h>
33 #include <asm/cacheflush.h>
34 #include <asm/asm-offsets.h>
41 #define DEBUG_SIG_LEVEL 2
44 #define DBG(LEVEL, ...) \
45 ((DEBUG_SIG_LEVEL >= LEVEL) \
46 ? printk(__VA_ARGS__) : (void) 0)
48 #define DBG(LEVEL, ...)
51 /* gcc will complain if a pointer is cast to an integer of different
52 * size. If you really need to do this (and we do for an ELF32 user
53 * application in an ELF64 kernel) then you have to do a cast to an
54 * integer of the same size first. The A() macro accomplishes
56 #define A(__x) ((unsigned long)(__x))
59 * Atomically swap in the new signal mask, and wait for a signal.
66 * Do a signal return - restore sigcontext.
69 /* Trampoline for calling rt_sigreturn() */
70 #define INSN_LDI_R25_0 0x34190000 /* ldi 0,%r25 (in_syscall=0) */
71 #define INSN_LDI_R25_1 0x34190002 /* ldi 1,%r25 (in_syscall=1) */
72 #define INSN_LDI_R20 0x3414015a /* ldi __NR_rt_sigreturn,%r20 */
73 #define INSN_BLE_SR2_R0 0xe4008200 /* be,l 0x100(%sr2,%r0),%sr0,%r31 */
74 #define INSN_NOP 0x08000240 /* nop */
76 #define INSN_DIE_HORRIBLY 0x68000ccc /* stw %r0,0x666(%sr0,%r0) */
79 restore_sigcontext(struct sigcontext __user
*sc
, struct pt_regs
*regs
)
83 err
|= __copy_from_user(regs
->gr
, sc
->sc_gr
, sizeof(regs
->gr
));
84 err
|= __copy_from_user(regs
->fr
, sc
->sc_fr
, sizeof(regs
->fr
));
85 err
|= __copy_from_user(regs
->iaoq
, sc
->sc_iaoq
, sizeof(regs
->iaoq
));
86 err
|= __copy_from_user(regs
->iasq
, sc
->sc_iasq
, sizeof(regs
->iasq
));
87 err
|= __get_user(regs
->sar
, &sc
->sc_sar
);
88 DBG(2,"restore_sigcontext: iaoq is 0x%#lx / 0x%#lx\n",
89 regs
->iaoq
[0],regs
->iaoq
[1]);
90 DBG(2,"restore_sigcontext: r28 is %ld\n", regs
->gr
[28]);
95 sys_rt_sigreturn(struct pt_regs
*regs
, int in_syscall
)
97 struct rt_sigframe __user
*frame
;
99 unsigned long usp
= (regs
->gr
[30] & ~(0x01UL
));
100 unsigned long sigframe_size
= PARISC_RT_SIGFRAME_SIZE
;
102 compat_sigset_t compat_set
;
103 struct compat_rt_sigframe __user
* compat_frame
;
105 if (is_compat_task())
106 sigframe_size
= PARISC_RT_SIGFRAME_SIZE32
;
109 current_thread_info()->restart_block
.fn
= do_no_restart_syscall
;
111 /* Unwind the user stack to get the rt_sigframe structure. */
112 frame
= (struct rt_sigframe __user
*)
113 (usp
- sigframe_size
);
114 DBG(2,"sys_rt_sigreturn: frame is %p\n", frame
);
116 regs
->orig_r28
= 1; /* no restarts for sigreturn */
119 compat_frame
= (struct compat_rt_sigframe __user
*)frame
;
121 if (is_compat_task()) {
122 DBG(2,"sys_rt_sigreturn: ELF32 process.\n");
123 if (__copy_from_user(&compat_set
, &compat_frame
->uc
.uc_sigmask
, sizeof(compat_set
)))
125 sigset_32to64(&set
,&compat_set
);
129 if (__copy_from_user(&set
, &frame
->uc
.uc_sigmask
, sizeof(set
)))
133 set_current_blocked(&set
);
135 /* Good thing we saved the old gr[30], eh? */
137 if (is_compat_task()) {
138 DBG(1,"sys_rt_sigreturn: compat_frame->uc.uc_mcontext 0x%p\n",
139 &compat_frame
->uc
.uc_mcontext
);
140 // FIXME: Load upper half from register file
141 if (restore_sigcontext32(&compat_frame
->uc
.uc_mcontext
,
142 &compat_frame
->regs
, regs
))
144 DBG(1,"sys_rt_sigreturn: usp %#08lx stack 0x%p\n",
145 usp
, &compat_frame
->uc
.uc_stack
);
146 if (compat_restore_altstack(&compat_frame
->uc
.uc_stack
))
151 DBG(1,"sys_rt_sigreturn: frame->uc.uc_mcontext 0x%p\n",
152 &frame
->uc
.uc_mcontext
);
153 if (restore_sigcontext(&frame
->uc
.uc_mcontext
, regs
))
155 DBG(1,"sys_rt_sigreturn: usp %#08lx stack 0x%p\n",
156 usp
, &frame
->uc
.uc_stack
);
157 if (restore_altstack(&frame
->uc
.uc_stack
))
163 /* If we are on the syscall path IAOQ will not be restored, and
164 * if we are on the interrupt path we must not corrupt gr31.
167 regs
->gr
[31] = regs
->iaoq
[0];
169 DBG(1,"sys_rt_sigreturn: returning to %#lx, DUMPING REGS:\n", regs
->iaoq
[0]);
175 DBG(1,"sys_rt_sigreturn: Sending SIGSEGV\n");
176 force_sig(SIGSEGV
, current
);
181 * Set up a signal frame.
184 static inline void __user
*
185 get_sigframe(struct k_sigaction
*ka
, unsigned long sp
, size_t frame_size
)
187 /*FIXME: ELF32 vs. ELF64 has different frame_size, but since we
188 don't use the parameter it doesn't matter */
190 DBG(1,"get_sigframe: ka = %#lx, sp = %#lx, frame_size = %#lx\n",
191 (unsigned long)ka
, sp
, frame_size
);
193 /* Align alternate stack and reserve 64 bytes for the signal
194 handler's frame marker. */
195 if ((ka
->sa
.sa_flags
& SA_ONSTACK
) != 0 && ! sas_ss_flags(sp
))
196 sp
= (current
->sas_ss_sp
+ 0x7f) & ~0x3f; /* Stacks grow up! */
198 DBG(1,"get_sigframe: Returning sp = %#lx\n", (unsigned long)sp
);
199 return (void __user
*) sp
; /* Stacks grow up. Fun. */
203 setup_sigcontext(struct sigcontext __user
*sc
, struct pt_regs
*regs
, int in_syscall
)
206 unsigned long flags
= 0;
209 if (on_sig_stack((unsigned long) sc
))
210 flags
|= PARISC_SC_FLAG_ONSTACK
;
212 flags
|= PARISC_SC_FLAG_IN_SYSCALL
;
213 /* regs->iaoq is undefined in the syscall return path */
214 err
|= __put_user(regs
->gr
[31], &sc
->sc_iaoq
[0]);
215 err
|= __put_user(regs
->gr
[31]+4, &sc
->sc_iaoq
[1]);
216 err
|= __put_user(regs
->sr
[3], &sc
->sc_iasq
[0]);
217 err
|= __put_user(regs
->sr
[3], &sc
->sc_iasq
[1]);
218 DBG(1,"setup_sigcontext: iaoq %#lx / %#lx (in syscall)\n",
219 regs
->gr
[31], regs
->gr
[31]+4);
221 err
|= __copy_to_user(sc
->sc_iaoq
, regs
->iaoq
, sizeof(regs
->iaoq
));
222 err
|= __copy_to_user(sc
->sc_iasq
, regs
->iasq
, sizeof(regs
->iasq
));
223 DBG(1,"setup_sigcontext: iaoq %#lx / %#lx (not in syscall)\n",
224 regs
->iaoq
[0], regs
->iaoq
[1]);
227 err
|= __put_user(flags
, &sc
->sc_flags
);
228 err
|= __copy_to_user(sc
->sc_gr
, regs
->gr
, sizeof(regs
->gr
));
229 err
|= __copy_to_user(sc
->sc_fr
, regs
->fr
, sizeof(regs
->fr
));
230 err
|= __put_user(regs
->sar
, &sc
->sc_sar
);
231 DBG(1,"setup_sigcontext: r28 is %ld\n", regs
->gr
[28]);
237 setup_rt_frame(int sig
, struct k_sigaction
*ka
, siginfo_t
*info
,
238 sigset_t
*set
, struct pt_regs
*regs
, int in_syscall
)
240 struct rt_sigframe __user
*frame
;
241 unsigned long rp
, usp
;
242 unsigned long haddr
, sigframe_size
;
245 struct compat_rt_sigframe __user
* compat_frame
;
246 compat_sigset_t compat_set
;
249 usp
= (regs
->gr
[30] & ~(0x01UL
));
250 /*FIXME: frame_size parameter is unused, remove it. */
251 frame
= get_sigframe(ka
, usp
, sizeof(*frame
));
253 DBG(1,"SETUP_RT_FRAME: START\n");
254 DBG(1,"setup_rt_frame: frame %p info %p\n", frame
, info
);
259 compat_frame
= (struct compat_rt_sigframe __user
*)frame
;
261 if (is_compat_task()) {
262 DBG(1,"setup_rt_frame: frame->info = 0x%p\n", &compat_frame
->info
);
263 err
|= copy_siginfo_to_user32(&compat_frame
->info
, info
);
264 err
|= __compat_save_altstack( &compat_frame
->uc
.uc_stack
, regs
->gr
[30]);
265 DBG(1,"setup_rt_frame: frame->uc = 0x%p\n", &compat_frame
->uc
);
266 DBG(1,"setup_rt_frame: frame->uc.uc_mcontext = 0x%p\n", &compat_frame
->uc
.uc_mcontext
);
267 err
|= setup_sigcontext32(&compat_frame
->uc
.uc_mcontext
,
268 &compat_frame
->regs
, regs
, in_syscall
);
269 sigset_64to32(&compat_set
,set
);
270 err
|= __copy_to_user(&compat_frame
->uc
.uc_sigmask
, &compat_set
, sizeof(compat_set
));
274 DBG(1,"setup_rt_frame: frame->info = 0x%p\n", &frame
->info
);
275 err
|= copy_siginfo_to_user(&frame
->info
, info
);
276 err
|= __save_altstack(&frame
->uc
.uc_stack
, regs
->gr
[30]);
277 DBG(1,"setup_rt_frame: frame->uc = 0x%p\n", &frame
->uc
);
278 DBG(1,"setup_rt_frame: frame->uc.uc_mcontext = 0x%p\n", &frame
->uc
.uc_mcontext
);
279 err
|= setup_sigcontext(&frame
->uc
.uc_mcontext
, regs
, in_syscall
);
280 /* FIXME: Should probably be converted as well for the compat case */
281 err
|= __copy_to_user(&frame
->uc
.uc_sigmask
, set
, sizeof(*set
));
287 /* Set up to return from userspace. If provided, use a stub
288 already in userspace. The first words of tramp are used to
289 save the previous sigrestartblock trampoline that might be
290 on the stack. We start the sigreturn trampoline at
291 SIGRESTARTBLOCK_TRAMP+X. */
292 err
|= __put_user(in_syscall
? INSN_LDI_R25_1
: INSN_LDI_R25_0
,
293 &frame
->tramp
[SIGRESTARTBLOCK_TRAMP
+0]);
294 err
|= __put_user(INSN_LDI_R20
,
295 &frame
->tramp
[SIGRESTARTBLOCK_TRAMP
+1]);
296 err
|= __put_user(INSN_BLE_SR2_R0
,
297 &frame
->tramp
[SIGRESTARTBLOCK_TRAMP
+2]);
298 err
|= __put_user(INSN_NOP
, &frame
->tramp
[SIGRESTARTBLOCK_TRAMP
+3]);
301 /* Assert that we're flushing in the correct space... */
304 asm ("mfsp %%sr3,%0" : "=r" (sid
));
305 DBG(1,"setup_rt_frame: Flushing 64 bytes at space %#x offset %p\n",
310 flush_user_dcache_range((unsigned long) &frame
->tramp
[0],
311 (unsigned long) &frame
->tramp
[TRAMP_SIZE
]);
312 flush_user_icache_range((unsigned long) &frame
->tramp
[0],
313 (unsigned long) &frame
->tramp
[TRAMP_SIZE
]);
315 /* TRAMP Words 0-4, Length 5 = SIGRESTARTBLOCK_TRAMP
316 * TRAMP Words 5-9, Length 4 = SIGRETURN_TRAMP
317 * So the SIGRETURN_TRAMP is at the end of SIGRESTARTBLOCK_TRAMP
319 rp
= (unsigned long) &frame
->tramp
[SIGRESTARTBLOCK_TRAMP
];
324 haddr
= A(ka
->sa
.sa_handler
);
325 /* The sa_handler may be a pointer to a function descriptor */
327 if (is_compat_task()) {
329 if (haddr
& PA_PLABEL_FDESC
) {
331 Elf32_Fdesc __user
*ufdesc
= (Elf32_Fdesc __user
*)A(haddr
& ~3);
333 err
= __copy_from_user(&fdesc
, ufdesc
, sizeof(fdesc
));
339 regs
->gr
[19] = fdesc
.gp
;
344 Elf64_Fdesc __user
*ufdesc
= (Elf64_Fdesc __user
*)A(haddr
& ~3);
346 err
= __copy_from_user(&fdesc
, ufdesc
, sizeof(fdesc
));
352 regs
->gr
[19] = fdesc
.gp
;
353 DBG(1,"setup_rt_frame: 64 bit signal, exe=%#lx, r19=%#lx, in_syscall=%d\n",
354 haddr
, regs
->gr
[19], in_syscall
);
358 /* The syscall return path will create IAOQ values from r31.
360 sigframe_size
= PARISC_RT_SIGFRAME_SIZE
;
362 if (is_compat_task())
363 sigframe_size
= PARISC_RT_SIGFRAME_SIZE32
;
366 regs
->gr
[31] = haddr
;
368 if (!test_thread_flag(TIF_32BIT
))
372 unsigned long psw
= USER_PSW
;
374 if (!test_thread_flag(TIF_32BIT
))
378 /* If we are singlestepping, arrange a trap to be delivered
379 when we return to userspace. Note the semantics -- we
380 should trap before the first insn in the handler is
382 http://sources.redhat.com/ml/gdb/2004-11/msg00245.html
384 if (pa_psw(current
)->r
) {
385 pa_psw(current
)->r
= 0;
391 regs
->iaoq
[0] = haddr
| 3;
392 regs
->iaoq
[1] = regs
->iaoq
[0] + 4;
395 regs
->gr
[2] = rp
; /* userland return pointer */
396 regs
->gr
[26] = sig
; /* signal number */
399 if (is_compat_task()) {
400 regs
->gr
[25] = A(&compat_frame
->info
); /* siginfo pointer */
401 regs
->gr
[24] = A(&compat_frame
->uc
); /* ucontext pointer */
405 regs
->gr
[25] = A(&frame
->info
); /* siginfo pointer */
406 regs
->gr
[24] = A(&frame
->uc
); /* ucontext pointer */
409 DBG(1,"setup_rt_frame: making sigreturn frame: %#lx + %#lx = %#lx\n",
410 regs
->gr
[30], sigframe_size
,
411 regs
->gr
[30] + sigframe_size
);
412 /* Raise the user stack pointer to make a proper call frame. */
413 regs
->gr
[30] = (A(frame
) + sigframe_size
);
416 DBG(1,"setup_rt_frame: sig deliver (%s,%d) frame=0x%p sp=%#lx iaoq=%#lx/%#lx rp=%#lx\n",
417 current
->comm
, current
->pid
, frame
, regs
->gr
[30],
418 regs
->iaoq
[0], regs
->iaoq
[1], rp
);
423 DBG(1,"setup_rt_frame: sending SIGSEGV\n");
424 force_sigsegv(sig
, current
);
429 * OK, we're invoking a handler.
433 handle_signal(unsigned long sig
, siginfo_t
*info
, struct k_sigaction
*ka
,
434 struct pt_regs
*regs
, int in_syscall
)
436 sigset_t
*oldset
= sigmask_to_save();
437 DBG(1,"handle_signal: sig=%ld, ka=%p, info=%p, oldset=%p, regs=%p\n",
438 sig
, ka
, info
, oldset
, regs
);
440 /* Set up the stack frame */
441 if (!setup_rt_frame(sig
, ka
, info
, oldset
, regs
, in_syscall
))
444 signal_delivered(sig
, info
, ka
, regs
,
445 test_thread_flag(TIF_SINGLESTEP
) ||
446 test_thread_flag(TIF_BLOCKSTEP
));
448 DBG(1,KERN_DEBUG
"do_signal: Exit (success), regs->gr[28] = %ld\n",
453 syscall_restart(struct pt_regs
*regs
, struct k_sigaction
*ka
)
457 regs
->orig_r28
= 1; /* no more restarts */
458 /* Check the return code */
459 switch (regs
->gr
[28]) {
460 case -ERESTART_RESTARTBLOCK
:
461 case -ERESTARTNOHAND
:
462 DBG(1,"ERESTARTNOHAND: returning -EINTR\n");
463 regs
->gr
[28] = -EINTR
;
467 if (!(ka
->sa
.sa_flags
& SA_RESTART
)) {
468 DBG(1,"ERESTARTSYS: putting -EINTR\n");
469 regs
->gr
[28] = -EINTR
;
473 case -ERESTARTNOINTR
:
474 /* A syscall is just a branch, so all
475 * we have to do is fiddle the return pointer.
477 regs
->gr
[31] -= 8; /* delayed branching */
483 insert_restart_trampoline(struct pt_regs
*regs
)
487 regs
->orig_r28
= 1; /* no more restarts */
488 switch(regs
->gr
[28]) {
489 case -ERESTART_RESTARTBLOCK
: {
490 /* Restart the system call - no handlers present */
491 unsigned int *usp
= (unsigned int *)regs
->gr
[30];
493 /* Setup a trampoline to restart the syscall
494 * with __NR_restart_syscall
496 * 0: <return address (orig r31)>
497 * 4: <2nd half for 64-bit>
498 * 8: ldw 0(%sp), %r31
499 * 12: be 0x100(%sr2, %r0)
500 * 16: ldi __NR_restart_syscall, %r20
503 put_user(regs
->gr
[31] >> 32, &usp
[0]);
504 put_user(regs
->gr
[31] & 0xffffffff, &usp
[1]);
505 put_user(0x0fc010df, &usp
[2]);
507 put_user(regs
->gr
[31], &usp
[0]);
508 put_user(0x0fc0109f, &usp
[2]);
510 put_user(0xe0008200, &usp
[3]);
511 put_user(0x34140000, &usp
[4]);
513 /* Stack is 64-byte aligned, and we only need
514 * to flush 1 cache line.
515 * Flushing one cacheline is cheap.
516 * "sync" on bigger (> 4 way) boxes is not.
518 flush_user_dcache_range(regs
->gr
[30], regs
->gr
[30] + 4);
519 flush_user_icache_range(regs
->gr
[30], regs
->gr
[30] + 4);
521 regs
->gr
[31] = regs
->gr
[30] + 8;
524 case -ERESTARTNOHAND
:
526 case -ERESTARTNOINTR
: {
527 /* Hooray for delayed branching. We don't
528 * have to restore %r20 (the system call
529 * number) because it gets loaded in the delay
530 * slot of the branch external instruction.
541 * Note that 'init' is a special process: it doesn't get signals it doesn't
542 * want to handle. Thus you cannot kill init even with a SIGKILL even by
545 * We need to be able to restore the syscall arguments (r21-r26) to
546 * restart syscalls. Thus, the syscall path should save them in the
547 * pt_regs structure (it's okay to do so since they are caller-save
548 * registers). As noted below, the syscall number gets restored for
549 * us due to the magic of delayed branching.
552 do_signal(struct pt_regs
*regs
, long in_syscall
)
555 struct k_sigaction ka
;
558 DBG(1,"\ndo_signal: regs=0x%p, sr7 %#lx, in_syscall=%d\n",
559 regs
, regs
->sr
[7], in_syscall
);
561 signr
= get_signal_to_deliver(&info
, &ka
, regs
, NULL
);
562 DBG(3,"do_signal: signr = %d, regs->gr[28] = %ld\n", signr
, regs
->gr
[28]);
565 /* Restart a system call if necessary. */
567 syscall_restart(regs
, &ka
);
569 handle_signal(signr
, &info
, &ka
, regs
, in_syscall
);
573 /* Did we come from a system call? */
575 insert_restart_trampoline(regs
);
577 DBG(1,"do_signal: Exit (not delivered), regs->gr[28] = %ld\n",
580 restore_saved_sigmask();
583 void do_notify_resume(struct pt_regs
*regs
, long in_syscall
)
585 if (test_thread_flag(TIF_SIGPENDING
))
586 do_signal(regs
, in_syscall
);
588 if (test_thread_flag(TIF_NOTIFY_RESUME
)) {
589 clear_thread_flag(TIF_NOTIFY_RESUME
);
590 tracehook_notify_resume(regs
);