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, 11481759360SAnton Blanchard .set_state_oneshot_stopped = decrementer_shutdown, 11537a13e78SViresh Kumar .set_state_shutdown = decrementer_shutdown, 11637a13e78SViresh Kumar .tick_resume = decrementer_shutdown, 11737a13e78SViresh Kumar .features = CLOCK_EVT_FEAT_ONESHOT | 11837a13e78SViresh Kumar CLOCK_EVT_FEAT_C3STOP, 119d831d0b8STony Breeds }; 1206e35994dSBharat Bhushan EXPORT_SYMBOL(decrementer_clockevent); 121d831d0b8STony Breeds 1227df10275SAnton Blanchard DEFINE_PER_CPU(u64, decrementers_next_tb); 1237df10275SAnton Blanchard static DEFINE_PER_CPU(struct clock_event_device, decrementers); 124d831d0b8STony Breeds 125f2783c15SPaul Mackerras #define XSEC_PER_SEC (1024*1024) 126f2783c15SPaul Mackerras 127f2783c15SPaul Mackerras #ifdef CONFIG_PPC64 128f2783c15SPaul Mackerras #define SCALE_XSEC(xsec, max) (((xsec) * max) / XSEC_PER_SEC) 129f2783c15SPaul Mackerras #else 130f2783c15SPaul Mackerras /* compute ((xsec << 12) * max) >> 32 */ 131f2783c15SPaul Mackerras #define SCALE_XSEC(xsec, max) mulhwu((xsec) << 12, max) 132f2783c15SPaul Mackerras #endif 133f2783c15SPaul Mackerras 134f2783c15SPaul Mackerras unsigned long tb_ticks_per_jiffy; 135f2783c15SPaul Mackerras unsigned long tb_ticks_per_usec = 100; /* sane default */ 136f2783c15SPaul Mackerras EXPORT_SYMBOL(tb_ticks_per_usec); 137f2783c15SPaul Mackerras unsigned long tb_ticks_per_sec; 1382cf82c02SPaul Mackerras EXPORT_SYMBOL(tb_ticks_per_sec); /* for cputime_t conversions */ 139092b8f34SPaul Mackerras 140f2783c15SPaul Mackerras DEFINE_SPINLOCK(rtc_lock); 141f2783c15SPaul Mackerras EXPORT_SYMBOL_GPL(rtc_lock); 142f2783c15SPaul Mackerras 143fc9069feSTony Breeds static u64 tb_to_ns_scale __read_mostly; 144fc9069feSTony Breeds static unsigned tb_to_ns_shift __read_mostly; 145364a1246SHeiko Schocher static u64 boot_tb __read_mostly; 146f2783c15SPaul Mackerras 147f2783c15SPaul Mackerras extern struct timezone sys_tz; 148f2783c15SPaul Mackerras static long timezone_offset; 149f2783c15SPaul Mackerras 150f2783c15SPaul Mackerras unsigned long ppc_proc_freq; 15155ec2fcaSTimur Tabi EXPORT_SYMBOL_GPL(ppc_proc_freq); 152f2783c15SPaul Mackerras unsigned long ppc_tb_freq; 15355ec2fcaSTimur Tabi EXPORT_SYMBOL_GPL(ppc_tb_freq); 15496c44507SPaul Mackerras 155abf917cdSFrederic Weisbecker #ifdef CONFIG_VIRT_CPU_ACCOUNTING_NATIVE 156c6622f63SPaul Mackerras /* 157e7f340caSFrederic Weisbecker * Factor for converting from cputime_t (timebase ticks) to 158e7f340caSFrederic Weisbecker * microseconds. This is stored as 0.64 fixed-point binary fraction. 159c6622f63SPaul Mackerras */ 1609f5072d4SAndreas Schwab u64 __cputime_usec_factor; 1619f5072d4SAndreas Schwab EXPORT_SYMBOL(__cputime_usec_factor); 162a42548a1SStanislaw Gruszka 163c223c903SChristophe Leroy #ifdef CONFIG_PPC_SPLPAR 164872e439aSPaul Mackerras void (*dtl_consumer)(struct dtl_entry *, u64); 165c223c903SChristophe Leroy #endif 166c223c903SChristophe Leroy 167c6622f63SPaul Mackerras static void calc_cputime_factors(void) 168c6622f63SPaul Mackerras { 169c6622f63SPaul Mackerras struct div_result res; 170c6622f63SPaul Mackerras 1719f5072d4SAndreas Schwab div128_by_32(1000000, 0, tb_ticks_per_sec, &res); 1729f5072d4SAndreas Schwab __cputime_usec_factor = res.result_low; 173c6622f63SPaul Mackerras } 174c6622f63SPaul Mackerras 175c6622f63SPaul Mackerras /* 176cf9efce0SPaul Mackerras * Read the SPURR on systems that have it, otherwise the PURR, 177cf9efce0SPaul Mackerras * or if that doesn't exist return the timebase value passed in. 178c6622f63SPaul Mackerras */ 179*abcff86dSChristophe Leroy static inline unsigned long read_spurr(unsigned long tb) 180c6622f63SPaul Mackerras { 181cf9efce0SPaul Mackerras if (cpu_has_feature(CPU_FTR_SPURR)) 182cf9efce0SPaul Mackerras return mfspr(SPRN_SPURR); 183c6622f63SPaul Mackerras if (cpu_has_feature(CPU_FTR_PURR)) 184c6622f63SPaul Mackerras return mfspr(SPRN_PURR); 185cf9efce0SPaul Mackerras return tb; 186cf9efce0SPaul Mackerras } 187cf9efce0SPaul Mackerras 188cf9efce0SPaul Mackerras #ifdef CONFIG_PPC_SPLPAR 189cf9efce0SPaul Mackerras 190cf9efce0SPaul Mackerras /* 191cf9efce0SPaul Mackerras * Scan the dispatch trace log and count up the stolen time. 192cf9efce0SPaul Mackerras * Should be called with interrupts disabled. 193cf9efce0SPaul Mackerras */ 194cf9efce0SPaul Mackerras static u64 scan_dispatch_log(u64 stop_tb) 195cf9efce0SPaul Mackerras { 196872e439aSPaul Mackerras u64 i = local_paca->dtl_ridx; 197cf9efce0SPaul Mackerras struct dtl_entry *dtl = local_paca->dtl_curr; 198cf9efce0SPaul Mackerras struct dtl_entry *dtl_end = local_paca->dispatch_log_end; 199cf9efce0SPaul Mackerras struct lppaca *vpa = local_paca->lppaca_ptr; 200cf9efce0SPaul Mackerras u64 tb_delta; 201cf9efce0SPaul Mackerras u64 stolen = 0; 202cf9efce0SPaul Mackerras u64 dtb; 203cf9efce0SPaul Mackerras 20484ffae55SAnton Blanchard if (!dtl) 20584ffae55SAnton Blanchard return 0; 20684ffae55SAnton Blanchard 2077ffcf8ecSAnton Blanchard if (i == be64_to_cpu(vpa->dtl_idx)) 208cf9efce0SPaul Mackerras return 0; 2097ffcf8ecSAnton Blanchard while (i < be64_to_cpu(vpa->dtl_idx)) { 2107ffcf8ecSAnton Blanchard dtb = be64_to_cpu(dtl->timebase); 2117ffcf8ecSAnton Blanchard tb_delta = be32_to_cpu(dtl->enqueue_to_dispatch_time) + 2127ffcf8ecSAnton Blanchard be32_to_cpu(dtl->ready_to_enqueue_time); 213cf9efce0SPaul Mackerras barrier(); 2147ffcf8ecSAnton Blanchard if (i + N_DISPATCH_LOG < be64_to_cpu(vpa->dtl_idx)) { 215cf9efce0SPaul Mackerras /* buffer has overflowed */ 2167ffcf8ecSAnton Blanchard i = be64_to_cpu(vpa->dtl_idx) - N_DISPATCH_LOG; 217cf9efce0SPaul Mackerras dtl = local_paca->dispatch_log + (i % N_DISPATCH_LOG); 218cf9efce0SPaul Mackerras continue; 219cf9efce0SPaul Mackerras } 220cf9efce0SPaul Mackerras if (dtb > stop_tb) 221cf9efce0SPaul Mackerras break; 22284b07386SAnton Blanchard if (dtl_consumer) 22384b07386SAnton Blanchard dtl_consumer(dtl, i); 224cf9efce0SPaul Mackerras stolen += tb_delta; 225cf9efce0SPaul Mackerras ++i; 226cf9efce0SPaul Mackerras ++dtl; 227cf9efce0SPaul Mackerras if (dtl == dtl_end) 228cf9efce0SPaul Mackerras dtl = local_paca->dispatch_log; 229cf9efce0SPaul Mackerras } 230cf9efce0SPaul Mackerras local_paca->dtl_ridx = i; 231cf9efce0SPaul Mackerras local_paca->dtl_curr = dtl; 232cf9efce0SPaul Mackerras return stolen; 233c6622f63SPaul Mackerras } 234c6622f63SPaul Mackerras 235c6622f63SPaul Mackerras /* 236cf9efce0SPaul Mackerras * Accumulate stolen time by scanning the dispatch trace log. 237cf9efce0SPaul Mackerras * Called on entry from user mode. 2384603ac18SMichael Neuling */ 239cf9efce0SPaul Mackerras void accumulate_stolen_time(void) 2404603ac18SMichael Neuling { 241cf9efce0SPaul Mackerras u64 sst, ust; 2424e26bc4aSMadhavan Srinivasan unsigned long save_irq_soft_mask = irq_soft_mask_return(); 243c223c903SChristophe Leroy struct cpu_accounting_data *acct = &local_paca->accounting; 244b18ae08dSTejun Heo 245b18ae08dSTejun Heo /* We are called early in the exception entry, before 246b18ae08dSTejun Heo * soft/hard_enabled are sync'ed to the expected state 247b18ae08dSTejun Heo * for the exception. We are hard disabled but the PACA 248b18ae08dSTejun Heo * needs to reflect that so various debug stuff doesn't 249b18ae08dSTejun Heo * complain 250b18ae08dSTejun Heo */ 2514e26bc4aSMadhavan Srinivasan irq_soft_mask_set(IRQS_DISABLED); 252b18ae08dSTejun Heo 253c223c903SChristophe Leroy sst = scan_dispatch_log(acct->starttime_user); 254c223c903SChristophe Leroy ust = scan_dispatch_log(acct->starttime); 2558c8b73c4SFrederic Weisbecker acct->stime -= sst; 2568c8b73c4SFrederic Weisbecker acct->utime -= ust; 257f828c3d0SFrederic Weisbecker acct->steal_time += ust + sst; 258b18ae08dSTejun Heo 2594e26bc4aSMadhavan Srinivasan irq_soft_mask_set(save_irq_soft_mask); 2604603ac18SMichael Neuling } 2614603ac18SMichael Neuling 262cf9efce0SPaul Mackerras static inline u64 calculate_stolen_time(u64 stop_tb) 263cf9efce0SPaul Mackerras { 264a6201da3SAneesh Kumar K.V if (!firmware_has_feature(FW_FEATURE_SPLPAR)) 265a6201da3SAneesh Kumar K.V return 0; 266a6201da3SAneesh Kumar K.V 267a19ff1a2SFrederic Weisbecker if (get_paca()->dtl_ridx != be64_to_cpu(get_lppaca()->dtl_idx)) 268a19ff1a2SFrederic Weisbecker return scan_dispatch_log(stop_tb); 269cf9efce0SPaul Mackerras 270a19ff1a2SFrederic Weisbecker return 0; 271cf9efce0SPaul Mackerras } 272cf9efce0SPaul Mackerras 273cf9efce0SPaul Mackerras #else /* CONFIG_PPC_SPLPAR */ 274cf9efce0SPaul Mackerras static inline u64 calculate_stolen_time(u64 stop_tb) 275cf9efce0SPaul Mackerras { 276cf9efce0SPaul Mackerras return 0; 277cf9efce0SPaul Mackerras } 278cf9efce0SPaul Mackerras 279cf9efce0SPaul Mackerras #endif /* CONFIG_PPC_SPLPAR */ 280cf9efce0SPaul Mackerras 2814603ac18SMichael Neuling /* 282c6622f63SPaul Mackerras * Account time for a transition between system, hard irq 283c6622f63SPaul Mackerras * or soft irq state. 284c6622f63SPaul Mackerras */ 285b38a181cSChristophe Leroy static unsigned long vtime_delta_scaled(struct cpu_accounting_data *acct, 286b38a181cSChristophe Leroy unsigned long now, unsigned long stime) 287c6622f63SPaul Mackerras { 288*abcff86dSChristophe Leroy unsigned long stime_scaled = 0; 289*abcff86dSChristophe Leroy #ifdef CONFIG_ARCH_HAS_SCALED_CPUTIME 290b38a181cSChristophe Leroy unsigned long nowscaled, deltascaled; 291a19ff1a2SFrederic Weisbecker unsigned long utime, utime_scaled; 292c6622f63SPaul Mackerras 2934603ac18SMichael Neuling nowscaled = read_spurr(now); 294c223c903SChristophe Leroy deltascaled = nowscaled - acct->startspurr; 295c223c903SChristophe Leroy acct->startspurr = nowscaled; 296a19ff1a2SFrederic Weisbecker utime = acct->utime - acct->utime_sspurr; 2978c8b73c4SFrederic Weisbecker acct->utime_sspurr = acct->utime; 298cf9efce0SPaul Mackerras 299cf9efce0SPaul Mackerras /* 300cf9efce0SPaul Mackerras * Because we don't read the SPURR on every kernel entry/exit, 301cf9efce0SPaul Mackerras * deltascaled includes both user and system SPURR ticks. 302cf9efce0SPaul Mackerras * Apportion these ticks to system SPURR ticks and user 303cf9efce0SPaul Mackerras * SPURR ticks in the same ratio as the system time (delta) 304cf9efce0SPaul Mackerras * and user time (udelta) values obtained from the timebase 305cf9efce0SPaul Mackerras * over the same interval. The system ticks get accounted here; 306cf9efce0SPaul Mackerras * the user ticks get saved up in paca->user_time_scaled to be 307cf9efce0SPaul Mackerras * used by account_process_tick. 308cf9efce0SPaul Mackerras */ 309b38a181cSChristophe Leroy stime_scaled = stime; 310a19ff1a2SFrederic Weisbecker utime_scaled = utime; 311a19ff1a2SFrederic Weisbecker if (deltascaled != stime + utime) { 312a19ff1a2SFrederic Weisbecker if (utime) { 313b38a181cSChristophe Leroy stime_scaled = deltascaled * stime / (stime + utime); 314b38a181cSChristophe Leroy utime_scaled = deltascaled - stime_scaled; 315cf9efce0SPaul Mackerras } else { 316b38a181cSChristophe Leroy stime_scaled = deltascaled; 317c6622f63SPaul Mackerras } 318cf9efce0SPaul Mackerras } 319a19ff1a2SFrederic Weisbecker acct->utime_scaled += utime_scaled; 320*abcff86dSChristophe Leroy #endif 321cf9efce0SPaul Mackerras 322b38a181cSChristophe Leroy return stime_scaled; 323b38a181cSChristophe Leroy } 324b38a181cSChristophe Leroy 325b38a181cSChristophe Leroy static unsigned long vtime_delta(struct task_struct *tsk, 326b38a181cSChristophe Leroy unsigned long *stime_scaled, 327b38a181cSChristophe Leroy unsigned long *steal_time) 328b38a181cSChristophe Leroy { 329b38a181cSChristophe Leroy unsigned long now, stime; 330b38a181cSChristophe Leroy struct cpu_accounting_data *acct = get_accounting(tsk); 331b38a181cSChristophe Leroy 332b38a181cSChristophe Leroy WARN_ON_ONCE(!irqs_disabled()); 333b38a181cSChristophe Leroy 334b38a181cSChristophe Leroy now = mftb(); 335b38a181cSChristophe Leroy stime = now - acct->starttime; 336b38a181cSChristophe Leroy acct->starttime = now; 337b38a181cSChristophe Leroy 338b38a181cSChristophe Leroy *stime_scaled = vtime_delta_scaled(acct, now, stime); 339b38a181cSChristophe Leroy 340b38a181cSChristophe Leroy *steal_time = calculate_stolen_time(now); 341b38a181cSChristophe Leroy 342a19ff1a2SFrederic Weisbecker return stime; 343a7e1a9e3SFrederic Weisbecker } 344a7e1a9e3SFrederic Weisbecker 345fd25b4c2SFrederic Weisbecker void vtime_account_system(struct task_struct *tsk) 346a7e1a9e3SFrederic Weisbecker { 347a19ff1a2SFrederic Weisbecker unsigned long stime, stime_scaled, steal_time; 348a19ff1a2SFrederic Weisbecker struct cpu_accounting_data *acct = get_accounting(tsk); 349a7e1a9e3SFrederic Weisbecker 350a19ff1a2SFrederic Weisbecker stime = vtime_delta(tsk, &stime_scaled, &steal_time); 351a19ff1a2SFrederic Weisbecker 352a19ff1a2SFrederic Weisbecker stime -= min(stime, steal_time); 353a19ff1a2SFrederic Weisbecker acct->steal_time += steal_time; 354a19ff1a2SFrederic Weisbecker 355a19ff1a2SFrederic Weisbecker if ((tsk->flags & PF_VCPU) && !irq_count()) { 356a19ff1a2SFrederic Weisbecker acct->gtime += stime; 357*abcff86dSChristophe Leroy #ifdef CONFIG_ARCH_HAS_SCALED_CPUTIME 358a19ff1a2SFrederic Weisbecker acct->utime_scaled += stime_scaled; 359*abcff86dSChristophe Leroy #endif 360a19ff1a2SFrederic Weisbecker } else { 361a19ff1a2SFrederic Weisbecker if (hardirq_count()) 362a19ff1a2SFrederic Weisbecker acct->hardirq_time += stime; 363a19ff1a2SFrederic Weisbecker else if (in_serving_softirq()) 364a19ff1a2SFrederic Weisbecker acct->softirq_time += stime; 365a19ff1a2SFrederic Weisbecker else 366a19ff1a2SFrederic Weisbecker acct->stime += stime; 367a19ff1a2SFrederic Weisbecker 368*abcff86dSChristophe Leroy #ifdef CONFIG_ARCH_HAS_SCALED_CPUTIME 369a19ff1a2SFrederic Weisbecker acct->stime_scaled += stime_scaled; 370*abcff86dSChristophe Leroy #endif 371a19ff1a2SFrederic Weisbecker } 372a7e1a9e3SFrederic Weisbecker } 373c11f11fcSFrederic Weisbecker EXPORT_SYMBOL_GPL(vtime_account_system); 374a7e1a9e3SFrederic Weisbecker 375fd25b4c2SFrederic Weisbecker void vtime_account_idle(struct task_struct *tsk) 376a7e1a9e3SFrederic Weisbecker { 377a19ff1a2SFrederic Weisbecker unsigned long stime, stime_scaled, steal_time; 378a19ff1a2SFrederic Weisbecker struct cpu_accounting_data *acct = get_accounting(tsk); 379a7e1a9e3SFrederic Weisbecker 380a19ff1a2SFrederic Weisbecker stime = vtime_delta(tsk, &stime_scaled, &steal_time); 381a19ff1a2SFrederic Weisbecker acct->idle_time += stime + steal_time; 382cf9efce0SPaul Mackerras } 383c6622f63SPaul Mackerras 384b38a181cSChristophe Leroy static void vtime_flush_scaled(struct task_struct *tsk, 385b38a181cSChristophe Leroy struct cpu_accounting_data *acct) 386b38a181cSChristophe Leroy { 387*abcff86dSChristophe Leroy #ifdef CONFIG_ARCH_HAS_SCALED_CPUTIME 388b38a181cSChristophe Leroy if (acct->utime_scaled) 389b38a181cSChristophe Leroy tsk->utimescaled += cputime_to_nsecs(acct->utime_scaled); 390b38a181cSChristophe Leroy if (acct->stime_scaled) 391b38a181cSChristophe Leroy tsk->stimescaled += cputime_to_nsecs(acct->stime_scaled); 392b38a181cSChristophe Leroy 393b38a181cSChristophe Leroy acct->utime_scaled = 0; 394b38a181cSChristophe Leroy acct->utime_sspurr = 0; 395b38a181cSChristophe Leroy acct->stime_scaled = 0; 396*abcff86dSChristophe Leroy #endif 397b38a181cSChristophe Leroy } 398b38a181cSChristophe Leroy 399c6622f63SPaul Mackerras /* 400c8d7dabfSFrederic Weisbecker * Account the whole cputime accumulated in the paca 401c6622f63SPaul Mackerras * Must be called with interrupts disabled. 402bcebdf84SFrederic Weisbecker * Assumes that vtime_account_system/idle() has been called 403bcebdf84SFrederic Weisbecker * recently (i.e. since the last entry from usermode) so that 404cf9efce0SPaul Mackerras * get_paca()->user_time_scaled is up to date. 405c6622f63SPaul Mackerras */ 406c8d7dabfSFrederic Weisbecker void vtime_flush(struct task_struct *tsk) 407c6622f63SPaul Mackerras { 408c223c903SChristophe Leroy struct cpu_accounting_data *acct = get_accounting(tsk); 409c6622f63SPaul Mackerras 410a19ff1a2SFrederic Weisbecker if (acct->utime) 41123244a5cSFrederic Weisbecker account_user_time(tsk, cputime_to_nsecs(acct->utime)); 412a19ff1a2SFrederic Weisbecker 413a19ff1a2SFrederic Weisbecker if (acct->gtime) 414fb8b049cSFrederic Weisbecker account_guest_time(tsk, cputime_to_nsecs(acct->gtime)); 415a19ff1a2SFrederic Weisbecker 416a19ff1a2SFrederic Weisbecker if (acct->steal_time) 417be9095edSFrederic Weisbecker account_steal_time(cputime_to_nsecs(acct->steal_time)); 418a19ff1a2SFrederic Weisbecker 419a19ff1a2SFrederic Weisbecker if (acct->idle_time) 42018b43a9bSFrederic Weisbecker account_idle_time(cputime_to_nsecs(acct->idle_time)); 421a19ff1a2SFrederic Weisbecker 422a19ff1a2SFrederic Weisbecker if (acct->stime) 423fb8b049cSFrederic Weisbecker account_system_index_time(tsk, cputime_to_nsecs(acct->stime), 424fb8b049cSFrederic Weisbecker CPUTIME_SYSTEM); 425a19ff1a2SFrederic Weisbecker 426a19ff1a2SFrederic Weisbecker if (acct->hardirq_time) 427fb8b049cSFrederic Weisbecker account_system_index_time(tsk, cputime_to_nsecs(acct->hardirq_time), 428fb8b049cSFrederic Weisbecker CPUTIME_IRQ); 429a19ff1a2SFrederic Weisbecker if (acct->softirq_time) 430fb8b049cSFrederic Weisbecker account_system_index_time(tsk, cputime_to_nsecs(acct->softirq_time), 431fb8b049cSFrederic Weisbecker CPUTIME_SOFTIRQ); 432a19ff1a2SFrederic Weisbecker 433b38a181cSChristophe Leroy vtime_flush_scaled(tsk, acct); 434b38a181cSChristophe Leroy 4358c8b73c4SFrederic Weisbecker acct->utime = 0; 436a19ff1a2SFrederic Weisbecker acct->gtime = 0; 437a19ff1a2SFrederic Weisbecker acct->steal_time = 0; 438a19ff1a2SFrederic Weisbecker acct->idle_time = 0; 439a19ff1a2SFrederic Weisbecker acct->stime = 0; 440a19ff1a2SFrederic Weisbecker acct->hardirq_time = 0; 441a19ff1a2SFrederic Weisbecker acct->softirq_time = 0; 442c6622f63SPaul Mackerras } 443c6622f63SPaul Mackerras 444abf917cdSFrederic Weisbecker #else /* ! CONFIG_VIRT_CPU_ACCOUNTING_NATIVE */ 445c6622f63SPaul Mackerras #define calc_cputime_factors() 446c6622f63SPaul Mackerras #endif 447c6622f63SPaul Mackerras 4486defa38bSPaul Mackerras void __delay(unsigned long loops) 4496defa38bSPaul Mackerras { 4506defa38bSPaul Mackerras unsigned long start; 4516defa38bSPaul Mackerras int diff; 4526defa38bSPaul Mackerras 4534e287e65SNicholas Piggin spin_begin(); 4546defa38bSPaul Mackerras if (__USE_RTC()) { 4556defa38bSPaul Mackerras start = get_rtcl(); 4566defa38bSPaul Mackerras do { 4576defa38bSPaul Mackerras /* the RTCL register wraps at 1000000000 */ 4586defa38bSPaul Mackerras diff = get_rtcl() - start; 4596defa38bSPaul Mackerras if (diff < 0) 4606defa38bSPaul Mackerras diff += 1000000000; 4614e287e65SNicholas Piggin spin_cpu_relax(); 4626defa38bSPaul Mackerras } while (diff < loops); 4636defa38bSPaul Mackerras } else { 4646defa38bSPaul Mackerras start = get_tbl(); 4656defa38bSPaul Mackerras while (get_tbl() - start < loops) 4664e287e65SNicholas Piggin spin_cpu_relax(); 4676defa38bSPaul Mackerras } 4684e287e65SNicholas Piggin spin_end(); 4696defa38bSPaul Mackerras } 4706defa38bSPaul Mackerras EXPORT_SYMBOL(__delay); 4716defa38bSPaul Mackerras 4726defa38bSPaul Mackerras void udelay(unsigned long usecs) 4736defa38bSPaul Mackerras { 4746defa38bSPaul Mackerras __delay(tb_ticks_per_usec * usecs); 4756defa38bSPaul Mackerras } 4766defa38bSPaul Mackerras EXPORT_SYMBOL(udelay); 4776defa38bSPaul Mackerras 478f2783c15SPaul Mackerras #ifdef CONFIG_SMP 479f2783c15SPaul Mackerras unsigned long profile_pc(struct pt_regs *regs) 480f2783c15SPaul Mackerras { 481f2783c15SPaul Mackerras unsigned long pc = instruction_pointer(regs); 482f2783c15SPaul Mackerras 483f2783c15SPaul Mackerras if (in_lock_functions(pc)) 484f2783c15SPaul Mackerras return regs->link; 485f2783c15SPaul Mackerras 486f2783c15SPaul Mackerras return pc; 487f2783c15SPaul Mackerras } 488f2783c15SPaul Mackerras EXPORT_SYMBOL(profile_pc); 489f2783c15SPaul Mackerras #endif 490f2783c15SPaul Mackerras 491e360adbeSPeter Zijlstra #ifdef CONFIG_IRQ_WORK 492105988c0SPaul Mackerras 4930fe1ac48SPaul Mackerras /* 4940fe1ac48SPaul Mackerras * 64-bit uses a byte in the PACA, 32-bit uses a per-cpu variable... 4950fe1ac48SPaul Mackerras */ 4960fe1ac48SPaul Mackerras #ifdef CONFIG_PPC64 497e360adbeSPeter Zijlstra static inline unsigned long test_irq_work_pending(void) 498105988c0SPaul Mackerras { 4990fe1ac48SPaul Mackerras unsigned long x; 5000fe1ac48SPaul Mackerras 5010fe1ac48SPaul Mackerras asm volatile("lbz %0,%1(13)" 5020fe1ac48SPaul Mackerras : "=r" (x) 503e360adbeSPeter Zijlstra : "i" (offsetof(struct paca_struct, irq_work_pending))); 5040fe1ac48SPaul Mackerras return x; 505105988c0SPaul Mackerras } 506105988c0SPaul Mackerras 507e360adbeSPeter Zijlstra static inline void set_irq_work_pending_flag(void) 5080fe1ac48SPaul Mackerras { 5090fe1ac48SPaul Mackerras asm volatile("stb %0,%1(13)" : : 5100fe1ac48SPaul Mackerras "r" (1), 511e360adbeSPeter Zijlstra "i" (offsetof(struct paca_struct, irq_work_pending))); 5120fe1ac48SPaul Mackerras } 5130fe1ac48SPaul Mackerras 514e360adbeSPeter Zijlstra static inline void clear_irq_work_pending(void) 5150fe1ac48SPaul Mackerras { 5160fe1ac48SPaul Mackerras asm volatile("stb %0,%1(13)" : : 5170fe1ac48SPaul Mackerras "r" (0), 518e360adbeSPeter Zijlstra "i" (offsetof(struct paca_struct, irq_work_pending))); 5190fe1ac48SPaul Mackerras } 5200fe1ac48SPaul Mackerras 521ebb37cf3SNicholas Piggin void arch_irq_work_raise(void) 522ebb37cf3SNicholas Piggin { 523ebb37cf3SNicholas Piggin preempt_disable(); 524ebb37cf3SNicholas Piggin set_irq_work_pending_flag(); 525ebb37cf3SNicholas Piggin /* 526ebb37cf3SNicholas Piggin * Non-nmi code running with interrupts disabled will replay 527ebb37cf3SNicholas Piggin * irq_happened before it re-enables interrupts, so setthe 528ebb37cf3SNicholas Piggin * decrementer there instead of causing a hardware exception 529ebb37cf3SNicholas Piggin * which would immediately hit the masked interrupt handler 530ebb37cf3SNicholas Piggin * and have the net effect of setting the decrementer in 531ebb37cf3SNicholas Piggin * irq_happened. 532ebb37cf3SNicholas Piggin * 533ebb37cf3SNicholas Piggin * NMI interrupts can not check this when they return, so the 534ebb37cf3SNicholas Piggin * decrementer hardware exception is raised, which will fire 535ebb37cf3SNicholas Piggin * when interrupts are next enabled. 536ebb37cf3SNicholas Piggin * 537ebb37cf3SNicholas Piggin * BookE does not support this yet, it must audit all NMI 538ebb37cf3SNicholas Piggin * interrupt handlers to ensure they call nmi_enter() so this 539ebb37cf3SNicholas Piggin * check would be correct. 540ebb37cf3SNicholas Piggin */ 541ebb37cf3SNicholas Piggin if (IS_ENABLED(CONFIG_BOOKE) || !irqs_disabled() || in_nmi()) { 542ebb37cf3SNicholas Piggin set_dec(1); 543ebb37cf3SNicholas Piggin } else { 544ebb37cf3SNicholas Piggin hard_irq_disable(); 545ebb37cf3SNicholas Piggin local_paca->irq_happened |= PACA_IRQ_DEC; 546ebb37cf3SNicholas Piggin } 547ebb37cf3SNicholas Piggin preempt_enable(); 548ebb37cf3SNicholas Piggin } 549ebb37cf3SNicholas Piggin 5500fe1ac48SPaul Mackerras #else /* 32-bit */ 5510fe1ac48SPaul Mackerras 552e360adbeSPeter Zijlstra DEFINE_PER_CPU(u8, irq_work_pending); 5530fe1ac48SPaul Mackerras 55469111bacSChristoph Lameter #define set_irq_work_pending_flag() __this_cpu_write(irq_work_pending, 1) 55569111bacSChristoph Lameter #define test_irq_work_pending() __this_cpu_read(irq_work_pending) 55669111bacSChristoph Lameter #define clear_irq_work_pending() __this_cpu_write(irq_work_pending, 0) 557105988c0SPaul Mackerras 5584f8b50bbSPeter Zijlstra void arch_irq_work_raise(void) 5590fe1ac48SPaul Mackerras { 5600fe1ac48SPaul Mackerras preempt_disable(); 561e360adbeSPeter Zijlstra set_irq_work_pending_flag(); 5620fe1ac48SPaul Mackerras set_dec(1); 5630fe1ac48SPaul Mackerras preempt_enable(); 5640fe1ac48SPaul Mackerras } 5650fe1ac48SPaul Mackerras 566ebb37cf3SNicholas Piggin #endif /* 32 vs 64 bit */ 567ebb37cf3SNicholas Piggin 568e360adbeSPeter Zijlstra #else /* CONFIG_IRQ_WORK */ 569105988c0SPaul Mackerras 570e360adbeSPeter Zijlstra #define test_irq_work_pending() 0 571e360adbeSPeter Zijlstra #define clear_irq_work_pending() 572105988c0SPaul Mackerras 573e360adbeSPeter Zijlstra #endif /* CONFIG_IRQ_WORK */ 574105988c0SPaul Mackerras 5751b783955SPreeti U Murthy /* 5761b783955SPreeti U Murthy * timer_interrupt - gets called when the decrementer overflows, 5771b783955SPreeti U Murthy * with interrupts disabled. 5781b783955SPreeti U Murthy */ 5791b783955SPreeti U Murthy void timer_interrupt(struct pt_regs *regs) 5801b783955SPreeti U Murthy { 5813f984620SNicholas Piggin struct clock_event_device *evt = this_cpu_ptr(&decrementers); 58269111bacSChristoph Lameter u64 *next_tb = this_cpu_ptr(&decrementers_next_tb); 5833f984620SNicholas Piggin struct pt_regs *old_regs; 5843f984620SNicholas Piggin u64 now; 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 */ 592a7cba02dSNicholas Piggin if (unlikely(!cpu_online(smp_processor_id()))) { 5931b783955SPreeti U Murthy *next_tb = ~(u64)0; 594a7cba02dSNicholas Piggin set_dec(decrementer_max); 5951b783955SPreeti U Murthy return; 5961b783955SPreeti U Murthy } 5971b783955SPreeti U Murthy 598a7cba02dSNicholas Piggin /* Ensure a positive value is written to the decrementer, or else 599a7cba02dSNicholas Piggin * some CPUs will continue to take decrementer exceptions. When the 600a7cba02dSNicholas Piggin * PPC_WATCHDOG (decrementer based) is configured, keep this at most 601a7cba02dSNicholas Piggin * 31 bits, which is about 4 seconds on most systems, which gives 602a7cba02dSNicholas Piggin * the watchdog a chance of catching timer interrupt hard lockups. 603a7cba02dSNicholas Piggin */ 604a7cba02dSNicholas Piggin if (IS_ENABLED(CONFIG_PPC_WATCHDOG)) 605a7cba02dSNicholas Piggin set_dec(0x7fffffff); 606a7cba02dSNicholas Piggin else 607a7cba02dSNicholas Piggin set_dec(decrementer_max); 608a7cba02dSNicholas Piggin 6091b783955SPreeti U Murthy /* Conditionally hard-enable interrupts now that the DEC has been 6101b783955SPreeti U Murthy * bumped to its maximum value 6111b783955SPreeti U Murthy */ 6121b783955SPreeti U Murthy may_hard_irq_enable(); 6131b783955SPreeti U Murthy 6141b783955SPreeti U Murthy 6156e0fdf9aSPaul Bolle #if defined(CONFIG_PPC32) && defined(CONFIG_PPC_PMAC) 6161b783955SPreeti U Murthy if (atomic_read(&ppc_n_lost_interrupts) != 0) 6171b783955SPreeti U Murthy do_IRQ(regs); 6181b783955SPreeti U Murthy #endif 6191b783955SPreeti U Murthy 6201b783955SPreeti U Murthy old_regs = set_irq_regs(regs); 6211b783955SPreeti U Murthy irq_enter(); 6223f984620SNicholas Piggin trace_timer_interrupt_entry(regs); 6231b783955SPreeti U Murthy 6243f984620SNicholas Piggin if (test_irq_work_pending()) { 6253f984620SNicholas Piggin clear_irq_work_pending(); 6263f984620SNicholas Piggin irq_work_run(); 6273f984620SNicholas Piggin } 6283f984620SNicholas Piggin 6293f984620SNicholas Piggin now = get_tb_or_rtc(); 6303f984620SNicholas Piggin if (now >= *next_tb) { 6313f984620SNicholas Piggin *next_tb = ~(u64)0; 6323f984620SNicholas Piggin if (evt->event_handler) 6333f984620SNicholas Piggin evt->event_handler(evt); 6343f984620SNicholas Piggin __this_cpu_inc(irq_stat.timer_irqs_event); 6353f984620SNicholas Piggin } else { 6363f984620SNicholas Piggin now = *next_tb - now; 6373f984620SNicholas Piggin if (now <= decrementer_max) 6383f984620SNicholas Piggin set_dec(now); 6393f984620SNicholas Piggin /* We may have raced with new irq work */ 6403f984620SNicholas Piggin if (test_irq_work_pending()) 6413f984620SNicholas Piggin set_dec(1); 6423f984620SNicholas Piggin __this_cpu_inc(irq_stat.timer_irqs_others); 6433f984620SNicholas Piggin } 6443f984620SNicholas Piggin 6453f984620SNicholas Piggin trace_timer_interrupt_exit(regs); 646f2783c15SPaul Mackerras irq_exit(); 6477d12e780SDavid Howells set_irq_regs(old_regs); 648f2783c15SPaul Mackerras } 6499445aa1aSAl Viro EXPORT_SYMBOL(timer_interrupt); 650f2783c15SPaul Mackerras 651bc907113SNicholas Piggin #ifdef CONFIG_GENERIC_CLOCKEVENTS_BROADCAST 6523f984620SNicholas Piggin void timer_broadcast_interrupt(void) 6533f984620SNicholas Piggin { 6543f984620SNicholas Piggin u64 *next_tb = this_cpu_ptr(&decrementers_next_tb); 6553f984620SNicholas Piggin 6563f984620SNicholas Piggin *next_tb = ~(u64)0; 6573f984620SNicholas Piggin tick_receive_broadcast(); 658e360cd37SNicholas Piggin __this_cpu_inc(irq_stat.broadcast_irqs_event); 6593f984620SNicholas Piggin } 660bc907113SNicholas Piggin #endif 6613f984620SNicholas Piggin 662dabe859eSPaul Mackerras /* 663dabe859eSPaul Mackerras * Hypervisor decrementer interrupts shouldn't occur but are sometimes 664dabe859eSPaul Mackerras * left pending on exit from a KVM guest. We don't need to do anything 665dabe859eSPaul Mackerras * to clear them, as they are edge-triggered. 666dabe859eSPaul Mackerras */ 667dabe859eSPaul Mackerras void hdec_interrupt(struct pt_regs *regs) 668dabe859eSPaul Mackerras { 669dabe859eSPaul Mackerras } 670dabe859eSPaul Mackerras 6717ac5dde9SScott Wood #ifdef CONFIG_SUSPEND 672d75d68cfSPaul Mackerras static void generic_suspend_disable_irqs(void) 6737ac5dde9SScott Wood { 6747ac5dde9SScott Wood /* Disable the decrementer, so that it doesn't interfere 6757ac5dde9SScott Wood * with suspending. 6767ac5dde9SScott Wood */ 6777ac5dde9SScott Wood 67879901024SOliver O'Halloran set_dec(decrementer_max); 6797ac5dde9SScott Wood local_irq_disable(); 68079901024SOliver O'Halloran set_dec(decrementer_max); 6817ac5dde9SScott Wood } 6827ac5dde9SScott Wood 683d75d68cfSPaul Mackerras static void generic_suspend_enable_irqs(void) 6847ac5dde9SScott Wood { 6857ac5dde9SScott Wood local_irq_enable(); 6867ac5dde9SScott Wood } 6877ac5dde9SScott Wood 6887ac5dde9SScott Wood /* Overrides the weak version in kernel/power/main.c */ 6897ac5dde9SScott Wood void arch_suspend_disable_irqs(void) 6907ac5dde9SScott Wood { 6917ac5dde9SScott Wood if (ppc_md.suspend_disable_irqs) 6927ac5dde9SScott Wood ppc_md.suspend_disable_irqs(); 6937ac5dde9SScott Wood generic_suspend_disable_irqs(); 6947ac5dde9SScott Wood } 6957ac5dde9SScott Wood 6967ac5dde9SScott Wood /* Overrides the weak version in kernel/power/main.c */ 6977ac5dde9SScott Wood void arch_suspend_enable_irqs(void) 6987ac5dde9SScott Wood { 6997ac5dde9SScott Wood generic_suspend_enable_irqs(); 7007ac5dde9SScott Wood if (ppc_md.suspend_enable_irqs) 7017ac5dde9SScott Wood ppc_md.suspend_enable_irqs(); 7027ac5dde9SScott Wood } 7037ac5dde9SScott Wood #endif 7047ac5dde9SScott Wood 705b6c295dfSPaul Mackerras unsigned long long tb_to_ns(unsigned long long ticks) 706b6c295dfSPaul Mackerras { 707b6c295dfSPaul Mackerras return mulhdu(ticks, tb_to_ns_scale) << tb_to_ns_shift; 708b6c295dfSPaul Mackerras } 709b6c295dfSPaul Mackerras EXPORT_SYMBOL_GPL(tb_to_ns); 710b6c295dfSPaul Mackerras 711f2783c15SPaul Mackerras /* 712f2783c15SPaul Mackerras * Scheduler clock - returns current time in nanosec units. 713f2783c15SPaul Mackerras * 714f2783c15SPaul Mackerras * Note: mulhdu(a, b) (multiply high double unsigned) returns 715f2783c15SPaul Mackerras * the high 64 bits of a * b, i.e. (a * b) >> 64, where a and b 716f2783c15SPaul Mackerras * are 64-bit unsigned numbers. 717f2783c15SPaul Mackerras */ 7186b847d79SSantosh Sivaraj notrace unsigned long long sched_clock(void) 719f2783c15SPaul Mackerras { 72096c44507SPaul Mackerras if (__USE_RTC()) 72196c44507SPaul Mackerras return get_rtc(); 722fc9069feSTony Breeds return mulhdu(get_tb() - boot_tb, tb_to_ns_scale) << tb_to_ns_shift; 723f2783c15SPaul Mackerras } 724f2783c15SPaul Mackerras 7254be1b297SCyril Bur 7264be1b297SCyril Bur #ifdef CONFIG_PPC_PSERIES 7274be1b297SCyril Bur 7284be1b297SCyril Bur /* 7294be1b297SCyril Bur * Running clock - attempts to give a view of time passing for a virtualised 7304be1b297SCyril Bur * kernels. 7314be1b297SCyril Bur * Uses the VTB register if available otherwise a next best guess. 7324be1b297SCyril Bur */ 7334be1b297SCyril Bur unsigned long long running_clock(void) 7344be1b297SCyril Bur { 7354be1b297SCyril Bur /* 7364be1b297SCyril Bur * Don't read the VTB as a host since KVM does not switch in host 7374be1b297SCyril Bur * timebase into the VTB when it takes a guest off the CPU, reading the 7384be1b297SCyril Bur * VTB would result in reading 'last switched out' guest VTB. 7394be1b297SCyril Bur * 7404be1b297SCyril Bur * Host kernels are often compiled with CONFIG_PPC_PSERIES checked, it 7414be1b297SCyril Bur * would be unsafe to rely only on the #ifdef above. 7424be1b297SCyril Bur */ 7434be1b297SCyril Bur if (firmware_has_feature(FW_FEATURE_LPAR) && 7444be1b297SCyril Bur cpu_has_feature(CPU_FTR_ARCH_207S)) 7454be1b297SCyril Bur return mulhdu(get_vtb() - boot_tb, tb_to_ns_scale) << tb_to_ns_shift; 7464be1b297SCyril Bur 7474be1b297SCyril Bur /* 7484be1b297SCyril Bur * This is a next best approximation without a VTB. 7494be1b297SCyril Bur * On a host which is running bare metal there should never be any stolen 7504be1b297SCyril Bur * time and on a host which doesn't do any virtualisation TB *should* equal 7514be1b297SCyril Bur * VTB so it makes no difference anyway. 7524be1b297SCyril Bur */ 7539f3768e0SFrédéric Weisbecker return local_clock() - kcpustat_this_cpu->cpustat[CPUTIME_STEAL]; 7544be1b297SCyril Bur } 7554be1b297SCyril Bur #endif 7564be1b297SCyril Bur 7570bb474a4SAnton Blanchard static int __init get_freq(char *name, int cells, unsigned long *val) 758f2783c15SPaul Mackerras { 759f2783c15SPaul Mackerras struct device_node *cpu; 7606f7aba7bSAnton Blanchard const __be32 *fp; 7610bb474a4SAnton Blanchard int found = 0; 762f2783c15SPaul Mackerras 7630bb474a4SAnton Blanchard /* The cpu node should have timebase and clock frequency properties */ 764f2783c15SPaul Mackerras cpu = of_find_node_by_type(NULL, "cpu"); 765f2783c15SPaul Mackerras 766d8a8188dSOlaf Hering if (cpu) { 767e2eb6392SStephen Rothwell fp = of_get_property(cpu, name, NULL); 768d8a8188dSOlaf Hering if (fp) { 7690bb474a4SAnton Blanchard found = 1; 770a4dc7ff0SPaul Mackerras *val = of_read_ulong(fp, cells); 771f2783c15SPaul Mackerras } 7720bb474a4SAnton Blanchard 7730bb474a4SAnton Blanchard of_node_put(cpu); 774f2783c15SPaul Mackerras } 7750bb474a4SAnton Blanchard 7760bb474a4SAnton Blanchard return found; 7770bb474a4SAnton Blanchard } 7780bb474a4SAnton Blanchard 779e51df2c1SAnton Blanchard static void start_cpu_decrementer(void) 78077c0a700SBenjamin Herrenschmidt { 78177c0a700SBenjamin Herrenschmidt #if defined(CONFIG_BOOKE) || defined(CONFIG_40x) 7826e2f03e2SIvan Mikhaylov unsigned int tcr; 7836e2f03e2SIvan Mikhaylov 78477c0a700SBenjamin Herrenschmidt /* Clear any pending timer interrupts */ 78577c0a700SBenjamin Herrenschmidt mtspr(SPRN_TSR, TSR_ENW | TSR_WIS | TSR_DIS | TSR_FIS); 78677c0a700SBenjamin Herrenschmidt 7876e2f03e2SIvan Mikhaylov tcr = mfspr(SPRN_TCR); 7886e2f03e2SIvan Mikhaylov /* 7896e2f03e2SIvan Mikhaylov * The watchdog may have already been enabled by u-boot. So leave 7906e2f03e2SIvan Mikhaylov * TRC[WP] (Watchdog Period) alone. 7916e2f03e2SIvan Mikhaylov */ 7926e2f03e2SIvan Mikhaylov tcr &= TCR_WP_MASK; /* Clear all bits except for TCR[WP] */ 7936e2f03e2SIvan Mikhaylov tcr |= TCR_DIE; /* Enable decrementer */ 7946e2f03e2SIvan Mikhaylov mtspr(SPRN_TCR, tcr); 7956e2f03e2SIvan Mikhaylov #endif 79677c0a700SBenjamin Herrenschmidt } 79777c0a700SBenjamin Herrenschmidt 7980bb474a4SAnton Blanchard void __init generic_calibrate_decr(void) 7990bb474a4SAnton Blanchard { 8000bb474a4SAnton Blanchard ppc_tb_freq = DEFAULT_TB_FREQ; /* hardcoded default */ 8010bb474a4SAnton Blanchard 8020bb474a4SAnton Blanchard if (!get_freq("ibm,extended-timebase-frequency", 2, &ppc_tb_freq) && 8030bb474a4SAnton Blanchard !get_freq("timebase-frequency", 1, &ppc_tb_freq)) { 8040bb474a4SAnton Blanchard 805f2783c15SPaul Mackerras printk(KERN_ERR "WARNING: Estimating decrementer frequency " 806f2783c15SPaul Mackerras "(not found)\n"); 8070bb474a4SAnton Blanchard } 808f2783c15SPaul Mackerras 8090bb474a4SAnton Blanchard ppc_proc_freq = DEFAULT_PROC_FREQ; /* hardcoded default */ 8100bb474a4SAnton Blanchard 8110bb474a4SAnton Blanchard if (!get_freq("ibm,extended-clock-frequency", 2, &ppc_proc_freq) && 8120bb474a4SAnton Blanchard !get_freq("clock-frequency", 1, &ppc_proc_freq)) { 8130bb474a4SAnton Blanchard 8140bb474a4SAnton Blanchard printk(KERN_ERR "WARNING: Estimating processor frequency " 8150bb474a4SAnton Blanchard "(not found)\n"); 816f2783c15SPaul Mackerras } 817f2783c15SPaul Mackerras } 818f2783c15SPaul Mackerras 8195235afa8SArnd Bergmann int update_persistent_clock64(struct timespec64 now) 820f2783c15SPaul Mackerras { 821f2783c15SPaul Mackerras struct rtc_time tm; 822f2783c15SPaul Mackerras 823aa3be5f3STony Breeds if (!ppc_md.set_rtc_time) 824023f333aSJason Gunthorpe return -ENODEV; 825aa3be5f3STony Breeds 8265235afa8SArnd Bergmann rtc_time64_to_tm(now.tv_sec + 1 + timezone_offset, &tm); 827aa3be5f3STony Breeds 828aa3be5f3STony Breeds return ppc_md.set_rtc_time(&tm); 829aa3be5f3STony Breeds } 830aa3be5f3STony Breeds 8315bfd6435SArnd Bergmann static void __read_persistent_clock(struct timespec64 *ts) 832aa3be5f3STony Breeds { 833aa3be5f3STony Breeds struct rtc_time tm; 834aa3be5f3STony Breeds static int first = 1; 835aa3be5f3STony Breeds 836d90246cdSMartin Schwidefsky ts->tv_nsec = 0; 837aa3be5f3STony Breeds /* XXX this is a litle fragile but will work okay in the short term */ 838aa3be5f3STony Breeds if (first) { 839aa3be5f3STony Breeds first = 0; 840aa3be5f3STony Breeds if (ppc_md.time_init) 841aa3be5f3STony Breeds timezone_offset = ppc_md.time_init(); 842aa3be5f3STony Breeds 843aa3be5f3STony Breeds /* get_boot_time() isn't guaranteed to be safe to call late */ 844d90246cdSMartin Schwidefsky if (ppc_md.get_boot_time) { 845d90246cdSMartin Schwidefsky ts->tv_sec = ppc_md.get_boot_time() - timezone_offset; 846d90246cdSMartin Schwidefsky return; 847aa3be5f3STony Breeds } 848d90246cdSMartin Schwidefsky } 849d90246cdSMartin Schwidefsky if (!ppc_md.get_rtc_time) { 850d90246cdSMartin Schwidefsky ts->tv_sec = 0; 851d90246cdSMartin Schwidefsky return; 852d90246cdSMartin Schwidefsky } 853f2783c15SPaul Mackerras ppc_md.get_rtc_time(&tm); 854978d7eb3SBenjamin Herrenschmidt 8555bfd6435SArnd Bergmann ts->tv_sec = rtc_tm_to_time64(&tm); 856f2783c15SPaul Mackerras } 857f2783c15SPaul Mackerras 8585bfd6435SArnd Bergmann void read_persistent_clock64(struct timespec64 *ts) 859978d7eb3SBenjamin Herrenschmidt { 860978d7eb3SBenjamin Herrenschmidt __read_persistent_clock(ts); 861978d7eb3SBenjamin Herrenschmidt 862978d7eb3SBenjamin Herrenschmidt /* Sanitize it in case real time clock is set below EPOCH */ 863978d7eb3SBenjamin Herrenschmidt if (ts->tv_sec < 0) { 864978d7eb3SBenjamin Herrenschmidt ts->tv_sec = 0; 865978d7eb3SBenjamin Herrenschmidt ts->tv_nsec = 0; 866978d7eb3SBenjamin Herrenschmidt } 867978d7eb3SBenjamin Herrenschmidt 868978d7eb3SBenjamin Herrenschmidt } 869978d7eb3SBenjamin Herrenschmidt 8704a4cfe38STony Breeds /* clocksource code */ 8716b847d79SSantosh Sivaraj static notrace u64 rtc_read(struct clocksource *cs) 8724a4cfe38STony Breeds { 873a5a1d1c2SThomas Gleixner return (u64)get_rtc(); 8744a4cfe38STony Breeds } 8754a4cfe38STony Breeds 8766b847d79SSantosh Sivaraj static notrace u64 timebase_read(struct clocksource *cs) 8774a4cfe38STony Breeds { 878a5a1d1c2SThomas Gleixner return (u64)get_tb(); 8794a4cfe38STony Breeds } 8804a4cfe38STony Breeds 881d4cfb113SPaul Mackerras 882d4cfb113SPaul Mackerras void update_vsyscall(struct timekeeper *tk) 8834a4cfe38STony Breeds { 884d4cfb113SPaul Mackerras struct timespec xt; 885d4cfb113SPaul Mackerras struct clocksource *clock = tk->tkr_mono.clock; 886d4cfb113SPaul Mackerras u32 mult = tk->tkr_mono.mult; 887d4cfb113SPaul Mackerras u32 shift = tk->tkr_mono.shift; 888d4cfb113SPaul Mackerras u64 cycle_last = tk->tkr_mono.cycle_last; 889b0797b60SJohn Stultz u64 new_tb_to_xs, new_stamp_xsec; 890d4cfb113SPaul Mackerras u64 frac_sec; 8914a4cfe38STony Breeds 8924a4cfe38STony Breeds if (clock != &clocksource_timebase) 8934a4cfe38STony Breeds return; 8944a4cfe38STony Breeds 895d4cfb113SPaul Mackerras xt.tv_sec = tk->xtime_sec; 896d4cfb113SPaul Mackerras xt.tv_nsec = (long)(tk->tkr_mono.xtime_nsec >> tk->tkr_mono.shift); 897d4cfb113SPaul Mackerras 8984a4cfe38STony Breeds /* Make userspace gettimeofday spin until we're done. */ 8994a4cfe38STony Breeds ++vdso_data->tb_update_count; 9004a4cfe38STony Breeds smp_mb(); 9014a4cfe38STony Breeds 902d4cfb113SPaul Mackerras /* 903d4cfb113SPaul Mackerras * This computes ((2^20 / 1e9) * mult) >> shift as a 904d4cfb113SPaul Mackerras * 0.64 fixed-point fraction. 905d4cfb113SPaul Mackerras * The computation in the else clause below won't overflow 906d4cfb113SPaul Mackerras * (as long as the timebase frequency is >= 1.049 MHz) 907d4cfb113SPaul Mackerras * but loses precision because we lose the low bits of the constant 908d4cfb113SPaul Mackerras * in the shift. Note that 19342813113834067 ~= 2^(20+64) / 1e9. 909d4cfb113SPaul Mackerras * For a shift of 24 the error is about 0.5e-9, or about 0.5ns 910d4cfb113SPaul Mackerras * over a second. (Shift values are usually 22, 23 or 24.) 911d4cfb113SPaul Mackerras * For high frequency clocks such as the 512MHz timebase clock 912d4cfb113SPaul Mackerras * on POWER[6789], the mult value is small (e.g. 32768000) 913d4cfb113SPaul Mackerras * and so we can shift the constant by 16 initially 914d4cfb113SPaul Mackerras * (295147905179 ~= 2^(20+64-16) / 1e9) and then do the 915d4cfb113SPaul Mackerras * remaining shifts after the multiplication, which gives a 916d4cfb113SPaul Mackerras * more accurate result (e.g. with mult = 32768000, shift = 24, 917d4cfb113SPaul Mackerras * the error is only about 1.2e-12, or 0.7ns over 10 minutes). 918d4cfb113SPaul Mackerras */ 919d4cfb113SPaul Mackerras if (mult <= 62500000 && clock->shift >= 16) 920d4cfb113SPaul Mackerras new_tb_to_xs = ((u64) mult * 295147905179ULL) >> (clock->shift - 16); 921d4cfb113SPaul Mackerras else 92211b8633aSAnton Blanchard new_tb_to_xs = (u64) mult * (19342813113834067ULL >> clock->shift); 923b0797b60SJohn Stultz 924d4cfb113SPaul Mackerras /* 925d4cfb113SPaul Mackerras * Compute the fractional second in units of 2^-32 seconds. 926d4cfb113SPaul Mackerras * The fractional second is tk->tkr_mono.xtime_nsec >> tk->tkr_mono.shift 927d4cfb113SPaul Mackerras * in nanoseconds, so multiplying that by 2^32 / 1e9 gives 928d4cfb113SPaul Mackerras * it in units of 2^-32 seconds. 929d4cfb113SPaul Mackerras * We assume shift <= 32 because clocks_calc_mult_shift() 930d4cfb113SPaul Mackerras * generates shift values in the range 0 - 32. 931d4cfb113SPaul Mackerras */ 932d4cfb113SPaul Mackerras frac_sec = tk->tkr_mono.xtime_nsec << (32 - shift); 933d4cfb113SPaul Mackerras do_div(frac_sec, NSEC_PER_SEC); 934d4cfb113SPaul Mackerras 935d4cfb113SPaul Mackerras /* 936d4cfb113SPaul Mackerras * Work out new stamp_xsec value for any legacy users of systemcfg. 937d4cfb113SPaul Mackerras * stamp_xsec is in units of 2^-20 seconds. 938d4cfb113SPaul Mackerras */ 939d4cfb113SPaul Mackerras new_stamp_xsec = frac_sec >> 12; 940d4cfb113SPaul Mackerras new_stamp_xsec += tk->xtime_sec * XSEC_PER_SEC; 94147916be4SThomas Gleixner 942b0797b60SJohn Stultz /* 943b0797b60SJohn Stultz * tb_update_count is used to allow the userspace gettimeofday code 944b0797b60SJohn Stultz * to assure itself that it sees a consistent view of the tb_to_xs and 945b0797b60SJohn Stultz * stamp_xsec variables. It reads the tb_update_count, then reads 946b0797b60SJohn Stultz * tb_to_xs and stamp_xsec and then reads tb_update_count again. If 947b0797b60SJohn Stultz * the two values of tb_update_count match and are even then the 948b0797b60SJohn Stultz * tb_to_xs and stamp_xsec values are consistent. If not, then it 949b0797b60SJohn Stultz * loops back and reads them again until this criteria is met. 950b0797b60SJohn Stultz */ 9514a0e6377SThomas Gleixner vdso_data->tb_orig_stamp = cycle_last; 952b0797b60SJohn Stultz vdso_data->stamp_xsec = new_stamp_xsec; 953b0797b60SJohn Stultz vdso_data->tb_to_xs = new_tb_to_xs; 954d4cfb113SPaul Mackerras vdso_data->wtom_clock_sec = tk->wall_to_monotonic.tv_sec; 955d4cfb113SPaul Mackerras vdso_data->wtom_clock_nsec = tk->wall_to_monotonic.tv_nsec; 956d4cfb113SPaul Mackerras vdso_data->stamp_xtime = xt; 95747916be4SThomas Gleixner vdso_data->stamp_sec_fraction = frac_sec; 958b0797b60SJohn Stultz smp_wmb(); 959b0797b60SJohn Stultz ++(vdso_data->tb_update_count); 9604a4cfe38STony Breeds } 9614a4cfe38STony Breeds 9624a4cfe38STony Breeds void update_vsyscall_tz(void) 9634a4cfe38STony Breeds { 9644a4cfe38STony Breeds vdso_data->tz_minuteswest = sys_tz.tz_minuteswest; 9654a4cfe38STony Breeds vdso_data->tz_dsttime = sys_tz.tz_dsttime; 9664a4cfe38STony Breeds } 9674a4cfe38STony Breeds 9681c21a293SMichael Ellerman static void __init clocksource_init(void) 9694a4cfe38STony Breeds { 9704a4cfe38STony Breeds struct clocksource *clock; 9714a4cfe38STony Breeds 9724a4cfe38STony Breeds if (__USE_RTC()) 9734a4cfe38STony Breeds clock = &clocksource_rtc; 9744a4cfe38STony Breeds else 9754a4cfe38STony Breeds clock = &clocksource_timebase; 9764a4cfe38STony Breeds 97711b8633aSAnton Blanchard if (clocksource_register_hz(clock, tb_ticks_per_sec)) { 9784a4cfe38STony Breeds printk(KERN_ERR "clocksource: %s is already registered\n", 9794a4cfe38STony Breeds clock->name); 9804a4cfe38STony Breeds return; 9814a4cfe38STony Breeds } 9824a4cfe38STony Breeds 9834a4cfe38STony Breeds printk(KERN_INFO "clocksource: %s mult[%x] shift[%d] registered\n", 9844a4cfe38STony Breeds clock->name, clock->mult, clock->shift); 9854a4cfe38STony Breeds } 9864a4cfe38STony Breeds 987d831d0b8STony Breeds static int decrementer_set_next_event(unsigned long evt, 988d831d0b8STony Breeds struct clock_event_device *dev) 989d831d0b8STony Breeds { 99069111bacSChristoph Lameter __this_cpu_write(decrementers_next_tb, get_tb_or_rtc() + evt); 991d831d0b8STony Breeds set_dec(evt); 9920215f7d8SBenjamin Herrenschmidt 9930215f7d8SBenjamin Herrenschmidt /* We may have raced with new irq work */ 9940215f7d8SBenjamin Herrenschmidt if (test_irq_work_pending()) 9950215f7d8SBenjamin Herrenschmidt set_dec(1); 9960215f7d8SBenjamin Herrenschmidt 997d831d0b8STony Breeds return 0; 998d831d0b8STony Breeds } 999d831d0b8STony Breeds 100037a13e78SViresh Kumar static int decrementer_shutdown(struct clock_event_device *dev) 1001d831d0b8STony Breeds { 100279901024SOliver O'Halloran decrementer_set_next_event(decrementer_max, dev); 100337a13e78SViresh Kumar return 0; 1004d831d0b8STony Breeds } 1005d831d0b8STony Breeds 1006d831d0b8STony Breeds static void register_decrementer_clockevent(int cpu) 1007d831d0b8STony Breeds { 10087df10275SAnton Blanchard struct clock_event_device *dec = &per_cpu(decrementers, cpu); 1009d831d0b8STony Breeds 1010d831d0b8STony Breeds *dec = decrementer_clockevent; 1011320ab2b0SRusty Russell dec->cpumask = cpumask_of(cpu); 1012d831d0b8STony Breeds 10138b78fdb0SAnton Blanchard clockevents_config_and_register(dec, ppc_tb_freq, 2, decrementer_max); 10148b78fdb0SAnton Blanchard 1015b919ee82SAnton Blanchard printk_once(KERN_DEBUG "clockevent: %s mult[%x] shift[%d] cpu[%d]\n", 1016d831d0b8STony Breeds dec->name, dec->mult, dec->shift, cpu); 1017b4d16ab5SMichael Ellerman 1018b4d16ab5SMichael Ellerman /* Set values for KVM, see kvm_emulate_dec() */ 1019b4d16ab5SMichael Ellerman decrementer_clockevent.mult = dec->mult; 1020b4d16ab5SMichael Ellerman decrementer_clockevent.shift = dec->shift; 1021d831d0b8STony Breeds } 1022d831d0b8STony Breeds 102379901024SOliver O'Halloran static void enable_large_decrementer(void) 102479901024SOliver O'Halloran { 102579901024SOliver O'Halloran if (!cpu_has_feature(CPU_FTR_ARCH_300)) 102679901024SOliver O'Halloran return; 102779901024SOliver O'Halloran 102879901024SOliver O'Halloran if (decrementer_max <= DECREMENTER_DEFAULT_MAX) 102979901024SOliver O'Halloran return; 103079901024SOliver O'Halloran 103179901024SOliver O'Halloran /* 103279901024SOliver O'Halloran * If we're running as the hypervisor we need to enable the LD manually 103379901024SOliver O'Halloran * otherwise firmware should have done it for us. 103479901024SOliver O'Halloran */ 103579901024SOliver O'Halloran if (cpu_has_feature(CPU_FTR_HVMODE)) 103679901024SOliver O'Halloran mtspr(SPRN_LPCR, mfspr(SPRN_LPCR) | LPCR_LD); 103779901024SOliver O'Halloran } 103879901024SOliver O'Halloran 103979901024SOliver O'Halloran static void __init set_decrementer_max(void) 104079901024SOliver O'Halloran { 104179901024SOliver O'Halloran struct device_node *cpu; 104279901024SOliver O'Halloran u32 bits = 32; 104379901024SOliver O'Halloran 104479901024SOliver O'Halloran /* Prior to ISAv3 the decrementer is always 32 bit */ 104579901024SOliver O'Halloran if (!cpu_has_feature(CPU_FTR_ARCH_300)) 104679901024SOliver O'Halloran return; 104779901024SOliver O'Halloran 104879901024SOliver O'Halloran cpu = of_find_node_by_type(NULL, "cpu"); 104979901024SOliver O'Halloran 105079901024SOliver O'Halloran if (of_property_read_u32(cpu, "ibm,dec-bits", &bits) == 0) { 105179901024SOliver O'Halloran if (bits > 64 || bits < 32) { 105279901024SOliver O'Halloran pr_warn("time_init: firmware supplied invalid ibm,dec-bits"); 105379901024SOliver O'Halloran bits = 32; 105479901024SOliver O'Halloran } 105579901024SOliver O'Halloran 105679901024SOliver O'Halloran /* calculate the signed maximum given this many bits */ 105779901024SOliver O'Halloran decrementer_max = (1ul << (bits - 1)) - 1; 105879901024SOliver O'Halloran } 105979901024SOliver O'Halloran 106079901024SOliver O'Halloran of_node_put(cpu); 106179901024SOliver O'Halloran 106279901024SOliver O'Halloran pr_info("time_init: %u bit decrementer (max: %llx)\n", 106379901024SOliver O'Halloran bits, decrementer_max); 106479901024SOliver O'Halloran } 106579901024SOliver O'Halloran 1066c481887fSMilton Miller static void __init init_decrementer_clockevent(void) 1067d831d0b8STony Breeds { 10688b78fdb0SAnton Blanchard register_decrementer_clockevent(smp_processor_id()); 1069d831d0b8STony Breeds } 1070d831d0b8STony Breeds 1071d831d0b8STony Breeds void secondary_cpu_time_init(void) 1072d831d0b8STony Breeds { 107379901024SOliver O'Halloran /* Enable and test the large decrementer for this cpu */ 107479901024SOliver O'Halloran enable_large_decrementer(); 107579901024SOliver O'Halloran 107677c0a700SBenjamin Herrenschmidt /* Start the decrementer on CPUs that have manual control 107777c0a700SBenjamin Herrenschmidt * such as BookE 107877c0a700SBenjamin Herrenschmidt */ 107977c0a700SBenjamin Herrenschmidt start_cpu_decrementer(); 108077c0a700SBenjamin Herrenschmidt 1081d831d0b8STony Breeds /* FIME: Should make unrelatred change to move snapshot_timebase 1082d831d0b8STony Breeds * call here ! */ 1083d831d0b8STony Breeds register_decrementer_clockevent(smp_processor_id()); 1084d831d0b8STony Breeds } 1085d831d0b8STony Breeds 1086f2783c15SPaul Mackerras /* This function is only called on the boot processor */ 1087f2783c15SPaul Mackerras void __init time_init(void) 1088f2783c15SPaul Mackerras { 1089f2783c15SPaul Mackerras struct div_result res; 1090d75d68cfSPaul Mackerras u64 scale; 1091f2783c15SPaul Mackerras unsigned shift; 1092f2783c15SPaul Mackerras 109396c44507SPaul Mackerras if (__USE_RTC()) { 109496c44507SPaul Mackerras /* 601 processor: dec counts down by 128 every 128ns */ 109596c44507SPaul Mackerras ppc_tb_freq = 1000000000; 109696c44507SPaul Mackerras } else { 109796c44507SPaul Mackerras /* Normal PowerPC with timebase register */ 1098f2783c15SPaul Mackerras ppc_md.calibrate_decr(); 1099224ad80aSOlof Johansson printk(KERN_DEBUG "time_init: decrementer frequency = %lu.%.6lu MHz\n", 1100374e99d4SPaul Mackerras ppc_tb_freq / 1000000, ppc_tb_freq % 1000000); 1101224ad80aSOlof Johansson printk(KERN_DEBUG "time_init: processor frequency = %lu.%.6lu MHz\n", 1102374e99d4SPaul Mackerras ppc_proc_freq / 1000000, ppc_proc_freq % 1000000); 110396c44507SPaul Mackerras } 1104374e99d4SPaul Mackerras 1105374e99d4SPaul Mackerras tb_ticks_per_jiffy = ppc_tb_freq / HZ; 1106092b8f34SPaul Mackerras tb_ticks_per_sec = ppc_tb_freq; 1107374e99d4SPaul Mackerras tb_ticks_per_usec = ppc_tb_freq / 1000000; 1108c6622f63SPaul Mackerras calc_cputime_factors(); 1109092b8f34SPaul Mackerras 1110092b8f34SPaul Mackerras /* 1111f2783c15SPaul Mackerras * Compute scale factor for sched_clock. 1112f2783c15SPaul Mackerras * The calibrate_decr() function has set tb_ticks_per_sec, 1113f2783c15SPaul Mackerras * which is the timebase frequency. 1114f2783c15SPaul Mackerras * We compute 1e9 * 2^64 / tb_ticks_per_sec and interpret 1115f2783c15SPaul Mackerras * the 128-bit result as a 64.64 fixed-point number. 1116f2783c15SPaul Mackerras * We then shift that number right until it is less than 1.0, 1117f2783c15SPaul Mackerras * giving us the scale factor and shift count to use in 1118f2783c15SPaul Mackerras * sched_clock(). 1119f2783c15SPaul Mackerras */ 1120f2783c15SPaul Mackerras div128_by_32(1000000000, 0, tb_ticks_per_sec, &res); 1121f2783c15SPaul Mackerras scale = res.result_low; 1122f2783c15SPaul Mackerras for (shift = 0; res.result_high != 0; ++shift) { 1123f2783c15SPaul Mackerras scale = (scale >> 1) | (res.result_high << 63); 1124f2783c15SPaul Mackerras res.result_high >>= 1; 1125f2783c15SPaul Mackerras } 1126f2783c15SPaul Mackerras tb_to_ns_scale = scale; 1127f2783c15SPaul Mackerras tb_to_ns_shift = shift; 1128fc9069feSTony Breeds /* Save the current timebase to pretty up CONFIG_PRINTK_TIME */ 1129c27da339SBenjamin Herrenschmidt boot_tb = get_tb_or_rtc(); 1130f2783c15SPaul Mackerras 1131092b8f34SPaul Mackerras /* If platform provided a timezone (pmac), we correct the time */ 1132092b8f34SPaul Mackerras if (timezone_offset) { 1133092b8f34SPaul Mackerras sys_tz.tz_minuteswest = -timezone_offset / 60; 1134092b8f34SPaul Mackerras sys_tz.tz_dsttime = 0; 1135092b8f34SPaul Mackerras } 1136092b8f34SPaul Mackerras 1137a7f290daSBenjamin Herrenschmidt vdso_data->tb_update_count = 0; 1138a7f290daSBenjamin Herrenschmidt vdso_data->tb_ticks_per_sec = tb_ticks_per_sec; 1139f2783c15SPaul Mackerras 114079901024SOliver O'Halloran /* initialise and enable the large decrementer (if we have one) */ 114179901024SOliver O'Halloran set_decrementer_max(); 114279901024SOliver O'Halloran enable_large_decrementer(); 114379901024SOliver O'Halloran 114477c0a700SBenjamin Herrenschmidt /* Start the decrementer on CPUs that have manual control 114577c0a700SBenjamin Herrenschmidt * such as BookE 114677c0a700SBenjamin Herrenschmidt */ 114777c0a700SBenjamin Herrenschmidt start_cpu_decrementer(); 114877c0a700SBenjamin Herrenschmidt 1149f5339277SStephen Rothwell /* Register the clocksource */ 11504a4cfe38STony Breeds clocksource_init(); 11514a4cfe38STony Breeds 1152d831d0b8STony Breeds init_decrementer_clockevent(); 11530d948730SPreeti U Murthy tick_setup_hrtimer_broadcast(); 1154f0d37300SKevin Hao 1155f0d37300SKevin Hao #ifdef CONFIG_COMMON_CLK 1156f0d37300SKevin Hao of_clk_init(NULL); 1157f0d37300SKevin Hao #endif 1158f2783c15SPaul Mackerras } 1159f2783c15SPaul Mackerras 1160f2783c15SPaul Mackerras /* 1161f2783c15SPaul Mackerras * Divide a 128-bit dividend by a 32-bit divisor, leaving a 128 bit 1162f2783c15SPaul Mackerras * result. 1163f2783c15SPaul Mackerras */ 1164f2783c15SPaul Mackerras void div128_by_32(u64 dividend_high, u64 dividend_low, 1165f2783c15SPaul Mackerras unsigned divisor, struct div_result *dr) 1166f2783c15SPaul Mackerras { 1167f2783c15SPaul Mackerras unsigned long a, b, c, d; 1168f2783c15SPaul Mackerras unsigned long w, x, y, z; 1169f2783c15SPaul Mackerras u64 ra, rb, rc; 1170f2783c15SPaul Mackerras 1171f2783c15SPaul Mackerras a = dividend_high >> 32; 1172f2783c15SPaul Mackerras b = dividend_high & 0xffffffff; 1173f2783c15SPaul Mackerras c = dividend_low >> 32; 1174f2783c15SPaul Mackerras d = dividend_low & 0xffffffff; 1175f2783c15SPaul Mackerras 1176f2783c15SPaul Mackerras w = a / divisor; 1177f2783c15SPaul Mackerras ra = ((u64)(a - (w * divisor)) << 32) + b; 1178f2783c15SPaul Mackerras 1179f2783c15SPaul Mackerras rb = ((u64) do_div(ra, divisor) << 32) + c; 1180f2783c15SPaul Mackerras x = ra; 1181f2783c15SPaul Mackerras 1182f2783c15SPaul Mackerras rc = ((u64) do_div(rb, divisor) << 32) + d; 1183f2783c15SPaul Mackerras y = rb; 1184f2783c15SPaul Mackerras 1185f2783c15SPaul Mackerras do_div(rc, divisor); 1186f2783c15SPaul Mackerras z = rc; 1187f2783c15SPaul Mackerras 1188f2783c15SPaul Mackerras dr->result_high = ((u64)w << 32) + x; 1189f2783c15SPaul Mackerras dr->result_low = ((u64)y << 32) + z; 1190f2783c15SPaul Mackerras 1191f2783c15SPaul Mackerras } 1192bcd68a70SGeert Uytterhoeven 1193177996e6SBenjamin Herrenschmidt /* We don't need to calibrate delay, we use the CPU timebase for that */ 1194177996e6SBenjamin Herrenschmidt void calibrate_delay(void) 1195177996e6SBenjamin Herrenschmidt { 1196177996e6SBenjamin Herrenschmidt /* Some generic code (such as spinlock debug) use loops_per_jiffy 1197177996e6SBenjamin Herrenschmidt * as the number of __delay(1) in a jiffy, so make it so 1198177996e6SBenjamin Herrenschmidt */ 1199177996e6SBenjamin Herrenschmidt loops_per_jiffy = tb_ticks_per_jiffy; 1200177996e6SBenjamin Herrenschmidt } 1201177996e6SBenjamin Herrenschmidt 1202169047f4SArnd Bergmann #if IS_ENABLED(CONFIG_RTC_DRV_GENERIC) 1203169047f4SArnd Bergmann static int rtc_generic_get_time(struct device *dev, struct rtc_time *tm) 1204169047f4SArnd Bergmann { 1205169047f4SArnd Bergmann ppc_md.get_rtc_time(tm); 1206890ae797SAlexandre Belloni return 0; 1207169047f4SArnd Bergmann } 1208169047f4SArnd Bergmann 1209169047f4SArnd Bergmann static int rtc_generic_set_time(struct device *dev, struct rtc_time *tm) 1210169047f4SArnd Bergmann { 1211169047f4SArnd Bergmann if (!ppc_md.set_rtc_time) 1212169047f4SArnd Bergmann return -EOPNOTSUPP; 1213169047f4SArnd Bergmann 1214169047f4SArnd Bergmann if (ppc_md.set_rtc_time(tm) < 0) 1215169047f4SArnd Bergmann return -EOPNOTSUPP; 1216169047f4SArnd Bergmann 1217169047f4SArnd Bergmann return 0; 1218169047f4SArnd Bergmann } 1219169047f4SArnd Bergmann 1220169047f4SArnd Bergmann static const struct rtc_class_ops rtc_generic_ops = { 1221169047f4SArnd Bergmann .read_time = rtc_generic_get_time, 1222169047f4SArnd Bergmann .set_time = rtc_generic_set_time, 1223169047f4SArnd Bergmann }; 1224169047f4SArnd Bergmann 1225bcd68a70SGeert Uytterhoeven static int __init rtc_init(void) 1226bcd68a70SGeert Uytterhoeven { 1227bcd68a70SGeert Uytterhoeven struct platform_device *pdev; 1228bcd68a70SGeert Uytterhoeven 1229bcd68a70SGeert Uytterhoeven if (!ppc_md.get_rtc_time) 1230bcd68a70SGeert Uytterhoeven return -ENODEV; 1231bcd68a70SGeert Uytterhoeven 1232169047f4SArnd Bergmann pdev = platform_device_register_data(NULL, "rtc-generic", -1, 1233169047f4SArnd Bergmann &rtc_generic_ops, 1234169047f4SArnd Bergmann sizeof(rtc_generic_ops)); 1235bcd68a70SGeert Uytterhoeven 12368c6ffba0SRusty Russell return PTR_ERR_OR_ZERO(pdev); 1237bcd68a70SGeert Uytterhoeven } 1238bcd68a70SGeert Uytterhoeven 12398f6b9512SPaul Gortmaker device_initcall(rtc_init); 1240169047f4SArnd Bergmann #endif 1241