bd1519a4ecb474ba62dbc3bb55ff49d922e0f727
[deliverable/linux.git] / drivers / media / video / pwc / pwc-if.c
1 /* Linux driver for Philips webcam
2 USB and Video4Linux interface part.
3 (C) 1999-2004 Nemosoft Unv.
4 (C) 2004-2006 Luc Saillard (luc@saillard.org)
5
6 NOTE: this version of pwc is an unofficial (modified) release of pwc & pcwx
7 driver and thus may have bugs that are not present in the original version.
8 Please send bug reports and support requests to <luc@saillard.org>.
9 The decompression routines have been implemented by reverse-engineering the
10 Nemosoft binary pwcx module. Caveat emptor.
11
12 This program is free software; you can redistribute it and/or modify
13 it under the terms of the GNU General Public License as published by
14 the Free Software Foundation; either version 2 of the License, or
15 (at your option) any later version.
16
17 This program is distributed in the hope that it will be useful,
18 but WITHOUT ANY WARRANTY; without even the implied warranty of
19 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
20 GNU General Public License for more details.
21
22 You should have received a copy of the GNU General Public License
23 along with this program; if not, write to the Free Software
24 Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
25
26 */
27
28 /*
29 This code forms the interface between the USB layers and the Philips
30 specific stuff. Some adanved stuff of the driver falls under an
31 NDA, signed between me and Philips B.V., Eindhoven, the Netherlands, and
32 is thus not distributed in source form. The binary pwcx.o module
33 contains the code that falls under the NDA.
34
35 In case you're wondering: 'pwc' stands for "Philips WebCam", but
36 I really didn't want to type 'philips_web_cam' every time (I'm lazy as
37 any Linux kernel hacker, but I don't like uncomprehensible abbreviations
38 without explanation).
39
40 Oh yes, convention: to disctinguish between all the various pointers to
41 device-structures, I use these names for the pointer variables:
42 udev: struct usb_device *
43 vdev: struct video_device *
44 pdev: struct pwc_devive *
45 */
46
47 /* Contributors:
48 - Alvarado: adding whitebalance code
49 - Alistar Moire: QuickCam 3000 Pro device/product ID
50 - Tony Hoyle: Creative Labs Webcam 5 device/product ID
51 - Mark Burazin: solving hang in VIDIOCSYNC when camera gets unplugged
52 - Jk Fang: Sotec Afina Eye ID
53 - Xavier Roche: QuickCam Pro 4000 ID
54 - Jens Knudsen: QuickCam Zoom ID
55 - J. Debert: QuickCam for Notebooks ID
56 - Pham Thanh Nam: webcam snapshot button as an event input device
57 */
58
59 #include <linux/errno.h>
60 #include <linux/init.h>
61 #include <linux/mm.h>
62 #include <linux/module.h>
63 #include <linux/poll.h>
64 #include <linux/slab.h>
65 #ifdef CONFIG_USB_PWC_INPUT_EVDEV
66 #include <linux/usb/input.h>
67 #endif
68 #include <linux/vmalloc.h>
69 #include <asm/io.h>
70 #include <linux/kernel.h> /* simple_strtol() */
71
72 #include "pwc.h"
73 #include "pwc-kiara.h"
74 #include "pwc-timon.h"
75 #include "pwc-dec23.h"
76 #include "pwc-dec1.h"
77 #include "pwc-uncompress.h"
78
79 /* Function prototypes and driver templates */
80
81 /* hotplug device table support */
82 static const struct usb_device_id pwc_device_table [] = {
83 { USB_DEVICE(0x0471, 0x0302) }, /* Philips models */
84 { USB_DEVICE(0x0471, 0x0303) },
85 { USB_DEVICE(0x0471, 0x0304) },
86 { USB_DEVICE(0x0471, 0x0307) },
87 { USB_DEVICE(0x0471, 0x0308) },
88 { USB_DEVICE(0x0471, 0x030C) },
89 { USB_DEVICE(0x0471, 0x0310) },
90 { USB_DEVICE(0x0471, 0x0311) }, /* Philips ToUcam PRO II */
91 { USB_DEVICE(0x0471, 0x0312) },
92 { USB_DEVICE(0x0471, 0x0313) }, /* the 'new' 720K */
93 { USB_DEVICE(0x0471, 0x0329) }, /* Philips SPC 900NC PC Camera */
94 { USB_DEVICE(0x069A, 0x0001) }, /* Askey */
95 { USB_DEVICE(0x046D, 0x08B0) }, /* Logitech QuickCam Pro 3000 */
96 { USB_DEVICE(0x046D, 0x08B1) }, /* Logitech QuickCam Notebook Pro */
97 { USB_DEVICE(0x046D, 0x08B2) }, /* Logitech QuickCam Pro 4000 */
98 { USB_DEVICE(0x046D, 0x08B3) }, /* Logitech QuickCam Zoom (old model) */
99 { USB_DEVICE(0x046D, 0x08B4) }, /* Logitech QuickCam Zoom (new model) */
100 { USB_DEVICE(0x046D, 0x08B5) }, /* Logitech QuickCam Orbit/Sphere */
101 { USB_DEVICE(0x046D, 0x08B6) }, /* Cisco VT Camera */
102 { USB_DEVICE(0x046D, 0x08B7) }, /* Logitech ViewPort AV 100 */
103 { USB_DEVICE(0x046D, 0x08B8) }, /* Logitech (reserved) */
104 { USB_DEVICE(0x055D, 0x9000) }, /* Samsung MPC-C10 */
105 { USB_DEVICE(0x055D, 0x9001) }, /* Samsung MPC-C30 */
106 { USB_DEVICE(0x055D, 0x9002) }, /* Samsung SNC-35E (Ver3.0) */
107 { USB_DEVICE(0x041E, 0x400C) }, /* Creative Webcam 5 */
108 { USB_DEVICE(0x041E, 0x4011) }, /* Creative Webcam Pro Ex */
109 { USB_DEVICE(0x04CC, 0x8116) }, /* Afina Eye */
110 { USB_DEVICE(0x06BE, 0x8116) }, /* new Afina Eye */
111 { USB_DEVICE(0x0d81, 0x1910) }, /* Visionite */
112 { USB_DEVICE(0x0d81, 0x1900) },
113 { }
114 };
115 MODULE_DEVICE_TABLE(usb, pwc_device_table);
116
117 static int usb_pwc_probe(struct usb_interface *intf, const struct usb_device_id *id);
118 static void usb_pwc_disconnect(struct usb_interface *intf);
119
120 static struct usb_driver pwc_driver = {
121 .name = "Philips webcam", /* name */
122 .id_table = pwc_device_table,
123 .probe = usb_pwc_probe, /* probe() */
124 .disconnect = usb_pwc_disconnect, /* disconnect() */
125 };
126
127 #define MAX_DEV_HINTS 20
128 #define MAX_ISOC_ERRORS 20
129
130 static int default_size = PSZ_QCIF;
131 static int default_fps = 10;
132 static int default_fbufs = 3; /* Default number of frame buffers */
133 int pwc_mbufs = 2; /* Default number of mmap() buffers */
134 #ifdef CONFIG_USB_PWC_DEBUG
135 int pwc_trace = PWC_DEBUG_LEVEL;
136 #endif
137 static int power_save;
138 static int led_on = 100, led_off; /* defaults to LED that is on while in use */
139 static int pwc_preferred_compression = 1; /* 0..3 = uncompressed..high */
140 static struct {
141 int type;
142 char serial_number[30];
143 int device_node;
144 struct pwc_device *pdev;
145 } device_hint[MAX_DEV_HINTS];
146
147 /***/
148
149 static int pwc_video_open(struct file *file);
150 static int pwc_video_close(struct file *file);
151 static ssize_t pwc_video_read(struct file *file, char __user *buf,
152 size_t count, loff_t *ppos);
153 static unsigned int pwc_video_poll(struct file *file, poll_table *wait);
154 static long pwc_video_ioctl(struct file *file,
155 unsigned int ioctlnr, unsigned long arg);
156 static int pwc_video_mmap(struct file *file, struct vm_area_struct *vma);
157
158 static const struct v4l2_file_operations pwc_fops = {
159 .owner = THIS_MODULE,
160 .open = pwc_video_open,
161 .release = pwc_video_close,
162 .read = pwc_video_read,
163 .poll = pwc_video_poll,
164 .mmap = pwc_video_mmap,
165 .unlocked_ioctl = pwc_video_ioctl,
166 };
167 static struct video_device pwc_template = {
168 .name = "Philips Webcam", /* Filled in later */
169 .release = video_device_release,
170 .fops = &pwc_fops,
171 };
172
173 /***************************************************************************/
174
175 /* Okay, this is some magic that I worked out and the reasoning behind it...
176
177 The biggest problem with any USB device is of course: "what to do
178 when the user unplugs the device while it is in use by an application?"
179 We have several options:
180 1) Curse them with the 7 plagues when they do (requires divine intervention)
181 2) Tell them not to (won't work: they'll do it anyway)
182 3) Oops the kernel (this will have a negative effect on a user's uptime)
183 4) Do something sensible.
184
185 Of course, we go for option 4.
186
187 It happens that this device will be linked to two times, once from
188 usb_device and once from the video_device in their respective 'private'
189 pointers. This is done when the device is probed() and all initialization
190 succeeded. The pwc_device struct links back to both structures.
191
192 When a device is unplugged while in use it will be removed from the
193 list of known USB devices; I also de-register it as a V4L device, but
194 unfortunately I can't free the memory since the struct is still in use
195 by the file descriptor. This free-ing is then deferend until the first
196 opportunity. Crude, but it works.
197
198 A small 'advantage' is that if a user unplugs the cam and plugs it back
199 in, it should get assigned the same video device minor, but unfortunately
200 it's non-trivial to re-link the cam back to the video device... (that
201 would surely be magic! :))
202 */
203
204 /***************************************************************************/
205 /* Private functions */
206
207 /* Here we want the physical address of the memory.
208 * This is used when initializing the contents of the area.
209 */
210
211
212
213 static void *pwc_rvmalloc(unsigned long size)
214 {
215 void * mem;
216 unsigned long adr;
217
218 mem=vmalloc_32(size);
219 if (!mem)
220 return NULL;
221
222 memset(mem, 0, size); /* Clear the ram out, no junk to the user */
223 adr=(unsigned long) mem;
224 while (size > 0)
225 {
226 SetPageReserved(vmalloc_to_page((void *)adr));
227 adr += PAGE_SIZE;
228 size -= PAGE_SIZE;
229 }
230 return mem;
231 }
232
233 static void pwc_rvfree(void * mem, unsigned long size)
234 {
235 unsigned long adr;
236
237 if (!mem)
238 return;
239
240 adr=(unsigned long) mem;
241 while ((long) size > 0)
242 {
243 ClearPageReserved(vmalloc_to_page((void *)adr));
244 adr += PAGE_SIZE;
245 size -= PAGE_SIZE;
246 }
247 vfree(mem);
248 }
249
250
251
252
253 static int pwc_allocate_buffers(struct pwc_device *pdev)
254 {
255 int i, err;
256 void *kbuf;
257
258 PWC_DEBUG_MEMORY(">> pwc_allocate_buffers(pdev = 0x%p)\n", pdev);
259
260 if (pdev == NULL)
261 return -ENXIO;
262
263 /* Allocate Isochronuous pipe buffers */
264 for (i = 0; i < MAX_ISO_BUFS; i++) {
265 if (pdev->sbuf[i].data == NULL) {
266 kbuf = kzalloc(ISO_BUFFER_SIZE, GFP_KERNEL);
267 if (kbuf == NULL) {
268 PWC_ERROR("Failed to allocate iso buffer %d.\n", i);
269 return -ENOMEM;
270 }
271 PWC_DEBUG_MEMORY("Allocated iso buffer at %p.\n", kbuf);
272 pdev->sbuf[i].data = kbuf;
273 }
274 }
275
276 /* Allocate frame buffer structure */
277 if (pdev->fbuf == NULL) {
278 kbuf = kzalloc(default_fbufs * sizeof(struct pwc_frame_buf), GFP_KERNEL);
279 if (kbuf == NULL) {
280 PWC_ERROR("Failed to allocate frame buffer structure.\n");
281 return -ENOMEM;
282 }
283 PWC_DEBUG_MEMORY("Allocated frame buffer structure at %p.\n", kbuf);
284 pdev->fbuf = kbuf;
285 }
286
287 /* create frame buffers, and make circular ring */
288 for (i = 0; i < default_fbufs; i++) {
289 if (pdev->fbuf[i].data == NULL) {
290 kbuf = vzalloc(PWC_FRAME_SIZE); /* need vmalloc since frame buffer > 128K */
291 if (kbuf == NULL) {
292 PWC_ERROR("Failed to allocate frame buffer %d.\n", i);
293 return -ENOMEM;
294 }
295 PWC_DEBUG_MEMORY("Allocated frame buffer %d at %p.\n", i, kbuf);
296 pdev->fbuf[i].data = kbuf;
297 }
298 }
299
300 /* Allocate decompressor table space */
301 if (DEVICE_USE_CODEC1(pdev->type))
302 err = pwc_dec1_alloc(pdev);
303 else
304 err = pwc_dec23_alloc(pdev);
305
306 if (err) {
307 PWC_ERROR("Failed to allocate decompress table.\n");
308 return err;
309 }
310
311 /* Allocate image buffer; double buffer for mmap() */
312 kbuf = pwc_rvmalloc(pwc_mbufs * pdev->len_per_image);
313 if (kbuf == NULL) {
314 PWC_ERROR("Failed to allocate image buffer(s). needed (%d)\n",
315 pwc_mbufs * pdev->len_per_image);
316 return -ENOMEM;
317 }
318 PWC_DEBUG_MEMORY("Allocated image buffer at %p.\n", kbuf);
319 pdev->image_data = kbuf;
320 for (i = 0; i < pwc_mbufs; i++) {
321 pdev->images[i].offset = i * pdev->len_per_image;
322 pdev->images[i].vma_use_count = 0;
323 }
324 for (; i < MAX_IMAGES; i++) {
325 pdev->images[i].offset = 0;
326 }
327
328 kbuf = NULL;
329
330 PWC_DEBUG_MEMORY("<< pwc_allocate_buffers()\n");
331 return 0;
332 }
333
334 static void pwc_free_buffers(struct pwc_device *pdev)
335 {
336 int i;
337
338 PWC_DEBUG_MEMORY("Entering free_buffers(%p).\n", pdev);
339
340 if (pdev == NULL)
341 return;
342 /* Release Iso-pipe buffers */
343 for (i = 0; i < MAX_ISO_BUFS; i++)
344 if (pdev->sbuf[i].data != NULL) {
345 PWC_DEBUG_MEMORY("Freeing ISO buffer at %p.\n", pdev->sbuf[i].data);
346 kfree(pdev->sbuf[i].data);
347 pdev->sbuf[i].data = NULL;
348 }
349
350 /* The same for frame buffers */
351 if (pdev->fbuf != NULL) {
352 for (i = 0; i < default_fbufs; i++) {
353 if (pdev->fbuf[i].data != NULL) {
354 PWC_DEBUG_MEMORY("Freeing frame buffer %d at %p.\n", i, pdev->fbuf[i].data);
355 vfree(pdev->fbuf[i].data);
356 pdev->fbuf[i].data = NULL;
357 }
358 }
359 kfree(pdev->fbuf);
360 pdev->fbuf = NULL;
361 }
362
363 /* Intermediate decompression buffer & tables */
364 if (pdev->decompress_data != NULL) {
365 PWC_DEBUG_MEMORY("Freeing decompression buffer at %p.\n", pdev->decompress_data);
366 kfree(pdev->decompress_data);
367 pdev->decompress_data = NULL;
368 }
369
370 /* Release image buffers */
371 if (pdev->image_data != NULL) {
372 PWC_DEBUG_MEMORY("Freeing image buffer at %p.\n", pdev->image_data);
373 pwc_rvfree(pdev->image_data, pwc_mbufs * pdev->len_per_image);
374 }
375 pdev->image_data = NULL;
376
377 PWC_DEBUG_MEMORY("Leaving free_buffers().\n");
378 }
379
380 /* The frame & image buffer mess.
381
382 Yes, this is a mess. Well, it used to be simple, but alas... In this
383 module, 3 buffers schemes are used to get the data from the USB bus to
384 the user program. The first scheme involves the ISO buffers (called thus
385 since they transport ISO data from the USB controller), and not really
386 interesting. Suffices to say the data from this buffer is quickly
387 gathered in an interrupt handler (pwc_isoc_handler) and placed into the
388 frame buffer.
389
390 The frame buffer is the second scheme, and is the central element here.
391 It collects the data from a single frame from the camera (hence, the
392 name). Frames are delimited by the USB camera with a short USB packet,
393 so that's easy to detect. The frame buffers form a list that is filled
394 by the camera+USB controller and drained by the user process through
395 either read() or mmap().
396
397 The image buffer is the third scheme, in which frames are decompressed
398 and converted into planar format. For mmap() there is more than
399 one image buffer available.
400
401 The frame buffers provide the image buffering. In case the user process
402 is a bit slow, this introduces lag and some undesired side-effects.
403 The problem arises when the frame buffer is full. I used to drop the last
404 frame, which makes the data in the queue stale very quickly. But dropping
405 the frame at the head of the queue proved to be a litte bit more difficult.
406 I tried a circular linked scheme, but this introduced more problems than
407 it solved.
408
409 Because filling and draining are completely asynchronous processes, this
410 requires some fiddling with pointers and mutexes.
411
412 Eventually, I came up with a system with 2 lists: an 'empty' frame list
413 and a 'full' frame list:
414 * Initially, all frame buffers but one are on the 'empty' list; the one
415 remaining buffer is our initial fill frame.
416 * If a frame is needed for filling, we try to take it from the 'empty'
417 list, unless that list is empty, in which case we take the buffer at
418 the head of the 'full' list.
419 * When our fill buffer has been filled, it is appended to the 'full'
420 list.
421 * If a frame is needed by read() or mmap(), it is taken from the head of
422 the 'full' list, handled, and then appended to the 'empty' list. If no
423 buffer is present on the 'full' list, we wait.
424 The advantage is that the buffer that is currently being decompressed/
425 converted, is on neither list, and thus not in our way (any other scheme
426 I tried had the problem of old data lingering in the queue).
427
428 Whatever strategy you choose, it always remains a tradeoff: with more
429 frame buffers the chances of a missed frame are reduced. On the other
430 hand, on slower machines it introduces lag because the queue will
431 always be full.
432 */
433
434 /**
435 \brief Find next frame buffer to fill. Take from empty or full list, whichever comes first.
436 */
437 static int pwc_next_fill_frame(struct pwc_device *pdev)
438 {
439 int ret;
440 unsigned long flags;
441
442 ret = 0;
443 spin_lock_irqsave(&pdev->ptrlock, flags);
444 if (pdev->fill_frame != NULL) {
445 /* append to 'full' list */
446 if (pdev->full_frames == NULL) {
447 pdev->full_frames = pdev->fill_frame;
448 pdev->full_frames_tail = pdev->full_frames;
449 }
450 else {
451 pdev->full_frames_tail->next = pdev->fill_frame;
452 pdev->full_frames_tail = pdev->fill_frame;
453 }
454 }
455 if (pdev->empty_frames != NULL) {
456 /* We have empty frames available. That's easy */
457 pdev->fill_frame = pdev->empty_frames;
458 pdev->empty_frames = pdev->empty_frames->next;
459 }
460 else {
461 /* Hmm. Take it from the full list */
462 /* sanity check */
463 if (pdev->full_frames == NULL) {
464 PWC_ERROR("Neither empty or full frames available!\n");
465 spin_unlock_irqrestore(&pdev->ptrlock, flags);
466 return -EINVAL;
467 }
468 pdev->fill_frame = pdev->full_frames;
469 pdev->full_frames = pdev->full_frames->next;
470 ret = 1;
471 }
472 pdev->fill_frame->next = NULL;
473 spin_unlock_irqrestore(&pdev->ptrlock, flags);
474 return ret;
475 }
476
477
478 /**
479 \brief Reset all buffers, pointers and lists, except for the image_used[] buffer.
480
481 If the image_used[] buffer is cleared too, mmap()/VIDIOCSYNC will run into trouble.
482 */
483 static void pwc_reset_buffers(struct pwc_device *pdev)
484 {
485 int i;
486 unsigned long flags;
487
488 PWC_DEBUG_MEMORY(">> %s __enter__\n", __func__);
489
490 spin_lock_irqsave(&pdev->ptrlock, flags);
491 pdev->full_frames = NULL;
492 pdev->full_frames_tail = NULL;
493 for (i = 0; i < default_fbufs; i++) {
494 pdev->fbuf[i].filled = 0;
495 if (i > 0)
496 pdev->fbuf[i].next = &pdev->fbuf[i - 1];
497 else
498 pdev->fbuf->next = NULL;
499 }
500 pdev->empty_frames = &pdev->fbuf[default_fbufs - 1];
501 pdev->empty_frames_tail = pdev->fbuf;
502 pdev->read_frame = NULL;
503 pdev->fill_frame = pdev->empty_frames;
504 pdev->empty_frames = pdev->empty_frames->next;
505
506 pdev->image_read_pos = 0;
507 pdev->fill_image = 0;
508 spin_unlock_irqrestore(&pdev->ptrlock, flags);
509
510 PWC_DEBUG_MEMORY("<< %s __leaving__\n", __func__);
511 }
512
513
514 /**
515 \brief Do all the handling for getting one frame: get pointer, decompress, advance pointers.
516 */
517 int pwc_handle_frame(struct pwc_device *pdev)
518 {
519 int ret = 0;
520 unsigned long flags;
521
522 spin_lock_irqsave(&pdev->ptrlock, flags);
523 /* First grab our read_frame; this is removed from all lists, so
524 we can release the lock after this without problems */
525 if (pdev->read_frame != NULL) {
526 /* This can't theoretically happen */
527 PWC_ERROR("Huh? Read frame still in use?\n");
528 spin_unlock_irqrestore(&pdev->ptrlock, flags);
529 return ret;
530 }
531
532
533 if (pdev->full_frames == NULL) {
534 PWC_ERROR("Woops. No frames ready.\n");
535 }
536 else {
537 pdev->read_frame = pdev->full_frames;
538 pdev->full_frames = pdev->full_frames->next;
539 pdev->read_frame->next = NULL;
540 }
541
542 if (pdev->read_frame != NULL) {
543 /* Decompression is a lengthy process, so it's outside of the lock.
544 This gives the isoc_handler the opportunity to fill more frames
545 in the mean time.
546 */
547 spin_unlock_irqrestore(&pdev->ptrlock, flags);
548 ret = pwc_decompress(pdev);
549 spin_lock_irqsave(&pdev->ptrlock, flags);
550
551 /* We're done with read_buffer, tack it to the end of the empty buffer list */
552 if (pdev->empty_frames == NULL) {
553 pdev->empty_frames = pdev->read_frame;
554 pdev->empty_frames_tail = pdev->empty_frames;
555 }
556 else {
557 pdev->empty_frames_tail->next = pdev->read_frame;
558 pdev->empty_frames_tail = pdev->read_frame;
559 }
560 pdev->read_frame = NULL;
561 }
562 spin_unlock_irqrestore(&pdev->ptrlock, flags);
563 return ret;
564 }
565
566 /**
567 \brief Advance pointers of image buffer (after each user request)
568 */
569 void pwc_next_image(struct pwc_device *pdev)
570 {
571 pdev->image_used[pdev->fill_image] = 0;
572 pdev->fill_image = (pdev->fill_image + 1) % pwc_mbufs;
573 }
574
575 /**
576 * Print debug information when a frame is discarded because all of our buffer
577 * is full
578 */
579 static void pwc_frame_dumped(struct pwc_device *pdev)
580 {
581 pdev->vframes_dumped++;
582 if (pdev->vframe_count < FRAME_LOWMARK)
583 return;
584
585 if (pdev->vframes_dumped < 20)
586 PWC_DEBUG_FLOW("Dumping frame %d\n", pdev->vframe_count);
587 else if (pdev->vframes_dumped == 20)
588 PWC_DEBUG_FLOW("Dumping frame %d (last message)\n",
589 pdev->vframe_count);
590 }
591
592 static void pwc_snapshot_button(struct pwc_device *pdev, int down)
593 {
594 if (down) {
595 PWC_TRACE("Snapshot button pressed.\n");
596 pdev->snapshot_button_status = 1;
597 } else {
598 PWC_TRACE("Snapshot button released.\n");
599 }
600
601 #ifdef CONFIG_USB_PWC_INPUT_EVDEV
602 if (pdev->button_dev) {
603 input_report_key(pdev->button_dev, KEY_CAMERA, down);
604 input_sync(pdev->button_dev);
605 }
606 #endif
607 }
608
609 static int pwc_rcv_short_packet(struct pwc_device *pdev, const struct pwc_frame_buf *fbuf)
610 {
611 int awake = 0;
612
613 /* The ToUCam Fun CMOS sensor causes the firmware to send 2 or 3 bogus
614 frames on the USB wire after an exposure change. This conditition is
615 however detected in the cam and a bit is set in the header.
616 */
617 if (pdev->type == 730) {
618 unsigned char *ptr = (unsigned char *)fbuf->data;
619
620 if (ptr[1] == 1 && ptr[0] & 0x10) {
621 PWC_TRACE("Hyundai CMOS sensor bug. Dropping frame.\n");
622 pdev->drop_frames += 2;
623 pdev->vframes_error++;
624 }
625 if ((ptr[0] ^ pdev->vmirror) & 0x01) {
626 pwc_snapshot_button(pdev, ptr[0] & 0x01);
627 }
628 if ((ptr[0] ^ pdev->vmirror) & 0x02) {
629 if (ptr[0] & 0x02)
630 PWC_TRACE("Image is mirrored.\n");
631 else
632 PWC_TRACE("Image is normal.\n");
633 }
634 pdev->vmirror = ptr[0] & 0x03;
635 /* Sometimes the trailer of the 730 is still sent as a 4 byte packet
636 after a short frame; this condition is filtered out specifically. A 4 byte
637 frame doesn't make sense anyway.
638 So we get either this sequence:
639 drop_bit set -> 4 byte frame -> short frame -> good frame
640 Or this one:
641 drop_bit set -> short frame -> good frame
642 So we drop either 3 or 2 frames in all!
643 */
644 if (fbuf->filled == 4)
645 pdev->drop_frames++;
646 }
647 else if (pdev->type == 740 || pdev->type == 720) {
648 unsigned char *ptr = (unsigned char *)fbuf->data;
649 if ((ptr[0] ^ pdev->vmirror) & 0x01) {
650 pwc_snapshot_button(pdev, ptr[0] & 0x01);
651 }
652 pdev->vmirror = ptr[0] & 0x03;
653 }
654
655 /* In case we were instructed to drop the frame, do so silently.
656 The buffer pointers are not updated either (but the counters are reset below).
657 */
658 if (pdev->drop_frames > 0)
659 pdev->drop_frames--;
660 else {
661 /* Check for underflow first */
662 if (fbuf->filled < pdev->frame_total_size) {
663 PWC_DEBUG_FLOW("Frame buffer underflow (%d bytes);"
664 " discarded.\n", fbuf->filled);
665 pdev->vframes_error++;
666 }
667 else {
668 /* Send only once per EOF */
669 awake = 1; /* delay wake_ups */
670
671 /* Find our next frame to fill. This will always succeed, since we
672 * nick a frame from either empty or full list, but if we had to
673 * take it from the full list, it means a frame got dropped.
674 */
675 if (pwc_next_fill_frame(pdev))
676 pwc_frame_dumped(pdev);
677
678 }
679 } /* !drop_frames */
680 pdev->vframe_count++;
681 return awake;
682 }
683
684 /* This gets called for the Isochronous pipe (video). This is done in
685 * interrupt time, so it has to be fast, not crash, and not stall. Neat.
686 */
687 static void pwc_isoc_handler(struct urb *urb)
688 {
689 struct pwc_device *pdev;
690 int i, fst, flen;
691 int awake;
692 struct pwc_frame_buf *fbuf;
693 unsigned char *fillptr = NULL, *iso_buf = NULL;
694
695 awake = 0;
696 pdev = (struct pwc_device *)urb->context;
697 if (pdev == NULL) {
698 PWC_ERROR("isoc_handler() called with NULL device?!\n");
699 return;
700 }
701
702 if (urb->status == -ENOENT || urb->status == -ECONNRESET) {
703 PWC_DEBUG_OPEN("URB (%p) unlinked %ssynchronuously.\n", urb, urb->status == -ENOENT ? "" : "a");
704 return;
705 }
706 if (urb->status != -EINPROGRESS && urb->status != 0) {
707 const char *errmsg;
708
709 errmsg = "Unknown";
710 switch(urb->status) {
711 case -ENOSR: errmsg = "Buffer error (overrun)"; break;
712 case -EPIPE: errmsg = "Stalled (device not responding)"; break;
713 case -EOVERFLOW: errmsg = "Babble (bad cable?)"; break;
714 case -EPROTO: errmsg = "Bit-stuff error (bad cable?)"; break;
715 case -EILSEQ: errmsg = "CRC/Timeout (could be anything)"; break;
716 case -ETIME: errmsg = "Device does not respond"; break;
717 }
718 PWC_DEBUG_FLOW("pwc_isoc_handler() called with status %d [%s].\n", urb->status, errmsg);
719 /* Give up after a number of contiguous errors on the USB bus.
720 Appearantly something is wrong so we simulate an unplug event.
721 */
722 if (++pdev->visoc_errors > MAX_ISOC_ERRORS)
723 {
724 PWC_INFO("Too many ISOC errors, bailing out.\n");
725 pdev->error_status = EIO;
726 awake = 1;
727 wake_up_interruptible(&pdev->frameq);
728 }
729 goto handler_end; // ugly, but practical
730 }
731
732 fbuf = pdev->fill_frame;
733 if (fbuf == NULL) {
734 PWC_ERROR("pwc_isoc_handler without valid fill frame.\n");
735 awake = 1;
736 goto handler_end;
737 }
738 else {
739 fillptr = fbuf->data + fbuf->filled;
740 }
741
742 /* Reset ISOC error counter. We did get here, after all. */
743 pdev->visoc_errors = 0;
744
745 /* vsync: 0 = don't copy data
746 1 = sync-hunt
747 2 = synched
748 */
749 /* Compact data */
750 for (i = 0; i < urb->number_of_packets; i++) {
751 fst = urb->iso_frame_desc[i].status;
752 flen = urb->iso_frame_desc[i].actual_length;
753 iso_buf = urb->transfer_buffer + urb->iso_frame_desc[i].offset;
754 if (fst == 0) {
755 if (flen > 0) { /* if valid data... */
756 if (pdev->vsync > 0) { /* ...and we are not sync-hunting... */
757 pdev->vsync = 2;
758
759 /* ...copy data to frame buffer, if possible */
760 if (flen + fbuf->filled > pdev->frame_total_size) {
761 PWC_DEBUG_FLOW("Frame buffer overflow (flen = %d, frame_total_size = %d).\n", flen, pdev->frame_total_size);
762 pdev->vsync = 0; /* Hmm, let's wait for an EOF (end-of-frame) */
763 pdev->vframes_error++;
764 }
765 else {
766 memmove(fillptr, iso_buf, flen);
767 fillptr += flen;
768 }
769 }
770 fbuf->filled += flen;
771 } /* ..flen > 0 */
772
773 if (flen < pdev->vlast_packet_size) {
774 /* Shorter packet... We probably have the end of an image-frame;
775 wake up read() process and let select()/poll() do something.
776 Decompression is done in user time over there.
777 */
778 if (pdev->vsync == 2) {
779 if (pwc_rcv_short_packet(pdev, fbuf)) {
780 awake = 1;
781 fbuf = pdev->fill_frame;
782 }
783 }
784 fbuf->filled = 0;
785 fillptr = fbuf->data;
786 pdev->vsync = 1;
787 }
788
789 pdev->vlast_packet_size = flen;
790 } /* ..status == 0 */
791 else {
792 /* This is normally not interesting to the user, unless
793 * you are really debugging something, default = 0 */
794 static int iso_error;
795 iso_error++;
796 if (iso_error < 20)
797 PWC_DEBUG_FLOW("Iso frame %d of USB has error %d\n", i, fst);
798 }
799 }
800
801 handler_end:
802 if (awake)
803 wake_up_interruptible(&pdev->frameq);
804
805 urb->dev = pdev->udev;
806 i = usb_submit_urb(urb, GFP_ATOMIC);
807 if (i != 0)
808 PWC_ERROR("Error (%d) re-submitting urb in pwc_isoc_handler.\n", i);
809 }
810
811
812 int pwc_isoc_init(struct pwc_device *pdev)
813 {
814 struct usb_device *udev;
815 struct urb *urb;
816 int i, j, ret;
817
818 struct usb_interface *intf;
819 struct usb_host_interface *idesc = NULL;
820
821 if (pdev == NULL)
822 return -EFAULT;
823 if (pdev->iso_init)
824 return 0;
825 pdev->vsync = 0;
826 udev = pdev->udev;
827
828 /* Get the current alternate interface, adjust packet size */
829 if (!udev->actconfig)
830 return -EFAULT;
831 intf = usb_ifnum_to_if(udev, 0);
832 if (intf)
833 idesc = usb_altnum_to_altsetting(intf, pdev->valternate);
834
835 if (!idesc)
836 return -EFAULT;
837
838 /* Search video endpoint */
839 pdev->vmax_packet_size = -1;
840 for (i = 0; i < idesc->desc.bNumEndpoints; i++) {
841 if ((idesc->endpoint[i].desc.bEndpointAddress & 0xF) == pdev->vendpoint) {
842 pdev->vmax_packet_size = le16_to_cpu(idesc->endpoint[i].desc.wMaxPacketSize);
843 break;
844 }
845 }
846
847 if (pdev->vmax_packet_size < 0 || pdev->vmax_packet_size > ISO_MAX_FRAME_SIZE) {
848 PWC_ERROR("Failed to find packet size for video endpoint in current alternate setting.\n");
849 return -ENFILE; /* Odd error, that should be noticeable */
850 }
851
852 /* Set alternate interface */
853 ret = 0;
854 PWC_DEBUG_OPEN("Setting alternate interface %d\n", pdev->valternate);
855 ret = usb_set_interface(pdev->udev, 0, pdev->valternate);
856 if (ret < 0)
857 return ret;
858
859 for (i = 0; i < MAX_ISO_BUFS; i++) {
860 urb = usb_alloc_urb(ISO_FRAMES_PER_DESC, GFP_KERNEL);
861 if (urb == NULL) {
862 PWC_ERROR("Failed to allocate urb %d\n", i);
863 ret = -ENOMEM;
864 break;
865 }
866 pdev->sbuf[i].urb = urb;
867 PWC_DEBUG_MEMORY("Allocated URB at 0x%p\n", urb);
868 }
869 if (ret) {
870 /* De-allocate in reverse order */
871 while (i--) {
872 usb_free_urb(pdev->sbuf[i].urb);
873 pdev->sbuf[i].urb = NULL;
874 }
875 return ret;
876 }
877
878 /* init URB structure */
879 for (i = 0; i < MAX_ISO_BUFS; i++) {
880 urb = pdev->sbuf[i].urb;
881
882 urb->interval = 1; // devik
883 urb->dev = udev;
884 urb->pipe = usb_rcvisocpipe(udev, pdev->vendpoint);
885 urb->transfer_flags = URB_ISO_ASAP;
886 urb->transfer_buffer = pdev->sbuf[i].data;
887 urb->transfer_buffer_length = ISO_BUFFER_SIZE;
888 urb->complete = pwc_isoc_handler;
889 urb->context = pdev;
890 urb->start_frame = 0;
891 urb->number_of_packets = ISO_FRAMES_PER_DESC;
892 for (j = 0; j < ISO_FRAMES_PER_DESC; j++) {
893 urb->iso_frame_desc[j].offset = j * ISO_MAX_FRAME_SIZE;
894 urb->iso_frame_desc[j].length = pdev->vmax_packet_size;
895 }
896 }
897
898 /* link */
899 for (i = 0; i < MAX_ISO_BUFS; i++) {
900 ret = usb_submit_urb(pdev->sbuf[i].urb, GFP_KERNEL);
901 if (ret) {
902 PWC_ERROR("isoc_init() submit_urb %d failed with error %d\n", i, ret);
903 pdev->iso_init = 1;
904 pwc_isoc_cleanup(pdev);
905 return ret;
906 }
907 PWC_DEBUG_MEMORY("URB 0x%p submitted.\n", pdev->sbuf[i].urb);
908 }
909
910 /* All is done... */
911 pdev->iso_init = 1;
912 PWC_DEBUG_OPEN("<< pwc_isoc_init()\n");
913 return 0;
914 }
915
916 static void pwc_iso_stop(struct pwc_device *pdev)
917 {
918 int i;
919
920 /* Unlinking ISOC buffers one by one */
921 for (i = 0; i < MAX_ISO_BUFS; i++) {
922 struct urb *urb;
923
924 urb = pdev->sbuf[i].urb;
925 if (urb) {
926 PWC_DEBUG_MEMORY("Unlinking URB %p\n", urb);
927 usb_kill_urb(urb);
928 }
929 }
930 }
931
932 static void pwc_iso_free(struct pwc_device *pdev)
933 {
934 int i;
935
936 /* Freeing ISOC buffers one by one */
937 for (i = 0; i < MAX_ISO_BUFS; i++) {
938 struct urb *urb;
939
940 urb = pdev->sbuf[i].urb;
941 if (urb) {
942 PWC_DEBUG_MEMORY("Freeing URB\n");
943 usb_free_urb(urb);
944 pdev->sbuf[i].urb = NULL;
945 }
946 }
947 }
948
949 void pwc_isoc_cleanup(struct pwc_device *pdev)
950 {
951 PWC_DEBUG_OPEN(">> pwc_isoc_cleanup()\n");
952 if (pdev == NULL)
953 return;
954 if (pdev->iso_init == 0)
955 return;
956
957 pwc_iso_stop(pdev);
958 pwc_iso_free(pdev);
959
960 /* Stop camera, but only if we are sure the camera is still there (unplug
961 is signalled by EPIPE)
962 */
963 if (pdev->error_status != EPIPE) {
964 PWC_DEBUG_OPEN("Setting alternate interface 0.\n");
965 usb_set_interface(pdev->udev, 0, 0);
966 }
967
968 pdev->iso_init = 0;
969 PWC_DEBUG_OPEN("<< pwc_isoc_cleanup()\n");
970 }
971
972 /*********
973 * sysfs
974 *********/
975 static struct pwc_device *cd_to_pwc(struct device *cd)
976 {
977 struct video_device *vdev = to_video_device(cd);
978 return video_get_drvdata(vdev);
979 }
980
981 static ssize_t show_pan_tilt(struct device *class_dev,
982 struct device_attribute *attr, char *buf)
983 {
984 struct pwc_device *pdev = cd_to_pwc(class_dev);
985 return sprintf(buf, "%d %d\n", pdev->pan_angle, pdev->tilt_angle);
986 }
987
988 static ssize_t store_pan_tilt(struct device *class_dev,
989 struct device_attribute *attr,
990 const char *buf, size_t count)
991 {
992 struct pwc_device *pdev = cd_to_pwc(class_dev);
993 int pan, tilt;
994 int ret = -EINVAL;
995
996 if (strncmp(buf, "reset", 5) == 0)
997 ret = pwc_mpt_reset(pdev, 0x3);
998
999 else if (sscanf(buf, "%d %d", &pan, &tilt) > 0)
1000 ret = pwc_mpt_set_angle(pdev, pan, tilt);
1001
1002 if (ret < 0)
1003 return ret;
1004 return strlen(buf);
1005 }
1006 static DEVICE_ATTR(pan_tilt, S_IRUGO | S_IWUSR, show_pan_tilt,
1007 store_pan_tilt);
1008
1009 static ssize_t show_snapshot_button_status(struct device *class_dev,
1010 struct device_attribute *attr, char *buf)
1011 {
1012 struct pwc_device *pdev = cd_to_pwc(class_dev);
1013 int status = pdev->snapshot_button_status;
1014 pdev->snapshot_button_status = 0;
1015 return sprintf(buf, "%d\n", status);
1016 }
1017
1018 static DEVICE_ATTR(button, S_IRUGO | S_IWUSR, show_snapshot_button_status,
1019 NULL);
1020
1021 static int pwc_create_sysfs_files(struct video_device *vdev)
1022 {
1023 struct pwc_device *pdev = video_get_drvdata(vdev);
1024 int rc;
1025
1026 rc = device_create_file(&vdev->dev, &dev_attr_button);
1027 if (rc)
1028 goto err;
1029 if (pdev->features & FEATURE_MOTOR_PANTILT) {
1030 rc = device_create_file(&vdev->dev, &dev_attr_pan_tilt);
1031 if (rc)
1032 goto err_button;
1033 }
1034
1035 return 0;
1036
1037 err_button:
1038 device_remove_file(&vdev->dev, &dev_attr_button);
1039 err:
1040 PWC_ERROR("Could not create sysfs files.\n");
1041 return rc;
1042 }
1043
1044 static void pwc_remove_sysfs_files(struct video_device *vdev)
1045 {
1046 struct pwc_device *pdev = video_get_drvdata(vdev);
1047
1048 if (pdev->features & FEATURE_MOTOR_PANTILT)
1049 device_remove_file(&vdev->dev, &dev_attr_pan_tilt);
1050 device_remove_file(&vdev->dev, &dev_attr_button);
1051 }
1052
1053 #ifdef CONFIG_USB_PWC_DEBUG
1054 static const char *pwc_sensor_type_to_string(unsigned int sensor_type)
1055 {
1056 switch(sensor_type) {
1057 case 0x00:
1058 return "Hyundai CMOS sensor";
1059 case 0x20:
1060 return "Sony CCD sensor + TDA8787";
1061 case 0x2E:
1062 return "Sony CCD sensor + Exas 98L59";
1063 case 0x2F:
1064 return "Sony CCD sensor + ADI 9804";
1065 case 0x30:
1066 return "Sharp CCD sensor + TDA8787";
1067 case 0x3E:
1068 return "Sharp CCD sensor + Exas 98L59";
1069 case 0x3F:
1070 return "Sharp CCD sensor + ADI 9804";
1071 case 0x40:
1072 return "UPA 1021 sensor";
1073 case 0x100:
1074 return "VGA sensor";
1075 case 0x101:
1076 return "PAL MR sensor";
1077 default:
1078 return "unknown type of sensor";
1079 }
1080 }
1081 #endif
1082
1083 /***************************************************************************/
1084 /* Video4Linux functions */
1085
1086 static int pwc_video_open(struct file *file)
1087 {
1088 int i, ret;
1089 struct video_device *vdev = video_devdata(file);
1090 struct pwc_device *pdev;
1091
1092 PWC_DEBUG_OPEN(">> video_open called(vdev = 0x%p).\n", vdev);
1093
1094 pdev = video_get_drvdata(vdev);
1095 BUG_ON(!pdev);
1096 if (pdev->vopen) {
1097 PWC_DEBUG_OPEN("I'm busy, someone is using the device.\n");
1098 return -EBUSY;
1099 }
1100
1101 mutex_lock(&pdev->modlock);
1102 pwc_construct(pdev); /* set min/max sizes correct */
1103 if (!pdev->usb_init) {
1104 PWC_DEBUG_OPEN("Doing first time initialization.\n");
1105 pdev->usb_init = 1;
1106
1107 /* Query sensor type */
1108 ret = pwc_get_cmos_sensor(pdev, &i);
1109 if (ret >= 0)
1110 {
1111 PWC_DEBUG_OPEN("This %s camera is equipped with a %s (%d).\n",
1112 pdev->vdev->name,
1113 pwc_sensor_type_to_string(i), i);
1114 }
1115 }
1116
1117 /* Turn on camera */
1118 if (power_save) {
1119 i = pwc_camera_power(pdev, 1);
1120 if (i < 0)
1121 PWC_DEBUG_OPEN("Failed to restore power to the camera! (%d)\n", i);
1122 }
1123 /* Set LED on/off time */
1124 if (pwc_set_leds(pdev, led_on, led_off) < 0)
1125 PWC_DEBUG_OPEN("Failed to set LED on/off time.\n");
1126
1127
1128 /* So far, so good. Allocate memory. */
1129 i = pwc_allocate_buffers(pdev);
1130 if (i < 0) {
1131 PWC_DEBUG_OPEN("Failed to allocate buffers memory.\n");
1132 pwc_free_buffers(pdev);
1133 mutex_unlock(&pdev->modlock);
1134 return i;
1135 }
1136
1137 /* Reset buffers & parameters */
1138 pwc_reset_buffers(pdev);
1139 for (i = 0; i < pwc_mbufs; i++)
1140 pdev->image_used[i] = 0;
1141 pdev->vframe_count = 0;
1142 pdev->vframes_dumped = 0;
1143 pdev->vframes_error = 0;
1144 pdev->visoc_errors = 0;
1145 pdev->error_status = 0;
1146 pwc_construct(pdev); /* set min/max sizes correct */
1147
1148 /* Set some defaults */
1149 pdev->vsnapshot = 0;
1150
1151 /* Set video size, first try the last used video size
1152 (or the default one); if that fails try QCIF/10 or QSIF/10;
1153 it that fails too, give up.
1154 */
1155 i = pwc_set_video_mode(pdev, pwc_image_sizes[pdev->vsize].x, pwc_image_sizes[pdev->vsize].y, pdev->vframes, pdev->vcompression, 0);
1156 if (i) {
1157 unsigned int default_resolution;
1158 PWC_DEBUG_OPEN("First attempt at set_video_mode failed.\n");
1159 if (pdev->type>= 730)
1160 default_resolution = PSZ_QSIF;
1161 else
1162 default_resolution = PSZ_QCIF;
1163
1164 i = pwc_set_video_mode(pdev,
1165 pwc_image_sizes[default_resolution].x,
1166 pwc_image_sizes[default_resolution].y,
1167 10,
1168 pdev->vcompression,
1169 0);
1170 }
1171 if (i) {
1172 PWC_DEBUG_OPEN("Second attempt at set_video_mode failed.\n");
1173 pwc_free_buffers(pdev);
1174 mutex_unlock(&pdev->modlock);
1175 return i;
1176 }
1177
1178 /* Initialize the webcam to sane value */
1179 pwc_set_brightness(pdev, 0x7fff);
1180 pwc_set_agc(pdev, 1, 0);
1181
1182 pdev->vopen++;
1183 file->private_data = vdev;
1184 mutex_unlock(&pdev->modlock);
1185 PWC_DEBUG_OPEN("<< video_open() returns 0.\n");
1186 return 0;
1187 }
1188
1189
1190 static void pwc_cleanup(struct pwc_device *pdev)
1191 {
1192 pwc_remove_sysfs_files(pdev->vdev);
1193 video_unregister_device(pdev->vdev);
1194
1195 #ifdef CONFIG_USB_PWC_INPUT_EVDEV
1196 if (pdev->button_dev)
1197 input_unregister_device(pdev->button_dev);
1198 #endif
1199
1200 kfree(pdev);
1201 }
1202
1203 /* Note that all cleanup is done in the reverse order as in _open */
1204 static int pwc_video_close(struct file *file)
1205 {
1206 struct video_device *vdev = file->private_data;
1207 struct pwc_device *pdev;
1208 int i, hint;
1209
1210 PWC_DEBUG_OPEN(">> video_close called(vdev = 0x%p).\n", vdev);
1211
1212 pdev = video_get_drvdata(vdev);
1213 mutex_lock(&pdev->modlock);
1214 if (pdev->vopen == 0)
1215 PWC_DEBUG_MODULE("video_close() called on closed device?\n");
1216
1217 /* Dump statistics, but only if a reasonable amount of frames were
1218 processed (to prevent endless log-entries in case of snap-shot
1219 programs)
1220 */
1221 if (pdev->vframe_count > 20)
1222 PWC_DEBUG_MODULE("Closing video device: %d frames received, dumped %d frames, %d frames with errors.\n", pdev->vframe_count, pdev->vframes_dumped, pdev->vframes_error);
1223
1224 if (DEVICE_USE_CODEC1(pdev->type))
1225 pwc_dec1_exit();
1226 else
1227 pwc_dec23_exit();
1228
1229 pwc_isoc_cleanup(pdev);
1230 pwc_free_buffers(pdev);
1231
1232 /* Turn off LEDS and power down camera, but only when not unplugged */
1233 if (!pdev->unplugged) {
1234 /* Turn LEDs off */
1235 if (pwc_set_leds(pdev, 0, 0) < 0)
1236 PWC_DEBUG_MODULE("Failed to set LED on/off time.\n");
1237 if (power_save) {
1238 i = pwc_camera_power(pdev, 0);
1239 if (i < 0)
1240 PWC_ERROR("Failed to power down camera (%d)\n", i);
1241 }
1242 pdev->vopen--;
1243 PWC_DEBUG_OPEN("<< video_close() vopen=%d\n", pdev->vopen);
1244 } else {
1245 pwc_cleanup(pdev);
1246 /* search device_hint[] table if we occupy a slot, by any chance */
1247 for (hint = 0; hint < MAX_DEV_HINTS; hint++)
1248 if (device_hint[hint].pdev == pdev)
1249 device_hint[hint].pdev = NULL;
1250 }
1251 mutex_unlock(&pdev->modlock);
1252
1253 return 0;
1254 }
1255
1256 /*
1257 * FIXME: what about two parallel reads ????
1258 * ANSWER: Not supported. You can't open the device more than once,
1259 despite what the V4L1 interface says. First, I don't see
1260 the need, second there's no mechanism of alerting the
1261 2nd/3rd/... process of events like changing image size.
1262 And I don't see the point of blocking that for the
1263 2nd/3rd/... process.
1264 In multi-threaded environments reading parallel from any
1265 device is tricky anyhow.
1266 */
1267
1268 static ssize_t pwc_video_read(struct file *file, char __user *buf,
1269 size_t count, loff_t *ppos)
1270 {
1271 struct video_device *vdev = file->private_data;
1272 struct pwc_device *pdev;
1273 int noblock = file->f_flags & O_NONBLOCK;
1274 DECLARE_WAITQUEUE(wait, current);
1275 int bytes_to_read, rv = 0;
1276 void *image_buffer_addr;
1277
1278 PWC_DEBUG_READ("pwc_video_read(vdev=0x%p, buf=%p, count=%zd) called.\n",
1279 vdev, buf, count);
1280 if (vdev == NULL)
1281 return -EFAULT;
1282 pdev = video_get_drvdata(vdev);
1283 if (pdev == NULL)
1284 return -EFAULT;
1285
1286 mutex_lock(&pdev->modlock);
1287 if (pdev->error_status) {
1288 rv = -pdev->error_status; /* Something happened, report what. */
1289 goto err_out;
1290 }
1291
1292 /* Start the stream (if not already started) */
1293 rv = pwc_isoc_init(pdev);
1294 if (rv)
1295 goto err_out;
1296
1297 /* In case we're doing partial reads, we don't have to wait for a frame */
1298 if (pdev->image_read_pos == 0) {
1299 /* Do wait queueing according to the (doc)book */
1300 add_wait_queue(&pdev->frameq, &wait);
1301 while (pdev->full_frames == NULL) {
1302 /* Check for unplugged/etc. here */
1303 if (pdev->error_status) {
1304 remove_wait_queue(&pdev->frameq, &wait);
1305 set_current_state(TASK_RUNNING);
1306 rv = -pdev->error_status ;
1307 goto err_out;
1308 }
1309 if (noblock) {
1310 remove_wait_queue(&pdev->frameq, &wait);
1311 set_current_state(TASK_RUNNING);
1312 rv = -EWOULDBLOCK;
1313 goto err_out;
1314 }
1315 if (signal_pending(current)) {
1316 remove_wait_queue(&pdev->frameq, &wait);
1317 set_current_state(TASK_RUNNING);
1318 rv = -ERESTARTSYS;
1319 goto err_out;
1320 }
1321 schedule();
1322 set_current_state(TASK_INTERRUPTIBLE);
1323 }
1324 remove_wait_queue(&pdev->frameq, &wait);
1325 set_current_state(TASK_RUNNING);
1326
1327 /* Decompress and release frame */
1328 if (pwc_handle_frame(pdev)) {
1329 rv = -EFAULT;
1330 goto err_out;
1331 }
1332 }
1333
1334 PWC_DEBUG_READ("Copying data to user space.\n");
1335 if (pdev->pixfmt != V4L2_PIX_FMT_YUV420)
1336 bytes_to_read = pdev->frame_size + sizeof(struct pwc_raw_frame);
1337 else
1338 bytes_to_read = pdev->view.size;
1339
1340 /* copy bytes to user space; we allow for partial reads */
1341 if (count + pdev->image_read_pos > bytes_to_read)
1342 count = bytes_to_read - pdev->image_read_pos;
1343 image_buffer_addr = pdev->image_data;
1344 image_buffer_addr += pdev->images[pdev->fill_image].offset;
1345 image_buffer_addr += pdev->image_read_pos;
1346 if (copy_to_user(buf, image_buffer_addr, count)) {
1347 rv = -EFAULT;
1348 goto err_out;
1349 }
1350 pdev->image_read_pos += count;
1351 if (pdev->image_read_pos >= bytes_to_read) { /* All data has been read */
1352 pdev->image_read_pos = 0;
1353 pwc_next_image(pdev);
1354 }
1355 mutex_unlock(&pdev->modlock);
1356 return count;
1357 err_out:
1358 mutex_unlock(&pdev->modlock);
1359 return rv;
1360 }
1361
1362 static unsigned int pwc_video_poll(struct file *file, poll_table *wait)
1363 {
1364 struct video_device *vdev = file->private_data;
1365 struct pwc_device *pdev;
1366 int ret;
1367
1368 if (vdev == NULL)
1369 return -EFAULT;
1370 pdev = video_get_drvdata(vdev);
1371 if (pdev == NULL)
1372 return -EFAULT;
1373
1374 /* Start the stream (if not already started) */
1375 mutex_lock(&pdev->modlock);
1376 ret = pwc_isoc_init(pdev);
1377 mutex_unlock(&pdev->modlock);
1378 if (ret)
1379 return ret;
1380
1381 poll_wait(file, &pdev->frameq, wait);
1382 if (pdev->error_status)
1383 return POLLERR;
1384 if (pdev->full_frames != NULL) /* we have frames waiting */
1385 return (POLLIN | POLLRDNORM);
1386
1387 return 0;
1388 }
1389
1390 static long pwc_video_ioctl(struct file *file,
1391 unsigned int cmd, unsigned long arg)
1392 {
1393 struct video_device *vdev = file->private_data;
1394 struct pwc_device *pdev;
1395 long r = -ENODEV;
1396
1397 if (!vdev)
1398 goto out;
1399 pdev = video_get_drvdata(vdev);
1400
1401 mutex_lock(&pdev->modlock);
1402 if (!pdev->unplugged)
1403 r = video_usercopy(file, cmd, arg, pwc_video_do_ioctl);
1404 mutex_unlock(&pdev->modlock);
1405 out:
1406 return r;
1407 }
1408
1409 static int pwc_video_mmap(struct file *file, struct vm_area_struct *vma)
1410 {
1411 struct video_device *vdev = file->private_data;
1412 struct pwc_device *pdev;
1413 unsigned long start;
1414 unsigned long size;
1415 unsigned long page, pos = 0;
1416 int index;
1417
1418 PWC_DEBUG_MEMORY(">> %s\n", __func__);
1419 pdev = video_get_drvdata(vdev);
1420 size = vma->vm_end - vma->vm_start;
1421 start = vma->vm_start;
1422
1423 /* Find the idx buffer for this mapping */
1424 for (index = 0; index < pwc_mbufs; index++) {
1425 pos = pdev->images[index].offset;
1426 if ((pos>>PAGE_SHIFT) == vma->vm_pgoff)
1427 break;
1428 }
1429 if (index == MAX_IMAGES)
1430 return -EINVAL;
1431 if (index == 0) {
1432 /*
1433 * Special case for v4l1. In v4l1, we map only one big buffer,
1434 * but in v4l2 each buffer is mapped
1435 */
1436 unsigned long total_size;
1437 total_size = pwc_mbufs * pdev->len_per_image;
1438 if (size != pdev->len_per_image && size != total_size) {
1439 PWC_ERROR("Wrong size (%lu) needed to be len_per_image=%d or total_size=%lu\n",
1440 size, pdev->len_per_image, total_size);
1441 return -EINVAL;
1442 }
1443 } else if (size > pdev->len_per_image)
1444 return -EINVAL;
1445
1446 vma->vm_flags |= VM_IO; /* from 2.6.9-acX */
1447
1448 pos += (unsigned long)pdev->image_data;
1449 while (size > 0) {
1450 page = vmalloc_to_pfn((void *)pos);
1451 if (remap_pfn_range(vma, start, page, PAGE_SIZE, PAGE_SHARED))
1452 return -EAGAIN;
1453 start += PAGE_SIZE;
1454 pos += PAGE_SIZE;
1455 if (size > PAGE_SIZE)
1456 size -= PAGE_SIZE;
1457 else
1458 size = 0;
1459 }
1460 return 0;
1461 }
1462
1463 /***************************************************************************/
1464 /* USB functions */
1465
1466 /* This function gets called when a new device is plugged in or the usb core
1467 * is loaded.
1468 */
1469
1470 static int usb_pwc_probe(struct usb_interface *intf, const struct usb_device_id *id)
1471 {
1472 struct usb_device *udev = interface_to_usbdev(intf);
1473 struct pwc_device *pdev = NULL;
1474 int vendor_id, product_id, type_id;
1475 int hint, rc;
1476 int features = 0;
1477 int video_nr = -1; /* default: use next available device */
1478 char serial_number[30], *name;
1479
1480 vendor_id = le16_to_cpu(udev->descriptor.idVendor);
1481 product_id = le16_to_cpu(udev->descriptor.idProduct);
1482
1483 /* Check if we can handle this device */
1484 PWC_DEBUG_PROBE("probe() called [%04X %04X], if %d\n",
1485 vendor_id, product_id,
1486 intf->altsetting->desc.bInterfaceNumber);
1487
1488 /* the interfaces are probed one by one. We are only interested in the
1489 video interface (0) now.
1490 Interface 1 is the Audio Control, and interface 2 Audio itself.
1491 */
1492 if (intf->altsetting->desc.bInterfaceNumber > 0)
1493 return -ENODEV;
1494
1495 if (vendor_id == 0x0471) {
1496 switch (product_id) {
1497 case 0x0302:
1498 PWC_INFO("Philips PCA645VC USB webcam detected.\n");
1499 name = "Philips 645 webcam";
1500 type_id = 645;
1501 break;
1502 case 0x0303:
1503 PWC_INFO("Philips PCA646VC USB webcam detected.\n");
1504 name = "Philips 646 webcam";
1505 type_id = 646;
1506 break;
1507 case 0x0304:
1508 PWC_INFO("Askey VC010 type 2 USB webcam detected.\n");
1509 name = "Askey VC010 webcam";
1510 type_id = 646;
1511 break;
1512 case 0x0307:
1513 PWC_INFO("Philips PCVC675K (Vesta) USB webcam detected.\n");
1514 name = "Philips 675 webcam";
1515 type_id = 675;
1516 break;
1517 case 0x0308:
1518 PWC_INFO("Philips PCVC680K (Vesta Pro) USB webcam detected.\n");
1519 name = "Philips 680 webcam";
1520 type_id = 680;
1521 break;
1522 case 0x030C:
1523 PWC_INFO("Philips PCVC690K (Vesta Pro Scan) USB webcam detected.\n");
1524 name = "Philips 690 webcam";
1525 type_id = 690;
1526 break;
1527 case 0x0310:
1528 PWC_INFO("Philips PCVC730K (ToUCam Fun)/PCVC830 (ToUCam II) USB webcam detected.\n");
1529 name = "Philips 730 webcam";
1530 type_id = 730;
1531 break;
1532 case 0x0311:
1533 PWC_INFO("Philips PCVC740K (ToUCam Pro)/PCVC840 (ToUCam II) USB webcam detected.\n");
1534 name = "Philips 740 webcam";
1535 type_id = 740;
1536 break;
1537 case 0x0312:
1538 PWC_INFO("Philips PCVC750K (ToUCam Pro Scan) USB webcam detected.\n");
1539 name = "Philips 750 webcam";
1540 type_id = 750;
1541 break;
1542 case 0x0313:
1543 PWC_INFO("Philips PCVC720K/40 (ToUCam XS) USB webcam detected.\n");
1544 name = "Philips 720K/40 webcam";
1545 type_id = 720;
1546 break;
1547 case 0x0329:
1548 PWC_INFO("Philips SPC 900NC USB webcam detected.\n");
1549 name = "Philips SPC 900NC webcam";
1550 type_id = 740;
1551 break;
1552 default:
1553 return -ENODEV;
1554 break;
1555 }
1556 }
1557 else if (vendor_id == 0x069A) {
1558 switch(product_id) {
1559 case 0x0001:
1560 PWC_INFO("Askey VC010 type 1 USB webcam detected.\n");
1561 name = "Askey VC010 webcam";
1562 type_id = 645;
1563 break;
1564 default:
1565 return -ENODEV;
1566 break;
1567 }
1568 }
1569 else if (vendor_id == 0x046d) {
1570 switch(product_id) {
1571 case 0x08b0:
1572 PWC_INFO("Logitech QuickCam Pro 3000 USB webcam detected.\n");
1573 name = "Logitech QuickCam Pro 3000";
1574 type_id = 740; /* CCD sensor */
1575 break;
1576 case 0x08b1:
1577 PWC_INFO("Logitech QuickCam Notebook Pro USB webcam detected.\n");
1578 name = "Logitech QuickCam Notebook Pro";
1579 type_id = 740; /* CCD sensor */
1580 break;
1581 case 0x08b2:
1582 PWC_INFO("Logitech QuickCam 4000 Pro USB webcam detected.\n");
1583 name = "Logitech QuickCam Pro 4000";
1584 type_id = 740; /* CCD sensor */
1585 break;
1586 case 0x08b3:
1587 PWC_INFO("Logitech QuickCam Zoom USB webcam detected.\n");
1588 name = "Logitech QuickCam Zoom";
1589 type_id = 740; /* CCD sensor */
1590 break;
1591 case 0x08B4:
1592 PWC_INFO("Logitech QuickCam Zoom (new model) USB webcam detected.\n");
1593 name = "Logitech QuickCam Zoom";
1594 type_id = 740; /* CCD sensor */
1595 power_save = 1;
1596 break;
1597 case 0x08b5:
1598 PWC_INFO("Logitech QuickCam Orbit/Sphere USB webcam detected.\n");
1599 name = "Logitech QuickCam Orbit";
1600 type_id = 740; /* CCD sensor */
1601 features |= FEATURE_MOTOR_PANTILT;
1602 break;
1603 case 0x08b6:
1604 PWC_INFO("Logitech/Cisco VT Camera webcam detected.\n");
1605 name = "Cisco VT Camera";
1606 type_id = 740; /* CCD sensor */
1607 break;
1608 case 0x08b7:
1609 PWC_INFO("Logitech ViewPort AV 100 webcam detected.\n");
1610 name = "Logitech ViewPort AV 100";
1611 type_id = 740; /* CCD sensor */
1612 break;
1613 case 0x08b8: /* Where this released? */
1614 PWC_INFO("Logitech QuickCam detected (reserved ID).\n");
1615 name = "Logitech QuickCam (res.)";
1616 type_id = 730; /* Assuming CMOS */
1617 break;
1618 default:
1619 return -ENODEV;
1620 break;
1621 }
1622 }
1623 else if (vendor_id == 0x055d) {
1624 /* I don't know the difference between the C10 and the C30;
1625 I suppose the difference is the sensor, but both cameras
1626 work equally well with a type_id of 675
1627 */
1628 switch(product_id) {
1629 case 0x9000:
1630 PWC_INFO("Samsung MPC-C10 USB webcam detected.\n");
1631 name = "Samsung MPC-C10";
1632 type_id = 675;
1633 break;
1634 case 0x9001:
1635 PWC_INFO("Samsung MPC-C30 USB webcam detected.\n");
1636 name = "Samsung MPC-C30";
1637 type_id = 675;
1638 break;
1639 case 0x9002:
1640 PWC_INFO("Samsung SNC-35E (v3.0) USB webcam detected.\n");
1641 name = "Samsung MPC-C30";
1642 type_id = 740;
1643 break;
1644 default:
1645 return -ENODEV;
1646 break;
1647 }
1648 }
1649 else if (vendor_id == 0x041e) {
1650 switch(product_id) {
1651 case 0x400c:
1652 PWC_INFO("Creative Labs Webcam 5 detected.\n");
1653 name = "Creative Labs Webcam 5";
1654 type_id = 730;
1655 break;
1656 case 0x4011:
1657 PWC_INFO("Creative Labs Webcam Pro Ex detected.\n");
1658 name = "Creative Labs Webcam Pro Ex";
1659 type_id = 740;
1660 break;
1661 default:
1662 return -ENODEV;
1663 break;
1664 }
1665 }
1666 else if (vendor_id == 0x04cc) {
1667 switch(product_id) {
1668 case 0x8116:
1669 PWC_INFO("Sotec Afina Eye USB webcam detected.\n");
1670 name = "Sotec Afina Eye";
1671 type_id = 730;
1672 break;
1673 default:
1674 return -ENODEV;
1675 break;
1676 }
1677 }
1678 else if (vendor_id == 0x06be) {
1679 switch(product_id) {
1680 case 0x8116:
1681 /* This is essentially the same cam as the Sotec Afina Eye */
1682 PWC_INFO("AME Co. Afina Eye USB webcam detected.\n");
1683 name = "AME Co. Afina Eye";
1684 type_id = 750;
1685 break;
1686 default:
1687 return -ENODEV;
1688 break;
1689 }
1690
1691 }
1692 else if (vendor_id == 0x0d81) {
1693 switch(product_id) {
1694 case 0x1900:
1695 PWC_INFO("Visionite VCS-UC300 USB webcam detected.\n");
1696 name = "Visionite VCS-UC300";
1697 type_id = 740; /* CCD sensor */
1698 break;
1699 case 0x1910:
1700 PWC_INFO("Visionite VCS-UM100 USB webcam detected.\n");
1701 name = "Visionite VCS-UM100";
1702 type_id = 730; /* CMOS sensor */
1703 break;
1704 default:
1705 return -ENODEV;
1706 break;
1707 }
1708 }
1709 else
1710 return -ENODEV; /* Not any of the know types; but the list keeps growing. */
1711
1712 memset(serial_number, 0, 30);
1713 usb_string(udev, udev->descriptor.iSerialNumber, serial_number, 29);
1714 PWC_DEBUG_PROBE("Device serial number is %s\n", serial_number);
1715
1716 if (udev->descriptor.bNumConfigurations > 1)
1717 PWC_WARNING("Warning: more than 1 configuration available.\n");
1718
1719 /* Allocate structure, initialize pointers, mutexes, etc. and link it to the usb_device */
1720 pdev = kzalloc(sizeof(struct pwc_device), GFP_KERNEL);
1721 if (pdev == NULL) {
1722 PWC_ERROR("Oops, could not allocate memory for pwc_device.\n");
1723 return -ENOMEM;
1724 }
1725 pdev->type = type_id;
1726 pdev->vsize = default_size;
1727 pdev->vframes = default_fps;
1728 strcpy(pdev->serial, serial_number);
1729 pdev->features = features;
1730 if (vendor_id == 0x046D && product_id == 0x08B5) {
1731 /* Logitech QuickCam Orbit
1732 The ranges have been determined experimentally; they may differ from cam to cam.
1733 Also, the exact ranges left-right and up-down are different for my cam
1734 */
1735 pdev->angle_range.pan_min = -7000;
1736 pdev->angle_range.pan_max = 7000;
1737 pdev->angle_range.tilt_min = -3000;
1738 pdev->angle_range.tilt_max = 2500;
1739 }
1740
1741 mutex_init(&pdev->modlock);
1742 spin_lock_init(&pdev->ptrlock);
1743
1744 pdev->udev = udev;
1745 init_waitqueue_head(&pdev->frameq);
1746 pdev->vcompression = pwc_preferred_compression;
1747
1748 /* Allocate video_device structure */
1749 pdev->vdev = video_device_alloc();
1750 if (!pdev->vdev) {
1751 PWC_ERROR("Err, cannot allocate video_device struture. Failing probe.");
1752 rc = -ENOMEM;
1753 goto err_free_mem;
1754 }
1755 memcpy(pdev->vdev, &pwc_template, sizeof(pwc_template));
1756 pdev->vdev->parent = &intf->dev;
1757 strcpy(pdev->vdev->name, name);
1758 video_set_drvdata(pdev->vdev, pdev);
1759
1760 pdev->release = le16_to_cpu(udev->descriptor.bcdDevice);
1761 PWC_DEBUG_PROBE("Release: %04x\n", pdev->release);
1762
1763 /* Now search device_hint[] table for a match, so we can hint a node number. */
1764 for (hint = 0; hint < MAX_DEV_HINTS; hint++) {
1765 if (((device_hint[hint].type == -1) || (device_hint[hint].type == pdev->type)) &&
1766 (device_hint[hint].pdev == NULL)) {
1767 /* so far, so good... try serial number */
1768 if ((device_hint[hint].serial_number[0] == '*') || !strcmp(device_hint[hint].serial_number, serial_number)) {
1769 /* match! */
1770 video_nr = device_hint[hint].device_node;
1771 PWC_DEBUG_PROBE("Found hint, will try to register as /dev/video%d\n", video_nr);
1772 break;
1773 }
1774 }
1775 }
1776
1777 pdev->vdev->release = video_device_release;
1778
1779 /* occupy slot */
1780 if (hint < MAX_DEV_HINTS)
1781 device_hint[hint].pdev = pdev;
1782
1783 PWC_DEBUG_PROBE("probe() function returning struct at 0x%p.\n", pdev);
1784 usb_set_intfdata(intf, pdev);
1785
1786 /* Set the leds off */
1787 pwc_set_leds(pdev, 0, 0);
1788 pwc_camera_power(pdev, 0);
1789
1790 rc = video_register_device(pdev->vdev, VFL_TYPE_GRABBER, video_nr);
1791 if (rc < 0) {
1792 PWC_ERROR("Failed to register as video device (%d).\n", rc);
1793 goto err_video_release;
1794 }
1795 rc = pwc_create_sysfs_files(pdev->vdev);
1796 if (rc)
1797 goto err_video_unreg;
1798
1799 PWC_INFO("Registered as %s.\n", video_device_node_name(pdev->vdev));
1800
1801 #ifdef CONFIG_USB_PWC_INPUT_EVDEV
1802 /* register webcam snapshot button input device */
1803 pdev->button_dev = input_allocate_device();
1804 if (!pdev->button_dev) {
1805 PWC_ERROR("Err, insufficient memory for webcam snapshot button device.");
1806 rc = -ENOMEM;
1807 pwc_remove_sysfs_files(pdev->vdev);
1808 goto err_video_unreg;
1809 }
1810
1811 usb_make_path(udev, pdev->button_phys, sizeof(pdev->button_phys));
1812 strlcat(pdev->button_phys, "/input0", sizeof(pdev->button_phys));
1813
1814 pdev->button_dev->name = "PWC snapshot button";
1815 pdev->button_dev->phys = pdev->button_phys;
1816 usb_to_input_id(pdev->udev, &pdev->button_dev->id);
1817 pdev->button_dev->dev.parent = &pdev->udev->dev;
1818 pdev->button_dev->evbit[0] = BIT_MASK(EV_KEY);
1819 pdev->button_dev->keybit[BIT_WORD(KEY_CAMERA)] = BIT_MASK(KEY_CAMERA);
1820
1821 rc = input_register_device(pdev->button_dev);
1822 if (rc) {
1823 input_free_device(pdev->button_dev);
1824 pdev->button_dev = NULL;
1825 pwc_remove_sysfs_files(pdev->vdev);
1826 goto err_video_unreg;
1827 }
1828 #endif
1829
1830 return 0;
1831
1832 err_video_unreg:
1833 if (hint < MAX_DEV_HINTS)
1834 device_hint[hint].pdev = NULL;
1835 video_unregister_device(pdev->vdev);
1836 pdev->vdev = NULL; /* So we don't try to release it below */
1837 err_video_release:
1838 video_device_release(pdev->vdev);
1839 err_free_mem:
1840 kfree(pdev);
1841 return rc;
1842 }
1843
1844 /* The user yanked out the cable... */
1845 static void usb_pwc_disconnect(struct usb_interface *intf)
1846 {
1847 struct pwc_device *pdev;
1848 int hint;
1849
1850 pdev = usb_get_intfdata (intf);
1851 mutex_lock(&pdev->modlock);
1852 usb_set_intfdata (intf, NULL);
1853 if (pdev == NULL) {
1854 PWC_ERROR("pwc_disconnect() Called without private pointer.\n");
1855 goto disconnect_out;
1856 }
1857 if (pdev->udev == NULL) {
1858 PWC_ERROR("pwc_disconnect() already called for %p\n", pdev);
1859 goto disconnect_out;
1860 }
1861 if (pdev->udev != interface_to_usbdev(intf)) {
1862 PWC_ERROR("pwc_disconnect() Woops: pointer mismatch udev/pdev.\n");
1863 goto disconnect_out;
1864 }
1865
1866 /* We got unplugged; this is signalled by an EPIPE error code */
1867 if (pdev->vopen) {
1868 PWC_INFO("Disconnected while webcam is in use!\n");
1869 pdev->error_status = EPIPE;
1870 }
1871
1872 /* Alert waiting processes */
1873 wake_up_interruptible(&pdev->frameq);
1874 /* Wait until device is closed */
1875 if (pdev->vopen) {
1876 pdev->unplugged = 1;
1877 pwc_iso_stop(pdev);
1878 } else {
1879 /* Device is closed, so we can safely unregister it */
1880 PWC_DEBUG_PROBE("Unregistering video device in disconnect().\n");
1881 pwc_cleanup(pdev);
1882
1883 disconnect_out:
1884 /* search device_hint[] table if we occupy a slot, by any chance */
1885 for (hint = 0; hint < MAX_DEV_HINTS; hint++)
1886 if (device_hint[hint].pdev == pdev)
1887 device_hint[hint].pdev = NULL;
1888 }
1889
1890 mutex_unlock(&pdev->modlock);
1891 }
1892
1893
1894 /*
1895 * Initialization code & module stuff
1896 */
1897
1898 static char *size;
1899 static int fps;
1900 static int fbufs;
1901 static int mbufs;
1902 static int compression = -1;
1903 static int leds[2] = { -1, -1 };
1904 static unsigned int leds_nargs;
1905 static char *dev_hint[MAX_DEV_HINTS];
1906 static unsigned int dev_hint_nargs;
1907
1908 module_param(size, charp, 0444);
1909 module_param(fps, int, 0444);
1910 module_param(fbufs, int, 0444);
1911 module_param(mbufs, int, 0444);
1912 #ifdef CONFIG_USB_PWC_DEBUG
1913 module_param_named(trace, pwc_trace, int, 0644);
1914 #endif
1915 module_param(power_save, int, 0444);
1916 module_param(compression, int, 0444);
1917 module_param_array(leds, int, &leds_nargs, 0444);
1918 module_param_array(dev_hint, charp, &dev_hint_nargs, 0444);
1919
1920 MODULE_PARM_DESC(size, "Initial image size. One of sqcif, qsif, qcif, sif, cif, vga");
1921 MODULE_PARM_DESC(fps, "Initial frames per second. Varies with model, useful range 5-30");
1922 MODULE_PARM_DESC(fbufs, "Number of internal frame buffers to reserve");
1923 MODULE_PARM_DESC(mbufs, "Number of external (mmap()ed) image buffers");
1924 #ifdef CONFIG_USB_PWC_DEBUG
1925 MODULE_PARM_DESC(trace, "For debugging purposes");
1926 #endif
1927 MODULE_PARM_DESC(power_save, "Turn power save feature in camera on or off");
1928 MODULE_PARM_DESC(compression, "Preferred compression quality. Range 0 (uncompressed) to 3 (high compression)");
1929 MODULE_PARM_DESC(leds, "LED on,off time in milliseconds");
1930 MODULE_PARM_DESC(dev_hint, "Device node hints");
1931
1932 MODULE_DESCRIPTION("Philips & OEM USB webcam driver");
1933 MODULE_AUTHOR("Luc Saillard <luc@saillard.org>");
1934 MODULE_LICENSE("GPL");
1935 MODULE_ALIAS("pwcx");
1936 MODULE_VERSION( PWC_VERSION );
1937
1938 static int __init usb_pwc_init(void)
1939 {
1940 int i, sz;
1941 char *sizenames[PSZ_MAX] = { "sqcif", "qsif", "qcif", "sif", "cif", "vga" };
1942
1943 PWC_INFO("Philips webcam module version " PWC_VERSION " loaded.\n");
1944 PWC_INFO("Supports Philips PCA645/646, PCVC675/680/690, PCVC720[40]/730/740/750 & PCVC830/840.\n");
1945 PWC_INFO("Also supports the Askey VC010, various Logitech Quickcams, Samsung MPC-C10 and MPC-C30,\n");
1946 PWC_INFO("the Creative WebCam 5 & Pro Ex, SOTEC Afina Eye and Visionite VCS-UC300 and VCS-UM100.\n");
1947
1948 if (fps) {
1949 if (fps < 4 || fps > 30) {
1950 PWC_ERROR("Framerate out of bounds (4-30).\n");
1951 return -EINVAL;
1952 }
1953 default_fps = fps;
1954 PWC_DEBUG_MODULE("Default framerate set to %d.\n", default_fps);
1955 }
1956
1957 if (size) {
1958 /* string; try matching with array */
1959 for (sz = 0; sz < PSZ_MAX; sz++) {
1960 if (!strcmp(sizenames[sz], size)) { /* Found! */
1961 default_size = sz;
1962 break;
1963 }
1964 }
1965 if (sz == PSZ_MAX) {
1966 PWC_ERROR("Size not recognized; try size=[sqcif | qsif | qcif | sif | cif | vga].\n");
1967 return -EINVAL;
1968 }
1969 PWC_DEBUG_MODULE("Default image size set to %s [%dx%d].\n", sizenames[default_size], pwc_image_sizes[default_size].x, pwc_image_sizes[default_size].y);
1970 }
1971 if (mbufs) {
1972 if (mbufs < 1 || mbufs > MAX_IMAGES) {
1973 PWC_ERROR("Illegal number of mmap() buffers; use a number between 1 and %d.\n", MAX_IMAGES);
1974 return -EINVAL;
1975 }
1976 pwc_mbufs = mbufs;
1977 PWC_DEBUG_MODULE("Number of image buffers set to %d.\n", pwc_mbufs);
1978 }
1979 if (fbufs) {
1980 if (fbufs < 2 || fbufs > MAX_FRAMES) {
1981 PWC_ERROR("Illegal number of frame buffers; use a number between 2 and %d.\n", MAX_FRAMES);
1982 return -EINVAL;
1983 }
1984 default_fbufs = fbufs;
1985 PWC_DEBUG_MODULE("Number of frame buffers set to %d.\n", default_fbufs);
1986 }
1987 #ifdef CONFIG_USB_PWC_DEBUG
1988 if (pwc_trace >= 0) {
1989 PWC_DEBUG_MODULE("Trace options: 0x%04x\n", pwc_trace);
1990 }
1991 #endif
1992 if (compression >= 0) {
1993 if (compression > 3) {
1994 PWC_ERROR("Invalid compression setting; use a number between 0 (uncompressed) and 3 (high).\n");
1995 return -EINVAL;
1996 }
1997 pwc_preferred_compression = compression;
1998 PWC_DEBUG_MODULE("Preferred compression set to %d.\n", pwc_preferred_compression);
1999 }
2000 if (power_save)
2001 PWC_DEBUG_MODULE("Enabling power save on open/close.\n");
2002 if (leds[0] >= 0)
2003 led_on = leds[0];
2004 if (leds[1] >= 0)
2005 led_off = leds[1];
2006
2007 /* Big device node whoopla. Basically, it allows you to assign a
2008 device node (/dev/videoX) to a camera, based on its type
2009 & serial number. The format is [type[.serialnumber]:]node.
2010
2011 Any camera that isn't matched by these rules gets the next
2012 available free device node.
2013 */
2014 for (i = 0; i < MAX_DEV_HINTS; i++) {
2015 char *s, *colon, *dot;
2016
2017 /* This loop also initializes the array */
2018 device_hint[i].pdev = NULL;
2019 s = dev_hint[i];
2020 if (s != NULL && *s != '\0') {
2021 device_hint[i].type = -1; /* wildcard */
2022 strcpy(device_hint[i].serial_number, "*");
2023
2024 /* parse string: chop at ':' & '/' */
2025 colon = dot = s;
2026 while (*colon != '\0' && *colon != ':')
2027 colon++;
2028 while (*dot != '\0' && *dot != '.')
2029 dot++;
2030 /* Few sanity checks */
2031 if (*dot != '\0' && dot > colon) {
2032 PWC_ERROR("Malformed camera hint: the colon must be after the dot.\n");
2033 return -EINVAL;
2034 }
2035
2036 if (*colon == '\0') {
2037 /* No colon */
2038 if (*dot != '\0') {
2039 PWC_ERROR("Malformed camera hint: no colon + device node given.\n");
2040 return -EINVAL;
2041 }
2042 else {
2043 /* No type or serial number specified, just a number. */
2044 device_hint[i].device_node =
2045 simple_strtol(s, NULL, 10);
2046 }
2047 }
2048 else {
2049 /* There's a colon, so we have at least a type and a device node */
2050 device_hint[i].type =
2051 simple_strtol(s, NULL, 10);
2052 device_hint[i].device_node =
2053 simple_strtol(colon + 1, NULL, 10);
2054 if (*dot != '\0') {
2055 /* There's a serial number as well */
2056 int k;
2057
2058 dot++;
2059 k = 0;
2060 while (*dot != ':' && k < 29) {
2061 device_hint[i].serial_number[k++] = *dot;
2062 dot++;
2063 }
2064 device_hint[i].serial_number[k] = '\0';
2065 }
2066 }
2067 PWC_TRACE("device_hint[%d]:\n", i);
2068 PWC_TRACE(" type : %d\n", device_hint[i].type);
2069 PWC_TRACE(" serial# : %s\n", device_hint[i].serial_number);
2070 PWC_TRACE(" node : %d\n", device_hint[i].device_node);
2071 }
2072 else
2073 device_hint[i].type = 0; /* not filled */
2074 } /* ..for MAX_DEV_HINTS */
2075
2076 PWC_DEBUG_PROBE("Registering driver at address 0x%p.\n", &pwc_driver);
2077 return usb_register(&pwc_driver);
2078 }
2079
2080 static void __exit usb_pwc_exit(void)
2081 {
2082 PWC_DEBUG_MODULE("Deregistering driver.\n");
2083 usb_deregister(&pwc_driver);
2084 PWC_INFO("Philips webcam module removed.\n");
2085 }
2086
2087 module_init(usb_pwc_init);
2088 module_exit(usb_pwc_exit);
2089
2090 /* vim: set cino= formatoptions=croql cindent shiftwidth=8 tabstop=8: */
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