smsusb.c 11 KB

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  1. /*
  2. * Driver for the Siano SMS10xx USB dongle
  3. *
  4. * author: Anatoly Greenblat
  5. *
  6. * Copyright (c), 2005-2008 Siano Mobile Silicon, Inc.
  7. *
  8. * This program is free software; you can redistribute it and/or modify
  9. * it under the terms of the GNU General Public License version 3 as
  10. * published by the Free Software Foundation;
  11. *
  12. * Software distributed under the License is distributed on an "AS IS"
  13. * basis, WITHOUT WARRANTY OF ANY KIND, either express or implied.
  14. *
  15. * See the GNU General Public License for more details.
  16. *
  17. * You should have received a copy of the GNU General Public License
  18. * along with this program; if not, write to the Free Software
  19. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  20. */
  21. #include <linux/kernel.h>
  22. #include <linux/init.h>
  23. #include <linux/usb.h>
  24. #include <linux/firmware.h>
  25. #include "smscoreapi.h"
  26. #define USB1_BUFFER_SIZE 0x1000
  27. #define USB2_BUFFER_SIZE 0x4000
  28. #define MAX_BUFFERS 50
  29. #define MAX_URBS 10
  30. /* TO DO: move these to a header file */
  31. #define USB_VID_SIANO 0x187f
  32. #define USB_PID_STELLAR 0x0100
  33. #define USB_PID_NOVA_A 0x0200
  34. #define USB_PID_NOVA_B 0x0201
  35. #define USB_PID_VEGA 0x0300
  36. struct smsusb_device_t;
  37. struct smsusb_urb_t {
  38. struct smscore_buffer_t *cb;
  39. struct smsusb_device_t *dev;
  40. struct urb urb;
  41. };
  42. struct smsusb_device_t {
  43. struct usb_device *udev;
  44. struct smscore_device_t *coredev;
  45. struct smsusb_urb_t surbs[MAX_URBS];
  46. int response_alignment;
  47. int buffer_size;
  48. };
  49. int smsusb_submit_urb(struct smsusb_device_t *dev, struct smsusb_urb_t *surb);
  50. void smsusb_onresponse(struct urb *urb)
  51. {
  52. struct smsusb_urb_t *surb = (struct smsusb_urb_t *) urb->context;
  53. struct smsusb_device_t *dev = surb->dev;
  54. if (urb->status < 0) {
  55. printk(KERN_INFO "%s error, urb status %d, %d bytes\n",
  56. __func__, urb->status, urb->actual_length);
  57. return;
  58. }
  59. if (urb->actual_length > 0) {
  60. struct SmsMsgHdr_ST *phdr = (struct SmsMsgHdr_ST *) surb->cb->p;
  61. if (urb->actual_length >= phdr->msgLength) {
  62. surb->cb->size = phdr->msgLength;
  63. if (dev->response_alignment &&
  64. (phdr->msgFlags & MSG_HDR_FLAG_SPLIT_MSG)) {
  65. surb->cb->offset =
  66. dev->response_alignment +
  67. ((phdr->msgFlags >> 8) & 3);
  68. /* sanity check */
  69. if (((int) phdr->msgLength +
  70. surb->cb->offset) > urb->actual_length) {
  71. printk(KERN_INFO "%s: invalid "
  72. "response msglen %d offset %d "
  73. "size %d\n", __func__,
  74. phdr->msgLength,
  75. surb->cb->offset,
  76. urb->actual_length);
  77. goto exit_and_resubmit;
  78. }
  79. /* move buffer pointer and
  80. * copy header to its new location */
  81. memcpy((char *) phdr + surb->cb->offset,
  82. phdr, sizeof(struct SmsMsgHdr_ST));
  83. } else
  84. surb->cb->offset = 0;
  85. smscore_onresponse(dev->coredev, surb->cb);
  86. surb->cb = NULL;
  87. } else {
  88. printk(KERN_INFO "%s invalid response "
  89. "msglen %d actual %d\n", __func__,
  90. phdr->msgLength, urb->actual_length);
  91. }
  92. }
  93. exit_and_resubmit:
  94. smsusb_submit_urb(dev, surb);
  95. }
  96. int smsusb_submit_urb(struct smsusb_device_t *dev, struct smsusb_urb_t *surb)
  97. {
  98. if (!surb->cb) {
  99. surb->cb = smscore_getbuffer(dev->coredev);
  100. if (!surb->cb) {
  101. printk(KERN_INFO "%s smscore_getbuffer(...) "
  102. "returned NULL\n", __func__);
  103. return -ENOMEM;
  104. }
  105. }
  106. usb_fill_bulk_urb(
  107. &surb->urb,
  108. dev->udev,
  109. usb_rcvbulkpipe(dev->udev, 0x81),
  110. surb->cb->p,
  111. dev->buffer_size,
  112. smsusb_onresponse,
  113. surb
  114. );
  115. surb->urb.transfer_dma = surb->cb->phys;
  116. surb->urb.transfer_flags |= URB_NO_TRANSFER_DMA_MAP;
  117. return usb_submit_urb(&surb->urb, GFP_ATOMIC);
  118. }
  119. void smsusb_stop_streaming(struct smsusb_device_t *dev)
  120. {
  121. int i;
  122. for (i = 0; i < MAX_URBS; i++) {
  123. usb_kill_urb(&dev->surbs[i].urb);
  124. if (dev->surbs[i].cb) {
  125. smscore_putbuffer(dev->coredev, dev->surbs[i].cb);
  126. dev->surbs[i].cb = NULL;
  127. }
  128. }
  129. }
  130. int smsusb_start_streaming(struct smsusb_device_t *dev)
  131. {
  132. int i, rc;
  133. for (i = 0; i < MAX_URBS; i++) {
  134. rc = smsusb_submit_urb(dev, &dev->surbs[i]);
  135. if (rc < 0) {
  136. printk(KERN_INFO "%s smsusb_submit_urb(...) "
  137. "failed\n", __func__);
  138. smsusb_stop_streaming(dev);
  139. break;
  140. }
  141. }
  142. return rc;
  143. }
  144. int smsusb_sendrequest(void *context, void *buffer, size_t size)
  145. {
  146. struct smsusb_device_t *dev = (struct smsusb_device_t *) context;
  147. int dummy;
  148. return usb_bulk_msg(dev->udev, usb_sndbulkpipe(dev->udev, 2),
  149. buffer, size, &dummy, 1000);
  150. }
  151. char *smsusb1_fw_lkup[] = {
  152. "dvbt_stellar_usb.inp",
  153. "dvbh_stellar_usb.inp",
  154. "tdmb_stellar_usb.inp",
  155. "none",
  156. "dvbt_bda_stellar_usb.inp",
  157. };
  158. int smsusb1_load_firmware(struct usb_device *udev, int id)
  159. {
  160. const struct firmware *fw;
  161. u8 *fw_buffer;
  162. int rc, dummy;
  163. if (id < DEVICE_MODE_DVBT || id > DEVICE_MODE_DVBT_BDA) {
  164. printk(KERN_INFO "%s invalid firmware id specified %d\n",
  165. __func__, id);
  166. return -EINVAL;
  167. }
  168. rc = request_firmware(&fw, smsusb1_fw_lkup[id], &udev->dev);
  169. if (rc < 0) {
  170. printk(KERN_INFO "%s failed to open \"%s\" mode %d\n",
  171. __func__, smsusb1_fw_lkup[id], id);
  172. return rc;
  173. }
  174. fw_buffer = kmalloc(fw->size, GFP_KERNEL);
  175. if (fw_buffer) {
  176. memcpy(fw_buffer, fw->data, fw->size);
  177. rc = usb_bulk_msg(udev, usb_sndbulkpipe(udev, 2),
  178. fw_buffer, fw->size, &dummy, 1000);
  179. printk(KERN_INFO "%s: sent %d(%d) bytes, rc %d\n",
  180. __func__, fw->size, dummy, rc);
  181. kfree(fw_buffer);
  182. } else {
  183. printk(KERN_INFO "failed to allocate firmware buffer\n");
  184. rc = -ENOMEM;
  185. }
  186. release_firmware(fw);
  187. return rc;
  188. }
  189. void smsusb1_detectmode(void *context, int *mode)
  190. {
  191. char *product_string =
  192. ((struct smsusb_device_t *) context)->udev->product;
  193. *mode = DEVICE_MODE_NONE;
  194. if (!product_string) {
  195. product_string = "none";
  196. printk(KERN_ERR "%s product string not found\n", __func__);
  197. } else if (strstr(product_string, "DVBH"))
  198. *mode = 1;
  199. else if (strstr(product_string, "BDA"))
  200. *mode = 4;
  201. else if (strstr(product_string, "DVBT"))
  202. *mode = 0;
  203. else if (strstr(product_string, "TDMB"))
  204. *mode = 2;
  205. printk(KERN_INFO "%s: %d \"%s\"\n", __func__, *mode, product_string);
  206. }
  207. int smsusb1_setmode(void *context, int mode)
  208. {
  209. struct SmsMsgHdr_ST Msg = { MSG_SW_RELOAD_REQ, 0, HIF_TASK,
  210. sizeof(struct SmsMsgHdr_ST), 0 };
  211. if (mode < DEVICE_MODE_DVBT || mode > DEVICE_MODE_DVBT_BDA) {
  212. printk(KERN_INFO "%s invalid firmware id specified %d\n",
  213. __func__, mode);
  214. return -EINVAL;
  215. }
  216. return smsusb_sendrequest(context, &Msg, sizeof(Msg));
  217. }
  218. void smsusb_term_device(struct usb_interface *intf)
  219. {
  220. struct smsusb_device_t *dev =
  221. (struct smsusb_device_t *) usb_get_intfdata(intf);
  222. if (dev) {
  223. smsusb_stop_streaming(dev);
  224. /* unregister from smscore */
  225. if (dev->coredev)
  226. smscore_unregister_device(dev->coredev);
  227. kfree(dev);
  228. printk(KERN_INFO "%s device %p destroyed\n", __func__, dev);
  229. }
  230. usb_set_intfdata(intf, NULL);
  231. }
  232. int smsusb_init_device(struct usb_interface *intf)
  233. {
  234. struct smsdevice_params_t params;
  235. struct smsusb_device_t *dev;
  236. int i, rc;
  237. /* create device object */
  238. dev = kzalloc(sizeof(struct smsusb_device_t), GFP_KERNEL);
  239. if (!dev) {
  240. printk(KERN_INFO "%s kzalloc(sizeof(struct smsusb_device_t) "
  241. "failed\n", __func__);
  242. return -ENOMEM;
  243. }
  244. memset(&params, 0, sizeof(params));
  245. usb_set_intfdata(intf, dev);
  246. dev->udev = interface_to_usbdev(intf);
  247. switch (dev->udev->descriptor.idProduct) {
  248. case USB_PID_STELLAR:
  249. dev->buffer_size = USB1_BUFFER_SIZE;
  250. params.setmode_handler = smsusb1_setmode;
  251. params.detectmode_handler = smsusb1_detectmode;
  252. params.device_type = SMS_STELLAR;
  253. printk(KERN_INFO "%s stellar device found\n", __func__);
  254. break;
  255. default:
  256. switch (dev->udev->descriptor.idProduct) {
  257. case USB_PID_NOVA_A:
  258. params.device_type = SMS_NOVA_A0;
  259. printk(KERN_INFO "%s nova A0 found\n", __func__);
  260. break;
  261. default:
  262. case USB_PID_NOVA_B:
  263. params.device_type = SMS_NOVA_B0;
  264. printk(KERN_INFO "%s nova B0 found\n", __func__);
  265. break;
  266. case USB_PID_VEGA:
  267. params.device_type = SMS_VEGA;
  268. printk(KERN_INFO "%s Vega found\n", __func__);
  269. }
  270. dev->buffer_size = USB2_BUFFER_SIZE;
  271. dev->response_alignment =
  272. dev->udev->ep_in[1]->desc.wMaxPacketSize -
  273. sizeof(struct SmsMsgHdr_ST);
  274. params.flags |= SMS_DEVICE_FAMILY2;
  275. break;
  276. }
  277. params.device = &dev->udev->dev;
  278. params.buffer_size = dev->buffer_size;
  279. params.num_buffers = MAX_BUFFERS;
  280. params.sendrequest_handler = smsusb_sendrequest;
  281. params.context = dev;
  282. snprintf(params.devpath, sizeof(params.devpath),
  283. "usb\\%d-%s", dev->udev->bus->busnum, dev->udev->devpath);
  284. /* register in smscore */
  285. rc = smscore_register_device(&params, &dev->coredev);
  286. if (rc < 0) {
  287. printk(KERN_INFO "%s smscore_register_device(...) failed, "
  288. "rc %d\n", __func__, rc);
  289. smsusb_term_device(intf);
  290. return rc;
  291. }
  292. /* initialize urbs */
  293. for (i = 0; i < MAX_URBS; i++) {
  294. dev->surbs[i].dev = dev;
  295. usb_init_urb(&dev->surbs[i].urb);
  296. }
  297. printk(KERN_INFO "%s smsusb_start_streaming(...).\n", __func__);
  298. rc = smsusb_start_streaming(dev);
  299. if (rc < 0) {
  300. printk(KERN_INFO "%s smsusb_start_streaming(...) failed\n",
  301. __func__);
  302. smsusb_term_device(intf);
  303. return rc;
  304. }
  305. rc = smscore_start_device(dev->coredev);
  306. if (rc < 0) {
  307. printk(KERN_INFO "%s smscore_start_device(...) failed\n",
  308. __func__);
  309. smsusb_term_device(intf);
  310. return rc;
  311. }
  312. printk(KERN_INFO "%s device %p created\n", __func__, dev);
  313. return rc;
  314. }
  315. int smsusb_probe(struct usb_interface *intf, const struct usb_device_id *id)
  316. {
  317. struct usb_device *udev = interface_to_usbdev(intf);
  318. char devpath[32];
  319. int i, rc;
  320. rc = usb_clear_halt(udev, usb_rcvbulkpipe(udev, 0x81));
  321. rc = usb_clear_halt(udev, usb_rcvbulkpipe(udev, 0x02));
  322. if (intf->num_altsetting > 0) {
  323. rc = usb_set_interface(
  324. udev, intf->cur_altsetting->desc.bInterfaceNumber, 0);
  325. if (rc < 0) {
  326. printk(KERN_INFO "%s usb_set_interface failed, "
  327. "rc %d\n", __func__, rc);
  328. return rc;
  329. }
  330. }
  331. printk(KERN_INFO "smsusb_probe %d\n",
  332. intf->cur_altsetting->desc.bInterfaceNumber);
  333. for (i = 0; i < intf->cur_altsetting->desc.bNumEndpoints; i++)
  334. printk(KERN_INFO "endpoint %d %02x %02x %d\n", i,
  335. intf->cur_altsetting->endpoint[i].desc.bEndpointAddress,
  336. intf->cur_altsetting->endpoint[i].desc.bmAttributes,
  337. intf->cur_altsetting->endpoint[i].desc.wMaxPacketSize);
  338. if ((udev->actconfig->desc.bNumInterfaces == 2) &&
  339. (intf->cur_altsetting->desc.bInterfaceNumber == 0)) {
  340. printk(KERN_INFO "rom interface 0 is not used\n");
  341. return -ENODEV;
  342. }
  343. if (intf->cur_altsetting->desc.bInterfaceNumber == 1) {
  344. snprintf(devpath, sizeof(devpath), "usb\\%d-%s",
  345. udev->bus->busnum, udev->devpath);
  346. printk(KERN_INFO "stellar device was found.\n");
  347. return smsusb1_load_firmware(
  348. udev, smscore_registry_getmode(devpath));
  349. }
  350. rc = smsusb_init_device(intf);
  351. printk(KERN_INFO "%s rc %d\n", __func__, rc);
  352. return rc;
  353. }
  354. void smsusb_disconnect(struct usb_interface *intf)
  355. {
  356. smsusb_term_device(intf);
  357. }
  358. static struct usb_device_id smsusb_id_table [] = {
  359. { USB_DEVICE(USB_VID_SIANO, 0x0010) },
  360. { USB_DEVICE(USB_VID_SIANO, USB_PID_STELLAR) },
  361. { USB_DEVICE(USB_VID_SIANO, USB_PID_NOVA_A) },
  362. { } /* Terminating entry */
  363. };
  364. MODULE_DEVICE_TABLE(usb, smsusb_id_table);
  365. static struct usb_driver smsusb_driver = {
  366. .name = "smsusb",
  367. .probe = smsusb_probe,
  368. .disconnect = smsusb_disconnect,
  369. .id_table = smsusb_id_table,
  370. };
  371. int smsusb_register(void)
  372. {
  373. int rc = usb_register(&smsusb_driver);
  374. if (rc)
  375. printk(KERN_INFO "usb_register failed. Error number %d\n", rc);
  376. printk(KERN_INFO "%s\n", __func__);
  377. return rc;
  378. }
  379. void smsusb_unregister(void)
  380. {
  381. /* Regular USB Cleanup */
  382. usb_deregister(&smsusb_driver);
  383. printk(KERN_INFO "%s\n", __func__);
  384. }