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1/*
2 * This file is subject to the terms and conditions of the GNU General Public
3 * License. See the file "COPYING" in the main directory of this archive
4 * for more details.
5 *
6 * Copyright (C) 1994 - 1999, 2000 by Ralf Baechle and others.
7 * Copyright (C) 2005, 2006 by Ralf Baechle (ralf@linux-mips.org)
8 * Copyright (C) 1999, 2000 Silicon Graphics, Inc.
9 * Copyright (C) 2004 Thiemo Seufer
10 * Copyright (C) 2013 Imagination Technologies Ltd.
11 */
12#include <linux/errno.h>
13#include <linux/sched.h>
14#include <linux/sched/debug.h>
15#include <linux/sched/task.h>
16#include <linux/sched/task_stack.h>
17#include <linux/tick.h>
18#include <linux/kernel.h>
19#include <linux/mm.h>
20#include <linux/stddef.h>
21#include <linux/unistd.h>
22#include <linux/export.h>
23#include <linux/ptrace.h>
24#include <linux/mman.h>
25#include <linux/personality.h>
26#include <linux/sys.h>
27#include <linux/init.h>
28#include <linux/completion.h>
29#include <linux/kallsyms.h>
30#include <linux/random.h>
31#include <linux/prctl.h>
32
33#include <asm/asm.h>
34#include <asm/bootinfo.h>
35#include <asm/cpu.h>
36#include <asm/dsemul.h>
37#include <asm/dsp.h>
38#include <asm/fpu.h>
39#include <asm/irq.h>
40#include <asm/msa.h>
41#include <asm/pgtable.h>
42#include <asm/mipsregs.h>
43#include <asm/processor.h>
44#include <asm/reg.h>
45#include <linux/uaccess.h>
46#include <asm/io.h>
47#include <asm/elf.h>
48#include <asm/isadep.h>
49#include <asm/inst.h>
50#include <asm/stacktrace.h>
51#include <asm/irq_regs.h>
52
53#ifdef CONFIG_HOTPLUG_CPU
54void arch_cpu_idle_dead(void)
55{
56 play_dead();
57}
58#endif
59
60asmlinkage void ret_from_fork(void);
61asmlinkage void ret_from_kernel_thread(void);
62
63void start_thread(struct pt_regs * regs, unsigned long pc, unsigned long sp)
64{
65 unsigned long status;
66
67 /* New thread loses kernel privileges. */
68 status = regs->cp0_status & ~(ST0_CU0|ST0_CU1|ST0_FR|KU_MASK);
69 status |= KU_USER;
70 regs->cp0_status = status;
71 lose_fpu(0);
72 clear_thread_flag(TIF_MSA_CTX_LIVE);
73 clear_used_math();
74 atomic_set(¤t->thread.bd_emu_frame, BD_EMUFRAME_NONE);
75 init_dsp();
76 regs->cp0_epc = pc;
77 regs->regs[29] = sp;
78}
79
80void exit_thread(struct task_struct *tsk)
81{
82 /*
83 * User threads may have allocated a delay slot emulation frame.
84 * If so, clean up that allocation.
85 */
86 if (!(current->flags & PF_KTHREAD))
87 dsemul_thread_cleanup(tsk);
88}
89
90int arch_dup_task_struct(struct task_struct *dst, struct task_struct *src)
91{
92 /*
93 * Save any process state which is live in hardware registers to the
94 * parent context prior to duplication. This prevents the new child
95 * state becoming stale if the parent is preempted before copy_thread()
96 * gets a chance to save the parent's live hardware registers to the
97 * child context.
98 */
99 preempt_disable();
100
101 if (is_msa_enabled())
102 save_msa(current);
103 else if (is_fpu_owner())
104 _save_fp(current);
105
106 save_dsp(current);
107
108 preempt_enable();
109
110 *dst = *src;
111 return 0;
112}
113
114/*
115 * Copy architecture-specific thread state
116 */
117int copy_thread_tls(unsigned long clone_flags, unsigned long usp,
118 unsigned long kthread_arg, struct task_struct *p, unsigned long tls)
119{
120 struct thread_info *ti = task_thread_info(p);
121 struct pt_regs *childregs, *regs = current_pt_regs();
122 unsigned long childksp;
123
124 childksp = (unsigned long)task_stack_page(p) + THREAD_SIZE - 32;
125
126 /* set up new TSS. */
127 childregs = (struct pt_regs *) childksp - 1;
128 /* Put the stack after the struct pt_regs. */
129 childksp = (unsigned long) childregs;
130 p->thread.cp0_status = read_c0_status() & ~(ST0_CU2|ST0_CU1);
131 if (unlikely(p->flags & PF_KTHREAD)) {
132 /* kernel thread */
133 unsigned long status = p->thread.cp0_status;
134 memset(childregs, 0, sizeof(struct pt_regs));
135 ti->addr_limit = KERNEL_DS;
136 p->thread.reg16 = usp; /* fn */
137 p->thread.reg17 = kthread_arg;
138 p->thread.reg29 = childksp;
139 p->thread.reg31 = (unsigned long) ret_from_kernel_thread;
140#if defined(CONFIG_CPU_R3000) || defined(CONFIG_CPU_TX39XX)
141 status = (status & ~(ST0_KUP | ST0_IEP | ST0_IEC)) |
142 ((status & (ST0_KUC | ST0_IEC)) << 2);
143#else
144 status |= ST0_EXL;
145#endif
146 childregs->cp0_status = status;
147 return 0;
148 }
149
150 /* user thread */
151 *childregs = *regs;
152 childregs->regs[7] = 0; /* Clear error flag */
153 childregs->regs[2] = 0; /* Child gets zero as return value */
154 if (usp)
155 childregs->regs[29] = usp;
156 ti->addr_limit = USER_DS;
157
158 p->thread.reg29 = (unsigned long) childregs;
159 p->thread.reg31 = (unsigned long) ret_from_fork;
160
161 /*
162 * New tasks lose permission to use the fpu. This accelerates context
163 * switching for most programs since they don't use the fpu.
164 */
165 childregs->cp0_status &= ~(ST0_CU2|ST0_CU1);
166
167 clear_tsk_thread_flag(p, TIF_USEDFPU);
168 clear_tsk_thread_flag(p, TIF_USEDMSA);
169 clear_tsk_thread_flag(p, TIF_MSA_CTX_LIVE);
170
171#ifdef CONFIG_MIPS_MT_FPAFF
172 clear_tsk_thread_flag(p, TIF_FPUBOUND);
173#endif /* CONFIG_MIPS_MT_FPAFF */
174
175 atomic_set(&p->thread.bd_emu_frame, BD_EMUFRAME_NONE);
176
177 if (clone_flags & CLONE_SETTLS)
178 ti->tp_value = tls;
179
180 return 0;
181}
182
183#ifdef CONFIG_CC_STACKPROTECTOR
184#include <linux/stackprotector.h>
185unsigned long __stack_chk_guard __read_mostly;
186EXPORT_SYMBOL(__stack_chk_guard);
187#endif
188
189struct mips_frame_info {
190 void *func;
191 unsigned long func_size;
192 int frame_size;
193 int pc_offset;
194};
195
196#define J_TARGET(pc,target) \
197 (((unsigned long)(pc) & 0xf0000000) | ((target) << 2))
198
199static inline int is_ra_save_ins(union mips_instruction *ip, int *poff)
200{
201#ifdef CONFIG_CPU_MICROMIPS
202 /*
203 * swsp ra,offset
204 * swm16 reglist,offset(sp)
205 * swm32 reglist,offset(sp)
206 * sw32 ra,offset(sp)
207 * jradiussp - NOT SUPPORTED
208 *
209 * microMIPS is way more fun...
210 */
211 if (mm_insn_16bit(ip->word >> 16)) {
212 switch (ip->mm16_r5_format.opcode) {
213 case mm_swsp16_op:
214 if (ip->mm16_r5_format.rt != 31)
215 return 0;
216
217 *poff = ip->mm16_r5_format.imm;
218 *poff = (*poff << 2) / sizeof(ulong);
219 return 1;
220
221 case mm_pool16c_op:
222 switch (ip->mm16_m_format.func) {
223 case mm_swm16_op:
224 *poff = ip->mm16_m_format.imm;
225 *poff += 1 + ip->mm16_m_format.rlist;
226 *poff = (*poff << 2) / sizeof(ulong);
227 return 1;
228
229 default:
230 return 0;
231 }
232
233 default:
234 return 0;
235 }
236 }
237
238 switch (ip->i_format.opcode) {
239 case mm_sw32_op:
240 if (ip->i_format.rs != 29)
241 return 0;
242 if (ip->i_format.rt != 31)
243 return 0;
244
245 *poff = ip->i_format.simmediate / sizeof(ulong);
246 return 1;
247
248 case mm_pool32b_op:
249 switch (ip->mm_m_format.func) {
250 case mm_swm32_func:
251 if (ip->mm_m_format.rd < 0x10)
252 return 0;
253 if (ip->mm_m_format.base != 29)
254 return 0;
255
256 *poff = ip->mm_m_format.simmediate;
257 *poff += (ip->mm_m_format.rd & 0xf) * sizeof(u32);
258 *poff /= sizeof(ulong);
259 return 1;
260 default:
261 return 0;
262 }
263
264 default:
265 return 0;
266 }
267#else
268 /* sw / sd $ra, offset($sp) */
269 if ((ip->i_format.opcode == sw_op || ip->i_format.opcode == sd_op) &&
270 ip->i_format.rs == 29 && ip->i_format.rt == 31) {
271 *poff = ip->i_format.simmediate / sizeof(ulong);
272 return 1;
273 }
274
275 return 0;
276#endif
277}
278
279static inline int is_jump_ins(union mips_instruction *ip)
280{
281#ifdef CONFIG_CPU_MICROMIPS
282 /*
283 * jr16,jrc,jalr16,jalr16
284 * jal
285 * jalr/jr,jalr.hb/jr.hb,jalrs,jalrs.hb
286 * jraddiusp - NOT SUPPORTED
287 *
288 * microMIPS is kind of more fun...
289 */
290 if (mm_insn_16bit(ip->word >> 16)) {
291 if ((ip->mm16_r5_format.opcode == mm_pool16c_op &&
292 (ip->mm16_r5_format.rt & mm_jr16_op) == mm_jr16_op))
293 return 1;
294 return 0;
295 }
296
297 if (ip->j_format.opcode == mm_j32_op)
298 return 1;
299 if (ip->j_format.opcode == mm_jal32_op)
300 return 1;
301 if (ip->r_format.opcode != mm_pool32a_op ||
302 ip->r_format.func != mm_pool32axf_op)
303 return 0;
304 return ((ip->u_format.uimmediate >> 6) & mm_jalr_op) == mm_jalr_op;
305#else
306 if (ip->j_format.opcode == j_op)
307 return 1;
308 if (ip->j_format.opcode == jal_op)
309 return 1;
310 if (ip->r_format.opcode != spec_op)
311 return 0;
312 return ip->r_format.func == jalr_op || ip->r_format.func == jr_op;
313#endif
314}
315
316static inline int is_sp_move_ins(union mips_instruction *ip, int *frame_size)
317{
318#ifdef CONFIG_CPU_MICROMIPS
319 unsigned short tmp;
320
321 /*
322 * addiusp -imm
323 * addius5 sp,-imm
324 * addiu32 sp,sp,-imm
325 * jradiussp - NOT SUPPORTED
326 *
327 * microMIPS is not more fun...
328 */
329 if (mm_insn_16bit(ip->word >> 16)) {
330 if (ip->mm16_r3_format.opcode == mm_pool16d_op &&
331 ip->mm16_r3_format.simmediate & mm_addiusp_func) {
332 tmp = ip->mm_b0_format.simmediate >> 1;
333 tmp = ((tmp & 0x1ff) ^ 0x100) - 0x100;
334 if ((tmp + 2) < 4) /* 0x0,0x1,0x1fe,0x1ff are special */
335 tmp ^= 0x100;
336 *frame_size = -(signed short)(tmp << 2);
337 return 1;
338 }
339 if (ip->mm16_r5_format.opcode == mm_pool16d_op &&
340 ip->mm16_r5_format.rt == 29) {
341 tmp = ip->mm16_r5_format.imm >> 1;
342 *frame_size = -(signed short)(tmp & 0xf);
343 return 1;
344 }
345 return 0;
346 }
347
348 if (ip->mm_i_format.opcode == mm_addiu32_op &&
349 ip->mm_i_format.rt == 29 && ip->mm_i_format.rs == 29) {
350 *frame_size = -ip->i_format.simmediate;
351 return 1;
352 }
353#else
354 /* addiu/daddiu sp,sp,-imm */
355 if (ip->i_format.rs != 29 || ip->i_format.rt != 29)
356 return 0;
357
358 if (ip->i_format.opcode == addiu_op ||
359 ip->i_format.opcode == daddiu_op) {
360 *frame_size = -ip->i_format.simmediate;
361 return 1;
362 }
363#endif
364 return 0;
365}
366
367static int get_frame_info(struct mips_frame_info *info)
368{
369 bool is_mmips = IS_ENABLED(CONFIG_CPU_MICROMIPS);
370 union mips_instruction insn, *ip, *ip_end;
371 const unsigned int max_insns = 128;
372 unsigned int last_insn_size = 0;
373 unsigned int i;
374 bool saw_jump = false;
375
376 info->pc_offset = -1;
377 info->frame_size = 0;
378
379 ip = (void *)msk_isa16_mode((ulong)info->func);
380 if (!ip)
381 goto err;
382
383 ip_end = (void *)ip + info->func_size;
384
385 for (i = 0; i < max_insns && ip < ip_end; i++) {
386 ip = (void *)ip + last_insn_size;
387 if (is_mmips && mm_insn_16bit(ip->halfword[0])) {
388 insn.word = ip->halfword[0] << 16;
389 last_insn_size = 2;
390 } else if (is_mmips) {
391 insn.word = ip->halfword[0] << 16 | ip->halfword[1];
392 last_insn_size = 4;
393 } else {
394 insn.word = ip->word;
395 last_insn_size = 4;
396 }
397
398 if (!info->frame_size) {
399 is_sp_move_ins(&insn, &info->frame_size);
400 continue;
401 } else if (!saw_jump && is_jump_ins(ip)) {
402 /*
403 * If we see a jump instruction, we are finished
404 * with the frame save.
405 *
406 * Some functions can have a shortcut return at
407 * the beginning of the function, so don't start
408 * looking for jump instruction until we see the
409 * frame setup.
410 *
411 * The RA save instruction can get put into the
412 * delay slot of the jump instruction, so look
413 * at the next instruction, too.
414 */
415 saw_jump = true;
416 continue;
417 }
418 if (info->pc_offset == -1 &&
419 is_ra_save_ins(&insn, &info->pc_offset))
420 break;
421 if (saw_jump)
422 break;
423 }
424 if (info->frame_size && info->pc_offset >= 0) /* nested */
425 return 0;
426 if (info->pc_offset < 0) /* leaf */
427 return 1;
428 /* prologue seems bogus... */
429err:
430 return -1;
431}
432
433static struct mips_frame_info schedule_mfi __read_mostly;
434
435#ifdef CONFIG_KALLSYMS
436static unsigned long get___schedule_addr(void)
437{
438 return kallsyms_lookup_name("__schedule");
439}
440#else
441static unsigned long get___schedule_addr(void)
442{
443 union mips_instruction *ip = (void *)schedule;
444 int max_insns = 8;
445 int i;
446
447 for (i = 0; i < max_insns; i++, ip++) {
448 if (ip->j_format.opcode == j_op)
449 return J_TARGET(ip, ip->j_format.target);
450 }
451 return 0;
452}
453#endif
454
455static int __init frame_info_init(void)
456{
457 unsigned long size = 0;
458#ifdef CONFIG_KALLSYMS
459 unsigned long ofs;
460#endif
461 unsigned long addr;
462
463 addr = get___schedule_addr();
464 if (!addr)
465 addr = (unsigned long)schedule;
466
467#ifdef CONFIG_KALLSYMS
468 kallsyms_lookup_size_offset(addr, &size, &ofs);
469#endif
470 schedule_mfi.func = (void *)addr;
471 schedule_mfi.func_size = size;
472
473 get_frame_info(&schedule_mfi);
474
475 /*
476 * Without schedule() frame info, result given by
477 * thread_saved_pc() and get_wchan() are not reliable.
478 */
479 if (schedule_mfi.pc_offset < 0)
480 printk("Can't analyze schedule() prologue at %p\n", schedule);
481
482 return 0;
483}
484
485arch_initcall(frame_info_init);
486
487/*
488 * Return saved PC of a blocked thread.
489 */
490static unsigned long thread_saved_pc(struct task_struct *tsk)
491{
492 struct thread_struct *t = &tsk->thread;
493
494 /* New born processes are a special case */
495 if (t->reg31 == (unsigned long) ret_from_fork)
496 return t->reg31;
497 if (schedule_mfi.pc_offset < 0)
498 return 0;
499 return ((unsigned long *)t->reg29)[schedule_mfi.pc_offset];
500}
501
502
503#ifdef CONFIG_KALLSYMS
504/* generic stack unwinding function */
505unsigned long notrace unwind_stack_by_address(unsigned long stack_page,
506 unsigned long *sp,
507 unsigned long pc,
508 unsigned long *ra)
509{
510 unsigned long low, high, irq_stack_high;
511 struct mips_frame_info info;
512 unsigned long size, ofs;
513 struct pt_regs *regs;
514 int leaf;
515
516 if (!stack_page)
517 return 0;
518
519 /*
520 * IRQ stacks start at IRQ_STACK_START
521 * task stacks at THREAD_SIZE - 32
522 */
523 low = stack_page;
524 if (!preemptible() && on_irq_stack(raw_smp_processor_id(), *sp)) {
525 high = stack_page + IRQ_STACK_START;
526 irq_stack_high = high;
527 } else {
528 high = stack_page + THREAD_SIZE - 32;
529 irq_stack_high = 0;
530 }
531
532 /*
533 * If we reached the top of the interrupt stack, start unwinding
534 * the interrupted task stack.
535 */
536 if (unlikely(*sp == irq_stack_high)) {
537 unsigned long task_sp = *(unsigned long *)*sp;
538
539 /*
540 * Check that the pointer saved in the IRQ stack head points to
541 * something within the stack of the current task
542 */
543 if (!object_is_on_stack((void *)task_sp))
544 return 0;
545
546 /*
547 * Follow pointer to tasks kernel stack frame where interrupted
548 * state was saved.
549 */
550 regs = (struct pt_regs *)task_sp;
551 pc = regs->cp0_epc;
552 if (!user_mode(regs) && __kernel_text_address(pc)) {
553 *sp = regs->regs[29];
554 *ra = regs->regs[31];
555 return pc;
556 }
557 return 0;
558 }
559 if (!kallsyms_lookup_size_offset(pc, &size, &ofs))
560 return 0;
561 /*
562 * Return ra if an exception occurred at the first instruction
563 */
564 if (unlikely(ofs == 0)) {
565 pc = *ra;
566 *ra = 0;
567 return pc;
568 }
569
570 info.func = (void *)(pc - ofs);
571 info.func_size = ofs; /* analyze from start to ofs */
572 leaf = get_frame_info(&info);
573 if (leaf < 0)
574 return 0;
575
576 if (*sp < low || *sp + info.frame_size > high)
577 return 0;
578
579 if (leaf)
580 /*
581 * For some extreme cases, get_frame_info() can
582 * consider wrongly a nested function as a leaf
583 * one. In that cases avoid to return always the
584 * same value.
585 */
586 pc = pc != *ra ? *ra : 0;
587 else
588 pc = ((unsigned long *)(*sp))[info.pc_offset];
589
590 *sp += info.frame_size;
591 *ra = 0;
592 return __kernel_text_address(pc) ? pc : 0;
593}
594EXPORT_SYMBOL(unwind_stack_by_address);
595
596/* used by show_backtrace() */
597unsigned long unwind_stack(struct task_struct *task, unsigned long *sp,
598 unsigned long pc, unsigned long *ra)
599{
600 unsigned long stack_page = 0;
601 int cpu;
602
603 for_each_possible_cpu(cpu) {
604 if (on_irq_stack(cpu, *sp)) {
605 stack_page = (unsigned long)irq_stack[cpu];
606 break;
607 }
608 }
609
610 if (!stack_page)
611 stack_page = (unsigned long)task_stack_page(task);
612
613 return unwind_stack_by_address(stack_page, sp, pc, ra);
614}
615#endif
616
617/*
618 * get_wchan - a maintenance nightmare^W^Wpain in the ass ...
619 */
620unsigned long get_wchan(struct task_struct *task)
621{
622 unsigned long pc = 0;
623#ifdef CONFIG_KALLSYMS
624 unsigned long sp;
625 unsigned long ra = 0;
626#endif
627
628 if (!task || task == current || task->state == TASK_RUNNING)
629 goto out;
630 if (!task_stack_page(task))
631 goto out;
632
633 pc = thread_saved_pc(task);
634
635#ifdef CONFIG_KALLSYMS
636 sp = task->thread.reg29 + schedule_mfi.frame_size;
637
638 while (in_sched_functions(pc))
639 pc = unwind_stack(task, &sp, pc, &ra);
640#endif
641
642out:
643 return pc;
644}
645
646/*
647 * Don't forget that the stack pointer must be aligned on a 8 bytes
648 * boundary for 32-bits ABI and 16 bytes for 64-bits ABI.
649 */
650unsigned long arch_align_stack(unsigned long sp)
651{
652 if (!(current->personality & ADDR_NO_RANDOMIZE) && randomize_va_space)
653 sp -= get_random_int() & ~PAGE_MASK;
654
655 return sp & ALMASK;
656}
657
658static void arch_dump_stack(void *info)
659{
660 struct pt_regs *regs;
661
662 regs = get_irq_regs();
663
664 if (regs)
665 show_regs(regs);
666
667 dump_stack();
668}
669
670void arch_trigger_cpumask_backtrace(const cpumask_t *mask, bool exclude_self)
671{
672 long this_cpu = get_cpu();
673
674 if (cpumask_test_cpu(this_cpu, mask) && !exclude_self)
675 dump_stack();
676
677 smp_call_function_many(mask, arch_dump_stack, NULL, 1);
678
679 put_cpu();
680}
681
682int mips_get_process_fp_mode(struct task_struct *task)
683{
684 int value = 0;
685
686 if (!test_tsk_thread_flag(task, TIF_32BIT_FPREGS))
687 value |= PR_FP_MODE_FR;
688 if (test_tsk_thread_flag(task, TIF_HYBRID_FPREGS))
689 value |= PR_FP_MODE_FRE;
690
691 return value;
692}
693
694static void prepare_for_fp_mode_switch(void *info)
695{
696 struct mm_struct *mm = info;
697
698 if (current->mm == mm)
699 lose_fpu(1);
700}
701
702int mips_set_process_fp_mode(struct task_struct *task, unsigned int value)
703{
704 const unsigned int known_bits = PR_FP_MODE_FR | PR_FP_MODE_FRE;
705 struct task_struct *t;
706 int max_users;
707
708 /* If nothing to change, return right away, successfully. */
709 if (value == mips_get_process_fp_mode(task))
710 return 0;
711
712 /* Only accept a mode change if 64-bit FP enabled for o32. */
713 if (!IS_ENABLED(CONFIG_MIPS_O32_FP64_SUPPORT))
714 return -EOPNOTSUPP;
715
716 /* And only for o32 tasks. */
717 if (IS_ENABLED(CONFIG_64BIT) && !test_thread_flag(TIF_32BIT_REGS))
718 return -EOPNOTSUPP;
719
720 /* Check the value is valid */
721 if (value & ~known_bits)
722 return -EOPNOTSUPP;
723
724 /* Setting FRE without FR is not supported. */
725 if ((value & (PR_FP_MODE_FR | PR_FP_MODE_FRE)) == PR_FP_MODE_FRE)
726 return -EOPNOTSUPP;
727
728 /* Avoid inadvertently triggering emulation */
729 if ((value & PR_FP_MODE_FR) && raw_cpu_has_fpu &&
730 !(raw_current_cpu_data.fpu_id & MIPS_FPIR_F64))
731 return -EOPNOTSUPP;
732 if ((value & PR_FP_MODE_FRE) && raw_cpu_has_fpu && !cpu_has_fre)
733 return -EOPNOTSUPP;
734
735 /* FR = 0 not supported in MIPS R6 */
736 if (!(value & PR_FP_MODE_FR) && raw_cpu_has_fpu && cpu_has_mips_r6)
737 return -EOPNOTSUPP;
738
739 /* Proceed with the mode switch */
740 preempt_disable();
741
742 /* Save FP & vector context, then disable FPU & MSA */
743 if (task->signal == current->signal)
744 lose_fpu(1);
745
746 /* Prevent any threads from obtaining live FP context */
747 atomic_set(&task->mm->context.fp_mode_switching, 1);
748 smp_mb__after_atomic();
749
750 /*
751 * If there are multiple online CPUs then force any which are running
752 * threads in this process to lose their FPU context, which they can't
753 * regain until fp_mode_switching is cleared later.
754 */
755 if (num_online_cpus() > 1) {
756 /* No need to send an IPI for the local CPU */
757 max_users = (task->mm == current->mm) ? 1 : 0;
758
759 if (atomic_read(¤t->mm->mm_users) > max_users)
760 smp_call_function(prepare_for_fp_mode_switch,
761 (void *)current->mm, 1);
762 }
763
764 /*
765 * There are now no threads of the process with live FP context, so it
766 * is safe to proceed with the FP mode switch.
767 */
768 for_each_thread(task, t) {
769 /* Update desired FP register width */
770 if (value & PR_FP_MODE_FR) {
771 clear_tsk_thread_flag(t, TIF_32BIT_FPREGS);
772 } else {
773 set_tsk_thread_flag(t, TIF_32BIT_FPREGS);
774 clear_tsk_thread_flag(t, TIF_MSA_CTX_LIVE);
775 }
776
777 /* Update desired FP single layout */
778 if (value & PR_FP_MODE_FRE)
779 set_tsk_thread_flag(t, TIF_HYBRID_FPREGS);
780 else
781 clear_tsk_thread_flag(t, TIF_HYBRID_FPREGS);
782 }
783
784 /* Allow threads to use FP again */
785 atomic_set(&task->mm->context.fp_mode_switching, 0);
786 preempt_enable();
787
788 wake_up_var(&task->mm->context.fp_mode_switching);
789
790 return 0;
791}
792
793#if defined(CONFIG_32BIT) || defined(CONFIG_MIPS32_O32)
794void mips_dump_regs32(u32 *uregs, const struct pt_regs *regs)
795{
796 unsigned int i;
797
798 for (i = MIPS32_EF_R1; i <= MIPS32_EF_R31; i++) {
799 /* k0/k1 are copied as zero. */
800 if (i == MIPS32_EF_R26 || i == MIPS32_EF_R27)
801 uregs[i] = 0;
802 else
803 uregs[i] = regs->regs[i - MIPS32_EF_R0];
804 }
805
806 uregs[MIPS32_EF_LO] = regs->lo;
807 uregs[MIPS32_EF_HI] = regs->hi;
808 uregs[MIPS32_EF_CP0_EPC] = regs->cp0_epc;
809 uregs[MIPS32_EF_CP0_BADVADDR] = regs->cp0_badvaddr;
810 uregs[MIPS32_EF_CP0_STATUS] = regs->cp0_status;
811 uregs[MIPS32_EF_CP0_CAUSE] = regs->cp0_cause;
812}
813#endif /* CONFIG_32BIT || CONFIG_MIPS32_O32 */
814
815#ifdef CONFIG_64BIT
816void mips_dump_regs64(u64 *uregs, const struct pt_regs *regs)
817{
818 unsigned int i;
819
820 for (i = MIPS64_EF_R1; i <= MIPS64_EF_R31; i++) {
821 /* k0/k1 are copied as zero. */
822 if (i == MIPS64_EF_R26 || i == MIPS64_EF_R27)
823 uregs[i] = 0;
824 else
825 uregs[i] = regs->regs[i - MIPS64_EF_R0];
826 }
827
828 uregs[MIPS64_EF_LO] = regs->lo;
829 uregs[MIPS64_EF_HI] = regs->hi;
830 uregs[MIPS64_EF_CP0_EPC] = regs->cp0_epc;
831 uregs[MIPS64_EF_CP0_BADVADDR] = regs->cp0_badvaddr;
832 uregs[MIPS64_EF_CP0_STATUS] = regs->cp0_status;
833 uregs[MIPS64_EF_CP0_CAUSE] = regs->cp0_cause;
834}
835#endif /* CONFIG_64BIT */
1/*
2 * This file is subject to the terms and conditions of the GNU General Public
3 * License. See the file "COPYING" in the main directory of this archive
4 * for more details.
5 *
6 * Copyright (C) 1994 - 1999, 2000 by Ralf Baechle and others.
7 * Copyright (C) 2005, 2006 by Ralf Baechle (ralf@linux-mips.org)
8 * Copyright (C) 1999, 2000 Silicon Graphics, Inc.
9 * Copyright (C) 2004 Thiemo Seufer
10 * Copyright (C) 2013 Imagination Technologies Ltd.
11 */
12#include <linux/errno.h>
13#include <linux/sched.h>
14#include <linux/tick.h>
15#include <linux/kernel.h>
16#include <linux/mm.h>
17#include <linux/stddef.h>
18#include <linux/unistd.h>
19#include <linux/export.h>
20#include <linux/ptrace.h>
21#include <linux/mman.h>
22#include <linux/personality.h>
23#include <linux/sys.h>
24#include <linux/init.h>
25#include <linux/completion.h>
26#include <linux/kallsyms.h>
27#include <linux/random.h>
28#include <linux/prctl.h>
29
30#include <asm/asm.h>
31#include <asm/bootinfo.h>
32#include <asm/cpu.h>
33#include <asm/dsp.h>
34#include <asm/fpu.h>
35#include <asm/msa.h>
36#include <asm/pgtable.h>
37#include <asm/mipsregs.h>
38#include <asm/processor.h>
39#include <asm/reg.h>
40#include <asm/uaccess.h>
41#include <asm/io.h>
42#include <asm/elf.h>
43#include <asm/isadep.h>
44#include <asm/inst.h>
45#include <asm/stacktrace.h>
46#include <asm/irq_regs.h>
47
48#ifdef CONFIG_HOTPLUG_CPU
49void arch_cpu_idle_dead(void)
50{
51 /* What the heck is this check doing ? */
52 if (!cpumask_test_cpu(smp_processor_id(), &cpu_callin_map))
53 play_dead();
54}
55#endif
56
57asmlinkage void ret_from_fork(void);
58asmlinkage void ret_from_kernel_thread(void);
59
60void start_thread(struct pt_regs * regs, unsigned long pc, unsigned long sp)
61{
62 unsigned long status;
63
64 /* New thread loses kernel privileges. */
65 status = regs->cp0_status & ~(ST0_CU0|ST0_CU1|ST0_FR|KU_MASK);
66 status |= KU_USER;
67 regs->cp0_status = status;
68 lose_fpu(0);
69 clear_thread_flag(TIF_MSA_CTX_LIVE);
70 clear_used_math();
71 init_dsp();
72 regs->cp0_epc = pc;
73 regs->regs[29] = sp;
74}
75
76void exit_thread(void)
77{
78}
79
80void flush_thread(void)
81{
82}
83
84int arch_dup_task_struct(struct task_struct *dst, struct task_struct *src)
85{
86 /*
87 * Save any process state which is live in hardware registers to the
88 * parent context prior to duplication. This prevents the new child
89 * state becoming stale if the parent is preempted before copy_thread()
90 * gets a chance to save the parent's live hardware registers to the
91 * child context.
92 */
93 preempt_disable();
94
95 if (is_msa_enabled())
96 save_msa(current);
97 else if (is_fpu_owner())
98 _save_fp(current);
99
100 save_dsp(current);
101
102 preempt_enable();
103
104 *dst = *src;
105 return 0;
106}
107
108/*
109 * Copy architecture-specific thread state
110 */
111int copy_thread(unsigned long clone_flags, unsigned long usp,
112 unsigned long kthread_arg, struct task_struct *p)
113{
114 struct thread_info *ti = task_thread_info(p);
115 struct pt_regs *childregs, *regs = current_pt_regs();
116 unsigned long childksp;
117 p->set_child_tid = p->clear_child_tid = NULL;
118
119 childksp = (unsigned long)task_stack_page(p) + THREAD_SIZE - 32;
120
121 /* set up new TSS. */
122 childregs = (struct pt_regs *) childksp - 1;
123 /* Put the stack after the struct pt_regs. */
124 childksp = (unsigned long) childregs;
125 p->thread.cp0_status = read_c0_status() & ~(ST0_CU2|ST0_CU1);
126 if (unlikely(p->flags & PF_KTHREAD)) {
127 /* kernel thread */
128 unsigned long status = p->thread.cp0_status;
129 memset(childregs, 0, sizeof(struct pt_regs));
130 ti->addr_limit = KERNEL_DS;
131 p->thread.reg16 = usp; /* fn */
132 p->thread.reg17 = kthread_arg;
133 p->thread.reg29 = childksp;
134 p->thread.reg31 = (unsigned long) ret_from_kernel_thread;
135#if defined(CONFIG_CPU_R3000) || defined(CONFIG_CPU_TX39XX)
136 status = (status & ~(ST0_KUP | ST0_IEP | ST0_IEC)) |
137 ((status & (ST0_KUC | ST0_IEC)) << 2);
138#else
139 status |= ST0_EXL;
140#endif
141 childregs->cp0_status = status;
142 return 0;
143 }
144
145 /* user thread */
146 *childregs = *regs;
147 childregs->regs[7] = 0; /* Clear error flag */
148 childregs->regs[2] = 0; /* Child gets zero as return value */
149 if (usp)
150 childregs->regs[29] = usp;
151 ti->addr_limit = USER_DS;
152
153 p->thread.reg29 = (unsigned long) childregs;
154 p->thread.reg31 = (unsigned long) ret_from_fork;
155
156 /*
157 * New tasks lose permission to use the fpu. This accelerates context
158 * switching for most programs since they don't use the fpu.
159 */
160 childregs->cp0_status &= ~(ST0_CU2|ST0_CU1);
161
162 clear_tsk_thread_flag(p, TIF_USEDFPU);
163 clear_tsk_thread_flag(p, TIF_USEDMSA);
164 clear_tsk_thread_flag(p, TIF_MSA_CTX_LIVE);
165
166#ifdef CONFIG_MIPS_MT_FPAFF
167 clear_tsk_thread_flag(p, TIF_FPUBOUND);
168#endif /* CONFIG_MIPS_MT_FPAFF */
169
170 if (clone_flags & CLONE_SETTLS)
171 ti->tp_value = regs->regs[7];
172
173 return 0;
174}
175
176#ifdef CONFIG_CC_STACKPROTECTOR
177#include <linux/stackprotector.h>
178unsigned long __stack_chk_guard __read_mostly;
179EXPORT_SYMBOL(__stack_chk_guard);
180#endif
181
182struct mips_frame_info {
183 void *func;
184 unsigned long func_size;
185 int frame_size;
186 int pc_offset;
187};
188
189#define J_TARGET(pc,target) \
190 (((unsigned long)(pc) & 0xf0000000) | ((target) << 2))
191
192static inline int is_ra_save_ins(union mips_instruction *ip)
193{
194#ifdef CONFIG_CPU_MICROMIPS
195 union mips_instruction mmi;
196
197 /*
198 * swsp ra,offset
199 * swm16 reglist,offset(sp)
200 * swm32 reglist,offset(sp)
201 * sw32 ra,offset(sp)
202 * jradiussp - NOT SUPPORTED
203 *
204 * microMIPS is way more fun...
205 */
206 if (mm_insn_16bit(ip->halfword[0])) {
207 mmi.word = (ip->halfword[0] << 16);
208 return (mmi.mm16_r5_format.opcode == mm_swsp16_op &&
209 mmi.mm16_r5_format.rt == 31) ||
210 (mmi.mm16_m_format.opcode == mm_pool16c_op &&
211 mmi.mm16_m_format.func == mm_swm16_op);
212 }
213 else {
214 mmi.halfword[0] = ip->halfword[1];
215 mmi.halfword[1] = ip->halfword[0];
216 return (mmi.mm_m_format.opcode == mm_pool32b_op &&
217 mmi.mm_m_format.rd > 9 &&
218 mmi.mm_m_format.base == 29 &&
219 mmi.mm_m_format.func == mm_swm32_func) ||
220 (mmi.i_format.opcode == mm_sw32_op &&
221 mmi.i_format.rs == 29 &&
222 mmi.i_format.rt == 31);
223 }
224#else
225 /* sw / sd $ra, offset($sp) */
226 return (ip->i_format.opcode == sw_op || ip->i_format.opcode == sd_op) &&
227 ip->i_format.rs == 29 &&
228 ip->i_format.rt == 31;
229#endif
230}
231
232static inline int is_jump_ins(union mips_instruction *ip)
233{
234#ifdef CONFIG_CPU_MICROMIPS
235 /*
236 * jr16,jrc,jalr16,jalr16
237 * jal
238 * jalr/jr,jalr.hb/jr.hb,jalrs,jalrs.hb
239 * jraddiusp - NOT SUPPORTED
240 *
241 * microMIPS is kind of more fun...
242 */
243 union mips_instruction mmi;
244
245 mmi.word = (ip->halfword[0] << 16);
246
247 if ((mmi.mm16_r5_format.opcode == mm_pool16c_op &&
248 (mmi.mm16_r5_format.rt & mm_jr16_op) == mm_jr16_op) ||
249 ip->j_format.opcode == mm_jal32_op)
250 return 1;
251 if (ip->r_format.opcode != mm_pool32a_op ||
252 ip->r_format.func != mm_pool32axf_op)
253 return 0;
254 return ((ip->u_format.uimmediate >> 6) & mm_jalr_op) == mm_jalr_op;
255#else
256 if (ip->j_format.opcode == j_op)
257 return 1;
258 if (ip->j_format.opcode == jal_op)
259 return 1;
260 if (ip->r_format.opcode != spec_op)
261 return 0;
262 return ip->r_format.func == jalr_op || ip->r_format.func == jr_op;
263#endif
264}
265
266static inline int is_sp_move_ins(union mips_instruction *ip)
267{
268#ifdef CONFIG_CPU_MICROMIPS
269 /*
270 * addiusp -imm
271 * addius5 sp,-imm
272 * addiu32 sp,sp,-imm
273 * jradiussp - NOT SUPPORTED
274 *
275 * microMIPS is not more fun...
276 */
277 if (mm_insn_16bit(ip->halfword[0])) {
278 union mips_instruction mmi;
279
280 mmi.word = (ip->halfword[0] << 16);
281 return (mmi.mm16_r3_format.opcode == mm_pool16d_op &&
282 mmi.mm16_r3_format.simmediate && mm_addiusp_func) ||
283 (mmi.mm16_r5_format.opcode == mm_pool16d_op &&
284 mmi.mm16_r5_format.rt == 29);
285 }
286 return ip->mm_i_format.opcode == mm_addiu32_op &&
287 ip->mm_i_format.rt == 29 && ip->mm_i_format.rs == 29;
288#else
289 /* addiu/daddiu sp,sp,-imm */
290 if (ip->i_format.rs != 29 || ip->i_format.rt != 29)
291 return 0;
292 if (ip->i_format.opcode == addiu_op || ip->i_format.opcode == daddiu_op)
293 return 1;
294#endif
295 return 0;
296}
297
298static int get_frame_info(struct mips_frame_info *info)
299{
300#ifdef CONFIG_CPU_MICROMIPS
301 union mips_instruction *ip = (void *) (((char *) info->func) - 1);
302#else
303 union mips_instruction *ip = info->func;
304#endif
305 unsigned max_insns = info->func_size / sizeof(union mips_instruction);
306 unsigned i;
307
308 info->pc_offset = -1;
309 info->frame_size = 0;
310
311 if (!ip)
312 goto err;
313
314 if (max_insns == 0)
315 max_insns = 128U; /* unknown function size */
316 max_insns = min(128U, max_insns);
317
318 for (i = 0; i < max_insns; i++, ip++) {
319
320 if (is_jump_ins(ip))
321 break;
322 if (!info->frame_size) {
323 if (is_sp_move_ins(ip))
324 {
325#ifdef CONFIG_CPU_MICROMIPS
326 if (mm_insn_16bit(ip->halfword[0]))
327 {
328 unsigned short tmp;
329
330 if (ip->halfword[0] & mm_addiusp_func)
331 {
332 tmp = (((ip->halfword[0] >> 1) & 0x1ff) << 2);
333 info->frame_size = -(signed short)(tmp | ((tmp & 0x100) ? 0xfe00 : 0));
334 } else {
335 tmp = (ip->halfword[0] >> 1);
336 info->frame_size = -(signed short)(tmp & 0xf);
337 }
338 ip = (void *) &ip->halfword[1];
339 ip--;
340 } else
341#endif
342 info->frame_size = - ip->i_format.simmediate;
343 }
344 continue;
345 }
346 if (info->pc_offset == -1 && is_ra_save_ins(ip)) {
347 info->pc_offset =
348 ip->i_format.simmediate / sizeof(long);
349 break;
350 }
351 }
352 if (info->frame_size && info->pc_offset >= 0) /* nested */
353 return 0;
354 if (info->pc_offset < 0) /* leaf */
355 return 1;
356 /* prologue seems boggus... */
357err:
358 return -1;
359}
360
361static struct mips_frame_info schedule_mfi __read_mostly;
362
363#ifdef CONFIG_KALLSYMS
364static unsigned long get___schedule_addr(void)
365{
366 return kallsyms_lookup_name("__schedule");
367}
368#else
369static unsigned long get___schedule_addr(void)
370{
371 union mips_instruction *ip = (void *)schedule;
372 int max_insns = 8;
373 int i;
374
375 for (i = 0; i < max_insns; i++, ip++) {
376 if (ip->j_format.opcode == j_op)
377 return J_TARGET(ip, ip->j_format.target);
378 }
379 return 0;
380}
381#endif
382
383static int __init frame_info_init(void)
384{
385 unsigned long size = 0;
386#ifdef CONFIG_KALLSYMS
387 unsigned long ofs;
388#endif
389 unsigned long addr;
390
391 addr = get___schedule_addr();
392 if (!addr)
393 addr = (unsigned long)schedule;
394
395#ifdef CONFIG_KALLSYMS
396 kallsyms_lookup_size_offset(addr, &size, &ofs);
397#endif
398 schedule_mfi.func = (void *)addr;
399 schedule_mfi.func_size = size;
400
401 get_frame_info(&schedule_mfi);
402
403 /*
404 * Without schedule() frame info, result given by
405 * thread_saved_pc() and get_wchan() are not reliable.
406 */
407 if (schedule_mfi.pc_offset < 0)
408 printk("Can't analyze schedule() prologue at %p\n", schedule);
409
410 return 0;
411}
412
413arch_initcall(frame_info_init);
414
415/*
416 * Return saved PC of a blocked thread.
417 */
418unsigned long thread_saved_pc(struct task_struct *tsk)
419{
420 struct thread_struct *t = &tsk->thread;
421
422 /* New born processes are a special case */
423 if (t->reg31 == (unsigned long) ret_from_fork)
424 return t->reg31;
425 if (schedule_mfi.pc_offset < 0)
426 return 0;
427 return ((unsigned long *)t->reg29)[schedule_mfi.pc_offset];
428}
429
430
431#ifdef CONFIG_KALLSYMS
432/* generic stack unwinding function */
433unsigned long notrace unwind_stack_by_address(unsigned long stack_page,
434 unsigned long *sp,
435 unsigned long pc,
436 unsigned long *ra)
437{
438 struct mips_frame_info info;
439 unsigned long size, ofs;
440 int leaf;
441 extern void ret_from_irq(void);
442 extern void ret_from_exception(void);
443
444 if (!stack_page)
445 return 0;
446
447 /*
448 * If we reached the bottom of interrupt context,
449 * return saved pc in pt_regs.
450 */
451 if (pc == (unsigned long)ret_from_irq ||
452 pc == (unsigned long)ret_from_exception) {
453 struct pt_regs *regs;
454 if (*sp >= stack_page &&
455 *sp + sizeof(*regs) <= stack_page + THREAD_SIZE - 32) {
456 regs = (struct pt_regs *)*sp;
457 pc = regs->cp0_epc;
458 if (__kernel_text_address(pc)) {
459 *sp = regs->regs[29];
460 *ra = regs->regs[31];
461 return pc;
462 }
463 }
464 return 0;
465 }
466 if (!kallsyms_lookup_size_offset(pc, &size, &ofs))
467 return 0;
468 /*
469 * Return ra if an exception occurred at the first instruction
470 */
471 if (unlikely(ofs == 0)) {
472 pc = *ra;
473 *ra = 0;
474 return pc;
475 }
476
477 info.func = (void *)(pc - ofs);
478 info.func_size = ofs; /* analyze from start to ofs */
479 leaf = get_frame_info(&info);
480 if (leaf < 0)
481 return 0;
482
483 if (*sp < stack_page ||
484 *sp + info.frame_size > stack_page + THREAD_SIZE - 32)
485 return 0;
486
487 if (leaf)
488 /*
489 * For some extreme cases, get_frame_info() can
490 * consider wrongly a nested function as a leaf
491 * one. In that cases avoid to return always the
492 * same value.
493 */
494 pc = pc != *ra ? *ra : 0;
495 else
496 pc = ((unsigned long *)(*sp))[info.pc_offset];
497
498 *sp += info.frame_size;
499 *ra = 0;
500 return __kernel_text_address(pc) ? pc : 0;
501}
502EXPORT_SYMBOL(unwind_stack_by_address);
503
504/* used by show_backtrace() */
505unsigned long unwind_stack(struct task_struct *task, unsigned long *sp,
506 unsigned long pc, unsigned long *ra)
507{
508 unsigned long stack_page = (unsigned long)task_stack_page(task);
509 return unwind_stack_by_address(stack_page, sp, pc, ra);
510}
511#endif
512
513/*
514 * get_wchan - a maintenance nightmare^W^Wpain in the ass ...
515 */
516unsigned long get_wchan(struct task_struct *task)
517{
518 unsigned long pc = 0;
519#ifdef CONFIG_KALLSYMS
520 unsigned long sp;
521 unsigned long ra = 0;
522#endif
523
524 if (!task || task == current || task->state == TASK_RUNNING)
525 goto out;
526 if (!task_stack_page(task))
527 goto out;
528
529 pc = thread_saved_pc(task);
530
531#ifdef CONFIG_KALLSYMS
532 sp = task->thread.reg29 + schedule_mfi.frame_size;
533
534 while (in_sched_functions(pc))
535 pc = unwind_stack(task, &sp, pc, &ra);
536#endif
537
538out:
539 return pc;
540}
541
542/*
543 * Don't forget that the stack pointer must be aligned on a 8 bytes
544 * boundary for 32-bits ABI and 16 bytes for 64-bits ABI.
545 */
546unsigned long arch_align_stack(unsigned long sp)
547{
548 if (!(current->personality & ADDR_NO_RANDOMIZE) && randomize_va_space)
549 sp -= get_random_int() & ~PAGE_MASK;
550
551 return sp & ALMASK;
552}
553
554static void arch_dump_stack(void *info)
555{
556 struct pt_regs *regs;
557
558 regs = get_irq_regs();
559
560 if (regs)
561 show_regs(regs);
562
563 dump_stack();
564}
565
566void arch_trigger_all_cpu_backtrace(bool include_self)
567{
568 smp_call_function(arch_dump_stack, NULL, 1);
569}
570
571int mips_get_process_fp_mode(struct task_struct *task)
572{
573 int value = 0;
574
575 if (!test_tsk_thread_flag(task, TIF_32BIT_FPREGS))
576 value |= PR_FP_MODE_FR;
577 if (test_tsk_thread_flag(task, TIF_HYBRID_FPREGS))
578 value |= PR_FP_MODE_FRE;
579
580 return value;
581}
582
583int mips_set_process_fp_mode(struct task_struct *task, unsigned int value)
584{
585 const unsigned int known_bits = PR_FP_MODE_FR | PR_FP_MODE_FRE;
586 unsigned long switch_count;
587 struct task_struct *t;
588
589 /* Check the value is valid */
590 if (value & ~known_bits)
591 return -EOPNOTSUPP;
592
593 /* Avoid inadvertently triggering emulation */
594 if ((value & PR_FP_MODE_FR) && cpu_has_fpu &&
595 !(current_cpu_data.fpu_id & MIPS_FPIR_F64))
596 return -EOPNOTSUPP;
597 if ((value & PR_FP_MODE_FRE) && cpu_has_fpu && !cpu_has_fre)
598 return -EOPNOTSUPP;
599
600 /* FR = 0 not supported in MIPS R6 */
601 if (!(value & PR_FP_MODE_FR) && cpu_has_fpu && cpu_has_mips_r6)
602 return -EOPNOTSUPP;
603
604 /* Save FP & vector context, then disable FPU & MSA */
605 if (task->signal == current->signal)
606 lose_fpu(1);
607
608 /* Prevent any threads from obtaining live FP context */
609 atomic_set(&task->mm->context.fp_mode_switching, 1);
610 smp_mb__after_atomic();
611
612 /*
613 * If there are multiple online CPUs then wait until all threads whose
614 * FP mode is about to change have been context switched. This approach
615 * allows us to only worry about whether an FP mode switch is in
616 * progress when FP is first used in a tasks time slice. Pretty much all
617 * of the mode switch overhead can thus be confined to cases where mode
618 * switches are actually occurring. That is, to here. However for the
619 * thread performing the mode switch it may take a while...
620 */
621 if (num_online_cpus() > 1) {
622 spin_lock_irq(&task->sighand->siglock);
623
624 for_each_thread(task, t) {
625 if (t == current)
626 continue;
627
628 switch_count = t->nvcsw + t->nivcsw;
629
630 do {
631 spin_unlock_irq(&task->sighand->siglock);
632 cond_resched();
633 spin_lock_irq(&task->sighand->siglock);
634 } while ((t->nvcsw + t->nivcsw) == switch_count);
635 }
636
637 spin_unlock_irq(&task->sighand->siglock);
638 }
639
640 /*
641 * There are now no threads of the process with live FP context, so it
642 * is safe to proceed with the FP mode switch.
643 */
644 for_each_thread(task, t) {
645 /* Update desired FP register width */
646 if (value & PR_FP_MODE_FR) {
647 clear_tsk_thread_flag(t, TIF_32BIT_FPREGS);
648 } else {
649 set_tsk_thread_flag(t, TIF_32BIT_FPREGS);
650 clear_tsk_thread_flag(t, TIF_MSA_CTX_LIVE);
651 }
652
653 /* Update desired FP single layout */
654 if (value & PR_FP_MODE_FRE)
655 set_tsk_thread_flag(t, TIF_HYBRID_FPREGS);
656 else
657 clear_tsk_thread_flag(t, TIF_HYBRID_FPREGS);
658 }
659
660 /* Allow threads to use FP again */
661 atomic_set(&task->mm->context.fp_mode_switching, 0);
662
663 return 0;
664}