| lh | 9ed821d | 2023-04-07 01:36:19 -0700 | [diff] [blame] | 1 | /* | 
 | 2 |  * linux/kernel/time/clockevents.c | 
 | 3 |  * | 
 | 4 |  * This file contains functions which manage clock event devices. | 
 | 5 |  * | 
 | 6 |  * Copyright(C) 2005-2006, Thomas Gleixner <tglx@linutronix.de> | 
 | 7 |  * Copyright(C) 2005-2007, Red Hat, Inc., Ingo Molnar | 
 | 8 |  * Copyright(C) 2006-2007, Timesys Corp., Thomas Gleixner | 
 | 9 |  * | 
 | 10 |  * This code is licenced under the GPL version 2. For details see | 
 | 11 |  * kernel-base/COPYING. | 
 | 12 |  */ | 
 | 13 |  | 
 | 14 | #include <linux/clockchips.h> | 
 | 15 | #include <linux/hrtimer.h> | 
 | 16 | #include <linux/init.h> | 
 | 17 | #include <linux/module.h> | 
 | 18 | #include <linux/notifier.h> | 
 | 19 | #include <linux/smp.h> | 
 | 20 |  | 
 | 21 | #include "tick-internal.h" | 
 | 22 |  | 
 | 23 | /* The registered clock event devices */ | 
 | 24 | static LIST_HEAD(clockevent_devices); | 
 | 25 | static LIST_HEAD(clockevents_released); | 
 | 26 |  | 
 | 27 | /* Notification for clock events */ | 
 | 28 | static RAW_NOTIFIER_HEAD(clockevents_chain); | 
 | 29 |  | 
 | 30 | /* Protection for the above */ | 
 | 31 | static DEFINE_RAW_SPINLOCK(clockevents_lock); | 
 | 32 |  | 
 | 33 | static u64 cev_delta2ns(unsigned long latch, struct clock_event_device *evt, | 
 | 34 | 			bool ismax) | 
 | 35 | { | 
 | 36 | 	u64 clc = (u64) latch << evt->shift; | 
 | 37 | 	u64 rnd; | 
 | 38 |  | 
 | 39 | 	if (unlikely(!evt->mult)) { | 
 | 40 | 		evt->mult = 1; | 
 | 41 | 		WARN_ON(1); | 
 | 42 | 	} | 
 | 43 | 	rnd = (u64) evt->mult - 1; | 
 | 44 |  | 
 | 45 | 	/* | 
 | 46 | 	 * Upper bound sanity check. If the backwards conversion is | 
 | 47 | 	 * not equal latch, we know that the above shift overflowed. | 
 | 48 | 	 */ | 
 | 49 | 	if ((clc >> evt->shift) != (u64)latch) | 
 | 50 | 		clc = ~0ULL; | 
 | 51 |  | 
 | 52 | 	/* | 
 | 53 | 	 * Scaled math oddities: | 
 | 54 | 	 * | 
 | 55 | 	 * For mult <= (1 << shift) we can safely add mult - 1 to | 
 | 56 | 	 * prevent integer rounding loss. So the backwards conversion | 
 | 57 | 	 * from nsec to device ticks will be correct. | 
 | 58 | 	 * | 
 | 59 | 	 * For mult > (1 << shift), i.e. device frequency is > 1GHz we | 
 | 60 | 	 * need to be careful. Adding mult - 1 will result in a value | 
 | 61 | 	 * which when converted back to device ticks can be larger | 
 | 62 | 	 * than latch by up to (mult - 1) >> shift. For the min_delta | 
 | 63 | 	 * calculation we still want to apply this in order to stay | 
 | 64 | 	 * above the minimum device ticks limit. For the upper limit | 
 | 65 | 	 * we would end up with a latch value larger than the upper | 
 | 66 | 	 * limit of the device, so we omit the add to stay below the | 
 | 67 | 	 * device upper boundary. | 
 | 68 | 	 * | 
 | 69 | 	 * Also omit the add if it would overflow the u64 boundary. | 
 | 70 | 	 */ | 
 | 71 | 	if ((~0ULL - clc > rnd) && | 
 | 72 | 	    (!ismax || evt->mult <= (1U << evt->shift))) | 
 | 73 | 		clc += rnd; | 
 | 74 |  | 
 | 75 | 	do_div(clc, evt->mult); | 
 | 76 |  | 
 | 77 | 	/* Deltas less than 1usec are pointless noise */ | 
 | 78 | 	return clc > 1000 ? clc : 1000; | 
 | 79 | } | 
 | 80 |  | 
 | 81 | /** | 
 | 82 |  * clockevents_delta2ns - Convert a latch value (device ticks) to nanoseconds | 
 | 83 |  * @latch:	value to convert | 
 | 84 |  * @evt:	pointer to clock event device descriptor | 
 | 85 |  * | 
 | 86 |  * Math helper, returns latch value converted to nanoseconds (bound checked) | 
 | 87 |  */ | 
 | 88 | u64 clockevent_delta2ns(unsigned long latch, struct clock_event_device *evt) | 
 | 89 | { | 
 | 90 | 	return cev_delta2ns(latch, evt, false); | 
 | 91 | } | 
 | 92 | EXPORT_SYMBOL_GPL(clockevent_delta2ns); | 
 | 93 |  | 
 | 94 | /** | 
 | 95 |  * clockevents_set_mode - set the operating mode of a clock event device | 
 | 96 |  * @dev:	device to modify | 
 | 97 |  * @mode:	new mode | 
 | 98 |  * | 
 | 99 |  * Must be called with interrupts disabled ! | 
 | 100 |  */ | 
 | 101 | void clockevents_set_mode(struct clock_event_device *dev, | 
 | 102 | 				 enum clock_event_mode mode) | 
 | 103 | { | 
 | 104 | 	if (dev->mode != mode) { | 
 | 105 | 		dev->set_mode(mode, dev); | 
 | 106 | 		dev->mode = mode; | 
 | 107 |  | 
 | 108 | 		/* | 
 | 109 | 		 * A nsec2cyc multiplicator of 0 is invalid and we'd crash | 
 | 110 | 		 * on it, so fix it up and emit a warning: | 
 | 111 | 		 */ | 
 | 112 | 		if (mode == CLOCK_EVT_MODE_ONESHOT) { | 
 | 113 | 			if (unlikely(!dev->mult)) { | 
 | 114 | 				dev->mult = 1; | 
 | 115 | 				WARN_ON(1); | 
 | 116 | 			} | 
 | 117 | 		} | 
 | 118 | 	} | 
 | 119 | } | 
 | 120 |  | 
 | 121 | /** | 
 | 122 |  * clockevents_shutdown - shutdown the device and clear next_event | 
 | 123 |  * @dev:	device to shutdown | 
 | 124 |  */ | 
 | 125 | void clockevents_shutdown(struct clock_event_device *dev) | 
 | 126 | { | 
 | 127 | 	clockevents_set_mode(dev, CLOCK_EVT_MODE_SHUTDOWN); | 
 | 128 | 	dev->next_event.tv64 = KTIME_MAX; | 
 | 129 | } | 
 | 130 |  | 
 | 131 | #ifdef CONFIG_GENERIC_CLOCKEVENTS_MIN_ADJUST | 
 | 132 |  | 
 | 133 | /* Limit min_delta to a jiffie */ | 
 | 134 | #define MIN_DELTA_LIMIT		(NSEC_PER_SEC / HZ) | 
 | 135 |  | 
 | 136 | /** | 
 | 137 |  * clockevents_increase_min_delta - raise minimum delta of a clock event device | 
 | 138 |  * @dev:       device to increase the minimum delta | 
 | 139 |  * | 
 | 140 |  * Returns 0 on success, -ETIME when the minimum delta reached the limit. | 
 | 141 |  */ | 
 | 142 | static int clockevents_increase_min_delta(struct clock_event_device *dev) | 
 | 143 | { | 
 | 144 | 	/* Nothing to do if we already reached the limit */ | 
 | 145 | 	if (dev->min_delta_ns >= MIN_DELTA_LIMIT) { | 
 | 146 | 		printk_deferred(KERN_WARNING | 
 | 147 | 				"CE: Reprogramming failure. Giving up\n"); | 
 | 148 | 		dev->next_event.tv64 = KTIME_MAX; | 
 | 149 | 		return -ETIME; | 
 | 150 | 	} | 
 | 151 |  | 
 | 152 | 	if (dev->min_delta_ns < 5000) | 
 | 153 | 		dev->min_delta_ns = 5000; | 
 | 154 | 	else | 
 | 155 | 		dev->min_delta_ns += dev->min_delta_ns >> 1; | 
 | 156 |  | 
 | 157 | 	if (dev->min_delta_ns > MIN_DELTA_LIMIT) | 
 | 158 | 		dev->min_delta_ns = MIN_DELTA_LIMIT; | 
 | 159 |  | 
 | 160 | 	printk_deferred(KERN_WARNING | 
 | 161 | 			"CE: %s increased min_delta_ns to %llu nsec\n", | 
 | 162 | 			dev->name ? dev->name : "?", | 
 | 163 | 			(unsigned long long) dev->min_delta_ns); | 
 | 164 | 	return 0; | 
 | 165 | } | 
 | 166 |  | 
 | 167 | /** | 
 | 168 |  * clockevents_program_min_delta - Set clock event device to the minimum delay. | 
 | 169 |  * @dev:	device to program | 
 | 170 |  * | 
 | 171 |  * Returns 0 on success, -ETIME when the retry loop failed. | 
 | 172 |  */ | 
 | 173 | static int clockevents_program_min_delta(struct clock_event_device *dev) | 
 | 174 | { | 
 | 175 | 	unsigned long long clc; | 
 | 176 | 	int64_t delta; | 
 | 177 | 	int i; | 
 | 178 |  | 
 | 179 | 	for (i = 0;;) { | 
 | 180 | 		delta = dev->min_delta_ns; | 
 | 181 | 		dev->next_event = ktime_add_ns(ktime_get(), delta); | 
 | 182 |  | 
 | 183 | 		if (dev->mode == CLOCK_EVT_MODE_SHUTDOWN) | 
 | 184 | 			return 0; | 
 | 185 |  | 
 | 186 | 		dev->retries++; | 
 | 187 | 		clc = ((unsigned long long) delta * dev->mult) >> dev->shift; | 
 | 188 | 		if (dev->set_next_event((unsigned long) clc, dev) == 0) | 
 | 189 | 			return 0; | 
 | 190 |  | 
 | 191 | 		if (++i > 2) { | 
 | 192 | 			/* | 
 | 193 | 			 * We tried 3 times to program the device with the | 
 | 194 | 			 * given min_delta_ns. Try to increase the minimum | 
 | 195 | 			 * delta, if that fails as well get out of here. | 
 | 196 | 			 */ | 
 | 197 | 			if (clockevents_increase_min_delta(dev)) | 
 | 198 | 				return -ETIME; | 
 | 199 | 			i = 0; | 
 | 200 | 		} | 
 | 201 | 	} | 
 | 202 | } | 
 | 203 |  | 
 | 204 | #else  /* CONFIG_GENERIC_CLOCKEVENTS_MIN_ADJUST */ | 
 | 205 |  | 
 | 206 | /** | 
 | 207 |  * clockevents_program_min_delta - Set clock event device to the minimum delay. | 
 | 208 |  * @dev:	device to program | 
 | 209 |  * | 
 | 210 |  * Returns 0 on success, -ETIME when the retry loop failed. | 
 | 211 |  */ | 
 | 212 | static int clockevents_program_min_delta(struct clock_event_device *dev) | 
 | 213 | { | 
 | 214 | 	unsigned long long clc; | 
 | 215 | 	int64_t delta; | 
 | 216 |  | 
 | 217 | 	delta = dev->min_delta_ns; | 
 | 218 | 	dev->next_event = ktime_add_ns(ktime_get(), delta); | 
 | 219 |  | 
 | 220 | 	if (dev->mode == CLOCK_EVT_MODE_SHUTDOWN) | 
 | 221 | 		return 0; | 
 | 222 |  | 
 | 223 | 	dev->retries++; | 
 | 224 | 	clc = ((unsigned long long) delta * dev->mult) >> dev->shift; | 
 | 225 | 	return dev->set_next_event((unsigned long) clc, dev); | 
 | 226 | } | 
 | 227 |  | 
 | 228 | #endif /* CONFIG_GENERIC_CLOCKEVENTS_MIN_ADJUST */ | 
 | 229 |  | 
 | 230 | /** | 
 | 231 |  * clockevents_program_event - Reprogram the clock event device. | 
 | 232 |  * @dev:	device to program | 
 | 233 |  * @expires:	absolute expiry time (monotonic clock) | 
 | 234 |  * @force:	program minimum delay if expires can not be set | 
 | 235 |  * | 
 | 236 |  * Returns 0 on success, -ETIME when the event is in the past. | 
 | 237 |  */ | 
 | 238 | int clockevents_program_event(struct clock_event_device *dev, ktime_t expires, | 
 | 239 | 			      bool force) | 
 | 240 | { | 
 | 241 | 	unsigned long long clc; | 
 | 242 | 	int64_t delta; | 
 | 243 | 	int rc; | 
 | 244 |  | 
 | 245 | 	if (unlikely(expires.tv64 < 0)) { | 
 | 246 | 		WARN_ON_ONCE(1); | 
 | 247 | 		return -ETIME; | 
 | 248 | 	} | 
 | 249 |  | 
 | 250 | 	dev->next_event = expires; | 
 | 251 |  | 
 | 252 | 	if (dev->mode == CLOCK_EVT_MODE_SHUTDOWN) | 
 | 253 | 		return 0; | 
 | 254 |  | 
 | 255 | 	/* Shortcut for clockevent devices that can deal with ktime. */ | 
 | 256 | 	if (dev->features & CLOCK_EVT_FEAT_KTIME) | 
 | 257 | 		return dev->set_next_ktime(expires, dev); | 
 | 258 |  | 
 | 259 | 	delta = ktime_to_ns(ktime_sub(expires, ktime_get())); | 
 | 260 | 	if (delta <= 0) | 
 | 261 | 		return force ? clockevents_program_min_delta(dev) : -ETIME; | 
 | 262 |  | 
 | 263 | 	delta = min(delta, (int64_t) dev->max_delta_ns); | 
 | 264 | 	delta = max(delta, (int64_t) dev->min_delta_ns); | 
 | 265 |  | 
 | 266 | 	clc = ((unsigned long long) delta * dev->mult) >> dev->shift; | 
 | 267 | 	rc = dev->set_next_event((unsigned long) clc, dev); | 
 | 268 |  | 
 | 269 | 	return (rc && force) ? clockevents_program_min_delta(dev) : rc; | 
 | 270 | } | 
 | 271 |  | 
 | 272 | /** | 
 | 273 |  * clockevents_register_notifier - register a clock events change listener | 
 | 274 |  */ | 
 | 275 | int clockevents_register_notifier(struct notifier_block *nb) | 
 | 276 | { | 
 | 277 | 	unsigned long flags; | 
 | 278 | 	int ret; | 
 | 279 |  | 
 | 280 | 	raw_spin_lock_irqsave(&clockevents_lock, flags); | 
 | 281 | 	ret = raw_notifier_chain_register(&clockevents_chain, nb); | 
 | 282 | 	raw_spin_unlock_irqrestore(&clockevents_lock, flags); | 
 | 283 |  | 
 | 284 | 	return ret; | 
 | 285 | } | 
 | 286 |  | 
 | 287 | /* | 
 | 288 |  * Notify about a clock event change. Called with clockevents_lock | 
 | 289 |  * held. | 
 | 290 |  */ | 
 | 291 | static void clockevents_do_notify(unsigned long reason, void *dev) | 
 | 292 | { | 
 | 293 | 	raw_notifier_call_chain(&clockevents_chain, reason, dev); | 
 | 294 | } | 
 | 295 |  | 
 | 296 | /* | 
 | 297 |  * Called after a notify add to make devices available which were | 
 | 298 |  * released from the notifier call. | 
 | 299 |  */ | 
 | 300 | static void clockevents_notify_released(void) | 
 | 301 | { | 
 | 302 | 	struct clock_event_device *dev; | 
 | 303 |  | 
 | 304 | 	while (!list_empty(&clockevents_released)) { | 
 | 305 | 		dev = list_entry(clockevents_released.next, | 
 | 306 | 				 struct clock_event_device, list); | 
 | 307 | 		list_del(&dev->list); | 
 | 308 | 		list_add(&dev->list, &clockevent_devices); | 
 | 309 | 		clockevents_do_notify(CLOCK_EVT_NOTIFY_ADD, dev); | 
 | 310 | 	} | 
 | 311 | } | 
 | 312 |  | 
 | 313 | /** | 
 | 314 |  * clockevents_register_device - register a clock event device | 
 | 315 |  * @dev:	device to register | 
 | 316 |  */ | 
 | 317 | void clockevents_register_device(struct clock_event_device *dev) | 
 | 318 | { | 
 | 319 | 	unsigned long flags; | 
 | 320 |  | 
 | 321 | 	BUG_ON(dev->mode != CLOCK_EVT_MODE_UNUSED); | 
 | 322 | 	if (!dev->cpumask) { | 
 | 323 | 		WARN_ON(num_possible_cpus() > 1); | 
 | 324 | 		dev->cpumask = cpumask_of(smp_processor_id()); | 
 | 325 | 	} | 
 | 326 |  | 
 | 327 | 	raw_spin_lock_irqsave(&clockevents_lock, flags); | 
 | 328 |  | 
 | 329 | 	list_add(&dev->list, &clockevent_devices); | 
 | 330 | 	clockevents_do_notify(CLOCK_EVT_NOTIFY_ADD, dev); | 
 | 331 | 	clockevents_notify_released(); | 
 | 332 |  | 
 | 333 | 	raw_spin_unlock_irqrestore(&clockevents_lock, flags); | 
 | 334 | } | 
 | 335 | EXPORT_SYMBOL_GPL(clockevents_register_device); | 
 | 336 |  | 
 | 337 | static void clockevents_config(struct clock_event_device *dev, | 
 | 338 | 			       u32 freq) | 
 | 339 | { | 
 | 340 | 	u64 sec; | 
 | 341 |  | 
 | 342 | 	if (!(dev->features & CLOCK_EVT_FEAT_ONESHOT)) | 
 | 343 | 		return; | 
 | 344 |  | 
 | 345 | 	/* | 
 | 346 | 	 * Calculate the maximum number of seconds we can sleep. Limit | 
 | 347 | 	 * to 10 minutes for hardware which can program more than | 
 | 348 | 	 * 32bit ticks so we still get reasonable conversion values. | 
 | 349 | 	 */ | 
 | 350 | 	sec = dev->max_delta_ticks; | 
 | 351 | 	do_div(sec, freq); | 
 | 352 | 	if (!sec) | 
 | 353 | 		sec = 1; | 
 | 354 | 	else if (sec > 600 && dev->max_delta_ticks > UINT_MAX) | 
 | 355 | 		sec = 600; | 
 | 356 |  | 
 | 357 | 	clockevents_calc_mult_shift(dev, freq, sec); | 
 | 358 | 	dev->min_delta_ns = cev_delta2ns(dev->min_delta_ticks, dev, false); | 
 | 359 | 	dev->max_delta_ns = cev_delta2ns(dev->max_delta_ticks, dev, true); | 
 | 360 | } | 
 | 361 |  | 
 | 362 | /** | 
 | 363 |  * clockevents_config_and_register - Configure and register a clock event device | 
 | 364 |  * @dev:	device to register | 
 | 365 |  * @freq:	The clock frequency | 
 | 366 |  * @min_delta:	The minimum clock ticks to program in oneshot mode | 
 | 367 |  * @max_delta:	The maximum clock ticks to program in oneshot mode | 
 | 368 |  * | 
 | 369 |  * min/max_delta can be 0 for devices which do not support oneshot mode. | 
 | 370 |  */ | 
 | 371 | void clockevents_config_and_register(struct clock_event_device *dev, | 
 | 372 | 				     u32 freq, unsigned long min_delta, | 
 | 373 | 				     unsigned long max_delta) | 
 | 374 | { | 
 | 375 | 	dev->min_delta_ticks = min_delta; | 
 | 376 | 	dev->max_delta_ticks = max_delta; | 
 | 377 | 	clockevents_config(dev, freq); | 
 | 378 | 	clockevents_register_device(dev); | 
 | 379 | } | 
 | 380 |  | 
 | 381 | /** | 
 | 382 |  * clockevents_update_freq - Update frequency and reprogram a clock event device. | 
 | 383 |  * @dev:	device to modify | 
 | 384 |  * @freq:	new device frequency | 
 | 385 |  * | 
 | 386 |  * Reconfigure and reprogram a clock event device in oneshot | 
 | 387 |  * mode. Must be called on the cpu for which the device delivers per | 
 | 388 |  * cpu timer events with interrupts disabled!  Returns 0 on success, | 
 | 389 |  * -ETIME when the event is in the past. | 
 | 390 |  */ | 
 | 391 | int clockevents_update_freq(struct clock_event_device *dev, u32 freq) | 
 | 392 | { | 
 | 393 | 	clockevents_config(dev, freq); | 
 | 394 |  | 
 | 395 | 	if (dev->mode != CLOCK_EVT_MODE_ONESHOT) | 
 | 396 | 		return 0; | 
 | 397 |  | 
 | 398 | 	return clockevents_program_event(dev, dev->next_event, false); | 
 | 399 | } | 
 | 400 |  | 
 | 401 | /* | 
 | 402 |  * Noop handler when we shut down an event device | 
 | 403 |  */ | 
 | 404 | void clockevents_handle_noop(struct clock_event_device *dev) | 
 | 405 | { | 
 | 406 | } | 
 | 407 |  | 
 | 408 | /** | 
 | 409 |  * clockevents_exchange_device - release and request clock devices | 
 | 410 |  * @old:	device to release (can be NULL) | 
 | 411 |  * @new:	device to request (can be NULL) | 
 | 412 |  * | 
 | 413 |  * Called from the notifier chain. clockevents_lock is held already | 
 | 414 |  */ | 
 | 415 | void clockevents_exchange_device(struct clock_event_device *old, | 
 | 416 | 				 struct clock_event_device *new) | 
 | 417 | { | 
 | 418 | 	unsigned long flags; | 
 | 419 |  | 
 | 420 | 	local_irq_save(flags); | 
 | 421 | 	/* | 
 | 422 | 	 * Caller releases a clock event device. We queue it into the | 
 | 423 | 	 * released list and do a notify add later. | 
 | 424 | 	 */ | 
 | 425 | 	if (old) { | 
 | 426 | 		clockevents_set_mode(old, CLOCK_EVT_MODE_UNUSED); | 
 | 427 | 		list_del(&old->list); | 
 | 428 | 		list_add(&old->list, &clockevents_released); | 
 | 429 | 	} | 
 | 430 |  | 
 | 431 | 	if (new) { | 
 | 432 | 		BUG_ON(new->mode != CLOCK_EVT_MODE_UNUSED); | 
 | 433 | 		clockevents_shutdown(new); | 
 | 434 | 	} | 
 | 435 | 	local_irq_restore(flags); | 
 | 436 | } | 
 | 437 |  | 
 | 438 | #ifdef CONFIG_GENERIC_CLOCKEVENTS | 
 | 439 | /** | 
 | 440 |  * clockevents_notify - notification about relevant events | 
 | 441 |  */ | 
 | 442 | void clockevents_notify(unsigned long reason, void *arg) | 
 | 443 | { | 
 | 444 | 	struct clock_event_device *dev, *tmp; | 
 | 445 | 	unsigned long flags; | 
 | 446 | 	int cpu; | 
 | 447 |  | 
 | 448 | 	raw_spin_lock_irqsave(&clockevents_lock, flags); | 
 | 449 | 	clockevents_do_notify(reason, arg); | 
 | 450 |  | 
 | 451 | 	switch (reason) { | 
 | 452 | 	case CLOCK_EVT_NOTIFY_CPU_DEAD: | 
 | 453 | 		/* | 
 | 454 | 		 * Unregister the clock event devices which were | 
 | 455 | 		 * released from the users in the notify chain. | 
 | 456 | 		 */ | 
 | 457 | 		list_for_each_entry_safe(dev, tmp, &clockevents_released, list) | 
 | 458 | 			list_del(&dev->list); | 
 | 459 | 		/* | 
 | 460 | 		 * Now check whether the CPU has left unused per cpu devices | 
 | 461 | 		 */ | 
 | 462 | 		cpu = *((int *)arg); | 
 | 463 | 		list_for_each_entry_safe(dev, tmp, &clockevent_devices, list) { | 
 | 464 | 			if (cpumask_test_cpu(cpu, dev->cpumask) && | 
 | 465 | 			    cpumask_weight(dev->cpumask) == 1 && | 
 | 466 | 			    !tick_is_broadcast_device(dev)) { | 
 | 467 | 				BUG_ON(dev->mode != CLOCK_EVT_MODE_UNUSED); | 
 | 468 | 				list_del(&dev->list); | 
 | 469 | 			} | 
 | 470 | 		} | 
 | 471 | 		break; | 
 | 472 | 	default: | 
 | 473 | 		break; | 
 | 474 | 	} | 
 | 475 | 	raw_spin_unlock_irqrestore(&clockevents_lock, flags); | 
 | 476 | } | 
 | 477 | EXPORT_SYMBOL_GPL(clockevents_notify); | 
 | 478 | #endif |