xref: /openbmc/linux/arch/powerpc/kernel/time.c (revision 3f984620f9a4fe089c0a3c951b75a460211394bb)
1f2783c15SPaul Mackerras /*
2f2783c15SPaul Mackerras  * Common time routines among all ppc machines.
3f2783c15SPaul Mackerras  *
4f2783c15SPaul Mackerras  * Written by Cort Dougan (cort@cs.nmt.edu) to merge
5f2783c15SPaul Mackerras  * Paul Mackerras' version and mine for PReP and Pmac.
6f2783c15SPaul Mackerras  * MPC8xx/MBX changes by Dan Malek (dmalek@jlc.net).
7f2783c15SPaul Mackerras  * Converted for 64-bit by Mike Corrigan (mikejc@us.ibm.com)
8f2783c15SPaul Mackerras  *
9f2783c15SPaul Mackerras  * First round of bugfixes by Gabriel Paubert (paubert@iram.es)
10f2783c15SPaul Mackerras  * to make clock more stable (2.4.0-test5). The only thing
11f2783c15SPaul Mackerras  * that this code assumes is that the timebases have been synchronized
12f2783c15SPaul Mackerras  * by firmware on SMP and are never stopped (never do sleep
13f2783c15SPaul Mackerras  * on SMP then, nap and doze are OK).
14f2783c15SPaul Mackerras  *
15f2783c15SPaul Mackerras  * Speeded up do_gettimeofday by getting rid of references to
16f2783c15SPaul Mackerras  * xtime (which required locks for consistency). (mikejc@us.ibm.com)
17f2783c15SPaul Mackerras  *
18f2783c15SPaul Mackerras  * TODO (not necessarily in this file):
19f2783c15SPaul Mackerras  * - improve precision and reproducibility of timebase frequency
20f5339277SStephen Rothwell  * measurement at boot time.
21f2783c15SPaul Mackerras  * - for astronomical applications: add a new function to get
22f2783c15SPaul Mackerras  * non ambiguous timestamps even around leap seconds. This needs
23f2783c15SPaul Mackerras  * a new timestamp format and a good name.
24f2783c15SPaul Mackerras  *
25f2783c15SPaul Mackerras  * 1997-09-10  Updated NTP code according to technical memorandum Jan '96
26f2783c15SPaul Mackerras  *             "A Kernel Model for Precision Timekeeping" by Dave Mills
27f2783c15SPaul Mackerras  *
28f2783c15SPaul Mackerras  *      This program is free software; you can redistribute it and/or
29f2783c15SPaul Mackerras  *      modify it under the terms of the GNU General Public License
30f2783c15SPaul Mackerras  *      as published by the Free Software Foundation; either version
31f2783c15SPaul Mackerras  *      2 of the License, or (at your option) any later version.
32f2783c15SPaul Mackerras  */
33f2783c15SPaul Mackerras 
34f2783c15SPaul Mackerras #include <linux/errno.h>
354b16f8e2SPaul Gortmaker #include <linux/export.h>
36f2783c15SPaul Mackerras #include <linux/sched.h>
37e6017571SIngo Molnar #include <linux/sched/clock.h>
38f2783c15SPaul Mackerras #include <linux/kernel.h>
39f2783c15SPaul Mackerras #include <linux/param.h>
40f2783c15SPaul Mackerras #include <linux/string.h>
41f2783c15SPaul Mackerras #include <linux/mm.h>
42f2783c15SPaul Mackerras #include <linux/interrupt.h>
43f2783c15SPaul Mackerras #include <linux/timex.h>
44f2783c15SPaul Mackerras #include <linux/kernel_stat.h>
45f2783c15SPaul Mackerras #include <linux/time.h>
460d948730SPreeti U Murthy #include <linux/clockchips.h>
47f2783c15SPaul Mackerras #include <linux/init.h>
48f2783c15SPaul Mackerras #include <linux/profile.h>
49f2783c15SPaul Mackerras #include <linux/cpu.h>
50f2783c15SPaul Mackerras #include <linux/security.h>
51f2783c15SPaul Mackerras #include <linux/percpu.h>
52f2783c15SPaul Mackerras #include <linux/rtc.h>
53092b8f34SPaul Mackerras #include <linux/jiffies.h>
54c6622f63SPaul Mackerras #include <linux/posix-timers.h>
557d12e780SDavid Howells #include <linux/irq.h>
56177996e6SBenjamin Herrenschmidt #include <linux/delay.h>
57e360adbeSPeter Zijlstra #include <linux/irq_work.h>
58f0d37300SKevin Hao #include <linux/clk-provider.h>
597f92bc56SDaniel Axtens #include <linux/suspend.h>
60169047f4SArnd Bergmann #include <linux/rtc.h>
6132ef5517SIngo Molnar #include <linux/sched/cputime.h>
624e287e65SNicholas Piggin #include <linux/processor.h>
636795b85cSAnton Blanchard #include <asm/trace.h>
64f2783c15SPaul Mackerras 
65f2783c15SPaul Mackerras #include <asm/io.h>
66f2783c15SPaul Mackerras #include <asm/nvram.h>
67f2783c15SPaul Mackerras #include <asm/cache.h>
68f2783c15SPaul Mackerras #include <asm/machdep.h>
697c0f6ba6SLinus Torvalds #include <linux/uaccess.h>
70f2783c15SPaul Mackerras #include <asm/time.h>
71f2783c15SPaul Mackerras #include <asm/prom.h>
72f2783c15SPaul Mackerras #include <asm/irq.h>
73f2783c15SPaul Mackerras #include <asm/div64.h>
742249ca9dSPaul Mackerras #include <asm/smp.h>
75a7f290daSBenjamin Herrenschmidt #include <asm/vdso_datapage.h>
76f2783c15SPaul Mackerras #include <asm/firmware.h>
770545d543SDaniel Axtens #include <asm/asm-prototypes.h>
78f2783c15SPaul Mackerras 
794a4cfe38STony Breeds /* powerpc clocksource/clockevent code */
804a4cfe38STony Breeds 
81d831d0b8STony Breeds #include <linux/clockchips.h>
82189374aeSJohn Stultz #include <linux/timekeeper_internal.h>
834a4cfe38STony Breeds 
84a5a1d1c2SThomas Gleixner static u64 rtc_read(struct clocksource *);
854a4cfe38STony Breeds static struct clocksource clocksource_rtc = {
864a4cfe38STony Breeds 	.name         = "rtc",
874a4cfe38STony Breeds 	.rating       = 400,
884a4cfe38STony Breeds 	.flags        = CLOCK_SOURCE_IS_CONTINUOUS,
894a4cfe38STony Breeds 	.mask         = CLOCKSOURCE_MASK(64),
904a4cfe38STony Breeds 	.read         = rtc_read,
914a4cfe38STony Breeds };
924a4cfe38STony Breeds 
93a5a1d1c2SThomas Gleixner static u64 timebase_read(struct clocksource *);
944a4cfe38STony Breeds static struct clocksource clocksource_timebase = {
954a4cfe38STony Breeds 	.name         = "timebase",
964a4cfe38STony Breeds 	.rating       = 400,
974a4cfe38STony Breeds 	.flags        = CLOCK_SOURCE_IS_CONTINUOUS,
984a4cfe38STony Breeds 	.mask         = CLOCKSOURCE_MASK(64),
994a4cfe38STony Breeds 	.read         = timebase_read,
1004a4cfe38STony Breeds };
1014a4cfe38STony Breeds 
10279901024SOliver O'Halloran #define DECREMENTER_DEFAULT_MAX 0x7FFFFFFF
10379901024SOliver O'Halloran u64 decrementer_max = DECREMENTER_DEFAULT_MAX;
104d831d0b8STony Breeds 
105d831d0b8STony Breeds static int decrementer_set_next_event(unsigned long evt,
106d831d0b8STony Breeds 				      struct clock_event_device *dev);
10737a13e78SViresh Kumar static int decrementer_shutdown(struct clock_event_device *evt);
108d831d0b8STony Breeds 
1096e35994dSBharat Bhushan struct clock_event_device decrementer_clockevent = {
110d831d0b8STony Breeds 	.name			= "decrementer",
111d831d0b8STony Breeds 	.rating			= 200,
112d831d0b8STony Breeds 	.irq			= 0,
113d831d0b8STony Breeds 	.set_next_event		= decrementer_set_next_event,
11437a13e78SViresh Kumar 	.set_state_shutdown	= decrementer_shutdown,
11537a13e78SViresh Kumar 	.tick_resume		= decrementer_shutdown,
11637a13e78SViresh Kumar 	.features		= CLOCK_EVT_FEAT_ONESHOT |
11737a13e78SViresh Kumar 				  CLOCK_EVT_FEAT_C3STOP,
118d831d0b8STony Breeds };
1196e35994dSBharat Bhushan EXPORT_SYMBOL(decrementer_clockevent);
120d831d0b8STony Breeds 
1217df10275SAnton Blanchard DEFINE_PER_CPU(u64, decrementers_next_tb);
1227df10275SAnton Blanchard static DEFINE_PER_CPU(struct clock_event_device, decrementers);
123d831d0b8STony Breeds 
124f2783c15SPaul Mackerras #define XSEC_PER_SEC (1024*1024)
125f2783c15SPaul Mackerras 
126f2783c15SPaul Mackerras #ifdef CONFIG_PPC64
127f2783c15SPaul Mackerras #define SCALE_XSEC(xsec, max)	(((xsec) * max) / XSEC_PER_SEC)
128f2783c15SPaul Mackerras #else
129f2783c15SPaul Mackerras /* compute ((xsec << 12) * max) >> 32 */
130f2783c15SPaul Mackerras #define SCALE_XSEC(xsec, max)	mulhwu((xsec) << 12, max)
131f2783c15SPaul Mackerras #endif
132f2783c15SPaul Mackerras 
133f2783c15SPaul Mackerras unsigned long tb_ticks_per_jiffy;
134f2783c15SPaul Mackerras unsigned long tb_ticks_per_usec = 100; /* sane default */
135f2783c15SPaul Mackerras EXPORT_SYMBOL(tb_ticks_per_usec);
136f2783c15SPaul Mackerras unsigned long tb_ticks_per_sec;
1372cf82c02SPaul Mackerras EXPORT_SYMBOL(tb_ticks_per_sec);	/* for cputime_t conversions */
138092b8f34SPaul Mackerras 
139f2783c15SPaul Mackerras DEFINE_SPINLOCK(rtc_lock);
140f2783c15SPaul Mackerras EXPORT_SYMBOL_GPL(rtc_lock);
141f2783c15SPaul Mackerras 
142fc9069feSTony Breeds static u64 tb_to_ns_scale __read_mostly;
143fc9069feSTony Breeds static unsigned tb_to_ns_shift __read_mostly;
144364a1246SHeiko Schocher static u64 boot_tb __read_mostly;
145f2783c15SPaul Mackerras 
146f2783c15SPaul Mackerras extern struct timezone sys_tz;
147f2783c15SPaul Mackerras static long timezone_offset;
148f2783c15SPaul Mackerras 
149f2783c15SPaul Mackerras unsigned long ppc_proc_freq;
15055ec2fcaSTimur Tabi EXPORT_SYMBOL_GPL(ppc_proc_freq);
151f2783c15SPaul Mackerras unsigned long ppc_tb_freq;
15255ec2fcaSTimur Tabi EXPORT_SYMBOL_GPL(ppc_tb_freq);
15396c44507SPaul Mackerras 
154abf917cdSFrederic Weisbecker #ifdef CONFIG_VIRT_CPU_ACCOUNTING_NATIVE
155c6622f63SPaul Mackerras /*
156e7f340caSFrederic Weisbecker  * Factor for converting from cputime_t (timebase ticks) to
157e7f340caSFrederic Weisbecker  * microseconds. This is stored as 0.64 fixed-point binary fraction.
158c6622f63SPaul Mackerras  */
1599f5072d4SAndreas Schwab u64 __cputime_usec_factor;
1609f5072d4SAndreas Schwab EXPORT_SYMBOL(__cputime_usec_factor);
161a42548a1SStanislaw Gruszka 
162c223c903SChristophe Leroy #ifdef CONFIG_PPC_SPLPAR
163872e439aSPaul Mackerras void (*dtl_consumer)(struct dtl_entry *, u64);
164c223c903SChristophe Leroy #endif
165c223c903SChristophe Leroy 
166c223c903SChristophe Leroy #ifdef CONFIG_PPC64
167c223c903SChristophe Leroy #define get_accounting(tsk)	(&get_paca()->accounting)
168c223c903SChristophe Leroy #else
169c223c903SChristophe Leroy #define get_accounting(tsk)	(&task_thread_info(tsk)->accounting)
170c223c903SChristophe Leroy #endif
171872e439aSPaul Mackerras 
172c6622f63SPaul Mackerras static void calc_cputime_factors(void)
173c6622f63SPaul Mackerras {
174c6622f63SPaul Mackerras 	struct div_result res;
175c6622f63SPaul Mackerras 
1769f5072d4SAndreas Schwab 	div128_by_32(1000000, 0, tb_ticks_per_sec, &res);
1779f5072d4SAndreas Schwab 	__cputime_usec_factor = res.result_low;
178c6622f63SPaul Mackerras }
179c6622f63SPaul Mackerras 
180c6622f63SPaul Mackerras /*
181cf9efce0SPaul Mackerras  * Read the SPURR on systems that have it, otherwise the PURR,
182cf9efce0SPaul Mackerras  * or if that doesn't exist return the timebase value passed in.
183c6622f63SPaul Mackerras  */
184c223c903SChristophe Leroy static unsigned long read_spurr(unsigned long tb)
185c6622f63SPaul Mackerras {
186cf9efce0SPaul Mackerras 	if (cpu_has_feature(CPU_FTR_SPURR))
187cf9efce0SPaul Mackerras 		return mfspr(SPRN_SPURR);
188c6622f63SPaul Mackerras 	if (cpu_has_feature(CPU_FTR_PURR))
189c6622f63SPaul Mackerras 		return mfspr(SPRN_PURR);
190cf9efce0SPaul Mackerras 	return tb;
191cf9efce0SPaul Mackerras }
192cf9efce0SPaul Mackerras 
193cf9efce0SPaul Mackerras #ifdef CONFIG_PPC_SPLPAR
194cf9efce0SPaul Mackerras 
195cf9efce0SPaul Mackerras /*
196cf9efce0SPaul Mackerras  * Scan the dispatch trace log and count up the stolen time.
197cf9efce0SPaul Mackerras  * Should be called with interrupts disabled.
198cf9efce0SPaul Mackerras  */
199cf9efce0SPaul Mackerras static u64 scan_dispatch_log(u64 stop_tb)
200cf9efce0SPaul Mackerras {
201872e439aSPaul Mackerras 	u64 i = local_paca->dtl_ridx;
202cf9efce0SPaul Mackerras 	struct dtl_entry *dtl = local_paca->dtl_curr;
203cf9efce0SPaul Mackerras 	struct dtl_entry *dtl_end = local_paca->dispatch_log_end;
204cf9efce0SPaul Mackerras 	struct lppaca *vpa = local_paca->lppaca_ptr;
205cf9efce0SPaul Mackerras 	u64 tb_delta;
206cf9efce0SPaul Mackerras 	u64 stolen = 0;
207cf9efce0SPaul Mackerras 	u64 dtb;
208cf9efce0SPaul Mackerras 
20984ffae55SAnton Blanchard 	if (!dtl)
21084ffae55SAnton Blanchard 		return 0;
21184ffae55SAnton Blanchard 
2127ffcf8ecSAnton Blanchard 	if (i == be64_to_cpu(vpa->dtl_idx))
213cf9efce0SPaul Mackerras 		return 0;
2147ffcf8ecSAnton Blanchard 	while (i < be64_to_cpu(vpa->dtl_idx)) {
2157ffcf8ecSAnton Blanchard 		dtb = be64_to_cpu(dtl->timebase);
2167ffcf8ecSAnton Blanchard 		tb_delta = be32_to_cpu(dtl->enqueue_to_dispatch_time) +
2177ffcf8ecSAnton Blanchard 			be32_to_cpu(dtl->ready_to_enqueue_time);
218cf9efce0SPaul Mackerras 		barrier();
2197ffcf8ecSAnton Blanchard 		if (i + N_DISPATCH_LOG < be64_to_cpu(vpa->dtl_idx)) {
220cf9efce0SPaul Mackerras 			/* buffer has overflowed */
2217ffcf8ecSAnton Blanchard 			i = be64_to_cpu(vpa->dtl_idx) - N_DISPATCH_LOG;
222cf9efce0SPaul Mackerras 			dtl = local_paca->dispatch_log + (i % N_DISPATCH_LOG);
223cf9efce0SPaul Mackerras 			continue;
224cf9efce0SPaul Mackerras 		}
225cf9efce0SPaul Mackerras 		if (dtb > stop_tb)
226cf9efce0SPaul Mackerras 			break;
22784b07386SAnton Blanchard 		if (dtl_consumer)
22884b07386SAnton Blanchard 			dtl_consumer(dtl, i);
229cf9efce0SPaul Mackerras 		stolen += tb_delta;
230cf9efce0SPaul Mackerras 		++i;
231cf9efce0SPaul Mackerras 		++dtl;
232cf9efce0SPaul Mackerras 		if (dtl == dtl_end)
233cf9efce0SPaul Mackerras 			dtl = local_paca->dispatch_log;
234cf9efce0SPaul Mackerras 	}
235cf9efce0SPaul Mackerras 	local_paca->dtl_ridx = i;
236cf9efce0SPaul Mackerras 	local_paca->dtl_curr = dtl;
237cf9efce0SPaul Mackerras 	return stolen;
238c6622f63SPaul Mackerras }
239c6622f63SPaul Mackerras 
240c6622f63SPaul Mackerras /*
241cf9efce0SPaul Mackerras  * Accumulate stolen time by scanning the dispatch trace log.
242cf9efce0SPaul Mackerras  * Called on entry from user mode.
2434603ac18SMichael Neuling  */
244cf9efce0SPaul Mackerras void accumulate_stolen_time(void)
2454603ac18SMichael Neuling {
246cf9efce0SPaul Mackerras 	u64 sst, ust;
2474e26bc4aSMadhavan Srinivasan 	unsigned long save_irq_soft_mask = irq_soft_mask_return();
248c223c903SChristophe Leroy 	struct cpu_accounting_data *acct = &local_paca->accounting;
249b18ae08dSTejun Heo 
250b18ae08dSTejun Heo 	/* We are called early in the exception entry, before
251b18ae08dSTejun Heo 	 * soft/hard_enabled are sync'ed to the expected state
252b18ae08dSTejun Heo 	 * for the exception. We are hard disabled but the PACA
253b18ae08dSTejun Heo 	 * needs to reflect that so various debug stuff doesn't
254b18ae08dSTejun Heo 	 * complain
255b18ae08dSTejun Heo 	 */
2564e26bc4aSMadhavan Srinivasan 	irq_soft_mask_set(IRQS_DISABLED);
257b18ae08dSTejun Heo 
258c223c903SChristophe Leroy 	sst = scan_dispatch_log(acct->starttime_user);
259c223c903SChristophe Leroy 	ust = scan_dispatch_log(acct->starttime);
2608c8b73c4SFrederic Weisbecker 	acct->stime -= sst;
2618c8b73c4SFrederic Weisbecker 	acct->utime -= ust;
262f828c3d0SFrederic Weisbecker 	acct->steal_time += ust + sst;
263b18ae08dSTejun Heo 
2644e26bc4aSMadhavan Srinivasan 	irq_soft_mask_set(save_irq_soft_mask);
2654603ac18SMichael Neuling }
2664603ac18SMichael Neuling 
267cf9efce0SPaul Mackerras static inline u64 calculate_stolen_time(u64 stop_tb)
268cf9efce0SPaul Mackerras {
269a6201da3SAneesh Kumar K.V 	if (!firmware_has_feature(FW_FEATURE_SPLPAR))
270a6201da3SAneesh Kumar K.V 		return 0;
271a6201da3SAneesh Kumar K.V 
272a19ff1a2SFrederic Weisbecker 	if (get_paca()->dtl_ridx != be64_to_cpu(get_lppaca()->dtl_idx))
273a19ff1a2SFrederic Weisbecker 		return scan_dispatch_log(stop_tb);
274cf9efce0SPaul Mackerras 
275a19ff1a2SFrederic Weisbecker 	return 0;
276cf9efce0SPaul Mackerras }
277cf9efce0SPaul Mackerras 
278cf9efce0SPaul Mackerras #else /* CONFIG_PPC_SPLPAR */
279cf9efce0SPaul Mackerras static inline u64 calculate_stolen_time(u64 stop_tb)
280cf9efce0SPaul Mackerras {
281cf9efce0SPaul Mackerras 	return 0;
282cf9efce0SPaul Mackerras }
283cf9efce0SPaul Mackerras 
284cf9efce0SPaul Mackerras #endif /* CONFIG_PPC_SPLPAR */
285cf9efce0SPaul Mackerras 
2864603ac18SMichael Neuling /*
287c6622f63SPaul Mackerras  * Account time for a transition between system, hard irq
288c6622f63SPaul Mackerras  * or soft irq state.
289c6622f63SPaul Mackerras  */
290c223c903SChristophe Leroy static unsigned long vtime_delta(struct task_struct *tsk,
291a19ff1a2SFrederic Weisbecker 				 unsigned long *stime_scaled,
292a19ff1a2SFrederic Weisbecker 				 unsigned long *steal_time)
293c6622f63SPaul Mackerras {
294c223c903SChristophe Leroy 	unsigned long now, nowscaled, deltascaled;
295a19ff1a2SFrederic Weisbecker 	unsigned long stime;
296a19ff1a2SFrederic Weisbecker 	unsigned long utime, utime_scaled;
297c223c903SChristophe Leroy 	struct cpu_accounting_data *acct = get_accounting(tsk);
298c6622f63SPaul Mackerras 
2991b2852b1SFrederic Weisbecker 	WARN_ON_ONCE(!irqs_disabled());
3001b2852b1SFrederic Weisbecker 
301cf9efce0SPaul Mackerras 	now = mftb();
3024603ac18SMichael Neuling 	nowscaled = read_spurr(now);
303a19ff1a2SFrederic Weisbecker 	stime = now - acct->starttime;
304c223c903SChristophe Leroy 	acct->starttime = now;
305c223c903SChristophe Leroy 	deltascaled = nowscaled - acct->startspurr;
306c223c903SChristophe Leroy 	acct->startspurr = nowscaled;
307cf9efce0SPaul Mackerras 
308a19ff1a2SFrederic Weisbecker 	*steal_time = calculate_stolen_time(now);
309cf9efce0SPaul Mackerras 
310a19ff1a2SFrederic Weisbecker 	utime = acct->utime - acct->utime_sspurr;
3118c8b73c4SFrederic Weisbecker 	acct->utime_sspurr = acct->utime;
312cf9efce0SPaul Mackerras 
313cf9efce0SPaul Mackerras 	/*
314cf9efce0SPaul Mackerras 	 * Because we don't read the SPURR on every kernel entry/exit,
315cf9efce0SPaul Mackerras 	 * deltascaled includes both user and system SPURR ticks.
316cf9efce0SPaul Mackerras 	 * Apportion these ticks to system SPURR ticks and user
317cf9efce0SPaul Mackerras 	 * SPURR ticks in the same ratio as the system time (delta)
318cf9efce0SPaul Mackerras 	 * and user time (udelta) values obtained from the timebase
319cf9efce0SPaul Mackerras 	 * over the same interval.  The system ticks get accounted here;
320cf9efce0SPaul Mackerras 	 * the user ticks get saved up in paca->user_time_scaled to be
321cf9efce0SPaul Mackerras 	 * used by account_process_tick.
322cf9efce0SPaul Mackerras 	 */
323a19ff1a2SFrederic Weisbecker 	*stime_scaled = stime;
324a19ff1a2SFrederic Weisbecker 	utime_scaled = utime;
325a19ff1a2SFrederic Weisbecker 	if (deltascaled != stime + utime) {
326a19ff1a2SFrederic Weisbecker 		if (utime) {
327a19ff1a2SFrederic Weisbecker 			*stime_scaled = deltascaled * stime / (stime + utime);
328a19ff1a2SFrederic Weisbecker 			utime_scaled = deltascaled - *stime_scaled;
329cf9efce0SPaul Mackerras 		} else {
330a19ff1a2SFrederic Weisbecker 			*stime_scaled = deltascaled;
331c6622f63SPaul Mackerras 		}
332cf9efce0SPaul Mackerras 	}
333a19ff1a2SFrederic Weisbecker 	acct->utime_scaled += utime_scaled;
334cf9efce0SPaul Mackerras 
335a19ff1a2SFrederic Weisbecker 	return stime;
336a7e1a9e3SFrederic Weisbecker }
337a7e1a9e3SFrederic Weisbecker 
338fd25b4c2SFrederic Weisbecker void vtime_account_system(struct task_struct *tsk)
339a7e1a9e3SFrederic Weisbecker {
340a19ff1a2SFrederic Weisbecker 	unsigned long stime, stime_scaled, steal_time;
341a19ff1a2SFrederic Weisbecker 	struct cpu_accounting_data *acct = get_accounting(tsk);
342a7e1a9e3SFrederic Weisbecker 
343a19ff1a2SFrederic Weisbecker 	stime = vtime_delta(tsk, &stime_scaled, &steal_time);
344a19ff1a2SFrederic Weisbecker 
345a19ff1a2SFrederic Weisbecker 	stime -= min(stime, steal_time);
346a19ff1a2SFrederic Weisbecker 	acct->steal_time += steal_time;
347a19ff1a2SFrederic Weisbecker 
348a19ff1a2SFrederic Weisbecker 	if ((tsk->flags & PF_VCPU) && !irq_count()) {
349a19ff1a2SFrederic Weisbecker 		acct->gtime += stime;
350a19ff1a2SFrederic Weisbecker 		acct->utime_scaled += stime_scaled;
351a19ff1a2SFrederic Weisbecker 	} else {
352a19ff1a2SFrederic Weisbecker 		if (hardirq_count())
353a19ff1a2SFrederic Weisbecker 			acct->hardirq_time += stime;
354a19ff1a2SFrederic Weisbecker 		else if (in_serving_softirq())
355a19ff1a2SFrederic Weisbecker 			acct->softirq_time += stime;
356a19ff1a2SFrederic Weisbecker 		else
357a19ff1a2SFrederic Weisbecker 			acct->stime += stime;
358a19ff1a2SFrederic Weisbecker 
359a19ff1a2SFrederic Weisbecker 		acct->stime_scaled += stime_scaled;
360a19ff1a2SFrederic Weisbecker 	}
361a7e1a9e3SFrederic Weisbecker }
362c11f11fcSFrederic Weisbecker EXPORT_SYMBOL_GPL(vtime_account_system);
363a7e1a9e3SFrederic Weisbecker 
364fd25b4c2SFrederic Weisbecker void vtime_account_idle(struct task_struct *tsk)
365a7e1a9e3SFrederic Weisbecker {
366a19ff1a2SFrederic Weisbecker 	unsigned long stime, stime_scaled, steal_time;
367a19ff1a2SFrederic Weisbecker 	struct cpu_accounting_data *acct = get_accounting(tsk);
368a7e1a9e3SFrederic Weisbecker 
369a19ff1a2SFrederic Weisbecker 	stime = vtime_delta(tsk, &stime_scaled, &steal_time);
370a19ff1a2SFrederic Weisbecker 	acct->idle_time += stime + steal_time;
371cf9efce0SPaul Mackerras }
372c6622f63SPaul Mackerras 
373c6622f63SPaul Mackerras /*
374c8d7dabfSFrederic Weisbecker  * Account the whole cputime accumulated in the paca
375c6622f63SPaul Mackerras  * Must be called with interrupts disabled.
376bcebdf84SFrederic Weisbecker  * Assumes that vtime_account_system/idle() has been called
377bcebdf84SFrederic Weisbecker  * recently (i.e. since the last entry from usermode) so that
378cf9efce0SPaul Mackerras  * get_paca()->user_time_scaled is up to date.
379c6622f63SPaul Mackerras  */
380c8d7dabfSFrederic Weisbecker void vtime_flush(struct task_struct *tsk)
381c6622f63SPaul Mackerras {
382c223c903SChristophe Leroy 	struct cpu_accounting_data *acct = get_accounting(tsk);
383c6622f63SPaul Mackerras 
384a19ff1a2SFrederic Weisbecker 	if (acct->utime)
38523244a5cSFrederic Weisbecker 		account_user_time(tsk, cputime_to_nsecs(acct->utime));
386a19ff1a2SFrederic Weisbecker 
387a19ff1a2SFrederic Weisbecker 	if (acct->utime_scaled)
3885613fda9SFrederic Weisbecker 		tsk->utimescaled += cputime_to_nsecs(acct->utime_scaled);
389a19ff1a2SFrederic Weisbecker 
390a19ff1a2SFrederic Weisbecker 	if (acct->gtime)
391fb8b049cSFrederic Weisbecker 		account_guest_time(tsk, cputime_to_nsecs(acct->gtime));
392a19ff1a2SFrederic Weisbecker 
393a19ff1a2SFrederic Weisbecker 	if (acct->steal_time)
394be9095edSFrederic Weisbecker 		account_steal_time(cputime_to_nsecs(acct->steal_time));
395a19ff1a2SFrederic Weisbecker 
396a19ff1a2SFrederic Weisbecker 	if (acct->idle_time)
39718b43a9bSFrederic Weisbecker 		account_idle_time(cputime_to_nsecs(acct->idle_time));
398a19ff1a2SFrederic Weisbecker 
399a19ff1a2SFrederic Weisbecker 	if (acct->stime)
400fb8b049cSFrederic Weisbecker 		account_system_index_time(tsk, cputime_to_nsecs(acct->stime),
401fb8b049cSFrederic Weisbecker 					  CPUTIME_SYSTEM);
402a19ff1a2SFrederic Weisbecker 	if (acct->stime_scaled)
4035613fda9SFrederic Weisbecker 		tsk->stimescaled += cputime_to_nsecs(acct->stime_scaled);
404a19ff1a2SFrederic Weisbecker 
405a19ff1a2SFrederic Weisbecker 	if (acct->hardirq_time)
406fb8b049cSFrederic Weisbecker 		account_system_index_time(tsk, cputime_to_nsecs(acct->hardirq_time),
407fb8b049cSFrederic Weisbecker 					  CPUTIME_IRQ);
408a19ff1a2SFrederic Weisbecker 	if (acct->softirq_time)
409fb8b049cSFrederic Weisbecker 		account_system_index_time(tsk, cputime_to_nsecs(acct->softirq_time),
410fb8b049cSFrederic Weisbecker 					  CPUTIME_SOFTIRQ);
411a19ff1a2SFrederic Weisbecker 
4128c8b73c4SFrederic Weisbecker 	acct->utime = 0;
4138c8b73c4SFrederic Weisbecker 	acct->utime_scaled = 0;
414c223c903SChristophe Leroy 	acct->utime_sspurr = 0;
415a19ff1a2SFrederic Weisbecker 	acct->gtime = 0;
416a19ff1a2SFrederic Weisbecker 	acct->steal_time = 0;
417a19ff1a2SFrederic Weisbecker 	acct->idle_time = 0;
418a19ff1a2SFrederic Weisbecker 	acct->stime = 0;
419a19ff1a2SFrederic Weisbecker 	acct->stime_scaled = 0;
420a19ff1a2SFrederic Weisbecker 	acct->hardirq_time = 0;
421a19ff1a2SFrederic Weisbecker 	acct->softirq_time = 0;
422c6622f63SPaul Mackerras }
423c6622f63SPaul Mackerras 
424c223c903SChristophe Leroy #ifdef CONFIG_PPC32
425c223c903SChristophe Leroy /*
426c223c903SChristophe Leroy  * Called from the context switch with interrupts disabled, to charge all
427c223c903SChristophe Leroy  * accumulated times to the current process, and to prepare accounting on
428c223c903SChristophe Leroy  * the next process.
429c223c903SChristophe Leroy  */
430c223c903SChristophe Leroy void arch_vtime_task_switch(struct task_struct *prev)
431c223c903SChristophe Leroy {
432c223c903SChristophe Leroy 	struct cpu_accounting_data *acct = get_accounting(current);
433c223c903SChristophe Leroy 
434c223c903SChristophe Leroy 	acct->starttime = get_accounting(prev)->starttime;
43590d08ba2SFrederic Weisbecker 	acct->startspurr = get_accounting(prev)->startspurr;
436c223c903SChristophe Leroy }
437c223c903SChristophe Leroy #endif /* CONFIG_PPC32 */
438c223c903SChristophe Leroy 
439abf917cdSFrederic Weisbecker #else /* ! CONFIG_VIRT_CPU_ACCOUNTING_NATIVE */
440c6622f63SPaul Mackerras #define calc_cputime_factors()
441c6622f63SPaul Mackerras #endif
442c6622f63SPaul Mackerras 
4436defa38bSPaul Mackerras void __delay(unsigned long loops)
4446defa38bSPaul Mackerras {
4456defa38bSPaul Mackerras 	unsigned long start;
4466defa38bSPaul Mackerras 	int diff;
4476defa38bSPaul Mackerras 
4484e287e65SNicholas Piggin 	spin_begin();
4496defa38bSPaul Mackerras 	if (__USE_RTC()) {
4506defa38bSPaul Mackerras 		start = get_rtcl();
4516defa38bSPaul Mackerras 		do {
4526defa38bSPaul Mackerras 			/* the RTCL register wraps at 1000000000 */
4536defa38bSPaul Mackerras 			diff = get_rtcl() - start;
4546defa38bSPaul Mackerras 			if (diff < 0)
4556defa38bSPaul Mackerras 				diff += 1000000000;
4564e287e65SNicholas Piggin 			spin_cpu_relax();
4576defa38bSPaul Mackerras 		} while (diff < loops);
4586defa38bSPaul Mackerras 	} else {
4596defa38bSPaul Mackerras 		start = get_tbl();
4606defa38bSPaul Mackerras 		while (get_tbl() - start < loops)
4614e287e65SNicholas Piggin 			spin_cpu_relax();
4626defa38bSPaul Mackerras 	}
4634e287e65SNicholas Piggin 	spin_end();
4646defa38bSPaul Mackerras }
4656defa38bSPaul Mackerras EXPORT_SYMBOL(__delay);
4666defa38bSPaul Mackerras 
4676defa38bSPaul Mackerras void udelay(unsigned long usecs)
4686defa38bSPaul Mackerras {
4696defa38bSPaul Mackerras 	__delay(tb_ticks_per_usec * usecs);
4706defa38bSPaul Mackerras }
4716defa38bSPaul Mackerras EXPORT_SYMBOL(udelay);
4726defa38bSPaul Mackerras 
473f2783c15SPaul Mackerras #ifdef CONFIG_SMP
474f2783c15SPaul Mackerras unsigned long profile_pc(struct pt_regs *regs)
475f2783c15SPaul Mackerras {
476f2783c15SPaul Mackerras 	unsigned long pc = instruction_pointer(regs);
477f2783c15SPaul Mackerras 
478f2783c15SPaul Mackerras 	if (in_lock_functions(pc))
479f2783c15SPaul Mackerras 		return regs->link;
480f2783c15SPaul Mackerras 
481f2783c15SPaul Mackerras 	return pc;
482f2783c15SPaul Mackerras }
483f2783c15SPaul Mackerras EXPORT_SYMBOL(profile_pc);
484f2783c15SPaul Mackerras #endif
485f2783c15SPaul Mackerras 
486e360adbeSPeter Zijlstra #ifdef CONFIG_IRQ_WORK
487105988c0SPaul Mackerras 
4880fe1ac48SPaul Mackerras /*
4890fe1ac48SPaul Mackerras  * 64-bit uses a byte in the PACA, 32-bit uses a per-cpu variable...
4900fe1ac48SPaul Mackerras  */
4910fe1ac48SPaul Mackerras #ifdef CONFIG_PPC64
492e360adbeSPeter Zijlstra static inline unsigned long test_irq_work_pending(void)
493105988c0SPaul Mackerras {
4940fe1ac48SPaul Mackerras 	unsigned long x;
4950fe1ac48SPaul Mackerras 
4960fe1ac48SPaul Mackerras 	asm volatile("lbz %0,%1(13)"
4970fe1ac48SPaul Mackerras 		: "=r" (x)
498e360adbeSPeter Zijlstra 		: "i" (offsetof(struct paca_struct, irq_work_pending)));
4990fe1ac48SPaul Mackerras 	return x;
500105988c0SPaul Mackerras }
501105988c0SPaul Mackerras 
502e360adbeSPeter Zijlstra static inline void set_irq_work_pending_flag(void)
5030fe1ac48SPaul Mackerras {
5040fe1ac48SPaul Mackerras 	asm volatile("stb %0,%1(13)" : :
5050fe1ac48SPaul Mackerras 		"r" (1),
506e360adbeSPeter Zijlstra 		"i" (offsetof(struct paca_struct, irq_work_pending)));
5070fe1ac48SPaul Mackerras }
5080fe1ac48SPaul Mackerras 
509e360adbeSPeter Zijlstra static inline void clear_irq_work_pending(void)
5100fe1ac48SPaul Mackerras {
5110fe1ac48SPaul Mackerras 	asm volatile("stb %0,%1(13)" : :
5120fe1ac48SPaul Mackerras 		"r" (0),
513e360adbeSPeter Zijlstra 		"i" (offsetof(struct paca_struct, irq_work_pending)));
5140fe1ac48SPaul Mackerras }
5150fe1ac48SPaul Mackerras 
516ebb37cf3SNicholas Piggin void arch_irq_work_raise(void)
517ebb37cf3SNicholas Piggin {
518ebb37cf3SNicholas Piggin 	preempt_disable();
519ebb37cf3SNicholas Piggin 	set_irq_work_pending_flag();
520ebb37cf3SNicholas Piggin 	/*
521ebb37cf3SNicholas Piggin 	 * Non-nmi code running with interrupts disabled will replay
522ebb37cf3SNicholas Piggin 	 * irq_happened before it re-enables interrupts, so setthe
523ebb37cf3SNicholas Piggin 	 * decrementer there instead of causing a hardware exception
524ebb37cf3SNicholas Piggin 	 * which would immediately hit the masked interrupt handler
525ebb37cf3SNicholas Piggin 	 * and have the net effect of setting the decrementer in
526ebb37cf3SNicholas Piggin 	 * irq_happened.
527ebb37cf3SNicholas Piggin 	 *
528ebb37cf3SNicholas Piggin 	 * NMI interrupts can not check this when they return, so the
529ebb37cf3SNicholas Piggin 	 * decrementer hardware exception is raised, which will fire
530ebb37cf3SNicholas Piggin 	 * when interrupts are next enabled.
531ebb37cf3SNicholas Piggin 	 *
532ebb37cf3SNicholas Piggin 	 * BookE does not support this yet, it must audit all NMI
533ebb37cf3SNicholas Piggin 	 * interrupt handlers to ensure they call nmi_enter() so this
534ebb37cf3SNicholas Piggin 	 * check would be correct.
535ebb37cf3SNicholas Piggin 	 */
536ebb37cf3SNicholas Piggin 	if (IS_ENABLED(CONFIG_BOOKE) || !irqs_disabled() || in_nmi()) {
537ebb37cf3SNicholas Piggin 		set_dec(1);
538ebb37cf3SNicholas Piggin 	} else {
539ebb37cf3SNicholas Piggin 		hard_irq_disable();
540ebb37cf3SNicholas Piggin 		local_paca->irq_happened |= PACA_IRQ_DEC;
541ebb37cf3SNicholas Piggin 	}
542ebb37cf3SNicholas Piggin 	preempt_enable();
543ebb37cf3SNicholas Piggin }
544ebb37cf3SNicholas Piggin 
5450fe1ac48SPaul Mackerras #else /* 32-bit */
5460fe1ac48SPaul Mackerras 
547e360adbeSPeter Zijlstra DEFINE_PER_CPU(u8, irq_work_pending);
5480fe1ac48SPaul Mackerras 
54969111bacSChristoph Lameter #define set_irq_work_pending_flag()	__this_cpu_write(irq_work_pending, 1)
55069111bacSChristoph Lameter #define test_irq_work_pending()		__this_cpu_read(irq_work_pending)
55169111bacSChristoph Lameter #define clear_irq_work_pending()	__this_cpu_write(irq_work_pending, 0)
552105988c0SPaul Mackerras 
5534f8b50bbSPeter Zijlstra void arch_irq_work_raise(void)
5540fe1ac48SPaul Mackerras {
5550fe1ac48SPaul Mackerras 	preempt_disable();
556e360adbeSPeter Zijlstra 	set_irq_work_pending_flag();
5570fe1ac48SPaul Mackerras 	set_dec(1);
5580fe1ac48SPaul Mackerras 	preempt_enable();
5590fe1ac48SPaul Mackerras }
5600fe1ac48SPaul Mackerras 
561ebb37cf3SNicholas Piggin #endif /* 32 vs 64 bit */
562ebb37cf3SNicholas Piggin 
563e360adbeSPeter Zijlstra #else  /* CONFIG_IRQ_WORK */
564105988c0SPaul Mackerras 
565e360adbeSPeter Zijlstra #define test_irq_work_pending()	0
566e360adbeSPeter Zijlstra #define clear_irq_work_pending()
567105988c0SPaul Mackerras 
568e360adbeSPeter Zijlstra #endif /* CONFIG_IRQ_WORK */
569105988c0SPaul Mackerras 
5701b783955SPreeti U Murthy /*
5711b783955SPreeti U Murthy  * timer_interrupt - gets called when the decrementer overflows,
5721b783955SPreeti U Murthy  * with interrupts disabled.
5731b783955SPreeti U Murthy  */
5741b783955SPreeti U Murthy void timer_interrupt(struct pt_regs *regs)
5751b783955SPreeti U Murthy {
576*3f984620SNicholas Piggin 	struct clock_event_device *evt = this_cpu_ptr(&decrementers);
57769111bacSChristoph Lameter 	u64 *next_tb = this_cpu_ptr(&decrementers_next_tb);
578*3f984620SNicholas Piggin 	struct pt_regs *old_regs;
579*3f984620SNicholas Piggin 	u64 now;
5801b783955SPreeti U Murthy 
5811b783955SPreeti U Murthy 	/* Ensure a positive value is written to the decrementer, or else
5821b783955SPreeti U Murthy 	 * some CPUs will continue to take decrementer exceptions.
5831b783955SPreeti U Murthy 	 */
58479901024SOliver O'Halloran 	set_dec(decrementer_max);
5851b783955SPreeti U Murthy 
5861b783955SPreeti U Murthy 	/* Some implementations of hotplug will get timer interrupts while
5871b783955SPreeti U Murthy 	 * offline, just ignore these and we also need to set
5881b783955SPreeti U Murthy 	 * decrementers_next_tb as MAX to make sure __check_irq_replay
5891b783955SPreeti U Murthy 	 * don't replay timer interrupt when return, otherwise we'll trap
5901b783955SPreeti U Murthy 	 * here infinitely :(
5911b783955SPreeti U Murthy 	 */
5921b783955SPreeti U Murthy 	if (!cpu_online(smp_processor_id())) {
5931b783955SPreeti U Murthy 		*next_tb = ~(u64)0;
5941b783955SPreeti U Murthy 		return;
5951b783955SPreeti U Murthy 	}
5961b783955SPreeti U Murthy 
5971b783955SPreeti U Murthy 	/* Conditionally hard-enable interrupts now that the DEC has been
5981b783955SPreeti U Murthy 	 * bumped to its maximum value
5991b783955SPreeti U Murthy 	 */
6001b783955SPreeti U Murthy 	may_hard_irq_enable();
6011b783955SPreeti U Murthy 
6021b783955SPreeti U Murthy 
6036e0fdf9aSPaul Bolle #if defined(CONFIG_PPC32) && defined(CONFIG_PPC_PMAC)
6041b783955SPreeti U Murthy 	if (atomic_read(&ppc_n_lost_interrupts) != 0)
6051b783955SPreeti U Murthy 		do_IRQ(regs);
6061b783955SPreeti U Murthy #endif
6071b783955SPreeti U Murthy 
6081b783955SPreeti U Murthy 	old_regs = set_irq_regs(regs);
6091b783955SPreeti U Murthy 	irq_enter();
610*3f984620SNicholas Piggin 	trace_timer_interrupt_entry(regs);
6111b783955SPreeti U Murthy 
612*3f984620SNicholas Piggin 	if (test_irq_work_pending()) {
613*3f984620SNicholas Piggin 		clear_irq_work_pending();
614*3f984620SNicholas Piggin 		irq_work_run();
615*3f984620SNicholas Piggin 	}
616*3f984620SNicholas Piggin 
617*3f984620SNicholas Piggin 	now = get_tb_or_rtc();
618*3f984620SNicholas Piggin 	if (now >= *next_tb) {
619*3f984620SNicholas Piggin 		*next_tb = ~(u64)0;
620*3f984620SNicholas Piggin 		if (evt->event_handler)
621*3f984620SNicholas Piggin 			evt->event_handler(evt);
622*3f984620SNicholas Piggin 		__this_cpu_inc(irq_stat.timer_irqs_event);
623*3f984620SNicholas Piggin 	} else {
624*3f984620SNicholas Piggin 		now = *next_tb - now;
625*3f984620SNicholas Piggin 		if (now <= decrementer_max)
626*3f984620SNicholas Piggin 			set_dec(now);
627*3f984620SNicholas Piggin 		/* We may have raced with new irq work */
628*3f984620SNicholas Piggin 		if (test_irq_work_pending())
629*3f984620SNicholas Piggin 			set_dec(1);
630*3f984620SNicholas Piggin 		__this_cpu_inc(irq_stat.timer_irqs_others);
631*3f984620SNicholas Piggin 	}
632*3f984620SNicholas Piggin 
633*3f984620SNicholas Piggin 	trace_timer_interrupt_exit(regs);
634f2783c15SPaul Mackerras 	irq_exit();
6357d12e780SDavid Howells 	set_irq_regs(old_regs);
636f2783c15SPaul Mackerras }
6379445aa1aSAl Viro EXPORT_SYMBOL(timer_interrupt);
638f2783c15SPaul Mackerras 
639*3f984620SNicholas Piggin void timer_broadcast_interrupt(void)
640*3f984620SNicholas Piggin {
641*3f984620SNicholas Piggin 	u64 *next_tb = this_cpu_ptr(&decrementers_next_tb);
642*3f984620SNicholas Piggin 	struct pt_regs *regs = get_irq_regs();
643*3f984620SNicholas Piggin 
644*3f984620SNicholas Piggin 	trace_timer_interrupt_entry(regs);
645*3f984620SNicholas Piggin 	*next_tb = ~(u64)0;
646*3f984620SNicholas Piggin 	tick_receive_broadcast();
647*3f984620SNicholas Piggin 	__this_cpu_inc(irq_stat.timer_irqs_event);
648*3f984620SNicholas Piggin 	trace_timer_interrupt_exit(regs);
649*3f984620SNicholas Piggin }
650*3f984620SNicholas Piggin 
651dabe859eSPaul Mackerras /*
652dabe859eSPaul Mackerras  * Hypervisor decrementer interrupts shouldn't occur but are sometimes
653dabe859eSPaul Mackerras  * left pending on exit from a KVM guest.  We don't need to do anything
654dabe859eSPaul Mackerras  * to clear them, as they are edge-triggered.
655dabe859eSPaul Mackerras  */
656dabe859eSPaul Mackerras void hdec_interrupt(struct pt_regs *regs)
657dabe859eSPaul Mackerras {
658dabe859eSPaul Mackerras }
659dabe859eSPaul Mackerras 
6607ac5dde9SScott Wood #ifdef CONFIG_SUSPEND
661d75d68cfSPaul Mackerras static void generic_suspend_disable_irqs(void)
6627ac5dde9SScott Wood {
6637ac5dde9SScott Wood 	/* Disable the decrementer, so that it doesn't interfere
6647ac5dde9SScott Wood 	 * with suspending.
6657ac5dde9SScott Wood 	 */
6667ac5dde9SScott Wood 
66779901024SOliver O'Halloran 	set_dec(decrementer_max);
6687ac5dde9SScott Wood 	local_irq_disable();
66979901024SOliver O'Halloran 	set_dec(decrementer_max);
6707ac5dde9SScott Wood }
6717ac5dde9SScott Wood 
672d75d68cfSPaul Mackerras static void generic_suspend_enable_irqs(void)
6737ac5dde9SScott Wood {
6747ac5dde9SScott Wood 	local_irq_enable();
6757ac5dde9SScott Wood }
6767ac5dde9SScott Wood 
6777ac5dde9SScott Wood /* Overrides the weak version in kernel/power/main.c */
6787ac5dde9SScott Wood void arch_suspend_disable_irqs(void)
6797ac5dde9SScott Wood {
6807ac5dde9SScott Wood 	if (ppc_md.suspend_disable_irqs)
6817ac5dde9SScott Wood 		ppc_md.suspend_disable_irqs();
6827ac5dde9SScott Wood 	generic_suspend_disable_irqs();
6837ac5dde9SScott Wood }
6847ac5dde9SScott Wood 
6857ac5dde9SScott Wood /* Overrides the weak version in kernel/power/main.c */
6867ac5dde9SScott Wood void arch_suspend_enable_irqs(void)
6877ac5dde9SScott Wood {
6887ac5dde9SScott Wood 	generic_suspend_enable_irqs();
6897ac5dde9SScott Wood 	if (ppc_md.suspend_enable_irqs)
6907ac5dde9SScott Wood 		ppc_md.suspend_enable_irqs();
6917ac5dde9SScott Wood }
6927ac5dde9SScott Wood #endif
6937ac5dde9SScott Wood 
694b6c295dfSPaul Mackerras unsigned long long tb_to_ns(unsigned long long ticks)
695b6c295dfSPaul Mackerras {
696b6c295dfSPaul Mackerras 	return mulhdu(ticks, tb_to_ns_scale) << tb_to_ns_shift;
697b6c295dfSPaul Mackerras }
698b6c295dfSPaul Mackerras EXPORT_SYMBOL_GPL(tb_to_ns);
699b6c295dfSPaul Mackerras 
700f2783c15SPaul Mackerras /*
701f2783c15SPaul Mackerras  * Scheduler clock - returns current time in nanosec units.
702f2783c15SPaul Mackerras  *
703f2783c15SPaul Mackerras  * Note: mulhdu(a, b) (multiply high double unsigned) returns
704f2783c15SPaul Mackerras  * the high 64 bits of a * b, i.e. (a * b) >> 64, where a and b
705f2783c15SPaul Mackerras  * are 64-bit unsigned numbers.
706f2783c15SPaul Mackerras  */
7076b847d79SSantosh Sivaraj notrace unsigned long long sched_clock(void)
708f2783c15SPaul Mackerras {
70996c44507SPaul Mackerras 	if (__USE_RTC())
71096c44507SPaul Mackerras 		return get_rtc();
711fc9069feSTony Breeds 	return mulhdu(get_tb() - boot_tb, tb_to_ns_scale) << tb_to_ns_shift;
712f2783c15SPaul Mackerras }
713f2783c15SPaul Mackerras 
7144be1b297SCyril Bur 
7154be1b297SCyril Bur #ifdef CONFIG_PPC_PSERIES
7164be1b297SCyril Bur 
7174be1b297SCyril Bur /*
7184be1b297SCyril Bur  * Running clock - attempts to give a view of time passing for a virtualised
7194be1b297SCyril Bur  * kernels.
7204be1b297SCyril Bur  * Uses the VTB register if available otherwise a next best guess.
7214be1b297SCyril Bur  */
7224be1b297SCyril Bur unsigned long long running_clock(void)
7234be1b297SCyril Bur {
7244be1b297SCyril Bur 	/*
7254be1b297SCyril Bur 	 * Don't read the VTB as a host since KVM does not switch in host
7264be1b297SCyril Bur 	 * timebase into the VTB when it takes a guest off the CPU, reading the
7274be1b297SCyril Bur 	 * VTB would result in reading 'last switched out' guest VTB.
7284be1b297SCyril Bur 	 *
7294be1b297SCyril Bur 	 * Host kernels are often compiled with CONFIG_PPC_PSERIES checked, it
7304be1b297SCyril Bur 	 * would be unsafe to rely only on the #ifdef above.
7314be1b297SCyril Bur 	 */
7324be1b297SCyril Bur 	if (firmware_has_feature(FW_FEATURE_LPAR) &&
7334be1b297SCyril Bur 	    cpu_has_feature(CPU_FTR_ARCH_207S))
7344be1b297SCyril Bur 		return mulhdu(get_vtb() - boot_tb, tb_to_ns_scale) << tb_to_ns_shift;
7354be1b297SCyril Bur 
7364be1b297SCyril Bur 	/*
7374be1b297SCyril Bur 	 * This is a next best approximation without a VTB.
7384be1b297SCyril Bur 	 * On a host which is running bare metal there should never be any stolen
7394be1b297SCyril Bur 	 * time and on a host which doesn't do any virtualisation TB *should* equal
7404be1b297SCyril Bur 	 * VTB so it makes no difference anyway.
7414be1b297SCyril Bur 	 */
7429f3768e0SFrédéric Weisbecker 	return local_clock() - kcpustat_this_cpu->cpustat[CPUTIME_STEAL];
7434be1b297SCyril Bur }
7444be1b297SCyril Bur #endif
7454be1b297SCyril Bur 
7460bb474a4SAnton Blanchard static int __init get_freq(char *name, int cells, unsigned long *val)
747f2783c15SPaul Mackerras {
748f2783c15SPaul Mackerras 	struct device_node *cpu;
7496f7aba7bSAnton Blanchard 	const __be32 *fp;
7500bb474a4SAnton Blanchard 	int found = 0;
751f2783c15SPaul Mackerras 
7520bb474a4SAnton Blanchard 	/* The cpu node should have timebase and clock frequency properties */
753f2783c15SPaul Mackerras 	cpu = of_find_node_by_type(NULL, "cpu");
754f2783c15SPaul Mackerras 
755d8a8188dSOlaf Hering 	if (cpu) {
756e2eb6392SStephen Rothwell 		fp = of_get_property(cpu, name, NULL);
757d8a8188dSOlaf Hering 		if (fp) {
7580bb474a4SAnton Blanchard 			found = 1;
759a4dc7ff0SPaul Mackerras 			*val = of_read_ulong(fp, cells);
760f2783c15SPaul Mackerras 		}
7610bb474a4SAnton Blanchard 
7620bb474a4SAnton Blanchard 		of_node_put(cpu);
763f2783c15SPaul Mackerras 	}
7640bb474a4SAnton Blanchard 
7650bb474a4SAnton Blanchard 	return found;
7660bb474a4SAnton Blanchard }
7670bb474a4SAnton Blanchard 
768e51df2c1SAnton Blanchard static void start_cpu_decrementer(void)
76977c0a700SBenjamin Herrenschmidt {
77077c0a700SBenjamin Herrenschmidt #if defined(CONFIG_BOOKE) || defined(CONFIG_40x)
7716e2f03e2SIvan Mikhaylov 	unsigned int tcr;
7726e2f03e2SIvan Mikhaylov 
77377c0a700SBenjamin Herrenschmidt 	/* Clear any pending timer interrupts */
77477c0a700SBenjamin Herrenschmidt 	mtspr(SPRN_TSR, TSR_ENW | TSR_WIS | TSR_DIS | TSR_FIS);
77577c0a700SBenjamin Herrenschmidt 
7766e2f03e2SIvan Mikhaylov 	tcr = mfspr(SPRN_TCR);
7776e2f03e2SIvan Mikhaylov 	/*
7786e2f03e2SIvan Mikhaylov 	 * The watchdog may have already been enabled by u-boot. So leave
7796e2f03e2SIvan Mikhaylov 	 * TRC[WP] (Watchdog Period) alone.
7806e2f03e2SIvan Mikhaylov 	 */
7816e2f03e2SIvan Mikhaylov 	tcr &= TCR_WP_MASK;	/* Clear all bits except for TCR[WP] */
7826e2f03e2SIvan Mikhaylov 	tcr |= TCR_DIE;		/* Enable decrementer */
7836e2f03e2SIvan Mikhaylov 	mtspr(SPRN_TCR, tcr);
7846e2f03e2SIvan Mikhaylov #endif
78577c0a700SBenjamin Herrenschmidt }
78677c0a700SBenjamin Herrenschmidt 
7870bb474a4SAnton Blanchard void __init generic_calibrate_decr(void)
7880bb474a4SAnton Blanchard {
7890bb474a4SAnton Blanchard 	ppc_tb_freq = DEFAULT_TB_FREQ;		/* hardcoded default */
7900bb474a4SAnton Blanchard 
7910bb474a4SAnton Blanchard 	if (!get_freq("ibm,extended-timebase-frequency", 2, &ppc_tb_freq) &&
7920bb474a4SAnton Blanchard 	    !get_freq("timebase-frequency", 1, &ppc_tb_freq)) {
7930bb474a4SAnton Blanchard 
794f2783c15SPaul Mackerras 		printk(KERN_ERR "WARNING: Estimating decrementer frequency "
795f2783c15SPaul Mackerras 				"(not found)\n");
7960bb474a4SAnton Blanchard 	}
797f2783c15SPaul Mackerras 
7980bb474a4SAnton Blanchard 	ppc_proc_freq = DEFAULT_PROC_FREQ;	/* hardcoded default */
7990bb474a4SAnton Blanchard 
8000bb474a4SAnton Blanchard 	if (!get_freq("ibm,extended-clock-frequency", 2, &ppc_proc_freq) &&
8010bb474a4SAnton Blanchard 	    !get_freq("clock-frequency", 1, &ppc_proc_freq)) {
8020bb474a4SAnton Blanchard 
8030bb474a4SAnton Blanchard 		printk(KERN_ERR "WARNING: Estimating processor frequency "
8040bb474a4SAnton Blanchard 				"(not found)\n");
805f2783c15SPaul Mackerras 	}
806f2783c15SPaul Mackerras }
807f2783c15SPaul Mackerras 
808aa3be5f3STony Breeds int update_persistent_clock(struct timespec now)
809f2783c15SPaul Mackerras {
810f2783c15SPaul Mackerras 	struct rtc_time tm;
811f2783c15SPaul Mackerras 
812aa3be5f3STony Breeds 	if (!ppc_md.set_rtc_time)
813023f333aSJason Gunthorpe 		return -ENODEV;
814aa3be5f3STony Breeds 
815aa3be5f3STony Breeds 	to_tm(now.tv_sec + 1 + timezone_offset, &tm);
816aa3be5f3STony Breeds 	tm.tm_year -= 1900;
817aa3be5f3STony Breeds 	tm.tm_mon -= 1;
818aa3be5f3STony Breeds 
819aa3be5f3STony Breeds 	return ppc_md.set_rtc_time(&tm);
820aa3be5f3STony Breeds }
821aa3be5f3STony Breeds 
822978d7eb3SBenjamin Herrenschmidt static void __read_persistent_clock(struct timespec *ts)
823aa3be5f3STony Breeds {
824aa3be5f3STony Breeds 	struct rtc_time tm;
825aa3be5f3STony Breeds 	static int first = 1;
826aa3be5f3STony Breeds 
827d90246cdSMartin Schwidefsky 	ts->tv_nsec = 0;
828aa3be5f3STony Breeds 	/* XXX this is a litle fragile but will work okay in the short term */
829aa3be5f3STony Breeds 	if (first) {
830aa3be5f3STony Breeds 		first = 0;
831aa3be5f3STony Breeds 		if (ppc_md.time_init)
832aa3be5f3STony Breeds 			timezone_offset = ppc_md.time_init();
833aa3be5f3STony Breeds 
834aa3be5f3STony Breeds 		/* get_boot_time() isn't guaranteed to be safe to call late */
835d90246cdSMartin Schwidefsky 		if (ppc_md.get_boot_time) {
836d90246cdSMartin Schwidefsky 			ts->tv_sec = ppc_md.get_boot_time() - timezone_offset;
837d90246cdSMartin Schwidefsky 			return;
838aa3be5f3STony Breeds 		}
839d90246cdSMartin Schwidefsky 	}
840d90246cdSMartin Schwidefsky 	if (!ppc_md.get_rtc_time) {
841d90246cdSMartin Schwidefsky 		ts->tv_sec = 0;
842d90246cdSMartin Schwidefsky 		return;
843d90246cdSMartin Schwidefsky 	}
844f2783c15SPaul Mackerras 	ppc_md.get_rtc_time(&tm);
845978d7eb3SBenjamin Herrenschmidt 
846d4f587c6SMartin Schwidefsky 	ts->tv_sec = mktime(tm.tm_year+1900, tm.tm_mon+1, tm.tm_mday,
847f2783c15SPaul Mackerras 			    tm.tm_hour, tm.tm_min, tm.tm_sec);
848f2783c15SPaul Mackerras }
849f2783c15SPaul Mackerras 
850978d7eb3SBenjamin Herrenschmidt void read_persistent_clock(struct timespec *ts)
851978d7eb3SBenjamin Herrenschmidt {
852978d7eb3SBenjamin Herrenschmidt 	__read_persistent_clock(ts);
853978d7eb3SBenjamin Herrenschmidt 
854978d7eb3SBenjamin Herrenschmidt 	/* Sanitize it in case real time clock is set below EPOCH */
855978d7eb3SBenjamin Herrenschmidt 	if (ts->tv_sec < 0) {
856978d7eb3SBenjamin Herrenschmidt 		ts->tv_sec = 0;
857978d7eb3SBenjamin Herrenschmidt 		ts->tv_nsec = 0;
858978d7eb3SBenjamin Herrenschmidt 	}
859978d7eb3SBenjamin Herrenschmidt 
860978d7eb3SBenjamin Herrenschmidt }
861978d7eb3SBenjamin Herrenschmidt 
8624a4cfe38STony Breeds /* clocksource code */
8636b847d79SSantosh Sivaraj static notrace u64 rtc_read(struct clocksource *cs)
8644a4cfe38STony Breeds {
865a5a1d1c2SThomas Gleixner 	return (u64)get_rtc();
8664a4cfe38STony Breeds }
8674a4cfe38STony Breeds 
8686b847d79SSantosh Sivaraj static notrace u64 timebase_read(struct clocksource *cs)
8694a4cfe38STony Breeds {
870a5a1d1c2SThomas Gleixner 	return (u64)get_tb();
8714a4cfe38STony Breeds }
8724a4cfe38STony Breeds 
873d4cfb113SPaul Mackerras 
874d4cfb113SPaul Mackerras void update_vsyscall(struct timekeeper *tk)
8754a4cfe38STony Breeds {
876d4cfb113SPaul Mackerras 	struct timespec xt;
877d4cfb113SPaul Mackerras 	struct clocksource *clock = tk->tkr_mono.clock;
878d4cfb113SPaul Mackerras 	u32 mult = tk->tkr_mono.mult;
879d4cfb113SPaul Mackerras 	u32 shift = tk->tkr_mono.shift;
880d4cfb113SPaul Mackerras 	u64 cycle_last = tk->tkr_mono.cycle_last;
881b0797b60SJohn Stultz 	u64 new_tb_to_xs, new_stamp_xsec;
882d4cfb113SPaul Mackerras 	u64 frac_sec;
8834a4cfe38STony Breeds 
8844a4cfe38STony Breeds 	if (clock != &clocksource_timebase)
8854a4cfe38STony Breeds 		return;
8864a4cfe38STony Breeds 
887d4cfb113SPaul Mackerras 	xt.tv_sec = tk->xtime_sec;
888d4cfb113SPaul Mackerras 	xt.tv_nsec = (long)(tk->tkr_mono.xtime_nsec >> tk->tkr_mono.shift);
889d4cfb113SPaul Mackerras 
8904a4cfe38STony Breeds 	/* Make userspace gettimeofday spin until we're done. */
8914a4cfe38STony Breeds 	++vdso_data->tb_update_count;
8924a4cfe38STony Breeds 	smp_mb();
8934a4cfe38STony Breeds 
894d4cfb113SPaul Mackerras 	/*
895d4cfb113SPaul Mackerras 	 * This computes ((2^20 / 1e9) * mult) >> shift as a
896d4cfb113SPaul Mackerras 	 * 0.64 fixed-point fraction.
897d4cfb113SPaul Mackerras 	 * The computation in the else clause below won't overflow
898d4cfb113SPaul Mackerras 	 * (as long as the timebase frequency is >= 1.049 MHz)
899d4cfb113SPaul Mackerras 	 * but loses precision because we lose the low bits of the constant
900d4cfb113SPaul Mackerras 	 * in the shift.  Note that 19342813113834067 ~= 2^(20+64) / 1e9.
901d4cfb113SPaul Mackerras 	 * For a shift of 24 the error is about 0.5e-9, or about 0.5ns
902d4cfb113SPaul Mackerras 	 * over a second.  (Shift values are usually 22, 23 or 24.)
903d4cfb113SPaul Mackerras 	 * For high frequency clocks such as the 512MHz timebase clock
904d4cfb113SPaul Mackerras 	 * on POWER[6789], the mult value is small (e.g. 32768000)
905d4cfb113SPaul Mackerras 	 * and so we can shift the constant by 16 initially
906d4cfb113SPaul Mackerras 	 * (295147905179 ~= 2^(20+64-16) / 1e9) and then do the
907d4cfb113SPaul Mackerras 	 * remaining shifts after the multiplication, which gives a
908d4cfb113SPaul Mackerras 	 * more accurate result (e.g. with mult = 32768000, shift = 24,
909d4cfb113SPaul Mackerras 	 * the error is only about 1.2e-12, or 0.7ns over 10 minutes).
910d4cfb113SPaul Mackerras 	 */
911d4cfb113SPaul Mackerras 	if (mult <= 62500000 && clock->shift >= 16)
912d4cfb113SPaul Mackerras 		new_tb_to_xs = ((u64) mult * 295147905179ULL) >> (clock->shift - 16);
913d4cfb113SPaul Mackerras 	else
91411b8633aSAnton Blanchard 		new_tb_to_xs = (u64) mult * (19342813113834067ULL >> clock->shift);
915b0797b60SJohn Stultz 
916d4cfb113SPaul Mackerras 	/*
917d4cfb113SPaul Mackerras 	 * Compute the fractional second in units of 2^-32 seconds.
918d4cfb113SPaul Mackerras 	 * The fractional second is tk->tkr_mono.xtime_nsec >> tk->tkr_mono.shift
919d4cfb113SPaul Mackerras 	 * in nanoseconds, so multiplying that by 2^32 / 1e9 gives
920d4cfb113SPaul Mackerras 	 * it in units of 2^-32 seconds.
921d4cfb113SPaul Mackerras 	 * We assume shift <= 32 because clocks_calc_mult_shift()
922d4cfb113SPaul Mackerras 	 * generates shift values in the range 0 - 32.
923d4cfb113SPaul Mackerras 	 */
924d4cfb113SPaul Mackerras 	frac_sec = tk->tkr_mono.xtime_nsec << (32 - shift);
925d4cfb113SPaul Mackerras 	do_div(frac_sec, NSEC_PER_SEC);
926d4cfb113SPaul Mackerras 
927d4cfb113SPaul Mackerras 	/*
928d4cfb113SPaul Mackerras 	 * Work out new stamp_xsec value for any legacy users of systemcfg.
929d4cfb113SPaul Mackerras 	 * stamp_xsec is in units of 2^-20 seconds.
930d4cfb113SPaul Mackerras 	 */
931d4cfb113SPaul Mackerras 	new_stamp_xsec = frac_sec >> 12;
932d4cfb113SPaul Mackerras 	new_stamp_xsec += tk->xtime_sec * XSEC_PER_SEC;
93347916be4SThomas Gleixner 
934b0797b60SJohn Stultz 	/*
935b0797b60SJohn Stultz 	 * tb_update_count is used to allow the userspace gettimeofday code
936b0797b60SJohn Stultz 	 * to assure itself that it sees a consistent view of the tb_to_xs and
937b0797b60SJohn Stultz 	 * stamp_xsec variables.  It reads the tb_update_count, then reads
938b0797b60SJohn Stultz 	 * tb_to_xs and stamp_xsec and then reads tb_update_count again.  If
939b0797b60SJohn Stultz 	 * the two values of tb_update_count match and are even then the
940b0797b60SJohn Stultz 	 * tb_to_xs and stamp_xsec values are consistent.  If not, then it
941b0797b60SJohn Stultz 	 * loops back and reads them again until this criteria is met.
942b0797b60SJohn Stultz 	 */
9434a0e6377SThomas Gleixner 	vdso_data->tb_orig_stamp = cycle_last;
944b0797b60SJohn Stultz 	vdso_data->stamp_xsec = new_stamp_xsec;
945b0797b60SJohn Stultz 	vdso_data->tb_to_xs = new_tb_to_xs;
946d4cfb113SPaul Mackerras 	vdso_data->wtom_clock_sec = tk->wall_to_monotonic.tv_sec;
947d4cfb113SPaul Mackerras 	vdso_data->wtom_clock_nsec = tk->wall_to_monotonic.tv_nsec;
948d4cfb113SPaul Mackerras 	vdso_data->stamp_xtime = xt;
94947916be4SThomas Gleixner 	vdso_data->stamp_sec_fraction = frac_sec;
950b0797b60SJohn Stultz 	smp_wmb();
951b0797b60SJohn Stultz 	++(vdso_data->tb_update_count);
9524a4cfe38STony Breeds }
9534a4cfe38STony Breeds 
9544a4cfe38STony Breeds void update_vsyscall_tz(void)
9554a4cfe38STony Breeds {
9564a4cfe38STony Breeds 	vdso_data->tz_minuteswest = sys_tz.tz_minuteswest;
9574a4cfe38STony Breeds 	vdso_data->tz_dsttime = sys_tz.tz_dsttime;
9584a4cfe38STony Breeds }
9594a4cfe38STony Breeds 
9601c21a293SMichael Ellerman static void __init clocksource_init(void)
9614a4cfe38STony Breeds {
9624a4cfe38STony Breeds 	struct clocksource *clock;
9634a4cfe38STony Breeds 
9644a4cfe38STony Breeds 	if (__USE_RTC())
9654a4cfe38STony Breeds 		clock = &clocksource_rtc;
9664a4cfe38STony Breeds 	else
9674a4cfe38STony Breeds 		clock = &clocksource_timebase;
9684a4cfe38STony Breeds 
96911b8633aSAnton Blanchard 	if (clocksource_register_hz(clock, tb_ticks_per_sec)) {
9704a4cfe38STony Breeds 		printk(KERN_ERR "clocksource: %s is already registered\n",
9714a4cfe38STony Breeds 		       clock->name);
9724a4cfe38STony Breeds 		return;
9734a4cfe38STony Breeds 	}
9744a4cfe38STony Breeds 
9754a4cfe38STony Breeds 	printk(KERN_INFO "clocksource: %s mult[%x] shift[%d] registered\n",
9764a4cfe38STony Breeds 	       clock->name, clock->mult, clock->shift);
9774a4cfe38STony Breeds }
9784a4cfe38STony Breeds 
979d831d0b8STony Breeds static int decrementer_set_next_event(unsigned long evt,
980d831d0b8STony Breeds 				      struct clock_event_device *dev)
981d831d0b8STony Breeds {
98269111bacSChristoph Lameter 	__this_cpu_write(decrementers_next_tb, get_tb_or_rtc() + evt);
983d831d0b8STony Breeds 	set_dec(evt);
9840215f7d8SBenjamin Herrenschmidt 
9850215f7d8SBenjamin Herrenschmidt 	/* We may have raced with new irq work */
9860215f7d8SBenjamin Herrenschmidt 	if (test_irq_work_pending())
9870215f7d8SBenjamin Herrenschmidt 		set_dec(1);
9880215f7d8SBenjamin Herrenschmidt 
989d831d0b8STony Breeds 	return 0;
990d831d0b8STony Breeds }
991d831d0b8STony Breeds 
99237a13e78SViresh Kumar static int decrementer_shutdown(struct clock_event_device *dev)
993d831d0b8STony Breeds {
99479901024SOliver O'Halloran 	decrementer_set_next_event(decrementer_max, dev);
99537a13e78SViresh Kumar 	return 0;
996d831d0b8STony Breeds }
997d831d0b8STony Breeds 
998d831d0b8STony Breeds static void register_decrementer_clockevent(int cpu)
999d831d0b8STony Breeds {
10007df10275SAnton Blanchard 	struct clock_event_device *dec = &per_cpu(decrementers, cpu);
1001d831d0b8STony Breeds 
1002d831d0b8STony Breeds 	*dec = decrementer_clockevent;
1003320ab2b0SRusty Russell 	dec->cpumask = cpumask_of(cpu);
1004d831d0b8STony Breeds 
1005b919ee82SAnton Blanchard 	printk_once(KERN_DEBUG "clockevent: %s mult[%x] shift[%d] cpu[%d]\n",
1006d831d0b8STony Breeds 		    dec->name, dec->mult, dec->shift, cpu);
1007d831d0b8STony Breeds 
1008d831d0b8STony Breeds 	clockevents_register_device(dec);
1009d831d0b8STony Breeds }
1010d831d0b8STony Breeds 
101179901024SOliver O'Halloran static void enable_large_decrementer(void)
101279901024SOliver O'Halloran {
101379901024SOliver O'Halloran 	if (!cpu_has_feature(CPU_FTR_ARCH_300))
101479901024SOliver O'Halloran 		return;
101579901024SOliver O'Halloran 
101679901024SOliver O'Halloran 	if (decrementer_max <= DECREMENTER_DEFAULT_MAX)
101779901024SOliver O'Halloran 		return;
101879901024SOliver O'Halloran 
101979901024SOliver O'Halloran 	/*
102079901024SOliver O'Halloran 	 * If we're running as the hypervisor we need to enable the LD manually
102179901024SOliver O'Halloran 	 * otherwise firmware should have done it for us.
102279901024SOliver O'Halloran 	 */
102379901024SOliver O'Halloran 	if (cpu_has_feature(CPU_FTR_HVMODE))
102479901024SOliver O'Halloran 		mtspr(SPRN_LPCR, mfspr(SPRN_LPCR) | LPCR_LD);
102579901024SOliver O'Halloran }
102679901024SOliver O'Halloran 
102779901024SOliver O'Halloran static void __init set_decrementer_max(void)
102879901024SOliver O'Halloran {
102979901024SOliver O'Halloran 	struct device_node *cpu;
103079901024SOliver O'Halloran 	u32 bits = 32;
103179901024SOliver O'Halloran 
103279901024SOliver O'Halloran 	/* Prior to ISAv3 the decrementer is always 32 bit */
103379901024SOliver O'Halloran 	if (!cpu_has_feature(CPU_FTR_ARCH_300))
103479901024SOliver O'Halloran 		return;
103579901024SOliver O'Halloran 
103679901024SOliver O'Halloran 	cpu = of_find_node_by_type(NULL, "cpu");
103779901024SOliver O'Halloran 
103879901024SOliver O'Halloran 	if (of_property_read_u32(cpu, "ibm,dec-bits", &bits) == 0) {
103979901024SOliver O'Halloran 		if (bits > 64 || bits < 32) {
104079901024SOliver O'Halloran 			pr_warn("time_init: firmware supplied invalid ibm,dec-bits");
104179901024SOliver O'Halloran 			bits = 32;
104279901024SOliver O'Halloran 		}
104379901024SOliver O'Halloran 
104479901024SOliver O'Halloran 		/* calculate the signed maximum given this many bits */
104579901024SOliver O'Halloran 		decrementer_max = (1ul << (bits - 1)) - 1;
104679901024SOliver O'Halloran 	}
104779901024SOliver O'Halloran 
104879901024SOliver O'Halloran 	of_node_put(cpu);
104979901024SOliver O'Halloran 
105079901024SOliver O'Halloran 	pr_info("time_init: %u bit decrementer (max: %llx)\n",
105179901024SOliver O'Halloran 		bits, decrementer_max);
105279901024SOliver O'Halloran }
105379901024SOliver O'Halloran 
1054c481887fSMilton Miller static void __init init_decrementer_clockevent(void)
1055d831d0b8STony Breeds {
1056d831d0b8STony Breeds 	int cpu = smp_processor_id();
1057d831d0b8STony Breeds 
1058d8afc6fdSAnton Blanchard 	clockevents_calc_mult_shift(&decrementer_clockevent, ppc_tb_freq, 4);
1059d8afc6fdSAnton Blanchard 
1060d831d0b8STony Breeds 	decrementer_clockevent.max_delta_ns =
106179901024SOliver O'Halloran 		clockevent_delta2ns(decrementer_max, &decrementer_clockevent);
1062115631c3SNicolai Stange 	decrementer_clockevent.max_delta_ticks = decrementer_max;
106343875cc0SPaul Mackerras 	decrementer_clockevent.min_delta_ns =
106443875cc0SPaul Mackerras 		clockevent_delta2ns(2, &decrementer_clockevent);
1065115631c3SNicolai Stange 	decrementer_clockevent.min_delta_ticks = 2;
1066d831d0b8STony Breeds 
1067d831d0b8STony Breeds 	register_decrementer_clockevent(cpu);
1068d831d0b8STony Breeds }
1069d831d0b8STony Breeds 
1070d831d0b8STony Breeds void secondary_cpu_time_init(void)
1071d831d0b8STony Breeds {
107279901024SOliver O'Halloran 	/* Enable and test the large decrementer for this cpu */
107379901024SOliver O'Halloran 	enable_large_decrementer();
107479901024SOliver O'Halloran 
107577c0a700SBenjamin Herrenschmidt 	/* Start the decrementer on CPUs that have manual control
107677c0a700SBenjamin Herrenschmidt 	 * such as BookE
107777c0a700SBenjamin Herrenschmidt 	 */
107877c0a700SBenjamin Herrenschmidt 	start_cpu_decrementer();
107977c0a700SBenjamin Herrenschmidt 
1080d831d0b8STony Breeds 	/* FIME: Should make unrelatred change to move snapshot_timebase
1081d831d0b8STony Breeds 	 * call here ! */
1082d831d0b8STony Breeds 	register_decrementer_clockevent(smp_processor_id());
1083d831d0b8STony Breeds }
1084d831d0b8STony Breeds 
1085f2783c15SPaul Mackerras /* This function is only called on the boot processor */
1086f2783c15SPaul Mackerras void __init time_init(void)
1087f2783c15SPaul Mackerras {
1088f2783c15SPaul Mackerras 	struct div_result res;
1089d75d68cfSPaul Mackerras 	u64 scale;
1090f2783c15SPaul Mackerras 	unsigned shift;
1091f2783c15SPaul Mackerras 
109296c44507SPaul Mackerras 	if (__USE_RTC()) {
109396c44507SPaul Mackerras 		/* 601 processor: dec counts down by 128 every 128ns */
109496c44507SPaul Mackerras 		ppc_tb_freq = 1000000000;
109596c44507SPaul Mackerras 	} else {
109696c44507SPaul Mackerras 		/* Normal PowerPC with timebase register */
1097f2783c15SPaul Mackerras 		ppc_md.calibrate_decr();
1098224ad80aSOlof Johansson 		printk(KERN_DEBUG "time_init: decrementer frequency = %lu.%.6lu MHz\n",
1099374e99d4SPaul Mackerras 		       ppc_tb_freq / 1000000, ppc_tb_freq % 1000000);
1100224ad80aSOlof Johansson 		printk(KERN_DEBUG "time_init: processor frequency   = %lu.%.6lu MHz\n",
1101374e99d4SPaul Mackerras 		       ppc_proc_freq / 1000000, ppc_proc_freq % 1000000);
110296c44507SPaul Mackerras 	}
1103374e99d4SPaul Mackerras 
1104374e99d4SPaul Mackerras 	tb_ticks_per_jiffy = ppc_tb_freq / HZ;
1105092b8f34SPaul Mackerras 	tb_ticks_per_sec = ppc_tb_freq;
1106374e99d4SPaul Mackerras 	tb_ticks_per_usec = ppc_tb_freq / 1000000;
1107c6622f63SPaul Mackerras 	calc_cputime_factors();
1108092b8f34SPaul Mackerras 
1109092b8f34SPaul Mackerras 	/*
1110f2783c15SPaul Mackerras 	 * Compute scale factor for sched_clock.
1111f2783c15SPaul Mackerras 	 * The calibrate_decr() function has set tb_ticks_per_sec,
1112f2783c15SPaul Mackerras 	 * which is the timebase frequency.
1113f2783c15SPaul Mackerras 	 * We compute 1e9 * 2^64 / tb_ticks_per_sec and interpret
1114f2783c15SPaul Mackerras 	 * the 128-bit result as a 64.64 fixed-point number.
1115f2783c15SPaul Mackerras 	 * We then shift that number right until it is less than 1.0,
1116f2783c15SPaul Mackerras 	 * giving us the scale factor and shift count to use in
1117f2783c15SPaul Mackerras 	 * sched_clock().
1118f2783c15SPaul Mackerras 	 */
1119f2783c15SPaul Mackerras 	div128_by_32(1000000000, 0, tb_ticks_per_sec, &res);
1120f2783c15SPaul Mackerras 	scale = res.result_low;
1121f2783c15SPaul Mackerras 	for (shift = 0; res.result_high != 0; ++shift) {
1122f2783c15SPaul Mackerras 		scale = (scale >> 1) | (res.result_high << 63);
1123f2783c15SPaul Mackerras 		res.result_high >>= 1;
1124f2783c15SPaul Mackerras 	}
1125f2783c15SPaul Mackerras 	tb_to_ns_scale = scale;
1126f2783c15SPaul Mackerras 	tb_to_ns_shift = shift;
1127fc9069feSTony Breeds 	/* Save the current timebase to pretty up CONFIG_PRINTK_TIME */
1128c27da339SBenjamin Herrenschmidt 	boot_tb = get_tb_or_rtc();
1129f2783c15SPaul Mackerras 
1130092b8f34SPaul Mackerras 	/* If platform provided a timezone (pmac), we correct the time */
1131092b8f34SPaul Mackerras 	if (timezone_offset) {
1132092b8f34SPaul Mackerras 		sys_tz.tz_minuteswest = -timezone_offset / 60;
1133092b8f34SPaul Mackerras 		sys_tz.tz_dsttime = 0;
1134092b8f34SPaul Mackerras 	}
1135092b8f34SPaul Mackerras 
1136a7f290daSBenjamin Herrenschmidt 	vdso_data->tb_update_count = 0;
1137a7f290daSBenjamin Herrenschmidt 	vdso_data->tb_ticks_per_sec = tb_ticks_per_sec;
1138f2783c15SPaul Mackerras 
113979901024SOliver O'Halloran 	/* initialise and enable the large decrementer (if we have one) */
114079901024SOliver O'Halloran 	set_decrementer_max();
114179901024SOliver O'Halloran 	enable_large_decrementer();
114279901024SOliver O'Halloran 
114377c0a700SBenjamin Herrenschmidt 	/* Start the decrementer on CPUs that have manual control
114477c0a700SBenjamin Herrenschmidt 	 * such as BookE
114577c0a700SBenjamin Herrenschmidt 	 */
114677c0a700SBenjamin Herrenschmidt 	start_cpu_decrementer();
114777c0a700SBenjamin Herrenschmidt 
1148f5339277SStephen Rothwell 	/* Register the clocksource */
11494a4cfe38STony Breeds 	clocksource_init();
11504a4cfe38STony Breeds 
1151d831d0b8STony Breeds 	init_decrementer_clockevent();
11520d948730SPreeti U Murthy 	tick_setup_hrtimer_broadcast();
1153f0d37300SKevin Hao 
1154f0d37300SKevin Hao #ifdef CONFIG_COMMON_CLK
1155f0d37300SKevin Hao 	of_clk_init(NULL);
1156f0d37300SKevin Hao #endif
1157f2783c15SPaul Mackerras }
1158f2783c15SPaul Mackerras 
1159f2783c15SPaul Mackerras 
1160f2783c15SPaul Mackerras #define FEBRUARY	2
1161f2783c15SPaul Mackerras #define	STARTOFTIME	1970
1162f2783c15SPaul Mackerras #define SECDAY		86400L
1163f2783c15SPaul Mackerras #define SECYR		(SECDAY * 365)
1164f2783c15SPaul Mackerras #define	leapyear(year)		((year) % 4 == 0 && \
1165f2783c15SPaul Mackerras 				 ((year) % 100 != 0 || (year) % 400 == 0))
1166f2783c15SPaul Mackerras #define	days_in_year(a) 	(leapyear(a) ? 366 : 365)
1167f2783c15SPaul Mackerras #define	days_in_month(a) 	(month_days[(a) - 1])
1168f2783c15SPaul Mackerras 
1169f2783c15SPaul Mackerras static int month_days[12] = {
1170f2783c15SPaul Mackerras 	31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31
1171f2783c15SPaul Mackerras };
1172f2783c15SPaul Mackerras 
1173f2783c15SPaul Mackerras void to_tm(int tim, struct rtc_time * tm)
1174f2783c15SPaul Mackerras {
1175f2783c15SPaul Mackerras 	register int    i;
1176f2783c15SPaul Mackerras 	register long   hms, day;
1177f2783c15SPaul Mackerras 
1178f2783c15SPaul Mackerras 	day = tim / SECDAY;
1179f2783c15SPaul Mackerras 	hms = tim % SECDAY;
1180f2783c15SPaul Mackerras 
1181f2783c15SPaul Mackerras 	/* Hours, minutes, seconds are easy */
1182f2783c15SPaul Mackerras 	tm->tm_hour = hms / 3600;
1183f2783c15SPaul Mackerras 	tm->tm_min = (hms % 3600) / 60;
1184f2783c15SPaul Mackerras 	tm->tm_sec = (hms % 3600) % 60;
1185f2783c15SPaul Mackerras 
1186f2783c15SPaul Mackerras 	/* Number of years in days */
1187f2783c15SPaul Mackerras 	for (i = STARTOFTIME; day >= days_in_year(i); i++)
1188f2783c15SPaul Mackerras 		day -= days_in_year(i);
1189f2783c15SPaul Mackerras 	tm->tm_year = i;
1190f2783c15SPaul Mackerras 
1191f2783c15SPaul Mackerras 	/* Number of months in days left */
1192f2783c15SPaul Mackerras 	if (leapyear(tm->tm_year))
1193f2783c15SPaul Mackerras 		days_in_month(FEBRUARY) = 29;
1194f2783c15SPaul Mackerras 	for (i = 1; day >= days_in_month(i); i++)
1195f2783c15SPaul Mackerras 		day -= days_in_month(i);
1196f2783c15SPaul Mackerras 	days_in_month(FEBRUARY) = 28;
1197f2783c15SPaul Mackerras 	tm->tm_mon = i;
1198f2783c15SPaul Mackerras 
1199f2783c15SPaul Mackerras 	/* Days are what is left over (+1) from all that. */
1200f2783c15SPaul Mackerras 	tm->tm_mday = day + 1;
1201f2783c15SPaul Mackerras 
1202f2783c15SPaul Mackerras 	/*
120300b912b0SDaniel Axtens 	 * No-one uses the day of the week.
1204f2783c15SPaul Mackerras 	 */
120500b912b0SDaniel Axtens 	tm->tm_wday = -1;
1206f2783c15SPaul Mackerras }
1207e1802b06SAnton Blanchard EXPORT_SYMBOL(to_tm);
1208f2783c15SPaul Mackerras 
1209f2783c15SPaul Mackerras /*
1210f2783c15SPaul Mackerras  * Divide a 128-bit dividend by a 32-bit divisor, leaving a 128 bit
1211f2783c15SPaul Mackerras  * result.
1212f2783c15SPaul Mackerras  */
1213f2783c15SPaul Mackerras void div128_by_32(u64 dividend_high, u64 dividend_low,
1214f2783c15SPaul Mackerras 		  unsigned divisor, struct div_result *dr)
1215f2783c15SPaul Mackerras {
1216f2783c15SPaul Mackerras 	unsigned long a, b, c, d;
1217f2783c15SPaul Mackerras 	unsigned long w, x, y, z;
1218f2783c15SPaul Mackerras 	u64 ra, rb, rc;
1219f2783c15SPaul Mackerras 
1220f2783c15SPaul Mackerras 	a = dividend_high >> 32;
1221f2783c15SPaul Mackerras 	b = dividend_high & 0xffffffff;
1222f2783c15SPaul Mackerras 	c = dividend_low >> 32;
1223f2783c15SPaul Mackerras 	d = dividend_low & 0xffffffff;
1224f2783c15SPaul Mackerras 
1225f2783c15SPaul Mackerras 	w = a / divisor;
1226f2783c15SPaul Mackerras 	ra = ((u64)(a - (w * divisor)) << 32) + b;
1227f2783c15SPaul Mackerras 
1228f2783c15SPaul Mackerras 	rb = ((u64) do_div(ra, divisor) << 32) + c;
1229f2783c15SPaul Mackerras 	x = ra;
1230f2783c15SPaul Mackerras 
1231f2783c15SPaul Mackerras 	rc = ((u64) do_div(rb, divisor) << 32) + d;
1232f2783c15SPaul Mackerras 	y = rb;
1233f2783c15SPaul Mackerras 
1234f2783c15SPaul Mackerras 	do_div(rc, divisor);
1235f2783c15SPaul Mackerras 	z = rc;
1236f2783c15SPaul Mackerras 
1237f2783c15SPaul Mackerras 	dr->result_high = ((u64)w << 32) + x;
1238f2783c15SPaul Mackerras 	dr->result_low  = ((u64)y << 32) + z;
1239f2783c15SPaul Mackerras 
1240f2783c15SPaul Mackerras }
1241bcd68a70SGeert Uytterhoeven 
1242177996e6SBenjamin Herrenschmidt /* We don't need to calibrate delay, we use the CPU timebase for that */
1243177996e6SBenjamin Herrenschmidt void calibrate_delay(void)
1244177996e6SBenjamin Herrenschmidt {
1245177996e6SBenjamin Herrenschmidt 	/* Some generic code (such as spinlock debug) use loops_per_jiffy
1246177996e6SBenjamin Herrenschmidt 	 * as the number of __delay(1) in a jiffy, so make it so
1247177996e6SBenjamin Herrenschmidt 	 */
1248177996e6SBenjamin Herrenschmidt 	loops_per_jiffy = tb_ticks_per_jiffy;
1249177996e6SBenjamin Herrenschmidt }
1250177996e6SBenjamin Herrenschmidt 
1251169047f4SArnd Bergmann #if IS_ENABLED(CONFIG_RTC_DRV_GENERIC)
1252169047f4SArnd Bergmann static int rtc_generic_get_time(struct device *dev, struct rtc_time *tm)
1253169047f4SArnd Bergmann {
1254169047f4SArnd Bergmann 	ppc_md.get_rtc_time(tm);
1255890ae797SAlexandre Belloni 	return 0;
1256169047f4SArnd Bergmann }
1257169047f4SArnd Bergmann 
1258169047f4SArnd Bergmann static int rtc_generic_set_time(struct device *dev, struct rtc_time *tm)
1259169047f4SArnd Bergmann {
1260169047f4SArnd Bergmann 	if (!ppc_md.set_rtc_time)
1261169047f4SArnd Bergmann 		return -EOPNOTSUPP;
1262169047f4SArnd Bergmann 
1263169047f4SArnd Bergmann 	if (ppc_md.set_rtc_time(tm) < 0)
1264169047f4SArnd Bergmann 		return -EOPNOTSUPP;
1265169047f4SArnd Bergmann 
1266169047f4SArnd Bergmann 	return 0;
1267169047f4SArnd Bergmann }
1268169047f4SArnd Bergmann 
1269169047f4SArnd Bergmann static const struct rtc_class_ops rtc_generic_ops = {
1270169047f4SArnd Bergmann 	.read_time = rtc_generic_get_time,
1271169047f4SArnd Bergmann 	.set_time = rtc_generic_set_time,
1272169047f4SArnd Bergmann };
1273169047f4SArnd Bergmann 
1274bcd68a70SGeert Uytterhoeven static int __init rtc_init(void)
1275bcd68a70SGeert Uytterhoeven {
1276bcd68a70SGeert Uytterhoeven 	struct platform_device *pdev;
1277bcd68a70SGeert Uytterhoeven 
1278bcd68a70SGeert Uytterhoeven 	if (!ppc_md.get_rtc_time)
1279bcd68a70SGeert Uytterhoeven 		return -ENODEV;
1280bcd68a70SGeert Uytterhoeven 
1281169047f4SArnd Bergmann 	pdev = platform_device_register_data(NULL, "rtc-generic", -1,
1282169047f4SArnd Bergmann 					     &rtc_generic_ops,
1283169047f4SArnd Bergmann 					     sizeof(rtc_generic_ops));
1284bcd68a70SGeert Uytterhoeven 
12858c6ffba0SRusty Russell 	return PTR_ERR_OR_ZERO(pdev);
1286bcd68a70SGeert Uytterhoeven }
1287bcd68a70SGeert Uytterhoeven 
12888f6b9512SPaul Gortmaker device_initcall(rtc_init);
1289169047f4SArnd Bergmann #endif
1290