blob: d7b7d3da1ebbddd071f8ef9186be24206fda364a [file] [log] [blame]
Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
2 * Architecture-specific setup.
3 *
4 * Copyright (C) 1998-2003 Hewlett-Packard Co
5 * David Mosberger-Tang <davidm@hpl.hp.com>
Ashok Rajb8d8b882005-04-22 14:44:40 -07006 * 04/11/17 Ashok Raj <ashok.raj@intel.com> Added CPU Hotplug Support
Keith Owens9138d582005-11-07 11:27:13 -08007 *
8 * 2005-10-07 Keith Owens <kaos@sgi.com>
9 * Add notify_die() hooks.
Linus Torvalds1da177e2005-04-16 15:20:36 -070010 */
Linus Torvalds1da177e2005-04-16 15:20:36 -070011#include <linux/cpu.h>
12#include <linux/pm.h>
13#include <linux/elf.h>
14#include <linux/errno.h>
15#include <linux/kallsyms.h>
16#include <linux/kernel.h>
17#include <linux/mm.h>
18#include <linux/module.h>
19#include <linux/notifier.h>
20#include <linux/personality.h>
21#include <linux/sched.h>
22#include <linux/slab.h>
23#include <linux/smp_lock.h>
24#include <linux/stddef.h>
25#include <linux/thread_info.h>
26#include <linux/unistd.h>
27#include <linux/efi.h>
28#include <linux/interrupt.h>
29#include <linux/delay.h>
30
31#include <asm/cpu.h>
32#include <asm/delay.h>
33#include <asm/elf.h>
34#include <asm/ia32.h>
35#include <asm/irq.h>
Keith Owens9138d582005-11-07 11:27:13 -080036#include <asm/kdebug.h>
Hormsc2375082007-02-05 13:49:10 -080037#include <asm/kexec.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070038#include <asm/pgalloc.h>
39#include <asm/processor.h>
40#include <asm/sal.h>
41#include <asm/tlbflush.h>
42#include <asm/uaccess.h>
43#include <asm/unwind.h>
44#include <asm/user.h>
45
46#include "entry.h"
47
48#ifdef CONFIG_PERFMON
49# include <asm/perfmon.h>
50#endif
51
52#include "sigframe.h"
53
54void (*ia64_mark_idle)(int);
Zwane Mwaikambo7d5f9c02005-03-30 21:40:00 -070055static DEFINE_PER_CPU(unsigned int, cpu_idle_state);
Linus Torvalds1da177e2005-04-16 15:20:36 -070056
57unsigned long boot_option_idle_override = 0;
58EXPORT_SYMBOL(boot_option_idle_override);
59
60void
61ia64_do_show_stack (struct unw_frame_info *info, void *arg)
62{
63 unsigned long ip, sp, bsp;
64 char buf[128]; /* don't make it so big that it overflows the stack! */
65
66 printk("\nCall Trace:\n");
67 do {
68 unw_get_ip(info, &ip);
69 if (ip == 0)
70 break;
71
72 unw_get_sp(info, &sp);
73 unw_get_bsp(info, &bsp);
74 snprintf(buf, sizeof(buf),
75 " [<%016lx>] %%s\n"
76 " sp=%016lx bsp=%016lx\n",
77 ip, sp, bsp);
78 print_symbol(buf, ip);
79 } while (unw_unwind(info) >= 0);
80}
81
82void
83show_stack (struct task_struct *task, unsigned long *sp)
84{
85 if (!task)
86 unw_init_running(ia64_do_show_stack, NULL);
87 else {
88 struct unw_frame_info info;
89
90 unw_init_from_blocked_task(&info, task);
91 ia64_do_show_stack(&info, NULL);
92 }
93}
94
95void
96dump_stack (void)
97{
98 show_stack(NULL, NULL);
99}
100
101EXPORT_SYMBOL(dump_stack);
102
103void
104show_regs (struct pt_regs *regs)
105{
106 unsigned long ip = regs->cr_iip + ia64_psr(regs)->ri;
107
108 print_modules();
109 printk("\nPid: %d, CPU %d, comm: %20s\n", current->pid, smp_processor_id(), current->comm);
110 printk("psr : %016lx ifs : %016lx ip : [<%016lx>] %s\n",
111 regs->cr_ipsr, regs->cr_ifs, ip, print_tainted());
112 print_symbol("ip is at %s\n", ip);
113 printk("unat: %016lx pfs : %016lx rsc : %016lx\n",
114 regs->ar_unat, regs->ar_pfs, regs->ar_rsc);
115 printk("rnat: %016lx bsps: %016lx pr : %016lx\n",
116 regs->ar_rnat, regs->ar_bspstore, regs->pr);
117 printk("ldrs: %016lx ccv : %016lx fpsr: %016lx\n",
118 regs->loadrs, regs->ar_ccv, regs->ar_fpsr);
119 printk("csd : %016lx ssd : %016lx\n", regs->ar_csd, regs->ar_ssd);
120 printk("b0 : %016lx b6 : %016lx b7 : %016lx\n", regs->b0, regs->b6, regs->b7);
121 printk("f6 : %05lx%016lx f7 : %05lx%016lx\n",
122 regs->f6.u.bits[1], regs->f6.u.bits[0],
123 regs->f7.u.bits[1], regs->f7.u.bits[0]);
124 printk("f8 : %05lx%016lx f9 : %05lx%016lx\n",
125 regs->f8.u.bits[1], regs->f8.u.bits[0],
126 regs->f9.u.bits[1], regs->f9.u.bits[0]);
127 printk("f10 : %05lx%016lx f11 : %05lx%016lx\n",
128 regs->f10.u.bits[1], regs->f10.u.bits[0],
129 regs->f11.u.bits[1], regs->f11.u.bits[0]);
130
131 printk("r1 : %016lx r2 : %016lx r3 : %016lx\n", regs->r1, regs->r2, regs->r3);
132 printk("r8 : %016lx r9 : %016lx r10 : %016lx\n", regs->r8, regs->r9, regs->r10);
133 printk("r11 : %016lx r12 : %016lx r13 : %016lx\n", regs->r11, regs->r12, regs->r13);
134 printk("r14 : %016lx r15 : %016lx r16 : %016lx\n", regs->r14, regs->r15, regs->r16);
135 printk("r17 : %016lx r18 : %016lx r19 : %016lx\n", regs->r17, regs->r18, regs->r19);
136 printk("r20 : %016lx r21 : %016lx r22 : %016lx\n", regs->r20, regs->r21, regs->r22);
137 printk("r23 : %016lx r24 : %016lx r25 : %016lx\n", regs->r23, regs->r24, regs->r25);
138 printk("r26 : %016lx r27 : %016lx r28 : %016lx\n", regs->r26, regs->r27, regs->r28);
139 printk("r29 : %016lx r30 : %016lx r31 : %016lx\n", regs->r29, regs->r30, regs->r31);
140
141 if (user_mode(regs)) {
142 /* print the stacked registers */
143 unsigned long val, *bsp, ndirty;
144 int i, sof, is_nat = 0;
145
146 sof = regs->cr_ifs & 0x7f; /* size of frame */
147 ndirty = (regs->loadrs >> 19);
148 bsp = ia64_rse_skip_regs((unsigned long *) regs->ar_bspstore, ndirty);
149 for (i = 0; i < sof; ++i) {
150 get_user(val, (unsigned long __user *) ia64_rse_skip_regs(bsp, i));
151 printk("r%-3u:%c%016lx%s", 32 + i, is_nat ? '*' : ' ', val,
152 ((i == sof - 1) || (i % 3) == 2) ? "\n" : " ");
153 }
154 } else
155 show_stack(NULL, NULL);
156}
157
158void
Alexey Dobriyan4a177cb2007-01-23 19:03:17 +0300159do_notify_resume_user (sigset_t *unused, struct sigscratch *scr, long in_syscall)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700160{
161 if (fsys_mode(current, &scr->pt)) {
162 /* defer signal-handling etc. until we return to privilege-level 0. */
163 if (!ia64_psr(&scr->pt)->lp)
164 ia64_psr(&scr->pt)->lp = 1;
165 return;
166 }
167
168#ifdef CONFIG_PERFMON
169 if (current->thread.pfm_needs_checking)
170 pfm_handle_work();
171#endif
172
173 /* deal with pending signal delivery */
Alexey Dobriyan4a177cb2007-01-23 19:03:17 +0300174 if (test_thread_flag(TIF_SIGPENDING)||test_thread_flag(TIF_RESTORE_SIGMASK))
175 ia64_do_signal(scr, in_syscall);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700176}
177
Stephane Eranian8df5a502005-04-11 13:45:00 -0700178static int pal_halt = 1;
179static int can_do_pal_halt = 1;
180
Linus Torvalds1da177e2005-04-16 15:20:36 -0700181static int __init nohalt_setup(char * str)
182{
Ken Chenfb573852005-08-08 15:25:00 -0700183 pal_halt = can_do_pal_halt = 0;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700184 return 1;
185}
186__setup("nohalt", nohalt_setup);
187
Tony Lucka71f62e2005-05-03 16:21:45 -0700188void
Stephane Eranian8df5a502005-04-11 13:45:00 -0700189update_pal_halt_status(int status)
190{
191 can_do_pal_halt = pal_halt && status;
192}
193
Linus Torvalds1da177e2005-04-16 15:20:36 -0700194/*
195 * We use this if we don't have any better idle routine..
196 */
197void
198default_idle (void)
199{
Venkatesh Pallipadi6c4fa562005-04-18 23:06:47 -0400200 local_irq_enable();
Nick Piggin64c7c8f2005-11-08 21:39:04 -0800201 while (!need_resched()) {
Chen, Kenneth W1e185b92005-11-15 14:37:05 -0800202 if (can_do_pal_halt)
203 safe_halt();
204 else
Linus Torvalds1da177e2005-04-16 15:20:36 -0700205 cpu_relax();
Nick Piggin64c7c8f2005-11-08 21:39:04 -0800206 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700207}
208
209#ifdef CONFIG_HOTPLUG_CPU
210/* We don't actually take CPU down, just spin without interrupts. */
211static inline void play_dead(void)
212{
213 extern void ia64_cpu_local_tick (void);
Ashok Rajb8d8b882005-04-22 14:44:40 -0700214 unsigned int this_cpu = smp_processor_id();
215
Linus Torvalds1da177e2005-04-16 15:20:36 -0700216 /* Ack it */
217 __get_cpu_var(cpu_state) = CPU_DEAD;
218
Linus Torvalds1da177e2005-04-16 15:20:36 -0700219 max_xtp();
220 local_irq_disable();
Ashok Rajb8d8b882005-04-22 14:44:40 -0700221 idle_task_exit();
222 ia64_jump_to_sal(&sal_boot_rendez_state[this_cpu]);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700223 /*
Ashok Rajb8d8b882005-04-22 14:44:40 -0700224 * The above is a point of no-return, the processor is
225 * expected to be in SAL loop now.
Linus Torvalds1da177e2005-04-16 15:20:36 -0700226 */
Ashok Rajb8d8b882005-04-22 14:44:40 -0700227 BUG();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700228}
229#else
230static inline void play_dead(void)
231{
232 BUG();
233}
234#endif /* CONFIG_HOTPLUG_CPU */
235
Linus Torvalds1da177e2005-04-16 15:20:36 -0700236void cpu_idle_wait(void)
237{
Zwane Mwaikambo7d5f9c02005-03-30 21:40:00 -0700238 unsigned int cpu, this_cpu = get_cpu();
239 cpumask_t map;
Siddha, Suresh Bbb8416b2007-05-08 09:22:47 -0700240 cpumask_t tmp = current->cpus_allowed;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700241
Zwane Mwaikambo7d5f9c02005-03-30 21:40:00 -0700242 set_cpus_allowed(current, cpumask_of_cpu(this_cpu));
243 put_cpu();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700244
Zwane Mwaikambo7d5f9c02005-03-30 21:40:00 -0700245 cpus_clear(map);
246 for_each_online_cpu(cpu) {
247 per_cpu(cpu_idle_state, cpu) = 1;
248 cpu_set(cpu, map);
249 }
250
251 __get_cpu_var(cpu_idle_state) = 0;
252
253 wmb();
254 do {
255 ssleep(1);
256 for_each_online_cpu(cpu) {
257 if (cpu_isset(cpu, map) && !per_cpu(cpu_idle_state, cpu))
258 cpu_clear(cpu, map);
259 }
260 cpus_and(map, map, cpu_online_map);
261 } while (!cpus_empty(map));
Siddha, Suresh Bbb8416b2007-05-08 09:22:47 -0700262 set_cpus_allowed(current, tmp);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700263}
264EXPORT_SYMBOL_GPL(cpu_idle_wait);
265
266void __attribute__((noreturn))
267cpu_idle (void)
268{
269 void (*mark_idle)(int) = ia64_mark_idle;
Nick Piggin64c7c8f2005-11-08 21:39:04 -0800270 int cpu = smp_processor_id();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700271
272 /* endless idle loop with no priority at all */
273 while (1) {
Ingo Molnar0888f062006-12-22 01:11:56 -0800274 if (can_do_pal_halt) {
Andi Kleen495ab9c2006-06-26 13:59:11 +0200275 current_thread_info()->status &= ~TS_POLLING;
Ingo Molnar0888f062006-12-22 01:11:56 -0800276 /*
277 * TS_POLLING-cleared state must be visible before we
278 * test NEED_RESCHED:
279 */
280 smp_mb();
281 } else {
Andi Kleen495ab9c2006-06-26 13:59:11 +0200282 current_thread_info()->status |= TS_POLLING;
Ingo Molnar0888f062006-12-22 01:11:56 -0800283 }
Chen, Kenneth W1e185b92005-11-15 14:37:05 -0800284
Nick Piggin64c7c8f2005-11-08 21:39:04 -0800285 if (!need_resched()) {
286 void (*idle)(void);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700287#ifdef CONFIG_SMP
Linus Torvalds1da177e2005-04-16 15:20:36 -0700288 min_xtp();
289#endif
Zwane Mwaikambo7d5f9c02005-03-30 21:40:00 -0700290 if (__get_cpu_var(cpu_idle_state))
291 __get_cpu_var(cpu_idle_state) = 0;
292
293 rmb();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700294 if (mark_idle)
295 (*mark_idle)(1);
296
Linus Torvalds1da177e2005-04-16 15:20:36 -0700297 idle = pm_idle;
298 if (!idle)
299 idle = default_idle;
300 (*idle)();
Nick Piggin64c7c8f2005-11-08 21:39:04 -0800301 if (mark_idle)
302 (*mark_idle)(0);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700303#ifdef CONFIG_SMP
Nick Piggin64c7c8f2005-11-08 21:39:04 -0800304 normal_xtp();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700305#endif
Nick Piggin64c7c8f2005-11-08 21:39:04 -0800306 }
Nick Piggin5bfb5d62005-11-08 21:39:01 -0800307 preempt_enable_no_resched();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700308 schedule();
Nick Piggin5bfb5d62005-11-08 21:39:01 -0800309 preempt_disable();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700310 check_pgt_cache();
Nick Piggin64c7c8f2005-11-08 21:39:04 -0800311 if (cpu_is_offline(cpu))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700312 play_dead();
313 }
314}
315
316void
317ia64_save_extra (struct task_struct *task)
318{
319#ifdef CONFIG_PERFMON
320 unsigned long info;
321#endif
322
323 if ((task->thread.flags & IA64_THREAD_DBG_VALID) != 0)
324 ia64_save_debug_regs(&task->thread.dbr[0]);
325
326#ifdef CONFIG_PERFMON
327 if ((task->thread.flags & IA64_THREAD_PM_VALID) != 0)
328 pfm_save_regs(task);
329
330 info = __get_cpu_var(pfm_syst_info);
331 if (info & PFM_CPUINFO_SYST_WIDE)
332 pfm_syst_wide_update_task(task, info, 0);
333#endif
334
335#ifdef CONFIG_IA32_SUPPORT
Al Viro64505782006-01-12 01:06:06 -0800336 if (IS_IA32_PROCESS(task_pt_regs(task)))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700337 ia32_save_state(task);
338#endif
339}
340
341void
342ia64_load_extra (struct task_struct *task)
343{
344#ifdef CONFIG_PERFMON
345 unsigned long info;
346#endif
347
348 if ((task->thread.flags & IA64_THREAD_DBG_VALID) != 0)
349 ia64_load_debug_regs(&task->thread.dbr[0]);
350
351#ifdef CONFIG_PERFMON
352 if ((task->thread.flags & IA64_THREAD_PM_VALID) != 0)
353 pfm_load_regs(task);
354
355 info = __get_cpu_var(pfm_syst_info);
356 if (info & PFM_CPUINFO_SYST_WIDE)
357 pfm_syst_wide_update_task(task, info, 1);
358#endif
359
360#ifdef CONFIG_IA32_SUPPORT
Al Viro64505782006-01-12 01:06:06 -0800361 if (IS_IA32_PROCESS(task_pt_regs(task)))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700362 ia32_load_state(task);
363#endif
364}
365
366/*
367 * Copy the state of an ia-64 thread.
368 *
369 * We get here through the following call chain:
370 *
371 * from user-level: from kernel:
372 *
373 * <clone syscall> <some kernel call frames>
374 * sys_clone :
375 * do_fork do_fork
376 * copy_thread copy_thread
377 *
378 * This means that the stack layout is as follows:
379 *
380 * +---------------------+ (highest addr)
381 * | struct pt_regs |
382 * +---------------------+
383 * | struct switch_stack |
384 * +---------------------+
385 * | |
386 * | memory stack |
387 * | | <-- sp (lowest addr)
388 * +---------------------+
389 *
390 * Observe that we copy the unat values that are in pt_regs and switch_stack. Spilling an
391 * integer to address X causes bit N in ar.unat to be set to the NaT bit of the register,
392 * with N=(X & 0x1ff)/8. Thus, copying the unat value preserves the NaT bits ONLY if the
393 * pt_regs structure in the parent is congruent to that of the child, modulo 512. Since
394 * the stack is page aligned and the page size is at least 4KB, this is always the case,
395 * so there is nothing to worry about.
396 */
397int
398copy_thread (int nr, unsigned long clone_flags,
399 unsigned long user_stack_base, unsigned long user_stack_size,
400 struct task_struct *p, struct pt_regs *regs)
401{
402 extern char ia64_ret_from_clone, ia32_ret_from_clone;
403 struct switch_stack *child_stack, *stack;
404 unsigned long rbs, child_rbs, rbs_size;
405 struct pt_regs *child_ptregs;
406 int retval = 0;
407
408#ifdef CONFIG_SMP
409 /*
410 * For SMP idle threads, fork_by_hand() calls do_fork with
411 * NULL regs.
412 */
413 if (!regs)
414 return 0;
415#endif
416
417 stack = ((struct switch_stack *) regs) - 1;
418
419 child_ptregs = (struct pt_regs *) ((unsigned long) p + IA64_STK_OFFSET) - 1;
420 child_stack = (struct switch_stack *) child_ptregs - 1;
421
422 /* copy parent's switch_stack & pt_regs to child: */
423 memcpy(child_stack, stack, sizeof(*child_ptregs) + sizeof(*child_stack));
424
425 rbs = (unsigned long) current + IA64_RBS_OFFSET;
426 child_rbs = (unsigned long) p + IA64_RBS_OFFSET;
427 rbs_size = stack->ar_bspstore - rbs;
428
429 /* copy the parent's register backing store to the child: */
430 memcpy((void *) child_rbs, (void *) rbs, rbs_size);
431
432 if (likely(user_mode(child_ptregs))) {
433 if ((clone_flags & CLONE_SETTLS) && !IS_IA32_PROCESS(regs))
434 child_ptregs->r13 = regs->r16; /* see sys_clone2() in entry.S */
435 if (user_stack_base) {
436 child_ptregs->r12 = user_stack_base + user_stack_size - 16;
437 child_ptregs->ar_bspstore = user_stack_base;
438 child_ptregs->ar_rnat = 0;
439 child_ptregs->loadrs = 0;
440 }
441 } else {
442 /*
443 * Note: we simply preserve the relative position of
444 * the stack pointer here. There is no need to
445 * allocate a scratch area here, since that will have
446 * been taken care of by the caller of sys_clone()
447 * already.
448 */
449 child_ptregs->r12 = (unsigned long) child_ptregs - 16; /* kernel sp */
450 child_ptregs->r13 = (unsigned long) p; /* set `current' pointer */
451 }
452 child_stack->ar_bspstore = child_rbs + rbs_size;
453 if (IS_IA32_PROCESS(regs))
454 child_stack->b0 = (unsigned long) &ia32_ret_from_clone;
455 else
456 child_stack->b0 = (unsigned long) &ia64_ret_from_clone;
457
458 /* copy parts of thread_struct: */
459 p->thread.ksp = (unsigned long) child_stack - 16;
460
461 /* stop some PSR bits from being inherited.
462 * the psr.up/psr.pp bits must be cleared on fork but inherited on execve()
463 * therefore we must specify them explicitly here and not include them in
464 * IA64_PSR_BITS_TO_CLEAR.
465 */
466 child_ptregs->cr_ipsr = ((child_ptregs->cr_ipsr | IA64_PSR_BITS_TO_SET)
467 & ~(IA64_PSR_BITS_TO_CLEAR | IA64_PSR_PP | IA64_PSR_UP));
468
469 /*
470 * NOTE: The calling convention considers all floating point
471 * registers in the high partition (fph) to be scratch. Since
472 * the only way to get to this point is through a system call,
473 * we know that the values in fph are all dead. Hence, there
474 * is no need to inherit the fph state from the parent to the
475 * child and all we have to do is to make sure that
476 * IA64_THREAD_FPH_VALID is cleared in the child.
477 *
478 * XXX We could push this optimization a bit further by
479 * clearing IA64_THREAD_FPH_VALID on ANY system call.
480 * However, it's not clear this is worth doing. Also, it
481 * would be a slight deviation from the normal Linux system
482 * call behavior where scratch registers are preserved across
483 * system calls (unless used by the system call itself).
484 */
485# define THREAD_FLAGS_TO_CLEAR (IA64_THREAD_FPH_VALID | IA64_THREAD_DBG_VALID \
486 | IA64_THREAD_PM_VALID)
487# define THREAD_FLAGS_TO_SET 0
488 p->thread.flags = ((current->thread.flags & ~THREAD_FLAGS_TO_CLEAR)
489 | THREAD_FLAGS_TO_SET);
490 ia64_drop_fpu(p); /* don't pick up stale state from a CPU's fph */
491#ifdef CONFIG_IA32_SUPPORT
492 /*
493 * If we're cloning an IA32 task then save the IA32 extra
494 * state from the current task to the new task
495 */
Al Viro64505782006-01-12 01:06:06 -0800496 if (IS_IA32_PROCESS(task_pt_regs(current))) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700497 ia32_save_state(p);
498 if (clone_flags & CLONE_SETTLS)
499 retval = ia32_clone_tls(p, child_ptregs);
500
501 /* Copy partially mapped page list */
502 if (!retval)
503 retval = ia32_copy_partial_page_list(p, clone_flags);
504 }
505#endif
506
507#ifdef CONFIG_PERFMON
508 if (current->thread.pfm_context)
509 pfm_inherit(p, child_ptregs);
510#endif
511 return retval;
512}
513
514static void
515do_copy_task_regs (struct task_struct *task, struct unw_frame_info *info, void *arg)
516{
517 unsigned long mask, sp, nat_bits = 0, ip, ar_rnat, urbs_end, cfm;
518 elf_greg_t *dst = arg;
519 struct pt_regs *pt;
520 char nat;
521 int i;
522
523 memset(dst, 0, sizeof(elf_gregset_t)); /* don't leak any kernel bits to user-level */
524
525 if (unw_unwind_to_user(info) < 0)
526 return;
527
528 unw_get_sp(info, &sp);
529 pt = (struct pt_regs *) (sp + 16);
530
531 urbs_end = ia64_get_user_rbs_end(task, pt, &cfm);
532
533 if (ia64_sync_user_rbs(task, info->sw, pt->ar_bspstore, urbs_end) < 0)
534 return;
535
536 ia64_peek(task, info->sw, urbs_end, (long) ia64_rse_rnat_addr((long *) urbs_end),
537 &ar_rnat);
538
539 /*
540 * coredump format:
541 * r0-r31
542 * NaT bits (for r0-r31; bit N == 1 iff rN is a NaT)
543 * predicate registers (p0-p63)
544 * b0-b7
545 * ip cfm user-mask
546 * ar.rsc ar.bsp ar.bspstore ar.rnat
547 * ar.ccv ar.unat ar.fpsr ar.pfs ar.lc ar.ec
548 */
549
550 /* r0 is zero */
551 for (i = 1, mask = (1UL << i); i < 32; ++i) {
552 unw_get_gr(info, i, &dst[i], &nat);
553 if (nat)
554 nat_bits |= mask;
555 mask <<= 1;
556 }
557 dst[32] = nat_bits;
558 unw_get_pr(info, &dst[33]);
559
560 for (i = 0; i < 8; ++i)
561 unw_get_br(info, i, &dst[34 + i]);
562
563 unw_get_rp(info, &ip);
564 dst[42] = ip + ia64_psr(pt)->ri;
565 dst[43] = cfm;
566 dst[44] = pt->cr_ipsr & IA64_PSR_UM;
567
568 unw_get_ar(info, UNW_AR_RSC, &dst[45]);
569 /*
570 * For bsp and bspstore, unw_get_ar() would return the kernel
571 * addresses, but we need the user-level addresses instead:
572 */
573 dst[46] = urbs_end; /* note: by convention PT_AR_BSP points to the end of the urbs! */
574 dst[47] = pt->ar_bspstore;
575 dst[48] = ar_rnat;
576 unw_get_ar(info, UNW_AR_CCV, &dst[49]);
577 unw_get_ar(info, UNW_AR_UNAT, &dst[50]);
578 unw_get_ar(info, UNW_AR_FPSR, &dst[51]);
579 dst[52] = pt->ar_pfs; /* UNW_AR_PFS is == to pt->cr_ifs for interrupt frames */
580 unw_get_ar(info, UNW_AR_LC, &dst[53]);
581 unw_get_ar(info, UNW_AR_EC, &dst[54]);
582 unw_get_ar(info, UNW_AR_CSD, &dst[55]);
583 unw_get_ar(info, UNW_AR_SSD, &dst[56]);
584}
585
586void
587do_dump_task_fpu (struct task_struct *task, struct unw_frame_info *info, void *arg)
588{
589 elf_fpreg_t *dst = arg;
590 int i;
591
592 memset(dst, 0, sizeof(elf_fpregset_t)); /* don't leak any "random" bits */
593
594 if (unw_unwind_to_user(info) < 0)
595 return;
596
597 /* f0 is 0.0, f1 is 1.0 */
598
599 for (i = 2; i < 32; ++i)
600 unw_get_fr(info, i, dst + i);
601
602 ia64_flush_fph(task);
603 if ((task->thread.flags & IA64_THREAD_FPH_VALID) != 0)
604 memcpy(dst + 32, task->thread.fph, 96*16);
605}
606
607void
608do_copy_regs (struct unw_frame_info *info, void *arg)
609{
610 do_copy_task_regs(current, info, arg);
611}
612
613void
614do_dump_fpu (struct unw_frame_info *info, void *arg)
615{
616 do_dump_task_fpu(current, info, arg);
617}
618
619int
620dump_task_regs(struct task_struct *task, elf_gregset_t *regs)
621{
622 struct unw_frame_info tcore_info;
623
624 if (current == task) {
625 unw_init_running(do_copy_regs, regs);
626 } else {
627 memset(&tcore_info, 0, sizeof(tcore_info));
628 unw_init_from_blocked_task(&tcore_info, task);
629 do_copy_task_regs(task, &tcore_info, regs);
630 }
631 return 1;
632}
633
634void
635ia64_elf_core_copy_regs (struct pt_regs *pt, elf_gregset_t dst)
636{
637 unw_init_running(do_copy_regs, dst);
638}
639
640int
641dump_task_fpu (struct task_struct *task, elf_fpregset_t *dst)
642{
643 struct unw_frame_info tcore_info;
644
645 if (current == task) {
646 unw_init_running(do_dump_fpu, dst);
647 } else {
648 memset(&tcore_info, 0, sizeof(tcore_info));
649 unw_init_from_blocked_task(&tcore_info, task);
650 do_dump_task_fpu(task, &tcore_info, dst);
651 }
652 return 1;
653}
654
655int
656dump_fpu (struct pt_regs *pt, elf_fpregset_t dst)
657{
658 unw_init_running(do_dump_fpu, dst);
659 return 1; /* f0-f31 are always valid so we always return 1 */
660}
661
662long
663sys_execve (char __user *filename, char __user * __user *argv, char __user * __user *envp,
664 struct pt_regs *regs)
665{
666 char *fname;
667 int error;
668
669 fname = getname(filename);
670 error = PTR_ERR(fname);
671 if (IS_ERR(fname))
672 goto out;
673 error = do_execve(fname, argv, envp, regs);
674 putname(fname);
675out:
676 return error;
677}
678
679pid_t
680kernel_thread (int (*fn)(void *), void *arg, unsigned long flags)
681{
682 extern void start_kernel_thread (void);
683 unsigned long *helper_fptr = (unsigned long *) &start_kernel_thread;
684 struct {
685 struct switch_stack sw;
686 struct pt_regs pt;
687 } regs;
688
689 memset(&regs, 0, sizeof(regs));
690 regs.pt.cr_iip = helper_fptr[0]; /* set entry point (IP) */
691 regs.pt.r1 = helper_fptr[1]; /* set GP */
692 regs.pt.r9 = (unsigned long) fn; /* 1st argument */
693 regs.pt.r11 = (unsigned long) arg; /* 2nd argument */
694 /* Preserve PSR bits, except for bits 32-34 and 37-45, which we can't read. */
695 regs.pt.cr_ipsr = ia64_getreg(_IA64_REG_PSR) | IA64_PSR_BN;
696 regs.pt.cr_ifs = 1UL << 63; /* mark as valid, empty frame */
697 regs.sw.ar_fpsr = regs.pt.ar_fpsr = ia64_getreg(_IA64_REG_AR_FPSR);
698 regs.sw.ar_bspstore = (unsigned long) current + IA64_RBS_OFFSET;
699 regs.sw.pr = (1 << PRED_KERNEL_STACK);
700 return do_fork(flags | CLONE_VM | CLONE_UNTRACED, 0, &regs.pt, 0, NULL, NULL);
701}
702EXPORT_SYMBOL(kernel_thread);
703
704/* This gets called from kernel_thread() via ia64_invoke_thread_helper(). */
705int
706kernel_thread_helper (int (*fn)(void *), void *arg)
707{
708#ifdef CONFIG_IA32_SUPPORT
Al Viro64505782006-01-12 01:06:06 -0800709 if (IS_IA32_PROCESS(task_pt_regs(current))) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700710 /* A kernel thread is always a 64-bit process. */
711 current->thread.map_base = DEFAULT_MAP_BASE;
712 current->thread.task_size = DEFAULT_TASK_SIZE;
713 ia64_set_kr(IA64_KR_IO_BASE, current->thread.old_iob);
714 ia64_set_kr(IA64_KR_TSSD, current->thread.old_k1);
715 }
716#endif
717 return (*fn)(arg);
718}
719
720/*
721 * Flush thread state. This is called when a thread does an execve().
722 */
723void
724flush_thread (void)
725{
726 /* drop floating-point and debug-register state if it exists: */
727 current->thread.flags &= ~(IA64_THREAD_FPH_VALID | IA64_THREAD_DBG_VALID);
728 ia64_drop_fpu(current);
Robin Holt27af4cf2005-12-14 06:58:05 -0600729#ifdef CONFIG_IA32_SUPPORT
Al Viro64505782006-01-12 01:06:06 -0800730 if (IS_IA32_PROCESS(task_pt_regs(current))) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700731 ia32_drop_partial_page_list(current);
Robin Holtbd1d6e22005-12-05 20:02:31 -0600732 current->thread.task_size = IA32_PAGE_OFFSET;
733 set_fs(USER_DS);
734 }
Robin Holt27af4cf2005-12-14 06:58:05 -0600735#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -0700736}
737
738/*
739 * Clean up state associated with current thread. This is called when
740 * the thread calls exit().
741 */
742void
743exit_thread (void)
744{
Rusty Lynch9508dbf2005-06-27 15:17:12 -0700745
Linus Torvalds1da177e2005-04-16 15:20:36 -0700746 ia64_drop_fpu(current);
747#ifdef CONFIG_PERFMON
748 /* if needed, stop monitoring and flush state to perfmon context */
749 if (current->thread.pfm_context)
750 pfm_exit_thread(current);
751
752 /* free debug register resources */
753 if (current->thread.flags & IA64_THREAD_DBG_VALID)
754 pfm_release_debug_registers(current);
755#endif
Al Viro64505782006-01-12 01:06:06 -0800756 if (IS_IA32_PROCESS(task_pt_regs(current)))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700757 ia32_drop_partial_page_list(current);
758}
759
760unsigned long
761get_wchan (struct task_struct *p)
762{
763 struct unw_frame_info info;
764 unsigned long ip;
765 int count = 0;
766
767 /*
768 * Note: p may not be a blocked task (it could be current or
769 * another process running on some other CPU. Rather than
770 * trying to determine if p is really blocked, we just assume
771 * it's blocked and rely on the unwind routines to fail
772 * gracefully if the process wasn't really blocked after all.
773 * --davidm 99/12/15
774 */
775 unw_init_from_blocked_task(&info, p);
776 do {
777 if (unw_unwind(&info) < 0)
778 return 0;
779 unw_get_ip(&info, &ip);
780 if (!in_sched_functions(ip))
781 return ip;
782 } while (count++ < 16);
783 return 0;
784}
785
786void
787cpu_halt (void)
788{
789 pal_power_mgmt_info_u_t power_info[8];
790 unsigned long min_power;
791 int i, min_power_state;
792
793 if (ia64_pal_halt_info(power_info) != 0)
794 return;
795
796 min_power_state = 0;
797 min_power = power_info[0].pal_power_mgmt_info_s.power_consumption;
798 for (i = 1; i < 8; ++i)
799 if (power_info[i].pal_power_mgmt_info_s.im
800 && power_info[i].pal_power_mgmt_info_s.power_consumption < min_power) {
801 min_power = power_info[i].pal_power_mgmt_info_s.power_consumption;
802 min_power_state = i;
803 }
804
805 while (1)
806 ia64_pal_halt(min_power_state);
807}
808
Hormsc2375082007-02-05 13:49:10 -0800809void machine_shutdown(void)
810{
811#ifdef CONFIG_HOTPLUG_CPU
812 int cpu;
813
814 for_each_online_cpu(cpu) {
815 if (cpu != smp_processor_id())
816 cpu_down(cpu);
817 }
818#endif
819#ifdef CONFIG_KEXEC
820 kexec_disable_iosapic();
821#endif
822}
823
Linus Torvalds1da177e2005-04-16 15:20:36 -0700824void
825machine_restart (char *restart_cmd)
826{
Keith Owens9138d582005-11-07 11:27:13 -0800827 (void) notify_die(DIE_MACHINE_RESTART, restart_cmd, NULL, 0, 0, 0);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700828 (*efi.reset_system)(EFI_RESET_WARM, 0, 0, NULL);
829}
830
Linus Torvalds1da177e2005-04-16 15:20:36 -0700831void
832machine_halt (void)
833{
Keith Owens9138d582005-11-07 11:27:13 -0800834 (void) notify_die(DIE_MACHINE_HALT, "", NULL, 0, 0, 0);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700835 cpu_halt();
836}
837
Linus Torvalds1da177e2005-04-16 15:20:36 -0700838void
839machine_power_off (void)
840{
841 if (pm_power_off)
842 pm_power_off();
843 machine_halt();
844}
845