Merge remote-tracking branch 'lsk/v3.10/topic/arm64-cpuidle' into linux-linaro-lsk
[firefly-linux-kernel-4.4.55.git] / drivers / acpi / scan.c
1 /*
2  * scan.c - support for transforming the ACPI namespace into individual objects
3  */
4
5 #include <linux/module.h>
6 #include <linux/init.h>
7 #include <linux/slab.h>
8 #include <linux/kernel.h>
9 #include <linux/acpi.h>
10 #include <linux/signal.h>
11 #include <linux/kthread.h>
12 #include <linux/dmi.h>
13 #include <linux/nls.h>
14
15 #include <acpi/acpi_drivers.h>
16
17 #include "internal.h"
18
19 #define _COMPONENT              ACPI_BUS_COMPONENT
20 ACPI_MODULE_NAME("scan");
21 #define STRUCT_TO_INT(s)        (*((int*)&s))
22 extern struct acpi_device *acpi_root;
23
24 #define ACPI_BUS_CLASS                  "system_bus"
25 #define ACPI_BUS_HID                    "LNXSYBUS"
26 #define ACPI_BUS_DEVICE_NAME            "System Bus"
27
28 #define ACPI_IS_ROOT_DEVICE(device)    (!(device)->parent)
29
30 static const char *dummy_hid = "device";
31
32 static LIST_HEAD(acpi_device_list);
33 static LIST_HEAD(acpi_bus_id_list);
34 static DEFINE_MUTEX(acpi_scan_lock);
35 static LIST_HEAD(acpi_scan_handlers_list);
36 DEFINE_MUTEX(acpi_device_lock);
37 LIST_HEAD(acpi_wakeup_device_list);
38
39 struct acpi_device_bus_id{
40         char bus_id[15];
41         unsigned int instance_no;
42         struct list_head node;
43 };
44
45 void acpi_scan_lock_acquire(void)
46 {
47         mutex_lock(&acpi_scan_lock);
48 }
49 EXPORT_SYMBOL_GPL(acpi_scan_lock_acquire);
50
51 void acpi_scan_lock_release(void)
52 {
53         mutex_unlock(&acpi_scan_lock);
54 }
55 EXPORT_SYMBOL_GPL(acpi_scan_lock_release);
56
57 int acpi_scan_add_handler(struct acpi_scan_handler *handler)
58 {
59         if (!handler || !handler->attach)
60                 return -EINVAL;
61
62         list_add_tail(&handler->list_node, &acpi_scan_handlers_list);
63         return 0;
64 }
65
66 int acpi_scan_add_handler_with_hotplug(struct acpi_scan_handler *handler,
67                                        const char *hotplug_profile_name)
68 {
69         int error;
70
71         error = acpi_scan_add_handler(handler);
72         if (error)
73                 return error;
74
75         acpi_sysfs_add_hotplug_profile(&handler->hotplug, hotplug_profile_name);
76         return 0;
77 }
78
79 /*
80  * Creates hid/cid(s) string needed for modalias and uevent
81  * e.g. on a device with hid:IBM0001 and cid:ACPI0001 you get:
82  * char *modalias: "acpi:IBM0001:ACPI0001"
83 */
84 static int create_modalias(struct acpi_device *acpi_dev, char *modalias,
85                            int size)
86 {
87         int len;
88         int count;
89         struct acpi_hardware_id *id;
90
91         if (list_empty(&acpi_dev->pnp.ids))
92                 return 0;
93
94         len = snprintf(modalias, size, "acpi:");
95         size -= len;
96
97         list_for_each_entry(id, &acpi_dev->pnp.ids, list) {
98                 count = snprintf(&modalias[len], size, "%s:", id->id);
99                 if (count < 0 || count >= size)
100                         return -EINVAL;
101                 len += count;
102                 size -= count;
103         }
104
105         modalias[len] = '\0';
106         return len;
107 }
108
109 static ssize_t
110 acpi_device_modalias_show(struct device *dev, struct device_attribute *attr, char *buf) {
111         struct acpi_device *acpi_dev = to_acpi_device(dev);
112         int len;
113
114         /* Device has no HID and no CID or string is >1024 */
115         len = create_modalias(acpi_dev, buf, 1024);
116         if (len <= 0)
117                 return 0;
118         buf[len++] = '\n';
119         return len;
120 }
121 static DEVICE_ATTR(modalias, 0444, acpi_device_modalias_show, NULL);
122
123 static int acpi_scan_hot_remove(struct acpi_device *device)
124 {
125         acpi_handle handle = device->handle;
126         acpi_handle not_used;
127         struct acpi_object_list arg_list;
128         union acpi_object arg;
129         acpi_status status;
130         unsigned long long sta;
131
132         /* If there is no handle, the device node has been unregistered. */
133         if (!handle) {
134                 dev_dbg(&device->dev, "ACPI handle missing\n");
135                 put_device(&device->dev);
136                 return -EINVAL;
137         }
138
139         ACPI_DEBUG_PRINT((ACPI_DB_INFO,
140                 "Hot-removing device %s...\n", dev_name(&device->dev)));
141
142         acpi_bus_trim(device);
143         /* Device node has been unregistered. */
144         put_device(&device->dev);
145         device = NULL;
146
147         if (ACPI_SUCCESS(acpi_get_handle(handle, "_LCK", &not_used))) {
148                 arg_list.count = 1;
149                 arg_list.pointer = &arg;
150                 arg.type = ACPI_TYPE_INTEGER;
151                 arg.integer.value = 0;
152                 acpi_evaluate_object(handle, "_LCK", &arg_list, NULL);
153         }
154
155         arg_list.count = 1;
156         arg_list.pointer = &arg;
157         arg.type = ACPI_TYPE_INTEGER;
158         arg.integer.value = 1;
159
160         /*
161          * TBD: _EJD support.
162          */
163         status = acpi_evaluate_object(handle, "_EJ0", &arg_list, NULL);
164         if (ACPI_FAILURE(status)) {
165                 if (status == AE_NOT_FOUND) {
166                         return -ENODEV;
167                 } else {
168                         acpi_handle_warn(handle, "Eject failed (0x%x)\n",
169                                                                 status);
170                         return -EIO;
171                 }
172         }
173
174         /*
175          * Verify if eject was indeed successful.  If not, log an error
176          * message.  No need to call _OST since _EJ0 call was made OK.
177          */
178         status = acpi_evaluate_integer(handle, "_STA", NULL, &sta);
179         if (ACPI_FAILURE(status)) {
180                 acpi_handle_warn(handle,
181                         "Status check after eject failed (0x%x)\n", status);
182         } else if (sta & ACPI_STA_DEVICE_ENABLED) {
183                 acpi_handle_warn(handle,
184                         "Eject incomplete - status 0x%llx\n", sta);
185         }
186
187         return 0;
188 }
189
190 static void acpi_bus_device_eject(void *context)
191 {
192         acpi_handle handle = context;
193         struct acpi_device *device = NULL;
194         struct acpi_scan_handler *handler;
195         u32 ost_code = ACPI_OST_SC_NON_SPECIFIC_FAILURE;
196
197         mutex_lock(&acpi_scan_lock);
198
199         acpi_bus_get_device(handle, &device);
200         if (!device)
201                 goto err_out;
202
203         handler = device->handler;
204         if (!handler || !handler->hotplug.enabled) {
205                 ost_code = ACPI_OST_SC_EJECT_NOT_SUPPORTED;
206                 goto err_out;
207         }
208         acpi_evaluate_hotplug_ost(handle, ACPI_NOTIFY_EJECT_REQUEST,
209                                   ACPI_OST_SC_EJECT_IN_PROGRESS, NULL);
210         if (handler->hotplug.mode == AHM_CONTAINER) {
211                 device->flags.eject_pending = true;
212                 kobject_uevent(&device->dev.kobj, KOBJ_OFFLINE);
213         } else {
214                 int error;
215
216                 get_device(&device->dev);
217                 error = acpi_scan_hot_remove(device);
218                 if (error)
219                         goto err_out;
220         }
221
222  out:
223         mutex_unlock(&acpi_scan_lock);
224         return;
225
226  err_out:
227         acpi_evaluate_hotplug_ost(handle, ACPI_NOTIFY_EJECT_REQUEST, ost_code,
228                                   NULL);
229         goto out;
230 }
231
232 static void acpi_scan_bus_device_check(acpi_handle handle, u32 ost_source)
233 {
234         struct acpi_device *device = NULL;
235         u32 ost_code = ACPI_OST_SC_NON_SPECIFIC_FAILURE;
236         int error;
237
238         mutex_lock(&acpi_scan_lock);
239
240         if (ost_source != ACPI_NOTIFY_BUS_CHECK) {
241                 acpi_bus_get_device(handle, &device);
242                 if (device) {
243                         dev_warn(&device->dev, "Attempt to re-insert\n");
244                         goto out;
245                 }
246         }
247         error = acpi_bus_scan(handle);
248         if (error) {
249                 acpi_handle_warn(handle, "Namespace scan failure\n");
250                 goto out;
251         }
252         error = acpi_bus_get_device(handle, &device);
253         if (error) {
254                 acpi_handle_warn(handle, "Missing device node object\n");
255                 goto out;
256         }
257         ost_code = ACPI_OST_SC_SUCCESS;
258         if (device->handler && device->handler->hotplug.mode == AHM_CONTAINER)
259                 kobject_uevent(&device->dev.kobj, KOBJ_ONLINE);
260
261  out:
262         acpi_evaluate_hotplug_ost(handle, ost_source, ost_code, NULL);
263         mutex_unlock(&acpi_scan_lock);
264 }
265
266 static void acpi_scan_bus_check(void *context)
267 {
268         acpi_scan_bus_device_check((acpi_handle)context,
269                                    ACPI_NOTIFY_BUS_CHECK);
270 }
271
272 static void acpi_scan_device_check(void *context)
273 {
274         acpi_scan_bus_device_check((acpi_handle)context,
275                                    ACPI_NOTIFY_DEVICE_CHECK);
276 }
277
278 static void acpi_hotplug_unsupported(acpi_handle handle, u32 type)
279 {
280         u32 ost_status;
281
282         switch (type) {
283         case ACPI_NOTIFY_BUS_CHECK:
284                 acpi_handle_debug(handle,
285                         "ACPI_NOTIFY_BUS_CHECK event: unsupported\n");
286                 ost_status = ACPI_OST_SC_INSERT_NOT_SUPPORTED;
287                 break;
288         case ACPI_NOTIFY_DEVICE_CHECK:
289                 acpi_handle_debug(handle,
290                         "ACPI_NOTIFY_DEVICE_CHECK event: unsupported\n");
291                 ost_status = ACPI_OST_SC_INSERT_NOT_SUPPORTED;
292                 break;
293         case ACPI_NOTIFY_EJECT_REQUEST:
294                 acpi_handle_debug(handle,
295                         "ACPI_NOTIFY_EJECT_REQUEST event: unsupported\n");
296                 ost_status = ACPI_OST_SC_EJECT_NOT_SUPPORTED;
297                 break;
298         default:
299                 /* non-hotplug event; possibly handled by other handler */
300                 return;
301         }
302
303         acpi_evaluate_hotplug_ost(handle, type, ost_status, NULL);
304 }
305
306 static void acpi_hotplug_notify_cb(acpi_handle handle, u32 type, void *data)
307 {
308         acpi_osd_exec_callback callback;
309         struct acpi_scan_handler *handler = data;
310         acpi_status status;
311
312         if (!handler->hotplug.enabled)
313                 return acpi_hotplug_unsupported(handle, type);
314
315         switch (type) {
316         case ACPI_NOTIFY_BUS_CHECK:
317                 acpi_handle_debug(handle, "ACPI_NOTIFY_BUS_CHECK event\n");
318                 callback = acpi_scan_bus_check;
319                 break;
320         case ACPI_NOTIFY_DEVICE_CHECK:
321                 acpi_handle_debug(handle, "ACPI_NOTIFY_DEVICE_CHECK event\n");
322                 callback = acpi_scan_device_check;
323                 break;
324         case ACPI_NOTIFY_EJECT_REQUEST:
325                 acpi_handle_debug(handle, "ACPI_NOTIFY_EJECT_REQUEST event\n");
326                 callback = acpi_bus_device_eject;
327                 break;
328         default:
329                 /* non-hotplug event; possibly handled by other handler */
330                 return;
331         }
332         status = acpi_os_hotplug_execute(callback, handle);
333         if (ACPI_FAILURE(status))
334                 acpi_evaluate_hotplug_ost(handle, type,
335                                           ACPI_OST_SC_NON_SPECIFIC_FAILURE,
336                                           NULL);
337 }
338
339 /**
340  * acpi_bus_hot_remove_device: hot-remove a device and its children
341  * @context: struct acpi_eject_event pointer (freed in this func)
342  *
343  * Hot-remove a device and its children. This function frees up the
344  * memory space passed by arg context, so that the caller may call
345  * this function asynchronously through acpi_os_hotplug_execute().
346  */
347 void acpi_bus_hot_remove_device(void *context)
348 {
349         struct acpi_eject_event *ej_event = context;
350         struct acpi_device *device = ej_event->device;
351         acpi_handle handle = device->handle;
352         int error;
353
354         mutex_lock(&acpi_scan_lock);
355
356         error = acpi_scan_hot_remove(device);
357         if (error && handle)
358                 acpi_evaluate_hotplug_ost(handle, ej_event->event,
359                                           ACPI_OST_SC_NON_SPECIFIC_FAILURE,
360                                           NULL);
361
362         mutex_unlock(&acpi_scan_lock);
363         kfree(context);
364 }
365 EXPORT_SYMBOL(acpi_bus_hot_remove_device);
366
367 static ssize_t real_power_state_show(struct device *dev,
368                                      struct device_attribute *attr, char *buf)
369 {
370         struct acpi_device *adev = to_acpi_device(dev);
371         int state;
372         int ret;
373
374         ret = acpi_device_get_power(adev, &state);
375         if (ret)
376                 return ret;
377
378         return sprintf(buf, "%s\n", acpi_power_state_string(state));
379 }
380
381 static DEVICE_ATTR(real_power_state, 0444, real_power_state_show, NULL);
382
383 static ssize_t power_state_show(struct device *dev,
384                                 struct device_attribute *attr, char *buf)
385 {
386         struct acpi_device *adev = to_acpi_device(dev);
387
388         return sprintf(buf, "%s\n", acpi_power_state_string(adev->power.state));
389 }
390
391 static DEVICE_ATTR(power_state, 0444, power_state_show, NULL);
392
393 static ssize_t
394 acpi_eject_store(struct device *d, struct device_attribute *attr,
395                 const char *buf, size_t count)
396 {
397         struct acpi_device *acpi_device = to_acpi_device(d);
398         struct acpi_eject_event *ej_event;
399         acpi_object_type not_used;
400         acpi_status status;
401         u32 ost_source;
402         int ret;
403
404         if (!count || buf[0] != '1')
405                 return -EINVAL;
406
407         if ((!acpi_device->handler || !acpi_device->handler->hotplug.enabled)
408             && !acpi_device->driver)
409                 return -ENODEV;
410
411         status = acpi_get_type(acpi_device->handle, &not_used);
412         if (ACPI_FAILURE(status) || !acpi_device->flags.ejectable)
413                 return -ENODEV;
414
415         mutex_lock(&acpi_scan_lock);
416
417         if (acpi_device->flags.eject_pending) {
418                 /* ACPI eject notification event. */
419                 ost_source = ACPI_NOTIFY_EJECT_REQUEST;
420                 acpi_device->flags.eject_pending = 0;
421         } else {
422                 /* Eject initiated by user space. */
423                 ost_source = ACPI_OST_EC_OSPM_EJECT;
424         }
425         ej_event = kmalloc(sizeof(*ej_event), GFP_KERNEL);
426         if (!ej_event) {
427                 ret = -ENOMEM;
428                 goto err_out;
429         }
430         acpi_evaluate_hotplug_ost(acpi_device->handle, ost_source,
431                                   ACPI_OST_SC_EJECT_IN_PROGRESS, NULL);
432         ej_event->device = acpi_device;
433         ej_event->event = ost_source;
434         get_device(&acpi_device->dev);
435         status = acpi_os_hotplug_execute(acpi_bus_hot_remove_device, ej_event);
436         if (ACPI_FAILURE(status)) {
437                 put_device(&acpi_device->dev);
438                 kfree(ej_event);
439                 ret = status == AE_NO_MEMORY ? -ENOMEM : -EAGAIN;
440                 goto err_out;
441         }
442         ret = count;
443
444  out:
445         mutex_unlock(&acpi_scan_lock);
446         return ret;
447
448  err_out:
449         acpi_evaluate_hotplug_ost(acpi_device->handle, ost_source,
450                                   ACPI_OST_SC_NON_SPECIFIC_FAILURE, NULL);
451         goto out;
452 }
453
454 static DEVICE_ATTR(eject, 0200, NULL, acpi_eject_store);
455
456 static ssize_t
457 acpi_device_hid_show(struct device *dev, struct device_attribute *attr, char *buf) {
458         struct acpi_device *acpi_dev = to_acpi_device(dev);
459
460         return sprintf(buf, "%s\n", acpi_device_hid(acpi_dev));
461 }
462 static DEVICE_ATTR(hid, 0444, acpi_device_hid_show, NULL);
463
464 static ssize_t acpi_device_uid_show(struct device *dev,
465                                     struct device_attribute *attr, char *buf)
466 {
467         struct acpi_device *acpi_dev = to_acpi_device(dev);
468
469         return sprintf(buf, "%s\n", acpi_dev->pnp.unique_id);
470 }
471 static DEVICE_ATTR(uid, 0444, acpi_device_uid_show, NULL);
472
473 static ssize_t acpi_device_adr_show(struct device *dev,
474                                     struct device_attribute *attr, char *buf)
475 {
476         struct acpi_device *acpi_dev = to_acpi_device(dev);
477
478         return sprintf(buf, "0x%08x\n",
479                        (unsigned int)(acpi_dev->pnp.bus_address));
480 }
481 static DEVICE_ATTR(adr, 0444, acpi_device_adr_show, NULL);
482
483 static ssize_t
484 acpi_device_path_show(struct device *dev, struct device_attribute *attr, char *buf) {
485         struct acpi_device *acpi_dev = to_acpi_device(dev);
486         struct acpi_buffer path = {ACPI_ALLOCATE_BUFFER, NULL};
487         int result;
488
489         result = acpi_get_name(acpi_dev->handle, ACPI_FULL_PATHNAME, &path);
490         if (result)
491                 goto end;
492
493         result = sprintf(buf, "%s\n", (char*)path.pointer);
494         kfree(path.pointer);
495 end:
496         return result;
497 }
498 static DEVICE_ATTR(path, 0444, acpi_device_path_show, NULL);
499
500 /* sysfs file that shows description text from the ACPI _STR method */
501 static ssize_t description_show(struct device *dev,
502                                 struct device_attribute *attr,
503                                 char *buf) {
504         struct acpi_device *acpi_dev = to_acpi_device(dev);
505         int result;
506
507         if (acpi_dev->pnp.str_obj == NULL)
508                 return 0;
509
510         /*
511          * The _STR object contains a Unicode identifier for a device.
512          * We need to convert to utf-8 so it can be displayed.
513          */
514         result = utf16s_to_utf8s(
515                 (wchar_t *)acpi_dev->pnp.str_obj->buffer.pointer,
516                 acpi_dev->pnp.str_obj->buffer.length,
517                 UTF16_LITTLE_ENDIAN, buf,
518                 PAGE_SIZE);
519
520         buf[result++] = '\n';
521
522         return result;
523 }
524 static DEVICE_ATTR(description, 0444, description_show, NULL);
525
526 static ssize_t
527 acpi_device_sun_show(struct device *dev, struct device_attribute *attr,
528                      char *buf) {
529         struct acpi_device *acpi_dev = to_acpi_device(dev);
530
531         return sprintf(buf, "%lu\n", acpi_dev->pnp.sun);
532 }
533 static DEVICE_ATTR(sun, 0444, acpi_device_sun_show, NULL);
534
535 static int acpi_device_setup_files(struct acpi_device *dev)
536 {
537         struct acpi_buffer buffer = {ACPI_ALLOCATE_BUFFER, NULL};
538         acpi_status status;
539         acpi_handle temp;
540         unsigned long long sun;
541         int result = 0;
542
543         /*
544          * Devices gotten from FADT don't have a "path" attribute
545          */
546         if (dev->handle) {
547                 result = device_create_file(&dev->dev, &dev_attr_path);
548                 if (result)
549                         goto end;
550         }
551
552         if (!list_empty(&dev->pnp.ids)) {
553                 result = device_create_file(&dev->dev, &dev_attr_hid);
554                 if (result)
555                         goto end;
556
557                 result = device_create_file(&dev->dev, &dev_attr_modalias);
558                 if (result)
559                         goto end;
560         }
561
562         /*
563          * If device has _STR, 'description' file is created
564          */
565         status = acpi_get_handle(dev->handle, "_STR", &temp);
566         if (ACPI_SUCCESS(status)) {
567                 status = acpi_evaluate_object(dev->handle, "_STR",
568                                         NULL, &buffer);
569                 if (ACPI_FAILURE(status))
570                         buffer.pointer = NULL;
571                 dev->pnp.str_obj = buffer.pointer;
572                 result = device_create_file(&dev->dev, &dev_attr_description);
573                 if (result)
574                         goto end;
575         }
576
577         if (dev->pnp.type.bus_address)
578                 result = device_create_file(&dev->dev, &dev_attr_adr);
579         if (dev->pnp.unique_id)
580                 result = device_create_file(&dev->dev, &dev_attr_uid);
581
582         status = acpi_evaluate_integer(dev->handle, "_SUN", NULL, &sun);
583         if (ACPI_SUCCESS(status)) {
584                 dev->pnp.sun = (unsigned long)sun;
585                 result = device_create_file(&dev->dev, &dev_attr_sun);
586                 if (result)
587                         goto end;
588         } else {
589                 dev->pnp.sun = (unsigned long)-1;
590         }
591
592         /*
593          * If device has _EJ0, 'eject' file is created that is used to trigger
594          * hot-removal function from userland.
595          */
596         status = acpi_get_handle(dev->handle, "_EJ0", &temp);
597         if (ACPI_SUCCESS(status)) {
598                 result = device_create_file(&dev->dev, &dev_attr_eject);
599                 if (result)
600                         return result;
601         }
602
603         if (dev->flags.power_manageable) {
604                 result = device_create_file(&dev->dev, &dev_attr_power_state);
605                 if (result)
606                         return result;
607
608                 if (dev->power.flags.power_resources)
609                         result = device_create_file(&dev->dev,
610                                                     &dev_attr_real_power_state);
611         }
612
613 end:
614         return result;
615 }
616
617 static void acpi_device_remove_files(struct acpi_device *dev)
618 {
619         acpi_status status;
620         acpi_handle temp;
621
622         if (dev->flags.power_manageable) {
623                 device_remove_file(&dev->dev, &dev_attr_power_state);
624                 if (dev->power.flags.power_resources)
625                         device_remove_file(&dev->dev,
626                                            &dev_attr_real_power_state);
627         }
628
629         /*
630          * If device has _STR, remove 'description' file
631          */
632         status = acpi_get_handle(dev->handle, "_STR", &temp);
633         if (ACPI_SUCCESS(status)) {
634                 kfree(dev->pnp.str_obj);
635                 device_remove_file(&dev->dev, &dev_attr_description);
636         }
637         /*
638          * If device has _EJ0, remove 'eject' file.
639          */
640         status = acpi_get_handle(dev->handle, "_EJ0", &temp);
641         if (ACPI_SUCCESS(status))
642                 device_remove_file(&dev->dev, &dev_attr_eject);
643
644         status = acpi_get_handle(dev->handle, "_SUN", &temp);
645         if (ACPI_SUCCESS(status))
646                 device_remove_file(&dev->dev, &dev_attr_sun);
647
648         if (dev->pnp.unique_id)
649                 device_remove_file(&dev->dev, &dev_attr_uid);
650         if (dev->pnp.type.bus_address)
651                 device_remove_file(&dev->dev, &dev_attr_adr);
652         device_remove_file(&dev->dev, &dev_attr_modalias);
653         device_remove_file(&dev->dev, &dev_attr_hid);
654         if (dev->handle)
655                 device_remove_file(&dev->dev, &dev_attr_path);
656 }
657 /* --------------------------------------------------------------------------
658                         ACPI Bus operations
659    -------------------------------------------------------------------------- */
660
661 static const struct acpi_device_id *__acpi_match_device(
662         struct acpi_device *device, const struct acpi_device_id *ids)
663 {
664         const struct acpi_device_id *id;
665         struct acpi_hardware_id *hwid;
666
667         /*
668          * If the device is not present, it is unnecessary to load device
669          * driver for it.
670          */
671         if (!device->status.present)
672                 return NULL;
673
674         for (id = ids; id->id[0]; id++)
675                 list_for_each_entry(hwid, &device->pnp.ids, list)
676                         if (!strcmp((char *) id->id, hwid->id))
677                                 return id;
678
679         return NULL;
680 }
681
682 /**
683  * acpi_match_device - Match a struct device against a given list of ACPI IDs
684  * @ids: Array of struct acpi_device_id object to match against.
685  * @dev: The device structure to match.
686  *
687  * Check if @dev has a valid ACPI handle and if there is a struct acpi_device
688  * object for that handle and use that object to match against a given list of
689  * device IDs.
690  *
691  * Return a pointer to the first matching ID on success or %NULL on failure.
692  */
693 const struct acpi_device_id *acpi_match_device(const struct acpi_device_id *ids,
694                                                const struct device *dev)
695 {
696         struct acpi_device *adev;
697         acpi_handle handle = ACPI_HANDLE(dev);
698
699         if (!ids || !handle || acpi_bus_get_device(handle, &adev))
700                 return NULL;
701
702         return __acpi_match_device(adev, ids);
703 }
704 EXPORT_SYMBOL_GPL(acpi_match_device);
705
706 int acpi_match_device_ids(struct acpi_device *device,
707                           const struct acpi_device_id *ids)
708 {
709         return __acpi_match_device(device, ids) ? 0 : -ENOENT;
710 }
711 EXPORT_SYMBOL(acpi_match_device_ids);
712
713 static void acpi_free_power_resources_lists(struct acpi_device *device)
714 {
715         int i;
716
717         if (device->wakeup.flags.valid)
718                 acpi_power_resources_list_free(&device->wakeup.resources);
719
720         if (!device->flags.power_manageable)
721                 return;
722
723         for (i = ACPI_STATE_D0; i <= ACPI_STATE_D3_HOT; i++) {
724                 struct acpi_device_power_state *ps = &device->power.states[i];
725                 acpi_power_resources_list_free(&ps->resources);
726         }
727 }
728
729 static void acpi_device_release(struct device *dev)
730 {
731         struct acpi_device *acpi_dev = to_acpi_device(dev);
732
733         acpi_free_pnp_ids(&acpi_dev->pnp);
734         acpi_free_power_resources_lists(acpi_dev);
735         kfree(acpi_dev);
736 }
737
738 static int acpi_bus_match(struct device *dev, struct device_driver *drv)
739 {
740         struct acpi_device *acpi_dev = to_acpi_device(dev);
741         struct acpi_driver *acpi_drv = to_acpi_driver(drv);
742
743         return acpi_dev->flags.match_driver
744                 && !acpi_match_device_ids(acpi_dev, acpi_drv->ids);
745 }
746
747 static int acpi_device_uevent(struct device *dev, struct kobj_uevent_env *env)
748 {
749         struct acpi_device *acpi_dev = to_acpi_device(dev);
750         int len;
751
752         if (list_empty(&acpi_dev->pnp.ids))
753                 return 0;
754
755         if (add_uevent_var(env, "MODALIAS="))
756                 return -ENOMEM;
757         len = create_modalias(acpi_dev, &env->buf[env->buflen - 1],
758                               sizeof(env->buf) - env->buflen);
759         if (len >= (sizeof(env->buf) - env->buflen))
760                 return -ENOMEM;
761         env->buflen += len;
762         return 0;
763 }
764
765 static void acpi_device_notify(acpi_handle handle, u32 event, void *data)
766 {
767         struct acpi_device *device = data;
768
769         device->driver->ops.notify(device, event);
770 }
771
772 static void acpi_device_notify_fixed(void *data)
773 {
774         struct acpi_device *device = data;
775
776         /* Fixed hardware devices have no handles */
777         acpi_device_notify(NULL, ACPI_FIXED_HARDWARE_EVENT, device);
778 }
779
780 static acpi_status acpi_device_fixed_event(void *data)
781 {
782         acpi_os_execute(OSL_NOTIFY_HANDLER, acpi_device_notify_fixed, data);
783         return AE_OK;
784 }
785
786 static int acpi_device_install_notify_handler(struct acpi_device *device)
787 {
788         acpi_status status;
789
790         if (device->device_type == ACPI_BUS_TYPE_POWER_BUTTON)
791                 status =
792                     acpi_install_fixed_event_handler(ACPI_EVENT_POWER_BUTTON,
793                                                      acpi_device_fixed_event,
794                                                      device);
795         else if (device->device_type == ACPI_BUS_TYPE_SLEEP_BUTTON)
796                 status =
797                     acpi_install_fixed_event_handler(ACPI_EVENT_SLEEP_BUTTON,
798                                                      acpi_device_fixed_event,
799                                                      device);
800         else
801                 status = acpi_install_notify_handler(device->handle,
802                                                      ACPI_DEVICE_NOTIFY,
803                                                      acpi_device_notify,
804                                                      device);
805
806         if (ACPI_FAILURE(status))
807                 return -EINVAL;
808         return 0;
809 }
810
811 static void acpi_device_remove_notify_handler(struct acpi_device *device)
812 {
813         if (device->device_type == ACPI_BUS_TYPE_POWER_BUTTON)
814                 acpi_remove_fixed_event_handler(ACPI_EVENT_POWER_BUTTON,
815                                                 acpi_device_fixed_event);
816         else if (device->device_type == ACPI_BUS_TYPE_SLEEP_BUTTON)
817                 acpi_remove_fixed_event_handler(ACPI_EVENT_SLEEP_BUTTON,
818                                                 acpi_device_fixed_event);
819         else
820                 acpi_remove_notify_handler(device->handle, ACPI_DEVICE_NOTIFY,
821                                            acpi_device_notify);
822 }
823
824 static int acpi_bus_driver_init(struct acpi_device *, struct acpi_driver *);
825 static int acpi_device_probe(struct device * dev)
826 {
827         struct acpi_device *acpi_dev = to_acpi_device(dev);
828         struct acpi_driver *acpi_drv = to_acpi_driver(dev->driver);
829         int ret;
830
831         ret = acpi_bus_driver_init(acpi_dev, acpi_drv);
832         if (!ret) {
833                 if (acpi_drv->ops.notify) {
834                         ret = acpi_device_install_notify_handler(acpi_dev);
835                         if (ret) {
836                                 if (acpi_drv->ops.remove)
837                                         acpi_drv->ops.remove(acpi_dev);
838                                 acpi_dev->driver = NULL;
839                                 acpi_dev->driver_data = NULL;
840                                 return ret;
841                         }
842                 }
843
844                 ACPI_DEBUG_PRINT((ACPI_DB_INFO,
845                         "Found driver [%s] for device [%s]\n",
846                         acpi_drv->name, acpi_dev->pnp.bus_id));
847                 get_device(dev);
848         }
849         return ret;
850 }
851
852 static int acpi_device_remove(struct device * dev)
853 {
854         struct acpi_device *acpi_dev = to_acpi_device(dev);
855         struct acpi_driver *acpi_drv = acpi_dev->driver;
856
857         if (acpi_drv) {
858                 if (acpi_drv->ops.notify)
859                         acpi_device_remove_notify_handler(acpi_dev);
860                 if (acpi_drv->ops.remove)
861                         acpi_drv->ops.remove(acpi_dev);
862         }
863         acpi_dev->driver = NULL;
864         acpi_dev->driver_data = NULL;
865
866         put_device(dev);
867         return 0;
868 }
869
870 struct bus_type acpi_bus_type = {
871         .name           = "acpi",
872         .match          = acpi_bus_match,
873         .probe          = acpi_device_probe,
874         .remove         = acpi_device_remove,
875         .uevent         = acpi_device_uevent,
876 };
877
878 int acpi_device_add(struct acpi_device *device,
879                     void (*release)(struct device *))
880 {
881         int result;
882         struct acpi_device_bus_id *acpi_device_bus_id, *new_bus_id;
883         int found = 0;
884
885         if (device->handle) {
886                 acpi_status status;
887
888                 status = acpi_attach_data(device->handle, acpi_bus_data_handler,
889                                           device);
890                 if (ACPI_FAILURE(status)) {
891                         acpi_handle_err(device->handle,
892                                         "Unable to attach device data\n");
893                         return -ENODEV;
894                 }
895         }
896
897         /*
898          * Linkage
899          * -------
900          * Link this device to its parent and siblings.
901          */
902         INIT_LIST_HEAD(&device->children);
903         INIT_LIST_HEAD(&device->node);
904         INIT_LIST_HEAD(&device->wakeup_list);
905         INIT_LIST_HEAD(&device->physical_node_list);
906         mutex_init(&device->physical_node_lock);
907         INIT_LIST_HEAD(&device->power_dependent);
908
909         new_bus_id = kzalloc(sizeof(struct acpi_device_bus_id), GFP_KERNEL);
910         if (!new_bus_id) {
911                 pr_err(PREFIX "Memory allocation error\n");
912                 result = -ENOMEM;
913                 goto err_detach;
914         }
915
916         mutex_lock(&acpi_device_lock);
917         /*
918          * Find suitable bus_id and instance number in acpi_bus_id_list
919          * If failed, create one and link it into acpi_bus_id_list
920          */
921         list_for_each_entry(acpi_device_bus_id, &acpi_bus_id_list, node) {
922                 if (!strcmp(acpi_device_bus_id->bus_id,
923                             acpi_device_hid(device))) {
924                         acpi_device_bus_id->instance_no++;
925                         found = 1;
926                         kfree(new_bus_id);
927                         break;
928                 }
929         }
930         if (!found) {
931                 acpi_device_bus_id = new_bus_id;
932                 strcpy(acpi_device_bus_id->bus_id, acpi_device_hid(device));
933                 acpi_device_bus_id->instance_no = 0;
934                 list_add_tail(&acpi_device_bus_id->node, &acpi_bus_id_list);
935         }
936         dev_set_name(&device->dev, "%s:%02x", acpi_device_bus_id->bus_id, acpi_device_bus_id->instance_no);
937
938         if (device->parent)
939                 list_add_tail(&device->node, &device->parent->children);
940
941         if (device->wakeup.flags.valid)
942                 list_add_tail(&device->wakeup_list, &acpi_wakeup_device_list);
943         mutex_unlock(&acpi_device_lock);
944
945         if (device->parent)
946                 device->dev.parent = &device->parent->dev;
947         device->dev.bus = &acpi_bus_type;
948         device->dev.release = release;
949         result = device_add(&device->dev);
950         if (result) {
951                 dev_err(&device->dev, "Error registering device\n");
952                 goto err;
953         }
954
955         result = acpi_device_setup_files(device);
956         if (result)
957                 printk(KERN_ERR PREFIX "Error creating sysfs interface for device %s\n",
958                        dev_name(&device->dev));
959
960         device->removal_type = ACPI_BUS_REMOVAL_NORMAL;
961         return 0;
962
963  err:
964         mutex_lock(&acpi_device_lock);
965         if (device->parent)
966                 list_del(&device->node);
967         list_del(&device->wakeup_list);
968         mutex_unlock(&acpi_device_lock);
969
970  err_detach:
971         acpi_detach_data(device->handle, acpi_bus_data_handler);
972         return result;
973 }
974
975 static void acpi_device_unregister(struct acpi_device *device)
976 {
977         mutex_lock(&acpi_device_lock);
978         if (device->parent)
979                 list_del(&device->node);
980
981         list_del(&device->wakeup_list);
982         mutex_unlock(&acpi_device_lock);
983
984         acpi_detach_data(device->handle, acpi_bus_data_handler);
985
986         acpi_power_add_remove_device(device, false);
987         acpi_device_remove_files(device);
988         if (device->remove)
989                 device->remove(device);
990
991         device_del(&device->dev);
992         /*
993          * Transition the device to D3cold to drop the reference counts of all
994          * power resources the device depends on and turn off the ones that have
995          * no more references.
996          */
997         acpi_device_set_power(device, ACPI_STATE_D3_COLD);
998         device->handle = NULL;
999         put_device(&device->dev);
1000 }
1001
1002 /* --------------------------------------------------------------------------
1003                                  Driver Management
1004    -------------------------------------------------------------------------- */
1005 /**
1006  * acpi_bus_driver_init - add a device to a driver
1007  * @device: the device to add and initialize
1008  * @driver: driver for the device
1009  *
1010  * Used to initialize a device via its device driver.  Called whenever a
1011  * driver is bound to a device.  Invokes the driver's add() ops.
1012  */
1013 static int
1014 acpi_bus_driver_init(struct acpi_device *device, struct acpi_driver *driver)
1015 {
1016         int result = 0;
1017
1018         if (!device || !driver)
1019                 return -EINVAL;
1020
1021         if (!driver->ops.add)
1022                 return -ENOSYS;
1023
1024         result = driver->ops.add(device);
1025         if (result)
1026                 return result;
1027
1028         device->driver = driver;
1029
1030         /*
1031          * TBD - Configuration Management: Assign resources to device based
1032          * upon possible configuration and currently allocated resources.
1033          */
1034
1035         ACPI_DEBUG_PRINT((ACPI_DB_INFO,
1036                           "Driver successfully bound to device\n"));
1037         return 0;
1038 }
1039
1040 /**
1041  * acpi_bus_register_driver - register a driver with the ACPI bus
1042  * @driver: driver being registered
1043  *
1044  * Registers a driver with the ACPI bus.  Searches the namespace for all
1045  * devices that match the driver's criteria and binds.  Returns zero for
1046  * success or a negative error status for failure.
1047  */
1048 int acpi_bus_register_driver(struct acpi_driver *driver)
1049 {
1050         int ret;
1051
1052         if (acpi_disabled)
1053                 return -ENODEV;
1054         driver->drv.name = driver->name;
1055         driver->drv.bus = &acpi_bus_type;
1056         driver->drv.owner = driver->owner;
1057
1058         ret = driver_register(&driver->drv);
1059         return ret;
1060 }
1061
1062 EXPORT_SYMBOL(acpi_bus_register_driver);
1063
1064 /**
1065  * acpi_bus_unregister_driver - unregisters a driver with the APIC bus
1066  * @driver: driver to unregister
1067  *
1068  * Unregisters a driver with the ACPI bus.  Searches the namespace for all
1069  * devices that match the driver's criteria and unbinds.
1070  */
1071 void acpi_bus_unregister_driver(struct acpi_driver *driver)
1072 {
1073         driver_unregister(&driver->drv);
1074 }
1075
1076 EXPORT_SYMBOL(acpi_bus_unregister_driver);
1077
1078 /* --------------------------------------------------------------------------
1079                                  Device Enumeration
1080    -------------------------------------------------------------------------- */
1081 static struct acpi_device *acpi_bus_get_parent(acpi_handle handle)
1082 {
1083         struct acpi_device *device = NULL;
1084         acpi_status status;
1085
1086         /*
1087          * Fixed hardware devices do not appear in the namespace and do not
1088          * have handles, but we fabricate acpi_devices for them, so we have
1089          * to deal with them specially.
1090          */
1091         if (!handle)
1092                 return acpi_root;
1093
1094         do {
1095                 status = acpi_get_parent(handle, &handle);
1096                 if (ACPI_FAILURE(status))
1097                         return status == AE_NULL_ENTRY ? NULL : acpi_root;
1098         } while (acpi_bus_get_device(handle, &device));
1099         return device;
1100 }
1101
1102 acpi_status
1103 acpi_bus_get_ejd(acpi_handle handle, acpi_handle *ejd)
1104 {
1105         acpi_status status;
1106         acpi_handle tmp;
1107         struct acpi_buffer buffer = {ACPI_ALLOCATE_BUFFER, NULL};
1108         union acpi_object *obj;
1109
1110         status = acpi_get_handle(handle, "_EJD", &tmp);
1111         if (ACPI_FAILURE(status))
1112                 return status;
1113
1114         status = acpi_evaluate_object(handle, "_EJD", NULL, &buffer);
1115         if (ACPI_SUCCESS(status)) {
1116                 obj = buffer.pointer;
1117                 status = acpi_get_handle(ACPI_ROOT_OBJECT, obj->string.pointer,
1118                                          ejd);
1119                 kfree(buffer.pointer);
1120         }
1121         return status;
1122 }
1123 EXPORT_SYMBOL_GPL(acpi_bus_get_ejd);
1124
1125 void acpi_bus_data_handler(acpi_handle handle, void *context)
1126 {
1127
1128         /* TBD */
1129
1130         return;
1131 }
1132
1133 static int acpi_bus_extract_wakeup_device_power_package(acpi_handle handle,
1134                                         struct acpi_device_wakeup *wakeup)
1135 {
1136         struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
1137         union acpi_object *package = NULL;
1138         union acpi_object *element = NULL;
1139         acpi_status status;
1140         int err = -ENODATA;
1141
1142         if (!wakeup)
1143                 return -EINVAL;
1144
1145         INIT_LIST_HEAD(&wakeup->resources);
1146
1147         /* _PRW */
1148         status = acpi_evaluate_object(handle, "_PRW", NULL, &buffer);
1149         if (ACPI_FAILURE(status)) {
1150                 ACPI_EXCEPTION((AE_INFO, status, "Evaluating _PRW"));
1151                 return err;
1152         }
1153
1154         package = (union acpi_object *)buffer.pointer;
1155
1156         if (!package || package->package.count < 2)
1157                 goto out;
1158
1159         element = &(package->package.elements[0]);
1160         if (!element)
1161                 goto out;
1162
1163         if (element->type == ACPI_TYPE_PACKAGE) {
1164                 if ((element->package.count < 2) ||
1165                     (element->package.elements[0].type !=
1166                      ACPI_TYPE_LOCAL_REFERENCE)
1167                     || (element->package.elements[1].type != ACPI_TYPE_INTEGER))
1168                         goto out;
1169
1170                 wakeup->gpe_device =
1171                     element->package.elements[0].reference.handle;
1172                 wakeup->gpe_number =
1173                     (u32) element->package.elements[1].integer.value;
1174         } else if (element->type == ACPI_TYPE_INTEGER) {
1175                 wakeup->gpe_device = NULL;
1176                 wakeup->gpe_number = element->integer.value;
1177         } else {
1178                 goto out;
1179         }
1180
1181         element = &(package->package.elements[1]);
1182         if (element->type != ACPI_TYPE_INTEGER)
1183                 goto out;
1184
1185         wakeup->sleep_state = element->integer.value;
1186
1187         err = acpi_extract_power_resources(package, 2, &wakeup->resources);
1188         if (err)
1189                 goto out;
1190
1191         if (!list_empty(&wakeup->resources)) {
1192                 int sleep_state;
1193
1194                 err = acpi_power_wakeup_list_init(&wakeup->resources,
1195                                                   &sleep_state);
1196                 if (err) {
1197                         acpi_handle_warn(handle, "Retrieving current states "
1198                                          "of wakeup power resources failed\n");
1199                         acpi_power_resources_list_free(&wakeup->resources);
1200                         goto out;
1201                 }
1202                 if (sleep_state < wakeup->sleep_state) {
1203                         acpi_handle_warn(handle, "Overriding _PRW sleep state "
1204                                          "(S%d) by S%d from power resources\n",
1205                                          (int)wakeup->sleep_state, sleep_state);
1206                         wakeup->sleep_state = sleep_state;
1207                 }
1208         }
1209         acpi_setup_gpe_for_wake(handle, wakeup->gpe_device, wakeup->gpe_number);
1210
1211  out:
1212         kfree(buffer.pointer);
1213         return err;
1214 }
1215
1216 static void acpi_bus_set_run_wake_flags(struct acpi_device *device)
1217 {
1218         struct acpi_device_id button_device_ids[] = {
1219                 {"PNP0C0C", 0},
1220                 {"PNP0C0D", 0},
1221                 {"PNP0C0E", 0},
1222                 {"", 0},
1223         };
1224         acpi_status status;
1225         acpi_event_status event_status;
1226
1227         device->wakeup.flags.notifier_present = 0;
1228
1229         /* Power button, Lid switch always enable wakeup */
1230         if (!acpi_match_device_ids(device, button_device_ids)) {
1231                 device->wakeup.flags.run_wake = 1;
1232                 if (!acpi_match_device_ids(device, &button_device_ids[1])) {
1233                         /* Do not use Lid/sleep button for S5 wakeup */
1234                         if (device->wakeup.sleep_state == ACPI_STATE_S5)
1235                                 device->wakeup.sleep_state = ACPI_STATE_S4;
1236                 }
1237                 device_set_wakeup_capable(&device->dev, true);
1238                 return;
1239         }
1240
1241         status = acpi_get_gpe_status(device->wakeup.gpe_device,
1242                                         device->wakeup.gpe_number,
1243                                                 &event_status);
1244         if (status == AE_OK)
1245                 device->wakeup.flags.run_wake =
1246                                 !!(event_status & ACPI_EVENT_FLAG_HANDLE);
1247 }
1248
1249 static void acpi_bus_get_wakeup_device_flags(struct acpi_device *device)
1250 {
1251         acpi_handle temp;
1252         acpi_status status = 0;
1253         int err;
1254
1255         /* Presence of _PRW indicates wake capable */
1256         status = acpi_get_handle(device->handle, "_PRW", &temp);
1257         if (ACPI_FAILURE(status))
1258                 return;
1259
1260         err = acpi_bus_extract_wakeup_device_power_package(device->handle,
1261                                                            &device->wakeup);
1262         if (err) {
1263                 dev_err(&device->dev, "_PRW evaluation error: %d\n", err);
1264                 return;
1265         }
1266
1267         device->wakeup.flags.valid = 1;
1268         device->wakeup.prepare_count = 0;
1269         acpi_bus_set_run_wake_flags(device);
1270         /* Call _PSW/_DSW object to disable its ability to wake the sleeping
1271          * system for the ACPI device with the _PRW object.
1272          * The _PSW object is depreciated in ACPI 3.0 and is replaced by _DSW.
1273          * So it is necessary to call _DSW object first. Only when it is not
1274          * present will the _PSW object used.
1275          */
1276         err = acpi_device_sleep_wake(device, 0, 0, 0);
1277         if (err)
1278                 ACPI_DEBUG_PRINT((ACPI_DB_INFO,
1279                                 "error in _DSW or _PSW evaluation\n"));
1280 }
1281
1282 static void acpi_bus_init_power_state(struct acpi_device *device, int state)
1283 {
1284         struct acpi_device_power_state *ps = &device->power.states[state];
1285         char pathname[5] = { '_', 'P', 'R', '0' + state, '\0' };
1286         struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
1287         acpi_handle handle;
1288         acpi_status status;
1289
1290         INIT_LIST_HEAD(&ps->resources);
1291
1292         /* Evaluate "_PRx" to get referenced power resources */
1293         status = acpi_evaluate_object(device->handle, pathname, NULL, &buffer);
1294         if (ACPI_SUCCESS(status)) {
1295                 union acpi_object *package = buffer.pointer;
1296
1297                 if (buffer.length && package
1298                     && package->type == ACPI_TYPE_PACKAGE
1299                     && package->package.count) {
1300                         int err = acpi_extract_power_resources(package, 0,
1301                                                                &ps->resources);
1302                         if (!err)
1303                                 device->power.flags.power_resources = 1;
1304                 }
1305                 ACPI_FREE(buffer.pointer);
1306         }
1307
1308         /* Evaluate "_PSx" to see if we can do explicit sets */
1309         pathname[2] = 'S';
1310         status = acpi_get_handle(device->handle, pathname, &handle);
1311         if (ACPI_SUCCESS(status))
1312                 ps->flags.explicit_set = 1;
1313
1314         /*
1315          * State is valid if there are means to put the device into it.
1316          * D3hot is only valid if _PR3 present.
1317          */
1318         if (!list_empty(&ps->resources)
1319             || (ps->flags.explicit_set && state < ACPI_STATE_D3_HOT)) {
1320                 ps->flags.valid = 1;
1321                 ps->flags.os_accessible = 1;
1322         }
1323
1324         ps->power = -1;         /* Unknown - driver assigned */
1325         ps->latency = -1;       /* Unknown - driver assigned */
1326 }
1327
1328 static void acpi_bus_get_power_flags(struct acpi_device *device)
1329 {
1330         acpi_status status;
1331         acpi_handle handle;
1332         u32 i;
1333
1334         /* Presence of _PS0|_PR0 indicates 'power manageable' */
1335         status = acpi_get_handle(device->handle, "_PS0", &handle);
1336         if (ACPI_FAILURE(status)) {
1337                 status = acpi_get_handle(device->handle, "_PR0", &handle);
1338                 if (ACPI_FAILURE(status))
1339                         return;
1340         }
1341
1342         device->flags.power_manageable = 1;
1343
1344         /*
1345          * Power Management Flags
1346          */
1347         status = acpi_get_handle(device->handle, "_PSC", &handle);
1348         if (ACPI_SUCCESS(status))
1349                 device->power.flags.explicit_get = 1;
1350         status = acpi_get_handle(device->handle, "_IRC", &handle);
1351         if (ACPI_SUCCESS(status))
1352                 device->power.flags.inrush_current = 1;
1353
1354         /*
1355          * Enumerate supported power management states
1356          */
1357         for (i = ACPI_STATE_D0; i <= ACPI_STATE_D3_HOT; i++)
1358                 acpi_bus_init_power_state(device, i);
1359
1360         INIT_LIST_HEAD(&device->power.states[ACPI_STATE_D3_COLD].resources);
1361
1362         /* Set defaults for D0 and D3 states (always valid) */
1363         device->power.states[ACPI_STATE_D0].flags.valid = 1;
1364         device->power.states[ACPI_STATE_D0].power = 100;
1365         device->power.states[ACPI_STATE_D3].flags.valid = 1;
1366         device->power.states[ACPI_STATE_D3].power = 0;
1367
1368         /* Set D3cold's explicit_set flag if _PS3 exists. */
1369         if (device->power.states[ACPI_STATE_D3_HOT].flags.explicit_set)
1370                 device->power.states[ACPI_STATE_D3_COLD].flags.explicit_set = 1;
1371
1372         /* Presence of _PS3 or _PRx means we can put the device into D3 cold */
1373         if (device->power.states[ACPI_STATE_D3_HOT].flags.explicit_set ||
1374                         device->power.flags.power_resources)
1375                 device->power.states[ACPI_STATE_D3_COLD].flags.os_accessible = 1;
1376
1377         if (acpi_bus_init_power(device)) {
1378                 acpi_free_power_resources_lists(device);
1379                 device->flags.power_manageable = 0;
1380         }
1381 }
1382
1383 static void acpi_bus_get_flags(struct acpi_device *device)
1384 {
1385         acpi_status status = AE_OK;
1386         acpi_handle temp = NULL;
1387
1388         /* Presence of _STA indicates 'dynamic_status' */
1389         status = acpi_get_handle(device->handle, "_STA", &temp);
1390         if (ACPI_SUCCESS(status))
1391                 device->flags.dynamic_status = 1;
1392
1393         /* Presence of _RMV indicates 'removable' */
1394         status = acpi_get_handle(device->handle, "_RMV", &temp);
1395         if (ACPI_SUCCESS(status))
1396                 device->flags.removable = 1;
1397
1398         /* Presence of _EJD|_EJ0 indicates 'ejectable' */
1399         status = acpi_get_handle(device->handle, "_EJD", &temp);
1400         if (ACPI_SUCCESS(status))
1401                 device->flags.ejectable = 1;
1402         else {
1403                 status = acpi_get_handle(device->handle, "_EJ0", &temp);
1404                 if (ACPI_SUCCESS(status))
1405                         device->flags.ejectable = 1;
1406         }
1407 }
1408
1409 static void acpi_device_get_busid(struct acpi_device *device)
1410 {
1411         char bus_id[5] = { '?', 0 };
1412         struct acpi_buffer buffer = { sizeof(bus_id), bus_id };
1413         int i = 0;
1414
1415         /*
1416          * Bus ID
1417          * ------
1418          * The device's Bus ID is simply the object name.
1419          * TBD: Shouldn't this value be unique (within the ACPI namespace)?
1420          */
1421         if (ACPI_IS_ROOT_DEVICE(device)) {
1422                 strcpy(device->pnp.bus_id, "ACPI");
1423                 return;
1424         }
1425
1426         switch (device->device_type) {
1427         case ACPI_BUS_TYPE_POWER_BUTTON:
1428                 strcpy(device->pnp.bus_id, "PWRF");
1429                 break;
1430         case ACPI_BUS_TYPE_SLEEP_BUTTON:
1431                 strcpy(device->pnp.bus_id, "SLPF");
1432                 break;
1433         default:
1434                 acpi_get_name(device->handle, ACPI_SINGLE_NAME, &buffer);
1435                 /* Clean up trailing underscores (if any) */
1436                 for (i = 3; i > 1; i--) {
1437                         if (bus_id[i] == '_')
1438                                 bus_id[i] = '\0';
1439                         else
1440                                 break;
1441                 }
1442                 strcpy(device->pnp.bus_id, bus_id);
1443                 break;
1444         }
1445 }
1446
1447 /*
1448  * acpi_bay_match - see if an acpi object is an ejectable driver bay
1449  *
1450  * If an acpi object is ejectable and has one of the ACPI ATA methods defined,
1451  * then we can safely call it an ejectable drive bay
1452  */
1453 static int acpi_bay_match(acpi_handle handle)
1454 {
1455         acpi_status status;
1456         acpi_handle tmp;
1457         acpi_handle phandle;
1458
1459         status = acpi_get_handle(handle, "_EJ0", &tmp);
1460         if (ACPI_FAILURE(status))
1461                 return -ENODEV;
1462
1463         if ((ACPI_SUCCESS(acpi_get_handle(handle, "_GTF", &tmp))) ||
1464                 (ACPI_SUCCESS(acpi_get_handle(handle, "_GTM", &tmp))) ||
1465                 (ACPI_SUCCESS(acpi_get_handle(handle, "_STM", &tmp))) ||
1466                 (ACPI_SUCCESS(acpi_get_handle(handle, "_SDD", &tmp))))
1467                 return 0;
1468
1469         if (acpi_get_parent(handle, &phandle))
1470                 return -ENODEV;
1471
1472         if ((ACPI_SUCCESS(acpi_get_handle(phandle, "_GTF", &tmp))) ||
1473                 (ACPI_SUCCESS(acpi_get_handle(phandle, "_GTM", &tmp))) ||
1474                 (ACPI_SUCCESS(acpi_get_handle(phandle, "_STM", &tmp))) ||
1475                 (ACPI_SUCCESS(acpi_get_handle(phandle, "_SDD", &tmp))))
1476                 return 0;
1477
1478         return -ENODEV;
1479 }
1480
1481 /*
1482  * acpi_dock_match - see if an acpi object has a _DCK method
1483  */
1484 static int acpi_dock_match(acpi_handle handle)
1485 {
1486         acpi_handle tmp;
1487         return acpi_get_handle(handle, "_DCK", &tmp);
1488 }
1489
1490 const char *acpi_device_hid(struct acpi_device *device)
1491 {
1492         struct acpi_hardware_id *hid;
1493
1494         if (list_empty(&device->pnp.ids))
1495                 return dummy_hid;
1496
1497         hid = list_first_entry(&device->pnp.ids, struct acpi_hardware_id, list);
1498         return hid->id;
1499 }
1500 EXPORT_SYMBOL(acpi_device_hid);
1501
1502 static void acpi_add_id(struct acpi_device_pnp *pnp, const char *dev_id)
1503 {
1504         struct acpi_hardware_id *id;
1505
1506         id = kmalloc(sizeof(*id), GFP_KERNEL);
1507         if (!id)
1508                 return;
1509
1510         id->id = kstrdup(dev_id, GFP_KERNEL);
1511         if (!id->id) {
1512                 kfree(id);
1513                 return;
1514         }
1515
1516         list_add_tail(&id->list, &pnp->ids);
1517         pnp->type.hardware_id = 1;
1518 }
1519
1520 /*
1521  * Old IBM workstations have a DSDT bug wherein the SMBus object
1522  * lacks the SMBUS01 HID and the methods do not have the necessary "_"
1523  * prefix.  Work around this.
1524  */
1525 static int acpi_ibm_smbus_match(acpi_handle handle)
1526 {
1527         acpi_handle h_dummy;
1528         struct acpi_buffer path = {ACPI_ALLOCATE_BUFFER, NULL};
1529         int result;
1530
1531         if (!dmi_name_in_vendors("IBM"))
1532                 return -ENODEV;
1533
1534         /* Look for SMBS object */
1535         result = acpi_get_name(handle, ACPI_SINGLE_NAME, &path);
1536         if (result)
1537                 return result;
1538
1539         if (strcmp("SMBS", path.pointer)) {
1540                 result = -ENODEV;
1541                 goto out;
1542         }
1543
1544         /* Does it have the necessary (but misnamed) methods? */
1545         result = -ENODEV;
1546         if (ACPI_SUCCESS(acpi_get_handle(handle, "SBI", &h_dummy)) &&
1547             ACPI_SUCCESS(acpi_get_handle(handle, "SBR", &h_dummy)) &&
1548             ACPI_SUCCESS(acpi_get_handle(handle, "SBW", &h_dummy)))
1549                 result = 0;
1550 out:
1551         kfree(path.pointer);
1552         return result;
1553 }
1554
1555 static void acpi_set_pnp_ids(acpi_handle handle, struct acpi_device_pnp *pnp,
1556                                 int device_type)
1557 {
1558         acpi_status status;
1559         struct acpi_device_info *info;
1560         struct acpi_pnp_device_id_list *cid_list;
1561         int i;
1562
1563         switch (device_type) {
1564         case ACPI_BUS_TYPE_DEVICE:
1565                 if (handle == ACPI_ROOT_OBJECT) {
1566                         acpi_add_id(pnp, ACPI_SYSTEM_HID);
1567                         break;
1568                 }
1569
1570                 status = acpi_get_object_info(handle, &info);
1571                 if (ACPI_FAILURE(status)) {
1572                         pr_err(PREFIX "%s: Error reading device info\n",
1573                                         __func__);
1574                         return;
1575                 }
1576
1577                 if (info->valid & ACPI_VALID_HID)
1578                         acpi_add_id(pnp, info->hardware_id.string);
1579                 if (info->valid & ACPI_VALID_CID) {
1580                         cid_list = &info->compatible_id_list;
1581                         for (i = 0; i < cid_list->count; i++)
1582                                 acpi_add_id(pnp, cid_list->ids[i].string);
1583                 }
1584                 if (info->valid & ACPI_VALID_ADR) {
1585                         pnp->bus_address = info->address;
1586                         pnp->type.bus_address = 1;
1587                 }
1588                 if (info->valid & ACPI_VALID_UID)
1589                         pnp->unique_id = kstrdup(info->unique_id.string,
1590                                                         GFP_KERNEL);
1591
1592                 kfree(info);
1593
1594                 /*
1595                  * Some devices don't reliably have _HIDs & _CIDs, so add
1596                  * synthetic HIDs to make sure drivers can find them.
1597                  */
1598                 if (acpi_is_video_device(handle))
1599                         acpi_add_id(pnp, ACPI_VIDEO_HID);
1600                 else if (ACPI_SUCCESS(acpi_bay_match(handle)))
1601                         acpi_add_id(pnp, ACPI_BAY_HID);
1602                 else if (ACPI_SUCCESS(acpi_dock_match(handle)))
1603                         acpi_add_id(pnp, ACPI_DOCK_HID);
1604                 else if (!acpi_ibm_smbus_match(handle))
1605                         acpi_add_id(pnp, ACPI_SMBUS_IBM_HID);
1606                 else if (list_empty(&pnp->ids) && handle == ACPI_ROOT_OBJECT) {
1607                         acpi_add_id(pnp, ACPI_BUS_HID); /* \_SB, LNXSYBUS */
1608                         strcpy(pnp->device_name, ACPI_BUS_DEVICE_NAME);
1609                         strcpy(pnp->device_class, ACPI_BUS_CLASS);
1610                 }
1611
1612                 break;
1613         case ACPI_BUS_TYPE_POWER:
1614                 acpi_add_id(pnp, ACPI_POWER_HID);
1615                 break;
1616         case ACPI_BUS_TYPE_PROCESSOR:
1617                 acpi_add_id(pnp, ACPI_PROCESSOR_OBJECT_HID);
1618                 break;
1619         case ACPI_BUS_TYPE_THERMAL:
1620                 acpi_add_id(pnp, ACPI_THERMAL_HID);
1621                 break;
1622         case ACPI_BUS_TYPE_POWER_BUTTON:
1623                 acpi_add_id(pnp, ACPI_BUTTON_HID_POWERF);
1624                 break;
1625         case ACPI_BUS_TYPE_SLEEP_BUTTON:
1626                 acpi_add_id(pnp, ACPI_BUTTON_HID_SLEEPF);
1627                 break;
1628         }
1629 }
1630
1631 void acpi_free_pnp_ids(struct acpi_device_pnp *pnp)
1632 {
1633         struct acpi_hardware_id *id, *tmp;
1634
1635         list_for_each_entry_safe(id, tmp, &pnp->ids, list) {
1636                 kfree(id->id);
1637                 kfree(id);
1638         }
1639         kfree(pnp->unique_id);
1640 }
1641
1642 void acpi_init_device_object(struct acpi_device *device, acpi_handle handle,
1643                              int type, unsigned long long sta)
1644 {
1645         INIT_LIST_HEAD(&device->pnp.ids);
1646         device->device_type = type;
1647         device->handle = handle;
1648         device->parent = acpi_bus_get_parent(handle);
1649         STRUCT_TO_INT(device->status) = sta;
1650         acpi_device_get_busid(device);
1651         acpi_set_pnp_ids(handle, &device->pnp, type);
1652         acpi_bus_get_flags(device);
1653         device->flags.match_driver = false;
1654         device_initialize(&device->dev);
1655         dev_set_uevent_suppress(&device->dev, true);
1656 }
1657
1658 void acpi_device_add_finalize(struct acpi_device *device)
1659 {
1660         device->flags.match_driver = true;
1661         dev_set_uevent_suppress(&device->dev, false);
1662         kobject_uevent(&device->dev.kobj, KOBJ_ADD);
1663 }
1664
1665 static int acpi_add_single_object(struct acpi_device **child,
1666                                   acpi_handle handle, int type,
1667                                   unsigned long long sta)
1668 {
1669         int result;
1670         struct acpi_device *device;
1671         struct acpi_buffer buffer = { ACPI_ALLOCATE_BUFFER, NULL };
1672
1673         device = kzalloc(sizeof(struct acpi_device), GFP_KERNEL);
1674         if (!device) {
1675                 printk(KERN_ERR PREFIX "Memory allocation error\n");
1676                 return -ENOMEM;
1677         }
1678
1679         acpi_init_device_object(device, handle, type, sta);
1680         acpi_bus_get_power_flags(device);
1681         acpi_bus_get_wakeup_device_flags(device);
1682
1683         result = acpi_device_add(device, acpi_device_release);
1684         if (result) {
1685                 acpi_device_release(&device->dev);
1686                 return result;
1687         }
1688
1689         acpi_power_add_remove_device(device, true);
1690         acpi_device_add_finalize(device);
1691         acpi_get_name(handle, ACPI_FULL_PATHNAME, &buffer);
1692         ACPI_DEBUG_PRINT((ACPI_DB_INFO, "Added %s [%s] parent %s\n",
1693                 dev_name(&device->dev), (char *) buffer.pointer,
1694                 device->parent ? dev_name(&device->parent->dev) : "(null)"));
1695         kfree(buffer.pointer);
1696         *child = device;
1697         return 0;
1698 }
1699
1700 static int acpi_bus_type_and_status(acpi_handle handle, int *type,
1701                                     unsigned long long *sta)
1702 {
1703         acpi_status status;
1704         acpi_object_type acpi_type;
1705
1706         status = acpi_get_type(handle, &acpi_type);
1707         if (ACPI_FAILURE(status))
1708                 return -ENODEV;
1709
1710         switch (acpi_type) {
1711         case ACPI_TYPE_ANY:             /* for ACPI_ROOT_OBJECT */
1712         case ACPI_TYPE_DEVICE:
1713                 *type = ACPI_BUS_TYPE_DEVICE;
1714                 status = acpi_bus_get_status_handle(handle, sta);
1715                 if (ACPI_FAILURE(status))
1716                         return -ENODEV;
1717                 break;
1718         case ACPI_TYPE_PROCESSOR:
1719                 *type = ACPI_BUS_TYPE_PROCESSOR;
1720                 status = acpi_bus_get_status_handle(handle, sta);
1721                 if (ACPI_FAILURE(status))
1722                         return -ENODEV;
1723                 break;
1724         case ACPI_TYPE_THERMAL:
1725                 *type = ACPI_BUS_TYPE_THERMAL;
1726                 *sta = ACPI_STA_DEFAULT;
1727                 break;
1728         case ACPI_TYPE_POWER:
1729                 *type = ACPI_BUS_TYPE_POWER;
1730                 *sta = ACPI_STA_DEFAULT;
1731                 break;
1732         default:
1733                 return -ENODEV;
1734         }
1735
1736         return 0;
1737 }
1738
1739 static bool acpi_scan_handler_matching(struct acpi_scan_handler *handler,
1740                                        char *idstr,
1741                                        const struct acpi_device_id **matchid)
1742 {
1743         const struct acpi_device_id *devid;
1744
1745         for (devid = handler->ids; devid->id[0]; devid++)
1746                 if (!strcmp((char *)devid->id, idstr)) {
1747                         if (matchid)
1748                                 *matchid = devid;
1749
1750                         return true;
1751                 }
1752
1753         return false;
1754 }
1755
1756 static struct acpi_scan_handler *acpi_scan_match_handler(char *idstr,
1757                                         const struct acpi_device_id **matchid)
1758 {
1759         struct acpi_scan_handler *handler;
1760
1761         list_for_each_entry(handler, &acpi_scan_handlers_list, list_node)
1762                 if (acpi_scan_handler_matching(handler, idstr, matchid))
1763                         return handler;
1764
1765         return NULL;
1766 }
1767
1768 void acpi_scan_hotplug_enabled(struct acpi_hotplug_profile *hotplug, bool val)
1769 {
1770         if (!!hotplug->enabled == !!val)
1771                 return;
1772
1773         mutex_lock(&acpi_scan_lock);
1774
1775         hotplug->enabled = val;
1776
1777         mutex_unlock(&acpi_scan_lock);
1778 }
1779
1780 static void acpi_scan_init_hotplug(acpi_handle handle, int type)
1781 {
1782         struct acpi_device_pnp pnp = {};
1783         struct acpi_hardware_id *hwid;
1784         struct acpi_scan_handler *handler;
1785
1786         INIT_LIST_HEAD(&pnp.ids);
1787         acpi_set_pnp_ids(handle, &pnp, type);
1788
1789         if (!pnp.type.hardware_id)
1790                 goto out;
1791
1792         /*
1793          * This relies on the fact that acpi_install_notify_handler() will not
1794          * install the same notify handler routine twice for the same handle.
1795          */
1796         list_for_each_entry(hwid, &pnp.ids, list) {
1797                 handler = acpi_scan_match_handler(hwid->id, NULL);
1798                 if (handler && !handler->hotplug.ignore) {
1799                         acpi_install_notify_handler(handle, ACPI_SYSTEM_NOTIFY,
1800                                         acpi_hotplug_notify_cb, handler);
1801                         break;
1802                 }
1803         }
1804
1805 out:
1806         acpi_free_pnp_ids(&pnp);
1807 }
1808
1809 static acpi_status acpi_bus_check_add(acpi_handle handle, u32 lvl_not_used,
1810                                       void *not_used, void **return_value)
1811 {
1812         struct acpi_device *device = NULL;
1813         int type;
1814         unsigned long long sta;
1815         acpi_status status;
1816         int result;
1817
1818         acpi_bus_get_device(handle, &device);
1819         if (device)
1820                 goto out;
1821
1822         result = acpi_bus_type_and_status(handle, &type, &sta);
1823         if (result)
1824                 return AE_OK;
1825
1826         if (type == ACPI_BUS_TYPE_POWER) {
1827                 acpi_add_power_resource(handle);
1828                 return AE_OK;
1829         }
1830
1831         acpi_scan_init_hotplug(handle, type);
1832
1833         if (!(sta & ACPI_STA_DEVICE_PRESENT) &&
1834             !(sta & ACPI_STA_DEVICE_FUNCTIONING)) {
1835                 struct acpi_device_wakeup wakeup;
1836                 acpi_handle temp;
1837
1838                 status = acpi_get_handle(handle, "_PRW", &temp);
1839                 if (ACPI_SUCCESS(status)) {
1840                         acpi_bus_extract_wakeup_device_power_package(handle,
1841                                                                      &wakeup);
1842                         acpi_power_resources_list_free(&wakeup.resources);
1843                 }
1844                 return AE_CTRL_DEPTH;
1845         }
1846
1847         acpi_add_single_object(&device, handle, type, sta);
1848         if (!device)
1849                 return AE_CTRL_DEPTH;
1850
1851  out:
1852         if (!*return_value)
1853                 *return_value = device;
1854
1855         return AE_OK;
1856 }
1857
1858 static int acpi_scan_attach_handler(struct acpi_device *device)
1859 {
1860         struct acpi_hardware_id *hwid;
1861         int ret = 0;
1862
1863         list_for_each_entry(hwid, &device->pnp.ids, list) {
1864                 const struct acpi_device_id *devid;
1865                 struct acpi_scan_handler *handler;
1866
1867                 handler = acpi_scan_match_handler(hwid->id, &devid);
1868                 if (handler) {
1869                         ret = handler->attach(device, devid);
1870                         if (ret > 0) {
1871                                 device->handler = handler;
1872                                 break;
1873                         } else if (ret < 0) {
1874                                 break;
1875                         }
1876                 }
1877         }
1878         return ret;
1879 }
1880
1881 static acpi_status acpi_bus_device_attach(acpi_handle handle, u32 lvl_not_used,
1882                                           void *not_used, void **ret_not_used)
1883 {
1884         struct acpi_device *device;
1885         unsigned long long sta_not_used;
1886         int ret;
1887
1888         /*
1889          * Ignore errors ignored by acpi_bus_check_add() to avoid terminating
1890          * namespace walks prematurely.
1891          */
1892         if (acpi_bus_type_and_status(handle, &ret, &sta_not_used))
1893                 return AE_OK;
1894
1895         if (acpi_bus_get_device(handle, &device))
1896                 return AE_CTRL_DEPTH;
1897
1898         if (device->handler)
1899                 return AE_OK;
1900
1901         ret = acpi_scan_attach_handler(device);
1902         if (ret)
1903                 return ret > 0 ? AE_OK : AE_CTRL_DEPTH;
1904
1905         ret = device_attach(&device->dev);
1906         return ret >= 0 ? AE_OK : AE_CTRL_DEPTH;
1907 }
1908
1909 /**
1910  * acpi_bus_scan - Add ACPI device node objects in a given namespace scope.
1911  * @handle: Root of the namespace scope to scan.
1912  *
1913  * Scan a given ACPI tree (probably recently hot-plugged) and create and add
1914  * found devices.
1915  *
1916  * If no devices were found, -ENODEV is returned, but it does not mean that
1917  * there has been a real error.  There just have been no suitable ACPI objects
1918  * in the table trunk from which the kernel could create a device and add an
1919  * appropriate driver.
1920  *
1921  * Must be called under acpi_scan_lock.
1922  */
1923 int acpi_bus_scan(acpi_handle handle)
1924 {
1925         void *device = NULL;
1926         int error = 0;
1927
1928         if (ACPI_SUCCESS(acpi_bus_check_add(handle, 0, NULL, &device)))
1929                 acpi_walk_namespace(ACPI_TYPE_ANY, handle, ACPI_UINT32_MAX,
1930                                     acpi_bus_check_add, NULL, NULL, &device);
1931
1932         if (!device)
1933                 error = -ENODEV;
1934         else if (ACPI_SUCCESS(acpi_bus_device_attach(handle, 0, NULL, NULL)))
1935                 acpi_walk_namespace(ACPI_TYPE_ANY, handle, ACPI_UINT32_MAX,
1936                                     acpi_bus_device_attach, NULL, NULL, NULL);
1937
1938         return error;
1939 }
1940 EXPORT_SYMBOL(acpi_bus_scan);
1941
1942 static acpi_status acpi_bus_device_detach(acpi_handle handle, u32 lvl_not_used,
1943                                           void *not_used, void **ret_not_used)
1944 {
1945         struct acpi_device *device = NULL;
1946
1947         if (!acpi_bus_get_device(handle, &device)) {
1948                 struct acpi_scan_handler *dev_handler = device->handler;
1949
1950                 device->removal_type = ACPI_BUS_REMOVAL_EJECT;
1951                 if (dev_handler) {
1952                         if (dev_handler->detach)
1953                                 dev_handler->detach(device);
1954
1955                         device->handler = NULL;
1956                 } else {
1957                         device_release_driver(&device->dev);
1958                 }
1959         }
1960         return AE_OK;
1961 }
1962
1963 static acpi_status acpi_bus_remove(acpi_handle handle, u32 lvl_not_used,
1964                                    void *not_used, void **ret_not_used)
1965 {
1966         struct acpi_device *device = NULL;
1967
1968         if (!acpi_bus_get_device(handle, &device))
1969                 acpi_device_unregister(device);
1970
1971         return AE_OK;
1972 }
1973
1974 /**
1975  * acpi_bus_trim - Remove ACPI device node and all of its descendants
1976  * @start: Root of the ACPI device nodes subtree to remove.
1977  *
1978  * Must be called under acpi_scan_lock.
1979  */
1980 void acpi_bus_trim(struct acpi_device *start)
1981 {
1982         /*
1983          * Execute acpi_bus_device_detach() as a post-order callback to detach
1984          * all ACPI drivers from the device nodes being removed.
1985          */
1986         acpi_walk_namespace(ACPI_TYPE_ANY, start->handle, ACPI_UINT32_MAX, NULL,
1987                             acpi_bus_device_detach, NULL, NULL);
1988         acpi_bus_device_detach(start->handle, 0, NULL, NULL);
1989         /*
1990          * Execute acpi_bus_remove() as a post-order callback to remove device
1991          * nodes in the given namespace scope.
1992          */
1993         acpi_walk_namespace(ACPI_TYPE_ANY, start->handle, ACPI_UINT32_MAX, NULL,
1994                             acpi_bus_remove, NULL, NULL);
1995         acpi_bus_remove(start->handle, 0, NULL, NULL);
1996 }
1997 EXPORT_SYMBOL_GPL(acpi_bus_trim);
1998
1999 static int acpi_bus_scan_fixed(void)
2000 {
2001         int result = 0;
2002
2003         /*
2004          * Enumerate all fixed-feature devices.
2005          */
2006         if (!(acpi_gbl_FADT.flags & ACPI_FADT_POWER_BUTTON)) {
2007                 struct acpi_device *device = NULL;
2008
2009                 result = acpi_add_single_object(&device, NULL,
2010                                                 ACPI_BUS_TYPE_POWER_BUTTON,
2011                                                 ACPI_STA_DEFAULT);
2012                 if (result)
2013                         return result;
2014
2015                 result = device_attach(&device->dev);
2016                 if (result < 0)
2017                         return result;
2018
2019                 device_init_wakeup(&device->dev, true);
2020         }
2021
2022         if (!(acpi_gbl_FADT.flags & ACPI_FADT_SLEEP_BUTTON)) {
2023                 struct acpi_device *device = NULL;
2024
2025                 result = acpi_add_single_object(&device, NULL,
2026                                                 ACPI_BUS_TYPE_SLEEP_BUTTON,
2027                                                 ACPI_STA_DEFAULT);
2028                 if (result)
2029                         return result;
2030
2031                 result = device_attach(&device->dev);
2032         }
2033
2034         return result < 0 ? result : 0;
2035 }
2036
2037 int __init acpi_scan_init(void)
2038 {
2039         int result;
2040
2041         result = bus_register(&acpi_bus_type);
2042         if (result) {
2043                 /* We don't want to quit even if we failed to add suspend/resume */
2044                 printk(KERN_ERR PREFIX "Could not register bus type\n");
2045         }
2046
2047         acpi_pci_root_init();
2048         acpi_pci_link_init();
2049         acpi_platform_init();
2050         acpi_lpss_init();
2051         acpi_cmos_rtc_init();
2052         acpi_container_init();
2053         acpi_memory_hotplug_init();
2054         acpi_dock_init();
2055
2056         mutex_lock(&acpi_scan_lock);
2057         /*
2058          * Enumerate devices in the ACPI namespace.
2059          */
2060         result = acpi_bus_scan(ACPI_ROOT_OBJECT);
2061         if (result)
2062                 goto out;
2063
2064         result = acpi_bus_get_device(ACPI_ROOT_OBJECT, &acpi_root);
2065         if (result)
2066                 goto out;
2067
2068         result = acpi_bus_scan_fixed();
2069         if (result) {
2070                 acpi_device_unregister(acpi_root);
2071                 goto out;
2072         }
2073
2074         acpi_update_all_gpes();
2075
2076         acpi_pci_root_hp_init();
2077
2078  out:
2079         mutex_unlock(&acpi_scan_lock);
2080         return result;
2081 }