1 /*
2 * Most of this source has been derived from the Linux USB
3 * project:
4 * (C) Copyright Linus Torvalds 1999
5 * (C) Copyright Johannes Erdfelt 1999-2001
6 * (C) Copyright Andreas Gal 1999
7 * (C) Copyright Gregory P. Smith 1999
8 * (C) Copyright Deti Fliegl 1999 (new USB architecture)
9 * (C) Copyright Randy Dunlap 2000
10 * (C) Copyright David Brownell 2000 (kernel hotplug, usb_device_id)
11 * (C) Copyright Yggdrasil Computing, Inc. 2000
12 * (usb_device_id matching changes by Adam J. Richter)
13 *
14 * Adapted for U-Boot:
15 * (C) Copyright 2001 Denis Peter, MPL AG Switzerland
16 *
17 * SPDX-License-Identifier: GPL-2.0+
18 */
19
20 /*
21 * How it works:
22 *
23 * Since this is a bootloader, the devices will not be automatic
24 * (re)configured on hotplug, but after a restart of the USB the
25 * device should work.
26 *
27 * For each transfer (except "Interrupt") we wait for completion.
28 */
29 #include <common.h>
30 #include <command.h>
31 #include <dm.h>
32 #include <memalign.h>
33 #include <asm/processor.h>
34 #include <linux/compiler.h>
35 #include <linux/ctype.h>
36 #include <asm/byteorder.h>
37 #include <asm/unaligned.h>
38 #include <errno.h>
39 #include <usb.h>
40
41 #define USB_BUFSIZ 512
42
43 static int asynch_allowed;
44 char usb_started; /* flag for the started/stopped USB status */
45
46 #if !CONFIG_IS_ENABLED(DM_USB)
47 static struct usb_device usb_dev[USB_MAX_DEVICE];
48 static int dev_index;
49
50 #ifndef CONFIG_USB_MAX_CONTROLLER_COUNT
51 #define CONFIG_USB_MAX_CONTROLLER_COUNT 1
52 #endif
53
54 /***************************************************************************
55 * Init USB Device
56 */
usb_init(void)57 int usb_init(void)
58 {
59 void *ctrl;
60 struct usb_device *dev;
61 int i, start_index = 0;
62 int controllers_initialized = 0;
63 int ret;
64
65 dev_index = 0;
66 asynch_allowed = 1;
67 usb_hub_reset();
68
69 /* first make all devices unknown */
70 for (i = 0; i < USB_MAX_DEVICE; i++) {
71 memset(&usb_dev[i], 0, sizeof(struct usb_device));
72 usb_dev[i].devnum = -1;
73 }
74
75 /* init low_level USB */
76 for (i = 0; i < CONFIG_USB_MAX_CONTROLLER_COUNT; i++) {
77 /* init low_level USB */
78 printf("USB%d: ", i);
79 ret = usb_lowlevel_init(i, USB_INIT_HOST, &ctrl);
80 if (ret == -ENODEV) { /* No such device. */
81 puts("Port not available.\n");
82 controllers_initialized++;
83 continue;
84 }
85
86 if (ret) { /* Other error. */
87 puts("lowlevel init failed\n");
88 continue;
89 }
90 /*
91 * lowlevel init is OK, now scan the bus for devices
92 * i.e. search HUBs and configure them
93 */
94 controllers_initialized++;
95 start_index = dev_index;
96 printf("scanning bus %d for devices... ", i);
97 ret = usb_alloc_new_device(ctrl, &dev);
98 if (ret)
99 break;
100
101 /*
102 * device 0 is always present
103 * (root hub, so let it analyze)
104 */
105 ret = usb_new_device(dev);
106 if (ret)
107 usb_free_device(dev->controller);
108
109 if (start_index == dev_index) {
110 puts("No USB Device found\n");
111 continue;
112 } else {
113 printf("%d USB Device(s) found\n",
114 dev_index - start_index);
115 }
116
117 usb_started = 1;
118 }
119
120 debug("scan end\n");
121 /* if we were not able to find at least one working bus, bail out */
122 if (controllers_initialized == 0)
123 puts("USB error: all controllers failed lowlevel init\n");
124
125 return usb_started ? 0 : -ENODEV;
126 }
127
128 /******************************************************************************
129 * Stop USB this stops the LowLevel Part and deregisters USB devices.
130 */
usb_stop(void)131 int usb_stop(void)
132 {
133 int i;
134
135 if (usb_started) {
136 asynch_allowed = 1;
137 usb_started = 0;
138 usb_hub_reset();
139
140 for (i = 0; i < CONFIG_USB_MAX_CONTROLLER_COUNT; i++) {
141 if (usb_lowlevel_stop(i))
142 printf("failed to stop USB controller %d\n", i);
143 }
144 }
145
146 return 0;
147 }
148
149 /******************************************************************************
150 * Detect if a USB device has been plugged or unplugged.
151 */
usb_detect_change(void)152 int usb_detect_change(void)
153 {
154 int i, j;
155 int change = 0;
156
157 for (j = 0; j < USB_MAX_DEVICE; j++) {
158 for (i = 0; i < usb_dev[j].maxchild; i++) {
159 struct usb_port_status status;
160
161 if (usb_get_port_status(&usb_dev[j], i + 1,
162 &status) < 0)
163 /* USB request failed */
164 continue;
165
166 if (le16_to_cpu(status.wPortChange) &
167 USB_PORT_STAT_C_CONNECTION)
168 change++;
169 }
170 }
171
172 return change;
173 }
174
175 /*
176 * disables the asynch behaviour of the control message. This is used for data
177 * transfers that uses the exclusiv access to the control and bulk messages.
178 * Returns the old value so it can be restored later.
179 */
usb_disable_asynch(int disable)180 int usb_disable_asynch(int disable)
181 {
182 int old_value = asynch_allowed;
183
184 asynch_allowed = !disable;
185 return old_value;
186 }
187 #endif /* !CONFIG_IS_ENABLED(DM_USB) */
188
189
190 /*-------------------------------------------------------------------
191 * Message wrappers.
192 *
193 */
194
195 /*
196 * submits an Interrupt Message. Some drivers may implement non-blocking
197 * polling: when non-block is true and the device is not responding return
198 * -EAGAIN instead of waiting for device to respond.
199 */
usb_int_msg(struct usb_device * dev,unsigned long pipe,void * buffer,int transfer_len,int interval,bool nonblock)200 int usb_int_msg(struct usb_device *dev, unsigned long pipe,
201 void *buffer, int transfer_len, int interval, bool nonblock)
202 {
203 return submit_int_msg(dev, pipe, buffer, transfer_len, interval,
204 nonblock);
205 }
206
207 /*
208 * submits a control message and waits for comletion (at least timeout * 1ms)
209 * If timeout is 0, we don't wait for completion (used as example to set and
210 * clear keyboards LEDs). For data transfers, (storage transfers) we don't
211 * allow control messages with 0 timeout, by previousely resetting the flag
212 * asynch_allowed (usb_disable_asynch(1)).
213 * returns the transferred length if OK or -1 if error. The transferred length
214 * and the current status are stored in the dev->act_len and dev->status.
215 */
usb_control_msg(struct usb_device * dev,unsigned int pipe,unsigned char request,unsigned char requesttype,unsigned short value,unsigned short index,void * data,unsigned short size,int timeout)216 int usb_control_msg(struct usb_device *dev, unsigned int pipe,
217 unsigned char request, unsigned char requesttype,
218 unsigned short value, unsigned short index,
219 void *data, unsigned short size, int timeout)
220 {
221 ALLOC_CACHE_ALIGN_BUFFER(struct devrequest, setup_packet, 1);
222 int err;
223
224 if ((timeout == 0) && (!asynch_allowed)) {
225 /* request for a asynch control pipe is not allowed */
226 return -EINVAL;
227 }
228
229 /* set setup command */
230 setup_packet->requesttype = requesttype;
231 setup_packet->request = request;
232 setup_packet->value = cpu_to_le16(value);
233 setup_packet->index = cpu_to_le16(index);
234 setup_packet->length = cpu_to_le16(size);
235 debug("usb_control_msg: request: 0x%X, requesttype: 0x%X, " \
236 "value 0x%X index 0x%X length 0x%X\n",
237 request, requesttype, value, index, size);
238 dev->status = USB_ST_NOT_PROC; /*not yet processed */
239
240 err = submit_control_msg(dev, pipe, data, size, setup_packet);
241 if (err < 0)
242 return err;
243 if (timeout == 0)
244 return (int)size;
245
246 /*
247 * Wait for status to update until timeout expires, USB driver
248 * interrupt handler may set the status when the USB operation has
249 * been completed.
250 */
251 while (timeout--) {
252 if (!((volatile unsigned long)dev->status & USB_ST_NOT_PROC))
253 break;
254 mdelay(1);
255 }
256 if (dev->status)
257 return -1;
258
259 if(dev->descriptor.idVendor == 0x058f && dev->descriptor.idProduct == 0x6387)
260 udelay(200);
261
262 return dev->act_len;
263
264 }
265
266 /*-------------------------------------------------------------------
267 * submits bulk message, and waits for completion. returns 0 if Ok or
268 * negative if Error.
269 * synchronous behavior
270 */
usb_bulk_msg(struct usb_device * dev,unsigned int pipe,void * data,int len,int * actual_length,int timeout)271 int usb_bulk_msg(struct usb_device *dev, unsigned int pipe,
272 void *data, int len, int *actual_length, int timeout)
273 {
274 if (len < 0)
275 return -EINVAL;
276 dev->status = USB_ST_NOT_PROC; /*not yet processed */
277 if (submit_bulk_msg(dev, pipe, data, len) < 0)
278 return -EIO;
279 while (timeout--) {
280 if (!((volatile unsigned long)dev->status & USB_ST_NOT_PROC))
281 break;
282 mdelay(1);
283 }
284 *actual_length = dev->act_len;
285 if (dev->status == 0)
286 return 0;
287 else
288 return -EIO;
289 }
290
291
292 /*-------------------------------------------------------------------
293 * Max Packet stuff
294 */
295
296 /*
297 * returns the max packet size, depending on the pipe direction and
298 * the configurations values
299 */
usb_maxpacket(struct usb_device * dev,unsigned long pipe)300 int usb_maxpacket(struct usb_device *dev, unsigned long pipe)
301 {
302 /* direction is out -> use emaxpacket out */
303 if ((pipe & USB_DIR_IN) == 0)
304 return dev->epmaxpacketout[((pipe>>15) & 0xf)];
305 else
306 return dev->epmaxpacketin[((pipe>>15) & 0xf)];
307 }
308
309 /*
310 * The routine usb_set_maxpacket_ep() is extracted from the loop of routine
311 * usb_set_maxpacket(), because the optimizer of GCC 4.x chokes on this routine
312 * when it is inlined in 1 single routine. What happens is that the register r3
313 * is used as loop-count 'i', but gets overwritten later on.
314 * This is clearly a compiler bug, but it is easier to workaround it here than
315 * to update the compiler (Occurs with at least several GCC 4.{1,2},x
316 * CodeSourcery compilers like e.g. 2007q3, 2008q1, 2008q3 lite editions on ARM)
317 *
318 * NOTE: Similar behaviour was observed with GCC4.6 on ARMv5.
319 */
320 static void noinline
usb_set_maxpacket_ep(struct usb_device * dev,int if_idx,int ep_idx)321 usb_set_maxpacket_ep(struct usb_device *dev, int if_idx, int ep_idx)
322 {
323 int b;
324 struct usb_endpoint_descriptor *ep;
325 u16 ep_wMaxPacketSize;
326
327 ep = &dev->config.if_desc[if_idx].ep_desc[ep_idx];
328
329 b = ep->bEndpointAddress & USB_ENDPOINT_NUMBER_MASK;
330 ep_wMaxPacketSize = get_unaligned(&ep->wMaxPacketSize);
331
332 if ((ep->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK) ==
333 USB_ENDPOINT_XFER_CONTROL) {
334 /* Control => bidirectional */
335 dev->epmaxpacketout[b] = ep_wMaxPacketSize;
336 dev->epmaxpacketin[b] = ep_wMaxPacketSize;
337 debug("##Control EP epmaxpacketout/in[%d] = %d\n",
338 b, dev->epmaxpacketin[b]);
339 } else {
340 if ((ep->bEndpointAddress & 0x80) == 0) {
341 /* OUT Endpoint */
342 if (ep_wMaxPacketSize > dev->epmaxpacketout[b]) {
343 dev->epmaxpacketout[b] = ep_wMaxPacketSize;
344 debug("##EP epmaxpacketout[%d] = %d\n",
345 b, dev->epmaxpacketout[b]);
346 }
347 } else {
348 /* IN Endpoint */
349 if (ep_wMaxPacketSize > dev->epmaxpacketin[b]) {
350 dev->epmaxpacketin[b] = ep_wMaxPacketSize;
351 debug("##EP epmaxpacketin[%d] = %d\n",
352 b, dev->epmaxpacketin[b]);
353 }
354 } /* if out */
355 } /* if control */
356 }
357
358 /*
359 * set the max packed value of all endpoints in the given configuration
360 */
usb_set_maxpacket(struct usb_device * dev)361 static int usb_set_maxpacket(struct usb_device *dev)
362 {
363 int i, ii;
364
365 for (i = 0; i < dev->config.desc.bNumInterfaces; i++)
366 for (ii = 0; ii < dev->config.if_desc[i].desc.bNumEndpoints; ii++)
367 usb_set_maxpacket_ep(dev, i, ii);
368
369 return 0;
370 }
371
372 /*******************************************************************************
373 * Parse the config, located in buffer, and fills the dev->config structure.
374 * Note that all little/big endian swapping are done automatically.
375 * (wTotalLength has already been swapped and sanitized when it was read.)
376 */
usb_parse_config(struct usb_device * dev,unsigned char * buffer,int cfgno)377 static int usb_parse_config(struct usb_device *dev,
378 unsigned char *buffer, int cfgno)
379 {
380 struct usb_descriptor_header *head;
381 int index, ifno, epno, curr_if_num;
382 u16 ep_wMaxPacketSize;
383 struct usb_interface *if_desc = NULL;
384
385 ifno = -1;
386 epno = -1;
387 curr_if_num = -1;
388
389 dev->configno = cfgno;
390 head = (struct usb_descriptor_header *) &buffer[0];
391 if (head->bDescriptorType != USB_DT_CONFIG) {
392 printf(" ERROR: NOT USB_CONFIG_DESC %x\n",
393 head->bDescriptorType);
394 return -EINVAL;
395 }
396 if (head->bLength != USB_DT_CONFIG_SIZE) {
397 printf("ERROR: Invalid USB CFG length (%d)\n", head->bLength);
398 return -EINVAL;
399 }
400 memcpy(&dev->config, head, USB_DT_CONFIG_SIZE);
401 dev->config.no_of_if = 0;
402
403 index = dev->config.desc.bLength;
404 /* Ok the first entry must be a configuration entry,
405 * now process the others */
406 head = (struct usb_descriptor_header *) &buffer[index];
407 while (index + 1 < dev->config.desc.wTotalLength && head->bLength) {
408 switch (head->bDescriptorType) {
409 case USB_DT_INTERFACE:
410 if (head->bLength != USB_DT_INTERFACE_SIZE) {
411 printf("ERROR: Invalid USB IF length (%d)\n",
412 head->bLength);
413 break;
414 }
415 if (index + USB_DT_INTERFACE_SIZE >
416 dev->config.desc.wTotalLength) {
417 puts("USB IF descriptor overflowed buffer!\n");
418 break;
419 }
420 if (((struct usb_interface_descriptor *) \
421 head)->bInterfaceNumber != curr_if_num) {
422 /* this is a new interface, copy new desc */
423 ifno = dev->config.no_of_if;
424 if (ifno >= USB_MAXINTERFACES) {
425 puts("Too many USB interfaces!\n");
426 /* try to go on with what we have */
427 return -EINVAL;
428 }
429 if_desc = &dev->config.if_desc[ifno];
430 dev->config.no_of_if++;
431 memcpy(if_desc, head,
432 USB_DT_INTERFACE_SIZE);
433 if_desc->no_of_ep = 0;
434 if_desc->num_altsetting = 1;
435 curr_if_num =
436 if_desc->desc.bInterfaceNumber;
437 } else {
438 /* found alternate setting for the interface */
439 if (ifno >= 0) {
440 if_desc = &dev->config.if_desc[ifno];
441 if_desc->num_altsetting++;
442 }
443 }
444 break;
445 case USB_DT_ENDPOINT:
446 if (head->bLength != USB_DT_ENDPOINT_SIZE) {
447 printf("ERROR: Invalid USB EP length (%d)\n",
448 head->bLength);
449 break;
450 }
451 if (index + USB_DT_ENDPOINT_SIZE >
452 dev->config.desc.wTotalLength) {
453 puts("USB EP descriptor overflowed buffer!\n");
454 break;
455 }
456 if (ifno < 0) {
457 puts("Endpoint descriptor out of order!\n");
458 break;
459 }
460 epno = dev->config.if_desc[ifno].no_of_ep;
461 if_desc = &dev->config.if_desc[ifno];
462 if (epno >= USB_MAXENDPOINTS) {
463 printf("Interface %d has too many endpoints!\n",
464 if_desc->desc.bInterfaceNumber);
465 return -EINVAL;
466 }
467 /* found an endpoint */
468 if_desc->no_of_ep++;
469 memcpy(&if_desc->ep_desc[epno], head,
470 USB_DT_ENDPOINT_SIZE);
471 ep_wMaxPacketSize = get_unaligned(&dev->config.\
472 if_desc[ifno].\
473 ep_desc[epno].\
474 wMaxPacketSize);
475 put_unaligned(le16_to_cpu(ep_wMaxPacketSize),
476 &dev->config.\
477 if_desc[ifno].\
478 ep_desc[epno].\
479 wMaxPacketSize);
480 debug("if %d, ep %d\n", ifno, epno);
481 break;
482 case USB_DT_SS_ENDPOINT_COMP:
483 if (head->bLength != USB_DT_SS_EP_COMP_SIZE) {
484 printf("ERROR: Invalid USB EPC length (%d)\n",
485 head->bLength);
486 break;
487 }
488 if (index + USB_DT_SS_EP_COMP_SIZE >
489 dev->config.desc.wTotalLength) {
490 puts("USB EPC descriptor overflowed buffer!\n");
491 break;
492 }
493 if (ifno < 0 || epno < 0) {
494 puts("EPC descriptor out of order!\n");
495 break;
496 }
497 if_desc = &dev->config.if_desc[ifno];
498 memcpy(&if_desc->ss_ep_comp_desc[epno], head,
499 USB_DT_SS_EP_COMP_SIZE);
500 break;
501 default:
502 if (head->bLength == 0)
503 return -EINVAL;
504
505 debug("unknown Description Type : %x\n",
506 head->bDescriptorType);
507
508 #ifdef DEBUG
509 {
510 unsigned char *ch = (unsigned char *)head;
511 int i;
512
513 for (i = 0; i < head->bLength; i++)
514 debug("%02X ", *ch++);
515 debug("\n\n\n");
516 }
517 #endif
518 break;
519 }
520 index += head->bLength;
521 head = (struct usb_descriptor_header *)&buffer[index];
522 }
523
524 /**
525 * Some odd devices respond the Endpoint descriptor items are less
526 * then the bNumEndpoints in Interface descriptor, so fix it here.
527 */
528 for (ifno = 0; ifno < dev->config.no_of_if; ifno++) {
529 if_desc = &dev->config.if_desc[ifno];
530 if (if_desc->desc.bNumEndpoints != if_desc->no_of_ep) {
531 printf("WARN: interface %d has %d endpoint descriptor, "
532 "different from the interface descriptor's value: %d\n",
533 ifno, if_desc->no_of_ep, if_desc->desc.bNumEndpoints);
534 if_desc->desc.bNumEndpoints = if_desc->no_of_ep;
535 }
536 }
537 return 0;
538 }
539
540 /***********************************************************************
541 * Clears an endpoint
542 * endp: endpoint number in bits 0-3;
543 * direction flag in bit 7 (1 = IN, 0 = OUT)
544 */
usb_clear_halt(struct usb_device * dev,int pipe)545 int usb_clear_halt(struct usb_device *dev, int pipe)
546 {
547 int result;
548 int endp = usb_pipeendpoint(pipe)|(usb_pipein(pipe)<<7);
549
550 result = usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
551 USB_REQ_CLEAR_FEATURE, USB_RECIP_ENDPOINT, 0,
552 endp, NULL, 0, USB_CNTL_TIMEOUT * 3);
553
554 /* don't clear if failed */
555 if (result < 0)
556 return result;
557
558 /*
559 * NOTE: we do not get status and verify reset was successful
560 * as some devices are reported to lock up upon this check..
561 */
562
563 usb_endpoint_running(dev, usb_pipeendpoint(pipe), usb_pipeout(pipe));
564
565 /* toggle is reset on clear */
566 usb_settoggle(dev, usb_pipeendpoint(pipe), usb_pipeout(pipe), 0);
567 return 0;
568 }
569
570
571 /**********************************************************************
572 * get_descriptor type
573 */
usb_get_descriptor(struct usb_device * dev,unsigned char type,unsigned char index,void * buf,int size)574 static int usb_get_descriptor(struct usb_device *dev, unsigned char type,
575 unsigned char index, void *buf, int size)
576 {
577 return usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
578 USB_REQ_GET_DESCRIPTOR, USB_DIR_IN,
579 (type << 8) + index, 0, buf, size,
580 USB_CNTL_TIMEOUT);
581 }
582
583 /**********************************************************************
584 * gets len of configuration cfgno
585 */
usb_get_configuration_len(struct usb_device * dev,int cfgno)586 int usb_get_configuration_len(struct usb_device *dev, int cfgno)
587 {
588 int result;
589 ALLOC_CACHE_ALIGN_BUFFER(unsigned char, buffer, 9);
590 struct usb_config_descriptor *config;
591
592 config = (struct usb_config_descriptor *)&buffer[0];
593 result = usb_get_descriptor(dev, USB_DT_CONFIG, cfgno, buffer, 9);
594 if (result < 9) {
595 if (result < 0)
596 printf("unable to get descriptor, error %lX\n",
597 dev->status);
598 else
599 printf("config descriptor too short " \
600 "(expected %i, got %i)\n", 9, result);
601 return -EIO;
602 }
603 return le16_to_cpu(config->wTotalLength);
604 }
605
606 /**********************************************************************
607 * gets configuration cfgno and store it in the buffer
608 */
usb_get_configuration_no(struct usb_device * dev,int cfgno,unsigned char * buffer,int length)609 int usb_get_configuration_no(struct usb_device *dev, int cfgno,
610 unsigned char *buffer, int length)
611 {
612 int result;
613 struct usb_config_descriptor *config;
614
615 config = (struct usb_config_descriptor *)&buffer[0];
616 result = usb_get_descriptor(dev, USB_DT_CONFIG, cfgno, buffer, length);
617 debug("get_conf_no %d Result %d, wLength %d\n", cfgno, result,
618 le16_to_cpu(config->wTotalLength));
619 config->wTotalLength = result; /* validated, with CPU byte order */
620
621 return result;
622 }
623
624 /********************************************************************
625 * set address of a device to the value in dev->devnum.
626 * This can only be done by addressing the device via the default address (0)
627 */
usb_set_address(struct usb_device * dev)628 static int usb_set_address(struct usb_device *dev)
629 {
630 debug("set address %d\n", dev->devnum);
631
632 return usb_control_msg(dev, usb_snddefctrl(dev), USB_REQ_SET_ADDRESS,
633 0, (dev->devnum), 0, NULL, 0, USB_CNTL_TIMEOUT);
634 }
635
636 /********************************************************************
637 * set interface number to interface
638 */
usb_set_interface(struct usb_device * dev,int interface,int alternate)639 int usb_set_interface(struct usb_device *dev, int interface, int alternate)
640 {
641 struct usb_interface *if_face = NULL;
642 int ret, i;
643
644 for (i = 0; i < dev->config.desc.bNumInterfaces; i++) {
645 if (dev->config.if_desc[i].desc.bInterfaceNumber == interface) {
646 if_face = &dev->config.if_desc[i];
647 break;
648 }
649 }
650 if (!if_face) {
651 printf("selecting invalid interface %d", interface);
652 return -EINVAL;
653 }
654 /*
655 * We should return now for devices with only one alternate setting.
656 * According to 9.4.10 of the Universal Serial Bus Specification
657 * Revision 2.0 such devices can return with a STALL. This results in
658 * some USB sticks timeouting during initialization and then being
659 * unusable in U-Boot.
660 */
661 if (if_face->num_altsetting == 1)
662 return 0;
663
664 ret = usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
665 USB_REQ_SET_INTERFACE, USB_RECIP_INTERFACE,
666 alternate, interface, NULL, 0,
667 USB_CNTL_TIMEOUT * 5);
668 if (ret < 0)
669 return ret;
670
671 return 0;
672 }
673
674 /********************************************************************
675 * set configuration number to configuration
676 */
usb_set_configuration(struct usb_device * dev,int configuration)677 static int usb_set_configuration(struct usb_device *dev, int configuration)
678 {
679 int res;
680 debug("set configuration %d\n", configuration);
681 /* set setup command */
682 res = usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
683 USB_REQ_SET_CONFIGURATION, 0,
684 configuration, 0,
685 NULL, 0, USB_CNTL_TIMEOUT);
686 if (res == 0) {
687 dev->toggle[0] = 0;
688 dev->toggle[1] = 0;
689 return 0;
690 } else
691 return -EIO;
692 }
693
694 /********************************************************************
695 * set protocol to protocol
696 */
usb_set_protocol(struct usb_device * dev,int ifnum,int protocol)697 int usb_set_protocol(struct usb_device *dev, int ifnum, int protocol)
698 {
699 return usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
700 USB_REQ_SET_PROTOCOL, USB_TYPE_CLASS | USB_RECIP_INTERFACE,
701 protocol, ifnum, NULL, 0, USB_CNTL_TIMEOUT);
702 }
703
704 /********************************************************************
705 * set idle
706 */
usb_set_idle(struct usb_device * dev,int ifnum,int duration,int report_id)707 int usb_set_idle(struct usb_device *dev, int ifnum, int duration, int report_id)
708 {
709 return usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
710 USB_REQ_SET_IDLE, USB_TYPE_CLASS | USB_RECIP_INTERFACE,
711 (duration << 8) | report_id, ifnum, NULL, 0, USB_CNTL_TIMEOUT);
712 }
713
714 /********************************************************************
715 * get report
716 */
usb_get_report(struct usb_device * dev,int ifnum,unsigned char type,unsigned char id,void * buf,int size)717 int usb_get_report(struct usb_device *dev, int ifnum, unsigned char type,
718 unsigned char id, void *buf, int size)
719 {
720 return usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
721 USB_REQ_GET_REPORT,
722 USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_INTERFACE,
723 (type << 8) + id, ifnum, buf, size, USB_CNTL_TIMEOUT);
724 }
725
726 /********************************************************************
727 * get class descriptor
728 */
usb_get_class_descriptor(struct usb_device * dev,int ifnum,unsigned char type,unsigned char id,void * buf,int size)729 int usb_get_class_descriptor(struct usb_device *dev, int ifnum,
730 unsigned char type, unsigned char id, void *buf, int size)
731 {
732 return usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
733 USB_REQ_GET_DESCRIPTOR, USB_RECIP_INTERFACE | USB_DIR_IN,
734 (type << 8) + id, ifnum, buf, size, USB_CNTL_TIMEOUT);
735 }
736
737 /********************************************************************
738 * get string index in buffer
739 */
usb_get_string(struct usb_device * dev,unsigned short langid,unsigned char index,void * buf,int size)740 static int usb_get_string(struct usb_device *dev, unsigned short langid,
741 unsigned char index, void *buf, int size)
742 {
743 int i;
744 int result;
745
746 for (i = 0; i < 3; ++i) {
747 /* some devices are flaky */
748 result = usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
749 USB_REQ_GET_DESCRIPTOR, USB_DIR_IN,
750 (USB_DT_STRING << 8) + index, langid, buf, size,
751 USB_CNTL_TIMEOUT);
752
753 if (result > 0)
754 break;
755 }
756
757 return result;
758 }
759
760
usb_try_string_workarounds(unsigned char * buf,int * length)761 static void usb_try_string_workarounds(unsigned char *buf, int *length)
762 {
763 int newlength, oldlength = *length;
764
765 for (newlength = 2; newlength + 1 < oldlength; newlength += 2)
766 if (!isprint(buf[newlength]) || buf[newlength + 1])
767 break;
768
769 if (newlength > 2) {
770 buf[0] = newlength;
771 *length = newlength;
772 }
773 }
774
775
usb_string_sub(struct usb_device * dev,unsigned int langid,unsigned int index,unsigned char * buf)776 static int usb_string_sub(struct usb_device *dev, unsigned int langid,
777 unsigned int index, unsigned char *buf)
778 {
779 int rc;
780
781 /* Try to read the string descriptor by asking for the maximum
782 * possible number of bytes */
783 rc = usb_get_string(dev, langid, index, buf, 255);
784
785 /* If that failed try to read the descriptor length, then
786 * ask for just that many bytes */
787 if (rc < 2) {
788 rc = usb_get_string(dev, langid, index, buf, 2);
789 if (rc == 2)
790 rc = usb_get_string(dev, langid, index, buf, buf[0]);
791 }
792
793 if (rc >= 2) {
794 if (!buf[0] && !buf[1])
795 usb_try_string_workarounds(buf, &rc);
796
797 /* There might be extra junk at the end of the descriptor */
798 if (buf[0] < rc)
799 rc = buf[0];
800
801 rc = rc - (rc & 1); /* force a multiple of two */
802 }
803
804 if (rc < 2)
805 rc = -EINVAL;
806
807 return rc;
808 }
809
810
811 /********************************************************************
812 * usb_string:
813 * Get string index and translate it to ascii.
814 * returns string length (> 0) or error (< 0)
815 */
usb_string(struct usb_device * dev,int index,char * buf,size_t size)816 int usb_string(struct usb_device *dev, int index, char *buf, size_t size)
817 {
818 ALLOC_CACHE_ALIGN_BUFFER(unsigned char, mybuf, USB_BUFSIZ);
819 unsigned char *tbuf;
820 int err;
821 unsigned int u, idx;
822
823 if (size <= 0 || !buf || !index)
824 return -EINVAL;
825 buf[0] = 0;
826 tbuf = &mybuf[0];
827
828 /* get langid for strings if it's not yet known */
829 if (!dev->have_langid) {
830 err = usb_string_sub(dev, 0, 0, tbuf);
831 if (err < 0) {
832 debug("error getting string descriptor 0 " \
833 "(error=%lx)\n", dev->status);
834 return -EIO;
835 } else if (tbuf[0] < 4) {
836 debug("string descriptor 0 too short\n");
837 return -EIO;
838 } else {
839 dev->have_langid = -1;
840 dev->string_langid = tbuf[2] | (tbuf[3] << 8);
841 /* always use the first langid listed */
842 debug("USB device number %d default " \
843 "language ID 0x%x\n",
844 dev->devnum, dev->string_langid);
845 }
846 }
847
848 err = usb_string_sub(dev, dev->string_langid, index, tbuf);
849 if (err < 0)
850 return err;
851
852 size--; /* leave room for trailing NULL char in output buffer */
853 for (idx = 0, u = 2; u < err; u += 2) {
854 if (idx >= size)
855 break;
856 if (tbuf[u+1]) /* high byte */
857 buf[idx++] = '?'; /* non-ASCII character */
858 else
859 buf[idx++] = tbuf[u];
860 }
861 buf[idx] = 0;
862 err = idx;
863 return err;
864 }
865
866
867 /********************************************************************
868 * USB device handling:
869 * the USB device are static allocated [USB_MAX_DEVICE].
870 */
871
872 #if !CONFIG_IS_ENABLED(DM_USB)
873
874 /* returns a pointer to the device with the index [index].
875 * if the device is not assigned (dev->devnum==-1) returns NULL
876 */
usb_get_dev_index(int index)877 struct usb_device *usb_get_dev_index(int index)
878 {
879 if (usb_dev[index].devnum == -1)
880 return NULL;
881 else
882 return &usb_dev[index];
883 }
884
usb_alloc_new_device(struct udevice * controller,struct usb_device ** devp)885 int usb_alloc_new_device(struct udevice *controller, struct usb_device **devp)
886 {
887 int i;
888 debug("New Device %d\n", dev_index);
889 if (dev_index == USB_MAX_DEVICE) {
890 printf("ERROR, too many USB Devices, max=%d\n", USB_MAX_DEVICE);
891 return -ENOSPC;
892 }
893 /* default Address is 0, real addresses start with 1 */
894 usb_dev[dev_index].devnum = dev_index + 1;
895 usb_dev[dev_index].maxchild = 0;
896 for (i = 0; i < USB_MAXCHILDREN; i++)
897 usb_dev[dev_index].children[i] = NULL;
898 usb_dev[dev_index].parent = NULL;
899 usb_dev[dev_index].controller = controller;
900 dev_index++;
901 *devp = &usb_dev[dev_index - 1];
902
903 return 0;
904 }
905
906 /*
907 * Free the newly created device node.
908 * Called in error cases where configuring a newly attached
909 * device fails for some reason.
910 */
usb_free_device(struct udevice * controller)911 void usb_free_device(struct udevice *controller)
912 {
913 dev_index--;
914 debug("Freeing device node: %d\n", dev_index);
915 memset(&usb_dev[dev_index], 0, sizeof(struct usb_device));
916 usb_dev[dev_index].devnum = -1;
917 }
918
919 /*
920 * XHCI issues Enable Slot command and thereafter
921 * allocates device contexts. Provide a weak alias
922 * function for the purpose, so that XHCI overrides it
923 * and EHCI/OHCI just work out of the box.
924 */
usb_alloc_device(struct usb_device * udev)925 __weak int usb_alloc_device(struct usb_device *udev)
926 {
927 return 0;
928 }
929 #endif /* !CONFIG_IS_ENABLED(DM_USB) */
930
usb_hub_port_reset(struct usb_device * dev,struct usb_device * hub)931 static int usb_hub_port_reset(struct usb_device *dev, struct usb_device *hub)
932 {
933 if (!hub)
934 usb_reset_root_port(dev);
935
936 return 0;
937 }
938
get_descriptor_len(struct usb_device * dev,int len,int expect_len)939 static int get_descriptor_len(struct usb_device *dev, int len, int expect_len)
940 {
941 __maybe_unused struct usb_device_descriptor *desc;
942 ALLOC_CACHE_ALIGN_BUFFER(unsigned char, tmpbuf, USB_BUFSIZ);
943 int err;
944
945 desc = (struct usb_device_descriptor *)tmpbuf;
946
947 err = usb_get_descriptor(dev, USB_DT_DEVICE, 0, desc, len);
948 if (err < expect_len) {
949 if (err < 0) {
950 printf("unable to get device descriptor (error=%d)\n",
951 err);
952 return err;
953 } else {
954 printf("USB device descriptor short read (expected %i, got %i)\n",
955 expect_len, err);
956 return -EIO;
957 }
958 }
959 memcpy(&dev->descriptor, tmpbuf, sizeof(dev->descriptor));
960
961 return 0;
962 }
963
usb_setup_descriptor(struct usb_device * dev,bool do_read)964 static int usb_setup_descriptor(struct usb_device *dev, bool do_read)
965 {
966 /*
967 * This is a Windows scheme of initialization sequence, with double
968 * reset of the device (Linux uses the same sequence)
969 * Some equipment is said to work only with such init sequence; this
970 * patch is based on the work by Alan Stern:
971 * http://sourceforge.net/mailarchive/forum.php?
972 * thread_id=5729457&forum_id=5398
973 */
974
975 /*
976 * send 64-byte GET-DEVICE-DESCRIPTOR request. Since the descriptor is
977 * only 18 bytes long, this will terminate with a short packet. But if
978 * the maxpacket size is 8 or 16 the device may be waiting to transmit
979 * some more, or keeps on retransmitting the 8 byte header.
980 */
981
982 if (dev->speed == USB_SPEED_LOW) {
983 dev->descriptor.bMaxPacketSize0 = 8;
984 dev->maxpacketsize = PACKET_SIZE_8;
985 } else {
986 dev->descriptor.bMaxPacketSize0 = 64;
987 dev->maxpacketsize = PACKET_SIZE_64;
988 }
989 dev->epmaxpacketin[0] = dev->descriptor.bMaxPacketSize0;
990 dev->epmaxpacketout[0] = dev->descriptor.bMaxPacketSize0;
991
992 if (do_read && dev->speed == USB_SPEED_FULL) {
993 int err;
994
995 /*
996 * Validate we've received only at least 8 bytes, not that
997 * we've received the entire descriptor. The reasoning is:
998 * - The code only uses fields in the first 8 bytes, so
999 * that's all we need to have fetched at this stage.
1000 * - The smallest maxpacket size is 8 bytes. Before we know
1001 * the actual maxpacket the device uses, the USB controller
1002 * may only accept a single packet. Consequently we are only
1003 * guaranteed to receive 1 packet (at least 8 bytes) even in
1004 * a non-error case.
1005 *
1006 * At least the DWC2 controller needs to be programmed with
1007 * the number of packets in addition to the number of bytes.
1008 * A request for 64 bytes of data with the maxpacket guessed
1009 * as 64 (above) yields a request for 1 packet.
1010 */
1011 err = get_descriptor_len(dev, 64, 8);
1012 if (err)
1013 return err;
1014 }
1015
1016 dev->epmaxpacketin[0] = dev->descriptor.bMaxPacketSize0;
1017 dev->epmaxpacketout[0] = dev->descriptor.bMaxPacketSize0;
1018 switch (dev->descriptor.bMaxPacketSize0) {
1019 case 8:
1020 dev->maxpacketsize = PACKET_SIZE_8;
1021 break;
1022 case 16:
1023 dev->maxpacketsize = PACKET_SIZE_16;
1024 break;
1025 case 32:
1026 dev->maxpacketsize = PACKET_SIZE_32;
1027 break;
1028 case 64:
1029 dev->maxpacketsize = PACKET_SIZE_64;
1030 break;
1031 default:
1032 printf("%s: invalid max packet size\n", __func__);
1033 return -EIO;
1034 }
1035
1036 return 0;
1037 }
1038
usb_prepare_device(struct usb_device * dev,int addr,bool do_read,struct usb_device * parent)1039 static int usb_prepare_device(struct usb_device *dev, int addr, bool do_read,
1040 struct usb_device *parent)
1041 {
1042 int err;
1043
1044 /*
1045 * Allocate usb 3.0 device context.
1046 * USB 3.0 (xHCI) protocol tries to allocate device slot
1047 * and related data structures first. This call does that.
1048 * Refer to sec 4.3.2 in xHCI spec rev1.0
1049 */
1050 err = usb_alloc_device(dev);
1051 if (err) {
1052 printf("Cannot allocate device context to get SLOT_ID\n");
1053 return err;
1054 }
1055 err = usb_setup_descriptor(dev, do_read);
1056 if (err)
1057 return err;
1058 err = usb_hub_port_reset(dev, parent);
1059 if (err)
1060 return err;
1061
1062 dev->devnum = addr;
1063
1064 err = usb_set_address(dev); /* set address */
1065
1066 if (err < 0) {
1067 printf("\n USB device not accepting new address " \
1068 "(error=%lX)\n", dev->status);
1069 return err;
1070 }
1071
1072 mdelay(10); /* Let the SET_ADDRESS settle */
1073
1074 /*
1075 * If we haven't read device descriptor before, read it here
1076 * after device is assigned an address. This is only applicable
1077 * to xHCI so far.
1078 */
1079 if (!do_read) {
1080 err = usb_setup_descriptor(dev, true);
1081 if (err)
1082 return err;
1083 }
1084
1085 return 0;
1086 }
1087
usb_select_config(struct usb_device * dev)1088 int usb_select_config(struct usb_device *dev)
1089 {
1090 unsigned char *tmpbuf = NULL;
1091 int err;
1092
1093 err = get_descriptor_len(dev, USB_DT_DEVICE_SIZE, USB_DT_DEVICE_SIZE);
1094 if (err)
1095 return err;
1096
1097 /* correct le values */
1098 le16_to_cpus(&dev->descriptor.bcdUSB);
1099 le16_to_cpus(&dev->descriptor.idVendor);
1100 le16_to_cpus(&dev->descriptor.idProduct);
1101 le16_to_cpus(&dev->descriptor.bcdDevice);
1102
1103 /*
1104 * Kingston DT Ultimate 32GB USB 3.0 seems to be extremely sensitive
1105 * about this first Get Descriptor request. If there are any other
1106 * requests in the first microframe, the stick crashes. Wait about
1107 * one microframe duration here (1mS for USB 1.x , 125uS for USB 2.0).
1108 */
1109 mdelay(1);
1110
1111 /* only support for one config for now */
1112 err = usb_get_configuration_len(dev, 0);
1113 if (err >= 0) {
1114 tmpbuf = (unsigned char *)malloc_cache_aligned(err);
1115 if (!tmpbuf)
1116 err = -ENOMEM;
1117 else
1118 err = usb_get_configuration_no(dev, 0, tmpbuf, err);
1119 }
1120 if (err < 0) {
1121 printf("usb_new_device: Cannot read configuration, " \
1122 "skipping device %04x:%04x\n",
1123 dev->descriptor.idVendor, dev->descriptor.idProduct);
1124 free(tmpbuf);
1125 return err;
1126 }
1127 usb_parse_config(dev, tmpbuf, 0);
1128 free(tmpbuf);
1129 usb_set_maxpacket(dev);
1130 /*
1131 * we set the default configuration here
1132 * This seems premature. If the driver wants a different configuration
1133 * it will need to select itself.
1134 */
1135 err = usb_set_configuration(dev, dev->config.desc.bConfigurationValue);
1136 if (err < 0) {
1137 printf("failed to set default configuration " \
1138 "len %d, status %lX\n", dev->act_len, dev->status);
1139 return err;
1140 }
1141
1142 /*
1143 * Wait until the Set Configuration request gets processed by the
1144 * device. This is required by at least SanDisk Cruzer Pop USB 2.0
1145 * and Kingston DT Ultimate 32GB USB 3.0 on DWC2 OTG controller.
1146 */
1147 mdelay(10);
1148
1149 debug("new device strings: Mfr=%d, Product=%d, SerialNumber=%d\n",
1150 dev->descriptor.iManufacturer, dev->descriptor.iProduct,
1151 dev->descriptor.iSerialNumber);
1152 memset(dev->mf, 0, sizeof(dev->mf));
1153 memset(dev->prod, 0, sizeof(dev->prod));
1154 memset(dev->serial, 0, sizeof(dev->serial));
1155 if (dev->descriptor.iManufacturer)
1156 usb_string(dev, dev->descriptor.iManufacturer,
1157 dev->mf, sizeof(dev->mf));
1158 if (dev->descriptor.iProduct)
1159 usb_string(dev, dev->descriptor.iProduct,
1160 dev->prod, sizeof(dev->prod));
1161 if (dev->descriptor.iSerialNumber)
1162 usb_string(dev, dev->descriptor.iSerialNumber,
1163 dev->serial, sizeof(dev->serial));
1164 debug("Manufacturer %s\n", dev->mf);
1165 debug("Product %s\n", dev->prod);
1166 debug("SerialNumber %s\n", dev->serial);
1167
1168 return 0;
1169 }
1170
usb_setup_device(struct usb_device * dev,bool do_read,struct usb_device * parent)1171 int usb_setup_device(struct usb_device *dev, bool do_read,
1172 struct usb_device *parent)
1173 {
1174 int addr;
1175 int ret;
1176
1177 /* We still haven't set the Address yet */
1178 addr = dev->devnum;
1179 dev->devnum = 0;
1180
1181 ret = usb_prepare_device(dev, addr, do_read, parent);
1182 if (ret)
1183 return ret;
1184 ret = usb_select_config(dev);
1185
1186 return ret;
1187 }
1188
1189 #if !CONFIG_IS_ENABLED(DM_USB)
1190 /*
1191 * By the time we get here, the device has gotten a new device ID
1192 * and is in the default state. We need to identify the thing and
1193 * get the ball rolling..
1194 *
1195 * Returns 0 for success, != 0 for error.
1196 */
usb_new_device(struct usb_device * dev)1197 int usb_new_device(struct usb_device *dev)
1198 {
1199 bool do_read = true;
1200 int err;
1201
1202 /*
1203 * XHCI needs to issue a Address device command to setup
1204 * proper device context structures, before it can interact
1205 * with the device. So a get_descriptor will fail before any
1206 * of that is done for XHCI unlike EHCI.
1207 */
1208 #ifdef CONFIG_USB_XHCI_HCD
1209 do_read = false;
1210 #endif
1211 err = usb_setup_device(dev, do_read, dev->parent);
1212 if (err)
1213 return err;
1214
1215 /* Now probe if the device is a hub */
1216 err = usb_hub_probe(dev, 0);
1217 if (err < 0)
1218 return err;
1219
1220 return 0;
1221 }
1222 #endif
1223
1224 __weak
board_usb_init(int index,enum usb_init_type init)1225 int board_usb_init(int index, enum usb_init_type init)
1226 {
1227 return 0;
1228 }
1229
1230 __weak
board_usb_cleanup(int index,enum usb_init_type init)1231 int board_usb_cleanup(int index, enum usb_init_type init)
1232 {
1233 return 0;
1234 }
1235
usb_device_has_child_on_port(struct usb_device * parent,int port)1236 bool usb_device_has_child_on_port(struct usb_device *parent, int port)
1237 {
1238 #if CONFIG_IS_ENABLED(DM_USB)
1239 return false;
1240 #else
1241 return parent->children[port] != NULL;
1242 #endif
1243 }
1244
1245 #if CONFIG_IS_ENABLED(DM_USB)
usb_find_usb2_hub_address_port(struct usb_device * udev,uint8_t * hub_address,uint8_t * hub_port)1246 void usb_find_usb2_hub_address_port(struct usb_device *udev,
1247 uint8_t *hub_address, uint8_t *hub_port)
1248 {
1249 struct udevice *parent;
1250 struct usb_device *uparent, *ttdev;
1251
1252 /*
1253 * When called from usb-uclass.c: usb_scan_device() udev->dev points
1254 * to the parent udevice, not the actual udevice belonging to the
1255 * udev as the device is not instantiated yet. So when searching
1256 * for the first usb-2 parent start with udev->dev not
1257 * udev->dev->parent .
1258 */
1259 ttdev = udev;
1260 parent = udev->dev;
1261 uparent = dev_get_parent_priv(parent);
1262
1263 while (uparent->speed != USB_SPEED_HIGH) {
1264 struct udevice *dev = parent;
1265
1266 if (device_get_uclass_id(dev->parent) != UCLASS_USB_HUB) {
1267 printf("Error: Cannot find high speed parent of usb-1 device\n");
1268 *hub_address = 0;
1269 *hub_port = 0;
1270 return;
1271 }
1272
1273 ttdev = dev_get_parent_priv(dev);
1274 parent = dev->parent;
1275 uparent = dev_get_parent_priv(parent);
1276 }
1277 *hub_address = uparent->devnum;
1278 *hub_port = ttdev->portnr;
1279 }
1280 #else
usb_find_usb2_hub_address_port(struct usb_device * udev,uint8_t * hub_address,uint8_t * hub_port)1281 void usb_find_usb2_hub_address_port(struct usb_device *udev,
1282 uint8_t *hub_address, uint8_t *hub_port)
1283 {
1284 /* Find out the nearest parent which is high speed */
1285 while (udev->parent->parent != NULL)
1286 if (udev->parent->speed != USB_SPEED_HIGH) {
1287 udev = udev->parent;
1288 } else {
1289 *hub_address = udev->parent->devnum;
1290 *hub_port = udev->portnr;
1291 return;
1292 }
1293
1294 printf("Error: Cannot find high speed parent of usb-1 device\n");
1295 *hub_address = 0;
1296 *hub_port = 0;
1297 }
1298 #endif
1299
1300
1301 /* EOF */
1302