blob: d46cbe46b7aba845ab1a2261a569f0178ec954b0 [file] [log] [blame]
Suresh Siddha61c46282008-03-10 15:28:04 -07001#include <linux/errno.h>
2#include <linux/kernel.h>
3#include <linux/mm.h>
4#include <linux/smp.h>
Jeremy Fitzhardinge389d1fb2009-02-27 13:25:28 -08005#include <linux/prctl.h>
Suresh Siddha61c46282008-03-10 15:28:04 -07006#include <linux/slab.h>
7#include <linux/sched.h>
Peter Zijlstra7f424a82008-04-25 17:39:01 +02008#include <linux/module.h>
9#include <linux/pm.h>
Thomas Gleixneraa276e12008-06-09 19:15:00 +020010#include <linux/clockchips.h>
Amerigo Wang9d62dcd2009-05-11 22:05:28 -040011#include <linux/random.h>
Avi Kivity7c68af62009-09-19 09:40:22 +030012#include <linux/user-return-notifier.h>
Andy Isaacson814e2c82009-12-08 00:29:42 -080013#include <linux/dmi.h>
14#include <linux/utsname.h>
Arjan van de Ven61613522009-09-17 16:11:28 +020015#include <trace/events/power.h>
Frederic Weisbecker24f1e32c2009-09-09 19:22:48 +020016#include <linux/hw_breakpoint.h>
Borislav Petkov93789b32011-01-20 15:42:52 +010017#include <asm/cpu.h>
Zhao Yakuic1e3b372008-06-24 17:58:53 +080018#include <asm/system.h>
Ivan Vecerad3ec5ca2008-11-11 14:33:44 +010019#include <asm/apic.h>
Jaswinder Singh Rajput2c1b2842009-04-11 00:03:10 +053020#include <asm/syscalls.h>
Jeremy Fitzhardinge389d1fb2009-02-27 13:25:28 -080021#include <asm/idle.h>
22#include <asm/uaccess.h>
23#include <asm/i387.h>
K.Prasad66cb5912009-06-01 23:44:55 +053024#include <asm/debugreg.h>
Zhao Yakuic1e3b372008-06-24 17:58:53 +080025
Suresh Siddhaaa283f42008-03-10 15:28:05 -070026struct kmem_cache *task_xstate_cachep;
Sheng Yang5ee481d2010-05-17 17:22:23 +080027EXPORT_SYMBOL_GPL(task_xstate_cachep);
Suresh Siddha61c46282008-03-10 15:28:04 -070028
29int arch_dup_task_struct(struct task_struct *dst, struct task_struct *src)
30{
Avi Kivity86603282010-05-06 11:45:46 +030031 int ret;
32
Suresh Siddha61c46282008-03-10 15:28:04 -070033 *dst = *src;
Avi Kivity86603282010-05-06 11:45:46 +030034 if (fpu_allocated(&src->thread.fpu)) {
35 memset(&dst->thread.fpu, 0, sizeof(dst->thread.fpu));
36 ret = fpu_alloc(&dst->thread.fpu);
37 if (ret)
38 return ret;
39 fpu_copy(&dst->thread.fpu, &src->thread.fpu);
Suresh Siddhaaa283f42008-03-10 15:28:05 -070040 }
Suresh Siddha61c46282008-03-10 15:28:04 -070041 return 0;
42}
43
Suresh Siddhaaa283f42008-03-10 15:28:05 -070044void free_thread_xstate(struct task_struct *tsk)
45{
Avi Kivity86603282010-05-06 11:45:46 +030046 fpu_free(&tsk->thread.fpu);
Suresh Siddhaaa283f42008-03-10 15:28:05 -070047}
48
Suresh Siddha61c46282008-03-10 15:28:04 -070049void free_thread_info(struct thread_info *ti)
50{
Suresh Siddhaaa283f42008-03-10 15:28:05 -070051 free_thread_xstate(ti->task);
Suresh Siddha1679f272008-04-16 10:27:53 +020052 free_pages((unsigned long)ti, get_order(THREAD_SIZE));
Suresh Siddha61c46282008-03-10 15:28:04 -070053}
54
55void arch_task_cache_init(void)
56{
57 task_xstate_cachep =
58 kmem_cache_create("task_xstate", xstate_size,
59 __alignof__(union thread_xstate),
Vegard Nossum2dff4402008-05-31 15:56:17 +020060 SLAB_PANIC | SLAB_NOTRACK, NULL);
Suresh Siddha61c46282008-03-10 15:28:04 -070061}
Peter Zijlstra7f424a82008-04-25 17:39:01 +020062
Thomas Gleixner00dba562008-06-09 18:35:28 +020063/*
Jeremy Fitzhardinge389d1fb2009-02-27 13:25:28 -080064 * Free current thread data structures etc..
65 */
66void exit_thread(void)
67{
68 struct task_struct *me = current;
69 struct thread_struct *t = &me->thread;
Thomas Gleixner250981e2009-03-16 13:07:21 +010070 unsigned long *bp = t->io_bitmap_ptr;
Jeremy Fitzhardinge389d1fb2009-02-27 13:25:28 -080071
Thomas Gleixner250981e2009-03-16 13:07:21 +010072 if (bp) {
Jeremy Fitzhardinge389d1fb2009-02-27 13:25:28 -080073 struct tss_struct *tss = &per_cpu(init_tss, get_cpu());
74
Jeremy Fitzhardinge389d1fb2009-02-27 13:25:28 -080075 t->io_bitmap_ptr = NULL;
76 clear_thread_flag(TIF_IO_BITMAP);
77 /*
78 * Careful, clear this in the TSS too:
79 */
80 memset(tss->io_bitmap, 0xff, t->io_bitmap_max);
81 t->io_bitmap_max = 0;
82 put_cpu();
Thomas Gleixner250981e2009-03-16 13:07:21 +010083 kfree(bp);
Jeremy Fitzhardinge389d1fb2009-02-27 13:25:28 -080084 }
Jeremy Fitzhardinge389d1fb2009-02-27 13:25:28 -080085}
86
Brian Gerst3bef4442010-01-13 10:45:55 -050087void show_regs(struct pt_regs *regs)
88{
89 show_registers(regs);
Namhyung Kime8e999c2011-03-18 11:40:06 +090090 show_trace(NULL, regs, (unsigned long *)kernel_stack_pointer(regs), 0);
Brian Gerst3bef4442010-01-13 10:45:55 -050091}
92
Andy Isaacson814e2c82009-12-08 00:29:42 -080093void show_regs_common(void)
94{
Naga Chumbalkar84e383b2011-02-14 22:47:17 +000095 const char *vendor, *product, *board;
Andy Isaacson814e2c82009-12-08 00:29:42 -080096
Naga Chumbalkar84e383b2011-02-14 22:47:17 +000097 vendor = dmi_get_system_info(DMI_SYS_VENDOR);
98 if (!vendor)
99 vendor = "";
Andy Isaacsona1884b82009-12-08 00:30:21 -0800100 product = dmi_get_system_info(DMI_PRODUCT_NAME);
101 if (!product)
102 product = "";
Andy Isaacson814e2c82009-12-08 00:29:42 -0800103
Naga Chumbalkar84e383b2011-02-14 22:47:17 +0000104 /* Board Name is optional */
105 board = dmi_get_system_info(DMI_BOARD_NAME);
106
Pekka Enbergd015a092009-12-28 10:26:59 +0200107 printk(KERN_CONT "\n");
Naga Chumbalkar84e383b2011-02-14 22:47:17 +0000108 printk(KERN_DEFAULT "Pid: %d, comm: %.20s %s %s %.*s",
Andy Isaacson814e2c82009-12-08 00:29:42 -0800109 current->pid, current->comm, print_tainted(),
110 init_utsname()->release,
111 (int)strcspn(init_utsname()->version, " "),
Naga Chumbalkar84e383b2011-02-14 22:47:17 +0000112 init_utsname()->version);
Jan Beulichfd8fa4d32011-02-17 15:56:58 +0000113 printk(KERN_CONT " %s %s", vendor, product);
114 if (board)
115 printk(KERN_CONT "/%s", board);
Naga Chumbalkar84e383b2011-02-14 22:47:17 +0000116 printk(KERN_CONT "\n");
Andy Isaacson814e2c82009-12-08 00:29:42 -0800117}
118
Jeremy Fitzhardinge389d1fb2009-02-27 13:25:28 -0800119void flush_thread(void)
120{
121 struct task_struct *tsk = current;
122
Frederic Weisbecker24f1e32c2009-09-09 19:22:48 +0200123 flush_ptrace_hw_breakpoint(tsk);
Jeremy Fitzhardinge389d1fb2009-02-27 13:25:28 -0800124 memset(tsk->thread.tls_array, 0, sizeof(tsk->thread.tls_array));
125 /*
126 * Forget coprocessor state..
127 */
128 tsk->fpu_counter = 0;
129 clear_fpu(tsk);
130 clear_used_math();
131}
132
133static void hard_disable_TSC(void)
134{
135 write_cr4(read_cr4() | X86_CR4_TSD);
136}
137
138void disable_TSC(void)
139{
140 preempt_disable();
141 if (!test_and_set_thread_flag(TIF_NOTSC))
142 /*
143 * Must flip the CPU state synchronously with
144 * TIF_NOTSC in the current running context.
145 */
146 hard_disable_TSC();
147 preempt_enable();
148}
149
150static void hard_enable_TSC(void)
151{
152 write_cr4(read_cr4() & ~X86_CR4_TSD);
153}
154
155static void enable_TSC(void)
156{
157 preempt_disable();
158 if (test_and_clear_thread_flag(TIF_NOTSC))
159 /*
160 * Must flip the CPU state synchronously with
161 * TIF_NOTSC in the current running context.
162 */
163 hard_enable_TSC();
164 preempt_enable();
165}
166
167int get_tsc_mode(unsigned long adr)
168{
169 unsigned int val;
170
171 if (test_thread_flag(TIF_NOTSC))
172 val = PR_TSC_SIGSEGV;
173 else
174 val = PR_TSC_ENABLE;
175
176 return put_user(val, (unsigned int __user *)adr);
177}
178
179int set_tsc_mode(unsigned int val)
180{
181 if (val == PR_TSC_SIGSEGV)
182 disable_TSC();
183 else if (val == PR_TSC_ENABLE)
184 enable_TSC();
185 else
186 return -EINVAL;
187
188 return 0;
189}
190
191void __switch_to_xtra(struct task_struct *prev_p, struct task_struct *next_p,
192 struct tss_struct *tss)
193{
194 struct thread_struct *prev, *next;
195
196 prev = &prev_p->thread;
197 next = &next_p->thread;
198
Peter Zijlstraea8e61b2010-03-25 14:51:51 +0100199 if (test_tsk_thread_flag(prev_p, TIF_BLOCKSTEP) ^
200 test_tsk_thread_flag(next_p, TIF_BLOCKSTEP)) {
201 unsigned long debugctl = get_debugctlmsr();
202
203 debugctl &= ~DEBUGCTLMSR_BTF;
204 if (test_tsk_thread_flag(next_p, TIF_BLOCKSTEP))
205 debugctl |= DEBUGCTLMSR_BTF;
206
207 update_debugctlmsr(debugctl);
208 }
Jeremy Fitzhardinge389d1fb2009-02-27 13:25:28 -0800209
Jeremy Fitzhardinge389d1fb2009-02-27 13:25:28 -0800210 if (test_tsk_thread_flag(prev_p, TIF_NOTSC) ^
211 test_tsk_thread_flag(next_p, TIF_NOTSC)) {
212 /* prev and next are different */
213 if (test_tsk_thread_flag(next_p, TIF_NOTSC))
214 hard_disable_TSC();
215 else
216 hard_enable_TSC();
217 }
218
219 if (test_tsk_thread_flag(next_p, TIF_IO_BITMAP)) {
220 /*
221 * Copy the relevant range of the IO bitmap.
222 * Normally this is 128 bytes or less:
223 */
224 memcpy(tss->io_bitmap, next->io_bitmap_ptr,
225 max(prev->io_bitmap_max, next->io_bitmap_max));
226 } else if (test_tsk_thread_flag(prev_p, TIF_IO_BITMAP)) {
227 /*
228 * Clear any possible leftover bits:
229 */
230 memset(tss->io_bitmap, 0xff, prev->io_bitmap_max);
231 }
Avi Kivity7c68af62009-09-19 09:40:22 +0300232 propagate_user_return_notify(prev_p, next_p);
Jeremy Fitzhardinge389d1fb2009-02-27 13:25:28 -0800233}
234
235int sys_fork(struct pt_regs *regs)
236{
237 return do_fork(SIGCHLD, regs->sp, regs, 0, NULL, NULL);
238}
239
240/*
241 * This is trivial, and on the face of it looks like it
242 * could equally well be done in user mode.
243 *
244 * Not so, for quite unobvious reasons - register pressure.
245 * In user mode vfork() cannot have a stack frame, and if
246 * done by calling the "clone()" system call directly, you
247 * do not have enough call-clobbered registers to hold all
248 * the information you need.
249 */
250int sys_vfork(struct pt_regs *regs)
251{
252 return do_fork(CLONE_VFORK | CLONE_VM | SIGCHLD, regs->sp, regs, 0,
253 NULL, NULL);
254}
255
Brian Gerstf839bbc2009-12-09 19:01:56 -0500256long
257sys_clone(unsigned long clone_flags, unsigned long newsp,
258 void __user *parent_tid, void __user *child_tid, struct pt_regs *regs)
259{
260 if (!newsp)
261 newsp = regs->sp;
262 return do_fork(clone_flags, newsp, regs, 0, parent_tid, child_tid);
263}
264
Brian Gerstdf59e7b2009-12-09 12:34:44 -0500265/*
266 * This gets run with %si containing the
267 * function to call, and %di containing
268 * the "args".
269 */
270extern void kernel_thread_helper(void);
271
272/*
273 * Create a kernel thread
274 */
275int kernel_thread(int (*fn)(void *), void *arg, unsigned long flags)
276{
277 struct pt_regs regs;
278
279 memset(&regs, 0, sizeof(regs));
280
281 regs.si = (unsigned long) fn;
282 regs.di = (unsigned long) arg;
283
284#ifdef CONFIG_X86_32
285 regs.ds = __USER_DS;
286 regs.es = __USER_DS;
287 regs.fs = __KERNEL_PERCPU;
288 regs.gs = __KERNEL_STACK_CANARY;
Cyrill Gorcunov864a0922010-01-13 10:16:07 +0000289#else
290 regs.ss = __KERNEL_DS;
Brian Gerstdf59e7b2009-12-09 12:34:44 -0500291#endif
292
293 regs.orig_ax = -1;
294 regs.ip = (unsigned long) kernel_thread_helper;
295 regs.cs = __KERNEL_CS | get_kernel_rpl();
296 regs.flags = X86_EFLAGS_IF | 0x2;
297
298 /* Ok, create the new process.. */
299 return do_fork(flags | CLONE_VM | CLONE_UNTRACED, 0, &regs, 0, NULL, NULL);
300}
301EXPORT_SYMBOL(kernel_thread);
Jeremy Fitzhardinge389d1fb2009-02-27 13:25:28 -0800302
303/*
Brian Gerst11cf88b2009-12-09 19:01:53 -0500304 * sys_execve() executes a new program.
305 */
David Howellsd7627462010-08-17 23:52:56 +0100306long sys_execve(const char __user *name,
307 const char __user *const __user *argv,
308 const char __user *const __user *envp, struct pt_regs *regs)
Brian Gerst11cf88b2009-12-09 19:01:53 -0500309{
310 long error;
311 char *filename;
312
313 filename = getname(name);
314 error = PTR_ERR(filename);
315 if (IS_ERR(filename))
316 return error;
317 error = do_execve(filename, argv, envp, regs);
318
319#ifdef CONFIG_X86_32
320 if (error == 0) {
321 /* Make sure we don't return using sysenter.. */
322 set_thread_flag(TIF_IRET);
323 }
324#endif
325
326 putname(filename);
327 return error;
328}
Thomas Gleixner09fd4b42008-06-09 18:04:27 +0200329
330/*
Thomas Gleixnere9623b32008-05-16 22:55:26 +0200331 * Idle related variables and functions
332 */
Thomas Renningerd1896042010-11-03 17:06:14 +0100333unsigned long boot_option_idle_override = IDLE_NO_OVERRIDE;
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200334EXPORT_SYMBOL(boot_option_idle_override);
335
336/*
337 * Powermanagement idle function, if any..
338 */
339void (*pm_idle)(void);
340EXPORT_SYMBOL(pm_idle);
341
342#ifdef CONFIG_X86_32
343/*
344 * This halt magic was a workaround for ancient floppy DMA
345 * wreckage. It should be safe to remove.
346 */
347static int hlt_counter;
348void disable_hlt(void)
349{
350 hlt_counter++;
351}
352EXPORT_SYMBOL(disable_hlt);
353
354void enable_hlt(void)
355{
356 hlt_counter--;
357}
358EXPORT_SYMBOL(enable_hlt);
359
360static inline int hlt_use_halt(void)
361{
362 return (!hlt_counter && boot_cpu_data.hlt_works_ok);
363}
364#else
365static inline int hlt_use_halt(void)
366{
367 return 1;
368}
369#endif
370
371/*
372 * We use this if we don't have any better
373 * idle routine..
374 */
375void default_idle(void)
376{
377 if (hlt_use_halt()) {
Thomas Renninger6f4f2722010-04-20 13:17:36 +0200378 trace_power_start(POWER_CSTATE, 1, smp_processor_id());
Thomas Renninger25e41932011-01-03 17:50:44 +0100379 trace_cpu_idle(1, smp_processor_id());
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200380 current_thread_info()->status &= ~TS_POLLING;
381 /*
382 * TS_POLLING-cleared state must be visible before we
383 * test NEED_RESCHED:
384 */
385 smp_mb();
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200386
387 if (!need_resched())
388 safe_halt(); /* enables interrupts racelessly */
389 else
390 local_irq_enable();
391 current_thread_info()->status |= TS_POLLING;
Thomas Renningerf77cfe42011-01-07 11:29:44 +0100392 trace_power_end(smp_processor_id());
393 trace_cpu_idle(PWR_EVENT_EXIT, smp_processor_id());
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200394 } else {
395 local_irq_enable();
396 /* loop is done by the caller */
397 cpu_relax();
Thomas Gleixnere9623b32008-05-16 22:55:26 +0200398 }
399}
400#ifdef CONFIG_APM_MODULE
401EXPORT_SYMBOL(default_idle);
402#endif
403
404void stop_this_cpu(void *dummy)
405{
406 local_irq_disable();
407 /*
408 * Remove this CPU:
409 */
Rusty Russell4f062892009-03-13 14:49:54 +1030410 set_cpu_online(smp_processor_id(), false);
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200411 disable_local_APIC();
412
413 for (;;) {
414 if (hlt_works(smp_processor_id()))
415 halt();
416 }
417}
418
419static void do_nothing(void *unused)
420{
421}
422
423/*
424 * cpu_idle_wait - Used to ensure that all the CPUs discard old value of
425 * pm_idle and update to new pm_idle value. Required while changing pm_idle
426 * handler on SMP systems.
427 *
428 * Caller must have changed pm_idle to the new value before the call. Old
429 * pm_idle value will not be used by any CPU after the return of this function.
430 */
431void cpu_idle_wait(void)
432{
433 smp_mb();
434 /* kick all the CPUs so that they exit out of pm_idle */
435 smp_call_function(do_nothing, NULL, 1);
436}
437EXPORT_SYMBOL_GPL(cpu_idle_wait);
438
439/*
440 * This uses new MONITOR/MWAIT instructions on P4 processors with PNI,
441 * which can obviate IPI to trigger checking of need_resched.
442 * We execute MONITOR against need_resched and enter optimized wait state
443 * through MWAIT. Whenever someone changes need_resched, we would be woken
444 * up from MWAIT (without an IPI).
445 *
446 * New with Core Duo processors, MWAIT can take some hints based on CPU
447 * capability.
448 */
449void mwait_idle_with_hints(unsigned long ax, unsigned long cx)
450{
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200451 if (!need_resched()) {
Tejun Heo7b543a52010-12-18 16:30:05 +0100452 if (cpu_has(__this_cpu_ptr(&cpu_info), X86_FEATURE_CLFLUSH_MONITOR))
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200453 clflush((void *)&current_thread_info()->flags);
454
455 __monitor((void *)&current_thread_info()->flags, 0, 0);
456 smp_mb();
457 if (!need_resched())
458 __mwait(ax, cx);
459 }
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200460}
461
462/* Default MONITOR/MWAIT with no hints, used for default C1 state */
463static void mwait_idle(void)
464{
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200465 if (!need_resched()) {
Thomas Renninger6f4f2722010-04-20 13:17:36 +0200466 trace_power_start(POWER_CSTATE, 1, smp_processor_id());
Thomas Renninger25e41932011-01-03 17:50:44 +0100467 trace_cpu_idle(1, smp_processor_id());
Tejun Heo7b543a52010-12-18 16:30:05 +0100468 if (cpu_has(__this_cpu_ptr(&cpu_info), X86_FEATURE_CLFLUSH_MONITOR))
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200469 clflush((void *)&current_thread_info()->flags);
470
471 __monitor((void *)&current_thread_info()->flags, 0, 0);
472 smp_mb();
473 if (!need_resched())
474 __sti_mwait(0, 0);
475 else
476 local_irq_enable();
Thomas Renningerf77cfe42011-01-07 11:29:44 +0100477 trace_power_end(smp_processor_id());
478 trace_cpu_idle(PWR_EVENT_EXIT, smp_processor_id());
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200479 } else
480 local_irq_enable();
481}
482
483/*
484 * On SMP it's slightly faster (but much more power-consuming!)
485 * to poll the ->work.need_resched flag instead of waiting for the
486 * cross-CPU IPI to arrive. Use this option with caution.
487 */
Thomas Gleixnere9623b32008-05-16 22:55:26 +0200488static void poll_idle(void)
489{
Thomas Renninger6f4f2722010-04-20 13:17:36 +0200490 trace_power_start(POWER_CSTATE, 0, smp_processor_id());
Thomas Renninger25e41932011-01-03 17:50:44 +0100491 trace_cpu_idle(0, smp_processor_id());
Thomas Gleixnere9623b32008-05-16 22:55:26 +0200492 local_irq_enable();
493 while (!need_resched())
494 cpu_relax();
Thomas Renninger25e41932011-01-03 17:50:44 +0100495 trace_power_end(smp_processor_id());
496 trace_cpu_idle(PWR_EVENT_EXIT, smp_processor_id());
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200497}
498
499/*
500 * mwait selection logic:
501 *
502 * It depends on the CPU. For AMD CPUs that support MWAIT this is
503 * wrong. Family 0x10 and 0x11 CPUs will enter C1 on HLT. Powersavings
504 * then depend on a clock divisor and current Pstate of the core. If
Thomas Gleixnere9623b32008-05-16 22:55:26 +0200505 * all cores of a processor are in halt state (C1) the processor can
506 * enter the C1E (C1 enhanced) state. If mwait is used this will never
507 * happen.
508 *
509 * idle=mwait overrides this decision and forces the usage of mwait.
510 */
Thomas Gleixnere9623b32008-05-16 22:55:26 +0200511
512#define MWAIT_INFO 0x05
513#define MWAIT_ECX_EXTENDED_INFO 0x01
514#define MWAIT_EDX_C1 0xf0
515
Borislav Petkov1c9d16e2011-02-11 18:17:54 +0100516int mwait_usable(const struct cpuinfo_x86 *c)
Thomas Gleixnere9623b32008-05-16 22:55:26 +0200517{
Thomas Gleixner09fd4b42008-06-09 18:04:27 +0200518 u32 eax, ebx, ecx, edx;
519
Thomas Renningerd1896042010-11-03 17:06:14 +0100520 if (boot_option_idle_override == IDLE_FORCE_MWAIT)
Thomas Gleixnere9623b32008-05-16 22:55:26 +0200521 return 1;
522
Thomas Gleixner09fd4b42008-06-09 18:04:27 +0200523 if (c->cpuid_level < MWAIT_INFO)
524 return 0;
525
526 cpuid(MWAIT_INFO, &eax, &ebx, &ecx, &edx);
527 /* Check, whether EDX has extended info about MWAIT */
528 if (!(ecx & MWAIT_ECX_EXTENDED_INFO))
529 return 1;
530
531 /*
532 * edx enumeratios MONITOR/MWAIT extensions. Check, whether
533 * C1 supports MWAIT
534 */
535 return (edx & MWAIT_EDX_C1);
Thomas Gleixnere9623b32008-05-16 22:55:26 +0200536}
537
Michal Schmidte8c534e2010-07-27 18:53:35 +0200538bool c1e_detected;
539EXPORT_SYMBOL(c1e_detected);
Thomas Gleixneraa276e12008-06-09 19:15:00 +0200540
Rusty Russellbc9b83d2009-03-13 14:49:49 +1030541static cpumask_var_t c1e_mask;
Thomas Gleixner4faac972008-09-22 18:54:29 +0200542
543void c1e_remove_cpu(int cpu)
544{
Rusty Russell30e1e6d2009-03-17 14:50:34 +1030545 if (c1e_mask != NULL)
546 cpumask_clear_cpu(cpu, c1e_mask);
Thomas Gleixner4faac972008-09-22 18:54:29 +0200547}
548
Thomas Gleixneraa276e12008-06-09 19:15:00 +0200549/*
550 * C1E aware idle routine. We check for C1E active in the interrupt
551 * pending message MSR. If we detect C1E, then we handle it the same
552 * way as C3 power states (local apic timer and TSC stop)
553 */
554static void c1e_idle(void)
555{
Thomas Gleixneraa276e12008-06-09 19:15:00 +0200556 if (need_resched())
557 return;
558
559 if (!c1e_detected) {
560 u32 lo, hi;
561
562 rdmsr(MSR_K8_INT_PENDING_MSG, lo, hi);
Michal Schmidte8c534e2010-07-27 18:53:35 +0200563
Thomas Gleixneraa276e12008-06-09 19:15:00 +0200564 if (lo & K8_INTP_C1E_ACTIVE_MASK) {
Michal Schmidte8c534e2010-07-27 18:53:35 +0200565 c1e_detected = true;
Venki Pallipadi40fb1712008-11-17 16:11:37 -0800566 if (!boot_cpu_has(X86_FEATURE_NONSTOP_TSC))
Andreas Herrmann09bfeea2008-09-18 21:12:10 +0200567 mark_tsc_unstable("TSC halt in AMD C1E");
568 printk(KERN_INFO "System has AMD C1E enabled\n");
Thomas Gleixneraa276e12008-06-09 19:15:00 +0200569 }
570 }
571
572 if (c1e_detected) {
573 int cpu = smp_processor_id();
574
Rusty Russellbc9b83d2009-03-13 14:49:49 +1030575 if (!cpumask_test_cpu(cpu, c1e_mask)) {
576 cpumask_set_cpu(cpu, c1e_mask);
Thomas Gleixner0beefa22008-06-17 09:12:03 +0200577 /*
Suresh Siddhaf833bab2009-08-17 14:34:59 -0700578 * Force broadcast so ACPI can not interfere.
Thomas Gleixner0beefa22008-06-17 09:12:03 +0200579 */
Thomas Gleixneraa276e12008-06-09 19:15:00 +0200580 clockevents_notify(CLOCK_EVT_NOTIFY_BROADCAST_FORCE,
581 &cpu);
582 printk(KERN_INFO "Switch to broadcast mode on CPU%d\n",
583 cpu);
584 }
585 clockevents_notify(CLOCK_EVT_NOTIFY_BROADCAST_ENTER, &cpu);
Thomas Gleixner0beefa22008-06-17 09:12:03 +0200586
Thomas Gleixneraa276e12008-06-09 19:15:00 +0200587 default_idle();
Thomas Gleixner0beefa22008-06-17 09:12:03 +0200588
589 /*
590 * The switch back from broadcast mode needs to be
591 * called with interrupts disabled.
592 */
593 local_irq_disable();
594 clockevents_notify(CLOCK_EVT_NOTIFY_BROADCAST_EXIT, &cpu);
595 local_irq_enable();
Thomas Gleixneraa276e12008-06-09 19:15:00 +0200596 } else
597 default_idle();
598}
599
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200600void __cpuinit select_idle_routine(const struct cpuinfo_x86 *c)
601{
Ingo Molnar3e5095d2009-01-27 17:07:08 +0100602#ifdef CONFIG_SMP
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200603 if (pm_idle == poll_idle && smp_num_siblings > 1) {
Mike Travisd6dd6922010-03-05 13:10:38 -0600604 printk_once(KERN_WARNING "WARNING: polling idle and HT enabled,"
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200605 " performance may degrade.\n");
606 }
607#endif
Thomas Gleixner6ddd2a22008-06-09 16:59:53 +0200608 if (pm_idle)
609 return;
610
Thomas Gleixnere9623b32008-05-16 22:55:26 +0200611 if (cpu_has(c, X86_FEATURE_MWAIT) && mwait_usable(c)) {
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200612 /*
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200613 * One CPU supports mwait => All CPUs supports mwait
614 */
Thomas Gleixner6ddd2a22008-06-09 16:59:53 +0200615 printk(KERN_INFO "using mwait in idle threads.\n");
616 pm_idle = mwait_idle;
Hans Rosenfeld9d8888c2010-07-28 19:09:31 +0200617 } else if (cpu_has_amd_erratum(amd_erratum_400)) {
618 /* E400: APIC timer interrupt does not wake up CPU from C1e */
Thomas Gleixneraa276e12008-06-09 19:15:00 +0200619 printk(KERN_INFO "using C1E aware idle routine\n");
620 pm_idle = c1e_idle;
Thomas Gleixner6ddd2a22008-06-09 16:59:53 +0200621 } else
622 pm_idle = default_idle;
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200623}
624
Rusty Russell30e1e6d2009-03-17 14:50:34 +1030625void __init init_c1e_mask(void)
626{
627 /* If we're using c1e_idle, we need to allocate c1e_mask. */
Li Zefan79f55992009-06-15 14:58:26 +0800628 if (pm_idle == c1e_idle)
629 zalloc_cpumask_var(&c1e_mask, GFP_KERNEL);
Rusty Russell30e1e6d2009-03-17 14:50:34 +1030630}
631
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200632static int __init idle_setup(char *str)
633{
Cyrill Gorcunovab6bc3e2008-07-05 15:53:36 +0400634 if (!str)
635 return -EINVAL;
636
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200637 if (!strcmp(str, "poll")) {
638 printk("using polling idle threads.\n");
639 pm_idle = poll_idle;
Thomas Renningerd1896042010-11-03 17:06:14 +0100640 boot_option_idle_override = IDLE_POLL;
641 } else if (!strcmp(str, "mwait")) {
642 boot_option_idle_override = IDLE_FORCE_MWAIT;
643 } else if (!strcmp(str, "halt")) {
Zhao Yakuic1e3b372008-06-24 17:58:53 +0800644 /*
645 * When the boot option of idle=halt is added, halt is
646 * forced to be used for CPU idle. In such case CPU C2/C3
647 * won't be used again.
648 * To continue to load the CPU idle driver, don't touch
649 * the boot_option_idle_override.
650 */
651 pm_idle = default_idle;
Thomas Renningerd1896042010-11-03 17:06:14 +0100652 boot_option_idle_override = IDLE_HALT;
Zhao Yakuida5e09a2008-06-24 18:01:09 +0800653 } else if (!strcmp(str, "nomwait")) {
654 /*
655 * If the boot option of "idle=nomwait" is added,
656 * it means that mwait will be disabled for CPU C2/C3
657 * states. In such case it won't touch the variable
658 * of boot_option_idle_override.
659 */
Thomas Renningerd1896042010-11-03 17:06:14 +0100660 boot_option_idle_override = IDLE_NOMWAIT;
Zhao Yakuic1e3b372008-06-24 17:58:53 +0800661 } else
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200662 return -1;
663
Peter Zijlstra7f424a82008-04-25 17:39:01 +0200664 return 0;
665}
666early_param("idle", idle_setup);
667
Amerigo Wang9d62dcd2009-05-11 22:05:28 -0400668unsigned long arch_align_stack(unsigned long sp)
669{
670 if (!(current->personality & ADDR_NO_RANDOMIZE) && randomize_va_space)
671 sp -= get_random_int() % 8192;
672 return sp & ~0xf;
673}
674
675unsigned long arch_randomize_brk(struct mm_struct *mm)
676{
677 unsigned long range_end = mm->brk + 0x02000000;
678 return randomize_range(mm->brk, range_end, 0) ? : mm->brk;
679}
680