blob: cb79dfbbd5b9aaedbfc49b217f0cab36dcb9e0b3 [file] [log] [blame]
Tom Rini83d290c2018-05-06 17:58:06 -04001// SPDX-License-Identifier: GPL-2.0+
Simon Glassde312132015-03-25 12:21:59 -06002/*
3 * (C) Copyright 2015 Google, Inc
4 * Written by Simon Glass <sjg@chromium.org>
5 *
Simon Glass0566e242015-03-25 12:22:30 -06006 * usb_match_device() modified from Linux kernel v4.0.
Simon Glassde312132015-03-25 12:21:59 -06007 */
8
9#include <common.h>
10#include <dm.h>
11#include <errno.h>
Simon Glassf7ae49f2020-05-10 11:40:05 -060012#include <log.h>
Simon Glasscf92e052015-09-02 17:24:58 -060013#include <memalign.h>
Simon Glassde312132015-03-25 12:21:59 -060014#include <usb.h>
15#include <dm/device-internal.h>
16#include <dm/lists.h>
Simon Glassde312132015-03-25 12:21:59 -060017#include <dm/uclass-internal.h>
18
Simon Glassde312132015-03-25 12:21:59 -060019extern bool usb_started; /* flag for the started/stopped USB status */
20static bool asynch_allowed;
21
Hans de Goedee2536372015-05-10 14:10:21 +020022struct usb_uclass_priv {
23 int companion_device_count;
24};
25
Marek Vasut31232de2020-04-06 14:29:44 +020026int usb_lock_async(struct usb_device *udev, int lock)
27{
28 struct udevice *bus = udev->controller_dev;
29 struct dm_usb_ops *ops = usb_get_ops(bus);
30
31 if (!ops->lock_async)
32 return -ENOSYS;
33
34 return ops->lock_async(bus, lock);
35}
36
Simon Glassde312132015-03-25 12:21:59 -060037int usb_disable_asynch(int disable)
38{
39 int old_value = asynch_allowed;
40
41 asynch_allowed = !disable;
42 return old_value;
43}
44
45int submit_int_msg(struct usb_device *udev, unsigned long pipe, void *buffer,
Michal Suchanek34371212019-08-18 10:55:27 +020046 int length, int interval, bool nonblock)
Simon Glassde312132015-03-25 12:21:59 -060047{
48 struct udevice *bus = udev->controller_dev;
49 struct dm_usb_ops *ops = usb_get_ops(bus);
50
51 if (!ops->interrupt)
52 return -ENOSYS;
53
Michal Suchanek34371212019-08-18 10:55:27 +020054 return ops->interrupt(bus, udev, pipe, buffer, length, interval,
55 nonblock);
Simon Glassde312132015-03-25 12:21:59 -060056}
57
58int submit_control_msg(struct usb_device *udev, unsigned long pipe,
59 void *buffer, int length, struct devrequest *setup)
60{
61 struct udevice *bus = udev->controller_dev;
62 struct dm_usb_ops *ops = usb_get_ops(bus);
Hans de Goedee2536372015-05-10 14:10:21 +020063 struct usb_uclass_priv *uc_priv = bus->uclass->priv;
64 int err;
Simon Glassde312132015-03-25 12:21:59 -060065
66 if (!ops->control)
67 return -ENOSYS;
68
Hans de Goedee2536372015-05-10 14:10:21 +020069 err = ops->control(bus, udev, pipe, buffer, length, setup);
70 if (setup->request == USB_REQ_SET_FEATURE &&
71 setup->requesttype == USB_RT_PORT &&
72 setup->value == cpu_to_le16(USB_PORT_FEAT_RESET) &&
73 err == -ENXIO) {
74 /* Device handed over to companion after port reset */
75 uc_priv->companion_device_count++;
76 }
77
78 return err;
Simon Glassde312132015-03-25 12:21:59 -060079}
80
81int submit_bulk_msg(struct usb_device *udev, unsigned long pipe, void *buffer,
82 int length)
83{
84 struct udevice *bus = udev->controller_dev;
85 struct dm_usb_ops *ops = usb_get_ops(bus);
86
87 if (!ops->bulk)
88 return -ENOSYS;
89
90 return ops->bulk(bus, udev, pipe, buffer, length);
91}
92
Hans de Goede8a5f0662015-05-10 14:10:18 +020093struct int_queue *create_int_queue(struct usb_device *udev,
94 unsigned long pipe, int queuesize, int elementsize,
95 void *buffer, int interval)
96{
97 struct udevice *bus = udev->controller_dev;
98 struct dm_usb_ops *ops = usb_get_ops(bus);
99
100 if (!ops->create_int_queue)
101 return NULL;
102
103 return ops->create_int_queue(bus, udev, pipe, queuesize, elementsize,
104 buffer, interval);
105}
106
107void *poll_int_queue(struct usb_device *udev, struct int_queue *queue)
108{
109 struct udevice *bus = udev->controller_dev;
110 struct dm_usb_ops *ops = usb_get_ops(bus);
111
112 if (!ops->poll_int_queue)
113 return NULL;
114
115 return ops->poll_int_queue(bus, udev, queue);
116}
117
118int destroy_int_queue(struct usb_device *udev, struct int_queue *queue)
119{
120 struct udevice *bus = udev->controller_dev;
121 struct dm_usb_ops *ops = usb_get_ops(bus);
122
123 if (!ops->destroy_int_queue)
124 return -ENOSYS;
125
126 return ops->destroy_int_queue(bus, udev, queue);
127}
128
Simon Glassde312132015-03-25 12:21:59 -0600129int usb_alloc_device(struct usb_device *udev)
130{
131 struct udevice *bus = udev->controller_dev;
132 struct dm_usb_ops *ops = usb_get_ops(bus);
133
134 /* This is only requird by some controllers - current XHCI */
135 if (!ops->alloc_device)
136 return 0;
137
138 return ops->alloc_device(bus, udev);
139}
140
Hans de Goedeb2f219b2015-06-17 21:33:52 +0200141int usb_reset_root_port(struct usb_device *udev)
142{
143 struct udevice *bus = udev->controller_dev;
144 struct dm_usb_ops *ops = usb_get_ops(bus);
145
146 if (!ops->reset_root_port)
147 return -ENOSYS;
148
149 return ops->reset_root_port(bus, udev);
150}
151
Bin Meng9ca1b4b2017-07-19 21:51:17 +0800152int usb_update_hub_device(struct usb_device *udev)
153{
154 struct udevice *bus = udev->controller_dev;
155 struct dm_usb_ops *ops = usb_get_ops(bus);
156
157 if (!ops->update_hub_device)
158 return -ENOSYS;
159
160 return ops->update_hub_device(bus, udev);
161}
162
Bin Meng3e59f592017-09-07 06:13:17 -0700163int usb_get_max_xfer_size(struct usb_device *udev, size_t *size)
164{
165 struct udevice *bus = udev->controller_dev;
166 struct dm_usb_ops *ops = usb_get_ops(bus);
167
168 if (!ops->get_max_xfer_size)
169 return -ENOSYS;
170
171 return ops->get_max_xfer_size(bus, size);
172}
173
Simon Glassde312132015-03-25 12:21:59 -0600174int usb_stop(void)
175{
176 struct udevice *bus;
Bin Mengd4efefe2017-10-01 06:19:42 -0700177 struct udevice *rh;
Simon Glassde312132015-03-25 12:21:59 -0600178 struct uclass *uc;
Hans de Goedee2536372015-05-10 14:10:21 +0200179 struct usb_uclass_priv *uc_priv;
Simon Glassde312132015-03-25 12:21:59 -0600180 int err = 0, ret;
181
182 /* De-activate any devices that have been activated */
183 ret = uclass_get(UCLASS_USB, &uc);
184 if (ret)
185 return ret;
Hans de Goedee2536372015-05-10 14:10:21 +0200186
187 uc_priv = uc->priv;
188
Simon Glassde312132015-03-25 12:21:59 -0600189 uclass_foreach_dev(bus, uc) {
Stefan Roese706865a2017-03-20 12:51:48 +0100190 ret = device_remove(bus, DM_REMOVE_NORMAL);
Simon Glassde312132015-03-25 12:21:59 -0600191 if (ret && !err)
192 err = ret;
Bin Mengd4efefe2017-10-01 06:19:42 -0700193
194 /* Locate root hub device */
195 device_find_first_child(bus, &rh);
196 if (rh) {
197 /*
198 * All USB devices are children of root hub.
199 * Unbinding root hub will unbind all of its children.
200 */
201 ret = device_unbind(rh);
202 if (ret && !err)
203 err = ret;
204 }
Simon Glassde312132015-03-25 12:21:59 -0600205 }
Bin Mengad0a9372017-10-01 06:19:43 -0700206
Paul Kocialkowski0fa59992015-08-04 17:04:12 +0200207#ifdef CONFIG_USB_STORAGE
Simon Glassde312132015-03-25 12:21:59 -0600208 usb_stor_reset();
Paul Kocialkowski0fa59992015-08-04 17:04:12 +0200209#endif
Hans de Goedee2536372015-05-10 14:10:21 +0200210 uc_priv->companion_device_count = 0;
Simon Glassde312132015-03-25 12:21:59 -0600211 usb_started = 0;
212
213 return err;
214}
215
Hans de Goedea24a0e92015-05-10 14:10:19 +0200216static void usb_scan_bus(struct udevice *bus, bool recurse)
Simon Glassde312132015-03-25 12:21:59 -0600217{
218 struct usb_bus_priv *priv;
219 struct udevice *dev;
220 int ret;
221
222 priv = dev_get_uclass_priv(bus);
223
224 assert(recurse); /* TODO: Support non-recusive */
225
Ismael Luceno Cortes89aea232019-03-19 09:19:44 +0000226 printf("scanning bus %s for devices... ", bus->name);
Hans de Goedea24a0e92015-05-10 14:10:19 +0200227 debug("\n");
Simon Glassde312132015-03-25 12:21:59 -0600228 ret = usb_scan_device(bus, 0, USB_SPEED_FULL, &dev);
229 if (ret)
Hans de Goedea24a0e92015-05-10 14:10:19 +0200230 printf("failed, error %d\n", ret);
231 else if (priv->next_addr == 0)
232 printf("No USB Device found\n");
233 else
234 printf("%d USB Device(s) found\n", priv->next_addr);
Simon Glassde312132015-03-25 12:21:59 -0600235}
236
Simon Glasseae11be2015-11-08 23:48:00 -0700237static void remove_inactive_children(struct uclass *uc, struct udevice *bus)
238{
239 uclass_foreach_dev(bus, uc) {
240 struct udevice *dev, *next;
241
242 if (!device_active(bus))
243 continue;
244 device_foreach_child_safe(dev, next, bus) {
245 if (!device_active(dev))
246 device_unbind(dev);
247 }
248 }
249}
250
Simon Glassde312132015-03-25 12:21:59 -0600251int usb_init(void)
252{
253 int controllers_initialized = 0;
Hans de Goedee2536372015-05-10 14:10:21 +0200254 struct usb_uclass_priv *uc_priv;
Hans de Goedeb6de4d12015-05-10 14:10:20 +0200255 struct usb_bus_priv *priv;
Simon Glassde312132015-03-25 12:21:59 -0600256 struct udevice *bus;
257 struct uclass *uc;
Simon Glassde312132015-03-25 12:21:59 -0600258 int ret;
259
260 asynch_allowed = 1;
Simon Glassde312132015-03-25 12:21:59 -0600261
262 ret = uclass_get(UCLASS_USB, &uc);
263 if (ret)
264 return ret;
265
Hans de Goedee2536372015-05-10 14:10:21 +0200266 uc_priv = uc->priv;
267
Simon Glassde312132015-03-25 12:21:59 -0600268 uclass_foreach_dev(bus, uc) {
269 /* init low_level USB */
Ismael Luceno Cortes89aea232019-03-19 09:19:44 +0000270 printf("Bus %s: ", bus->name);
Bin Mengd4efefe2017-10-01 06:19:42 -0700271
272#ifdef CONFIG_SANDBOX
273 /*
274 * For Sandbox, we need scan the device tree each time when we
275 * start the USB stack, in order to re-create the emulated USB
276 * devices and bind drivers for them before we actually do the
277 * driver probe.
278 */
279 ret = dm_scan_fdt_dev(bus);
280 if (ret) {
281 printf("Sandbox USB device scan failed (%d)\n", ret);
282 continue;
283 }
284#endif
285
Simon Glassde312132015-03-25 12:21:59 -0600286 ret = device_probe(bus);
287 if (ret == -ENODEV) { /* No such device. */
288 puts("Port not available.\n");
289 controllers_initialized++;
290 continue;
291 }
292
293 if (ret) { /* Other error. */
294 printf("probe failed, error %d\n", ret);
295 continue;
296 }
Simon Glassde312132015-03-25 12:21:59 -0600297 controllers_initialized++;
Simon Glassde312132015-03-25 12:21:59 -0600298 usb_started = true;
299 }
300
Hans de Goedeb6de4d12015-05-10 14:10:20 +0200301 /*
302 * lowlevel init done, now scan the bus for devices i.e. search HUBs
303 * and configure them, first scan primary controllers.
304 */
305 uclass_foreach_dev(bus, uc) {
306 if (!device_active(bus))
307 continue;
308
309 priv = dev_get_uclass_priv(bus);
310 if (!priv->companion)
311 usb_scan_bus(bus, true);
312 }
313
314 /*
315 * Now that the primary controllers have been scanned and have handed
316 * over any devices they do not understand to their companions, scan
Hans de Goedee2536372015-05-10 14:10:21 +0200317 * the companions if necessary.
Hans de Goedeb6de4d12015-05-10 14:10:20 +0200318 */
Hans de Goedee2536372015-05-10 14:10:21 +0200319 if (uc_priv->companion_device_count) {
320 uclass_foreach_dev(bus, uc) {
321 if (!device_active(bus))
322 continue;
Hans de Goedeb6de4d12015-05-10 14:10:20 +0200323
Hans de Goedee2536372015-05-10 14:10:21 +0200324 priv = dev_get_uclass_priv(bus);
325 if (priv->companion)
326 usb_scan_bus(bus, true);
327 }
Hans de Goedeb6de4d12015-05-10 14:10:20 +0200328 }
329
Simon Glassde312132015-03-25 12:21:59 -0600330 debug("scan end\n");
Simon Glasseae11be2015-11-08 23:48:00 -0700331
332 /* Remove any devices that were not found on this scan */
333 remove_inactive_children(uc, bus);
334
335 ret = uclass_get(UCLASS_USB_HUB, &uc);
336 if (ret)
337 return ret;
338 remove_inactive_children(uc, bus);
339
Simon Glassde312132015-03-25 12:21:59 -0600340 /* if we were not able to find at least one working bus, bail out */
Ismael Luceno Cortes89aea232019-03-19 09:19:44 +0000341 if (controllers_initialized == 0)
342 printf("No working controllers found\n");
Simon Glassde312132015-03-25 12:21:59 -0600343
344 return usb_started ? 0 : -1;
345}
346
Simon Glasse8ea5e82015-11-08 23:47:59 -0700347/*
348 * TODO(sjg@chromium.org): Remove this legacy function. At present it is needed
349 * to support boards which use driver model for USB but not Ethernet, and want
350 * to use USB Ethernet.
351 *
352 * The #if clause is here to ensure that remains the only case.
353 */
354#if !defined(CONFIG_DM_ETH) && defined(CONFIG_USB_HOST_ETHER)
Simon Glassde312132015-03-25 12:21:59 -0600355static struct usb_device *find_child_devnum(struct udevice *parent, int devnum)
356{
357 struct usb_device *udev;
358 struct udevice *dev;
359
360 if (!device_active(parent))
361 return NULL;
Simon Glassbcbe3d12015-09-28 23:32:01 -0600362 udev = dev_get_parent_priv(parent);
Simon Glassde312132015-03-25 12:21:59 -0600363 if (udev->devnum == devnum)
364 return udev;
365
366 for (device_find_first_child(parent, &dev);
367 dev;
368 device_find_next_child(&dev)) {
369 udev = find_child_devnum(dev, devnum);
370 if (udev)
371 return udev;
372 }
373
374 return NULL;
375}
376
377struct usb_device *usb_get_dev_index(struct udevice *bus, int index)
378{
Hans de Goedefd1bd212015-06-17 21:33:53 +0200379 struct udevice *dev;
Simon Glassde312132015-03-25 12:21:59 -0600380 int devnum = index + 1; /* Addresses are allocated from 1 on USB */
381
Hans de Goedefd1bd212015-06-17 21:33:53 +0200382 device_find_first_child(bus, &dev);
383 if (!dev)
384 return NULL;
Simon Glassde312132015-03-25 12:21:59 -0600385
Hans de Goedefd1bd212015-06-17 21:33:53 +0200386 return find_child_devnum(dev, devnum);
Simon Glassde312132015-03-25 12:21:59 -0600387}
Simon Glasse8ea5e82015-11-08 23:47:59 -0700388#endif
Simon Glassde312132015-03-25 12:21:59 -0600389
Simon Glassfbeceb22015-03-25 12:22:32 -0600390int usb_setup_ehci_gadget(struct ehci_ctrl **ctlrp)
391{
392 struct usb_platdata *plat;
393 struct udevice *dev;
394 int ret;
395
396 /* Find the old device and remove it */
397 ret = uclass_find_device_by_seq(UCLASS_USB, 0, true, &dev);
398 if (ret)
399 return ret;
Stefan Roese706865a2017-03-20 12:51:48 +0100400 ret = device_remove(dev, DM_REMOVE_NORMAL);
Simon Glassfbeceb22015-03-25 12:22:32 -0600401 if (ret)
402 return ret;
403
404 plat = dev_get_platdata(dev);
405 plat->init_type = USB_INIT_DEVICE;
406 ret = device_probe(dev);
407 if (ret)
408 return ret;
409 *ctlrp = dev_get_priv(dev);
410
411 return 0;
412}
413
Simon Glass0566e242015-03-25 12:22:30 -0600414/* returns 0 if no match, 1 if match */
Masahiro Yamada121a4d12017-06-22 16:35:14 +0900415static int usb_match_device(const struct usb_device_descriptor *desc,
416 const struct usb_device_id *id)
Simon Glass0566e242015-03-25 12:22:30 -0600417{
418 if ((id->match_flags & USB_DEVICE_ID_MATCH_VENDOR) &&
419 id->idVendor != le16_to_cpu(desc->idVendor))
420 return 0;
421
422 if ((id->match_flags & USB_DEVICE_ID_MATCH_PRODUCT) &&
423 id->idProduct != le16_to_cpu(desc->idProduct))
424 return 0;
425
426 /* No need to test id->bcdDevice_lo != 0, since 0 is never
427 greater than any unsigned number. */
428 if ((id->match_flags & USB_DEVICE_ID_MATCH_DEV_LO) &&
429 (id->bcdDevice_lo > le16_to_cpu(desc->bcdDevice)))
430 return 0;
431
432 if ((id->match_flags & USB_DEVICE_ID_MATCH_DEV_HI) &&
433 (id->bcdDevice_hi < le16_to_cpu(desc->bcdDevice)))
434 return 0;
435
436 if ((id->match_flags & USB_DEVICE_ID_MATCH_DEV_CLASS) &&
437 (id->bDeviceClass != desc->bDeviceClass))
438 return 0;
439
440 if ((id->match_flags & USB_DEVICE_ID_MATCH_DEV_SUBCLASS) &&
441 (id->bDeviceSubClass != desc->bDeviceSubClass))
442 return 0;
443
444 if ((id->match_flags & USB_DEVICE_ID_MATCH_DEV_PROTOCOL) &&
445 (id->bDeviceProtocol != desc->bDeviceProtocol))
446 return 0;
447
448 return 1;
449}
450
451/* returns 0 if no match, 1 if match */
Masahiro Yamada121a4d12017-06-22 16:35:14 +0900452static int usb_match_one_id_intf(const struct usb_device_descriptor *desc,
453 const struct usb_interface_descriptor *int_desc,
454 const struct usb_device_id *id)
Simon Glass0566e242015-03-25 12:22:30 -0600455{
456 /* The interface class, subclass, protocol and number should never be
457 * checked for a match if the device class is Vendor Specific,
458 * unless the match record specifies the Vendor ID. */
459 if (desc->bDeviceClass == USB_CLASS_VENDOR_SPEC &&
460 !(id->match_flags & USB_DEVICE_ID_MATCH_VENDOR) &&
461 (id->match_flags & (USB_DEVICE_ID_MATCH_INT_CLASS |
462 USB_DEVICE_ID_MATCH_INT_SUBCLASS |
463 USB_DEVICE_ID_MATCH_INT_PROTOCOL |
464 USB_DEVICE_ID_MATCH_INT_NUMBER)))
465 return 0;
466
467 if ((id->match_flags & USB_DEVICE_ID_MATCH_INT_CLASS) &&
468 (id->bInterfaceClass != int_desc->bInterfaceClass))
469 return 0;
470
471 if ((id->match_flags & USB_DEVICE_ID_MATCH_INT_SUBCLASS) &&
472 (id->bInterfaceSubClass != int_desc->bInterfaceSubClass))
473 return 0;
474
475 if ((id->match_flags & USB_DEVICE_ID_MATCH_INT_PROTOCOL) &&
476 (id->bInterfaceProtocol != int_desc->bInterfaceProtocol))
477 return 0;
478
479 if ((id->match_flags & USB_DEVICE_ID_MATCH_INT_NUMBER) &&
480 (id->bInterfaceNumber != int_desc->bInterfaceNumber))
481 return 0;
482
483 return 1;
484}
485
486/* returns 0 if no match, 1 if match */
Masahiro Yamada121a4d12017-06-22 16:35:14 +0900487static int usb_match_one_id(struct usb_device_descriptor *desc,
488 struct usb_interface_descriptor *int_desc,
489 const struct usb_device_id *id)
Simon Glass0566e242015-03-25 12:22:30 -0600490{
491 if (!usb_match_device(desc, id))
492 return 0;
493
494 return usb_match_one_id_intf(desc, int_desc, id);
495}
496
497/**
498 * usb_find_and_bind_driver() - Find and bind the right USB driver
499 *
500 * This only looks at certain fields in the descriptor.
501 */
502static int usb_find_and_bind_driver(struct udevice *parent,
503 struct usb_device_descriptor *desc,
504 struct usb_interface_descriptor *iface,
505 int bus_seq, int devnum,
506 struct udevice **devp)
507{
508 struct usb_driver_entry *start, *entry;
509 int n_ents;
510 int ret;
511 char name[30], *str;
512
513 *devp = NULL;
514 debug("%s: Searching for driver\n", __func__);
515 start = ll_entry_start(struct usb_driver_entry, usb_driver_entry);
516 n_ents = ll_entry_count(struct usb_driver_entry, usb_driver_entry);
517 for (entry = start; entry != start + n_ents; entry++) {
518 const struct usb_device_id *id;
519 struct udevice *dev;
520 const struct driver *drv;
521 struct usb_dev_platdata *plat;
522
523 for (id = entry->match; id->match_flags; id++) {
524 if (!usb_match_one_id(desc, iface, id))
525 continue;
526
527 drv = entry->driver;
528 /*
529 * We could pass the descriptor to the driver as
530 * platdata (instead of NULL) and allow its bind()
531 * method to return -ENOENT if it doesn't support this
532 * device. That way we could continue the search to
533 * find another driver. For now this doesn't seem
534 * necesssary, so just bind the first match.
535 */
536 ret = device_bind(parent, drv, drv->name, NULL, -1,
537 &dev);
538 if (ret)
539 goto error;
540 debug("%s: Match found: %s\n", __func__, drv->name);
541 dev->driver_data = id->driver_info;
542 plat = dev_get_parent_platdata(dev);
543 plat->id = *id;
544 *devp = dev;
545 return 0;
546 }
547 }
548
Simon Glass449230f2015-03-25 12:22:31 -0600549 /* Bind a generic driver so that the device can be used */
550 snprintf(name, sizeof(name), "generic_bus_%x_dev_%x", bus_seq, devnum);
551 str = strdup(name);
552 if (!str)
553 return -ENOMEM;
554 ret = device_bind_driver(parent, "usb_dev_generic_drv", str, devp);
555
Simon Glass0566e242015-03-25 12:22:30 -0600556error:
557 debug("%s: No match found: %d\n", __func__, ret);
558 return ret;
559}
560
561/**
Simon Glass1b6a1df2015-11-08 23:47:56 -0700562 * usb_find_child() - Find an existing device which matches our needs
563 *
564 *
Simon Glass0566e242015-03-25 12:22:30 -0600565 */
Simon Glass1b6a1df2015-11-08 23:47:56 -0700566static int usb_find_child(struct udevice *parent,
567 struct usb_device_descriptor *desc,
568 struct usb_interface_descriptor *iface,
569 struct udevice **devp)
Simon Glass0566e242015-03-25 12:22:30 -0600570{
571 struct udevice *dev;
572
573 *devp = NULL;
574 for (device_find_first_child(parent, &dev);
575 dev;
576 device_find_next_child(&dev)) {
577 struct usb_dev_platdata *plat = dev_get_parent_platdata(dev);
578
579 /* If this device is already in use, skip it */
580 if (device_active(dev))
581 continue;
582 debug(" %s: name='%s', plat=%d, desc=%d\n", __func__,
583 dev->name, plat->id.bDeviceClass, desc->bDeviceClass);
584 if (usb_match_one_id(desc, iface, &plat->id)) {
585 *devp = dev;
586 return 0;
587 }
588 }
Simon Glass1b6a1df2015-11-08 23:47:56 -0700589
Simon Glass0566e242015-03-25 12:22:30 -0600590 return -ENOENT;
591}
592
Simon Glassde312132015-03-25 12:21:59 -0600593int usb_scan_device(struct udevice *parent, int port,
594 enum usb_device_speed speed, struct udevice **devp)
595{
596 struct udevice *dev;
597 bool created = false;
598 struct usb_dev_platdata *plat;
599 struct usb_bus_priv *priv;
600 struct usb_device *parent_udev;
601 int ret;
602 ALLOC_CACHE_ALIGN_BUFFER(struct usb_device, udev, 1);
603 struct usb_interface_descriptor *iface = &udev->config.if_desc[0].desc;
604
605 *devp = NULL;
606 memset(udev, '\0', sizeof(*udev));
Hans de Goedef78a5c02015-05-05 11:54:31 +0200607 udev->controller_dev = usb_get_bus(parent);
Simon Glassde312132015-03-25 12:21:59 -0600608 priv = dev_get_uclass_priv(udev->controller_dev);
609
610 /*
611 * Somewhat nasty, this. We create a local device and use the normal
612 * USB stack to read its descriptor. Then we know what type of device
613 * to create for real.
614 *
615 * udev->dev is set to the parent, since we don't have a real device
616 * yet. The USB stack should not access udev.dev anyway, except perhaps
617 * to find the controller, and the controller will either be @parent,
618 * or some parent of @parent.
619 *
620 * Another option might be to create the device as a generic USB
621 * device, then morph it into the correct one when we know what it
622 * should be. This means that a generic USB device would morph into
623 * a network controller, or a USB flash stick, for example. However,
624 * we don't support such morphing and it isn't clear that it would
625 * be easy to do.
626 *
627 * Yet another option is to split out the USB stack parts of udev
628 * into something like a 'struct urb' (as Linux does) which can exist
629 * independently of any device. This feels cleaner, but calls for quite
630 * a big change to the USB stack.
631 *
632 * For now, the approach is to set up an empty udev, read its
633 * descriptor and assign it an address, then bind a real device and
634 * stash the resulting information into the device's parent
635 * platform data. Then when we probe it, usb_child_pre_probe() is called
636 * and it will pull the information out of the stash.
637 */
638 udev->dev = parent;
639 udev->speed = speed;
640 udev->devnum = priv->next_addr + 1;
641 udev->portnr = port;
642 debug("Calling usb_setup_device(), portnr=%d\n", udev->portnr);
643 parent_udev = device_get_uclass_id(parent) == UCLASS_USB_HUB ?
Simon Glassbcbe3d12015-09-28 23:32:01 -0600644 dev_get_parent_priv(parent) : NULL;
Hans de Goede9eb72dd2015-06-17 21:33:46 +0200645 ret = usb_setup_device(udev, priv->desc_before_addr, parent_udev);
Simon Glassde312132015-03-25 12:21:59 -0600646 debug("read_descriptor for '%s': ret=%d\n", parent->name, ret);
647 if (ret)
648 return ret;
Simon Glass1b6a1df2015-11-08 23:47:56 -0700649 ret = usb_find_child(parent, &udev->descriptor, iface, &dev);
650 debug("** usb_find_child returns %d\n", ret);
Simon Glass0566e242015-03-25 12:22:30 -0600651 if (ret) {
652 if (ret != -ENOENT)
653 return ret;
654 ret = usb_find_and_bind_driver(parent, &udev->descriptor, iface,
655 udev->controller_dev->seq,
656 udev->devnum, &dev);
657 if (ret)
658 return ret;
659 created = true;
660 }
661 plat = dev_get_parent_platdata(dev);
662 debug("%s: Probing '%s', plat=%p\n", __func__, dev->name, plat);
663 plat->devnum = udev->devnum;
Hans de Goede7f1a0752015-05-05 11:54:32 +0200664 plat->udev = udev;
Simon Glass0566e242015-03-25 12:22:30 -0600665 priv->next_addr++;
666 ret = device_probe(dev);
667 if (ret) {
668 debug("%s: Device '%s' probe failed\n", __func__, dev->name);
669 priv->next_addr--;
670 if (created)
671 device_unbind(dev);
672 return ret;
673 }
674 *devp = dev;
Simon Glassde312132015-03-25 12:21:59 -0600675
Simon Glass0566e242015-03-25 12:22:30 -0600676 return 0;
Simon Glassde312132015-03-25 12:21:59 -0600677}
678
Simon Glass0c5dd9a2015-05-13 07:02:23 -0600679/*
680 * Detect if a USB device has been plugged or unplugged.
681 */
682int usb_detect_change(void)
683{
684 struct udevice *hub;
685 struct uclass *uc;
686 int change = 0;
687 int ret;
688
689 ret = uclass_get(UCLASS_USB_HUB, &uc);
690 if (ret)
691 return ret;
692
693 uclass_foreach_dev(hub, uc) {
694 struct usb_device *udev;
695 struct udevice *dev;
696
697 if (!device_active(hub))
698 continue;
699 for (device_find_first_child(hub, &dev);
700 dev;
701 device_find_next_child(&dev)) {
702 struct usb_port_status status;
703
704 if (!device_active(dev))
705 continue;
706
Simon Glassbcbe3d12015-09-28 23:32:01 -0600707 udev = dev_get_parent_priv(dev);
Simon Glass0c5dd9a2015-05-13 07:02:23 -0600708 if (usb_get_port_status(udev, udev->portnr, &status)
709 < 0)
710 /* USB request failed */
711 continue;
712
713 if (le16_to_cpu(status.wPortChange) &
714 USB_PORT_STAT_C_CONNECTION)
715 change++;
716 }
717 }
718
719 return change;
720}
721
Masahiro Yamada121a4d12017-06-22 16:35:14 +0900722static int usb_child_post_bind(struct udevice *dev)
Simon Glassde312132015-03-25 12:21:59 -0600723{
724 struct usb_dev_platdata *plat = dev_get_parent_platdata(dev);
Simon Glassde312132015-03-25 12:21:59 -0600725 int val;
726
Simon Glassd20fd272017-05-18 20:09:38 -0600727 if (!dev_of_valid(dev))
Simon Glassde312132015-03-25 12:21:59 -0600728 return 0;
729
730 /* We only support matching a few things */
Simon Glassd20fd272017-05-18 20:09:38 -0600731 val = dev_read_u32_default(dev, "usb,device-class", -1);
Simon Glassde312132015-03-25 12:21:59 -0600732 if (val != -1) {
733 plat->id.match_flags |= USB_DEVICE_ID_MATCH_DEV_CLASS;
734 plat->id.bDeviceClass = val;
735 }
Simon Glassd20fd272017-05-18 20:09:38 -0600736 val = dev_read_u32_default(dev, "usb,interface-class", -1);
Simon Glassde312132015-03-25 12:21:59 -0600737 if (val != -1) {
738 plat->id.match_flags |= USB_DEVICE_ID_MATCH_INT_CLASS;
739 plat->id.bInterfaceClass = val;
740 }
741
742 return 0;
743}
744
Hans de Goedef78a5c02015-05-05 11:54:31 +0200745struct udevice *usb_get_bus(struct udevice *dev)
Simon Glassde312132015-03-25 12:21:59 -0600746{
747 struct udevice *bus;
748
Simon Glassde312132015-03-25 12:21:59 -0600749 for (bus = dev; bus && device_get_uclass_id(bus) != UCLASS_USB; )
750 bus = bus->parent;
751 if (!bus) {
752 /* By design this cannot happen */
753 assert(bus);
754 debug("USB HUB '%s' does not have a controller\n", dev->name);
Simon Glassde312132015-03-25 12:21:59 -0600755 }
Simon Glassde312132015-03-25 12:21:59 -0600756
Hans de Goedef78a5c02015-05-05 11:54:31 +0200757 return bus;
Simon Glassde312132015-03-25 12:21:59 -0600758}
759
760int usb_child_pre_probe(struct udevice *dev)
761{
Simon Glassbcbe3d12015-09-28 23:32:01 -0600762 struct usb_device *udev = dev_get_parent_priv(dev);
Simon Glassde312132015-03-25 12:21:59 -0600763 struct usb_dev_platdata *plat = dev_get_parent_platdata(dev);
764 int ret;
765
Hans de Goede7f1a0752015-05-05 11:54:32 +0200766 if (plat->udev) {
767 /*
768 * Copy over all the values set in the on stack struct
769 * usb_device in usb_scan_device() to our final struct
770 * usb_device for this dev.
771 */
772 *udev = *(plat->udev);
773 /* And clear plat->udev as it will not be valid for long */
774 plat->udev = NULL;
775 udev->dev = dev;
776 } else {
777 /*
778 * This happens with devices which are explicitly bound
779 * instead of being discovered through usb_scan_device()
780 * such as sandbox emul devices.
781 */
782 udev->dev = dev;
783 udev->controller_dev = usb_get_bus(dev);
784 udev->devnum = plat->devnum;
Simon Glassde312132015-03-25 12:21:59 -0600785
Hans de Goede7f1a0752015-05-05 11:54:32 +0200786 /*
787 * udev did not go through usb_scan_device(), so we need to
788 * select the config and read the config descriptors.
789 */
790 ret = usb_select_config(udev);
791 if (ret)
792 return ret;
793 }
Simon Glassde312132015-03-25 12:21:59 -0600794
795 return 0;
796}
797
798UCLASS_DRIVER(usb) = {
799 .id = UCLASS_USB,
800 .name = "usb",
801 .flags = DM_UC_FLAG_SEQ_ALIAS,
Simon Glass91195482016-07-05 17:10:10 -0600802 .post_bind = dm_scan_fdt_dev,
Hans de Goedee2536372015-05-10 14:10:21 +0200803 .priv_auto_alloc_size = sizeof(struct usb_uclass_priv),
Simon Glassde312132015-03-25 12:21:59 -0600804 .per_child_auto_alloc_size = sizeof(struct usb_device),
805 .per_device_auto_alloc_size = sizeof(struct usb_bus_priv),
806 .child_post_bind = usb_child_post_bind,
807 .child_pre_probe = usb_child_pre_probe,
808 .per_child_platdata_auto_alloc_size = sizeof(struct usb_dev_platdata),
809};
Simon Glass449230f2015-03-25 12:22:31 -0600810
811UCLASS_DRIVER(usb_dev_generic) = {
812 .id = UCLASS_USB_DEV_GENERIC,
813 .name = "usb_dev_generic",
814};
815
816U_BOOT_DRIVER(usb_dev_generic_drv) = {
817 .id = UCLASS_USB_DEV_GENERIC,
818 .name = "usb_dev_generic_drv",
819};