2 * Virtual cpu timer based timer functions.
4 * Copyright IBM Corp. 2004, 2012
5 * Author(s): Jan Glauber <jan.glauber@de.ibm.com>
8 #include <linux/kernel_stat.h>
9 #include <linux/notifier.h>
10 #include <linux/kprobes.h>
11 #include <linux/export.h>
12 #include <linux/kernel.h>
13 #include <linux/timex.h>
14 #include <linux/types.h>
15 #include <linux/time.h>
16 #include <linux/cpu.h>
17 #include <linux/smp.h>
19 #include <asm/irq_regs.h>
20 #include <asm/cputime.h>
21 #include <asm/vtimer.h>
25 static void virt_timer_expire(void);
27 DEFINE_PER_CPU(struct s390_idle_data
, s390_idle
);
29 static LIST_HEAD(virt_timer_list
);
30 static DEFINE_SPINLOCK(virt_timer_lock
);
31 static atomic64_t virt_timer_current
;
32 static atomic64_t virt_timer_elapsed
;
34 static inline u64
get_vtimer(void)
38 asm volatile("stpt %0" : "=m" (timer
));
42 static inline void set_vtimer(u64 expires
)
47 " stpt %0\n" /* Store current cpu timer value */
48 " spt %1" /* Set new value imm. afterwards */
49 : "=m" (timer
) : "m" (expires
));
50 S390_lowcore
.system_timer
+= S390_lowcore
.last_update_timer
- timer
;
51 S390_lowcore
.last_update_timer
= expires
;
54 static inline int virt_timer_forward(u64 elapsed
)
56 BUG_ON(!irqs_disabled());
58 if (list_empty(&virt_timer_list
))
60 elapsed
= atomic64_add_return(elapsed
, &virt_timer_elapsed
);
61 return elapsed
>= atomic64_read(&virt_timer_current
);
65 * Update process times based on virtual cpu times stored by entry.S
66 * to the lowcore fields user_timer, system_timer & steal_clock.
68 static int do_account_vtime(struct task_struct
*tsk
, int hardirq_offset
)
70 struct thread_info
*ti
= task_thread_info(tsk
);
71 u64 timer
, clock
, user
, system
, steal
;
73 timer
= S390_lowcore
.last_update_timer
;
74 clock
= S390_lowcore
.last_update_clock
;
76 " stpt %0\n" /* Store current cpu timer value */
77 " stck %1" /* Store current tod clock value */
78 : "=m" (S390_lowcore
.last_update_timer
),
79 "=m" (S390_lowcore
.last_update_clock
));
80 S390_lowcore
.system_timer
+= timer
- S390_lowcore
.last_update_timer
;
81 S390_lowcore
.steal_timer
+= S390_lowcore
.last_update_clock
- clock
;
83 user
= S390_lowcore
.user_timer
- ti
->user_timer
;
84 S390_lowcore
.steal_timer
-= user
;
85 ti
->user_timer
= S390_lowcore
.user_timer
;
86 account_user_time(tsk
, user
, user
);
88 system
= S390_lowcore
.system_timer
- ti
->system_timer
;
89 S390_lowcore
.steal_timer
-= system
;
90 ti
->system_timer
= S390_lowcore
.system_timer
;
91 account_system_time(tsk
, hardirq_offset
, system
, system
);
93 steal
= S390_lowcore
.steal_timer
;
94 if ((s64
) steal
> 0) {
95 S390_lowcore
.steal_timer
= 0;
96 account_steal_time(steal
);
99 return virt_timer_forward(user
+ system
);
102 void vtime_task_switch(struct task_struct
*prev
)
104 struct thread_info
*ti
;
106 do_account_vtime(prev
, 0);
107 ti
= task_thread_info(prev
);
108 ti
->user_timer
= S390_lowcore
.user_timer
;
109 ti
->system_timer
= S390_lowcore
.system_timer
;
110 ti
= task_thread_info(current
);
111 S390_lowcore
.user_timer
= ti
->user_timer
;
112 S390_lowcore
.system_timer
= ti
->system_timer
;
115 void account_process_tick(struct task_struct
*tsk
, int user_tick
)
117 if (do_account_vtime(tsk
, HARDIRQ_OFFSET
))
122 * Update process times based on virtual cpu times stored by entry.S
123 * to the lowcore fields user_timer, system_timer & steal_clock.
125 void vtime_account(struct task_struct
*tsk
)
127 struct thread_info
*ti
= task_thread_info(tsk
);
130 timer
= S390_lowcore
.last_update_timer
;
131 S390_lowcore
.last_update_timer
= get_vtimer();
132 S390_lowcore
.system_timer
+= timer
- S390_lowcore
.last_update_timer
;
134 system
= S390_lowcore
.system_timer
- ti
->system_timer
;
135 S390_lowcore
.steal_timer
-= system
;
136 ti
->system_timer
= S390_lowcore
.system_timer
;
137 account_system_time(tsk
, 0, system
, system
);
139 virt_timer_forward(system
);
141 EXPORT_SYMBOL_GPL(vtime_account
);
143 void __kprobes
vtime_stop_cpu(void)
145 struct s390_idle_data
*idle
= &__get_cpu_var(s390_idle
);
146 unsigned long long idle_time
;
147 unsigned long psw_mask
;
150 /* Don't trace preempt off for idle. */
151 stop_critical_timings();
153 /* Wait for external, I/O or machine check interrupt. */
154 psw_mask
= psw_kernel_bits
| PSW_MASK_WAIT
| PSW_MASK_DAT
|
155 PSW_MASK_IO
| PSW_MASK_EXT
| PSW_MASK_MCHECK
;
156 idle
->nohz_delay
= 0;
158 /* Call the assembler magic in entry.S */
159 psw_idle(idle
, psw_mask
);
161 /* Reenable preemption tracer. */
162 start_critical_timings();
164 /* Account time spent with enabled wait psw loaded as idle time. */
167 idle_time
= idle
->clock_idle_exit
- idle
->clock_idle_enter
;
168 idle
->clock_idle_enter
= idle
->clock_idle_exit
= 0ULL;
169 idle
->idle_time
+= idle_time
;
171 account_idle_time(idle_time
);
176 cputime64_t
s390_get_idle_time(int cpu
)
178 struct s390_idle_data
*idle
= &per_cpu(s390_idle
, cpu
);
179 unsigned long long now
, idle_enter
, idle_exit
;
180 unsigned int sequence
;
184 sequence
= ACCESS_ONCE(idle
->sequence
);
185 idle_enter
= ACCESS_ONCE(idle
->clock_idle_enter
);
186 idle_exit
= ACCESS_ONCE(idle
->clock_idle_exit
);
187 } while ((sequence
& 1) || (idle
->sequence
!= sequence
));
188 return idle_enter
? ((idle_exit
?: now
) - idle_enter
) : 0;
192 * Sorted add to a list. List is linear searched until first bigger
195 static void list_add_sorted(struct vtimer_list
*timer
, struct list_head
*head
)
197 struct vtimer_list
*tmp
;
199 list_for_each_entry(tmp
, head
, entry
) {
200 if (tmp
->expires
> timer
->expires
) {
201 list_add_tail(&timer
->entry
, &tmp
->entry
);
205 list_add_tail(&timer
->entry
, head
);
209 * Handler for expired virtual CPU timer.
211 static void virt_timer_expire(void)
213 struct vtimer_list
*timer
, *tmp
;
214 unsigned long elapsed
;
217 /* walk timer list, fire all expired timers */
218 spin_lock(&virt_timer_lock
);
219 elapsed
= atomic64_read(&virt_timer_elapsed
);
220 list_for_each_entry_safe(timer
, tmp
, &virt_timer_list
, entry
) {
221 if (timer
->expires
< elapsed
)
222 /* move expired timer to the callback queue */
223 list_move_tail(&timer
->entry
, &cb_list
);
225 timer
->expires
-= elapsed
;
227 if (!list_empty(&virt_timer_list
)) {
228 timer
= list_first_entry(&virt_timer_list
,
229 struct vtimer_list
, entry
);
230 atomic64_set(&virt_timer_current
, timer
->expires
);
232 atomic64_sub(elapsed
, &virt_timer_elapsed
);
233 spin_unlock(&virt_timer_lock
);
235 /* Do callbacks and recharge periodic timers */
236 list_for_each_entry_safe(timer
, tmp
, &cb_list
, entry
) {
237 list_del_init(&timer
->entry
);
238 timer
->function(timer
->data
);
239 if (timer
->interval
) {
240 /* Recharge interval timer */
241 timer
->expires
= timer
->interval
+
242 atomic64_read(&virt_timer_elapsed
);
243 spin_lock(&virt_timer_lock
);
244 list_add_sorted(timer
, &virt_timer_list
);
245 spin_unlock(&virt_timer_lock
);
250 void init_virt_timer(struct vtimer_list
*timer
)
252 timer
->function
= NULL
;
253 INIT_LIST_HEAD(&timer
->entry
);
255 EXPORT_SYMBOL(init_virt_timer
);
257 static inline int vtimer_pending(struct vtimer_list
*timer
)
259 return !list_empty(&timer
->entry
);
262 static void internal_add_vtimer(struct vtimer_list
*timer
)
264 if (list_empty(&virt_timer_list
)) {
265 /* First timer, just program it. */
266 atomic64_set(&virt_timer_current
, timer
->expires
);
267 atomic64_set(&virt_timer_elapsed
, 0);
268 list_add(&timer
->entry
, &virt_timer_list
);
270 /* Update timer against current base. */
271 timer
->expires
+= atomic64_read(&virt_timer_elapsed
);
272 if (likely((s64
) timer
->expires
<
273 (s64
) atomic64_read(&virt_timer_current
)))
274 /* The new timer expires before the current timer. */
275 atomic64_set(&virt_timer_current
, timer
->expires
);
276 /* Insert new timer into the list. */
277 list_add_sorted(timer
, &virt_timer_list
);
281 static void __add_vtimer(struct vtimer_list
*timer
, int periodic
)
285 timer
->interval
= periodic
? timer
->expires
: 0;
286 spin_lock_irqsave(&virt_timer_lock
, flags
);
287 internal_add_vtimer(timer
);
288 spin_unlock_irqrestore(&virt_timer_lock
, flags
);
292 * add_virt_timer - add an oneshot virtual CPU timer
294 void add_virt_timer(struct vtimer_list
*timer
)
296 __add_vtimer(timer
, 0);
298 EXPORT_SYMBOL(add_virt_timer
);
301 * add_virt_timer_int - add an interval virtual CPU timer
303 void add_virt_timer_periodic(struct vtimer_list
*timer
)
305 __add_vtimer(timer
, 1);
307 EXPORT_SYMBOL(add_virt_timer_periodic
);
309 static int __mod_vtimer(struct vtimer_list
*timer
, u64 expires
, int periodic
)
314 BUG_ON(!timer
->function
);
316 if (timer
->expires
== expires
&& vtimer_pending(timer
))
318 spin_lock_irqsave(&virt_timer_lock
, flags
);
319 rc
= vtimer_pending(timer
);
321 list_del_init(&timer
->entry
);
322 timer
->interval
= periodic
? expires
: 0;
323 timer
->expires
= expires
;
324 internal_add_vtimer(timer
);
325 spin_unlock_irqrestore(&virt_timer_lock
, flags
);
330 * returns whether it has modified a pending timer (1) or not (0)
332 int mod_virt_timer(struct vtimer_list
*timer
, u64 expires
)
334 return __mod_vtimer(timer
, expires
, 0);
336 EXPORT_SYMBOL(mod_virt_timer
);
339 * returns whether it has modified a pending timer (1) or not (0)
341 int mod_virt_timer_periodic(struct vtimer_list
*timer
, u64 expires
)
343 return __mod_vtimer(timer
, expires
, 1);
345 EXPORT_SYMBOL(mod_virt_timer_periodic
);
348 * Delete a virtual timer.
350 * returns whether the deleted timer was pending (1) or not (0)
352 int del_virt_timer(struct vtimer_list
*timer
)
356 if (!vtimer_pending(timer
))
358 spin_lock_irqsave(&virt_timer_lock
, flags
);
359 list_del_init(&timer
->entry
);
360 spin_unlock_irqrestore(&virt_timer_lock
, flags
);
363 EXPORT_SYMBOL(del_virt_timer
);
366 * Start the virtual CPU timer on the current CPU.
368 void __cpuinit
init_cpu_vtimer(void)
370 /* set initial cpu timer */
371 set_vtimer(VTIMER_MAX_SLICE
);
374 static int __cpuinit
s390_nohz_notify(struct notifier_block
*self
,
375 unsigned long action
, void *hcpu
)
377 struct s390_idle_data
*idle
;
378 long cpu
= (long) hcpu
;
380 idle
= &per_cpu(s390_idle
, cpu
);
381 switch (action
& ~CPU_TASKS_FROZEN
) {
383 idle
->nohz_delay
= 0;
390 void __init
vtime_init(void)
392 /* Enable cpu timer interrupts on the boot cpu. */
394 cpu_notifier(s390_nohz_notify
, 0);