blob: 588c0cb8115e5152c4c658df2bd720cf7972b6e2 [file] [log] [blame]
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>
31#include <linux/module.h>
32#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>
Paul Mackerras14cf11a2005-09-26 16:04:21 +100036
37#include <asm/pgtable.h>
38#include <asm/uaccess.h>
39#include <asm/system.h>
40#include <asm/io.h>
41#include <asm/processor.h>
42#include <asm/mmu.h>
43#include <asm/prom.h>
Michael Ellerman76032de2005-11-07 13:12:03 +110044#include <asm/machdep.h>
Paul Mackerrasc6622f62006-02-24 10:06:59 +110045#include <asm/time.h>
Arnd Bergmanna7f31842006-03-23 00:00:08 +010046#include <asm/syscalls.h>
Paul Mackerras06d67d52005-10-10 22:29:05 +100047#ifdef CONFIG_PPC64
48#include <asm/firmware.h>
Paul Mackerras06d67d52005-10-10 22:29:05 +100049#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +100050
51extern unsigned long _get_SP(void);
52
53#ifndef CONFIG_SMP
54struct task_struct *last_task_used_math = NULL;
55struct task_struct *last_task_used_altivec = NULL;
56struct task_struct *last_task_used_spe = NULL;
57#endif
58
Paul Mackerras14cf11a2005-09-26 16:04:21 +100059/*
60 * Make sure the floating-point register state in the
61 * the thread_struct is up to date for task tsk.
62 */
63void flush_fp_to_thread(struct task_struct *tsk)
64{
65 if (tsk->thread.regs) {
66 /*
67 * We need to disable preemption here because if we didn't,
68 * another process could get scheduled after the regs->msr
69 * test but before we have finished saving the FP registers
70 * to the thread_struct. That process could take over the
71 * FPU, and then when we get scheduled again we would store
72 * bogus values for the remaining FP registers.
73 */
74 preempt_disable();
75 if (tsk->thread.regs->msr & MSR_FP) {
76#ifdef CONFIG_SMP
77 /*
78 * This should only ever be called for current or
79 * for a stopped child process. Since we save away
80 * the FP register state on context switch on SMP,
81 * there is something wrong if a stopped child appears
82 * to still have its FP state in the CPU registers.
83 */
84 BUG_ON(tsk != current);
85#endif
Kumar Gala0ee6c152007-08-28 21:15:53 -050086 giveup_fpu(tsk);
Paul Mackerras14cf11a2005-09-26 16:04:21 +100087 }
88 preempt_enable();
89 }
90}
91
92void enable_kernel_fp(void)
93{
94 WARN_ON(preemptible());
95
96#ifdef CONFIG_SMP
97 if (current->thread.regs && (current->thread.regs->msr & MSR_FP))
98 giveup_fpu(current);
99 else
100 giveup_fpu(NULL); /* just enables FP for kernel */
101#else
102 giveup_fpu(last_task_used_math);
103#endif /* CONFIG_SMP */
104}
105EXPORT_SYMBOL(enable_kernel_fp);
106
107int dump_task_fpu(struct task_struct *tsk, elf_fpregset_t *fpregs)
108{
109 if (!tsk->thread.regs)
110 return 0;
111 flush_fp_to_thread(current);
112
113 memcpy(fpregs, &tsk->thread.fpr[0], sizeof(*fpregs));
114
115 return 1;
116}
117
118#ifdef CONFIG_ALTIVEC
119void enable_kernel_altivec(void)
120{
121 WARN_ON(preemptible());
122
123#ifdef CONFIG_SMP
124 if (current->thread.regs && (current->thread.regs->msr & MSR_VEC))
125 giveup_altivec(current);
126 else
127 giveup_altivec(NULL); /* just enable AltiVec for kernel - force */
128#else
129 giveup_altivec(last_task_used_altivec);
130#endif /* CONFIG_SMP */
131}
132EXPORT_SYMBOL(enable_kernel_altivec);
133
134/*
135 * Make sure the VMX/Altivec register state in the
136 * the thread_struct is up to date for task tsk.
137 */
138void flush_altivec_to_thread(struct task_struct *tsk)
139{
140 if (tsk->thread.regs) {
141 preempt_disable();
142 if (tsk->thread.regs->msr & MSR_VEC) {
143#ifdef CONFIG_SMP
144 BUG_ON(tsk != current);
145#endif
Kumar Gala0ee6c152007-08-28 21:15:53 -0500146 giveup_altivec(tsk);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000147 }
148 preempt_enable();
149 }
150}
151
152int dump_task_altivec(struct pt_regs *regs, elf_vrregset_t *vrregs)
153{
154 flush_altivec_to_thread(current);
155 memcpy(vrregs, &current->thread.vr[0], sizeof(*vrregs));
156 return 1;
157}
158#endif /* CONFIG_ALTIVEC */
159
160#ifdef CONFIG_SPE
161
162void enable_kernel_spe(void)
163{
164 WARN_ON(preemptible());
165
166#ifdef CONFIG_SMP
167 if (current->thread.regs && (current->thread.regs->msr & MSR_SPE))
168 giveup_spe(current);
169 else
170 giveup_spe(NULL); /* just enable SPE for kernel - force */
171#else
172 giveup_spe(last_task_used_spe);
173#endif /* __SMP __ */
174}
175EXPORT_SYMBOL(enable_kernel_spe);
176
177void flush_spe_to_thread(struct task_struct *tsk)
178{
179 if (tsk->thread.regs) {
180 preempt_disable();
181 if (tsk->thread.regs->msr & MSR_SPE) {
182#ifdef CONFIG_SMP
183 BUG_ON(tsk != current);
184#endif
Kumar Gala0ee6c152007-08-28 21:15:53 -0500185 giveup_spe(tsk);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000186 }
187 preempt_enable();
188 }
189}
190
191int dump_spe(struct pt_regs *regs, elf_vrregset_t *evrregs)
192{
193 flush_spe_to_thread(current);
194 /* We copy u32 evr[32] + u64 acc + u32 spefscr -> 35 */
195 memcpy(evrregs, &current->thread.evr[0], sizeof(u32) * 35);
196 return 1;
197}
198#endif /* CONFIG_SPE */
199
Paul Mackerras5388fb12006-01-11 22:11:39 +1100200#ifndef CONFIG_SMP
Paul Mackerras48abec02005-11-30 13:20:54 +1100201/*
202 * If we are doing lazy switching of CPU state (FP, altivec or SPE),
203 * and the current task has some state, discard it.
204 */
Paul Mackerras5388fb12006-01-11 22:11:39 +1100205void discard_lazy_cpu_state(void)
Paul Mackerras48abec02005-11-30 13:20:54 +1100206{
Paul Mackerras48abec02005-11-30 13:20:54 +1100207 preempt_disable();
208 if (last_task_used_math == current)
209 last_task_used_math = NULL;
210#ifdef CONFIG_ALTIVEC
211 if (last_task_used_altivec == current)
212 last_task_used_altivec = NULL;
213#endif /* CONFIG_ALTIVEC */
214#ifdef CONFIG_SPE
215 if (last_task_used_spe == current)
216 last_task_used_spe = NULL;
217#endif
218 preempt_enable();
Paul Mackerras48abec02005-11-30 13:20:54 +1100219}
Paul Mackerras5388fb12006-01-11 22:11:39 +1100220#endif /* CONFIG_SMP */
Paul Mackerras48abec02005-11-30 13:20:54 +1100221
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000222int set_dabr(unsigned long dabr)
223{
Benjamin Herrenschmidt791cc502007-06-04 15:15:48 +1000224#ifdef CONFIG_PPC_MERGE /* XXX for now */
Michael Ellermancab0af92005-11-03 15:30:49 +1100225 if (ppc_md.set_dabr)
226 return ppc_md.set_dabr(dabr);
Benjamin Herrenschmidt791cc502007-06-04 15:15:48 +1000227#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000228
Benjamin Herrenschmidt791cc502007-06-04 15:15:48 +1000229 /* XXX should we have a CPU_FTR_HAS_DABR ? */
230#if defined(CONFIG_PPC64) || defined(CONFIG_6xx)
Michael Ellermancab0af92005-11-03 15:30:49 +1100231 mtspr(SPRN_DABR, dabr);
Benjamin Herrenschmidt791cc502007-06-04 15:15:48 +1000232#endif
Michael Ellermancab0af92005-11-03 15:30:49 +1100233 return 0;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000234}
235
Paul Mackerras06d67d52005-10-10 22:29:05 +1000236#ifdef CONFIG_PPC64
237DEFINE_PER_CPU(struct cpu_usage, cpu_usage_array);
Paul Mackerras06d67d52005-10-10 22:29:05 +1000238#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000239
Benjamin Herrenschmidt791cc502007-06-04 15:15:48 +1000240static DEFINE_PER_CPU(unsigned long, current_dabr);
241
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000242struct task_struct *__switch_to(struct task_struct *prev,
243 struct task_struct *new)
244{
245 struct thread_struct *new_thread, *old_thread;
246 unsigned long flags;
247 struct task_struct *last;
248
249#ifdef CONFIG_SMP
250 /* avoid complexity of lazy save/restore of fpu
251 * by just saving it every time we switch out if
252 * this task used the fpu during the last quantum.
253 *
254 * If it tries to use the fpu again, it'll trap and
255 * reload its fp regs. So we don't have to do a restore
256 * every switch, just a save.
257 * -- Cort
258 */
259 if (prev->thread.regs && (prev->thread.regs->msr & MSR_FP))
260 giveup_fpu(prev);
261#ifdef CONFIG_ALTIVEC
262 /*
263 * If the previous thread used altivec in the last quantum
264 * (thus changing altivec regs) then save them.
265 * We used to check the VRSAVE register but not all apps
266 * set it, so we don't rely on it now (and in fact we need
267 * to save & restore VSCR even if VRSAVE == 0). -- paulus
268 *
269 * On SMP we always save/restore altivec regs just to avoid the
270 * complexity of changing processors.
271 * -- Cort
272 */
273 if (prev->thread.regs && (prev->thread.regs->msr & MSR_VEC))
274 giveup_altivec(prev);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000275#endif /* CONFIG_ALTIVEC */
276#ifdef CONFIG_SPE
277 /*
278 * If the previous thread used spe in the last quantum
279 * (thus changing spe regs) then save them.
280 *
281 * On SMP we always save/restore spe regs just to avoid the
282 * complexity of changing processors.
283 */
284 if ((prev->thread.regs && (prev->thread.regs->msr & MSR_SPE)))
285 giveup_spe(prev);
Paul Mackerrasc0c0d992005-10-01 13:49:08 +1000286#endif /* CONFIG_SPE */
287
288#else /* CONFIG_SMP */
289#ifdef CONFIG_ALTIVEC
290 /* Avoid the trap. On smp this this never happens since
291 * we don't set last_task_used_altivec -- Cort
292 */
293 if (new->thread.regs && last_task_used_altivec == new)
294 new->thread.regs->msr |= MSR_VEC;
295#endif /* CONFIG_ALTIVEC */
296#ifdef CONFIG_SPE
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000297 /* Avoid the trap. On smp this this never happens since
298 * we don't set last_task_used_spe
299 */
300 if (new->thread.regs && last_task_used_spe == new)
301 new->thread.regs->msr |= MSR_SPE;
302#endif /* CONFIG_SPE */
Paul Mackerrasc0c0d992005-10-01 13:49:08 +1000303
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000304#endif /* CONFIG_SMP */
305
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000306 if (unlikely(__get_cpu_var(current_dabr) != new->thread.dabr)) {
307 set_dabr(new->thread.dabr);
308 __get_cpu_var(current_dabr) = new->thread.dabr;
309 }
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000310
311 new_thread = &new->thread;
312 old_thread = &current->thread;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000313
314#ifdef CONFIG_PPC64
315 /*
316 * Collect processor utilization data per process
317 */
318 if (firmware_has_feature(FW_FEATURE_SPLPAR)) {
319 struct cpu_usage *cu = &__get_cpu_var(cpu_usage_array);
320 long unsigned start_tb, current_tb;
321 start_tb = old_thread->start_tb;
322 cu->current_tb = current_tb = mfspr(SPRN_PURR);
323 old_thread->accum_tb += (current_tb - start_tb);
324 new_thread->start_tb = current_tb;
325 }
326#endif
327
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000328 local_irq_save(flags);
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100329
330 account_system_vtime(current);
331 account_process_vtime(current);
332 calculate_steal_time();
333
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000334 last = _switch(old_thread, new_thread);
335
336 local_irq_restore(flags);
337
338 return last;
339}
340
Paul Mackerras06d67d52005-10-10 22:29:05 +1000341static int instructions_to_print = 16;
342
Paul Mackerras06d67d52005-10-10 22:29:05 +1000343static void show_instructions(struct pt_regs *regs)
344{
345 int i;
346 unsigned long pc = regs->nip - (instructions_to_print * 3 / 4 *
347 sizeof(int));
348
349 printk("Instruction dump:");
350
351 for (i = 0; i < instructions_to_print; i++) {
352 int instr;
353
354 if (!(i % 8))
355 printk("\n");
356
Scott Wood0de2d822007-09-28 04:38:55 +1000357#if !defined(CONFIG_BOOKE)
358 /* If executing with the IMMU off, adjust pc rather
359 * than print XXXXXXXX.
360 */
361 if (!(regs->msr & MSR_IR))
362 pc = (unsigned long)phys_to_virt(pc);
363#endif
364
Stephen Rothwellaf308372006-03-23 17:38:10 +1100365 /* We use __get_user here *only* to avoid an OOPS on a
366 * bad address because the pc *should* only be a
367 * kernel address.
368 */
Anton Blanchard00ae36d2006-10-13 12:17:16 +1000369 if (!__kernel_text_address(pc) ||
370 __get_user(instr, (unsigned int __user *)pc)) {
Paul Mackerras06d67d52005-10-10 22:29:05 +1000371 printk("XXXXXXXX ");
372 } else {
373 if (regs->nip == pc)
374 printk("<%08x> ", instr);
375 else
376 printk("%08x ", instr);
377 }
378
379 pc += sizeof(int);
380 }
381
382 printk("\n");
383}
384
385static struct regbit {
386 unsigned long bit;
387 const char *name;
388} msr_bits[] = {
389 {MSR_EE, "EE"},
390 {MSR_PR, "PR"},
391 {MSR_FP, "FP"},
392 {MSR_ME, "ME"},
393 {MSR_IR, "IR"},
394 {MSR_DR, "DR"},
395 {0, NULL}
396};
397
398static void printbits(unsigned long val, struct regbit *bits)
399{
400 const char *sep = "";
401
402 printk("<");
403 for (; bits->bit; ++bits)
404 if (val & bits->bit) {
405 printk("%s%s", sep, bits->name);
406 sep = ",";
407 }
408 printk(">");
409}
410
411#ifdef CONFIG_PPC64
anton@samba.orgf6f7dde2007-03-20 20:38:19 -0500412#define REG "%016lx"
Paul Mackerras06d67d52005-10-10 22:29:05 +1000413#define REGS_PER_LINE 4
414#define LAST_VOLATILE 13
415#else
anton@samba.orgf6f7dde2007-03-20 20:38:19 -0500416#define REG "%08lx"
Paul Mackerras06d67d52005-10-10 22:29:05 +1000417#define REGS_PER_LINE 8
418#define LAST_VOLATILE 12
419#endif
420
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000421void show_regs(struct pt_regs * regs)
422{
423 int i, trap;
424
Paul Mackerras06d67d52005-10-10 22:29:05 +1000425 printk("NIP: "REG" LR: "REG" CTR: "REG"\n",
426 regs->nip, regs->link, regs->ctr);
427 printk("REGS: %p TRAP: %04lx %s (%s)\n",
Serge E. Hallyn96b644b2006-10-02 02:18:13 -0700428 regs, regs->trap, print_tainted(), init_utsname()->release);
Paul Mackerras06d67d52005-10-10 22:29:05 +1000429 printk("MSR: "REG" ", regs->msr);
430 printbits(regs->msr, msr_bits);
anton@samba.orgf6f7dde2007-03-20 20:38:19 -0500431 printk(" CR: %08lx XER: %08lx\n", regs->ccr, regs->xer);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000432 trap = TRAP(regs);
433 if (trap == 0x300 || trap == 0x600)
Kumar Gala14170782007-07-26 00:46:15 -0500434#if defined(CONFIG_4xx) || defined(CONFIG_BOOKE)
435 printk("DEAR: "REG", ESR: "REG"\n", regs->dar, regs->dsisr);
436#else
Paul Mackerras06d67d52005-10-10 22:29:05 +1000437 printk("DAR: "REG", DSISR: "REG"\n", regs->dar, regs->dsisr);
Kumar Gala14170782007-07-26 00:46:15 -0500438#endif
Paul Mackerras06d67d52005-10-10 22:29:05 +1000439 printk("TASK = %p[%d] '%s' THREAD: %p",
Al Virob5e2fc12006-01-12 01:06:01 -0800440 current, current->pid, current->comm, task_thread_info(current));
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000441
442#ifdef CONFIG_SMP
443 printk(" CPU: %d", smp_processor_id());
444#endif /* CONFIG_SMP */
445
446 for (i = 0; i < 32; i++) {
Paul Mackerras06d67d52005-10-10 22:29:05 +1000447 if ((i % REGS_PER_LINE) == 0)
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000448 printk("\n" KERN_INFO "GPR%02d: ", i);
Paul Mackerras06d67d52005-10-10 22:29:05 +1000449 printk(REG " ", regs->gpr[i]);
450 if (i == LAST_VOLATILE && !FULL_REGS(regs))
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000451 break;
452 }
453 printk("\n");
454#ifdef CONFIG_KALLSYMS
455 /*
456 * Lookup NIP late so we have the best change of getting the
457 * above info out without failing
458 */
Paul Mackerras06d67d52005-10-10 22:29:05 +1000459 printk("NIP ["REG"] ", regs->nip);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000460 print_symbol("%s\n", regs->nip);
Paul Mackerras06d67d52005-10-10 22:29:05 +1000461 printk("LR ["REG"] ", regs->link);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000462 print_symbol("%s\n", regs->link);
463#endif
464 show_stack(current, (unsigned long *) regs->gpr[1]);
Paul Mackerras06d67d52005-10-10 22:29:05 +1000465 if (!user_mode(regs))
466 show_instructions(regs);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000467}
468
469void exit_thread(void)
470{
Paul Mackerras48abec02005-11-30 13:20:54 +1100471 discard_lazy_cpu_state();
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000472}
473
474void flush_thread(void)
475{
Paul Mackerras06d67d52005-10-10 22:29:05 +1000476#ifdef CONFIG_PPC64
477 struct thread_info *t = current_thread_info();
478
Mathieu Desnoyersf144e7c72007-03-10 03:23:03 -0500479 if (test_ti_thread_flag(t, TIF_ABI_PENDING)) {
480 clear_ti_thread_flag(t, TIF_ABI_PENDING);
481 if (test_ti_thread_flag(t, TIF_32BIT))
482 clear_ti_thread_flag(t, TIF_32BIT);
483 else
484 set_ti_thread_flag(t, TIF_32BIT);
485 }
Paul Mackerras06d67d52005-10-10 22:29:05 +1000486#endif
Paul Mackerras06d67d52005-10-10 22:29:05 +1000487
Paul Mackerras48abec02005-11-30 13:20:54 +1100488 discard_lazy_cpu_state();
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000489
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000490 if (current->thread.dabr) {
491 current->thread.dabr = 0;
492 set_dabr(0);
493 }
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000494}
495
496void
497release_thread(struct task_struct *t)
498{
499}
500
501/*
502 * This gets called before we allocate a new thread and copy
503 * the current task into it.
504 */
505void prepare_to_copy(struct task_struct *tsk)
506{
507 flush_fp_to_thread(current);
508 flush_altivec_to_thread(current);
509 flush_spe_to_thread(current);
510}
511
512/*
513 * Copy a thread..
514 */
Paul Mackerras06d67d52005-10-10 22:29:05 +1000515int copy_thread(int nr, unsigned long clone_flags, unsigned long usp,
516 unsigned long unused, struct task_struct *p,
517 struct pt_regs *regs)
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000518{
519 struct pt_regs *childregs, *kregs;
520 extern void ret_from_fork(void);
Al Viro0cec6fd2006-01-12 01:06:02 -0800521 unsigned long sp = (unsigned long)task_stack_page(p) + THREAD_SIZE;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000522
523 CHECK_FULL_REGS(regs);
524 /* Copy registers */
525 sp -= sizeof(struct pt_regs);
526 childregs = (struct pt_regs *) sp;
527 *childregs = *regs;
528 if ((childregs->msr & MSR_PR) == 0) {
529 /* for kernel thread, set `current' and stackptr in new task */
530 childregs->gpr[1] = sp + sizeof(struct pt_regs);
Paul Mackerras06d67d52005-10-10 22:29:05 +1000531#ifdef CONFIG_PPC32
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000532 childregs->gpr[2] = (unsigned long) p;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000533#else
Al Virob5e2fc12006-01-12 01:06:01 -0800534 clear_tsk_thread_flag(p, TIF_32BIT);
Paul Mackerras06d67d52005-10-10 22:29:05 +1000535#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000536 p->thread.regs = NULL; /* no user register state */
537 } else {
538 childregs->gpr[1] = usp;
539 p->thread.regs = childregs;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000540 if (clone_flags & CLONE_SETTLS) {
541#ifdef CONFIG_PPC64
542 if (!test_thread_flag(TIF_32BIT))
543 childregs->gpr[13] = childregs->gpr[6];
544 else
545#endif
546 childregs->gpr[2] = childregs->gpr[6];
547 }
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000548 }
549 childregs->gpr[3] = 0; /* Result from fork() */
550 sp -= STACK_FRAME_OVERHEAD;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000551
552 /*
553 * The way this works is that at some point in the future
554 * some task will call _switch to switch to the new task.
555 * That will pop off the stack frame created below and start
556 * the new task running at ret_from_fork. The new task will
557 * do some house keeping and then return from the fork or clone
558 * system call, using the stack frame created above.
559 */
560 sp -= sizeof(struct pt_regs);
561 kregs = (struct pt_regs *) sp;
562 sp -= STACK_FRAME_OVERHEAD;
563 p->thread.ksp = sp;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000564
Paul Mackerras06d67d52005-10-10 22:29:05 +1000565#ifdef CONFIG_PPC64
566 if (cpu_has_feature(CPU_FTR_SLB)) {
567 unsigned long sp_vsid = get_kernel_vsid(sp);
Benjamin Herrenschmidt3c726f82005-11-07 11:06:55 +1100568 unsigned long llp = mmu_psize_defs[mmu_linear_psize].sllp;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000569
570 sp_vsid <<= SLB_VSID_SHIFT;
Benjamin Herrenschmidt3c726f82005-11-07 11:06:55 +1100571 sp_vsid |= SLB_VSID_KERNEL | llp;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000572 p->thread.ksp_vsid = sp_vsid;
573 }
574
575 /*
576 * The PPC64 ABI makes use of a TOC to contain function
577 * pointers. The function (ret_from_except) is actually a pointer
578 * to the TOC entry. The first entry is a pointer to the actual
579 * function.
580 */
581 kregs->nip = *((unsigned long *)ret_from_fork);
582#else
583 kregs->nip = (unsigned long)ret_from_fork;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000584#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000585
586 return 0;
587}
588
589/*
590 * Set up a thread for executing a new program
591 */
Paul Mackerras06d67d52005-10-10 22:29:05 +1000592void start_thread(struct pt_regs *regs, unsigned long start, unsigned long sp)
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000593{
Michael Ellerman90eac722005-10-21 16:01:33 +1000594#ifdef CONFIG_PPC64
595 unsigned long load_addr = regs->gpr[2]; /* saved by ELF_PLAT_INIT */
596#endif
597
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000598 set_fs(USER_DS);
Paul Mackerras06d67d52005-10-10 22:29:05 +1000599
600 /*
601 * If we exec out of a kernel thread then thread.regs will not be
602 * set. Do it now.
603 */
604 if (!current->thread.regs) {
Al Viro0cec6fd2006-01-12 01:06:02 -0800605 struct pt_regs *regs = task_stack_page(current) + THREAD_SIZE;
606 current->thread.regs = regs - 1;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000607 }
608
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000609 memset(regs->gpr, 0, sizeof(regs->gpr));
610 regs->ctr = 0;
611 regs->link = 0;
612 regs->xer = 0;
613 regs->ccr = 0;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000614 regs->gpr[1] = sp;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000615
616#ifdef CONFIG_PPC32
617 regs->mq = 0;
618 regs->nip = start;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000619 regs->msr = MSR_USER;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000620#else
Stephen Rothwelld4bf9a72005-10-13 13:40:54 +1000621 if (!test_thread_flag(TIF_32BIT)) {
Michael Ellerman90eac722005-10-21 16:01:33 +1000622 unsigned long entry, toc;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000623
624 /* start is a relocated pointer to the function descriptor for
625 * the elf _start routine. The first entry in the function
626 * descriptor is the entry address of _start and the second
627 * entry is the TOC value we need to use.
628 */
629 __get_user(entry, (unsigned long __user *)start);
630 __get_user(toc, (unsigned long __user *)start+1);
631
632 /* Check whether the e_entry function descriptor entries
633 * need to be relocated before we can use them.
634 */
635 if (load_addr != 0) {
636 entry += load_addr;
637 toc += load_addr;
638 }
639 regs->nip = entry;
640 regs->gpr[2] = toc;
641 regs->msr = MSR_USER64;
Stephen Rothwelld4bf9a72005-10-13 13:40:54 +1000642 } else {
643 regs->nip = start;
644 regs->gpr[2] = 0;
645 regs->msr = MSR_USER32;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000646 }
647#endif
648
Paul Mackerras48abec02005-11-30 13:20:54 +1100649 discard_lazy_cpu_state();
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000650 memset(current->thread.fpr, 0, sizeof(current->thread.fpr));
David Gibson25c8a782005-10-27 16:27:25 +1000651 current->thread.fpscr.val = 0;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000652#ifdef CONFIG_ALTIVEC
653 memset(current->thread.vr, 0, sizeof(current->thread.vr));
654 memset(&current->thread.vscr, 0, sizeof(current->thread.vscr));
Paul Mackerras06d67d52005-10-10 22:29:05 +1000655 current->thread.vscr.u[3] = 0x00010000; /* Java mode disabled */
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000656 current->thread.vrsave = 0;
657 current->thread.used_vr = 0;
658#endif /* CONFIG_ALTIVEC */
659#ifdef CONFIG_SPE
660 memset(current->thread.evr, 0, sizeof(current->thread.evr));
661 current->thread.acc = 0;
662 current->thread.spefscr = 0;
663 current->thread.used_spe = 0;
664#endif /* CONFIG_SPE */
665}
666
667#define PR_FP_ALL_EXCEPT (PR_FP_EXC_DIV | PR_FP_EXC_OVF | PR_FP_EXC_UND \
668 | PR_FP_EXC_RES | PR_FP_EXC_INV)
669
670int set_fpexc_mode(struct task_struct *tsk, unsigned int val)
671{
672 struct pt_regs *regs = tsk->thread.regs;
673
674 /* This is a bit hairy. If we are an SPE enabled processor
675 * (have embedded fp) we store the IEEE exception enable flags in
676 * fpexc_mode. fpexc_mode is also used for setting FP exception
677 * mode (asyn, precise, disabled) for 'Classic' FP. */
678 if (val & PR_FP_EXC_SW_ENABLE) {
679#ifdef CONFIG_SPE
Kumar Gala5e14d212007-09-13 01:44:20 -0500680 if (cpu_has_feature(CPU_FTR_SPE)) {
681 tsk->thread.fpexc_mode = val &
682 (PR_FP_EXC_SW_ENABLE | PR_FP_ALL_EXCEPT);
683 return 0;
684 } else {
685 return -EINVAL;
686 }
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000687#else
688 return -EINVAL;
689#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000690 }
Paul Mackerras06d67d52005-10-10 22:29:05 +1000691
692 /* on a CONFIG_SPE this does not hurt us. The bits that
693 * __pack_fe01 use do not overlap with bits used for
694 * PR_FP_EXC_SW_ENABLE. Additionally, the MSR[FE0,FE1] bits
695 * on CONFIG_SPE implementations are reserved so writing to
696 * them does not change anything */
697 if (val > PR_FP_EXC_PRECISE)
698 return -EINVAL;
699 tsk->thread.fpexc_mode = __pack_fe01(val);
700 if (regs != NULL && (regs->msr & MSR_FP) != 0)
701 regs->msr = (regs->msr & ~(MSR_FE0|MSR_FE1))
702 | tsk->thread.fpexc_mode;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000703 return 0;
704}
705
706int get_fpexc_mode(struct task_struct *tsk, unsigned long adr)
707{
708 unsigned int val;
709
710 if (tsk->thread.fpexc_mode & PR_FP_EXC_SW_ENABLE)
711#ifdef CONFIG_SPE
Kumar Gala5e14d212007-09-13 01:44:20 -0500712 if (cpu_has_feature(CPU_FTR_SPE))
713 val = tsk->thread.fpexc_mode;
714 else
715 return -EINVAL;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000716#else
717 return -EINVAL;
718#endif
719 else
720 val = __unpack_fe01(tsk->thread.fpexc_mode);
721 return put_user(val, (unsigned int __user *) adr);
722}
723
Paul Mackerrasfab5db92006-06-07 16:14:40 +1000724int set_endian(struct task_struct *tsk, unsigned int val)
725{
726 struct pt_regs *regs = tsk->thread.regs;
727
728 if ((val == PR_ENDIAN_LITTLE && !cpu_has_feature(CPU_FTR_REAL_LE)) ||
729 (val == PR_ENDIAN_PPC_LITTLE && !cpu_has_feature(CPU_FTR_PPC_LE)))
730 return -EINVAL;
731
732 if (regs == NULL)
733 return -EINVAL;
734
735 if (val == PR_ENDIAN_BIG)
736 regs->msr &= ~MSR_LE;
737 else if (val == PR_ENDIAN_LITTLE || val == PR_ENDIAN_PPC_LITTLE)
738 regs->msr |= MSR_LE;
739 else
740 return -EINVAL;
741
742 return 0;
743}
744
745int get_endian(struct task_struct *tsk, unsigned long adr)
746{
747 struct pt_regs *regs = tsk->thread.regs;
748 unsigned int val;
749
750 if (!cpu_has_feature(CPU_FTR_PPC_LE) &&
751 !cpu_has_feature(CPU_FTR_REAL_LE))
752 return -EINVAL;
753
754 if (regs == NULL)
755 return -EINVAL;
756
757 if (regs->msr & MSR_LE) {
758 if (cpu_has_feature(CPU_FTR_REAL_LE))
759 val = PR_ENDIAN_LITTLE;
760 else
761 val = PR_ENDIAN_PPC_LITTLE;
762 } else
763 val = PR_ENDIAN_BIG;
764
765 return put_user(val, (unsigned int __user *)adr);
766}
767
Paul Mackerrase9370ae2006-06-07 16:15:39 +1000768int set_unalign_ctl(struct task_struct *tsk, unsigned int val)
769{
770 tsk->thread.align_ctl = val;
771 return 0;
772}
773
774int get_unalign_ctl(struct task_struct *tsk, unsigned long adr)
775{
776 return put_user(tsk->thread.align_ctl, (unsigned int __user *)adr);
777}
778
Paul Mackerras06d67d52005-10-10 22:29:05 +1000779#define TRUNC_PTR(x) ((typeof(x))(((unsigned long)(x)) & 0xffffffff))
780
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000781int sys_clone(unsigned long clone_flags, unsigned long usp,
782 int __user *parent_tidp, void __user *child_threadptr,
783 int __user *child_tidp, int p6,
784 struct pt_regs *regs)
785{
786 CHECK_FULL_REGS(regs);
787 if (usp == 0)
788 usp = regs->gpr[1]; /* stack pointer for child */
Paul Mackerras06d67d52005-10-10 22:29:05 +1000789#ifdef CONFIG_PPC64
790 if (test_thread_flag(TIF_32BIT)) {
791 parent_tidp = TRUNC_PTR(parent_tidp);
792 child_tidp = TRUNC_PTR(child_tidp);
793 }
794#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000795 return do_fork(clone_flags, usp, regs, 0, parent_tidp, child_tidp);
796}
797
798int sys_fork(unsigned long p1, unsigned long p2, unsigned long p3,
799 unsigned long p4, unsigned long p5, unsigned long p6,
800 struct pt_regs *regs)
801{
802 CHECK_FULL_REGS(regs);
803 return do_fork(SIGCHLD, regs->gpr[1], regs, 0, NULL, NULL);
804}
805
806int sys_vfork(unsigned long p1, unsigned long p2, unsigned long p3,
807 unsigned long p4, unsigned long p5, unsigned long p6,
808 struct pt_regs *regs)
809{
810 CHECK_FULL_REGS(regs);
811 return do_fork(CLONE_VFORK | CLONE_VM | SIGCHLD, regs->gpr[1],
812 regs, 0, NULL, NULL);
813}
814
815int sys_execve(unsigned long a0, unsigned long a1, unsigned long a2,
816 unsigned long a3, unsigned long a4, unsigned long a5,
817 struct pt_regs *regs)
818{
819 int error;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000820 char *filename;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000821
822 filename = getname((char __user *) a0);
823 error = PTR_ERR(filename);
824 if (IS_ERR(filename))
825 goto out;
826 flush_fp_to_thread(current);
827 flush_altivec_to_thread(current);
828 flush_spe_to_thread(current);
Paul Mackerras20c8c212005-09-28 20:28:14 +1000829 error = do_execve(filename, (char __user * __user *) a1,
830 (char __user * __user *) a2, regs);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000831 if (error == 0) {
832 task_lock(current);
833 current->ptrace &= ~PT_DTRACE;
834 task_unlock(current);
835 }
836 putname(filename);
837out:
838 return error;
839}
840
Paul Mackerrasbb72c482007-02-19 11:42:42 +1100841#ifdef CONFIG_IRQSTACKS
842static inline int valid_irq_stack(unsigned long sp, struct task_struct *p,
843 unsigned long nbytes)
844{
845 unsigned long stack_page;
846 unsigned long cpu = task_cpu(p);
847
848 /*
849 * Avoid crashing if the stack has overflowed and corrupted
850 * task_cpu(p), which is in the thread_info struct.
851 */
852 if (cpu < NR_CPUS && cpu_possible(cpu)) {
853 stack_page = (unsigned long) hardirq_ctx[cpu];
854 if (sp >= stack_page + sizeof(struct thread_struct)
855 && sp <= stack_page + THREAD_SIZE - nbytes)
856 return 1;
857
858 stack_page = (unsigned long) softirq_ctx[cpu];
859 if (sp >= stack_page + sizeof(struct thread_struct)
860 && sp <= stack_page + THREAD_SIZE - nbytes)
861 return 1;
862 }
863 return 0;
864}
865
866#else
867#define valid_irq_stack(sp, p, nb) 0
868#endif /* CONFIG_IRQSTACKS */
869
Anton Blanchard2f251942006-03-27 11:46:18 +1100870int validate_sp(unsigned long sp, struct task_struct *p,
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000871 unsigned long nbytes)
872{
Al Viro0cec6fd2006-01-12 01:06:02 -0800873 unsigned long stack_page = (unsigned long)task_stack_page(p);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000874
875 if (sp >= stack_page + sizeof(struct thread_struct)
876 && sp <= stack_page + THREAD_SIZE - nbytes)
877 return 1;
878
Paul Mackerrasbb72c482007-02-19 11:42:42 +1100879 return valid_irq_stack(sp, p, nbytes);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000880}
881
Paul Mackerras06d67d52005-10-10 22:29:05 +1000882#ifdef CONFIG_PPC64
883#define MIN_STACK_FRAME 112 /* same as STACK_FRAME_OVERHEAD, in fact */
884#define FRAME_LR_SAVE 2
885#define INT_FRAME_SIZE (sizeof(struct pt_regs) + STACK_FRAME_OVERHEAD + 288)
886#define REGS_MARKER 0x7265677368657265ul
887#define FRAME_MARKER 12
888#else
889#define MIN_STACK_FRAME 16
890#define FRAME_LR_SAVE 1
891#define INT_FRAME_SIZE (sizeof(struct pt_regs) + STACK_FRAME_OVERHEAD)
892#define REGS_MARKER 0x72656773ul
893#define FRAME_MARKER 2
894#endif
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000895
Anton Blanchard2f251942006-03-27 11:46:18 +1100896EXPORT_SYMBOL(validate_sp);
897
Paul Mackerras06d67d52005-10-10 22:29:05 +1000898unsigned long get_wchan(struct task_struct *p)
899{
900 unsigned long ip, sp;
901 int count = 0;
902
903 if (!p || p == current || p->state == TASK_RUNNING)
904 return 0;
905
906 sp = p->thread.ksp;
907 if (!validate_sp(sp, p, MIN_STACK_FRAME))
908 return 0;
909
910 do {
911 sp = *(unsigned long *)sp;
912 if (!validate_sp(sp, p, MIN_STACK_FRAME))
913 return 0;
914 if (count > 0) {
915 ip = ((unsigned long *)sp)[FRAME_LR_SAVE];
916 if (!in_sched_functions(ip))
917 return ip;
918 }
919 } while (count++ < 16);
920 return 0;
921}
Paul Mackerras06d67d52005-10-10 22:29:05 +1000922
923static int kstack_depth_to_print = 64;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000924
925void show_stack(struct task_struct *tsk, unsigned long *stack)
926{
Paul Mackerras06d67d52005-10-10 22:29:05 +1000927 unsigned long sp, ip, lr, newsp;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000928 int count = 0;
Paul Mackerras06d67d52005-10-10 22:29:05 +1000929 int firstframe = 1;
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000930
931 sp = (unsigned long) stack;
932 if (tsk == NULL)
933 tsk = current;
934 if (sp == 0) {
935 if (tsk == current)
936 asm("mr %0,1" : "=r" (sp));
937 else
938 sp = tsk->thread.ksp;
939 }
940
Paul Mackerras06d67d52005-10-10 22:29:05 +1000941 lr = 0;
942 printk("Call Trace:\n");
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000943 do {
Paul Mackerras06d67d52005-10-10 22:29:05 +1000944 if (!validate_sp(sp, tsk, MIN_STACK_FRAME))
945 return;
946
947 stack = (unsigned long *) sp;
948 newsp = stack[0];
949 ip = stack[FRAME_LR_SAVE];
950 if (!firstframe || ip != lr) {
951 printk("["REG"] ["REG"] ", sp, ip);
952 print_symbol("%s", ip);
953 if (firstframe)
954 printk(" (unreliable)");
955 printk("\n");
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000956 }
Paul Mackerras06d67d52005-10-10 22:29:05 +1000957 firstframe = 0;
958
959 /*
960 * See if this is an exception frame.
961 * We look for the "regshere" marker in the current frame.
962 */
963 if (validate_sp(sp, tsk, INT_FRAME_SIZE)
964 && stack[FRAME_MARKER] == REGS_MARKER) {
965 struct pt_regs *regs = (struct pt_regs *)
966 (sp + STACK_FRAME_OVERHEAD);
967 printk("--- Exception: %lx", regs->trap);
968 print_symbol(" at %s\n", regs->nip);
969 lr = regs->link;
970 print_symbol(" LR = %s\n", lr);
971 firstframe = 1;
972 }
973
974 sp = newsp;
975 } while (count++ < kstack_depth_to_print);
Paul Mackerras14cf11a2005-09-26 16:04:21 +1000976}
Paul Mackerras06d67d52005-10-10 22:29:05 +1000977
978void dump_stack(void)
979{
980 show_stack(current, NULL);
981}
982EXPORT_SYMBOL(dump_stack);
Anton Blanchardcb2c9b22006-02-13 14:48:35 +1100983
984#ifdef CONFIG_PPC64
985void ppc64_runlatch_on(void)
986{
987 unsigned long ctrl;
988
989 if (cpu_has_feature(CPU_FTR_CTRL) && !test_thread_flag(TIF_RUNLATCH)) {
990 HMT_medium();
991
992 ctrl = mfspr(SPRN_CTRLF);
993 ctrl |= CTRL_RUNLATCH;
994 mtspr(SPRN_CTRLT, ctrl);
995
996 set_thread_flag(TIF_RUNLATCH);
997 }
998}
999
1000void ppc64_runlatch_off(void)
1001{
1002 unsigned long ctrl;
1003
1004 if (cpu_has_feature(CPU_FTR_CTRL) && test_thread_flag(TIF_RUNLATCH)) {
1005 HMT_medium();
1006
1007 clear_thread_flag(TIF_RUNLATCH);
1008
1009 ctrl = mfspr(SPRN_CTRLF);
1010 ctrl &= ~CTRL_RUNLATCH;
1011 mtspr(SPRN_CTRLT, ctrl);
1012 }
1013}
1014#endif