135728b82SThomas Gleixner // SPDX-License-Identifier: GPL-2.0 2906568c9SThomas Gleixner /* 3906568c9SThomas Gleixner * This file contains the base functions to manage periodic tick 4906568c9SThomas Gleixner * related events. 5906568c9SThomas Gleixner * 6906568c9SThomas Gleixner * Copyright(C) 2005-2006, Thomas Gleixner <tglx@linutronix.de> 7906568c9SThomas Gleixner * Copyright(C) 2005-2007, Red Hat, Inc., Ingo Molnar 8906568c9SThomas Gleixner * Copyright(C) 2006-2007, Timesys Corp., Thomas Gleixner 9906568c9SThomas Gleixner */ 10906568c9SThomas Gleixner #include <linux/cpu.h> 11906568c9SThomas Gleixner #include <linux/err.h> 12906568c9SThomas Gleixner #include <linux/hrtimer.h> 13d7b90689SRussell King #include <linux/interrupt.h> 14906568c9SThomas Gleixner #include <linux/percpu.h> 15906568c9SThomas Gleixner #include <linux/profile.h> 16906568c9SThomas Gleixner #include <linux/sched.h> 17ccf33d68SThomas Gleixner #include <linux/module.h> 1875e0678eSRafael J. Wysocki #include <trace/events/power.h> 19906568c9SThomas Gleixner 20d7b90689SRussell King #include <asm/irq_regs.h> 21d7b90689SRussell King 22f8381cbaSThomas Gleixner #include "tick-internal.h" 23f8381cbaSThomas Gleixner 24906568c9SThomas Gleixner /* 25906568c9SThomas Gleixner * Tick devices 26906568c9SThomas Gleixner */ 27f8381cbaSThomas Gleixner DEFINE_PER_CPU(struct tick_device, tick_cpu_device); 28906568c9SThomas Gleixner /* 29906568c9SThomas Gleixner * Tick next event: keeps track of the tick time 30906568c9SThomas Gleixner */ 31f8381cbaSThomas Gleixner ktime_t tick_next_period; 32f8381cbaSThomas Gleixner ktime_t tick_period; 33050ded1bSAndrew Morton 34050ded1bSAndrew Morton /* 35050ded1bSAndrew Morton * tick_do_timer_cpu is a timer core internal variable which holds the CPU NR 36050ded1bSAndrew Morton * which is responsible for calling do_timer(), i.e. the timekeeping stuff. This 37050ded1bSAndrew Morton * variable has two functions: 38050ded1bSAndrew Morton * 39050ded1bSAndrew Morton * 1) Prevent a thundering herd issue of a gazillion of CPUs trying to grab the 40050ded1bSAndrew Morton * timekeeping lock all at once. Only the CPU which is assigned to do the 41050ded1bSAndrew Morton * update is handling it. 42050ded1bSAndrew Morton * 43050ded1bSAndrew Morton * 2) Hand off the duty in the NOHZ idle case by setting the value to 44050ded1bSAndrew Morton * TICK_DO_TIMER_NONE, i.e. a non existing CPU. So the next cpu which looks 45050ded1bSAndrew Morton * at it will take over and keep the time keeping alive. The handover 46050ded1bSAndrew Morton * procedure also covers cpu hotplug. 47050ded1bSAndrew Morton */ 486441402bSThomas Gleixner int tick_do_timer_cpu __read_mostly = TICK_DO_TIMER_BOOT; 49*08ae95f4SNicholas Piggin #ifdef CONFIG_NO_HZ_FULL 50*08ae95f4SNicholas Piggin /* 51*08ae95f4SNicholas Piggin * tick_do_timer_boot_cpu indicates the boot CPU temporarily owns 52*08ae95f4SNicholas Piggin * tick_do_timer_cpu and it should be taken over by an eligible secondary 53*08ae95f4SNicholas Piggin * when one comes online. 54*08ae95f4SNicholas Piggin */ 55*08ae95f4SNicholas Piggin static int tick_do_timer_boot_cpu __read_mostly = -1; 56*08ae95f4SNicholas Piggin #endif 57906568c9SThomas Gleixner 58289f480aSIngo Molnar /* 59289f480aSIngo Molnar * Debugging: see timer_list.c 60289f480aSIngo Molnar */ 61289f480aSIngo Molnar struct tick_device *tick_get_device(int cpu) 62289f480aSIngo Molnar { 63289f480aSIngo Molnar return &per_cpu(tick_cpu_device, cpu); 64289f480aSIngo Molnar } 65289f480aSIngo Molnar 6679bf2bb3SThomas Gleixner /** 6779bf2bb3SThomas Gleixner * tick_is_oneshot_available - check for a oneshot capable event device 6879bf2bb3SThomas Gleixner */ 6979bf2bb3SThomas Gleixner int tick_is_oneshot_available(void) 7079bf2bb3SThomas Gleixner { 71909ea964SChristoph Lameter struct clock_event_device *dev = __this_cpu_read(tick_cpu_device.evtdev); 7279bf2bb3SThomas Gleixner 733a142a06SThomas Gleixner if (!dev || !(dev->features & CLOCK_EVT_FEAT_ONESHOT)) 743a142a06SThomas Gleixner return 0; 753a142a06SThomas Gleixner if (!(dev->features & CLOCK_EVT_FEAT_C3STOP)) 763a142a06SThomas Gleixner return 1; 773a142a06SThomas Gleixner return tick_broadcast_oneshot_available(); 7879bf2bb3SThomas Gleixner } 7979bf2bb3SThomas Gleixner 80906568c9SThomas Gleixner /* 81906568c9SThomas Gleixner * Periodic tick 82906568c9SThomas Gleixner */ 83906568c9SThomas Gleixner static void tick_periodic(int cpu) 84906568c9SThomas Gleixner { 85906568c9SThomas Gleixner if (tick_do_timer_cpu == cpu) { 86d6ad4187SJohn Stultz write_seqlock(&jiffies_lock); 87906568c9SThomas Gleixner 88906568c9SThomas Gleixner /* Keep track of the next tick event */ 89906568c9SThomas Gleixner tick_next_period = ktime_add(tick_next_period, tick_period); 90906568c9SThomas Gleixner 91906568c9SThomas Gleixner do_timer(1); 92d6ad4187SJohn Stultz write_sequnlock(&jiffies_lock); 9347a1b796SJohn Stultz update_wall_time(); 94906568c9SThomas Gleixner } 95906568c9SThomas Gleixner 96906568c9SThomas Gleixner update_process_times(user_mode(get_irq_regs())); 97906568c9SThomas Gleixner profile_tick(CPU_PROFILING); 98906568c9SThomas Gleixner } 99906568c9SThomas Gleixner 100906568c9SThomas Gleixner /* 101906568c9SThomas Gleixner * Event handler for periodic ticks 102906568c9SThomas Gleixner */ 103906568c9SThomas Gleixner void tick_handle_periodic(struct clock_event_device *dev) 104906568c9SThomas Gleixner { 105906568c9SThomas Gleixner int cpu = smp_processor_id(); 106b97f0291SViresh Kumar ktime_t next = dev->next_event; 107906568c9SThomas Gleixner 108906568c9SThomas Gleixner tick_periodic(cpu); 109906568c9SThomas Gleixner 110c6eb3f70SThomas Gleixner #if defined(CONFIG_HIGH_RES_TIMERS) || defined(CONFIG_NO_HZ_COMMON) 111c6eb3f70SThomas Gleixner /* 112c6eb3f70SThomas Gleixner * The cpu might have transitioned to HIGHRES or NOHZ mode via 113c6eb3f70SThomas Gleixner * update_process_times() -> run_local_timers() -> 114c6eb3f70SThomas Gleixner * hrtimer_run_queues(). 115c6eb3f70SThomas Gleixner */ 116c6eb3f70SThomas Gleixner if (dev->event_handler != tick_handle_periodic) 117c6eb3f70SThomas Gleixner return; 118c6eb3f70SThomas Gleixner #endif 119c6eb3f70SThomas Gleixner 120472c4a94SViresh Kumar if (!clockevent_state_oneshot(dev)) 121906568c9SThomas Gleixner return; 122b97f0291SViresh Kumar for (;;) { 123906568c9SThomas Gleixner /* 124906568c9SThomas Gleixner * Setup the next period for devices, which do not have 125906568c9SThomas Gleixner * periodic mode: 126906568c9SThomas Gleixner */ 127b97f0291SViresh Kumar next = ktime_add(next, tick_period); 128b97f0291SViresh Kumar 129d1748302SMartin Schwidefsky if (!clockevents_program_event(dev, next, false)) 130906568c9SThomas Gleixner return; 13174a03b69Sjohn stultz /* 13274a03b69Sjohn stultz * Have to be careful here. If we're in oneshot mode, 13374a03b69Sjohn stultz * before we call tick_periodic() in a loop, we need 13474a03b69Sjohn stultz * to be sure we're using a real hardware clocksource. 13574a03b69Sjohn stultz * Otherwise we could get trapped in an infinite 13674a03b69Sjohn stultz * loop, as the tick_periodic() increments jiffies, 137cacb3c76SViresh Kumar * which then will increment time, possibly causing 13874a03b69Sjohn stultz * the loop to trigger again and again. 13974a03b69Sjohn stultz */ 14074a03b69Sjohn stultz if (timekeeping_valid_for_hres()) 141906568c9SThomas Gleixner tick_periodic(cpu); 142906568c9SThomas Gleixner } 143906568c9SThomas Gleixner } 144906568c9SThomas Gleixner 145906568c9SThomas Gleixner /* 146906568c9SThomas Gleixner * Setup the device for a periodic tick 147906568c9SThomas Gleixner */ 148f8381cbaSThomas Gleixner void tick_setup_periodic(struct clock_event_device *dev, int broadcast) 149906568c9SThomas Gleixner { 150f8381cbaSThomas Gleixner tick_set_periodic_handler(dev, broadcast); 151f8381cbaSThomas Gleixner 152f8381cbaSThomas Gleixner /* Broadcast setup ? */ 153f8381cbaSThomas Gleixner if (!tick_device_is_functional(dev)) 154f8381cbaSThomas Gleixner return; 155906568c9SThomas Gleixner 15627ce4cb4SThomas Gleixner if ((dev->features & CLOCK_EVT_FEAT_PERIODIC) && 15727ce4cb4SThomas Gleixner !tick_broadcast_oneshot_active()) { 158d7eb231cSThomas Gleixner clockevents_switch_state(dev, CLOCK_EVT_STATE_PERIODIC); 159906568c9SThomas Gleixner } else { 160906568c9SThomas Gleixner unsigned long seq; 161906568c9SThomas Gleixner ktime_t next; 162906568c9SThomas Gleixner 163906568c9SThomas Gleixner do { 164d6ad4187SJohn Stultz seq = read_seqbegin(&jiffies_lock); 165906568c9SThomas Gleixner next = tick_next_period; 166d6ad4187SJohn Stultz } while (read_seqretry(&jiffies_lock, seq)); 167906568c9SThomas Gleixner 168d7eb231cSThomas Gleixner clockevents_switch_state(dev, CLOCK_EVT_STATE_ONESHOT); 169906568c9SThomas Gleixner 170906568c9SThomas Gleixner for (;;) { 171d1748302SMartin Schwidefsky if (!clockevents_program_event(dev, next, false)) 172906568c9SThomas Gleixner return; 173906568c9SThomas Gleixner next = ktime_add(next, tick_period); 174906568c9SThomas Gleixner } 175906568c9SThomas Gleixner } 176906568c9SThomas Gleixner } 177906568c9SThomas Gleixner 178*08ae95f4SNicholas Piggin #ifdef CONFIG_NO_HZ_FULL 179*08ae95f4SNicholas Piggin static void giveup_do_timer(void *info) 180*08ae95f4SNicholas Piggin { 181*08ae95f4SNicholas Piggin int cpu = *(unsigned int *)info; 182*08ae95f4SNicholas Piggin 183*08ae95f4SNicholas Piggin WARN_ON(tick_do_timer_cpu != smp_processor_id()); 184*08ae95f4SNicholas Piggin 185*08ae95f4SNicholas Piggin tick_do_timer_cpu = cpu; 186*08ae95f4SNicholas Piggin } 187*08ae95f4SNicholas Piggin 188*08ae95f4SNicholas Piggin static void tick_take_do_timer_from_boot(void) 189*08ae95f4SNicholas Piggin { 190*08ae95f4SNicholas Piggin int cpu = smp_processor_id(); 191*08ae95f4SNicholas Piggin int from = tick_do_timer_boot_cpu; 192*08ae95f4SNicholas Piggin 193*08ae95f4SNicholas Piggin if (from >= 0 && from != cpu) 194*08ae95f4SNicholas Piggin smp_call_function_single(from, giveup_do_timer, &cpu, 1); 195*08ae95f4SNicholas Piggin } 196*08ae95f4SNicholas Piggin #endif 197*08ae95f4SNicholas Piggin 198906568c9SThomas Gleixner /* 199906568c9SThomas Gleixner * Setup the tick device 200906568c9SThomas Gleixner */ 201906568c9SThomas Gleixner static void tick_setup_device(struct tick_device *td, 202906568c9SThomas Gleixner struct clock_event_device *newdev, int cpu, 2030de26520SRusty Russell const struct cpumask *cpumask) 204906568c9SThomas Gleixner { 205906568c9SThomas Gleixner void (*handler)(struct clock_event_device *) = NULL; 2068b0e1953SThomas Gleixner ktime_t next_event = 0; 207906568c9SThomas Gleixner 208906568c9SThomas Gleixner /* 209906568c9SThomas Gleixner * First device setup ? 210906568c9SThomas Gleixner */ 211906568c9SThomas Gleixner if (!td->evtdev) { 212906568c9SThomas Gleixner /* 213906568c9SThomas Gleixner * If no cpu took the do_timer update, assign it to 214906568c9SThomas Gleixner * this cpu: 215906568c9SThomas Gleixner */ 2166441402bSThomas Gleixner if (tick_do_timer_cpu == TICK_DO_TIMER_BOOT) { 217906568c9SThomas Gleixner tick_do_timer_cpu = cpu; 218*08ae95f4SNicholas Piggin 219906568c9SThomas Gleixner tick_next_period = ktime_get(); 2208b0e1953SThomas Gleixner tick_period = NSEC_PER_SEC / HZ; 221*08ae95f4SNicholas Piggin #ifdef CONFIG_NO_HZ_FULL 222*08ae95f4SNicholas Piggin /* 223*08ae95f4SNicholas Piggin * The boot CPU may be nohz_full, in which case set 224*08ae95f4SNicholas Piggin * tick_do_timer_boot_cpu so the first housekeeping 225*08ae95f4SNicholas Piggin * secondary that comes up will take do_timer from 226*08ae95f4SNicholas Piggin * us. 227*08ae95f4SNicholas Piggin */ 228*08ae95f4SNicholas Piggin if (tick_nohz_full_cpu(cpu)) 229*08ae95f4SNicholas Piggin tick_do_timer_boot_cpu = cpu; 230*08ae95f4SNicholas Piggin 231*08ae95f4SNicholas Piggin } else if (tick_do_timer_boot_cpu != -1 && 232*08ae95f4SNicholas Piggin !tick_nohz_full_cpu(cpu)) { 233*08ae95f4SNicholas Piggin tick_take_do_timer_from_boot(); 234*08ae95f4SNicholas Piggin tick_do_timer_boot_cpu = -1; 235*08ae95f4SNicholas Piggin WARN_ON(tick_do_timer_cpu != cpu); 236*08ae95f4SNicholas Piggin #endif 237906568c9SThomas Gleixner } 238906568c9SThomas Gleixner 239906568c9SThomas Gleixner /* 240906568c9SThomas Gleixner * Startup in periodic mode first. 241906568c9SThomas Gleixner */ 242906568c9SThomas Gleixner td->mode = TICKDEV_MODE_PERIODIC; 243906568c9SThomas Gleixner } else { 244906568c9SThomas Gleixner handler = td->evtdev->event_handler; 245906568c9SThomas Gleixner next_event = td->evtdev->next_event; 2467c1e7689SVenkatesh Pallipadi td->evtdev->event_handler = clockevents_handle_noop; 247906568c9SThomas Gleixner } 248906568c9SThomas Gleixner 249906568c9SThomas Gleixner td->evtdev = newdev; 250906568c9SThomas Gleixner 251906568c9SThomas Gleixner /* 252906568c9SThomas Gleixner * When the device is not per cpu, pin the interrupt to the 253906568c9SThomas Gleixner * current cpu: 254906568c9SThomas Gleixner */ 255320ab2b0SRusty Russell if (!cpumask_equal(newdev->cpumask, cpumask)) 2560de26520SRusty Russell irq_set_affinity(newdev->irq, cpumask); 257906568c9SThomas Gleixner 258f8381cbaSThomas Gleixner /* 259f8381cbaSThomas Gleixner * When global broadcasting is active, check if the current 260f8381cbaSThomas Gleixner * device is registered as a placeholder for broadcast mode. 261f8381cbaSThomas Gleixner * This allows us to handle this x86 misfeature in a generic 26207bd1172SThomas Gleixner * way. This function also returns !=0 when we keep the 26307bd1172SThomas Gleixner * current active broadcast state for this CPU. 264f8381cbaSThomas Gleixner */ 265f8381cbaSThomas Gleixner if (tick_device_uses_broadcast(newdev, cpu)) 266f8381cbaSThomas Gleixner return; 267f8381cbaSThomas Gleixner 268906568c9SThomas Gleixner if (td->mode == TICKDEV_MODE_PERIODIC) 269906568c9SThomas Gleixner tick_setup_periodic(newdev, 0); 27079bf2bb3SThomas Gleixner else 27179bf2bb3SThomas Gleixner tick_setup_oneshot(newdev, handler, next_event); 272906568c9SThomas Gleixner } 273906568c9SThomas Gleixner 27403e13cf5SThomas Gleixner void tick_install_replacement(struct clock_event_device *newdev) 27503e13cf5SThomas Gleixner { 27622127e93SChristoph Lameter struct tick_device *td = this_cpu_ptr(&tick_cpu_device); 27703e13cf5SThomas Gleixner int cpu = smp_processor_id(); 27803e13cf5SThomas Gleixner 27903e13cf5SThomas Gleixner clockevents_exchange_device(td->evtdev, newdev); 28003e13cf5SThomas Gleixner tick_setup_device(td, newdev, cpu, cpumask_of(cpu)); 28103e13cf5SThomas Gleixner if (newdev->features & CLOCK_EVT_FEAT_ONESHOT) 28203e13cf5SThomas Gleixner tick_oneshot_notify(); 28303e13cf5SThomas Gleixner } 28403e13cf5SThomas Gleixner 28545cb8e01SThomas Gleixner static bool tick_check_percpu(struct clock_event_device *curdev, 28645cb8e01SThomas Gleixner struct clock_event_device *newdev, int cpu) 28745cb8e01SThomas Gleixner { 28845cb8e01SThomas Gleixner if (!cpumask_test_cpu(cpu, newdev->cpumask)) 28945cb8e01SThomas Gleixner return false; 29045cb8e01SThomas Gleixner if (cpumask_equal(newdev->cpumask, cpumask_of(cpu))) 29145cb8e01SThomas Gleixner return true; 29245cb8e01SThomas Gleixner /* Check if irq affinity can be set */ 29345cb8e01SThomas Gleixner if (newdev->irq >= 0 && !irq_can_set_affinity(newdev->irq)) 29445cb8e01SThomas Gleixner return false; 29545cb8e01SThomas Gleixner /* Prefer an existing cpu local device */ 29645cb8e01SThomas Gleixner if (curdev && cpumask_equal(curdev->cpumask, cpumask_of(cpu))) 29745cb8e01SThomas Gleixner return false; 29845cb8e01SThomas Gleixner return true; 29945cb8e01SThomas Gleixner } 30045cb8e01SThomas Gleixner 30145cb8e01SThomas Gleixner static bool tick_check_preferred(struct clock_event_device *curdev, 30245cb8e01SThomas Gleixner struct clock_event_device *newdev) 30345cb8e01SThomas Gleixner { 30445cb8e01SThomas Gleixner /* Prefer oneshot capable device */ 30545cb8e01SThomas Gleixner if (!(newdev->features & CLOCK_EVT_FEAT_ONESHOT)) { 30645cb8e01SThomas Gleixner if (curdev && (curdev->features & CLOCK_EVT_FEAT_ONESHOT)) 30745cb8e01SThomas Gleixner return false; 30845cb8e01SThomas Gleixner if (tick_oneshot_mode_active()) 30945cb8e01SThomas Gleixner return false; 31045cb8e01SThomas Gleixner } 31145cb8e01SThomas Gleixner 31270e5975dSStephen Boyd /* 31370e5975dSStephen Boyd * Use the higher rated one, but prefer a CPU local device with a lower 31470e5975dSStephen Boyd * rating than a non-CPU local device 31570e5975dSStephen Boyd */ 31670e5975dSStephen Boyd return !curdev || 31770e5975dSStephen Boyd newdev->rating > curdev->rating || 3185b5ccbc2SSudeep Holla !cpumask_equal(curdev->cpumask, newdev->cpumask); 31945cb8e01SThomas Gleixner } 32045cb8e01SThomas Gleixner 321906568c9SThomas Gleixner /* 32203e13cf5SThomas Gleixner * Check whether the new device is a better fit than curdev. curdev 32303e13cf5SThomas Gleixner * can be NULL ! 32403e13cf5SThomas Gleixner */ 32503e13cf5SThomas Gleixner bool tick_check_replacement(struct clock_event_device *curdev, 32603e13cf5SThomas Gleixner struct clock_event_device *newdev) 32703e13cf5SThomas Gleixner { 328521c4299SViresh Kumar if (!tick_check_percpu(curdev, newdev, smp_processor_id())) 32903e13cf5SThomas Gleixner return false; 33003e13cf5SThomas Gleixner 33103e13cf5SThomas Gleixner return tick_check_preferred(curdev, newdev); 33203e13cf5SThomas Gleixner } 33303e13cf5SThomas Gleixner 33403e13cf5SThomas Gleixner /* 3357126cac4SThomas Gleixner * Check, if the new registered device should be used. Called with 3367126cac4SThomas Gleixner * clockevents_lock held and interrupts disabled. 337906568c9SThomas Gleixner */ 3387172a286SThomas Gleixner void tick_check_new_device(struct clock_event_device *newdev) 339906568c9SThomas Gleixner { 340906568c9SThomas Gleixner struct clock_event_device *curdev; 341906568c9SThomas Gleixner struct tick_device *td; 3427172a286SThomas Gleixner int cpu; 343906568c9SThomas Gleixner 344906568c9SThomas Gleixner cpu = smp_processor_id(); 345906568c9SThomas Gleixner td = &per_cpu(tick_cpu_device, cpu); 346906568c9SThomas Gleixner curdev = td->evtdev; 347906568c9SThomas Gleixner 348906568c9SThomas Gleixner /* cpu local device ? */ 34945cb8e01SThomas Gleixner if (!tick_check_percpu(curdev, newdev, cpu)) 350906568c9SThomas Gleixner goto out_bc; 351906568c9SThomas Gleixner 35245cb8e01SThomas Gleixner /* Preference decision */ 35345cb8e01SThomas Gleixner if (!tick_check_preferred(curdev, newdev)) 354906568c9SThomas Gleixner goto out_bc; 355906568c9SThomas Gleixner 356ccf33d68SThomas Gleixner if (!try_module_get(newdev->owner)) 357ccf33d68SThomas Gleixner return; 358ccf33d68SThomas Gleixner 359906568c9SThomas Gleixner /* 360906568c9SThomas Gleixner * Replace the eventually existing device by the new 361f8381cbaSThomas Gleixner * device. If the current device is the broadcast device, do 362f8381cbaSThomas Gleixner * not give it back to the clockevents layer ! 363906568c9SThomas Gleixner */ 364f8381cbaSThomas Gleixner if (tick_is_broadcast_device(curdev)) { 3652344abbcSThomas Gleixner clockevents_shutdown(curdev); 366f8381cbaSThomas Gleixner curdev = NULL; 367f8381cbaSThomas Gleixner } 368906568c9SThomas Gleixner clockevents_exchange_device(curdev, newdev); 3696b954823SRusty Russell tick_setup_device(td, newdev, cpu, cpumask_of(cpu)); 37079bf2bb3SThomas Gleixner if (newdev->features & CLOCK_EVT_FEAT_ONESHOT) 37179bf2bb3SThomas Gleixner tick_oneshot_notify(); 3727172a286SThomas Gleixner return; 373f8381cbaSThomas Gleixner 374f8381cbaSThomas Gleixner out_bc: 375f8381cbaSThomas Gleixner /* 376f8381cbaSThomas Gleixner * Can the new device be used as a broadcast device ? 377f8381cbaSThomas Gleixner */ 3787172a286SThomas Gleixner tick_install_broadcast_device(newdev); 379906568c9SThomas Gleixner } 380906568c9SThomas Gleixner 381f32dd117SThomas Gleixner /** 382f32dd117SThomas Gleixner * tick_broadcast_oneshot_control - Enter/exit broadcast oneshot mode 383f32dd117SThomas Gleixner * @state: The target state (enter/exit) 384f32dd117SThomas Gleixner * 385f32dd117SThomas Gleixner * The system enters/leaves a state, where affected devices might stop 386f32dd117SThomas Gleixner * Returns 0 on success, -EBUSY if the cpu is used to broadcast wakeups. 387f32dd117SThomas Gleixner * 388f32dd117SThomas Gleixner * Called with interrupts disabled, so clockevents_lock is not 389f32dd117SThomas Gleixner * required here because the local clock event device cannot go away 390f32dd117SThomas Gleixner * under us. 391f32dd117SThomas Gleixner */ 392f32dd117SThomas Gleixner int tick_broadcast_oneshot_control(enum tick_broadcast_state state) 393f32dd117SThomas Gleixner { 394f32dd117SThomas Gleixner struct tick_device *td = this_cpu_ptr(&tick_cpu_device); 395f32dd117SThomas Gleixner 396f32dd117SThomas Gleixner if (!(td->evtdev->features & CLOCK_EVT_FEAT_C3STOP)) 397f32dd117SThomas Gleixner return 0; 398f32dd117SThomas Gleixner 399f32dd117SThomas Gleixner return __tick_broadcast_oneshot_control(state); 400f32dd117SThomas Gleixner } 4010f447051SThomas Gleixner EXPORT_SYMBOL_GPL(tick_broadcast_oneshot_control); 402f32dd117SThomas Gleixner 40352c063d1SThomas Gleixner #ifdef CONFIG_HOTPLUG_CPU 404906568c9SThomas Gleixner /* 40594df7de0SSebastien Dugue * Transfer the do_timer job away from a dying cpu. 40694df7de0SSebastien Dugue * 40752c063d1SThomas Gleixner * Called with interrupts disabled. Not locking required. If 40852c063d1SThomas Gleixner * tick_do_timer_cpu is owned by this cpu, nothing can change it. 40994df7de0SSebastien Dugue */ 41052c063d1SThomas Gleixner void tick_handover_do_timer(void) 41194df7de0SSebastien Dugue { 41252c063d1SThomas Gleixner if (tick_do_timer_cpu == smp_processor_id()) { 41394df7de0SSebastien Dugue int cpu = cpumask_first(cpu_online_mask); 41494df7de0SSebastien Dugue 41594df7de0SSebastien Dugue tick_do_timer_cpu = (cpu < nr_cpu_ids) ? cpu : 41694df7de0SSebastien Dugue TICK_DO_TIMER_NONE; 41794df7de0SSebastien Dugue } 41894df7de0SSebastien Dugue } 41994df7de0SSebastien Dugue 42094df7de0SSebastien Dugue /* 421906568c9SThomas Gleixner * Shutdown an event device on a given cpu: 422906568c9SThomas Gleixner * 423906568c9SThomas Gleixner * This is called on a life CPU, when a CPU is dead. So we cannot 424906568c9SThomas Gleixner * access the hardware device itself. 425906568c9SThomas Gleixner * We just set the mode and remove it from the lists. 426906568c9SThomas Gleixner */ 427a49b116dSThomas Gleixner void tick_shutdown(unsigned int cpu) 428906568c9SThomas Gleixner { 429a49b116dSThomas Gleixner struct tick_device *td = &per_cpu(tick_cpu_device, cpu); 430906568c9SThomas Gleixner struct clock_event_device *dev = td->evtdev; 431906568c9SThomas Gleixner 432906568c9SThomas Gleixner td->mode = TICKDEV_MODE_PERIODIC; 433906568c9SThomas Gleixner if (dev) { 434906568c9SThomas Gleixner /* 435906568c9SThomas Gleixner * Prevent that the clock events layer tries to call 436906568c9SThomas Gleixner * the set mode function! 437906568c9SThomas Gleixner */ 438051ebd10SThomas Gleixner clockevent_set_state(dev, CLOCK_EVT_STATE_DETACHED); 439906568c9SThomas Gleixner clockevents_exchange_device(dev, NULL); 4406f7a05d7SThomas Gleixner dev->event_handler = clockevents_handle_noop; 441906568c9SThomas Gleixner td->evtdev = NULL; 442906568c9SThomas Gleixner } 443906568c9SThomas Gleixner } 444a49b116dSThomas Gleixner #endif 445906568c9SThomas Gleixner 4464ffee521SThomas Gleixner /** 447f46481d0SThomas Gleixner * tick_suspend_local - Suspend the local tick device 448f46481d0SThomas Gleixner * 449f46481d0SThomas Gleixner * Called from the local cpu for freeze with interrupts disabled. 450f46481d0SThomas Gleixner * 451f46481d0SThomas Gleixner * No locks required. Nothing can change the per cpu device. 452f46481d0SThomas Gleixner */ 4537270d11cSThomas Gleixner void tick_suspend_local(void) 454f46481d0SThomas Gleixner { 455f46481d0SThomas Gleixner struct tick_device *td = this_cpu_ptr(&tick_cpu_device); 456f46481d0SThomas Gleixner 457f46481d0SThomas Gleixner clockevents_shutdown(td->evtdev); 458f46481d0SThomas Gleixner } 459f46481d0SThomas Gleixner 460f46481d0SThomas Gleixner /** 461f46481d0SThomas Gleixner * tick_resume_local - Resume the local tick device 462f46481d0SThomas Gleixner * 463f46481d0SThomas Gleixner * Called from the local CPU for unfreeze or XEN resume magic. 464f46481d0SThomas Gleixner * 465f46481d0SThomas Gleixner * No locks required. Nothing can change the per cpu device. 466f46481d0SThomas Gleixner */ 467f46481d0SThomas Gleixner void tick_resume_local(void) 468f46481d0SThomas Gleixner { 469f46481d0SThomas Gleixner struct tick_device *td = this_cpu_ptr(&tick_cpu_device); 470f46481d0SThomas Gleixner bool broadcast = tick_resume_check_broadcast(); 471f46481d0SThomas Gleixner 472f46481d0SThomas Gleixner clockevents_tick_resume(td->evtdev); 473f46481d0SThomas Gleixner if (!broadcast) { 474f46481d0SThomas Gleixner if (td->mode == TICKDEV_MODE_PERIODIC) 475f46481d0SThomas Gleixner tick_setup_periodic(td->evtdev, 0); 476f46481d0SThomas Gleixner else 477f46481d0SThomas Gleixner tick_resume_oneshot(); 478f46481d0SThomas Gleixner } 479f46481d0SThomas Gleixner } 480f46481d0SThomas Gleixner 481f46481d0SThomas Gleixner /** 4824ffee521SThomas Gleixner * tick_suspend - Suspend the tick and the broadcast device 4834ffee521SThomas Gleixner * 4844ffee521SThomas Gleixner * Called from syscore_suspend() via timekeeping_suspend with only one 4854ffee521SThomas Gleixner * CPU online and interrupts disabled or from tick_unfreeze() under 4864ffee521SThomas Gleixner * tick_freeze_lock. 4874ffee521SThomas Gleixner * 4884ffee521SThomas Gleixner * No locks required. Nothing can change the per cpu device. 4894ffee521SThomas Gleixner */ 4908c53daf6SThomas Gleixner void tick_suspend(void) 4916321dd60SThomas Gleixner { 492f46481d0SThomas Gleixner tick_suspend_local(); 4934ffee521SThomas Gleixner tick_suspend_broadcast(); 4946321dd60SThomas Gleixner } 4956321dd60SThomas Gleixner 4964ffee521SThomas Gleixner /** 4974ffee521SThomas Gleixner * tick_resume - Resume the tick and the broadcast device 4984ffee521SThomas Gleixner * 4994ffee521SThomas Gleixner * Called from syscore_resume() via timekeeping_resume with only one 500f46481d0SThomas Gleixner * CPU online and interrupts disabled. 5014ffee521SThomas Gleixner * 5024ffee521SThomas Gleixner * No locks required. Nothing can change the per cpu device. 5034ffee521SThomas Gleixner */ 5048c53daf6SThomas Gleixner void tick_resume(void) 5056321dd60SThomas Gleixner { 506f46481d0SThomas Gleixner tick_resume_broadcast(); 507f46481d0SThomas Gleixner tick_resume_local(); 5086321dd60SThomas Gleixner } 5096321dd60SThomas Gleixner 51087e9b9f1SRafael J. Wysocki #ifdef CONFIG_SUSPEND 511124cf911SRafael J. Wysocki static DEFINE_RAW_SPINLOCK(tick_freeze_lock); 512124cf911SRafael J. Wysocki static unsigned int tick_freeze_depth; 513124cf911SRafael J. Wysocki 514124cf911SRafael J. Wysocki /** 515124cf911SRafael J. Wysocki * tick_freeze - Suspend the local tick and (possibly) timekeeping. 516124cf911SRafael J. Wysocki * 517124cf911SRafael J. Wysocki * Check if this is the last online CPU executing the function and if so, 518124cf911SRafael J. Wysocki * suspend timekeeping. Otherwise suspend the local tick. 519124cf911SRafael J. Wysocki * 520124cf911SRafael J. Wysocki * Call with interrupts disabled. Must be balanced with %tick_unfreeze(). 521124cf911SRafael J. Wysocki * Interrupts must not be enabled before the subsequent %tick_unfreeze(). 522124cf911SRafael J. Wysocki */ 523124cf911SRafael J. Wysocki void tick_freeze(void) 524124cf911SRafael J. Wysocki { 525124cf911SRafael J. Wysocki raw_spin_lock(&tick_freeze_lock); 526124cf911SRafael J. Wysocki 527124cf911SRafael J. Wysocki tick_freeze_depth++; 52875e0678eSRafael J. Wysocki if (tick_freeze_depth == num_online_cpus()) { 52975e0678eSRafael J. Wysocki trace_suspend_resume(TPS("timekeeping_freeze"), 53075e0678eSRafael J. Wysocki smp_processor_id(), true); 531c1a957d1SThomas Gleixner system_state = SYSTEM_SUSPEND; 5323f2552f7SChang-An Chen sched_clock_suspend(); 533124cf911SRafael J. Wysocki timekeeping_suspend(); 53475e0678eSRafael J. Wysocki } else { 535f46481d0SThomas Gleixner tick_suspend_local(); 53675e0678eSRafael J. Wysocki } 537124cf911SRafael J. Wysocki 538124cf911SRafael J. Wysocki raw_spin_unlock(&tick_freeze_lock); 539124cf911SRafael J. Wysocki } 540124cf911SRafael J. Wysocki 541124cf911SRafael J. Wysocki /** 542124cf911SRafael J. Wysocki * tick_unfreeze - Resume the local tick and (possibly) timekeeping. 543124cf911SRafael J. Wysocki * 544124cf911SRafael J. Wysocki * Check if this is the first CPU executing the function and if so, resume 545124cf911SRafael J. Wysocki * timekeeping. Otherwise resume the local tick. 546124cf911SRafael J. Wysocki * 547124cf911SRafael J. Wysocki * Call with interrupts disabled. Must be balanced with %tick_freeze(). 548124cf911SRafael J. Wysocki * Interrupts must not be enabled after the preceding %tick_freeze(). 549124cf911SRafael J. Wysocki */ 550124cf911SRafael J. Wysocki void tick_unfreeze(void) 551124cf911SRafael J. Wysocki { 552124cf911SRafael J. Wysocki raw_spin_lock(&tick_freeze_lock); 553124cf911SRafael J. Wysocki 55475e0678eSRafael J. Wysocki if (tick_freeze_depth == num_online_cpus()) { 555124cf911SRafael J. Wysocki timekeeping_resume(); 5563f2552f7SChang-An Chen sched_clock_resume(); 557c1a957d1SThomas Gleixner system_state = SYSTEM_RUNNING; 55875e0678eSRafael J. Wysocki trace_suspend_resume(TPS("timekeeping_freeze"), 55975e0678eSRafael J. Wysocki smp_processor_id(), false); 56075e0678eSRafael J. Wysocki } else { 561422fe750SRafael J. Wysocki tick_resume_local(); 56275e0678eSRafael J. Wysocki } 563124cf911SRafael J. Wysocki 564124cf911SRafael J. Wysocki tick_freeze_depth--; 565124cf911SRafael J. Wysocki 566124cf911SRafael J. Wysocki raw_spin_unlock(&tick_freeze_lock); 567124cf911SRafael J. Wysocki } 56887e9b9f1SRafael J. Wysocki #endif /* CONFIG_SUSPEND */ 569124cf911SRafael J. Wysocki 570906568c9SThomas Gleixner /** 571906568c9SThomas Gleixner * tick_init - initialize the tick control 572906568c9SThomas Gleixner */ 573906568c9SThomas Gleixner void __init tick_init(void) 574906568c9SThomas Gleixner { 575b352bc1cSThomas Gleixner tick_broadcast_init(); 576a80e49e2SFrederic Weisbecker tick_nohz_init(); 577906568c9SThomas Gleixner } 578