usbvision-core.c 72 KB

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  1. /*
  2. * usbvision-core.c - driver for NT100x USB video capture devices
  3. *
  4. *
  5. * Copyright (c) 1999-2005 Joerg Heckenbach <joerg@heckenbach-aw.de>
  6. * Dwaine Garden <dwainegarden@rogers.com>
  7. *
  8. * This module is part of usbvision driver project.
  9. * Updates to driver completed by Dwaine P. Garden
  10. *
  11. * This program is free software; you can redistribute it and/or modify
  12. * it under the terms of the GNU General Public License as published by
  13. * the Free Software Foundation; either version 2 of the License, or
  14. * (at your option) any later version.
  15. *
  16. * This program is distributed in the hope that it will be useful,
  17. * but WITHOUT ANY WARRANTY; without even the implied warranty of
  18. * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
  19. * GNU General Public License for more details.
  20. *
  21. * You should have received a copy of the GNU General Public License
  22. * along with this program; if not, write to the Free Software
  23. * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
  24. */
  25. #include <linux/kernel.h>
  26. #include <linux/list.h>
  27. #include <linux/timer.h>
  28. #include <linux/slab.h>
  29. #include <linux/mm.h>
  30. #include <linux/utsname.h>
  31. #include <linux/highmem.h>
  32. #include <linux/videodev.h>
  33. #include <linux/vmalloc.h>
  34. #include <linux/module.h>
  35. #include <linux/init.h>
  36. #include <linux/spinlock.h>
  37. #include <asm/io.h>
  38. #include <linux/videodev2.h>
  39. #include <linux/video_decoder.h>
  40. #include <linux/i2c.h>
  41. #include <media/saa7115.h>
  42. #include <media/v4l2-common.h>
  43. #include <media/tuner.h>
  44. #include <media/audiochip.h>
  45. #include <linux/moduleparam.h>
  46. #include <linux/workqueue.h>
  47. #ifdef CONFIG_KMOD
  48. #include <linux/kmod.h>
  49. #endif
  50. #include "usbvision.h"
  51. static unsigned int core_debug = 0;
  52. module_param(core_debug,int,0644);
  53. MODULE_PARM_DESC(core_debug,"enable debug messages [core]");
  54. static unsigned int force_testpattern = 0;
  55. module_param(force_testpattern,int,0644);
  56. MODULE_PARM_DESC(force_testpattern,"enable test pattern display [core]");
  57. static int adjustCompression = 1; // Set the compression to be adaptive
  58. module_param(adjustCompression, int, 0444);
  59. MODULE_PARM_DESC(adjustCompression, " Set the ADPCM compression for the device. Default: 1 (On)");
  60. static int SwitchSVideoInput = 0; // To help people with Black and White output with using s-video input. Some cables and input device are wired differently.
  61. module_param(SwitchSVideoInput, int, 0444);
  62. MODULE_PARM_DESC(SwitchSVideoInput, " Set the S-Video input. Some cables and input device are wired differently. Default: 0 (Off)");
  63. #define ENABLE_HEXDUMP 0 /* Enable if you need it */
  64. #ifdef USBVISION_DEBUG
  65. #define PDEBUG(level, fmt, args...) \
  66. if (core_debug & (level)) info("[%s:%d] " fmt, __PRETTY_FUNCTION__, __LINE__ , ## args)
  67. #else
  68. #define PDEBUG(level, fmt, args...) do {} while(0)
  69. #endif
  70. #define DBG_HEADER 1<<0
  71. #define DBG_IRQ 1<<1
  72. #define DBG_ISOC 1<<2
  73. #define DBG_PARSE 1<<3
  74. #define DBG_SCRATCH 1<<4
  75. #define DBG_FUNC 1<<5
  76. static const int max_imgwidth = MAX_FRAME_WIDTH;
  77. static const int max_imgheight = MAX_FRAME_HEIGHT;
  78. static const int min_imgwidth = MIN_FRAME_WIDTH;
  79. static const int min_imgheight = MIN_FRAME_HEIGHT;
  80. /* The value of 'scratch_buf_size' affects quality of the picture
  81. * in many ways. Shorter buffers may cause loss of data when client
  82. * is too slow. Larger buffers are memory-consuming and take longer
  83. * to work with. This setting can be adjusted, but the default value
  84. * should be OK for most desktop users.
  85. */
  86. #define DEFAULT_SCRATCH_BUF_SIZE (0x20000) // 128kB memory scratch buffer
  87. static const int scratch_buf_size = DEFAULT_SCRATCH_BUF_SIZE;
  88. // Function prototypes
  89. static int usbvision_request_intra (struct usb_usbvision *usbvision);
  90. static int usbvision_unrequest_intra (struct usb_usbvision *usbvision);
  91. static int usbvision_adjust_compression (struct usb_usbvision *usbvision);
  92. static int usbvision_measure_bandwidth (struct usb_usbvision *usbvision);
  93. /*******************************/
  94. /* Memory management functions */
  95. /*******************************/
  96. /*
  97. * Here we want the physical address of the memory.
  98. * This is used when initializing the contents of the area.
  99. */
  100. static void *usbvision_rvmalloc(unsigned long size)
  101. {
  102. void *mem;
  103. unsigned long adr;
  104. size = PAGE_ALIGN(size);
  105. mem = vmalloc_32(size);
  106. if (!mem)
  107. return NULL;
  108. memset(mem, 0, size); /* Clear the ram out, no junk to the user */
  109. adr = (unsigned long) mem;
  110. while (size > 0) {
  111. SetPageReserved(vmalloc_to_page((void *)adr));
  112. adr += PAGE_SIZE;
  113. size -= PAGE_SIZE;
  114. }
  115. return mem;
  116. }
  117. static void usbvision_rvfree(void *mem, unsigned long size)
  118. {
  119. unsigned long adr;
  120. if (!mem)
  121. return;
  122. size = PAGE_ALIGN(size);
  123. adr = (unsigned long) mem;
  124. while ((long) size > 0) {
  125. ClearPageReserved(vmalloc_to_page((void *)adr));
  126. adr += PAGE_SIZE;
  127. size -= PAGE_SIZE;
  128. }
  129. vfree(mem);
  130. }
  131. #if ENABLE_HEXDUMP
  132. static void usbvision_hexdump(const unsigned char *data, int len)
  133. {
  134. char tmp[80];
  135. int i, k;
  136. for (i = k = 0; len > 0; i++, len--) {
  137. if (i > 0 && (i % 16 == 0)) {
  138. printk("%s\n", tmp);
  139. k = 0;
  140. }
  141. k += sprintf(&tmp[k], "%02x ", data[i]);
  142. }
  143. if (k > 0)
  144. printk("%s\n", tmp);
  145. }
  146. #endif
  147. /********************************
  148. * scratch ring buffer handling
  149. ********************************/
  150. static int scratch_len(struct usb_usbvision *usbvision) /*This returns the amount of data actually in the buffer */
  151. {
  152. int len = usbvision->scratch_write_ptr - usbvision->scratch_read_ptr;
  153. if (len < 0) {
  154. len += scratch_buf_size;
  155. }
  156. PDEBUG(DBG_SCRATCH, "scratch_len() = %d\n", len);
  157. return len;
  158. }
  159. /* This returns the free space left in the buffer */
  160. static int scratch_free(struct usb_usbvision *usbvision)
  161. {
  162. int free = usbvision->scratch_read_ptr - usbvision->scratch_write_ptr;
  163. if (free <= 0) {
  164. free += scratch_buf_size;
  165. }
  166. if (free) {
  167. free -= 1; /* at least one byte in the buffer must */
  168. /* left blank, otherwise there is no chance to differ between full and empty */
  169. }
  170. PDEBUG(DBG_SCRATCH, "return %d\n", free);
  171. return free;
  172. }
  173. /* This puts data into the buffer */
  174. static int scratch_put(struct usb_usbvision *usbvision, unsigned char *data,
  175. int len)
  176. {
  177. int len_part;
  178. if (usbvision->scratch_write_ptr + len < scratch_buf_size) {
  179. memcpy(usbvision->scratch + usbvision->scratch_write_ptr, data, len);
  180. usbvision->scratch_write_ptr += len;
  181. }
  182. else {
  183. len_part = scratch_buf_size - usbvision->scratch_write_ptr;
  184. memcpy(usbvision->scratch + usbvision->scratch_write_ptr, data, len_part);
  185. if (len == len_part) {
  186. usbvision->scratch_write_ptr = 0; /* just set write_ptr to zero */
  187. }
  188. else {
  189. memcpy(usbvision->scratch, data + len_part, len - len_part);
  190. usbvision->scratch_write_ptr = len - len_part;
  191. }
  192. }
  193. PDEBUG(DBG_SCRATCH, "len=%d, new write_ptr=%d\n", len, usbvision->scratch_write_ptr);
  194. return len;
  195. }
  196. /* This marks the write_ptr as position of new frame header */
  197. static void scratch_mark_header(struct usb_usbvision *usbvision)
  198. {
  199. PDEBUG(DBG_SCRATCH, "header at write_ptr=%d\n", usbvision->scratch_headermarker_write_ptr);
  200. usbvision->scratch_headermarker[usbvision->scratch_headermarker_write_ptr] =
  201. usbvision->scratch_write_ptr;
  202. usbvision->scratch_headermarker_write_ptr += 1;
  203. usbvision->scratch_headermarker_write_ptr %= USBVISION_NUM_HEADERMARKER;
  204. }
  205. /* This gets data from the buffer at the given "ptr" position */
  206. static int scratch_get_extra(struct usb_usbvision *usbvision,
  207. unsigned char *data, int *ptr, int len)
  208. {
  209. int len_part;
  210. if (*ptr + len < scratch_buf_size) {
  211. memcpy(data, usbvision->scratch + *ptr, len);
  212. *ptr += len;
  213. }
  214. else {
  215. len_part = scratch_buf_size - *ptr;
  216. memcpy(data, usbvision->scratch + *ptr, len_part);
  217. if (len == len_part) {
  218. *ptr = 0; /* just set the y_ptr to zero */
  219. }
  220. else {
  221. memcpy(data + len_part, usbvision->scratch, len - len_part);
  222. *ptr = len - len_part;
  223. }
  224. }
  225. PDEBUG(DBG_SCRATCH, "len=%d, new ptr=%d\n", len, *ptr);
  226. return len;
  227. }
  228. /* This sets the scratch extra read pointer */
  229. static void scratch_set_extra_ptr(struct usb_usbvision *usbvision, int *ptr,
  230. int len)
  231. {
  232. *ptr = (usbvision->scratch_read_ptr + len)%scratch_buf_size;
  233. PDEBUG(DBG_SCRATCH, "ptr=%d\n", *ptr);
  234. }
  235. /*This increments the scratch extra read pointer */
  236. static void scratch_inc_extra_ptr(int *ptr, int len)
  237. {
  238. *ptr = (*ptr + len) % scratch_buf_size;
  239. PDEBUG(DBG_SCRATCH, "ptr=%d\n", *ptr);
  240. }
  241. /* This gets data from the buffer */
  242. static int scratch_get(struct usb_usbvision *usbvision, unsigned char *data,
  243. int len)
  244. {
  245. int len_part;
  246. if (usbvision->scratch_read_ptr + len < scratch_buf_size) {
  247. memcpy(data, usbvision->scratch + usbvision->scratch_read_ptr, len);
  248. usbvision->scratch_read_ptr += len;
  249. }
  250. else {
  251. len_part = scratch_buf_size - usbvision->scratch_read_ptr;
  252. memcpy(data, usbvision->scratch + usbvision->scratch_read_ptr, len_part);
  253. if (len == len_part) {
  254. usbvision->scratch_read_ptr = 0; /* just set the read_ptr to zero */
  255. }
  256. else {
  257. memcpy(data + len_part, usbvision->scratch, len - len_part);
  258. usbvision->scratch_read_ptr = len - len_part;
  259. }
  260. }
  261. PDEBUG(DBG_SCRATCH, "len=%d, new read_ptr=%d\n", len, usbvision->scratch_read_ptr);
  262. return len;
  263. }
  264. /* This sets read pointer to next header and returns it */
  265. static int scratch_get_header(struct usb_usbvision *usbvision,
  266. struct usbvision_frame_header *header)
  267. {
  268. int errCode = 0;
  269. PDEBUG(DBG_SCRATCH, "from read_ptr=%d", usbvision->scratch_headermarker_read_ptr);
  270. while (usbvision->scratch_headermarker_write_ptr -
  271. usbvision->scratch_headermarker_read_ptr != 0) {
  272. usbvision->scratch_read_ptr =
  273. usbvision->scratch_headermarker[usbvision->scratch_headermarker_read_ptr];
  274. usbvision->scratch_headermarker_read_ptr += 1;
  275. usbvision->scratch_headermarker_read_ptr %= USBVISION_NUM_HEADERMARKER;
  276. scratch_get(usbvision, (unsigned char *)header, USBVISION_HEADER_LENGTH);
  277. if ((header->magic_1 == USBVISION_MAGIC_1)
  278. && (header->magic_2 == USBVISION_MAGIC_2)
  279. && (header->headerLength == USBVISION_HEADER_LENGTH)) {
  280. errCode = USBVISION_HEADER_LENGTH;
  281. header->frameWidth = header->frameWidthLo + (header->frameWidthHi << 8);
  282. header->frameHeight = header->frameHeightLo + (header->frameHeightHi << 8);
  283. break;
  284. }
  285. }
  286. return errCode;
  287. }
  288. /*This removes len bytes of old data from the buffer */
  289. static void scratch_rm_old(struct usb_usbvision *usbvision, int len)
  290. {
  291. usbvision->scratch_read_ptr += len;
  292. usbvision->scratch_read_ptr %= scratch_buf_size;
  293. PDEBUG(DBG_SCRATCH, "read_ptr is now %d\n", usbvision->scratch_read_ptr);
  294. }
  295. /*This resets the buffer - kills all data in it too */
  296. static void scratch_reset(struct usb_usbvision *usbvision)
  297. {
  298. PDEBUG(DBG_SCRATCH, "\n");
  299. usbvision->scratch_read_ptr = 0;
  300. usbvision->scratch_write_ptr = 0;
  301. usbvision->scratch_headermarker_read_ptr = 0;
  302. usbvision->scratch_headermarker_write_ptr = 0;
  303. usbvision->isocstate = IsocState_NoFrame;
  304. }
  305. int usbvision_scratch_alloc(struct usb_usbvision *usbvision)
  306. {
  307. usbvision->scratch = vmalloc_32(scratch_buf_size);
  308. scratch_reset(usbvision);
  309. if(usbvision->scratch == NULL) {
  310. err("%s: unable to allocate %d bytes for scratch",
  311. __FUNCTION__, scratch_buf_size);
  312. return -ENOMEM;
  313. }
  314. return 0;
  315. }
  316. void usbvision_scratch_free(struct usb_usbvision *usbvision)
  317. {
  318. if (usbvision->scratch != NULL) {
  319. vfree(usbvision->scratch);
  320. usbvision->scratch = NULL;
  321. }
  322. }
  323. /*
  324. * usbvision_testpattern()
  325. *
  326. * Procedure forms a test pattern (yellow grid on blue background).
  327. *
  328. * Parameters:
  329. * fullframe: if TRUE then entire frame is filled, otherwise the procedure
  330. * continues from the current scanline.
  331. * pmode 0: fill the frame with solid blue color (like on VCR or TV)
  332. * 1: Draw a colored grid
  333. *
  334. */
  335. static void usbvision_testpattern(struct usb_usbvision *usbvision,
  336. int fullframe, int pmode)
  337. {
  338. static const char proc[] = "usbvision_testpattern";
  339. struct usbvision_frame *frame;
  340. unsigned char *f;
  341. int num_cell = 0;
  342. int scan_length = 0;
  343. static int num_pass = 0;
  344. if (usbvision == NULL) {
  345. printk(KERN_ERR "%s: usbvision == NULL\n", proc);
  346. return;
  347. }
  348. if (usbvision->curFrame == NULL) {
  349. printk(KERN_ERR "%s: usbvision->curFrame is NULL.\n", proc);
  350. return;
  351. }
  352. /* Grab the current frame */
  353. frame = usbvision->curFrame;
  354. /* Optionally start at the beginning */
  355. if (fullframe) {
  356. frame->curline = 0;
  357. frame->scanlength = 0;
  358. }
  359. /* Form every scan line */
  360. for (; frame->curline < frame->frmheight; frame->curline++) {
  361. int i;
  362. f = frame->data + (usbvision->curwidth * 3 * frame->curline);
  363. for (i = 0; i < usbvision->curwidth; i++) {
  364. unsigned char cb = 0x80;
  365. unsigned char cg = 0;
  366. unsigned char cr = 0;
  367. if (pmode == 1) {
  368. if (frame->curline % 32 == 0)
  369. cb = 0, cg = cr = 0xFF;
  370. else if (i % 32 == 0) {
  371. if (frame->curline % 32 == 1)
  372. num_cell++;
  373. cb = 0, cg = cr = 0xFF;
  374. } else {
  375. cb =
  376. ((num_cell * 7) +
  377. num_pass) & 0xFF;
  378. cg =
  379. ((num_cell * 5) +
  380. num_pass * 2) & 0xFF;
  381. cr =
  382. ((num_cell * 3) +
  383. num_pass * 3) & 0xFF;
  384. }
  385. } else {
  386. /* Just the blue screen */
  387. }
  388. *f++ = cb;
  389. *f++ = cg;
  390. *f++ = cr;
  391. scan_length += 3;
  392. }
  393. }
  394. frame->grabstate = FrameState_Done;
  395. frame->scanlength += scan_length;
  396. ++num_pass;
  397. }
  398. /*
  399. * usbvision_decompress_alloc()
  400. *
  401. * allocates intermediate buffer for decompression
  402. */
  403. int usbvision_decompress_alloc(struct usb_usbvision *usbvision)
  404. {
  405. int IFB_size = MAX_FRAME_WIDTH * MAX_FRAME_HEIGHT * 3 / 2;
  406. usbvision->IntraFrameBuffer = vmalloc_32(IFB_size);
  407. if (usbvision->IntraFrameBuffer == NULL) {
  408. err("%s: unable to allocate %d for compr. frame buffer", __FUNCTION__, IFB_size);
  409. return -ENOMEM;
  410. }
  411. return 0;
  412. }
  413. /*
  414. * usbvision_decompress_free()
  415. *
  416. * frees intermediate buffer for decompression
  417. */
  418. void usbvision_decompress_free(struct usb_usbvision *usbvision)
  419. {
  420. if (usbvision->IntraFrameBuffer != NULL) {
  421. vfree(usbvision->IntraFrameBuffer);
  422. usbvision->IntraFrameBuffer = NULL;
  423. }
  424. }
  425. /************************************************************
  426. * Here comes the data parsing stuff that is run as interrupt
  427. ************************************************************/
  428. /*
  429. * usbvision_find_header()
  430. *
  431. * Locate one of supported header markers in the scratch buffer.
  432. */
  433. static enum ParseState usbvision_find_header(struct usb_usbvision *usbvision)
  434. {
  435. struct usbvision_frame *frame;
  436. int foundHeader = 0;
  437. frame = usbvision->curFrame;
  438. while (scratch_get_header(usbvision, &frame->isocHeader) == USBVISION_HEADER_LENGTH) {
  439. // found header in scratch
  440. PDEBUG(DBG_HEADER, "found header: 0x%02x%02x %d %d %d %d %#x 0x%02x %u %u",
  441. frame->isocHeader.magic_2,
  442. frame->isocHeader.magic_1,
  443. frame->isocHeader.headerLength,
  444. frame->isocHeader.frameNum,
  445. frame->isocHeader.framePhase,
  446. frame->isocHeader.frameLatency,
  447. frame->isocHeader.dataFormat,
  448. frame->isocHeader.formatParam,
  449. frame->isocHeader.frameWidth,
  450. frame->isocHeader.frameHeight);
  451. if (usbvision->requestIntra) {
  452. if (frame->isocHeader.formatParam & 0x80) {
  453. foundHeader = 1;
  454. usbvision->lastIsocFrameNum = -1; // do not check for lost frames this time
  455. usbvision_unrequest_intra(usbvision);
  456. break;
  457. }
  458. }
  459. else {
  460. foundHeader = 1;
  461. break;
  462. }
  463. }
  464. if (foundHeader) {
  465. frame->frmwidth = frame->isocHeader.frameWidth * usbvision->stretch_width;
  466. frame->frmheight = frame->isocHeader.frameHeight * usbvision->stretch_height;
  467. frame->v4l2_linesize = (frame->frmwidth * frame->v4l2_format.depth)>> 3;
  468. }
  469. else { // no header found
  470. PDEBUG(DBG_HEADER, "skipping scratch data, no header");
  471. scratch_reset(usbvision);
  472. return ParseState_EndParse;
  473. }
  474. // found header
  475. if (frame->isocHeader.dataFormat==ISOC_MODE_COMPRESS) {
  476. //check isocHeader.frameNum for lost frames
  477. if (usbvision->lastIsocFrameNum >= 0) {
  478. if (((usbvision->lastIsocFrameNum + 1) % 32) != frame->isocHeader.frameNum) {
  479. // unexpected frame drop: need to request new intra frame
  480. PDEBUG(DBG_HEADER, "Lost frame before %d on USB", frame->isocHeader.frameNum);
  481. usbvision_request_intra(usbvision);
  482. return ParseState_NextFrame;
  483. }
  484. }
  485. usbvision->lastIsocFrameNum = frame->isocHeader.frameNum;
  486. }
  487. usbvision->header_count++;
  488. frame->scanstate = ScanState_Lines;
  489. frame->curline = 0;
  490. if (force_testpattern) {
  491. usbvision_testpattern(usbvision, 1, 1);
  492. return ParseState_NextFrame;
  493. }
  494. return ParseState_Continue;
  495. }
  496. static enum ParseState usbvision_parse_lines_422(struct usb_usbvision *usbvision,
  497. long *pcopylen)
  498. {
  499. volatile struct usbvision_frame *frame;
  500. unsigned char *f;
  501. int len;
  502. int i;
  503. unsigned char yuyv[4]={180, 128, 10, 128}; // YUV components
  504. unsigned char rv, gv, bv; // RGB components
  505. int clipmask_index, bytes_per_pixel;
  506. int stretch_bytes, clipmask_add;
  507. frame = usbvision->curFrame;
  508. f = frame->data + (frame->v4l2_linesize * frame->curline);
  509. /* Make sure there's enough data for the entire line */
  510. len = (frame->isocHeader.frameWidth * 2)+5;
  511. if (scratch_len(usbvision) < len) {
  512. PDEBUG(DBG_PARSE, "out of data in line %d, need %u.\n", frame->curline, len);
  513. return ParseState_Out;
  514. }
  515. if ((frame->curline + 1) >= frame->frmheight) {
  516. return ParseState_NextFrame;
  517. }
  518. bytes_per_pixel = frame->v4l2_format.bytes_per_pixel;
  519. stretch_bytes = (usbvision->stretch_width - 1) * bytes_per_pixel;
  520. clipmask_index = frame->curline * MAX_FRAME_WIDTH;
  521. clipmask_add = usbvision->stretch_width;
  522. for (i = 0; i < frame->frmwidth; i+=(2 * usbvision->stretch_width)) {
  523. scratch_get(usbvision, &yuyv[0], 4);
  524. if (frame->v4l2_format.format == V4L2_PIX_FMT_YUYV) {
  525. *f++ = yuyv[0]; // Y
  526. *f++ = yuyv[3]; // U
  527. }
  528. else {
  529. YUV_TO_RGB_BY_THE_BOOK(yuyv[0], yuyv[1], yuyv[3], rv, gv, bv);
  530. switch (frame->v4l2_format.format) {
  531. case V4L2_PIX_FMT_RGB565:
  532. *f++ = (0x1F & (bv >> 3)) | (0xE0 & (gv << 3));
  533. *f++ = (0x07 & (gv >> 5)) | (0xF8 & rv);
  534. break;
  535. case V4L2_PIX_FMT_RGB24:
  536. *f++ = bv;
  537. *f++ = gv;
  538. *f++ = rv;
  539. break;
  540. case V4L2_PIX_FMT_RGB32:
  541. *f++ = bv;
  542. *f++ = gv;
  543. *f++ = rv;
  544. f++;
  545. break;
  546. case V4L2_PIX_FMT_RGB555:
  547. *f++ = (0x1F & (bv >> 3)) | (0xE0 & (gv << 2));
  548. *f++ = (0x03 & (gv >> 6)) | (0x7C & (rv >> 1));
  549. break;
  550. }
  551. }
  552. clipmask_index += clipmask_add;
  553. f += stretch_bytes;
  554. if (frame->v4l2_format.format == V4L2_PIX_FMT_YUYV) {
  555. *f++ = yuyv[2]; // Y
  556. *f++ = yuyv[1]; // V
  557. }
  558. else {
  559. YUV_TO_RGB_BY_THE_BOOK(yuyv[2], yuyv[1], yuyv[3], rv, gv, bv);
  560. switch (frame->v4l2_format.format) {
  561. case V4L2_PIX_FMT_RGB565:
  562. *f++ = (0x1F & (bv >> 3)) | (0xE0 & (gv << 3));
  563. *f++ = (0x07 & (gv >> 5)) | (0xF8 & rv);
  564. break;
  565. case V4L2_PIX_FMT_RGB24:
  566. *f++ = bv;
  567. *f++ = gv;
  568. *f++ = rv;
  569. break;
  570. case V4L2_PIX_FMT_RGB32:
  571. *f++ = bv;
  572. *f++ = gv;
  573. *f++ = rv;
  574. f++;
  575. break;
  576. case V4L2_PIX_FMT_RGB555:
  577. *f++ = (0x1F & (bv >> 3)) | (0xE0 & (gv << 2));
  578. *f++ = (0x03 & (gv >> 6)) | (0x7C & (rv >> 1));
  579. break;
  580. }
  581. }
  582. clipmask_index += clipmask_add;
  583. f += stretch_bytes;
  584. }
  585. frame->curline += usbvision->stretch_height;
  586. *pcopylen += frame->v4l2_linesize * usbvision->stretch_height;
  587. if (frame->curline >= frame->frmheight) {
  588. return ParseState_NextFrame;
  589. }
  590. else {
  591. return ParseState_Continue;
  592. }
  593. }
  594. /* The decompression routine */
  595. static int usbvision_decompress(struct usb_usbvision *usbvision,unsigned char *Compressed,
  596. unsigned char *Decompressed, int *StartPos,
  597. int *BlockTypeStartPos, int Len)
  598. {
  599. int RestPixel, Idx, MaxPos, Pos, ExtraPos, BlockLen, BlockTypePos, BlockTypeLen;
  600. unsigned char BlockByte, BlockCode, BlockType, BlockTypeByte, Integrator;
  601. Integrator = 0;
  602. Pos = *StartPos;
  603. BlockTypePos = *BlockTypeStartPos;
  604. MaxPos = 396; //Pos + Len;
  605. ExtraPos = Pos;
  606. BlockLen = 0;
  607. BlockByte = 0;
  608. BlockCode = 0;
  609. BlockType = 0;
  610. BlockTypeByte = 0;
  611. BlockTypeLen = 0;
  612. RestPixel = Len;
  613. for (Idx = 0; Idx < Len; Idx++) {
  614. if (BlockLen == 0) {
  615. if (BlockTypeLen==0) {
  616. BlockTypeByte = Compressed[BlockTypePos];
  617. BlockTypePos++;
  618. BlockTypeLen = 4;
  619. }
  620. BlockType = (BlockTypeByte & 0xC0) >> 6;
  621. //statistic:
  622. usbvision->ComprBlockTypes[BlockType]++;
  623. Pos = ExtraPos;
  624. if (BlockType == 0) {
  625. if(RestPixel >= 24) {
  626. Idx += 23;
  627. RestPixel -= 24;
  628. Integrator = Decompressed[Idx];
  629. } else {
  630. Idx += RestPixel - 1;
  631. RestPixel = 0;
  632. }
  633. } else {
  634. BlockCode = Compressed[Pos];
  635. Pos++;
  636. if (RestPixel >= 24) {
  637. BlockLen = 24;
  638. } else {
  639. BlockLen = RestPixel;
  640. }
  641. RestPixel -= BlockLen;
  642. ExtraPos = Pos + (BlockLen / 4);
  643. }
  644. BlockTypeByte <<= 2;
  645. BlockTypeLen -= 1;
  646. }
  647. if (BlockLen > 0) {
  648. if ((BlockLen%4) == 0) {
  649. BlockByte = Compressed[Pos];
  650. Pos++;
  651. }
  652. if (BlockType == 1) { //inter Block
  653. Integrator = Decompressed[Idx];
  654. }
  655. switch (BlockByte & 0xC0) {
  656. case 0x03<<6:
  657. Integrator += Compressed[ExtraPos];
  658. ExtraPos++;
  659. break;
  660. case 0x02<<6:
  661. Integrator += BlockCode;
  662. break;
  663. case 0x00:
  664. Integrator -= BlockCode;
  665. break;
  666. }
  667. Decompressed[Idx] = Integrator;
  668. BlockByte <<= 2;
  669. BlockLen -= 1;
  670. }
  671. }
  672. *StartPos = ExtraPos;
  673. *BlockTypeStartPos = BlockTypePos;
  674. return Idx;
  675. }
  676. /*
  677. * usbvision_parse_compress()
  678. *
  679. * Parse compressed frame from the scratch buffer, put
  680. * decoded RGB value into the current frame buffer and add the written
  681. * number of bytes (RGB) to the *pcopylen.
  682. *
  683. */
  684. static enum ParseState usbvision_parse_compress(struct usb_usbvision *usbvision,
  685. long *pcopylen)
  686. {
  687. #define USBVISION_STRIP_MAGIC 0x5A
  688. #define USBVISION_STRIP_LEN_MAX 400
  689. #define USBVISION_STRIP_HEADER_LEN 3
  690. struct usbvision_frame *frame;
  691. unsigned char *f,*u = NULL ,*v = NULL;
  692. unsigned char StripData[USBVISION_STRIP_LEN_MAX];
  693. unsigned char StripHeader[USBVISION_STRIP_HEADER_LEN];
  694. int Idx, IdxEnd, StripLen, StripPtr, StartBlockPos, BlockPos, BlockTypePos;
  695. int clipmask_index, bytes_per_pixel, rc;
  696. int imageSize;
  697. unsigned char rv, gv, bv;
  698. static unsigned char *Y, *U, *V;
  699. frame = usbvision->curFrame;
  700. imageSize = frame->frmwidth * frame->frmheight;
  701. if ( (frame->v4l2_format.format == V4L2_PIX_FMT_YUV422P) ||
  702. (frame->v4l2_format.format == V4L2_PIX_FMT_YVU420) ) { // this is a planar format
  703. //... v4l2_linesize not used here.
  704. f = frame->data + (frame->width * frame->curline);
  705. } else
  706. f = frame->data + (frame->v4l2_linesize * frame->curline);
  707. if (frame->v4l2_format.format == V4L2_PIX_FMT_YUYV){ //initialise u and v pointers
  708. // get base of u and b planes add halfoffset
  709. u = frame->data
  710. + imageSize
  711. + (frame->frmwidth >>1) * frame->curline ;
  712. v = u + (imageSize >>1 );
  713. } else if (frame->v4l2_format.format == V4L2_PIX_FMT_YVU420){
  714. v = frame->data + imageSize + ((frame->curline* (frame->width))>>2) ;
  715. u = v + (imageSize >>2) ;
  716. }
  717. if (frame->curline == 0) {
  718. usbvision_adjust_compression(usbvision);
  719. }
  720. if (scratch_len(usbvision) < USBVISION_STRIP_HEADER_LEN) {
  721. return ParseState_Out;
  722. }
  723. //get strip header without changing the scratch_read_ptr
  724. scratch_set_extra_ptr(usbvision, &StripPtr, 0);
  725. scratch_get_extra(usbvision, &StripHeader[0], &StripPtr,
  726. USBVISION_STRIP_HEADER_LEN);
  727. if (StripHeader[0] != USBVISION_STRIP_MAGIC) {
  728. // wrong strip magic
  729. usbvision->stripMagicErrors++;
  730. return ParseState_NextFrame;
  731. }
  732. if (frame->curline != (int)StripHeader[2]) {
  733. //line number missmatch error
  734. usbvision->stripLineNumberErrors++;
  735. }
  736. StripLen = 2 * (unsigned int)StripHeader[1];
  737. if (StripLen > USBVISION_STRIP_LEN_MAX) {
  738. // strip overrun
  739. // I think this never happens
  740. usbvision_request_intra(usbvision);
  741. }
  742. if (scratch_len(usbvision) < StripLen) {
  743. //there is not enough data for the strip
  744. return ParseState_Out;
  745. }
  746. if (usbvision->IntraFrameBuffer) {
  747. Y = usbvision->IntraFrameBuffer + frame->frmwidth * frame->curline;
  748. U = usbvision->IntraFrameBuffer + imageSize + (frame->frmwidth / 2) * (frame->curline / 2);
  749. V = usbvision->IntraFrameBuffer + imageSize / 4 * 5 + (frame->frmwidth / 2) * (frame->curline / 2);
  750. }
  751. else {
  752. return ParseState_NextFrame;
  753. }
  754. bytes_per_pixel = frame->v4l2_format.bytes_per_pixel;
  755. clipmask_index = frame->curline * MAX_FRAME_WIDTH;
  756. scratch_get(usbvision, StripData, StripLen);
  757. IdxEnd = frame->frmwidth;
  758. BlockTypePos = USBVISION_STRIP_HEADER_LEN;
  759. StartBlockPos = BlockTypePos + (IdxEnd - 1) / 96 + (IdxEnd / 2 - 1) / 96 + 2;
  760. BlockPos = StartBlockPos;
  761. usbvision->BlockPos = BlockPos;
  762. if ((rc = usbvision_decompress(usbvision, StripData, Y, &BlockPos, &BlockTypePos, IdxEnd)) != IdxEnd) {
  763. //return ParseState_Continue;
  764. }
  765. if (StripLen > usbvision->maxStripLen) {
  766. usbvision->maxStripLen = StripLen;
  767. }
  768. if (frame->curline%2) {
  769. if ((rc = usbvision_decompress(usbvision, StripData, V, &BlockPos, &BlockTypePos, IdxEnd/2)) != IdxEnd/2) {
  770. //return ParseState_Continue;
  771. }
  772. }
  773. else {
  774. if ((rc = usbvision_decompress(usbvision, StripData, U, &BlockPos, &BlockTypePos, IdxEnd/2)) != IdxEnd/2) {
  775. //return ParseState_Continue;
  776. }
  777. }
  778. if (BlockPos > usbvision->comprBlockPos) {
  779. usbvision->comprBlockPos = BlockPos;
  780. }
  781. if (BlockPos > StripLen) {
  782. usbvision->stripLenErrors++;
  783. }
  784. for (Idx = 0; Idx < IdxEnd; Idx++) {
  785. if(frame->v4l2_format.format == V4L2_PIX_FMT_YUYV) {
  786. *f++ = Y[Idx];
  787. *f++ = Idx & 0x01 ? U[Idx/2] : V[Idx/2];
  788. }
  789. else if(frame->v4l2_format.format == V4L2_PIX_FMT_YUV422P) {
  790. *f++ = Y[Idx];
  791. if ( Idx & 0x01)
  792. *u++ = U[Idx>>1] ;
  793. else
  794. *v++ = V[Idx>>1];
  795. }
  796. else if (frame->v4l2_format.format == V4L2_PIX_FMT_YVU420) {
  797. *f++ = Y [Idx];
  798. if ( !(( Idx & 0x01 ) | ( frame->curline & 0x01 )) ){
  799. /* only need do this for 1 in 4 pixels */
  800. /* intraframe buffer is YUV420 format */
  801. *u++ = U[Idx >>1];
  802. *v++ = V[Idx >>1];
  803. }
  804. }
  805. else {
  806. YUV_TO_RGB_BY_THE_BOOK(Y[Idx], U[Idx/2], V[Idx/2], rv, gv, bv);
  807. switch (frame->v4l2_format.format) {
  808. case V4L2_PIX_FMT_GREY:
  809. *f++ = Y[Idx];
  810. break;
  811. case V4L2_PIX_FMT_RGB555:
  812. *f++ = (0x1F & (bv >> 3)) | (0xE0 & (gv << 2));
  813. *f++ = (0x03 & (gv >> 6)) | (0x7C & (rv >> 1));
  814. break;
  815. case V4L2_PIX_FMT_RGB565:
  816. *f++ = (0x1F & (bv >> 3)) | (0xE0 & (gv << 3));
  817. *f++ = (0x07 & (gv >> 5)) | (0xF8 & rv);
  818. break;
  819. case V4L2_PIX_FMT_RGB24:
  820. *f++ = bv;
  821. *f++ = gv;
  822. *f++ = rv;
  823. break;
  824. case V4L2_PIX_FMT_RGB32:
  825. *f++ = bv;
  826. *f++ = gv;
  827. *f++ = rv;
  828. f++;
  829. break;
  830. }
  831. }
  832. clipmask_index++;
  833. }
  834. /* Deal with non-integer no. of bytes for YUV420P */
  835. if (frame->v4l2_format.format != V4L2_PIX_FMT_YVU420 )
  836. *pcopylen += frame->v4l2_linesize;
  837. else
  838. *pcopylen += frame->curline & 0x01 ? frame->v4l2_linesize : frame->v4l2_linesize << 1;
  839. frame->curline += 1;
  840. if (frame->curline >= frame->frmheight) {
  841. return ParseState_NextFrame;
  842. }
  843. else {
  844. return ParseState_Continue;
  845. }
  846. }
  847. /*
  848. * usbvision_parse_lines_420()
  849. *
  850. * Parse two lines from the scratch buffer, put
  851. * decoded RGB value into the current frame buffer and add the written
  852. * number of bytes (RGB) to the *pcopylen.
  853. *
  854. */
  855. static enum ParseState usbvision_parse_lines_420(struct usb_usbvision *usbvision,
  856. long *pcopylen)
  857. {
  858. struct usbvision_frame *frame;
  859. unsigned char *f_even = NULL, *f_odd = NULL;
  860. unsigned int pixel_per_line, block;
  861. int pixel, block_split;
  862. int y_ptr, u_ptr, v_ptr, y_odd_offset;
  863. const int y_block_size = 128;
  864. const int uv_block_size = 64;
  865. const int sub_block_size = 32;
  866. const int y_step[] = { 0, 0, 0, 2 }, y_step_size = 4;
  867. const int uv_step[]= { 0, 0, 0, 4 }, uv_step_size = 4;
  868. unsigned char y[2], u, v; /* YUV components */
  869. int y_, u_, v_, vb, uvg, ur;
  870. int r_, g_, b_; /* RGB components */
  871. unsigned char g;
  872. int clipmask_even_index, clipmask_odd_index, bytes_per_pixel;
  873. int clipmask_add, stretch_bytes;
  874. frame = usbvision->curFrame;
  875. f_even = frame->data + (frame->v4l2_linesize * frame->curline);
  876. f_odd = f_even + frame->v4l2_linesize * usbvision->stretch_height;
  877. /* Make sure there's enough data for the entire line */
  878. /* In this mode usbvision transfer 3 bytes for every 2 pixels */
  879. /* I need two lines to decode the color */
  880. bytes_per_pixel = frame->v4l2_format.bytes_per_pixel;
  881. stretch_bytes = (usbvision->stretch_width - 1) * bytes_per_pixel;
  882. clipmask_even_index = frame->curline * MAX_FRAME_WIDTH;
  883. clipmask_odd_index = clipmask_even_index + MAX_FRAME_WIDTH;
  884. clipmask_add = usbvision->stretch_width;
  885. pixel_per_line = frame->isocHeader.frameWidth;
  886. if (scratch_len(usbvision) < (int)pixel_per_line * 3) {
  887. //printk(KERN_DEBUG "out of data, need %d\n", len);
  888. return ParseState_Out;
  889. }
  890. if ((frame->curline + 1) >= frame->frmheight) {
  891. return ParseState_NextFrame;
  892. }
  893. block_split = (pixel_per_line%y_block_size) ? 1 : 0; //are some blocks splitted into different lines?
  894. y_odd_offset = (pixel_per_line / y_block_size) * (y_block_size + uv_block_size)
  895. + block_split * uv_block_size;
  896. scratch_set_extra_ptr(usbvision, &y_ptr, y_odd_offset);
  897. scratch_set_extra_ptr(usbvision, &u_ptr, y_block_size);
  898. scratch_set_extra_ptr(usbvision, &v_ptr, y_odd_offset
  899. + (4 - block_split) * sub_block_size);
  900. for (block = 0; block < (pixel_per_line / sub_block_size);
  901. block++) {
  902. for (pixel = 0; pixel < sub_block_size; pixel +=2) {
  903. scratch_get(usbvision, &y[0], 2);
  904. scratch_get_extra(usbvision, &u, &u_ptr, 1);
  905. scratch_get_extra(usbvision, &v, &v_ptr, 1);
  906. //I don't use the YUV_TO_RGB macro for better performance
  907. v_ = v - 128;
  908. u_ = u - 128;
  909. vb = 132252 * v_;
  910. uvg= -53281 * u_ - 25625 * v_;
  911. ur = 104595 * u_;
  912. if(frame->v4l2_format.format == V4L2_PIX_FMT_YUYV) {
  913. *f_even++ = y[0];
  914. *f_even++ = v;
  915. }
  916. else {
  917. y_ = 76284 * (y[0] - 16);
  918. b_ = (y_ + vb) >> 16;
  919. g_ = (y_ + uvg)>> 16;
  920. r_ = (y_ + ur) >> 16;
  921. switch (frame->v4l2_format.format) {
  922. case V4L2_PIX_FMT_RGB565:
  923. g = LIMIT_RGB(g_);
  924. *f_even++ = (0x1F & (LIMIT_RGB(b_) >> 3)) | (0xE0 & (g << 3));
  925. *f_even++ = (0x07 & ( g >> 5)) | (0xF8 & LIMIT_RGB(r_));
  926. break;
  927. case V4L2_PIX_FMT_RGB24:
  928. *f_even++ = LIMIT_RGB(b_);
  929. *f_even++ = LIMIT_RGB(g_);
  930. *f_even++ = LIMIT_RGB(r_);
  931. break;
  932. case V4L2_PIX_FMT_RGB32:
  933. *f_even++ = LIMIT_RGB(b_);
  934. *f_even++ = LIMIT_RGB(g_);
  935. *f_even++ = LIMIT_RGB(r_);
  936. f_even++;
  937. break;
  938. case V4L2_PIX_FMT_RGB555:
  939. g = LIMIT_RGB(g_);
  940. *f_even++ = (0x1F & (LIMIT_RGB(b_) >> 3)) | (0xE0 & (g << 2));
  941. *f_even++ = (0x03 & ( g >> 6)) |
  942. (0x7C & (LIMIT_RGB(r_) >> 1));
  943. break;
  944. }
  945. }
  946. clipmask_even_index += clipmask_add;
  947. f_even += stretch_bytes;
  948. if(frame->v4l2_format.format == V4L2_PIX_FMT_YUYV) {
  949. *f_even++ = y[1];
  950. *f_even++ = u;
  951. }
  952. else {
  953. y_ = 76284 * (y[1] - 16);
  954. b_ = (y_ + vb) >> 16;
  955. g_ = (y_ + uvg)>> 16;
  956. r_ = (y_ + ur) >> 16;
  957. switch (frame->v4l2_format.format) {
  958. case V4L2_PIX_FMT_RGB565:
  959. g = LIMIT_RGB(g_);
  960. *f_even++ = (0x1F & (LIMIT_RGB(b_) >> 3)) | (0xE0 & (g << 3));
  961. *f_even++ = (0x07 & ( g >> 5)) | (0xF8 & LIMIT_RGB(r_));
  962. break;
  963. case V4L2_PIX_FMT_RGB24:
  964. *f_even++ = LIMIT_RGB(b_);
  965. *f_even++ = LIMIT_RGB(g_);
  966. *f_even++ = LIMIT_RGB(r_);
  967. break;
  968. case V4L2_PIX_FMT_RGB32:
  969. *f_even++ = LIMIT_RGB(b_);
  970. *f_even++ = LIMIT_RGB(g_);
  971. *f_even++ = LIMIT_RGB(r_);
  972. f_even++;
  973. break;
  974. case V4L2_PIX_FMT_RGB555:
  975. g = LIMIT_RGB(g_);
  976. *f_even++ = (0x1F & (LIMIT_RGB(b_) >> 3)) | (0xE0 & (g << 2));
  977. *f_even++ = (0x03 & ( g >> 6)) |
  978. (0x7C & (LIMIT_RGB(r_) >> 1));
  979. break;
  980. }
  981. }
  982. clipmask_even_index += clipmask_add;
  983. f_even += stretch_bytes;
  984. scratch_get_extra(usbvision, &y[0], &y_ptr, 2);
  985. if(frame->v4l2_format.format == V4L2_PIX_FMT_YUYV) {
  986. *f_odd++ = y[0];
  987. *f_odd++ = v;
  988. }
  989. else {
  990. y_ = 76284 * (y[0] - 16);
  991. b_ = (y_ + vb) >> 16;
  992. g_ = (y_ + uvg)>> 16;
  993. r_ = (y_ + ur) >> 16;
  994. switch (frame->v4l2_format.format) {
  995. case V4L2_PIX_FMT_RGB565:
  996. g = LIMIT_RGB(g_);
  997. *f_odd++ = (0x1F & (LIMIT_RGB(b_) >> 3)) | (0xE0 & (g << 3));
  998. *f_odd++ = (0x07 & ( g >> 5)) | (0xF8 & LIMIT_RGB(r_));
  999. break;
  1000. case V4L2_PIX_FMT_RGB24:
  1001. *f_odd++ = LIMIT_RGB(b_);
  1002. *f_odd++ = LIMIT_RGB(g_);
  1003. *f_odd++ = LIMIT_RGB(r_);
  1004. break;
  1005. case V4L2_PIX_FMT_RGB32:
  1006. *f_odd++ = LIMIT_RGB(b_);
  1007. *f_odd++ = LIMIT_RGB(g_);
  1008. *f_odd++ = LIMIT_RGB(r_);
  1009. f_odd++;
  1010. break;
  1011. case V4L2_PIX_FMT_RGB555:
  1012. g = LIMIT_RGB(g_);
  1013. *f_odd++ = (0x1F & (LIMIT_RGB(b_) >> 3)) | (0xE0 & (g << 2));
  1014. *f_odd++ = (0x03 & ( g >> 6)) |
  1015. (0x7C & (LIMIT_RGB(r_) >> 1));
  1016. break;
  1017. }
  1018. }
  1019. clipmask_odd_index += clipmask_add;
  1020. f_odd += stretch_bytes;
  1021. if(frame->v4l2_format.format == V4L2_PIX_FMT_YUYV) {
  1022. *f_odd++ = y[1];
  1023. *f_odd++ = u;
  1024. }
  1025. else {
  1026. y_ = 76284 * (y[1] - 16);
  1027. b_ = (y_ + vb) >> 16;
  1028. g_ = (y_ + uvg)>> 16;
  1029. r_ = (y_ + ur) >> 16;
  1030. switch (frame->v4l2_format.format) {
  1031. case V4L2_PIX_FMT_RGB565:
  1032. g = LIMIT_RGB(g_);
  1033. *f_odd++ = (0x1F & (LIMIT_RGB(b_) >> 3)) | (0xE0 & (g << 3));
  1034. *f_odd++ = (0x07 & ( g >> 5)) | (0xF8 & LIMIT_RGB(r_));
  1035. break;
  1036. case V4L2_PIX_FMT_RGB24:
  1037. *f_odd++ = LIMIT_RGB(b_);
  1038. *f_odd++ = LIMIT_RGB(g_);
  1039. *f_odd++ = LIMIT_RGB(r_);
  1040. break;
  1041. case V4L2_PIX_FMT_RGB32:
  1042. *f_odd++ = LIMIT_RGB(b_);
  1043. *f_odd++ = LIMIT_RGB(g_);
  1044. *f_odd++ = LIMIT_RGB(r_);
  1045. f_odd++;
  1046. break;
  1047. case V4L2_PIX_FMT_RGB555:
  1048. g = LIMIT_RGB(g_);
  1049. *f_odd++ = (0x1F & (LIMIT_RGB(b_) >> 3)) | (0xE0 & (g << 2));
  1050. *f_odd++ = (0x03 & ( g >> 6)) |
  1051. (0x7C & (LIMIT_RGB(r_) >> 1));
  1052. break;
  1053. }
  1054. }
  1055. clipmask_odd_index += clipmask_add;
  1056. f_odd += stretch_bytes;
  1057. }
  1058. scratch_rm_old(usbvision,y_step[block % y_step_size] * sub_block_size);
  1059. scratch_inc_extra_ptr(&y_ptr, y_step[(block + 2 * block_split) % y_step_size]
  1060. * sub_block_size);
  1061. scratch_inc_extra_ptr(&u_ptr, uv_step[block % uv_step_size]
  1062. * sub_block_size);
  1063. scratch_inc_extra_ptr(&v_ptr, uv_step[(block + 2 * block_split) % uv_step_size]
  1064. * sub_block_size);
  1065. }
  1066. scratch_rm_old(usbvision, pixel_per_line * 3 / 2
  1067. + block_split * sub_block_size);
  1068. frame->curline += 2 * usbvision->stretch_height;
  1069. *pcopylen += frame->v4l2_linesize * 2 * usbvision->stretch_height;
  1070. if (frame->curline >= frame->frmheight)
  1071. return ParseState_NextFrame;
  1072. else
  1073. return ParseState_Continue;
  1074. }
  1075. /*
  1076. * usbvision_parse_data()
  1077. *
  1078. * Generic routine to parse the scratch buffer. It employs either
  1079. * usbvision_find_header() or usbvision_parse_lines() to do most
  1080. * of work.
  1081. *
  1082. */
  1083. static void usbvision_parse_data(struct usb_usbvision *usbvision)
  1084. {
  1085. struct usbvision_frame *frame;
  1086. enum ParseState newstate;
  1087. long copylen = 0;
  1088. unsigned long lock_flags;
  1089. frame = usbvision->curFrame;
  1090. PDEBUG(DBG_PARSE, "parsing len=%d\n", scratch_len(usbvision));
  1091. while (1) {
  1092. newstate = ParseState_Out;
  1093. if (scratch_len(usbvision)) {
  1094. if (frame->scanstate == ScanState_Scanning) {
  1095. newstate = usbvision_find_header(usbvision);
  1096. }
  1097. else if (frame->scanstate == ScanState_Lines) {
  1098. if (usbvision->isocMode == ISOC_MODE_YUV420) {
  1099. newstate = usbvision_parse_lines_420(usbvision, &copylen);
  1100. }
  1101. else if (usbvision->isocMode == ISOC_MODE_YUV422) {
  1102. newstate = usbvision_parse_lines_422(usbvision, &copylen);
  1103. }
  1104. else if (usbvision->isocMode == ISOC_MODE_COMPRESS) {
  1105. newstate = usbvision_parse_compress(usbvision, &copylen);
  1106. }
  1107. }
  1108. }
  1109. if (newstate == ParseState_Continue) {
  1110. continue;
  1111. }
  1112. else if ((newstate == ParseState_NextFrame) || (newstate == ParseState_Out)) {
  1113. break;
  1114. }
  1115. else {
  1116. return; /* ParseState_EndParse */
  1117. }
  1118. }
  1119. if (newstate == ParseState_NextFrame) {
  1120. frame->grabstate = FrameState_Done;
  1121. do_gettimeofday(&(frame->timestamp));
  1122. frame->sequence = usbvision->frame_num;
  1123. spin_lock_irqsave(&usbvision->queue_lock, lock_flags);
  1124. list_move_tail(&(frame->frame), &usbvision->outqueue);
  1125. usbvision->curFrame = NULL;
  1126. spin_unlock_irqrestore(&usbvision->queue_lock, lock_flags);
  1127. usbvision->frame_num++;
  1128. /* This will cause the process to request another frame. */
  1129. if (waitqueue_active(&usbvision->wait_frame)) {
  1130. PDEBUG(DBG_PARSE, "Wake up !");
  1131. wake_up_interruptible(&usbvision->wait_frame);
  1132. }
  1133. }
  1134. else
  1135. frame->grabstate = FrameState_Grabbing;
  1136. /* Update the frame's uncompressed length. */
  1137. frame->scanlength += copylen;
  1138. }
  1139. /*
  1140. * Make all of the blocks of data contiguous
  1141. */
  1142. static int usbvision_compress_isochronous(struct usb_usbvision *usbvision,
  1143. struct urb *urb)
  1144. {
  1145. unsigned char *packet_data;
  1146. int i, totlen = 0;
  1147. for (i = 0; i < urb->number_of_packets; i++) {
  1148. int packet_len = urb->iso_frame_desc[i].actual_length;
  1149. int packet_stat = urb->iso_frame_desc[i].status;
  1150. packet_data = urb->transfer_buffer + urb->iso_frame_desc[i].offset;
  1151. /* Detect and ignore errored packets */
  1152. if (packet_stat) { // packet_stat != 0 ?????????????
  1153. PDEBUG(DBG_ISOC, "data error: [%d] len=%d, status=%X", i, packet_len, packet_stat);
  1154. usbvision->isocErrCount++;
  1155. continue;
  1156. }
  1157. /* Detect and ignore empty packets */
  1158. if (packet_len < 0) {
  1159. PDEBUG(DBG_ISOC, "error packet [%d]", i);
  1160. usbvision->isocSkipCount++;
  1161. continue;
  1162. }
  1163. else if (packet_len == 0) { /* Frame end ????? */
  1164. PDEBUG(DBG_ISOC, "null packet [%d]", i);
  1165. usbvision->isocstate=IsocState_NoFrame;
  1166. usbvision->isocSkipCount++;
  1167. continue;
  1168. }
  1169. else if (packet_len > usbvision->isocPacketSize) {
  1170. PDEBUG(DBG_ISOC, "packet[%d] > isocPacketSize", i);
  1171. usbvision->isocSkipCount++;
  1172. continue;
  1173. }
  1174. PDEBUG(DBG_ISOC, "packet ok [%d] len=%d", i, packet_len);
  1175. if (usbvision->isocstate==IsocState_NoFrame) { //new frame begins
  1176. usbvision->isocstate=IsocState_InFrame;
  1177. scratch_mark_header(usbvision);
  1178. usbvision_measure_bandwidth(usbvision);
  1179. PDEBUG(DBG_ISOC, "packet with header");
  1180. }
  1181. /*
  1182. * If usbvision continues to feed us with data but there is no
  1183. * consumption (if, for example, V4L client fell asleep) we
  1184. * may overflow the buffer. We have to move old data over to
  1185. * free room for new data. This is bad for old data. If we
  1186. * just drop new data then it's bad for new data... choose
  1187. * your favorite evil here.
  1188. */
  1189. if (scratch_free(usbvision) < packet_len) {
  1190. usbvision->scratch_ovf_count++;
  1191. PDEBUG(DBG_ISOC, "scratch buf overflow! scr_len: %d, n: %d",
  1192. scratch_len(usbvision), packet_len);
  1193. scratch_rm_old(usbvision, packet_len - scratch_free(usbvision));
  1194. }
  1195. /* Now we know that there is enough room in scratch buffer */
  1196. scratch_put(usbvision, packet_data, packet_len);
  1197. totlen += packet_len;
  1198. usbvision->isocDataCount += packet_len;
  1199. usbvision->isocPacketCount++;
  1200. }
  1201. #if ENABLE_HEXDUMP
  1202. if (totlen > 0) {
  1203. static int foo = 0;
  1204. if (foo < 1) {
  1205. printk(KERN_DEBUG "+%d.\n", usbvision->scratchlen);
  1206. usbvision_hexdump(data0, (totlen > 64) ? 64 : totlen);
  1207. ++foo;
  1208. }
  1209. }
  1210. #endif
  1211. return totlen;
  1212. }
  1213. static void usbvision_isocIrq(struct urb *urb)
  1214. {
  1215. int errCode = 0;
  1216. int len;
  1217. struct usb_usbvision *usbvision = urb->context;
  1218. int i;
  1219. unsigned long startTime = jiffies;
  1220. struct usbvision_frame **f;
  1221. /* We don't want to do anything if we are about to be removed! */
  1222. if (!USBVISION_IS_OPERATIONAL(usbvision))
  1223. return;
  1224. f = &usbvision->curFrame;
  1225. /* Manage streaming interruption */
  1226. if (usbvision->streaming == Stream_Interrupt) {
  1227. usbvision->streaming = Stream_Idle;
  1228. if ((*f)) {
  1229. (*f)->grabstate = FrameState_Ready;
  1230. (*f)->scanstate = ScanState_Scanning;
  1231. }
  1232. PDEBUG(DBG_IRQ, "stream interrupted");
  1233. wake_up_interruptible(&usbvision->wait_stream);
  1234. }
  1235. /* Copy the data received into our scratch buffer */
  1236. len = usbvision_compress_isochronous(usbvision, urb);
  1237. usbvision->isocUrbCount++;
  1238. usbvision->urb_length = len;
  1239. if (usbvision->streaming == Stream_On) {
  1240. /* If we collected enough data let's parse! */
  1241. if (scratch_len(usbvision) > USBVISION_HEADER_LENGTH) { /* 12 == header_length */
  1242. /*If we don't have a frame we're current working on, complain */
  1243. if(!list_empty(&(usbvision->inqueue))) {
  1244. if (!(*f)) {
  1245. (*f) = list_entry(usbvision->inqueue.next,struct usbvision_frame, frame);
  1246. }
  1247. usbvision_parse_data(usbvision);
  1248. }
  1249. else {
  1250. PDEBUG(DBG_IRQ, "received data, but no one needs it");
  1251. scratch_reset(usbvision);
  1252. }
  1253. }
  1254. }
  1255. else {
  1256. PDEBUG(DBG_IRQ, "received data, but no one needs it");
  1257. scratch_reset(usbvision);
  1258. }
  1259. usbvision->timeInIrq += jiffies - startTime;
  1260. for (i = 0; i < USBVISION_URB_FRAMES; i++) {
  1261. urb->iso_frame_desc[i].status = 0;
  1262. urb->iso_frame_desc[i].actual_length = 0;
  1263. }
  1264. urb->status = 0;
  1265. urb->dev = usbvision->dev;
  1266. errCode = usb_submit_urb (urb, GFP_ATOMIC);
  1267. /* Disable this warning. By design of the driver. */
  1268. // if(errCode) {
  1269. // err("%s: usb_submit_urb failed: error %d", __FUNCTION__, errCode);
  1270. // }
  1271. return;
  1272. }
  1273. /*************************************/
  1274. /* Low level usbvision access functions */
  1275. /*************************************/
  1276. /*
  1277. * usbvision_read_reg()
  1278. *
  1279. * return < 0 -> Error
  1280. * >= 0 -> Data
  1281. */
  1282. int usbvision_read_reg(struct usb_usbvision *usbvision, unsigned char reg)
  1283. {
  1284. int errCode = 0;
  1285. unsigned char buffer[1];
  1286. if (!USBVISION_IS_OPERATIONAL(usbvision))
  1287. return -1;
  1288. errCode = usb_control_msg(usbvision->dev, usb_rcvctrlpipe(usbvision->dev, 1),
  1289. USBVISION_OP_CODE,
  1290. USB_DIR_IN | USB_TYPE_VENDOR | USB_RECIP_ENDPOINT,
  1291. 0, (__u16) reg, buffer, 1, HZ);
  1292. if (errCode < 0) {
  1293. err("%s: failed: error %d", __FUNCTION__, errCode);
  1294. return errCode;
  1295. }
  1296. return buffer[0];
  1297. }
  1298. /*
  1299. * usbvision_write_reg()
  1300. *
  1301. * return 1 -> Reg written
  1302. * 0 -> usbvision is not yet ready
  1303. * -1 -> Something went wrong
  1304. */
  1305. int usbvision_write_reg(struct usb_usbvision *usbvision, unsigned char reg,
  1306. unsigned char value)
  1307. {
  1308. int errCode = 0;
  1309. if (!USBVISION_IS_OPERATIONAL(usbvision))
  1310. return 0;
  1311. errCode = usb_control_msg(usbvision->dev, usb_sndctrlpipe(usbvision->dev, 1),
  1312. USBVISION_OP_CODE,
  1313. USB_DIR_OUT | USB_TYPE_VENDOR |
  1314. USB_RECIP_ENDPOINT, 0, (__u16) reg, &value, 1, HZ);
  1315. if (errCode < 0) {
  1316. err("%s: failed: error %d", __FUNCTION__, errCode);
  1317. }
  1318. return errCode;
  1319. }
  1320. static void usbvision_ctrlUrb_complete(struct urb *urb)
  1321. {
  1322. struct usb_usbvision *usbvision = (struct usb_usbvision *)urb->context;
  1323. PDEBUG(DBG_IRQ, "");
  1324. usbvision->ctrlUrbBusy = 0;
  1325. if (waitqueue_active(&usbvision->ctrlUrb_wq)) {
  1326. wake_up_interruptible(&usbvision->ctrlUrb_wq);
  1327. }
  1328. }
  1329. static int usbvision_write_reg_irq(struct usb_usbvision *usbvision,int address,
  1330. unsigned char *data, int len)
  1331. {
  1332. int errCode = 0;
  1333. PDEBUG(DBG_IRQ, "");
  1334. if (len > 8) {
  1335. return -EFAULT;
  1336. }
  1337. // down(&usbvision->ctrlUrbLock);
  1338. if (usbvision->ctrlUrbBusy) {
  1339. // up(&usbvision->ctrlUrbLock);
  1340. return -EBUSY;
  1341. }
  1342. usbvision->ctrlUrbBusy = 1;
  1343. // up(&usbvision->ctrlUrbLock);
  1344. usbvision->ctrlUrbSetup.bRequestType = USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_ENDPOINT;
  1345. usbvision->ctrlUrbSetup.bRequest = USBVISION_OP_CODE;
  1346. usbvision->ctrlUrbSetup.wValue = 0;
  1347. usbvision->ctrlUrbSetup.wIndex = cpu_to_le16(address);
  1348. usbvision->ctrlUrbSetup.wLength = cpu_to_le16(len);
  1349. usb_fill_control_urb (usbvision->ctrlUrb, usbvision->dev,
  1350. usb_sndctrlpipe(usbvision->dev, 1),
  1351. (unsigned char *)&usbvision->ctrlUrbSetup,
  1352. (void *)usbvision->ctrlUrbBuffer, len,
  1353. usbvision_ctrlUrb_complete,
  1354. (void *)usbvision);
  1355. memcpy(usbvision->ctrlUrbBuffer, data, len);
  1356. errCode = usb_submit_urb(usbvision->ctrlUrb, GFP_ATOMIC);
  1357. if (errCode < 0) {
  1358. // error in usb_submit_urb()
  1359. usbvision->ctrlUrbBusy = 0;
  1360. }
  1361. PDEBUG(DBG_IRQ, "submit %d byte: error %d", len, errCode);
  1362. return errCode;
  1363. }
  1364. static int usbvision_init_compression(struct usb_usbvision *usbvision)
  1365. {
  1366. int errCode = 0;
  1367. usbvision->lastIsocFrameNum = -1;
  1368. usbvision->isocDataCount = 0;
  1369. usbvision->isocPacketCount = 0;
  1370. usbvision->isocSkipCount = 0;
  1371. usbvision->comprLevel = 50;
  1372. usbvision->lastComprLevel = -1;
  1373. usbvision->isocUrbCount = 0;
  1374. usbvision->requestIntra = 1;
  1375. usbvision->isocMeasureBandwidthCount = 0;
  1376. return errCode;
  1377. }
  1378. /* this function measures the used bandwidth since last call
  1379. * return: 0 : no error
  1380. * sets usedBandwidth to 1-100 : 1-100% of full bandwidth resp. to isocPacketSize
  1381. */
  1382. static int usbvision_measure_bandwidth (struct usb_usbvision *usbvision)
  1383. {
  1384. int errCode = 0;
  1385. if (usbvision->isocMeasureBandwidthCount < 2) { // this gives an average bandwidth of 3 frames
  1386. usbvision->isocMeasureBandwidthCount++;
  1387. return errCode;
  1388. }
  1389. if ((usbvision->isocPacketSize > 0) && (usbvision->isocPacketCount > 0)) {
  1390. usbvision->usedBandwidth = usbvision->isocDataCount /
  1391. (usbvision->isocPacketCount + usbvision->isocSkipCount) *
  1392. 100 / usbvision->isocPacketSize;
  1393. }
  1394. usbvision->isocMeasureBandwidthCount = 0;
  1395. usbvision->isocDataCount = 0;
  1396. usbvision->isocPacketCount = 0;
  1397. usbvision->isocSkipCount = 0;
  1398. return errCode;
  1399. }
  1400. static int usbvision_adjust_compression (struct usb_usbvision *usbvision)
  1401. {
  1402. int errCode = 0;
  1403. unsigned char buffer[6];
  1404. PDEBUG(DBG_IRQ, "");
  1405. if ((adjustCompression) && (usbvision->usedBandwidth > 0)) {
  1406. usbvision->comprLevel += (usbvision->usedBandwidth - 90) / 2;
  1407. RESTRICT_TO_RANGE(usbvision->comprLevel, 0, 100);
  1408. if (usbvision->comprLevel != usbvision->lastComprLevel) {
  1409. int distorsion;
  1410. if (usbvision->bridgeType == BRIDGE_NT1004 || usbvision->bridgeType == BRIDGE_NT1005) {
  1411. buffer[0] = (unsigned char)(4 + 16 * usbvision->comprLevel / 100); // PCM Threshold 1
  1412. buffer[1] = (unsigned char)(4 + 8 * usbvision->comprLevel / 100); // PCM Threshold 2
  1413. distorsion = 7 + 248 * usbvision->comprLevel / 100;
  1414. buffer[2] = (unsigned char)(distorsion & 0xFF); // Average distorsion Threshold (inter)
  1415. buffer[3] = (unsigned char)(distorsion & 0xFF); // Average distorsion Threshold (intra)
  1416. distorsion = 1 + 42 * usbvision->comprLevel / 100;
  1417. buffer[4] = (unsigned char)(distorsion & 0xFF); // Maximum distorsion Threshold (inter)
  1418. buffer[5] = (unsigned char)(distorsion & 0xFF); // Maximum distorsion Threshold (intra)
  1419. }
  1420. else { //BRIDGE_NT1003
  1421. buffer[0] = (unsigned char)(4 + 16 * usbvision->comprLevel / 100); // PCM threshold 1
  1422. buffer[1] = (unsigned char)(4 + 8 * usbvision->comprLevel / 100); // PCM threshold 2
  1423. distorsion = 2 + 253 * usbvision->comprLevel / 100;
  1424. buffer[2] = (unsigned char)(distorsion & 0xFF); // distorsion threshold bit0-7
  1425. buffer[3] = 0; //(unsigned char)((distorsion >> 8) & 0x0F); // distorsion threshold bit 8-11
  1426. distorsion = 0 + 43 * usbvision->comprLevel / 100;
  1427. buffer[4] = (unsigned char)(distorsion & 0xFF); // maximum distorsion bit0-7
  1428. buffer[5] = 0; //(unsigned char)((distorsion >> 8) & 0x01); // maximum distorsion bit 8
  1429. }
  1430. errCode = usbvision_write_reg_irq(usbvision, USBVISION_PCM_THR1, buffer, 6);
  1431. if (errCode == 0){
  1432. PDEBUG(DBG_IRQ, "new compr params %#02x %#02x %#02x %#02x %#02x %#02x", buffer[0],
  1433. buffer[1], buffer[2], buffer[3], buffer[4], buffer[5]);
  1434. usbvision->lastComprLevel = usbvision->comprLevel;
  1435. }
  1436. }
  1437. }
  1438. return errCode;
  1439. }
  1440. static int usbvision_request_intra (struct usb_usbvision *usbvision)
  1441. {
  1442. int errCode = 0;
  1443. unsigned char buffer[1];
  1444. PDEBUG(DBG_IRQ, "");
  1445. usbvision->requestIntra = 1;
  1446. buffer[0] = 1;
  1447. usbvision_write_reg_irq(usbvision, USBVISION_FORCE_INTRA, buffer, 1);
  1448. return errCode;
  1449. }
  1450. static int usbvision_unrequest_intra (struct usb_usbvision *usbvision)
  1451. {
  1452. int errCode = 0;
  1453. unsigned char buffer[1];
  1454. PDEBUG(DBG_IRQ, "");
  1455. usbvision->requestIntra = 0;
  1456. buffer[0] = 0;
  1457. usbvision_write_reg_irq(usbvision, USBVISION_FORCE_INTRA, buffer, 1);
  1458. return errCode;
  1459. }
  1460. /*******************************
  1461. * usbvision utility functions
  1462. *******************************/
  1463. int usbvision_power_off(struct usb_usbvision *usbvision)
  1464. {
  1465. int errCode = 0;
  1466. PDEBUG(DBG_FUNC, "");
  1467. errCode = usbvision_write_reg(usbvision, USBVISION_PWR_REG, USBVISION_SSPND_EN);
  1468. if (errCode == 1) {
  1469. usbvision->power = 0;
  1470. }
  1471. PDEBUG(DBG_FUNC, "%s: errCode %d", (errCode!=1)?"ERROR":"power is off", errCode);
  1472. return errCode;
  1473. }
  1474. /*
  1475. * usbvision_set_video_format()
  1476. *
  1477. */
  1478. static int usbvision_set_video_format(struct usb_usbvision *usbvision, int format)
  1479. {
  1480. static const char proc[] = "usbvision_set_video_format";
  1481. int rc;
  1482. unsigned char value[2];
  1483. if (!USBVISION_IS_OPERATIONAL(usbvision))
  1484. return 0;
  1485. PDEBUG(DBG_FUNC, "isocMode %#02x", format);
  1486. if ((format != ISOC_MODE_YUV422)
  1487. && (format != ISOC_MODE_YUV420)
  1488. && (format != ISOC_MODE_COMPRESS)) {
  1489. printk(KERN_ERR "usbvision: unknown video format %02x, using default YUV420",
  1490. format);
  1491. format = ISOC_MODE_YUV420;
  1492. }
  1493. value[0] = 0x0A; //TODO: See the effect of the filter
  1494. value[1] = format;
  1495. rc = usb_control_msg(usbvision->dev, usb_sndctrlpipe(usbvision->dev, 1),
  1496. USBVISION_OP_CODE,
  1497. USB_DIR_OUT | USB_TYPE_VENDOR |
  1498. USB_RECIP_ENDPOINT, 0,
  1499. (__u16) USBVISION_FILT_CONT, value, 2, HZ);
  1500. if (rc < 0) {
  1501. printk(KERN_ERR "%s: ERROR=%d. USBVISION stopped - "
  1502. "reconnect or reload driver.\n", proc, rc);
  1503. }
  1504. usbvision->isocMode = format;
  1505. return rc;
  1506. }
  1507. /*
  1508. * usbvision_set_output()
  1509. *
  1510. */
  1511. int usbvision_set_output(struct usb_usbvision *usbvision, int width,
  1512. int height)
  1513. {
  1514. int errCode = 0;
  1515. int UsbWidth, UsbHeight;
  1516. unsigned int frameRate=0, frameDrop=0;
  1517. unsigned char value[4];
  1518. if (!USBVISION_IS_OPERATIONAL(usbvision)) {
  1519. return 0;
  1520. }
  1521. if (width > MAX_USB_WIDTH) {
  1522. UsbWidth = width / 2;
  1523. usbvision->stretch_width = 2;
  1524. }
  1525. else {
  1526. UsbWidth = width;
  1527. usbvision->stretch_width = 1;
  1528. }
  1529. if (height > MAX_USB_HEIGHT) {
  1530. UsbHeight = height / 2;
  1531. usbvision->stretch_height = 2;
  1532. }
  1533. else {
  1534. UsbHeight = height;
  1535. usbvision->stretch_height = 1;
  1536. }
  1537. RESTRICT_TO_RANGE(UsbWidth, MIN_FRAME_WIDTH, MAX_USB_WIDTH);
  1538. UsbWidth &= ~(MIN_FRAME_WIDTH-1);
  1539. RESTRICT_TO_RANGE(UsbHeight, MIN_FRAME_HEIGHT, MAX_USB_HEIGHT);
  1540. UsbHeight &= ~(1);
  1541. PDEBUG(DBG_FUNC, "usb %dx%d; screen %dx%d; stretch %dx%d",
  1542. UsbWidth, UsbHeight, width, height,
  1543. usbvision->stretch_width, usbvision->stretch_height);
  1544. /* I'll not rewrite the same values */
  1545. if ((UsbWidth != usbvision->curwidth) || (UsbHeight != usbvision->curheight)) {
  1546. value[0] = UsbWidth & 0xff; //LSB
  1547. value[1] = (UsbWidth >> 8) & 0x03; //MSB
  1548. value[2] = UsbHeight & 0xff; //LSB
  1549. value[3] = (UsbHeight >> 8) & 0x03; //MSB
  1550. errCode = usb_control_msg(usbvision->dev, usb_sndctrlpipe(usbvision->dev, 1),
  1551. USBVISION_OP_CODE,
  1552. USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_ENDPOINT,
  1553. 0, (__u16) USBVISION_LXSIZE_O, value, 4, HZ);
  1554. if (errCode < 0) {
  1555. err("%s failed: error %d", __FUNCTION__, errCode);
  1556. return errCode;
  1557. }
  1558. usbvision->curwidth = usbvision->stretch_width * UsbWidth;
  1559. usbvision->curheight = usbvision->stretch_height * UsbHeight;
  1560. }
  1561. if (usbvision->isocMode == ISOC_MODE_YUV422) {
  1562. frameRate = (usbvision->isocPacketSize * 1000) / (UsbWidth * UsbHeight * 2);
  1563. }
  1564. else if (usbvision->isocMode == ISOC_MODE_YUV420) {
  1565. frameRate = (usbvision->isocPacketSize * 1000) / ((UsbWidth * UsbHeight * 12) / 8);
  1566. }
  1567. else {
  1568. frameRate = FRAMERATE_MAX;
  1569. }
  1570. if (usbvision->tvnorm->id & V4L2_STD_625_50) {
  1571. frameDrop = frameRate * 32 / 25 - 1;
  1572. }
  1573. else if (usbvision->tvnorm->id & V4L2_STD_525_60) {
  1574. frameDrop = frameRate * 32 / 30 - 1;
  1575. }
  1576. RESTRICT_TO_RANGE(frameDrop, FRAMERATE_MIN, FRAMERATE_MAX);
  1577. PDEBUG(DBG_FUNC, "frameRate %d fps, frameDrop %d", frameRate, frameDrop);
  1578. frameDrop = FRAMERATE_MAX; // We can allow the maximum here, because dropping is controlled
  1579. /* frameDrop = 7; => framePhase = 1, 5, 9, 13, 17, 21, 25, 0, 4, 8, ...
  1580. => frameSkip = 4;
  1581. => frameRate = (7 + 1) * 25 / 32 = 200 / 32 = 6.25;
  1582. frameDrop = 9; => framePhase = 1, 5, 8, 11, 14, 17, 21, 24, 27, 1, 4, 8, ...
  1583. => frameSkip = 4, 3, 3, 3, 3, 4, 3, 3, 3, 3, 4, ...
  1584. => frameRate = (9 + 1) * 25 / 32 = 250 / 32 = 7.8125;
  1585. */
  1586. errCode = usbvision_write_reg(usbvision, USBVISION_FRM_RATE, frameDrop);
  1587. return errCode;
  1588. }
  1589. /*
  1590. * usbvision_frames_alloc
  1591. * allocate the required frames
  1592. */
  1593. int usbvision_frames_alloc(struct usb_usbvision *usbvision, int number_of_frames)
  1594. {
  1595. int i;
  1596. /*needs to be page aligned cause the buffers can be mapped individually! */
  1597. usbvision->max_frame_size = PAGE_ALIGN(usbvision->curwidth *
  1598. usbvision->curheight *
  1599. usbvision->palette.bytes_per_pixel);
  1600. /* Try to do my best to allocate the frames the user want in the remaining memory */
  1601. usbvision->num_frames = number_of_frames;
  1602. while (usbvision->num_frames > 0) {
  1603. usbvision->fbuf_size = usbvision->num_frames * usbvision->max_frame_size;
  1604. if((usbvision->fbuf = usbvision_rvmalloc(usbvision->fbuf_size))) {
  1605. break;
  1606. }
  1607. usbvision->num_frames--;
  1608. }
  1609. spin_lock_init(&usbvision->queue_lock);
  1610. init_waitqueue_head(&usbvision->wait_frame);
  1611. init_waitqueue_head(&usbvision->wait_stream);
  1612. /* Allocate all buffers */
  1613. for (i = 0; i < usbvision->num_frames; i++) {
  1614. usbvision->frame[i].index = i;
  1615. usbvision->frame[i].grabstate = FrameState_Unused;
  1616. usbvision->frame[i].data = usbvision->fbuf +
  1617. i * usbvision->max_frame_size;
  1618. /*
  1619. * Set default sizes for read operation.
  1620. */
  1621. usbvision->stretch_width = 1;
  1622. usbvision->stretch_height = 1;
  1623. usbvision->frame[i].width = usbvision->curwidth;
  1624. usbvision->frame[i].height = usbvision->curheight;
  1625. usbvision->frame[i].bytes_read = 0;
  1626. }
  1627. PDEBUG(DBG_FUNC, "allocated %d frames (%d bytes per frame)",usbvision->num_frames,usbvision->max_frame_size);
  1628. return usbvision->num_frames;
  1629. }
  1630. /*
  1631. * usbvision_frames_free
  1632. * frees memory allocated for the frames
  1633. */
  1634. void usbvision_frames_free(struct usb_usbvision *usbvision)
  1635. {
  1636. /* Have to free all that memory */
  1637. PDEBUG(DBG_FUNC, "free %d frames",usbvision->num_frames);
  1638. if (usbvision->fbuf != NULL) {
  1639. usbvision_rvfree(usbvision->fbuf, usbvision->fbuf_size);
  1640. usbvision->fbuf = NULL;
  1641. usbvision->num_frames = 0;
  1642. }
  1643. }
  1644. /*
  1645. * usbvision_empty_framequeues()
  1646. * prepare queues for incoming and outgoing frames
  1647. */
  1648. void usbvision_empty_framequeues(struct usb_usbvision *usbvision)
  1649. {
  1650. u32 i;
  1651. INIT_LIST_HEAD(&(usbvision->inqueue));
  1652. INIT_LIST_HEAD(&(usbvision->outqueue));
  1653. for (i = 0; i < USBVISION_NUMFRAMES; i++) {
  1654. usbvision->frame[i].grabstate = FrameState_Unused;
  1655. usbvision->frame[i].bytes_read = 0;
  1656. }
  1657. }
  1658. /*
  1659. * usbvision_stream_interrupt()
  1660. * stops streaming
  1661. */
  1662. int usbvision_stream_interrupt(struct usb_usbvision *usbvision)
  1663. {
  1664. int ret = 0;
  1665. /* stop reading from the device */
  1666. usbvision->streaming = Stream_Interrupt;
  1667. ret = wait_event_timeout(usbvision->wait_stream,
  1668. (usbvision->streaming == Stream_Idle),
  1669. msecs_to_jiffies(USBVISION_NUMSBUF*USBVISION_URB_FRAMES));
  1670. return ret;
  1671. }
  1672. /*
  1673. * usbvision_set_compress_params()
  1674. *
  1675. */
  1676. static int usbvision_set_compress_params(struct usb_usbvision *usbvision)
  1677. {
  1678. static const char proc[] = "usbvision_set_compresion_params: ";
  1679. int rc;
  1680. unsigned char value[6];
  1681. value[0] = 0x0F; // Intra-Compression cycle
  1682. value[1] = 0x01; // Reg.45 one line per strip
  1683. value[2] = 0x00; // Reg.46 Force intra mode on all new frames
  1684. value[3] = 0x00; // Reg.47 FORCE_UP <- 0 normal operation (not force)
  1685. value[4] = 0xA2; // Reg.48 BUF_THR I'm not sure if this does something in not compressed mode.
  1686. value[5] = 0x00; // Reg.49 DVI_YUV This has nothing to do with compression
  1687. //catched values for NT1004
  1688. // value[0] = 0xFF; // Never apply intra mode automatically
  1689. // value[1] = 0xF1; // Use full frame height for virtual strip width; One line per strip
  1690. // value[2] = 0x01; // Force intra mode on all new frames
  1691. // value[3] = 0x00; // Strip size 400 Bytes; do not force up
  1692. // value[4] = 0xA2; //
  1693. if (!USBVISION_IS_OPERATIONAL(usbvision))
  1694. return 0;
  1695. rc = usb_control_msg(usbvision->dev, usb_sndctrlpipe(usbvision->dev, 1),
  1696. USBVISION_OP_CODE,
  1697. USB_DIR_OUT | USB_TYPE_VENDOR |
  1698. USB_RECIP_ENDPOINT, 0,
  1699. (__u16) USBVISION_INTRA_CYC, value, 5, HZ);
  1700. if (rc < 0) {
  1701. printk(KERN_ERR "%sERROR=%d. USBVISION stopped - "
  1702. "reconnect or reload driver.\n", proc, rc);
  1703. return rc;
  1704. }
  1705. if (usbvision->bridgeType == BRIDGE_NT1004) {
  1706. value[0] = 20; // PCM Threshold 1
  1707. value[1] = 12; // PCM Threshold 2
  1708. value[2] = 255; // Distorsion Threshold inter
  1709. value[3] = 255; // Distorsion Threshold intra
  1710. value[4] = 43; // Max Distorsion inter
  1711. value[5] = 43; // Max Distorsion intra
  1712. }
  1713. else {
  1714. value[0] = 20; // PCM Threshold 1
  1715. value[1] = 12; // PCM Threshold 2
  1716. value[2] = 255; // Distorsion Threshold d7-d0
  1717. value[3] = 0; // Distorsion Threshold d11-d8
  1718. value[4] = 43; // Max Distorsion d7-d0
  1719. value[5] = 0; // Max Distorsion d8
  1720. }
  1721. if (!USBVISION_IS_OPERATIONAL(usbvision))
  1722. return 0;
  1723. rc = usb_control_msg(usbvision->dev, usb_sndctrlpipe(usbvision->dev, 1),
  1724. USBVISION_OP_CODE,
  1725. USB_DIR_OUT | USB_TYPE_VENDOR |
  1726. USB_RECIP_ENDPOINT, 0,
  1727. (__u16) USBVISION_PCM_THR1, value, 6, HZ);
  1728. if (rc < 0) {
  1729. printk(KERN_ERR "%sERROR=%d. USBVISION stopped - "
  1730. "reconnect or reload driver.\n", proc, rc);
  1731. return rc;
  1732. }
  1733. return rc;
  1734. }
  1735. /*
  1736. * usbvision_set_input()
  1737. *
  1738. * Set the input (saa711x, ...) size x y and other misc input params
  1739. * I've no idea if this parameters are right
  1740. *
  1741. */
  1742. int usbvision_set_input(struct usb_usbvision *usbvision)
  1743. {
  1744. static const char proc[] = "usbvision_set_input: ";
  1745. int rc;
  1746. unsigned char value[8];
  1747. unsigned char dvi_yuv_value;
  1748. if (!USBVISION_IS_OPERATIONAL(usbvision))
  1749. return 0;
  1750. /* Set input format expected from decoder*/
  1751. if (usbvision_device_data[usbvision->DevModel].Vin_Reg1_override) {
  1752. value[0] = usbvision_device_data[usbvision->DevModel].Vin_Reg1;
  1753. } else if(usbvision_device_data[usbvision->DevModel].Codec == CODEC_SAA7113) {
  1754. /* SAA7113 uses 8 bit output */
  1755. value[0] = USBVISION_8_422_SYNC;
  1756. } else {
  1757. /* I'm sure only about d2-d0 [010] 16 bit 4:2:2 usin sync pulses
  1758. * as that is how saa7111 is configured */
  1759. value[0] = USBVISION_16_422_SYNC;
  1760. /* | USBVISION_VSNC_POL | USBVISION_VCLK_POL);*/
  1761. }
  1762. rc = usbvision_write_reg(usbvision, USBVISION_VIN_REG1, value[0]);
  1763. if (rc < 0) {
  1764. printk(KERN_ERR "%sERROR=%d. USBVISION stopped - "
  1765. "reconnect or reload driver.\n", proc, rc);
  1766. return rc;
  1767. }
  1768. if (usbvision->tvnorm->id & V4L2_STD_PAL) {
  1769. value[0] = 0xC0;
  1770. value[1] = 0x02; //0x02C0 -> 704 Input video line length
  1771. value[2] = 0x20;
  1772. value[3] = 0x01; //0x0120 -> 288 Input video n. of lines
  1773. value[4] = 0x60;
  1774. value[5] = 0x00; //0x0060 -> 96 Input video h offset
  1775. value[6] = 0x16;
  1776. value[7] = 0x00; //0x0016 -> 22 Input video v offset
  1777. } else if (usbvision->tvnorm->id & V4L2_STD_SECAM) {
  1778. value[0] = 0xC0;
  1779. value[1] = 0x02; //0x02C0 -> 704 Input video line length
  1780. value[2] = 0x20;
  1781. value[3] = 0x01; //0x0120 -> 288 Input video n. of lines
  1782. value[4] = 0x01;
  1783. value[5] = 0x00; //0x0001 -> 01 Input video h offset
  1784. value[6] = 0x01;
  1785. value[7] = 0x00; //0x0001 -> 01 Input video v offset
  1786. } else { /* V4L2_STD_NTSC */
  1787. value[0] = 0xD0;
  1788. value[1] = 0x02; //0x02D0 -> 720 Input video line length
  1789. value[2] = 0xF0;
  1790. value[3] = 0x00; //0x00F0 -> 240 Input video number of lines
  1791. value[4] = 0x50;
  1792. value[5] = 0x00; //0x0050 -> 80 Input video h offset
  1793. value[6] = 0x10;
  1794. value[7] = 0x00; //0x0010 -> 16 Input video v offset
  1795. }
  1796. if (usbvision_device_data[usbvision->DevModel].X_Offset >= 0) {
  1797. value[4]=usbvision_device_data[usbvision->DevModel].X_Offset & 0xff;
  1798. value[5]=(usbvision_device_data[usbvision->DevModel].X_Offset & 0x0300) >> 8;
  1799. }
  1800. if (usbvision_device_data[usbvision->DevModel].Y_Offset >= 0) {
  1801. value[6]=usbvision_device_data[usbvision->DevModel].Y_Offset & 0xff;
  1802. value[7]=(usbvision_device_data[usbvision->DevModel].Y_Offset & 0x0300) >> 8;
  1803. }
  1804. rc = usb_control_msg(usbvision->dev, usb_sndctrlpipe(usbvision->dev, 1),
  1805. USBVISION_OP_CODE, /* USBVISION specific code */
  1806. USB_DIR_OUT | USB_TYPE_VENDOR | USB_RECIP_ENDPOINT, 0,
  1807. (__u16) USBVISION_LXSIZE_I, value, 8, HZ);
  1808. if (rc < 0) {
  1809. printk(KERN_ERR "%sERROR=%d. USBVISION stopped - "
  1810. "reconnect or reload driver.\n", proc, rc);
  1811. return rc;
  1812. }
  1813. dvi_yuv_value = 0x00; /* U comes after V, Ya comes after U/V, Yb comes after Yb */
  1814. if(usbvision_device_data[usbvision->DevModel].Dvi_yuv_override){
  1815. dvi_yuv_value = usbvision_device_data[usbvision->DevModel].Dvi_yuv;
  1816. }
  1817. else if(usbvision_device_data[usbvision->DevModel].Codec == CODEC_SAA7113) {
  1818. /* This changes as the fine sync control changes. Further investigation necessary */
  1819. dvi_yuv_value = 0x06;
  1820. }
  1821. return (usbvision_write_reg(usbvision, USBVISION_DVI_YUV, dvi_yuv_value));
  1822. }
  1823. /*
  1824. * usbvision_set_dram_settings()
  1825. *
  1826. * Set the buffer address needed by the usbvision dram to operate
  1827. * This values has been taken with usbsnoop.
  1828. *
  1829. */
  1830. static int usbvision_set_dram_settings(struct usb_usbvision *usbvision)
  1831. {
  1832. int rc;
  1833. unsigned char value[8];
  1834. if (usbvision->isocMode == ISOC_MODE_COMPRESS) {
  1835. value[0] = 0x42;
  1836. value[1] = 0x71;
  1837. value[2] = 0xff;
  1838. value[3] = 0x00;
  1839. value[4] = 0x98;
  1840. value[5] = 0xe0;
  1841. value[6] = 0x71;
  1842. value[7] = 0xff;
  1843. // UR: 0x0E200-0x3FFFF = 204288 Words (1 Word = 2 Byte)
  1844. // FDL: 0x00000-0x0E099 = 57498 Words
  1845. // VDW: 0x0E3FF-0x3FFFF
  1846. }
  1847. else {
  1848. value[0] = 0x42;
  1849. value[1] = 0x00;
  1850. value[2] = 0xff;
  1851. value[3] = 0x00;
  1852. value[4] = 0x00;
  1853. value[5] = 0x00;
  1854. value[6] = 0x00;
  1855. value[7] = 0xff;
  1856. }
  1857. /* These are the values of the address of the video buffer,
  1858. * they have to be loaded into the USBVISION_DRM_PRM1-8
  1859. *
  1860. * Start address of video output buffer for read: drm_prm1-2 -> 0x00000
  1861. * End address of video output buffer for read: drm_prm1-3 -> 0x1ffff
  1862. * Start address of video frame delay buffer: drm_prm1-4 -> 0x20000
  1863. * Only used in compressed mode
  1864. * End address of video frame delay buffer: drm_prm1-5-6 -> 0x3ffff
  1865. * Only used in compressed mode
  1866. * Start address of video output buffer for write: drm_prm1-7 -> 0x00000
  1867. * End address of video output buffer for write: drm_prm1-8 -> 0x1ffff
  1868. */
  1869. if (!USBVISION_IS_OPERATIONAL(usbvision))
  1870. return 0;
  1871. rc = usb_control_msg(usbvision->dev, usb_sndctrlpipe(usbvision->dev, 1),
  1872. USBVISION_OP_CODE, /* USBVISION specific code */
  1873. USB_DIR_OUT | USB_TYPE_VENDOR |
  1874. USB_RECIP_ENDPOINT, 0,
  1875. (__u16) USBVISION_DRM_PRM1, value, 8, HZ);
  1876. if (rc < 0) {
  1877. err("%sERROR=%d", __FUNCTION__, rc);
  1878. return rc;
  1879. }
  1880. /* Restart the video buffer logic */
  1881. if ((rc = usbvision_write_reg(usbvision, USBVISION_DRM_CONT, USBVISION_RES_UR |
  1882. USBVISION_RES_FDL | USBVISION_RES_VDW)) < 0)
  1883. return rc;
  1884. rc = usbvision_write_reg(usbvision, USBVISION_DRM_CONT, 0x00);
  1885. return rc;
  1886. }
  1887. /*
  1888. * ()
  1889. *
  1890. * Power on the device, enables suspend-resume logic
  1891. * & reset the isoc End-Point
  1892. *
  1893. */
  1894. int usbvision_power_on(struct usb_usbvision *usbvision)
  1895. {
  1896. int errCode = 0;
  1897. PDEBUG(DBG_FUNC, "");
  1898. usbvision_write_reg(usbvision, USBVISION_PWR_REG, USBVISION_SSPND_EN);
  1899. usbvision_write_reg(usbvision, USBVISION_PWR_REG,
  1900. USBVISION_SSPND_EN | USBVISION_RES2);
  1901. usbvision_write_reg(usbvision, USBVISION_PWR_REG,
  1902. USBVISION_SSPND_EN | USBVISION_PWR_VID);
  1903. errCode = usbvision_write_reg(usbvision, USBVISION_PWR_REG,
  1904. USBVISION_SSPND_EN | USBVISION_PWR_VID | USBVISION_RES2);
  1905. if (errCode == 1) {
  1906. usbvision->power = 1;
  1907. }
  1908. PDEBUG(DBG_FUNC, "%s: errCode %d", (errCode<0)?"ERROR":"power is on", errCode);
  1909. return errCode;
  1910. }
  1911. /*
  1912. * usbvision timer stuff
  1913. */
  1914. // to call usbvision_power_off from task queue
  1915. static void call_usbvision_power_off(struct work_struct *work)
  1916. {
  1917. struct usb_usbvision *usbvision = container_of(work, struct usb_usbvision, powerOffWork);
  1918. PDEBUG(DBG_FUNC, "");
  1919. down_interruptible(&usbvision->lock);
  1920. if(usbvision->user == 0) {
  1921. usbvision_i2c_unregister(usbvision);
  1922. usbvision_power_off(usbvision);
  1923. usbvision->initialized = 0;
  1924. }
  1925. up(&usbvision->lock);
  1926. }
  1927. static void usbvision_powerOffTimer(unsigned long data)
  1928. {
  1929. struct usb_usbvision *usbvision = (void *) data;
  1930. PDEBUG(DBG_FUNC, "");
  1931. del_timer(&usbvision->powerOffTimer);
  1932. INIT_WORK(&usbvision->powerOffWork, call_usbvision_power_off);
  1933. (void) schedule_work(&usbvision->powerOffWork);
  1934. }
  1935. void usbvision_init_powerOffTimer(struct usb_usbvision *usbvision)
  1936. {
  1937. init_timer(&usbvision->powerOffTimer);
  1938. usbvision->powerOffTimer.data = (long) usbvision;
  1939. usbvision->powerOffTimer.function = usbvision_powerOffTimer;
  1940. }
  1941. void usbvision_set_powerOffTimer(struct usb_usbvision *usbvision)
  1942. {
  1943. mod_timer(&usbvision->powerOffTimer, jiffies + USBVISION_POWEROFF_TIME);
  1944. }
  1945. void usbvision_reset_powerOffTimer(struct usb_usbvision *usbvision)
  1946. {
  1947. if (timer_pending(&usbvision->powerOffTimer)) {
  1948. del_timer(&usbvision->powerOffTimer);
  1949. }
  1950. }
  1951. /*
  1952. * usbvision_begin_streaming()
  1953. * Sure you have to put bit 7 to 0, if not incoming frames are droped, but no
  1954. * idea about the rest
  1955. */
  1956. int usbvision_begin_streaming(struct usb_usbvision *usbvision)
  1957. {
  1958. int errCode = 0;
  1959. if (usbvision->isocMode == ISOC_MODE_COMPRESS) {
  1960. usbvision_init_compression(usbvision);
  1961. }
  1962. errCode = usbvision_write_reg(usbvision, USBVISION_VIN_REG2, USBVISION_NOHVALID |
  1963. usbvision->Vin_Reg2_Preset);
  1964. return errCode;
  1965. }
  1966. /*
  1967. * usbvision_restart_isoc()
  1968. * Not sure yet if touching here PWR_REG make loose the config
  1969. */
  1970. int usbvision_restart_isoc(struct usb_usbvision *usbvision)
  1971. {
  1972. int ret;
  1973. if (
  1974. (ret =
  1975. usbvision_write_reg(usbvision, USBVISION_PWR_REG,
  1976. USBVISION_SSPND_EN | USBVISION_PWR_VID)) < 0)
  1977. return ret;
  1978. if (
  1979. (ret =
  1980. usbvision_write_reg(usbvision, USBVISION_PWR_REG,
  1981. USBVISION_SSPND_EN | USBVISION_PWR_VID |
  1982. USBVISION_RES2)) < 0)
  1983. return ret;
  1984. if (
  1985. (ret =
  1986. usbvision_write_reg(usbvision, USBVISION_VIN_REG2,
  1987. USBVISION_KEEP_BLANK | USBVISION_NOHVALID |
  1988. usbvision->Vin_Reg2_Preset)) < 0) return ret;
  1989. /* TODO: schedule timeout */
  1990. while ((usbvision_read_reg(usbvision, USBVISION_STATUS_REG) & 0x01) != 1);
  1991. return 0;
  1992. }
  1993. int usbvision_audio_off(struct usb_usbvision *usbvision)
  1994. {
  1995. if (usbvision_write_reg(usbvision, USBVISION_IOPIN_REG, USBVISION_AUDIO_MUTE) < 0) {
  1996. printk(KERN_ERR "usbvision_audio_off: can't wirte reg\n");
  1997. return -1;
  1998. }
  1999. usbvision->AudioMute = 0;
  2000. usbvision->AudioChannel = USBVISION_AUDIO_MUTE;
  2001. return 0;
  2002. }
  2003. int usbvision_set_audio(struct usb_usbvision *usbvision, int AudioChannel)
  2004. {
  2005. if (!usbvision->AudioMute) {
  2006. if (usbvision_write_reg(usbvision, USBVISION_IOPIN_REG, AudioChannel) < 0) {
  2007. printk(KERN_ERR "usbvision_set_audio: can't write iopin register for audio switching\n");
  2008. return -1;
  2009. }
  2010. }
  2011. usbvision->AudioChannel = AudioChannel;
  2012. return 0;
  2013. }
  2014. int usbvision_setup(struct usb_usbvision *usbvision,int format)
  2015. {
  2016. usbvision_set_video_format(usbvision, format);
  2017. usbvision_set_dram_settings(usbvision);
  2018. usbvision_set_compress_params(usbvision);
  2019. usbvision_set_input(usbvision);
  2020. usbvision_set_output(usbvision, MAX_USB_WIDTH, MAX_USB_HEIGHT);
  2021. usbvision_restart_isoc(usbvision);
  2022. /* cosas del PCM */
  2023. return USBVISION_IS_OPERATIONAL(usbvision);
  2024. }
  2025. int usbvision_set_alternate(struct usb_usbvision *dev)
  2026. {
  2027. int errCode, prev_alt = dev->ifaceAlt;
  2028. int i;
  2029. dev->ifaceAlt=0;
  2030. for(i=0;i< dev->num_alt; i++)
  2031. if(dev->alt_max_pkt_size[i]>dev->alt_max_pkt_size[dev->ifaceAlt])
  2032. dev->ifaceAlt=i;
  2033. if (dev->ifaceAlt != prev_alt) {
  2034. dev->isocPacketSize = dev->alt_max_pkt_size[dev->ifaceAlt];
  2035. PDEBUG(DBG_FUNC,"setting alternate %d with wMaxPacketSize=%u", dev->ifaceAlt,dev->isocPacketSize);
  2036. errCode = usb_set_interface(dev->dev, dev->iface, dev->ifaceAlt);
  2037. if (errCode < 0) {
  2038. err ("cannot change alternate number to %d (error=%i)",
  2039. dev->ifaceAlt, errCode);
  2040. return errCode;
  2041. }
  2042. }
  2043. PDEBUG(DBG_ISOC, "ISO Packet Length:%d", dev->isocPacketSize);
  2044. return 0;
  2045. }
  2046. /*
  2047. * usbvision_init_isoc()
  2048. *
  2049. */
  2050. int usbvision_init_isoc(struct usb_usbvision *usbvision)
  2051. {
  2052. struct usb_device *dev = usbvision->dev;
  2053. int bufIdx, errCode, regValue;
  2054. const int sb_size = USBVISION_URB_FRAMES * USBVISION_MAX_ISOC_PACKET_SIZE;
  2055. if (!USBVISION_IS_OPERATIONAL(usbvision))
  2056. return -EFAULT;
  2057. usbvision->curFrame = NULL;
  2058. scratch_reset(usbvision);
  2059. /* Alternate interface 1 is is the biggest frame size */
  2060. errCode = usbvision_set_alternate(usbvision);
  2061. if (errCode < 0) {
  2062. usbvision->last_error = errCode;
  2063. return -EBUSY;
  2064. }
  2065. regValue = (16 - usbvision_read_reg(usbvision, USBVISION_ALTER_REG)) & 0x0F;
  2066. usbvision->usb_bandwidth = regValue >> 1;
  2067. PDEBUG(DBG_ISOC, "USB Bandwidth Usage: %dMbit/Sec", usbvision->usb_bandwidth);
  2068. /* We double buffer the Iso lists */
  2069. for (bufIdx = 0; bufIdx < USBVISION_NUMSBUF; bufIdx++) {
  2070. int j, k;
  2071. struct urb *urb;
  2072. urb = usb_alloc_urb(USBVISION_URB_FRAMES, GFP_KERNEL);
  2073. if (urb == NULL) {
  2074. err("%s: usb_alloc_urb() failed", __FUNCTION__);
  2075. return -ENOMEM;
  2076. }
  2077. usbvision->sbuf[bufIdx].urb = urb;
  2078. usbvision->sbuf[bufIdx].data = usb_buffer_alloc(usbvision->dev, sb_size, GFP_KERNEL,&urb->transfer_dma);
  2079. urb->dev = dev;
  2080. urb->context = usbvision;
  2081. urb->pipe = usb_rcvisocpipe(dev, usbvision->video_endp);
  2082. urb->transfer_flags = URB_ISO_ASAP;
  2083. urb->interval = 1;
  2084. urb->transfer_buffer = usbvision->sbuf[bufIdx].data;
  2085. urb->complete = usbvision_isocIrq;
  2086. urb->number_of_packets = USBVISION_URB_FRAMES;
  2087. urb->transfer_buffer_length =
  2088. usbvision->isocPacketSize * USBVISION_URB_FRAMES;
  2089. for (j = k = 0; j < USBVISION_URB_FRAMES; j++,
  2090. k += usbvision->isocPacketSize) {
  2091. urb->iso_frame_desc[j].offset = k;
  2092. urb->iso_frame_desc[j].length = usbvision->isocPacketSize;
  2093. }
  2094. }
  2095. /* Submit all URBs */
  2096. for (bufIdx = 0; bufIdx < USBVISION_NUMSBUF; bufIdx++) {
  2097. errCode = usb_submit_urb(usbvision->sbuf[bufIdx].urb, GFP_KERNEL);
  2098. if (errCode) {
  2099. err("%s: usb_submit_urb(%d) failed: error %d", __FUNCTION__, bufIdx, errCode);
  2100. }
  2101. }
  2102. usbvision->streaming = Stream_Idle;
  2103. PDEBUG(DBG_ISOC, "%s: streaming=1 usbvision->video_endp=$%02x", __FUNCTION__, usbvision->video_endp);
  2104. return 0;
  2105. }
  2106. /*
  2107. * usbvision_stop_isoc()
  2108. *
  2109. * This procedure stops streaming and deallocates URBs. Then it
  2110. * activates zero-bandwidth alt. setting of the video interface.
  2111. *
  2112. */
  2113. void usbvision_stop_isoc(struct usb_usbvision *usbvision)
  2114. {
  2115. int bufIdx, errCode, regValue;
  2116. const int sb_size = USBVISION_URB_FRAMES * USBVISION_MAX_ISOC_PACKET_SIZE;
  2117. if ((usbvision->streaming == Stream_Off) || (usbvision->dev == NULL))
  2118. return;
  2119. /* Unschedule all of the iso td's */
  2120. for (bufIdx = 0; bufIdx < USBVISION_NUMSBUF; bufIdx++) {
  2121. usb_kill_urb(usbvision->sbuf[bufIdx].urb);
  2122. if (usbvision->sbuf[bufIdx].data){
  2123. usb_buffer_free(usbvision->dev,
  2124. sb_size,
  2125. usbvision->sbuf[bufIdx].data,
  2126. usbvision->sbuf[bufIdx].urb->transfer_dma);
  2127. }
  2128. usb_free_urb(usbvision->sbuf[bufIdx].urb);
  2129. usbvision->sbuf[bufIdx].urb = NULL;
  2130. }
  2131. PDEBUG(DBG_ISOC, "%s: streaming=Stream_Off\n", __FUNCTION__);
  2132. usbvision->streaming = Stream_Off;
  2133. if (!usbvision->remove_pending) {
  2134. /* Set packet size to 0 */
  2135. usbvision->ifaceAlt=0;
  2136. errCode = usb_set_interface(usbvision->dev, usbvision->iface,
  2137. usbvision->ifaceAlt);
  2138. if (errCode < 0) {
  2139. err("%s: usb_set_interface() failed: error %d", __FUNCTION__, errCode);
  2140. usbvision->last_error = errCode;
  2141. }
  2142. regValue = (16 - usbvision_read_reg(usbvision, USBVISION_ALTER_REG)) & 0x0F;
  2143. usbvision->isocPacketSize = (regValue == 0) ? 0 : (regValue * 64) - 1;
  2144. PDEBUG(DBG_ISOC, "ISO Packet Length:%d", usbvision->isocPacketSize);
  2145. usbvision->usb_bandwidth = regValue >> 1;
  2146. PDEBUG(DBG_ISOC, "USB Bandwidth Usage: %dMbit/Sec", usbvision->usb_bandwidth);
  2147. }
  2148. }
  2149. int usbvision_muxsel(struct usb_usbvision *usbvision, int channel)
  2150. {
  2151. int mode[4];
  2152. int audio[]= {1, 0, 0, 0};
  2153. struct v4l2_routing route;
  2154. //channel 0 is TV with audiochannel 1 (tuner mono)
  2155. //channel 1 is Composite with audio channel 0 (line in)
  2156. //channel 2 is S-Video with audio channel 0 (line in)
  2157. //channel 3 is additional video inputs to the device with audio channel 0 (line in)
  2158. RESTRICT_TO_RANGE(channel, 0, usbvision->video_inputs);
  2159. usbvision->ctl_input = channel;
  2160. route.input = SAA7115_COMPOSITE1;
  2161. route.output = 0;
  2162. call_i2c_clients(usbvision, VIDIOC_INT_S_VIDEO_ROUTING,&route);
  2163. call_i2c_clients(usbvision, VIDIOC_S_INPUT, &usbvision->ctl_input);
  2164. // set the new channel
  2165. // Regular USB TV Tuners -> channel: 0 = Television, 1 = Composite, 2 = S-Video
  2166. // Four video input devices -> channel: 0 = Chan White, 1 = Chan Green, 2 = Chan Yellow, 3 = Chan Red
  2167. switch (usbvision_device_data[usbvision->DevModel].Codec) {
  2168. case CODEC_SAA7113:
  2169. if (SwitchSVideoInput) { // To handle problems with S-Video Input for some devices. Use SwitchSVideoInput parameter when loading the module.
  2170. mode[2] = 1;
  2171. }
  2172. else {
  2173. mode[2] = 7;
  2174. }
  2175. if (usbvision_device_data[usbvision->DevModel].VideoChannels == 4) {
  2176. mode[0] = 0; mode[1] = 2; mode[3] = 3; // Special for four input devices
  2177. }
  2178. else {
  2179. mode[0] = 0; mode[1] = 2; //modes for regular saa7113 devices
  2180. }
  2181. break;
  2182. case CODEC_SAA7111:
  2183. mode[0] = 0; mode[1] = 1; mode[2] = 7; //modes for saa7111
  2184. break;
  2185. default:
  2186. mode[0] = 0; mode[1] = 1; mode[2] = 7; //default modes
  2187. }
  2188. route.input = mode[channel];
  2189. call_i2c_clients(usbvision, VIDIOC_INT_S_VIDEO_ROUTING,&route);
  2190. usbvision->channel = channel;
  2191. usbvision_set_audio(usbvision, audio[channel]);
  2192. return 0;
  2193. }
  2194. /*
  2195. * Overrides for Emacs so that we follow Linus's tabbing style.
  2196. * ---------------------------------------------------------------------------
  2197. * Local variables:
  2198. * c-basic-offset: 8
  2199. * End:
  2200. */