usb.c 36 KB

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  1. /*
  2. *
  3. * Most of this source has been derived from the Linux USB
  4. * project:
  5. * (C) Copyright Linus Torvalds 1999
  6. * (C) Copyright Johannes Erdfelt 1999-2001
  7. * (C) Copyright Andreas Gal 1999
  8. * (C) Copyright Gregory P. Smith 1999
  9. * (C) Copyright Deti Fliegl 1999 (new USB architecture)
  10. * (C) Copyright Randy Dunlap 2000
  11. * (C) Copyright David Brownell 2000 (kernel hotplug, usb_device_id)
  12. * (C) Copyright Yggdrasil Computing, Inc. 2000
  13. * (usb_device_id matching changes by Adam J. Richter)
  14. *
  15. * Adapted for U-Boot:
  16. * (C) Copyright 2001 Denis Peter, MPL AG Switzerland
  17. *
  18. * See file CREDITS for list of people who contributed to this
  19. * project.
  20. *
  21. * This program is free software; you can redistribute it and/or
  22. * modify it under the terms of the GNU General Public License as
  23. * published by the Free Software Foundation; either version 2 of
  24. * the License, or (at your option) any later version.
  25. *
  26. * This program is distributed in the hope that it will be useful,
  27. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  28. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  29. * GNU General Public License for more details.
  30. *
  31. * You should have received a copy of the GNU General Public License
  32. * along with this program; if not, write to the Free Software
  33. * Foundation, Inc., 59 Temple Place, Suite 330, Boston,
  34. * MA 02111-1307 USA
  35. *
  36. */
  37. /*
  38. * How it works:
  39. *
  40. * Since this is a bootloader, the devices will not be automatic
  41. * (re)configured on hotplug, but after a restart of the USB the
  42. * device should work.
  43. *
  44. * For each transfer (except "Interrupt") we wait for completion.
  45. */
  46. #include <common.h>
  47. #include <command.h>
  48. #include <asm/processor.h>
  49. #include <linux/ctype.h>
  50. #include <asm/byteorder.h>
  51. #include <usb.h>
  52. #ifdef CONFIG_4xx
  53. #include <asm/4xx_pci.h>
  54. #endif
  55. #undef USB_DEBUG
  56. #ifdef USB_DEBUG
  57. #define USB_PRINTF(fmt,args...) printf (fmt ,##args)
  58. #else
  59. #define USB_PRINTF(fmt,args...)
  60. #endif
  61. #define USB_BUFSIZ 512
  62. static struct usb_device usb_dev[USB_MAX_DEVICE];
  63. static int dev_index;
  64. static int running;
  65. static int asynch_allowed;
  66. static struct devrequest setup_packet;
  67. char usb_started; /* flag for the started/stopped USB status */
  68. /**********************************************************************
  69. * some forward declerations...
  70. */
  71. void usb_scan_devices(void);
  72. int usb_hub_probe(struct usb_device *dev, int ifnum);
  73. void usb_hub_reset(void);
  74. /***********************************************************************
  75. * wait_ms
  76. */
  77. void __inline__ wait_ms(unsigned long ms)
  78. {
  79. while(ms-->0)
  80. udelay(1000);
  81. }
  82. /***************************************************************************
  83. * Init USB Device
  84. */
  85. int usb_init(void)
  86. {
  87. int result;
  88. running=0;
  89. dev_index=0;
  90. asynch_allowed=1;
  91. usb_hub_reset();
  92. /* init low_level USB */
  93. printf("USB: ");
  94. result = usb_lowlevel_init();
  95. /* if lowlevel init is OK, scan the bus for devices i.e. search HUBs and configure them */
  96. if(result==0) {
  97. printf("scanning bus for devices... ");
  98. running=1;
  99. usb_scan_devices();
  100. usb_started = 1;
  101. return 0;
  102. }
  103. else {
  104. printf("Error, couldn't init Lowlevel part\n");
  105. usb_started = 0;
  106. return -1;
  107. }
  108. }
  109. /******************************************************************************
  110. * Stop USB this stops the LowLevel Part and deregisters USB devices.
  111. */
  112. int usb_stop(void)
  113. {
  114. int res = 0;
  115. if (usb_started) {
  116. asynch_allowed = 1;
  117. usb_started = 0;
  118. usb_hub_reset();
  119. res = usb_lowlevel_stop();
  120. }
  121. return res;
  122. }
  123. /*
  124. * disables the asynch behaviour of the control message. This is used for data
  125. * transfers that uses the exclusiv access to the control and bulk messages.
  126. */
  127. void usb_disable_asynch(int disable)
  128. {
  129. asynch_allowed=!disable;
  130. }
  131. /*-------------------------------------------------------------------
  132. * Message wrappers.
  133. *
  134. */
  135. /*
  136. * submits an Interrupt Message
  137. */
  138. int usb_submit_int_msg(struct usb_device *dev, unsigned long pipe,
  139. void *buffer,int transfer_len, int interval)
  140. {
  141. return submit_int_msg(dev,pipe,buffer,transfer_len,interval);
  142. }
  143. /*
  144. * submits a control message and waits for comletion (at least timeout * 1ms)
  145. * If timeout is 0, we don't wait for completion (used as example to set and
  146. * clear keyboards LEDs). For data transfers, (storage transfers) we don't
  147. * allow control messages with 0 timeout, by previousely resetting the flag
  148. * asynch_allowed (usb_disable_asynch(1)).
  149. * returns the transfered length if OK or -1 if error. The transfered length
  150. * and the current status are stored in the dev->act_len and dev->status.
  151. */
  152. int usb_control_msg(struct usb_device *dev, unsigned int pipe,
  153. unsigned char request, unsigned char requesttype,
  154. unsigned short value, unsigned short index,
  155. void *data, unsigned short size, int timeout)
  156. {
  157. if((timeout==0)&&(!asynch_allowed)) /* request for a asynch control pipe is not allowed */
  158. return -1;
  159. /* set setup command */
  160. setup_packet.requesttype = requesttype;
  161. setup_packet.request = request;
  162. setup_packet.value = cpu_to_le16(value);
  163. setup_packet.index = cpu_to_le16(index);
  164. setup_packet.length = cpu_to_le16(size);
  165. USB_PRINTF("usb_control_msg: request: 0x%X, requesttype: 0x%X, value 0x%X index 0x%X length 0x%X\n",
  166. request,requesttype,value,index,size);
  167. dev->status=USB_ST_NOT_PROC; /*not yet processed */
  168. submit_control_msg(dev,pipe,data,size,&setup_packet);
  169. if(timeout==0) {
  170. return (int)size;
  171. }
  172. while(timeout--) {
  173. if(!((volatile unsigned long)dev->status & USB_ST_NOT_PROC))
  174. break;
  175. wait_ms(1);
  176. }
  177. if(dev->status==0)
  178. return dev->act_len;
  179. else {
  180. return -1;
  181. }
  182. }
  183. /*-------------------------------------------------------------------
  184. * submits bulk message, and waits for completion. returns 0 if Ok or
  185. * -1 if Error.
  186. * synchronous behavior
  187. */
  188. int usb_bulk_msg(struct usb_device *dev, unsigned int pipe,
  189. void *data, int len, int *actual_length, int timeout)
  190. {
  191. if (len < 0)
  192. return -1;
  193. dev->status=USB_ST_NOT_PROC; /*not yet processed */
  194. submit_bulk_msg(dev,pipe,data,len);
  195. while(timeout--) {
  196. if(!((volatile unsigned long)dev->status & USB_ST_NOT_PROC))
  197. break;
  198. wait_ms(1);
  199. }
  200. *actual_length=dev->act_len;
  201. if(dev->status==0)
  202. return 0;
  203. else
  204. return -1;
  205. }
  206. /*-------------------------------------------------------------------
  207. * Max Packet stuff
  208. */
  209. /*
  210. * returns the max packet size, depending on the pipe direction and
  211. * the configurations values
  212. */
  213. int usb_maxpacket(struct usb_device *dev,unsigned long pipe)
  214. {
  215. if((pipe & USB_DIR_IN)==0) /* direction is out -> use emaxpacket out */
  216. return(dev->epmaxpacketout[((pipe>>15) & 0xf)]);
  217. else
  218. return(dev->epmaxpacketin[((pipe>>15) & 0xf)]);
  219. }
  220. /*
  221. * set the max packed value of all endpoints in the given configuration
  222. */
  223. int usb_set_maxpacket(struct usb_device *dev)
  224. {
  225. int i,ii,b;
  226. struct usb_endpoint_descriptor *ep;
  227. for(i=0; i<dev->config.bNumInterfaces;i++) {
  228. for(ii=0; ii<dev->config.if_desc[i].bNumEndpoints; ii++) {
  229. ep = &dev->config.if_desc[i].ep_desc[ii];
  230. b=ep->bEndpointAddress & USB_ENDPOINT_NUMBER_MASK;
  231. if((ep->bmAttributes & USB_ENDPOINT_XFERTYPE_MASK)==USB_ENDPOINT_XFER_CONTROL) { /* Control => bidirectional */
  232. dev->epmaxpacketout[b] = ep->wMaxPacketSize;
  233. dev->epmaxpacketin [b] = ep->wMaxPacketSize;
  234. USB_PRINTF("##Control EP epmaxpacketout/in[%d] = %d\n",b,dev->epmaxpacketin[b]);
  235. }
  236. else {
  237. if ((ep->bEndpointAddress & 0x80)==0) { /* OUT Endpoint */
  238. if(ep->wMaxPacketSize > dev->epmaxpacketout[b]) {
  239. dev->epmaxpacketout[b] = ep->wMaxPacketSize;
  240. USB_PRINTF("##EP epmaxpacketout[%d] = %d\n",b,dev->epmaxpacketout[b]);
  241. }
  242. }
  243. else { /* IN Endpoint */
  244. if(ep->wMaxPacketSize > dev->epmaxpacketin[b]) {
  245. dev->epmaxpacketin[b] = ep->wMaxPacketSize;
  246. USB_PRINTF("##EP epmaxpacketin[%d] = %d\n",b,dev->epmaxpacketin[b]);
  247. }
  248. } /* if out */
  249. } /* if control */
  250. } /* for each endpoint */
  251. }
  252. return 0;
  253. }
  254. /*******************************************************************************
  255. * Parse the config, located in buffer, and fills the dev->config structure.
  256. * Note that all little/big endian swapping are done automatically.
  257. */
  258. int usb_parse_config(struct usb_device *dev, unsigned char *buffer, int cfgno)
  259. {
  260. struct usb_descriptor_header *head;
  261. int index, ifno, epno, curr_if_num;
  262. int i;
  263. unsigned char *ch;
  264. ifno = -1;
  265. epno = -1;
  266. curr_if_num = -1;
  267. dev->configno = cfgno;
  268. head = (struct usb_descriptor_header *) &buffer[0];
  269. if(head->bDescriptorType != USB_DT_CONFIG) {
  270. printf(" ERROR: NOT USB_CONFIG_DESC %x\n", head->bDescriptorType);
  271. return -1;
  272. }
  273. memcpy(&dev->config, buffer, buffer[0]);
  274. le16_to_cpus(&(dev->config.wTotalLength));
  275. dev->config.no_of_if = 0;
  276. index = dev->config.bLength;
  277. /* Ok the first entry must be a configuration entry, now process the others */
  278. head = (struct usb_descriptor_header *) &buffer[index];
  279. while(index + 1 < dev->config.wTotalLength) {
  280. switch(head->bDescriptorType) {
  281. case USB_DT_INTERFACE:
  282. if(((struct usb_interface_descriptor *) &buffer[index])->
  283. bInterfaceNumber != curr_if_num) {
  284. /* this is a new interface, copy new desc */
  285. ifno = dev->config.no_of_if;
  286. dev->config.no_of_if++;
  287. memcpy(&dev->config.if_desc[ifno],
  288. &buffer[index], buffer[index]);
  289. dev->config.if_desc[ifno].no_of_ep = 0;
  290. dev->config.if_desc[ifno].num_altsetting = 1;
  291. curr_if_num = dev->config.if_desc[ifno].bInterfaceNumber;
  292. } else {
  293. /* found alternate setting for the interface */
  294. dev->config.if_desc[ifno].num_altsetting++;
  295. }
  296. break;
  297. case USB_DT_ENDPOINT:
  298. epno = dev->config.if_desc[ifno].no_of_ep;
  299. dev->config.if_desc[ifno].no_of_ep++; /* found an endpoint */
  300. memcpy(&dev->config.if_desc[ifno].ep_desc[epno],
  301. &buffer[index], buffer[index]);
  302. le16_to_cpus(&(dev->config.if_desc[ifno].ep_desc[epno].wMaxPacketSize));
  303. USB_PRINTF("if %d, ep %d\n", ifno, epno);
  304. break;
  305. default:
  306. if(head->bLength == 0)
  307. return 1;
  308. USB_PRINTF("unknown Description Type : %x\n", head->bDescriptorType);
  309. {
  310. ch = (unsigned char *)head;
  311. for(i = 0; i < head->bLength; i++)
  312. USB_PRINTF("%02X ", *ch++);
  313. USB_PRINTF("\n\n\n");
  314. }
  315. break;
  316. }
  317. index += head->bLength;
  318. head = (struct usb_descriptor_header *)&buffer[index];
  319. }
  320. return 1;
  321. }
  322. /***********************************************************************
  323. * Clears an endpoint
  324. * endp: endpoint number in bits 0-3;
  325. * direction flag in bit 7 (1 = IN, 0 = OUT)
  326. */
  327. int usb_clear_halt(struct usb_device *dev, int pipe)
  328. {
  329. int result;
  330. int endp = usb_pipeendpoint(pipe)|(usb_pipein(pipe)<<7);
  331. result = usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  332. USB_REQ_CLEAR_FEATURE, USB_RECIP_ENDPOINT, 0, endp, NULL, 0, USB_CNTL_TIMEOUT * 3);
  333. /* don't clear if failed */
  334. if (result < 0)
  335. return result;
  336. /*
  337. * NOTE: we do not get status and verify reset was successful
  338. * as some devices are reported to lock up upon this check..
  339. */
  340. usb_endpoint_running(dev, usb_pipeendpoint(pipe), usb_pipeout(pipe));
  341. /* toggle is reset on clear */
  342. usb_settoggle(dev, usb_pipeendpoint(pipe), usb_pipeout(pipe), 0);
  343. return 0;
  344. }
  345. /**********************************************************************
  346. * get_descriptor type
  347. */
  348. int usb_get_descriptor(struct usb_device *dev, unsigned char type, unsigned char index, void *buf, int size)
  349. {
  350. int res;
  351. res = usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
  352. USB_REQ_GET_DESCRIPTOR, USB_DIR_IN,
  353. (type << 8) + index, 0,
  354. buf, size, USB_CNTL_TIMEOUT);
  355. return res;
  356. }
  357. /**********************************************************************
  358. * gets configuration cfgno and store it in the buffer
  359. */
  360. int usb_get_configuration_no(struct usb_device *dev,unsigned char *buffer,int cfgno)
  361. {
  362. int result;
  363. unsigned int tmp;
  364. struct usb_config_descriptor *config;
  365. config=(struct usb_config_descriptor *)&buffer[0];
  366. result = usb_get_descriptor(dev, USB_DT_CONFIG, cfgno, buffer, 8);
  367. if (result < 8) {
  368. if (result < 0)
  369. printf("unable to get descriptor, error %lX\n",dev->status);
  370. else
  371. printf("config descriptor too short (expected %i, got %i)\n",8,result);
  372. return -1;
  373. }
  374. tmp = le16_to_cpu(config->wTotalLength);
  375. if (tmp > USB_BUFSIZ) {
  376. USB_PRINTF("usb_get_configuration_no: failed to get descriptor - too long: %d\n",
  377. tmp);
  378. return -1;
  379. }
  380. result = usb_get_descriptor(dev, USB_DT_CONFIG, cfgno, buffer, tmp);
  381. USB_PRINTF("get_conf_no %d Result %d, wLength %d\n",cfgno,result,tmp);
  382. return result;
  383. }
  384. /********************************************************************
  385. * set address of a device to the value in dev->devnum.
  386. * This can only be done by addressing the device via the default address (0)
  387. */
  388. int usb_set_address(struct usb_device *dev)
  389. {
  390. int res;
  391. USB_PRINTF("set address %d\n",dev->devnum);
  392. res=usb_control_msg(dev, usb_snddefctrl(dev),
  393. USB_REQ_SET_ADDRESS, 0,
  394. (dev->devnum),0,
  395. NULL,0, USB_CNTL_TIMEOUT);
  396. return res;
  397. }
  398. /********************************************************************
  399. * set interface number to interface
  400. */
  401. int usb_set_interface(struct usb_device *dev, int interface, int alternate)
  402. {
  403. struct usb_interface_descriptor *if_face = NULL;
  404. int ret, i;
  405. for (i = 0; i < dev->config.bNumInterfaces; i++) {
  406. if (dev->config.if_desc[i].bInterfaceNumber == interface) {
  407. if_face = &dev->config.if_desc[i];
  408. break;
  409. }
  410. }
  411. if (!if_face) {
  412. printf("selecting invalid interface %d", interface);
  413. return -1;
  414. }
  415. /*
  416. * We should return now for devices with only one alternate setting.
  417. * According to 9.4.10 of the Universal Serial Bus Specification Revision 2.0
  418. * such devices can return with a STALL. This results in some USB sticks
  419. * timeouting during initialization and then being unusable in U-Boot.
  420. */
  421. if (if_face->num_altsetting == 1)
  422. return 0;
  423. if ((ret = usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  424. USB_REQ_SET_INTERFACE, USB_RECIP_INTERFACE, alternate,
  425. interface, NULL, 0, USB_CNTL_TIMEOUT * 5)) < 0)
  426. return ret;
  427. return 0;
  428. }
  429. /********************************************************************
  430. * set configuration number to configuration
  431. */
  432. int usb_set_configuration(struct usb_device *dev, int configuration)
  433. {
  434. int res;
  435. USB_PRINTF("set configuration %d\n",configuration);
  436. /* set setup command */
  437. res=usb_control_msg(dev, usb_sndctrlpipe(dev,0),
  438. USB_REQ_SET_CONFIGURATION, 0,
  439. configuration,0,
  440. NULL,0, USB_CNTL_TIMEOUT);
  441. if(res==0) {
  442. dev->toggle[0] = 0;
  443. dev->toggle[1] = 0;
  444. return 0;
  445. }
  446. else
  447. return -1;
  448. }
  449. /********************************************************************
  450. * set protocol to protocol
  451. */
  452. int usb_set_protocol(struct usb_device *dev, int ifnum, int protocol)
  453. {
  454. return usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  455. USB_REQ_SET_PROTOCOL, USB_TYPE_CLASS | USB_RECIP_INTERFACE,
  456. protocol, ifnum, NULL, 0, USB_CNTL_TIMEOUT);
  457. }
  458. /********************************************************************
  459. * set idle
  460. */
  461. int usb_set_idle(struct usb_device *dev, int ifnum, int duration, int report_id)
  462. {
  463. return usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  464. USB_REQ_SET_IDLE, USB_TYPE_CLASS | USB_RECIP_INTERFACE,
  465. (duration << 8) | report_id, ifnum, NULL, 0, USB_CNTL_TIMEOUT);
  466. }
  467. /********************************************************************
  468. * get report
  469. */
  470. int usb_get_report(struct usb_device *dev, int ifnum, unsigned char type, unsigned char id, void *buf, int size)
  471. {
  472. return usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
  473. USB_REQ_GET_REPORT, USB_DIR_IN | USB_TYPE_CLASS | USB_RECIP_INTERFACE,
  474. (type << 8) + id, ifnum, buf, size, USB_CNTL_TIMEOUT);
  475. }
  476. /********************************************************************
  477. * get class descriptor
  478. */
  479. int usb_get_class_descriptor(struct usb_device *dev, int ifnum,
  480. unsigned char type, unsigned char id, void *buf, int size)
  481. {
  482. return usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
  483. USB_REQ_GET_DESCRIPTOR, USB_RECIP_INTERFACE | USB_DIR_IN,
  484. (type << 8) + id, ifnum, buf, size, USB_CNTL_TIMEOUT);
  485. }
  486. /********************************************************************
  487. * get string index in buffer
  488. */
  489. int usb_get_string(struct usb_device *dev, unsigned short langid, unsigned char index, void *buf, int size)
  490. {
  491. int i;
  492. int result;
  493. for (i = 0; i < 3; ++i) {
  494. /* some devices are flaky */
  495. result = usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
  496. USB_REQ_GET_DESCRIPTOR, USB_DIR_IN,
  497. (USB_DT_STRING << 8) + index, langid, buf, size,
  498. USB_CNTL_TIMEOUT);
  499. if (result > 0)
  500. break;
  501. }
  502. return result;
  503. }
  504. static void usb_try_string_workarounds(unsigned char *buf, int *length)
  505. {
  506. int newlength, oldlength = *length;
  507. for (newlength = 2; newlength + 1 < oldlength; newlength += 2)
  508. if (!isprint(buf[newlength]) || buf[newlength + 1])
  509. break;
  510. if (newlength > 2) {
  511. buf[0] = newlength;
  512. *length = newlength;
  513. }
  514. }
  515. static int usb_string_sub(struct usb_device *dev, unsigned int langid,
  516. unsigned int index, unsigned char *buf)
  517. {
  518. int rc;
  519. /* Try to read the string descriptor by asking for the maximum
  520. * possible number of bytes */
  521. rc = usb_get_string(dev, langid, index, buf, 255);
  522. /* If that failed try to read the descriptor length, then
  523. * ask for just that many bytes */
  524. if (rc < 2) {
  525. rc = usb_get_string(dev, langid, index, buf, 2);
  526. if (rc == 2)
  527. rc = usb_get_string(dev, langid, index, buf, buf[0]);
  528. }
  529. if (rc >= 2) {
  530. if (!buf[0] && !buf[1])
  531. usb_try_string_workarounds(buf, &rc);
  532. /* There might be extra junk at the end of the descriptor */
  533. if (buf[0] < rc)
  534. rc = buf[0];
  535. rc = rc - (rc & 1); /* force a multiple of two */
  536. }
  537. if (rc < 2)
  538. rc = -1;
  539. return rc;
  540. }
  541. /********************************************************************
  542. * usb_string:
  543. * Get string index and translate it to ascii.
  544. * returns string length (> 0) or error (< 0)
  545. */
  546. int usb_string(struct usb_device *dev, int index, char *buf, size_t size)
  547. {
  548. unsigned char mybuf[USB_BUFSIZ];
  549. unsigned char *tbuf;
  550. int err;
  551. unsigned int u, idx;
  552. if (size <= 0 || !buf || !index)
  553. return -1;
  554. buf[0] = 0;
  555. tbuf = &mybuf[0];
  556. /* get langid for strings if it's not yet known */
  557. if (!dev->have_langid) {
  558. err = usb_string_sub(dev, 0, 0, tbuf);
  559. if (err < 0) {
  560. USB_PRINTF("error getting string descriptor 0 (error=%x)\n",dev->status);
  561. return -1;
  562. } else if (tbuf[0] < 4) {
  563. USB_PRINTF("string descriptor 0 too short\n");
  564. return -1;
  565. } else {
  566. dev->have_langid = -1;
  567. dev->string_langid = tbuf[2] | (tbuf[3]<< 8);
  568. /* always use the first langid listed */
  569. USB_PRINTF("USB device number %d default language ID 0x%x\n",
  570. dev->devnum, dev->string_langid);
  571. }
  572. }
  573. err = usb_string_sub(dev, dev->string_langid, index, tbuf);
  574. if (err < 0)
  575. return err;
  576. size--; /* leave room for trailing NULL char in output buffer */
  577. for (idx = 0, u = 2; u < err; u += 2) {
  578. if (idx >= size)
  579. break;
  580. if (tbuf[u+1]) /* high byte */
  581. buf[idx++] = '?'; /* non-ASCII character */
  582. else
  583. buf[idx++] = tbuf[u];
  584. }
  585. buf[idx] = 0;
  586. err = idx;
  587. return err;
  588. }
  589. /********************************************************************
  590. * USB device handling:
  591. * the USB device are static allocated [USB_MAX_DEVICE].
  592. */
  593. /* returns a pointer to the device with the index [index].
  594. * if the device is not assigned (dev->devnum==-1) returns NULL
  595. */
  596. struct usb_device * usb_get_dev_index(int index)
  597. {
  598. if(usb_dev[index].devnum==-1)
  599. return NULL;
  600. else
  601. return &usb_dev[index];
  602. }
  603. /* returns a pointer of a new device structure or NULL, if
  604. * no device struct is available
  605. */
  606. struct usb_device * usb_alloc_new_device(void)
  607. {
  608. int i;
  609. USB_PRINTF("New Device %d\n",dev_index);
  610. if(dev_index==USB_MAX_DEVICE) {
  611. printf("ERROR, too many USB Devices, max=%d\n",USB_MAX_DEVICE);
  612. return NULL;
  613. }
  614. usb_dev[dev_index].devnum=dev_index+1; /* default Address is 0, real addresses start with 1 */
  615. usb_dev[dev_index].maxchild=0;
  616. for(i=0;i<USB_MAXCHILDREN;i++)
  617. usb_dev[dev_index].children[i]=NULL;
  618. usb_dev[dev_index].parent=NULL;
  619. dev_index++;
  620. return &usb_dev[dev_index-1];
  621. }
  622. /*
  623. * By the time we get here, the device has gotten a new device ID
  624. * and is in the default state. We need to identify the thing and
  625. * get the ball rolling..
  626. *
  627. * Returns 0 for success, != 0 for error.
  628. */
  629. int usb_new_device(struct usb_device *dev)
  630. {
  631. int addr, err;
  632. int tmp;
  633. unsigned char tmpbuf[USB_BUFSIZ];
  634. dev->descriptor.bMaxPacketSize0 = 8; /* Start off at 8 bytes */
  635. dev->maxpacketsize = 0; /* Default to 8 byte max packet size */
  636. dev->epmaxpacketin [0] = 8;
  637. dev->epmaxpacketout[0] = 8;
  638. /* We still haven't set the Address yet */
  639. addr = dev->devnum;
  640. dev->devnum = 0;
  641. #undef NEW_INIT_SEQ
  642. #ifdef NEW_INIT_SEQ
  643. /* this is a Windows scheme of initialization sequence, with double
  644. * reset of the device. Some equipment is said to work only with such
  645. * init sequence; this patch is based on the work by Alan Stern:
  646. * http://sourceforge.net/mailarchive/forum.php?thread_id=5729457&forum_id=5398
  647. */
  648. int j;
  649. struct usb_device_descriptor *desc;
  650. int port = -1;
  651. struct usb_device *parent = dev->parent;
  652. unsigned short portstatus;
  653. /* send 64-byte GET-DEVICE-DESCRIPTOR request. Since the descriptor is
  654. * only 18 bytes long, this will terminate with a short packet. But if
  655. * the maxpacket size is 8 or 16 the device may be waiting to transmit
  656. * some more. */
  657. desc = (struct usb_device_descriptor *)tmpbuf;
  658. desc->bMaxPacketSize0 = 0;
  659. for (j = 0; j < 3; ++j) {
  660. err = usb_get_descriptor(dev, USB_DT_DEVICE, 0, desc, 64);
  661. if (err < 0) {
  662. USB_PRINTF("usb_new_device: 64 byte descr\n");
  663. break;
  664. }
  665. }
  666. dev->descriptor.bMaxPacketSize0 = desc->bMaxPacketSize0;
  667. /* find the port number we're at */
  668. if (parent) {
  669. for (j = 0; j < parent->maxchild; j++) {
  670. if (parent->children[j] == dev) {
  671. port = j;
  672. break;
  673. }
  674. }
  675. if (port < 0) {
  676. printf("usb_new_device: cannot locate device's port..\n");
  677. return 1;
  678. }
  679. /* reset the port for the second time */
  680. err = hub_port_reset(dev->parent, port, &portstatus);
  681. if (err < 0) {
  682. printf("\n Couldn't reset port %i\n", port);
  683. return 1;
  684. }
  685. }
  686. #else
  687. /* and this is the old and known way of initializing devices */
  688. err = usb_get_descriptor(dev, USB_DT_DEVICE, 0, &dev->descriptor, 8);
  689. if (err < 8) {
  690. printf("\n USB device not responding, giving up (status=%lX)\n",dev->status);
  691. return 1;
  692. }
  693. #endif
  694. dev->epmaxpacketin [0] = dev->descriptor.bMaxPacketSize0;
  695. dev->epmaxpacketout[0] = dev->descriptor.bMaxPacketSize0;
  696. switch (dev->descriptor.bMaxPacketSize0) {
  697. case 8: dev->maxpacketsize = 0; break;
  698. case 16: dev->maxpacketsize = 1; break;
  699. case 32: dev->maxpacketsize = 2; break;
  700. case 64: dev->maxpacketsize = 3; break;
  701. }
  702. dev->devnum = addr;
  703. err = usb_set_address(dev); /* set address */
  704. if (err < 0) {
  705. printf("\n USB device not accepting new address (error=%lX)\n", dev->status);
  706. return 1;
  707. }
  708. wait_ms(10); /* Let the SET_ADDRESS settle */
  709. tmp = sizeof(dev->descriptor);
  710. err = usb_get_descriptor(dev, USB_DT_DEVICE, 0, &dev->descriptor, sizeof(dev->descriptor));
  711. if (err < tmp) {
  712. if (err < 0)
  713. printf("unable to get device descriptor (error=%d)\n",err);
  714. else
  715. printf("USB device descriptor short read (expected %i, got %i)\n",tmp,err);
  716. return 1;
  717. }
  718. /* correct le values */
  719. le16_to_cpus(&dev->descriptor.bcdUSB);
  720. le16_to_cpus(&dev->descriptor.idVendor);
  721. le16_to_cpus(&dev->descriptor.idProduct);
  722. le16_to_cpus(&dev->descriptor.bcdDevice);
  723. /* only support for one config for now */
  724. usb_get_configuration_no(dev,&tmpbuf[0],0);
  725. usb_parse_config(dev,&tmpbuf[0],0);
  726. usb_set_maxpacket(dev);
  727. /* we set the default configuration here */
  728. if (usb_set_configuration(dev, dev->config.bConfigurationValue)) {
  729. printf("failed to set default configuration len %d, status %lX\n",dev->act_len,dev->status);
  730. return -1;
  731. }
  732. USB_PRINTF("new device strings: Mfr=%d, Product=%d, SerialNumber=%d\n",
  733. dev->descriptor.iManufacturer, dev->descriptor.iProduct, dev->descriptor.iSerialNumber);
  734. memset(dev->mf, 0, sizeof(dev->mf));
  735. memset(dev->prod, 0, sizeof(dev->prod));
  736. memset(dev->serial, 0, sizeof(dev->serial));
  737. if (dev->descriptor.iManufacturer)
  738. usb_string(dev, dev->descriptor.iManufacturer, dev->mf, sizeof(dev->mf));
  739. if (dev->descriptor.iProduct)
  740. usb_string(dev, dev->descriptor.iProduct, dev->prod, sizeof(dev->prod));
  741. if (dev->descriptor.iSerialNumber)
  742. usb_string(dev, dev->descriptor.iSerialNumber, dev->serial, sizeof(dev->serial));
  743. USB_PRINTF("Manufacturer %s\n", dev->mf);
  744. USB_PRINTF("Product %s\n", dev->prod);
  745. USB_PRINTF("SerialNumber %s\n", dev->serial);
  746. /* now prode if the device is a hub */
  747. usb_hub_probe(dev,0);
  748. return 0;
  749. }
  750. /* build device Tree */
  751. void usb_scan_devices(void)
  752. {
  753. int i;
  754. struct usb_device *dev;
  755. /* first make all devices unknown */
  756. for(i=0;i<USB_MAX_DEVICE;i++) {
  757. memset(&usb_dev[i],0,sizeof(struct usb_device));
  758. usb_dev[i].devnum = -1;
  759. }
  760. dev_index=0;
  761. /* device 0 is always present (root hub, so let it analyze) */
  762. dev=usb_alloc_new_device();
  763. usb_new_device(dev);
  764. printf("%d USB Device(s) found\n",dev_index);
  765. /* insert "driver" if possible */
  766. #ifdef CONFIG_USB_KEYBOARD
  767. drv_usb_kbd_init();
  768. USB_PRINTF("scan end\n");
  769. #endif
  770. }
  771. /****************************************************************************
  772. * HUB "Driver"
  773. * Probes device for being a hub and configurate it
  774. */
  775. #undef USB_HUB_DEBUG
  776. #ifdef USB_HUB_DEBUG
  777. #define USB_HUB_PRINTF(fmt,args...) printf (fmt ,##args)
  778. #else
  779. #define USB_HUB_PRINTF(fmt,args...)
  780. #endif
  781. static struct usb_hub_device hub_dev[USB_MAX_HUB];
  782. static int usb_hub_index;
  783. int usb_get_hub_descriptor(struct usb_device *dev, void *data, int size)
  784. {
  785. return usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
  786. USB_REQ_GET_DESCRIPTOR, USB_DIR_IN | USB_RT_HUB,
  787. USB_DT_HUB << 8, 0, data, size, USB_CNTL_TIMEOUT);
  788. }
  789. int usb_clear_hub_feature(struct usb_device *dev, int feature)
  790. {
  791. return usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  792. USB_REQ_CLEAR_FEATURE, USB_RT_HUB, feature, 0, NULL, 0, USB_CNTL_TIMEOUT);
  793. }
  794. int usb_clear_port_feature(struct usb_device *dev, int port, int feature)
  795. {
  796. return usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  797. USB_REQ_CLEAR_FEATURE, USB_RT_PORT, feature, port, NULL, 0, USB_CNTL_TIMEOUT);
  798. }
  799. int usb_set_port_feature(struct usb_device *dev, int port, int feature)
  800. {
  801. return usb_control_msg(dev, usb_sndctrlpipe(dev, 0),
  802. USB_REQ_SET_FEATURE, USB_RT_PORT, feature, port, NULL, 0, USB_CNTL_TIMEOUT);
  803. }
  804. int usb_get_hub_status(struct usb_device *dev, void *data)
  805. {
  806. return usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
  807. USB_REQ_GET_STATUS, USB_DIR_IN | USB_RT_HUB, 0, 0,
  808. data, sizeof(struct usb_hub_status), USB_CNTL_TIMEOUT);
  809. }
  810. int usb_get_port_status(struct usb_device *dev, int port, void *data)
  811. {
  812. return usb_control_msg(dev, usb_rcvctrlpipe(dev, 0),
  813. USB_REQ_GET_STATUS, USB_DIR_IN | USB_RT_PORT, 0, port,
  814. data, sizeof(struct usb_hub_status), USB_CNTL_TIMEOUT);
  815. }
  816. static void usb_hub_power_on(struct usb_hub_device *hub)
  817. {
  818. int i;
  819. struct usb_device *dev;
  820. dev=hub->pusb_dev;
  821. /* Enable power to the ports */
  822. USB_HUB_PRINTF("enabling power on all ports\n");
  823. for (i = 0; i < dev->maxchild; i++) {
  824. usb_set_port_feature(dev, i + 1, USB_PORT_FEAT_POWER);
  825. USB_HUB_PRINTF("port %d returns %lX\n",i+1,dev->status);
  826. wait_ms(hub->desc.bPwrOn2PwrGood * 2);
  827. }
  828. }
  829. void usb_hub_reset(void)
  830. {
  831. usb_hub_index=0;
  832. }
  833. struct usb_hub_device *usb_hub_allocate(void)
  834. {
  835. if(usb_hub_index<USB_MAX_HUB) {
  836. return &hub_dev[usb_hub_index++];
  837. }
  838. printf("ERROR: USB_MAX_HUB (%d) reached\n",USB_MAX_HUB);
  839. return NULL;
  840. }
  841. #define MAX_TRIES 5
  842. static int hub_port_reset(struct usb_device *dev, int port,
  843. unsigned short *portstat)
  844. {
  845. int tries;
  846. struct usb_port_status portsts;
  847. unsigned short portstatus, portchange;
  848. USB_HUB_PRINTF("hub_port_reset: resetting port %d...\n", port);
  849. for(tries=0;tries<MAX_TRIES;tries++) {
  850. usb_set_port_feature(dev, port + 1, USB_PORT_FEAT_RESET);
  851. wait_ms(200);
  852. if (usb_get_port_status(dev, port + 1, &portsts)<0) {
  853. USB_HUB_PRINTF("get_port_status failed status %lX\n",dev->status);
  854. return -1;
  855. }
  856. portstatus = le16_to_cpu(portsts.wPortStatus);
  857. portchange = le16_to_cpu(portsts.wPortChange);
  858. USB_HUB_PRINTF("portstatus %x, change %x, %s\n", portstatus ,portchange,
  859. portstatus&(1<<USB_PORT_FEAT_LOWSPEED) ? "Low Speed" : "High Speed");
  860. USB_HUB_PRINTF("STAT_C_CONNECTION = %d STAT_CONNECTION = %d USB_PORT_STAT_ENABLE %d\n",
  861. (portchange & USB_PORT_STAT_C_CONNECTION) ? 1 : 0,
  862. (portstatus & USB_PORT_STAT_CONNECTION) ? 1 : 0,
  863. (portstatus & USB_PORT_STAT_ENABLE) ? 1 : 0);
  864. if ((portchange & USB_PORT_STAT_C_CONNECTION) ||
  865. !(portstatus & USB_PORT_STAT_CONNECTION))
  866. return -1;
  867. if (portstatus & USB_PORT_STAT_ENABLE) {
  868. break;
  869. }
  870. wait_ms(200);
  871. }
  872. if (tries==MAX_TRIES) {
  873. USB_HUB_PRINTF("Cannot enable port %i after %i retries, disabling port.\n", port+1, MAX_TRIES);
  874. USB_HUB_PRINTF("Maybe the USB cable is bad?\n");
  875. return -1;
  876. }
  877. usb_clear_port_feature(dev, port + 1, USB_PORT_FEAT_C_RESET);
  878. *portstat = portstatus;
  879. return 0;
  880. }
  881. void usb_hub_port_connect_change(struct usb_device *dev, int port)
  882. {
  883. struct usb_device *usb;
  884. struct usb_port_status portsts;
  885. unsigned short portstatus, portchange;
  886. /* Check status */
  887. if (usb_get_port_status(dev, port + 1, &portsts)<0) {
  888. USB_HUB_PRINTF("get_port_status failed\n");
  889. return;
  890. }
  891. portstatus = le16_to_cpu(portsts.wPortStatus);
  892. portchange = le16_to_cpu(portsts.wPortChange);
  893. USB_HUB_PRINTF("portstatus %x, change %x, %s\n", portstatus, portchange,
  894. portstatus&(1<<USB_PORT_FEAT_LOWSPEED) ? "Low Speed" : "High Speed");
  895. /* Clear the connection change status */
  896. usb_clear_port_feature(dev, port + 1, USB_PORT_FEAT_C_CONNECTION);
  897. /* Disconnect any existing devices under this port */
  898. if (((!(portstatus & USB_PORT_STAT_CONNECTION)) &&
  899. (!(portstatus & USB_PORT_STAT_ENABLE)))|| (dev->children[port])) {
  900. USB_HUB_PRINTF("usb_disconnect(&hub->children[port]);\n");
  901. /* Return now if nothing is connected */
  902. if (!(portstatus & USB_PORT_STAT_CONNECTION))
  903. return;
  904. }
  905. wait_ms(200);
  906. /* Reset the port */
  907. if (hub_port_reset(dev, port, &portstatus) < 0) {
  908. printf("cannot reset port %i!?\n", port + 1);
  909. return;
  910. }
  911. wait_ms(200);
  912. /* Allocate a new device struct for it */
  913. usb=usb_alloc_new_device();
  914. usb->slow = (portstatus & USB_PORT_STAT_LOW_SPEED) ? 1 : 0;
  915. dev->children[port] = usb;
  916. usb->parent=dev;
  917. /* Run it through the hoops (find a driver, etc) */
  918. if (usb_new_device(usb)) {
  919. /* Woops, disable the port */
  920. USB_HUB_PRINTF("hub: disabling port %d\n", port + 1);
  921. usb_clear_port_feature(dev, port + 1, USB_PORT_FEAT_ENABLE);
  922. }
  923. }
  924. int usb_hub_configure(struct usb_device *dev)
  925. {
  926. unsigned char buffer[USB_BUFSIZ], *bitmap;
  927. struct usb_hub_descriptor *descriptor;
  928. struct usb_hub_status *hubsts;
  929. int i;
  930. struct usb_hub_device *hub;
  931. /* "allocate" Hub device */
  932. hub=usb_hub_allocate();
  933. if(hub==NULL)
  934. return -1;
  935. hub->pusb_dev=dev;
  936. /* Get the the hub descriptor */
  937. if (usb_get_hub_descriptor(dev, buffer, 4) < 0) {
  938. USB_HUB_PRINTF("usb_hub_configure: failed to get hub descriptor, giving up %lX\n",dev->status);
  939. return -1;
  940. }
  941. descriptor = (struct usb_hub_descriptor *)buffer;
  942. /* silence compiler warning if USB_BUFSIZ is > 256 [= sizeof(char)] */
  943. i = descriptor->bLength;
  944. if (i > USB_BUFSIZ) {
  945. USB_HUB_PRINTF("usb_hub_configure: failed to get hub descriptor - too long: %d\n",
  946. descriptor->bLength);
  947. return -1;
  948. }
  949. if (usb_get_hub_descriptor(dev, buffer, descriptor->bLength) < 0) {
  950. USB_HUB_PRINTF("usb_hub_configure: failed to get hub descriptor 2nd giving up %lX\n",dev->status);
  951. return -1;
  952. }
  953. memcpy((unsigned char *)&hub->desc,buffer,descriptor->bLength);
  954. /* adjust 16bit values */
  955. hub->desc.wHubCharacteristics = le16_to_cpu(descriptor->wHubCharacteristics);
  956. /* set the bitmap */
  957. bitmap=(unsigned char *)&hub->desc.DeviceRemovable[0];
  958. memset(bitmap,0xff,(USB_MAXCHILDREN+1+7)/8); /* devices not removable by default */
  959. bitmap=(unsigned char *)&hub->desc.PortPowerCtrlMask[0];
  960. memset(bitmap,0xff,(USB_MAXCHILDREN+1+7)/8); /* PowerMask = 1B */
  961. for(i=0;i<((hub->desc.bNbrPorts + 1 + 7)/8);i++) {
  962. hub->desc.DeviceRemovable[i]=descriptor->DeviceRemovable[i];
  963. }
  964. for(i=0;i<((hub->desc.bNbrPorts + 1 + 7)/8);i++) {
  965. hub->desc.DeviceRemovable[i]=descriptor->PortPowerCtrlMask[i];
  966. }
  967. dev->maxchild = descriptor->bNbrPorts;
  968. USB_HUB_PRINTF("%d ports detected\n", dev->maxchild);
  969. switch (hub->desc.wHubCharacteristics & HUB_CHAR_LPSM) {
  970. case 0x00:
  971. USB_HUB_PRINTF("ganged power switching\n");
  972. break;
  973. case 0x01:
  974. USB_HUB_PRINTF("individual port power switching\n");
  975. break;
  976. case 0x02:
  977. case 0x03:
  978. USB_HUB_PRINTF("unknown reserved power switching mode\n");
  979. break;
  980. }
  981. if (hub->desc.wHubCharacteristics & HUB_CHAR_COMPOUND)
  982. USB_HUB_PRINTF("part of a compound device\n");
  983. else
  984. USB_HUB_PRINTF("standalone hub\n");
  985. switch (hub->desc.wHubCharacteristics & HUB_CHAR_OCPM) {
  986. case 0x00:
  987. USB_HUB_PRINTF("global over-current protection\n");
  988. break;
  989. case 0x08:
  990. USB_HUB_PRINTF("individual port over-current protection\n");
  991. break;
  992. case 0x10:
  993. case 0x18:
  994. USB_HUB_PRINTF("no over-current protection\n");
  995. break;
  996. }
  997. USB_HUB_PRINTF("power on to power good time: %dms\n", descriptor->bPwrOn2PwrGood * 2);
  998. USB_HUB_PRINTF("hub controller current requirement: %dmA\n", descriptor->bHubContrCurrent);
  999. for (i = 0; i < dev->maxchild; i++)
  1000. USB_HUB_PRINTF("port %d is%s removable\n", i + 1,
  1001. hub->desc.DeviceRemovable[(i + 1)/8] & (1 << ((i + 1)%8)) ? " not" : "");
  1002. if (sizeof(struct usb_hub_status) > USB_BUFSIZ) {
  1003. USB_HUB_PRINTF("usb_hub_configure: failed to get Status - too long: %d\n",
  1004. descriptor->bLength);
  1005. return -1;
  1006. }
  1007. if (usb_get_hub_status(dev, buffer) < 0) {
  1008. USB_HUB_PRINTF("usb_hub_configure: failed to get Status %lX\n",dev->status);
  1009. return -1;
  1010. }
  1011. hubsts = (struct usb_hub_status *)buffer;
  1012. USB_HUB_PRINTF("get_hub_status returned status %X, change %X\n",
  1013. le16_to_cpu(hubsts->wHubStatus),le16_to_cpu(hubsts->wHubChange));
  1014. USB_HUB_PRINTF("local power source is %s\n",
  1015. (le16_to_cpu(hubsts->wHubStatus) & HUB_STATUS_LOCAL_POWER) ? "lost (inactive)" : "good");
  1016. USB_HUB_PRINTF("%sover-current condition exists\n",
  1017. (le16_to_cpu(hubsts->wHubStatus) & HUB_STATUS_OVERCURRENT) ? "" : "no ");
  1018. usb_hub_power_on(hub);
  1019. for (i = 0; i < dev->maxchild; i++) {
  1020. struct usb_port_status portsts;
  1021. unsigned short portstatus, portchange;
  1022. if (usb_get_port_status(dev, i + 1, &portsts) < 0) {
  1023. USB_HUB_PRINTF("get_port_status failed\n");
  1024. continue;
  1025. }
  1026. portstatus = le16_to_cpu(portsts.wPortStatus);
  1027. portchange = le16_to_cpu(portsts.wPortChange);
  1028. USB_HUB_PRINTF("Port %d Status %X Change %X\n",i+1,portstatus,portchange);
  1029. if (portchange & USB_PORT_STAT_C_CONNECTION) {
  1030. USB_HUB_PRINTF("port %d connection change\n", i + 1);
  1031. usb_hub_port_connect_change(dev, i);
  1032. }
  1033. if (portchange & USB_PORT_STAT_C_ENABLE) {
  1034. USB_HUB_PRINTF("port %d enable change, status %x\n", i + 1, portstatus);
  1035. usb_clear_port_feature(dev, i + 1, USB_PORT_FEAT_C_ENABLE);
  1036. /* EM interference sometimes causes bad shielded USB devices to
  1037. * be shutdown by the hub, this hack enables them again.
  1038. * Works at least with mouse driver */
  1039. if (!(portstatus & USB_PORT_STAT_ENABLE) &&
  1040. (portstatus & USB_PORT_STAT_CONNECTION) && (dev->children[i])) {
  1041. USB_HUB_PRINTF("already running port %i disabled by hub (EMI?), re-enabling...\n",
  1042. i + 1);
  1043. usb_hub_port_connect_change(dev, i);
  1044. }
  1045. }
  1046. if (portstatus & USB_PORT_STAT_SUSPEND) {
  1047. USB_HUB_PRINTF("port %d suspend change\n", i + 1);
  1048. usb_clear_port_feature(dev, i + 1, USB_PORT_FEAT_SUSPEND);
  1049. }
  1050. if (portchange & USB_PORT_STAT_C_OVERCURRENT) {
  1051. USB_HUB_PRINTF("port %d over-current change\n", i + 1);
  1052. usb_clear_port_feature(dev, i + 1, USB_PORT_FEAT_C_OVER_CURRENT);
  1053. usb_hub_power_on(hub);
  1054. }
  1055. if (portchange & USB_PORT_STAT_C_RESET) {
  1056. USB_HUB_PRINTF("port %d reset change\n", i + 1);
  1057. usb_clear_port_feature(dev, i + 1, USB_PORT_FEAT_C_RESET);
  1058. }
  1059. } /* end for i all ports */
  1060. return 0;
  1061. }
  1062. int usb_hub_probe(struct usb_device *dev, int ifnum)
  1063. {
  1064. struct usb_interface_descriptor *iface;
  1065. struct usb_endpoint_descriptor *ep;
  1066. int ret;
  1067. iface = &dev->config.if_desc[ifnum];
  1068. /* Is it a hub? */
  1069. if (iface->bInterfaceClass != USB_CLASS_HUB)
  1070. return 0;
  1071. /* Some hubs have a subclass of 1, which AFAICT according to the */
  1072. /* specs is not defined, but it works */
  1073. if ((iface->bInterfaceSubClass != 0) &&
  1074. (iface->bInterfaceSubClass != 1))
  1075. return 0;
  1076. /* Multiple endpoints? What kind of mutant ninja-hub is this? */
  1077. if (iface->bNumEndpoints != 1)
  1078. return 0;
  1079. ep = &iface->ep_desc[0];
  1080. /* Output endpoint? Curiousier and curiousier.. */
  1081. if (!(ep->bEndpointAddress & USB_DIR_IN))
  1082. return 0;
  1083. /* If it's not an interrupt endpoint, we'd better punt! */
  1084. if ((ep->bmAttributes & 3) != 3)
  1085. return 0;
  1086. /* We found a hub */
  1087. USB_HUB_PRINTF("USB hub found\n");
  1088. ret=usb_hub_configure(dev);
  1089. return ret;
  1090. }
  1091. /* EOF */