V4L/DVB (9327): v4l: use video_device.num instead of minor in video%d
[deliverable/linux.git] / drivers / media / video / usbvideo / usbvideo.c
CommitLineData
1da177e4
LT
1/*
2 * This program is free software; you can redistribute it and/or modify
3 * it under the terms of the GNU General Public License as published by
4 * the Free Software Foundation; either version 2, or (at your option)
5 * any later version.
6 *
7 * This program is distributed in the hope that it will be useful,
8 * but WITHOUT ANY WARRANTY; without even the implied warranty of
9 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
10 * GNU General Public License for more details.
11 *
12 * You should have received a copy of the GNU General Public License
13 * along with this program; if not, write to the Free Software
14 * Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
15 */
16
17#include <linux/kernel.h>
18#include <linux/sched.h>
19#include <linux/list.h>
20#include <linux/slab.h>
21#include <linux/module.h>
22#include <linux/mm.h>
1da177e4
LT
23#include <linux/vmalloc.h>
24#include <linux/init.h>
25#include <linux/spinlock.h>
26
27#include <asm/io.h>
28
29#include "usbvideo.h"
30
31#if defined(MAP_NR)
32#define virt_to_page(v) MAP_NR(v) /* Kernels 2.2.x */
33#endif
34
35static int video_nr = -1;
36module_param(video_nr, int, 0);
37
38/*
39 * Local prototypes.
40 */
41static void usbvideo_Disconnect(struct usb_interface *intf);
42static void usbvideo_CameraRelease(struct uvd *uvd);
43
44static int usbvideo_v4l_ioctl(struct inode *inode, struct file *file,
45 unsigned int cmd, unsigned long arg);
46static int usbvideo_v4l_mmap(struct file *file, struct vm_area_struct *vma);
47static int usbvideo_v4l_open(struct inode *inode, struct file *file);
48static ssize_t usbvideo_v4l_read(struct file *file, char __user *buf,
49 size_t count, loff_t *ppos);
50static int usbvideo_v4l_close(struct inode *inode, struct file *file);
51
52static int usbvideo_StartDataPump(struct uvd *uvd);
53static void usbvideo_StopDataPump(struct uvd *uvd);
54static int usbvideo_GetFrame(struct uvd *uvd, int frameNum);
55static int usbvideo_NewFrame(struct uvd *uvd, int framenum);
56static void usbvideo_SoftwareContrastAdjustment(struct uvd *uvd,
57 struct usbvideo_frame *frame);
58
59/*******************************/
60/* Memory management functions */
61/*******************************/
62static void *usbvideo_rvmalloc(unsigned long size)
63{
64 void *mem;
65 unsigned long adr;
66
67 size = PAGE_ALIGN(size);
68 mem = vmalloc_32(size);
69 if (!mem)
70 return NULL;
71
72 memset(mem, 0, size); /* Clear the ram out, no junk to the user */
73 adr = (unsigned long) mem;
74 while (size > 0) {
75 SetPageReserved(vmalloc_to_page((void *)adr));
76 adr += PAGE_SIZE;
77 size -= PAGE_SIZE;
78 }
79
80 return mem;
81}
82
83static void usbvideo_rvfree(void *mem, unsigned long size)
84{
85 unsigned long adr;
86
87 if (!mem)
88 return;
89
90 adr = (unsigned long) mem;
91 while ((long) size > 0) {
92 ClearPageReserved(vmalloc_to_page((void *)adr));
93 adr += PAGE_SIZE;
94 size -= PAGE_SIZE;
95 }
96 vfree(mem);
97}
98
99static void RingQueue_Initialize(struct RingQueue *rq)
100{
101 assert(rq != NULL);
102 init_waitqueue_head(&rq->wqh);
103}
104
105static void RingQueue_Allocate(struct RingQueue *rq, int rqLen)
106{
107 /* Make sure the requested size is a power of 2 and
108 round up if necessary. This allows index wrapping
109 using masks rather than modulo */
110
111 int i = 1;
112 assert(rq != NULL);
113 assert(rqLen > 0);
114
115 while(rqLen >> i)
116 i++;
117 if(rqLen != 1 << (i-1))
118 rqLen = 1 << i;
119
120 rq->length = rqLen;
121 rq->ri = rq->wi = 0;
122 rq->queue = usbvideo_rvmalloc(rq->length);
123 assert(rq->queue != NULL);
124}
125
126static int RingQueue_IsAllocated(const struct RingQueue *rq)
127{
128 if (rq == NULL)
129 return 0;
130 return (rq->queue != NULL) && (rq->length > 0);
131}
132
133static void RingQueue_Free(struct RingQueue *rq)
134{
135 assert(rq != NULL);
136 if (RingQueue_IsAllocated(rq)) {
137 usbvideo_rvfree(rq->queue, rq->length);
138 rq->queue = NULL;
139 rq->length = 0;
140 }
141}
142
143int RingQueue_Dequeue(struct RingQueue *rq, unsigned char *dst, int len)
144{
145 int rql, toread;
146
147 assert(rq != NULL);
148 assert(dst != NULL);
149
150 rql = RingQueue_GetLength(rq);
151 if(!rql)
152 return 0;
153
154 /* Clip requested length to available data */
155 if(len > rql)
156 len = rql;
157
158 toread = len;
159 if(rq->ri > rq->wi) {
160 /* Read data from tail */
161 int read = (toread < (rq->length - rq->ri)) ? toread : rq->length - rq->ri;
162 memcpy(dst, rq->queue + rq->ri, read);
163 toread -= read;
164 dst += read;
165 rq->ri = (rq->ri + read) & (rq->length-1);
166 }
167 if(toread) {
168 /* Read data from head */
169 memcpy(dst, rq->queue + rq->ri, toread);
170 rq->ri = (rq->ri + toread) & (rq->length-1);
171 }
172 return len;
173}
174
175EXPORT_SYMBOL(RingQueue_Dequeue);
176
177int RingQueue_Enqueue(struct RingQueue *rq, const unsigned char *cdata, int n)
178{
179 int enqueued = 0;
180
181 assert(rq != NULL);
182 assert(cdata != NULL);
183 assert(rq->length > 0);
184 while (n > 0) {
185 int m, q_avail;
186
187 /* Calculate the largest chunk that fits the tail of the ring */
188 q_avail = rq->length - rq->wi;
189 if (q_avail <= 0) {
190 rq->wi = 0;
191 q_avail = rq->length;
192 }
193 m = n;
194 assert(q_avail > 0);
195 if (m > q_avail)
196 m = q_avail;
197
198 memcpy(rq->queue + rq->wi, cdata, m);
199 RING_QUEUE_ADVANCE_INDEX(rq, wi, m);
200 cdata += m;
201 enqueued += m;
202 n -= m;
203 }
204 return enqueued;
205}
206
207EXPORT_SYMBOL(RingQueue_Enqueue);
208
209static void RingQueue_InterruptibleSleepOn(struct RingQueue *rq)
210{
211 assert(rq != NULL);
212 interruptible_sleep_on(&rq->wqh);
213}
214
215void RingQueue_WakeUpInterruptible(struct RingQueue *rq)
216{
217 assert(rq != NULL);
218 if (waitqueue_active(&rq->wqh))
219 wake_up_interruptible(&rq->wqh);
220}
221
222EXPORT_SYMBOL(RingQueue_WakeUpInterruptible);
223
224void RingQueue_Flush(struct RingQueue *rq)
225{
226 assert(rq != NULL);
227 rq->ri = 0;
228 rq->wi = 0;
229}
230
231EXPORT_SYMBOL(RingQueue_Flush);
232
233
234/*
235 * usbvideo_VideosizeToString()
236 *
237 * This procedure converts given videosize value to readable string.
238 *
239 * History:
240 * 07-Aug-2000 Created.
241 * 19-Oct-2000 Reworked for usbvideo module.
242 */
243static void usbvideo_VideosizeToString(char *buf, int bufLen, videosize_t vs)
244{
245 char tmp[40];
246 int n;
247
248 n = 1 + sprintf(tmp, "%ldx%ld", VIDEOSIZE_X(vs), VIDEOSIZE_Y(vs));
249 assert(n < sizeof(tmp));
250 if ((buf == NULL) || (bufLen < n))
251 err("usbvideo_VideosizeToString: buffer is too small.");
252 else
253 memmove(buf, tmp, n);
254}
255
256/*
257 * usbvideo_OverlayChar()
258 *
259 * History:
260 * 01-Feb-2000 Created.
261 */
262static void usbvideo_OverlayChar(struct uvd *uvd, struct usbvideo_frame *frame,
263 int x, int y, int ch)
264{
265 static const unsigned short digits[16] = {
266 0xF6DE, /* 0 */
267 0x2492, /* 1 */
268 0xE7CE, /* 2 */
269 0xE79E, /* 3 */
270 0xB792, /* 4 */
271 0xF39E, /* 5 */
272 0xF3DE, /* 6 */
273 0xF492, /* 7 */
274 0xF7DE, /* 8 */
275 0xF79E, /* 9 */
276 0x77DA, /* a */
277 0xD75C, /* b */
278 0xF24E, /* c */
279 0xD6DC, /* d */
280 0xF34E, /* e */
281 0xF348 /* f */
282 };
283 unsigned short digit;
284 int ix, iy;
285
286 if ((uvd == NULL) || (frame == NULL))
287 return;
288
289 if (ch >= '0' && ch <= '9')
290 ch -= '0';
291 else if (ch >= 'A' && ch <= 'F')
292 ch = 10 + (ch - 'A');
293 else if (ch >= 'a' && ch <= 'f')
294 ch = 10 + (ch - 'a');
295 else
296 return;
297 digit = digits[ch];
298
299 for (iy=0; iy < 5; iy++) {
300 for (ix=0; ix < 3; ix++) {
301 if (digit & 0x8000) {
302 if (uvd->paletteBits & (1L << VIDEO_PALETTE_RGB24)) {
303/* TODO */ RGB24_PUTPIXEL(frame, x+ix, y+iy, 0xFF, 0xFF, 0xFF);
304 }
305 }
306 digit = digit << 1;
307 }
308 }
309}
310
311/*
312 * usbvideo_OverlayString()
313 *
314 * History:
315 * 01-Feb-2000 Created.
316 */
317static void usbvideo_OverlayString(struct uvd *uvd, struct usbvideo_frame *frame,
318 int x, int y, const char *str)
319{
320 while (*str) {
321 usbvideo_OverlayChar(uvd, frame, x, y, *str);
322 str++;
323 x += 4; /* 3 pixels character + 1 space */
324 }
325}
326
327/*
328 * usbvideo_OverlayStats()
329 *
330 * Overlays important debugging information.
331 *
332 * History:
333 * 01-Feb-2000 Created.
334 */
335static void usbvideo_OverlayStats(struct uvd *uvd, struct usbvideo_frame *frame)
336{
337 const int y_diff = 8;
338 char tmp[16];
339 int x = 10, y=10;
340 long i, j, barLength;
341 const int qi_x1 = 60, qi_y1 = 10;
342 const int qi_x2 = VIDEOSIZE_X(frame->request) - 10, qi_h = 10;
343
344 /* Call the user callback, see if we may proceed after that */
345 if (VALID_CALLBACK(uvd, overlayHook)) {
346 if (GET_CALLBACK(uvd, overlayHook)(uvd, frame) < 0)
347 return;
348 }
349
350 /*
351 * We draw a (mostly) hollow rectangle with qi_xxx coordinates.
352 * Left edge symbolizes the queue index 0; right edge symbolizes
353 * the full capacity of the queue.
354 */
355 barLength = qi_x2 - qi_x1 - 2;
356 if ((barLength > 10) && (uvd->paletteBits & (1L << VIDEO_PALETTE_RGB24))) {
357/* TODO */ long u_lo, u_hi, q_used;
358 long m_ri, m_wi, m_lo, m_hi;
359
360 /*
361 * Determine fill zones (used areas of the queue):
362 * 0 xxxxxxx u_lo ...... uvd->dp.ri xxxxxxxx u_hi ..... uvd->dp.length
363 *
364 * if u_lo < 0 then there is no first filler.
365 */
366
367 q_used = RingQueue_GetLength(&uvd->dp);
368 if ((uvd->dp.ri + q_used) >= uvd->dp.length) {
369 u_hi = uvd->dp.length;
370 u_lo = (q_used + uvd->dp.ri) & (uvd->dp.length-1);
371 } else {
372 u_hi = (q_used + uvd->dp.ri);
373 u_lo = -1;
374 }
375
376 /* Convert byte indices into screen units */
377 m_ri = qi_x1 + ((barLength * uvd->dp.ri) / uvd->dp.length);
378 m_wi = qi_x1 + ((barLength * uvd->dp.wi) / uvd->dp.length);
379 m_lo = (u_lo > 0) ? (qi_x1 + ((barLength * u_lo) / uvd->dp.length)) : -1;
380 m_hi = qi_x1 + ((barLength * u_hi) / uvd->dp.length);
381
382 for (j=qi_y1; j < (qi_y1 + qi_h); j++) {
383 for (i=qi_x1; i < qi_x2; i++) {
384 /* Draw border lines */
385 if ((j == qi_y1) || (j == (qi_y1 + qi_h - 1)) ||
386 (i == qi_x1) || (i == (qi_x2 - 1))) {
387 RGB24_PUTPIXEL(frame, i, j, 0xFF, 0xFF, 0xFF);
388 continue;
389 }
390 /* For all other points the Y coordinate does not matter */
391 if ((i >= m_ri) && (i <= (m_ri + 3))) {
392 RGB24_PUTPIXEL(frame, i, j, 0x00, 0xFF, 0x00);
393 } else if ((i >= m_wi) && (i <= (m_wi + 3))) {
394 RGB24_PUTPIXEL(frame, i, j, 0xFF, 0x00, 0x00);
395 } else if ((i < m_lo) || ((i > m_ri) && (i < m_hi)))
396 RGB24_PUTPIXEL(frame, i, j, 0x00, 0x00, 0xFF);
397 }
398 }
399 }
400
401 sprintf(tmp, "%8lx", uvd->stats.frame_num);
402 usbvideo_OverlayString(uvd, frame, x, y, tmp);
403 y += y_diff;
404
405 sprintf(tmp, "%8lx", uvd->stats.urb_count);
406 usbvideo_OverlayString(uvd, frame, x, y, tmp);
407 y += y_diff;
408
409 sprintf(tmp, "%8lx", uvd->stats.urb_length);
410 usbvideo_OverlayString(uvd, frame, x, y, tmp);
411 y += y_diff;
412
413 sprintf(tmp, "%8lx", uvd->stats.data_count);
414 usbvideo_OverlayString(uvd, frame, x, y, tmp);
415 y += y_diff;
416
417 sprintf(tmp, "%8lx", uvd->stats.header_count);
418 usbvideo_OverlayString(uvd, frame, x, y, tmp);
419 y += y_diff;
420
421 sprintf(tmp, "%8lx", uvd->stats.iso_skip_count);
422 usbvideo_OverlayString(uvd, frame, x, y, tmp);
423 y += y_diff;
424
425 sprintf(tmp, "%8lx", uvd->stats.iso_err_count);
426 usbvideo_OverlayString(uvd, frame, x, y, tmp);
427 y += y_diff;
428
429 sprintf(tmp, "%8x", uvd->vpic.colour);
430 usbvideo_OverlayString(uvd, frame, x, y, tmp);
431 y += y_diff;
432
433 sprintf(tmp, "%8x", uvd->vpic.hue);
434 usbvideo_OverlayString(uvd, frame, x, y, tmp);
435 y += y_diff;
436
437 sprintf(tmp, "%8x", uvd->vpic.brightness >> 8);
438 usbvideo_OverlayString(uvd, frame, x, y, tmp);
439 y += y_diff;
440
441 sprintf(tmp, "%8x", uvd->vpic.contrast >> 12);
442 usbvideo_OverlayString(uvd, frame, x, y, tmp);
443 y += y_diff;
444
445 sprintf(tmp, "%8d", uvd->vpic.whiteness >> 8);
446 usbvideo_OverlayString(uvd, frame, x, y, tmp);
447 y += y_diff;
448}
449
450/*
451 * usbvideo_ReportStatistics()
452 *
453 * This procedure prints packet and transfer statistics.
454 *
455 * History:
456 * 14-Jan-2000 Corrected default multiplier.
457 */
458static void usbvideo_ReportStatistics(const struct uvd *uvd)
459{
460 if ((uvd != NULL) && (uvd->stats.urb_count > 0)) {
461 unsigned long allPackets, badPackets, goodPackets, percent;
462 allPackets = uvd->stats.urb_count * CAMERA_URB_FRAMES;
463 badPackets = uvd->stats.iso_skip_count + uvd->stats.iso_err_count;
464 goodPackets = allPackets - badPackets;
465 /* Calculate percentage wisely, remember integer limits */
466 assert(allPackets != 0);
467 if (goodPackets < (((unsigned long)-1)/100))
468 percent = (100 * goodPackets) / allPackets;
469 else
470 percent = goodPackets / (allPackets / 100);
a482f327
GKH
471 dev_info(&uvd->dev->dev,
472 "Packet Statistics: Total=%lu. Empty=%lu. Usage=%lu%%\n",
473 allPackets, badPackets, percent);
1da177e4
LT
474 if (uvd->iso_packet_len > 0) {
475 unsigned long allBytes, xferBytes;
476 char multiplier = ' ';
477 allBytes = allPackets * uvd->iso_packet_len;
478 xferBytes = uvd->stats.data_count;
479 assert(allBytes != 0);
480 if (xferBytes < (((unsigned long)-1)/100))
481 percent = (100 * xferBytes) / allBytes;
482 else
483 percent = xferBytes / (allBytes / 100);
484 /* Scale xferBytes for easy reading */
485 if (xferBytes > 10*1024) {
486 xferBytes /= 1024;
487 multiplier = 'K';
488 if (xferBytes > 10*1024) {
489 xferBytes /= 1024;
490 multiplier = 'M';
491 if (xferBytes > 10*1024) {
492 xferBytes /= 1024;
493 multiplier = 'G';
494 if (xferBytes > 10*1024) {
495 xferBytes /= 1024;
496 multiplier = 'T';
497 }
498 }
499 }
500 }
a482f327
GKH
501 dev_info(&uvd->dev->dev,
502 "Transfer Statistics: Transferred=%lu%cB Usage=%lu%%\n",
503 xferBytes, multiplier, percent);
1da177e4
LT
504 }
505 }
506}
507
508/*
509 * usbvideo_TestPattern()
510 *
511 * Procedure forms a test pattern (yellow grid on blue background).
512 *
513 * Parameters:
514 * fullframe: if TRUE then entire frame is filled, otherwise the procedure
515 * continues from the current scanline.
516 * pmode 0: fill the frame with solid blue color (like on VCR or TV)
517 * 1: Draw a colored grid
518 *
519 * History:
520 * 01-Feb-2000 Created.
521 */
522void usbvideo_TestPattern(struct uvd *uvd, int fullframe, int pmode)
523{
524 struct usbvideo_frame *frame;
525 int num_cell = 0;
526 int scan_length = 0;
ff699e6b 527 static int num_pass;
1da177e4
LT
528
529 if (uvd == NULL) {
4126a8f5 530 err("%s: uvd == NULL", __func__);
1da177e4
LT
531 return;
532 }
533 if ((uvd->curframe < 0) || (uvd->curframe >= USBVIDEO_NUMFRAMES)) {
4126a8f5 534 err("%s: uvd->curframe=%d.", __func__, uvd->curframe);
1da177e4
LT
535 return;
536 }
537
538 /* Grab the current frame */
539 frame = &uvd->frame[uvd->curframe];
540
541 /* Optionally start at the beginning */
542 if (fullframe) {
543 frame->curline = 0;
544 frame->seqRead_Length = 0;
545 }
546#if 0
547 { /* For debugging purposes only */
548 char tmp[20];
549 usbvideo_VideosizeToString(tmp, sizeof(tmp), frame->request);
a482f327 550 dev_info(&uvd->dev->dev, "testpattern: frame=%s\n", tmp);
1da177e4
LT
551 }
552#endif
553 /* Form every scan line */
554 for (; frame->curline < VIDEOSIZE_Y(frame->request); frame->curline++) {
555 int i;
556 unsigned char *f = frame->data +
557 (VIDEOSIZE_X(frame->request) * V4L_BYTES_PER_PIXEL * frame->curline);
558 for (i=0; i < VIDEOSIZE_X(frame->request); i++) {
559 unsigned char cb=0x80;
560 unsigned char cg = 0;
561 unsigned char cr = 0;
562
563 if (pmode == 1) {
564 if (frame->curline % 32 == 0)
565 cb = 0, cg = cr = 0xFF;
566 else if (i % 32 == 0) {
567 if (frame->curline % 32 == 1)
568 num_cell++;
569 cb = 0, cg = cr = 0xFF;
570 } else {
571 cb = ((num_cell*7) + num_pass) & 0xFF;
572 cg = ((num_cell*5) + num_pass*2) & 0xFF;
573 cr = ((num_cell*3) + num_pass*3) & 0xFF;
574 }
575 } else {
576 /* Just the blue screen */
577 }
d56410e0 578
1da177e4
LT
579 *f++ = cb;
580 *f++ = cg;
581 *f++ = cr;
582 scan_length += 3;
583 }
584 }
585
586 frame->frameState = FrameState_Done;
587 frame->seqRead_Length += scan_length;
588 ++num_pass;
589
590 /* We do this unconditionally, regardless of FLAGS_OVERLAY_STATS */
591 usbvideo_OverlayStats(uvd, frame);
592}
593
594EXPORT_SYMBOL(usbvideo_TestPattern);
595
596
597#ifdef DEBUG
598/*
599 * usbvideo_HexDump()
600 *
601 * A debugging tool. Prints hex dumps.
602 *
603 * History:
604 * 29-Jul-2000 Added printing of offsets.
605 */
606void usbvideo_HexDump(const unsigned char *data, int len)
607{
608 const int bytes_per_line = 32;
609 char tmp[128]; /* 32*3 + 5 */
610 int i, k;
611
612 for (i=k=0; len > 0; i++, len--) {
613 if (i > 0 && ((i % bytes_per_line) == 0)) {
614 printk("%s\n", tmp);
615 k=0;
616 }
617 if ((i % bytes_per_line) == 0)
618 k += sprintf(&tmp[k], "%04x: ", i);
619 k += sprintf(&tmp[k], "%02x ", data[i]);
620 }
621 if (k > 0)
622 printk("%s\n", tmp);
623}
624
625EXPORT_SYMBOL(usbvideo_HexDump);
626
627#endif
628
629/* ******************************************************************** */
630
631/* XXX: this piece of crap really wants some error handling.. */
5332bdbe 632static int usbvideo_ClientIncModCount(struct uvd *uvd)
1da177e4
LT
633{
634 if (uvd == NULL) {
4126a8f5 635 err("%s: uvd == NULL", __func__);
5332bdbe 636 return -EINVAL;
1da177e4
LT
637 }
638 if (uvd->handle == NULL) {
4126a8f5 639 err("%s: uvd->handle == NULL", __func__);
5332bdbe 640 return -EINVAL;
1da177e4
LT
641 }
642 if (!try_module_get(uvd->handle->md_module)) {
4126a8f5 643 err("%s: try_module_get() == 0", __func__);
5332bdbe 644 return -ENODEV;
1da177e4 645 }
5332bdbe 646 return 0;
1da177e4
LT
647}
648
649static void usbvideo_ClientDecModCount(struct uvd *uvd)
650{
651 if (uvd == NULL) {
4126a8f5 652 err("%s: uvd == NULL", __func__);
1da177e4
LT
653 return;
654 }
655 if (uvd->handle == NULL) {
4126a8f5 656 err("%s: uvd->handle == NULL", __func__);
1da177e4
LT
657 return;
658 }
659 if (uvd->handle->md_module == NULL) {
4126a8f5 660 err("%s: uvd->handle->md_module == NULL", __func__);
1da177e4
LT
661 return;
662 }
663 module_put(uvd->handle->md_module);
664}
665
666int usbvideo_register(
667 struct usbvideo **pCams,
668 const int num_cams,
669 const int num_extra,
670 const char *driverName,
671 const struct usbvideo_cb *cbTbl,
672 struct module *md,
673 const struct usb_device_id *id_table)
674{
675 struct usbvideo *cams;
676 int i, base_size, result;
677
678 /* Check parameters for sanity */
679 if ((num_cams <= 0) || (pCams == NULL) || (cbTbl == NULL)) {
4126a8f5 680 err("%s: Illegal call", __func__);
1da177e4
LT
681 return -EINVAL;
682 }
683
684 /* Check registration callback - must be set! */
685 if (cbTbl->probe == NULL) {
4126a8f5 686 err("%s: probe() is required!", __func__);
1da177e4
LT
687 return -EINVAL;
688 }
689
690 base_size = num_cams * sizeof(struct uvd) + sizeof(struct usbvideo);
5cbded58 691 cams = kzalloc(base_size, GFP_KERNEL);
1da177e4
LT
692 if (cams == NULL) {
693 err("Failed to allocate %d. bytes for usbvideo struct", base_size);
694 return -ENOMEM;
695 }
696 dbg("%s: Allocated $%p (%d. bytes) for %d. cameras",
4126a8f5 697 __func__, cams, base_size, num_cams);
1da177e4
LT
698
699 /* Copy callbacks, apply defaults for those that are not set */
700 memmove(&cams->cb, cbTbl, sizeof(cams->cb));
701 if (cams->cb.getFrame == NULL)
702 cams->cb.getFrame = usbvideo_GetFrame;
703 if (cams->cb.disconnect == NULL)
704 cams->cb.disconnect = usbvideo_Disconnect;
705 if (cams->cb.startDataPump == NULL)
706 cams->cb.startDataPump = usbvideo_StartDataPump;
707 if (cams->cb.stopDataPump == NULL)
708 cams->cb.stopDataPump = usbvideo_StopDataPump;
709
710 cams->num_cameras = num_cams;
711 cams->cam = (struct uvd *) &cams[1];
712 cams->md_module = md;
4186ecf8 713 mutex_init(&cams->lock); /* to 1 == available */
1da177e4
LT
714
715 for (i = 0; i < num_cams; i++) {
716 struct uvd *up = &cams->cam[i];
717
718 up->handle = cams;
719
720 /* Allocate user_data separately because of kmalloc's limits */
721 if (num_extra > 0) {
722 up->user_size = num_cams * num_extra;
0e8eb0f0 723 up->user_data = kmalloc(up->user_size, GFP_KERNEL);
1da177e4
LT
724 if (up->user_data == NULL) {
725 err("%s: Failed to allocate user_data (%d. bytes)",
4126a8f5 726 __func__, up->user_size);
1da177e4
LT
727 while (i) {
728 up = &cams->cam[--i];
729 kfree(up->user_data);
730 }
731 kfree(cams);
732 return -ENOMEM;
733 }
734 dbg("%s: Allocated cams[%d].user_data=$%p (%d. bytes)",
4126a8f5 735 __func__, i, up->user_data, up->user_size);
1da177e4
LT
736 }
737 }
738
739 /*
740 * Register ourselves with USB stack.
741 */
742 strcpy(cams->drvName, (driverName != NULL) ? driverName : "Unknown");
743 cams->usbdrv.name = cams->drvName;
744 cams->usbdrv.probe = cams->cb.probe;
745 cams->usbdrv.disconnect = cams->cb.disconnect;
746 cams->usbdrv.id_table = id_table;
747
748 /*
749 * Update global handle to usbvideo. This is very important
750 * because probe() can be called before usb_register() returns.
751 * If the handle is not yet updated then the probe() will fail.
752 */
753 *pCams = cams;
754 result = usb_register(&cams->usbdrv);
755 if (result) {
756 for (i = 0; i < num_cams; i++) {
757 struct uvd *up = &cams->cam[i];
758 kfree(up->user_data);
759 }
760 kfree(cams);
761 }
762
763 return result;
764}
765
766EXPORT_SYMBOL(usbvideo_register);
767
768/*
769 * usbvideo_Deregister()
770 *
771 * Procedure frees all usbvideo and user data structures. Be warned that
772 * if you had some dynamically allocated components in ->user field then
773 * you should free them before calling here.
774 */
775void usbvideo_Deregister(struct usbvideo **pCams)
776{
777 struct usbvideo *cams;
778 int i;
779
780 if (pCams == NULL) {
4126a8f5 781 err("%s: pCams == NULL", __func__);
1da177e4
LT
782 return;
783 }
784 cams = *pCams;
785 if (cams == NULL) {
4126a8f5 786 err("%s: cams == NULL", __func__);
1da177e4
LT
787 return;
788 }
789
4126a8f5 790 dbg("%s: Deregistering %s driver.", __func__, cams->drvName);
1da177e4
LT
791 usb_deregister(&cams->usbdrv);
792
4126a8f5 793 dbg("%s: Deallocating cams=$%p (%d. cameras)", __func__, cams, cams->num_cameras);
1da177e4
LT
794 for (i=0; i < cams->num_cameras; i++) {
795 struct uvd *up = &cams->cam[i];
796 int warning = 0;
797
798 if (up->user_data != NULL) {
799 if (up->user_size <= 0)
800 ++warning;
801 } else {
802 if (up->user_size > 0)
803 ++warning;
804 }
805 if (warning) {
806 err("%s: Warning: user_data=$%p user_size=%d.",
4126a8f5 807 __func__, up->user_data, up->user_size);
1da177e4
LT
808 } else {
809 dbg("%s: Freeing %d. $%p->user_data=$%p",
4126a8f5 810 __func__, i, up, up->user_data);
1da177e4
LT
811 kfree(up->user_data);
812 }
813 }
814 /* Whole array was allocated in one chunk */
815 dbg("%s: Freed %d uvd structures",
4126a8f5 816 __func__, cams->num_cameras);
1da177e4
LT
817 kfree(cams);
818 *pCams = NULL;
819}
820
821EXPORT_SYMBOL(usbvideo_Deregister);
822
823/*
824 * usbvideo_Disconnect()
825 *
826 * This procedure stops all driver activity. Deallocation of
827 * the interface-private structure (pointed by 'ptr') is done now
828 * (if we don't have any open files) or later, when those files
829 * are closed. After that driver should be removable.
830 *
831 * This code handles surprise removal. The uvd->user is a counter which
832 * increments on open() and decrements on close(). If we see here that
833 * this counter is not 0 then we have a client who still has us opened.
834 * We set uvd->remove_pending flag as early as possible, and after that
835 * all access to the camera will gracefully fail. These failures should
836 * prompt client to (eventually) close the video device, and then - in
837 * usbvideo_v4l_close() - we decrement uvd->uvd_used and usage counter.
838 *
839 * History:
840 * 22-Jan-2000 Added polling of MOD_IN_USE to delay removal until all users gone.
841 * 27-Jan-2000 Reworked to allow pending disconnects; see xxx_close()
842 * 24-May-2000 Corrected to prevent race condition (MOD_xxx_USE_COUNT).
843 * 19-Oct-2000 Moved to usbvideo module.
844 */
845static void usbvideo_Disconnect(struct usb_interface *intf)
846{
847 struct uvd *uvd = usb_get_intfdata (intf);
848 int i;
849
850 if (uvd == NULL) {
4126a8f5 851 err("%s($%p): Illegal call.", __func__, intf);
1da177e4
LT
852 return;
853 }
854
855 usb_set_intfdata (intf, NULL);
856
857 usbvideo_ClientIncModCount(uvd);
858 if (uvd->debug > 0)
a482f327 859 dev_info(&intf->dev, "%s(%p.)\n", __func__, intf);
1da177e4 860
4186ecf8 861 mutex_lock(&uvd->lock);
1da177e4
LT
862 uvd->remove_pending = 1; /* Now all ISO data will be ignored */
863
864 /* At this time we ask to cancel outstanding URBs */
865 GET_CALLBACK(uvd, stopDataPump)(uvd);
866
867 for (i=0; i < USBVIDEO_NUMSBUF; i++)
868 usb_free_urb(uvd->sbuf[i].urb);
869
870 usb_put_dev(uvd->dev);
871 uvd->dev = NULL; /* USB device is no more */
872
873 video_unregister_device(&uvd->vdev);
874 if (uvd->debug > 0)
a482f327 875 dev_info(&intf->dev, "%s: Video unregistered.\n", __func__);
1da177e4
LT
876
877 if (uvd->user)
a482f327
GKH
878 dev_info(&intf->dev, "%s: In use, disconnect pending.\n",
879 __func__);
1da177e4
LT
880 else
881 usbvideo_CameraRelease(uvd);
4186ecf8 882 mutex_unlock(&uvd->lock);
a482f327 883 dev_info(&intf->dev, "USB camera disconnected.\n");
1da177e4
LT
884
885 usbvideo_ClientDecModCount(uvd);
886}
887
888/*
889 * usbvideo_CameraRelease()
890 *
891 * This code does final release of uvd. This happens
892 * after the device is disconnected -and- all clients
893 * closed their files.
894 *
895 * History:
896 * 27-Jan-2000 Created.
897 */
898static void usbvideo_CameraRelease(struct uvd *uvd)
899{
900 if (uvd == NULL) {
4126a8f5 901 err("%s: Illegal call", __func__);
1da177e4
LT
902 return;
903 }
904
905 RingQueue_Free(&uvd->dp);
906 if (VALID_CALLBACK(uvd, userFree))
907 GET_CALLBACK(uvd, userFree)(uvd);
908 uvd->uvd_used = 0; /* This is atomic, no need to take mutex */
909}
910
911/*
912 * usbvideo_find_struct()
913 *
914 * This code searches the array of preallocated (static) structures
915 * and returns index of the first one that isn't in use. Returns -1
916 * if there are no free structures.
917 *
918 * History:
919 * 27-Jan-2000 Created.
920 */
921static int usbvideo_find_struct(struct usbvideo *cams)
922{
923 int u, rv = -1;
924
925 if (cams == NULL) {
926 err("No usbvideo handle?");
927 return -1;
928 }
4186ecf8 929 mutex_lock(&cams->lock);
1da177e4
LT
930 for (u = 0; u < cams->num_cameras; u++) {
931 struct uvd *uvd = &cams->cam[u];
932 if (!uvd->uvd_used) /* This one is free */
933 {
934 uvd->uvd_used = 1; /* In use now */
4186ecf8 935 mutex_init(&uvd->lock); /* to 1 == available */
1da177e4
LT
936 uvd->dev = NULL;
937 rv = u;
938 break;
939 }
940 }
4186ecf8 941 mutex_unlock(&cams->lock);
1da177e4
LT
942 return rv;
943}
944
fa027c2a 945static const struct file_operations usbvideo_fops = {
1da177e4
LT
946 .owner = THIS_MODULE,
947 .open = usbvideo_v4l_open,
948 .release =usbvideo_v4l_close,
949 .read = usbvideo_v4l_read,
950 .mmap = usbvideo_v4l_mmap,
951 .ioctl = usbvideo_v4l_ioctl,
078ff795 952#ifdef CONFIG_COMPAT
0d0fbf81 953 .compat_ioctl = v4l_compat_ioctl32,
078ff795 954#endif
1da177e4
LT
955 .llseek = no_llseek,
956};
4c4c9432 957static const struct video_device usbvideo_template = {
1da177e4
LT
958 .fops = &usbvideo_fops,
959};
960
961struct uvd *usbvideo_AllocateDevice(struct usbvideo *cams)
962{
963 int i, devnum;
964 struct uvd *uvd = NULL;
965
966 if (cams == NULL) {
967 err("No usbvideo handle?");
968 return NULL;
969 }
970
971 devnum = usbvideo_find_struct(cams);
972 if (devnum == -1) {
973 err("IBM USB camera driver: Too many devices!");
974 return NULL;
975 }
976 uvd = &cams->cam[devnum];
977 dbg("Device entry #%d. at $%p", devnum, uvd);
978
979 /* Not relying upon caller we increase module counter ourselves */
980 usbvideo_ClientIncModCount(uvd);
981
4186ecf8 982 mutex_lock(&uvd->lock);
1da177e4
LT
983 for (i=0; i < USBVIDEO_NUMSBUF; i++) {
984 uvd->sbuf[i].urb = usb_alloc_urb(FRAMES_PER_DESC, GFP_KERNEL);
985 if (uvd->sbuf[i].urb == NULL) {
986 err("usb_alloc_urb(%d.) failed.", FRAMES_PER_DESC);
987 uvd->uvd_used = 0;
988 uvd = NULL;
989 goto allocate_done;
990 }
991 }
992 uvd->user=0;
993 uvd->remove_pending = 0;
994 uvd->last_error = 0;
995 RingQueue_Initialize(&uvd->dp);
996
997 /* Initialize video device structure */
998 uvd->vdev = usbvideo_template;
999 sprintf(uvd->vdev.name, "%.20s USB Camera", cams->drvName);
1000 /*
1001 * The client is free to overwrite those because we
1002 * return control to the client's probe function right now.
1003 */
1004allocate_done:
4186ecf8 1005 mutex_unlock(&uvd->lock);
1da177e4
LT
1006 usbvideo_ClientDecModCount(uvd);
1007 return uvd;
1008}
1009
1010EXPORT_SYMBOL(usbvideo_AllocateDevice);
1011
1012int usbvideo_RegisterVideoDevice(struct uvd *uvd)
1013{
1014 char tmp1[20], tmp2[20]; /* Buffers for printing */
1015
1016 if (uvd == NULL) {
4126a8f5 1017 err("%s: Illegal call.", __func__);
1da177e4
LT
1018 return -EINVAL;
1019 }
1020 if (uvd->video_endp == 0) {
a482f327
GKH
1021 dev_info(&uvd->dev->dev,
1022 "%s: No video endpoint specified; data pump disabled.\n",
1023 __func__);
1da177e4
LT
1024 }
1025 if (uvd->paletteBits == 0) {
4126a8f5 1026 err("%s: No palettes specified!", __func__);
1da177e4
LT
1027 return -EINVAL;
1028 }
1029 if (uvd->defaultPalette == 0) {
a482f327
GKH
1030 dev_info(&uvd->dev->dev, "%s: No default palette!\n",
1031 __func__);
1da177e4
LT
1032 }
1033
1034 uvd->max_frame_size = VIDEOSIZE_X(uvd->canvas) *
1035 VIDEOSIZE_Y(uvd->canvas) * V4L_BYTES_PER_PIXEL;
1036 usbvideo_VideosizeToString(tmp1, sizeof(tmp1), uvd->videosize);
1037 usbvideo_VideosizeToString(tmp2, sizeof(tmp2), uvd->canvas);
1038
1039 if (uvd->debug > 0) {
a482f327
GKH
1040 dev_info(&uvd->dev->dev,
1041 "%s: iface=%d. endpoint=$%02x paletteBits=$%08lx\n",
1042 __func__, uvd->iface, uvd->video_endp,
1043 uvd->paletteBits);
1da177e4 1044 }
974a911d 1045 if (uvd->dev == NULL) {
1c659689 1046 err("%s: uvd->dev == NULL", __func__);
974a911d
PT
1047 return -EINVAL;
1048 }
5e85e732 1049 uvd->vdev.parent = &uvd->dev->dev;
aa5e90af 1050 uvd->vdev.release = video_device_release_empty;
e758c6f8 1051 if (video_register_device(&uvd->vdev, VFL_TYPE_GRABBER, video_nr) < 0) {
4126a8f5 1052 err("%s: video_register_device failed", __func__);
1da177e4
LT
1053 return -EPIPE;
1054 }
1055 if (uvd->debug > 1) {
a482f327
GKH
1056 dev_info(&uvd->dev->dev,
1057 "%s: video_register_device() successful\n", __func__);
1da177e4 1058 }
1da177e4 1059
a482f327
GKH
1060 dev_info(&uvd->dev->dev, "%s on /dev/video%d: canvas=%s videosize=%s\n",
1061 (uvd->handle != NULL) ? uvd->handle->drvName : "???",
c6330fb8 1062 uvd->vdev.num, tmp2, tmp1);
1da177e4
LT
1063
1064 usb_get_dev(uvd->dev);
1065 return 0;
1066}
1067
1068EXPORT_SYMBOL(usbvideo_RegisterVideoDevice);
1069
1070/* ******************************************************************** */
1071
1072static int usbvideo_v4l_mmap(struct file *file, struct vm_area_struct *vma)
1073{
1074 struct uvd *uvd = file->private_data;
1075 unsigned long start = vma->vm_start;
1076 unsigned long size = vma->vm_end-vma->vm_start;
1077 unsigned long page, pos;
1078
1079 if (!CAMERA_IS_OPERATIONAL(uvd))
1080 return -EFAULT;
1081
1082 if (size > (((USBVIDEO_NUMFRAMES * uvd->max_frame_size) + PAGE_SIZE - 1) & ~(PAGE_SIZE - 1)))
1083 return -EINVAL;
1084
1085 pos = (unsigned long) uvd->fbuf;
1086 while (size > 0) {
1087 page = vmalloc_to_pfn((void *)pos);
1088 if (remap_pfn_range(vma, start, page, PAGE_SIZE, PAGE_SHARED))
1089 return -EAGAIN;
1090
1091 start += PAGE_SIZE;
1092 pos += PAGE_SIZE;
1093 if (size > PAGE_SIZE)
1094 size -= PAGE_SIZE;
1095 else
1096 size = 0;
1097 }
1098
1099 return 0;
1100}
1101
1102/*
1103 * usbvideo_v4l_open()
1104 *
1105 * This is part of Video 4 Linux API. The driver can be opened by one
1106 * client only (checks internal counter 'uvdser'). The procedure
1107 * then allocates buffers needed for video processing.
1108 *
1109 * History:
1110 * 22-Jan-2000 Rewrote, moved scratch buffer allocation here. Now the
1111 * camera is also initialized here (once per connect), at
1112 * expense of V4L client (it waits on open() call).
1113 * 27-Jan-2000 Used USBVIDEO_NUMSBUF as number of URB buffers.
1114 * 24-May-2000 Corrected to prevent race condition (MOD_xxx_USE_COUNT).
1115 */
1116static int usbvideo_v4l_open(struct inode *inode, struct file *file)
1117{
1118 struct video_device *dev = video_devdata(file);
1119 struct uvd *uvd = (struct uvd *) dev;
1120 const int sb_size = FRAMES_PER_DESC * uvd->iso_packet_len;
1121 int i, errCode = 0;
1122
1123 if (uvd->debug > 1)
a482f327 1124 dev_info(&uvd->dev->dev, "%s($%p)\n", __func__, dev);
1da177e4 1125
5332bdbe
ON
1126 if (0 < usbvideo_ClientIncModCount(uvd))
1127 return -ENODEV;
4186ecf8 1128 mutex_lock(&uvd->lock);
1da177e4
LT
1129
1130 if (uvd->user) {
4126a8f5 1131 err("%s: Someone tried to open an already opened device!", __func__);
1da177e4
LT
1132 errCode = -EBUSY;
1133 } else {
1134 /* Clear statistics */
1135 memset(&uvd->stats, 0, sizeof(uvd->stats));
1136
1137 /* Clean pointers so we know if we allocated something */
1138 for (i=0; i < USBVIDEO_NUMSBUF; i++)
1139 uvd->sbuf[i].data = NULL;
1140
1141 /* Allocate memory for the frame buffers */
1142 uvd->fbuf_size = USBVIDEO_NUMFRAMES * uvd->max_frame_size;
1143 uvd->fbuf = usbvideo_rvmalloc(uvd->fbuf_size);
1144 RingQueue_Allocate(&uvd->dp, RING_QUEUE_SIZE);
1145 if ((uvd->fbuf == NULL) ||
1146 (!RingQueue_IsAllocated(&uvd->dp))) {
4126a8f5 1147 err("%s: Failed to allocate fbuf or dp", __func__);
1da177e4
LT
1148 errCode = -ENOMEM;
1149 } else {
1150 /* Allocate all buffers */
1151 for (i=0; i < USBVIDEO_NUMFRAMES; i++) {
1152 uvd->frame[i].frameState = FrameState_Unused;
1153 uvd->frame[i].data = uvd->fbuf + i*(uvd->max_frame_size);
1154 /*
1155 * Set default sizes in case IOCTL (VIDIOCMCAPTURE)
1156 * is not used (using read() instead).
1157 */
1158 uvd->frame[i].canvas = uvd->canvas;
1159 uvd->frame[i].seqRead_Index = 0;
1160 }
1161 for (i=0; i < USBVIDEO_NUMSBUF; i++) {
1162 uvd->sbuf[i].data = kmalloc(sb_size, GFP_KERNEL);
1163 if (uvd->sbuf[i].data == NULL) {
1164 errCode = -ENOMEM;
1165 break;
1166 }
1167 }
1168 }
1169 if (errCode != 0) {
1170 /* Have to free all that memory */
1171 if (uvd->fbuf != NULL) {
1172 usbvideo_rvfree(uvd->fbuf, uvd->fbuf_size);
1173 uvd->fbuf = NULL;
1174 }
1175 RingQueue_Free(&uvd->dp);
1176 for (i=0; i < USBVIDEO_NUMSBUF; i++) {
1bc3c9e1
JJ
1177 kfree(uvd->sbuf[i].data);
1178 uvd->sbuf[i].data = NULL;
1da177e4
LT
1179 }
1180 }
1181 }
1182
1183 /* If so far no errors then we shall start the camera */
1184 if (errCode == 0) {
1185 /* Start data pump if we have valid endpoint */
1186 if (uvd->video_endp != 0)
1187 errCode = GET_CALLBACK(uvd, startDataPump)(uvd);
1188 if (errCode == 0) {
1189 if (VALID_CALLBACK(uvd, setupOnOpen)) {
1190 if (uvd->debug > 1)
a482f327
GKH
1191 dev_info(&uvd->dev->dev,
1192 "%s: setupOnOpen callback\n",
1193 __func__);
1da177e4
LT
1194 errCode = GET_CALLBACK(uvd, setupOnOpen)(uvd);
1195 if (errCode < 0) {
1196 err("%s: setupOnOpen callback failed (%d.).",
4126a8f5 1197 __func__, errCode);
1da177e4 1198 } else if (uvd->debug > 1) {
a482f327
GKH
1199 dev_info(&uvd->dev->dev,
1200 "%s: setupOnOpen callback successful\n",
1201 __func__);
1da177e4
LT
1202 }
1203 }
1204 if (errCode == 0) {
1205 uvd->settingsAdjusted = 0;
1206 if (uvd->debug > 1)
a482f327
GKH
1207 dev_info(&uvd->dev->dev,
1208 "%s: Open succeeded.\n",
1209 __func__);
1da177e4
LT
1210 uvd->user++;
1211 file->private_data = uvd;
1212 }
1213 }
1214 }
4186ecf8 1215 mutex_unlock(&uvd->lock);
1da177e4
LT
1216 if (errCode != 0)
1217 usbvideo_ClientDecModCount(uvd);
1218 if (uvd->debug > 0)
a482f327
GKH
1219 dev_info(&uvd->dev->dev, "%s: Returning %d.\n", __func__,
1220 errCode);
1da177e4
LT
1221 return errCode;
1222}
1223
1224/*
1225 * usbvideo_v4l_close()
1226 *
1227 * This is part of Video 4 Linux API. The procedure
1228 * stops streaming and deallocates all buffers that were earlier
1229 * allocated in usbvideo_v4l_open().
1230 *
1231 * History:
1232 * 22-Jan-2000 Moved scratch buffer deallocation here.
1233 * 27-Jan-2000 Used USBVIDEO_NUMSBUF as number of URB buffers.
1234 * 24-May-2000 Moved MOD_DEC_USE_COUNT outside of code that can sleep.
1235 */
1236static int usbvideo_v4l_close(struct inode *inode, struct file *file)
1237{
1238 struct video_device *dev = file->private_data;
1239 struct uvd *uvd = (struct uvd *) dev;
1240 int i;
1241
1242 if (uvd->debug > 1)
a482f327 1243 dev_info(&uvd->dev->dev, "%s($%p)\n", __func__, dev);
1da177e4 1244
4186ecf8 1245 mutex_lock(&uvd->lock);
1da177e4
LT
1246 GET_CALLBACK(uvd, stopDataPump)(uvd);
1247 usbvideo_rvfree(uvd->fbuf, uvd->fbuf_size);
1248 uvd->fbuf = NULL;
1249 RingQueue_Free(&uvd->dp);
1250
1251 for (i=0; i < USBVIDEO_NUMSBUF; i++) {
1252 kfree(uvd->sbuf[i].data);
1253 uvd->sbuf[i].data = NULL;
1254 }
1255
1256#if USBVIDEO_REPORT_STATS
1257 usbvideo_ReportStatistics(uvd);
d56410e0 1258#endif
1da177e4
LT
1259
1260 uvd->user--;
1261 if (uvd->remove_pending) {
1262 if (uvd->debug > 0)
a482f327
GKH
1263 dev_info(&uvd->dev->dev, "%s: Final disconnect.\n",
1264 __func__);
1da177e4
LT
1265 usbvideo_CameraRelease(uvd);
1266 }
4186ecf8 1267 mutex_unlock(&uvd->lock);
1da177e4
LT
1268 usbvideo_ClientDecModCount(uvd);
1269
1270 if (uvd->debug > 1)
a482f327 1271 dev_info(&uvd->dev->dev, "%s: Completed.\n", __func__);
1da177e4
LT
1272 file->private_data = NULL;
1273 return 0;
1274}
1275
1276/*
1277 * usbvideo_v4l_ioctl()
1278 *
1279 * This is part of Video 4 Linux API. The procedure handles ioctl() calls.
1280 *
1281 * History:
1282 * 22-Jan-2000 Corrected VIDIOCSPICT to reject unsupported settings.
1283 */
1284static int usbvideo_v4l_do_ioctl(struct inode *inode, struct file *file,
1285 unsigned int cmd, void *arg)
1286{
1287 struct uvd *uvd = file->private_data;
1288
1289 if (!CAMERA_IS_OPERATIONAL(uvd))
1290 return -EIO;
1291
1292 switch (cmd) {
1293 case VIDIOCGCAP:
1294 {
1295 struct video_capability *b = arg;
1296 *b = uvd->vcap;
1297 return 0;
1298 }
1299 case VIDIOCGCHAN:
1300 {
1301 struct video_channel *v = arg;
1302 *v = uvd->vchan;
1303 return 0;
1304 }
1305 case VIDIOCSCHAN:
d56410e0 1306 {
1da177e4
LT
1307 struct video_channel *v = arg;
1308 if (v->channel != 0)
1309 return -EINVAL;
1310 return 0;
1311 }
1312 case VIDIOCGPICT:
1313 {
1314 struct video_picture *pic = arg;
1315 *pic = uvd->vpic;
1316 return 0;
1317 }
1318 case VIDIOCSPICT:
1319 {
1320 struct video_picture *pic = arg;
1321 /*
1322 * Use temporary 'video_picture' structure to preserve our
1323 * own settings (such as color depth, palette) that we
1324 * aren't allowing everyone (V4L client) to change.
1325 */
1326 uvd->vpic.brightness = pic->brightness;
1327 uvd->vpic.hue = pic->hue;
1328 uvd->vpic.colour = pic->colour;
1329 uvd->vpic.contrast = pic->contrast;
1330 uvd->settingsAdjusted = 0; /* Will force new settings */
1331 return 0;
1332 }
1333 case VIDIOCSWIN:
1334 {
1335 struct video_window *vw = arg;
1336
1337 if(VALID_CALLBACK(uvd, setVideoMode)) {
1338 return GET_CALLBACK(uvd, setVideoMode)(uvd, vw);
1339 }
1340
1341 if (vw->flags)
1342 return -EINVAL;
1343 if (vw->clipcount)
1344 return -EINVAL;
1345 if (vw->width != VIDEOSIZE_X(uvd->canvas))
1346 return -EINVAL;
1347 if (vw->height != VIDEOSIZE_Y(uvd->canvas))
1348 return -EINVAL;
1349
1350 return 0;
1351 }
1352 case VIDIOCGWIN:
1353 {
1354 struct video_window *vw = arg;
1355
1356 vw->x = 0;
1357 vw->y = 0;
1358 vw->width = VIDEOSIZE_X(uvd->videosize);
1359 vw->height = VIDEOSIZE_Y(uvd->videosize);
1360 vw->chromakey = 0;
1361 if (VALID_CALLBACK(uvd, getFPS))
1362 vw->flags = GET_CALLBACK(uvd, getFPS)(uvd);
d56410e0 1363 else
1da177e4
LT
1364 vw->flags = 10; /* FIXME: do better! */
1365 return 0;
1366 }
1367 case VIDIOCGMBUF:
1368 {
1369 struct video_mbuf *vm = arg;
1370 int i;
1371
1372 memset(vm, 0, sizeof(*vm));
1373 vm->size = uvd->max_frame_size * USBVIDEO_NUMFRAMES;
1374 vm->frames = USBVIDEO_NUMFRAMES;
d56410e0 1375 for(i = 0; i < USBVIDEO_NUMFRAMES; i++)
1da177e4
LT
1376 vm->offsets[i] = i * uvd->max_frame_size;
1377
1378 return 0;
1379 }
1380 case VIDIOCMCAPTURE:
1381 {
1382 struct video_mmap *vm = arg;
1383
1384 if (uvd->debug >= 1) {
a482f327
GKH
1385 dev_info(&uvd->dev->dev,
1386 "VIDIOCMCAPTURE: frame=%d. size=%dx%d, format=%d.\n",
1387 vm->frame, vm->width, vm->height, vm->format);
1da177e4
LT
1388 }
1389 /*
1390 * Check if the requested size is supported. If the requestor
1391 * requests too big a frame then we may be tricked into accessing
1392 * outside of own preallocated frame buffer (in uvd->frame).
1393 * This will cause oops or a security hole. Theoretically, we
1394 * could only clamp the size down to acceptable bounds, but then
1395 * we'd need to figure out how to insert our smaller buffer into
1396 * larger caller's buffer... this is not an easy question. So we
1397 * here just flatly reject too large requests, assuming that the
1398 * caller will resubmit with smaller size. Callers should know
1399 * what size we support (returned by VIDIOCGCAP). However vidcat,
1400 * for one, does not care and allows to ask for any size.
1401 */
1402 if ((vm->width > VIDEOSIZE_X(uvd->canvas)) ||
1403 (vm->height > VIDEOSIZE_Y(uvd->canvas))) {
1404 if (uvd->debug > 0) {
a482f327
GKH
1405 dev_info(&uvd->dev->dev,
1406 "VIDIOCMCAPTURE: Size=%dx%d "
1407 "too large; allowed only up "
1408 "to %ldx%ld\n", vm->width,
1409 vm->height,
1410 VIDEOSIZE_X(uvd->canvas),
1411 VIDEOSIZE_Y(uvd->canvas));
1da177e4
LT
1412 }
1413 return -EINVAL;
1414 }
1415 /* Check if the palette is supported */
1416 if (((1L << vm->format) & uvd->paletteBits) == 0) {
1417 if (uvd->debug > 0) {
a482f327
GKH
1418 dev_info(&uvd->dev->dev,
1419 "VIDIOCMCAPTURE: format=%d. "
1420 "not supported "
1421 "(paletteBits=$%08lx)\n",
1422 vm->format, uvd->paletteBits);
1da177e4
LT
1423 }
1424 return -EINVAL;
1425 }
1426 if ((vm->frame < 0) || (vm->frame >= USBVIDEO_NUMFRAMES)) {
1427 err("VIDIOCMCAPTURE: vm.frame=%d. !E [0-%d]", vm->frame, USBVIDEO_NUMFRAMES-1);
1428 return -EINVAL;
1429 }
1430 if (uvd->frame[vm->frame].frameState == FrameState_Grabbing) {
1431 /* Not an error - can happen */
1432 }
1433 uvd->frame[vm->frame].request = VIDEOSIZE(vm->width, vm->height);
1434 uvd->frame[vm->frame].palette = vm->format;
1435
1436 /* Mark it as ready */
1437 uvd->frame[vm->frame].frameState = FrameState_Ready;
1438
1439 return usbvideo_NewFrame(uvd, vm->frame);
1440 }
1441 case VIDIOCSYNC:
1442 {
1443 int *frameNum = arg;
1444 int ret;
1445
1446 if (*frameNum < 0 || *frameNum >= USBVIDEO_NUMFRAMES)
1447 return -EINVAL;
d56410e0 1448
1da177e4 1449 if (uvd->debug >= 1)
a482f327
GKH
1450 dev_info(&uvd->dev->dev,
1451 "VIDIOCSYNC: syncing to frame %d.\n",
1452 *frameNum);
1da177e4
LT
1453 if (uvd->flags & FLAGS_NO_DECODING)
1454 ret = usbvideo_GetFrame(uvd, *frameNum);
1455 else if (VALID_CALLBACK(uvd, getFrame)) {
1456 ret = GET_CALLBACK(uvd, getFrame)(uvd, *frameNum);
1457 if ((ret < 0) && (uvd->debug >= 1)) {
1458 err("VIDIOCSYNC: getFrame() returned %d.", ret);
1459 }
1460 } else {
1461 err("VIDIOCSYNC: getFrame is not set");
1462 ret = -EFAULT;
1463 }
1464
1465 /*
1466 * The frame is in FrameState_Done_Hold state. Release it
1467 * right now because its data is already mapped into
1468 * the user space and it's up to the application to
1469 * make use of it until it asks for another frame.
1470 */
1471 uvd->frame[*frameNum].frameState = FrameState_Unused;
1472 return ret;
1473 }
1474 case VIDIOCGFBUF:
1475 {
1476 struct video_buffer *vb = arg;
1477
1478 memset(vb, 0, sizeof(*vb));
d56410e0
MCC
1479 return 0;
1480 }
1da177e4
LT
1481 case VIDIOCKEY:
1482 return 0;
1483
1484 case VIDIOCCAPTURE:
1485 return -EINVAL;
1486
1487 case VIDIOCSFBUF:
1488
1489 case VIDIOCGTUNER:
1490 case VIDIOCSTUNER:
1491
1492 case VIDIOCGFREQ:
1493 case VIDIOCSFREQ:
1494
1495 case VIDIOCGAUDIO:
1496 case VIDIOCSAUDIO:
1497 return -EINVAL;
1498
1499 default:
1500 return -ENOIOCTLCMD;
1501 }
1502 return 0;
1503}
1504
1505static int usbvideo_v4l_ioctl(struct inode *inode, struct file *file,
1506 unsigned int cmd, unsigned long arg)
1507{
1508 return video_usercopy(inode, file, cmd, arg, usbvideo_v4l_do_ioctl);
1509}
1510
1511/*
1512 * usbvideo_v4l_read()
1513 *
1514 * This is mostly boring stuff. We simply ask for a frame and when it
1515 * arrives copy all the video data from it into user space. There is
1516 * no obvious need to override this method.
1517 *
1518 * History:
1519 * 20-Oct-2000 Created.
1520 * 01-Nov-2000 Added mutex (uvd->lock).
1521 */
1522static ssize_t usbvideo_v4l_read(struct file *file, char __user *buf,
1523 size_t count, loff_t *ppos)
1524{
1525 struct uvd *uvd = file->private_data;
1526 int noblock = file->f_flags & O_NONBLOCK;
1527 int frmx = -1, i;
1528 struct usbvideo_frame *frame;
1529
1530 if (!CAMERA_IS_OPERATIONAL(uvd) || (buf == NULL))
1531 return -EFAULT;
1532
1533 if (uvd->debug >= 1)
a482f327
GKH
1534 dev_info(&uvd->dev->dev,
1535 "%s: %Zd. bytes, noblock=%d.\n",
1536 __func__, count, noblock);
1da177e4 1537
4186ecf8 1538 mutex_lock(&uvd->lock);
1da177e4
LT
1539
1540 /* See if a frame is completed, then use it. */
1541 for(i = 0; i < USBVIDEO_NUMFRAMES; i++) {
1542 if ((uvd->frame[i].frameState == FrameState_Done) ||
1543 (uvd->frame[i].frameState == FrameState_Done_Hold) ||
1544 (uvd->frame[i].frameState == FrameState_Error)) {
1545 frmx = i;
1546 break;
1547 }
1548 }
1549
1550 /* FIXME: If we don't start a frame here then who ever does? */
1551 if (noblock && (frmx == -1)) {
1552 count = -EAGAIN;
1553 goto read_done;
1554 }
1555
1556 /*
1557 * If no FrameState_Done, look for a FrameState_Grabbing state.
1558 * See if a frame is in process (grabbing), then use it.
1559 * We will need to wait until it becomes cooked, of course.
1560 */
1561 if (frmx == -1) {
1562 for(i = 0; i < USBVIDEO_NUMFRAMES; i++) {
1563 if (uvd->frame[i].frameState == FrameState_Grabbing) {
1564 frmx = i;
1565 break;
1566 }
1567 }
1568 }
1569
1570 /*
1571 * If no frame is active, start one. We don't care which one
1572 * it will be, so #0 is as good as any.
1573 * In read access mode we don't have convenience of VIDIOCMCAPTURE
1574 * to specify the requested palette (video format) on per-frame
1575 * basis. This means that we have to return data in -some- format
1576 * and just hope that the client knows what to do with it.
1577 * The default format is configured in uvd->defaultPalette field
1578 * as one of VIDEO_PALETTE_xxx values. We stuff it into the new
1579 * frame and initiate the frame filling process.
1580 */
1581 if (frmx == -1) {
1582 if (uvd->defaultPalette == 0) {
4126a8f5 1583 err("%s: No default palette; don't know what to do!", __func__);
1da177e4
LT
1584 count = -EFAULT;
1585 goto read_done;
1586 }
1587 frmx = 0;
1588 /*
1589 * We have no per-frame control over video size.
1590 * Therefore we only can use whatever size was
1591 * specified as default.
1592 */
1593 uvd->frame[frmx].request = uvd->videosize;
1594 uvd->frame[frmx].palette = uvd->defaultPalette;
1595 uvd->frame[frmx].frameState = FrameState_Ready;
1596 usbvideo_NewFrame(uvd, frmx);
1597 /* Now frame 0 is supposed to start filling... */
1598 }
1599
1600 /*
1601 * Get a pointer to the active frame. It is either previously
1602 * completed frame or frame in progress but not completed yet.
1603 */
1604 frame = &uvd->frame[frmx];
1605
1606 /*
1607 * Sit back & wait until the frame gets filled and postprocessed.
1608 * If we fail to get the picture [in time] then return the error.
1609 * In this call we specify that we want the frame to be waited for,
1610 * postprocessed and switched into FrameState_Done_Hold state. This
1611 * state is used to hold the frame as "fully completed" between
1612 * subsequent partial reads of the same frame.
1613 */
1614 if (frame->frameState != FrameState_Done_Hold) {
1615 long rv = -EFAULT;
1616 if (uvd->flags & FLAGS_NO_DECODING)
1617 rv = usbvideo_GetFrame(uvd, frmx);
1618 else if (VALID_CALLBACK(uvd, getFrame))
1619 rv = GET_CALLBACK(uvd, getFrame)(uvd, frmx);
1620 else
1621 err("getFrame is not set");
1622 if ((rv != 0) || (frame->frameState != FrameState_Done_Hold)) {
1623 count = rv;
1624 goto read_done;
1625 }
1626 }
1627
1628 /*
1629 * Copy bytes to user space. We allow for partial reads, which
1630 * means that the user application can request read less than
1631 * the full frame size. It is up to the application to issue
1632 * subsequent calls until entire frame is read.
1633 *
1634 * First things first, make sure we don't copy more than we
1635 * have - even if the application wants more. That would be
1636 * a big security embarassment!
1637 */
1638 if ((count + frame->seqRead_Index) > frame->seqRead_Length)
1639 count = frame->seqRead_Length - frame->seqRead_Index;
1640
1641 /*
1642 * Copy requested amount of data to user space. We start
1643 * copying from the position where we last left it, which
1644 * will be zero for a new frame (not read before).
1645 */
1646 if (copy_to_user(buf, frame->data + frame->seqRead_Index, count)) {
1647 count = -EFAULT;
1648 goto read_done;
1649 }
1650
1651 /* Update last read position */
1652 frame->seqRead_Index += count;
1653 if (uvd->debug >= 1) {
1654 err("%s: {copy} count used=%Zd, new seqRead_Index=%ld",
4126a8f5 1655 __func__, count, frame->seqRead_Index);
1da177e4
LT
1656 }
1657
1658 /* Finally check if the frame is done with and "release" it */
1659 if (frame->seqRead_Index >= frame->seqRead_Length) {
1660 /* All data has been read */
1661 frame->seqRead_Index = 0;
1662
1663 /* Mark it as available to be used again. */
1664 uvd->frame[frmx].frameState = FrameState_Unused;
1665 if (usbvideo_NewFrame(uvd, (frmx + 1) % USBVIDEO_NUMFRAMES)) {
4126a8f5 1666 err("%s: usbvideo_NewFrame failed.", __func__);
1da177e4
LT
1667 }
1668 }
1669read_done:
4186ecf8 1670 mutex_unlock(&uvd->lock);
1da177e4
LT
1671 return count;
1672}
1673
1674/*
1675 * Make all of the blocks of data contiguous
1676 */
1677static int usbvideo_CompressIsochronous(struct uvd *uvd, struct urb *urb)
1678{
1679 char *cdata;
1680 int i, totlen = 0;
1681
1682 for (i = 0; i < urb->number_of_packets; i++) {
1683 int n = urb->iso_frame_desc[i].actual_length;
1684 int st = urb->iso_frame_desc[i].status;
1685
1686 cdata = urb->transfer_buffer + urb->iso_frame_desc[i].offset;
1687
1688 /* Detect and ignore errored packets */
1689 if (st < 0) {
1690 if (uvd->debug >= 1)
1691 err("Data error: packet=%d. len=%d. status=%d.", i, n, st);
1692 uvd->stats.iso_err_count++;
1693 continue;
1694 }
1695
1696 /* Detect and ignore empty packets */
1697 if (n <= 0) {
1698 uvd->stats.iso_skip_count++;
1699 continue;
1700 }
1701 totlen += n; /* Little local accounting */
1702 RingQueue_Enqueue(&uvd->dp, cdata, n);
1703 }
1704 return totlen;
1705}
1706
7d12e780 1707static void usbvideo_IsocIrq(struct urb *urb)
1da177e4
LT
1708{
1709 int i, ret, len;
1710 struct uvd *uvd = urb->context;
1711
1712 /* We don't want to do anything if we are about to be removed! */
1713 if (!CAMERA_IS_OPERATIONAL(uvd))
1714 return;
1715#if 0
1716 if (urb->actual_length > 0) {
a482f327
GKH
1717 dev_info(&uvd->dev->dev,
1718 "urb=$%p status=%d. errcount=%d. length=%d.\n",
1719 urb, urb->status, urb->error_count,
1720 urb->actual_length);
1da177e4
LT
1721 } else {
1722 static int c = 0;
1723 if (c++ % 100 == 0)
a482f327 1724 dev_info(&uvd->dev->dev, "No Isoc data\n");
1da177e4
LT
1725 }
1726#endif
1727
1728 if (!uvd->streaming) {
1729 if (uvd->debug >= 1)
a482f327
GKH
1730 dev_info(&uvd->dev->dev,
1731 "Not streaming, but interrupt!\n");
1da177e4
LT
1732 return;
1733 }
d56410e0 1734
1da177e4
LT
1735 uvd->stats.urb_count++;
1736 if (urb->actual_length <= 0)
1737 goto urb_done_with;
1738
1739 /* Copy the data received into ring queue */
1740 len = usbvideo_CompressIsochronous(uvd, urb);
1741 uvd->stats.urb_length = len;
1742 if (len <= 0)
1743 goto urb_done_with;
1744
1745 /* Here we got some data */
1746 uvd->stats.data_count += len;
1747 RingQueue_WakeUpInterruptible(&uvd->dp);
1748
1749urb_done_with:
1750 for (i = 0; i < FRAMES_PER_DESC; i++) {
1751 urb->iso_frame_desc[i].status = 0;
1752 urb->iso_frame_desc[i].actual_length = 0;
1753 }
1754 urb->status = 0;
1755 urb->dev = uvd->dev;
1756 ret = usb_submit_urb (urb, GFP_KERNEL);
1757 if(ret)
1758 err("usb_submit_urb error (%d)", ret);
1759 return;
1760}
1761
1762/*
1763 * usbvideo_StartDataPump()
1764 *
1765 * History:
1766 * 27-Jan-2000 Used ibmcam->iface, ibmcam->ifaceAltActive instead
1767 * of hardcoded values. Simplified by using for loop,
1768 * allowed any number of URBs.
1769 */
1770static int usbvideo_StartDataPump(struct uvd *uvd)
1771{
1772 struct usb_device *dev = uvd->dev;
1773 int i, errFlag;
1774
1775 if (uvd->debug > 1)
a482f327 1776 dev_info(&uvd->dev->dev, "%s($%p)\n", __func__, uvd);
1da177e4
LT
1777
1778 if (!CAMERA_IS_OPERATIONAL(uvd)) {
4126a8f5 1779 err("%s: Camera is not operational", __func__);
1da177e4
LT
1780 return -EFAULT;
1781 }
1782 uvd->curframe = -1;
1783
1784 /* Alternate interface 1 is is the biggest frame size */
1785 i = usb_set_interface(dev, uvd->iface, uvd->ifaceAltActive);
1786 if (i < 0) {
4126a8f5 1787 err("%s: usb_set_interface error", __func__);
1da177e4
LT
1788 uvd->last_error = i;
1789 return -EBUSY;
1790 }
1791 if (VALID_CALLBACK(uvd, videoStart))
1792 GET_CALLBACK(uvd, videoStart)(uvd);
d56410e0 1793 else
4126a8f5 1794 err("%s: videoStart not set", __func__);
1da177e4
LT
1795
1796 /* We double buffer the Iso lists */
1797 for (i=0; i < USBVIDEO_NUMSBUF; i++) {
1798 int j, k;
1799 struct urb *urb = uvd->sbuf[i].urb;
1800 urb->dev = dev;
1801 urb->context = uvd;
1802 urb->pipe = usb_rcvisocpipe(dev, uvd->video_endp);
1803 urb->interval = 1;
1804 urb->transfer_flags = URB_ISO_ASAP;
1805 urb->transfer_buffer = uvd->sbuf[i].data;
1806 urb->complete = usbvideo_IsocIrq;
1807 urb->number_of_packets = FRAMES_PER_DESC;
1808 urb->transfer_buffer_length = uvd->iso_packet_len * FRAMES_PER_DESC;
1809 for (j=k=0; j < FRAMES_PER_DESC; j++, k += uvd->iso_packet_len) {
1810 urb->iso_frame_desc[j].offset = k;
1811 urb->iso_frame_desc[j].length = uvd->iso_packet_len;
1812 }
1813 }
1814
1815 /* Submit all URBs */
1816 for (i=0; i < USBVIDEO_NUMSBUF; i++) {
1817 errFlag = usb_submit_urb(uvd->sbuf[i].urb, GFP_KERNEL);
1818 if (errFlag)
4126a8f5 1819 err("%s: usb_submit_isoc(%d) ret %d", __func__, i, errFlag);
1da177e4
LT
1820 }
1821
1822 uvd->streaming = 1;
1823 if (uvd->debug > 1)
a482f327
GKH
1824 dev_info(&uvd->dev->dev,
1825 "%s: streaming=1 video_endp=$%02x\n", __func__,
1826 uvd->video_endp);
1da177e4
LT
1827 return 0;
1828}
1829
1830/*
1831 * usbvideo_StopDataPump()
1832 *
1833 * This procedure stops streaming and deallocates URBs. Then it
1834 * activates zero-bandwidth alt. setting of the video interface.
1835 *
1836 * History:
1837 * 22-Jan-2000 Corrected order of actions to work after surprise removal.
1838 * 27-Jan-2000 Used uvd->iface, uvd->ifaceAltInactive instead of hardcoded values.
1839 */
1840static void usbvideo_StopDataPump(struct uvd *uvd)
1841{
1842 int i, j;
1843
1844 if ((uvd == NULL) || (!uvd->streaming) || (uvd->dev == NULL))
1845 return;
1846
1847 if (uvd->debug > 1)
a482f327 1848 dev_info(&uvd->dev->dev, "%s($%p)\n", __func__, uvd);
1da177e4
LT
1849
1850 /* Unschedule all of the iso td's */
1851 for (i=0; i < USBVIDEO_NUMSBUF; i++) {
1852 usb_kill_urb(uvd->sbuf[i].urb);
1853 }
1854 if (uvd->debug > 1)
a482f327 1855 dev_info(&uvd->dev->dev, "%s: streaming=0\n", __func__);
1da177e4
LT
1856 uvd->streaming = 0;
1857
1858 if (!uvd->remove_pending) {
1859 /* Invoke minidriver's magic to stop the camera */
1860 if (VALID_CALLBACK(uvd, videoStop))
1861 GET_CALLBACK(uvd, videoStop)(uvd);
d56410e0 1862 else
4126a8f5 1863 err("%s: videoStop not set", __func__);
1da177e4
LT
1864
1865 /* Set packet size to 0 */
1866 j = usb_set_interface(uvd->dev, uvd->iface, uvd->ifaceAltInactive);
1867 if (j < 0) {
4126a8f5 1868 err("%s: usb_set_interface() error %d.", __func__, j);
1da177e4
LT
1869 uvd->last_error = j;
1870 }
1871 }
1872}
1873
1874/*
1875 * usbvideo_NewFrame()
1876 *
1877 * History:
1878 * 29-Mar-00 Added copying of previous frame into the current one.
1879 * 6-Aug-00 Added model 3 video sizes, removed redundant width, height.
1880 */
1881static int usbvideo_NewFrame(struct uvd *uvd, int framenum)
1882{
1883 struct usbvideo_frame *frame;
1884 int n;
1885
1886 if (uvd->debug > 1)
a482f327
GKH
1887 dev_info(&uvd->dev->dev, "usbvideo_NewFrame($%p,%d.)\n", uvd,
1888 framenum);
1da177e4
LT
1889
1890 /* If we're not grabbing a frame right now and the other frame is */
1891 /* ready to be grabbed into, then use it instead */
1892 if (uvd->curframe != -1)
1893 return 0;
1894
1895 /* If necessary we adjust picture settings between frames */
1896 if (!uvd->settingsAdjusted) {
1897 if (VALID_CALLBACK(uvd, adjustPicture))
1898 GET_CALLBACK(uvd, adjustPicture)(uvd);
1899 uvd->settingsAdjusted = 1;
1900 }
1901
1902 n = (framenum + 1) % USBVIDEO_NUMFRAMES;
1903 if (uvd->frame[n].frameState == FrameState_Ready)
1904 framenum = n;
1905
1906 frame = &uvd->frame[framenum];
1907
1908 frame->frameState = FrameState_Grabbing;
1909 frame->scanstate = ScanState_Scanning;
1910 frame->seqRead_Length = 0; /* Accumulated in xxx_parse_data() */
1911 frame->deinterlace = Deinterlace_None;
1912 frame->flags = 0; /* No flags yet, up to minidriver (or us) to set them */
1913 uvd->curframe = framenum;
1914
1915 /*
1916 * Normally we would want to copy previous frame into the current one
1917 * before we even start filling it with data; this allows us to stop
1918 * filling at any moment; top portion of the frame will be new and
1919 * bottom portion will stay as it was in previous frame. If we don't
1920 * do that then missing chunks of video stream will result in flickering
1921 * portions of old data whatever it was before.
1922 *
1923 * If we choose not to copy previous frame (to, for example, save few
1924 * bus cycles - the frame can be pretty large!) then we have an option
1925 * to clear the frame before using. If we experience losses in this
1926 * mode then missing picture will be black (no flickering).
1927 *
1928 * Finally, if user chooses not to clean the current frame before
1929 * filling it with data then the old data will be visible if we fail
1930 * to refill entire frame with new data.
1931 */
1932 if (!(uvd->flags & FLAGS_SEPARATE_FRAMES)) {
1933 /* This copies previous frame into this one to mask losses */
1934 int prev = (framenum - 1 + USBVIDEO_NUMFRAMES) % USBVIDEO_NUMFRAMES;
1935 memmove(frame->data, uvd->frame[prev].data, uvd->max_frame_size);
1936 } else {
1937 if (uvd->flags & FLAGS_CLEAN_FRAMES) {
1938 /* This provides a "clean" frame but slows things down */
1939 memset(frame->data, 0, uvd->max_frame_size);
1940 }
1941 }
1942 return 0;
1943}
1944
1945/*
1946 * usbvideo_CollectRawData()
1947 *
1948 * This procedure can be used instead of 'processData' callback if you
1949 * only want to dump the raw data from the camera into the output
1950 * device (frame buffer). You can look at it with V4L client, but the
1951 * image will be unwatchable. The main purpose of this code and of the
1952 * mode FLAGS_NO_DECODING is debugging and capturing of datastreams from
1953 * new, unknown cameras. This procedure will be automatically invoked
1954 * instead of the specified callback handler when uvd->flags has bit
1955 * FLAGS_NO_DECODING set. Therefore, any regular build of any driver
1956 * based on usbvideo can use this feature at any time.
1957 */
1958static void usbvideo_CollectRawData(struct uvd *uvd, struct usbvideo_frame *frame)
1959{
1960 int n;
1961
1962 assert(uvd != NULL);
1963 assert(frame != NULL);
1964
1965 /* Try to move data from queue into frame buffer */
1966 n = RingQueue_GetLength(&uvd->dp);
1967 if (n > 0) {
1968 int m;
1969 /* See how much space we have left */
1970 m = uvd->max_frame_size - frame->seqRead_Length;
1971 if (n > m)
1972 n = m;
1973 /* Now move that much data into frame buffer */
1974 RingQueue_Dequeue(
1975 &uvd->dp,
1976 frame->data + frame->seqRead_Length,
1977 m);
1978 frame->seqRead_Length += m;
1979 }
1980 /* See if we filled the frame */
1981 if (frame->seqRead_Length >= uvd->max_frame_size) {
1982 frame->frameState = FrameState_Done;
1983 uvd->curframe = -1;
1984 uvd->stats.frame_num++;
1985 }
1986}
1987
1988static int usbvideo_GetFrame(struct uvd *uvd, int frameNum)
1989{
1990 struct usbvideo_frame *frame = &uvd->frame[frameNum];
1991
1992 if (uvd->debug >= 2)
a482f327
GKH
1993 dev_info(&uvd->dev->dev, "%s($%p,%d.)\n", __func__, uvd,
1994 frameNum);
1da177e4
LT
1995
1996 switch (frame->frameState) {
d56410e0 1997 case FrameState_Unused:
1da177e4 1998 if (uvd->debug >= 2)
a482f327
GKH
1999 dev_info(&uvd->dev->dev, "%s: FrameState_Unused\n",
2000 __func__);
1da177e4 2001 return -EINVAL;
d56410e0
MCC
2002 case FrameState_Ready:
2003 case FrameState_Grabbing:
2004 case FrameState_Error:
2005 {
1da177e4
LT
2006 int ntries, signalPending;
2007 redo:
2008 if (!CAMERA_IS_OPERATIONAL(uvd)) {
2009 if (uvd->debug >= 2)
a482f327
GKH
2010 dev_info(&uvd->dev->dev,
2011 "%s: Camera is not operational (1)\n",
2012 __func__);
1da177e4
LT
2013 return -EIO;
2014 }
d56410e0 2015 ntries = 0;
1da177e4
LT
2016 do {
2017 RingQueue_InterruptibleSleepOn(&uvd->dp);
2018 signalPending = signal_pending(current);
2019 if (!CAMERA_IS_OPERATIONAL(uvd)) {
2020 if (uvd->debug >= 2)
a482f327
GKH
2021 dev_info(&uvd->dev->dev,
2022 "%s: Camera is not "
2023 "operational (2)\n", __func__);
1da177e4
LT
2024 return -EIO;
2025 }
2026 assert(uvd->fbuf != NULL);
2027 if (signalPending) {
2028 if (uvd->debug >= 2)
a482f327
GKH
2029 dev_info(&uvd->dev->dev,
2030 "%s: Signal=$%08x\n", __func__,
2031 signalPending);
1da177e4
LT
2032 if (uvd->flags & FLAGS_RETRY_VIDIOCSYNC) {
2033 usbvideo_TestPattern(uvd, 1, 0);
2034 uvd->curframe = -1;
2035 uvd->stats.frame_num++;
2036 if (uvd->debug >= 2)
a482f327
GKH
2037 dev_info(&uvd->dev->dev,
2038 "%s: Forced test "
2039 "pattern screen\n",
2040 __func__);
1da177e4
LT
2041 return 0;
2042 } else {
2043 /* Standard answer: Interrupted! */
2044 if (uvd->debug >= 2)
a482f327
GKH
2045 dev_info(&uvd->dev->dev,
2046 "%s: Interrupted!\n",
2047 __func__);
1da177e4
LT
2048 return -EINTR;
2049 }
2050 } else {
2051 /* No signals - we just got new data in dp queue */
2052 if (uvd->flags & FLAGS_NO_DECODING)
2053 usbvideo_CollectRawData(uvd, frame);
2054 else if (VALID_CALLBACK(uvd, processData))
2055 GET_CALLBACK(uvd, processData)(uvd, frame);
d56410e0 2056 else
4126a8f5 2057 err("%s: processData not set", __func__);
1da177e4
LT
2058 }
2059 } while (frame->frameState == FrameState_Grabbing);
2060 if (uvd->debug >= 2) {
a482f327
GKH
2061 dev_info(&uvd->dev->dev,
2062 "%s: Grabbing done; state=%d. (%lu. bytes)\n",
2063 __func__, frame->frameState,
2064 frame->seqRead_Length);
1da177e4
LT
2065 }
2066 if (frame->frameState == FrameState_Error) {
2067 int ret = usbvideo_NewFrame(uvd, frameNum);
2068 if (ret < 0) {
4126a8f5 2069 err("%s: usbvideo_NewFrame() failed (%d.)", __func__, ret);
1da177e4
LT
2070 return ret;
2071 }
2072 goto redo;
2073 }
2074 /* Note that we fall through to meet our destiny below */
d56410e0
MCC
2075 }
2076 case FrameState_Done:
1da177e4
LT
2077 /*
2078 * Do all necessary postprocessing of data prepared in
2079 * "interrupt" code and the collecting code above. The
2080 * frame gets marked as FrameState_Done by queue parsing code.
2081 * This status means that we collected enough data and
2082 * most likely processed it as we went through. However
2083 * the data may need postprocessing, such as deinterlacing
2084 * or picture adjustments implemented in software (horror!)
2085 *
2086 * As soon as the frame becomes "final" it gets promoted to
2087 * FrameState_Done_Hold status where it will remain until the
2088 * caller consumed all the video data from the frame. Then
2089 * the empty shell of ex-frame is thrown out for dogs to eat.
2090 * But we, worried about pets, will recycle the frame!
2091 */
2092 uvd->stats.frame_num++;
2093 if ((uvd->flags & FLAGS_NO_DECODING) == 0) {
2094 if (VALID_CALLBACK(uvd, postProcess))
2095 GET_CALLBACK(uvd, postProcess)(uvd, frame);
2096 if (frame->flags & USBVIDEO_FRAME_FLAG_SOFTWARE_CONTRAST)
2097 usbvideo_SoftwareContrastAdjustment(uvd, frame);
2098 }
2099 frame->frameState = FrameState_Done_Hold;
2100 if (uvd->debug >= 2)
a482f327
GKH
2101 dev_info(&uvd->dev->dev,
2102 "%s: Entered FrameState_Done_Hold state.\n",
2103 __func__);
1da177e4
LT
2104 return 0;
2105
2106 case FrameState_Done_Hold:
2107 /*
2108 * We stay in this state indefinitely until someone external,
2109 * like ioctl() or read() call finishes digesting the frame
2110 * data. Then it will mark the frame as FrameState_Unused and
2111 * it will be released back into the wild to roam freely.
2112 */
2113 if (uvd->debug >= 2)
a482f327
GKH
2114 dev_info(&uvd->dev->dev,
2115 "%s: FrameState_Done_Hold state.\n",
2116 __func__);
1da177e4
LT
2117 return 0;
2118 }
2119
2120 /* Catch-all for other cases. We shall not be here. */
4126a8f5 2121 err("%s: Invalid state %d.", __func__, frame->frameState);
1da177e4
LT
2122 frame->frameState = FrameState_Unused;
2123 return 0;
2124}
2125
2126/*
2127 * usbvideo_DeinterlaceFrame()
2128 *
2129 * This procedure deinterlaces the given frame. Some cameras produce
2130 * only half of scanlines - sometimes only even lines, sometimes only
2131 * odd lines. The deinterlacing method is stored in frame->deinterlace
2132 * variable.
2133 *
2134 * Here we scan the frame vertically and replace missing scanlines with
2135 * average between surrounding ones - before and after. If we have no
2136 * line above then we just copy next line. Similarly, if we need to
2137 * create a last line then preceding line is used.
2138 */
2139void usbvideo_DeinterlaceFrame(struct uvd *uvd, struct usbvideo_frame *frame)
2140{
2141 if ((uvd == NULL) || (frame == NULL))
2142 return;
2143
2144 if ((frame->deinterlace == Deinterlace_FillEvenLines) ||
2145 (frame->deinterlace == Deinterlace_FillOddLines))
2146 {
2147 const int v4l_linesize = VIDEOSIZE_X(frame->request) * V4L_BYTES_PER_PIXEL;
2148 int i = (frame->deinterlace == Deinterlace_FillEvenLines) ? 0 : 1;
2149
2150 for (; i < VIDEOSIZE_Y(frame->request); i += 2) {
2151 const unsigned char *fs1, *fs2;
2152 unsigned char *fd;
2153 int ip, in, j; /* Previous and next lines */
2154
2155 /*
2156 * Need to average lines before and after 'i'.
2157 * If we go out of bounds seeking those lines then
2158 * we point back to existing line.
2159 */
2160 ip = i - 1; /* First, get rough numbers */
2161 in = i + 1;
2162
2163 /* Now validate */
2164 if (ip < 0)
2165 ip = in;
2166 if (in >= VIDEOSIZE_Y(frame->request))
2167 in = ip;
2168
2169 /* Sanity check */
2170 if ((ip < 0) || (in < 0) ||
2171 (ip >= VIDEOSIZE_Y(frame->request)) ||
2172 (in >= VIDEOSIZE_Y(frame->request)))
2173 {
2174 err("Error: ip=%d. in=%d. req.height=%ld.",
2175 ip, in, VIDEOSIZE_Y(frame->request));
2176 break;
2177 }
2178
2179 /* Now we need to average lines 'ip' and 'in' to produce line 'i' */
2180 fs1 = frame->data + (v4l_linesize * ip);
2181 fs2 = frame->data + (v4l_linesize * in);
2182 fd = frame->data + (v4l_linesize * i);
2183
2184 /* Average lines around destination */
2185 for (j=0; j < v4l_linesize; j++) {
2186 fd[j] = (unsigned char)((((unsigned) fs1[j]) +
2187 ((unsigned)fs2[j])) >> 1);
2188 }
2189 }
2190 }
2191
2192 /* Optionally display statistics on the screen */
2193 if (uvd->flags & FLAGS_OVERLAY_STATS)
2194 usbvideo_OverlayStats(uvd, frame);
2195}
2196
2197EXPORT_SYMBOL(usbvideo_DeinterlaceFrame);
2198
2199/*
2200 * usbvideo_SoftwareContrastAdjustment()
2201 *
2202 * This code adjusts the contrast of the frame, assuming RGB24 format.
2203 * As most software image processing, this job is CPU-intensive.
2204 * Get a camera that supports hardware adjustment!
2205 *
2206 * History:
2207 * 09-Feb-2001 Created.
2208 */
d56410e0 2209static void usbvideo_SoftwareContrastAdjustment(struct uvd *uvd,
1da177e4
LT
2210 struct usbvideo_frame *frame)
2211{
2212 int i, j, v4l_linesize;
2213 signed long adj;
2214 const int ccm = 128; /* Color correction median - see below */
2215
2216 if ((uvd == NULL) || (frame == NULL)) {
4126a8f5 2217 err("%s: Illegal call.", __func__);
1da177e4
LT
2218 return;
2219 }
2220 adj = (uvd->vpic.contrast - 0x8000) >> 8; /* -128..+127 = -ccm..+(ccm-1)*/
2221 RESTRICT_TO_RANGE(adj, -ccm, ccm+1);
2222 if (adj == 0) {
2223 /* In rare case of no adjustment */
2224 return;
2225 }
2226 v4l_linesize = VIDEOSIZE_X(frame->request) * V4L_BYTES_PER_PIXEL;
2227 for (i=0; i < VIDEOSIZE_Y(frame->request); i++) {
2228 unsigned char *fd = frame->data + (v4l_linesize * i);
2229 for (j=0; j < v4l_linesize; j++) {
2230 signed long v = (signed long) fd[j];
2231 /* Magnify up to 2 times, reduce down to zero */
2232 v = 128 + ((ccm + adj) * (v - 128)) / ccm;
2233 RESTRICT_TO_RANGE(v, 0, 0xFF); /* Must flatten tails */
2234 fd[j] = (unsigned char) v;
2235 }
2236 }
2237}
2238
2239MODULE_LICENSE("GPL");
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