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authorRafael J. Wysocki <rjw@sisk.pl>2011-07-15 17:59:09 -0400
committerRafael J. Wysocki <rjw@sisk.pl>2011-07-15 17:59:09 -0400
commitba1389d74f34c0c6e95cc135a332cd29c29d9c20 (patch)
tree53813843d22cfcfe6d466a5daa44c646f8157980 /drivers/base
parentf0c077a8b7f9dce590c760a7b2f3c417dffa52d1 (diff)
parent5ca80817e231723f1399bff495854ba2171103ca (diff)
Merge branch 'pm-domains' into for-linus
* pm-domains: (33 commits) ARM / shmobile: Return -EBUSY from A4LC power off if A3RV is active PM / Domains: Take .power_off() error code into account ARM / shmobile: Use genpd_queue_power_off_work() ARM / shmobile: Use pm_genpd_poweroff_unused() PM / Domains: Introduce function to power off all unused PM domains PM / Domains: Queue up power off work only if it is not pending PM / Domains: Improve handling of wakeup devices during system suspend PM / Domains: Do not restore all devices on power off error PM / Domains: Allow callbacks to execute all runtime PM helpers PM / Domains: Do not execute device callbacks under locks PM / Domains: Make failing pm_genpd_prepare() clean up properly PM / Domains: Set device state to "active" during system resume ARM: mach-shmobile: sh7372 A3RV requires A4LC PM / Domains: Export pm_genpd_poweron() in header ARM: mach-shmobile: sh7372 late pm domain off ARM: mach-shmobile: Runtime PM late init callback ARM: mach-shmobile: sh7372 D4 support ARM: mach-shmobile: sh7372 A4MP support ARM: mach-shmobile: sh7372: make sure that fsi is peripheral of spu2 ARM: mach-shmobile: sh7372 A3SG support ...
Diffstat (limited to 'drivers/base')
-rw-r--r--drivers/base/power/Makefile1
-rw-r--r--drivers/base/power/clock_ops.c234
-rw-r--r--drivers/base/power/domain.c1273
-rw-r--r--drivers/base/power/generic_ops.c98
-rw-r--r--drivers/base/power/main.c30
-rw-r--r--drivers/base/power/runtime.c12
6 files changed, 1524 insertions, 124 deletions
diff --git a/drivers/base/power/Makefile b/drivers/base/power/Makefile
index 3647e114d0e7..2639ae79a372 100644
--- a/drivers/base/power/Makefile
+++ b/drivers/base/power/Makefile
@@ -3,6 +3,7 @@ obj-$(CONFIG_PM_SLEEP) += main.o wakeup.o
3obj-$(CONFIG_PM_RUNTIME) += runtime.o 3obj-$(CONFIG_PM_RUNTIME) += runtime.o
4obj-$(CONFIG_PM_TRACE_RTC) += trace.o 4obj-$(CONFIG_PM_TRACE_RTC) += trace.o
5obj-$(CONFIG_PM_OPP) += opp.o 5obj-$(CONFIG_PM_OPP) += opp.o
6obj-$(CONFIG_PM_GENERIC_DOMAINS) += domain.o
6obj-$(CONFIG_HAVE_CLK) += clock_ops.o 7obj-$(CONFIG_HAVE_CLK) += clock_ops.o
7 8
8ccflags-$(CONFIG_DEBUG_DRIVER) := -DDEBUG \ No newline at end of file 9ccflags-$(CONFIG_DEBUG_DRIVER) := -DDEBUG \ No newline at end of file
diff --git a/drivers/base/power/clock_ops.c b/drivers/base/power/clock_ops.c
index ad367c4139b1..a846b2f95cfb 100644
--- a/drivers/base/power/clock_ops.c
+++ b/drivers/base/power/clock_ops.c
@@ -15,9 +15,9 @@
15#include <linux/slab.h> 15#include <linux/slab.h>
16#include <linux/err.h> 16#include <linux/err.h>
17 17
18#ifdef CONFIG_PM_RUNTIME 18#ifdef CONFIG_PM
19 19
20struct pm_runtime_clk_data { 20struct pm_clk_data {
21 struct list_head clock_list; 21 struct list_head clock_list;
22 struct mutex lock; 22 struct mutex lock;
23}; 23};
@@ -36,25 +36,25 @@ struct pm_clock_entry {
36 enum pce_status status; 36 enum pce_status status;
37}; 37};
38 38
39static struct pm_runtime_clk_data *__to_prd(struct device *dev) 39static struct pm_clk_data *__to_pcd(struct device *dev)
40{ 40{
41 return dev ? dev->power.subsys_data : NULL; 41 return dev ? dev->power.subsys_data : NULL;
42} 42}
43 43
44/** 44/**
45 * pm_runtime_clk_add - Start using a device clock for runtime PM. 45 * pm_clk_add - Start using a device clock for power management.
46 * @dev: Device whose clock is going to be used for runtime PM. 46 * @dev: Device whose clock is going to be used for power management.
47 * @con_id: Connection ID of the clock. 47 * @con_id: Connection ID of the clock.
48 * 48 *
49 * Add the clock represented by @con_id to the list of clocks used for 49 * Add the clock represented by @con_id to the list of clocks used for
50 * the runtime PM of @dev. 50 * the power management of @dev.
51 */ 51 */
52int pm_runtime_clk_add(struct device *dev, const char *con_id) 52int pm_clk_add(struct device *dev, const char *con_id)
53{ 53{
54 struct pm_runtime_clk_data *prd = __to_prd(dev); 54 struct pm_clk_data *pcd = __to_pcd(dev);
55 struct pm_clock_entry *ce; 55 struct pm_clock_entry *ce;
56 56
57 if (!prd) 57 if (!pcd)
58 return -EINVAL; 58 return -EINVAL;
59 59
60 ce = kzalloc(sizeof(*ce), GFP_KERNEL); 60 ce = kzalloc(sizeof(*ce), GFP_KERNEL);
@@ -73,20 +73,20 @@ int pm_runtime_clk_add(struct device *dev, const char *con_id)
73 } 73 }
74 } 74 }
75 75
76 mutex_lock(&prd->lock); 76 mutex_lock(&pcd->lock);
77 list_add_tail(&ce->node, &prd->clock_list); 77 list_add_tail(&ce->node, &pcd->clock_list);
78 mutex_unlock(&prd->lock); 78 mutex_unlock(&pcd->lock);
79 return 0; 79 return 0;
80} 80}
81 81
82/** 82/**
83 * __pm_runtime_clk_remove - Destroy runtime PM clock entry. 83 * __pm_clk_remove - Destroy PM clock entry.
84 * @ce: Runtime PM clock entry to destroy. 84 * @ce: PM clock entry to destroy.
85 * 85 *
86 * This routine must be called under the mutex protecting the runtime PM list 86 * This routine must be called under the mutex protecting the PM list of clocks
87 * of clocks corresponding the the @ce's device. 87 * corresponding the the @ce's device.
88 */ 88 */
89static void __pm_runtime_clk_remove(struct pm_clock_entry *ce) 89static void __pm_clk_remove(struct pm_clock_entry *ce)
90{ 90{
91 if (!ce) 91 if (!ce)
92 return; 92 return;
@@ -108,95 +108,99 @@ static void __pm_runtime_clk_remove(struct pm_clock_entry *ce)
108} 108}
109 109
110/** 110/**
111 * pm_runtime_clk_remove - Stop using a device clock for runtime PM. 111 * pm_clk_remove - Stop using a device clock for power management.
112 * @dev: Device whose clock should not be used for runtime PM any more. 112 * @dev: Device whose clock should not be used for PM any more.
113 * @con_id: Connection ID of the clock. 113 * @con_id: Connection ID of the clock.
114 * 114 *
115 * Remove the clock represented by @con_id from the list of clocks used for 115 * Remove the clock represented by @con_id from the list of clocks used for
116 * the runtime PM of @dev. 116 * the power management of @dev.
117 */ 117 */
118void pm_runtime_clk_remove(struct device *dev, const char *con_id) 118void pm_clk_remove(struct device *dev, const char *con_id)
119{ 119{
120 struct pm_runtime_clk_data *prd = __to_prd(dev); 120 struct pm_clk_data *pcd = __to_pcd(dev);
121 struct pm_clock_entry *ce; 121 struct pm_clock_entry *ce;
122 122
123 if (!prd) 123 if (!pcd)
124 return; 124 return;
125 125
126 mutex_lock(&prd->lock); 126 mutex_lock(&pcd->lock);
127 127
128 list_for_each_entry(ce, &prd->clock_list, node) { 128 list_for_each_entry(ce, &pcd->clock_list, node) {
129 if (!con_id && !ce->con_id) { 129 if (!con_id && !ce->con_id) {
130 __pm_runtime_clk_remove(ce); 130 __pm_clk_remove(ce);
131 break; 131 break;
132 } else if (!con_id || !ce->con_id) { 132 } else if (!con_id || !ce->con_id) {
133 continue; 133 continue;
134 } else if (!strcmp(con_id, ce->con_id)) { 134 } else if (!strcmp(con_id, ce->con_id)) {
135 __pm_runtime_clk_remove(ce); 135 __pm_clk_remove(ce);
136 break; 136 break;
137 } 137 }
138 } 138 }
139 139
140 mutex_unlock(&prd->lock); 140 mutex_unlock(&pcd->lock);
141} 141}
142 142
143/** 143/**
144 * pm_runtime_clk_init - Initialize a device's list of runtime PM clocks. 144 * pm_clk_init - Initialize a device's list of power management clocks.
145 * @dev: Device to initialize the list of runtime PM clocks for. 145 * @dev: Device to initialize the list of PM clocks for.
146 * 146 *
147 * Allocate a struct pm_runtime_clk_data object, initialize its lock member and 147 * Allocate a struct pm_clk_data object, initialize its lock member and
148 * make the @dev's power.subsys_data field point to it. 148 * make the @dev's power.subsys_data field point to it.
149 */ 149 */
150int pm_runtime_clk_init(struct device *dev) 150int pm_clk_init(struct device *dev)
151{ 151{
152 struct pm_runtime_clk_data *prd; 152 struct pm_clk_data *pcd;
153 153
154 prd = kzalloc(sizeof(*prd), GFP_KERNEL); 154 pcd = kzalloc(sizeof(*pcd), GFP_KERNEL);
155 if (!prd) { 155 if (!pcd) {
156 dev_err(dev, "Not enough memory fo runtime PM data.\n"); 156 dev_err(dev, "Not enough memory for PM clock data.\n");
157 return -ENOMEM; 157 return -ENOMEM;
158 } 158 }
159 159
160 INIT_LIST_HEAD(&prd->clock_list); 160 INIT_LIST_HEAD(&pcd->clock_list);
161 mutex_init(&prd->lock); 161 mutex_init(&pcd->lock);
162 dev->power.subsys_data = prd; 162 dev->power.subsys_data = pcd;
163 return 0; 163 return 0;
164} 164}
165 165
166/** 166/**
167 * pm_runtime_clk_destroy - Destroy a device's list of runtime PM clocks. 167 * pm_clk_destroy - Destroy a device's list of power management clocks.
168 * @dev: Device to destroy the list of runtime PM clocks for. 168 * @dev: Device to destroy the list of PM clocks for.
169 * 169 *
170 * Clear the @dev's power.subsys_data field, remove the list of clock entries 170 * Clear the @dev's power.subsys_data field, remove the list of clock entries
171 * from the struct pm_runtime_clk_data object pointed to by it before and free 171 * from the struct pm_clk_data object pointed to by it before and free
172 * that object. 172 * that object.
173 */ 173 */
174void pm_runtime_clk_destroy(struct device *dev) 174void pm_clk_destroy(struct device *dev)
175{ 175{
176 struct pm_runtime_clk_data *prd = __to_prd(dev); 176 struct pm_clk_data *pcd = __to_pcd(dev);
177 struct pm_clock_entry *ce, *c; 177 struct pm_clock_entry *ce, *c;
178 178
179 if (!prd) 179 if (!pcd)
180 return; 180 return;
181 181
182 dev->power.subsys_data = NULL; 182 dev->power.subsys_data = NULL;
183 183
184 mutex_lock(&prd->lock); 184 mutex_lock(&pcd->lock);
185 185
186 list_for_each_entry_safe_reverse(ce, c, &prd->clock_list, node) 186 list_for_each_entry_safe_reverse(ce, c, &pcd->clock_list, node)
187 __pm_runtime_clk_remove(ce); 187 __pm_clk_remove(ce);
188 188
189 mutex_unlock(&prd->lock); 189 mutex_unlock(&pcd->lock);
190 190
191 kfree(prd); 191 kfree(pcd);
192} 192}
193 193
194#endif /* CONFIG_PM */
195
196#ifdef CONFIG_PM_RUNTIME
197
194/** 198/**
195 * pm_runtime_clk_acquire - Acquire a device clock. 199 * pm_clk_acquire - Acquire a device clock.
196 * @dev: Device whose clock is to be acquired. 200 * @dev: Device whose clock is to be acquired.
197 * @con_id: Connection ID of the clock. 201 * @con_id: Connection ID of the clock.
198 */ 202 */
199static void pm_runtime_clk_acquire(struct device *dev, 203static void pm_clk_acquire(struct device *dev,
200 struct pm_clock_entry *ce) 204 struct pm_clock_entry *ce)
201{ 205{
202 ce->clk = clk_get(dev, ce->con_id); 206 ce->clk = clk_get(dev, ce->con_id);
@@ -209,24 +213,24 @@ static void pm_runtime_clk_acquire(struct device *dev,
209} 213}
210 214
211/** 215/**
212 * pm_runtime_clk_suspend - Disable clocks in a device's runtime PM clock list. 216 * pm_clk_suspend - Disable clocks in a device's PM clock list.
213 * @dev: Device to disable the clocks for. 217 * @dev: Device to disable the clocks for.
214 */ 218 */
215int pm_runtime_clk_suspend(struct device *dev) 219int pm_clk_suspend(struct device *dev)
216{ 220{
217 struct pm_runtime_clk_data *prd = __to_prd(dev); 221 struct pm_clk_data *pcd = __to_pcd(dev);
218 struct pm_clock_entry *ce; 222 struct pm_clock_entry *ce;
219 223
220 dev_dbg(dev, "%s()\n", __func__); 224 dev_dbg(dev, "%s()\n", __func__);
221 225
222 if (!prd) 226 if (!pcd)
223 return 0; 227 return 0;
224 228
225 mutex_lock(&prd->lock); 229 mutex_lock(&pcd->lock);
226 230
227 list_for_each_entry_reverse(ce, &prd->clock_list, node) { 231 list_for_each_entry_reverse(ce, &pcd->clock_list, node) {
228 if (ce->status == PCE_STATUS_NONE) 232 if (ce->status == PCE_STATUS_NONE)
229 pm_runtime_clk_acquire(dev, ce); 233 pm_clk_acquire(dev, ce);
230 234
231 if (ce->status < PCE_STATUS_ERROR) { 235 if (ce->status < PCE_STATUS_ERROR) {
232 clk_disable(ce->clk); 236 clk_disable(ce->clk);
@@ -234,30 +238,30 @@ int pm_runtime_clk_suspend(struct device *dev)
234 } 238 }
235 } 239 }
236 240
237 mutex_unlock(&prd->lock); 241 mutex_unlock(&pcd->lock);
238 242
239 return 0; 243 return 0;
240} 244}
241 245
242/** 246/**
243 * pm_runtime_clk_resume - Enable clocks in a device's runtime PM clock list. 247 * pm_clk_resume - Enable clocks in a device's PM clock list.
244 * @dev: Device to enable the clocks for. 248 * @dev: Device to enable the clocks for.
245 */ 249 */
246int pm_runtime_clk_resume(struct device *dev) 250int pm_clk_resume(struct device *dev)
247{ 251{
248 struct pm_runtime_clk_data *prd = __to_prd(dev); 252 struct pm_clk_data *pcd = __to_pcd(dev);
249 struct pm_clock_entry *ce; 253 struct pm_clock_entry *ce;
250 254
251 dev_dbg(dev, "%s()\n", __func__); 255 dev_dbg(dev, "%s()\n", __func__);
252 256
253 if (!prd) 257 if (!pcd)
254 return 0; 258 return 0;
255 259
256 mutex_lock(&prd->lock); 260 mutex_lock(&pcd->lock);
257 261
258 list_for_each_entry(ce, &prd->clock_list, node) { 262 list_for_each_entry(ce, &pcd->clock_list, node) {
259 if (ce->status == PCE_STATUS_NONE) 263 if (ce->status == PCE_STATUS_NONE)
260 pm_runtime_clk_acquire(dev, ce); 264 pm_clk_acquire(dev, ce);
261 265
262 if (ce->status < PCE_STATUS_ERROR) { 266 if (ce->status < PCE_STATUS_ERROR) {
263 clk_enable(ce->clk); 267 clk_enable(ce->clk);
@@ -265,28 +269,28 @@ int pm_runtime_clk_resume(struct device *dev)
265 } 269 }
266 } 270 }
267 271
268 mutex_unlock(&prd->lock); 272 mutex_unlock(&pcd->lock);
269 273
270 return 0; 274 return 0;
271} 275}
272 276
273/** 277/**
274 * pm_runtime_clk_notify - Notify routine for device addition and removal. 278 * pm_clk_notify - Notify routine for device addition and removal.
275 * @nb: Notifier block object this function is a member of. 279 * @nb: Notifier block object this function is a member of.
276 * @action: Operation being carried out by the caller. 280 * @action: Operation being carried out by the caller.
277 * @data: Device the routine is being run for. 281 * @data: Device the routine is being run for.
278 * 282 *
279 * For this function to work, @nb must be a member of an object of type 283 * For this function to work, @nb must be a member of an object of type
280 * struct pm_clk_notifier_block containing all of the requisite data. 284 * struct pm_clk_notifier_block containing all of the requisite data.
281 * Specifically, the pwr_domain member of that object is copied to the device's 285 * Specifically, the pm_domain member of that object is copied to the device's
282 * pwr_domain field and its con_ids member is used to populate the device's list 286 * pm_domain field and its con_ids member is used to populate the device's list
283 * of runtime PM clocks, depending on @action. 287 * of PM clocks, depending on @action.
284 * 288 *
285 * If the device's pwr_domain field is already populated with a value different 289 * If the device's pm_domain field is already populated with a value different
286 * from the one stored in the struct pm_clk_notifier_block object, the function 290 * from the one stored in the struct pm_clk_notifier_block object, the function
287 * does nothing. 291 * does nothing.
288 */ 292 */
289static int pm_runtime_clk_notify(struct notifier_block *nb, 293static int pm_clk_notify(struct notifier_block *nb,
290 unsigned long action, void *data) 294 unsigned long action, void *data)
291{ 295{
292 struct pm_clk_notifier_block *clknb; 296 struct pm_clk_notifier_block *clknb;
@@ -300,28 +304,28 @@ static int pm_runtime_clk_notify(struct notifier_block *nb,
300 304
301 switch (action) { 305 switch (action) {
302 case BUS_NOTIFY_ADD_DEVICE: 306 case BUS_NOTIFY_ADD_DEVICE:
303 if (dev->pwr_domain) 307 if (dev->pm_domain)
304 break; 308 break;
305 309
306 error = pm_runtime_clk_init(dev); 310 error = pm_clk_init(dev);
307 if (error) 311 if (error)
308 break; 312 break;
309 313
310 dev->pwr_domain = clknb->pwr_domain; 314 dev->pm_domain = clknb->pm_domain;
311 if (clknb->con_ids[0]) { 315 if (clknb->con_ids[0]) {
312 for (con_id = clknb->con_ids; *con_id; con_id++) 316 for (con_id = clknb->con_ids; *con_id; con_id++)
313 pm_runtime_clk_add(dev, *con_id); 317 pm_clk_add(dev, *con_id);
314 } else { 318 } else {
315 pm_runtime_clk_add(dev, NULL); 319 pm_clk_add(dev, NULL);
316 } 320 }
317 321
318 break; 322 break;
319 case BUS_NOTIFY_DEL_DEVICE: 323 case BUS_NOTIFY_DEL_DEVICE:
320 if (dev->pwr_domain != clknb->pwr_domain) 324 if (dev->pm_domain != clknb->pm_domain)
321 break; 325 break;
322 326
323 dev->pwr_domain = NULL; 327 dev->pm_domain = NULL;
324 pm_runtime_clk_destroy(dev); 328 pm_clk_destroy(dev);
325 break; 329 break;
326 } 330 }
327 331
@@ -330,6 +334,60 @@ static int pm_runtime_clk_notify(struct notifier_block *nb,
330 334
331#else /* !CONFIG_PM_RUNTIME */ 335#else /* !CONFIG_PM_RUNTIME */
332 336
337#ifdef CONFIG_PM
338
339/**
340 * pm_clk_suspend - Disable clocks in a device's PM clock list.
341 * @dev: Device to disable the clocks for.
342 */
343int pm_clk_suspend(struct device *dev)
344{
345 struct pm_clk_data *pcd = __to_pcd(dev);
346 struct pm_clock_entry *ce;
347
348 dev_dbg(dev, "%s()\n", __func__);
349
350 /* If there is no driver, the clocks are already disabled. */
351 if (!pcd || !dev->driver)
352 return 0;
353
354 mutex_lock(&pcd->lock);
355
356 list_for_each_entry_reverse(ce, &pcd->clock_list, node)
357 clk_disable(ce->clk);
358
359 mutex_unlock(&pcd->lock);
360
361 return 0;
362}
363
364/**
365 * pm_clk_resume - Enable clocks in a device's PM clock list.
366 * @dev: Device to enable the clocks for.
367 */
368int pm_clk_resume(struct device *dev)
369{
370 struct pm_clk_data *pcd = __to_pcd(dev);
371 struct pm_clock_entry *ce;
372
373 dev_dbg(dev, "%s()\n", __func__);
374
375 /* If there is no driver, the clocks should remain disabled. */
376 if (!pcd || !dev->driver)
377 return 0;
378
379 mutex_lock(&pcd->lock);
380
381 list_for_each_entry(ce, &pcd->clock_list, node)
382 clk_enable(ce->clk);
383
384 mutex_unlock(&pcd->lock);
385
386 return 0;
387}
388
389#endif /* CONFIG_PM */
390
333/** 391/**
334 * enable_clock - Enable a device clock. 392 * enable_clock - Enable a device clock.
335 * @dev: Device whose clock is to be enabled. 393 * @dev: Device whose clock is to be enabled.
@@ -365,7 +423,7 @@ static void disable_clock(struct device *dev, const char *con_id)
365} 423}
366 424
367/** 425/**
368 * pm_runtime_clk_notify - Notify routine for device addition and removal. 426 * pm_clk_notify - Notify routine for device addition and removal.
369 * @nb: Notifier block object this function is a member of. 427 * @nb: Notifier block object this function is a member of.
370 * @action: Operation being carried out by the caller. 428 * @action: Operation being carried out by the caller.
371 * @data: Device the routine is being run for. 429 * @data: Device the routine is being run for.
@@ -375,7 +433,7 @@ static void disable_clock(struct device *dev, const char *con_id)
375 * Specifically, the con_ids member of that object is used to enable or disable 433 * Specifically, the con_ids member of that object is used to enable or disable
376 * the device's clocks, depending on @action. 434 * the device's clocks, depending on @action.
377 */ 435 */
378static int pm_runtime_clk_notify(struct notifier_block *nb, 436static int pm_clk_notify(struct notifier_block *nb,
379 unsigned long action, void *data) 437 unsigned long action, void *data)
380{ 438{
381 struct pm_clk_notifier_block *clknb; 439 struct pm_clk_notifier_block *clknb;
@@ -411,21 +469,21 @@ static int pm_runtime_clk_notify(struct notifier_block *nb,
411#endif /* !CONFIG_PM_RUNTIME */ 469#endif /* !CONFIG_PM_RUNTIME */
412 470
413/** 471/**
414 * pm_runtime_clk_add_notifier - Add bus type notifier for runtime PM clocks. 472 * pm_clk_add_notifier - Add bus type notifier for power management clocks.
415 * @bus: Bus type to add the notifier to. 473 * @bus: Bus type to add the notifier to.
416 * @clknb: Notifier to be added to the given bus type. 474 * @clknb: Notifier to be added to the given bus type.
417 * 475 *
418 * The nb member of @clknb is not expected to be initialized and its 476 * The nb member of @clknb is not expected to be initialized and its
419 * notifier_call member will be replaced with pm_runtime_clk_notify(). However, 477 * notifier_call member will be replaced with pm_clk_notify(). However,
420 * the remaining members of @clknb should be populated prior to calling this 478 * the remaining members of @clknb should be populated prior to calling this
421 * routine. 479 * routine.
422 */ 480 */
423void pm_runtime_clk_add_notifier(struct bus_type *bus, 481void pm_clk_add_notifier(struct bus_type *bus,
424 struct pm_clk_notifier_block *clknb) 482 struct pm_clk_notifier_block *clknb)
425{ 483{
426 if (!bus || !clknb) 484 if (!bus || !clknb)
427 return; 485 return;
428 486
429 clknb->nb.notifier_call = pm_runtime_clk_notify; 487 clknb->nb.notifier_call = pm_clk_notify;
430 bus_register_notifier(bus, &clknb->nb); 488 bus_register_notifier(bus, &clknb->nb);
431} 489}
diff --git a/drivers/base/power/domain.c b/drivers/base/power/domain.c
new file mode 100644
index 000000000000..be8714aa9dd6
--- /dev/null
+++ b/drivers/base/power/domain.c
@@ -0,0 +1,1273 @@
1/*
2 * drivers/base/power/domain.c - Common code related to device power domains.
3 *
4 * Copyright (C) 2011 Rafael J. Wysocki <rjw@sisk.pl>, Renesas Electronics Corp.
5 *
6 * This file is released under the GPLv2.
7 */
8
9#include <linux/init.h>
10#include <linux/kernel.h>
11#include <linux/io.h>
12#include <linux/pm_runtime.h>
13#include <linux/pm_domain.h>
14#include <linux/slab.h>
15#include <linux/err.h>
16#include <linux/sched.h>
17#include <linux/suspend.h>
18
19static LIST_HEAD(gpd_list);
20static DEFINE_MUTEX(gpd_list_lock);
21
22#ifdef CONFIG_PM
23
24static struct generic_pm_domain *dev_to_genpd(struct device *dev)
25{
26 if (IS_ERR_OR_NULL(dev->pm_domain))
27 return ERR_PTR(-EINVAL);
28
29 return pd_to_genpd(dev->pm_domain);
30}
31
32static void genpd_sd_counter_dec(struct generic_pm_domain *genpd)
33{
34 if (!WARN_ON(genpd->sd_count == 0))
35 genpd->sd_count--;
36}
37
38static void genpd_acquire_lock(struct generic_pm_domain *genpd)
39{
40 DEFINE_WAIT(wait);
41
42 mutex_lock(&genpd->lock);
43 /*
44 * Wait for the domain to transition into either the active,
45 * or the power off state.
46 */
47 for (;;) {
48 prepare_to_wait(&genpd->status_wait_queue, &wait,
49 TASK_UNINTERRUPTIBLE);
50 if (genpd->status == GPD_STATE_ACTIVE
51 || genpd->status == GPD_STATE_POWER_OFF)
52 break;
53 mutex_unlock(&genpd->lock);
54
55 schedule();
56
57 mutex_lock(&genpd->lock);
58 }
59 finish_wait(&genpd->status_wait_queue, &wait);
60}
61
62static void genpd_release_lock(struct generic_pm_domain *genpd)
63{
64 mutex_unlock(&genpd->lock);
65}
66
67static void genpd_set_active(struct generic_pm_domain *genpd)
68{
69 if (genpd->resume_count == 0)
70 genpd->status = GPD_STATE_ACTIVE;
71}
72
73/**
74 * pm_genpd_poweron - Restore power to a given PM domain and its parents.
75 * @genpd: PM domain to power up.
76 *
77 * Restore power to @genpd and all of its parents so that it is possible to
78 * resume a device belonging to it.
79 */
80int pm_genpd_poweron(struct generic_pm_domain *genpd)
81{
82 struct generic_pm_domain *parent = genpd->parent;
83 DEFINE_WAIT(wait);
84 int ret = 0;
85
86 start:
87 if (parent) {
88 genpd_acquire_lock(parent);
89 mutex_lock_nested(&genpd->lock, SINGLE_DEPTH_NESTING);
90 } else {
91 mutex_lock(&genpd->lock);
92 }
93
94 if (genpd->status == GPD_STATE_ACTIVE
95 || (genpd->prepared_count > 0 && genpd->suspend_power_off))
96 goto out;
97
98 if (genpd->status != GPD_STATE_POWER_OFF) {
99 genpd_set_active(genpd);
100 goto out;
101 }
102
103 if (parent && parent->status != GPD_STATE_ACTIVE) {
104 mutex_unlock(&genpd->lock);
105 genpd_release_lock(parent);
106
107 ret = pm_genpd_poweron(parent);
108 if (ret)
109 return ret;
110
111 goto start;
112 }
113
114 if (genpd->power_on) {
115 int ret = genpd->power_on(genpd);
116 if (ret)
117 goto out;
118 }
119
120 genpd_set_active(genpd);
121 if (parent)
122 parent->sd_count++;
123
124 out:
125 mutex_unlock(&genpd->lock);
126 if (parent)
127 genpd_release_lock(parent);
128
129 return ret;
130}
131
132#endif /* CONFIG_PM */
133
134#ifdef CONFIG_PM_RUNTIME
135
136/**
137 * __pm_genpd_save_device - Save the pre-suspend state of a device.
138 * @dle: Device list entry of the device to save the state of.
139 * @genpd: PM domain the device belongs to.
140 */
141static int __pm_genpd_save_device(struct dev_list_entry *dle,
142 struct generic_pm_domain *genpd)
143 __releases(&genpd->lock) __acquires(&genpd->lock)
144{
145 struct device *dev = dle->dev;
146 struct device_driver *drv = dev->driver;
147 int ret = 0;
148
149 if (dle->need_restore)
150 return 0;
151
152 mutex_unlock(&genpd->lock);
153
154 if (drv && drv->pm && drv->pm->runtime_suspend) {
155 if (genpd->start_device)
156 genpd->start_device(dev);
157
158 ret = drv->pm->runtime_suspend(dev);
159
160 if (genpd->stop_device)
161 genpd->stop_device(dev);
162 }
163
164 mutex_lock(&genpd->lock);
165
166 if (!ret)
167 dle->need_restore = true;
168
169 return ret;
170}
171
172/**
173 * __pm_genpd_restore_device - Restore the pre-suspend state of a device.
174 * @dle: Device list entry of the device to restore the state of.
175 * @genpd: PM domain the device belongs to.
176 */
177static void __pm_genpd_restore_device(struct dev_list_entry *dle,
178 struct generic_pm_domain *genpd)
179 __releases(&genpd->lock) __acquires(&genpd->lock)
180{
181 struct device *dev = dle->dev;
182 struct device_driver *drv = dev->driver;
183
184 if (!dle->need_restore)
185 return;
186
187 mutex_unlock(&genpd->lock);
188
189 if (drv && drv->pm && drv->pm->runtime_resume) {
190 if (genpd->start_device)
191 genpd->start_device(dev);
192
193 drv->pm->runtime_resume(dev);
194
195 if (genpd->stop_device)
196 genpd->stop_device(dev);
197 }
198
199 mutex_lock(&genpd->lock);
200
201 dle->need_restore = false;
202}
203
204/**
205 * genpd_abort_poweroff - Check if a PM domain power off should be aborted.
206 * @genpd: PM domain to check.
207 *
208 * Return true if a PM domain's status changed to GPD_STATE_ACTIVE during
209 * a "power off" operation, which means that a "power on" has occured in the
210 * meantime, or if its resume_count field is different from zero, which means
211 * that one of its devices has been resumed in the meantime.
212 */
213static bool genpd_abort_poweroff(struct generic_pm_domain *genpd)
214{
215 return genpd->status == GPD_STATE_ACTIVE || genpd->resume_count > 0;
216}
217
218/**
219 * genpd_queue_power_off_work - Queue up the execution of pm_genpd_poweroff().
220 * @genpd: PM domait to power off.
221 *
222 * Queue up the execution of pm_genpd_poweroff() unless it's already been done
223 * before.
224 */
225void genpd_queue_power_off_work(struct generic_pm_domain *genpd)
226{
227 if (!work_pending(&genpd->power_off_work))
228 queue_work(pm_wq, &genpd->power_off_work);
229}
230
231/**
232 * pm_genpd_poweroff - Remove power from a given PM domain.
233 * @genpd: PM domain to power down.
234 *
235 * If all of the @genpd's devices have been suspended and all of its subdomains
236 * have been powered down, run the runtime suspend callbacks provided by all of
237 * the @genpd's devices' drivers and remove power from @genpd.
238 */
239static int pm_genpd_poweroff(struct generic_pm_domain *genpd)
240 __releases(&genpd->lock) __acquires(&genpd->lock)
241{
242 struct generic_pm_domain *parent;
243 struct dev_list_entry *dle;
244 unsigned int not_suspended;
245 int ret = 0;
246
247 start:
248 /*
249 * Do not try to power off the domain in the following situations:
250 * (1) The domain is already in the "power off" state.
251 * (2) System suspend is in progress.
252 * (3) One of the domain's devices is being resumed right now.
253 */
254 if (genpd->status == GPD_STATE_POWER_OFF || genpd->prepared_count > 0
255 || genpd->resume_count > 0)
256 return 0;
257
258 if (genpd->sd_count > 0)
259 return -EBUSY;
260
261 not_suspended = 0;
262 list_for_each_entry(dle, &genpd->dev_list, node)
263 if (dle->dev->driver && !pm_runtime_suspended(dle->dev))
264 not_suspended++;
265
266 if (not_suspended > genpd->in_progress)
267 return -EBUSY;
268
269 if (genpd->poweroff_task) {
270 /*
271 * Another instance of pm_genpd_poweroff() is executing
272 * callbacks, so tell it to start over and return.
273 */
274 genpd->status = GPD_STATE_REPEAT;
275 return 0;
276 }
277
278 if (genpd->gov && genpd->gov->power_down_ok) {
279 if (!genpd->gov->power_down_ok(&genpd->domain))
280 return -EAGAIN;
281 }
282
283 genpd->status = GPD_STATE_BUSY;
284 genpd->poweroff_task = current;
285
286 list_for_each_entry_reverse(dle, &genpd->dev_list, node) {
287 ret = __pm_genpd_save_device(dle, genpd);
288 if (ret) {
289 genpd_set_active(genpd);
290 goto out;
291 }
292
293 if (genpd_abort_poweroff(genpd))
294 goto out;
295
296 if (genpd->status == GPD_STATE_REPEAT) {
297 genpd->poweroff_task = NULL;
298 goto start;
299 }
300 }
301
302 parent = genpd->parent;
303 if (parent) {
304 mutex_unlock(&genpd->lock);
305
306 genpd_acquire_lock(parent);
307 mutex_lock_nested(&genpd->lock, SINGLE_DEPTH_NESTING);
308
309 if (genpd_abort_poweroff(genpd)) {
310 genpd_release_lock(parent);
311 goto out;
312 }
313 }
314
315 if (genpd->power_off) {
316 ret = genpd->power_off(genpd);
317 if (ret == -EBUSY) {
318 genpd_set_active(genpd);
319 if (parent)
320 genpd_release_lock(parent);
321
322 goto out;
323 }
324 }
325
326 genpd->status = GPD_STATE_POWER_OFF;
327
328 if (parent) {
329 genpd_sd_counter_dec(parent);
330 if (parent->sd_count == 0)
331 genpd_queue_power_off_work(parent);
332
333 genpd_release_lock(parent);
334 }
335
336 out:
337 genpd->poweroff_task = NULL;
338 wake_up_all(&genpd->status_wait_queue);
339 return ret;
340}
341
342/**
343 * genpd_power_off_work_fn - Power off PM domain whose subdomain count is 0.
344 * @work: Work structure used for scheduling the execution of this function.
345 */
346static void genpd_power_off_work_fn(struct work_struct *work)
347{
348 struct generic_pm_domain *genpd;
349
350 genpd = container_of(work, struct generic_pm_domain, power_off_work);
351
352 genpd_acquire_lock(genpd);
353 pm_genpd_poweroff(genpd);
354 genpd_release_lock(genpd);
355}
356
357/**
358 * pm_genpd_runtime_suspend - Suspend a device belonging to I/O PM domain.
359 * @dev: Device to suspend.
360 *
361 * Carry out a runtime suspend of a device under the assumption that its
362 * pm_domain field points to the domain member of an object of type
363 * struct generic_pm_domain representing a PM domain consisting of I/O devices.
364 */
365static int pm_genpd_runtime_suspend(struct device *dev)
366{
367 struct generic_pm_domain *genpd;
368
369 dev_dbg(dev, "%s()\n", __func__);
370
371 genpd = dev_to_genpd(dev);
372 if (IS_ERR(genpd))
373 return -EINVAL;
374
375 if (genpd->stop_device) {
376 int ret = genpd->stop_device(dev);
377 if (ret)
378 return ret;
379 }
380
381 mutex_lock(&genpd->lock);
382 genpd->in_progress++;
383 pm_genpd_poweroff(genpd);
384 genpd->in_progress--;
385 mutex_unlock(&genpd->lock);
386
387 return 0;
388}
389
390/**
391 * __pm_genpd_runtime_resume - Resume a device belonging to I/O PM domain.
392 * @dev: Device to resume.
393 * @genpd: PM domain the device belongs to.
394 */
395static void __pm_genpd_runtime_resume(struct device *dev,
396 struct generic_pm_domain *genpd)
397{
398 struct dev_list_entry *dle;
399
400 list_for_each_entry(dle, &genpd->dev_list, node) {
401 if (dle->dev == dev) {
402 __pm_genpd_restore_device(dle, genpd);
403 break;
404 }
405 }
406}
407
408/**
409 * pm_genpd_runtime_resume - Resume a device belonging to I/O PM domain.
410 * @dev: Device to resume.
411 *
412 * Carry out a runtime resume of a device under the assumption that its
413 * pm_domain field points to the domain member of an object of type
414 * struct generic_pm_domain representing a PM domain consisting of I/O devices.
415 */
416static int pm_genpd_runtime_resume(struct device *dev)
417{
418 struct generic_pm_domain *genpd;
419 DEFINE_WAIT(wait);
420 int ret;
421
422 dev_dbg(dev, "%s()\n", __func__);
423
424 genpd = dev_to_genpd(dev);
425 if (IS_ERR(genpd))
426 return -EINVAL;
427
428 ret = pm_genpd_poweron(genpd);
429 if (ret)
430 return ret;
431
432 mutex_lock(&genpd->lock);
433 genpd->status = GPD_STATE_BUSY;
434 genpd->resume_count++;
435 for (;;) {
436 prepare_to_wait(&genpd->status_wait_queue, &wait,
437 TASK_UNINTERRUPTIBLE);
438 /*
439 * If current is the powering off task, we have been called
440 * reentrantly from one of the device callbacks, so we should
441 * not wait.
442 */
443 if (!genpd->poweroff_task || genpd->poweroff_task == current)
444 break;
445 mutex_unlock(&genpd->lock);
446
447 schedule();
448
449 mutex_lock(&genpd->lock);
450 }
451 finish_wait(&genpd->status_wait_queue, &wait);
452 __pm_genpd_runtime_resume(dev, genpd);
453 genpd->resume_count--;
454 genpd_set_active(genpd);
455 wake_up_all(&genpd->status_wait_queue);
456 mutex_unlock(&genpd->lock);
457
458 if (genpd->start_device)
459 genpd->start_device(dev);
460
461 return 0;
462}
463
464#else
465
466static inline void genpd_power_off_work_fn(struct work_struct *work) {}
467static inline void __pm_genpd_runtime_resume(struct device *dev,
468 struct generic_pm_domain *genpd) {}
469
470#define pm_genpd_runtime_suspend NULL
471#define pm_genpd_runtime_resume NULL
472
473#endif /* CONFIG_PM_RUNTIME */
474
475#ifdef CONFIG_PM_SLEEP
476
477/**
478 * pm_genpd_sync_poweroff - Synchronously power off a PM domain and its parents.
479 * @genpd: PM domain to power off, if possible.
480 *
481 * Check if the given PM domain can be powered off (during system suspend or
482 * hibernation) and do that if so. Also, in that case propagate to its parent.
483 *
484 * This function is only called in "noirq" stages of system power transitions,
485 * so it need not acquire locks (all of the "noirq" callbacks are executed
486 * sequentially, so it is guaranteed that it will never run twice in parallel).
487 */
488static void pm_genpd_sync_poweroff(struct generic_pm_domain *genpd)
489{
490 struct generic_pm_domain *parent = genpd->parent;
491
492 if (genpd->status == GPD_STATE_POWER_OFF)
493 return;
494
495 if (genpd->suspended_count != genpd->device_count || genpd->sd_count > 0)
496 return;
497
498 if (genpd->power_off)
499 genpd->power_off(genpd);
500
501 genpd->status = GPD_STATE_POWER_OFF;
502 if (parent) {
503 genpd_sd_counter_dec(parent);
504 pm_genpd_sync_poweroff(parent);
505 }
506}
507
508/**
509 * resume_needed - Check whether to resume a device before system suspend.
510 * @dev: Device to check.
511 * @genpd: PM domain the device belongs to.
512 *
513 * There are two cases in which a device that can wake up the system from sleep
514 * states should be resumed by pm_genpd_prepare(): (1) if the device is enabled
515 * to wake up the system and it has to remain active for this purpose while the
516 * system is in the sleep state and (2) if the device is not enabled to wake up
517 * the system from sleep states and it generally doesn't generate wakeup signals
518 * by itself (those signals are generated on its behalf by other parts of the
519 * system). In the latter case it may be necessary to reconfigure the device's
520 * wakeup settings during system suspend, because it may have been set up to
521 * signal remote wakeup from the system's working state as needed by runtime PM.
522 * Return 'true' in either of the above cases.
523 */
524static bool resume_needed(struct device *dev, struct generic_pm_domain *genpd)
525{
526 bool active_wakeup;
527
528 if (!device_can_wakeup(dev))
529 return false;
530
531 active_wakeup = genpd->active_wakeup && genpd->active_wakeup(dev);
532 return device_may_wakeup(dev) ? active_wakeup : !active_wakeup;
533}
534
535/**
536 * pm_genpd_prepare - Start power transition of a device in a PM domain.
537 * @dev: Device to start the transition of.
538 *
539 * Start a power transition of a device (during a system-wide power transition)
540 * under the assumption that its pm_domain field points to the domain member of
541 * an object of type struct generic_pm_domain representing a PM domain
542 * consisting of I/O devices.
543 */
544static int pm_genpd_prepare(struct device *dev)
545{
546 struct generic_pm_domain *genpd;
547 int ret;
548
549 dev_dbg(dev, "%s()\n", __func__);
550
551 genpd = dev_to_genpd(dev);
552 if (IS_ERR(genpd))
553 return -EINVAL;
554
555 /*
556 * If a wakeup request is pending for the device, it should be woken up
557 * at this point and a system wakeup event should be reported if it's
558 * set up to wake up the system from sleep states.
559 */
560 pm_runtime_get_noresume(dev);
561 if (pm_runtime_barrier(dev) && device_may_wakeup(dev))
562 pm_wakeup_event(dev, 0);
563
564 if (pm_wakeup_pending()) {
565 pm_runtime_put_sync(dev);
566 return -EBUSY;
567 }
568
569 if (resume_needed(dev, genpd))
570 pm_runtime_resume(dev);
571
572 genpd_acquire_lock(genpd);
573
574 if (genpd->prepared_count++ == 0)
575 genpd->suspend_power_off = genpd->status == GPD_STATE_POWER_OFF;
576
577 genpd_release_lock(genpd);
578
579 if (genpd->suspend_power_off) {
580 pm_runtime_put_noidle(dev);
581 return 0;
582 }
583
584 /*
585 * The PM domain must be in the GPD_STATE_ACTIVE state at this point,
586 * so pm_genpd_poweron() will return immediately, but if the device
587 * is suspended (e.g. it's been stopped by .stop_device()), we need
588 * to make it operational.
589 */
590 pm_runtime_resume(dev);
591 __pm_runtime_disable(dev, false);
592
593 ret = pm_generic_prepare(dev);
594 if (ret) {
595 mutex_lock(&genpd->lock);
596
597 if (--genpd->prepared_count == 0)
598 genpd->suspend_power_off = false;
599
600 mutex_unlock(&genpd->lock);
601 pm_runtime_enable(dev);
602 }
603
604 pm_runtime_put_sync(dev);
605 return ret;
606}
607
608/**
609 * pm_genpd_suspend - Suspend a device belonging to an I/O PM domain.
610 * @dev: Device to suspend.
611 *
612 * Suspend a device under the assumption that its pm_domain field points to the
613 * domain member of an object of type struct generic_pm_domain representing
614 * a PM domain consisting of I/O devices.
615 */
616static int pm_genpd_suspend(struct device *dev)
617{
618 struct generic_pm_domain *genpd;
619
620 dev_dbg(dev, "%s()\n", __func__);
621
622 genpd = dev_to_genpd(dev);
623 if (IS_ERR(genpd))
624 return -EINVAL;
625
626 return genpd->suspend_power_off ? 0 : pm_generic_suspend(dev);
627}
628
629/**
630 * pm_genpd_suspend_noirq - Late suspend of a device from an I/O PM domain.
631 * @dev: Device to suspend.
632 *
633 * Carry out a late suspend of a device under the assumption that its
634 * pm_domain field points to the domain member of an object of type
635 * struct generic_pm_domain representing a PM domain consisting of I/O devices.
636 */
637static int pm_genpd_suspend_noirq(struct device *dev)
638{
639 struct generic_pm_domain *genpd;
640 int ret;
641
642 dev_dbg(dev, "%s()\n", __func__);
643
644 genpd = dev_to_genpd(dev);
645 if (IS_ERR(genpd))
646 return -EINVAL;
647
648 if (genpd->suspend_power_off)
649 return 0;
650
651 ret = pm_generic_suspend_noirq(dev);
652 if (ret)
653 return ret;
654
655 if (device_may_wakeup(dev)
656 && genpd->active_wakeup && genpd->active_wakeup(dev))
657 return 0;
658
659 if (genpd->stop_device)
660 genpd->stop_device(dev);
661
662 /*
663 * Since all of the "noirq" callbacks are executed sequentially, it is
664 * guaranteed that this function will never run twice in parallel for
665 * the same PM domain, so it is not necessary to use locking here.
666 */
667 genpd->suspended_count++;
668 pm_genpd_sync_poweroff(genpd);
669
670 return 0;
671}
672
673/**
674 * pm_genpd_resume_noirq - Early resume of a device from an I/O power domain.
675 * @dev: Device to resume.
676 *
677 * Carry out an early resume of a device under the assumption that its
678 * pm_domain field points to the domain member of an object of type
679 * struct generic_pm_domain representing a power domain consisting of I/O
680 * devices.
681 */
682static int pm_genpd_resume_noirq(struct device *dev)
683{
684 struct generic_pm_domain *genpd;
685
686 dev_dbg(dev, "%s()\n", __func__);
687
688 genpd = dev_to_genpd(dev);
689 if (IS_ERR(genpd))
690 return -EINVAL;
691
692 if (genpd->suspend_power_off)
693 return 0;
694
695 /*
696 * Since all of the "noirq" callbacks are executed sequentially, it is
697 * guaranteed that this function will never run twice in parallel for
698 * the same PM domain, so it is not necessary to use locking here.
699 */
700 pm_genpd_poweron(genpd);
701 genpd->suspended_count--;
702 if (genpd->start_device)
703 genpd->start_device(dev);
704
705 return pm_generic_resume_noirq(dev);
706}
707
708/**
709 * pm_genpd_resume - Resume a device belonging to an I/O power domain.
710 * @dev: Device to resume.
711 *
712 * Resume a device under the assumption that its pm_domain field points to the
713 * domain member of an object of type struct generic_pm_domain representing
714 * a power domain consisting of I/O devices.
715 */
716static int pm_genpd_resume(struct device *dev)
717{
718 struct generic_pm_domain *genpd;
719
720 dev_dbg(dev, "%s()\n", __func__);
721
722 genpd = dev_to_genpd(dev);
723 if (IS_ERR(genpd))
724 return -EINVAL;
725
726 return genpd->suspend_power_off ? 0 : pm_generic_resume(dev);
727}
728
729/**
730 * pm_genpd_freeze - Freeze a device belonging to an I/O power domain.
731 * @dev: Device to freeze.
732 *
733 * Freeze a device under the assumption that its pm_domain field points to the
734 * domain member of an object of type struct generic_pm_domain representing
735 * a power domain consisting of I/O devices.
736 */
737static int pm_genpd_freeze(struct device *dev)
738{
739 struct generic_pm_domain *genpd;
740
741 dev_dbg(dev, "%s()\n", __func__);
742
743 genpd = dev_to_genpd(dev);
744 if (IS_ERR(genpd))
745 return -EINVAL;
746
747 return genpd->suspend_power_off ? 0 : pm_generic_freeze(dev);
748}
749
750/**
751 * pm_genpd_freeze_noirq - Late freeze of a device from an I/O power domain.
752 * @dev: Device to freeze.
753 *
754 * Carry out a late freeze of a device under the assumption that its
755 * pm_domain field points to the domain member of an object of type
756 * struct generic_pm_domain representing a power domain consisting of I/O
757 * devices.
758 */
759static int pm_genpd_freeze_noirq(struct device *dev)
760{
761 struct generic_pm_domain *genpd;
762 int ret;
763
764 dev_dbg(dev, "%s()\n", __func__);
765
766 genpd = dev_to_genpd(dev);
767 if (IS_ERR(genpd))
768 return -EINVAL;
769
770 if (genpd->suspend_power_off)
771 return 0;
772
773 ret = pm_generic_freeze_noirq(dev);
774 if (ret)
775 return ret;
776
777 if (genpd->stop_device)
778 genpd->stop_device(dev);
779
780 return 0;
781}
782
783/**
784 * pm_genpd_thaw_noirq - Early thaw of a device from an I/O power domain.
785 * @dev: Device to thaw.
786 *
787 * Carry out an early thaw of a device under the assumption that its
788 * pm_domain field points to the domain member of an object of type
789 * struct generic_pm_domain representing a power domain consisting of I/O
790 * devices.
791 */
792static int pm_genpd_thaw_noirq(struct device *dev)
793{
794 struct generic_pm_domain *genpd;
795
796 dev_dbg(dev, "%s()\n", __func__);
797
798 genpd = dev_to_genpd(dev);
799 if (IS_ERR(genpd))
800 return -EINVAL;
801
802 if (genpd->suspend_power_off)
803 return 0;
804
805 if (genpd->start_device)
806 genpd->start_device(dev);
807
808 return pm_generic_thaw_noirq(dev);
809}
810
811/**
812 * pm_genpd_thaw - Thaw a device belonging to an I/O power domain.
813 * @dev: Device to thaw.
814 *
815 * Thaw a device under the assumption that its pm_domain field points to the
816 * domain member of an object of type struct generic_pm_domain representing
817 * a power domain consisting of I/O devices.
818 */
819static int pm_genpd_thaw(struct device *dev)
820{
821 struct generic_pm_domain *genpd;
822
823 dev_dbg(dev, "%s()\n", __func__);
824
825 genpd = dev_to_genpd(dev);
826 if (IS_ERR(genpd))
827 return -EINVAL;
828
829 return genpd->suspend_power_off ? 0 : pm_generic_thaw(dev);
830}
831
832/**
833 * pm_genpd_dev_poweroff - Power off a device belonging to an I/O PM domain.
834 * @dev: Device to suspend.
835 *
836 * Power off a device under the assumption that its pm_domain field points to
837 * the domain member of an object of type struct generic_pm_domain representing
838 * a PM domain consisting of I/O devices.
839 */
840static int pm_genpd_dev_poweroff(struct device *dev)
841{
842 struct generic_pm_domain *genpd;
843
844 dev_dbg(dev, "%s()\n", __func__);
845
846 genpd = dev_to_genpd(dev);
847 if (IS_ERR(genpd))
848 return -EINVAL;
849
850 return genpd->suspend_power_off ? 0 : pm_generic_poweroff(dev);
851}
852
853/**
854 * pm_genpd_dev_poweroff_noirq - Late power off of a device from a PM domain.
855 * @dev: Device to suspend.
856 *
857 * Carry out a late powering off of a device under the assumption that its
858 * pm_domain field points to the domain member of an object of type
859 * struct generic_pm_domain representing a PM domain consisting of I/O devices.
860 */
861static int pm_genpd_dev_poweroff_noirq(struct device *dev)
862{
863 struct generic_pm_domain *genpd;
864 int ret;
865
866 dev_dbg(dev, "%s()\n", __func__);
867
868 genpd = dev_to_genpd(dev);
869 if (IS_ERR(genpd))
870 return -EINVAL;
871
872 if (genpd->suspend_power_off)
873 return 0;
874
875 ret = pm_generic_poweroff_noirq(dev);
876 if (ret)
877 return ret;
878
879 if (device_may_wakeup(dev)
880 && genpd->active_wakeup && genpd->active_wakeup(dev))
881 return 0;
882
883 if (genpd->stop_device)
884 genpd->stop_device(dev);
885
886 /*
887 * Since all of the "noirq" callbacks are executed sequentially, it is
888 * guaranteed that this function will never run twice in parallel for
889 * the same PM domain, so it is not necessary to use locking here.
890 */
891 genpd->suspended_count++;
892 pm_genpd_sync_poweroff(genpd);
893
894 return 0;
895}
896
897/**
898 * pm_genpd_restore_noirq - Early restore of a device from an I/O power domain.
899 * @dev: Device to resume.
900 *
901 * Carry out an early restore of a device under the assumption that its
902 * pm_domain field points to the domain member of an object of type
903 * struct generic_pm_domain representing a power domain consisting of I/O
904 * devices.
905 */
906static int pm_genpd_restore_noirq(struct device *dev)
907{
908 struct generic_pm_domain *genpd;
909
910 dev_dbg(dev, "%s()\n", __func__);
911
912 genpd = dev_to_genpd(dev);
913 if (IS_ERR(genpd))
914 return -EINVAL;
915
916 /*
917 * Since all of the "noirq" callbacks are executed sequentially, it is
918 * guaranteed that this function will never run twice in parallel for
919 * the same PM domain, so it is not necessary to use locking here.
920 */
921 genpd->status = GPD_STATE_POWER_OFF;
922 if (genpd->suspend_power_off) {
923 /*
924 * The boot kernel might put the domain into the power on state,
925 * so make sure it really is powered off.
926 */
927 if (genpd->power_off)
928 genpd->power_off(genpd);
929 return 0;
930 }
931
932 pm_genpd_poweron(genpd);
933 genpd->suspended_count--;
934 if (genpd->start_device)
935 genpd->start_device(dev);
936
937 return pm_generic_restore_noirq(dev);
938}
939
940/**
941 * pm_genpd_restore - Restore a device belonging to an I/O power domain.
942 * @dev: Device to resume.
943 *
944 * Restore a device under the assumption that its pm_domain field points to the
945 * domain member of an object of type struct generic_pm_domain representing
946 * a power domain consisting of I/O devices.
947 */
948static int pm_genpd_restore(struct device *dev)
949{
950 struct generic_pm_domain *genpd;
951
952 dev_dbg(dev, "%s()\n", __func__);
953
954 genpd = dev_to_genpd(dev);
955 if (IS_ERR(genpd))
956 return -EINVAL;
957
958 return genpd->suspend_power_off ? 0 : pm_generic_restore(dev);
959}
960
961/**
962 * pm_genpd_complete - Complete power transition of a device in a power domain.
963 * @dev: Device to complete the transition of.
964 *
965 * Complete a power transition of a device (during a system-wide power
966 * transition) under the assumption that its pm_domain field points to the
967 * domain member of an object of type struct generic_pm_domain representing
968 * a power domain consisting of I/O devices.
969 */
970static void pm_genpd_complete(struct device *dev)
971{
972 struct generic_pm_domain *genpd;
973 bool run_complete;
974
975 dev_dbg(dev, "%s()\n", __func__);
976
977 genpd = dev_to_genpd(dev);
978 if (IS_ERR(genpd))
979 return;
980
981 mutex_lock(&genpd->lock);
982
983 run_complete = !genpd->suspend_power_off;
984 if (--genpd->prepared_count == 0)
985 genpd->suspend_power_off = false;
986
987 mutex_unlock(&genpd->lock);
988
989 if (run_complete) {
990 pm_generic_complete(dev);
991 pm_runtime_set_active(dev);
992 pm_runtime_enable(dev);
993 pm_runtime_idle(dev);
994 }
995}
996
997#else
998
999#define pm_genpd_prepare NULL
1000#define pm_genpd_suspend NULL
1001#define pm_genpd_suspend_noirq NULL
1002#define pm_genpd_resume_noirq NULL
1003#define pm_genpd_resume NULL
1004#define pm_genpd_freeze NULL
1005#define pm_genpd_freeze_noirq NULL
1006#define pm_genpd_thaw_noirq NULL
1007#define pm_genpd_thaw NULL
1008#define pm_genpd_dev_poweroff_noirq NULL
1009#define pm_genpd_dev_poweroff NULL
1010#define pm_genpd_restore_noirq NULL
1011#define pm_genpd_restore NULL
1012#define pm_genpd_complete NULL
1013
1014#endif /* CONFIG_PM_SLEEP */
1015
1016/**
1017 * pm_genpd_add_device - Add a device to an I/O PM domain.
1018 * @genpd: PM domain to add the device to.
1019 * @dev: Device to be added.
1020 */
1021int pm_genpd_add_device(struct generic_pm_domain *genpd, struct device *dev)
1022{
1023 struct dev_list_entry *dle;
1024 int ret = 0;
1025
1026 dev_dbg(dev, "%s()\n", __func__);
1027
1028 if (IS_ERR_OR_NULL(genpd) || IS_ERR_OR_NULL(dev))
1029 return -EINVAL;
1030
1031 genpd_acquire_lock(genpd);
1032
1033 if (genpd->status == GPD_STATE_POWER_OFF) {
1034 ret = -EINVAL;
1035 goto out;
1036 }
1037
1038 if (genpd->prepared_count > 0) {
1039 ret = -EAGAIN;
1040 goto out;
1041 }
1042
1043 list_for_each_entry(dle, &genpd->dev_list, node)
1044 if (dle->dev == dev) {
1045 ret = -EINVAL;
1046 goto out;
1047 }
1048
1049 dle = kzalloc(sizeof(*dle), GFP_KERNEL);
1050 if (!dle) {
1051 ret = -ENOMEM;
1052 goto out;
1053 }
1054
1055 dle->dev = dev;
1056 dle->need_restore = false;
1057 list_add_tail(&dle->node, &genpd->dev_list);
1058 genpd->device_count++;
1059
1060 spin_lock_irq(&dev->power.lock);
1061 dev->pm_domain = &genpd->domain;
1062 spin_unlock_irq(&dev->power.lock);
1063
1064 out:
1065 genpd_release_lock(genpd);
1066
1067 return ret;
1068}
1069
1070/**
1071 * pm_genpd_remove_device - Remove a device from an I/O PM domain.
1072 * @genpd: PM domain to remove the device from.
1073 * @dev: Device to be removed.
1074 */
1075int pm_genpd_remove_device(struct generic_pm_domain *genpd,
1076 struct device *dev)
1077{
1078 struct dev_list_entry *dle;
1079 int ret = -EINVAL;
1080
1081 dev_dbg(dev, "%s()\n", __func__);
1082
1083 if (IS_ERR_OR_NULL(genpd) || IS_ERR_OR_NULL(dev))
1084 return -EINVAL;
1085
1086 genpd_acquire_lock(genpd);
1087
1088 if (genpd->prepared_count > 0) {
1089 ret = -EAGAIN;
1090 goto out;
1091 }
1092
1093 list_for_each_entry(dle, &genpd->dev_list, node) {
1094 if (dle->dev != dev)
1095 continue;
1096
1097 spin_lock_irq(&dev->power.lock);
1098 dev->pm_domain = NULL;
1099 spin_unlock_irq(&dev->power.lock);
1100
1101 genpd->device_count--;
1102 list_del(&dle->node);
1103 kfree(dle);
1104
1105 ret = 0;
1106 break;
1107 }
1108
1109 out:
1110 genpd_release_lock(genpd);
1111
1112 return ret;
1113}
1114
1115/**
1116 * pm_genpd_add_subdomain - Add a subdomain to an I/O PM domain.
1117 * @genpd: Master PM domain to add the subdomain to.
1118 * @new_subdomain: Subdomain to be added.
1119 */
1120int pm_genpd_add_subdomain(struct generic_pm_domain *genpd,
1121 struct generic_pm_domain *new_subdomain)
1122{
1123 struct generic_pm_domain *subdomain;
1124 int ret = 0;
1125
1126 if (IS_ERR_OR_NULL(genpd) || IS_ERR_OR_NULL(new_subdomain))
1127 return -EINVAL;
1128
1129 start:
1130 genpd_acquire_lock(genpd);
1131 mutex_lock_nested(&new_subdomain->lock, SINGLE_DEPTH_NESTING);
1132
1133 if (new_subdomain->status != GPD_STATE_POWER_OFF
1134 && new_subdomain->status != GPD_STATE_ACTIVE) {
1135 mutex_unlock(&new_subdomain->lock);
1136 genpd_release_lock(genpd);
1137 goto start;
1138 }
1139
1140 if (genpd->status == GPD_STATE_POWER_OFF
1141 && new_subdomain->status != GPD_STATE_POWER_OFF) {
1142 ret = -EINVAL;
1143 goto out;
1144 }
1145
1146 list_for_each_entry(subdomain, &genpd->sd_list, sd_node) {
1147 if (subdomain == new_subdomain) {
1148 ret = -EINVAL;
1149 goto out;
1150 }
1151 }
1152
1153 list_add_tail(&new_subdomain->sd_node, &genpd->sd_list);
1154 new_subdomain->parent = genpd;
1155 if (subdomain->status != GPD_STATE_POWER_OFF)
1156 genpd->sd_count++;
1157
1158 out:
1159 mutex_unlock(&new_subdomain->lock);
1160 genpd_release_lock(genpd);
1161
1162 return ret;
1163}
1164
1165/**
1166 * pm_genpd_remove_subdomain - Remove a subdomain from an I/O PM domain.
1167 * @genpd: Master PM domain to remove the subdomain from.
1168 * @target: Subdomain to be removed.
1169 */
1170int pm_genpd_remove_subdomain(struct generic_pm_domain *genpd,
1171 struct generic_pm_domain *target)
1172{
1173 struct generic_pm_domain *subdomain;
1174 int ret = -EINVAL;
1175
1176 if (IS_ERR_OR_NULL(genpd) || IS_ERR_OR_NULL(target))
1177 return -EINVAL;
1178
1179 start:
1180 genpd_acquire_lock(genpd);
1181
1182 list_for_each_entry(subdomain, &genpd->sd_list, sd_node) {
1183 if (subdomain != target)
1184 continue;
1185
1186 mutex_lock_nested(&subdomain->lock, SINGLE_DEPTH_NESTING);
1187
1188 if (subdomain->status != GPD_STATE_POWER_OFF
1189 && subdomain->status != GPD_STATE_ACTIVE) {
1190 mutex_unlock(&subdomain->lock);
1191 genpd_release_lock(genpd);
1192 goto start;
1193 }
1194
1195 list_del(&subdomain->sd_node);
1196 subdomain->parent = NULL;
1197 if (subdomain->status != GPD_STATE_POWER_OFF)
1198 genpd_sd_counter_dec(genpd);
1199
1200 mutex_unlock(&subdomain->lock);
1201
1202 ret = 0;
1203 break;
1204 }
1205
1206 genpd_release_lock(genpd);
1207
1208 return ret;
1209}
1210
1211/**
1212 * pm_genpd_init - Initialize a generic I/O PM domain object.
1213 * @genpd: PM domain object to initialize.
1214 * @gov: PM domain governor to associate with the domain (may be NULL).
1215 * @is_off: Initial value of the domain's power_is_off field.
1216 */
1217void pm_genpd_init(struct generic_pm_domain *genpd,
1218 struct dev_power_governor *gov, bool is_off)
1219{
1220 if (IS_ERR_OR_NULL(genpd))
1221 return;
1222
1223 INIT_LIST_HEAD(&genpd->sd_node);
1224 genpd->parent = NULL;
1225 INIT_LIST_HEAD(&genpd->dev_list);
1226 INIT_LIST_HEAD(&genpd->sd_list);
1227 mutex_init(&genpd->lock);
1228 genpd->gov = gov;
1229 INIT_WORK(&genpd->power_off_work, genpd_power_off_work_fn);
1230 genpd->in_progress = 0;
1231 genpd->sd_count = 0;
1232 genpd->status = is_off ? GPD_STATE_POWER_OFF : GPD_STATE_ACTIVE;
1233 init_waitqueue_head(&genpd->status_wait_queue);
1234 genpd->poweroff_task = NULL;
1235 genpd->resume_count = 0;
1236 genpd->device_count = 0;
1237 genpd->suspended_count = 0;
1238 genpd->domain.ops.runtime_suspend = pm_genpd_runtime_suspend;
1239 genpd->domain.ops.runtime_resume = pm_genpd_runtime_resume;
1240 genpd->domain.ops.runtime_idle = pm_generic_runtime_idle;
1241 genpd->domain.ops.prepare = pm_genpd_prepare;
1242 genpd->domain.ops.suspend = pm_genpd_suspend;
1243 genpd->domain.ops.suspend_noirq = pm_genpd_suspend_noirq;
1244 genpd->domain.ops.resume_noirq = pm_genpd_resume_noirq;
1245 genpd->domain.ops.resume = pm_genpd_resume;
1246 genpd->domain.ops.freeze = pm_genpd_freeze;
1247 genpd->domain.ops.freeze_noirq = pm_genpd_freeze_noirq;
1248 genpd->domain.ops.thaw_noirq = pm_genpd_thaw_noirq;
1249 genpd->domain.ops.thaw = pm_genpd_thaw;
1250 genpd->domain.ops.poweroff = pm_genpd_dev_poweroff;
1251 genpd->domain.ops.poweroff_noirq = pm_genpd_dev_poweroff_noirq;
1252 genpd->domain.ops.restore_noirq = pm_genpd_restore_noirq;
1253 genpd->domain.ops.restore = pm_genpd_restore;
1254 genpd->domain.ops.complete = pm_genpd_complete;
1255 mutex_lock(&gpd_list_lock);
1256 list_add(&genpd->gpd_list_node, &gpd_list);
1257 mutex_unlock(&gpd_list_lock);
1258}
1259
1260/**
1261 * pm_genpd_poweroff_unused - Power off all PM domains with no devices in use.
1262 */
1263void pm_genpd_poweroff_unused(void)
1264{
1265 struct generic_pm_domain *genpd;
1266
1267 mutex_lock(&gpd_list_lock);
1268
1269 list_for_each_entry(genpd, &gpd_list, gpd_list_node)
1270 genpd_queue_power_off_work(genpd);
1271
1272 mutex_unlock(&gpd_list_lock);
1273}
diff --git a/drivers/base/power/generic_ops.c b/drivers/base/power/generic_ops.c
index cb3bb368681c..9508df71274b 100644
--- a/drivers/base/power/generic_ops.c
+++ b/drivers/base/power/generic_ops.c
@@ -94,12 +94,13 @@ int pm_generic_prepare(struct device *dev)
94 * __pm_generic_call - Generic suspend/freeze/poweroff/thaw subsystem callback. 94 * __pm_generic_call - Generic suspend/freeze/poweroff/thaw subsystem callback.
95 * @dev: Device to handle. 95 * @dev: Device to handle.
96 * @event: PM transition of the system under way. 96 * @event: PM transition of the system under way.
97 * @bool: Whether or not this is the "noirq" stage.
97 * 98 *
98 * If the device has not been suspended at run time, execute the 99 * If the device has not been suspended at run time, execute the
99 * suspend/freeze/poweroff/thaw callback provided by its driver, if defined, and 100 * suspend/freeze/poweroff/thaw callback provided by its driver, if defined, and
100 * return its error code. Otherwise, return zero. 101 * return its error code. Otherwise, return zero.
101 */ 102 */
102static int __pm_generic_call(struct device *dev, int event) 103static int __pm_generic_call(struct device *dev, int event, bool noirq)
103{ 104{
104 const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL; 105 const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
105 int (*callback)(struct device *); 106 int (*callback)(struct device *);
@@ -109,16 +110,16 @@ static int __pm_generic_call(struct device *dev, int event)
109 110
110 switch (event) { 111 switch (event) {
111 case PM_EVENT_SUSPEND: 112 case PM_EVENT_SUSPEND:
112 callback = pm->suspend; 113 callback = noirq ? pm->suspend_noirq : pm->suspend;
113 break; 114 break;
114 case PM_EVENT_FREEZE: 115 case PM_EVENT_FREEZE:
115 callback = pm->freeze; 116 callback = noirq ? pm->freeze_noirq : pm->freeze;
116 break; 117 break;
117 case PM_EVENT_HIBERNATE: 118 case PM_EVENT_HIBERNATE:
118 callback = pm->poweroff; 119 callback = noirq ? pm->poweroff_noirq : pm->poweroff;
119 break; 120 break;
120 case PM_EVENT_THAW: 121 case PM_EVENT_THAW:
121 callback = pm->thaw; 122 callback = noirq ? pm->thaw_noirq : pm->thaw;
122 break; 123 break;
123 default: 124 default:
124 callback = NULL; 125 callback = NULL;
@@ -129,42 +130,82 @@ static int __pm_generic_call(struct device *dev, int event)
129} 130}
130 131
131/** 132/**
133 * pm_generic_suspend_noirq - Generic suspend_noirq callback for subsystems.
134 * @dev: Device to suspend.
135 */
136int pm_generic_suspend_noirq(struct device *dev)
137{
138 return __pm_generic_call(dev, PM_EVENT_SUSPEND, true);
139}
140EXPORT_SYMBOL_GPL(pm_generic_suspend_noirq);
141
142/**
132 * pm_generic_suspend - Generic suspend callback for subsystems. 143 * pm_generic_suspend - Generic suspend callback for subsystems.
133 * @dev: Device to suspend. 144 * @dev: Device to suspend.
134 */ 145 */
135int pm_generic_suspend(struct device *dev) 146int pm_generic_suspend(struct device *dev)
136{ 147{
137 return __pm_generic_call(dev, PM_EVENT_SUSPEND); 148 return __pm_generic_call(dev, PM_EVENT_SUSPEND, false);
138} 149}
139EXPORT_SYMBOL_GPL(pm_generic_suspend); 150EXPORT_SYMBOL_GPL(pm_generic_suspend);
140 151
141/** 152/**
153 * pm_generic_freeze_noirq - Generic freeze_noirq callback for subsystems.
154 * @dev: Device to freeze.
155 */
156int pm_generic_freeze_noirq(struct device *dev)
157{
158 return __pm_generic_call(dev, PM_EVENT_FREEZE, true);
159}
160EXPORT_SYMBOL_GPL(pm_generic_freeze_noirq);
161
162/**
142 * pm_generic_freeze - Generic freeze callback for subsystems. 163 * pm_generic_freeze - Generic freeze callback for subsystems.
143 * @dev: Device to freeze. 164 * @dev: Device to freeze.
144 */ 165 */
145int pm_generic_freeze(struct device *dev) 166int pm_generic_freeze(struct device *dev)
146{ 167{
147 return __pm_generic_call(dev, PM_EVENT_FREEZE); 168 return __pm_generic_call(dev, PM_EVENT_FREEZE, false);
148} 169}
149EXPORT_SYMBOL_GPL(pm_generic_freeze); 170EXPORT_SYMBOL_GPL(pm_generic_freeze);
150 171
151/** 172/**
173 * pm_generic_poweroff_noirq - Generic poweroff_noirq callback for subsystems.
174 * @dev: Device to handle.
175 */
176int pm_generic_poweroff_noirq(struct device *dev)
177{
178 return __pm_generic_call(dev, PM_EVENT_HIBERNATE, true);
179}
180EXPORT_SYMBOL_GPL(pm_generic_poweroff_noirq);
181
182/**
152 * pm_generic_poweroff - Generic poweroff callback for subsystems. 183 * pm_generic_poweroff - Generic poweroff callback for subsystems.
153 * @dev: Device to handle. 184 * @dev: Device to handle.
154 */ 185 */
155int pm_generic_poweroff(struct device *dev) 186int pm_generic_poweroff(struct device *dev)
156{ 187{
157 return __pm_generic_call(dev, PM_EVENT_HIBERNATE); 188 return __pm_generic_call(dev, PM_EVENT_HIBERNATE, false);
158} 189}
159EXPORT_SYMBOL_GPL(pm_generic_poweroff); 190EXPORT_SYMBOL_GPL(pm_generic_poweroff);
160 191
161/** 192/**
193 * pm_generic_thaw_noirq - Generic thaw_noirq callback for subsystems.
194 * @dev: Device to thaw.
195 */
196int pm_generic_thaw_noirq(struct device *dev)
197{
198 return __pm_generic_call(dev, PM_EVENT_THAW, true);
199}
200EXPORT_SYMBOL_GPL(pm_generic_thaw_noirq);
201
202/**
162 * pm_generic_thaw - Generic thaw callback for subsystems. 203 * pm_generic_thaw - Generic thaw callback for subsystems.
163 * @dev: Device to thaw. 204 * @dev: Device to thaw.
164 */ 205 */
165int pm_generic_thaw(struct device *dev) 206int pm_generic_thaw(struct device *dev)
166{ 207{
167 return __pm_generic_call(dev, PM_EVENT_THAW); 208 return __pm_generic_call(dev, PM_EVENT_THAW, false);
168} 209}
169EXPORT_SYMBOL_GPL(pm_generic_thaw); 210EXPORT_SYMBOL_GPL(pm_generic_thaw);
170 211
@@ -172,12 +213,13 @@ EXPORT_SYMBOL_GPL(pm_generic_thaw);
172 * __pm_generic_resume - Generic resume/restore callback for subsystems. 213 * __pm_generic_resume - Generic resume/restore callback for subsystems.
173 * @dev: Device to handle. 214 * @dev: Device to handle.
174 * @event: PM transition of the system under way. 215 * @event: PM transition of the system under way.
216 * @bool: Whether or not this is the "noirq" stage.
175 * 217 *
176 * Execute the resume/resotre callback provided by the @dev's driver, if 218 * Execute the resume/resotre callback provided by the @dev's driver, if
177 * defined. If it returns 0, change the device's runtime PM status to 'active'. 219 * defined. If it returns 0, change the device's runtime PM status to 'active'.
178 * Return the callback's error code. 220 * Return the callback's error code.
179 */ 221 */
180static int __pm_generic_resume(struct device *dev, int event) 222static int __pm_generic_resume(struct device *dev, int event, bool noirq)
181{ 223{
182 const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL; 224 const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
183 int (*callback)(struct device *); 225 int (*callback)(struct device *);
@@ -188,10 +230,10 @@ static int __pm_generic_resume(struct device *dev, int event)
188 230
189 switch (event) { 231 switch (event) {
190 case PM_EVENT_RESUME: 232 case PM_EVENT_RESUME:
191 callback = pm->resume; 233 callback = noirq ? pm->resume_noirq : pm->resume;
192 break; 234 break;
193 case PM_EVENT_RESTORE: 235 case PM_EVENT_RESTORE:
194 callback = pm->restore; 236 callback = noirq ? pm->restore_noirq : pm->restore;
195 break; 237 break;
196 default: 238 default:
197 callback = NULL; 239 callback = NULL;
@@ -202,7 +244,7 @@ static int __pm_generic_resume(struct device *dev, int event)
202 return 0; 244 return 0;
203 245
204 ret = callback(dev); 246 ret = callback(dev);
205 if (!ret && pm_runtime_enabled(dev)) { 247 if (!ret && !noirq && pm_runtime_enabled(dev)) {
206 pm_runtime_disable(dev); 248 pm_runtime_disable(dev);
207 pm_runtime_set_active(dev); 249 pm_runtime_set_active(dev);
208 pm_runtime_enable(dev); 250 pm_runtime_enable(dev);
@@ -212,22 +254,42 @@ static int __pm_generic_resume(struct device *dev, int event)
212} 254}
213 255
214/** 256/**
257 * pm_generic_resume_noirq - Generic resume_noirq callback for subsystems.
258 * @dev: Device to resume.
259 */
260int pm_generic_resume_noirq(struct device *dev)
261{
262 return __pm_generic_resume(dev, PM_EVENT_RESUME, true);
263}
264EXPORT_SYMBOL_GPL(pm_generic_resume_noirq);
265
266/**
215 * pm_generic_resume - Generic resume callback for subsystems. 267 * pm_generic_resume - Generic resume callback for subsystems.
216 * @dev: Device to resume. 268 * @dev: Device to resume.
217 */ 269 */
218int pm_generic_resume(struct device *dev) 270int pm_generic_resume(struct device *dev)
219{ 271{
220 return __pm_generic_resume(dev, PM_EVENT_RESUME); 272 return __pm_generic_resume(dev, PM_EVENT_RESUME, false);
221} 273}
222EXPORT_SYMBOL_GPL(pm_generic_resume); 274EXPORT_SYMBOL_GPL(pm_generic_resume);
223 275
224/** 276/**
277 * pm_generic_restore_noirq - Generic restore_noirq callback for subsystems.
278 * @dev: Device to restore.
279 */
280int pm_generic_restore_noirq(struct device *dev)
281{
282 return __pm_generic_resume(dev, PM_EVENT_RESTORE, true);
283}
284EXPORT_SYMBOL_GPL(pm_generic_restore_noirq);
285
286/**
225 * pm_generic_restore - Generic restore callback for subsystems. 287 * pm_generic_restore - Generic restore callback for subsystems.
226 * @dev: Device to restore. 288 * @dev: Device to restore.
227 */ 289 */
228int pm_generic_restore(struct device *dev) 290int pm_generic_restore(struct device *dev)
229{ 291{
230 return __pm_generic_resume(dev, PM_EVENT_RESTORE); 292 return __pm_generic_resume(dev, PM_EVENT_RESTORE, false);
231} 293}
232EXPORT_SYMBOL_GPL(pm_generic_restore); 294EXPORT_SYMBOL_GPL(pm_generic_restore);
233 295
@@ -256,11 +318,17 @@ struct dev_pm_ops generic_subsys_pm_ops = {
256#ifdef CONFIG_PM_SLEEP 318#ifdef CONFIG_PM_SLEEP
257 .prepare = pm_generic_prepare, 319 .prepare = pm_generic_prepare,
258 .suspend = pm_generic_suspend, 320 .suspend = pm_generic_suspend,
321 .suspend_noirq = pm_generic_suspend_noirq,
259 .resume = pm_generic_resume, 322 .resume = pm_generic_resume,
323 .resume_noirq = pm_generic_resume_noirq,
260 .freeze = pm_generic_freeze, 324 .freeze = pm_generic_freeze,
325 .freeze_noirq = pm_generic_freeze_noirq,
261 .thaw = pm_generic_thaw, 326 .thaw = pm_generic_thaw,
327 .thaw_noirq = pm_generic_thaw_noirq,
262 .poweroff = pm_generic_poweroff, 328 .poweroff = pm_generic_poweroff,
329 .poweroff_noirq = pm_generic_poweroff_noirq,
263 .restore = pm_generic_restore, 330 .restore = pm_generic_restore,
331 .restore_noirq = pm_generic_restore_noirq,
264 .complete = pm_generic_complete, 332 .complete = pm_generic_complete,
265#endif 333#endif
266#ifdef CONFIG_PM_RUNTIME 334#ifdef CONFIG_PM_RUNTIME
diff --git a/drivers/base/power/main.c b/drivers/base/power/main.c
index 06f09bf89cb2..85b591a5429a 100644
--- a/drivers/base/power/main.c
+++ b/drivers/base/power/main.c
@@ -425,9 +425,9 @@ static int device_resume_noirq(struct device *dev, pm_message_t state)
425 TRACE_DEVICE(dev); 425 TRACE_DEVICE(dev);
426 TRACE_RESUME(0); 426 TRACE_RESUME(0);
427 427
428 if (dev->pwr_domain) { 428 if (dev->pm_domain) {
429 pm_dev_dbg(dev, state, "EARLY power domain "); 429 pm_dev_dbg(dev, state, "EARLY power domain ");
430 error = pm_noirq_op(dev, &dev->pwr_domain->ops, state); 430 error = pm_noirq_op(dev, &dev->pm_domain->ops, state);
431 } else if (dev->type && dev->type->pm) { 431 } else if (dev->type && dev->type->pm) {
432 pm_dev_dbg(dev, state, "EARLY type "); 432 pm_dev_dbg(dev, state, "EARLY type ");
433 error = pm_noirq_op(dev, dev->type->pm, state); 433 error = pm_noirq_op(dev, dev->type->pm, state);
@@ -521,9 +521,9 @@ static int device_resume(struct device *dev, pm_message_t state, bool async)
521 if (!dev->power.is_suspended) 521 if (!dev->power.is_suspended)
522 goto Unlock; 522 goto Unlock;
523 523
524 if (dev->pwr_domain) { 524 if (dev->pm_domain) {
525 pm_dev_dbg(dev, state, "power domain "); 525 pm_dev_dbg(dev, state, "power domain ");
526 error = pm_op(dev, &dev->pwr_domain->ops, state); 526 error = pm_op(dev, &dev->pm_domain->ops, state);
527 goto End; 527 goto End;
528 } 528 }
529 529
@@ -641,10 +641,10 @@ static void device_complete(struct device *dev, pm_message_t state)
641{ 641{
642 device_lock(dev); 642 device_lock(dev);
643 643
644 if (dev->pwr_domain) { 644 if (dev->pm_domain) {
645 pm_dev_dbg(dev, state, "completing power domain "); 645 pm_dev_dbg(dev, state, "completing power domain ");
646 if (dev->pwr_domain->ops.complete) 646 if (dev->pm_domain->ops.complete)
647 dev->pwr_domain->ops.complete(dev); 647 dev->pm_domain->ops.complete(dev);
648 } else if (dev->type && dev->type->pm) { 648 } else if (dev->type && dev->type->pm) {
649 pm_dev_dbg(dev, state, "completing type "); 649 pm_dev_dbg(dev, state, "completing type ");
650 if (dev->type->pm->complete) 650 if (dev->type->pm->complete)
@@ -744,9 +744,9 @@ static int device_suspend_noirq(struct device *dev, pm_message_t state)
744{ 744{
745 int error; 745 int error;
746 746
747 if (dev->pwr_domain) { 747 if (dev->pm_domain) {
748 pm_dev_dbg(dev, state, "LATE power domain "); 748 pm_dev_dbg(dev, state, "LATE power domain ");
749 error = pm_noirq_op(dev, &dev->pwr_domain->ops, state); 749 error = pm_noirq_op(dev, &dev->pm_domain->ops, state);
750 if (error) 750 if (error)
751 return error; 751 return error;
752 } else if (dev->type && dev->type->pm) { 752 } else if (dev->type && dev->type->pm) {
@@ -853,9 +853,9 @@ static int __device_suspend(struct device *dev, pm_message_t state, bool async)
853 goto Unlock; 853 goto Unlock;
854 } 854 }
855 855
856 if (dev->pwr_domain) { 856 if (dev->pm_domain) {
857 pm_dev_dbg(dev, state, "power domain "); 857 pm_dev_dbg(dev, state, "power domain ");
858 error = pm_op(dev, &dev->pwr_domain->ops, state); 858 error = pm_op(dev, &dev->pm_domain->ops, state);
859 goto End; 859 goto End;
860 } 860 }
861 861
@@ -982,11 +982,11 @@ static int device_prepare(struct device *dev, pm_message_t state)
982 982
983 device_lock(dev); 983 device_lock(dev);
984 984
985 if (dev->pwr_domain) { 985 if (dev->pm_domain) {
986 pm_dev_dbg(dev, state, "preparing power domain "); 986 pm_dev_dbg(dev, state, "preparing power domain ");
987 if (dev->pwr_domain->ops.prepare) 987 if (dev->pm_domain->ops.prepare)
988 error = dev->pwr_domain->ops.prepare(dev); 988 error = dev->pm_domain->ops.prepare(dev);
989 suspend_report_result(dev->pwr_domain->ops.prepare, error); 989 suspend_report_result(dev->pm_domain->ops.prepare, error);
990 if (error) 990 if (error)
991 goto End; 991 goto End;
992 } else if (dev->type && dev->type->pm) { 992 } else if (dev->type && dev->type->pm) {
diff --git a/drivers/base/power/runtime.c b/drivers/base/power/runtime.c
index 0d4587b15c55..5f5c4236f006 100644
--- a/drivers/base/power/runtime.c
+++ b/drivers/base/power/runtime.c
@@ -213,8 +213,8 @@ static int rpm_idle(struct device *dev, int rpmflags)
213 213
214 dev->power.idle_notification = true; 214 dev->power.idle_notification = true;
215 215
216 if (dev->pwr_domain) 216 if (dev->pm_domain)
217 callback = dev->pwr_domain->ops.runtime_idle; 217 callback = dev->pm_domain->ops.runtime_idle;
218 else if (dev->type && dev->type->pm) 218 else if (dev->type && dev->type->pm)
219 callback = dev->type->pm->runtime_idle; 219 callback = dev->type->pm->runtime_idle;
220 else if (dev->class && dev->class->pm) 220 else if (dev->class && dev->class->pm)
@@ -374,8 +374,8 @@ static int rpm_suspend(struct device *dev, int rpmflags)
374 374
375 __update_runtime_status(dev, RPM_SUSPENDING); 375 __update_runtime_status(dev, RPM_SUSPENDING);
376 376
377 if (dev->pwr_domain) 377 if (dev->pm_domain)
378 callback = dev->pwr_domain->ops.runtime_suspend; 378 callback = dev->pm_domain->ops.runtime_suspend;
379 else if (dev->type && dev->type->pm) 379 else if (dev->type && dev->type->pm)
380 callback = dev->type->pm->runtime_suspend; 380 callback = dev->type->pm->runtime_suspend;
381 else if (dev->class && dev->class->pm) 381 else if (dev->class && dev->class->pm)
@@ -573,8 +573,8 @@ static int rpm_resume(struct device *dev, int rpmflags)
573 573
574 __update_runtime_status(dev, RPM_RESUMING); 574 __update_runtime_status(dev, RPM_RESUMING);
575 575
576 if (dev->pwr_domain) 576 if (dev->pm_domain)
577 callback = dev->pwr_domain->ops.runtime_resume; 577 callback = dev->pm_domain->ops.runtime_resume;
578 else if (dev->type && dev->type->pm) 578 else if (dev->type && dev->type->pm)
579 callback = dev->type->pm->runtime_resume; 579 callback = dev->type->pm->runtime_resume;
580 else if (dev->class && dev->class->pm) 580 else if (dev->class && dev->class->pm)