xref: /openbmc/linux/arch/xtensa/kernel/signal.c (revision b02afe1df518369dd322f48b49e50efc49250575)
15a0015d6SChris Zankel /*
229c4dfd9SChris Zankel  * arch/xtensa/kernel/signal.c
35a0015d6SChris Zankel  *
429c4dfd9SChris Zankel  * Default platform functions.
529c4dfd9SChris Zankel  *
629c4dfd9SChris Zankel  * This file is subject to the terms and conditions of the GNU General Public
729c4dfd9SChris Zankel  * License.  See the file "COPYING" in the main directory of this archive
829c4dfd9SChris Zankel  * for more details.
929c4dfd9SChris Zankel  *
1029c4dfd9SChris Zankel  * Copyright (C) 2005, 2006 Tensilica Inc.
115a0015d6SChris Zankel  * Copyright (C) 1991, 1992  Linus Torvalds
125a0015d6SChris Zankel  * 1997-11-28  Modified for POSIX.1b signals by Richard Henderson
135a0015d6SChris Zankel  *
145a0015d6SChris Zankel  * Chris Zankel <chris@zankel.net>
1529c4dfd9SChris Zankel  * Joe Taylor <joe@tensilica.com>
165a0015d6SChris Zankel  */
175a0015d6SChris Zankel 
185a0015d6SChris Zankel #include <linux/signal.h>
195a0015d6SChris Zankel #include <linux/errno.h>
205a0015d6SChris Zankel #include <linux/ptrace.h>
215a0015d6SChris Zankel #include <linux/personality.h>
2203248addSEric W. Biederman #include <linux/resume_user_mode.h>
2368db0cf1SIngo Molnar #include <linux/sched/task_stack.h>
2429c4dfd9SChris Zankel 
255a0015d6SChris Zankel #include <asm/ucontext.h>
267c0f6ba6SLinus Torvalds #include <linux/uaccess.h>
275a0015d6SChris Zankel #include <asm/cacheflush.h>
2829c4dfd9SChris Zankel #include <asm/coprocessor.h>
29*4ec4b8b1SRandy Dunlap #include <asm/processor.h>
30*4ec4b8b1SRandy Dunlap #include <asm/syscall.h>
3129c4dfd9SChris Zankel #include <asm/unistd.h>
325a0015d6SChris Zankel 
335a0015d6SChris Zankel extern struct task_struct *coproc_owners[];
345a0015d6SChris Zankel 
355a0015d6SChris Zankel struct rt_sigframe
365a0015d6SChris Zankel {
375a0015d6SChris Zankel 	struct siginfo info;
385a0015d6SChris Zankel 	struct ucontext uc;
39c658eac6SChris Zankel 	struct {
40c658eac6SChris Zankel 		xtregs_opt_t opt;
41c658eac6SChris Zankel 		xtregs_user_t user;
42c658eac6SChris Zankel #if XTENSA_HAVE_COPROCESSORS
43c658eac6SChris Zankel 		xtregs_coprocessor_t cp;
44c658eac6SChris Zankel #endif
45c658eac6SChris Zankel 	} xtregs;
465a0015d6SChris Zankel 	unsigned char retcode[6];
4729c4dfd9SChris Zankel 	unsigned int window[4];
485a0015d6SChris Zankel };
495a0015d6SChris Zankel 
50da0a4e5cSMax Filippov #if defined(USER_SUPPORT_WINDOWED)
5129c4dfd9SChris Zankel /*
5229c4dfd9SChris Zankel  * Flush register windows stored in pt_regs to stack.
5329c4dfd9SChris Zankel  * Returns 1 for errors.
5429c4dfd9SChris Zankel  */
555a0015d6SChris Zankel 
56da0a4e5cSMax Filippov static int
flush_window_regs_user(struct pt_regs * regs)5729c4dfd9SChris Zankel flush_window_regs_user(struct pt_regs *regs)
585a0015d6SChris Zankel {
5929c4dfd9SChris Zankel 	const unsigned long ws = regs->windowstart;
6029c4dfd9SChris Zankel 	const unsigned long wb = regs->windowbase;
6129c4dfd9SChris Zankel 	unsigned long sp = 0;
6229c4dfd9SChris Zankel 	unsigned long wm;
6329c4dfd9SChris Zankel 	int err = 1;
6429c4dfd9SChris Zankel 	int base;
6529c4dfd9SChris Zankel 
6629c4dfd9SChris Zankel 	/* Return if no other frames. */
6729c4dfd9SChris Zankel 
6829c4dfd9SChris Zankel 	if (regs->wmask == 1)
6929c4dfd9SChris Zankel 		return 0;
7029c4dfd9SChris Zankel 
7129c4dfd9SChris Zankel 	/* Rotate windowmask and skip empty frames. */
7229c4dfd9SChris Zankel 
7329c4dfd9SChris Zankel 	wm = (ws >> wb) | (ws << (XCHAL_NUM_AREGS / 4 - wb));
7429c4dfd9SChris Zankel 	base = (XCHAL_NUM_AREGS / 4) - (regs->wmask >> 4);
7529c4dfd9SChris Zankel 
7629c4dfd9SChris Zankel 	/* For call8 or call12 frames, we need the previous stack pointer. */
7729c4dfd9SChris Zankel 
7829c4dfd9SChris Zankel 	if ((regs->wmask & 2) == 0)
7929c4dfd9SChris Zankel 		if (__get_user(sp, (int*)(regs->areg[base * 4 + 1] - 12)))
8029c4dfd9SChris Zankel 			goto errout;
8129c4dfd9SChris Zankel 
8229c4dfd9SChris Zankel 	/* Spill frames to stack. */
8329c4dfd9SChris Zankel 
8429c4dfd9SChris Zankel 	while (base < XCHAL_NUM_AREGS / 4) {
8529c4dfd9SChris Zankel 
8629c4dfd9SChris Zankel 		int m = (wm >> base);
8729c4dfd9SChris Zankel 		int inc = 0;
8829c4dfd9SChris Zankel 
8929c4dfd9SChris Zankel 		/* Save registers a4..a7 (call8) or a4...a11 (call12) */
9029c4dfd9SChris Zankel 
9129c4dfd9SChris Zankel 		if (m & 2) {			/* call4 */
9229c4dfd9SChris Zankel 			inc = 1;
9329c4dfd9SChris Zankel 
9429c4dfd9SChris Zankel 		} else if (m & 4) {		/* call8 */
95062b1c19SMax Filippov 			if (copy_to_user(&SPILL_SLOT_CALL8(sp, 4),
9629c4dfd9SChris Zankel 					 &regs->areg[(base + 1) * 4], 16))
9729c4dfd9SChris Zankel 				goto errout;
9829c4dfd9SChris Zankel 			inc = 2;
9929c4dfd9SChris Zankel 
10029c4dfd9SChris Zankel 		} else if (m & 8) {	/* call12 */
101062b1c19SMax Filippov 			if (copy_to_user(&SPILL_SLOT_CALL12(sp, 4),
10229c4dfd9SChris Zankel 					 &regs->areg[(base + 1) * 4], 32))
10329c4dfd9SChris Zankel 				goto errout;
10429c4dfd9SChris Zankel 			inc = 3;
10529c4dfd9SChris Zankel 		}
10629c4dfd9SChris Zankel 
10729c4dfd9SChris Zankel 		/* Save current frame a0..a3 under next SP */
10829c4dfd9SChris Zankel 
10929c4dfd9SChris Zankel 		sp = regs->areg[((base + inc) * 4 + 1) % XCHAL_NUM_AREGS];
110062b1c19SMax Filippov 		if (copy_to_user(&SPILL_SLOT(sp, 0), &regs->areg[base * 4], 16))
11129c4dfd9SChris Zankel 			goto errout;
11229c4dfd9SChris Zankel 
11329c4dfd9SChris Zankel 		/* Get current stack pointer for next loop iteration. */
11429c4dfd9SChris Zankel 
11529c4dfd9SChris Zankel 		sp = regs->areg[base * 4 + 1];
11629c4dfd9SChris Zankel 		base += inc;
11729c4dfd9SChris Zankel 	}
11829c4dfd9SChris Zankel 
1193befce8fSChris Zankel 	regs->wmask = 1;
1203befce8fSChris Zankel 	regs->windowstart = 1 << wb;
1213befce8fSChris Zankel 
12229c4dfd9SChris Zankel 	return 0;
12329c4dfd9SChris Zankel 
12429c4dfd9SChris Zankel errout:
12529c4dfd9SChris Zankel 	return err;
12629c4dfd9SChris Zankel }
127da0a4e5cSMax Filippov #else
128da0a4e5cSMax Filippov static int
flush_window_regs_user(struct pt_regs * regs)129da0a4e5cSMax Filippov flush_window_regs_user(struct pt_regs *regs)
130da0a4e5cSMax Filippov {
131da0a4e5cSMax Filippov 	return 0;
132da0a4e5cSMax Filippov }
133da0a4e5cSMax Filippov #endif
13429c4dfd9SChris Zankel 
13529c4dfd9SChris Zankel /*
13629c4dfd9SChris Zankel  * Note: We don't copy double exception 'regs', we have to finish double exc.
13729c4dfd9SChris Zankel  * first before we return to signal handler! This dbl.exc.handler might cause
13829c4dfd9SChris Zankel  * another double exception, but I think we are fine as the situation is the
13929c4dfd9SChris Zankel  * same as if we had returned to the signal handerl and got an interrupt
14029c4dfd9SChris Zankel  * immediately...
14129c4dfd9SChris Zankel  */
14229c4dfd9SChris Zankel 
14329c4dfd9SChris Zankel static int
setup_sigcontext(struct rt_sigframe __user * frame,struct pt_regs * regs)144c658eac6SChris Zankel setup_sigcontext(struct rt_sigframe __user *frame, struct pt_regs *regs)
14529c4dfd9SChris Zankel {
146c658eac6SChris Zankel 	struct sigcontext __user *sc = &frame->uc.uc_mcontext;
147c658eac6SChris Zankel 	struct thread_info *ti = current_thread_info();
14829c4dfd9SChris Zankel 	int err = 0;
14929c4dfd9SChris Zankel 
15029c4dfd9SChris Zankel #define COPY(x)	err |= __put_user(regs->x, &sc->sc_##x)
15129c4dfd9SChris Zankel 	COPY(pc);
15229c4dfd9SChris Zankel 	COPY(ps);
15329c4dfd9SChris Zankel 	COPY(lbeg);
15429c4dfd9SChris Zankel 	COPY(lend);
15529c4dfd9SChris Zankel 	COPY(lcount);
15629c4dfd9SChris Zankel 	COPY(sar);
15729c4dfd9SChris Zankel #undef COPY
15829c4dfd9SChris Zankel 
15929c4dfd9SChris Zankel 	err |= flush_window_regs_user(regs);
16029c4dfd9SChris Zankel 	err |= __copy_to_user (sc->sc_a, regs->areg, 16 * 4);
161c658eac6SChris Zankel 	err |= __put_user(0, &sc->sc_xtregs);
16229c4dfd9SChris Zankel 
163c658eac6SChris Zankel 	if (err)
164c658eac6SChris Zankel 		return err;
16529c4dfd9SChris Zankel 
166c658eac6SChris Zankel #if XTENSA_HAVE_COPROCESSORS
16711e969bcSMax Filippov 	coprocessor_flush_release_all(ti);
168c658eac6SChris Zankel 	err |= __copy_to_user(&frame->xtregs.cp, &ti->xtregs_cp,
169c658eac6SChris Zankel 			      sizeof (frame->xtregs.cp));
17029c4dfd9SChris Zankel #endif
171c658eac6SChris Zankel 	err |= __copy_to_user(&frame->xtregs.opt, &regs->xtregs_opt,
172c658eac6SChris Zankel 			      sizeof (xtregs_opt_t));
173c658eac6SChris Zankel 	err |= __copy_to_user(&frame->xtregs.user, &ti->xtregs_user,
174c658eac6SChris Zankel 			      sizeof (xtregs_user_t));
175c658eac6SChris Zankel 
176c658eac6SChris Zankel 	err |= __put_user(err ? NULL : &frame->xtregs, &sc->sc_xtregs);
17729c4dfd9SChris Zankel 
17829c4dfd9SChris Zankel 	return err;
17929c4dfd9SChris Zankel }
18029c4dfd9SChris Zankel 
18129c4dfd9SChris Zankel static int
restore_sigcontext(struct pt_regs * regs,struct rt_sigframe __user * frame)182c658eac6SChris Zankel restore_sigcontext(struct pt_regs *regs, struct rt_sigframe __user *frame)
18329c4dfd9SChris Zankel {
184c658eac6SChris Zankel 	struct sigcontext __user *sc = &frame->uc.uc_mcontext;
185c658eac6SChris Zankel 	struct thread_info *ti = current_thread_info();
18629c4dfd9SChris Zankel 	unsigned int err = 0;
18729c4dfd9SChris Zankel 	unsigned long ps;
18829c4dfd9SChris Zankel 
18929c4dfd9SChris Zankel #define COPY(x)	err |= __get_user(regs->x, &sc->sc_##x)
19029c4dfd9SChris Zankel 	COPY(pc);
19129c4dfd9SChris Zankel 	COPY(lbeg);
19229c4dfd9SChris Zankel 	COPY(lend);
19329c4dfd9SChris Zankel 	COPY(lcount);
19429c4dfd9SChris Zankel 	COPY(sar);
19529c4dfd9SChris Zankel #undef COPY
19629c4dfd9SChris Zankel 
1976a986984SMax Filippov 	/* All registers were flushed to stack. Start with a pristine frame. */
19829c4dfd9SChris Zankel 
19929c4dfd9SChris Zankel 	regs->wmask = 1;
20029c4dfd9SChris Zankel 	regs->windowbase = 0;
20129c4dfd9SChris Zankel 	regs->windowstart = 1;
20229c4dfd9SChris Zankel 
2036a986984SMax Filippov 	regs->syscall = NO_SYSCALL;	/* disable syscall checks */
204c658eac6SChris Zankel 
20529c4dfd9SChris Zankel 	/* For PS, restore only PS.CALLINC.
20629c4dfd9SChris Zankel 	 * Assume that all other bits are either the same as for the signal
20729c4dfd9SChris Zankel 	 * handler, or the user mode value doesn't matter (e.g. PS.OWB).
20829c4dfd9SChris Zankel 	 */
20929c4dfd9SChris Zankel 	err |= __get_user(ps, &sc->sc_ps);
21029c4dfd9SChris Zankel 	regs->ps = (regs->ps & ~PS_CALLINC_MASK) | (ps & PS_CALLINC_MASK);
21129c4dfd9SChris Zankel 
21229c4dfd9SChris Zankel 	/* Additional corruption checks */
21329c4dfd9SChris Zankel 
21429c4dfd9SChris Zankel 	if ((regs->lcount > 0)
21529c4dfd9SChris Zankel 	    && ((regs->lbeg > TASK_SIZE) || (regs->lend > TASK_SIZE)) )
21629c4dfd9SChris Zankel 		err = 1;
21729c4dfd9SChris Zankel 
21829c4dfd9SChris Zankel 	err |= __copy_from_user(regs->areg, sc->sc_a, 16 * 4);
21929c4dfd9SChris Zankel 
220c658eac6SChris Zankel 	if (err)
221c658eac6SChris Zankel 		return err;
222c658eac6SChris Zankel 
2235a0015d6SChris Zankel 	/* The signal handler may have used coprocessors in which
2245a0015d6SChris Zankel 	 * case they are still enabled.  We disable them to force a
2255a0015d6SChris Zankel 	 * reloading of the original task's CP state by the lazy
2265a0015d6SChris Zankel 	 * context-switching mechanisms of CP exception handling.
2275a0015d6SChris Zankel 	 * Also, we essentially discard any coprocessor state that the
2285a0015d6SChris Zankel 	 * signal handler created. */
2295a0015d6SChris Zankel 
230c658eac6SChris Zankel #if XTENSA_HAVE_COPROCESSORS
231c658eac6SChris Zankel 	coprocessor_release_all(ti);
232c658eac6SChris Zankel 	err |= __copy_from_user(&ti->xtregs_cp, &frame->xtregs.cp,
233c658eac6SChris Zankel 				sizeof (frame->xtregs.cp));
2345a0015d6SChris Zankel #endif
235c658eac6SChris Zankel 	err |= __copy_from_user(&ti->xtregs_user, &frame->xtregs.user,
236c658eac6SChris Zankel 				sizeof (xtregs_user_t));
237c658eac6SChris Zankel 	err |= __copy_from_user(&regs->xtregs_opt, &frame->xtregs.opt,
238c658eac6SChris Zankel 				sizeof (xtregs_opt_t));
2395a0015d6SChris Zankel 
2405a0015d6SChris Zankel 	return err;
2415a0015d6SChris Zankel }
2425a0015d6SChris Zankel 
2435a0015d6SChris Zankel 
24429c4dfd9SChris Zankel /*
24529c4dfd9SChris Zankel  * Do a signal return; undo the signal stack.
2465a0015d6SChris Zankel  */
24729c4dfd9SChris Zankel 
xtensa_rt_sigreturn(void)2489d9043f6SMax Filippov asmlinkage long xtensa_rt_sigreturn(void)
2495a0015d6SChris Zankel {
2509d9043f6SMax Filippov 	struct pt_regs *regs = current_pt_regs();
25129c4dfd9SChris Zankel 	struct rt_sigframe __user *frame;
2525a0015d6SChris Zankel 	sigset_t set;
2535a0015d6SChris Zankel 	int ret;
25429c4dfd9SChris Zankel 
255188f677fSAl Viro 	/* Always make any pending restarted system calls return -EINTR */
256f56141e3SAndy Lutomirski 	current->restart_block.fn = do_no_restart_syscall;
257188f677fSAl Viro 
2585a0015d6SChris Zankel 	if (regs->depc > 64)
25929c4dfd9SChris Zankel 		panic("rt_sigreturn in double exception!\n");
26029c4dfd9SChris Zankel 
26129c4dfd9SChris Zankel 	frame = (struct rt_sigframe __user *) regs->areg[1];
2625a0015d6SChris Zankel 
26396d4f267SLinus Torvalds 	if (!access_ok(frame, sizeof(*frame)))
2645a0015d6SChris Zankel 		goto badframe;
2655a0015d6SChris Zankel 
2665a0015d6SChris Zankel 	if (__copy_from_user(&set, &frame->uc.uc_sigmask, sizeof(set)))
2675a0015d6SChris Zankel 		goto badframe;
2685a0015d6SChris Zankel 
269d12f7c4aSMatt Fleming 	set_current_blocked(&set);
2705a0015d6SChris Zankel 
271c658eac6SChris Zankel 	if (restore_sigcontext(regs, frame))
2725a0015d6SChris Zankel 		goto badframe;
27329c4dfd9SChris Zankel 
2745a0015d6SChris Zankel 	ret = regs->areg[2];
2755a0015d6SChris Zankel 
2760430f2f2SAl Viro 	if (restore_altstack(&frame->uc.uc_stack))
2775a0015d6SChris Zankel 		goto badframe;
2785a0015d6SChris Zankel 
2795a0015d6SChris Zankel 	return ret;
2805a0015d6SChris Zankel 
2815a0015d6SChris Zankel badframe:
2823cf5d076SEric W. Biederman 	force_sig(SIGSEGV);
2835a0015d6SChris Zankel 	return 0;
2845a0015d6SChris Zankel }
2855a0015d6SChris Zankel 
28629c4dfd9SChris Zankel 
28729c4dfd9SChris Zankel 
2885a0015d6SChris Zankel /*
2895a0015d6SChris Zankel  * Set up a signal frame.
2905a0015d6SChris Zankel  */
2915a0015d6SChris Zankel 
2925a0015d6SChris Zankel static int
gen_return_code(unsigned char * codemem)29329c4dfd9SChris Zankel gen_return_code(unsigned char *codemem)
2945a0015d6SChris Zankel {
2955a0015d6SChris Zankel 	int err = 0;
2965a0015d6SChris Zankel 
29729c4dfd9SChris Zankel 	/*
29829c4dfd9SChris Zankel 	 * The 12-bit immediate is really split up within the 24-bit MOVI
2995a0015d6SChris Zankel 	 * instruction.  As long as the above system call numbers fit within
3005a0015d6SChris Zankel 	 * 8-bits, the following code works fine. See the Xtensa ISA for
3015a0015d6SChris Zankel 	 * details.
3025a0015d6SChris Zankel 	 */
3035a0015d6SChris Zankel 
30429c4dfd9SChris Zankel #if __NR_rt_sigreturn > 255
3055a0015d6SChris Zankel # error Generating the MOVI instruction below breaks!
3065a0015d6SChris Zankel #endif
3075a0015d6SChris Zankel 
3085a0015d6SChris Zankel #ifdef __XTENSA_EB__   /* Big Endian version */
30929c4dfd9SChris Zankel 	/* Generate instruction:  MOVI a2, __NR_rt_sigreturn */
3105a0015d6SChris Zankel 	err |= __put_user(0x22, &codemem[0]);
3115a0015d6SChris Zankel 	err |= __put_user(0x0a, &codemem[1]);
31229c4dfd9SChris Zankel 	err |= __put_user(__NR_rt_sigreturn, &codemem[2]);
3135a0015d6SChris Zankel 	/* Generate instruction:  SYSCALL */
3145a0015d6SChris Zankel 	err |= __put_user(0x00, &codemem[3]);
3155a0015d6SChris Zankel 	err |= __put_user(0x05, &codemem[4]);
3165a0015d6SChris Zankel 	err |= __put_user(0x00, &codemem[5]);
3175a0015d6SChris Zankel 
3185a0015d6SChris Zankel #elif defined __XTENSA_EL__   /* Little Endian version */
31929c4dfd9SChris Zankel 	/* Generate instruction:  MOVI a2, __NR_rt_sigreturn */
3205a0015d6SChris Zankel 	err |= __put_user(0x22, &codemem[0]);
3215a0015d6SChris Zankel 	err |= __put_user(0xa0, &codemem[1]);
32229c4dfd9SChris Zankel 	err |= __put_user(__NR_rt_sigreturn, &codemem[2]);
3235a0015d6SChris Zankel 	/* Generate instruction:  SYSCALL */
3245a0015d6SChris Zankel 	err |= __put_user(0x00, &codemem[3]);
3255a0015d6SChris Zankel 	err |= __put_user(0x50, &codemem[4]);
3265a0015d6SChris Zankel 	err |= __put_user(0x00, &codemem[5]);
3275a0015d6SChris Zankel #else
3285a0015d6SChris Zankel # error Must use compiler for Xtensa processors.
3295a0015d6SChris Zankel #endif
3305a0015d6SChris Zankel 
3315a0015d6SChris Zankel 	/* Flush generated code out of the data cache */
3325a0015d6SChris Zankel 
333173d6681SChris Zankel 	if (err == 0) {
334173d6681SChris Zankel 		__invalidate_icache_range((unsigned long)codemem, 6UL);
335173d6681SChris Zankel 		__flush_invalidate_dcache_range((unsigned long)codemem, 6UL);
336173d6681SChris Zankel 	}
3375a0015d6SChris Zankel 
3385a0015d6SChris Zankel 	return err;
3395a0015d6SChris Zankel }
3405a0015d6SChris Zankel 
3415a0015d6SChris Zankel 
setup_frame(struct ksignal * ksig,sigset_t * set,struct pt_regs * regs)3425bdb7611SRichard Weinberger static int setup_frame(struct ksignal *ksig, sigset_t *set,
3435bdb7611SRichard Weinberger 		       struct pt_regs *regs)
3445a0015d6SChris Zankel {
3455a0015d6SChris Zankel 	struct rt_sigframe *frame;
3465bdb7611SRichard Weinberger 	int err = 0, sig = ksig->sig;
34709f8a6dbSMax Filippov 	unsigned long sp, ra, tp, ps;
3489c2cc74fSMax Filippov 	unsigned long handler = (unsigned long)ksig->ka.sa.sa_handler;
3499c2cc74fSMax Filippov 	unsigned long handler_fdpic_GOT = 0;
35009f8a6dbSMax Filippov 	unsigned int base;
3519c2cc74fSMax Filippov 	bool fdpic = IS_ENABLED(CONFIG_BINFMT_ELF_FDPIC) &&
3529c2cc74fSMax Filippov 		(current->personality & FDPIC_FUNCPTRS);
3539c2cc74fSMax Filippov 
3549c2cc74fSMax Filippov 	if (fdpic) {
3559c2cc74fSMax Filippov 		unsigned long __user *fdpic_func_desc =
3569c2cc74fSMax Filippov 			(unsigned long __user *)handler;
3579c2cc74fSMax Filippov 		if (__get_user(handler, &fdpic_func_desc[0]) ||
3589c2cc74fSMax Filippov 		    __get_user(handler_fdpic_GOT, &fdpic_func_desc[1]))
3599c2cc74fSMax Filippov 			return -EFAULT;
3609c2cc74fSMax Filippov 	}
3615a0015d6SChris Zankel 
36229c4dfd9SChris Zankel 	sp = regs->areg[1];
36329c4dfd9SChris Zankel 
3645bdb7611SRichard Weinberger 	if ((ksig->ka.sa.sa_flags & SA_ONSTACK) != 0 && sas_ss_flags(sp) == 0) {
36529c4dfd9SChris Zankel 		sp = current->sas_ss_sp + current->sas_ss_size;
36629c4dfd9SChris Zankel 	}
36729c4dfd9SChris Zankel 
36829c4dfd9SChris Zankel 	frame = (void *)((sp - sizeof(*frame)) & -16ul);
36929c4dfd9SChris Zankel 
3705a0015d6SChris Zankel 	if (regs->depc > 64)
3715a0015d6SChris Zankel 		panic ("Double exception sys_sigreturn\n");
3725a0015d6SChris Zankel 
37396d4f267SLinus Torvalds 	if (!access_ok(frame, sizeof(*frame))) {
3745bdb7611SRichard Weinberger 		return -EFAULT;
37529c4dfd9SChris Zankel 	}
3765a0015d6SChris Zankel 
3775bdb7611SRichard Weinberger 	if (ksig->ka.sa.sa_flags & SA_SIGINFO) {
3785bdb7611SRichard Weinberger 		err |= copy_siginfo_to_user(&frame->info, &ksig->info);
37929c4dfd9SChris Zankel 	}
3805a0015d6SChris Zankel 
38129c4dfd9SChris Zankel 	/* Create the user context.  */
38229c4dfd9SChris Zankel 
3835a0015d6SChris Zankel 	err |= __put_user(0, &frame->uc.uc_flags);
3845a0015d6SChris Zankel 	err |= __put_user(0, &frame->uc.uc_link);
3850430f2f2SAl Viro 	err |= __save_altstack(&frame->uc.uc_stack, regs->areg[1]);
386c658eac6SChris Zankel 	err |= setup_sigcontext(frame, regs);
3875a0015d6SChris Zankel 	err |= __copy_to_user(&frame->uc.uc_sigmask, set, sizeof(*set));
3885a0015d6SChris Zankel 
3895bdb7611SRichard Weinberger 	if (ksig->ka.sa.sa_flags & SA_RESTORER) {
3909c2cc74fSMax Filippov 		if (fdpic) {
3919c2cc74fSMax Filippov 			unsigned long __user *fdpic_func_desc =
3929c2cc74fSMax Filippov 				(unsigned long __user *)ksig->ka.sa.sa_restorer;
3939c2cc74fSMax Filippov 
3949c2cc74fSMax Filippov 			err |= __get_user(ra, fdpic_func_desc);
3959c2cc74fSMax Filippov 		} else {
3965bdb7611SRichard Weinberger 			ra = (unsigned long)ksig->ka.sa.sa_restorer;
3979c2cc74fSMax Filippov 		}
39844c64e6bSChris Zankel 	} else {
39944c64e6bSChris Zankel 
4005a0015d6SChris Zankel 		/* Create sys_rt_sigreturn syscall in stack frame */
4015a0015d6SChris Zankel 
40229c4dfd9SChris Zankel 		err |= gen_return_code(frame->retcode);
40344c64e6bSChris Zankel 		ra = (unsigned long) frame->retcode;
40444c64e6bSChris Zankel 	}
40529c4dfd9SChris Zankel 
4069c2cc74fSMax Filippov 	if (err)
4079c2cc74fSMax Filippov 		return -EFAULT;
4089c2cc74fSMax Filippov 
40929c4dfd9SChris Zankel 	/*
41029c4dfd9SChris Zankel 	 * Create signal handler execution context.
4115a0015d6SChris Zankel 	 * Return context not modified until this point.
4125a0015d6SChris Zankel 	 */
41329c4dfd9SChris Zankel 
414c50842dfSChris Zankel 	/* Set up registers for signal handler; preserve the threadptr */
415c50842dfSChris Zankel 	tp = regs->threadptr;
41609f8a6dbSMax Filippov 	ps = regs->ps;
4179c2cc74fSMax Filippov 	start_thread(regs, handler, (unsigned long)frame);
41829c4dfd9SChris Zankel 
41909f8a6dbSMax Filippov 	/* Set up a stack frame for a call4 if userspace uses windowed ABI */
42009f8a6dbSMax Filippov 	if (ps & PS_WOE_MASK) {
42109f8a6dbSMax Filippov 		base = 4;
42209f8a6dbSMax Filippov 		regs->areg[base] =
42309f8a6dbSMax Filippov 			(((unsigned long) ra) & 0x3fffffff) | 0x40000000;
42409f8a6dbSMax Filippov 		ps = (ps & ~(PS_CALLINC_MASK | PS_OWB_MASK)) |
42509f8a6dbSMax Filippov 			(1 << PS_CALLINC_SHIFT);
42609f8a6dbSMax Filippov 	} else {
42709f8a6dbSMax Filippov 		base = 0;
42809f8a6dbSMax Filippov 		regs->areg[base] = (unsigned long) ra;
42909f8a6dbSMax Filippov 	}
43009f8a6dbSMax Filippov 	regs->areg[base + 2] = (unsigned long) sig;
43109f8a6dbSMax Filippov 	regs->areg[base + 3] = (unsigned long) &frame->info;
43209f8a6dbSMax Filippov 	regs->areg[base + 4] = (unsigned long) &frame->uc;
433c50842dfSChris Zankel 	regs->threadptr = tp;
43409f8a6dbSMax Filippov 	regs->ps = ps;
4359c2cc74fSMax Filippov 	if (fdpic)
4369c2cc74fSMax Filippov 		regs->areg[base + 11] = handler_fdpic_GOT;
4375a0015d6SChris Zankel 
438c130d3beSMax Filippov 	pr_debug("SIG rt deliver (%s:%d): signal=%d sp=%p pc=%08lx\n",
4393e66701cSRichard Weinberger 		 current->comm, current->pid, sig, frame, regs->pc);
4405a0015d6SChris Zankel 
4413785006aSMatt Fleming 	return 0;
4425a0015d6SChris Zankel }
4435a0015d6SChris Zankel 
4445a0015d6SChris Zankel /*
4455a0015d6SChris Zankel  * Note that 'init' is a special process: it doesn't get signals it doesn't
4465a0015d6SChris Zankel  * want to handle. Thus you cannot kill init even with a SIGKILL even by
4475a0015d6SChris Zankel  * mistake.
4485a0015d6SChris Zankel  *
4495a0015d6SChris Zankel  * Note that we go through the signals twice: once to check the signals that
4505a0015d6SChris Zankel  * the kernel can handle, and then we build all the user-level signal handling
4515a0015d6SChris Zankel  * stack-frames in one go after that.
4525a0015d6SChris Zankel  */
do_signal(struct pt_regs * regs)453a53bb24eSAl Viro static void do_signal(struct pt_regs *regs)
4545a0015d6SChris Zankel {
4555bdb7611SRichard Weinberger 	struct ksignal ksig;
4565a0015d6SChris Zankel 
45729c4dfd9SChris Zankel 	task_pt_regs(current)->icountlevel = 0;
45829c4dfd9SChris Zankel 
4595bdb7611SRichard Weinberger 	if (get_signal(&ksig)) {
4609112a6b2SPaul Gortmaker 		int ret;
46129c4dfd9SChris Zankel 
4625a0015d6SChris Zankel 		/* Are we from a system call? */
46329c4dfd9SChris Zankel 
4646a986984SMax Filippov 		if (regs->syscall != NO_SYSCALL) {
46529c4dfd9SChris Zankel 
4665a0015d6SChris Zankel 			/* If so, check system call restarting.. */
46729c4dfd9SChris Zankel 
4685a0015d6SChris Zankel 			switch (regs->areg[2]) {
46929c4dfd9SChris Zankel 				case -ERESTARTNOHAND:
47029c4dfd9SChris Zankel 				case -ERESTART_RESTARTBLOCK:
4715a0015d6SChris Zankel 					regs->areg[2] = -EINTR;
4725a0015d6SChris Zankel 					break;
4735a0015d6SChris Zankel 
47429c4dfd9SChris Zankel 				case -ERESTARTSYS:
4755bdb7611SRichard Weinberger 					if (!(ksig.ka.sa.sa_flags & SA_RESTART)) {
4765a0015d6SChris Zankel 						regs->areg[2] = -EINTR;
4775a0015d6SChris Zankel 						break;
4785a0015d6SChris Zankel 					}
479df561f66SGustavo A. R. Silva 					fallthrough;
48029c4dfd9SChris Zankel 				case -ERESTARTNOINTR:
4815a0015d6SChris Zankel 					regs->areg[2] = regs->syscall;
4825a0015d6SChris Zankel 					regs->pc -= 3;
48329c4dfd9SChris Zankel 					break;
4845a0015d6SChris Zankel 
48529c4dfd9SChris Zankel 				default:
48629c4dfd9SChris Zankel 					/* nothing to do */
48729c4dfd9SChris Zankel 					if (regs->areg[2] != 0)
48829c4dfd9SChris Zankel 					break;
48929c4dfd9SChris Zankel 			}
49029c4dfd9SChris Zankel 		}
4915a0015d6SChris Zankel 
4925a0015d6SChris Zankel 		/* Whee!  Actually deliver the signal.  */
4935a0015d6SChris Zankel 		/* Set up the stack frame */
4945bdb7611SRichard Weinberger 		ret = setup_frame(&ksig, sigmask_to_save(), regs);
4955bdb7611SRichard Weinberger 		signal_setup_done(ret, &ksig, 0);
4964a3d2717SEric W. Biederman 		if (test_thread_flag(TIF_SINGLESTEP))
49729c4dfd9SChris Zankel 			task_pt_regs(current)->icountlevel = 1;
49829c4dfd9SChris Zankel 
4999ccc9c75SAl Viro 		return;
5005a0015d6SChris Zankel 	}
50129c4dfd9SChris Zankel 
50229c4dfd9SChris Zankel 	/* Did we come from a system call? */
5036a986984SMax Filippov 	if (regs->syscall != NO_SYSCALL) {
50429c4dfd9SChris Zankel 		/* Restart the system call - no handlers present */
50529c4dfd9SChris Zankel 		switch (regs->areg[2]) {
50629c4dfd9SChris Zankel 		case -ERESTARTNOHAND:
50729c4dfd9SChris Zankel 		case -ERESTARTSYS:
50829c4dfd9SChris Zankel 		case -ERESTARTNOINTR:
50929c4dfd9SChris Zankel 			regs->areg[2] = regs->syscall;
51029c4dfd9SChris Zankel 			regs->pc -= 3;
51129c4dfd9SChris Zankel 			break;
51229c4dfd9SChris Zankel 		case -ERESTART_RESTARTBLOCK:
51329c4dfd9SChris Zankel 			regs->areg[2] = __NR_restart_syscall;
51429c4dfd9SChris Zankel 			regs->pc -= 3;
51529c4dfd9SChris Zankel 			break;
51629c4dfd9SChris Zankel 		}
51729c4dfd9SChris Zankel 	}
5189ccc9c75SAl Viro 
5199ccc9c75SAl Viro 	/* If there's no signal to deliver, we just restore the saved mask.  */
52051a7b448SAl Viro 	restore_saved_sigmask();
5219ccc9c75SAl Viro 
5224a3d2717SEric W. Biederman 	if (test_thread_flag(TIF_SINGLESTEP))
52329c4dfd9SChris Zankel 		task_pt_regs(current)->icountlevel = 1;
5249ccc9c75SAl Viro 	return;
52529c4dfd9SChris Zankel }
52629c4dfd9SChris Zankel 
do_notify_resume(struct pt_regs * regs)527a53bb24eSAl Viro void do_notify_resume(struct pt_regs *regs)
528a53bb24eSAl Viro {
529bec58f40SJens Axboe 	if (test_thread_flag(TIF_SIGPENDING) ||
530bec58f40SJens Axboe 	    test_thread_flag(TIF_NOTIFY_SIGNAL))
531a53bb24eSAl Viro 		do_signal(regs);
532a53bb24eSAl Viro 
5333c532798SJens Axboe 	if (test_thread_flag(TIF_NOTIFY_RESUME))
53403248addSEric W. Biederman 		resume_user_mode_work(regs);
535a53bb24eSAl Viro }
536