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[tomato.git] / release / src-rt-6.x.4708 / linux / linux-2.6.36 / arch / mips / kernel / smp.c
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1 /*
2 * This program is free software; you can redistribute it and/or
3 * modify it under the terms of the GNU General Public License
4 * as published by the Free Software Foundation; either version 2
5 * of the License, or (at your option) any later version.
7 * This program is distributed in the hope that it will be useful,
8 * but WITHOUT ANY WARRANTY; without even the implied warranty of
9 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
10 * GNU General Public License for more details.
12 * You should have received a copy of the GNU General Public License
13 * along with this program; if not, write to the Free Software
14 * Foundation, Inc., 59 Temple Place - Suite 330, Boston, MA 02111-1307, USA.
16 * Copyright (C) 2000, 2001 Kanoj Sarcar
17 * Copyright (C) 2000, 2001 Ralf Baechle
18 * Copyright (C) 2000, 2001 Silicon Graphics, Inc.
19 * Copyright (C) 2000, 2001, 2003 Broadcom Corporation
21 #include <linux/cache.h>
22 #include <linux/delay.h>
23 #include <linux/init.h>
24 #include <linux/interrupt.h>
25 #include <linux/smp.h>
26 #include <linux/spinlock.h>
27 #include <linux/threads.h>
28 #include <linux/module.h>
29 #include <linux/time.h>
30 #include <linux/timex.h>
31 #include <linux/sched.h>
32 #include <linux/cpumask.h>
33 #include <linux/cpu.h>
34 #include <linux/err.h>
35 #include <linux/ftrace.h>
37 #include <asm/atomic.h>
38 #include <asm/cpu.h>
39 #include <asm/processor.h>
40 #include <asm/r4k-timer.h>
41 #include <asm/system.h>
42 #include <asm/mmu_context.h>
43 #include <asm/time.h>
45 #ifdef CONFIG_MIPS_MT_SMTC
46 #include <asm/mipsmtregs.h>
47 #endif /* CONFIG_MIPS_MT_SMTC */
49 volatile cpumask_t cpu_callin_map; /* Bitmask of started secondaries */
51 int __cpu_number_map[NR_CPUS]; /* Map physical to logical */
52 EXPORT_SYMBOL(__cpu_number_map);
54 int __cpu_logical_map[NR_CPUS]; /* Map logical to physical */
55 EXPORT_SYMBOL(__cpu_logical_map);
57 /* Number of TCs (or siblings in Intel speak) per CPU core */
58 int smp_num_siblings = 1;
59 EXPORT_SYMBOL(smp_num_siblings);
61 /* representing the TCs (or siblings in Intel speak) of each logical CPU */
62 cpumask_t cpu_sibling_map[NR_CPUS] __read_mostly;
63 EXPORT_SYMBOL(cpu_sibling_map);
65 /* representing cpus for which sibling maps can be computed */
66 static cpumask_t cpu_sibling_setup_map;
68 static inline void set_cpu_sibling_map(int cpu)
70 int i;
72 cpu_set(cpu, cpu_sibling_setup_map);
74 if (smp_num_siblings > 1) {
75 for_each_cpu_mask(i, cpu_sibling_setup_map) {
76 if (cpu_data[cpu].core == cpu_data[i].core) {
77 cpu_set(i, cpu_sibling_map[cpu]);
78 cpu_set(cpu, cpu_sibling_map[i]);
81 } else
82 cpu_set(cpu, cpu_sibling_map[cpu]);
85 struct plat_smp_ops *mp_ops;
87 __cpuinit void register_smp_ops(struct plat_smp_ops *ops)
89 if (mp_ops)
90 printk(KERN_WARNING "Overriding previously set SMP ops\n");
92 mp_ops = ops;
96 * First C code run on the secondary CPUs after being started up by
97 * the master.
99 asmlinkage __cpuinit void start_secondary(void)
101 unsigned int cpu;
103 #ifdef CONFIG_MIPS_MT_SMTC
104 /* Only do cpu_probe for first TC of CPU */
105 if ((read_c0_tcbind() & TCBIND_CURTC) != 0)
106 __cpu_name[smp_processor_id()] = __cpu_name[0];
107 else
108 #endif /* CONFIG_MIPS_MT_SMTC */
109 cpu_probe();
110 cpu_report();
111 per_cpu_trap_init();
112 mips_clockevent_init();
113 mp_ops->init_secondary();
116 calibrate_delay();
117 preempt_disable();
118 cpu = smp_processor_id();
119 cpu_data[cpu].udelay_val = loops_per_jiffy;
121 notify_cpu_starting(cpu);
123 mp_ops->smp_finish();
124 set_cpu_sibling_map(cpu);
126 cpu_set(cpu, cpu_callin_map);
128 synchronise_count_slave();
130 cpu_idle();
134 * Call into both interrupt handlers, as we share the IPI for them
136 void __irq_entry smp_call_function_interrupt(void)
138 irq_enter();
139 generic_smp_call_function_single_interrupt();
140 generic_smp_call_function_interrupt();
141 irq_exit();
144 static void stop_this_cpu(void *dummy)
147 * Remove this CPU:
149 cpu_clear(smp_processor_id(), cpu_online_map);
150 for (;;) {
151 if (cpu_wait)
152 (*cpu_wait)(); /* Wait if available. */
156 void smp_send_stop(void)
158 smp_call_function(stop_this_cpu, NULL, 0);
161 void __init smp_cpus_done(unsigned int max_cpus)
163 mp_ops->cpus_done();
164 synchronise_count_master();
167 /* called from main before smp_init() */
168 void __init smp_prepare_cpus(unsigned int max_cpus)
170 init_new_context(current, &init_mm);
171 current_thread_info()->cpu = 0;
172 mp_ops->prepare_cpus(max_cpus);
173 set_cpu_sibling_map(0);
174 #ifndef CONFIG_HOTPLUG_CPU
175 init_cpu_present(&cpu_possible_map);
176 #endif
179 /* preload SMP state for boot cpu */
180 void __devinit smp_prepare_boot_cpu(void)
182 set_cpu_possible(0, true);
183 set_cpu_online(0, true);
184 cpu_set(0, cpu_callin_map);
188 * Called once for each "cpu_possible(cpu)". Needs to spin up the cpu
189 * and keep control until "cpu_online(cpu)" is set. Note: cpu is
190 * physical, not logical.
192 static struct task_struct *cpu_idle_thread[NR_CPUS];
194 struct create_idle {
195 struct work_struct work;
196 struct task_struct *idle;
197 struct completion done;
198 int cpu;
201 static void __cpuinit do_fork_idle(struct work_struct *work)
203 struct create_idle *c_idle =
204 container_of(work, struct create_idle, work);
206 c_idle->idle = fork_idle(c_idle->cpu);
207 complete(&c_idle->done);
210 int __cpuinit __cpu_up(unsigned int cpu)
212 struct task_struct *idle;
215 * Processor goes to start_secondary(), sets online flag
216 * The following code is purely to make sure
217 * Linux can schedule processes on this slave.
219 if (!cpu_idle_thread[cpu]) {
221 * Schedule work item to avoid forking user task
222 * Ported from arch/x86/kernel/smpboot.c
224 struct create_idle c_idle = {
225 .cpu = cpu,
226 .done = COMPLETION_INITIALIZER_ONSTACK(c_idle.done),
229 INIT_WORK_ON_STACK(&c_idle.work, do_fork_idle);
230 schedule_work(&c_idle.work);
231 wait_for_completion(&c_idle.done);
232 idle = cpu_idle_thread[cpu] = c_idle.idle;
234 if (IS_ERR(idle))
235 panic(KERN_ERR "Fork failed for CPU %d", cpu);
236 } else {
237 idle = cpu_idle_thread[cpu];
238 init_idle(idle, cpu);
241 mp_ops->boot_secondary(cpu, idle);
244 * Trust is futile. We should really have timeouts ...
246 while (!cpu_isset(cpu, cpu_callin_map))
247 udelay(100);
249 cpu_set(cpu, cpu_online_map);
251 return 0;
254 /* Not really SMP stuff ... */
255 int setup_profiling_timer(unsigned int multiplier)
257 return 0;
260 static void flush_tlb_all_ipi(void *info)
262 local_flush_tlb_all();
265 void flush_tlb_all(void)
267 on_each_cpu(flush_tlb_all_ipi, NULL, 1);
270 static void flush_tlb_mm_ipi(void *mm)
272 local_flush_tlb_mm((struct mm_struct *)mm);
276 * Special Variant of smp_call_function for use by TLB functions:
278 * o No return value
279 * o collapses to normal function call on UP kernels
280 * o collapses to normal function call on systems with a single shared
281 * primary cache.
282 * o CONFIG_MIPS_MT_SMTC currently implies there is only one physical core.
284 static inline void smp_on_other_tlbs(void (*func) (void *info), void *info)
286 #ifndef CONFIG_MIPS_MT_SMTC
287 smp_call_function(func, info, 1);
288 #endif
291 static inline void smp_on_each_tlb(void (*func) (void *info), void *info)
293 preempt_disable();
295 smp_on_other_tlbs(func, info);
296 func(info);
298 preempt_enable();
302 * The following tlb flush calls are invoked when old translations are
303 * being torn down, or pte attributes are changing. For single threaded
304 * address spaces, a new context is obtained on the current cpu, and tlb
305 * context on other cpus are invalidated to force a new context allocation
306 * at switch_mm time, should the mm ever be used on other cpus. For
307 * multithreaded address spaces, intercpu interrupts have to be sent.
308 * Another case where intercpu interrupts are required is when the target
309 * mm might be active on another cpu (eg debuggers doing the flushes on
310 * behalf of debugees, kswapd stealing pages from another process etc).
311 * Kanoj 07/00.
314 void flush_tlb_mm(struct mm_struct *mm)
316 preempt_disable();
318 if ((atomic_read(&mm->mm_users) != 1) || (current->mm != mm)) {
319 smp_on_other_tlbs(flush_tlb_mm_ipi, mm);
320 } else {
321 cpumask_t mask = cpu_online_map;
322 unsigned int cpu;
324 cpu_clear(smp_processor_id(), mask);
325 for_each_cpu_mask(cpu, mask)
326 if (cpu_context(cpu, mm))
327 cpu_context(cpu, mm) = 0;
329 local_flush_tlb_mm(mm);
331 preempt_enable();
334 struct flush_tlb_data {
335 struct vm_area_struct *vma;
336 unsigned long addr1;
337 unsigned long addr2;
340 static void flush_tlb_range_ipi(void *info)
342 struct flush_tlb_data *fd = info;
344 local_flush_tlb_range(fd->vma, fd->addr1, fd->addr2);
347 void flush_tlb_range(struct vm_area_struct *vma, unsigned long start, unsigned long end)
349 struct mm_struct *mm = vma->vm_mm;
351 preempt_disable();
352 if ((atomic_read(&mm->mm_users) != 1) || (current->mm != mm)) {
353 struct flush_tlb_data fd = {
354 .vma = vma,
355 .addr1 = start,
356 .addr2 = end,
359 smp_on_other_tlbs(flush_tlb_range_ipi, &fd);
360 } else {
361 cpumask_t mask = cpu_online_map;
362 unsigned int cpu;
364 cpu_clear(smp_processor_id(), mask);
365 for_each_cpu_mask(cpu, mask)
366 if (cpu_context(cpu, mm))
367 cpu_context(cpu, mm) = 0;
369 local_flush_tlb_range(vma, start, end);
370 preempt_enable();
373 static void flush_tlb_kernel_range_ipi(void *info)
375 struct flush_tlb_data *fd = info;
377 local_flush_tlb_kernel_range(fd->addr1, fd->addr2);
380 void flush_tlb_kernel_range(unsigned long start, unsigned long end)
382 struct flush_tlb_data fd = {
383 .addr1 = start,
384 .addr2 = end,
387 on_each_cpu(flush_tlb_kernel_range_ipi, &fd, 1);
390 static void flush_tlb_page_ipi(void *info)
392 struct flush_tlb_data *fd = info;
394 local_flush_tlb_page(fd->vma, fd->addr1);
397 void flush_tlb_page(struct vm_area_struct *vma, unsigned long page)
399 preempt_disable();
400 if ((atomic_read(&vma->vm_mm->mm_users) != 1) || (current->mm != vma->vm_mm)) {
401 struct flush_tlb_data fd = {
402 .vma = vma,
403 .addr1 = page,
406 smp_on_other_tlbs(flush_tlb_page_ipi, &fd);
407 } else {
408 cpumask_t mask = cpu_online_map;
409 unsigned int cpu;
411 cpu_clear(smp_processor_id(), mask);
412 for_each_cpu_mask(cpu, mask)
413 if (cpu_context(cpu, vma->vm_mm))
414 cpu_context(cpu, vma->vm_mm) = 0;
416 local_flush_tlb_page(vma, page);
417 preempt_enable();
420 static void flush_tlb_one_ipi(void *info)
422 unsigned long vaddr = (unsigned long) info;
424 local_flush_tlb_one(vaddr);
427 void flush_tlb_one(unsigned long vaddr)
429 smp_on_each_tlb(flush_tlb_one_ipi, (void *) vaddr);
432 EXPORT_SYMBOL(flush_tlb_page);
433 EXPORT_SYMBOL(flush_tlb_one);