1906568c9SThomas Gleixner /* 2906568c9SThomas Gleixner * linux/kernel/time/tick-common.c 3906568c9SThomas Gleixner * 4906568c9SThomas Gleixner * This file contains the base functions to manage periodic tick 5906568c9SThomas Gleixner * related events. 6906568c9SThomas Gleixner * 7906568c9SThomas Gleixner * Copyright(C) 2005-2006, Thomas Gleixner <tglx@linutronix.de> 8906568c9SThomas Gleixner * Copyright(C) 2005-2007, Red Hat, Inc., Ingo Molnar 9906568c9SThomas Gleixner * Copyright(C) 2006-2007, Timesys Corp., Thomas Gleixner 10906568c9SThomas Gleixner * 11906568c9SThomas Gleixner * This code is licenced under the GPL version 2. For details see 12906568c9SThomas Gleixner * kernel-base/COPYING. 13906568c9SThomas Gleixner */ 14906568c9SThomas Gleixner #include <linux/cpu.h> 15906568c9SThomas Gleixner #include <linux/err.h> 16906568c9SThomas Gleixner #include <linux/hrtimer.h> 17d7b90689SRussell King #include <linux/interrupt.h> 18906568c9SThomas Gleixner #include <linux/percpu.h> 19906568c9SThomas Gleixner #include <linux/profile.h> 20906568c9SThomas Gleixner #include <linux/sched.h> 21ccf33d68SThomas Gleixner #include <linux/module.h> 22906568c9SThomas Gleixner 23d7b90689SRussell King #include <asm/irq_regs.h> 24d7b90689SRussell King 25f8381cbaSThomas Gleixner #include "tick-internal.h" 26f8381cbaSThomas Gleixner 27906568c9SThomas Gleixner /* 28906568c9SThomas Gleixner * Tick devices 29906568c9SThomas Gleixner */ 30f8381cbaSThomas Gleixner DEFINE_PER_CPU(struct tick_device, tick_cpu_device); 31906568c9SThomas Gleixner /* 32906568c9SThomas Gleixner * Tick next event: keeps track of the tick time 33906568c9SThomas Gleixner */ 34f8381cbaSThomas Gleixner ktime_t tick_next_period; 35f8381cbaSThomas Gleixner ktime_t tick_period; 366441402bSThomas Gleixner int tick_do_timer_cpu __read_mostly = TICK_DO_TIMER_BOOT; 37906568c9SThomas Gleixner 38289f480aSIngo Molnar /* 39289f480aSIngo Molnar * Debugging: see timer_list.c 40289f480aSIngo Molnar */ 41289f480aSIngo Molnar struct tick_device *tick_get_device(int cpu) 42289f480aSIngo Molnar { 43289f480aSIngo Molnar return &per_cpu(tick_cpu_device, cpu); 44289f480aSIngo Molnar } 45289f480aSIngo Molnar 4679bf2bb3SThomas Gleixner /** 4779bf2bb3SThomas Gleixner * tick_is_oneshot_available - check for a oneshot capable event device 4879bf2bb3SThomas Gleixner */ 4979bf2bb3SThomas Gleixner int tick_is_oneshot_available(void) 5079bf2bb3SThomas Gleixner { 51909ea964SChristoph Lameter struct clock_event_device *dev = __this_cpu_read(tick_cpu_device.evtdev); 5279bf2bb3SThomas Gleixner 533a142a06SThomas Gleixner if (!dev || !(dev->features & CLOCK_EVT_FEAT_ONESHOT)) 543a142a06SThomas Gleixner return 0; 553a142a06SThomas Gleixner if (!(dev->features & CLOCK_EVT_FEAT_C3STOP)) 563a142a06SThomas Gleixner return 1; 573a142a06SThomas Gleixner return tick_broadcast_oneshot_available(); 5879bf2bb3SThomas Gleixner } 5979bf2bb3SThomas Gleixner 60906568c9SThomas Gleixner /* 61906568c9SThomas Gleixner * Periodic tick 62906568c9SThomas Gleixner */ 63906568c9SThomas Gleixner static void tick_periodic(int cpu) 64906568c9SThomas Gleixner { 65906568c9SThomas Gleixner if (tick_do_timer_cpu == cpu) { 66d6ad4187SJohn Stultz write_seqlock(&jiffies_lock); 67906568c9SThomas Gleixner 68906568c9SThomas Gleixner /* Keep track of the next tick event */ 69906568c9SThomas Gleixner tick_next_period = ktime_add(tick_next_period, tick_period); 70906568c9SThomas Gleixner 71906568c9SThomas Gleixner do_timer(1); 72d6ad4187SJohn Stultz write_sequnlock(&jiffies_lock); 73906568c9SThomas Gleixner } 74906568c9SThomas Gleixner 75906568c9SThomas Gleixner update_process_times(user_mode(get_irq_regs())); 76906568c9SThomas Gleixner profile_tick(CPU_PROFILING); 77906568c9SThomas Gleixner } 78906568c9SThomas Gleixner 79906568c9SThomas Gleixner /* 80906568c9SThomas Gleixner * Event handler for periodic ticks 81906568c9SThomas Gleixner */ 82906568c9SThomas Gleixner void tick_handle_periodic(struct clock_event_device *dev) 83906568c9SThomas Gleixner { 84906568c9SThomas Gleixner int cpu = smp_processor_id(); 853494c166SDavid S. Miller ktime_t next; 86906568c9SThomas Gleixner 87906568c9SThomas Gleixner tick_periodic(cpu); 88906568c9SThomas Gleixner 89906568c9SThomas Gleixner if (dev->mode != CLOCK_EVT_MODE_ONESHOT) 90906568c9SThomas Gleixner return; 91906568c9SThomas Gleixner /* 92906568c9SThomas Gleixner * Setup the next period for devices, which do not have 93906568c9SThomas Gleixner * periodic mode: 94906568c9SThomas Gleixner */ 953494c166SDavid S. Miller next = ktime_add(dev->next_event, tick_period); 96906568c9SThomas Gleixner for (;;) { 97d1748302SMartin Schwidefsky if (!clockevents_program_event(dev, next, false)) 98906568c9SThomas Gleixner return; 9974a03b69Sjohn stultz /* 10074a03b69Sjohn stultz * Have to be careful here. If we're in oneshot mode, 10174a03b69Sjohn stultz * before we call tick_periodic() in a loop, we need 10274a03b69Sjohn stultz * to be sure we're using a real hardware clocksource. 10374a03b69Sjohn stultz * Otherwise we could get trapped in an infinite 10474a03b69Sjohn stultz * loop, as the tick_periodic() increments jiffies, 10574a03b69Sjohn stultz * when then will increment time, posibly causing 10674a03b69Sjohn stultz * the loop to trigger again and again. 10774a03b69Sjohn stultz */ 10874a03b69Sjohn stultz if (timekeeping_valid_for_hres()) 109906568c9SThomas Gleixner tick_periodic(cpu); 1103494c166SDavid S. Miller next = ktime_add(next, tick_period); 111906568c9SThomas Gleixner } 112906568c9SThomas Gleixner } 113906568c9SThomas Gleixner 114906568c9SThomas Gleixner /* 115906568c9SThomas Gleixner * Setup the device for a periodic tick 116906568c9SThomas Gleixner */ 117f8381cbaSThomas Gleixner void tick_setup_periodic(struct clock_event_device *dev, int broadcast) 118906568c9SThomas Gleixner { 119f8381cbaSThomas Gleixner tick_set_periodic_handler(dev, broadcast); 120f8381cbaSThomas Gleixner 121f8381cbaSThomas Gleixner /* Broadcast setup ? */ 122f8381cbaSThomas Gleixner if (!tick_device_is_functional(dev)) 123f8381cbaSThomas Gleixner return; 124906568c9SThomas Gleixner 12527ce4cb4SThomas Gleixner if ((dev->features & CLOCK_EVT_FEAT_PERIODIC) && 12627ce4cb4SThomas Gleixner !tick_broadcast_oneshot_active()) { 127906568c9SThomas Gleixner clockevents_set_mode(dev, CLOCK_EVT_MODE_PERIODIC); 128906568c9SThomas Gleixner } else { 129906568c9SThomas Gleixner unsigned long seq; 130906568c9SThomas Gleixner ktime_t next; 131906568c9SThomas Gleixner 132906568c9SThomas Gleixner do { 133d6ad4187SJohn Stultz seq = read_seqbegin(&jiffies_lock); 134906568c9SThomas Gleixner next = tick_next_period; 135d6ad4187SJohn Stultz } while (read_seqretry(&jiffies_lock, seq)); 136906568c9SThomas Gleixner 137906568c9SThomas Gleixner clockevents_set_mode(dev, CLOCK_EVT_MODE_ONESHOT); 138906568c9SThomas Gleixner 139906568c9SThomas Gleixner for (;;) { 140d1748302SMartin Schwidefsky if (!clockevents_program_event(dev, next, false)) 141906568c9SThomas Gleixner return; 142906568c9SThomas Gleixner next = ktime_add(next, tick_period); 143906568c9SThomas Gleixner } 144906568c9SThomas Gleixner } 145906568c9SThomas Gleixner } 146906568c9SThomas Gleixner 147906568c9SThomas Gleixner /* 148906568c9SThomas Gleixner * Setup the tick device 149906568c9SThomas Gleixner */ 150906568c9SThomas Gleixner static void tick_setup_device(struct tick_device *td, 151906568c9SThomas Gleixner struct clock_event_device *newdev, int cpu, 1520de26520SRusty Russell const struct cpumask *cpumask) 153906568c9SThomas Gleixner { 154906568c9SThomas Gleixner ktime_t next_event; 155906568c9SThomas Gleixner void (*handler)(struct clock_event_device *) = NULL; 156906568c9SThomas Gleixner 157906568c9SThomas Gleixner /* 158906568c9SThomas Gleixner * First device setup ? 159906568c9SThomas Gleixner */ 160906568c9SThomas Gleixner if (!td->evtdev) { 161906568c9SThomas Gleixner /* 162906568c9SThomas Gleixner * If no cpu took the do_timer update, assign it to 163906568c9SThomas Gleixner * this cpu: 164906568c9SThomas Gleixner */ 1656441402bSThomas Gleixner if (tick_do_timer_cpu == TICK_DO_TIMER_BOOT) { 166c5bfece2SFrederic Weisbecker if (!tick_nohz_full_cpu(cpu)) 167906568c9SThomas Gleixner tick_do_timer_cpu = cpu; 168a382bf93SFrederic Weisbecker else 169a382bf93SFrederic Weisbecker tick_do_timer_cpu = TICK_DO_TIMER_NONE; 170906568c9SThomas Gleixner tick_next_period = ktime_get(); 171906568c9SThomas Gleixner tick_period = ktime_set(0, NSEC_PER_SEC / HZ); 172906568c9SThomas Gleixner } 173906568c9SThomas Gleixner 174906568c9SThomas Gleixner /* 175906568c9SThomas Gleixner * Startup in periodic mode first. 176906568c9SThomas Gleixner */ 177906568c9SThomas Gleixner td->mode = TICKDEV_MODE_PERIODIC; 178906568c9SThomas Gleixner } else { 179906568c9SThomas Gleixner handler = td->evtdev->event_handler; 180906568c9SThomas Gleixner next_event = td->evtdev->next_event; 1817c1e7689SVenkatesh Pallipadi td->evtdev->event_handler = clockevents_handle_noop; 182906568c9SThomas Gleixner } 183906568c9SThomas Gleixner 184906568c9SThomas Gleixner td->evtdev = newdev; 185906568c9SThomas Gleixner 186906568c9SThomas Gleixner /* 187906568c9SThomas Gleixner * When the device is not per cpu, pin the interrupt to the 188906568c9SThomas Gleixner * current cpu: 189906568c9SThomas Gleixner */ 190320ab2b0SRusty Russell if (!cpumask_equal(newdev->cpumask, cpumask)) 1910de26520SRusty Russell irq_set_affinity(newdev->irq, cpumask); 192906568c9SThomas Gleixner 193f8381cbaSThomas Gleixner /* 194f8381cbaSThomas Gleixner * When global broadcasting is active, check if the current 195f8381cbaSThomas Gleixner * device is registered as a placeholder for broadcast mode. 196f8381cbaSThomas Gleixner * This allows us to handle this x86 misfeature in a generic 197f8381cbaSThomas Gleixner * way. 198f8381cbaSThomas Gleixner */ 199f8381cbaSThomas Gleixner if (tick_device_uses_broadcast(newdev, cpu)) 200f8381cbaSThomas Gleixner return; 201f8381cbaSThomas Gleixner 202906568c9SThomas Gleixner if (td->mode == TICKDEV_MODE_PERIODIC) 203906568c9SThomas Gleixner tick_setup_periodic(newdev, 0); 20479bf2bb3SThomas Gleixner else 20579bf2bb3SThomas Gleixner tick_setup_oneshot(newdev, handler, next_event); 206906568c9SThomas Gleixner } 207906568c9SThomas Gleixner 208*45cb8e01SThomas Gleixner static bool tick_check_percpu(struct clock_event_device *curdev, 209*45cb8e01SThomas Gleixner struct clock_event_device *newdev, int cpu) 210*45cb8e01SThomas Gleixner { 211*45cb8e01SThomas Gleixner if (!cpumask_test_cpu(cpu, newdev->cpumask)) 212*45cb8e01SThomas Gleixner return false; 213*45cb8e01SThomas Gleixner if (cpumask_equal(newdev->cpumask, cpumask_of(cpu))) 214*45cb8e01SThomas Gleixner return true; 215*45cb8e01SThomas Gleixner /* Check if irq affinity can be set */ 216*45cb8e01SThomas Gleixner if (newdev->irq >= 0 && !irq_can_set_affinity(newdev->irq)) 217*45cb8e01SThomas Gleixner return false; 218*45cb8e01SThomas Gleixner /* Prefer an existing cpu local device */ 219*45cb8e01SThomas Gleixner if (curdev && cpumask_equal(curdev->cpumask, cpumask_of(cpu))) 220*45cb8e01SThomas Gleixner return false; 221*45cb8e01SThomas Gleixner return true; 222*45cb8e01SThomas Gleixner } 223*45cb8e01SThomas Gleixner 224*45cb8e01SThomas Gleixner static bool tick_check_preferred(struct clock_event_device *curdev, 225*45cb8e01SThomas Gleixner struct clock_event_device *newdev) 226*45cb8e01SThomas Gleixner { 227*45cb8e01SThomas Gleixner /* Prefer oneshot capable device */ 228*45cb8e01SThomas Gleixner if (!(newdev->features & CLOCK_EVT_FEAT_ONESHOT)) { 229*45cb8e01SThomas Gleixner if (curdev && (curdev->features & CLOCK_EVT_FEAT_ONESHOT)) 230*45cb8e01SThomas Gleixner return false; 231*45cb8e01SThomas Gleixner if (tick_oneshot_mode_active()) 232*45cb8e01SThomas Gleixner return false; 233*45cb8e01SThomas Gleixner } 234*45cb8e01SThomas Gleixner 235*45cb8e01SThomas Gleixner /* Use the higher rated one */ 236*45cb8e01SThomas Gleixner return !curdev || newdev->rating > curdev->rating; 237*45cb8e01SThomas Gleixner } 238*45cb8e01SThomas Gleixner 239906568c9SThomas Gleixner /* 2407126cac4SThomas Gleixner * Check, if the new registered device should be used. Called with 2417126cac4SThomas Gleixner * clockevents_lock held and interrupts disabled. 242906568c9SThomas Gleixner */ 2437172a286SThomas Gleixner void tick_check_new_device(struct clock_event_device *newdev) 244906568c9SThomas Gleixner { 245906568c9SThomas Gleixner struct clock_event_device *curdev; 246906568c9SThomas Gleixner struct tick_device *td; 2477172a286SThomas Gleixner int cpu; 248906568c9SThomas Gleixner 249906568c9SThomas Gleixner cpu = smp_processor_id(); 250320ab2b0SRusty Russell if (!cpumask_test_cpu(cpu, newdev->cpumask)) 2514a93232dSVenki Pallipadi goto out_bc; 252906568c9SThomas Gleixner 253906568c9SThomas Gleixner td = &per_cpu(tick_cpu_device, cpu); 254906568c9SThomas Gleixner curdev = td->evtdev; 255906568c9SThomas Gleixner 256906568c9SThomas Gleixner /* cpu local device ? */ 257*45cb8e01SThomas Gleixner if (!tick_check_percpu(curdev, newdev, cpu)) 258906568c9SThomas Gleixner goto out_bc; 259906568c9SThomas Gleixner 260*45cb8e01SThomas Gleixner /* Preference decision */ 261*45cb8e01SThomas Gleixner if (!tick_check_preferred(curdev, newdev)) 262906568c9SThomas Gleixner goto out_bc; 263906568c9SThomas Gleixner 264ccf33d68SThomas Gleixner if (!try_module_get(newdev->owner)) 265ccf33d68SThomas Gleixner return; 266ccf33d68SThomas Gleixner 267906568c9SThomas Gleixner /* 268906568c9SThomas Gleixner * Replace the eventually existing device by the new 269f8381cbaSThomas Gleixner * device. If the current device is the broadcast device, do 270f8381cbaSThomas Gleixner * not give it back to the clockevents layer ! 271906568c9SThomas Gleixner */ 272f8381cbaSThomas Gleixner if (tick_is_broadcast_device(curdev)) { 2732344abbcSThomas Gleixner clockevents_shutdown(curdev); 274f8381cbaSThomas Gleixner curdev = NULL; 275f8381cbaSThomas Gleixner } 276906568c9SThomas Gleixner clockevents_exchange_device(curdev, newdev); 2776b954823SRusty Russell tick_setup_device(td, newdev, cpu, cpumask_of(cpu)); 27879bf2bb3SThomas Gleixner if (newdev->features & CLOCK_EVT_FEAT_ONESHOT) 27979bf2bb3SThomas Gleixner tick_oneshot_notify(); 2807172a286SThomas Gleixner return; 281f8381cbaSThomas Gleixner 282f8381cbaSThomas Gleixner out_bc: 283f8381cbaSThomas Gleixner /* 284f8381cbaSThomas Gleixner * Can the new device be used as a broadcast device ? 285f8381cbaSThomas Gleixner */ 2867172a286SThomas Gleixner tick_install_broadcast_device(newdev); 287906568c9SThomas Gleixner } 288906568c9SThomas Gleixner 289906568c9SThomas Gleixner /* 29094df7de0SSebastien Dugue * Transfer the do_timer job away from a dying cpu. 29194df7de0SSebastien Dugue * 29294df7de0SSebastien Dugue * Called with interrupts disabled. 29394df7de0SSebastien Dugue */ 2948c53daf6SThomas Gleixner void tick_handover_do_timer(int *cpup) 29594df7de0SSebastien Dugue { 29694df7de0SSebastien Dugue if (*cpup == tick_do_timer_cpu) { 29794df7de0SSebastien Dugue int cpu = cpumask_first(cpu_online_mask); 29894df7de0SSebastien Dugue 29994df7de0SSebastien Dugue tick_do_timer_cpu = (cpu < nr_cpu_ids) ? cpu : 30094df7de0SSebastien Dugue TICK_DO_TIMER_NONE; 30194df7de0SSebastien Dugue } 30294df7de0SSebastien Dugue } 30394df7de0SSebastien Dugue 30494df7de0SSebastien Dugue /* 305906568c9SThomas Gleixner * Shutdown an event device on a given cpu: 306906568c9SThomas Gleixner * 307906568c9SThomas Gleixner * This is called on a life CPU, when a CPU is dead. So we cannot 308906568c9SThomas Gleixner * access the hardware device itself. 309906568c9SThomas Gleixner * We just set the mode and remove it from the lists. 310906568c9SThomas Gleixner */ 3118c53daf6SThomas Gleixner void tick_shutdown(unsigned int *cpup) 312906568c9SThomas Gleixner { 313906568c9SThomas Gleixner struct tick_device *td = &per_cpu(tick_cpu_device, *cpup); 314906568c9SThomas Gleixner struct clock_event_device *dev = td->evtdev; 315906568c9SThomas Gleixner 316906568c9SThomas Gleixner td->mode = TICKDEV_MODE_PERIODIC; 317906568c9SThomas Gleixner if (dev) { 318906568c9SThomas Gleixner /* 319906568c9SThomas Gleixner * Prevent that the clock events layer tries to call 320906568c9SThomas Gleixner * the set mode function! 321906568c9SThomas Gleixner */ 322906568c9SThomas Gleixner dev->mode = CLOCK_EVT_MODE_UNUSED; 323906568c9SThomas Gleixner clockevents_exchange_device(dev, NULL); 3246f7a05d7SThomas Gleixner dev->event_handler = clockevents_handle_noop; 325906568c9SThomas Gleixner td->evtdev = NULL; 326906568c9SThomas Gleixner } 327906568c9SThomas Gleixner } 328906568c9SThomas Gleixner 3298c53daf6SThomas Gleixner void tick_suspend(void) 3306321dd60SThomas Gleixner { 3316321dd60SThomas Gleixner struct tick_device *td = &__get_cpu_var(tick_cpu_device); 3326321dd60SThomas Gleixner 3332344abbcSThomas Gleixner clockevents_shutdown(td->evtdev); 3346321dd60SThomas Gleixner } 3356321dd60SThomas Gleixner 3368c53daf6SThomas Gleixner void tick_resume(void) 3376321dd60SThomas Gleixner { 3386321dd60SThomas Gleixner struct tick_device *td = &__get_cpu_var(tick_cpu_device); 33918de5bc4SThomas Gleixner int broadcast = tick_resume_broadcast(); 3406321dd60SThomas Gleixner 34118de5bc4SThomas Gleixner clockevents_set_mode(td->evtdev, CLOCK_EVT_MODE_RESUME); 34218de5bc4SThomas Gleixner 34318de5bc4SThomas Gleixner if (!broadcast) { 3446321dd60SThomas Gleixner if (td->mode == TICKDEV_MODE_PERIODIC) 3456321dd60SThomas Gleixner tick_setup_periodic(td->evtdev, 0); 346cd05a1f8SThomas Gleixner else 347cd05a1f8SThomas Gleixner tick_resume_oneshot(); 34818de5bc4SThomas Gleixner } 3496321dd60SThomas Gleixner } 3506321dd60SThomas Gleixner 351906568c9SThomas Gleixner /** 352906568c9SThomas Gleixner * tick_init - initialize the tick control 353906568c9SThomas Gleixner */ 354906568c9SThomas Gleixner void __init tick_init(void) 355906568c9SThomas Gleixner { 356b352bc1cSThomas Gleixner tick_broadcast_init(); 357906568c9SThomas Gleixner } 358