et61x251_core.c 62 KB

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  1. /***************************************************************************
  2. * V4L2 driver for ET61X[12]51 PC Camera Controllers *
  3. * *
  4. * Copyright (C) 2006 by Luca Risolia <luca.risolia@studio.unibo.it> *
  5. * *
  6. * This program is free software; you can redistribute it and/or modify *
  7. * it under the terms of the GNU General Public License as published by *
  8. * the Free Software Foundation; either version 2 of the License, or *
  9. * (at your option) any later version. *
  10. * *
  11. * This program is distributed in the hope that it will be useful, *
  12. * but WITHOUT ANY WARRANTY; without even the implied warranty of *
  13. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the *
  14. * GNU General Public License for more details. *
  15. * *
  16. * You should have received a copy of the GNU General Public License *
  17. * along with this program; if not, write to the Free Software *
  18. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA. *
  19. ***************************************************************************/
  20. #include <linux/module.h>
  21. #include <linux/init.h>
  22. #include <linux/kernel.h>
  23. #include <linux/param.h>
  24. #include <linux/moduleparam.h>
  25. #include <linux/errno.h>
  26. #include <linux/slab.h>
  27. #include <linux/device.h>
  28. #include <linux/fs.h>
  29. #include <linux/delay.h>
  30. #include <linux/compiler.h>
  31. #include <linux/ioctl.h>
  32. #include <linux/poll.h>
  33. #include <linux/stat.h>
  34. #include <linux/mm.h>
  35. #include <linux/vmalloc.h>
  36. #include <linux/page-flags.h>
  37. #include <linux/byteorder/generic.h>
  38. #include <asm/page.h>
  39. #include <asm/uaccess.h>
  40. #include "et61x251.h"
  41. /*****************************************************************************/
  42. #define ET61X251_MODULE_NAME "V4L2 driver for ET61X[12]51 " \
  43. "PC Camera Controllers"
  44. #define ET61X251_MODULE_AUTHOR "(C) 2006 Luca Risolia"
  45. #define ET61X251_AUTHOR_EMAIL "<luca.risolia@studio.unibo.it>"
  46. #define ET61X251_MODULE_LICENSE "GPL"
  47. #define ET61X251_MODULE_VERSION "1:1.02"
  48. #define ET61X251_MODULE_VERSION_CODE KERNEL_VERSION(1, 0, 2)
  49. /*****************************************************************************/
  50. MODULE_DEVICE_TABLE(usb, et61x251_id_table);
  51. MODULE_AUTHOR(ET61X251_MODULE_AUTHOR " " ET61X251_AUTHOR_EMAIL);
  52. MODULE_DESCRIPTION(ET61X251_MODULE_NAME);
  53. MODULE_VERSION(ET61X251_MODULE_VERSION);
  54. MODULE_LICENSE(ET61X251_MODULE_LICENSE);
  55. static short video_nr[] = {[0 ... ET61X251_MAX_DEVICES-1] = -1};
  56. module_param_array(video_nr, short, NULL, 0444);
  57. MODULE_PARM_DESC(video_nr,
  58. "\n<-1|n[,...]> Specify V4L2 minor mode number."
  59. "\n -1 = use next available (default)"
  60. "\n n = use minor number n (integer >= 0)"
  61. "\nYou can specify up to "
  62. __MODULE_STRING(ET61X251_MAX_DEVICES) " cameras this way."
  63. "\nFor example:"
  64. "\nvideo_nr=-1,2,-1 would assign minor number 2 to"
  65. "\nthe second registered camera and use auto for the first"
  66. "\none and for every other camera."
  67. "\n");
  68. static short force_munmap[] = {[0 ... ET61X251_MAX_DEVICES-1] =
  69. ET61X251_FORCE_MUNMAP};
  70. module_param_array(force_munmap, bool, NULL, 0444);
  71. MODULE_PARM_DESC(force_munmap,
  72. "\n<0|1[,...]> Force the application to unmap previously"
  73. "\nmapped buffer memory before calling any VIDIOC_S_CROP or"
  74. "\nVIDIOC_S_FMT ioctl's. Not all the applications support"
  75. "\nthis feature. This parameter is specific for each"
  76. "\ndetected camera."
  77. "\n 0 = do not force memory unmapping"
  78. "\n 1 = force memory unmapping (save memory)"
  79. "\nDefault value is "__MODULE_STRING(SN9C102_FORCE_MUNMAP)"."
  80. "\n");
  81. static unsigned int frame_timeout[] = {[0 ... ET61X251_MAX_DEVICES-1] =
  82. ET61X251_FRAME_TIMEOUT};
  83. module_param_array(frame_timeout, uint, NULL, 0644);
  84. MODULE_PARM_DESC(frame_timeout,
  85. "\n<n[,...]> Timeout for a video frame in seconds."
  86. "\nThis parameter is specific for each detected camera."
  87. "\nDefault value is "
  88. __MODULE_STRING(ET61X251_FRAME_TIMEOUT)"."
  89. "\n");
  90. #ifdef ET61X251_DEBUG
  91. static unsigned short debug = ET61X251_DEBUG_LEVEL;
  92. module_param(debug, ushort, 0644);
  93. MODULE_PARM_DESC(debug,
  94. "\n<n> Debugging information level, from 0 to 3:"
  95. "\n0 = none (use carefully)"
  96. "\n1 = critical errors"
  97. "\n2 = significant informations"
  98. "\n3 = more verbose messages"
  99. "\nLevel 3 is useful for testing only, when only "
  100. "one device is used."
  101. "\nDefault value is "__MODULE_STRING(ET61X251_DEBUG_LEVEL)"."
  102. "\n");
  103. #endif
  104. /*****************************************************************************/
  105. static u32
  106. et61x251_request_buffers(struct et61x251_device* cam, u32 count,
  107. enum et61x251_io_method io)
  108. {
  109. struct v4l2_pix_format* p = &(cam->sensor.pix_format);
  110. struct v4l2_rect* r = &(cam->sensor.cropcap.bounds);
  111. const size_t imagesize = cam->module_param.force_munmap ||
  112. io == IO_READ ?
  113. (p->width * p->height * p->priv) / 8 :
  114. (r->width * r->height * p->priv) / 8;
  115. void* buff = NULL;
  116. u32 i;
  117. if (count > ET61X251_MAX_FRAMES)
  118. count = ET61X251_MAX_FRAMES;
  119. cam->nbuffers = count;
  120. while (cam->nbuffers > 0) {
  121. if ((buff = vmalloc_32(cam->nbuffers * PAGE_ALIGN(imagesize))))
  122. break;
  123. cam->nbuffers--;
  124. }
  125. for (i = 0; i < cam->nbuffers; i++) {
  126. cam->frame[i].bufmem = buff + i*PAGE_ALIGN(imagesize);
  127. cam->frame[i].buf.index = i;
  128. cam->frame[i].buf.m.offset = i*PAGE_ALIGN(imagesize);
  129. cam->frame[i].buf.length = imagesize;
  130. cam->frame[i].buf.type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
  131. cam->frame[i].buf.sequence = 0;
  132. cam->frame[i].buf.field = V4L2_FIELD_NONE;
  133. cam->frame[i].buf.memory = V4L2_MEMORY_MMAP;
  134. cam->frame[i].buf.flags = 0;
  135. }
  136. return cam->nbuffers;
  137. }
  138. static void et61x251_release_buffers(struct et61x251_device* cam)
  139. {
  140. if (cam->nbuffers) {
  141. vfree(cam->frame[0].bufmem);
  142. cam->nbuffers = 0;
  143. }
  144. cam->frame_current = NULL;
  145. }
  146. static void et61x251_empty_framequeues(struct et61x251_device* cam)
  147. {
  148. u32 i;
  149. INIT_LIST_HEAD(&cam->inqueue);
  150. INIT_LIST_HEAD(&cam->outqueue);
  151. for (i = 0; i < ET61X251_MAX_FRAMES; i++) {
  152. cam->frame[i].state = F_UNUSED;
  153. cam->frame[i].buf.bytesused = 0;
  154. }
  155. }
  156. static void et61x251_requeue_outqueue(struct et61x251_device* cam)
  157. {
  158. struct et61x251_frame_t *i;
  159. list_for_each_entry(i, &cam->outqueue, frame) {
  160. i->state = F_QUEUED;
  161. list_add(&i->frame, &cam->inqueue);
  162. }
  163. INIT_LIST_HEAD(&cam->outqueue);
  164. }
  165. static void et61x251_queue_unusedframes(struct et61x251_device* cam)
  166. {
  167. unsigned long lock_flags;
  168. u32 i;
  169. for (i = 0; i < cam->nbuffers; i++)
  170. if (cam->frame[i].state == F_UNUSED) {
  171. cam->frame[i].state = F_QUEUED;
  172. spin_lock_irqsave(&cam->queue_lock, lock_flags);
  173. list_add_tail(&cam->frame[i].frame, &cam->inqueue);
  174. spin_unlock_irqrestore(&cam->queue_lock, lock_flags);
  175. }
  176. }
  177. /*****************************************************************************/
  178. int et61x251_write_reg(struct et61x251_device* cam, u8 value, u16 index)
  179. {
  180. struct usb_device* udev = cam->usbdev;
  181. u8* buff = cam->control_buffer;
  182. int res;
  183. *buff = value;
  184. res = usb_control_msg(udev, usb_sndctrlpipe(udev, 0), 0x00, 0x41,
  185. 0, index, buff, 1, ET61X251_CTRL_TIMEOUT);
  186. if (res < 0) {
  187. DBG(3, "Failed to write a register (value 0x%02X, index "
  188. "0x%02X, error %d)", value, index, res);
  189. return -1;
  190. }
  191. return 0;
  192. }
  193. int et61x251_read_reg(struct et61x251_device* cam, u16 index)
  194. {
  195. struct usb_device* udev = cam->usbdev;
  196. u8* buff = cam->control_buffer;
  197. int res;
  198. res = usb_control_msg(udev, usb_rcvctrlpipe(udev, 0), 0x00, 0xc1,
  199. 0, index, buff, 1, ET61X251_CTRL_TIMEOUT);
  200. if (res < 0)
  201. DBG(3, "Failed to read a register (index 0x%02X, error %d)",
  202. index, res);
  203. return (res >= 0) ? (int)(*buff) : -1;
  204. }
  205. static int
  206. et61x251_i2c_wait(struct et61x251_device* cam, struct et61x251_sensor* sensor)
  207. {
  208. int i, r;
  209. for (i = 1; i <= 8; i++) {
  210. if (sensor->interface == ET61X251_I2C_3WIRES) {
  211. r = et61x251_read_reg(cam, 0x8e);
  212. if (!(r & 0x02) && (r >= 0))
  213. return 0;
  214. } else {
  215. r = et61x251_read_reg(cam, 0x8b);
  216. if (!(r & 0x01) && (r >= 0))
  217. return 0;
  218. }
  219. if (r < 0)
  220. return -EIO;
  221. udelay(8*8); /* minimum for sensors at 400kHz */
  222. }
  223. return -EBUSY;
  224. }
  225. int
  226. et61x251_i2c_try_read(struct et61x251_device* cam,
  227. struct et61x251_sensor* sensor, u8 address)
  228. {
  229. struct usb_device* udev = cam->usbdev;
  230. u8* data = cam->control_buffer;
  231. int err = 0, res;
  232. data[0] = address;
  233. data[1] = cam->sensor.i2c_slave_id;
  234. data[2] = cam->sensor.rsta | 0x10;
  235. data[3] = !(et61x251_read_reg(cam, 0x8b) & 0x02);
  236. res = usb_control_msg(udev, usb_sndctrlpipe(udev, 0), 0x00, 0x41,
  237. 0, 0x88, data, 4, ET61X251_CTRL_TIMEOUT);
  238. if (res < 0)
  239. err += res;
  240. err += et61x251_i2c_wait(cam, sensor);
  241. res = usb_control_msg(udev, usb_rcvctrlpipe(udev, 0), 0x00, 0xc1,
  242. 0, 0x80, data, 8, ET61X251_CTRL_TIMEOUT);
  243. if (res < 0)
  244. err += res;
  245. if (err)
  246. DBG(3, "I2C read failed for %s image sensor", sensor->name);
  247. PDBGG("I2C read: address 0x%02X, value: 0x%02X", address, data[0]);
  248. return err ? -1 : (int)data[0];
  249. }
  250. int
  251. et61x251_i2c_try_write(struct et61x251_device* cam,
  252. struct et61x251_sensor* sensor, u8 address, u8 value)
  253. {
  254. struct usb_device* udev = cam->usbdev;
  255. u8* data = cam->control_buffer;
  256. int err = 0, res;
  257. data[0] = address;
  258. data[1] = cam->sensor.i2c_slave_id;
  259. data[2] = cam->sensor.rsta | 0x12;
  260. res = usb_control_msg(udev, usb_sndctrlpipe(udev, 0), 0x00, 0x41,
  261. 0, 0x88, data, 3, ET61X251_CTRL_TIMEOUT);
  262. if (res < 0)
  263. err += res;
  264. data[0] = value;
  265. res = usb_control_msg(udev, usb_sndctrlpipe(udev, 0), 0x00, 0x41,
  266. 0, 0x80, data, 1, ET61X251_CTRL_TIMEOUT);
  267. if (res < 0)
  268. err += res;
  269. err += et61x251_i2c_wait(cam, sensor);
  270. if (err)
  271. DBG(3, "I2C write failed for %s image sensor", sensor->name);
  272. PDBGG("I2C write: address 0x%02X, value: 0x%02X", address, value);
  273. return err ? -1 : 0;
  274. }
  275. int
  276. et61x251_i2c_raw_write(struct et61x251_device* cam, u8 n, u8 data1, u8 data2,
  277. u8 data3, u8 data4, u8 data5, u8 data6, u8 data7,
  278. u8 data8, u8 address)
  279. {
  280. struct usb_device* udev = cam->usbdev;
  281. u8* data = cam->control_buffer;
  282. int err = 0, res;
  283. data[0] = data2;
  284. data[1] = data3;
  285. data[2] = data4;
  286. data[3] = data5;
  287. data[4] = data6;
  288. data[5] = data7;
  289. data[6] = data8;
  290. res = usb_control_msg(udev, usb_sndctrlpipe(udev, 0), 0x00, 0x41,
  291. 0, 0x81, data, n-1, ET61X251_CTRL_TIMEOUT);
  292. if (res < 0)
  293. err += res;
  294. data[0] = address;
  295. data[1] = cam->sensor.i2c_slave_id;
  296. data[2] = cam->sensor.rsta | 0x02 | (n << 4);
  297. res = usb_control_msg(udev, usb_sndctrlpipe(udev, 0), 0x00, 0x41,
  298. 0, 0x88, data, 3, ET61X251_CTRL_TIMEOUT);
  299. if (res < 0)
  300. err += res;
  301. /* Start writing through the serial interface */
  302. data[0] = data1;
  303. res = usb_control_msg(udev, usb_sndctrlpipe(udev, 0), 0x00, 0x41,
  304. 0, 0x80, data, 1, ET61X251_CTRL_TIMEOUT);
  305. if (res < 0)
  306. err += res;
  307. err += et61x251_i2c_wait(cam, &cam->sensor);
  308. if (err)
  309. DBG(3, "I2C raw write failed for %s image sensor",
  310. cam->sensor.name);
  311. PDBGG("I2C raw write: %u bytes, address = 0x%02X, data1 = 0x%02X, "
  312. "data2 = 0x%02X, data3 = 0x%02X, data4 = 0x%02X, data5 = 0x%02X,"
  313. " data6 = 0x%02X, data7 = 0x%02X, data8 = 0x%02X", n, address,
  314. data1, data2, data3, data4, data5, data6, data7, data8);
  315. return err ? -1 : 0;
  316. }
  317. int et61x251_i2c_read(struct et61x251_device* cam, u8 address)
  318. {
  319. return et61x251_i2c_try_read(cam, &cam->sensor, address);
  320. }
  321. int et61x251_i2c_write(struct et61x251_device* cam, u8 address, u8 value)
  322. {
  323. return et61x251_i2c_try_write(cam, &cam->sensor, address, value);
  324. }
  325. /*****************************************************************************/
  326. static void et61x251_urb_complete(struct urb *urb)
  327. {
  328. struct et61x251_device* cam = urb->context;
  329. struct et61x251_frame_t** f;
  330. size_t imagesize;
  331. u8 i;
  332. int err = 0;
  333. if (urb->status == -ENOENT)
  334. return;
  335. f = &cam->frame_current;
  336. if (cam->stream == STREAM_INTERRUPT) {
  337. cam->stream = STREAM_OFF;
  338. if ((*f))
  339. (*f)->state = F_QUEUED;
  340. DBG(3, "Stream interrupted");
  341. wake_up(&cam->wait_stream);
  342. }
  343. if (cam->state & DEV_DISCONNECTED)
  344. return;
  345. if (cam->state & DEV_MISCONFIGURED) {
  346. wake_up_interruptible(&cam->wait_frame);
  347. return;
  348. }
  349. if (cam->stream == STREAM_OFF || list_empty(&cam->inqueue))
  350. goto resubmit_urb;
  351. if (!(*f))
  352. (*f) = list_entry(cam->inqueue.next, struct et61x251_frame_t,
  353. frame);
  354. imagesize = (cam->sensor.pix_format.width *
  355. cam->sensor.pix_format.height *
  356. cam->sensor.pix_format.priv) / 8;
  357. for (i = 0; i < urb->number_of_packets; i++) {
  358. unsigned int len, status;
  359. void *pos;
  360. u8* b1, * b2, sof;
  361. const u8 VOID_BYTES = 6;
  362. size_t imglen;
  363. len = urb->iso_frame_desc[i].actual_length;
  364. status = urb->iso_frame_desc[i].status;
  365. pos = urb->iso_frame_desc[i].offset + urb->transfer_buffer;
  366. if (status) {
  367. DBG(3, "Error in isochronous frame");
  368. (*f)->state = F_ERROR;
  369. continue;
  370. }
  371. b1 = pos++;
  372. b2 = pos++;
  373. sof = ((*b1 & 0x3f) == 63);
  374. imglen = ((*b1 & 0xc0) << 2) | *b2;
  375. PDBGG("Isochrnous frame: length %u, #%u i, image length %zu",
  376. len, i, imglen);
  377. if ((*f)->state == F_QUEUED || (*f)->state == F_ERROR)
  378. start_of_frame:
  379. if (sof) {
  380. (*f)->state = F_GRABBING;
  381. (*f)->buf.bytesused = 0;
  382. do_gettimeofday(&(*f)->buf.timestamp);
  383. pos += 22;
  384. DBG(3, "SOF detected: new video frame");
  385. }
  386. if ((*f)->state == F_GRABBING) {
  387. if (sof && (*f)->buf.bytesused) {
  388. if (cam->sensor.pix_format.pixelformat ==
  389. V4L2_PIX_FMT_ET61X251)
  390. goto end_of_frame;
  391. else {
  392. DBG(3, "Not expected SOF detected "
  393. "after %lu bytes",
  394. (unsigned long)(*f)->buf.bytesused);
  395. (*f)->state = F_ERROR;
  396. continue;
  397. }
  398. }
  399. if ((*f)->buf.bytesused + imglen > imagesize) {
  400. DBG(3, "Video frame size exceeded");
  401. (*f)->state = F_ERROR;
  402. continue;
  403. }
  404. pos += VOID_BYTES;
  405. memcpy((*f)->bufmem+(*f)->buf.bytesused, pos, imglen);
  406. (*f)->buf.bytesused += imglen;
  407. if ((*f)->buf.bytesused == imagesize) {
  408. u32 b;
  409. end_of_frame:
  410. b = (*f)->buf.bytesused;
  411. (*f)->state = F_DONE;
  412. (*f)->buf.sequence= ++cam->frame_count;
  413. spin_lock(&cam->queue_lock);
  414. list_move_tail(&(*f)->frame, &cam->outqueue);
  415. if (!list_empty(&cam->inqueue))
  416. (*f) = list_entry(cam->inqueue.next,
  417. struct et61x251_frame_t,
  418. frame);
  419. else
  420. (*f) = NULL;
  421. spin_unlock(&cam->queue_lock);
  422. DBG(3, "Video frame captured: : %lu bytes",
  423. (unsigned long)(b));
  424. if (!(*f))
  425. goto resubmit_urb;
  426. if (sof &&
  427. cam->sensor.pix_format.pixelformat ==
  428. V4L2_PIX_FMT_ET61X251)
  429. goto start_of_frame;
  430. }
  431. }
  432. }
  433. resubmit_urb:
  434. urb->dev = cam->usbdev;
  435. err = usb_submit_urb(urb, GFP_ATOMIC);
  436. if (err < 0 && err != -EPERM) {
  437. cam->state |= DEV_MISCONFIGURED;
  438. DBG(1, "usb_submit_urb() failed");
  439. }
  440. wake_up_interruptible(&cam->wait_frame);
  441. }
  442. static int et61x251_start_transfer(struct et61x251_device* cam)
  443. {
  444. struct usb_device *udev = cam->usbdev;
  445. struct urb* urb;
  446. const unsigned int wMaxPacketSize[] = {0, 256, 384, 512, 640, 768, 832,
  447. 864, 896, 920, 956, 980, 1000,
  448. 1022};
  449. const unsigned int psz = wMaxPacketSize[ET61X251_ALTERNATE_SETTING];
  450. s8 i, j;
  451. int err = 0;
  452. for (i = 0; i < ET61X251_URBS; i++) {
  453. cam->transfer_buffer[i] = kzalloc(ET61X251_ISO_PACKETS * psz,
  454. GFP_KERNEL);
  455. if (!cam->transfer_buffer[i]) {
  456. err = -ENOMEM;
  457. DBG(1, "Not enough memory");
  458. goto free_buffers;
  459. }
  460. }
  461. for (i = 0; i < ET61X251_URBS; i++) {
  462. urb = usb_alloc_urb(ET61X251_ISO_PACKETS, GFP_KERNEL);
  463. cam->urb[i] = urb;
  464. if (!urb) {
  465. err = -ENOMEM;
  466. DBG(1, "usb_alloc_urb() failed");
  467. goto free_urbs;
  468. }
  469. urb->dev = udev;
  470. urb->context = cam;
  471. urb->pipe = usb_rcvisocpipe(udev, 1);
  472. urb->transfer_flags = URB_ISO_ASAP;
  473. urb->number_of_packets = ET61X251_ISO_PACKETS;
  474. urb->complete = et61x251_urb_complete;
  475. urb->transfer_buffer = cam->transfer_buffer[i];
  476. urb->transfer_buffer_length = psz * ET61X251_ISO_PACKETS;
  477. urb->interval = 1;
  478. for (j = 0; j < ET61X251_ISO_PACKETS; j++) {
  479. urb->iso_frame_desc[j].offset = psz * j;
  480. urb->iso_frame_desc[j].length = psz;
  481. }
  482. }
  483. err = et61x251_write_reg(cam, 0x01, 0x03);
  484. err = et61x251_write_reg(cam, 0x00, 0x03);
  485. err = et61x251_write_reg(cam, 0x08, 0x03);
  486. if (err) {
  487. err = -EIO;
  488. DBG(1, "I/O hardware error");
  489. goto free_urbs;
  490. }
  491. err = usb_set_interface(udev, 0, ET61X251_ALTERNATE_SETTING);
  492. if (err) {
  493. DBG(1, "usb_set_interface() failed");
  494. goto free_urbs;
  495. }
  496. cam->frame_current = NULL;
  497. for (i = 0; i < ET61X251_URBS; i++) {
  498. err = usb_submit_urb(cam->urb[i], GFP_KERNEL);
  499. if (err) {
  500. for (j = i-1; j >= 0; j--)
  501. usb_kill_urb(cam->urb[j]);
  502. DBG(1, "usb_submit_urb() failed, error %d", err);
  503. goto free_urbs;
  504. }
  505. }
  506. return 0;
  507. free_urbs:
  508. for (i = 0; (i < ET61X251_URBS) && cam->urb[i]; i++)
  509. usb_free_urb(cam->urb[i]);
  510. free_buffers:
  511. for (i = 0; (i < ET61X251_URBS) && cam->transfer_buffer[i]; i++)
  512. kfree(cam->transfer_buffer[i]);
  513. return err;
  514. }
  515. static int et61x251_stop_transfer(struct et61x251_device* cam)
  516. {
  517. struct usb_device *udev = cam->usbdev;
  518. s8 i;
  519. int err = 0;
  520. if (cam->state & DEV_DISCONNECTED)
  521. return 0;
  522. for (i = ET61X251_URBS-1; i >= 0; i--) {
  523. usb_kill_urb(cam->urb[i]);
  524. usb_free_urb(cam->urb[i]);
  525. kfree(cam->transfer_buffer[i]);
  526. }
  527. err = usb_set_interface(udev, 0, 0); /* 0 Mb/s */
  528. if (err)
  529. DBG(3, "usb_set_interface() failed");
  530. return err;
  531. }
  532. static int et61x251_stream_interrupt(struct et61x251_device* cam)
  533. {
  534. long timeout;
  535. cam->stream = STREAM_INTERRUPT;
  536. timeout = wait_event_timeout(cam->wait_stream,
  537. (cam->stream == STREAM_OFF) ||
  538. (cam->state & DEV_DISCONNECTED),
  539. ET61X251_URB_TIMEOUT);
  540. if (cam->state & DEV_DISCONNECTED)
  541. return -ENODEV;
  542. else if (cam->stream != STREAM_OFF) {
  543. cam->state |= DEV_MISCONFIGURED;
  544. DBG(1, "URB timeout reached. The camera is misconfigured. To "
  545. "use it, close and open /dev/video%d again.",
  546. cam->v4ldev->minor);
  547. return -EIO;
  548. }
  549. return 0;
  550. }
  551. /*****************************************************************************/
  552. #ifdef CONFIG_VIDEO_ADV_DEBUG
  553. static u8 et61x251_strtou8(const char* buff, size_t len, ssize_t* count)
  554. {
  555. char str[5];
  556. char* endp;
  557. unsigned long val;
  558. if (len < 4) {
  559. strncpy(str, buff, len);
  560. str[len+1] = '\0';
  561. } else {
  562. strncpy(str, buff, 4);
  563. str[4] = '\0';
  564. }
  565. val = simple_strtoul(str, &endp, 0);
  566. *count = 0;
  567. if (val <= 0xff)
  568. *count = (ssize_t)(endp - str);
  569. if ((*count) && (len == *count+1) && (buff[*count] == '\n'))
  570. *count += 1;
  571. return (u8)val;
  572. }
  573. /*
  574. NOTE 1: being inside one of the following methods implies that the v4l
  575. device exists for sure (see kobjects and reference counters)
  576. NOTE 2: buffers are PAGE_SIZE long
  577. */
  578. static ssize_t et61x251_show_reg(struct class_device* cd, char* buf)
  579. {
  580. struct et61x251_device* cam;
  581. ssize_t count;
  582. if (mutex_lock_interruptible(&et61x251_sysfs_lock))
  583. return -ERESTARTSYS;
  584. cam = video_get_drvdata(to_video_device(cd));
  585. if (!cam) {
  586. mutex_unlock(&et61x251_sysfs_lock);
  587. return -ENODEV;
  588. }
  589. count = sprintf(buf, "%u\n", cam->sysfs.reg);
  590. mutex_unlock(&et61x251_sysfs_lock);
  591. return count;
  592. }
  593. static ssize_t
  594. et61x251_store_reg(struct class_device* cd, const char* buf, size_t len)
  595. {
  596. struct et61x251_device* cam;
  597. u8 index;
  598. ssize_t count;
  599. if (mutex_lock_interruptible(&et61x251_sysfs_lock))
  600. return -ERESTARTSYS;
  601. cam = video_get_drvdata(to_video_device(cd));
  602. if (!cam) {
  603. mutex_unlock(&et61x251_sysfs_lock);
  604. return -ENODEV;
  605. }
  606. index = et61x251_strtou8(buf, len, &count);
  607. if (index > 0x8e || !count) {
  608. mutex_unlock(&et61x251_sysfs_lock);
  609. return -EINVAL;
  610. }
  611. cam->sysfs.reg = index;
  612. DBG(2, "Moved ET61X[12]51 register index to 0x%02X", cam->sysfs.reg);
  613. DBG(3, "Written bytes: %zd", count);
  614. mutex_unlock(&et61x251_sysfs_lock);
  615. return count;
  616. }
  617. static ssize_t et61x251_show_val(struct class_device* cd, char* buf)
  618. {
  619. struct et61x251_device* cam;
  620. ssize_t count;
  621. int val;
  622. if (mutex_lock_interruptible(&et61x251_sysfs_lock))
  623. return -ERESTARTSYS;
  624. cam = video_get_drvdata(to_video_device(cd));
  625. if (!cam) {
  626. mutex_unlock(&et61x251_sysfs_lock);
  627. return -ENODEV;
  628. }
  629. if ((val = et61x251_read_reg(cam, cam->sysfs.reg)) < 0) {
  630. mutex_unlock(&et61x251_sysfs_lock);
  631. return -EIO;
  632. }
  633. count = sprintf(buf, "%d\n", val);
  634. DBG(3, "Read bytes: %zd", count);
  635. mutex_unlock(&et61x251_sysfs_lock);
  636. return count;
  637. }
  638. static ssize_t
  639. et61x251_store_val(struct class_device* cd, const char* buf, size_t len)
  640. {
  641. struct et61x251_device* cam;
  642. u8 value;
  643. ssize_t count;
  644. int err;
  645. if (mutex_lock_interruptible(&et61x251_sysfs_lock))
  646. return -ERESTARTSYS;
  647. cam = video_get_drvdata(to_video_device(cd));
  648. if (!cam) {
  649. mutex_unlock(&et61x251_sysfs_lock);
  650. return -ENODEV;
  651. }
  652. value = et61x251_strtou8(buf, len, &count);
  653. if (!count) {
  654. mutex_unlock(&et61x251_sysfs_lock);
  655. return -EINVAL;
  656. }
  657. err = et61x251_write_reg(cam, value, cam->sysfs.reg);
  658. if (err) {
  659. mutex_unlock(&et61x251_sysfs_lock);
  660. return -EIO;
  661. }
  662. DBG(2, "Written ET61X[12]51 reg. 0x%02X, val. 0x%02X",
  663. cam->sysfs.reg, value);
  664. DBG(3, "Written bytes: %zd", count);
  665. mutex_unlock(&et61x251_sysfs_lock);
  666. return count;
  667. }
  668. static ssize_t et61x251_show_i2c_reg(struct class_device* cd, char* buf)
  669. {
  670. struct et61x251_device* cam;
  671. ssize_t count;
  672. if (mutex_lock_interruptible(&et61x251_sysfs_lock))
  673. return -ERESTARTSYS;
  674. cam = video_get_drvdata(to_video_device(cd));
  675. if (!cam) {
  676. mutex_unlock(&et61x251_sysfs_lock);
  677. return -ENODEV;
  678. }
  679. count = sprintf(buf, "%u\n", cam->sysfs.i2c_reg);
  680. DBG(3, "Read bytes: %zd", count);
  681. mutex_unlock(&et61x251_sysfs_lock);
  682. return count;
  683. }
  684. static ssize_t
  685. et61x251_store_i2c_reg(struct class_device* cd, const char* buf, size_t len)
  686. {
  687. struct et61x251_device* cam;
  688. u8 index;
  689. ssize_t count;
  690. if (mutex_lock_interruptible(&et61x251_sysfs_lock))
  691. return -ERESTARTSYS;
  692. cam = video_get_drvdata(to_video_device(cd));
  693. if (!cam) {
  694. mutex_unlock(&et61x251_sysfs_lock);
  695. return -ENODEV;
  696. }
  697. index = et61x251_strtou8(buf, len, &count);
  698. if (!count) {
  699. mutex_unlock(&et61x251_sysfs_lock);
  700. return -EINVAL;
  701. }
  702. cam->sysfs.i2c_reg = index;
  703. DBG(2, "Moved sensor register index to 0x%02X", cam->sysfs.i2c_reg);
  704. DBG(3, "Written bytes: %zd", count);
  705. mutex_unlock(&et61x251_sysfs_lock);
  706. return count;
  707. }
  708. static ssize_t et61x251_show_i2c_val(struct class_device* cd, char* buf)
  709. {
  710. struct et61x251_device* cam;
  711. ssize_t count;
  712. int val;
  713. if (mutex_lock_interruptible(&et61x251_sysfs_lock))
  714. return -ERESTARTSYS;
  715. cam = video_get_drvdata(to_video_device(cd));
  716. if (!cam) {
  717. mutex_unlock(&et61x251_sysfs_lock);
  718. return -ENODEV;
  719. }
  720. if (!(cam->sensor.sysfs_ops & ET61X251_I2C_READ)) {
  721. mutex_unlock(&et61x251_sysfs_lock);
  722. return -ENOSYS;
  723. }
  724. if ((val = et61x251_i2c_read(cam, cam->sysfs.i2c_reg)) < 0) {
  725. mutex_unlock(&et61x251_sysfs_lock);
  726. return -EIO;
  727. }
  728. count = sprintf(buf, "%d\n", val);
  729. DBG(3, "Read bytes: %zd", count);
  730. mutex_unlock(&et61x251_sysfs_lock);
  731. return count;
  732. }
  733. static ssize_t
  734. et61x251_store_i2c_val(struct class_device* cd, const char* buf, size_t len)
  735. {
  736. struct et61x251_device* cam;
  737. u8 value;
  738. ssize_t count;
  739. int err;
  740. if (mutex_lock_interruptible(&et61x251_sysfs_lock))
  741. return -ERESTARTSYS;
  742. cam = video_get_drvdata(to_video_device(cd));
  743. if (!cam) {
  744. mutex_unlock(&et61x251_sysfs_lock);
  745. return -ENODEV;
  746. }
  747. if (!(cam->sensor.sysfs_ops & ET61X251_I2C_READ)) {
  748. mutex_unlock(&et61x251_sysfs_lock);
  749. return -ENOSYS;
  750. }
  751. value = et61x251_strtou8(buf, len, &count);
  752. if (!count) {
  753. mutex_unlock(&et61x251_sysfs_lock);
  754. return -EINVAL;
  755. }
  756. err = et61x251_i2c_write(cam, cam->sysfs.i2c_reg, value);
  757. if (err) {
  758. mutex_unlock(&et61x251_sysfs_lock);
  759. return -EIO;
  760. }
  761. DBG(2, "Written sensor reg. 0x%02X, val. 0x%02X",
  762. cam->sysfs.i2c_reg, value);
  763. DBG(3, "Written bytes: %zd", count);
  764. mutex_unlock(&et61x251_sysfs_lock);
  765. return count;
  766. }
  767. static CLASS_DEVICE_ATTR(reg, S_IRUGO | S_IWUSR,
  768. et61x251_show_reg, et61x251_store_reg);
  769. static CLASS_DEVICE_ATTR(val, S_IRUGO | S_IWUSR,
  770. et61x251_show_val, et61x251_store_val);
  771. static CLASS_DEVICE_ATTR(i2c_reg, S_IRUGO | S_IWUSR,
  772. et61x251_show_i2c_reg, et61x251_store_i2c_reg);
  773. static CLASS_DEVICE_ATTR(i2c_val, S_IRUGO | S_IWUSR,
  774. et61x251_show_i2c_val, et61x251_store_i2c_val);
  775. static int et61x251_create_sysfs(struct et61x251_device* cam)
  776. {
  777. struct video_device *v4ldev = cam->v4ldev;
  778. int rc;
  779. rc = video_device_create_file(v4ldev, &class_device_attr_reg);
  780. if (rc) goto err;
  781. rc = video_device_create_file(v4ldev, &class_device_attr_val);
  782. if (rc) goto err_reg;
  783. if (cam->sensor.sysfs_ops) {
  784. rc = video_device_create_file(v4ldev, &class_device_attr_i2c_reg);
  785. if (rc) goto err_val;
  786. rc = video_device_create_file(v4ldev, &class_device_attr_i2c_val);
  787. if (rc) goto err_i2c_reg;
  788. }
  789. return 0;
  790. err_i2c_reg:
  791. video_device_remove_file(v4ldev, &class_device_attr_i2c_reg);
  792. err_val:
  793. video_device_remove_file(v4ldev, &class_device_attr_val);
  794. err_reg:
  795. video_device_remove_file(v4ldev, &class_device_attr_reg);
  796. err:
  797. return rc;
  798. }
  799. #endif /* CONFIG_VIDEO_ADV_DEBUG */
  800. /*****************************************************************************/
  801. static int
  802. et61x251_set_pix_format(struct et61x251_device* cam,
  803. struct v4l2_pix_format* pix)
  804. {
  805. int r, err = 0;
  806. if ((r = et61x251_read_reg(cam, 0x12)) < 0)
  807. err += r;
  808. if (pix->pixelformat == V4L2_PIX_FMT_ET61X251)
  809. err += et61x251_write_reg(cam, r & 0xfd, 0x12);
  810. else
  811. err += et61x251_write_reg(cam, r | 0x02, 0x12);
  812. return err ? -EIO : 0;
  813. }
  814. static int
  815. et61x251_set_compression(struct et61x251_device* cam,
  816. struct v4l2_jpegcompression* compression)
  817. {
  818. int r, err = 0;
  819. if ((r = et61x251_read_reg(cam, 0x12)) < 0)
  820. err += r;
  821. if (compression->quality == 0)
  822. err += et61x251_write_reg(cam, r & 0xfb, 0x12);
  823. else
  824. err += et61x251_write_reg(cam, r | 0x04, 0x12);
  825. return err ? -EIO : 0;
  826. }
  827. static int et61x251_set_scale(struct et61x251_device* cam, u8 scale)
  828. {
  829. int r = 0, err = 0;
  830. r = et61x251_read_reg(cam, 0x12);
  831. if (r < 0)
  832. err += r;
  833. if (scale == 1)
  834. err += et61x251_write_reg(cam, r & ~0x01, 0x12);
  835. else if (scale == 2)
  836. err += et61x251_write_reg(cam, r | 0x01, 0x12);
  837. if (err)
  838. return -EIO;
  839. PDBGG("Scaling factor: %u", scale);
  840. return 0;
  841. }
  842. static int
  843. et61x251_set_crop(struct et61x251_device* cam, struct v4l2_rect* rect)
  844. {
  845. struct et61x251_sensor* s = &cam->sensor;
  846. u16 fmw_sx = (u16)(rect->left - s->cropcap.bounds.left +
  847. s->active_pixel.left),
  848. fmw_sy = (u16)(rect->top - s->cropcap.bounds.top +
  849. s->active_pixel.top),
  850. fmw_length = (u16)(rect->width),
  851. fmw_height = (u16)(rect->height);
  852. int err = 0;
  853. err += et61x251_write_reg(cam, fmw_sx & 0xff, 0x69);
  854. err += et61x251_write_reg(cam, fmw_sy & 0xff, 0x6a);
  855. err += et61x251_write_reg(cam, fmw_length & 0xff, 0x6b);
  856. err += et61x251_write_reg(cam, fmw_height & 0xff, 0x6c);
  857. err += et61x251_write_reg(cam, (fmw_sx >> 8) | ((fmw_sy & 0x300) >> 6)
  858. | ((fmw_length & 0x300) >> 4)
  859. | ((fmw_height & 0x300) >> 2), 0x6d);
  860. if (err)
  861. return -EIO;
  862. PDBGG("fmw_sx, fmw_sy, fmw_length, fmw_height: %u %u %u %u",
  863. fmw_sx, fmw_sy, fmw_length, fmw_height);
  864. return 0;
  865. }
  866. static int et61x251_init(struct et61x251_device* cam)
  867. {
  868. struct et61x251_sensor* s = &cam->sensor;
  869. struct v4l2_control ctrl;
  870. struct v4l2_queryctrl *qctrl;
  871. struct v4l2_rect* rect;
  872. u8 i = 0;
  873. int err = 0;
  874. if (!(cam->state & DEV_INITIALIZED)) {
  875. init_waitqueue_head(&cam->open);
  876. qctrl = s->qctrl;
  877. rect = &(s->cropcap.defrect);
  878. cam->compression.quality = ET61X251_COMPRESSION_QUALITY;
  879. } else { /* use current values */
  880. qctrl = s->_qctrl;
  881. rect = &(s->_rect);
  882. }
  883. err += et61x251_set_scale(cam, rect->width / s->pix_format.width);
  884. err += et61x251_set_crop(cam, rect);
  885. if (err)
  886. return err;
  887. if (s->init) {
  888. err = s->init(cam);
  889. if (err) {
  890. DBG(3, "Sensor initialization failed");
  891. return err;
  892. }
  893. }
  894. err += et61x251_set_compression(cam, &cam->compression);
  895. err += et61x251_set_pix_format(cam, &s->pix_format);
  896. if (s->set_pix_format)
  897. err += s->set_pix_format(cam, &s->pix_format);
  898. if (err)
  899. return err;
  900. if (s->pix_format.pixelformat == V4L2_PIX_FMT_ET61X251)
  901. DBG(3, "Compressed video format is active, quality %d",
  902. cam->compression.quality);
  903. else
  904. DBG(3, "Uncompressed video format is active");
  905. if (s->set_crop)
  906. if ((err = s->set_crop(cam, rect))) {
  907. DBG(3, "set_crop() failed");
  908. return err;
  909. }
  910. if (s->set_ctrl) {
  911. for (i = 0; i < ARRAY_SIZE(s->qctrl); i++)
  912. if (s->qctrl[i].id != 0 &&
  913. !(s->qctrl[i].flags & V4L2_CTRL_FLAG_DISABLED)) {
  914. ctrl.id = s->qctrl[i].id;
  915. ctrl.value = qctrl[i].default_value;
  916. err = s->set_ctrl(cam, &ctrl);
  917. if (err) {
  918. DBG(3, "Set %s control failed",
  919. s->qctrl[i].name);
  920. return err;
  921. }
  922. DBG(3, "Image sensor supports '%s' control",
  923. s->qctrl[i].name);
  924. }
  925. }
  926. if (!(cam->state & DEV_INITIALIZED)) {
  927. mutex_init(&cam->fileop_mutex);
  928. spin_lock_init(&cam->queue_lock);
  929. init_waitqueue_head(&cam->wait_frame);
  930. init_waitqueue_head(&cam->wait_stream);
  931. cam->nreadbuffers = 2;
  932. memcpy(s->_qctrl, s->qctrl, sizeof(s->qctrl));
  933. memcpy(&(s->_rect), &(s->cropcap.defrect),
  934. sizeof(struct v4l2_rect));
  935. cam->state |= DEV_INITIALIZED;
  936. }
  937. DBG(2, "Initialization succeeded");
  938. return 0;
  939. }
  940. static void et61x251_release_resources(struct et61x251_device* cam)
  941. {
  942. mutex_lock(&et61x251_sysfs_lock);
  943. DBG(2, "V4L2 device /dev/video%d deregistered", cam->v4ldev->minor);
  944. video_set_drvdata(cam->v4ldev, NULL);
  945. video_unregister_device(cam->v4ldev);
  946. mutex_unlock(&et61x251_sysfs_lock);
  947. kfree(cam->control_buffer);
  948. }
  949. /*****************************************************************************/
  950. static int et61x251_open(struct inode* inode, struct file* filp)
  951. {
  952. struct et61x251_device* cam;
  953. int err = 0;
  954. /*
  955. This is the only safe way to prevent race conditions with
  956. disconnect
  957. */
  958. if (!down_read_trylock(&et61x251_disconnect))
  959. return -ERESTARTSYS;
  960. cam = video_get_drvdata(video_devdata(filp));
  961. if (mutex_lock_interruptible(&cam->dev_mutex)) {
  962. up_read(&et61x251_disconnect);
  963. return -ERESTARTSYS;
  964. }
  965. if (cam->users) {
  966. DBG(2, "Device /dev/video%d is busy...", cam->v4ldev->minor);
  967. if ((filp->f_flags & O_NONBLOCK) ||
  968. (filp->f_flags & O_NDELAY)) {
  969. err = -EWOULDBLOCK;
  970. goto out;
  971. }
  972. mutex_unlock(&cam->dev_mutex);
  973. err = wait_event_interruptible_exclusive(cam->open,
  974. cam->state & DEV_DISCONNECTED
  975. || !cam->users);
  976. if (err) {
  977. up_read(&et61x251_disconnect);
  978. return err;
  979. }
  980. if (cam->state & DEV_DISCONNECTED) {
  981. up_read(&et61x251_disconnect);
  982. return -ENODEV;
  983. }
  984. mutex_lock(&cam->dev_mutex);
  985. }
  986. if (cam->state & DEV_MISCONFIGURED) {
  987. err = et61x251_init(cam);
  988. if (err) {
  989. DBG(1, "Initialization failed again. "
  990. "I will retry on next open().");
  991. goto out;
  992. }
  993. cam->state &= ~DEV_MISCONFIGURED;
  994. }
  995. if ((err = et61x251_start_transfer(cam)))
  996. goto out;
  997. filp->private_data = cam;
  998. cam->users++;
  999. cam->io = IO_NONE;
  1000. cam->stream = STREAM_OFF;
  1001. cam->nbuffers = 0;
  1002. cam->frame_count = 0;
  1003. et61x251_empty_framequeues(cam);
  1004. DBG(3, "Video device /dev/video%d is open", cam->v4ldev->minor);
  1005. out:
  1006. mutex_unlock(&cam->dev_mutex);
  1007. up_read(&et61x251_disconnect);
  1008. return err;
  1009. }
  1010. static int et61x251_release(struct inode* inode, struct file* filp)
  1011. {
  1012. struct et61x251_device* cam = video_get_drvdata(video_devdata(filp));
  1013. mutex_lock(&cam->dev_mutex); /* prevent disconnect() to be called */
  1014. et61x251_stop_transfer(cam);
  1015. et61x251_release_buffers(cam);
  1016. if (cam->state & DEV_DISCONNECTED) {
  1017. et61x251_release_resources(cam);
  1018. usb_put_dev(cam->usbdev);
  1019. mutex_unlock(&cam->dev_mutex);
  1020. kfree(cam);
  1021. return 0;
  1022. }
  1023. cam->users--;
  1024. wake_up_interruptible_nr(&cam->open, 1);
  1025. DBG(3, "Video device /dev/video%d closed", cam->v4ldev->minor);
  1026. mutex_unlock(&cam->dev_mutex);
  1027. return 0;
  1028. }
  1029. static ssize_t
  1030. et61x251_read(struct file* filp, char __user * buf,
  1031. size_t count, loff_t* f_pos)
  1032. {
  1033. struct et61x251_device* cam = video_get_drvdata(video_devdata(filp));
  1034. struct et61x251_frame_t* f, * i;
  1035. unsigned long lock_flags;
  1036. long timeout;
  1037. int err = 0;
  1038. if (mutex_lock_interruptible(&cam->fileop_mutex))
  1039. return -ERESTARTSYS;
  1040. if (cam->state & DEV_DISCONNECTED) {
  1041. DBG(1, "Device not present");
  1042. mutex_unlock(&cam->fileop_mutex);
  1043. return -ENODEV;
  1044. }
  1045. if (cam->state & DEV_MISCONFIGURED) {
  1046. DBG(1, "The camera is misconfigured. Close and open it "
  1047. "again.");
  1048. mutex_unlock(&cam->fileop_mutex);
  1049. return -EIO;
  1050. }
  1051. if (cam->io == IO_MMAP) {
  1052. DBG(3, "Close and open the device again to choose the read "
  1053. "method");
  1054. mutex_unlock(&cam->fileop_mutex);
  1055. return -EINVAL;
  1056. }
  1057. if (cam->io == IO_NONE) {
  1058. if (!et61x251_request_buffers(cam, cam->nreadbuffers,
  1059. IO_READ)) {
  1060. DBG(1, "read() failed, not enough memory");
  1061. mutex_unlock(&cam->fileop_mutex);
  1062. return -ENOMEM;
  1063. }
  1064. cam->io = IO_READ;
  1065. cam->stream = STREAM_ON;
  1066. }
  1067. if (list_empty(&cam->inqueue)) {
  1068. if (!list_empty(&cam->outqueue))
  1069. et61x251_empty_framequeues(cam);
  1070. et61x251_queue_unusedframes(cam);
  1071. }
  1072. if (!count) {
  1073. mutex_unlock(&cam->fileop_mutex);
  1074. return 0;
  1075. }
  1076. if (list_empty(&cam->outqueue)) {
  1077. if (filp->f_flags & O_NONBLOCK) {
  1078. mutex_unlock(&cam->fileop_mutex);
  1079. return -EAGAIN;
  1080. }
  1081. timeout = wait_event_interruptible_timeout
  1082. ( cam->wait_frame,
  1083. (!list_empty(&cam->outqueue)) ||
  1084. (cam->state & DEV_DISCONNECTED) ||
  1085. (cam->state & DEV_MISCONFIGURED),
  1086. cam->module_param.frame_timeout *
  1087. 1000 * msecs_to_jiffies(1) );
  1088. if (timeout < 0) {
  1089. mutex_unlock(&cam->fileop_mutex);
  1090. return timeout;
  1091. }
  1092. if (cam->state & DEV_DISCONNECTED) {
  1093. mutex_unlock(&cam->fileop_mutex);
  1094. return -ENODEV;
  1095. }
  1096. if (!timeout || (cam->state & DEV_MISCONFIGURED)) {
  1097. mutex_unlock(&cam->fileop_mutex);
  1098. return -EIO;
  1099. }
  1100. }
  1101. f = list_entry(cam->outqueue.prev, struct et61x251_frame_t, frame);
  1102. if (count > f->buf.bytesused)
  1103. count = f->buf.bytesused;
  1104. if (copy_to_user(buf, f->bufmem, count)) {
  1105. err = -EFAULT;
  1106. goto exit;
  1107. }
  1108. *f_pos += count;
  1109. exit:
  1110. spin_lock_irqsave(&cam->queue_lock, lock_flags);
  1111. list_for_each_entry(i, &cam->outqueue, frame)
  1112. i->state = F_UNUSED;
  1113. INIT_LIST_HEAD(&cam->outqueue);
  1114. spin_unlock_irqrestore(&cam->queue_lock, lock_flags);
  1115. et61x251_queue_unusedframes(cam);
  1116. PDBGG("Frame #%lu, bytes read: %zu",
  1117. (unsigned long)f->buf.index, count);
  1118. mutex_unlock(&cam->fileop_mutex);
  1119. return err ? err : count;
  1120. }
  1121. static unsigned int et61x251_poll(struct file *filp, poll_table *wait)
  1122. {
  1123. struct et61x251_device* cam = video_get_drvdata(video_devdata(filp));
  1124. struct et61x251_frame_t* f;
  1125. unsigned long lock_flags;
  1126. unsigned int mask = 0;
  1127. if (mutex_lock_interruptible(&cam->fileop_mutex))
  1128. return POLLERR;
  1129. if (cam->state & DEV_DISCONNECTED) {
  1130. DBG(1, "Device not present");
  1131. goto error;
  1132. }
  1133. if (cam->state & DEV_MISCONFIGURED) {
  1134. DBG(1, "The camera is misconfigured. Close and open it "
  1135. "again.");
  1136. goto error;
  1137. }
  1138. if (cam->io == IO_NONE) {
  1139. if (!et61x251_request_buffers(cam, cam->nreadbuffers,
  1140. IO_READ)) {
  1141. DBG(1, "poll() failed, not enough memory");
  1142. goto error;
  1143. }
  1144. cam->io = IO_READ;
  1145. cam->stream = STREAM_ON;
  1146. }
  1147. if (cam->io == IO_READ) {
  1148. spin_lock_irqsave(&cam->queue_lock, lock_flags);
  1149. list_for_each_entry(f, &cam->outqueue, frame)
  1150. f->state = F_UNUSED;
  1151. INIT_LIST_HEAD(&cam->outqueue);
  1152. spin_unlock_irqrestore(&cam->queue_lock, lock_flags);
  1153. et61x251_queue_unusedframes(cam);
  1154. }
  1155. poll_wait(filp, &cam->wait_frame, wait);
  1156. if (!list_empty(&cam->outqueue))
  1157. mask |= POLLIN | POLLRDNORM;
  1158. mutex_unlock(&cam->fileop_mutex);
  1159. return mask;
  1160. error:
  1161. mutex_unlock(&cam->fileop_mutex);
  1162. return POLLERR;
  1163. }
  1164. static void et61x251_vm_open(struct vm_area_struct* vma)
  1165. {
  1166. struct et61x251_frame_t* f = vma->vm_private_data;
  1167. f->vma_use_count++;
  1168. }
  1169. static void et61x251_vm_close(struct vm_area_struct* vma)
  1170. {
  1171. /* NOTE: buffers are not freed here */
  1172. struct et61x251_frame_t* f = vma->vm_private_data;
  1173. f->vma_use_count--;
  1174. }
  1175. static struct vm_operations_struct et61x251_vm_ops = {
  1176. .open = et61x251_vm_open,
  1177. .close = et61x251_vm_close,
  1178. };
  1179. static int et61x251_mmap(struct file* filp, struct vm_area_struct *vma)
  1180. {
  1181. struct et61x251_device* cam = video_get_drvdata(video_devdata(filp));
  1182. unsigned long size = vma->vm_end - vma->vm_start,
  1183. start = vma->vm_start;
  1184. void *pos;
  1185. u32 i;
  1186. if (mutex_lock_interruptible(&cam->fileop_mutex))
  1187. return -ERESTARTSYS;
  1188. if (cam->state & DEV_DISCONNECTED) {
  1189. DBG(1, "Device not present");
  1190. mutex_unlock(&cam->fileop_mutex);
  1191. return -ENODEV;
  1192. }
  1193. if (cam->state & DEV_MISCONFIGURED) {
  1194. DBG(1, "The camera is misconfigured. Close and open it "
  1195. "again.");
  1196. mutex_unlock(&cam->fileop_mutex);
  1197. return -EIO;
  1198. }
  1199. if (cam->io != IO_MMAP || !(vma->vm_flags & VM_WRITE) ||
  1200. size != PAGE_ALIGN(cam->frame[0].buf.length)) {
  1201. mutex_unlock(&cam->fileop_mutex);
  1202. return -EINVAL;
  1203. }
  1204. for (i = 0; i < cam->nbuffers; i++) {
  1205. if ((cam->frame[i].buf.m.offset>>PAGE_SHIFT) == vma->vm_pgoff)
  1206. break;
  1207. }
  1208. if (i == cam->nbuffers) {
  1209. mutex_unlock(&cam->fileop_mutex);
  1210. return -EINVAL;
  1211. }
  1212. vma->vm_flags |= VM_IO;
  1213. vma->vm_flags |= VM_RESERVED;
  1214. pos = cam->frame[i].bufmem;
  1215. while (size > 0) { /* size is page-aligned */
  1216. if (vm_insert_page(vma, start, vmalloc_to_page(pos))) {
  1217. mutex_unlock(&cam->fileop_mutex);
  1218. return -EAGAIN;
  1219. }
  1220. start += PAGE_SIZE;
  1221. pos += PAGE_SIZE;
  1222. size -= PAGE_SIZE;
  1223. }
  1224. vma->vm_ops = &et61x251_vm_ops;
  1225. vma->vm_private_data = &cam->frame[i];
  1226. et61x251_vm_open(vma);
  1227. mutex_unlock(&cam->fileop_mutex);
  1228. return 0;
  1229. }
  1230. /*****************************************************************************/
  1231. static int
  1232. et61x251_vidioc_querycap(struct et61x251_device* cam, void __user * arg)
  1233. {
  1234. struct v4l2_capability cap = {
  1235. .driver = "et61x251",
  1236. .version = ET61X251_MODULE_VERSION_CODE,
  1237. .capabilities = V4L2_CAP_VIDEO_CAPTURE | V4L2_CAP_READWRITE |
  1238. V4L2_CAP_STREAMING,
  1239. };
  1240. strlcpy(cap.card, cam->v4ldev->name, sizeof(cap.card));
  1241. if (usb_make_path(cam->usbdev, cap.bus_info, sizeof(cap.bus_info)) < 0)
  1242. strlcpy(cap.bus_info, cam->usbdev->dev.bus_id,
  1243. sizeof(cap.bus_info));
  1244. if (copy_to_user(arg, &cap, sizeof(cap)))
  1245. return -EFAULT;
  1246. return 0;
  1247. }
  1248. static int
  1249. et61x251_vidioc_enuminput(struct et61x251_device* cam, void __user * arg)
  1250. {
  1251. struct v4l2_input i;
  1252. if (copy_from_user(&i, arg, sizeof(i)))
  1253. return -EFAULT;
  1254. if (i.index)
  1255. return -EINVAL;
  1256. memset(&i, 0, sizeof(i));
  1257. strcpy(i.name, "Camera");
  1258. i.type = V4L2_INPUT_TYPE_CAMERA;
  1259. if (copy_to_user(arg, &i, sizeof(i)))
  1260. return -EFAULT;
  1261. return 0;
  1262. }
  1263. static int
  1264. et61x251_vidioc_g_input(struct et61x251_device* cam, void __user * arg)
  1265. {
  1266. int index = 0;
  1267. if (copy_to_user(arg, &index, sizeof(index)))
  1268. return -EFAULT;
  1269. return 0;
  1270. }
  1271. static int
  1272. et61x251_vidioc_s_input(struct et61x251_device* cam, void __user * arg)
  1273. {
  1274. int index;
  1275. if (copy_from_user(&index, arg, sizeof(index)))
  1276. return -EFAULT;
  1277. if (index != 0)
  1278. return -EINVAL;
  1279. return 0;
  1280. }
  1281. static int
  1282. et61x251_vidioc_query_ctrl(struct et61x251_device* cam, void __user * arg)
  1283. {
  1284. struct et61x251_sensor* s = &cam->sensor;
  1285. struct v4l2_queryctrl qc;
  1286. u8 i;
  1287. if (copy_from_user(&qc, arg, sizeof(qc)))
  1288. return -EFAULT;
  1289. for (i = 0; i < ARRAY_SIZE(s->qctrl); i++)
  1290. if (qc.id && qc.id == s->qctrl[i].id) {
  1291. memcpy(&qc, &(s->qctrl[i]), sizeof(qc));
  1292. if (copy_to_user(arg, &qc, sizeof(qc)))
  1293. return -EFAULT;
  1294. return 0;
  1295. }
  1296. return -EINVAL;
  1297. }
  1298. static int
  1299. et61x251_vidioc_g_ctrl(struct et61x251_device* cam, void __user * arg)
  1300. {
  1301. struct et61x251_sensor* s = &cam->sensor;
  1302. struct v4l2_control ctrl;
  1303. int err = 0;
  1304. u8 i;
  1305. if (!s->get_ctrl && !s->set_ctrl)
  1306. return -EINVAL;
  1307. if (copy_from_user(&ctrl, arg, sizeof(ctrl)))
  1308. return -EFAULT;
  1309. if (!s->get_ctrl) {
  1310. for (i = 0; i < ARRAY_SIZE(s->qctrl); i++)
  1311. if (ctrl.id == s->qctrl[i].id) {
  1312. ctrl.value = s->_qctrl[i].default_value;
  1313. goto exit;
  1314. }
  1315. return -EINVAL;
  1316. } else
  1317. err = s->get_ctrl(cam, &ctrl);
  1318. exit:
  1319. if (copy_to_user(arg, &ctrl, sizeof(ctrl)))
  1320. return -EFAULT;
  1321. return err;
  1322. }
  1323. static int
  1324. et61x251_vidioc_s_ctrl(struct et61x251_device* cam, void __user * arg)
  1325. {
  1326. struct et61x251_sensor* s = &cam->sensor;
  1327. struct v4l2_control ctrl;
  1328. u8 i;
  1329. int err = 0;
  1330. if (!s->set_ctrl)
  1331. return -EINVAL;
  1332. if (copy_from_user(&ctrl, arg, sizeof(ctrl)))
  1333. return -EFAULT;
  1334. for (i = 0; i < ARRAY_SIZE(s->qctrl); i++)
  1335. if (ctrl.id == s->qctrl[i].id) {
  1336. if (s->qctrl[i].flags & V4L2_CTRL_FLAG_DISABLED)
  1337. return -EINVAL;
  1338. if (ctrl.value < s->qctrl[i].minimum ||
  1339. ctrl.value > s->qctrl[i].maximum)
  1340. return -ERANGE;
  1341. ctrl.value -= ctrl.value % s->qctrl[i].step;
  1342. break;
  1343. }
  1344. if ((err = s->set_ctrl(cam, &ctrl)))
  1345. return err;
  1346. s->_qctrl[i].default_value = ctrl.value;
  1347. return 0;
  1348. }
  1349. static int
  1350. et61x251_vidioc_cropcap(struct et61x251_device* cam, void __user * arg)
  1351. {
  1352. struct v4l2_cropcap* cc = &(cam->sensor.cropcap);
  1353. cc->type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
  1354. cc->pixelaspect.numerator = 1;
  1355. cc->pixelaspect.denominator = 1;
  1356. if (copy_to_user(arg, cc, sizeof(*cc)))
  1357. return -EFAULT;
  1358. return 0;
  1359. }
  1360. static int
  1361. et61x251_vidioc_g_crop(struct et61x251_device* cam, void __user * arg)
  1362. {
  1363. struct et61x251_sensor* s = &cam->sensor;
  1364. struct v4l2_crop crop = {
  1365. .type = V4L2_BUF_TYPE_VIDEO_CAPTURE,
  1366. };
  1367. memcpy(&(crop.c), &(s->_rect), sizeof(struct v4l2_rect));
  1368. if (copy_to_user(arg, &crop, sizeof(crop)))
  1369. return -EFAULT;
  1370. return 0;
  1371. }
  1372. static int
  1373. et61x251_vidioc_s_crop(struct et61x251_device* cam, void __user * arg)
  1374. {
  1375. struct et61x251_sensor* s = &cam->sensor;
  1376. struct v4l2_crop crop;
  1377. struct v4l2_rect* rect;
  1378. struct v4l2_rect* bounds = &(s->cropcap.bounds);
  1379. struct v4l2_pix_format* pix_format = &(s->pix_format);
  1380. u8 scale;
  1381. const enum et61x251_stream_state stream = cam->stream;
  1382. const u32 nbuffers = cam->nbuffers;
  1383. u32 i;
  1384. int err = 0;
  1385. if (copy_from_user(&crop, arg, sizeof(crop)))
  1386. return -EFAULT;
  1387. rect = &(crop.c);
  1388. if (crop.type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
  1389. return -EINVAL;
  1390. if (cam->module_param.force_munmap)
  1391. for (i = 0; i < cam->nbuffers; i++)
  1392. if (cam->frame[i].vma_use_count) {
  1393. DBG(3, "VIDIOC_S_CROP failed. "
  1394. "Unmap the buffers first.");
  1395. return -EINVAL;
  1396. }
  1397. /* Preserve R,G or B origin */
  1398. rect->left = (s->_rect.left & 1L) ? rect->left | 1L : rect->left & ~1L;
  1399. rect->top = (s->_rect.top & 1L) ? rect->top | 1L : rect->top & ~1L;
  1400. if (rect->width < 4)
  1401. rect->width = 4;
  1402. if (rect->height < 4)
  1403. rect->height = 4;
  1404. if (rect->width > bounds->width)
  1405. rect->width = bounds->width;
  1406. if (rect->height > bounds->height)
  1407. rect->height = bounds->height;
  1408. if (rect->left < bounds->left)
  1409. rect->left = bounds->left;
  1410. if (rect->top < bounds->top)
  1411. rect->top = bounds->top;
  1412. if (rect->left + rect->width > bounds->left + bounds->width)
  1413. rect->left = bounds->left+bounds->width - rect->width;
  1414. if (rect->top + rect->height > bounds->top + bounds->height)
  1415. rect->top = bounds->top+bounds->height - rect->height;
  1416. rect->width &= ~3L;
  1417. rect->height &= ~3L;
  1418. if (ET61X251_PRESERVE_IMGSCALE) {
  1419. /* Calculate the actual scaling factor */
  1420. u32 a, b;
  1421. a = rect->width * rect->height;
  1422. b = pix_format->width * pix_format->height;
  1423. scale = b ? (u8)((a / b) < 4 ? 1 : 2) : 1;
  1424. } else
  1425. scale = 1;
  1426. if (cam->stream == STREAM_ON)
  1427. if ((err = et61x251_stream_interrupt(cam)))
  1428. return err;
  1429. if (copy_to_user(arg, &crop, sizeof(crop))) {
  1430. cam->stream = stream;
  1431. return -EFAULT;
  1432. }
  1433. if (cam->module_param.force_munmap || cam->io == IO_READ)
  1434. et61x251_release_buffers(cam);
  1435. err = et61x251_set_crop(cam, rect);
  1436. if (s->set_crop)
  1437. err += s->set_crop(cam, rect);
  1438. err += et61x251_set_scale(cam, scale);
  1439. if (err) { /* atomic, no rollback in ioctl() */
  1440. cam->state |= DEV_MISCONFIGURED;
  1441. DBG(1, "VIDIOC_S_CROP failed because of hardware problems. To "
  1442. "use the camera, close and open /dev/video%d again.",
  1443. cam->v4ldev->minor);
  1444. return -EIO;
  1445. }
  1446. s->pix_format.width = rect->width/scale;
  1447. s->pix_format.height = rect->height/scale;
  1448. memcpy(&(s->_rect), rect, sizeof(*rect));
  1449. if ((cam->module_param.force_munmap || cam->io == IO_READ) &&
  1450. nbuffers != et61x251_request_buffers(cam, nbuffers, cam->io)) {
  1451. cam->state |= DEV_MISCONFIGURED;
  1452. DBG(1, "VIDIOC_S_CROP failed because of not enough memory. To "
  1453. "use the camera, close and open /dev/video%d again.",
  1454. cam->v4ldev->minor);
  1455. return -ENOMEM;
  1456. }
  1457. if (cam->io == IO_READ)
  1458. et61x251_empty_framequeues(cam);
  1459. else if (cam->module_param.force_munmap)
  1460. et61x251_requeue_outqueue(cam);
  1461. cam->stream = stream;
  1462. return 0;
  1463. }
  1464. static int
  1465. et61x251_vidioc_enum_fmt(struct et61x251_device* cam, void __user * arg)
  1466. {
  1467. struct v4l2_fmtdesc fmtd;
  1468. if (copy_from_user(&fmtd, arg, sizeof(fmtd)))
  1469. return -EFAULT;
  1470. if (fmtd.index == 0) {
  1471. strcpy(fmtd.description, "bayer rgb");
  1472. fmtd.pixelformat = V4L2_PIX_FMT_SBGGR8;
  1473. } else if (fmtd.index == 1) {
  1474. strcpy(fmtd.description, "compressed");
  1475. fmtd.pixelformat = V4L2_PIX_FMT_ET61X251;
  1476. fmtd.flags = V4L2_FMT_FLAG_COMPRESSED;
  1477. } else
  1478. return -EINVAL;
  1479. fmtd.type = V4L2_BUF_TYPE_VIDEO_CAPTURE;
  1480. memset(&fmtd.reserved, 0, sizeof(fmtd.reserved));
  1481. if (copy_to_user(arg, &fmtd, sizeof(fmtd)))
  1482. return -EFAULT;
  1483. return 0;
  1484. }
  1485. static int
  1486. et61x251_vidioc_g_fmt(struct et61x251_device* cam, void __user * arg)
  1487. {
  1488. struct v4l2_format format;
  1489. struct v4l2_pix_format* pfmt = &(cam->sensor.pix_format);
  1490. if (copy_from_user(&format, arg, sizeof(format)))
  1491. return -EFAULT;
  1492. if (format.type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
  1493. return -EINVAL;
  1494. pfmt->bytesperline = (pfmt->pixelformat==V4L2_PIX_FMT_ET61X251)
  1495. ? 0 : (pfmt->width * pfmt->priv) / 8;
  1496. pfmt->sizeimage = pfmt->height * ((pfmt->width*pfmt->priv)/8);
  1497. pfmt->field = V4L2_FIELD_NONE;
  1498. memcpy(&(format.fmt.pix), pfmt, sizeof(*pfmt));
  1499. if (copy_to_user(arg, &format, sizeof(format)))
  1500. return -EFAULT;
  1501. return 0;
  1502. }
  1503. static int
  1504. et61x251_vidioc_try_s_fmt(struct et61x251_device* cam, unsigned int cmd,
  1505. void __user * arg)
  1506. {
  1507. struct et61x251_sensor* s = &cam->sensor;
  1508. struct v4l2_format format;
  1509. struct v4l2_pix_format* pix;
  1510. struct v4l2_pix_format* pfmt = &(s->pix_format);
  1511. struct v4l2_rect* bounds = &(s->cropcap.bounds);
  1512. struct v4l2_rect rect;
  1513. u8 scale;
  1514. const enum et61x251_stream_state stream = cam->stream;
  1515. const u32 nbuffers = cam->nbuffers;
  1516. u32 i;
  1517. int err = 0;
  1518. if (copy_from_user(&format, arg, sizeof(format)))
  1519. return -EFAULT;
  1520. pix = &(format.fmt.pix);
  1521. if (format.type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
  1522. return -EINVAL;
  1523. memcpy(&rect, &(s->_rect), sizeof(rect));
  1524. { /* calculate the actual scaling factor */
  1525. u32 a, b;
  1526. a = rect.width * rect.height;
  1527. b = pix->width * pix->height;
  1528. scale = b ? (u8)((a / b) < 4 ? 1 : 2) : 1;
  1529. }
  1530. rect.width = scale * pix->width;
  1531. rect.height = scale * pix->height;
  1532. if (rect.width < 4)
  1533. rect.width = 4;
  1534. if (rect.height < 4)
  1535. rect.height = 4;
  1536. if (rect.width > bounds->left + bounds->width - rect.left)
  1537. rect.width = bounds->left + bounds->width - rect.left;
  1538. if (rect.height > bounds->top + bounds->height - rect.top)
  1539. rect.height = bounds->top + bounds->height - rect.top;
  1540. rect.width &= ~3L;
  1541. rect.height &= ~3L;
  1542. { /* adjust the scaling factor */
  1543. u32 a, b;
  1544. a = rect.width * rect.height;
  1545. b = pix->width * pix->height;
  1546. scale = b ? (u8)((a / b) < 4 ? 1 : 2) : 1;
  1547. }
  1548. pix->width = rect.width / scale;
  1549. pix->height = rect.height / scale;
  1550. if (pix->pixelformat != V4L2_PIX_FMT_ET61X251 &&
  1551. pix->pixelformat != V4L2_PIX_FMT_SBGGR8)
  1552. pix->pixelformat = pfmt->pixelformat;
  1553. pix->priv = pfmt->priv; /* bpp */
  1554. pix->colorspace = pfmt->colorspace;
  1555. pix->bytesperline = (pix->pixelformat == V4L2_PIX_FMT_ET61X251)
  1556. ? 0 : (pix->width * pix->priv) / 8;
  1557. pix->sizeimage = pix->height * ((pix->width * pix->priv) / 8);
  1558. pix->field = V4L2_FIELD_NONE;
  1559. if (cmd == VIDIOC_TRY_FMT) {
  1560. if (copy_to_user(arg, &format, sizeof(format)))
  1561. return -EFAULT;
  1562. return 0;
  1563. }
  1564. if (cam->module_param.force_munmap)
  1565. for (i = 0; i < cam->nbuffers; i++)
  1566. if (cam->frame[i].vma_use_count) {
  1567. DBG(3, "VIDIOC_S_FMT failed. "
  1568. "Unmap the buffers first.");
  1569. return -EINVAL;
  1570. }
  1571. if (cam->stream == STREAM_ON)
  1572. if ((err = et61x251_stream_interrupt(cam)))
  1573. return err;
  1574. if (copy_to_user(arg, &format, sizeof(format))) {
  1575. cam->stream = stream;
  1576. return -EFAULT;
  1577. }
  1578. if (cam->module_param.force_munmap || cam->io == IO_READ)
  1579. et61x251_release_buffers(cam);
  1580. err += et61x251_set_pix_format(cam, pix);
  1581. err += et61x251_set_crop(cam, &rect);
  1582. if (s->set_pix_format)
  1583. err += s->set_pix_format(cam, pix);
  1584. if (s->set_crop)
  1585. err += s->set_crop(cam, &rect);
  1586. err += et61x251_set_scale(cam, scale);
  1587. if (err) { /* atomic, no rollback in ioctl() */
  1588. cam->state |= DEV_MISCONFIGURED;
  1589. DBG(1, "VIDIOC_S_FMT failed because of hardware problems. To "
  1590. "use the camera, close and open /dev/video%d again.",
  1591. cam->v4ldev->minor);
  1592. return -EIO;
  1593. }
  1594. memcpy(pfmt, pix, sizeof(*pix));
  1595. memcpy(&(s->_rect), &rect, sizeof(rect));
  1596. if ((cam->module_param.force_munmap || cam->io == IO_READ) &&
  1597. nbuffers != et61x251_request_buffers(cam, nbuffers, cam->io)) {
  1598. cam->state |= DEV_MISCONFIGURED;
  1599. DBG(1, "VIDIOC_S_FMT failed because of not enough memory. To "
  1600. "use the camera, close and open /dev/video%d again.",
  1601. cam->v4ldev->minor);
  1602. return -ENOMEM;
  1603. }
  1604. if (cam->io == IO_READ)
  1605. et61x251_empty_framequeues(cam);
  1606. else if (cam->module_param.force_munmap)
  1607. et61x251_requeue_outqueue(cam);
  1608. cam->stream = stream;
  1609. return 0;
  1610. }
  1611. static int
  1612. et61x251_vidioc_g_jpegcomp(struct et61x251_device* cam, void __user * arg)
  1613. {
  1614. if (copy_to_user(arg, &cam->compression,
  1615. sizeof(cam->compression)))
  1616. return -EFAULT;
  1617. return 0;
  1618. }
  1619. static int
  1620. et61x251_vidioc_s_jpegcomp(struct et61x251_device* cam, void __user * arg)
  1621. {
  1622. struct v4l2_jpegcompression jc;
  1623. const enum et61x251_stream_state stream = cam->stream;
  1624. int err = 0;
  1625. if (copy_from_user(&jc, arg, sizeof(jc)))
  1626. return -EFAULT;
  1627. if (jc.quality != 0 && jc.quality != 1)
  1628. return -EINVAL;
  1629. if (cam->stream == STREAM_ON)
  1630. if ((err = et61x251_stream_interrupt(cam)))
  1631. return err;
  1632. err += et61x251_set_compression(cam, &jc);
  1633. if (err) { /* atomic, no rollback in ioctl() */
  1634. cam->state |= DEV_MISCONFIGURED;
  1635. DBG(1, "VIDIOC_S_JPEGCOMP failed because of hardware "
  1636. "problems. To use the camera, close and open "
  1637. "/dev/video%d again.", cam->v4ldev->minor);
  1638. return -EIO;
  1639. }
  1640. cam->compression.quality = jc.quality;
  1641. cam->stream = stream;
  1642. return 0;
  1643. }
  1644. static int
  1645. et61x251_vidioc_reqbufs(struct et61x251_device* cam, void __user * arg)
  1646. {
  1647. struct v4l2_requestbuffers rb;
  1648. u32 i;
  1649. int err;
  1650. if (copy_from_user(&rb, arg, sizeof(rb)))
  1651. return -EFAULT;
  1652. if (rb.type != V4L2_BUF_TYPE_VIDEO_CAPTURE ||
  1653. rb.memory != V4L2_MEMORY_MMAP)
  1654. return -EINVAL;
  1655. if (cam->io == IO_READ) {
  1656. DBG(3, "Close and open the device again to choose the mmap "
  1657. "I/O method");
  1658. return -EINVAL;
  1659. }
  1660. for (i = 0; i < cam->nbuffers; i++)
  1661. if (cam->frame[i].vma_use_count) {
  1662. DBG(3, "VIDIOC_REQBUFS failed. "
  1663. "Previous buffers are still mapped.");
  1664. return -EINVAL;
  1665. }
  1666. if (cam->stream == STREAM_ON)
  1667. if ((err = et61x251_stream_interrupt(cam)))
  1668. return err;
  1669. et61x251_empty_framequeues(cam);
  1670. et61x251_release_buffers(cam);
  1671. if (rb.count)
  1672. rb.count = et61x251_request_buffers(cam, rb.count, IO_MMAP);
  1673. if (copy_to_user(arg, &rb, sizeof(rb))) {
  1674. et61x251_release_buffers(cam);
  1675. cam->io = IO_NONE;
  1676. return -EFAULT;
  1677. }
  1678. cam->io = rb.count ? IO_MMAP : IO_NONE;
  1679. return 0;
  1680. }
  1681. static int
  1682. et61x251_vidioc_querybuf(struct et61x251_device* cam, void __user * arg)
  1683. {
  1684. struct v4l2_buffer b;
  1685. if (copy_from_user(&b, arg, sizeof(b)))
  1686. return -EFAULT;
  1687. if (b.type != V4L2_BUF_TYPE_VIDEO_CAPTURE ||
  1688. b.index >= cam->nbuffers || cam->io != IO_MMAP)
  1689. return -EINVAL;
  1690. memcpy(&b, &cam->frame[b.index].buf, sizeof(b));
  1691. if (cam->frame[b.index].vma_use_count)
  1692. b.flags |= V4L2_BUF_FLAG_MAPPED;
  1693. if (cam->frame[b.index].state == F_DONE)
  1694. b.flags |= V4L2_BUF_FLAG_DONE;
  1695. else if (cam->frame[b.index].state != F_UNUSED)
  1696. b.flags |= V4L2_BUF_FLAG_QUEUED;
  1697. if (copy_to_user(arg, &b, sizeof(b)))
  1698. return -EFAULT;
  1699. return 0;
  1700. }
  1701. static int
  1702. et61x251_vidioc_qbuf(struct et61x251_device* cam, void __user * arg)
  1703. {
  1704. struct v4l2_buffer b;
  1705. unsigned long lock_flags;
  1706. if (copy_from_user(&b, arg, sizeof(b)))
  1707. return -EFAULT;
  1708. if (b.type != V4L2_BUF_TYPE_VIDEO_CAPTURE ||
  1709. b.index >= cam->nbuffers || cam->io != IO_MMAP)
  1710. return -EINVAL;
  1711. if (cam->frame[b.index].state != F_UNUSED)
  1712. return -EINVAL;
  1713. cam->frame[b.index].state = F_QUEUED;
  1714. spin_lock_irqsave(&cam->queue_lock, lock_flags);
  1715. list_add_tail(&cam->frame[b.index].frame, &cam->inqueue);
  1716. spin_unlock_irqrestore(&cam->queue_lock, lock_flags);
  1717. PDBGG("Frame #%lu queued", (unsigned long)b.index);
  1718. return 0;
  1719. }
  1720. static int
  1721. et61x251_vidioc_dqbuf(struct et61x251_device* cam, struct file* filp,
  1722. void __user * arg)
  1723. {
  1724. struct v4l2_buffer b;
  1725. struct et61x251_frame_t *f;
  1726. unsigned long lock_flags;
  1727. long timeout;
  1728. if (copy_from_user(&b, arg, sizeof(b)))
  1729. return -EFAULT;
  1730. if (b.type != V4L2_BUF_TYPE_VIDEO_CAPTURE || cam->io!= IO_MMAP)
  1731. return -EINVAL;
  1732. if (list_empty(&cam->outqueue)) {
  1733. if (cam->stream == STREAM_OFF)
  1734. return -EINVAL;
  1735. if (filp->f_flags & O_NONBLOCK)
  1736. return -EAGAIN;
  1737. timeout = wait_event_interruptible_timeout
  1738. ( cam->wait_frame,
  1739. (!list_empty(&cam->outqueue)) ||
  1740. (cam->state & DEV_DISCONNECTED) ||
  1741. (cam->state & DEV_MISCONFIGURED),
  1742. cam->module_param.frame_timeout *
  1743. 1000 * msecs_to_jiffies(1) );
  1744. if (timeout < 0)
  1745. return timeout;
  1746. if (cam->state & DEV_DISCONNECTED)
  1747. return -ENODEV;
  1748. if (!timeout || (cam->state & DEV_MISCONFIGURED))
  1749. return -EIO;
  1750. }
  1751. spin_lock_irqsave(&cam->queue_lock, lock_flags);
  1752. f = list_entry(cam->outqueue.next, struct et61x251_frame_t, frame);
  1753. list_del(cam->outqueue.next);
  1754. spin_unlock_irqrestore(&cam->queue_lock, lock_flags);
  1755. f->state = F_UNUSED;
  1756. memcpy(&b, &f->buf, sizeof(b));
  1757. if (f->vma_use_count)
  1758. b.flags |= V4L2_BUF_FLAG_MAPPED;
  1759. if (copy_to_user(arg, &b, sizeof(b)))
  1760. return -EFAULT;
  1761. PDBGG("Frame #%lu dequeued", (unsigned long)f->buf.index);
  1762. return 0;
  1763. }
  1764. static int
  1765. et61x251_vidioc_streamon(struct et61x251_device* cam, void __user * arg)
  1766. {
  1767. int type;
  1768. if (copy_from_user(&type, arg, sizeof(type)))
  1769. return -EFAULT;
  1770. if (type != V4L2_BUF_TYPE_VIDEO_CAPTURE || cam->io != IO_MMAP)
  1771. return -EINVAL;
  1772. if (list_empty(&cam->inqueue))
  1773. return -EINVAL;
  1774. cam->stream = STREAM_ON;
  1775. DBG(3, "Stream on");
  1776. return 0;
  1777. }
  1778. static int
  1779. et61x251_vidioc_streamoff(struct et61x251_device* cam, void __user * arg)
  1780. {
  1781. int type, err;
  1782. if (copy_from_user(&type, arg, sizeof(type)))
  1783. return -EFAULT;
  1784. if (type != V4L2_BUF_TYPE_VIDEO_CAPTURE || cam->io != IO_MMAP)
  1785. return -EINVAL;
  1786. if (cam->stream == STREAM_ON)
  1787. if ((err = et61x251_stream_interrupt(cam)))
  1788. return err;
  1789. et61x251_empty_framequeues(cam);
  1790. DBG(3, "Stream off");
  1791. return 0;
  1792. }
  1793. static int
  1794. et61x251_vidioc_g_parm(struct et61x251_device* cam, void __user * arg)
  1795. {
  1796. struct v4l2_streamparm sp;
  1797. if (copy_from_user(&sp, arg, sizeof(sp)))
  1798. return -EFAULT;
  1799. if (sp.type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
  1800. return -EINVAL;
  1801. sp.parm.capture.extendedmode = 0;
  1802. sp.parm.capture.readbuffers = cam->nreadbuffers;
  1803. if (copy_to_user(arg, &sp, sizeof(sp)))
  1804. return -EFAULT;
  1805. return 0;
  1806. }
  1807. static int
  1808. et61x251_vidioc_s_parm(struct et61x251_device* cam, void __user * arg)
  1809. {
  1810. struct v4l2_streamparm sp;
  1811. if (copy_from_user(&sp, arg, sizeof(sp)))
  1812. return -EFAULT;
  1813. if (sp.type != V4L2_BUF_TYPE_VIDEO_CAPTURE)
  1814. return -EINVAL;
  1815. sp.parm.capture.extendedmode = 0;
  1816. if (sp.parm.capture.readbuffers == 0)
  1817. sp.parm.capture.readbuffers = cam->nreadbuffers;
  1818. if (sp.parm.capture.readbuffers > ET61X251_MAX_FRAMES)
  1819. sp.parm.capture.readbuffers = ET61X251_MAX_FRAMES;
  1820. if (copy_to_user(arg, &sp, sizeof(sp)))
  1821. return -EFAULT;
  1822. cam->nreadbuffers = sp.parm.capture.readbuffers;
  1823. return 0;
  1824. }
  1825. static int et61x251_ioctl_v4l2(struct inode* inode, struct file* filp,
  1826. unsigned int cmd, void __user * arg)
  1827. {
  1828. struct et61x251_device* cam = video_get_drvdata(video_devdata(filp));
  1829. switch (cmd) {
  1830. case VIDIOC_QUERYCAP:
  1831. return et61x251_vidioc_querycap(cam, arg);
  1832. case VIDIOC_ENUMINPUT:
  1833. return et61x251_vidioc_enuminput(cam, arg);
  1834. case VIDIOC_G_INPUT:
  1835. return et61x251_vidioc_g_input(cam, arg);
  1836. case VIDIOC_S_INPUT:
  1837. return et61x251_vidioc_s_input(cam, arg);
  1838. case VIDIOC_QUERYCTRL:
  1839. return et61x251_vidioc_query_ctrl(cam, arg);
  1840. case VIDIOC_G_CTRL:
  1841. return et61x251_vidioc_g_ctrl(cam, arg);
  1842. case VIDIOC_S_CTRL:
  1843. return et61x251_vidioc_s_ctrl(cam, arg);
  1844. case VIDIOC_CROPCAP:
  1845. return et61x251_vidioc_cropcap(cam, arg);
  1846. case VIDIOC_G_CROP:
  1847. return et61x251_vidioc_g_crop(cam, arg);
  1848. case VIDIOC_S_CROP:
  1849. return et61x251_vidioc_s_crop(cam, arg);
  1850. case VIDIOC_ENUM_FMT:
  1851. return et61x251_vidioc_enum_fmt(cam, arg);
  1852. case VIDIOC_G_FMT:
  1853. return et61x251_vidioc_g_fmt(cam, arg);
  1854. case VIDIOC_TRY_FMT:
  1855. case VIDIOC_S_FMT:
  1856. return et61x251_vidioc_try_s_fmt(cam, cmd, arg);
  1857. case VIDIOC_G_JPEGCOMP:
  1858. return et61x251_vidioc_g_jpegcomp(cam, arg);
  1859. case VIDIOC_S_JPEGCOMP:
  1860. return et61x251_vidioc_s_jpegcomp(cam, arg);
  1861. case VIDIOC_REQBUFS:
  1862. return et61x251_vidioc_reqbufs(cam, arg);
  1863. case VIDIOC_QUERYBUF:
  1864. return et61x251_vidioc_querybuf(cam, arg);
  1865. case VIDIOC_QBUF:
  1866. return et61x251_vidioc_qbuf(cam, arg);
  1867. case VIDIOC_DQBUF:
  1868. return et61x251_vidioc_dqbuf(cam, filp, arg);
  1869. case VIDIOC_STREAMON:
  1870. return et61x251_vidioc_streamon(cam, arg);
  1871. case VIDIOC_STREAMOFF:
  1872. return et61x251_vidioc_streamoff(cam, arg);
  1873. case VIDIOC_G_PARM:
  1874. return et61x251_vidioc_g_parm(cam, arg);
  1875. case VIDIOC_S_PARM:
  1876. return et61x251_vidioc_s_parm(cam, arg);
  1877. case VIDIOC_G_STD:
  1878. case VIDIOC_S_STD:
  1879. case VIDIOC_QUERYSTD:
  1880. case VIDIOC_ENUMSTD:
  1881. case VIDIOC_QUERYMENU:
  1882. return -EINVAL;
  1883. default:
  1884. return -EINVAL;
  1885. }
  1886. }
  1887. static int et61x251_ioctl(struct inode* inode, struct file* filp,
  1888. unsigned int cmd, unsigned long arg)
  1889. {
  1890. struct et61x251_device* cam = video_get_drvdata(video_devdata(filp));
  1891. int err = 0;
  1892. if (mutex_lock_interruptible(&cam->fileop_mutex))
  1893. return -ERESTARTSYS;
  1894. if (cam->state & DEV_DISCONNECTED) {
  1895. DBG(1, "Device not present");
  1896. mutex_unlock(&cam->fileop_mutex);
  1897. return -ENODEV;
  1898. }
  1899. if (cam->state & DEV_MISCONFIGURED) {
  1900. DBG(1, "The camera is misconfigured. Close and open it "
  1901. "again.");
  1902. mutex_unlock(&cam->fileop_mutex);
  1903. return -EIO;
  1904. }
  1905. V4LDBG(3, "et61x251", cmd);
  1906. err = et61x251_ioctl_v4l2(inode, filp, cmd, (void __user *)arg);
  1907. mutex_unlock(&cam->fileop_mutex);
  1908. return err;
  1909. }
  1910. static struct file_operations et61x251_fops = {
  1911. .owner = THIS_MODULE,
  1912. .open = et61x251_open,
  1913. .release = et61x251_release,
  1914. .ioctl = et61x251_ioctl,
  1915. .read = et61x251_read,
  1916. .poll = et61x251_poll,
  1917. .mmap = et61x251_mmap,
  1918. .llseek = no_llseek,
  1919. };
  1920. /*****************************************************************************/
  1921. /* It exists a single interface only. We do not need to validate anything. */
  1922. static int
  1923. et61x251_usb_probe(struct usb_interface* intf, const struct usb_device_id* id)
  1924. {
  1925. struct usb_device *udev = interface_to_usbdev(intf);
  1926. struct et61x251_device* cam;
  1927. static unsigned int dev_nr = 0;
  1928. unsigned int i;
  1929. int err = 0;
  1930. if (!(cam = kzalloc(sizeof(struct et61x251_device), GFP_KERNEL)))
  1931. return -ENOMEM;
  1932. cam->usbdev = udev;
  1933. if (!(cam->control_buffer = kzalloc(8, GFP_KERNEL))) {
  1934. DBG(1, "kmalloc() failed");
  1935. err = -ENOMEM;
  1936. goto fail;
  1937. }
  1938. if (!(cam->v4ldev = video_device_alloc())) {
  1939. DBG(1, "video_device_alloc() failed");
  1940. err = -ENOMEM;
  1941. goto fail;
  1942. }
  1943. mutex_init(&cam->dev_mutex);
  1944. DBG(2, "ET61X[12]51 PC Camera Controller detected "
  1945. "(vid/pid 0x%04X/0x%04X)",id->idVendor, id->idProduct);
  1946. for (i = 0; et61x251_sensor_table[i]; i++) {
  1947. err = et61x251_sensor_table[i](cam);
  1948. if (!err)
  1949. break;
  1950. }
  1951. if (!err)
  1952. DBG(2, "%s image sensor detected", cam->sensor.name);
  1953. else {
  1954. DBG(1, "No supported image sensor detected");
  1955. err = -ENODEV;
  1956. goto fail;
  1957. }
  1958. if (et61x251_init(cam)) {
  1959. DBG(1, "Initialization failed. I will retry on open().");
  1960. cam->state |= DEV_MISCONFIGURED;
  1961. }
  1962. strcpy(cam->v4ldev->name, "ET61X[12]51 PC Camera");
  1963. cam->v4ldev->owner = THIS_MODULE;
  1964. cam->v4ldev->type = VID_TYPE_CAPTURE | VID_TYPE_SCALES;
  1965. cam->v4ldev->hardware = 0;
  1966. cam->v4ldev->fops = &et61x251_fops;
  1967. cam->v4ldev->minor = video_nr[dev_nr];
  1968. cam->v4ldev->release = video_device_release;
  1969. video_set_drvdata(cam->v4ldev, cam);
  1970. mutex_lock(&cam->dev_mutex);
  1971. err = video_register_device(cam->v4ldev, VFL_TYPE_GRABBER,
  1972. video_nr[dev_nr]);
  1973. if (err) {
  1974. DBG(1, "V4L2 device registration failed");
  1975. if (err == -ENFILE && video_nr[dev_nr] == -1)
  1976. DBG(1, "Free /dev/videoX node not found");
  1977. video_nr[dev_nr] = -1;
  1978. dev_nr = (dev_nr < ET61X251_MAX_DEVICES-1) ? dev_nr+1 : 0;
  1979. mutex_unlock(&cam->dev_mutex);
  1980. goto fail;
  1981. }
  1982. DBG(2, "V4L2 device registered as /dev/video%d", cam->v4ldev->minor);
  1983. cam->module_param.force_munmap = force_munmap[dev_nr];
  1984. cam->module_param.frame_timeout = frame_timeout[dev_nr];
  1985. dev_nr = (dev_nr < ET61X251_MAX_DEVICES-1) ? dev_nr+1 : 0;
  1986. #ifdef CONFIG_VIDEO_ADV_DEBUG
  1987. err = et61x251_create_sysfs(cam);
  1988. if (err)
  1989. goto fail2;
  1990. DBG(2, "Optional device control through 'sysfs' interface ready");
  1991. #endif
  1992. usb_set_intfdata(intf, cam);
  1993. mutex_unlock(&cam->dev_mutex);
  1994. return 0;
  1995. #ifdef CONFIG_VIDEO_ADV_DEBUG
  1996. fail2:
  1997. video_nr[dev_nr] = -1;
  1998. dev_nr = (dev_nr < ET61X251_MAX_DEVICES-1) ? dev_nr+1 : 0;
  1999. mutex_unlock(&cam->dev_mutex);
  2000. video_unregister_device(cam->v4ldev);
  2001. #endif
  2002. fail:
  2003. if (cam) {
  2004. kfree(cam->control_buffer);
  2005. if (cam->v4ldev)
  2006. video_device_release(cam->v4ldev);
  2007. kfree(cam);
  2008. }
  2009. return err;
  2010. }
  2011. static void et61x251_usb_disconnect(struct usb_interface* intf)
  2012. {
  2013. struct et61x251_device* cam = usb_get_intfdata(intf);
  2014. if (!cam)
  2015. return;
  2016. down_write(&et61x251_disconnect);
  2017. mutex_lock(&cam->dev_mutex);
  2018. DBG(2, "Disconnecting %s...", cam->v4ldev->name);
  2019. wake_up_interruptible_all(&cam->open);
  2020. if (cam->users) {
  2021. DBG(2, "Device /dev/video%d is open! Deregistration and "
  2022. "memory deallocation are deferred on close.",
  2023. cam->v4ldev->minor);
  2024. cam->state |= DEV_MISCONFIGURED;
  2025. et61x251_stop_transfer(cam);
  2026. cam->state |= DEV_DISCONNECTED;
  2027. wake_up_interruptible(&cam->wait_frame);
  2028. wake_up(&cam->wait_stream);
  2029. usb_get_dev(cam->usbdev);
  2030. } else {
  2031. cam->state |= DEV_DISCONNECTED;
  2032. et61x251_release_resources(cam);
  2033. }
  2034. mutex_unlock(&cam->dev_mutex);
  2035. if (!cam->users)
  2036. kfree(cam);
  2037. up_write(&et61x251_disconnect);
  2038. }
  2039. static struct usb_driver et61x251_usb_driver = {
  2040. .name = "et61x251",
  2041. .id_table = et61x251_id_table,
  2042. .probe = et61x251_usb_probe,
  2043. .disconnect = et61x251_usb_disconnect,
  2044. };
  2045. /*****************************************************************************/
  2046. static int __init et61x251_module_init(void)
  2047. {
  2048. int err = 0;
  2049. KDBG(2, ET61X251_MODULE_NAME " v" ET61X251_MODULE_VERSION);
  2050. KDBG(3, ET61X251_MODULE_AUTHOR);
  2051. if ((err = usb_register(&et61x251_usb_driver)))
  2052. KDBG(1, "usb_register() failed");
  2053. return err;
  2054. }
  2055. static void __exit et61x251_module_exit(void)
  2056. {
  2057. usb_deregister(&et61x251_usb_driver);
  2058. }
  2059. module_init(et61x251_module_init);
  2060. module_exit(et61x251_module_exit);