xref: /openbmc/linux/arch/powerpc/kernel/time.c (revision d831d0b83f205888f4be4dee0a074ad67ef809b3)
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
20f2783c15SPaul Mackerras  * measurement at boot time. (for iSeries, we calibrate the timebase
21f2783c15SPaul Mackerras  * against the Titan chip's clock.)
22f2783c15SPaul Mackerras  * - for astronomical applications: add a new function to get
23f2783c15SPaul Mackerras  * non ambiguous timestamps even around leap seconds. This needs
24f2783c15SPaul Mackerras  * a new timestamp format and a good name.
25f2783c15SPaul Mackerras  *
26f2783c15SPaul Mackerras  * 1997-09-10  Updated NTP code according to technical memorandum Jan '96
27f2783c15SPaul Mackerras  *             "A Kernel Model for Precision Timekeeping" by Dave Mills
28f2783c15SPaul Mackerras  *
29f2783c15SPaul Mackerras  *      This program is free software; you can redistribute it and/or
30f2783c15SPaul Mackerras  *      modify it under the terms of the GNU General Public License
31f2783c15SPaul Mackerras  *      as published by the Free Software Foundation; either version
32f2783c15SPaul Mackerras  *      2 of the License, or (at your option) any later version.
33f2783c15SPaul Mackerras  */
34f2783c15SPaul Mackerras 
35f2783c15SPaul Mackerras #include <linux/errno.h>
36f2783c15SPaul Mackerras #include <linux/module.h>
37f2783c15SPaul Mackerras #include <linux/sched.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>
46f2783c15SPaul Mackerras #include <linux/init.h>
47f2783c15SPaul Mackerras #include <linux/profile.h>
48f2783c15SPaul Mackerras #include <linux/cpu.h>
49f2783c15SPaul Mackerras #include <linux/security.h>
50f2783c15SPaul Mackerras #include <linux/percpu.h>
51f2783c15SPaul Mackerras #include <linux/rtc.h>
52092b8f34SPaul Mackerras #include <linux/jiffies.h>
53c6622f63SPaul Mackerras #include <linux/posix-timers.h>
547d12e780SDavid Howells #include <linux/irq.h>
55f2783c15SPaul Mackerras 
56f2783c15SPaul Mackerras #include <asm/io.h>
57f2783c15SPaul Mackerras #include <asm/processor.h>
58f2783c15SPaul Mackerras #include <asm/nvram.h>
59f2783c15SPaul Mackerras #include <asm/cache.h>
60f2783c15SPaul Mackerras #include <asm/machdep.h>
61f2783c15SPaul Mackerras #include <asm/uaccess.h>
62f2783c15SPaul Mackerras #include <asm/time.h>
63f2783c15SPaul Mackerras #include <asm/prom.h>
64f2783c15SPaul Mackerras #include <asm/irq.h>
65f2783c15SPaul Mackerras #include <asm/div64.h>
662249ca9dSPaul Mackerras #include <asm/smp.h>
67a7f290daSBenjamin Herrenschmidt #include <asm/vdso_datapage.h>
68f2783c15SPaul Mackerras #include <asm/firmware.h>
69f2783c15SPaul Mackerras #ifdef CONFIG_PPC_ISERIES
708875ccfbSKelly Daly #include <asm/iseries/it_lp_queue.h>
718021b8a7SKelly Daly #include <asm/iseries/hv_call_xm.h>
72f2783c15SPaul Mackerras #endif
73f2783c15SPaul Mackerras 
744a4cfe38STony Breeds /* powerpc clocksource/clockevent code */
754a4cfe38STony Breeds 
76*d831d0b8STony Breeds #include <linux/clockchips.h>
774a4cfe38STony Breeds #include <linux/clocksource.h>
784a4cfe38STony Breeds 
794a4cfe38STony Breeds static cycle_t rtc_read(void);
804a4cfe38STony Breeds static struct clocksource clocksource_rtc = {
814a4cfe38STony Breeds 	.name         = "rtc",
824a4cfe38STony Breeds 	.rating       = 400,
834a4cfe38STony Breeds 	.flags        = CLOCK_SOURCE_IS_CONTINUOUS,
844a4cfe38STony Breeds 	.mask         = CLOCKSOURCE_MASK(64),
854a4cfe38STony Breeds 	.shift        = 22,
864a4cfe38STony Breeds 	.mult         = 0,	/* To be filled in */
874a4cfe38STony Breeds 	.read         = rtc_read,
884a4cfe38STony Breeds };
894a4cfe38STony Breeds 
904a4cfe38STony Breeds static cycle_t timebase_read(void);
914a4cfe38STony Breeds static struct clocksource clocksource_timebase = {
924a4cfe38STony Breeds 	.name         = "timebase",
934a4cfe38STony Breeds 	.rating       = 400,
944a4cfe38STony Breeds 	.flags        = CLOCK_SOURCE_IS_CONTINUOUS,
954a4cfe38STony Breeds 	.mask         = CLOCKSOURCE_MASK(64),
964a4cfe38STony Breeds 	.shift        = 22,
974a4cfe38STony Breeds 	.mult         = 0,	/* To be filled in */
984a4cfe38STony Breeds 	.read         = timebase_read,
994a4cfe38STony Breeds };
1004a4cfe38STony Breeds 
101*d831d0b8STony Breeds #define DECREMENTER_MAX	0x7fffffff
102*d831d0b8STony Breeds 
103*d831d0b8STony Breeds static int decrementer_set_next_event(unsigned long evt,
104*d831d0b8STony Breeds 				      struct clock_event_device *dev);
105*d831d0b8STony Breeds static void decrementer_set_mode(enum clock_event_mode mode,
106*d831d0b8STony Breeds 				 struct clock_event_device *dev);
107*d831d0b8STony Breeds 
108*d831d0b8STony Breeds static struct clock_event_device decrementer_clockevent = {
109*d831d0b8STony Breeds        .name           = "decrementer",
110*d831d0b8STony Breeds        .rating         = 200,
111*d831d0b8STony Breeds        .shift          = 32,
112*d831d0b8STony Breeds        .mult           = 0,	/* To be filled in */
113*d831d0b8STony Breeds        .irq            = 0,
114*d831d0b8STony Breeds        .set_next_event = decrementer_set_next_event,
115*d831d0b8STony Breeds        .set_mode       = decrementer_set_mode,
116*d831d0b8STony Breeds        .features       = CLOCK_EVT_FEAT_ONESHOT,
117*d831d0b8STony Breeds };
118*d831d0b8STony Breeds 
119*d831d0b8STony Breeds static DEFINE_PER_CPU(struct clock_event_device, decrementers);
120*d831d0b8STony Breeds void init_decrementer_clockevent(void);
121*d831d0b8STony Breeds 
122f2783c15SPaul Mackerras #ifdef CONFIG_PPC_ISERIES
12371712b45STony Breeds static unsigned long __initdata iSeries_recal_titan;
12471712b45STony Breeds static signed long __initdata iSeries_recal_tb;
1254a4cfe38STony Breeds 
1264a4cfe38STony Breeds /* Forward declaration is only needed for iSereis compiles */
1274a4cfe38STony Breeds void __init clocksource_init(void);
128f2783c15SPaul Mackerras #endif
129f2783c15SPaul Mackerras 
130f2783c15SPaul Mackerras #define XSEC_PER_SEC (1024*1024)
131f2783c15SPaul Mackerras 
132f2783c15SPaul Mackerras #ifdef CONFIG_PPC64
133f2783c15SPaul Mackerras #define SCALE_XSEC(xsec, max)	(((xsec) * max) / XSEC_PER_SEC)
134f2783c15SPaul Mackerras #else
135f2783c15SPaul Mackerras /* compute ((xsec << 12) * max) >> 32 */
136f2783c15SPaul Mackerras #define SCALE_XSEC(xsec, max)	mulhwu((xsec) << 12, max)
137f2783c15SPaul Mackerras #endif
138f2783c15SPaul Mackerras 
139f2783c15SPaul Mackerras unsigned long tb_ticks_per_jiffy;
140f2783c15SPaul Mackerras unsigned long tb_ticks_per_usec = 100; /* sane default */
141f2783c15SPaul Mackerras EXPORT_SYMBOL(tb_ticks_per_usec);
142f2783c15SPaul Mackerras unsigned long tb_ticks_per_sec;
1432cf82c02SPaul Mackerras EXPORT_SYMBOL(tb_ticks_per_sec);	/* for cputime_t conversions */
144f2783c15SPaul Mackerras u64 tb_to_xs;
145f2783c15SPaul Mackerras unsigned tb_to_us;
146092b8f34SPaul Mackerras 
14719923c19SRoman Zippel #define TICKLEN_SCALE	TICK_LENGTH_SHIFT
148092b8f34SPaul Mackerras u64 last_tick_len;	/* units are ns / 2^TICKLEN_SCALE */
149092b8f34SPaul Mackerras u64 ticklen_to_xs;	/* 0.64 fraction */
150092b8f34SPaul Mackerras 
151092b8f34SPaul Mackerras /* If last_tick_len corresponds to about 1/HZ seconds, then
152092b8f34SPaul Mackerras    last_tick_len << TICKLEN_SHIFT will be about 2^63. */
153092b8f34SPaul Mackerras #define TICKLEN_SHIFT	(63 - 30 - TICKLEN_SCALE + SHIFT_HZ)
154092b8f34SPaul Mackerras 
155f2783c15SPaul Mackerras DEFINE_SPINLOCK(rtc_lock);
156f2783c15SPaul Mackerras EXPORT_SYMBOL_GPL(rtc_lock);
157f2783c15SPaul Mackerras 
158fc9069feSTony Breeds static u64 tb_to_ns_scale __read_mostly;
159fc9069feSTony Breeds static unsigned tb_to_ns_shift __read_mostly;
160fc9069feSTony Breeds static unsigned long boot_tb __read_mostly;
161f2783c15SPaul Mackerras 
162f2783c15SPaul Mackerras struct gettimeofday_struct do_gtod;
163f2783c15SPaul Mackerras 
164f2783c15SPaul Mackerras extern struct timezone sys_tz;
165f2783c15SPaul Mackerras static long timezone_offset;
166f2783c15SPaul Mackerras 
167f2783c15SPaul Mackerras unsigned long ppc_proc_freq;
1681474855dSBob Nelson EXPORT_SYMBOL(ppc_proc_freq);
169f2783c15SPaul Mackerras unsigned long ppc_tb_freq;
170f2783c15SPaul Mackerras 
171eb36c288SPaul Mackerras static u64 tb_last_jiffy __cacheline_aligned_in_smp;
172eb36c288SPaul Mackerras static DEFINE_PER_CPU(u64, last_jiffy);
17396c44507SPaul Mackerras 
174c6622f63SPaul Mackerras #ifdef CONFIG_VIRT_CPU_ACCOUNTING
175c6622f63SPaul Mackerras /*
176c6622f63SPaul Mackerras  * Factors for converting from cputime_t (timebase ticks) to
177c6622f63SPaul Mackerras  * jiffies, milliseconds, seconds, and clock_t (1/USER_HZ seconds).
178c6622f63SPaul Mackerras  * These are all stored as 0.64 fixed-point binary fractions.
179c6622f63SPaul Mackerras  */
180c6622f63SPaul Mackerras u64 __cputime_jiffies_factor;
1812cf82c02SPaul Mackerras EXPORT_SYMBOL(__cputime_jiffies_factor);
182c6622f63SPaul Mackerras u64 __cputime_msec_factor;
1832cf82c02SPaul Mackerras EXPORT_SYMBOL(__cputime_msec_factor);
184c6622f63SPaul Mackerras u64 __cputime_sec_factor;
1852cf82c02SPaul Mackerras EXPORT_SYMBOL(__cputime_sec_factor);
186c6622f63SPaul Mackerras u64 __cputime_clockt_factor;
1872cf82c02SPaul Mackerras EXPORT_SYMBOL(__cputime_clockt_factor);
188c6622f63SPaul Mackerras 
189c6622f63SPaul Mackerras static void calc_cputime_factors(void)
190c6622f63SPaul Mackerras {
191c6622f63SPaul Mackerras 	struct div_result res;
192c6622f63SPaul Mackerras 
193c6622f63SPaul Mackerras 	div128_by_32(HZ, 0, tb_ticks_per_sec, &res);
194c6622f63SPaul Mackerras 	__cputime_jiffies_factor = res.result_low;
195c6622f63SPaul Mackerras 	div128_by_32(1000, 0, tb_ticks_per_sec, &res);
196c6622f63SPaul Mackerras 	__cputime_msec_factor = res.result_low;
197c6622f63SPaul Mackerras 	div128_by_32(1, 0, tb_ticks_per_sec, &res);
198c6622f63SPaul Mackerras 	__cputime_sec_factor = res.result_low;
199c6622f63SPaul Mackerras 	div128_by_32(USER_HZ, 0, tb_ticks_per_sec, &res);
200c6622f63SPaul Mackerras 	__cputime_clockt_factor = res.result_low;
201c6622f63SPaul Mackerras }
202c6622f63SPaul Mackerras 
203c6622f63SPaul Mackerras /*
204c6622f63SPaul Mackerras  * Read the PURR on systems that have it, otherwise the timebase.
205c6622f63SPaul Mackerras  */
206c6622f63SPaul Mackerras static u64 read_purr(void)
207c6622f63SPaul Mackerras {
208c6622f63SPaul Mackerras 	if (cpu_has_feature(CPU_FTR_PURR))
209c6622f63SPaul Mackerras 		return mfspr(SPRN_PURR);
210c6622f63SPaul Mackerras 	return mftb();
211c6622f63SPaul Mackerras }
212c6622f63SPaul Mackerras 
213c6622f63SPaul Mackerras /*
214c6622f63SPaul Mackerras  * Account time for a transition between system, hard irq
215c6622f63SPaul Mackerras  * or soft irq state.
216c6622f63SPaul Mackerras  */
217c6622f63SPaul Mackerras void account_system_vtime(struct task_struct *tsk)
218c6622f63SPaul Mackerras {
219c6622f63SPaul Mackerras 	u64 now, delta;
220c6622f63SPaul Mackerras 	unsigned long flags;
221c6622f63SPaul Mackerras 
222c6622f63SPaul Mackerras 	local_irq_save(flags);
223c6622f63SPaul Mackerras 	now = read_purr();
224c6622f63SPaul Mackerras 	delta = now - get_paca()->startpurr;
225c6622f63SPaul Mackerras 	get_paca()->startpurr = now;
226c6622f63SPaul Mackerras 	if (!in_interrupt()) {
227c6622f63SPaul Mackerras 		delta += get_paca()->system_time;
228c6622f63SPaul Mackerras 		get_paca()->system_time = 0;
229c6622f63SPaul Mackerras 	}
230c6622f63SPaul Mackerras 	account_system_time(tsk, 0, delta);
231c6622f63SPaul Mackerras 	local_irq_restore(flags);
232c6622f63SPaul Mackerras }
233c6622f63SPaul Mackerras 
234c6622f63SPaul Mackerras /*
235c6622f63SPaul Mackerras  * Transfer the user and system times accumulated in the paca
236c6622f63SPaul Mackerras  * by the exception entry and exit code to the generic process
237c6622f63SPaul Mackerras  * user and system time records.
238c6622f63SPaul Mackerras  * Must be called with interrupts disabled.
239c6622f63SPaul Mackerras  */
240c6622f63SPaul Mackerras void account_process_vtime(struct task_struct *tsk)
241c6622f63SPaul Mackerras {
242c6622f63SPaul Mackerras 	cputime_t utime;
243c6622f63SPaul Mackerras 
244c6622f63SPaul Mackerras 	utime = get_paca()->user_time;
245c6622f63SPaul Mackerras 	get_paca()->user_time = 0;
246c6622f63SPaul Mackerras 	account_user_time(tsk, utime);
247c6622f63SPaul Mackerras }
248c6622f63SPaul Mackerras 
249c6622f63SPaul Mackerras static void account_process_time(struct pt_regs *regs)
250c6622f63SPaul Mackerras {
251c6622f63SPaul Mackerras 	int cpu = smp_processor_id();
252c6622f63SPaul Mackerras 
253c6622f63SPaul Mackerras 	account_process_vtime(current);
254c6622f63SPaul Mackerras 	run_local_timers();
255c6622f63SPaul Mackerras 	if (rcu_pending(cpu))
256c6622f63SPaul Mackerras 		rcu_check_callbacks(cpu, user_mode(regs));
257c6622f63SPaul Mackerras 	scheduler_tick();
258c6622f63SPaul Mackerras  	run_posix_cpu_timers(current);
259c6622f63SPaul Mackerras }
260c6622f63SPaul Mackerras 
261c6622f63SPaul Mackerras /*
262c6622f63SPaul Mackerras  * Stuff for accounting stolen time.
263c6622f63SPaul Mackerras  */
264c6622f63SPaul Mackerras struct cpu_purr_data {
265c6622f63SPaul Mackerras 	int	initialized;			/* thread is running */
266c6622f63SPaul Mackerras 	u64	tb;			/* last TB value read */
267c6622f63SPaul Mackerras 	u64	purr;			/* last PURR value read */
268c6622f63SPaul Mackerras };
269c6622f63SPaul Mackerras 
270df211c8aSNathan Lynch /*
271df211c8aSNathan Lynch  * Each entry in the cpu_purr_data array is manipulated only by its
272df211c8aSNathan Lynch  * "owner" cpu -- usually in the timer interrupt but also occasionally
273df211c8aSNathan Lynch  * in process context for cpu online.  As long as cpus do not touch
274df211c8aSNathan Lynch  * each others' cpu_purr_data, disabling local interrupts is
275df211c8aSNathan Lynch  * sufficient to serialize accesses.
276df211c8aSNathan Lynch  */
277c6622f63SPaul Mackerras static DEFINE_PER_CPU(struct cpu_purr_data, cpu_purr_data);
278c6622f63SPaul Mackerras 
279c6622f63SPaul Mackerras static void snapshot_tb_and_purr(void *data)
280c6622f63SPaul Mackerras {
281df211c8aSNathan Lynch 	unsigned long flags;
282c6622f63SPaul Mackerras 	struct cpu_purr_data *p = &__get_cpu_var(cpu_purr_data);
283c6622f63SPaul Mackerras 
284df211c8aSNathan Lynch 	local_irq_save(flags);
285c27da339SBenjamin Herrenschmidt 	p->tb = get_tb_or_rtc();
286cbcdb93dSStephen Rothwell 	p->purr = mfspr(SPRN_PURR);
287c6622f63SPaul Mackerras 	wmb();
288c6622f63SPaul Mackerras 	p->initialized = 1;
289df211c8aSNathan Lynch 	local_irq_restore(flags);
290c6622f63SPaul Mackerras }
291c6622f63SPaul Mackerras 
292c6622f63SPaul Mackerras /*
293c6622f63SPaul Mackerras  * Called during boot when all cpus have come up.
294c6622f63SPaul Mackerras  */
295c6622f63SPaul Mackerras void snapshot_timebases(void)
296c6622f63SPaul Mackerras {
297c6622f63SPaul Mackerras 	if (!cpu_has_feature(CPU_FTR_PURR))
298c6622f63SPaul Mackerras 		return;
299c6622f63SPaul Mackerras 	on_each_cpu(snapshot_tb_and_purr, NULL, 0, 1);
300c6622f63SPaul Mackerras }
301c6622f63SPaul Mackerras 
302df211c8aSNathan Lynch /*
303df211c8aSNathan Lynch  * Must be called with interrupts disabled.
304df211c8aSNathan Lynch  */
305c6622f63SPaul Mackerras void calculate_steal_time(void)
306c6622f63SPaul Mackerras {
307cbcdb93dSStephen Rothwell 	u64 tb, purr;
308c6622f63SPaul Mackerras 	s64 stolen;
309cbcdb93dSStephen Rothwell 	struct cpu_purr_data *pme;
310c6622f63SPaul Mackerras 
311c6622f63SPaul Mackerras 	if (!cpu_has_feature(CPU_FTR_PURR))
312c6622f63SPaul Mackerras 		return;
313cbcdb93dSStephen Rothwell 	pme = &per_cpu(cpu_purr_data, smp_processor_id());
314c6622f63SPaul Mackerras 	if (!pme->initialized)
315c6622f63SPaul Mackerras 		return;		/* this can happen in early boot */
316c6622f63SPaul Mackerras 	tb = mftb();
317cbcdb93dSStephen Rothwell 	purr = mfspr(SPRN_PURR);
318c6622f63SPaul Mackerras 	stolen = (tb - pme->tb) - (purr - pme->purr);
319cbcdb93dSStephen Rothwell 	if (stolen > 0)
320c6622f63SPaul Mackerras 		account_steal_time(current, stolen);
321c6622f63SPaul Mackerras 	pme->tb = tb;
322c6622f63SPaul Mackerras 	pme->purr = purr;
323c6622f63SPaul Mackerras }
324c6622f63SPaul Mackerras 
3254cefebb1SMichael Neuling #ifdef CONFIG_PPC_SPLPAR
326c6622f63SPaul Mackerras /*
327c6622f63SPaul Mackerras  * Must be called before the cpu is added to the online map when
328c6622f63SPaul Mackerras  * a cpu is being brought up at runtime.
329c6622f63SPaul Mackerras  */
330c6622f63SPaul Mackerras static void snapshot_purr(void)
331c6622f63SPaul Mackerras {
332cbcdb93dSStephen Rothwell 	struct cpu_purr_data *pme;
333c6622f63SPaul Mackerras 	unsigned long flags;
334c6622f63SPaul Mackerras 
335c6622f63SPaul Mackerras 	if (!cpu_has_feature(CPU_FTR_PURR))
336c6622f63SPaul Mackerras 		return;
337df211c8aSNathan Lynch 	local_irq_save(flags);
338cbcdb93dSStephen Rothwell 	pme = &per_cpu(cpu_purr_data, smp_processor_id());
339cbcdb93dSStephen Rothwell 	pme->tb = mftb();
340cbcdb93dSStephen Rothwell 	pme->purr = mfspr(SPRN_PURR);
341c6622f63SPaul Mackerras 	pme->initialized = 1;
342df211c8aSNathan Lynch 	local_irq_restore(flags);
343c6622f63SPaul Mackerras }
344c6622f63SPaul Mackerras 
345c6622f63SPaul Mackerras #endif /* CONFIG_PPC_SPLPAR */
346c6622f63SPaul Mackerras 
347c6622f63SPaul Mackerras #else /* ! CONFIG_VIRT_CPU_ACCOUNTING */
348c6622f63SPaul Mackerras #define calc_cputime_factors()
349c6622f63SPaul Mackerras #define account_process_time(regs)	update_process_times(user_mode(regs))
350c6622f63SPaul Mackerras #define calculate_steal_time()		do { } while (0)
351c6622f63SPaul Mackerras #endif
352c6622f63SPaul Mackerras 
353c6622f63SPaul Mackerras #if !(defined(CONFIG_VIRT_CPU_ACCOUNTING) && defined(CONFIG_PPC_SPLPAR))
354c6622f63SPaul Mackerras #define snapshot_purr()			do { } while (0)
355c6622f63SPaul Mackerras #endif
356c6622f63SPaul Mackerras 
357c6622f63SPaul Mackerras /*
358c6622f63SPaul Mackerras  * Called when a cpu comes up after the system has finished booting,
359c6622f63SPaul Mackerras  * i.e. as a result of a hotplug cpu action.
360c6622f63SPaul Mackerras  */
361c6622f63SPaul Mackerras void snapshot_timebase(void)
362c6622f63SPaul Mackerras {
363c27da339SBenjamin Herrenschmidt 	__get_cpu_var(last_jiffy) = get_tb_or_rtc();
364c6622f63SPaul Mackerras 	snapshot_purr();
365c6622f63SPaul Mackerras }
366c6622f63SPaul Mackerras 
3676defa38bSPaul Mackerras void __delay(unsigned long loops)
3686defa38bSPaul Mackerras {
3696defa38bSPaul Mackerras 	unsigned long start;
3706defa38bSPaul Mackerras 	int diff;
3716defa38bSPaul Mackerras 
3726defa38bSPaul Mackerras 	if (__USE_RTC()) {
3736defa38bSPaul Mackerras 		start = get_rtcl();
3746defa38bSPaul Mackerras 		do {
3756defa38bSPaul Mackerras 			/* the RTCL register wraps at 1000000000 */
3766defa38bSPaul Mackerras 			diff = get_rtcl() - start;
3776defa38bSPaul Mackerras 			if (diff < 0)
3786defa38bSPaul Mackerras 				diff += 1000000000;
3796defa38bSPaul Mackerras 		} while (diff < loops);
3806defa38bSPaul Mackerras 	} else {
3816defa38bSPaul Mackerras 		start = get_tbl();
3826defa38bSPaul Mackerras 		while (get_tbl() - start < loops)
3836defa38bSPaul Mackerras 			HMT_low();
3846defa38bSPaul Mackerras 		HMT_medium();
3856defa38bSPaul Mackerras 	}
3866defa38bSPaul Mackerras }
3876defa38bSPaul Mackerras EXPORT_SYMBOL(__delay);
3886defa38bSPaul Mackerras 
3896defa38bSPaul Mackerras void udelay(unsigned long usecs)
3906defa38bSPaul Mackerras {
3916defa38bSPaul Mackerras 	__delay(tb_ticks_per_usec * usecs);
3926defa38bSPaul Mackerras }
3936defa38bSPaul Mackerras EXPORT_SYMBOL(udelay);
3946defa38bSPaul Mackerras 
395f2783c15SPaul Mackerras 
396f2783c15SPaul Mackerras /*
397f2783c15SPaul Mackerras  * There are two copies of tb_to_xs and stamp_xsec so that no
398f2783c15SPaul Mackerras  * lock is needed to access and use these values in
399f2783c15SPaul Mackerras  * do_gettimeofday.  We alternate the copies and as long as a
400f2783c15SPaul Mackerras  * reasonable time elapses between changes, there will never
401f2783c15SPaul Mackerras  * be inconsistent values.  ntpd has a minimum of one minute
402f2783c15SPaul Mackerras  * between updates.
403f2783c15SPaul Mackerras  */
404f2783c15SPaul Mackerras static inline void update_gtod(u64 new_tb_stamp, u64 new_stamp_xsec,
4055d14a18dSPaul Mackerras 			       u64 new_tb_to_xs)
406f2783c15SPaul Mackerras {
407f2783c15SPaul Mackerras 	unsigned temp_idx;
408f2783c15SPaul Mackerras 	struct gettimeofday_vars *temp_varp;
409f2783c15SPaul Mackerras 
410f2783c15SPaul Mackerras 	temp_idx = (do_gtod.var_idx == 0);
411f2783c15SPaul Mackerras 	temp_varp = &do_gtod.vars[temp_idx];
412f2783c15SPaul Mackerras 
413f2783c15SPaul Mackerras 	temp_varp->tb_to_xs = new_tb_to_xs;
414f2783c15SPaul Mackerras 	temp_varp->tb_orig_stamp = new_tb_stamp;
415f2783c15SPaul Mackerras 	temp_varp->stamp_xsec = new_stamp_xsec;
416f2783c15SPaul Mackerras 	smp_mb();
417f2783c15SPaul Mackerras 	do_gtod.varp = temp_varp;
418f2783c15SPaul Mackerras 	do_gtod.var_idx = temp_idx;
419f2783c15SPaul Mackerras 
420f2783c15SPaul Mackerras 	/*
421f2783c15SPaul Mackerras 	 * tb_update_count is used to allow the userspace gettimeofday code
422f2783c15SPaul Mackerras 	 * to assure itself that it sees a consistent view of the tb_to_xs and
423f2783c15SPaul Mackerras 	 * stamp_xsec variables.  It reads the tb_update_count, then reads
424f2783c15SPaul Mackerras 	 * tb_to_xs and stamp_xsec and then reads tb_update_count again.  If
425f2783c15SPaul Mackerras 	 * the two values of tb_update_count match and are even then the
426f2783c15SPaul Mackerras 	 * tb_to_xs and stamp_xsec values are consistent.  If not, then it
427f2783c15SPaul Mackerras 	 * loops back and reads them again until this criteria is met.
4280a45d449SPaul Mackerras 	 * We expect the caller to have done the first increment of
4290a45d449SPaul Mackerras 	 * vdso_data->tb_update_count already.
430f2783c15SPaul Mackerras 	 */
431a7f290daSBenjamin Herrenschmidt 	vdso_data->tb_orig_stamp = new_tb_stamp;
432a7f290daSBenjamin Herrenschmidt 	vdso_data->stamp_xsec = new_stamp_xsec;
433a7f290daSBenjamin Herrenschmidt 	vdso_data->tb_to_xs = new_tb_to_xs;
434a7f290daSBenjamin Herrenschmidt 	vdso_data->wtom_clock_sec = wall_to_monotonic.tv_sec;
435a7f290daSBenjamin Herrenschmidt 	vdso_data->wtom_clock_nsec = wall_to_monotonic.tv_nsec;
436f2783c15SPaul Mackerras 	smp_wmb();
437a7f290daSBenjamin Herrenschmidt 	++(vdso_data->tb_update_count);
438f2783c15SPaul Mackerras }
439f2783c15SPaul Mackerras 
440f2783c15SPaul Mackerras #ifdef CONFIG_SMP
441f2783c15SPaul Mackerras unsigned long profile_pc(struct pt_regs *regs)
442f2783c15SPaul Mackerras {
443f2783c15SPaul Mackerras 	unsigned long pc = instruction_pointer(regs);
444f2783c15SPaul Mackerras 
445f2783c15SPaul Mackerras 	if (in_lock_functions(pc))
446f2783c15SPaul Mackerras 		return regs->link;
447f2783c15SPaul Mackerras 
448f2783c15SPaul Mackerras 	return pc;
449f2783c15SPaul Mackerras }
450f2783c15SPaul Mackerras EXPORT_SYMBOL(profile_pc);
451f2783c15SPaul Mackerras #endif
452f2783c15SPaul Mackerras 
453f2783c15SPaul Mackerras #ifdef CONFIG_PPC_ISERIES
454f2783c15SPaul Mackerras 
455f2783c15SPaul Mackerras /*
456f2783c15SPaul Mackerras  * This function recalibrates the timebase based on the 49-bit time-of-day
457f2783c15SPaul Mackerras  * value in the Titan chip.  The Titan is much more accurate than the value
458f2783c15SPaul Mackerras  * returned by the service processor for the timebase frequency.
459f2783c15SPaul Mackerras  */
460f2783c15SPaul Mackerras 
46171712b45STony Breeds static int __init iSeries_tb_recal(void)
462f2783c15SPaul Mackerras {
463f2783c15SPaul Mackerras 	struct div_result divres;
464f2783c15SPaul Mackerras 	unsigned long titan, tb;
46571712b45STony Breeds 
46671712b45STony Breeds 	/* Make sure we only run on iSeries */
46771712b45STony Breeds 	if (!firmware_has_feature(FW_FEATURE_ISERIES))
46871712b45STony Breeds 		return -ENODEV;
46971712b45STony Breeds 
470f2783c15SPaul Mackerras 	tb = get_tb();
471f2783c15SPaul Mackerras 	titan = HvCallXm_loadTod();
472f2783c15SPaul Mackerras 	if ( iSeries_recal_titan ) {
473f2783c15SPaul Mackerras 		unsigned long tb_ticks = tb - iSeries_recal_tb;
474f2783c15SPaul Mackerras 		unsigned long titan_usec = (titan - iSeries_recal_titan) >> 12;
475f2783c15SPaul Mackerras 		unsigned long new_tb_ticks_per_sec   = (tb_ticks * USEC_PER_SEC)/titan_usec;
476f2783c15SPaul Mackerras 		unsigned long new_tb_ticks_per_jiffy = (new_tb_ticks_per_sec+(HZ/2))/HZ;
477f2783c15SPaul Mackerras 		long tick_diff = new_tb_ticks_per_jiffy - tb_ticks_per_jiffy;
478f2783c15SPaul Mackerras 		char sign = '+';
479f2783c15SPaul Mackerras 		/* make sure tb_ticks_per_sec and tb_ticks_per_jiffy are consistent */
480f2783c15SPaul Mackerras 		new_tb_ticks_per_sec = new_tb_ticks_per_jiffy * HZ;
481f2783c15SPaul Mackerras 
482f2783c15SPaul Mackerras 		if ( tick_diff < 0 ) {
483f2783c15SPaul Mackerras 			tick_diff = -tick_diff;
484f2783c15SPaul Mackerras 			sign = '-';
485f2783c15SPaul Mackerras 		}
486f2783c15SPaul Mackerras 		if ( tick_diff ) {
487f2783c15SPaul Mackerras 			if ( tick_diff < tb_ticks_per_jiffy/25 ) {
488f2783c15SPaul Mackerras 				printk( "Titan recalibrate: new tb_ticks_per_jiffy = %lu (%c%ld)\n",
489f2783c15SPaul Mackerras 						new_tb_ticks_per_jiffy, sign, tick_diff );
490f2783c15SPaul Mackerras 				tb_ticks_per_jiffy = new_tb_ticks_per_jiffy;
491f2783c15SPaul Mackerras 				tb_ticks_per_sec   = new_tb_ticks_per_sec;
492c6622f63SPaul Mackerras 				calc_cputime_factors();
493f2783c15SPaul Mackerras 				div128_by_32( XSEC_PER_SEC, 0, tb_ticks_per_sec, &divres );
494f2783c15SPaul Mackerras 				do_gtod.tb_ticks_per_sec = tb_ticks_per_sec;
495f2783c15SPaul Mackerras 				tb_to_xs = divres.result_low;
496f2783c15SPaul Mackerras 				do_gtod.varp->tb_to_xs = tb_to_xs;
497a7f290daSBenjamin Herrenschmidt 				vdso_data->tb_ticks_per_sec = tb_ticks_per_sec;
498a7f290daSBenjamin Herrenschmidt 				vdso_data->tb_to_xs = tb_to_xs;
499f2783c15SPaul Mackerras 			}
500f2783c15SPaul Mackerras 			else {
501f2783c15SPaul Mackerras 				printk( "Titan recalibrate: FAILED (difference > 4 percent)\n"
502f2783c15SPaul Mackerras 					"                   new tb_ticks_per_jiffy = %lu\n"
503f2783c15SPaul Mackerras 					"                   old tb_ticks_per_jiffy = %lu\n",
504f2783c15SPaul Mackerras 					new_tb_ticks_per_jiffy, tb_ticks_per_jiffy );
505f2783c15SPaul Mackerras 			}
506f2783c15SPaul Mackerras 		}
507f2783c15SPaul Mackerras 	}
508f2783c15SPaul Mackerras 	iSeries_recal_titan = titan;
509f2783c15SPaul Mackerras 	iSeries_recal_tb = tb;
51071712b45STony Breeds 
5114a4cfe38STony Breeds 	/* Called here as now we know accurate values for the timebase */
5124a4cfe38STony Breeds 	clocksource_init();
51371712b45STony Breeds 	return 0;
514f2783c15SPaul Mackerras }
51571712b45STony Breeds late_initcall(iSeries_tb_recal);
51671712b45STony Breeds 
51771712b45STony Breeds /* Called from platform early init */
51871712b45STony Breeds void __init iSeries_time_init_early(void)
51971712b45STony Breeds {
52071712b45STony Breeds 	iSeries_recal_tb = get_tb();
52171712b45STony Breeds 	iSeries_recal_titan = HvCallXm_loadTod();
52271712b45STony Breeds }
52371712b45STony Breeds #endif /* CONFIG_PPC_ISERIES */
524f2783c15SPaul Mackerras 
525f2783c15SPaul Mackerras /*
526f2783c15SPaul Mackerras  * For iSeries shared processors, we have to let the hypervisor
527f2783c15SPaul Mackerras  * set the hardware decrementer.  We set a virtual decrementer
528f2783c15SPaul Mackerras  * in the lppaca and call the hypervisor if the virtual
529f2783c15SPaul Mackerras  * decrementer is less than the current value in the hardware
530f2783c15SPaul Mackerras  * decrementer. (almost always the new decrementer value will
531f2783c15SPaul Mackerras  * be greater than the current hardware decementer so the hypervisor
532f2783c15SPaul Mackerras  * call will not be needed)
533f2783c15SPaul Mackerras  */
534f2783c15SPaul Mackerras 
535f2783c15SPaul Mackerras /*
536f2783c15SPaul Mackerras  * timer_interrupt - gets called when the decrementer overflows,
537f2783c15SPaul Mackerras  * with interrupts disabled.
538f2783c15SPaul Mackerras  */
539f2783c15SPaul Mackerras void timer_interrupt(struct pt_regs * regs)
540f2783c15SPaul Mackerras {
5417d12e780SDavid Howells 	struct pt_regs *old_regs;
542f2783c15SPaul Mackerras 	int cpu = smp_processor_id();
543*d831d0b8STony Breeds 	struct clock_event_device *evt = &per_cpu(decrementers, cpu);
544*d831d0b8STony Breeds 
545*d831d0b8STony Breeds 	/* Ensure a positive value is written to the decrementer, or else
546*d831d0b8STony Breeds 	 * some CPUs will continuue to take decrementer exceptions */
547*d831d0b8STony Breeds 	set_dec(DECREMENTER_MAX);
548f2783c15SPaul Mackerras 
549f2783c15SPaul Mackerras #ifdef CONFIG_PPC32
550f2783c15SPaul Mackerras 	if (atomic_read(&ppc_n_lost_interrupts) != 0)
551f2783c15SPaul Mackerras 		do_IRQ(regs);
552f2783c15SPaul Mackerras #endif
553f2783c15SPaul Mackerras 
5547d12e780SDavid Howells 	old_regs = set_irq_regs(regs);
555f2783c15SPaul Mackerras 	irq_enter();
556f2783c15SPaul Mackerras 
557c6622f63SPaul Mackerras 	calculate_steal_time();
558f2783c15SPaul Mackerras 
559f2783c15SPaul Mackerras #ifdef CONFIG_PPC_ISERIES
560501b6d29SStephen Rothwell 	if (firmware_has_feature(FW_FEATURE_ISERIES))
5613356bb9fSDavid Gibson 		get_lppaca()->int_dword.fields.decr_int = 0;
562f2783c15SPaul Mackerras #endif
563f2783c15SPaul Mackerras 
564f2783c15SPaul Mackerras 	/*
565f2783c15SPaul Mackerras 	 * We cannot disable the decrementer, so in the period
566f2783c15SPaul Mackerras 	 * between this cpu's being marked offline in cpu_online_map
567f2783c15SPaul Mackerras 	 * and calling stop-self, it is taking timer interrupts.
568f2783c15SPaul Mackerras 	 * Avoid calling into the scheduler rebalancing code if this
569f2783c15SPaul Mackerras 	 * is the case.
570f2783c15SPaul Mackerras 	 */
571f2783c15SPaul Mackerras 	if (!cpu_is_offline(cpu))
572c6622f63SPaul Mackerras 		account_process_time(regs);
573f2783c15SPaul Mackerras 
574*d831d0b8STony Breeds 	if (evt->event_handler)
575*d831d0b8STony Breeds 		evt->event_handler(evt);
576*d831d0b8STony Breeds 	else
577*d831d0b8STony Breeds 		evt->set_next_event(DECREMENTER_MAX, evt);
578f2783c15SPaul Mackerras 
579f2783c15SPaul Mackerras #ifdef CONFIG_PPC_ISERIES
580501b6d29SStephen Rothwell 	if (firmware_has_feature(FW_FEATURE_ISERIES) && hvlpevent_is_pending())
58135a84c2fSOlaf Hering 		process_hvlpevents();
582f2783c15SPaul Mackerras #endif
583f2783c15SPaul Mackerras 
584f2783c15SPaul Mackerras #ifdef CONFIG_PPC64
585f2783c15SPaul Mackerras 	/* collect purr register values often, for accurate calculations */
586f2783c15SPaul Mackerras 	if (firmware_has_feature(FW_FEATURE_SPLPAR)) {
587f2783c15SPaul Mackerras 		struct cpu_usage *cu = &__get_cpu_var(cpu_usage_array);
588f2783c15SPaul Mackerras 		cu->current_tb = mfspr(SPRN_PURR);
589f2783c15SPaul Mackerras 	}
590f2783c15SPaul Mackerras #endif
591f2783c15SPaul Mackerras 
592f2783c15SPaul Mackerras 	irq_exit();
5937d12e780SDavid Howells 	set_irq_regs(old_regs);
594f2783c15SPaul Mackerras }
595f2783c15SPaul Mackerras 
596f2783c15SPaul Mackerras void wakeup_decrementer(void)
597f2783c15SPaul Mackerras {
598092b8f34SPaul Mackerras 	unsigned long ticks;
599f2783c15SPaul Mackerras 
600f2783c15SPaul Mackerras 	/*
601092b8f34SPaul Mackerras 	 * The timebase gets saved on sleep and restored on wakeup,
602092b8f34SPaul Mackerras 	 * so all we need to do is to reset the decrementer.
603f2783c15SPaul Mackerras 	 */
604092b8f34SPaul Mackerras 	ticks = tb_ticks_since(__get_cpu_var(last_jiffy));
605092b8f34SPaul Mackerras 	if (ticks < tb_ticks_per_jiffy)
606092b8f34SPaul Mackerras 		ticks = tb_ticks_per_jiffy - ticks;
607092b8f34SPaul Mackerras 	else
608092b8f34SPaul Mackerras 		ticks = 1;
609092b8f34SPaul Mackerras 	set_dec(ticks);
610f2783c15SPaul Mackerras }
611f2783c15SPaul Mackerras 
612a5b518edSPaul Mackerras #ifdef CONFIG_SMP
613f2783c15SPaul Mackerras void __init smp_space_timers(unsigned int max_cpus)
614f2783c15SPaul Mackerras {
615f2783c15SPaul Mackerras 	int i;
616eb36c288SPaul Mackerras 	u64 previous_tb = per_cpu(last_jiffy, boot_cpuid);
617f2783c15SPaul Mackerras 
618cbe62e2bSPaul Mackerras 	/* make sure tb > per_cpu(last_jiffy, cpu) for all cpus always */
619cbe62e2bSPaul Mackerras 	previous_tb -= tb_ticks_per_jiffy;
620e147ec8fSwill schmidt 
6210e551954SKAMEZAWA Hiroyuki 	for_each_possible_cpu(i) {
622c6622f63SPaul Mackerras 		if (i == boot_cpuid)
623c6622f63SPaul Mackerras 			continue;
624f2783c15SPaul Mackerras 		per_cpu(last_jiffy, i) = previous_tb;
625f2783c15SPaul Mackerras 	}
626f2783c15SPaul Mackerras }
627f2783c15SPaul Mackerras #endif
628f2783c15SPaul Mackerras 
629f2783c15SPaul Mackerras /*
630f2783c15SPaul Mackerras  * Scheduler clock - returns current time in nanosec units.
631f2783c15SPaul Mackerras  *
632f2783c15SPaul Mackerras  * Note: mulhdu(a, b) (multiply high double unsigned) returns
633f2783c15SPaul Mackerras  * the high 64 bits of a * b, i.e. (a * b) >> 64, where a and b
634f2783c15SPaul Mackerras  * are 64-bit unsigned numbers.
635f2783c15SPaul Mackerras  */
636f2783c15SPaul Mackerras unsigned long long sched_clock(void)
637f2783c15SPaul Mackerras {
63896c44507SPaul Mackerras 	if (__USE_RTC())
63996c44507SPaul Mackerras 		return get_rtc();
640fc9069feSTony Breeds 	return mulhdu(get_tb() - boot_tb, tb_to_ns_scale) << tb_to_ns_shift;
641f2783c15SPaul Mackerras }
642f2783c15SPaul Mackerras 
6430bb474a4SAnton Blanchard static int __init get_freq(char *name, int cells, unsigned long *val)
644f2783c15SPaul Mackerras {
645f2783c15SPaul Mackerras 	struct device_node *cpu;
646a7f67bdfSJeremy Kerr 	const unsigned int *fp;
6470bb474a4SAnton Blanchard 	int found = 0;
648f2783c15SPaul Mackerras 
6490bb474a4SAnton Blanchard 	/* The cpu node should have timebase and clock frequency properties */
650f2783c15SPaul Mackerras 	cpu = of_find_node_by_type(NULL, "cpu");
651f2783c15SPaul Mackerras 
652d8a8188dSOlaf Hering 	if (cpu) {
653e2eb6392SStephen Rothwell 		fp = of_get_property(cpu, name, NULL);
654d8a8188dSOlaf Hering 		if (fp) {
6550bb474a4SAnton Blanchard 			found = 1;
656a4dc7ff0SPaul Mackerras 			*val = of_read_ulong(fp, cells);
657f2783c15SPaul Mackerras 		}
6580bb474a4SAnton Blanchard 
6590bb474a4SAnton Blanchard 		of_node_put(cpu);
660f2783c15SPaul Mackerras 	}
6610bb474a4SAnton Blanchard 
6620bb474a4SAnton Blanchard 	return found;
6630bb474a4SAnton Blanchard }
6640bb474a4SAnton Blanchard 
6650bb474a4SAnton Blanchard void __init generic_calibrate_decr(void)
6660bb474a4SAnton Blanchard {
6670bb474a4SAnton Blanchard 	ppc_tb_freq = DEFAULT_TB_FREQ;		/* hardcoded default */
6680bb474a4SAnton Blanchard 
6690bb474a4SAnton Blanchard 	if (!get_freq("ibm,extended-timebase-frequency", 2, &ppc_tb_freq) &&
6700bb474a4SAnton Blanchard 	    !get_freq("timebase-frequency", 1, &ppc_tb_freq)) {
6710bb474a4SAnton Blanchard 
672f2783c15SPaul Mackerras 		printk(KERN_ERR "WARNING: Estimating decrementer frequency "
673f2783c15SPaul Mackerras 				"(not found)\n");
6740bb474a4SAnton Blanchard 	}
675f2783c15SPaul Mackerras 
6760bb474a4SAnton Blanchard 	ppc_proc_freq = DEFAULT_PROC_FREQ;	/* hardcoded default */
6770bb474a4SAnton Blanchard 
6780bb474a4SAnton Blanchard 	if (!get_freq("ibm,extended-clock-frequency", 2, &ppc_proc_freq) &&
6790bb474a4SAnton Blanchard 	    !get_freq("clock-frequency", 1, &ppc_proc_freq)) {
6800bb474a4SAnton Blanchard 
6810bb474a4SAnton Blanchard 		printk(KERN_ERR "WARNING: Estimating processor frequency "
6820bb474a4SAnton Blanchard 				"(not found)\n");
683f2783c15SPaul Mackerras 	}
6840bb474a4SAnton Blanchard 
685aab69292SJosh Boyer #if defined(CONFIG_BOOKE) || defined(CONFIG_40x)
6860fd6f717SKumar Gala 	/* Set the time base to zero */
6870fd6f717SKumar Gala 	mtspr(SPRN_TBWL, 0);
6880fd6f717SKumar Gala 	mtspr(SPRN_TBWU, 0);
6890fd6f717SKumar Gala 
6900fd6f717SKumar Gala 	/* Clear any pending timer interrupts */
6910fd6f717SKumar Gala 	mtspr(SPRN_TSR, TSR_ENW | TSR_WIS | TSR_DIS | TSR_FIS);
6920fd6f717SKumar Gala 
6930fd6f717SKumar Gala 	/* Enable decrementer interrupt */
6940fd6f717SKumar Gala 	mtspr(SPRN_TCR, TCR_DIE);
6950fd6f717SKumar Gala #endif
696f2783c15SPaul Mackerras }
697f2783c15SPaul Mackerras 
698aa3be5f3STony Breeds int update_persistent_clock(struct timespec now)
699f2783c15SPaul Mackerras {
700f2783c15SPaul Mackerras 	struct rtc_time tm;
701f2783c15SPaul Mackerras 
702aa3be5f3STony Breeds 	if (!ppc_md.set_rtc_time)
703aa3be5f3STony Breeds 		return 0;
704aa3be5f3STony Breeds 
705aa3be5f3STony Breeds 	to_tm(now.tv_sec + 1 + timezone_offset, &tm);
706aa3be5f3STony Breeds 	tm.tm_year -= 1900;
707aa3be5f3STony Breeds 	tm.tm_mon -= 1;
708aa3be5f3STony Breeds 
709aa3be5f3STony Breeds 	return ppc_md.set_rtc_time(&tm);
710aa3be5f3STony Breeds }
711aa3be5f3STony Breeds 
712aa3be5f3STony Breeds unsigned long read_persistent_clock(void)
713aa3be5f3STony Breeds {
714aa3be5f3STony Breeds 	struct rtc_time tm;
715aa3be5f3STony Breeds 	static int first = 1;
716aa3be5f3STony Breeds 
717aa3be5f3STony Breeds 	/* XXX this is a litle fragile but will work okay in the short term */
718aa3be5f3STony Breeds 	if (first) {
719aa3be5f3STony Breeds 		first = 0;
720aa3be5f3STony Breeds 		if (ppc_md.time_init)
721aa3be5f3STony Breeds 			timezone_offset = ppc_md.time_init();
722aa3be5f3STony Breeds 
723aa3be5f3STony Breeds 		/* get_boot_time() isn't guaranteed to be safe to call late */
724f2783c15SPaul Mackerras 		if (ppc_md.get_boot_time)
725aa3be5f3STony Breeds 			return ppc_md.get_boot_time() -timezone_offset;
726aa3be5f3STony Breeds 	}
727f2783c15SPaul Mackerras 	if (!ppc_md.get_rtc_time)
728f2783c15SPaul Mackerras 		return 0;
729f2783c15SPaul Mackerras 	ppc_md.get_rtc_time(&tm);
730f2783c15SPaul Mackerras 	return mktime(tm.tm_year+1900, tm.tm_mon+1, tm.tm_mday,
731f2783c15SPaul Mackerras 		      tm.tm_hour, tm.tm_min, tm.tm_sec);
732f2783c15SPaul Mackerras }
733f2783c15SPaul Mackerras 
7344a4cfe38STony Breeds /* clocksource code */
7354a4cfe38STony Breeds static cycle_t rtc_read(void)
7364a4cfe38STony Breeds {
7374a4cfe38STony Breeds 	return (cycle_t)get_rtc();
7384a4cfe38STony Breeds }
7394a4cfe38STony Breeds 
7404a4cfe38STony Breeds static cycle_t timebase_read(void)
7414a4cfe38STony Breeds {
7424a4cfe38STony Breeds 	return (cycle_t)get_tb();
7434a4cfe38STony Breeds }
7444a4cfe38STony Breeds 
7454a4cfe38STony Breeds void update_vsyscall(struct timespec *wall_time, struct clocksource *clock)
7464a4cfe38STony Breeds {
7474a4cfe38STony Breeds 	u64 t2x, stamp_xsec;
7484a4cfe38STony Breeds 
7494a4cfe38STony Breeds 	if (clock != &clocksource_timebase)
7504a4cfe38STony Breeds 		return;
7514a4cfe38STony Breeds 
7524a4cfe38STony Breeds 	/* Make userspace gettimeofday spin until we're done. */
7534a4cfe38STony Breeds 	++vdso_data->tb_update_count;
7544a4cfe38STony Breeds 	smp_mb();
7554a4cfe38STony Breeds 
7564a4cfe38STony Breeds 	/* XXX this assumes clock->shift == 22 */
7574a4cfe38STony Breeds 	/* 4611686018 ~= 2^(20+64-22) / 1e9 */
7584a4cfe38STony Breeds 	t2x = (u64) clock->mult * 4611686018ULL;
7594a4cfe38STony Breeds 	stamp_xsec = (u64) xtime.tv_nsec * XSEC_PER_SEC;
7604a4cfe38STony Breeds 	do_div(stamp_xsec, 1000000000);
7614a4cfe38STony Breeds 	stamp_xsec += (u64) xtime.tv_sec * XSEC_PER_SEC;
7624a4cfe38STony Breeds 	update_gtod(clock->cycle_last, stamp_xsec, t2x);
7634a4cfe38STony Breeds }
7644a4cfe38STony Breeds 
7654a4cfe38STony Breeds void update_vsyscall_tz(void)
7664a4cfe38STony Breeds {
7674a4cfe38STony Breeds 	/* Make userspace gettimeofday spin until we're done. */
7684a4cfe38STony Breeds 	++vdso_data->tb_update_count;
7694a4cfe38STony Breeds 	smp_mb();
7704a4cfe38STony Breeds 	vdso_data->tz_minuteswest = sys_tz.tz_minuteswest;
7714a4cfe38STony Breeds 	vdso_data->tz_dsttime = sys_tz.tz_dsttime;
7724a4cfe38STony Breeds 	smp_mb();
7734a4cfe38STony Breeds 	++vdso_data->tb_update_count;
7744a4cfe38STony Breeds }
7754a4cfe38STony Breeds 
7764a4cfe38STony Breeds void __init clocksource_init(void)
7774a4cfe38STony Breeds {
7784a4cfe38STony Breeds 	struct clocksource *clock;
7794a4cfe38STony Breeds 
7804a4cfe38STony Breeds 	if (__USE_RTC())
7814a4cfe38STony Breeds 		clock = &clocksource_rtc;
7824a4cfe38STony Breeds 	else
7834a4cfe38STony Breeds 		clock = &clocksource_timebase;
7844a4cfe38STony Breeds 
7854a4cfe38STony Breeds 	clock->mult = clocksource_hz2mult(tb_ticks_per_sec, clock->shift);
7864a4cfe38STony Breeds 
7874a4cfe38STony Breeds 	if (clocksource_register(clock)) {
7884a4cfe38STony Breeds 		printk(KERN_ERR "clocksource: %s is already registered\n",
7894a4cfe38STony Breeds 		       clock->name);
7904a4cfe38STony Breeds 		return;
7914a4cfe38STony Breeds 	}
7924a4cfe38STony Breeds 
7934a4cfe38STony Breeds 	printk(KERN_INFO "clocksource: %s mult[%x] shift[%d] registered\n",
7944a4cfe38STony Breeds 	       clock->name, clock->mult, clock->shift);
7954a4cfe38STony Breeds }
7964a4cfe38STony Breeds 
797*d831d0b8STony Breeds static int decrementer_set_next_event(unsigned long evt,
798*d831d0b8STony Breeds 				      struct clock_event_device *dev)
799*d831d0b8STony Breeds {
800*d831d0b8STony Breeds 	set_dec(evt);
801*d831d0b8STony Breeds 	return 0;
802*d831d0b8STony Breeds }
803*d831d0b8STony Breeds 
804*d831d0b8STony Breeds static void decrementer_set_mode(enum clock_event_mode mode,
805*d831d0b8STony Breeds 				 struct clock_event_device *dev)
806*d831d0b8STony Breeds {
807*d831d0b8STony Breeds 	if (mode != CLOCK_EVT_MODE_ONESHOT)
808*d831d0b8STony Breeds 		decrementer_set_next_event(DECREMENTER_MAX, dev);
809*d831d0b8STony Breeds }
810*d831d0b8STony Breeds 
811*d831d0b8STony Breeds static void register_decrementer_clockevent(int cpu)
812*d831d0b8STony Breeds {
813*d831d0b8STony Breeds 	struct clock_event_device *dec = &per_cpu(decrementers, cpu);
814*d831d0b8STony Breeds 
815*d831d0b8STony Breeds 	*dec = decrementer_clockevent;
816*d831d0b8STony Breeds 	dec->cpumask = cpumask_of_cpu(cpu);
817*d831d0b8STony Breeds 
818*d831d0b8STony Breeds 	printk(KERN_ERR "clockevent: %s mult[%lx] shift[%d] cpu[%d]\n",
819*d831d0b8STony Breeds 	       dec->name, dec->mult, dec->shift, cpu);
820*d831d0b8STony Breeds 
821*d831d0b8STony Breeds 	clockevents_register_device(dec);
822*d831d0b8STony Breeds }
823*d831d0b8STony Breeds 
824*d831d0b8STony Breeds void init_decrementer_clockevent(void)
825*d831d0b8STony Breeds {
826*d831d0b8STony Breeds 	int cpu = smp_processor_id();
827*d831d0b8STony Breeds 
828*d831d0b8STony Breeds 	decrementer_clockevent.mult = div_sc(ppc_tb_freq, NSEC_PER_SEC,
829*d831d0b8STony Breeds 					     decrementer_clockevent.shift);
830*d831d0b8STony Breeds 	decrementer_clockevent.max_delta_ns =
831*d831d0b8STony Breeds 		clockevent_delta2ns(DECREMENTER_MAX, &decrementer_clockevent);
832*d831d0b8STony Breeds 	decrementer_clockevent.min_delta_ns = 1000;
833*d831d0b8STony Breeds 
834*d831d0b8STony Breeds 	register_decrementer_clockevent(cpu);
835*d831d0b8STony Breeds }
836*d831d0b8STony Breeds 
837*d831d0b8STony Breeds void secondary_cpu_time_init(void)
838*d831d0b8STony Breeds {
839*d831d0b8STony Breeds 	/* FIME: Should make unrelatred change to move snapshot_timebase
840*d831d0b8STony Breeds 	 * call here ! */
841*d831d0b8STony Breeds 	register_decrementer_clockevent(smp_processor_id());
842*d831d0b8STony Breeds }
843*d831d0b8STony Breeds 
844f2783c15SPaul Mackerras /* This function is only called on the boot processor */
845f2783c15SPaul Mackerras void __init time_init(void)
846f2783c15SPaul Mackerras {
847f2783c15SPaul Mackerras 	unsigned long flags;
848f2783c15SPaul Mackerras 	struct div_result res;
849092b8f34SPaul Mackerras 	u64 scale, x;
850f2783c15SPaul Mackerras 	unsigned shift;
851f2783c15SPaul Mackerras 
85296c44507SPaul Mackerras 	if (__USE_RTC()) {
85396c44507SPaul Mackerras 		/* 601 processor: dec counts down by 128 every 128ns */
85496c44507SPaul Mackerras 		ppc_tb_freq = 1000000000;
855eb36c288SPaul Mackerras 		tb_last_jiffy = get_rtcl();
85696c44507SPaul Mackerras 	} else {
85796c44507SPaul Mackerras 		/* Normal PowerPC with timebase register */
858f2783c15SPaul Mackerras 		ppc_md.calibrate_decr();
859224ad80aSOlof Johansson 		printk(KERN_DEBUG "time_init: decrementer frequency = %lu.%.6lu MHz\n",
860374e99d4SPaul Mackerras 		       ppc_tb_freq / 1000000, ppc_tb_freq % 1000000);
861224ad80aSOlof Johansson 		printk(KERN_DEBUG "time_init: processor frequency   = %lu.%.6lu MHz\n",
862374e99d4SPaul Mackerras 		       ppc_proc_freq / 1000000, ppc_proc_freq % 1000000);
863eb36c288SPaul Mackerras 		tb_last_jiffy = get_tb();
86496c44507SPaul Mackerras 	}
865374e99d4SPaul Mackerras 
866374e99d4SPaul Mackerras 	tb_ticks_per_jiffy = ppc_tb_freq / HZ;
867092b8f34SPaul Mackerras 	tb_ticks_per_sec = ppc_tb_freq;
868374e99d4SPaul Mackerras 	tb_ticks_per_usec = ppc_tb_freq / 1000000;
869374e99d4SPaul Mackerras 	tb_to_us = mulhwu_scale_factor(ppc_tb_freq, 1000000);
870c6622f63SPaul Mackerras 	calc_cputime_factors();
871092b8f34SPaul Mackerras 
872092b8f34SPaul Mackerras 	/*
873092b8f34SPaul Mackerras 	 * Calculate the length of each tick in ns.  It will not be
874092b8f34SPaul Mackerras 	 * exactly 1e9/HZ unless ppc_tb_freq is divisible by HZ.
875092b8f34SPaul Mackerras 	 * We compute 1e9 * tb_ticks_per_jiffy / ppc_tb_freq,
876092b8f34SPaul Mackerras 	 * rounded up.
877092b8f34SPaul Mackerras 	 */
878092b8f34SPaul Mackerras 	x = (u64) NSEC_PER_SEC * tb_ticks_per_jiffy + ppc_tb_freq - 1;
879092b8f34SPaul Mackerras 	do_div(x, ppc_tb_freq);
880092b8f34SPaul Mackerras 	tick_nsec = x;
881092b8f34SPaul Mackerras 	last_tick_len = x << TICKLEN_SCALE;
882092b8f34SPaul Mackerras 
883092b8f34SPaul Mackerras 	/*
884092b8f34SPaul Mackerras 	 * Compute ticklen_to_xs, which is a factor which gets multiplied
885092b8f34SPaul Mackerras 	 * by (last_tick_len << TICKLEN_SHIFT) to get a tb_to_xs value.
886092b8f34SPaul Mackerras 	 * It is computed as:
887092b8f34SPaul Mackerras 	 * ticklen_to_xs = 2^N / (tb_ticks_per_jiffy * 1e9)
888092b8f34SPaul Mackerras 	 * where N = 64 + 20 - TICKLEN_SCALE - TICKLEN_SHIFT
8890a45d449SPaul Mackerras 	 * which turns out to be N = 51 - SHIFT_HZ.
8900a45d449SPaul Mackerras 	 * This gives the result as a 0.64 fixed-point fraction.
8910a45d449SPaul Mackerras 	 * That value is reduced by an offset amounting to 1 xsec per
8920a45d449SPaul Mackerras 	 * 2^31 timebase ticks to avoid problems with time going backwards
8930a45d449SPaul Mackerras 	 * by 1 xsec when we do timer_recalc_offset due to losing the
8940a45d449SPaul Mackerras 	 * fractional xsec.  That offset is equal to ppc_tb_freq/2^51
8950a45d449SPaul Mackerras 	 * since there are 2^20 xsec in a second.
896092b8f34SPaul Mackerras 	 */
8970a45d449SPaul Mackerras 	div128_by_32((1ULL << 51) - ppc_tb_freq, 0,
8980a45d449SPaul Mackerras 		     tb_ticks_per_jiffy << SHIFT_HZ, &res);
899092b8f34SPaul Mackerras 	div128_by_32(res.result_high, res.result_low, NSEC_PER_SEC, &res);
900092b8f34SPaul Mackerras 	ticklen_to_xs = res.result_low;
901092b8f34SPaul Mackerras 
902092b8f34SPaul Mackerras 	/* Compute tb_to_xs from tick_nsec */
903092b8f34SPaul Mackerras 	tb_to_xs = mulhdu(last_tick_len << TICKLEN_SHIFT, ticklen_to_xs);
904374e99d4SPaul Mackerras 
905f2783c15SPaul Mackerras 	/*
906f2783c15SPaul Mackerras 	 * Compute scale factor for sched_clock.
907f2783c15SPaul Mackerras 	 * The calibrate_decr() function has set tb_ticks_per_sec,
908f2783c15SPaul Mackerras 	 * which is the timebase frequency.
909f2783c15SPaul Mackerras 	 * We compute 1e9 * 2^64 / tb_ticks_per_sec and interpret
910f2783c15SPaul Mackerras 	 * the 128-bit result as a 64.64 fixed-point number.
911f2783c15SPaul Mackerras 	 * We then shift that number right until it is less than 1.0,
912f2783c15SPaul Mackerras 	 * giving us the scale factor and shift count to use in
913f2783c15SPaul Mackerras 	 * sched_clock().
914f2783c15SPaul Mackerras 	 */
915f2783c15SPaul Mackerras 	div128_by_32(1000000000, 0, tb_ticks_per_sec, &res);
916f2783c15SPaul Mackerras 	scale = res.result_low;
917f2783c15SPaul Mackerras 	for (shift = 0; res.result_high != 0; ++shift) {
918f2783c15SPaul Mackerras 		scale = (scale >> 1) | (res.result_high << 63);
919f2783c15SPaul Mackerras 		res.result_high >>= 1;
920f2783c15SPaul Mackerras 	}
921f2783c15SPaul Mackerras 	tb_to_ns_scale = scale;
922f2783c15SPaul Mackerras 	tb_to_ns_shift = shift;
923fc9069feSTony Breeds 	/* Save the current timebase to pretty up CONFIG_PRINTK_TIME */
924c27da339SBenjamin Herrenschmidt 	boot_tb = get_tb_or_rtc();
925f2783c15SPaul Mackerras 
926f2783c15SPaul Mackerras 	write_seqlock_irqsave(&xtime_lock, flags);
927092b8f34SPaul Mackerras 
928092b8f34SPaul Mackerras 	/* If platform provided a timezone (pmac), we correct the time */
929092b8f34SPaul Mackerras         if (timezone_offset) {
930092b8f34SPaul Mackerras 		sys_tz.tz_minuteswest = -timezone_offset / 60;
931092b8f34SPaul Mackerras 		sys_tz.tz_dsttime = 0;
932092b8f34SPaul Mackerras         }
933092b8f34SPaul Mackerras 
934f2783c15SPaul Mackerras 	do_gtod.varp = &do_gtod.vars[0];
935f2783c15SPaul Mackerras 	do_gtod.var_idx = 0;
93696c44507SPaul Mackerras 	do_gtod.varp->tb_orig_stamp = tb_last_jiffy;
937eb36c288SPaul Mackerras 	__get_cpu_var(last_jiffy) = tb_last_jiffy;
938f2783c15SPaul Mackerras 	do_gtod.varp->stamp_xsec = (u64) xtime.tv_sec * XSEC_PER_SEC;
939f2783c15SPaul Mackerras 	do_gtod.tb_ticks_per_sec = tb_ticks_per_sec;
940f2783c15SPaul Mackerras 	do_gtod.varp->tb_to_xs = tb_to_xs;
941f2783c15SPaul Mackerras 	do_gtod.tb_to_us = tb_to_us;
942a7f290daSBenjamin Herrenschmidt 
943a7f290daSBenjamin Herrenschmidt 	vdso_data->tb_orig_stamp = tb_last_jiffy;
944a7f290daSBenjamin Herrenschmidt 	vdso_data->tb_update_count = 0;
945a7f290daSBenjamin Herrenschmidt 	vdso_data->tb_ticks_per_sec = tb_ticks_per_sec;
946092b8f34SPaul Mackerras 	vdso_data->stamp_xsec = (u64) xtime.tv_sec * XSEC_PER_SEC;
947a7f290daSBenjamin Herrenschmidt 	vdso_data->tb_to_xs = tb_to_xs;
948f2783c15SPaul Mackerras 
949f2783c15SPaul Mackerras 	time_freq = 0;
950f2783c15SPaul Mackerras 
951f2783c15SPaul Mackerras 	write_sequnlock_irqrestore(&xtime_lock, flags);
952f2783c15SPaul Mackerras 
9534a4cfe38STony Breeds 	/* Register the clocksource, if we're not running on iSeries */
9544a4cfe38STony Breeds 	if (!firmware_has_feature(FW_FEATURE_ISERIES))
9554a4cfe38STony Breeds 		clocksource_init();
9564a4cfe38STony Breeds 
957*d831d0b8STony Breeds 	init_decrementer_clockevent();
958f2783c15SPaul Mackerras }
959f2783c15SPaul Mackerras 
960f2783c15SPaul Mackerras 
961f2783c15SPaul Mackerras #define FEBRUARY	2
962f2783c15SPaul Mackerras #define	STARTOFTIME	1970
963f2783c15SPaul Mackerras #define SECDAY		86400L
964f2783c15SPaul Mackerras #define SECYR		(SECDAY * 365)
965f2783c15SPaul Mackerras #define	leapyear(year)		((year) % 4 == 0 && \
966f2783c15SPaul Mackerras 				 ((year) % 100 != 0 || (year) % 400 == 0))
967f2783c15SPaul Mackerras #define	days_in_year(a) 	(leapyear(a) ? 366 : 365)
968f2783c15SPaul Mackerras #define	days_in_month(a) 	(month_days[(a) - 1])
969f2783c15SPaul Mackerras 
970f2783c15SPaul Mackerras static int month_days[12] = {
971f2783c15SPaul Mackerras 	31, 28, 31, 30, 31, 30, 31, 31, 30, 31, 30, 31
972f2783c15SPaul Mackerras };
973f2783c15SPaul Mackerras 
974f2783c15SPaul Mackerras /*
975f2783c15SPaul Mackerras  * This only works for the Gregorian calendar - i.e. after 1752 (in the UK)
976f2783c15SPaul Mackerras  */
977f2783c15SPaul Mackerras void GregorianDay(struct rtc_time * tm)
978f2783c15SPaul Mackerras {
979f2783c15SPaul Mackerras 	int leapsToDate;
980f2783c15SPaul Mackerras 	int lastYear;
981f2783c15SPaul Mackerras 	int day;
982f2783c15SPaul Mackerras 	int MonthOffset[] = { 0, 31, 59, 90, 120, 151, 181, 212, 243, 273, 304, 334 };
983f2783c15SPaul Mackerras 
984f2783c15SPaul Mackerras 	lastYear = tm->tm_year - 1;
985f2783c15SPaul Mackerras 
986f2783c15SPaul Mackerras 	/*
987f2783c15SPaul Mackerras 	 * Number of leap corrections to apply up to end of last year
988f2783c15SPaul Mackerras 	 */
989f2783c15SPaul Mackerras 	leapsToDate = lastYear / 4 - lastYear / 100 + lastYear / 400;
990f2783c15SPaul Mackerras 
991f2783c15SPaul Mackerras 	/*
992f2783c15SPaul Mackerras 	 * This year is a leap year if it is divisible by 4 except when it is
993f2783c15SPaul Mackerras 	 * divisible by 100 unless it is divisible by 400
994f2783c15SPaul Mackerras 	 *
995f2783c15SPaul Mackerras 	 * e.g. 1904 was a leap year, 1900 was not, 1996 is, and 2000 was
996f2783c15SPaul Mackerras 	 */
997f2783c15SPaul Mackerras 	day = tm->tm_mon > 2 && leapyear(tm->tm_year);
998f2783c15SPaul Mackerras 
999f2783c15SPaul Mackerras 	day += lastYear*365 + leapsToDate + MonthOffset[tm->tm_mon-1] +
1000f2783c15SPaul Mackerras 		   tm->tm_mday;
1001f2783c15SPaul Mackerras 
1002f2783c15SPaul Mackerras 	tm->tm_wday = day % 7;
1003f2783c15SPaul Mackerras }
1004f2783c15SPaul Mackerras 
1005f2783c15SPaul Mackerras void to_tm(int tim, struct rtc_time * tm)
1006f2783c15SPaul Mackerras {
1007f2783c15SPaul Mackerras 	register int    i;
1008f2783c15SPaul Mackerras 	register long   hms, day;
1009f2783c15SPaul Mackerras 
1010f2783c15SPaul Mackerras 	day = tim / SECDAY;
1011f2783c15SPaul Mackerras 	hms = tim % SECDAY;
1012f2783c15SPaul Mackerras 
1013f2783c15SPaul Mackerras 	/* Hours, minutes, seconds are easy */
1014f2783c15SPaul Mackerras 	tm->tm_hour = hms / 3600;
1015f2783c15SPaul Mackerras 	tm->tm_min = (hms % 3600) / 60;
1016f2783c15SPaul Mackerras 	tm->tm_sec = (hms % 3600) % 60;
1017f2783c15SPaul Mackerras 
1018f2783c15SPaul Mackerras 	/* Number of years in days */
1019f2783c15SPaul Mackerras 	for (i = STARTOFTIME; day >= days_in_year(i); i++)
1020f2783c15SPaul Mackerras 		day -= days_in_year(i);
1021f2783c15SPaul Mackerras 	tm->tm_year = i;
1022f2783c15SPaul Mackerras 
1023f2783c15SPaul Mackerras 	/* Number of months in days left */
1024f2783c15SPaul Mackerras 	if (leapyear(tm->tm_year))
1025f2783c15SPaul Mackerras 		days_in_month(FEBRUARY) = 29;
1026f2783c15SPaul Mackerras 	for (i = 1; day >= days_in_month(i); i++)
1027f2783c15SPaul Mackerras 		day -= days_in_month(i);
1028f2783c15SPaul Mackerras 	days_in_month(FEBRUARY) = 28;
1029f2783c15SPaul Mackerras 	tm->tm_mon = i;
1030f2783c15SPaul Mackerras 
1031f2783c15SPaul Mackerras 	/* Days are what is left over (+1) from all that. */
1032f2783c15SPaul Mackerras 	tm->tm_mday = day + 1;
1033f2783c15SPaul Mackerras 
1034f2783c15SPaul Mackerras 	/*
1035f2783c15SPaul Mackerras 	 * Determine the day of week
1036f2783c15SPaul Mackerras 	 */
1037f2783c15SPaul Mackerras 	GregorianDay(tm);
1038f2783c15SPaul Mackerras }
1039f2783c15SPaul Mackerras 
1040f2783c15SPaul Mackerras /* Auxiliary function to compute scaling factors */
1041f2783c15SPaul Mackerras /* Actually the choice of a timebase running at 1/4 the of the bus
1042f2783c15SPaul Mackerras  * frequency giving resolution of a few tens of nanoseconds is quite nice.
1043f2783c15SPaul Mackerras  * It makes this computation very precise (27-28 bits typically) which
1044f2783c15SPaul Mackerras  * is optimistic considering the stability of most processor clock
1045f2783c15SPaul Mackerras  * oscillators and the precision with which the timebase frequency
1046f2783c15SPaul Mackerras  * is measured but does not harm.
1047f2783c15SPaul Mackerras  */
1048f2783c15SPaul Mackerras unsigned mulhwu_scale_factor(unsigned inscale, unsigned outscale)
1049f2783c15SPaul Mackerras {
1050f2783c15SPaul Mackerras         unsigned mlt=0, tmp, err;
1051f2783c15SPaul Mackerras         /* No concern for performance, it's done once: use a stupid
1052f2783c15SPaul Mackerras          * but safe and compact method to find the multiplier.
1053f2783c15SPaul Mackerras          */
1054f2783c15SPaul Mackerras 
1055f2783c15SPaul Mackerras         for (tmp = 1U<<31; tmp != 0; tmp >>= 1) {
1056f2783c15SPaul Mackerras                 if (mulhwu(inscale, mlt|tmp) < outscale)
1057f2783c15SPaul Mackerras 			mlt |= tmp;
1058f2783c15SPaul Mackerras         }
1059f2783c15SPaul Mackerras 
1060f2783c15SPaul Mackerras         /* We might still be off by 1 for the best approximation.
1061f2783c15SPaul Mackerras          * A side effect of this is that if outscale is too large
1062f2783c15SPaul Mackerras          * the returned value will be zero.
1063f2783c15SPaul Mackerras          * Many corner cases have been checked and seem to work,
1064f2783c15SPaul Mackerras          * some might have been forgotten in the test however.
1065f2783c15SPaul Mackerras          */
1066f2783c15SPaul Mackerras 
1067f2783c15SPaul Mackerras         err = inscale * (mlt+1);
1068f2783c15SPaul Mackerras         if (err <= inscale/2)
1069f2783c15SPaul Mackerras 		mlt++;
1070f2783c15SPaul Mackerras         return mlt;
1071f2783c15SPaul Mackerras }
1072f2783c15SPaul Mackerras 
1073f2783c15SPaul Mackerras /*
1074f2783c15SPaul Mackerras  * Divide a 128-bit dividend by a 32-bit divisor, leaving a 128 bit
1075f2783c15SPaul Mackerras  * result.
1076f2783c15SPaul Mackerras  */
1077f2783c15SPaul Mackerras void div128_by_32(u64 dividend_high, u64 dividend_low,
1078f2783c15SPaul Mackerras 		  unsigned divisor, struct div_result *dr)
1079f2783c15SPaul Mackerras {
1080f2783c15SPaul Mackerras 	unsigned long a, b, c, d;
1081f2783c15SPaul Mackerras 	unsigned long w, x, y, z;
1082f2783c15SPaul Mackerras 	u64 ra, rb, rc;
1083f2783c15SPaul Mackerras 
1084f2783c15SPaul Mackerras 	a = dividend_high >> 32;
1085f2783c15SPaul Mackerras 	b = dividend_high & 0xffffffff;
1086f2783c15SPaul Mackerras 	c = dividend_low >> 32;
1087f2783c15SPaul Mackerras 	d = dividend_low & 0xffffffff;
1088f2783c15SPaul Mackerras 
1089f2783c15SPaul Mackerras 	w = a / divisor;
1090f2783c15SPaul Mackerras 	ra = ((u64)(a - (w * divisor)) << 32) + b;
1091f2783c15SPaul Mackerras 
1092f2783c15SPaul Mackerras 	rb = ((u64) do_div(ra, divisor) << 32) + c;
1093f2783c15SPaul Mackerras 	x = ra;
1094f2783c15SPaul Mackerras 
1095f2783c15SPaul Mackerras 	rc = ((u64) do_div(rb, divisor) << 32) + d;
1096f2783c15SPaul Mackerras 	y = rb;
1097f2783c15SPaul Mackerras 
1098f2783c15SPaul Mackerras 	do_div(rc, divisor);
1099f2783c15SPaul Mackerras 	z = rc;
1100f2783c15SPaul Mackerras 
1101f2783c15SPaul Mackerras 	dr->result_high = ((u64)w << 32) + x;
1102f2783c15SPaul Mackerras 	dr->result_low  = ((u64)y << 32) + z;
1103f2783c15SPaul Mackerras 
1104f2783c15SPaul Mackerras }
1105