Merge branch 'master' of git://git.kernel.org/pub/scm/linux/kernel/git/linville/wirel...
[pandora-kernel.git] / arch / powerpc / kernel / smp.c
1 /*
2  * SMP support for ppc.
3  *
4  * Written by Cort Dougan (cort@cs.nmt.edu) borrowing a great
5  * deal of code from the sparc and intel versions.
6  *
7  * Copyright (C) 1999 Cort Dougan <cort@cs.nmt.edu>
8  *
9  * PowerPC-64 Support added by Dave Engebretsen, Peter Bergner, and
10  * Mike Corrigan {engebret|bergner|mikec}@us.ibm.com
11  *
12  *      This program is free software; you can redistribute it and/or
13  *      modify it under the terms of the GNU General Public License
14  *      as published by the Free Software Foundation; either version
15  *      2 of the License, or (at your option) any later version.
16  */
17
18 #undef DEBUG
19
20 #include <linux/kernel.h>
21 #include <linux/export.h>
22 #include <linux/sched.h>
23 #include <linux/smp.h>
24 #include <linux/interrupt.h>
25 #include <linux/delay.h>
26 #include <linux/init.h>
27 #include <linux/spinlock.h>
28 #include <linux/cache.h>
29 #include <linux/err.h>
30 #include <linux/device.h>
31 #include <linux/cpu.h>
32 #include <linux/notifier.h>
33 #include <linux/topology.h>
34
35 #include <asm/ptrace.h>
36 #include <linux/atomic.h>
37 #include <asm/irq.h>
38 #include <asm/page.h>
39 #include <asm/pgtable.h>
40 #include <asm/prom.h>
41 #include <asm/smp.h>
42 #include <asm/time.h>
43 #include <asm/machdep.h>
44 #include <asm/cputhreads.h>
45 #include <asm/cputable.h>
46 #include <asm/mpic.h>
47 #include <asm/vdso_datapage.h>
48 #ifdef CONFIG_PPC64
49 #include <asm/paca.h>
50 #endif
51 #include <asm/vdso.h>
52 #include <asm/debug.h>
53
54 #ifdef DEBUG
55 #include <asm/udbg.h>
56 #define DBG(fmt...) udbg_printf(fmt)
57 #else
58 #define DBG(fmt...)
59 #endif
60
61 #ifdef CONFIG_HOTPLUG_CPU
62 /* State of each CPU during hotplug phases */
63 static DEFINE_PER_CPU(int, cpu_state) = { 0 };
64 #endif
65
66 struct thread_info *secondary_ti;
67
68 DEFINE_PER_CPU(cpumask_var_t, cpu_sibling_map);
69 DEFINE_PER_CPU(cpumask_var_t, cpu_core_map);
70
71 EXPORT_PER_CPU_SYMBOL(cpu_sibling_map);
72 EXPORT_PER_CPU_SYMBOL(cpu_core_map);
73
74 /* SMP operations for this machine */
75 struct smp_ops_t *smp_ops;
76
77 /* Can't be static due to PowerMac hackery */
78 volatile unsigned int cpu_callin_map[NR_CPUS];
79
80 int smt_enabled_at_boot = 1;
81
82 static void (*crash_ipi_function_ptr)(struct pt_regs *) = NULL;
83
84 #ifdef CONFIG_PPC64
85 int smp_generic_kick_cpu(int nr)
86 {
87         BUG_ON(nr < 0 || nr >= NR_CPUS);
88
89         /*
90          * The processor is currently spinning, waiting for the
91          * cpu_start field to become non-zero After we set cpu_start,
92          * the processor will continue on to secondary_start
93          */
94         if (!paca[nr].cpu_start) {
95                 paca[nr].cpu_start = 1;
96                 smp_mb();
97                 return 0;
98         }
99
100 #ifdef CONFIG_HOTPLUG_CPU
101         /*
102          * Ok it's not there, so it might be soft-unplugged, let's
103          * try to bring it back
104          */
105         generic_set_cpu_up(nr);
106         smp_wmb();
107         smp_send_reschedule(nr);
108 #endif /* CONFIG_HOTPLUG_CPU */
109
110         return 0;
111 }
112 #endif /* CONFIG_PPC64 */
113
114 static irqreturn_t call_function_action(int irq, void *data)
115 {
116         generic_smp_call_function_interrupt();
117         return IRQ_HANDLED;
118 }
119
120 static irqreturn_t reschedule_action(int irq, void *data)
121 {
122         scheduler_ipi();
123         return IRQ_HANDLED;
124 }
125
126 static irqreturn_t call_function_single_action(int irq, void *data)
127 {
128         generic_smp_call_function_single_interrupt();
129         return IRQ_HANDLED;
130 }
131
132 static irqreturn_t debug_ipi_action(int irq, void *data)
133 {
134         if (crash_ipi_function_ptr) {
135                 crash_ipi_function_ptr(get_irq_regs());
136                 return IRQ_HANDLED;
137         }
138
139 #ifdef CONFIG_DEBUGGER
140         debugger_ipi(get_irq_regs());
141 #endif /* CONFIG_DEBUGGER */
142
143         return IRQ_HANDLED;
144 }
145
146 static irq_handler_t smp_ipi_action[] = {
147         [PPC_MSG_CALL_FUNCTION] =  call_function_action,
148         [PPC_MSG_RESCHEDULE] = reschedule_action,
149         [PPC_MSG_CALL_FUNC_SINGLE] = call_function_single_action,
150         [PPC_MSG_DEBUGGER_BREAK] = debug_ipi_action,
151 };
152
153 const char *smp_ipi_name[] = {
154         [PPC_MSG_CALL_FUNCTION] =  "ipi call function",
155         [PPC_MSG_RESCHEDULE] = "ipi reschedule",
156         [PPC_MSG_CALL_FUNC_SINGLE] = "ipi call function single",
157         [PPC_MSG_DEBUGGER_BREAK] = "ipi debugger",
158 };
159
160 /* optional function to request ipi, for controllers with >= 4 ipis */
161 int smp_request_message_ipi(int virq, int msg)
162 {
163         int err;
164
165         if (msg < 0 || msg > PPC_MSG_DEBUGGER_BREAK) {
166                 return -EINVAL;
167         }
168 #if !defined(CONFIG_DEBUGGER) && !defined(CONFIG_KEXEC)
169         if (msg == PPC_MSG_DEBUGGER_BREAK) {
170                 return 1;
171         }
172 #endif
173         err = request_irq(virq, smp_ipi_action[msg],
174                           IRQF_PERCPU | IRQF_NO_THREAD | IRQF_NO_SUSPEND,
175                           smp_ipi_name[msg], 0);
176         WARN(err < 0, "unable to request_irq %d for %s (rc %d)\n",
177                 virq, smp_ipi_name[msg], err);
178
179         return err;
180 }
181
182 #ifdef CONFIG_PPC_SMP_MUXED_IPI
183 struct cpu_messages {
184         int messages;                   /* current messages */
185         unsigned long data;             /* data for cause ipi */
186 };
187 static DEFINE_PER_CPU_SHARED_ALIGNED(struct cpu_messages, ipi_message);
188
189 void smp_muxed_ipi_set_data(int cpu, unsigned long data)
190 {
191         struct cpu_messages *info = &per_cpu(ipi_message, cpu);
192
193         info->data = data;
194 }
195
196 void smp_muxed_ipi_message_pass(int cpu, int msg)
197 {
198         struct cpu_messages *info = &per_cpu(ipi_message, cpu);
199         char *message = (char *)&info->messages;
200
201         /*
202          * Order previous accesses before accesses in the IPI handler.
203          */
204         smp_mb();
205         message[msg] = 1;
206         /*
207          * cause_ipi functions are required to include a full barrier
208          * before doing whatever causes the IPI.
209          */
210         smp_ops->cause_ipi(cpu, info->data);
211 }
212
213 irqreturn_t smp_ipi_demux(void)
214 {
215         struct cpu_messages *info = &__get_cpu_var(ipi_message);
216         unsigned int all;
217
218         mb();   /* order any irq clear */
219
220         do {
221                 all = xchg(&info->messages, 0);
222
223 #ifdef __BIG_ENDIAN
224                 if (all & (1 << (24 - 8 * PPC_MSG_CALL_FUNCTION)))
225                         generic_smp_call_function_interrupt();
226                 if (all & (1 << (24 - 8 * PPC_MSG_RESCHEDULE)))
227                         scheduler_ipi();
228                 if (all & (1 << (24 - 8 * PPC_MSG_CALL_FUNC_SINGLE)))
229                         generic_smp_call_function_single_interrupt();
230                 if (all & (1 << (24 - 8 * PPC_MSG_DEBUGGER_BREAK)))
231                         debug_ipi_action(0, NULL);
232 #else
233 #error Unsupported ENDIAN
234 #endif
235         } while (info->messages);
236
237         return IRQ_HANDLED;
238 }
239 #endif /* CONFIG_PPC_SMP_MUXED_IPI */
240
241 static inline void do_message_pass(int cpu, int msg)
242 {
243         if (smp_ops->message_pass)
244                 smp_ops->message_pass(cpu, msg);
245 #ifdef CONFIG_PPC_SMP_MUXED_IPI
246         else
247                 smp_muxed_ipi_message_pass(cpu, msg);
248 #endif
249 }
250
251 void smp_send_reschedule(int cpu)
252 {
253         if (likely(smp_ops))
254                 do_message_pass(cpu, PPC_MSG_RESCHEDULE);
255 }
256 EXPORT_SYMBOL_GPL(smp_send_reschedule);
257
258 void arch_send_call_function_single_ipi(int cpu)
259 {
260         do_message_pass(cpu, PPC_MSG_CALL_FUNC_SINGLE);
261 }
262
263 void arch_send_call_function_ipi_mask(const struct cpumask *mask)
264 {
265         unsigned int cpu;
266
267         for_each_cpu(cpu, mask)
268                 do_message_pass(cpu, PPC_MSG_CALL_FUNCTION);
269 }
270
271 #if defined(CONFIG_DEBUGGER) || defined(CONFIG_KEXEC)
272 void smp_send_debugger_break(void)
273 {
274         int cpu;
275         int me = raw_smp_processor_id();
276
277         if (unlikely(!smp_ops))
278                 return;
279
280         for_each_online_cpu(cpu)
281                 if (cpu != me)
282                         do_message_pass(cpu, PPC_MSG_DEBUGGER_BREAK);
283 }
284 #endif
285
286 #ifdef CONFIG_KEXEC
287 void crash_send_ipi(void (*crash_ipi_callback)(struct pt_regs *))
288 {
289         crash_ipi_function_ptr = crash_ipi_callback;
290         if (crash_ipi_callback) {
291                 mb();
292                 smp_send_debugger_break();
293         }
294 }
295 #endif
296
297 static void stop_this_cpu(void *dummy)
298 {
299         /* Remove this CPU */
300         set_cpu_online(smp_processor_id(), false);
301
302         local_irq_disable();
303         while (1)
304                 ;
305 }
306
307 void smp_send_stop(void)
308 {
309         smp_call_function(stop_this_cpu, NULL, 0);
310 }
311
312 struct thread_info *current_set[NR_CPUS];
313
314 static void smp_store_cpu_info(int id)
315 {
316         per_cpu(cpu_pvr, id) = mfspr(SPRN_PVR);
317 #ifdef CONFIG_PPC_FSL_BOOK3E
318         per_cpu(next_tlbcam_idx, id)
319                 = (mfspr(SPRN_TLB1CFG) & TLBnCFG_N_ENTRY) - 1;
320 #endif
321 }
322
323 void __init smp_prepare_cpus(unsigned int max_cpus)
324 {
325         unsigned int cpu;
326
327         DBG("smp_prepare_cpus\n");
328
329         /* 
330          * setup_cpu may need to be called on the boot cpu. We havent
331          * spun any cpus up but lets be paranoid.
332          */
333         BUG_ON(boot_cpuid != smp_processor_id());
334
335         /* Fixup boot cpu */
336         smp_store_cpu_info(boot_cpuid);
337         cpu_callin_map[boot_cpuid] = 1;
338
339         for_each_possible_cpu(cpu) {
340                 zalloc_cpumask_var_node(&per_cpu(cpu_sibling_map, cpu),
341                                         GFP_KERNEL, cpu_to_node(cpu));
342                 zalloc_cpumask_var_node(&per_cpu(cpu_core_map, cpu),
343                                         GFP_KERNEL, cpu_to_node(cpu));
344         }
345
346         cpumask_set_cpu(boot_cpuid, cpu_sibling_mask(boot_cpuid));
347         cpumask_set_cpu(boot_cpuid, cpu_core_mask(boot_cpuid));
348
349         if (smp_ops)
350                 if (smp_ops->probe)
351                         max_cpus = smp_ops->probe();
352                 else
353                         max_cpus = NR_CPUS;
354         else
355                 max_cpus = 1;
356 }
357
358 void smp_prepare_boot_cpu(void)
359 {
360         BUG_ON(smp_processor_id() != boot_cpuid);
361 #ifdef CONFIG_PPC64
362         paca[boot_cpuid].__current = current;
363 #endif
364         current_set[boot_cpuid] = task_thread_info(current);
365 }
366
367 #ifdef CONFIG_HOTPLUG_CPU
368
369 int generic_cpu_disable(void)
370 {
371         unsigned int cpu = smp_processor_id();
372
373         if (cpu == boot_cpuid)
374                 return -EBUSY;
375
376         set_cpu_online(cpu, false);
377 #ifdef CONFIG_PPC64
378         vdso_data->processorCount--;
379 #endif
380         migrate_irqs();
381         return 0;
382 }
383
384 void generic_cpu_die(unsigned int cpu)
385 {
386         int i;
387
388         for (i = 0; i < 100; i++) {
389                 smp_rmb();
390                 if (per_cpu(cpu_state, cpu) == CPU_DEAD)
391                         return;
392                 msleep(100);
393         }
394         printk(KERN_ERR "CPU%d didn't die...\n", cpu);
395 }
396
397 void generic_mach_cpu_die(void)
398 {
399         unsigned int cpu;
400
401         local_irq_disable();
402         idle_task_exit();
403         cpu = smp_processor_id();
404         printk(KERN_DEBUG "CPU%d offline\n", cpu);
405         __get_cpu_var(cpu_state) = CPU_DEAD;
406         smp_wmb();
407         while (__get_cpu_var(cpu_state) != CPU_UP_PREPARE)
408                 cpu_relax();
409 }
410
411 void generic_set_cpu_dead(unsigned int cpu)
412 {
413         per_cpu(cpu_state, cpu) = CPU_DEAD;
414 }
415
416 /*
417  * The cpu_state should be set to CPU_UP_PREPARE in kick_cpu(), otherwise
418  * the cpu_state is always CPU_DEAD after calling generic_set_cpu_dead(),
419  * which makes the delay in generic_cpu_die() not happen.
420  */
421 void generic_set_cpu_up(unsigned int cpu)
422 {
423         per_cpu(cpu_state, cpu) = CPU_UP_PREPARE;
424 }
425
426 int generic_check_cpu_restart(unsigned int cpu)
427 {
428         return per_cpu(cpu_state, cpu) == CPU_UP_PREPARE;
429 }
430
431 static atomic_t secondary_inhibit_count;
432
433 /*
434  * Don't allow secondary CPU threads to come online
435  */
436 void inhibit_secondary_onlining(void)
437 {
438         /*
439          * This makes secondary_inhibit_count stable during cpu
440          * online/offline operations.
441          */
442         get_online_cpus();
443
444         atomic_inc(&secondary_inhibit_count);
445         put_online_cpus();
446 }
447 EXPORT_SYMBOL_GPL(inhibit_secondary_onlining);
448
449 /*
450  * Allow secondary CPU threads to come online again
451  */
452 void uninhibit_secondary_onlining(void)
453 {
454         get_online_cpus();
455         atomic_dec(&secondary_inhibit_count);
456         put_online_cpus();
457 }
458 EXPORT_SYMBOL_GPL(uninhibit_secondary_onlining);
459
460 static int secondaries_inhibited(void)
461 {
462         return atomic_read(&secondary_inhibit_count);
463 }
464
465 #else /* HOTPLUG_CPU */
466
467 #define secondaries_inhibited()         0
468
469 #endif
470
471 static void cpu_idle_thread_init(unsigned int cpu, struct task_struct *idle)
472 {
473         struct thread_info *ti = task_thread_info(idle);
474
475 #ifdef CONFIG_PPC64
476         paca[cpu].__current = idle;
477         paca[cpu].kstack = (unsigned long)ti + THREAD_SIZE - STACK_FRAME_OVERHEAD;
478 #endif
479         ti->cpu = cpu;
480         secondary_ti = current_set[cpu] = ti;
481 }
482
483 int __cpuinit __cpu_up(unsigned int cpu, struct task_struct *tidle)
484 {
485         int rc, c;
486
487         /*
488          * Don't allow secondary threads to come online if inhibited
489          */
490         if (threads_per_core > 1 && secondaries_inhibited() &&
491             cpu % threads_per_core != 0)
492                 return -EBUSY;
493
494         if (smp_ops == NULL ||
495             (smp_ops->cpu_bootable && !smp_ops->cpu_bootable(cpu)))
496                 return -EINVAL;
497
498         cpu_idle_thread_init(cpu, tidle);
499
500         /* Make sure callin-map entry is 0 (can be leftover a CPU
501          * hotplug
502          */
503         cpu_callin_map[cpu] = 0;
504
505         /* The information for processor bringup must
506          * be written out to main store before we release
507          * the processor.
508          */
509         smp_mb();
510
511         /* wake up cpus */
512         DBG("smp: kicking cpu %d\n", cpu);
513         rc = smp_ops->kick_cpu(cpu);
514         if (rc) {
515                 pr_err("smp: failed starting cpu %d (rc %d)\n", cpu, rc);
516                 return rc;
517         }
518
519         /*
520          * wait to see if the cpu made a callin (is actually up).
521          * use this value that I found through experimentation.
522          * -- Cort
523          */
524         if (system_state < SYSTEM_RUNNING)
525                 for (c = 50000; c && !cpu_callin_map[cpu]; c--)
526                         udelay(100);
527 #ifdef CONFIG_HOTPLUG_CPU
528         else
529                 /*
530                  * CPUs can take much longer to come up in the
531                  * hotplug case.  Wait five seconds.
532                  */
533                 for (c = 5000; c && !cpu_callin_map[cpu]; c--)
534                         msleep(1);
535 #endif
536
537         if (!cpu_callin_map[cpu]) {
538                 printk(KERN_ERR "Processor %u is stuck.\n", cpu);
539                 return -ENOENT;
540         }
541
542         DBG("Processor %u found.\n", cpu);
543
544         if (smp_ops->give_timebase)
545                 smp_ops->give_timebase();
546
547         /* Wait until cpu puts itself in the online map */
548         while (!cpu_online(cpu))
549                 cpu_relax();
550
551         return 0;
552 }
553
554 /* Return the value of the reg property corresponding to the given
555  * logical cpu.
556  */
557 int cpu_to_core_id(int cpu)
558 {
559         struct device_node *np;
560         const int *reg;
561         int id = -1;
562
563         np = of_get_cpu_node(cpu, NULL);
564         if (!np)
565                 goto out;
566
567         reg = of_get_property(np, "reg", NULL);
568         if (!reg)
569                 goto out;
570
571         id = *reg;
572 out:
573         of_node_put(np);
574         return id;
575 }
576
577 /* Helper routines for cpu to core mapping */
578 int cpu_core_index_of_thread(int cpu)
579 {
580         return cpu >> threads_shift;
581 }
582 EXPORT_SYMBOL_GPL(cpu_core_index_of_thread);
583
584 int cpu_first_thread_of_core(int core)
585 {
586         return core << threads_shift;
587 }
588 EXPORT_SYMBOL_GPL(cpu_first_thread_of_core);
589
590 /* Must be called when no change can occur to cpu_present_mask,
591  * i.e. during cpu online or offline.
592  */
593 static struct device_node *cpu_to_l2cache(int cpu)
594 {
595         struct device_node *np;
596         struct device_node *cache;
597
598         if (!cpu_present(cpu))
599                 return NULL;
600
601         np = of_get_cpu_node(cpu, NULL);
602         if (np == NULL)
603                 return NULL;
604
605         cache = of_find_next_cache_node(np);
606
607         of_node_put(np);
608
609         return cache;
610 }
611
612 /* Activate a secondary processor. */
613 void start_secondary(void *unused)
614 {
615         unsigned int cpu = smp_processor_id();
616         struct device_node *l2_cache;
617         int i, base;
618
619         atomic_inc(&init_mm.mm_count);
620         current->active_mm = &init_mm;
621
622         smp_store_cpu_info(cpu);
623         set_dec(tb_ticks_per_jiffy);
624         preempt_disable();
625         cpu_callin_map[cpu] = 1;
626
627         if (smp_ops->setup_cpu)
628                 smp_ops->setup_cpu(cpu);
629         if (smp_ops->take_timebase)
630                 smp_ops->take_timebase();
631
632         secondary_cpu_time_init();
633
634 #ifdef CONFIG_PPC64
635         if (system_state == SYSTEM_RUNNING)
636                 vdso_data->processorCount++;
637
638         vdso_getcpu_init();
639 #endif
640         notify_cpu_starting(cpu);
641         set_cpu_online(cpu, true);
642         /* Update sibling maps */
643         base = cpu_first_thread_sibling(cpu);
644         for (i = 0; i < threads_per_core; i++) {
645                 if (cpu_is_offline(base + i))
646                         continue;
647                 cpumask_set_cpu(cpu, cpu_sibling_mask(base + i));
648                 cpumask_set_cpu(base + i, cpu_sibling_mask(cpu));
649
650                 /* cpu_core_map should be a superset of
651                  * cpu_sibling_map even if we don't have cache
652                  * information, so update the former here, too.
653                  */
654                 cpumask_set_cpu(cpu, cpu_core_mask(base + i));
655                 cpumask_set_cpu(base + i, cpu_core_mask(cpu));
656         }
657         l2_cache = cpu_to_l2cache(cpu);
658         for_each_online_cpu(i) {
659                 struct device_node *np = cpu_to_l2cache(i);
660                 if (!np)
661                         continue;
662                 if (np == l2_cache) {
663                         cpumask_set_cpu(cpu, cpu_core_mask(i));
664                         cpumask_set_cpu(i, cpu_core_mask(cpu));
665                 }
666                 of_node_put(np);
667         }
668         of_node_put(l2_cache);
669
670         local_irq_enable();
671
672         cpu_idle();
673
674         BUG();
675 }
676
677 int setup_profiling_timer(unsigned int multiplier)
678 {
679         return 0;
680 }
681
682 void __init smp_cpus_done(unsigned int max_cpus)
683 {
684         cpumask_var_t old_mask;
685
686         /* We want the setup_cpu() here to be called from CPU 0, but our
687          * init thread may have been "borrowed" by another CPU in the meantime
688          * se we pin us down to CPU 0 for a short while
689          */
690         alloc_cpumask_var(&old_mask, GFP_NOWAIT);
691         cpumask_copy(old_mask, tsk_cpus_allowed(current));
692         set_cpus_allowed_ptr(current, cpumask_of(boot_cpuid));
693         
694         if (smp_ops && smp_ops->setup_cpu)
695                 smp_ops->setup_cpu(boot_cpuid);
696
697         set_cpus_allowed_ptr(current, old_mask);
698
699         free_cpumask_var(old_mask);
700
701         if (smp_ops && smp_ops->bringup_done)
702                 smp_ops->bringup_done();
703
704         dump_numa_cpu_topology();
705
706 }
707
708 int arch_sd_sibling_asym_packing(void)
709 {
710         if (cpu_has_feature(CPU_FTR_ASYM_SMT)) {
711                 printk_once(KERN_INFO "Enabling Asymmetric SMT scheduling\n");
712                 return SD_ASYM_PACKING;
713         }
714         return 0;
715 }
716
717 #ifdef CONFIG_HOTPLUG_CPU
718 int __cpu_disable(void)
719 {
720         struct device_node *l2_cache;
721         int cpu = smp_processor_id();
722         int base, i;
723         int err;
724
725         if (!smp_ops->cpu_disable)
726                 return -ENOSYS;
727
728         err = smp_ops->cpu_disable();
729         if (err)
730                 return err;
731
732         /* Update sibling maps */
733         base = cpu_first_thread_sibling(cpu);
734         for (i = 0; i < threads_per_core; i++) {
735                 cpumask_clear_cpu(cpu, cpu_sibling_mask(base + i));
736                 cpumask_clear_cpu(base + i, cpu_sibling_mask(cpu));
737                 cpumask_clear_cpu(cpu, cpu_core_mask(base + i));
738                 cpumask_clear_cpu(base + i, cpu_core_mask(cpu));
739         }
740
741         l2_cache = cpu_to_l2cache(cpu);
742         for_each_present_cpu(i) {
743                 struct device_node *np = cpu_to_l2cache(i);
744                 if (!np)
745                         continue;
746                 if (np == l2_cache) {
747                         cpumask_clear_cpu(cpu, cpu_core_mask(i));
748                         cpumask_clear_cpu(i, cpu_core_mask(cpu));
749                 }
750                 of_node_put(np);
751         }
752         of_node_put(l2_cache);
753
754
755         return 0;
756 }
757
758 void __cpu_die(unsigned int cpu)
759 {
760         if (smp_ops->cpu_die)
761                 smp_ops->cpu_die(cpu);
762 }
763
764 static DEFINE_MUTEX(powerpc_cpu_hotplug_driver_mutex);
765
766 void cpu_hotplug_driver_lock()
767 {
768         mutex_lock(&powerpc_cpu_hotplug_driver_mutex);
769 }
770
771 void cpu_hotplug_driver_unlock()
772 {
773         mutex_unlock(&powerpc_cpu_hotplug_driver_mutex);
774 }
775
776 void cpu_die(void)
777 {
778         if (ppc_md.cpu_die)
779                 ppc_md.cpu_die();
780
781         /* If we return, we re-enter start_secondary */
782         start_secondary_resume();
783 }
784
785 #endif