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Linus Torvalds1da177e2005-04-16 15:20:36 -07001/*
Linus Torvalds1da177e2005-04-16 15:20:36 -07002 * Common time routines among all ppc machines.
3 *
4 * Written by Cort Dougan (cort@cs.nmt.edu) to merge
5 * Paul Mackerras' version and mine for PReP and Pmac.
6 * MPC8xx/MBX changes by Dan Malek (dmalek@jlc.net).
7 * Converted for 64-bit by Mike Corrigan (mikejc@us.ibm.com)
8 *
9 * First round of bugfixes by Gabriel Paubert (paubert@iram.es)
10 * to make clock more stable (2.4.0-test5). The only thing
11 * that this code assumes is that the timebases have been synchronized
12 * by firmware on SMP and are never stopped (never do sleep
13 * on SMP then, nap and doze are OK).
14 *
15 * Speeded up do_gettimeofday by getting rid of references to
16 * xtime (which required locks for consistency). (mikejc@us.ibm.com)
17 *
18 * TODO (not necessarily in this file):
19 * - improve precision and reproducibility of timebase frequency
Stephen Rothwellf5339272012-03-15 18:18:00 +000020 * measurement at boot time.
Linus Torvalds1da177e2005-04-16 15:20:36 -070021 * - for astronomical applications: add a new function to get
22 * non ambiguous timestamps even around leap seconds. This needs
23 * a new timestamp format and a good name.
24 *
25 * 1997-09-10 Updated NTP code according to technical memorandum Jan '96
26 * "A Kernel Model for Precision Timekeeping" by Dave Mills
27 *
28 * This program is free software; you can redistribute it and/or
29 * modify it under the terms of the GNU General Public License
30 * as published by the Free Software Foundation; either version
31 * 2 of the License, or (at your option) any later version.
32 */
33
Linus Torvalds1da177e2005-04-16 15:20:36 -070034#include <linux/errno.h>
Paul Gortmaker4b16f8e2011-07-22 18:24:23 -040035#include <linux/export.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070036#include <linux/sched.h>
37#include <linux/kernel.h>
38#include <linux/param.h>
39#include <linux/string.h>
40#include <linux/mm.h>
41#include <linux/interrupt.h>
42#include <linux/timex.h>
43#include <linux/kernel_stat.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070044#include <linux/time.h>
45#include <linux/init.h>
46#include <linux/profile.h>
47#include <linux/cpu.h>
48#include <linux/security.h>
Paul Mackerrasf2783c12005-10-20 09:23:26 +100049#include <linux/percpu.h>
50#include <linux/rtc.h>
Paul Mackerras092b8f32006-02-20 10:38:56 +110051#include <linux/jiffies.h>
Paul Mackerrasc6622f62006-02-24 10:06:59 +110052#include <linux/posix-timers.h>
David Howells7d12e782006-10-05 14:55:46 +010053#include <linux/irq.h>
Benjamin Herrenschmidt177996e2009-06-09 21:12:00 +000054#include <linux/delay.h>
Peter Zijlstrae360adb2010-10-14 14:01:34 +080055#include <linux/irq_work.h>
Anton Blanchard6795b852009-10-26 18:49:14 +000056#include <asm/trace.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070057
Linus Torvalds1da177e2005-04-16 15:20:36 -070058#include <asm/io.h>
59#include <asm/processor.h>
60#include <asm/nvram.h>
61#include <asm/cache.h>
62#include <asm/machdep.h>
Paul Mackerrasf2783c12005-10-20 09:23:26 +100063#include <asm/uaccess.h>
64#include <asm/time.h>
65#include <asm/prom.h>
66#include <asm/irq.h>
67#include <asm/div64.h>
Paul Mackerras2249ca92005-11-07 13:18:13 +110068#include <asm/smp.h>
Benjamin Herrenschmidta7f290d2005-11-11 21:15:21 +110069#include <asm/vdso_datapage.h>
Paul Mackerrasf2783c12005-10-20 09:23:26 +100070#include <asm/firmware.h>
Michael Neuling06b8e872008-02-06 01:36:12 -080071#include <asm/cputime.h>
Linus Torvalds1da177e2005-04-16 15:20:36 -070072
Tony Breeds4a4cfe32007-09-22 07:35:52 +100073/* powerpc clocksource/clockevent code */
74
Tony Breedsd831d0b2007-09-21 13:26:03 +100075#include <linux/clockchips.h>
John Stultz189374a2012-09-04 15:27:48 -040076#include <linux/timekeeper_internal.h>
Tony Breeds4a4cfe32007-09-22 07:35:52 +100077
Magnus Damm8e196082009-04-21 12:24:00 -070078static cycle_t rtc_read(struct clocksource *);
Tony Breeds4a4cfe32007-09-22 07:35:52 +100079static struct clocksource clocksource_rtc = {
80 .name = "rtc",
81 .rating = 400,
82 .flags = CLOCK_SOURCE_IS_CONTINUOUS,
83 .mask = CLOCKSOURCE_MASK(64),
Tony Breeds4a4cfe32007-09-22 07:35:52 +100084 .read = rtc_read,
85};
86
Magnus Damm8e196082009-04-21 12:24:00 -070087static cycle_t timebase_read(struct clocksource *);
Tony Breeds4a4cfe32007-09-22 07:35:52 +100088static struct clocksource clocksource_timebase = {
89 .name = "timebase",
90 .rating = 400,
91 .flags = CLOCK_SOURCE_IS_CONTINUOUS,
92 .mask = CLOCKSOURCE_MASK(64),
Tony Breeds4a4cfe32007-09-22 07:35:52 +100093 .read = timebase_read,
94};
95
Tony Breedsd831d0b2007-09-21 13:26:03 +100096#define DECREMENTER_MAX 0x7fffffff
97
98static int decrementer_set_next_event(unsigned long evt,
99 struct clock_event_device *dev);
100static void decrementer_set_mode(enum clock_event_mode mode,
101 struct clock_event_device *dev);
102
Bharat Bhushan6e359942012-04-18 06:01:19 +0000103struct clock_event_device decrementer_clockevent = {
Anton Blanchard621692c2011-11-23 20:07:21 +0000104 .name = "decrementer",
105 .rating = 200,
106 .irq = 0,
107 .set_next_event = decrementer_set_next_event,
108 .set_mode = decrementer_set_mode,
109 .features = CLOCK_EVT_FEAT_ONESHOT,
Tony Breedsd831d0b2007-09-21 13:26:03 +1000110};
Bharat Bhushan6e359942012-04-18 06:01:19 +0000111EXPORT_SYMBOL(decrementer_clockevent);
Tony Breedsd831d0b2007-09-21 13:26:03 +1000112
Anton Blanchard7df10272011-11-23 20:07:22 +0000113DEFINE_PER_CPU(u64, decrementers_next_tb);
114static DEFINE_PER_CPU(struct clock_event_device, decrementers);
Tony Breedsd831d0b2007-09-21 13:26:03 +1000115
Linus Torvalds1da177e2005-04-16 15:20:36 -0700116#define XSEC_PER_SEC (1024*1024)
117
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000118#ifdef CONFIG_PPC64
119#define SCALE_XSEC(xsec, max) (((xsec) * max) / XSEC_PER_SEC)
120#else
121/* compute ((xsec << 12) * max) >> 32 */
122#define SCALE_XSEC(xsec, max) mulhwu((xsec) << 12, max)
123#endif
124
Linus Torvalds1da177e2005-04-16 15:20:36 -0700125unsigned long tb_ticks_per_jiffy;
126unsigned long tb_ticks_per_usec = 100; /* sane default */
127EXPORT_SYMBOL(tb_ticks_per_usec);
128unsigned long tb_ticks_per_sec;
Paul Mackerras2cf82c02006-02-27 15:41:47 +1100129EXPORT_SYMBOL(tb_ticks_per_sec); /* for cputime_t conversions */
Paul Mackerras092b8f32006-02-20 10:38:56 +1100130
Linus Torvalds1da177e2005-04-16 15:20:36 -0700131DEFINE_SPINLOCK(rtc_lock);
Benjamin Herrenschmidt6ae3db12005-06-27 14:36:35 -0700132EXPORT_SYMBOL_GPL(rtc_lock);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700133
Tony Breedsfc9069fe2007-07-04 14:04:31 +1000134static u64 tb_to_ns_scale __read_mostly;
135static unsigned tb_to_ns_shift __read_mostly;
Heiko Schocher364a1242010-11-22 21:30:33 +0000136static u64 boot_tb __read_mostly;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700137
Linus Torvalds1da177e2005-04-16 15:20:36 -0700138extern struct timezone sys_tz;
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000139static long timezone_offset;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700140
Arnd Bergmann10f7e7c2005-06-23 09:43:07 +1000141unsigned long ppc_proc_freq;
Timur Tabi55ec2fc2010-09-20 11:23:41 -0500142EXPORT_SYMBOL_GPL(ppc_proc_freq);
Arnd Bergmann10f7e7c2005-06-23 09:43:07 +1000143unsigned long ppc_tb_freq;
Timur Tabi55ec2fc2010-09-20 11:23:41 -0500144EXPORT_SYMBOL_GPL(ppc_tb_freq);
Paul Mackerras96c44502005-10-23 17:14:56 +1000145
Frederic Weisbeckerabf917c2012-07-25 07:56:04 +0200146#ifdef CONFIG_VIRT_CPU_ACCOUNTING_NATIVE
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100147/*
148 * Factors for converting from cputime_t (timebase ticks) to
Andreas Schwab9f5072d2011-12-09 11:35:08 +0000149 * jiffies, microseconds, seconds, and clock_t (1/USER_HZ seconds).
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100150 * These are all stored as 0.64 fixed-point binary fractions.
151 */
152u64 __cputime_jiffies_factor;
Paul Mackerras2cf82c02006-02-27 15:41:47 +1100153EXPORT_SYMBOL(__cputime_jiffies_factor);
Andreas Schwab9f5072d2011-12-09 11:35:08 +0000154u64 __cputime_usec_factor;
155EXPORT_SYMBOL(__cputime_usec_factor);
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100156u64 __cputime_sec_factor;
Paul Mackerras2cf82c02006-02-27 15:41:47 +1100157EXPORT_SYMBOL(__cputime_sec_factor);
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100158u64 __cputime_clockt_factor;
Paul Mackerras2cf82c02006-02-27 15:41:47 +1100159EXPORT_SYMBOL(__cputime_clockt_factor);
Michael Neuling06b8e872008-02-06 01:36:12 -0800160DEFINE_PER_CPU(unsigned long, cputime_last_delta);
161DEFINE_PER_CPU(unsigned long, cputime_scaled_last_delta);
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100162
Stanislaw Gruszkaa42548a2009-07-29 12:15:29 +0200163cputime_t cputime_one_jiffy;
164
Paul Mackerras872e4392010-08-31 01:59:53 +0000165void (*dtl_consumer)(struct dtl_entry *, u64);
166
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100167static void calc_cputime_factors(void)
168{
169 struct div_result res;
170
171 div128_by_32(HZ, 0, tb_ticks_per_sec, &res);
172 __cputime_jiffies_factor = res.result_low;
Andreas Schwab9f5072d2011-12-09 11:35:08 +0000173 div128_by_32(1000000, 0, tb_ticks_per_sec, &res);
174 __cputime_usec_factor = res.result_low;
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100175 div128_by_32(1, 0, tb_ticks_per_sec, &res);
176 __cputime_sec_factor = res.result_low;
177 div128_by_32(USER_HZ, 0, tb_ticks_per_sec, &res);
178 __cputime_clockt_factor = res.result_low;
179}
180
181/*
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000182 * Read the SPURR on systems that have it, otherwise the PURR,
183 * or if that doesn't exist return the timebase value passed in.
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100184 */
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000185static u64 read_spurr(u64 tb)
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100186{
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000187 if (cpu_has_feature(CPU_FTR_SPURR))
188 return mfspr(SPRN_SPURR);
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100189 if (cpu_has_feature(CPU_FTR_PURR))
190 return mfspr(SPRN_PURR);
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000191 return tb;
192}
193
194#ifdef CONFIG_PPC_SPLPAR
195
196/*
197 * Scan the dispatch trace log and count up the stolen time.
198 * Should be called with interrupts disabled.
199 */
200static u64 scan_dispatch_log(u64 stop_tb)
201{
Paul Mackerras872e4392010-08-31 01:59:53 +0000202 u64 i = local_paca->dtl_ridx;
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000203 struct dtl_entry *dtl = local_paca->dtl_curr;
204 struct dtl_entry *dtl_end = local_paca->dispatch_log_end;
205 struct lppaca *vpa = local_paca->lppaca_ptr;
206 u64 tb_delta;
207 u64 stolen = 0;
208 u64 dtb;
209
Anton Blanchard84ffae52011-04-07 21:44:21 +0000210 if (!dtl)
211 return 0;
212
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000213 if (i == vpa->dtl_idx)
214 return 0;
215 while (i < vpa->dtl_idx) {
Paul Mackerras872e4392010-08-31 01:59:53 +0000216 if (dtl_consumer)
217 dtl_consumer(dtl, i);
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000218 dtb = dtl->timebase;
219 tb_delta = dtl->enqueue_to_dispatch_time +
220 dtl->ready_to_enqueue_time;
221 barrier();
222 if (i + N_DISPATCH_LOG < vpa->dtl_idx) {
223 /* buffer has overflowed */
224 i = vpa->dtl_idx - N_DISPATCH_LOG;
225 dtl = local_paca->dispatch_log + (i % N_DISPATCH_LOG);
226 continue;
227 }
228 if (dtb > stop_tb)
229 break;
230 stolen += tb_delta;
231 ++i;
232 ++dtl;
233 if (dtl == dtl_end)
234 dtl = local_paca->dispatch_log;
235 }
236 local_paca->dtl_ridx = i;
237 local_paca->dtl_curr = dtl;
238 return stolen;
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100239}
240
241/*
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000242 * Accumulate stolen time by scanning the dispatch trace log.
243 * Called on entry from user mode.
Michael Neuling4603ac12007-10-18 03:06:37 -0700244 */
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000245void accumulate_stolen_time(void)
Michael Neuling4603ac12007-10-18 03:06:37 -0700246{
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000247 u64 sst, ust;
248
Tejun Heob18ae082011-01-03 03:49:25 +0000249 u8 save_soft_enabled = local_paca->soft_enabled;
Tejun Heob18ae082011-01-03 03:49:25 +0000250
251 /* We are called early in the exception entry, before
252 * soft/hard_enabled are sync'ed to the expected state
253 * for the exception. We are hard disabled but the PACA
254 * needs to reflect that so various debug stuff doesn't
255 * complain
256 */
257 local_paca->soft_enabled = 0;
Tejun Heob18ae082011-01-03 03:49:25 +0000258
259 sst = scan_dispatch_log(local_paca->starttime_user);
260 ust = scan_dispatch_log(local_paca->starttime);
261 local_paca->system_time -= sst;
262 local_paca->user_time -= ust;
263 local_paca->stolen_time += ust + sst;
264
265 local_paca->soft_enabled = save_soft_enabled;
Michael Neuling4603ac12007-10-18 03:06:37 -0700266}
267
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000268static inline u64 calculate_stolen_time(u64 stop_tb)
269{
270 u64 stolen = 0;
271
272 if (get_paca()->dtl_ridx != get_paca()->lppaca_ptr->dtl_idx) {
273 stolen = scan_dispatch_log(stop_tb);
274 get_paca()->system_time -= stolen;
275 }
276
277 stolen += get_paca()->stolen_time;
278 get_paca()->stolen_time = 0;
279 return stolen;
280}
281
282#else /* CONFIG_PPC_SPLPAR */
283static inline u64 calculate_stolen_time(u64 stop_tb)
284{
285 return 0;
286}
287
288#endif /* CONFIG_PPC_SPLPAR */
289
Michael Neuling4603ac12007-10-18 03:06:37 -0700290/*
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100291 * Account time for a transition between system, hard irq
292 * or soft irq state.
293 */
Frederic Weisbeckera7e1a9e2012-09-08 16:14:02 +0200294static u64 vtime_delta(struct task_struct *tsk,
295 u64 *sys_scaled, u64 *stolen)
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100296{
Frederic Weisbeckera7e1a9e2012-09-08 16:14:02 +0200297 u64 now, nowscaled, deltascaled;
298 u64 udelta, delta, user_scaled;
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100299
Frederic Weisbecker1b2852b2012-11-19 17:00:24 +0100300 WARN_ON_ONCE(!irqs_disabled());
301
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000302 now = mftb();
Michael Neuling4603ac12007-10-18 03:06:37 -0700303 nowscaled = read_spurr(now);
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000304 get_paca()->system_time += now - get_paca()->starttime;
305 get_paca()->starttime = now;
Michael Neuling4603ac12007-10-18 03:06:37 -0700306 deltascaled = nowscaled - get_paca()->startspurr;
307 get_paca()->startspurr = nowscaled;
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000308
Frederic Weisbeckera7e1a9e2012-09-08 16:14:02 +0200309 *stolen = calculate_stolen_time(now);
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000310
311 delta = get_paca()->system_time;
312 get_paca()->system_time = 0;
313 udelta = get_paca()->user_time - get_paca()->utime_sspurr;
314 get_paca()->utime_sspurr = get_paca()->user_time;
315
316 /*
317 * Because we don't read the SPURR on every kernel entry/exit,
318 * deltascaled includes both user and system SPURR ticks.
319 * Apportion these ticks to system SPURR ticks and user
320 * SPURR ticks in the same ratio as the system time (delta)
321 * and user time (udelta) values obtained from the timebase
322 * over the same interval. The system ticks get accounted here;
323 * the user ticks get saved up in paca->user_time_scaled to be
324 * used by account_process_tick.
325 */
Frederic Weisbeckera7e1a9e2012-09-08 16:14:02 +0200326 *sys_scaled = delta;
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000327 user_scaled = udelta;
328 if (deltascaled != delta + udelta) {
329 if (udelta) {
Frederic Weisbeckera7e1a9e2012-09-08 16:14:02 +0200330 *sys_scaled = deltascaled * delta / (delta + udelta);
331 user_scaled = deltascaled - *sys_scaled;
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000332 } else {
Frederic Weisbeckera7e1a9e2012-09-08 16:14:02 +0200333 *sys_scaled = deltascaled;
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000334 }
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100335 }
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000336 get_paca()->user_time_scaled += user_scaled;
337
Frederic Weisbeckera7e1a9e2012-09-08 16:14:02 +0200338 return delta;
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100339}
Frederic Weisbeckera7e1a9e2012-09-08 16:14:02 +0200340
Frederic Weisbeckerfd25b4c2012-11-13 18:21:22 +0100341void vtime_account_system(struct task_struct *tsk)
Frederic Weisbeckera7e1a9e2012-09-08 16:14:02 +0200342{
343 u64 delta, sys_scaled, stolen;
344
345 delta = vtime_delta(tsk, &sys_scaled, &stolen);
346 account_system_time(tsk, 0, delta, sys_scaled);
347 if (stolen)
348 account_steal_time(stolen);
349}
Frederic Weisbeckerc11f11f2013-01-21 00:50:22 +0100350EXPORT_SYMBOL_GPL(vtime_account_system);
Frederic Weisbeckera7e1a9e2012-09-08 16:14:02 +0200351
Frederic Weisbeckerfd25b4c2012-11-13 18:21:22 +0100352void vtime_account_idle(struct task_struct *tsk)
Frederic Weisbeckera7e1a9e2012-09-08 16:14:02 +0200353{
354 u64 delta, sys_scaled, stolen;
355
356 delta = vtime_delta(tsk, &sys_scaled, &stolen);
357 account_idle_time(delta + stolen);
358}
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100359
360/*
Frederic Weisbeckerbcebdf82012-11-13 23:51:06 +0100361 * Transfer the user time accumulated in the paca
362 * by the exception entry and exit code to the generic
363 * process user time records.
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100364 * Must be called with interrupts disabled.
Frederic Weisbeckerbcebdf82012-11-13 23:51:06 +0100365 * Assumes that vtime_account_system/idle() has been called
366 * recently (i.e. since the last entry from usermode) so that
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000367 * get_paca()->user_time_scaled is up to date.
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100368 */
Frederic Weisbeckerbcebdf82012-11-13 23:51:06 +0100369void vtime_account_user(struct task_struct *tsk)
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100370{
Michael Neuling4603ac12007-10-18 03:06:37 -0700371 cputime_t utime, utimescaled;
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100372
373 utime = get_paca()->user_time;
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000374 utimescaled = get_paca()->user_time_scaled;
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100375 get_paca()->user_time = 0;
Paul Mackerrascf9efce2010-08-26 19:56:43 +0000376 get_paca()->user_time_scaled = 0;
377 get_paca()->utime_sspurr = 0;
Martin Schwidefsky457533a2008-12-31 15:11:37 +0100378 account_user_time(tsk, utime, utimescaled);
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100379}
380
Frederic Weisbeckerabf917c2012-07-25 07:56:04 +0200381#else /* ! CONFIG_VIRT_CPU_ACCOUNTING_NATIVE */
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100382#define calc_cputime_factors()
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100383#endif
384
Paul Mackerras6defa382005-11-18 13:44:17 +1100385void __delay(unsigned long loops)
386{
387 unsigned long start;
388 int diff;
389
390 if (__USE_RTC()) {
391 start = get_rtcl();
392 do {
393 /* the RTCL register wraps at 1000000000 */
394 diff = get_rtcl() - start;
395 if (diff < 0)
396 diff += 1000000000;
397 } while (diff < loops);
398 } else {
399 start = get_tbl();
400 while (get_tbl() - start < loops)
401 HMT_low();
402 HMT_medium();
403 }
404}
405EXPORT_SYMBOL(__delay);
406
407void udelay(unsigned long usecs)
408{
409 __delay(tb_ticks_per_usec * usecs);
410}
411EXPORT_SYMBOL(udelay);
412
Linus Torvalds1da177e2005-04-16 15:20:36 -0700413#ifdef CONFIG_SMP
414unsigned long profile_pc(struct pt_regs *regs)
415{
416 unsigned long pc = instruction_pointer(regs);
417
418 if (in_lock_functions(pc))
419 return regs->link;
420
421 return pc;
422}
423EXPORT_SYMBOL(profile_pc);
424#endif
425
Peter Zijlstrae360adb2010-10-14 14:01:34 +0800426#ifdef CONFIG_IRQ_WORK
Paul Mackerras105988c2009-06-17 21:50:04 +1000427
Paul Mackerras0fe1ac42010-04-13 20:46:04 +0000428/*
429 * 64-bit uses a byte in the PACA, 32-bit uses a per-cpu variable...
430 */
431#ifdef CONFIG_PPC64
Peter Zijlstrae360adb2010-10-14 14:01:34 +0800432static inline unsigned long test_irq_work_pending(void)
Paul Mackerras105988c2009-06-17 21:50:04 +1000433{
Paul Mackerras0fe1ac42010-04-13 20:46:04 +0000434 unsigned long x;
435
436 asm volatile("lbz %0,%1(13)"
437 : "=r" (x)
Peter Zijlstrae360adb2010-10-14 14:01:34 +0800438 : "i" (offsetof(struct paca_struct, irq_work_pending)));
Paul Mackerras0fe1ac42010-04-13 20:46:04 +0000439 return x;
Paul Mackerras105988c2009-06-17 21:50:04 +1000440}
441
Peter Zijlstrae360adb2010-10-14 14:01:34 +0800442static inline void set_irq_work_pending_flag(void)
Paul Mackerras0fe1ac42010-04-13 20:46:04 +0000443{
444 asm volatile("stb %0,%1(13)" : :
445 "r" (1),
Peter Zijlstrae360adb2010-10-14 14:01:34 +0800446 "i" (offsetof(struct paca_struct, irq_work_pending)));
Paul Mackerras0fe1ac42010-04-13 20:46:04 +0000447}
448
Peter Zijlstrae360adb2010-10-14 14:01:34 +0800449static inline void clear_irq_work_pending(void)
Paul Mackerras0fe1ac42010-04-13 20:46:04 +0000450{
451 asm volatile("stb %0,%1(13)" : :
452 "r" (0),
Peter Zijlstrae360adb2010-10-14 14:01:34 +0800453 "i" (offsetof(struct paca_struct, irq_work_pending)));
Paul Mackerras0fe1ac42010-04-13 20:46:04 +0000454}
455
456#else /* 32-bit */
457
Peter Zijlstrae360adb2010-10-14 14:01:34 +0800458DEFINE_PER_CPU(u8, irq_work_pending);
Paul Mackerras0fe1ac42010-04-13 20:46:04 +0000459
Peter Zijlstrae360adb2010-10-14 14:01:34 +0800460#define set_irq_work_pending_flag() __get_cpu_var(irq_work_pending) = 1
461#define test_irq_work_pending() __get_cpu_var(irq_work_pending)
462#define clear_irq_work_pending() __get_cpu_var(irq_work_pending) = 0
Paul Mackerras105988c2009-06-17 21:50:04 +1000463
Paul Mackerras0fe1ac42010-04-13 20:46:04 +0000464#endif /* 32 vs 64 bit */
465
Peter Zijlstra4f8b50b2011-06-27 17:22:43 +0200466void arch_irq_work_raise(void)
Paul Mackerras0fe1ac42010-04-13 20:46:04 +0000467{
468 preempt_disable();
Peter Zijlstrae360adb2010-10-14 14:01:34 +0800469 set_irq_work_pending_flag();
Paul Mackerras0fe1ac42010-04-13 20:46:04 +0000470 set_dec(1);
471 preempt_enable();
472}
473
Peter Zijlstrae360adb2010-10-14 14:01:34 +0800474#else /* CONFIG_IRQ_WORK */
Paul Mackerras105988c2009-06-17 21:50:04 +1000475
Peter Zijlstrae360adb2010-10-14 14:01:34 +0800476#define test_irq_work_pending() 0
477#define clear_irq_work_pending()
Paul Mackerras105988c2009-06-17 21:50:04 +1000478
Peter Zijlstrae360adb2010-10-14 14:01:34 +0800479#endif /* CONFIG_IRQ_WORK */
Paul Mackerras105988c2009-06-17 21:50:04 +1000480
Linus Torvalds1da177e2005-04-16 15:20:36 -0700481/*
Linus Torvalds1da177e2005-04-16 15:20:36 -0700482 * timer_interrupt - gets called when the decrementer overflows,
483 * with interrupts disabled.
484 */
Kumar Galac7aeffc2005-09-19 09:30:27 -0500485void timer_interrupt(struct pt_regs * regs)
Linus Torvalds1da177e2005-04-16 15:20:36 -0700486{
David Howells7d12e782006-10-05 14:55:46 +0100487 struct pt_regs *old_regs;
Anton Blanchard7df10272011-11-23 20:07:22 +0000488 u64 *next_tb = &__get_cpu_var(decrementers_next_tb);
489 struct clock_event_device *evt = &__get_cpu_var(decrementers);
Paul Mackerras860aed22012-06-01 18:13:43 +1000490 u64 now;
Tony Breedsd831d0b2007-09-21 13:26:03 +1000491
Benjamin Herrenschmidt963e5d32011-03-29 14:51:10 +1100492 /* Ensure a positive value is written to the decrementer, or else
493 * some CPUs will continue to take decrementer exceptions.
494 */
495 set_dec(DECREMENTER_MAX);
496
497 /* Some implementations of hotplug will get timer interrupts while
Tiejun Chen689dfa82013-01-15 17:01:19 +0000498 * offline, just ignore these and we also need to set
499 * decrementers_next_tb as MAX to make sure __check_irq_replay
500 * don't replay timer interrupt when return, otherwise we'll trap
501 * here infinitely :(
Benjamin Herrenschmidt963e5d32011-03-29 14:51:10 +1100502 */
Tiejun Chen689dfa82013-01-15 17:01:19 +0000503 if (!cpu_online(smp_processor_id())) {
504 *next_tb = ~(u64)0;
Benjamin Herrenschmidt963e5d32011-03-29 14:51:10 +1100505 return;
Tiejun Chen689dfa82013-01-15 17:01:19 +0000506 }
Benjamin Herrenschmidt963e5d32011-03-29 14:51:10 +1100507
Benjamin Herrenschmidt7230c562012-03-06 18:27:59 +1100508 /* Conditionally hard-enable interrupts now that the DEC has been
509 * bumped to its maximum value
510 */
511 may_hard_irq_enable();
512
Anton Blanchard89713ed2010-01-31 20:34:06 +0000513 __get_cpu_var(irq_stat).timer_irqs++;
514
Paul Mackerrasb0d278b2010-08-10 20:38:23 +0000515#if defined(CONFIG_PPC32) && defined(CONFIG_PMAC)
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000516 if (atomic_read(&ppc_n_lost_interrupts) != 0)
517 do_IRQ(regs);
518#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -0700519
David Howells7d12e782006-10-05 14:55:46 +0100520 old_regs = set_irq_regs(regs);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700521 irq_enter();
522
Li Zhonge72bbba2012-09-10 15:37:43 +0000523 trace_timer_interrupt_entry(regs);
524
Peter Zijlstrae360adb2010-10-14 14:01:34 +0800525 if (test_irq_work_pending()) {
526 clear_irq_work_pending();
527 irq_work_run();
Paul Mackerras0fe1ac42010-04-13 20:46:04 +0000528 }
529
Paul Mackerras860aed22012-06-01 18:13:43 +1000530 now = get_tb_or_rtc();
531 if (now >= *next_tb) {
532 *next_tb = ~(u64)0;
533 if (evt->event_handler)
534 evt->event_handler(evt);
535 } else {
536 now = *next_tb - now;
537 if (now <= DECREMENTER_MAX)
538 set_dec((int)now);
539 }
Linus Torvalds1da177e2005-04-16 15:20:36 -0700540
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000541#ifdef CONFIG_PPC64
Stephen Rothwell8d15a3e2005-08-03 14:40:16 +1000542 /* collect purr register values often, for accurate calculations */
Stephen Rothwell1ababe12005-08-03 14:35:25 +1000543 if (firmware_has_feature(FW_FEATURE_SPLPAR)) {
Linus Torvalds1da177e2005-04-16 15:20:36 -0700544 struct cpu_usage *cu = &__get_cpu_var(cpu_usage_array);
545 cu->current_tb = mfspr(SPRN_PURR);
546 }
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000547#endif
Linus Torvalds1da177e2005-04-16 15:20:36 -0700548
Li Zhonge72bbba2012-09-10 15:37:43 +0000549 trace_timer_interrupt_exit(regs);
550
Linus Torvalds1da177e2005-04-16 15:20:36 -0700551 irq_exit();
David Howells7d12e782006-10-05 14:55:46 +0100552 set_irq_regs(old_regs);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700553}
554
Paul Mackerrasdabe8592012-07-26 13:56:11 +0000555/*
556 * Hypervisor decrementer interrupts shouldn't occur but are sometimes
557 * left pending on exit from a KVM guest. We don't need to do anything
558 * to clear them, as they are edge-triggered.
559 */
560void hdec_interrupt(struct pt_regs *regs)
561{
562}
563
Scott Wood7ac5dde2007-12-13 04:35:19 +1100564#ifdef CONFIG_SUSPEND
Paul Mackerrasd75d68c2010-06-20 19:04:14 +0000565static void generic_suspend_disable_irqs(void)
Scott Wood7ac5dde2007-12-13 04:35:19 +1100566{
Scott Wood7ac5dde2007-12-13 04:35:19 +1100567 /* Disable the decrementer, so that it doesn't interfere
568 * with suspending.
569 */
570
Anton Blanchard621692c2011-11-23 20:07:21 +0000571 set_dec(DECREMENTER_MAX);
Scott Wood7ac5dde2007-12-13 04:35:19 +1100572 local_irq_disable();
Anton Blanchard621692c2011-11-23 20:07:21 +0000573 set_dec(DECREMENTER_MAX);
Scott Wood7ac5dde2007-12-13 04:35:19 +1100574}
575
Paul Mackerrasd75d68c2010-06-20 19:04:14 +0000576static void generic_suspend_enable_irqs(void)
Scott Wood7ac5dde2007-12-13 04:35:19 +1100577{
Scott Wood7ac5dde2007-12-13 04:35:19 +1100578 local_irq_enable();
Scott Wood7ac5dde2007-12-13 04:35:19 +1100579}
580
581/* Overrides the weak version in kernel/power/main.c */
582void arch_suspend_disable_irqs(void)
583{
584 if (ppc_md.suspend_disable_irqs)
585 ppc_md.suspend_disable_irqs();
586 generic_suspend_disable_irqs();
587}
588
589/* Overrides the weak version in kernel/power/main.c */
590void arch_suspend_enable_irqs(void)
591{
592 generic_suspend_enable_irqs();
593 if (ppc_md.suspend_enable_irqs)
594 ppc_md.suspend_enable_irqs();
595}
596#endif
597
Linus Torvalds1da177e2005-04-16 15:20:36 -0700598/*
599 * Scheduler clock - returns current time in nanosec units.
600 *
601 * Note: mulhdu(a, b) (multiply high double unsigned) returns
602 * the high 64 bits of a * b, i.e. (a * b) >> 64, where a and b
603 * are 64-bit unsigned numbers.
604 */
605unsigned long long sched_clock(void)
606{
Paul Mackerras96c44502005-10-23 17:14:56 +1000607 if (__USE_RTC())
608 return get_rtc();
Tony Breedsfc9069fe2007-07-04 14:04:31 +1000609 return mulhdu(get_tb() - boot_tb, tb_to_ns_scale) << tb_to_ns_shift;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700610}
611
Anton Blanchard0bb474a42006-06-20 18:47:26 +1000612static int __init get_freq(char *name, int cells, unsigned long *val)
Arnd Bergmann10f7e7c2005-06-23 09:43:07 +1000613{
614 struct device_node *cpu;
Anton Blanchard6f7aba72013-08-07 02:01:34 +1000615 const __be32 *fp;
Anton Blanchard0bb474a42006-06-20 18:47:26 +1000616 int found = 0;
Arnd Bergmann10f7e7c2005-06-23 09:43:07 +1000617
Anton Blanchard0bb474a42006-06-20 18:47:26 +1000618 /* The cpu node should have timebase and clock frequency properties */
Arnd Bergmann10f7e7c2005-06-23 09:43:07 +1000619 cpu = of_find_node_by_type(NULL, "cpu");
620
Olaf Heringd8a81882006-02-04 10:34:56 +0100621 if (cpu) {
Stephen Rothwelle2eb6392007-04-03 22:26:41 +1000622 fp = of_get_property(cpu, name, NULL);
Olaf Heringd8a81882006-02-04 10:34:56 +0100623 if (fp) {
Anton Blanchard0bb474a42006-06-20 18:47:26 +1000624 found = 1;
Paul Mackerrasa4dc7ff2006-09-19 14:06:27 +1000625 *val = of_read_ulong(fp, cells);
Arnd Bergmann10f7e7c2005-06-23 09:43:07 +1000626 }
Anton Blanchard0bb474a42006-06-20 18:47:26 +1000627
628 of_node_put(cpu);
Arnd Bergmann10f7e7c2005-06-23 09:43:07 +1000629 }
Anton Blanchard0bb474a42006-06-20 18:47:26 +1000630
631 return found;
632}
633
Benjamin Herrenschmidt77c0a702009-08-28 14:25:04 +1000634void start_cpu_decrementer(void)
635{
636#if defined(CONFIG_BOOKE) || defined(CONFIG_40x)
637 /* Clear any pending timer interrupts */
638 mtspr(SPRN_TSR, TSR_ENW | TSR_WIS | TSR_DIS | TSR_FIS);
639
640 /* Enable decrementer interrupt */
641 mtspr(SPRN_TCR, TCR_DIE);
642#endif /* defined(CONFIG_BOOKE) || defined(CONFIG_40x) */
643}
644
Anton Blanchard0bb474a42006-06-20 18:47:26 +1000645void __init generic_calibrate_decr(void)
646{
647 ppc_tb_freq = DEFAULT_TB_FREQ; /* hardcoded default */
648
649 if (!get_freq("ibm,extended-timebase-frequency", 2, &ppc_tb_freq) &&
650 !get_freq("timebase-frequency", 1, &ppc_tb_freq)) {
651
Arnd Bergmann10f7e7c2005-06-23 09:43:07 +1000652 printk(KERN_ERR "WARNING: Estimating decrementer frequency "
653 "(not found)\n");
Arnd Bergmann10f7e7c2005-06-23 09:43:07 +1000654 }
Anton Blanchard0bb474a42006-06-20 18:47:26 +1000655
656 ppc_proc_freq = DEFAULT_PROC_FREQ; /* hardcoded default */
657
658 if (!get_freq("ibm,extended-clock-frequency", 2, &ppc_proc_freq) &&
659 !get_freq("clock-frequency", 1, &ppc_proc_freq)) {
660
661 printk(KERN_ERR "WARNING: Estimating processor frequency "
662 "(not found)\n");
663 }
Arnd Bergmann10f7e7c2005-06-23 09:43:07 +1000664}
Arnd Bergmann10f7e7c2005-06-23 09:43:07 +1000665
Tony Breedsaa3be5f2007-09-21 13:26:02 +1000666int update_persistent_clock(struct timespec now)
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000667{
668 struct rtc_time tm;
669
Tony Breedsaa3be5f2007-09-21 13:26:02 +1000670 if (!ppc_md.set_rtc_time)
Jason Gunthorpe023f3332012-12-17 14:30:53 -0700671 return -ENODEV;
Tony Breedsaa3be5f2007-09-21 13:26:02 +1000672
673 to_tm(now.tv_sec + 1 + timezone_offset, &tm);
674 tm.tm_year -= 1900;
675 tm.tm_mon -= 1;
676
677 return ppc_md.set_rtc_time(&tm);
678}
679
Benjamin Herrenschmidt978d7eb2009-11-01 19:11:03 +0000680static void __read_persistent_clock(struct timespec *ts)
Tony Breedsaa3be5f2007-09-21 13:26:02 +1000681{
682 struct rtc_time tm;
683 static int first = 1;
684
Martin Schwidefskyd90246c2009-08-22 22:23:13 +0200685 ts->tv_nsec = 0;
Tony Breedsaa3be5f2007-09-21 13:26:02 +1000686 /* XXX this is a litle fragile but will work okay in the short term */
687 if (first) {
688 first = 0;
689 if (ppc_md.time_init)
690 timezone_offset = ppc_md.time_init();
691
692 /* get_boot_time() isn't guaranteed to be safe to call late */
Martin Schwidefskyd90246c2009-08-22 22:23:13 +0200693 if (ppc_md.get_boot_time) {
694 ts->tv_sec = ppc_md.get_boot_time() - timezone_offset;
695 return;
696 }
Tony Breedsaa3be5f2007-09-21 13:26:02 +1000697 }
Martin Schwidefskyd90246c2009-08-22 22:23:13 +0200698 if (!ppc_md.get_rtc_time) {
699 ts->tv_sec = 0;
700 return;
701 }
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000702 ppc_md.get_rtc_time(&tm);
Benjamin Herrenschmidt978d7eb2009-11-01 19:11:03 +0000703
Martin Schwidefskyd4f587c2009-08-14 15:47:31 +0200704 ts->tv_sec = mktime(tm.tm_year+1900, tm.tm_mon+1, tm.tm_mday,
705 tm.tm_hour, tm.tm_min, tm.tm_sec);
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000706}
707
Benjamin Herrenschmidt978d7eb2009-11-01 19:11:03 +0000708void read_persistent_clock(struct timespec *ts)
709{
710 __read_persistent_clock(ts);
711
712 /* Sanitize it in case real time clock is set below EPOCH */
713 if (ts->tv_sec < 0) {
714 ts->tv_sec = 0;
715 ts->tv_nsec = 0;
716 }
717
718}
719
Tony Breeds4a4cfe32007-09-22 07:35:52 +1000720/* clocksource code */
Magnus Damm8e196082009-04-21 12:24:00 -0700721static cycle_t rtc_read(struct clocksource *cs)
Tony Breeds4a4cfe32007-09-22 07:35:52 +1000722{
723 return (cycle_t)get_rtc();
724}
725
Magnus Damm8e196082009-04-21 12:24:00 -0700726static cycle_t timebase_read(struct clocksource *cs)
Tony Breeds4a4cfe32007-09-22 07:35:52 +1000727{
728 return (cycle_t)get_tb();
729}
730
John Stultz70639422012-09-04 15:34:21 -0400731void update_vsyscall_old(struct timespec *wall_time, struct timespec *wtm,
John Stultz76158562010-07-13 17:56:23 -0700732 struct clocksource *clock, u32 mult)
Tony Breeds4a4cfe32007-09-22 07:35:52 +1000733{
John Stultzb0797b62010-07-13 17:56:21 -0700734 u64 new_tb_to_xs, new_stamp_xsec;
Paul Mackerras0e469db2010-06-20 19:03:08 +0000735 u32 frac_sec;
Tony Breeds4a4cfe32007-09-22 07:35:52 +1000736
737 if (clock != &clocksource_timebase)
738 return;
739
740 /* Make userspace gettimeofday spin until we're done. */
741 ++vdso_data->tb_update_count;
742 smp_mb();
743
Anton Blanchard11b86332011-11-23 20:07:19 +0000744 /* 19342813113834067 ~= 2^(20+64) / 1e9 */
745 new_tb_to_xs = (u64) mult * (19342813113834067ULL >> clock->shift);
John Stultz06d518e2010-07-13 17:56:22 -0700746 new_stamp_xsec = (u64) wall_time->tv_nsec * XSEC_PER_SEC;
John Stultzb0797b62010-07-13 17:56:21 -0700747 do_div(new_stamp_xsec, 1000000000);
John Stultz06d518e2010-07-13 17:56:22 -0700748 new_stamp_xsec += (u64) wall_time->tv_sec * XSEC_PER_SEC;
John Stultzb0797b62010-07-13 17:56:21 -0700749
Paul Mackerras0e469db2010-06-20 19:03:08 +0000750 BUG_ON(wall_time->tv_nsec >= NSEC_PER_SEC);
751 /* this is tv_nsec / 1e9 as a 0.32 fraction */
752 frac_sec = ((u64) wall_time->tv_nsec * 18446744073ULL) >> 32;
Thomas Gleixner47916be2010-07-28 21:49:22 +0200753
John Stultzb0797b62010-07-13 17:56:21 -0700754 /*
755 * tb_update_count is used to allow the userspace gettimeofday code
756 * to assure itself that it sees a consistent view of the tb_to_xs and
757 * stamp_xsec variables. It reads the tb_update_count, then reads
758 * tb_to_xs and stamp_xsec and then reads tb_update_count again. If
759 * the two values of tb_update_count match and are even then the
760 * tb_to_xs and stamp_xsec values are consistent. If not, then it
761 * loops back and reads them again until this criteria is met.
762 * We expect the caller to have done the first increment of
763 * vdso_data->tb_update_count already.
764 */
765 vdso_data->tb_orig_stamp = clock->cycle_last;
766 vdso_data->stamp_xsec = new_stamp_xsec;
767 vdso_data->tb_to_xs = new_tb_to_xs;
John Stultz76158562010-07-13 17:56:23 -0700768 vdso_data->wtom_clock_sec = wtm->tv_sec;
769 vdso_data->wtom_clock_nsec = wtm->tv_nsec;
John Stultz06d518e2010-07-13 17:56:22 -0700770 vdso_data->stamp_xtime = *wall_time;
Thomas Gleixner47916be2010-07-28 21:49:22 +0200771 vdso_data->stamp_sec_fraction = frac_sec;
John Stultzb0797b62010-07-13 17:56:21 -0700772 smp_wmb();
773 ++(vdso_data->tb_update_count);
Tony Breeds4a4cfe32007-09-22 07:35:52 +1000774}
775
776void update_vsyscall_tz(void)
777{
Tony Breeds4a4cfe32007-09-22 07:35:52 +1000778 vdso_data->tz_minuteswest = sys_tz.tz_minuteswest;
779 vdso_data->tz_dsttime = sys_tz.tz_dsttime;
Tony Breeds4a4cfe32007-09-22 07:35:52 +1000780}
781
Michael Ellerman1c21a292008-05-08 14:27:19 +1000782static void __init clocksource_init(void)
Tony Breeds4a4cfe32007-09-22 07:35:52 +1000783{
784 struct clocksource *clock;
785
786 if (__USE_RTC())
787 clock = &clocksource_rtc;
788 else
789 clock = &clocksource_timebase;
790
Anton Blanchard11b86332011-11-23 20:07:19 +0000791 if (clocksource_register_hz(clock, tb_ticks_per_sec)) {
Tony Breeds4a4cfe32007-09-22 07:35:52 +1000792 printk(KERN_ERR "clocksource: %s is already registered\n",
793 clock->name);
794 return;
795 }
796
797 printk(KERN_INFO "clocksource: %s mult[%x] shift[%d] registered\n",
798 clock->name, clock->mult, clock->shift);
799}
800
Tony Breedsd831d0b2007-09-21 13:26:03 +1000801static int decrementer_set_next_event(unsigned long evt,
802 struct clock_event_device *dev)
803{
Anton Blanchard7df10272011-11-23 20:07:22 +0000804 __get_cpu_var(decrementers_next_tb) = get_tb_or_rtc() + evt;
Tony Breedsd831d0b2007-09-21 13:26:03 +1000805 set_dec(evt);
806 return 0;
807}
808
809static void decrementer_set_mode(enum clock_event_mode mode,
810 struct clock_event_device *dev)
811{
812 if (mode != CLOCK_EVT_MODE_ONESHOT)
813 decrementer_set_next_event(DECREMENTER_MAX, dev);
814}
815
816static void register_decrementer_clockevent(int cpu)
817{
Anton Blanchard7df10272011-11-23 20:07:22 +0000818 struct clock_event_device *dec = &per_cpu(decrementers, cpu);
Tony Breedsd831d0b2007-09-21 13:26:03 +1000819
820 *dec = decrementer_clockevent;
Rusty Russell320ab2b2008-12-13 21:20:26 +1030821 dec->cpumask = cpumask_of(cpu);
Tony Breedsd831d0b2007-09-21 13:26:03 +1000822
Anton Blanchardb919ee82010-02-07 19:26:29 +0000823 printk_once(KERN_DEBUG "clockevent: %s mult[%x] shift[%d] cpu[%d]\n",
824 dec->name, dec->mult, dec->shift, cpu);
Tony Breedsd831d0b2007-09-21 13:26:03 +1000825
826 clockevents_register_device(dec);
827}
828
Milton Millerc4818872007-12-14 15:52:10 +1100829static void __init init_decrementer_clockevent(void)
Tony Breedsd831d0b2007-09-21 13:26:03 +1000830{
831 int cpu = smp_processor_id();
832
Anton Blanchardd8afc6f2011-11-23 20:07:18 +0000833 clockevents_calc_mult_shift(&decrementer_clockevent, ppc_tb_freq, 4);
834
Tony Breedsd831d0b2007-09-21 13:26:03 +1000835 decrementer_clockevent.max_delta_ns =
836 clockevent_delta2ns(DECREMENTER_MAX, &decrementer_clockevent);
Paul Mackerras43875cc2007-10-31 22:25:35 +1100837 decrementer_clockevent.min_delta_ns =
838 clockevent_delta2ns(2, &decrementer_clockevent);
Tony Breedsd831d0b2007-09-21 13:26:03 +1000839
840 register_decrementer_clockevent(cpu);
841}
842
843void secondary_cpu_time_init(void)
844{
Benjamin Herrenschmidt77c0a702009-08-28 14:25:04 +1000845 /* Start the decrementer on CPUs that have manual control
846 * such as BookE
847 */
848 start_cpu_decrementer();
849
Tony Breedsd831d0b2007-09-21 13:26:03 +1000850 /* FIME: Should make unrelatred change to move snapshot_timebase
851 * call here ! */
852 register_decrementer_clockevent(smp_processor_id());
853}
854
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000855/* This function is only called on the boot processor */
Linus Torvalds1da177e2005-04-16 15:20:36 -0700856void __init time_init(void)
857{
Linus Torvalds1da177e2005-04-16 15:20:36 -0700858 struct div_result res;
Paul Mackerrasd75d68c2010-06-20 19:04:14 +0000859 u64 scale;
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000860 unsigned shift;
861
Paul Mackerras96c44502005-10-23 17:14:56 +1000862 if (__USE_RTC()) {
863 /* 601 processor: dec counts down by 128 every 128ns */
864 ppc_tb_freq = 1000000000;
Paul Mackerras96c44502005-10-23 17:14:56 +1000865 } else {
866 /* Normal PowerPC with timebase register */
867 ppc_md.calibrate_decr();
Olof Johansson224ad802006-04-12 15:20:27 -0500868 printk(KERN_DEBUG "time_init: decrementer frequency = %lu.%.6lu MHz\n",
Paul Mackerras96c44502005-10-23 17:14:56 +1000869 ppc_tb_freq / 1000000, ppc_tb_freq % 1000000);
Olof Johansson224ad802006-04-12 15:20:27 -0500870 printk(KERN_DEBUG "time_init: processor frequency = %lu.%.6lu MHz\n",
Paul Mackerras96c44502005-10-23 17:14:56 +1000871 ppc_proc_freq / 1000000, ppc_proc_freq % 1000000);
Paul Mackerras96c44502005-10-23 17:14:56 +1000872 }
Paul Mackerras374e99d2005-10-20 21:04:51 +1000873
874 tb_ticks_per_jiffy = ppc_tb_freq / HZ;
Paul Mackerras092b8f32006-02-20 10:38:56 +1100875 tb_ticks_per_sec = ppc_tb_freq;
Paul Mackerras374e99d2005-10-20 21:04:51 +1000876 tb_ticks_per_usec = ppc_tb_freq / 1000000;
Paul Mackerrasc6622f62006-02-24 10:06:59 +1100877 calc_cputime_factors();
Stanislaw Gruszkaa42548a2009-07-29 12:15:29 +0200878 setup_cputime_one_jiffy();
Paul Mackerras092b8f32006-02-20 10:38:56 +1100879
880 /*
Linus Torvalds1da177e2005-04-16 15:20:36 -0700881 * Compute scale factor for sched_clock.
882 * The calibrate_decr() function has set tb_ticks_per_sec,
883 * which is the timebase frequency.
884 * We compute 1e9 * 2^64 / tb_ticks_per_sec and interpret
885 * the 128-bit result as a 64.64 fixed-point number.
886 * We then shift that number right until it is less than 1.0,
887 * giving us the scale factor and shift count to use in
888 * sched_clock().
889 */
890 div128_by_32(1000000000, 0, tb_ticks_per_sec, &res);
891 scale = res.result_low;
892 for (shift = 0; res.result_high != 0; ++shift) {
893 scale = (scale >> 1) | (res.result_high << 63);
894 res.result_high >>= 1;
895 }
896 tb_to_ns_scale = scale;
897 tb_to_ns_shift = shift;
Tony Breedsfc9069fe2007-07-04 14:04:31 +1000898 /* Save the current timebase to pretty up CONFIG_PRINTK_TIME */
Benjamin Herrenschmidtc27da3392007-09-19 14:21:56 +1000899 boot_tb = get_tb_or_rtc();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700900
Paul Mackerras092b8f32006-02-20 10:38:56 +1100901 /* If platform provided a timezone (pmac), we correct the time */
Anton Blanchard621692c2011-11-23 20:07:21 +0000902 if (timezone_offset) {
Paul Mackerras092b8f32006-02-20 10:38:56 +1100903 sys_tz.tz_minuteswest = -timezone_offset / 60;
904 sys_tz.tz_dsttime = 0;
Anton Blanchard621692c2011-11-23 20:07:21 +0000905 }
Paul Mackerras092b8f32006-02-20 10:38:56 +1100906
Benjamin Herrenschmidta7f290d2005-11-11 21:15:21 +1100907 vdso_data->tb_update_count = 0;
908 vdso_data->tb_ticks_per_sec = tb_ticks_per_sec;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700909
Benjamin Herrenschmidt77c0a702009-08-28 14:25:04 +1000910 /* Start the decrementer on CPUs that have manual control
911 * such as BookE
912 */
913 start_cpu_decrementer();
914
Stephen Rothwellf5339272012-03-15 18:18:00 +0000915 /* Register the clocksource */
916 clocksource_init();
Tony Breeds4a4cfe32007-09-22 07:35:52 +1000917
Tony Breedsd831d0b2007-09-21 13:26:03 +1000918 init_decrementer_clockevent();
Linus Torvalds1da177e2005-04-16 15:20:36 -0700919}
920
Linus Torvalds1da177e2005-04-16 15:20:36 -0700921
Linus Torvalds1da177e2005-04-16 15:20:36 -0700922#define FEBRUARY 2
923#define STARTOFTIME 1970
924#define SECDAY 86400L
925#define SECYR (SECDAY * 365)
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000926#define leapyear(year) ((year) % 4 == 0 && \
927 ((year) % 100 != 0 || (year) % 400 == 0))
Linus Torvalds1da177e2005-04-16 15:20:36 -0700928#define days_in_year(a) (leapyear(a) ? 366 : 365)
929#define days_in_month(a) (month_days[(a) - 1])
930
931static int month_days[12] = {
932 31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31
933};
934
935/*
936 * This only works for the Gregorian calendar - i.e. after 1752 (in the UK)
937 */
938void GregorianDay(struct rtc_time * tm)
939{
940 int leapsToDate;
941 int lastYear;
942 int day;
943 int MonthOffset[] = { 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334 };
944
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000945 lastYear = tm->tm_year - 1;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700946
947 /*
948 * Number of leap corrections to apply up to end of last year
949 */
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000950 leapsToDate = lastYear / 4 - lastYear / 100 + lastYear / 400;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700951
952 /*
953 * This year is a leap year if it is divisible by 4 except when it is
954 * divisible by 100 unless it is divisible by 400
955 *
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000956 * e.g. 1904 was a leap year, 1900 was not, 1996 is, and 2000 was
Linus Torvalds1da177e2005-04-16 15:20:36 -0700957 */
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000958 day = tm->tm_mon > 2 && leapyear(tm->tm_year);
Linus Torvalds1da177e2005-04-16 15:20:36 -0700959
960 day += lastYear*365 + leapsToDate + MonthOffset[tm->tm_mon-1] +
961 tm->tm_mday;
962
Paul Mackerrasf2783c12005-10-20 09:23:26 +1000963 tm->tm_wday = day % 7;
Linus Torvalds1da177e2005-04-16 15:20:36 -0700964}
965
966void to_tm(int tim, struct rtc_time * tm)
967{
968 register int i;
969 register long hms, day;
970
971 day = tim / SECDAY;
972 hms = tim % SECDAY;
973
974 /* Hours, minutes, seconds are easy */
975 tm->tm_hour = hms / 3600;
976 tm->tm_min = (hms % 3600) / 60;
977 tm->tm_sec = (hms % 3600) % 60;
978
979 /* Number of years in days */
980 for (i = STARTOFTIME; day >= days_in_year(i); i++)
981 day -= days_in_year(i);
982 tm->tm_year = i;
983
984 /* Number of months in days left */
985 if (leapyear(tm->tm_year))
986 days_in_month(FEBRUARY) = 29;
987 for (i = 1; day >= days_in_month(i); i++)
988 day -= days_in_month(i);
989 days_in_month(FEBRUARY) = 28;
990 tm->tm_mon = i;
991
992 /* Days are what is left over (+1) from all that. */
993 tm->tm_mday = day + 1;
994
995 /*
996 * Determine the day of week
997 */
998 GregorianDay(tm);
999}
1000
Linus Torvalds1da177e2005-04-16 15:20:36 -07001001/*
1002 * Divide a 128-bit dividend by a 32-bit divisor, leaving a 128 bit
1003 * result.
1004 */
Paul Mackerrasf2783c12005-10-20 09:23:26 +10001005void div128_by_32(u64 dividend_high, u64 dividend_low,
1006 unsigned divisor, struct div_result *dr)
Linus Torvalds1da177e2005-04-16 15:20:36 -07001007{
Paul Mackerrasf2783c12005-10-20 09:23:26 +10001008 unsigned long a, b, c, d;
1009 unsigned long w, x, y, z;
1010 u64 ra, rb, rc;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001011
1012 a = dividend_high >> 32;
1013 b = dividend_high & 0xffffffff;
1014 c = dividend_low >> 32;
1015 d = dividend_low & 0xffffffff;
1016
Paul Mackerrasf2783c12005-10-20 09:23:26 +10001017 w = a / divisor;
1018 ra = ((u64)(a - (w * divisor)) << 32) + b;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001019
Paul Mackerrasf2783c12005-10-20 09:23:26 +10001020 rb = ((u64) do_div(ra, divisor) << 32) + c;
1021 x = ra;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001022
Paul Mackerrasf2783c12005-10-20 09:23:26 +10001023 rc = ((u64) do_div(rb, divisor) << 32) + d;
1024 y = rb;
1025
1026 do_div(rc, divisor);
1027 z = rc;
Paul Mackerrasf2783c12005-10-20 09:23:26 +10001028
1029 dr->result_high = ((u64)w << 32) + x;
1030 dr->result_low = ((u64)y << 32) + z;
Linus Torvalds1da177e2005-04-16 15:20:36 -07001031
1032}
Geert Uytterhoevenbcd68a72009-02-19 16:50:46 +01001033
Benjamin Herrenschmidt177996e2009-06-09 21:12:00 +00001034/* We don't need to calibrate delay, we use the CPU timebase for that */
1035void calibrate_delay(void)
1036{
1037 /* Some generic code (such as spinlock debug) use loops_per_jiffy
1038 * as the number of __delay(1) in a jiffy, so make it so
1039 */
1040 loops_per_jiffy = tb_ticks_per_jiffy;
1041}
1042
Geert Uytterhoevenbcd68a72009-02-19 16:50:46 +01001043static int __init rtc_init(void)
1044{
1045 struct platform_device *pdev;
1046
1047 if (!ppc_md.get_rtc_time)
1048 return -ENODEV;
1049
1050 pdev = platform_device_register_simple("rtc-generic", -1, NULL, 0);
Geert Uytterhoevenbcd68a72009-02-19 16:50:46 +01001051
Adrian-Leonard Radu09652b02013-03-10 03:07:00 +00001052 return PTR_RET(pdev);
Geert Uytterhoevenbcd68a72009-02-19 16:50:46 +01001053}
1054
1055module_init(rtc_init);