11c33be57SNicolas Pitre /* 21c33be57SNicolas Pitre * arch/arm/common/bL_switcher.c -- big.LITTLE cluster switcher core driver 31c33be57SNicolas Pitre * 41c33be57SNicolas Pitre * Created by: Nicolas Pitre, March 2012 51c33be57SNicolas Pitre * Copyright: (C) 2012-2013 Linaro Limited 61c33be57SNicolas Pitre * 71c33be57SNicolas Pitre * This program is free software; you can redistribute it and/or modify 81c33be57SNicolas Pitre * it under the terms of the GNU General Public License version 2 as 91c33be57SNicolas Pitre * published by the Free Software Foundation. 101c33be57SNicolas Pitre */ 111c33be57SNicolas Pitre 120577fee2SDave Martin #include <linux/atomic.h> 131c33be57SNicolas Pitre #include <linux/init.h> 141c33be57SNicolas Pitre #include <linux/kernel.h> 151c33be57SNicolas Pitre #include <linux/module.h> 16174cd4b1SIngo Molnar #include <linux/sched/signal.h> 17ae7e81c0SIngo Molnar #include <uapi/linux/sched/types.h> 181c33be57SNicolas Pitre #include <linux/interrupt.h> 191c33be57SNicolas Pitre #include <linux/cpu_pm.h> 2071ce1deeSNicolas Pitre #include <linux/cpu.h> 213f09d479SLorenzo Pieralisi #include <linux/cpumask.h> 2271ce1deeSNicolas Pitre #include <linux/kthread.h> 2371ce1deeSNicolas Pitre #include <linux/wait.h> 241bfbddb6SDave Martin #include <linux/time.h> 253f09d479SLorenzo Pieralisi #include <linux/clockchips.h> 263f09d479SLorenzo Pieralisi #include <linux/hrtimer.h> 273f09d479SLorenzo Pieralisi #include <linux/tick.h> 28491990e2SDave Martin #include <linux/notifier.h> 291c33be57SNicolas Pitre #include <linux/mm.h> 30c0f43751SDave Martin #include <linux/mutex.h> 31b09bbe5bSDave Martin #include <linux/smp.h> 320577fee2SDave Martin #include <linux/spinlock.h> 331c33be57SNicolas Pitre #include <linux/string.h> 346b7437aeSNicolas Pitre #include <linux/sysfs.h> 351c33be57SNicolas Pitre #include <linux/irqchip/arm-gic.h> 36c4821c05SNicolas Pitre #include <linux/moduleparam.h> 371c33be57SNicolas Pitre 381c33be57SNicolas Pitre #include <asm/smp_plat.h> 391bfbddb6SDave Martin #include <asm/cputype.h> 401c33be57SNicolas Pitre #include <asm/suspend.h> 411c33be57SNicolas Pitre #include <asm/mcpm.h> 421c33be57SNicolas Pitre #include <asm/bL_switcher.h> 431c33be57SNicolas Pitre 441bfbddb6SDave Martin #define CREATE_TRACE_POINTS 451bfbddb6SDave Martin #include <trace/events/power_cpu_migrate.h> 461bfbddb6SDave Martin 471c33be57SNicolas Pitre 481c33be57SNicolas Pitre /* 491c33be57SNicolas Pitre * Use our own MPIDR accessors as the generic ones in asm/cputype.h have 501c33be57SNicolas Pitre * __attribute_const__ and we don't want the compiler to assume any 511c33be57SNicolas Pitre * constness here as the value _does_ change along some code paths. 521c33be57SNicolas Pitre */ 531c33be57SNicolas Pitre 541c33be57SNicolas Pitre static int read_mpidr(void) 551c33be57SNicolas Pitre { 561c33be57SNicolas Pitre unsigned int id; 571c33be57SNicolas Pitre asm volatile ("mrc p15, 0, %0, c0, c0, 5" : "=r" (id)); 581c33be57SNicolas Pitre return id & MPIDR_HWID_BITMASK; 591c33be57SNicolas Pitre } 601c33be57SNicolas Pitre 611c33be57SNicolas Pitre /* 621c33be57SNicolas Pitre * bL switcher core code. 631c33be57SNicolas Pitre */ 641c33be57SNicolas Pitre 65108a9640SNicolas Pitre static void bL_do_switch(void *_arg) 661c33be57SNicolas Pitre { 6738c35d4fSNicolas Pitre unsigned ib_mpidr, ib_cpu, ib_cluster; 68108a9640SNicolas Pitre long volatile handshake, **handshake_ptr = _arg; 691c33be57SNicolas Pitre 701c33be57SNicolas Pitre pr_debug("%s\n", __func__); 711c33be57SNicolas Pitre 7238c35d4fSNicolas Pitre ib_mpidr = cpu_logical_map(smp_processor_id()); 7338c35d4fSNicolas Pitre ib_cpu = MPIDR_AFFINITY_LEVEL(ib_mpidr, 0); 7438c35d4fSNicolas Pitre ib_cluster = MPIDR_AFFINITY_LEVEL(ib_mpidr, 1); 751c33be57SNicolas Pitre 76108a9640SNicolas Pitre /* Advertise our handshake location */ 77108a9640SNicolas Pitre if (handshake_ptr) { 78108a9640SNicolas Pitre handshake = 0; 79108a9640SNicolas Pitre *handshake_ptr = &handshake; 80108a9640SNicolas Pitre } else 81108a9640SNicolas Pitre handshake = -1; 82108a9640SNicolas Pitre 831c33be57SNicolas Pitre /* 841c33be57SNicolas Pitre * Our state has been saved at this point. Let's release our 851c33be57SNicolas Pitre * inbound CPU. 861c33be57SNicolas Pitre */ 8738c35d4fSNicolas Pitre mcpm_set_entry_vector(ib_cpu, ib_cluster, cpu_resume); 881c33be57SNicolas Pitre sev(); 891c33be57SNicolas Pitre 901c33be57SNicolas Pitre /* 911c33be57SNicolas Pitre * From this point, we must assume that our counterpart CPU might 921c33be57SNicolas Pitre * have taken over in its parallel world already, as if execution 931c33be57SNicolas Pitre * just returned from cpu_suspend(). It is therefore important to 941c33be57SNicolas Pitre * be very careful not to make any change the other guy is not 951c33be57SNicolas Pitre * expecting. This is why we need stack isolation. 961c33be57SNicolas Pitre * 971c33be57SNicolas Pitre * Fancy under cover tasks could be performed here. For now 981c33be57SNicolas Pitre * we have none. 991c33be57SNicolas Pitre */ 1001c33be57SNicolas Pitre 101108a9640SNicolas Pitre /* 102108a9640SNicolas Pitre * Let's wait until our inbound is alive. 103108a9640SNicolas Pitre */ 104108a9640SNicolas Pitre while (!handshake) { 105108a9640SNicolas Pitre wfe(); 106108a9640SNicolas Pitre smp_mb(); 107108a9640SNicolas Pitre } 108108a9640SNicolas Pitre 1091c33be57SNicolas Pitre /* Let's put ourself down. */ 1101c33be57SNicolas Pitre mcpm_cpu_power_down(); 1111c33be57SNicolas Pitre 1121c33be57SNicolas Pitre /* should never get here */ 1131c33be57SNicolas Pitre BUG(); 1141c33be57SNicolas Pitre } 1151c33be57SNicolas Pitre 1161c33be57SNicolas Pitre /* 117c052de26SNicolas Pitre * Stack isolation. To ensure 'current' remains valid, we just use another 118c052de26SNicolas Pitre * piece of our thread's stack space which should be fairly lightly used. 119c052de26SNicolas Pitre * The selected area starts just above the thread_info structure located 120c052de26SNicolas Pitre * at the very bottom of the stack, aligned to a cache line, and indexed 121c052de26SNicolas Pitre * with the cluster number. 1221c33be57SNicolas Pitre */ 123c052de26SNicolas Pitre #define STACK_SIZE 512 1241c33be57SNicolas Pitre extern void call_with_stack(void (*fn)(void *), void *arg, void *sp); 1251c33be57SNicolas Pitre static int bL_switchpoint(unsigned long _arg) 1261c33be57SNicolas Pitre { 1271c33be57SNicolas Pitre unsigned int mpidr = read_mpidr(); 1281c33be57SNicolas Pitre unsigned int clusterid = MPIDR_AFFINITY_LEVEL(mpidr, 1); 129c052de26SNicolas Pitre void *stack = current_thread_info() + 1; 1301c33be57SNicolas Pitre stack = PTR_ALIGN(stack, L1_CACHE_BYTES); 131c052de26SNicolas Pitre stack += clusterid * STACK_SIZE + STACK_SIZE; 1321c33be57SNicolas Pitre call_with_stack(bL_do_switch, (void *)_arg, stack); 1331c33be57SNicolas Pitre BUG(); 1341c33be57SNicolas Pitre } 1351c33be57SNicolas Pitre 1361c33be57SNicolas Pitre /* 1371c33be57SNicolas Pitre * Generic switcher interface 1381c33be57SNicolas Pitre */ 1391c33be57SNicolas Pitre 140ed96762eSNicolas Pitre static unsigned int bL_gic_id[MAX_CPUS_PER_CLUSTER][MAX_NR_CLUSTERS]; 14138c35d4fSNicolas Pitre static int bL_switcher_cpu_pairing[NR_CPUS]; 142ed96762eSNicolas Pitre 1431c33be57SNicolas Pitre /* 1441c33be57SNicolas Pitre * bL_switch_to - Switch to a specific cluster for the current CPU 1451c33be57SNicolas Pitre * @new_cluster_id: the ID of the cluster to switch to. 1461c33be57SNicolas Pitre * 1471c33be57SNicolas Pitre * This function must be called on the CPU to be switched. 1481c33be57SNicolas Pitre * Returns 0 on success, else a negative status code. 1491c33be57SNicolas Pitre */ 1501c33be57SNicolas Pitre static int bL_switch_to(unsigned int new_cluster_id) 1511c33be57SNicolas Pitre { 15238c35d4fSNicolas Pitre unsigned int mpidr, this_cpu, that_cpu; 15338c35d4fSNicolas Pitre unsigned int ob_mpidr, ob_cpu, ob_cluster, ib_mpidr, ib_cpu, ib_cluster; 1546137eba6SNicolas Pitre struct completion inbound_alive; 155108a9640SNicolas Pitre long volatile *handshake_ptr; 1566137eba6SNicolas Pitre int ipi_nr, ret; 1571c33be57SNicolas Pitre 15838c35d4fSNicolas Pitre this_cpu = smp_processor_id(); 15938c35d4fSNicolas Pitre ob_mpidr = read_mpidr(); 16038c35d4fSNicolas Pitre ob_cpu = MPIDR_AFFINITY_LEVEL(ob_mpidr, 0); 16138c35d4fSNicolas Pitre ob_cluster = MPIDR_AFFINITY_LEVEL(ob_mpidr, 1); 16238c35d4fSNicolas Pitre BUG_ON(cpu_logical_map(this_cpu) != ob_mpidr); 1631c33be57SNicolas Pitre 16438c35d4fSNicolas Pitre if (new_cluster_id == ob_cluster) 1651c33be57SNicolas Pitre return 0; 1661c33be57SNicolas Pitre 16738c35d4fSNicolas Pitre that_cpu = bL_switcher_cpu_pairing[this_cpu]; 16838c35d4fSNicolas Pitre ib_mpidr = cpu_logical_map(that_cpu); 16938c35d4fSNicolas Pitre ib_cpu = MPIDR_AFFINITY_LEVEL(ib_mpidr, 0); 17038c35d4fSNicolas Pitre ib_cluster = MPIDR_AFFINITY_LEVEL(ib_mpidr, 1); 17138c35d4fSNicolas Pitre 17238c35d4fSNicolas Pitre pr_debug("before switch: CPU %d MPIDR %#x -> %#x\n", 17338c35d4fSNicolas Pitre this_cpu, ob_mpidr, ib_mpidr); 1741c33be57SNicolas Pitre 1756137eba6SNicolas Pitre this_cpu = smp_processor_id(); 1766137eba6SNicolas Pitre 1771c33be57SNicolas Pitre /* Close the gate for our entry vectors */ 17838c35d4fSNicolas Pitre mcpm_set_entry_vector(ob_cpu, ob_cluster, NULL); 17938c35d4fSNicolas Pitre mcpm_set_entry_vector(ib_cpu, ib_cluster, NULL); 1801c33be57SNicolas Pitre 1816137eba6SNicolas Pitre /* Install our "inbound alive" notifier. */ 1826137eba6SNicolas Pitre init_completion(&inbound_alive); 1836137eba6SNicolas Pitre ipi_nr = register_ipi_completion(&inbound_alive, this_cpu); 1846137eba6SNicolas Pitre ipi_nr |= ((1 << 16) << bL_gic_id[ob_cpu][ob_cluster]); 1856137eba6SNicolas Pitre mcpm_set_early_poke(ib_cpu, ib_cluster, gic_get_sgir_physaddr(), ipi_nr); 1866137eba6SNicolas Pitre 1871c33be57SNicolas Pitre /* 1881c33be57SNicolas Pitre * Let's wake up the inbound CPU now in case it requires some delay 1891c33be57SNicolas Pitre * to come online, but leave it gated in our entry vector code. 1901c33be57SNicolas Pitre */ 19138c35d4fSNicolas Pitre ret = mcpm_cpu_power_up(ib_cpu, ib_cluster); 1921c33be57SNicolas Pitre if (ret) { 1931c33be57SNicolas Pitre pr_err("%s: mcpm_cpu_power_up() returned %d\n", __func__, ret); 1941c33be57SNicolas Pitre return ret; 1951c33be57SNicolas Pitre } 1961c33be57SNicolas Pitre 1971c33be57SNicolas Pitre /* 1986137eba6SNicolas Pitre * Raise a SGI on the inbound CPU to make sure it doesn't stall 1996137eba6SNicolas Pitre * in a possible WFI, such as in bL_power_down(). 2006137eba6SNicolas Pitre */ 2016137eba6SNicolas Pitre gic_send_sgi(bL_gic_id[ib_cpu][ib_cluster], 0); 2026137eba6SNicolas Pitre 2036137eba6SNicolas Pitre /* 2046137eba6SNicolas Pitre * Wait for the inbound to come up. This allows for other 2056137eba6SNicolas Pitre * tasks to be scheduled in the mean time. 2066137eba6SNicolas Pitre */ 2076137eba6SNicolas Pitre wait_for_completion(&inbound_alive); 2086137eba6SNicolas Pitre mcpm_set_early_poke(ib_cpu, ib_cluster, 0, 0); 2096137eba6SNicolas Pitre 2106137eba6SNicolas Pitre /* 2111c33be57SNicolas Pitre * From this point we are entering the switch critical zone 2121c33be57SNicolas Pitre * and can't take any interrupts anymore. 2131c33be57SNicolas Pitre */ 2141c33be57SNicolas Pitre local_irq_disable(); 2151c33be57SNicolas Pitre local_fiq_disable(); 21641fa4215SThomas Gleixner trace_cpu_migrate_begin(ktime_get_real_ns(), ob_mpidr); 2171c33be57SNicolas Pitre 2181c33be57SNicolas Pitre /* redirect GIC's SGIs to our counterpart */ 21938c35d4fSNicolas Pitre gic_migrate_target(bL_gic_id[ib_cpu][ib_cluster]); 2201c33be57SNicolas Pitre 2217270d11cSThomas Gleixner tick_suspend_local(); 2223f09d479SLorenzo Pieralisi 2231c33be57SNicolas Pitre ret = cpu_pm_enter(); 2241c33be57SNicolas Pitre 2251c33be57SNicolas Pitre /* we can not tolerate errors at this point */ 2261c33be57SNicolas Pitre if (ret) 2271c33be57SNicolas Pitre panic("%s: cpu_pm_enter() returned %d\n", __func__, ret); 2281c33be57SNicolas Pitre 22938c35d4fSNicolas Pitre /* Swap the physical CPUs in the logical map for this logical CPU. */ 23038c35d4fSNicolas Pitre cpu_logical_map(this_cpu) = ib_mpidr; 23138c35d4fSNicolas Pitre cpu_logical_map(that_cpu) = ob_mpidr; 2321c33be57SNicolas Pitre 2331c33be57SNicolas Pitre /* Let's do the actual CPU switch. */ 234108a9640SNicolas Pitre ret = cpu_suspend((unsigned long)&handshake_ptr, bL_switchpoint); 2351c33be57SNicolas Pitre if (ret > 0) 2361c33be57SNicolas Pitre panic("%s: cpu_suspend() returned %d\n", __func__, ret); 2371c33be57SNicolas Pitre 2381c33be57SNicolas Pitre /* We are executing on the inbound CPU at this point */ 2391c33be57SNicolas Pitre mpidr = read_mpidr(); 24038c35d4fSNicolas Pitre pr_debug("after switch: CPU %d MPIDR %#x\n", this_cpu, mpidr); 24138c35d4fSNicolas Pitre BUG_ON(mpidr != ib_mpidr); 2421c33be57SNicolas Pitre 2431c33be57SNicolas Pitre mcpm_cpu_powered_up(); 2441c33be57SNicolas Pitre 2451c33be57SNicolas Pitre ret = cpu_pm_exit(); 2461c33be57SNicolas Pitre 2477270d11cSThomas Gleixner tick_resume_local(); 2483f09d479SLorenzo Pieralisi 24941fa4215SThomas Gleixner trace_cpu_migrate_finish(ktime_get_real_ns(), ib_mpidr); 2501c33be57SNicolas Pitre local_fiq_enable(); 2511c33be57SNicolas Pitre local_irq_enable(); 2521c33be57SNicolas Pitre 253108a9640SNicolas Pitre *handshake_ptr = 1; 254108a9640SNicolas Pitre dsb_sev(); 255108a9640SNicolas Pitre 2561c33be57SNicolas Pitre if (ret) 2571c33be57SNicolas Pitre pr_err("%s exiting with error %d\n", __func__, ret); 2581c33be57SNicolas Pitre return ret; 2591c33be57SNicolas Pitre } 2601c33be57SNicolas Pitre 26171ce1deeSNicolas Pitre struct bL_thread { 2620577fee2SDave Martin spinlock_t lock; 26371ce1deeSNicolas Pitre struct task_struct *task; 26471ce1deeSNicolas Pitre wait_queue_head_t wq; 26571ce1deeSNicolas Pitre int wanted_cluster; 2666b7437aeSNicolas Pitre struct completion started; 2670577fee2SDave Martin bL_switch_completion_handler completer; 2680577fee2SDave Martin void *completer_cookie; 2691c33be57SNicolas Pitre }; 2701c33be57SNicolas Pitre 27171ce1deeSNicolas Pitre static struct bL_thread bL_threads[NR_CPUS]; 27271ce1deeSNicolas Pitre 27371ce1deeSNicolas Pitre static int bL_switcher_thread(void *arg) 2741c33be57SNicolas Pitre { 27571ce1deeSNicolas Pitre struct bL_thread *t = arg; 27671ce1deeSNicolas Pitre struct sched_param param = { .sched_priority = 1 }; 27771ce1deeSNicolas Pitre int cluster; 2780577fee2SDave Martin bL_switch_completion_handler completer; 2790577fee2SDave Martin void *completer_cookie; 28071ce1deeSNicolas Pitre 28171ce1deeSNicolas Pitre sched_setscheduler_nocheck(current, SCHED_FIFO, ¶m); 2826b7437aeSNicolas Pitre complete(&t->started); 28371ce1deeSNicolas Pitre 28471ce1deeSNicolas Pitre do { 28571ce1deeSNicolas Pitre if (signal_pending(current)) 28671ce1deeSNicolas Pitre flush_signals(current); 28771ce1deeSNicolas Pitre wait_event_interruptible(t->wq, 28871ce1deeSNicolas Pitre t->wanted_cluster != -1 || 28971ce1deeSNicolas Pitre kthread_should_stop()); 2900577fee2SDave Martin 2910577fee2SDave Martin spin_lock(&t->lock); 2920577fee2SDave Martin cluster = t->wanted_cluster; 2930577fee2SDave Martin completer = t->completer; 2940577fee2SDave Martin completer_cookie = t->completer_cookie; 2950577fee2SDave Martin t->wanted_cluster = -1; 2960577fee2SDave Martin t->completer = NULL; 2970577fee2SDave Martin spin_unlock(&t->lock); 2980577fee2SDave Martin 2990577fee2SDave Martin if (cluster != -1) { 30071ce1deeSNicolas Pitre bL_switch_to(cluster); 3010577fee2SDave Martin 3020577fee2SDave Martin if (completer) 3030577fee2SDave Martin completer(completer_cookie); 3040577fee2SDave Martin } 30571ce1deeSNicolas Pitre } while (!kthread_should_stop()); 30671ce1deeSNicolas Pitre 30771ce1deeSNicolas Pitre return 0; 30871ce1deeSNicolas Pitre } 30971ce1deeSNicolas Pitre 3106b7437aeSNicolas Pitre static struct task_struct *bL_switcher_thread_create(int cpu, void *arg) 31171ce1deeSNicolas Pitre { 31271ce1deeSNicolas Pitre struct task_struct *task; 31371ce1deeSNicolas Pitre 31471ce1deeSNicolas Pitre task = kthread_create_on_node(bL_switcher_thread, arg, 31571ce1deeSNicolas Pitre cpu_to_node(cpu), "kswitcher_%d", cpu); 31671ce1deeSNicolas Pitre if (!IS_ERR(task)) { 31771ce1deeSNicolas Pitre kthread_bind(task, cpu); 31871ce1deeSNicolas Pitre wake_up_process(task); 31971ce1deeSNicolas Pitre } else 32071ce1deeSNicolas Pitre pr_err("%s failed for CPU %d\n", __func__, cpu); 32171ce1deeSNicolas Pitre return task; 3221c33be57SNicolas Pitre } 3231c33be57SNicolas Pitre 3241c33be57SNicolas Pitre /* 3250577fee2SDave Martin * bL_switch_request_cb - Switch to a specific cluster for the given CPU, 3260577fee2SDave Martin * with completion notification via a callback 3271c33be57SNicolas Pitre * 3281c33be57SNicolas Pitre * @cpu: the CPU to switch 3291c33be57SNicolas Pitre * @new_cluster_id: the ID of the cluster to switch to. 3300577fee2SDave Martin * @completer: switch completion callback. if non-NULL, 3310577fee2SDave Martin * @completer(@completer_cookie) will be called on completion of 3320577fee2SDave Martin * the switch, in non-atomic context. 3330577fee2SDave Martin * @completer_cookie: opaque context argument for @completer. 3341c33be57SNicolas Pitre * 33571ce1deeSNicolas Pitre * This function causes a cluster switch on the given CPU by waking up 33671ce1deeSNicolas Pitre * the appropriate switcher thread. This function may or may not return 33771ce1deeSNicolas Pitre * before the switch has occurred. 3380577fee2SDave Martin * 3390577fee2SDave Martin * If a @completer callback function is supplied, it will be called when 3400577fee2SDave Martin * the switch is complete. This can be used to determine asynchronously 3410577fee2SDave Martin * when the switch is complete, regardless of when bL_switch_request() 3420577fee2SDave Martin * returns. When @completer is supplied, no new switch request is permitted 3430577fee2SDave Martin * for the affected CPU until after the switch is complete, and @completer 3440577fee2SDave Martin * has returned. 3451c33be57SNicolas Pitre */ 3460577fee2SDave Martin int bL_switch_request_cb(unsigned int cpu, unsigned int new_cluster_id, 3470577fee2SDave Martin bL_switch_completion_handler completer, 3480577fee2SDave Martin void *completer_cookie) 3491c33be57SNicolas Pitre { 35071ce1deeSNicolas Pitre struct bL_thread *t; 3511c33be57SNicolas Pitre 35271ce1deeSNicolas Pitre if (cpu >= ARRAY_SIZE(bL_threads)) { 35371ce1deeSNicolas Pitre pr_err("%s: cpu %d out of bounds\n", __func__, cpu); 35471ce1deeSNicolas Pitre return -EINVAL; 3551c33be57SNicolas Pitre } 3561c33be57SNicolas Pitre 35771ce1deeSNicolas Pitre t = &bL_threads[cpu]; 3580577fee2SDave Martin 35971ce1deeSNicolas Pitre if (IS_ERR(t->task)) 36071ce1deeSNicolas Pitre return PTR_ERR(t->task); 36171ce1deeSNicolas Pitre if (!t->task) 36271ce1deeSNicolas Pitre return -ESRCH; 36371ce1deeSNicolas Pitre 3640577fee2SDave Martin spin_lock(&t->lock); 3650577fee2SDave Martin if (t->completer) { 3660577fee2SDave Martin spin_unlock(&t->lock); 3670577fee2SDave Martin return -EBUSY; 3680577fee2SDave Martin } 3690577fee2SDave Martin t->completer = completer; 3700577fee2SDave Martin t->completer_cookie = completer_cookie; 37171ce1deeSNicolas Pitre t->wanted_cluster = new_cluster_id; 3720577fee2SDave Martin spin_unlock(&t->lock); 37371ce1deeSNicolas Pitre wake_up(&t->wq); 37471ce1deeSNicolas Pitre return 0; 3751c33be57SNicolas Pitre } 3760577fee2SDave Martin EXPORT_SYMBOL_GPL(bL_switch_request_cb); 37771ce1deeSNicolas Pitre 3789797a0e9SNicolas Pitre /* 3799797a0e9SNicolas Pitre * Activation and configuration code. 3809797a0e9SNicolas Pitre */ 3819797a0e9SNicolas Pitre 382c0f43751SDave Martin static DEFINE_MUTEX(bL_switcher_activation_lock); 383491990e2SDave Martin static BLOCKING_NOTIFIER_HEAD(bL_activation_notifier); 3846b7437aeSNicolas Pitre static unsigned int bL_switcher_active; 38538c35d4fSNicolas Pitre static unsigned int bL_switcher_cpu_original_cluster[NR_CPUS]; 3869797a0e9SNicolas Pitre static cpumask_t bL_switcher_removed_logical_cpus; 3879797a0e9SNicolas Pitre 388491990e2SDave Martin int bL_switcher_register_notifier(struct notifier_block *nb) 389491990e2SDave Martin { 390491990e2SDave Martin return blocking_notifier_chain_register(&bL_activation_notifier, nb); 391491990e2SDave Martin } 392491990e2SDave Martin EXPORT_SYMBOL_GPL(bL_switcher_register_notifier); 393491990e2SDave Martin 394491990e2SDave Martin int bL_switcher_unregister_notifier(struct notifier_block *nb) 395491990e2SDave Martin { 396491990e2SDave Martin return blocking_notifier_chain_unregister(&bL_activation_notifier, nb); 397491990e2SDave Martin } 398491990e2SDave Martin EXPORT_SYMBOL_GPL(bL_switcher_unregister_notifier); 399491990e2SDave Martin 400491990e2SDave Martin static int bL_activation_notify(unsigned long val) 401491990e2SDave Martin { 402491990e2SDave Martin int ret; 403491990e2SDave Martin 404491990e2SDave Martin ret = blocking_notifier_call_chain(&bL_activation_notifier, val, NULL); 405491990e2SDave Martin if (ret & NOTIFY_STOP_MASK) 406491990e2SDave Martin pr_err("%s: notifier chain failed with status 0x%x\n", 407491990e2SDave Martin __func__, ret); 408491990e2SDave Martin return notifier_to_errno(ret); 409491990e2SDave Martin } 410491990e2SDave Martin 4116b7437aeSNicolas Pitre static void bL_switcher_restore_cpus(void) 4129797a0e9SNicolas Pitre { 4139797a0e9SNicolas Pitre int i; 4149797a0e9SNicolas Pitre 4153f8517e7SNicolas Pitre for_each_cpu(i, &bL_switcher_removed_logical_cpus) { 4163f8517e7SNicolas Pitre struct device *cpu_dev = get_cpu_device(i); 4173f8517e7SNicolas Pitre int ret = device_online(cpu_dev); 4183f8517e7SNicolas Pitre if (ret) 4193f8517e7SNicolas Pitre dev_err(cpu_dev, "switcher: unable to restore CPU\n"); 4203f8517e7SNicolas Pitre } 4219797a0e9SNicolas Pitre } 4229797a0e9SNicolas Pitre 4236b7437aeSNicolas Pitre static int bL_switcher_halve_cpus(void) 4249797a0e9SNicolas Pitre { 42538c35d4fSNicolas Pitre int i, j, cluster_0, gic_id, ret; 42638c35d4fSNicolas Pitre unsigned int cpu, cluster, mask; 42738c35d4fSNicolas Pitre cpumask_t available_cpus; 4289797a0e9SNicolas Pitre 42938c35d4fSNicolas Pitre /* First pass to validate what we have */ 43038c35d4fSNicolas Pitre mask = 0; 4319797a0e9SNicolas Pitre for_each_online_cpu(i) { 43238c35d4fSNicolas Pitre cpu = MPIDR_AFFINITY_LEVEL(cpu_logical_map(i), 0); 43338c35d4fSNicolas Pitre cluster = MPIDR_AFFINITY_LEVEL(cpu_logical_map(i), 1); 4349797a0e9SNicolas Pitre if (cluster >= 2) { 4359797a0e9SNicolas Pitre pr_err("%s: only dual cluster systems are supported\n", __func__); 4369797a0e9SNicolas Pitre return -EINVAL; 4379797a0e9SNicolas Pitre } 43838c35d4fSNicolas Pitre if (WARN_ON(cpu >= MAX_CPUS_PER_CLUSTER)) 43938c35d4fSNicolas Pitre return -EINVAL; 44038c35d4fSNicolas Pitre mask |= (1 << cluster); 4419797a0e9SNicolas Pitre } 44238c35d4fSNicolas Pitre if (mask != 3) { 44338c35d4fSNicolas Pitre pr_err("%s: no CPU pairing possible\n", __func__); 4449797a0e9SNicolas Pitre return -EINVAL; 4459797a0e9SNicolas Pitre } 4469797a0e9SNicolas Pitre 44738c35d4fSNicolas Pitre /* 44838c35d4fSNicolas Pitre * Now let's do the pairing. We match each CPU with another CPU 44938c35d4fSNicolas Pitre * from a different cluster. To get a uniform scheduling behavior 45038c35d4fSNicolas Pitre * without fiddling with CPU topology and compute capacity data, 45138c35d4fSNicolas Pitre * we'll use logical CPUs initially belonging to the same cluster. 45238c35d4fSNicolas Pitre */ 45338c35d4fSNicolas Pitre memset(bL_switcher_cpu_pairing, -1, sizeof(bL_switcher_cpu_pairing)); 45438c35d4fSNicolas Pitre cpumask_copy(&available_cpus, cpu_online_mask); 45538c35d4fSNicolas Pitre cluster_0 = -1; 45638c35d4fSNicolas Pitre for_each_cpu(i, &available_cpus) { 45738c35d4fSNicolas Pitre int match = -1; 45838c35d4fSNicolas Pitre cluster = MPIDR_AFFINITY_LEVEL(cpu_logical_map(i), 1); 45938c35d4fSNicolas Pitre if (cluster_0 == -1) 46038c35d4fSNicolas Pitre cluster_0 = cluster; 46138c35d4fSNicolas Pitre if (cluster != cluster_0) 46238c35d4fSNicolas Pitre continue; 46338c35d4fSNicolas Pitre cpumask_clear_cpu(i, &available_cpus); 46438c35d4fSNicolas Pitre for_each_cpu(j, &available_cpus) { 46538c35d4fSNicolas Pitre cluster = MPIDR_AFFINITY_LEVEL(cpu_logical_map(j), 1); 46638c35d4fSNicolas Pitre /* 46738c35d4fSNicolas Pitre * Let's remember the last match to create "odd" 46838c35d4fSNicolas Pitre * pairings on purpose in order for other code not 46938c35d4fSNicolas Pitre * to assume any relation between physical and 47038c35d4fSNicolas Pitre * logical CPU numbers. 47138c35d4fSNicolas Pitre */ 47238c35d4fSNicolas Pitre if (cluster != cluster_0) 47338c35d4fSNicolas Pitre match = j; 47438c35d4fSNicolas Pitre } 47538c35d4fSNicolas Pitre if (match != -1) { 47638c35d4fSNicolas Pitre bL_switcher_cpu_pairing[i] = match; 47738c35d4fSNicolas Pitre cpumask_clear_cpu(match, &available_cpus); 47838c35d4fSNicolas Pitre pr_info("CPU%d paired with CPU%d\n", i, match); 47938c35d4fSNicolas Pitre } 48038c35d4fSNicolas Pitre } 4819797a0e9SNicolas Pitre 48238c35d4fSNicolas Pitre /* 48338c35d4fSNicolas Pitre * Now we disable the unwanted CPUs i.e. everything that has no 48438c35d4fSNicolas Pitre * pairing information (that includes the pairing counterparts). 48538c35d4fSNicolas Pitre */ 48638c35d4fSNicolas Pitre cpumask_clear(&bL_switcher_removed_logical_cpus); 48738c35d4fSNicolas Pitre for_each_online_cpu(i) { 48838c35d4fSNicolas Pitre cpu = MPIDR_AFFINITY_LEVEL(cpu_logical_map(i), 0); 48938c35d4fSNicolas Pitre cluster = MPIDR_AFFINITY_LEVEL(cpu_logical_map(i), 1); 49038c35d4fSNicolas Pitre 491ed96762eSNicolas Pitre /* Let's take note of the GIC ID for this CPU */ 49238c35d4fSNicolas Pitre gic_id = gic_get_cpu_id(i); 493ed96762eSNicolas Pitre if (gic_id < 0) { 494ed96762eSNicolas Pitre pr_err("%s: bad GIC ID for CPU %d\n", __func__, i); 49538c35d4fSNicolas Pitre bL_switcher_restore_cpus(); 496ed96762eSNicolas Pitre return -EINVAL; 497ed96762eSNicolas Pitre } 498ed96762eSNicolas Pitre bL_gic_id[cpu][cluster] = gic_id; 499ed96762eSNicolas Pitre pr_info("GIC ID for CPU %u cluster %u is %u\n", 500ed96762eSNicolas Pitre cpu, cluster, gic_id); 501ed96762eSNicolas Pitre 50238c35d4fSNicolas Pitre if (bL_switcher_cpu_pairing[i] != -1) { 50338c35d4fSNicolas Pitre bL_switcher_cpu_original_cluster[i] = cluster; 5049797a0e9SNicolas Pitre continue; 5059797a0e9SNicolas Pitre } 5069797a0e9SNicolas Pitre 5073f8517e7SNicolas Pitre ret = device_offline(get_cpu_device(i)); 5089797a0e9SNicolas Pitre if (ret) { 5099797a0e9SNicolas Pitre bL_switcher_restore_cpus(); 5109797a0e9SNicolas Pitre return ret; 5119797a0e9SNicolas Pitre } 5129797a0e9SNicolas Pitre cpumask_set_cpu(i, &bL_switcher_removed_logical_cpus); 5139797a0e9SNicolas Pitre } 5149797a0e9SNicolas Pitre 5159797a0e9SNicolas Pitre return 0; 5169797a0e9SNicolas Pitre } 5179797a0e9SNicolas Pitre 518d08e2e09SDave Martin /* Determine the logical CPU a given physical CPU is grouped on. */ 519d08e2e09SDave Martin int bL_switcher_get_logical_index(u32 mpidr) 520d08e2e09SDave Martin { 521d08e2e09SDave Martin int cpu; 522d08e2e09SDave Martin 523d08e2e09SDave Martin if (!bL_switcher_active) 524d08e2e09SDave Martin return -EUNATCH; 525d08e2e09SDave Martin 526d08e2e09SDave Martin mpidr &= MPIDR_HWID_BITMASK; 527d08e2e09SDave Martin for_each_online_cpu(cpu) { 528d08e2e09SDave Martin int pairing = bL_switcher_cpu_pairing[cpu]; 529d08e2e09SDave Martin if (pairing == -1) 530d08e2e09SDave Martin continue; 531d08e2e09SDave Martin if ((mpidr == cpu_logical_map(cpu)) || 532d08e2e09SDave Martin (mpidr == cpu_logical_map(pairing))) 533d08e2e09SDave Martin return cpu; 534d08e2e09SDave Martin } 535d08e2e09SDave Martin return -EINVAL; 536d08e2e09SDave Martin } 537d08e2e09SDave Martin 538b09bbe5bSDave Martin static void bL_switcher_trace_trigger_cpu(void *__always_unused info) 539b09bbe5bSDave Martin { 54041fa4215SThomas Gleixner trace_cpu_migrate_current(ktime_get_real_ns(), read_mpidr()); 541b09bbe5bSDave Martin } 542b09bbe5bSDave Martin 54329064b88SDave Martin int bL_switcher_trace_trigger(void) 544b09bbe5bSDave Martin { 545b09bbe5bSDave Martin preempt_disable(); 546b09bbe5bSDave Martin 547b09bbe5bSDave Martin bL_switcher_trace_trigger_cpu(NULL); 548*caa75932SNadav Amit smp_call_function(bL_switcher_trace_trigger_cpu, NULL, true); 549b09bbe5bSDave Martin 550b09bbe5bSDave Martin preempt_enable(); 551b09bbe5bSDave Martin 552*caa75932SNadav Amit return 0; 553b09bbe5bSDave Martin } 55429064b88SDave Martin EXPORT_SYMBOL_GPL(bL_switcher_trace_trigger); 555b09bbe5bSDave Martin 5566b7437aeSNicolas Pitre static int bL_switcher_enable(void) 55771ce1deeSNicolas Pitre { 5589797a0e9SNicolas Pitre int cpu, ret; 55971ce1deeSNicolas Pitre 560c0f43751SDave Martin mutex_lock(&bL_switcher_activation_lock); 561b0ced9d2STushar Behera lock_device_hotplug(); 5626b7437aeSNicolas Pitre if (bL_switcher_active) { 563b0ced9d2STushar Behera unlock_device_hotplug(); 564c0f43751SDave Martin mutex_unlock(&bL_switcher_activation_lock); 5656b7437aeSNicolas Pitre return 0; 5669797a0e9SNicolas Pitre } 5679797a0e9SNicolas Pitre 5686b7437aeSNicolas Pitre pr_info("big.LITTLE switcher initializing\n"); 5696b7437aeSNicolas Pitre 570491990e2SDave Martin ret = bL_activation_notify(BL_NOTIFY_PRE_ENABLE); 571491990e2SDave Martin if (ret) 572491990e2SDave Martin goto error; 573491990e2SDave Martin 5749797a0e9SNicolas Pitre ret = bL_switcher_halve_cpus(); 575491990e2SDave Martin if (ret) 576491990e2SDave Martin goto error; 5779797a0e9SNicolas Pitre 578b09bbe5bSDave Martin bL_switcher_trace_trigger(); 579b09bbe5bSDave Martin 58071ce1deeSNicolas Pitre for_each_online_cpu(cpu) { 58171ce1deeSNicolas Pitre struct bL_thread *t = &bL_threads[cpu]; 5820577fee2SDave Martin spin_lock_init(&t->lock); 58371ce1deeSNicolas Pitre init_waitqueue_head(&t->wq); 5846b7437aeSNicolas Pitre init_completion(&t->started); 58571ce1deeSNicolas Pitre t->wanted_cluster = -1; 58671ce1deeSNicolas Pitre t->task = bL_switcher_thread_create(cpu, t); 58771ce1deeSNicolas Pitre } 5886b7437aeSNicolas Pitre 5896b7437aeSNicolas Pitre bL_switcher_active = 1; 590491990e2SDave Martin bL_activation_notify(BL_NOTIFY_POST_ENABLE); 59171ce1deeSNicolas Pitre pr_info("big.LITTLE switcher initialized\n"); 592491990e2SDave Martin goto out; 593c0f43751SDave Martin 594491990e2SDave Martin error: 595491990e2SDave Martin pr_warn("big.LITTLE switcher initialization failed\n"); 596491990e2SDave Martin bL_activation_notify(BL_NOTIFY_POST_DISABLE); 597491990e2SDave Martin 598491990e2SDave Martin out: 599b0ced9d2STushar Behera unlock_device_hotplug(); 600c0f43751SDave Martin mutex_unlock(&bL_switcher_activation_lock); 601491990e2SDave Martin return ret; 60271ce1deeSNicolas Pitre } 60371ce1deeSNicolas Pitre 6046b7437aeSNicolas Pitre #ifdef CONFIG_SYSFS 6056b7437aeSNicolas Pitre 6066b7437aeSNicolas Pitre static void bL_switcher_disable(void) 6076b7437aeSNicolas Pitre { 60838c35d4fSNicolas Pitre unsigned int cpu, cluster; 6096b7437aeSNicolas Pitre struct bL_thread *t; 6106b7437aeSNicolas Pitre struct task_struct *task; 6116b7437aeSNicolas Pitre 612c0f43751SDave Martin mutex_lock(&bL_switcher_activation_lock); 613b0ced9d2STushar Behera lock_device_hotplug(); 614491990e2SDave Martin 615491990e2SDave Martin if (!bL_switcher_active) 616491990e2SDave Martin goto out; 617491990e2SDave Martin 618491990e2SDave Martin if (bL_activation_notify(BL_NOTIFY_PRE_DISABLE) != 0) { 619491990e2SDave Martin bL_activation_notify(BL_NOTIFY_POST_ENABLE); 620491990e2SDave Martin goto out; 6216b7437aeSNicolas Pitre } 622491990e2SDave Martin 6236b7437aeSNicolas Pitre bL_switcher_active = 0; 6246b7437aeSNicolas Pitre 6256b7437aeSNicolas Pitre /* 6266b7437aeSNicolas Pitre * To deactivate the switcher, we must shut down the switcher 6276b7437aeSNicolas Pitre * threads to prevent any other requests from being accepted. 6286b7437aeSNicolas Pitre * Then, if the final cluster for given logical CPU is not the 6296b7437aeSNicolas Pitre * same as the original one, we'll recreate a switcher thread 6306b7437aeSNicolas Pitre * just for the purpose of switching the CPU back without any 6316b7437aeSNicolas Pitre * possibility for interference from external requests. 6326b7437aeSNicolas Pitre */ 6336b7437aeSNicolas Pitre for_each_online_cpu(cpu) { 6346b7437aeSNicolas Pitre t = &bL_threads[cpu]; 6356b7437aeSNicolas Pitre task = t->task; 6366b7437aeSNicolas Pitre t->task = NULL; 6376b7437aeSNicolas Pitre if (!task || IS_ERR(task)) 6386b7437aeSNicolas Pitre continue; 6396b7437aeSNicolas Pitre kthread_stop(task); 6406b7437aeSNicolas Pitre /* no more switch may happen on this CPU at this point */ 6416b7437aeSNicolas Pitre cluster = MPIDR_AFFINITY_LEVEL(cpu_logical_map(cpu), 1); 6426b7437aeSNicolas Pitre if (cluster == bL_switcher_cpu_original_cluster[cpu]) 6436b7437aeSNicolas Pitre continue; 6446b7437aeSNicolas Pitre init_completion(&t->started); 6456b7437aeSNicolas Pitre t->wanted_cluster = bL_switcher_cpu_original_cluster[cpu]; 6466b7437aeSNicolas Pitre task = bL_switcher_thread_create(cpu, t); 6476b7437aeSNicolas Pitre if (!IS_ERR(task)) { 6486b7437aeSNicolas Pitre wait_for_completion(&t->started); 6496b7437aeSNicolas Pitre kthread_stop(task); 6506b7437aeSNicolas Pitre cluster = MPIDR_AFFINITY_LEVEL(cpu_logical_map(cpu), 1); 6516b7437aeSNicolas Pitre if (cluster == bL_switcher_cpu_original_cluster[cpu]) 6526b7437aeSNicolas Pitre continue; 6536b7437aeSNicolas Pitre } 6546b7437aeSNicolas Pitre /* If execution gets here, we're in trouble. */ 6556b7437aeSNicolas Pitre pr_crit("%s: unable to restore original cluster for CPU %d\n", 6566b7437aeSNicolas Pitre __func__, cpu); 6576b7437aeSNicolas Pitre pr_crit("%s: CPU %d can't be restored\n", 65838c35d4fSNicolas Pitre __func__, bL_switcher_cpu_pairing[cpu]); 65938c35d4fSNicolas Pitre cpumask_clear_cpu(bL_switcher_cpu_pairing[cpu], 66038c35d4fSNicolas Pitre &bL_switcher_removed_logical_cpus); 6616b7437aeSNicolas Pitre } 6626b7437aeSNicolas Pitre 6636b7437aeSNicolas Pitre bL_switcher_restore_cpus(); 664b09bbe5bSDave Martin bL_switcher_trace_trigger(); 665b09bbe5bSDave Martin 666491990e2SDave Martin bL_activation_notify(BL_NOTIFY_POST_DISABLE); 667491990e2SDave Martin 668491990e2SDave Martin out: 669b0ced9d2STushar Behera unlock_device_hotplug(); 670c0f43751SDave Martin mutex_unlock(&bL_switcher_activation_lock); 6716b7437aeSNicolas Pitre } 6726b7437aeSNicolas Pitre 6736b7437aeSNicolas Pitre static ssize_t bL_switcher_active_show(struct kobject *kobj, 6746b7437aeSNicolas Pitre struct kobj_attribute *attr, char *buf) 6756b7437aeSNicolas Pitre { 6766b7437aeSNicolas Pitre return sprintf(buf, "%u\n", bL_switcher_active); 6776b7437aeSNicolas Pitre } 6786b7437aeSNicolas Pitre 6796b7437aeSNicolas Pitre static ssize_t bL_switcher_active_store(struct kobject *kobj, 6806b7437aeSNicolas Pitre struct kobj_attribute *attr, const char *buf, size_t count) 6816b7437aeSNicolas Pitre { 6826b7437aeSNicolas Pitre int ret; 6836b7437aeSNicolas Pitre 6846b7437aeSNicolas Pitre switch (buf[0]) { 6856b7437aeSNicolas Pitre case '0': 6866b7437aeSNicolas Pitre bL_switcher_disable(); 6876b7437aeSNicolas Pitre ret = 0; 6886b7437aeSNicolas Pitre break; 6896b7437aeSNicolas Pitre case '1': 6906b7437aeSNicolas Pitre ret = bL_switcher_enable(); 6916b7437aeSNicolas Pitre break; 6926b7437aeSNicolas Pitre default: 6936b7437aeSNicolas Pitre ret = -EINVAL; 6946b7437aeSNicolas Pitre } 6956b7437aeSNicolas Pitre 6966b7437aeSNicolas Pitre return (ret >= 0) ? count : ret; 6976b7437aeSNicolas Pitre } 6986b7437aeSNicolas Pitre 699b09bbe5bSDave Martin static ssize_t bL_switcher_trace_trigger_store(struct kobject *kobj, 700b09bbe5bSDave Martin struct kobj_attribute *attr, const char *buf, size_t count) 701b09bbe5bSDave Martin { 702b09bbe5bSDave Martin int ret = bL_switcher_trace_trigger(); 703b09bbe5bSDave Martin 704b09bbe5bSDave Martin return ret ? ret : count; 705b09bbe5bSDave Martin } 706b09bbe5bSDave Martin 7076b7437aeSNicolas Pitre static struct kobj_attribute bL_switcher_active_attr = 7086b7437aeSNicolas Pitre __ATTR(active, 0644, bL_switcher_active_show, bL_switcher_active_store); 7096b7437aeSNicolas Pitre 710b09bbe5bSDave Martin static struct kobj_attribute bL_switcher_trace_trigger_attr = 711b09bbe5bSDave Martin __ATTR(trace_trigger, 0200, NULL, bL_switcher_trace_trigger_store); 712b09bbe5bSDave Martin 7136b7437aeSNicolas Pitre static struct attribute *bL_switcher_attrs[] = { 7146b7437aeSNicolas Pitre &bL_switcher_active_attr.attr, 715b09bbe5bSDave Martin &bL_switcher_trace_trigger_attr.attr, 7166b7437aeSNicolas Pitre NULL, 7176b7437aeSNicolas Pitre }; 7186b7437aeSNicolas Pitre 7196b7437aeSNicolas Pitre static struct attribute_group bL_switcher_attr_group = { 7206b7437aeSNicolas Pitre .attrs = bL_switcher_attrs, 7216b7437aeSNicolas Pitre }; 7226b7437aeSNicolas Pitre 7236b7437aeSNicolas Pitre static struct kobject *bL_switcher_kobj; 7246b7437aeSNicolas Pitre 7256b7437aeSNicolas Pitre static int __init bL_switcher_sysfs_init(void) 7266b7437aeSNicolas Pitre { 7276b7437aeSNicolas Pitre int ret; 7286b7437aeSNicolas Pitre 7296b7437aeSNicolas Pitre bL_switcher_kobj = kobject_create_and_add("bL_switcher", kernel_kobj); 7306b7437aeSNicolas Pitre if (!bL_switcher_kobj) 7316b7437aeSNicolas Pitre return -ENOMEM; 7326b7437aeSNicolas Pitre ret = sysfs_create_group(bL_switcher_kobj, &bL_switcher_attr_group); 7336b7437aeSNicolas Pitre if (ret) 7346b7437aeSNicolas Pitre kobject_put(bL_switcher_kobj); 7356b7437aeSNicolas Pitre return ret; 7366b7437aeSNicolas Pitre } 7376b7437aeSNicolas Pitre 7386b7437aeSNicolas Pitre #endif /* CONFIG_SYSFS */ 7396b7437aeSNicolas Pitre 740c0f43751SDave Martin bool bL_switcher_get_enabled(void) 741c0f43751SDave Martin { 742c0f43751SDave Martin mutex_lock(&bL_switcher_activation_lock); 743c0f43751SDave Martin 744c0f43751SDave Martin return bL_switcher_active; 745c0f43751SDave Martin } 746c0f43751SDave Martin EXPORT_SYMBOL_GPL(bL_switcher_get_enabled); 747c0f43751SDave Martin 748c0f43751SDave Martin void bL_switcher_put_enabled(void) 749c0f43751SDave Martin { 750c0f43751SDave Martin mutex_unlock(&bL_switcher_activation_lock); 751c0f43751SDave Martin } 752c0f43751SDave Martin EXPORT_SYMBOL_GPL(bL_switcher_put_enabled); 753c0f43751SDave Martin 75427261435SNicolas Pitre /* 75527261435SNicolas Pitre * Veto any CPU hotplug operation on those CPUs we've removed 75627261435SNicolas Pitre * while the switcher is active. 75727261435SNicolas Pitre * We're just not ready to deal with that given the trickery involved. 75827261435SNicolas Pitre */ 759a3c9b14fSSebastian Andrzej Siewior static int bL_switcher_cpu_pre(unsigned int cpu) 76027261435SNicolas Pitre { 761a3c9b14fSSebastian Andrzej Siewior int pairing; 762a3c9b14fSSebastian Andrzej Siewior 763a3c9b14fSSebastian Andrzej Siewior if (!bL_switcher_active) 764a3c9b14fSSebastian Andrzej Siewior return 0; 765a3c9b14fSSebastian Andrzej Siewior 766a3c9b14fSSebastian Andrzej Siewior pairing = bL_switcher_cpu_pairing[cpu]; 767a3c9b14fSSebastian Andrzej Siewior 76827261435SNicolas Pitre if (pairing == -1) 769a3c9b14fSSebastian Andrzej Siewior return -EINVAL; 770a3c9b14fSSebastian Andrzej Siewior return 0; 77127261435SNicolas Pitre } 77227261435SNicolas Pitre 773c4821c05SNicolas Pitre static bool no_bL_switcher; 774c4821c05SNicolas Pitre core_param(no_bL_switcher, no_bL_switcher, bool, 0644); 775c4821c05SNicolas Pitre 7766b7437aeSNicolas Pitre static int __init bL_switcher_init(void) 7776b7437aeSNicolas Pitre { 7786b7437aeSNicolas Pitre int ret; 7796b7437aeSNicolas Pitre 7804530e4b6SNicolas Pitre if (!mcpm_is_available()) 7814530e4b6SNicolas Pitre return -ENODEV; 7826b7437aeSNicolas Pitre 783a3c9b14fSSebastian Andrzej Siewior cpuhp_setup_state_nocalls(CPUHP_ARM_BL_PREPARE, "arm/bl:prepare", 784a3c9b14fSSebastian Andrzej Siewior bL_switcher_cpu_pre, NULL); 785a3c9b14fSSebastian Andrzej Siewior ret = cpuhp_setup_state_nocalls(CPUHP_AP_ONLINE_DYN, "arm/bl:predown", 786a3c9b14fSSebastian Andrzej Siewior NULL, bL_switcher_cpu_pre); 787a3c9b14fSSebastian Andrzej Siewior if (ret < 0) { 788a3c9b14fSSebastian Andrzej Siewior cpuhp_remove_state_nocalls(CPUHP_ARM_BL_PREPARE); 789a3c9b14fSSebastian Andrzej Siewior pr_err("bL_switcher: Failed to allocate a hotplug state\n"); 790a3c9b14fSSebastian Andrzej Siewior return ret; 791a3c9b14fSSebastian Andrzej Siewior } 792c4821c05SNicolas Pitre if (!no_bL_switcher) { 7936b7437aeSNicolas Pitre ret = bL_switcher_enable(); 7946b7437aeSNicolas Pitre if (ret) 7956b7437aeSNicolas Pitre return ret; 796c4821c05SNicolas Pitre } 7976b7437aeSNicolas Pitre 7986b7437aeSNicolas Pitre #ifdef CONFIG_SYSFS 7996b7437aeSNicolas Pitre ret = bL_switcher_sysfs_init(); 8006b7437aeSNicolas Pitre if (ret) 8016b7437aeSNicolas Pitre pr_err("%s: unable to create sysfs entry\n", __func__); 8026b7437aeSNicolas Pitre #endif 8036b7437aeSNicolas Pitre 8046b7437aeSNicolas Pitre return 0; 8056b7437aeSNicolas Pitre } 8066b7437aeSNicolas Pitre 80771ce1deeSNicolas Pitre late_initcall(bL_switcher_init); 808