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Paul Mackerras14cf11a2005-09-26 16:04:21 +10001/*
Paul Mackerras14cf11a2005-09-26 16:04:21 +10002 * Derived from "arch/i386/kernel/process.c"
3 * Copyright (C) 1995 Linus Torvalds
4 *
5 * Updated and modified by Cort Dougan (cort@cs.nmt.edu) and
6 * Paul Mackerras (paulus@cs.anu.edu.au)
7 *
8 * PowerPC version
9 * Copyright (C) 1995-1996 Gary Thomas (gdt@linuxppc.org)
10 *
11 * This program is free software; you can redistribute it and/or
12 * modify it under the terms of the GNU General Public License
13 * as published by the Free Software Foundation; either version
14 * 2 of the License, or (at your option) any later version.
15 */
16
Paul Mackerras14cf11a2005-09-26 16:04:21 +100017#include <linux/errno.h>
18#include <linux/sched.h>
19#include <linux/kernel.h>
20#include <linux/mm.h>
21#include <linux/smp.h>
Paul Mackerras14cf11a2005-09-26 16:04:21 +100022#include <linux/stddef.h>
23#include <linux/unistd.h>
24#include <linux/ptrace.h>
25#include <linux/slab.h>
26#include <linux/user.h>
27#include <linux/elf.h>
28#include <linux/init.h>
29#include <linux/prctl.h>
30#include <linux/init_task.h>
Paul Gortmaker4b16f8e2011-07-22 18:24:23 -040031#include <linux/export.h>
Paul Mackerras14cf11a2005-09-26 16:04:21 +100032#include <linux/kallsyms.h>
33#include <linux/mqueue.h>
34#include <linux/hardirq.h>
Paul Mackerras06d67d52005-10-10 22:29:05 +100035#include <linux/utsname.h>
Steven Rostedt6794c782009-02-09 21:10:27 -080036#include <linux/ftrace.h>
Martin Schwidefsky79741dd2008-12-31 15:11:38 +010037#include <linux/kernel_stat.h>
Anton Blanchardd8390882009-02-22 01:50:03 +000038#include <linux/personality.h>
39#include <linux/random.h>
K.Prasad5aae8a52010-06-15 11:35:19 +053040#include <linux/hw_breakpoint.h>
Paul Mackerras14cf11a2005-09-26 16:04:21 +100041
42#include <asm/pgtable.h>
43#include <asm/uaccess.h>
Paul Mackerras14cf11a2005-09-26 16:04:21 +100044#include <asm/io.h>
45#include <asm/processor.h>
46#include <asm/mmu.h>
47#include <asm/prom.h>
Michael Ellerman76032de2005-11-07 13:12:03 +110048#include <asm/machdep.h>
Paul Mackerrasc6622f62006-02-24 10:06:59 +110049#include <asm/time.h>
David Howellsae3a1972012-03-28 18:30:02 +010050#include <asm/runlatch.h>
Arnd Bergmanna7f31842006-03-23 00:00:08 +010051#include <asm/syscalls.h>
David Howellsae3a1972012-03-28 18:30:02 +010052#include <asm/switch_to.h>
Michael Neulingfb096922013-02-13 16:21:37 +000053#include <asm/tm.h>
David Howellsae3a1972012-03-28 18:30:02 +010054#include <asm/debug.h>
Paul Mackerras06d67d52005-10-10 22:29:05 +100055#ifdef CONFIG_PPC64
56#include <asm/firmware.h>
Paul Mackerras06d67d52005-10-10 22:29:05 +100057#endif
Luis Machadod6a61bf2008-07-24 02:10:41 +100058#include <linux/kprobes.h>
59#include <linux/kdebug.h>
Paul Mackerras14cf11a2005-09-26 16:04:21 +100060
Michael Neuling8b3c34c2013-02-13 16:21:32 +000061/* Transactional Memory debug */
62#ifdef TM_DEBUG_SW
63#define TM_DEBUG(x...) printk(KERN_INFO x)
64#else
65#define TM_DEBUG(x...) do { } while(0)
66#endif
67
Paul Mackerras14cf11a2005-09-26 16:04:21 +100068extern unsigned long _get_SP(void);
69
70#ifndef CONFIG_SMP
71struct task_struct *last_task_used_math = NULL;
72struct task_struct *last_task_used_altivec = NULL;
Michael Neulingce48b212008-06-25 14:07:18 +100073struct task_struct *last_task_used_vsx = NULL;
Paul Mackerras14cf11a2005-09-26 16:04:21 +100074struct task_struct *last_task_used_spe = NULL;
75#endif
76
Paul Mackerras14cf11a2005-09-26 16:04:21 +100077/*
78 * Make sure the floating-point register state in the
79 * the thread_struct is up to date for task tsk.
80 */
81void flush_fp_to_thread(struct task_struct *tsk)
82{
83 if (tsk->thread.regs) {
84 /*
85 * We need to disable preemption here because if we didn't,
86 * another process could get scheduled after the regs->msr
87 * test but before we have finished saving the FP registers
88 * to the thread_struct. That process could take over the
89 * FPU, and then when we get scheduled again we would store
90 * bogus values for the remaining FP registers.
91 */
92 preempt_disable();
93 if (tsk->thread.regs->msr & MSR_FP) {
94#ifdef CONFIG_SMP
95 /*
96 * This should only ever be called for current or
97 * for a stopped child process. Since we save away
98 * the FP register state on context switch on SMP,
99 * there is something wrong if a stopped child appears
100 * to still have its FP state in the CPU registers.
101 */
102 BUG_ON(tsk != current);
103#endif
Kumar Gala0ee6c152007-08-28 21:15:53 -0500104 giveup_fpu(tsk);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000105 }
106 preempt_enable();
107 }
108}
Paul Mackerrasde56a942011-06-29 00:21:34 +0000109EXPORT_SYMBOL_GPL(flush_fp_to_thread);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000110
111void enable_kernel_fp(void)
112{
113 WARN_ON(preemptible());
114
115#ifdef CONFIG_SMP
116 if (current->thread.regs && (current->thread.regs->msr & MSR_FP))
117 giveup_fpu(current);
118 else
119 giveup_fpu(NULL); /* just enables FP for kernel */
120#else
121 giveup_fpu(last_task_used_math);
122#endif /* CONFIG_SMP */
123}
124EXPORT_SYMBOL(enable_kernel_fp);
125
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000126#ifdef CONFIG_ALTIVEC
127void enable_kernel_altivec(void)
128{
129 WARN_ON(preemptible());
130
131#ifdef CONFIG_SMP
132 if (current->thread.regs && (current->thread.regs->msr & MSR_VEC))
133 giveup_altivec(current);
134 else
Anton Blanchard35000872012-04-15 20:56:45 +0000135 giveup_altivec_notask();
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000136#else
137 giveup_altivec(last_task_used_altivec);
138#endif /* CONFIG_SMP */
139}
140EXPORT_SYMBOL(enable_kernel_altivec);
141
142/*
143 * Make sure the VMX/Altivec register state in the
144 * the thread_struct is up to date for task tsk.
145 */
146void flush_altivec_to_thread(struct task_struct *tsk)
147{
148 if (tsk->thread.regs) {
149 preempt_disable();
150 if (tsk->thread.regs->msr & MSR_VEC) {
151#ifdef CONFIG_SMP
152 BUG_ON(tsk != current);
153#endif
Kumar Gala0ee6c152007-08-28 21:15:53 -0500154 giveup_altivec(tsk);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000155 }
156 preempt_enable();
157 }
158}
Paul Mackerrasde56a942011-06-29 00:21:34 +0000159EXPORT_SYMBOL_GPL(flush_altivec_to_thread);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000160#endif /* CONFIG_ALTIVEC */
161
Michael Neulingce48b212008-06-25 14:07:18 +1000162#ifdef CONFIG_VSX
163#if 0
164/* not currently used, but some crazy RAID module might want to later */
165void enable_kernel_vsx(void)
166{
167 WARN_ON(preemptible());
168
169#ifdef CONFIG_SMP
170 if (current->thread.regs && (current->thread.regs->msr & MSR_VSX))
171 giveup_vsx(current);
172 else
173 giveup_vsx(NULL); /* just enable vsx for kernel - force */
174#else
175 giveup_vsx(last_task_used_vsx);
176#endif /* CONFIG_SMP */
177}
178EXPORT_SYMBOL(enable_kernel_vsx);
179#endif
180
Michael Neuling7c292172008-07-11 16:29:12 +1000181void giveup_vsx(struct task_struct *tsk)
182{
183 giveup_fpu(tsk);
184 giveup_altivec(tsk);
185 __giveup_vsx(tsk);
186}
187
Michael Neulingce48b212008-06-25 14:07:18 +1000188void flush_vsx_to_thread(struct task_struct *tsk)
189{
190 if (tsk->thread.regs) {
191 preempt_disable();
192 if (tsk->thread.regs->msr & MSR_VSX) {
193#ifdef CONFIG_SMP
194 BUG_ON(tsk != current);
195#endif
196 giveup_vsx(tsk);
197 }
198 preempt_enable();
199 }
200}
Paul Mackerrasde56a942011-06-29 00:21:34 +0000201EXPORT_SYMBOL_GPL(flush_vsx_to_thread);
Michael Neulingce48b212008-06-25 14:07:18 +1000202#endif /* CONFIG_VSX */
203
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000204#ifdef CONFIG_SPE
205
206void enable_kernel_spe(void)
207{
208 WARN_ON(preemptible());
209
210#ifdef CONFIG_SMP
211 if (current->thread.regs && (current->thread.regs->msr & MSR_SPE))
212 giveup_spe(current);
213 else
214 giveup_spe(NULL); /* just enable SPE for kernel - force */
215#else
216 giveup_spe(last_task_used_spe);
217#endif /* __SMP __ */
218}
219EXPORT_SYMBOL(enable_kernel_spe);
220
221void flush_spe_to_thread(struct task_struct *tsk)
222{
223 if (tsk->thread.regs) {
224 preempt_disable();
225 if (tsk->thread.regs->msr & MSR_SPE) {
226#ifdef CONFIG_SMP
227 BUG_ON(tsk != current);
228#endif
yu liu685659e2011-06-14 18:34:25 -0500229 tsk->thread.spefscr = mfspr(SPRN_SPEFSCR);
Kumar Gala0ee6c152007-08-28 21:15:53 -0500230 giveup_spe(tsk);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000231 }
232 preempt_enable();
233 }
234}
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000235#endif /* CONFIG_SPE */
236
Paul Mackerras5388fb12006-01-11 22:11:39 +1100237#ifndef CONFIG_SMP
Paul Mackerras48abec02005-11-30 13:20:54 +1100238/*
239 * If we are doing lazy switching of CPU state (FP, altivec or SPE),
240 * and the current task has some state, discard it.
241 */
Paul Mackerras5388fb12006-01-11 22:11:39 +1100242void discard_lazy_cpu_state(void)
Paul Mackerras48abec02005-11-30 13:20:54 +1100243{
Paul Mackerras48abec02005-11-30 13:20:54 +1100244 preempt_disable();
245 if (last_task_used_math == current)
246 last_task_used_math = NULL;
247#ifdef CONFIG_ALTIVEC
248 if (last_task_used_altivec == current)
249 last_task_used_altivec = NULL;
250#endif /* CONFIG_ALTIVEC */
Michael Neulingce48b212008-06-25 14:07:18 +1000251#ifdef CONFIG_VSX
252 if (last_task_used_vsx == current)
253 last_task_used_vsx = NULL;
254#endif /* CONFIG_VSX */
Paul Mackerras48abec02005-11-30 13:20:54 +1100255#ifdef CONFIG_SPE
256 if (last_task_used_spe == current)
257 last_task_used_spe = NULL;
258#endif
259 preempt_enable();
Paul Mackerras48abec02005-11-30 13:20:54 +1100260}
Paul Mackerras5388fb12006-01-11 22:11:39 +1100261#endif /* CONFIG_SMP */
Paul Mackerras48abec02005-11-30 13:20:54 +1100262
Dave Kleikamp3bffb652010-02-08 11:51:18 +0000263#ifdef CONFIG_PPC_ADV_DEBUG_REGS
264void do_send_trap(struct pt_regs *regs, unsigned long address,
265 unsigned long error_code, int signal_code, int breakpt)
266{
267 siginfo_t info;
268
Ananth N Mavinakayanahalli41ab5262012-08-23 21:27:09 +0000269 current->thread.trap_nr = signal_code;
Dave Kleikamp3bffb652010-02-08 11:51:18 +0000270 if (notify_die(DIE_DABR_MATCH, "dabr_match", regs, error_code,
271 11, SIGSEGV) == NOTIFY_STOP)
272 return;
273
274 /* Deliver the signal to userspace */
275 info.si_signo = SIGTRAP;
276 info.si_errno = breakpt; /* breakpoint or watchpoint id */
277 info.si_code = signal_code;
278 info.si_addr = (void __user *)address;
279 force_sig_info(SIGTRAP, &info, current);
280}
281#else /* !CONFIG_PPC_ADV_DEBUG_REGS */
Michael Neuling9422de32012-12-20 14:06:44 +0000282void do_break (struct pt_regs *regs, unsigned long address,
Luis Machadod6a61bf2008-07-24 02:10:41 +1000283 unsigned long error_code)
284{
285 siginfo_t info;
286
Ananth N Mavinakayanahalli41ab5262012-08-23 21:27:09 +0000287 current->thread.trap_nr = TRAP_HWBKPT;
Luis Machadod6a61bf2008-07-24 02:10:41 +1000288 if (notify_die(DIE_DABR_MATCH, "dabr_match", regs, error_code,
289 11, SIGSEGV) == NOTIFY_STOP)
290 return;
291
Michael Neuling9422de32012-12-20 14:06:44 +0000292 if (debugger_break_match(regs))
Luis Machadod6a61bf2008-07-24 02:10:41 +1000293 return;
294
Michael Neuling9422de32012-12-20 14:06:44 +0000295 /* Clear the breakpoint */
296 hw_breakpoint_disable();
Luis Machadod6a61bf2008-07-24 02:10:41 +1000297
298 /* Deliver the signal to userspace */
299 info.si_signo = SIGTRAP;
300 info.si_errno = 0;
301 info.si_code = TRAP_HWBKPT;
302 info.si_addr = (void __user *)address;
303 force_sig_info(SIGTRAP, &info, current);
304}
Dave Kleikamp3bffb652010-02-08 11:51:18 +0000305#endif /* CONFIG_PPC_ADV_DEBUG_REGS */
Luis Machadod6a61bf2008-07-24 02:10:41 +1000306
Michael Neuling9422de32012-12-20 14:06:44 +0000307static DEFINE_PER_CPU(struct arch_hw_breakpoint, current_brk);
Michael Ellermana2ceff52008-03-28 19:11:48 +1100308
Dave Kleikamp3bffb652010-02-08 11:51:18 +0000309#ifdef CONFIG_PPC_ADV_DEBUG_REGS
310/*
311 * Set the debug registers back to their default "safe" values.
312 */
313static void set_debug_reg_defaults(struct thread_struct *thread)
314{
315 thread->iac1 = thread->iac2 = 0;
316#if CONFIG_PPC_ADV_DEBUG_IACS > 2
317 thread->iac3 = thread->iac4 = 0;
318#endif
319 thread->dac1 = thread->dac2 = 0;
320#if CONFIG_PPC_ADV_DEBUG_DVCS > 0
321 thread->dvc1 = thread->dvc2 = 0;
322#endif
323 thread->dbcr0 = 0;
324#ifdef CONFIG_BOOKE
325 /*
326 * Force User/Supervisor bits to b11 (user-only MSR[PR]=1)
327 */
328 thread->dbcr1 = DBCR1_IAC1US | DBCR1_IAC2US | \
329 DBCR1_IAC3US | DBCR1_IAC4US;
330 /*
331 * Force Data Address Compare User/Supervisor bits to be User-only
332 * (0b11 MSR[PR]=1) and set all other bits in DBCR2 register to be 0.
333 */
334 thread->dbcr2 = DBCR2_DAC1US | DBCR2_DAC2US;
335#else
336 thread->dbcr1 = 0;
337#endif
338}
339
340static void prime_debug_regs(struct thread_struct *thread)
341{
342 mtspr(SPRN_IAC1, thread->iac1);
343 mtspr(SPRN_IAC2, thread->iac2);
344#if CONFIG_PPC_ADV_DEBUG_IACS > 2
345 mtspr(SPRN_IAC3, thread->iac3);
346 mtspr(SPRN_IAC4, thread->iac4);
347#endif
348 mtspr(SPRN_DAC1, thread->dac1);
349 mtspr(SPRN_DAC2, thread->dac2);
350#if CONFIG_PPC_ADV_DEBUG_DVCS > 0
351 mtspr(SPRN_DVC1, thread->dvc1);
352 mtspr(SPRN_DVC2, thread->dvc2);
353#endif
354 mtspr(SPRN_DBCR0, thread->dbcr0);
355 mtspr(SPRN_DBCR1, thread->dbcr1);
356#ifdef CONFIG_BOOKE
357 mtspr(SPRN_DBCR2, thread->dbcr2);
358#endif
359}
360/*
361 * Unless neither the old or new thread are making use of the
362 * debug registers, set the debug registers from the values
363 * stored in the new thread.
364 */
365static void switch_booke_debug_regs(struct thread_struct *new_thread)
366{
367 if ((current->thread.dbcr0 & DBCR0_IDM)
368 || (new_thread->dbcr0 & DBCR0_IDM))
369 prime_debug_regs(new_thread);
370}
371#else /* !CONFIG_PPC_ADV_DEBUG_REGS */
K.Prasade0780b72011-02-10 04:44:35 +0000372#ifndef CONFIG_HAVE_HW_BREAKPOINT
Dave Kleikamp3bffb652010-02-08 11:51:18 +0000373static void set_debug_reg_defaults(struct thread_struct *thread)
374{
Michael Neuling9422de32012-12-20 14:06:44 +0000375 thread->hw_brk.address = 0;
376 thread->hw_brk.type = 0;
Michael Neulingb9818c32013-01-10 14:25:34 +0000377 set_breakpoint(&thread->hw_brk);
Dave Kleikamp3bffb652010-02-08 11:51:18 +0000378}
K.Prasade0780b72011-02-10 04:44:35 +0000379#endif /* !CONFIG_HAVE_HW_BREAKPOINT */
Dave Kleikamp3bffb652010-02-08 11:51:18 +0000380#endif /* CONFIG_PPC_ADV_DEBUG_REGS */
381
Dave Kleikamp172ae2e2010-02-08 11:50:57 +0000382#ifdef CONFIG_PPC_ADV_DEBUG_REGS
Michael Neuling9422de32012-12-20 14:06:44 +0000383static inline int __set_dabr(unsigned long dabr, unsigned long dabrx)
384{
Benjamin Herrenschmidtc6c9eac2009-09-08 14:16:58 +0000385 mtspr(SPRN_DAC1, dabr);
Dave Kleikamp221c1852010-03-05 10:43:24 +0000386#ifdef CONFIG_PPC_47x
387 isync();
388#endif
Michael Neuling9422de32012-12-20 14:06:44 +0000389 return 0;
390}
Benjamin Herrenschmidtc6c9eac2009-09-08 14:16:58 +0000391#elif defined(CONFIG_PPC_BOOK3S)
Michael Neuling9422de32012-12-20 14:06:44 +0000392static inline int __set_dabr(unsigned long dabr, unsigned long dabrx)
393{
Michael Ellermancab0af92005-11-03 15:30:49 +1100394 mtspr(SPRN_DABR, dabr);
Michael Neuling4474ef02012-09-06 21:24:56 +0000395 mtspr(SPRN_DABRX, dabrx);
Michael Ellermancab0af92005-11-03 15:30:49 +1100396 return 0;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000397}
Michael Neuling9422de32012-12-20 14:06:44 +0000398#else
399static inline int __set_dabr(unsigned long dabr, unsigned long dabrx)
400{
401 return -EINVAL;
402}
403#endif
404
405static inline int set_dabr(struct arch_hw_breakpoint *brk)
406{
407 unsigned long dabr, dabrx;
408
409 dabr = brk->address | (brk->type & HW_BRK_TYPE_DABR);
410 dabrx = ((brk->type >> 3) & 0x7);
411
412 if (ppc_md.set_dabr)
413 return ppc_md.set_dabr(dabr, dabrx);
414
415 return __set_dabr(dabr, dabrx);
416}
417
Michael Neulingbf99de32012-12-20 14:06:45 +0000418static inline int set_dawr(struct arch_hw_breakpoint *brk)
419{
Michael Neuling05d694e2013-01-24 15:02:58 +0000420 unsigned long dawr, dawrx, mrd;
Michael Neulingbf99de32012-12-20 14:06:45 +0000421
422 dawr = brk->address;
423
424 dawrx = (brk->type & (HW_BRK_TYPE_READ | HW_BRK_TYPE_WRITE)) \
425 << (63 - 58); //* read/write bits */
426 dawrx |= ((brk->type & (HW_BRK_TYPE_TRANSLATE)) >> 2) \
427 << (63 - 59); //* translate */
428 dawrx |= (brk->type & (HW_BRK_TYPE_PRIV_ALL)) \
429 >> 3; //* PRIM bits */
Michael Neuling05d694e2013-01-24 15:02:58 +0000430 /* dawr length is stored in field MDR bits 48:53. Matches range in
431 doublewords (64 bits) baised by -1 eg. 0b000000=1DW and
432 0b111111=64DW.
433 brk->len is in bytes.
434 This aligns up to double word size, shifts and does the bias.
435 */
436 mrd = ((brk->len + 7) >> 3) - 1;
437 dawrx |= (mrd & 0x3f) << (63 - 53);
Michael Neulingbf99de32012-12-20 14:06:45 +0000438
439 if (ppc_md.set_dawr)
440 return ppc_md.set_dawr(dawr, dawrx);
441 mtspr(SPRN_DAWR, dawr);
442 mtspr(SPRN_DAWRX, dawrx);
443 return 0;
444}
445
Michael Neulingb9818c32013-01-10 14:25:34 +0000446int set_breakpoint(struct arch_hw_breakpoint *brk)
Michael Neuling9422de32012-12-20 14:06:44 +0000447{
448 __get_cpu_var(current_brk) = *brk;
449
Michael Neulingbf99de32012-12-20 14:06:45 +0000450 if (cpu_has_feature(CPU_FTR_DAWR))
451 return set_dawr(brk);
452
Michael Neuling9422de32012-12-20 14:06:44 +0000453 return set_dabr(brk);
454}
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000455
Paul Mackerras06d67d52005-10-10 22:29:05 +1000456#ifdef CONFIG_PPC64
457DEFINE_PER_CPU(struct cpu_usage, cpu_usage_array);
Paul Mackerras06d67d52005-10-10 22:29:05 +1000458#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000459
Michael Neuling9422de32012-12-20 14:06:44 +0000460static inline bool hw_brk_match(struct arch_hw_breakpoint *a,
461 struct arch_hw_breakpoint *b)
462{
463 if (a->address != b->address)
464 return false;
465 if (a->type != b->type)
466 return false;
467 if (a->len != b->len)
468 return false;
469 return true;
470}
Michael Neulingfb096922013-02-13 16:21:37 +0000471#ifdef CONFIG_PPC_TRANSACTIONAL_MEM
472static inline void tm_reclaim_task(struct task_struct *tsk)
473{
474 /* We have to work out if we're switching from/to a task that's in the
475 * middle of a transaction.
476 *
477 * In switching we need to maintain a 2nd register state as
478 * oldtask->thread.ckpt_regs. We tm_reclaim(oldproc); this saves the
479 * checkpointed (tbegin) state in ckpt_regs and saves the transactional
480 * (current) FPRs into oldtask->thread.transact_fpr[].
481 *
482 * We also context switch (save) TFHAR/TEXASR/TFIAR in here.
483 */
484 struct thread_struct *thr = &tsk->thread;
485
486 if (!thr->regs)
487 return;
488
489 if (!MSR_TM_ACTIVE(thr->regs->msr))
490 goto out_and_saveregs;
491
492 /* Stash the original thread MSR, as giveup_fpu et al will
493 * modify it. We hold onto it to see whether the task used
494 * FP & vector regs.
495 */
496 thr->tm_orig_msr = thr->regs->msr;
497
498 TM_DEBUG("--- tm_reclaim on pid %d (NIP=%lx, "
499 "ccr=%lx, msr=%lx, trap=%lx)\n",
500 tsk->pid, thr->regs->nip,
501 thr->regs->ccr, thr->regs->msr,
502 thr->regs->trap);
503
504 tm_reclaim(thr, thr->regs->msr, TM_CAUSE_RESCHED);
505
506 TM_DEBUG("--- tm_reclaim on pid %d complete\n",
507 tsk->pid);
508
509out_and_saveregs:
510 /* Always save the regs here, even if a transaction's not active.
511 * This context-switches a thread's TM info SPRs. We do it here to
512 * be consistent with the restore path (in recheckpoint) which
513 * cannot happen later in _switch().
514 */
515 tm_save_sprs(thr);
516}
517
Michael Neulingbc2a9402013-02-13 16:21:40 +0000518static inline void tm_recheckpoint_new_task(struct task_struct *new)
Michael Neulingfb096922013-02-13 16:21:37 +0000519{
520 unsigned long msr;
521
522 if (!cpu_has_feature(CPU_FTR_TM))
523 return;
524
525 /* Recheckpoint the registers of the thread we're about to switch to.
526 *
527 * If the task was using FP, we non-lazily reload both the original and
528 * the speculative FP register states. This is because the kernel
529 * doesn't see if/when a TM rollback occurs, so if we take an FP
530 * unavoidable later, we are unable to determine which set of FP regs
531 * need to be restored.
532 */
533 if (!new->thread.regs)
534 return;
535
536 /* The TM SPRs are restored here, so that TEXASR.FS can be set
537 * before the trecheckpoint and no explosion occurs.
538 */
539 tm_restore_sprs(&new->thread);
540
541 if (!MSR_TM_ACTIVE(new->thread.regs->msr))
542 return;
543 msr = new->thread.tm_orig_msr;
544 /* Recheckpoint to restore original checkpointed register state. */
545 TM_DEBUG("*** tm_recheckpoint of pid %d "
546 "(new->msr 0x%lx, new->origmsr 0x%lx)\n",
547 new->pid, new->thread.regs->msr, msr);
548
549 /* This loads the checkpointed FP/VEC state, if used */
550 tm_recheckpoint(&new->thread, msr);
551
552 /* This loads the speculative FP/VEC state, if used */
553 if (msr & MSR_FP) {
554 do_load_up_transact_fpu(&new->thread);
555 new->thread.regs->msr |=
556 (MSR_FP | new->thread.fpexc_mode);
557 }
Michael Neulingf110c0c2013-04-09 16:18:55 +1000558#ifdef CONFIG_ALTIVEC
Michael Neulingfb096922013-02-13 16:21:37 +0000559 if (msr & MSR_VEC) {
560 do_load_up_transact_altivec(&new->thread);
561 new->thread.regs->msr |= MSR_VEC;
562 }
Michael Neulingf110c0c2013-04-09 16:18:55 +1000563#endif
Michael Neulingfb096922013-02-13 16:21:37 +0000564 /* We may as well turn on VSX too since all the state is restored now */
565 if (msr & MSR_VSX)
566 new->thread.regs->msr |= MSR_VSX;
567
568 TM_DEBUG("*** tm_recheckpoint of pid %d complete "
569 "(kernel msr 0x%lx)\n",
570 new->pid, mfmsr());
571}
572
573static inline void __switch_to_tm(struct task_struct *prev)
574{
575 if (cpu_has_feature(CPU_FTR_TM)) {
576 tm_enable();
577 tm_reclaim_task(prev);
578 }
579}
580#else
581#define tm_recheckpoint_new_task(new)
582#define __switch_to_tm(prev)
583#endif /* CONFIG_PPC_TRANSACTIONAL_MEM */
Michael Neuling9422de32012-12-20 14:06:44 +0000584
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000585struct task_struct *__switch_to(struct task_struct *prev,
586 struct task_struct *new)
587{
588 struct thread_struct *new_thread, *old_thread;
589 unsigned long flags;
590 struct task_struct *last;
Peter Zijlstrad6bf29b2011-05-24 17:11:48 -0700591#ifdef CONFIG_PPC_BOOK3S_64
592 struct ppc64_tlb_batch *batch;
593#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000594
Michael Neulingbc2a9402013-02-13 16:21:40 +0000595 __switch_to_tm(prev);
596
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000597#ifdef CONFIG_SMP
598 /* avoid complexity of lazy save/restore of fpu
599 * by just saving it every time we switch out if
600 * this task used the fpu during the last quantum.
601 *
602 * If it tries to use the fpu again, it'll trap and
603 * reload its fp regs. So we don't have to do a restore
604 * every switch, just a save.
605 * -- Cort
606 */
607 if (prev->thread.regs && (prev->thread.regs->msr & MSR_FP))
608 giveup_fpu(prev);
609#ifdef CONFIG_ALTIVEC
610 /*
611 * If the previous thread used altivec in the last quantum
612 * (thus changing altivec regs) then save them.
613 * We used to check the VRSAVE register but not all apps
614 * set it, so we don't rely on it now (and in fact we need
615 * to save & restore VSCR even if VRSAVE == 0). -- paulus
616 *
617 * On SMP we always save/restore altivec regs just to avoid the
618 * complexity of changing processors.
619 * -- Cort
620 */
621 if (prev->thread.regs && (prev->thread.regs->msr & MSR_VEC))
622 giveup_altivec(prev);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000623#endif /* CONFIG_ALTIVEC */
Michael Neulingce48b212008-06-25 14:07:18 +1000624#ifdef CONFIG_VSX
625 if (prev->thread.regs && (prev->thread.regs->msr & MSR_VSX))
Michael Neuling7c292172008-07-11 16:29:12 +1000626 /* VMX and FPU registers are already save here */
627 __giveup_vsx(prev);
Michael Neulingce48b212008-06-25 14:07:18 +1000628#endif /* CONFIG_VSX */
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000629#ifdef CONFIG_SPE
630 /*
631 * If the previous thread used spe in the last quantum
632 * (thus changing spe regs) then save them.
633 *
634 * On SMP we always save/restore spe regs just to avoid the
635 * complexity of changing processors.
636 */
637 if ((prev->thread.regs && (prev->thread.regs->msr & MSR_SPE)))
638 giveup_spe(prev);
Paul Mackerrasc0c0d992005-10-01 13:49:08 +1000639#endif /* CONFIG_SPE */
640
641#else /* CONFIG_SMP */
642#ifdef CONFIG_ALTIVEC
643 /* Avoid the trap. On smp this this never happens since
644 * we don't set last_task_used_altivec -- Cort
645 */
646 if (new->thread.regs && last_task_used_altivec == new)
647 new->thread.regs->msr |= MSR_VEC;
648#endif /* CONFIG_ALTIVEC */
Michael Neulingce48b212008-06-25 14:07:18 +1000649#ifdef CONFIG_VSX
650 if (new->thread.regs && last_task_used_vsx == new)
651 new->thread.regs->msr |= MSR_VSX;
652#endif /* CONFIG_VSX */
Paul Mackerrasc0c0d992005-10-01 13:49:08 +1000653#ifdef CONFIG_SPE
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000654 /* Avoid the trap. On smp this this never happens since
655 * we don't set last_task_used_spe
656 */
657 if (new->thread.regs && last_task_used_spe == new)
658 new->thread.regs->msr |= MSR_SPE;
659#endif /* CONFIG_SPE */
Paul Mackerrasc0c0d992005-10-01 13:49:08 +1000660
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000661#endif /* CONFIG_SMP */
662
Dave Kleikamp172ae2e2010-02-08 11:50:57 +0000663#ifdef CONFIG_PPC_ADV_DEBUG_REGS
Dave Kleikamp3bffb652010-02-08 11:51:18 +0000664 switch_booke_debug_regs(&new->thread);
Benjamin Herrenschmidtc6c9eac2009-09-08 14:16:58 +0000665#else
K.Prasad5aae8a52010-06-15 11:35:19 +0530666/*
667 * For PPC_BOOK3S_64, we use the hw-breakpoint interfaces that would
668 * schedule DABR
669 */
670#ifndef CONFIG_HAVE_HW_BREAKPOINT
Michael Neuling9422de32012-12-20 14:06:44 +0000671 if (unlikely(hw_brk_match(&__get_cpu_var(current_brk), &new->thread.hw_brk)))
Michael Neulingb9818c32013-01-10 14:25:34 +0000672 set_breakpoint(&new->thread.hw_brk);
K.Prasad5aae8a52010-06-15 11:35:19 +0530673#endif /* CONFIG_HAVE_HW_BREAKPOINT */
Luis Machadod6a61bf2008-07-24 02:10:41 +1000674#endif
675
Benjamin Herrenschmidtc6c9eac2009-09-08 14:16:58 +0000676
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000677 new_thread = &new->thread;
678 old_thread = &current->thread;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000679
680#ifdef CONFIG_PPC64
681 /*
682 * Collect processor utilization data per process
683 */
684 if (firmware_has_feature(FW_FEATURE_SPLPAR)) {
685 struct cpu_usage *cu = &__get_cpu_var(cpu_usage_array);
686 long unsigned start_tb, current_tb;
687 start_tb = old_thread->start_tb;
688 cu->current_tb = current_tb = mfspr(SPRN_PURR);
689 old_thread->accum_tb += (current_tb - start_tb);
690 new_thread->start_tb = current_tb;
691 }
Peter Zijlstrad6bf29b2011-05-24 17:11:48 -0700692#endif /* CONFIG_PPC64 */
693
694#ifdef CONFIG_PPC_BOOK3S_64
695 batch = &__get_cpu_var(ppc64_tlb_batch);
696 if (batch->active) {
697 current_thread_info()->local_flags |= _TLF_LAZY_MMU;
698 if (batch->index)
699 __flush_tlb_pending(batch);
700 batch->active = 0;
701 }
702#endif /* CONFIG_PPC_BOOK3S_64 */
Paul Mackerras06d67d52005-10-10 22:29:05 +1000703
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000704 local_irq_save(flags);
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100705
Anton Blanchard44387e92008-03-17 15:27:09 +1100706 /*
707 * We can't take a PMU exception inside _switch() since there is a
708 * window where the kernel stack SLB and the kernel stack are out
709 * of sync. Hard disable here.
710 */
711 hard_irq_disable();
Michael Neulingbc2a9402013-02-13 16:21:40 +0000712
713 tm_recheckpoint_new_task(new);
714
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000715 last = _switch(old_thread, new_thread);
716
Peter Zijlstrad6bf29b2011-05-24 17:11:48 -0700717#ifdef CONFIG_PPC_BOOK3S_64
718 if (current_thread_info()->local_flags & _TLF_LAZY_MMU) {
719 current_thread_info()->local_flags &= ~_TLF_LAZY_MMU;
720 batch = &__get_cpu_var(ppc64_tlb_batch);
721 batch->active = 1;
722 }
723#endif /* CONFIG_PPC_BOOK3S_64 */
724
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000725 local_irq_restore(flags);
726
727 return last;
728}
729
Paul Mackerras06d67d52005-10-10 22:29:05 +1000730static int instructions_to_print = 16;
731
Paul Mackerras06d67d52005-10-10 22:29:05 +1000732static void show_instructions(struct pt_regs *regs)
733{
734 int i;
735 unsigned long pc = regs->nip - (instructions_to_print * 3 / 4 *
736 sizeof(int));
737
738 printk("Instruction dump:");
739
740 for (i = 0; i < instructions_to_print; i++) {
741 int instr;
742
743 if (!(i % 8))
744 printk("\n");
745
Scott Wood0de2d822007-09-28 04:38:55 +1000746#if !defined(CONFIG_BOOKE)
747 /* If executing with the IMMU off, adjust pc rather
748 * than print XXXXXXXX.
749 */
750 if (!(regs->msr & MSR_IR))
751 pc = (unsigned long)phys_to_virt(pc);
752#endif
753
Stephen Rothwellaf308372006-03-23 17:38:10 +1100754 /* We use __get_user here *only* to avoid an OOPS on a
755 * bad address because the pc *should* only be a
756 * kernel address.
757 */
Anton Blanchard00ae36d2006-10-13 12:17:16 +1000758 if (!__kernel_text_address(pc) ||
759 __get_user(instr, (unsigned int __user *)pc)) {
Ira Snyder40c8cef2012-01-06 12:34:07 +0000760 printk(KERN_CONT "XXXXXXXX ");
Paul Mackerras06d67d52005-10-10 22:29:05 +1000761 } else {
762 if (regs->nip == pc)
Ira Snyder40c8cef2012-01-06 12:34:07 +0000763 printk(KERN_CONT "<%08x> ", instr);
Paul Mackerras06d67d52005-10-10 22:29:05 +1000764 else
Ira Snyder40c8cef2012-01-06 12:34:07 +0000765 printk(KERN_CONT "%08x ", instr);
Paul Mackerras06d67d52005-10-10 22:29:05 +1000766 }
767
768 pc += sizeof(int);
769 }
770
771 printk("\n");
772}
773
774static struct regbit {
775 unsigned long bit;
776 const char *name;
777} msr_bits[] = {
Anton Blanchard3bfd0c9c2011-11-24 19:35:57 +0000778#if defined(CONFIG_PPC64) && !defined(CONFIG_BOOKE)
779 {MSR_SF, "SF"},
780 {MSR_HV, "HV"},
781#endif
782 {MSR_VEC, "VEC"},
783 {MSR_VSX, "VSX"},
784#ifdef CONFIG_BOOKE
785 {MSR_CE, "CE"},
786#endif
Paul Mackerras06d67d52005-10-10 22:29:05 +1000787 {MSR_EE, "EE"},
788 {MSR_PR, "PR"},
789 {MSR_FP, "FP"},
790 {MSR_ME, "ME"},
Anton Blanchard3bfd0c9c2011-11-24 19:35:57 +0000791#ifdef CONFIG_BOOKE
Kumar Gala1b983262008-11-19 04:39:53 +0000792 {MSR_DE, "DE"},
Anton Blanchard3bfd0c9c2011-11-24 19:35:57 +0000793#else
794 {MSR_SE, "SE"},
795 {MSR_BE, "BE"},
796#endif
Paul Mackerras06d67d52005-10-10 22:29:05 +1000797 {MSR_IR, "IR"},
798 {MSR_DR, "DR"},
Anton Blanchard3bfd0c9c2011-11-24 19:35:57 +0000799 {MSR_PMM, "PMM"},
800#ifndef CONFIG_BOOKE
801 {MSR_RI, "RI"},
802 {MSR_LE, "LE"},
803#endif
Paul Mackerras06d67d52005-10-10 22:29:05 +1000804 {0, NULL}
805};
806
807static void printbits(unsigned long val, struct regbit *bits)
808{
809 const char *sep = "";
810
811 printk("<");
812 for (; bits->bit; ++bits)
813 if (val & bits->bit) {
814 printk("%s%s", sep, bits->name);
815 sep = ",";
816 }
817 printk(">");
818}
819
820#ifdef CONFIG_PPC64
anton@samba.orgf6f7dde2007-03-20 20:38:19 -0500821#define REG "%016lx"
Paul Mackerras06d67d52005-10-10 22:29:05 +1000822#define REGS_PER_LINE 4
823#define LAST_VOLATILE 13
824#else
anton@samba.orgf6f7dde2007-03-20 20:38:19 -0500825#define REG "%08lx"
Paul Mackerras06d67d52005-10-10 22:29:05 +1000826#define REGS_PER_LINE 8
827#define LAST_VOLATILE 12
828#endif
829
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000830void show_regs(struct pt_regs * regs)
831{
832 int i, trap;
833
Paul Mackerras06d67d52005-10-10 22:29:05 +1000834 printk("NIP: "REG" LR: "REG" CTR: "REG"\n",
835 regs->nip, regs->link, regs->ctr);
836 printk("REGS: %p TRAP: %04lx %s (%s)\n",
Serge E. Hallyn96b644b2006-10-02 02:18:13 -0700837 regs, regs->trap, print_tainted(), init_utsname()->release);
Paul Mackerras06d67d52005-10-10 22:29:05 +1000838 printk("MSR: "REG" ", regs->msr);
839 printbits(regs->msr, msr_bits);
anton@samba.orgf6f7dde2007-03-20 20:38:19 -0500840 printk(" CR: %08lx XER: %08lx\n", regs->ccr, regs->xer);
Benjamin Herrenschmidt7230c562012-03-06 18:27:59 +1100841#ifdef CONFIG_PPC64
842 printk("SOFTE: %ld\n", regs->softe);
843#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000844 trap = TRAP(regs);
Michael Neuling5115a022011-07-14 19:25:12 +0000845 if ((regs->trap != 0xc00) && cpu_has_feature(CPU_FTR_CFAR))
846 printk("CFAR: "REG"\n", regs->orig_gpr3);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000847 if (trap == 0x300 || trap == 0x600)
Kumar Galaba28c9a2011-10-06 02:53:38 +0000848#if defined(CONFIG_4xx) || defined(CONFIG_BOOKE)
Kumar Gala14170782007-07-26 00:46:15 -0500849 printk("DEAR: "REG", ESR: "REG"\n", regs->dar, regs->dsisr);
850#else
Anton Blanchard70718542011-01-11 19:44:30 +0000851 printk("DAR: "REG", DSISR: %08lx\n", regs->dar, regs->dsisr);
Kumar Gala14170782007-07-26 00:46:15 -0500852#endif
Paul Mackerras06d67d52005-10-10 22:29:05 +1000853 printk("TASK = %p[%d] '%s' THREAD: %p",
Alexey Dobriyan19c58702007-10-18 23:40:41 -0700854 current, task_pid_nr(current), current->comm, task_thread_info(current));
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000855
856#ifdef CONFIG_SMP
Hugh Dickins79ccd1b2008-02-09 05:25:13 +1100857 printk(" CPU: %d", raw_smp_processor_id());
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000858#endif /* CONFIG_SMP */
859
860 for (i = 0; i < 32; i++) {
Paul Mackerras06d67d52005-10-10 22:29:05 +1000861 if ((i % REGS_PER_LINE) == 0)
Kumar Galaa2367192009-06-18 22:29:55 +0000862 printk("\nGPR%02d: ", i);
Paul Mackerras06d67d52005-10-10 22:29:05 +1000863 printk(REG " ", regs->gpr[i]);
864 if (i == LAST_VOLATILE && !FULL_REGS(regs))
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000865 break;
866 }
867 printk("\n");
868#ifdef CONFIG_KALLSYMS
869 /*
870 * Lookup NIP late so we have the best change of getting the
871 * above info out without failing
872 */
Benjamin Herrenschmidt058c78f2008-07-07 13:44:31 +1000873 printk("NIP ["REG"] %pS\n", regs->nip, (void *)regs->nip);
874 printk("LR ["REG"] %pS\n", regs->link, (void *)regs->link);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000875#endif
Michael Neulingafc07702013-02-13 16:21:34 +0000876#ifdef CONFIG_PPC_TRANSACTIONAL_MEM
877 printk("PACATMSCRATCH [%llx]\n", get_paca()->tm_scratch);
878#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000879 show_stack(current, (unsigned long *) regs->gpr[1]);
Paul Mackerras06d67d52005-10-10 22:29:05 +1000880 if (!user_mode(regs))
881 show_instructions(regs);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000882}
883
884void exit_thread(void)
885{
Paul Mackerras48abec02005-11-30 13:20:54 +1100886 discard_lazy_cpu_state();
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000887}
888
889void flush_thread(void)
890{
Paul Mackerras48abec02005-11-30 13:20:54 +1100891 discard_lazy_cpu_state();
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000892
K.Prasade0780b72011-02-10 04:44:35 +0000893#ifdef CONFIG_HAVE_HW_BREAKPOINT
K.Prasad5aae8a52010-06-15 11:35:19 +0530894 flush_ptrace_hw_breakpoint(current);
K.Prasade0780b72011-02-10 04:44:35 +0000895#else /* CONFIG_HAVE_HW_BREAKPOINT */
Dave Kleikamp3bffb652010-02-08 11:51:18 +0000896 set_debug_reg_defaults(&current->thread);
K.Prasade0780b72011-02-10 04:44:35 +0000897#endif /* CONFIG_HAVE_HW_BREAKPOINT */
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000898}
899
900void
901release_thread(struct task_struct *t)
902{
903}
904
905/*
Suresh Siddha55ccf3f2012-05-16 15:03:51 -0700906 * this gets called so that we can store coprocessor state into memory and
907 * copy the current task into the new thread.
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000908 */
Suresh Siddha55ccf3f2012-05-16 15:03:51 -0700909int arch_dup_task_struct(struct task_struct *dst, struct task_struct *src)
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000910{
Suresh Siddha55ccf3f2012-05-16 15:03:51 -0700911 flush_fp_to_thread(src);
912 flush_altivec_to_thread(src);
913 flush_vsx_to_thread(src);
914 flush_spe_to_thread(src);
K.Prasad5aae8a52010-06-15 11:35:19 +0530915#ifdef CONFIG_HAVE_HW_BREAKPOINT
Suresh Siddha55ccf3f2012-05-16 15:03:51 -0700916 flush_ptrace_hw_breakpoint(src);
K.Prasad5aae8a52010-06-15 11:35:19 +0530917#endif /* CONFIG_HAVE_HW_BREAKPOINT */
Suresh Siddha55ccf3f2012-05-16 15:03:51 -0700918
919 *dst = *src;
920 return 0;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000921}
922
923/*
924 * Copy a thread..
925 */
Alexey Kardashevskiyefcac652011-03-02 15:18:48 +0000926extern unsigned long dscr_default; /* defined in arch/powerpc/kernel/sysfs.c */
927
Alexey Dobriyan6f2c55b2009-04-02 16:56:59 -0700928int copy_thread(unsigned long clone_flags, unsigned long usp,
Al Viroafa86fc2012-10-22 22:51:14 -0400929 unsigned long arg, struct task_struct *p)
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000930{
931 struct pt_regs *childregs, *kregs;
932 extern void ret_from_fork(void);
Al Viro58254e12012-09-12 18:32:42 -0400933 extern void ret_from_kernel_thread(void);
934 void (*f)(void);
Al Viro0cec6fd2006-01-12 01:06:02 -0800935 unsigned long sp = (unsigned long)task_stack_page(p) + THREAD_SIZE;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000936
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000937 /* Copy registers */
938 sp -= sizeof(struct pt_regs);
939 childregs = (struct pt_regs *) sp;
Al Viroab758192012-10-21 22:33:39 -0400940 if (unlikely(p->flags & PF_KTHREAD)) {
Al Viro138d1ce2012-10-11 08:41:43 -0400941 struct thread_info *ti = (void *)task_stack_page(p);
Al Viro58254e12012-09-12 18:32:42 -0400942 memset(childregs, 0, sizeof(struct pt_regs));
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000943 childregs->gpr[1] = sp + sizeof(struct pt_regs);
Al Viro53b50f942012-10-21 16:50:34 -0400944 childregs->gpr[14] = usp; /* function */
Al Viro58254e12012-09-12 18:32:42 -0400945#ifdef CONFIG_PPC64
Al Virob5e2fc12006-01-12 01:06:01 -0800946 clear_tsk_thread_flag(p, TIF_32BIT);
Al Viro138d1ce2012-10-11 08:41:43 -0400947 childregs->softe = 1;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000948#endif
Al Viro58254e12012-09-12 18:32:42 -0400949 childregs->gpr[15] = arg;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000950 p->thread.regs = NULL; /* no user register state */
Al Viro138d1ce2012-10-11 08:41:43 -0400951 ti->flags |= _TIF_RESTOREALL;
Al Viro58254e12012-09-12 18:32:42 -0400952 f = ret_from_kernel_thread;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000953 } else {
Al Viroafa86fc2012-10-22 22:51:14 -0400954 struct pt_regs *regs = current_pt_regs();
Al Viro58254e12012-09-12 18:32:42 -0400955 CHECK_FULL_REGS(regs);
956 *childregs = *regs;
Al Viroea516b12012-10-21 22:28:43 -0400957 if (usp)
958 childregs->gpr[1] = usp;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000959 p->thread.regs = childregs;
Al Viro58254e12012-09-12 18:32:42 -0400960 childregs->gpr[3] = 0; /* Result from fork() */
Paul Mackerras06d67d52005-10-10 22:29:05 +1000961 if (clone_flags & CLONE_SETTLS) {
962#ifdef CONFIG_PPC64
Denis Kirjanov9904b002010-07-29 22:04:39 +0000963 if (!is_32bit_task())
Paul Mackerras06d67d52005-10-10 22:29:05 +1000964 childregs->gpr[13] = childregs->gpr[6];
965 else
966#endif
967 childregs->gpr[2] = childregs->gpr[6];
968 }
Al Viro58254e12012-09-12 18:32:42 -0400969
970 f = ret_from_fork;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000971 }
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000972 sp -= STACK_FRAME_OVERHEAD;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000973
974 /*
975 * The way this works is that at some point in the future
976 * some task will call _switch to switch to the new task.
977 * That will pop off the stack frame created below and start
978 * the new task running at ret_from_fork. The new task will
979 * do some house keeping and then return from the fork or clone
980 * system call, using the stack frame created above.
981 */
982 sp -= sizeof(struct pt_regs);
983 kregs = (struct pt_regs *) sp;
984 sp -= STACK_FRAME_OVERHEAD;
985 p->thread.ksp = sp;
Kumar Gala85218822008-04-28 16:21:22 +1000986 p->thread.ksp_limit = (unsigned long)task_stack_page(p) +
987 _ALIGN_UP(sizeof(struct thread_info), 16);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000988
Benjamin Herrenschmidt94491682009-06-02 21:17:45 +0000989#ifdef CONFIG_PPC_STD_MMU_64
Matt Evans44ae3ab2011-04-06 19:48:50 +0000990 if (mmu_has_feature(MMU_FTR_SLB)) {
Paul Mackerras1189be62007-10-11 20:37:10 +1000991 unsigned long sp_vsid;
Benjamin Herrenschmidt3c726f82005-11-07 11:06:55 +1100992 unsigned long llp = mmu_psize_defs[mmu_linear_psize].sllp;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000993
Matt Evans44ae3ab2011-04-06 19:48:50 +0000994 if (mmu_has_feature(MMU_FTR_1T_SEGMENT))
Paul Mackerras1189be62007-10-11 20:37:10 +1000995 sp_vsid = get_kernel_vsid(sp, MMU_SEGSIZE_1T)
996 << SLB_VSID_SHIFT_1T;
997 else
998 sp_vsid = get_kernel_vsid(sp, MMU_SEGSIZE_256M)
999 << SLB_VSID_SHIFT;
Benjamin Herrenschmidt3c726f82005-11-07 11:06:55 +11001000 sp_vsid |= SLB_VSID_KERNEL | llp;
Paul Mackerras06d67d52005-10-10 22:29:05 +10001001 p->thread.ksp_vsid = sp_vsid;
1002 }
Benjamin Herrenschmidt747bea92009-07-23 23:15:27 +00001003#endif /* CONFIG_PPC_STD_MMU_64 */
Alexey Kardashevskiyefcac652011-03-02 15:18:48 +00001004#ifdef CONFIG_PPC64
1005 if (cpu_has_feature(CPU_FTR_DSCR)) {
Anton Blanchard1021cb22012-09-03 16:49:47 +00001006 p->thread.dscr_inherit = current->thread.dscr_inherit;
1007 p->thread.dscr = current->thread.dscr;
Alexey Kardashevskiyefcac652011-03-02 15:18:48 +00001008 }
Haren Myneni92779242012-12-06 21:49:56 +00001009 if (cpu_has_feature(CPU_FTR_HAS_PPR))
1010 p->thread.ppr = INIT_PPR;
Alexey Kardashevskiyefcac652011-03-02 15:18:48 +00001011#endif
Paul Mackerras06d67d52005-10-10 22:29:05 +10001012 /*
1013 * The PPC64 ABI makes use of a TOC to contain function
1014 * pointers. The function (ret_from_except) is actually a pointer
1015 * to the TOC entry. The first entry is a pointer to the actual
1016 * function.
Al Viro58254e12012-09-12 18:32:42 -04001017 */
Benjamin Herrenschmidt747bea92009-07-23 23:15:27 +00001018#ifdef CONFIG_PPC64
Al Viro58254e12012-09-12 18:32:42 -04001019 kregs->nip = *((unsigned long *)f);
Paul Mackerras06d67d52005-10-10 22:29:05 +10001020#else
Al Viro58254e12012-09-12 18:32:42 -04001021 kregs->nip = (unsigned long)f;
Paul Mackerras06d67d52005-10-10 22:29:05 +10001022#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001023 return 0;
1024}
1025
1026/*
1027 * Set up a thread for executing a new program
1028 */
Paul Mackerras06d67d52005-10-10 22:29:05 +10001029void start_thread(struct pt_regs *regs, unsigned long start, unsigned long sp)
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001030{
Michael Ellerman90eac722005-10-21 16:01:33 +10001031#ifdef CONFIG_PPC64
1032 unsigned long load_addr = regs->gpr[2]; /* saved by ELF_PLAT_INIT */
1033#endif
1034
Paul Mackerras06d67d52005-10-10 22:29:05 +10001035 /*
1036 * If we exec out of a kernel thread then thread.regs will not be
1037 * set. Do it now.
1038 */
1039 if (!current->thread.regs) {
Al Viro0cec6fd2006-01-12 01:06:02 -08001040 struct pt_regs *regs = task_stack_page(current) + THREAD_SIZE;
1041 current->thread.regs = regs - 1;
Paul Mackerras06d67d52005-10-10 22:29:05 +10001042 }
1043
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001044 memset(regs->gpr, 0, sizeof(regs->gpr));
1045 regs->ctr = 0;
1046 regs->link = 0;
1047 regs->xer = 0;
1048 regs->ccr = 0;
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001049 regs->gpr[1] = sp;
Paul Mackerras06d67d52005-10-10 22:29:05 +10001050
Roland McGrath474f8192007-09-24 16:52:44 -07001051 /*
1052 * We have just cleared all the nonvolatile GPRs, so make
1053 * FULL_REGS(regs) return true. This is necessary to allow
1054 * ptrace to examine the thread immediately after exec.
1055 */
1056 regs->trap &= ~1UL;
1057
Paul Mackerras06d67d52005-10-10 22:29:05 +10001058#ifdef CONFIG_PPC32
1059 regs->mq = 0;
1060 regs->nip = start;
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001061 regs->msr = MSR_USER;
Paul Mackerras06d67d52005-10-10 22:29:05 +10001062#else
Denis Kirjanov9904b002010-07-29 22:04:39 +00001063 if (!is_32bit_task()) {
Michael Ellerman90eac722005-10-21 16:01:33 +10001064 unsigned long entry, toc;
Paul Mackerras06d67d52005-10-10 22:29:05 +10001065
1066 /* start is a relocated pointer to the function descriptor for
1067 * the elf _start routine. The first entry in the function
1068 * descriptor is the entry address of _start and the second
1069 * entry is the TOC value we need to use.
1070 */
1071 __get_user(entry, (unsigned long __user *)start);
1072 __get_user(toc, (unsigned long __user *)start+1);
1073
1074 /* Check whether the e_entry function descriptor entries
1075 * need to be relocated before we can use them.
1076 */
1077 if (load_addr != 0) {
1078 entry += load_addr;
1079 toc += load_addr;
1080 }
1081 regs->nip = entry;
1082 regs->gpr[2] = toc;
1083 regs->msr = MSR_USER64;
Stephen Rothwelld4bf9a72005-10-13 13:40:54 +10001084 } else {
1085 regs->nip = start;
1086 regs->gpr[2] = 0;
1087 regs->msr = MSR_USER32;
Paul Mackerras06d67d52005-10-10 22:29:05 +10001088 }
1089#endif
Paul Mackerras48abec02005-11-30 13:20:54 +11001090 discard_lazy_cpu_state();
Michael Neulingce48b212008-06-25 14:07:18 +10001091#ifdef CONFIG_VSX
1092 current->thread.used_vsr = 0;
1093#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001094 memset(current->thread.fpr, 0, sizeof(current->thread.fpr));
David Gibson25c8a782005-10-27 16:27:25 +10001095 current->thread.fpscr.val = 0;
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001096#ifdef CONFIG_ALTIVEC
1097 memset(current->thread.vr, 0, sizeof(current->thread.vr));
1098 memset(&current->thread.vscr, 0, sizeof(current->thread.vscr));
Paul Mackerras06d67d52005-10-10 22:29:05 +10001099 current->thread.vscr.u[3] = 0x00010000; /* Java mode disabled */
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001100 current->thread.vrsave = 0;
1101 current->thread.used_vr = 0;
1102#endif /* CONFIG_ALTIVEC */
1103#ifdef CONFIG_SPE
1104 memset(current->thread.evr, 0, sizeof(current->thread.evr));
1105 current->thread.acc = 0;
1106 current->thread.spefscr = 0;
1107 current->thread.used_spe = 0;
1108#endif /* CONFIG_SPE */
Michael Neulingbc2a9402013-02-13 16:21:40 +00001109#ifdef CONFIG_PPC_TRANSACTIONAL_MEM
1110 if (cpu_has_feature(CPU_FTR_TM))
1111 regs->msr |= MSR_TM;
1112 current->thread.tm_tfhar = 0;
1113 current->thread.tm_texasr = 0;
1114 current->thread.tm_tfiar = 0;
1115#endif /* CONFIG_PPC_TRANSACTIONAL_MEM */
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001116}
1117
1118#define PR_FP_ALL_EXCEPT (PR_FP_EXC_DIV | PR_FP_EXC_OVF | PR_FP_EXC_UND \
1119 | PR_FP_EXC_RES | PR_FP_EXC_INV)
1120
1121int set_fpexc_mode(struct task_struct *tsk, unsigned int val)
1122{
1123 struct pt_regs *regs = tsk->thread.regs;
1124
1125 /* This is a bit hairy. If we are an SPE enabled processor
1126 * (have embedded fp) we store the IEEE exception enable flags in
1127 * fpexc_mode. fpexc_mode is also used for setting FP exception
1128 * mode (asyn, precise, disabled) for 'Classic' FP. */
1129 if (val & PR_FP_EXC_SW_ENABLE) {
1130#ifdef CONFIG_SPE
Kumar Gala5e14d212007-09-13 01:44:20 -05001131 if (cpu_has_feature(CPU_FTR_SPE)) {
1132 tsk->thread.fpexc_mode = val &
1133 (PR_FP_EXC_SW_ENABLE | PR_FP_ALL_EXCEPT);
1134 return 0;
1135 } else {
1136 return -EINVAL;
1137 }
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001138#else
1139 return -EINVAL;
1140#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001141 }
Paul Mackerras06d67d52005-10-10 22:29:05 +10001142
1143 /* on a CONFIG_SPE this does not hurt us. The bits that
1144 * __pack_fe01 use do not overlap with bits used for
1145 * PR_FP_EXC_SW_ENABLE. Additionally, the MSR[FE0,FE1] bits
1146 * on CONFIG_SPE implementations are reserved so writing to
1147 * them does not change anything */
1148 if (val > PR_FP_EXC_PRECISE)
1149 return -EINVAL;
1150 tsk->thread.fpexc_mode = __pack_fe01(val);
1151 if (regs != NULL && (regs->msr & MSR_FP) != 0)
1152 regs->msr = (regs->msr & ~(MSR_FE0|MSR_FE1))
1153 | tsk->thread.fpexc_mode;
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001154 return 0;
1155}
1156
1157int get_fpexc_mode(struct task_struct *tsk, unsigned long adr)
1158{
1159 unsigned int val;
1160
1161 if (tsk->thread.fpexc_mode & PR_FP_EXC_SW_ENABLE)
1162#ifdef CONFIG_SPE
Kumar Gala5e14d212007-09-13 01:44:20 -05001163 if (cpu_has_feature(CPU_FTR_SPE))
1164 val = tsk->thread.fpexc_mode;
1165 else
1166 return -EINVAL;
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001167#else
1168 return -EINVAL;
1169#endif
1170 else
1171 val = __unpack_fe01(tsk->thread.fpexc_mode);
1172 return put_user(val, (unsigned int __user *) adr);
1173}
1174
Paul Mackerrasfab5db92006-06-07 16:14:40 +10001175int set_endian(struct task_struct *tsk, unsigned int val)
1176{
1177 struct pt_regs *regs = tsk->thread.regs;
1178
1179 if ((val == PR_ENDIAN_LITTLE && !cpu_has_feature(CPU_FTR_REAL_LE)) ||
1180 (val == PR_ENDIAN_PPC_LITTLE && !cpu_has_feature(CPU_FTR_PPC_LE)))
1181 return -EINVAL;
1182
1183 if (regs == NULL)
1184 return -EINVAL;
1185
1186 if (val == PR_ENDIAN_BIG)
1187 regs->msr &= ~MSR_LE;
1188 else if (val == PR_ENDIAN_LITTLE || val == PR_ENDIAN_PPC_LITTLE)
1189 regs->msr |= MSR_LE;
1190 else
1191 return -EINVAL;
1192
1193 return 0;
1194}
1195
1196int get_endian(struct task_struct *tsk, unsigned long adr)
1197{
1198 struct pt_regs *regs = tsk->thread.regs;
1199 unsigned int val;
1200
1201 if (!cpu_has_feature(CPU_FTR_PPC_LE) &&
1202 !cpu_has_feature(CPU_FTR_REAL_LE))
1203 return -EINVAL;
1204
1205 if (regs == NULL)
1206 return -EINVAL;
1207
1208 if (regs->msr & MSR_LE) {
1209 if (cpu_has_feature(CPU_FTR_REAL_LE))
1210 val = PR_ENDIAN_LITTLE;
1211 else
1212 val = PR_ENDIAN_PPC_LITTLE;
1213 } else
1214 val = PR_ENDIAN_BIG;
1215
1216 return put_user(val, (unsigned int __user *)adr);
1217}
1218
Paul Mackerrase9370ae2006-06-07 16:15:39 +10001219int set_unalign_ctl(struct task_struct *tsk, unsigned int val)
1220{
1221 tsk->thread.align_ctl = val;
1222 return 0;
1223}
1224
1225int get_unalign_ctl(struct task_struct *tsk, unsigned long adr)
1226{
1227 return put_user(tsk->thread.align_ctl, (unsigned int __user *)adr);
1228}
1229
Paul Mackerrasbb72c482007-02-19 11:42:42 +11001230static inline int valid_irq_stack(unsigned long sp, struct task_struct *p,
1231 unsigned long nbytes)
1232{
1233 unsigned long stack_page;
1234 unsigned long cpu = task_cpu(p);
1235
1236 /*
1237 * Avoid crashing if the stack has overflowed and corrupted
1238 * task_cpu(p), which is in the thread_info struct.
1239 */
1240 if (cpu < NR_CPUS && cpu_possible(cpu)) {
1241 stack_page = (unsigned long) hardirq_ctx[cpu];
1242 if (sp >= stack_page + sizeof(struct thread_struct)
1243 && sp <= stack_page + THREAD_SIZE - nbytes)
1244 return 1;
1245
1246 stack_page = (unsigned long) softirq_ctx[cpu];
1247 if (sp >= stack_page + sizeof(struct thread_struct)
1248 && sp <= stack_page + THREAD_SIZE - nbytes)
1249 return 1;
1250 }
1251 return 0;
1252}
1253
Anton Blanchard2f251942006-03-27 11:46:18 +11001254int validate_sp(unsigned long sp, struct task_struct *p,
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001255 unsigned long nbytes)
1256{
Al Viro0cec6fd2006-01-12 01:06:02 -08001257 unsigned long stack_page = (unsigned long)task_stack_page(p);
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001258
1259 if (sp >= stack_page + sizeof(struct thread_struct)
1260 && sp <= stack_page + THREAD_SIZE - nbytes)
1261 return 1;
1262
Paul Mackerrasbb72c482007-02-19 11:42:42 +11001263 return valid_irq_stack(sp, p, nbytes);
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001264}
1265
Anton Blanchard2f251942006-03-27 11:46:18 +11001266EXPORT_SYMBOL(validate_sp);
1267
Paul Mackerras06d67d52005-10-10 22:29:05 +10001268unsigned long get_wchan(struct task_struct *p)
1269{
1270 unsigned long ip, sp;
1271 int count = 0;
1272
1273 if (!p || p == current || p->state == TASK_RUNNING)
1274 return 0;
1275
1276 sp = p->thread.ksp;
Benjamin Herrenschmidtec2b36b2008-04-17 14:34:59 +10001277 if (!validate_sp(sp, p, STACK_FRAME_OVERHEAD))
Paul Mackerras06d67d52005-10-10 22:29:05 +10001278 return 0;
1279
1280 do {
1281 sp = *(unsigned long *)sp;
Benjamin Herrenschmidtec2b36b2008-04-17 14:34:59 +10001282 if (!validate_sp(sp, p, STACK_FRAME_OVERHEAD))
Paul Mackerras06d67d52005-10-10 22:29:05 +10001283 return 0;
1284 if (count > 0) {
Benjamin Herrenschmidtec2b36b2008-04-17 14:34:59 +10001285 ip = ((unsigned long *)sp)[STACK_FRAME_LR_SAVE];
Paul Mackerras06d67d52005-10-10 22:29:05 +10001286 if (!in_sched_functions(ip))
1287 return ip;
1288 }
1289 } while (count++ < 16);
1290 return 0;
1291}
Paul Mackerras06d67d52005-10-10 22:29:05 +10001292
Johannes Bergc4d04be2008-11-20 03:24:07 +00001293static int kstack_depth_to_print = CONFIG_PRINT_STACK_DEPTH;
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001294
1295void show_stack(struct task_struct *tsk, unsigned long *stack)
1296{
Paul Mackerras06d67d52005-10-10 22:29:05 +10001297 unsigned long sp, ip, lr, newsp;
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001298 int count = 0;
Paul Mackerras06d67d52005-10-10 22:29:05 +10001299 int firstframe = 1;
Steven Rostedt6794c782009-02-09 21:10:27 -08001300#ifdef CONFIG_FUNCTION_GRAPH_TRACER
1301 int curr_frame = current->curr_ret_stack;
1302 extern void return_to_handler(void);
Steven Rostedt9135c3c2009-09-15 08:20:15 -07001303 unsigned long rth = (unsigned long)return_to_handler;
1304 unsigned long mrth = -1;
Steven Rostedt6794c782009-02-09 21:10:27 -08001305#ifdef CONFIG_PPC64
Steven Rostedt9135c3c2009-09-15 08:20:15 -07001306 extern void mod_return_to_handler(void);
1307 rth = *(unsigned long *)rth;
1308 mrth = (unsigned long)mod_return_to_handler;
1309 mrth = *(unsigned long *)mrth;
Steven Rostedt6794c782009-02-09 21:10:27 -08001310#endif
1311#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001312
1313 sp = (unsigned long) stack;
1314 if (tsk == NULL)
1315 tsk = current;
1316 if (sp == 0) {
1317 if (tsk == current)
1318 asm("mr %0,1" : "=r" (sp));
1319 else
1320 sp = tsk->thread.ksp;
1321 }
1322
Paul Mackerras06d67d52005-10-10 22:29:05 +10001323 lr = 0;
1324 printk("Call Trace:\n");
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001325 do {
Benjamin Herrenschmidtec2b36b2008-04-17 14:34:59 +10001326 if (!validate_sp(sp, tsk, STACK_FRAME_OVERHEAD))
Paul Mackerras06d67d52005-10-10 22:29:05 +10001327 return;
1328
1329 stack = (unsigned long *) sp;
1330 newsp = stack[0];
Benjamin Herrenschmidtec2b36b2008-04-17 14:34:59 +10001331 ip = stack[STACK_FRAME_LR_SAVE];
Paul Mackerras06d67d52005-10-10 22:29:05 +10001332 if (!firstframe || ip != lr) {
Benjamin Herrenschmidt058c78f2008-07-07 13:44:31 +10001333 printk("["REG"] ["REG"] %pS", sp, ip, (void *)ip);
Steven Rostedt6794c782009-02-09 21:10:27 -08001334#ifdef CONFIG_FUNCTION_GRAPH_TRACER
Steven Rostedt9135c3c2009-09-15 08:20:15 -07001335 if ((ip == rth || ip == mrth) && curr_frame >= 0) {
Steven Rostedt6794c782009-02-09 21:10:27 -08001336 printk(" (%pS)",
1337 (void *)current->ret_stack[curr_frame].ret);
1338 curr_frame--;
1339 }
1340#endif
Paul Mackerras06d67d52005-10-10 22:29:05 +10001341 if (firstframe)
1342 printk(" (unreliable)");
1343 printk("\n");
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001344 }
Paul Mackerras06d67d52005-10-10 22:29:05 +10001345 firstframe = 0;
1346
1347 /*
1348 * See if this is an exception frame.
1349 * We look for the "regshere" marker in the current frame.
1350 */
Benjamin Herrenschmidtec2b36b2008-04-17 14:34:59 +10001351 if (validate_sp(sp, tsk, STACK_INT_FRAME_SIZE)
1352 && stack[STACK_FRAME_MARKER] == STACK_FRAME_REGS_MARKER) {
Paul Mackerras06d67d52005-10-10 22:29:05 +10001353 struct pt_regs *regs = (struct pt_regs *)
1354 (sp + STACK_FRAME_OVERHEAD);
Paul Mackerras06d67d52005-10-10 22:29:05 +10001355 lr = regs->link;
Benjamin Herrenschmidt058c78f2008-07-07 13:44:31 +10001356 printk("--- Exception: %lx at %pS\n LR = %pS\n",
1357 regs->trap, (void *)regs->nip, (void *)lr);
Paul Mackerras06d67d52005-10-10 22:29:05 +10001358 firstframe = 1;
1359 }
1360
1361 sp = newsp;
1362 } while (count++ < kstack_depth_to_print);
Paul Mackerras14cf11a2005-09-26 16:04:21 +10001363}
Paul Mackerras06d67d52005-10-10 22:29:05 +10001364
1365void dump_stack(void)
1366{
1367 show_stack(current, NULL);
1368}
1369EXPORT_SYMBOL(dump_stack);
Anton Blanchardcb2c9b22006-02-13 14:48:35 +11001370
1371#ifdef CONFIG_PPC64
Benjamin Herrenschmidtfe1952f2012-03-01 12:45:27 +11001372/* Called with hard IRQs off */
1373void __ppc64_runlatch_on(void)
Anton Blanchardcb2c9b22006-02-13 14:48:35 +11001374{
Benjamin Herrenschmidtfe1952f2012-03-01 12:45:27 +11001375 struct thread_info *ti = current_thread_info();
Anton Blanchardcb2c9b22006-02-13 14:48:35 +11001376 unsigned long ctrl;
1377
Benjamin Herrenschmidtfe1952f2012-03-01 12:45:27 +11001378 ctrl = mfspr(SPRN_CTRLF);
1379 ctrl |= CTRL_RUNLATCH;
1380 mtspr(SPRN_CTRLT, ctrl);
Anton Blanchardcb2c9b22006-02-13 14:48:35 +11001381
Benjamin Herrenschmidtfae2e0f2012-04-11 10:42:15 +10001382 ti->local_flags |= _TLF_RUNLATCH;
Anton Blanchardcb2c9b22006-02-13 14:48:35 +11001383}
1384
Benjamin Herrenschmidtfe1952f2012-03-01 12:45:27 +11001385/* Called with hard IRQs off */
Anton Blanchard4138d652010-08-06 03:28:19 +00001386void __ppc64_runlatch_off(void)
Anton Blanchardcb2c9b22006-02-13 14:48:35 +11001387{
Benjamin Herrenschmidtfe1952f2012-03-01 12:45:27 +11001388 struct thread_info *ti = current_thread_info();
Anton Blanchardcb2c9b22006-02-13 14:48:35 +11001389 unsigned long ctrl;
1390
Benjamin Herrenschmidtfae2e0f2012-04-11 10:42:15 +10001391 ti->local_flags &= ~_TLF_RUNLATCH;
Anton Blanchardcb2c9b22006-02-13 14:48:35 +11001392
Anton Blanchard4138d652010-08-06 03:28:19 +00001393 ctrl = mfspr(SPRN_CTRLF);
1394 ctrl &= ~CTRL_RUNLATCH;
1395 mtspr(SPRN_CTRLT, ctrl);
Anton Blanchardcb2c9b22006-02-13 14:48:35 +11001396}
Benjamin Herrenschmidtfe1952f2012-03-01 12:45:27 +11001397#endif /* CONFIG_PPC64 */
Benjamin Herrenschmidtf6a61682008-04-18 16:56:17 +10001398
Anton Blanchardd8390882009-02-22 01:50:03 +00001399unsigned long arch_align_stack(unsigned long sp)
1400{
1401 if (!(current->personality & ADDR_NO_RANDOMIZE) && randomize_va_space)
1402 sp -= get_random_int() & ~PAGE_MASK;
1403 return sp & ~0xf;
1404}
Anton Blanchard912f9ee2009-02-22 01:50:04 +00001405
1406static inline unsigned long brk_rnd(void)
1407{
1408 unsigned long rnd = 0;
1409
1410 /* 8MB for 32bit, 1GB for 64bit */
1411 if (is_32bit_task())
1412 rnd = (long)(get_random_int() % (1<<(23-PAGE_SHIFT)));
1413 else
1414 rnd = (long)(get_random_int() % (1<<(30-PAGE_SHIFT)));
1415
1416 return rnd << PAGE_SHIFT;
1417}
1418
1419unsigned long arch_randomize_brk(struct mm_struct *mm)
1420{
Anton Blanchard8bbde7a2009-09-21 16:52:35 +00001421 unsigned long base = mm->brk;
1422 unsigned long ret;
1423
Kumar Galace7a35c2009-10-16 07:05:17 +00001424#ifdef CONFIG_PPC_STD_MMU_64
Anton Blanchard8bbde7a2009-09-21 16:52:35 +00001425 /*
1426 * If we are using 1TB segments and we are allowed to randomise
1427 * the heap, we can put it above 1TB so it is backed by a 1TB
1428 * segment. Otherwise the heap will be in the bottom 1TB
1429 * which always uses 256MB segments and this may result in a
1430 * performance penalty.
1431 */
1432 if (!is_32bit_task() && (mmu_highuser_ssize == MMU_SEGSIZE_1T))
1433 base = max_t(unsigned long, mm->brk, 1UL << SID_SHIFT_1T);
1434#endif
1435
1436 ret = PAGE_ALIGN(base + brk_rnd());
Anton Blanchard912f9ee2009-02-22 01:50:04 +00001437
1438 if (ret < mm->brk)
1439 return mm->brk;
1440
1441 return ret;
1442}
Anton Blanchard501cb162009-02-22 01:50:07 +00001443
1444unsigned long randomize_et_dyn(unsigned long base)
1445{
1446 unsigned long ret = PAGE_ALIGN(base + brk_rnd());
1447
1448 if (ret < base)
1449 return base;
1450
1451 return ret;
1452}