Merge tag 'sound-3.5' of git://git.kernel.org/pub/scm/linux/kernel/git/tiwai/sound
[deliverable/linux.git] / drivers / pci / pci-driver.c
1 /*
2 * drivers/pci/pci-driver.c
3 *
4 * (C) Copyright 2002-2004, 2007 Greg Kroah-Hartman <greg@kroah.com>
5 * (C) Copyright 2007 Novell Inc.
6 *
7 * Released under the GPL v2 only.
8 *
9 */
10
11 #include <linux/pci.h>
12 #include <linux/module.h>
13 #include <linux/init.h>
14 #include <linux/device.h>
15 #include <linux/mempolicy.h>
16 #include <linux/string.h>
17 #include <linux/slab.h>
18 #include <linux/sched.h>
19 #include <linux/cpu.h>
20 #include <linux/pm_runtime.h>
21 #include <linux/suspend.h>
22 #include "pci.h"
23
24 struct pci_dynid {
25 struct list_head node;
26 struct pci_device_id id;
27 };
28
29 /**
30 * pci_add_dynid - add a new PCI device ID to this driver and re-probe devices
31 * @drv: target pci driver
32 * @vendor: PCI vendor ID
33 * @device: PCI device ID
34 * @subvendor: PCI subvendor ID
35 * @subdevice: PCI subdevice ID
36 * @class: PCI class
37 * @class_mask: PCI class mask
38 * @driver_data: private driver data
39 *
40 * Adds a new dynamic pci device ID to this driver and causes the
41 * driver to probe for all devices again. @drv must have been
42 * registered prior to calling this function.
43 *
44 * CONTEXT:
45 * Does GFP_KERNEL allocation.
46 *
47 * RETURNS:
48 * 0 on success, -errno on failure.
49 */
50 int pci_add_dynid(struct pci_driver *drv,
51 unsigned int vendor, unsigned int device,
52 unsigned int subvendor, unsigned int subdevice,
53 unsigned int class, unsigned int class_mask,
54 unsigned long driver_data)
55 {
56 struct pci_dynid *dynid;
57 int retval;
58
59 dynid = kzalloc(sizeof(*dynid), GFP_KERNEL);
60 if (!dynid)
61 return -ENOMEM;
62
63 dynid->id.vendor = vendor;
64 dynid->id.device = device;
65 dynid->id.subvendor = subvendor;
66 dynid->id.subdevice = subdevice;
67 dynid->id.class = class;
68 dynid->id.class_mask = class_mask;
69 dynid->id.driver_data = driver_data;
70
71 spin_lock(&drv->dynids.lock);
72 list_add_tail(&dynid->node, &drv->dynids.list);
73 spin_unlock(&drv->dynids.lock);
74
75 retval = driver_attach(&drv->driver);
76
77 return retval;
78 }
79
80 static void pci_free_dynids(struct pci_driver *drv)
81 {
82 struct pci_dynid *dynid, *n;
83
84 spin_lock(&drv->dynids.lock);
85 list_for_each_entry_safe(dynid, n, &drv->dynids.list, node) {
86 list_del(&dynid->node);
87 kfree(dynid);
88 }
89 spin_unlock(&drv->dynids.lock);
90 }
91
92 /*
93 * Dynamic device ID manipulation via sysfs is disabled for !CONFIG_HOTPLUG
94 */
95 #ifdef CONFIG_HOTPLUG
96 /**
97 * store_new_id - sysfs frontend to pci_add_dynid()
98 * @driver: target device driver
99 * @buf: buffer for scanning device ID data
100 * @count: input size
101 *
102 * Allow PCI IDs to be added to an existing driver via sysfs.
103 */
104 static ssize_t
105 store_new_id(struct device_driver *driver, const char *buf, size_t count)
106 {
107 struct pci_driver *pdrv = to_pci_driver(driver);
108 const struct pci_device_id *ids = pdrv->id_table;
109 __u32 vendor, device, subvendor=PCI_ANY_ID,
110 subdevice=PCI_ANY_ID, class=0, class_mask=0;
111 unsigned long driver_data=0;
112 int fields=0;
113 int retval;
114
115 fields = sscanf(buf, "%x %x %x %x %x %x %lx",
116 &vendor, &device, &subvendor, &subdevice,
117 &class, &class_mask, &driver_data);
118 if (fields < 2)
119 return -EINVAL;
120
121 /* Only accept driver_data values that match an existing id_table
122 entry */
123 if (ids) {
124 retval = -EINVAL;
125 while (ids->vendor || ids->subvendor || ids->class_mask) {
126 if (driver_data == ids->driver_data) {
127 retval = 0;
128 break;
129 }
130 ids++;
131 }
132 if (retval) /* No match */
133 return retval;
134 }
135
136 retval = pci_add_dynid(pdrv, vendor, device, subvendor, subdevice,
137 class, class_mask, driver_data);
138 if (retval)
139 return retval;
140 return count;
141 }
142 static DRIVER_ATTR(new_id, S_IWUSR, NULL, store_new_id);
143
144 /**
145 * store_remove_id - remove a PCI device ID from this driver
146 * @driver: target device driver
147 * @buf: buffer for scanning device ID data
148 * @count: input size
149 *
150 * Removes a dynamic pci device ID to this driver.
151 */
152 static ssize_t
153 store_remove_id(struct device_driver *driver, const char *buf, size_t count)
154 {
155 struct pci_dynid *dynid, *n;
156 struct pci_driver *pdrv = to_pci_driver(driver);
157 __u32 vendor, device, subvendor = PCI_ANY_ID,
158 subdevice = PCI_ANY_ID, class = 0, class_mask = 0;
159 int fields = 0;
160 int retval = -ENODEV;
161
162 fields = sscanf(buf, "%x %x %x %x %x %x",
163 &vendor, &device, &subvendor, &subdevice,
164 &class, &class_mask);
165 if (fields < 2)
166 return -EINVAL;
167
168 spin_lock(&pdrv->dynids.lock);
169 list_for_each_entry_safe(dynid, n, &pdrv->dynids.list, node) {
170 struct pci_device_id *id = &dynid->id;
171 if ((id->vendor == vendor) &&
172 (id->device == device) &&
173 (subvendor == PCI_ANY_ID || id->subvendor == subvendor) &&
174 (subdevice == PCI_ANY_ID || id->subdevice == subdevice) &&
175 !((id->class ^ class) & class_mask)) {
176 list_del(&dynid->node);
177 kfree(dynid);
178 retval = 0;
179 break;
180 }
181 }
182 spin_unlock(&pdrv->dynids.lock);
183
184 if (retval)
185 return retval;
186 return count;
187 }
188 static DRIVER_ATTR(remove_id, S_IWUSR, NULL, store_remove_id);
189
190 static int
191 pci_create_newid_files(struct pci_driver *drv)
192 {
193 int error = 0;
194
195 if (drv->probe != NULL) {
196 error = driver_create_file(&drv->driver, &driver_attr_new_id);
197 if (error == 0) {
198 error = driver_create_file(&drv->driver,
199 &driver_attr_remove_id);
200 if (error)
201 driver_remove_file(&drv->driver,
202 &driver_attr_new_id);
203 }
204 }
205 return error;
206 }
207
208 static void pci_remove_newid_files(struct pci_driver *drv)
209 {
210 driver_remove_file(&drv->driver, &driver_attr_remove_id);
211 driver_remove_file(&drv->driver, &driver_attr_new_id);
212 }
213 #else /* !CONFIG_HOTPLUG */
214 static inline int pci_create_newid_files(struct pci_driver *drv)
215 {
216 return 0;
217 }
218 static inline void pci_remove_newid_files(struct pci_driver *drv) {}
219 #endif
220
221 /**
222 * pci_match_id - See if a pci device matches a given pci_id table
223 * @ids: array of PCI device id structures to search in
224 * @dev: the PCI device structure to match against.
225 *
226 * Used by a driver to check whether a PCI device present in the
227 * system is in its list of supported devices. Returns the matching
228 * pci_device_id structure or %NULL if there is no match.
229 *
230 * Deprecated, don't use this as it will not catch any dynamic ids
231 * that a driver might want to check for.
232 */
233 const struct pci_device_id *pci_match_id(const struct pci_device_id *ids,
234 struct pci_dev *dev)
235 {
236 if (ids) {
237 while (ids->vendor || ids->subvendor || ids->class_mask) {
238 if (pci_match_one_device(ids, dev))
239 return ids;
240 ids++;
241 }
242 }
243 return NULL;
244 }
245
246 /**
247 * pci_match_device - Tell if a PCI device structure has a matching PCI device id structure
248 * @drv: the PCI driver to match against
249 * @dev: the PCI device structure to match against
250 *
251 * Used by a driver to check whether a PCI device present in the
252 * system is in its list of supported devices. Returns the matching
253 * pci_device_id structure or %NULL if there is no match.
254 */
255 static const struct pci_device_id *pci_match_device(struct pci_driver *drv,
256 struct pci_dev *dev)
257 {
258 struct pci_dynid *dynid;
259
260 /* Look at the dynamic ids first, before the static ones */
261 spin_lock(&drv->dynids.lock);
262 list_for_each_entry(dynid, &drv->dynids.list, node) {
263 if (pci_match_one_device(&dynid->id, dev)) {
264 spin_unlock(&drv->dynids.lock);
265 return &dynid->id;
266 }
267 }
268 spin_unlock(&drv->dynids.lock);
269
270 return pci_match_id(drv->id_table, dev);
271 }
272
273 struct drv_dev_and_id {
274 struct pci_driver *drv;
275 struct pci_dev *dev;
276 const struct pci_device_id *id;
277 };
278
279 static long local_pci_probe(void *_ddi)
280 {
281 struct drv_dev_and_id *ddi = _ddi;
282 struct device *dev = &ddi->dev->dev;
283 int rc;
284
285 /* Unbound PCI devices are always set to disabled and suspended.
286 * During probe, the device is set to enabled and active and the
287 * usage count is incremented. If the driver supports runtime PM,
288 * it should call pm_runtime_put_noidle() in its probe routine and
289 * pm_runtime_get_noresume() in its remove routine.
290 */
291 pm_runtime_get_noresume(dev);
292 pm_runtime_set_active(dev);
293 pm_runtime_enable(dev);
294
295 rc = ddi->drv->probe(ddi->dev, ddi->id);
296 if (rc) {
297 pm_runtime_disable(dev);
298 pm_runtime_set_suspended(dev);
299 pm_runtime_put_noidle(dev);
300 }
301 return rc;
302 }
303
304 static int pci_call_probe(struct pci_driver *drv, struct pci_dev *dev,
305 const struct pci_device_id *id)
306 {
307 int error, node;
308 struct drv_dev_and_id ddi = { drv, dev, id };
309
310 /* Execute driver initialization on node where the device's
311 bus is attached to. This way the driver likely allocates
312 its local memory on the right node without any need to
313 change it. */
314 node = dev_to_node(&dev->dev);
315 if (node >= 0) {
316 int cpu;
317
318 get_online_cpus();
319 cpu = cpumask_any_and(cpumask_of_node(node), cpu_online_mask);
320 if (cpu < nr_cpu_ids)
321 error = work_on_cpu(cpu, local_pci_probe, &ddi);
322 else
323 error = local_pci_probe(&ddi);
324 put_online_cpus();
325 } else
326 error = local_pci_probe(&ddi);
327 return error;
328 }
329
330 /**
331 * __pci_device_probe - check if a driver wants to claim a specific PCI device
332 * @drv: driver to call to check if it wants the PCI device
333 * @pci_dev: PCI device being probed
334 *
335 * returns 0 on success, else error.
336 * side-effect: pci_dev->driver is set to drv when drv claims pci_dev.
337 */
338 static int
339 __pci_device_probe(struct pci_driver *drv, struct pci_dev *pci_dev)
340 {
341 const struct pci_device_id *id;
342 int error = 0;
343
344 if (!pci_dev->driver && drv->probe) {
345 error = -ENODEV;
346
347 id = pci_match_device(drv, pci_dev);
348 if (id)
349 error = pci_call_probe(drv, pci_dev, id);
350 if (error >= 0) {
351 pci_dev->driver = drv;
352 error = 0;
353 }
354 }
355 return error;
356 }
357
358 static int pci_device_probe(struct device * dev)
359 {
360 int error = 0;
361 struct pci_driver *drv;
362 struct pci_dev *pci_dev;
363
364 drv = to_pci_driver(dev->driver);
365 pci_dev = to_pci_dev(dev);
366 pci_dev_get(pci_dev);
367 error = __pci_device_probe(drv, pci_dev);
368 if (error)
369 pci_dev_put(pci_dev);
370
371 return error;
372 }
373
374 static int pci_device_remove(struct device * dev)
375 {
376 struct pci_dev * pci_dev = to_pci_dev(dev);
377 struct pci_driver * drv = pci_dev->driver;
378
379 if (drv) {
380 if (drv->remove) {
381 pm_runtime_get_sync(dev);
382 drv->remove(pci_dev);
383 pm_runtime_put_noidle(dev);
384 }
385 pci_dev->driver = NULL;
386 }
387
388 /* Undo the runtime PM settings in local_pci_probe() */
389 pm_runtime_disable(dev);
390 pm_runtime_set_suspended(dev);
391 pm_runtime_put_noidle(dev);
392
393 /*
394 * If the device is still on, set the power state as "unknown",
395 * since it might change by the next time we load the driver.
396 */
397 if (pci_dev->current_state == PCI_D0)
398 pci_dev->current_state = PCI_UNKNOWN;
399
400 /*
401 * We would love to complain here if pci_dev->is_enabled is set, that
402 * the driver should have called pci_disable_device(), but the
403 * unfortunate fact is there are too many odd BIOS and bridge setups
404 * that don't like drivers doing that all of the time.
405 * Oh well, we can dream of sane hardware when we sleep, no matter how
406 * horrible the crap we have to deal with is when we are awake...
407 */
408
409 pci_dev_put(pci_dev);
410 return 0;
411 }
412
413 static void pci_device_shutdown(struct device *dev)
414 {
415 struct pci_dev *pci_dev = to_pci_dev(dev);
416 struct pci_driver *drv = pci_dev->driver;
417
418 if (drv && drv->shutdown)
419 drv->shutdown(pci_dev);
420 pci_msi_shutdown(pci_dev);
421 pci_msix_shutdown(pci_dev);
422
423 /*
424 * Turn off Bus Master bit on the device to tell it to not
425 * continue to do DMA
426 */
427 pci_disable_device(pci_dev);
428
429 /*
430 * Devices may be enabled to wake up by runtime PM, but they need not
431 * be supposed to wake up the system from its "power off" state (e.g.
432 * ACPI S5). Therefore disable wakeup for all devices that aren't
433 * supposed to wake up the system at this point. The state argument
434 * will be ignored by pci_enable_wake().
435 */
436 if (!device_may_wakeup(dev))
437 pci_enable_wake(pci_dev, PCI_UNKNOWN, false);
438 }
439
440 #ifdef CONFIG_PM
441
442 /* Auxiliary functions used for system resume and run-time resume. */
443
444 /**
445 * pci_restore_standard_config - restore standard config registers of PCI device
446 * @pci_dev: PCI device to handle
447 */
448 static int pci_restore_standard_config(struct pci_dev *pci_dev)
449 {
450 pci_update_current_state(pci_dev, PCI_UNKNOWN);
451
452 if (pci_dev->current_state != PCI_D0) {
453 int error = pci_set_power_state(pci_dev, PCI_D0);
454 if (error)
455 return error;
456 }
457
458 pci_restore_state(pci_dev);
459 return 0;
460 }
461
462 static void pci_pm_default_resume_early(struct pci_dev *pci_dev)
463 {
464 pci_restore_standard_config(pci_dev);
465 pci_fixup_device(pci_fixup_resume_early, pci_dev);
466 }
467
468 #endif
469
470 #ifdef CONFIG_PM_SLEEP
471
472 /*
473 * Default "suspend" method for devices that have no driver provided suspend,
474 * or not even a driver at all (second part).
475 */
476 static void pci_pm_set_unknown_state(struct pci_dev *pci_dev)
477 {
478 /*
479 * mark its power state as "unknown", since we don't know if
480 * e.g. the BIOS will change its device state when we suspend.
481 */
482 if (pci_dev->current_state == PCI_D0)
483 pci_dev->current_state = PCI_UNKNOWN;
484 }
485
486 /*
487 * Default "resume" method for devices that have no driver provided resume,
488 * or not even a driver at all (second part).
489 */
490 static int pci_pm_reenable_device(struct pci_dev *pci_dev)
491 {
492 int retval;
493
494 /* if the device was enabled before suspend, reenable */
495 retval = pci_reenable_device(pci_dev);
496 /*
497 * if the device was busmaster before the suspend, make it busmaster
498 * again
499 */
500 if (pci_dev->is_busmaster)
501 pci_set_master(pci_dev);
502
503 return retval;
504 }
505
506 static int pci_legacy_suspend(struct device *dev, pm_message_t state)
507 {
508 struct pci_dev * pci_dev = to_pci_dev(dev);
509 struct pci_driver * drv = pci_dev->driver;
510
511 if (drv && drv->suspend) {
512 pci_power_t prev = pci_dev->current_state;
513 int error;
514
515 error = drv->suspend(pci_dev, state);
516 suspend_report_result(drv->suspend, error);
517 if (error)
518 return error;
519
520 if (!pci_dev->state_saved && pci_dev->current_state != PCI_D0
521 && pci_dev->current_state != PCI_UNKNOWN) {
522 WARN_ONCE(pci_dev->current_state != prev,
523 "PCI PM: Device state not saved by %pF\n",
524 drv->suspend);
525 }
526 }
527
528 pci_fixup_device(pci_fixup_suspend, pci_dev);
529
530 return 0;
531 }
532
533 static int pci_legacy_suspend_late(struct device *dev, pm_message_t state)
534 {
535 struct pci_dev * pci_dev = to_pci_dev(dev);
536 struct pci_driver * drv = pci_dev->driver;
537
538 if (drv && drv->suspend_late) {
539 pci_power_t prev = pci_dev->current_state;
540 int error;
541
542 error = drv->suspend_late(pci_dev, state);
543 suspend_report_result(drv->suspend_late, error);
544 if (error)
545 return error;
546
547 if (!pci_dev->state_saved && pci_dev->current_state != PCI_D0
548 && pci_dev->current_state != PCI_UNKNOWN) {
549 WARN_ONCE(pci_dev->current_state != prev,
550 "PCI PM: Device state not saved by %pF\n",
551 drv->suspend_late);
552 return 0;
553 }
554 }
555
556 if (!pci_dev->state_saved)
557 pci_save_state(pci_dev);
558
559 pci_pm_set_unknown_state(pci_dev);
560
561 return 0;
562 }
563
564 static int pci_legacy_resume_early(struct device *dev)
565 {
566 struct pci_dev * pci_dev = to_pci_dev(dev);
567 struct pci_driver * drv = pci_dev->driver;
568
569 return drv && drv->resume_early ?
570 drv->resume_early(pci_dev) : 0;
571 }
572
573 static int pci_legacy_resume(struct device *dev)
574 {
575 struct pci_dev * pci_dev = to_pci_dev(dev);
576 struct pci_driver * drv = pci_dev->driver;
577
578 pci_fixup_device(pci_fixup_resume, pci_dev);
579
580 return drv && drv->resume ?
581 drv->resume(pci_dev) : pci_pm_reenable_device(pci_dev);
582 }
583
584 /* Auxiliary functions used by the new power management framework */
585
586 static void pci_pm_default_resume(struct pci_dev *pci_dev)
587 {
588 pci_fixup_device(pci_fixup_resume, pci_dev);
589
590 if (!pci_is_bridge(pci_dev))
591 pci_enable_wake(pci_dev, PCI_D0, false);
592 }
593
594 static void pci_pm_default_suspend(struct pci_dev *pci_dev)
595 {
596 /* Disable non-bridge devices without PM support */
597 if (!pci_is_bridge(pci_dev))
598 pci_disable_enabled_device(pci_dev);
599 }
600
601 static bool pci_has_legacy_pm_support(struct pci_dev *pci_dev)
602 {
603 struct pci_driver *drv = pci_dev->driver;
604 bool ret = drv && (drv->suspend || drv->suspend_late || drv->resume
605 || drv->resume_early);
606
607 /*
608 * Legacy PM support is used by default, so warn if the new framework is
609 * supported as well. Drivers are supposed to support either the
610 * former, or the latter, but not both at the same time.
611 */
612 WARN(ret && drv->driver.pm, "driver %s device %04x:%04x\n",
613 drv->name, pci_dev->vendor, pci_dev->device);
614
615 return ret;
616 }
617
618 /* New power management framework */
619
620 static int pci_pm_prepare(struct device *dev)
621 {
622 struct device_driver *drv = dev->driver;
623 int error = 0;
624
625 /*
626 * If a PCI device configured to wake up the system from sleep states
627 * has been suspended at run time and there's a resume request pending
628 * for it, this is equivalent to the device signaling wakeup, so the
629 * system suspend operation should be aborted.
630 */
631 pm_runtime_get_noresume(dev);
632 if (pm_runtime_barrier(dev) && device_may_wakeup(dev))
633 pm_wakeup_event(dev, 0);
634
635 if (pm_wakeup_pending()) {
636 pm_runtime_put_sync(dev);
637 return -EBUSY;
638 }
639
640 /*
641 * PCI devices suspended at run time need to be resumed at this
642 * point, because in general it is necessary to reconfigure them for
643 * system suspend. Namely, if the device is supposed to wake up the
644 * system from the sleep state, we may need to reconfigure it for this
645 * purpose. In turn, if the device is not supposed to wake up the
646 * system from the sleep state, we'll have to prevent it from signaling
647 * wake-up.
648 */
649 pm_runtime_resume(dev);
650
651 if (drv && drv->pm && drv->pm->prepare)
652 error = drv->pm->prepare(dev);
653
654 return error;
655 }
656
657 static void pci_pm_complete(struct device *dev)
658 {
659 struct device_driver *drv = dev->driver;
660
661 if (drv && drv->pm && drv->pm->complete)
662 drv->pm->complete(dev);
663
664 pm_runtime_put_sync(dev);
665 }
666
667 #else /* !CONFIG_PM_SLEEP */
668
669 #define pci_pm_prepare NULL
670 #define pci_pm_complete NULL
671
672 #endif /* !CONFIG_PM_SLEEP */
673
674 #ifdef CONFIG_SUSPEND
675
676 static int pci_pm_suspend(struct device *dev)
677 {
678 struct pci_dev *pci_dev = to_pci_dev(dev);
679 const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
680
681 if (pci_has_legacy_pm_support(pci_dev))
682 return pci_legacy_suspend(dev, PMSG_SUSPEND);
683
684 if (!pm) {
685 pci_pm_default_suspend(pci_dev);
686 goto Fixup;
687 }
688
689 if (pm->suspend) {
690 pci_power_t prev = pci_dev->current_state;
691 int error;
692
693 error = pm->suspend(dev);
694 suspend_report_result(pm->suspend, error);
695 if (error)
696 return error;
697
698 if (!pci_dev->state_saved && pci_dev->current_state != PCI_D0
699 && pci_dev->current_state != PCI_UNKNOWN) {
700 WARN_ONCE(pci_dev->current_state != prev,
701 "PCI PM: State of device not saved by %pF\n",
702 pm->suspend);
703 }
704 }
705
706 Fixup:
707 pci_fixup_device(pci_fixup_suspend, pci_dev);
708
709 return 0;
710 }
711
712 static int pci_pm_suspend_noirq(struct device *dev)
713 {
714 struct pci_dev *pci_dev = to_pci_dev(dev);
715 const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
716
717 if (pci_has_legacy_pm_support(pci_dev))
718 return pci_legacy_suspend_late(dev, PMSG_SUSPEND);
719
720 if (!pm) {
721 pci_save_state(pci_dev);
722 return 0;
723 }
724
725 if (pm->suspend_noirq) {
726 pci_power_t prev = pci_dev->current_state;
727 int error;
728
729 error = pm->suspend_noirq(dev);
730 suspend_report_result(pm->suspend_noirq, error);
731 if (error)
732 return error;
733
734 if (!pci_dev->state_saved && pci_dev->current_state != PCI_D0
735 && pci_dev->current_state != PCI_UNKNOWN) {
736 WARN_ONCE(pci_dev->current_state != prev,
737 "PCI PM: State of device not saved by %pF\n",
738 pm->suspend_noirq);
739 return 0;
740 }
741 }
742
743 if (!pci_dev->state_saved) {
744 pci_save_state(pci_dev);
745 if (!pci_is_bridge(pci_dev))
746 pci_prepare_to_sleep(pci_dev);
747 }
748
749 pci_pm_set_unknown_state(pci_dev);
750
751 /*
752 * Some BIOSes from ASUS have a bug: If a USB EHCI host controller's
753 * PCI COMMAND register isn't 0, the BIOS assumes that the controller
754 * hasn't been quiesced and tries to turn it off. If the controller
755 * is already in D3, this can hang or cause memory corruption.
756 *
757 * Since the value of the COMMAND register doesn't matter once the
758 * device has been suspended, we can safely set it to 0 here.
759 */
760 if (pci_dev->class == PCI_CLASS_SERIAL_USB_EHCI)
761 pci_write_config_word(pci_dev, PCI_COMMAND, 0);
762
763 return 0;
764 }
765
766 static int pci_pm_resume_noirq(struct device *dev)
767 {
768 struct pci_dev *pci_dev = to_pci_dev(dev);
769 struct device_driver *drv = dev->driver;
770 int error = 0;
771
772 pci_pm_default_resume_early(pci_dev);
773
774 if (pci_has_legacy_pm_support(pci_dev))
775 return pci_legacy_resume_early(dev);
776
777 if (drv && drv->pm && drv->pm->resume_noirq)
778 error = drv->pm->resume_noirq(dev);
779
780 return error;
781 }
782
783 static int pci_pm_resume(struct device *dev)
784 {
785 struct pci_dev *pci_dev = to_pci_dev(dev);
786 const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
787 int error = 0;
788
789 /*
790 * This is necessary for the suspend error path in which resume is
791 * called without restoring the standard config registers of the device.
792 */
793 if (pci_dev->state_saved)
794 pci_restore_standard_config(pci_dev);
795
796 if (pci_has_legacy_pm_support(pci_dev))
797 return pci_legacy_resume(dev);
798
799 pci_pm_default_resume(pci_dev);
800
801 if (pm) {
802 if (pm->resume)
803 error = pm->resume(dev);
804 } else {
805 pci_pm_reenable_device(pci_dev);
806 }
807
808 return error;
809 }
810
811 #else /* !CONFIG_SUSPEND */
812
813 #define pci_pm_suspend NULL
814 #define pci_pm_suspend_noirq NULL
815 #define pci_pm_resume NULL
816 #define pci_pm_resume_noirq NULL
817
818 #endif /* !CONFIG_SUSPEND */
819
820 #ifdef CONFIG_HIBERNATE_CALLBACKS
821
822 static int pci_pm_freeze(struct device *dev)
823 {
824 struct pci_dev *pci_dev = to_pci_dev(dev);
825 const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
826
827 if (pci_has_legacy_pm_support(pci_dev))
828 return pci_legacy_suspend(dev, PMSG_FREEZE);
829
830 if (!pm) {
831 pci_pm_default_suspend(pci_dev);
832 return 0;
833 }
834
835 if (pm->freeze) {
836 int error;
837
838 error = pm->freeze(dev);
839 suspend_report_result(pm->freeze, error);
840 if (error)
841 return error;
842 }
843
844 return 0;
845 }
846
847 static int pci_pm_freeze_noirq(struct device *dev)
848 {
849 struct pci_dev *pci_dev = to_pci_dev(dev);
850 struct device_driver *drv = dev->driver;
851
852 if (pci_has_legacy_pm_support(pci_dev))
853 return pci_legacy_suspend_late(dev, PMSG_FREEZE);
854
855 if (drv && drv->pm && drv->pm->freeze_noirq) {
856 int error;
857
858 error = drv->pm->freeze_noirq(dev);
859 suspend_report_result(drv->pm->freeze_noirq, error);
860 if (error)
861 return error;
862 }
863
864 if (!pci_dev->state_saved)
865 pci_save_state(pci_dev);
866
867 pci_pm_set_unknown_state(pci_dev);
868
869 return 0;
870 }
871
872 static int pci_pm_thaw_noirq(struct device *dev)
873 {
874 struct pci_dev *pci_dev = to_pci_dev(dev);
875 struct device_driver *drv = dev->driver;
876 int error = 0;
877
878 if (pci_has_legacy_pm_support(pci_dev))
879 return pci_legacy_resume_early(dev);
880
881 pci_update_current_state(pci_dev, PCI_D0);
882
883 if (drv && drv->pm && drv->pm->thaw_noirq)
884 error = drv->pm->thaw_noirq(dev);
885
886 return error;
887 }
888
889 static int pci_pm_thaw(struct device *dev)
890 {
891 struct pci_dev *pci_dev = to_pci_dev(dev);
892 const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
893 int error = 0;
894
895 if (pci_has_legacy_pm_support(pci_dev))
896 return pci_legacy_resume(dev);
897
898 if (pm) {
899 if (pm->thaw)
900 error = pm->thaw(dev);
901 } else {
902 pci_pm_reenable_device(pci_dev);
903 }
904
905 pci_dev->state_saved = false;
906
907 return error;
908 }
909
910 static int pci_pm_poweroff(struct device *dev)
911 {
912 struct pci_dev *pci_dev = to_pci_dev(dev);
913 const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
914
915 if (pci_has_legacy_pm_support(pci_dev))
916 return pci_legacy_suspend(dev, PMSG_HIBERNATE);
917
918 if (!pm) {
919 pci_pm_default_suspend(pci_dev);
920 goto Fixup;
921 }
922
923 if (pm->poweroff) {
924 int error;
925
926 error = pm->poweroff(dev);
927 suspend_report_result(pm->poweroff, error);
928 if (error)
929 return error;
930 }
931
932 Fixup:
933 pci_fixup_device(pci_fixup_suspend, pci_dev);
934
935 return 0;
936 }
937
938 static int pci_pm_poweroff_noirq(struct device *dev)
939 {
940 struct pci_dev *pci_dev = to_pci_dev(dev);
941 struct device_driver *drv = dev->driver;
942
943 if (pci_has_legacy_pm_support(to_pci_dev(dev)))
944 return pci_legacy_suspend_late(dev, PMSG_HIBERNATE);
945
946 if (!drv || !drv->pm)
947 return 0;
948
949 if (drv->pm->poweroff_noirq) {
950 int error;
951
952 error = drv->pm->poweroff_noirq(dev);
953 suspend_report_result(drv->pm->poweroff_noirq, error);
954 if (error)
955 return error;
956 }
957
958 if (!pci_dev->state_saved && !pci_is_bridge(pci_dev))
959 pci_prepare_to_sleep(pci_dev);
960
961 return 0;
962 }
963
964 static int pci_pm_restore_noirq(struct device *dev)
965 {
966 struct pci_dev *pci_dev = to_pci_dev(dev);
967 struct device_driver *drv = dev->driver;
968 int error = 0;
969
970 pci_pm_default_resume_early(pci_dev);
971
972 if (pci_has_legacy_pm_support(pci_dev))
973 return pci_legacy_resume_early(dev);
974
975 if (drv && drv->pm && drv->pm->restore_noirq)
976 error = drv->pm->restore_noirq(dev);
977
978 return error;
979 }
980
981 static int pci_pm_restore(struct device *dev)
982 {
983 struct pci_dev *pci_dev = to_pci_dev(dev);
984 const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
985 int error = 0;
986
987 /*
988 * This is necessary for the hibernation error path in which restore is
989 * called without restoring the standard config registers of the device.
990 */
991 if (pci_dev->state_saved)
992 pci_restore_standard_config(pci_dev);
993
994 if (pci_has_legacy_pm_support(pci_dev))
995 return pci_legacy_resume(dev);
996
997 pci_pm_default_resume(pci_dev);
998
999 if (pm) {
1000 if (pm->restore)
1001 error = pm->restore(dev);
1002 } else {
1003 pci_pm_reenable_device(pci_dev);
1004 }
1005
1006 return error;
1007 }
1008
1009 #else /* !CONFIG_HIBERNATE_CALLBACKS */
1010
1011 #define pci_pm_freeze NULL
1012 #define pci_pm_freeze_noirq NULL
1013 #define pci_pm_thaw NULL
1014 #define pci_pm_thaw_noirq NULL
1015 #define pci_pm_poweroff NULL
1016 #define pci_pm_poweroff_noirq NULL
1017 #define pci_pm_restore NULL
1018 #define pci_pm_restore_noirq NULL
1019
1020 #endif /* !CONFIG_HIBERNATE_CALLBACKS */
1021
1022 #ifdef CONFIG_PM_RUNTIME
1023
1024 static int pci_pm_runtime_suspend(struct device *dev)
1025 {
1026 struct pci_dev *pci_dev = to_pci_dev(dev);
1027 const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
1028 pci_power_t prev = pci_dev->current_state;
1029 int error;
1030
1031 if (!pm || !pm->runtime_suspend)
1032 return -ENOSYS;
1033
1034 error = pm->runtime_suspend(dev);
1035 suspend_report_result(pm->runtime_suspend, error);
1036 if (error)
1037 return error;
1038
1039 pci_fixup_device(pci_fixup_suspend, pci_dev);
1040
1041 if (!pci_dev->state_saved && pci_dev->current_state != PCI_D0
1042 && pci_dev->current_state != PCI_UNKNOWN) {
1043 WARN_ONCE(pci_dev->current_state != prev,
1044 "PCI PM: State of device not saved by %pF\n",
1045 pm->runtime_suspend);
1046 return 0;
1047 }
1048
1049 if (!pci_dev->state_saved)
1050 pci_save_state(pci_dev);
1051
1052 pci_finish_runtime_suspend(pci_dev);
1053
1054 return 0;
1055 }
1056
1057 static int pci_pm_runtime_resume(struct device *dev)
1058 {
1059 struct pci_dev *pci_dev = to_pci_dev(dev);
1060 const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
1061
1062 if (!pm || !pm->runtime_resume)
1063 return -ENOSYS;
1064
1065 pci_pm_default_resume_early(pci_dev);
1066 __pci_enable_wake(pci_dev, PCI_D0, true, false);
1067 pci_fixup_device(pci_fixup_resume, pci_dev);
1068
1069 return pm->runtime_resume(dev);
1070 }
1071
1072 static int pci_pm_runtime_idle(struct device *dev)
1073 {
1074 const struct dev_pm_ops *pm = dev->driver ? dev->driver->pm : NULL;
1075
1076 if (!pm)
1077 return -ENOSYS;
1078
1079 if (pm->runtime_idle) {
1080 int ret = pm->runtime_idle(dev);
1081 if (ret)
1082 return ret;
1083 }
1084
1085 pm_runtime_suspend(dev);
1086
1087 return 0;
1088 }
1089
1090 #else /* !CONFIG_PM_RUNTIME */
1091
1092 #define pci_pm_runtime_suspend NULL
1093 #define pci_pm_runtime_resume NULL
1094 #define pci_pm_runtime_idle NULL
1095
1096 #endif /* !CONFIG_PM_RUNTIME */
1097
1098 #ifdef CONFIG_PM
1099
1100 const struct dev_pm_ops pci_dev_pm_ops = {
1101 .prepare = pci_pm_prepare,
1102 .complete = pci_pm_complete,
1103 .suspend = pci_pm_suspend,
1104 .resume = pci_pm_resume,
1105 .freeze = pci_pm_freeze,
1106 .thaw = pci_pm_thaw,
1107 .poweroff = pci_pm_poweroff,
1108 .restore = pci_pm_restore,
1109 .suspend_noirq = pci_pm_suspend_noirq,
1110 .resume_noirq = pci_pm_resume_noirq,
1111 .freeze_noirq = pci_pm_freeze_noirq,
1112 .thaw_noirq = pci_pm_thaw_noirq,
1113 .poweroff_noirq = pci_pm_poweroff_noirq,
1114 .restore_noirq = pci_pm_restore_noirq,
1115 .runtime_suspend = pci_pm_runtime_suspend,
1116 .runtime_resume = pci_pm_runtime_resume,
1117 .runtime_idle = pci_pm_runtime_idle,
1118 };
1119
1120 #define PCI_PM_OPS_PTR (&pci_dev_pm_ops)
1121
1122 #else /* !COMFIG_PM_OPS */
1123
1124 #define PCI_PM_OPS_PTR NULL
1125
1126 #endif /* !COMFIG_PM_OPS */
1127
1128 /**
1129 * __pci_register_driver - register a new pci driver
1130 * @drv: the driver structure to register
1131 * @owner: owner module of drv
1132 * @mod_name: module name string
1133 *
1134 * Adds the driver structure to the list of registered drivers.
1135 * Returns a negative value on error, otherwise 0.
1136 * If no error occurred, the driver remains registered even if
1137 * no device was claimed during registration.
1138 */
1139 int __pci_register_driver(struct pci_driver *drv, struct module *owner,
1140 const char *mod_name)
1141 {
1142 int error;
1143
1144 /* initialize common driver fields */
1145 drv->driver.name = drv->name;
1146 drv->driver.bus = &pci_bus_type;
1147 drv->driver.owner = owner;
1148 drv->driver.mod_name = mod_name;
1149
1150 spin_lock_init(&drv->dynids.lock);
1151 INIT_LIST_HEAD(&drv->dynids.list);
1152
1153 /* register with core */
1154 error = driver_register(&drv->driver);
1155 if (error)
1156 goto out;
1157
1158 error = pci_create_newid_files(drv);
1159 if (error)
1160 goto out_newid;
1161 out:
1162 return error;
1163
1164 out_newid:
1165 driver_unregister(&drv->driver);
1166 goto out;
1167 }
1168
1169 /**
1170 * pci_unregister_driver - unregister a pci driver
1171 * @drv: the driver structure to unregister
1172 *
1173 * Deletes the driver structure from the list of registered PCI drivers,
1174 * gives it a chance to clean up by calling its remove() function for
1175 * each device it was responsible for, and marks those devices as
1176 * driverless.
1177 */
1178
1179 void
1180 pci_unregister_driver(struct pci_driver *drv)
1181 {
1182 pci_remove_newid_files(drv);
1183 driver_unregister(&drv->driver);
1184 pci_free_dynids(drv);
1185 }
1186
1187 static struct pci_driver pci_compat_driver = {
1188 .name = "compat"
1189 };
1190
1191 /**
1192 * pci_dev_driver - get the pci_driver of a device
1193 * @dev: the device to query
1194 *
1195 * Returns the appropriate pci_driver structure or %NULL if there is no
1196 * registered driver for the device.
1197 */
1198 struct pci_driver *
1199 pci_dev_driver(const struct pci_dev *dev)
1200 {
1201 if (dev->driver)
1202 return dev->driver;
1203 else {
1204 int i;
1205 for(i=0; i<=PCI_ROM_RESOURCE; i++)
1206 if (dev->resource[i].flags & IORESOURCE_BUSY)
1207 return &pci_compat_driver;
1208 }
1209 return NULL;
1210 }
1211
1212 /**
1213 * pci_bus_match - Tell if a PCI device structure has a matching PCI device id structure
1214 * @dev: the PCI device structure to match against
1215 * @drv: the device driver to search for matching PCI device id structures
1216 *
1217 * Used by a driver to check whether a PCI device present in the
1218 * system is in its list of supported devices. Returns the matching
1219 * pci_device_id structure or %NULL if there is no match.
1220 */
1221 static int pci_bus_match(struct device *dev, struct device_driver *drv)
1222 {
1223 struct pci_dev *pci_dev = to_pci_dev(dev);
1224 struct pci_driver *pci_drv = to_pci_driver(drv);
1225 const struct pci_device_id *found_id;
1226
1227 found_id = pci_match_device(pci_drv, pci_dev);
1228 if (found_id)
1229 return 1;
1230
1231 return 0;
1232 }
1233
1234 /**
1235 * pci_dev_get - increments the reference count of the pci device structure
1236 * @dev: the device being referenced
1237 *
1238 * Each live reference to a device should be refcounted.
1239 *
1240 * Drivers for PCI devices should normally record such references in
1241 * their probe() methods, when they bind to a device, and release
1242 * them by calling pci_dev_put(), in their disconnect() methods.
1243 *
1244 * A pointer to the device with the incremented reference counter is returned.
1245 */
1246 struct pci_dev *pci_dev_get(struct pci_dev *dev)
1247 {
1248 if (dev)
1249 get_device(&dev->dev);
1250 return dev;
1251 }
1252
1253 /**
1254 * pci_dev_put - release a use of the pci device structure
1255 * @dev: device that's been disconnected
1256 *
1257 * Must be called when a user of a device is finished with it. When the last
1258 * user of the device calls this function, the memory of the device is freed.
1259 */
1260 void pci_dev_put(struct pci_dev *dev)
1261 {
1262 if (dev)
1263 put_device(&dev->dev);
1264 }
1265
1266 #ifndef CONFIG_HOTPLUG
1267 int pci_uevent(struct device *dev, struct kobj_uevent_env *env)
1268 {
1269 return -ENODEV;
1270 }
1271 #endif
1272
1273 struct bus_type pci_bus_type = {
1274 .name = "pci",
1275 .match = pci_bus_match,
1276 .uevent = pci_uevent,
1277 .probe = pci_device_probe,
1278 .remove = pci_device_remove,
1279 .shutdown = pci_device_shutdown,
1280 .dev_attrs = pci_dev_attrs,
1281 .bus_attrs = pci_bus_attrs,
1282 .pm = PCI_PM_OPS_PTR,
1283 };
1284
1285 static int __init pci_driver_init(void)
1286 {
1287 return bus_register(&pci_bus_type);
1288 }
1289
1290 postcore_initcall(pci_driver_init);
1291
1292 EXPORT_SYMBOL_GPL(pci_add_dynid);
1293 EXPORT_SYMBOL(pci_match_id);
1294 EXPORT_SYMBOL(__pci_register_driver);
1295 EXPORT_SYMBOL(pci_unregister_driver);
1296 EXPORT_SYMBOL(pci_dev_driver);
1297 EXPORT_SYMBOL(pci_bus_type);
1298 EXPORT_SYMBOL(pci_dev_get);
1299 EXPORT_SYMBOL(pci_dev_put);
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