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10#include <linux/kernel.h>
11#include <linux/interrupt.h>
12#include <linux/clocksource.h>
13#include <linux/clockchips.h>
14#include <linux/kernel_stat.h>
15#include <linux/math64.h>
16#include <linux/gfp.h>
17#include <linux/slab.h>
18#include <linux/pvclock_gtod.h>
19
20#include <asm/pvclock.h>
21#include <asm/xen/hypervisor.h>
22#include <asm/xen/hypercall.h>
23
24#include <xen/events.h>
25#include <xen/features.h>
26#include <xen/interface/xen.h>
27#include <xen/interface/vcpu.h>
28
29#include "xen-ops.h"
30
31
32#define TIMER_SLOP 100000
33#define NS_PER_TICK (1000000000LL / HZ)
34
35
36static DEFINE_PER_CPU(struct vcpu_runstate_info, xen_runstate);
37
38
39static DEFINE_PER_CPU(struct vcpu_runstate_info, xen_runstate_snapshot);
40
41
42static DEFINE_PER_CPU(u64, xen_residual_stolen);
43
44
45static u64 get64(const u64 *p)
46{
47 u64 ret;
48
49 if (BITS_PER_LONG < 64) {
50 u32 *p32 = (u32 *)p;
51 u32 h, l;
52
53
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55
56
57
58
59 do {
60 h = p32[1];
61 barrier();
62 l = p32[0];
63 barrier();
64 } while (p32[1] != h);
65
66 ret = (((u64)h) << 32) | l;
67 } else
68 ret = *p;
69
70 return ret;
71}
72
73
74
75
76static void get_runstate_snapshot(struct vcpu_runstate_info *res)
77{
78 u64 state_time;
79 struct vcpu_runstate_info *state;
80
81 BUG_ON(preemptible());
82
83 state = this_cpu_ptr(&xen_runstate);
84
85
86
87
88
89
90 do {
91 state_time = get64(&state->state_entry_time);
92 barrier();
93 *res = *state;
94 barrier();
95 } while (get64(&state->state_entry_time) != state_time);
96}
97
98
99bool xen_vcpu_stolen(int vcpu)
100{
101 return per_cpu(xen_runstate, vcpu).state == RUNSTATE_runnable;
102}
103
104void xen_setup_runstate_info(int cpu)
105{
106 struct vcpu_register_runstate_memory_area area;
107
108 area.addr.v = &per_cpu(xen_runstate, cpu);
109
110 if (HYPERVISOR_vcpu_op(VCPUOP_register_runstate_memory_area,
111 cpu, &area))
112 BUG();
113}
114
115static void do_stolen_accounting(void)
116{
117 struct vcpu_runstate_info state;
118 struct vcpu_runstate_info *snap;
119 s64 runnable, offline, stolen;
120 cputime_t ticks;
121
122 get_runstate_snapshot(&state);
123
124 WARN_ON(state.state != RUNSTATE_running);
125
126 snap = this_cpu_ptr(&xen_runstate_snapshot);
127
128
129 runnable = state.time[RUNSTATE_runnable] - snap->time[RUNSTATE_runnable];
130 offline = state.time[RUNSTATE_offline] - snap->time[RUNSTATE_offline];
131
132 *snap = state;
133
134
135
136 stolen = runnable + offline + __this_cpu_read(xen_residual_stolen);
137
138 if (stolen < 0)
139 stolen = 0;
140
141 ticks = iter_div_u64_rem(stolen, NS_PER_TICK, &stolen);
142 __this_cpu_write(xen_residual_stolen, stolen);
143 account_steal_ticks(ticks);
144}
145
146
147static unsigned long xen_tsc_khz(void)
148{
149 struct pvclock_vcpu_time_info *info =
150 &HYPERVISOR_shared_info->vcpu_info[0].time;
151
152 return pvclock_tsc_khz(info);
153}
154
155cycle_t xen_clocksource_read(void)
156{
157 struct pvclock_vcpu_time_info *src;
158 cycle_t ret;
159
160 preempt_disable_notrace();
161 src = &__this_cpu_read(xen_vcpu)->time;
162 ret = pvclock_clocksource_read(src);
163 preempt_enable_notrace();
164 return ret;
165}
166
167static cycle_t xen_clocksource_get_cycles(struct clocksource *cs)
168{
169 return xen_clocksource_read();
170}
171
172static void xen_read_wallclock(struct timespec *ts)
173{
174 struct shared_info *s = HYPERVISOR_shared_info;
175 struct pvclock_wall_clock *wall_clock = &(s->wc);
176 struct pvclock_vcpu_time_info *vcpu_time;
177
178 vcpu_time = &get_cpu_var(xen_vcpu)->time;
179 pvclock_read_wallclock(wall_clock, vcpu_time, ts);
180 put_cpu_var(xen_vcpu);
181}
182
183static void xen_get_wallclock(struct timespec *now)
184{
185 xen_read_wallclock(now);
186}
187
188static int xen_set_wallclock(const struct timespec *now)
189{
190 return -1;
191}
192
193static int xen_pvclock_gtod_notify(struct notifier_block *nb,
194 unsigned long was_set, void *priv)
195{
196
197 static struct timespec next_sync;
198
199 struct xen_platform_op op;
200 struct timespec now;
201
202 now = __current_kernel_time();
203
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206
207
208 if (!was_set && timespec_compare(&now, &next_sync) < 0)
209 return NOTIFY_OK;
210
211 op.cmd = XENPF_settime;
212 op.u.settime.secs = now.tv_sec;
213 op.u.settime.nsecs = now.tv_nsec;
214 op.u.settime.system_time = xen_clocksource_read();
215
216 (void)HYPERVISOR_dom0_op(&op);
217
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222
223 next_sync = now;
224 next_sync.tv_sec += 11 * 60;
225
226 return NOTIFY_OK;
227}
228
229static struct notifier_block xen_pvclock_gtod_notifier = {
230 .notifier_call = xen_pvclock_gtod_notify,
231};
232
233static struct clocksource xen_clocksource __read_mostly = {
234 .name = "xen",
235 .rating = 400,
236 .read = xen_clocksource_get_cycles,
237 .mask = ~0,
238 .flags = CLOCK_SOURCE_IS_CONTINUOUS,
239};
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272static s64 get_abs_timeout(unsigned long delta)
273{
274 return xen_clocksource_read() + delta;
275}
276
277static void xen_timerop_set_mode(enum clock_event_mode mode,
278 struct clock_event_device *evt)
279{
280 switch (mode) {
281 case CLOCK_EVT_MODE_PERIODIC:
282
283 WARN_ON(1);
284 break;
285
286 case CLOCK_EVT_MODE_ONESHOT:
287 case CLOCK_EVT_MODE_RESUME:
288 break;
289
290 case CLOCK_EVT_MODE_UNUSED:
291 case CLOCK_EVT_MODE_SHUTDOWN:
292 HYPERVISOR_set_timer_op(0);
293 break;
294 }
295}
296
297static int xen_timerop_set_next_event(unsigned long delta,
298 struct clock_event_device *evt)
299{
300 WARN_ON(evt->mode != CLOCK_EVT_MODE_ONESHOT);
301
302 if (HYPERVISOR_set_timer_op(get_abs_timeout(delta)) < 0)
303 BUG();
304
305
306
307
308
309 return 0;
310}
311
312static const struct clock_event_device xen_timerop_clockevent = {
313 .name = "xen",
314 .features = CLOCK_EVT_FEAT_ONESHOT,
315
316 .max_delta_ns = 0xffffffff,
317 .min_delta_ns = TIMER_SLOP,
318
319 .mult = 1,
320 .shift = 0,
321 .rating = 500,
322
323 .set_mode = xen_timerop_set_mode,
324 .set_next_event = xen_timerop_set_next_event,
325};
326
327
328
329static void xen_vcpuop_set_mode(enum clock_event_mode mode,
330 struct clock_event_device *evt)
331{
332 int cpu = smp_processor_id();
333
334 switch (mode) {
335 case CLOCK_EVT_MODE_PERIODIC:
336 WARN_ON(1);
337 break;
338
339 case CLOCK_EVT_MODE_ONESHOT:
340 if (HYPERVISOR_vcpu_op(VCPUOP_stop_periodic_timer, cpu, NULL))
341 BUG();
342 break;
343
344 case CLOCK_EVT_MODE_UNUSED:
345 case CLOCK_EVT_MODE_SHUTDOWN:
346 if (HYPERVISOR_vcpu_op(VCPUOP_stop_singleshot_timer, cpu, NULL) ||
347 HYPERVISOR_vcpu_op(VCPUOP_stop_periodic_timer, cpu, NULL))
348 BUG();
349 break;
350 case CLOCK_EVT_MODE_RESUME:
351 break;
352 }
353}
354
355static int xen_vcpuop_set_next_event(unsigned long delta,
356 struct clock_event_device *evt)
357{
358 int cpu = smp_processor_id();
359 struct vcpu_set_singleshot_timer single;
360 int ret;
361
362 WARN_ON(evt->mode != CLOCK_EVT_MODE_ONESHOT);
363
364 single.timeout_abs_ns = get_abs_timeout(delta);
365 single.flags = VCPU_SSHOTTMR_future;
366
367 ret = HYPERVISOR_vcpu_op(VCPUOP_set_singleshot_timer, cpu, &single);
368
369 BUG_ON(ret != 0 && ret != -ETIME);
370
371 return ret;
372}
373
374static const struct clock_event_device xen_vcpuop_clockevent = {
375 .name = "xen",
376 .features = CLOCK_EVT_FEAT_ONESHOT,
377
378 .max_delta_ns = 0xffffffff,
379 .min_delta_ns = TIMER_SLOP,
380
381 .mult = 1,
382 .shift = 0,
383 .rating = 500,
384
385 .set_mode = xen_vcpuop_set_mode,
386 .set_next_event = xen_vcpuop_set_next_event,
387};
388
389static const struct clock_event_device *xen_clockevent =
390 &xen_timerop_clockevent;
391
392struct xen_clock_event_device {
393 struct clock_event_device evt;
394 char name[16];
395};
396static DEFINE_PER_CPU(struct xen_clock_event_device, xen_clock_events) = { .evt.irq = -1 };
397
398static irqreturn_t xen_timer_interrupt(int irq, void *dev_id)
399{
400 struct clock_event_device *evt = this_cpu_ptr(&xen_clock_events.evt);
401 irqreturn_t ret;
402
403 ret = IRQ_NONE;
404 if (evt->event_handler) {
405 evt->event_handler(evt);
406 ret = IRQ_HANDLED;
407 }
408
409 do_stolen_accounting();
410
411 return ret;
412}
413
414void xen_teardown_timer(int cpu)
415{
416 struct clock_event_device *evt;
417 BUG_ON(cpu == 0);
418 evt = &per_cpu(xen_clock_events, cpu).evt;
419
420 if (evt->irq >= 0) {
421 unbind_from_irqhandler(evt->irq, NULL);
422 evt->irq = -1;
423 }
424}
425
426void xen_setup_timer(int cpu)
427{
428 struct xen_clock_event_device *xevt = &per_cpu(xen_clock_events, cpu);
429 struct clock_event_device *evt = &xevt->evt;
430 int irq;
431
432 WARN(evt->irq >= 0, "IRQ%d for CPU%d is already allocated\n", evt->irq, cpu);
433 if (evt->irq >= 0)
434 xen_teardown_timer(cpu);
435
436 printk(KERN_INFO "installing Xen timer for CPU %d\n", cpu);
437
438 snprintf(xevt->name, sizeof(xevt->name), "timer%d", cpu);
439
440 irq = bind_virq_to_irqhandler(VIRQ_TIMER, cpu, xen_timer_interrupt,
441 IRQF_PERCPU|IRQF_NOBALANCING|IRQF_TIMER|
442 IRQF_FORCE_RESUME|IRQF_EARLY_RESUME,
443 xevt->name, NULL);
444 (void)xen_set_irq_priority(irq, XEN_IRQ_PRIORITY_MAX);
445
446 memcpy(evt, xen_clockevent, sizeof(*evt));
447
448 evt->cpumask = cpumask_of(cpu);
449 evt->irq = irq;
450}
451
452
453void xen_setup_cpu_clockevents(void)
454{
455 clockevents_register_device(this_cpu_ptr(&xen_clock_events.evt));
456}
457
458void xen_timer_resume(void)
459{
460 int cpu;
461
462 pvclock_resume();
463
464 if (xen_clockevent != &xen_vcpuop_clockevent)
465 return;
466
467 for_each_online_cpu(cpu) {
468 if (HYPERVISOR_vcpu_op(VCPUOP_stop_periodic_timer, cpu, NULL))
469 BUG();
470 }
471}
472
473static const struct pv_time_ops xen_time_ops __initconst = {
474 .sched_clock = xen_clocksource_read,
475};
476
477static void __init xen_time_init(void)
478{
479 int cpu = smp_processor_id();
480 struct timespec tp;
481
482
483 if (xen_initial_domain())
484 xen_clocksource.rating = 275;
485
486 clocksource_register_hz(&xen_clocksource, NSEC_PER_SEC);
487
488 if (HYPERVISOR_vcpu_op(VCPUOP_stop_periodic_timer, cpu, NULL) == 0) {
489
490
491 printk(KERN_DEBUG "Xen: using vcpuop timer interface\n");
492 xen_clockevent = &xen_vcpuop_clockevent;
493 }
494
495
496 xen_read_wallclock(&tp);
497 do_settimeofday(&tp);
498
499 setup_force_cpu_cap(X86_FEATURE_TSC);
500
501 xen_setup_runstate_info(cpu);
502 xen_setup_timer(cpu);
503 xen_setup_cpu_clockevents();
504
505 if (xen_initial_domain())
506 pvclock_gtod_register_notifier(&xen_pvclock_gtod_notifier);
507}
508
509void __init xen_init_time_ops(void)
510{
511 pv_time_ops = xen_time_ops;
512
513 x86_init.timers.timer_init = xen_time_init;
514 x86_init.timers.setup_percpu_clockev = x86_init_noop;
515 x86_cpuinit.setup_percpu_clockev = x86_init_noop;
516
517 x86_platform.calibrate_tsc = xen_tsc_khz;
518 x86_platform.get_wallclock = xen_get_wallclock;
519
520 if (!xen_initial_domain())
521 x86_platform.set_wallclock = xen_set_wallclock;
522}
523
524#ifdef CONFIG_XEN_PVHVM
525static void xen_hvm_setup_cpu_clockevents(void)
526{
527 int cpu = smp_processor_id();
528 xen_setup_runstate_info(cpu);
529
530
531
532
533
534 xen_setup_cpu_clockevents();
535}
536
537void __init xen_hvm_init_time_ops(void)
538{
539
540
541
542 if (!xen_have_vector_callback)
543 return;
544 if (!xen_feature(XENFEAT_hvm_safe_pvclock)) {
545 printk(KERN_INFO "Xen doesn't support pvclock on HVM,"
546 "disable pv timer\n");
547 return;
548 }
549
550 pv_time_ops = xen_time_ops;
551 x86_init.timers.setup_percpu_clockev = xen_time_init;
552 x86_cpuinit.setup_percpu_clockev = xen_hvm_setup_cpu_clockevents;
553
554 x86_platform.calibrate_tsc = xen_tsc_khz;
555 x86_platform.get_wallclock = xen_get_wallclock;
556 x86_platform.set_wallclock = xen_set_wallclock;
557}
558#endif
559