V4L/DVB (8523): v4l2-dev: remove unused type and type2 field from video_device
[linux-2.6/btrfs-unstable.git] / drivers / media / video / pms.c
blob00425d7436569e8081e525892fbf8b7f464b1683
1 /*
2 * Media Vision Pro Movie Studio
3 * or
4 * "all you need is an I2C bus some RAM and a prayer"
6 * This draws heavily on code
8 * (c) Wolfgang Koehler, wolf@first.gmd.de, Dec. 1994
9 * Kiefernring 15
10 * 14478 Potsdam, Germany
12 * Most of this code is directly derived from his userspace driver.
13 * His driver works so send any reports to alan@redhat.com unless the
14 * userspace driver also doesn't work for you...
16 * Changes:
17 * 08/07/2003 Daniele Bellucci <bellucda@tiscali.it>
18 * - pms_capture: report back -EFAULT
21 #include <linux/module.h>
22 #include <linux/delay.h>
23 #include <linux/errno.h>
24 #include <linux/fs.h>
25 #include <linux/kernel.h>
26 #include <linux/slab.h>
27 #include <linux/mm.h>
28 #include <linux/ioport.h>
29 #include <linux/init.h>
30 #include <asm/io.h>
31 #include <linux/videodev.h>
32 #include <media/v4l2-common.h>
33 #include <media/v4l2-ioctl.h>
34 #include <linux/mutex.h>
36 #include <asm/uaccess.h>
39 #define MOTOROLA 1
40 #define PHILIPS2 2
41 #define PHILIPS1 3
42 #define MVVMEMORYWIDTH 0x40 /* 512 bytes */
44 struct pms_device
46 struct video_device v;
47 struct video_picture picture;
48 int height;
49 int width;
50 struct mutex lock;
53 struct i2c_info
55 u8 slave;
56 u8 sub;
57 u8 data;
58 u8 hits;
61 static int i2c_count;
62 static struct i2c_info i2cinfo[64];
64 static int decoder = PHILIPS2;
65 static int standard; /* 0 - auto 1 - ntsc 2 - pal 3 - secam */
68 * I/O ports and Shared Memory
71 static int io_port = 0x250;
72 static int data_port = 0x251;
73 static int mem_base = 0xC8000;
74 static void __iomem *mem;
75 static int video_nr = -1;
79 static inline void mvv_write(u8 index, u8 value)
81 outw(index|(value<<8), io_port);
84 static inline u8 mvv_read(u8 index)
86 outb(index, io_port);
87 return inb(data_port);
90 static int pms_i2c_stat(u8 slave)
92 int counter;
93 int i;
95 outb(0x28, io_port);
97 counter=0;
98 while((inb(data_port)&0x01)==0)
99 if(counter++==256)
100 break;
102 while((inb(data_port)&0x01)!=0)
103 if(counter++==256)
104 break;
106 outb(slave, io_port);
108 counter=0;
109 while((inb(data_port)&0x01)==0)
110 if(counter++==256)
111 break;
113 while((inb(data_port)&0x01)!=0)
114 if(counter++==256)
115 break;
117 for(i=0;i<12;i++)
119 char st=inb(data_port);
120 if((st&2)!=0)
121 return -1;
122 if((st&1)==0)
123 break;
125 outb(0x29, io_port);
126 return inb(data_port);
129 static int pms_i2c_write(u16 slave, u16 sub, u16 data)
131 int skip=0;
132 int count;
133 int i;
135 for(i=0;i<i2c_count;i++)
137 if((i2cinfo[i].slave==slave) &&
138 (i2cinfo[i].sub == sub))
140 if(i2cinfo[i].data==data)
141 skip=1;
142 i2cinfo[i].data=data;
143 i=i2c_count+1;
147 if(i==i2c_count && i2c_count<64)
149 i2cinfo[i2c_count].slave=slave;
150 i2cinfo[i2c_count].sub=sub;
151 i2cinfo[i2c_count].data=data;
152 i2c_count++;
155 if(skip)
156 return 0;
158 mvv_write(0x29, sub);
159 mvv_write(0x2A, data);
160 mvv_write(0x28, slave);
162 outb(0x28, io_port);
164 count=0;
165 while((inb(data_port)&1)==0)
166 if(count>255)
167 break;
168 while((inb(data_port)&1)!=0)
169 if(count>255)
170 break;
172 count=inb(data_port);
174 if(count&2)
175 return -1;
176 return count;
179 static int pms_i2c_read(int slave, int sub)
181 int i=0;
182 for(i=0;i<i2c_count;i++)
184 if(i2cinfo[i].slave==slave && i2cinfo[i].sub==sub)
185 return i2cinfo[i].data;
187 return 0;
191 static void pms_i2c_andor(int slave, int sub, int and, int or)
193 u8 tmp;
195 tmp=pms_i2c_read(slave, sub);
196 tmp = (tmp&and)|or;
197 pms_i2c_write(slave, sub, tmp);
201 * Control functions
205 static void pms_videosource(short source)
207 mvv_write(0x2E, source?0x31:0x30);
210 static void pms_hue(short hue)
212 switch(decoder)
214 case MOTOROLA:
215 pms_i2c_write(0x8A, 0x00, hue);
216 break;
217 case PHILIPS2:
218 pms_i2c_write(0x8A, 0x07, hue);
219 break;
220 case PHILIPS1:
221 pms_i2c_write(0x42, 0x07, hue);
222 break;
226 static void pms_colour(short colour)
228 switch(decoder)
230 case MOTOROLA:
231 pms_i2c_write(0x8A, 0x00, colour);
232 break;
233 case PHILIPS1:
234 pms_i2c_write(0x42, 0x12, colour);
235 break;
240 static void pms_contrast(short contrast)
242 switch(decoder)
244 case MOTOROLA:
245 pms_i2c_write(0x8A, 0x00, contrast);
246 break;
247 case PHILIPS1:
248 pms_i2c_write(0x42, 0x13, contrast);
249 break;
253 static void pms_brightness(short brightness)
255 switch(decoder)
257 case MOTOROLA:
258 pms_i2c_write(0x8A, 0x00, brightness);
259 pms_i2c_write(0x8A, 0x00, brightness);
260 pms_i2c_write(0x8A, 0x00, brightness);
261 break;
262 case PHILIPS1:
263 pms_i2c_write(0x42, 0x19, brightness);
264 break;
269 static void pms_format(short format)
271 int target;
272 standard = format;
274 if(decoder==PHILIPS1)
275 target=0x42;
276 else if(decoder==PHILIPS2)
277 target=0x8A;
278 else
279 return;
281 switch(format)
283 case 0: /* Auto */
284 pms_i2c_andor(target, 0x0D, 0xFE,0x00);
285 pms_i2c_andor(target, 0x0F, 0x3F,0x80);
286 break;
287 case 1: /* NTSC */
288 pms_i2c_andor(target, 0x0D, 0xFE, 0x00);
289 pms_i2c_andor(target, 0x0F, 0x3F, 0x40);
290 break;
291 case 2: /* PAL */
292 pms_i2c_andor(target, 0x0D, 0xFE, 0x00);
293 pms_i2c_andor(target, 0x0F, 0x3F, 0x00);
294 break;
295 case 3: /* SECAM */
296 pms_i2c_andor(target, 0x0D, 0xFE, 0x01);
297 pms_i2c_andor(target, 0x0F, 0x3F, 0x00);
298 break;
302 #ifdef FOR_FUTURE_EXPANSION
305 * These features of the PMS card are not currently exposes. They
306 * could become a private v4l ioctl for PMSCONFIG or somesuch if
307 * people need it. We also don't yet use the PMS interrupt.
310 static void pms_hstart(short start)
312 switch(decoder)
314 case PHILIPS1:
315 pms_i2c_write(0x8A, 0x05, start);
316 pms_i2c_write(0x8A, 0x18, start);
317 break;
318 case PHILIPS2:
319 pms_i2c_write(0x42, 0x05, start);
320 pms_i2c_write(0x42, 0x18, start);
321 break;
326 * Bandpass filters
329 static void pms_bandpass(short pass)
331 if(decoder==PHILIPS2)
332 pms_i2c_andor(0x8A, 0x06, 0xCF, (pass&0x03)<<4);
333 else if(decoder==PHILIPS1)
334 pms_i2c_andor(0x42, 0x06, 0xCF, (pass&0x03)<<4);
337 static void pms_antisnow(short snow)
339 if(decoder==PHILIPS2)
340 pms_i2c_andor(0x8A, 0x06, 0xF3, (snow&0x03)<<2);
341 else if(decoder==PHILIPS1)
342 pms_i2c_andor(0x42, 0x06, 0xF3, (snow&0x03)<<2);
345 static void pms_sharpness(short sharp)
347 if(decoder==PHILIPS2)
348 pms_i2c_andor(0x8A, 0x06, 0xFC, sharp&0x03);
349 else if(decoder==PHILIPS1)
350 pms_i2c_andor(0x42, 0x06, 0xFC, sharp&0x03);
353 static void pms_chromaagc(short agc)
355 if(decoder==PHILIPS2)
356 pms_i2c_andor(0x8A, 0x0C, 0x9F, (agc&0x03)<<5);
357 else if(decoder==PHILIPS1)
358 pms_i2c_andor(0x42, 0x0C, 0x9F, (agc&0x03)<<5);
361 static void pms_vertnoise(short noise)
363 if(decoder==PHILIPS2)
364 pms_i2c_andor(0x8A, 0x10, 0xFC, noise&3);
365 else if(decoder==PHILIPS1)
366 pms_i2c_andor(0x42, 0x10, 0xFC, noise&3);
369 static void pms_forcecolour(short colour)
371 if(decoder==PHILIPS2)
372 pms_i2c_andor(0x8A, 0x0C, 0x7F, (colour&1)<<7);
373 else if(decoder==PHILIPS1)
374 pms_i2c_andor(0x42, 0x0C, 0x7, (colour&1)<<7);
377 static void pms_antigamma(short gamma)
379 if(decoder==PHILIPS2)
380 pms_i2c_andor(0xB8, 0x00, 0x7F, (gamma&1)<<7);
381 else if(decoder==PHILIPS1)
382 pms_i2c_andor(0x42, 0x20, 0x7, (gamma&1)<<7);
385 static void pms_prefilter(short filter)
387 if(decoder==PHILIPS2)
388 pms_i2c_andor(0x8A, 0x06, 0xBF, (filter&1)<<6);
389 else if(decoder==PHILIPS1)
390 pms_i2c_andor(0x42, 0x06, 0xBF, (filter&1)<<6);
393 static void pms_hfilter(short filter)
395 if(decoder==PHILIPS2)
396 pms_i2c_andor(0xB8, 0x04, 0x1F, (filter&7)<<5);
397 else if(decoder==PHILIPS1)
398 pms_i2c_andor(0x42, 0x24, 0x1F, (filter&7)<<5);
401 static void pms_vfilter(short filter)
403 if(decoder==PHILIPS2)
404 pms_i2c_andor(0xB8, 0x08, 0x9F, (filter&3)<<5);
405 else if(decoder==PHILIPS1)
406 pms_i2c_andor(0x42, 0x28, 0x9F, (filter&3)<<5);
409 static void pms_killcolour(short colour)
411 if(decoder==PHILIPS2)
413 pms_i2c_andor(0x8A, 0x08, 0x07, (colour&0x1F)<<3);
414 pms_i2c_andor(0x8A, 0x09, 0x07, (colour&0x1F)<<3);
416 else if(decoder==PHILIPS1)
418 pms_i2c_andor(0x42, 0x08, 0x07, (colour&0x1F)<<3);
419 pms_i2c_andor(0x42, 0x09, 0x07, (colour&0x1F)<<3);
423 static void pms_chromagain(short chroma)
425 if(decoder==PHILIPS2)
427 pms_i2c_write(0x8A, 0x11, chroma);
429 else if(decoder==PHILIPS1)
431 pms_i2c_write(0x42, 0x11, chroma);
436 static void pms_spacialcompl(short data)
438 mvv_write(0x3B, data);
441 static void pms_spacialcomph(short data)
443 mvv_write(0x3A, data);
446 static void pms_vstart(short start)
448 mvv_write(0x16, start);
449 mvv_write(0x17, (start>>8)&0x01);
452 #endif
454 static void pms_secamcross(short cross)
456 if(decoder==PHILIPS2)
457 pms_i2c_andor(0x8A, 0x0F, 0xDF, (cross&1)<<5);
458 else if(decoder==PHILIPS1)
459 pms_i2c_andor(0x42, 0x0F, 0xDF, (cross&1)<<5);
463 static void pms_swsense(short sense)
465 if(decoder==PHILIPS2)
467 pms_i2c_write(0x8A, 0x0A, sense);
468 pms_i2c_write(0x8A, 0x0B, sense);
470 else if(decoder==PHILIPS1)
472 pms_i2c_write(0x42, 0x0A, sense);
473 pms_i2c_write(0x42, 0x0B, sense);
478 static void pms_framerate(short frr)
480 int fps=(standard==1)?30:25;
481 if(frr==0)
482 return;
483 fps=fps/frr;
484 mvv_write(0x14,0x80|fps);
485 mvv_write(0x15,1);
488 static void pms_vert(u8 deciden, u8 decinum)
490 mvv_write(0x1C, deciden); /* Denominator */
491 mvv_write(0x1D, decinum); /* Numerator */
495 * Turn 16bit ratios into best small ratio the chipset can grok
498 static void pms_vertdeci(unsigned short decinum, unsigned short deciden)
500 /* Knock it down by /5 once */
501 if(decinum%5==0)
503 deciden/=5;
504 decinum/=5;
507 * 3's
509 while(decinum%3==0 && deciden%3==0)
511 deciden/=3;
512 decinum/=3;
515 * 2's
517 while(decinum%2==0 && deciden%2==0)
519 decinum/=2;
520 deciden/=2;
523 * Fudgyify
525 while(deciden>32)
527 deciden/=2;
528 decinum=(decinum+1)/2;
530 if(deciden==32)
531 deciden--;
532 pms_vert(deciden,decinum);
535 static void pms_horzdeci(short decinum, short deciden)
537 if(decinum<=512)
539 if(decinum%5==0)
541 decinum/=5;
542 deciden/=5;
545 else
547 decinum=512;
548 deciden=640; /* 768 would be ideal */
551 while(((decinum|deciden)&1)==0)
553 decinum>>=1;
554 deciden>>=1;
556 while(deciden>32)
558 deciden>>=1;
559 decinum=(decinum+1)>>1;
561 if(deciden==32)
562 deciden--;
564 mvv_write(0x24, 0x80|deciden);
565 mvv_write(0x25, decinum);
568 static void pms_resolution(short width, short height)
570 int fg_height;
572 fg_height=height;
573 if(fg_height>280)
574 fg_height=280;
576 mvv_write(0x18, fg_height);
577 mvv_write(0x19, fg_height>>8);
579 if(standard==1)
581 mvv_write(0x1A, 0xFC);
582 mvv_write(0x1B, 0x00);
583 if(height>fg_height)
584 pms_vertdeci(240,240);
585 else
586 pms_vertdeci(fg_height,240);
588 else
590 mvv_write(0x1A, 0x1A);
591 mvv_write(0x1B, 0x01);
592 if(fg_height>256)
593 pms_vertdeci(270,270);
594 else
595 pms_vertdeci(fg_height, 270);
597 mvv_write(0x12,0);
598 mvv_write(0x13, MVVMEMORYWIDTH);
599 mvv_write(0x42, 0x00);
600 mvv_write(0x43, 0x00);
601 mvv_write(0x44, MVVMEMORYWIDTH);
603 mvv_write(0x22, width+8);
604 mvv_write(0x23, (width+8)>> 8);
606 if(standard==1)
607 pms_horzdeci(width,640);
608 else
609 pms_horzdeci(width+8, 768);
611 mvv_write(0x30, mvv_read(0x30)&0xFE);
612 mvv_write(0x08, mvv_read(0x08)|0x01);
613 mvv_write(0x01, mvv_read(0x01)&0xFD);
614 mvv_write(0x32, 0x00);
615 mvv_write(0x33, MVVMEMORYWIDTH);
620 * Set Input
623 static void pms_vcrinput(short input)
625 if(decoder==PHILIPS2)
626 pms_i2c_andor(0x8A,0x0D,0x7F,(input&1)<<7);
627 else if(decoder==PHILIPS1)
628 pms_i2c_andor(0x42,0x0D,0x7F,(input&1)<<7);
632 static int pms_capture(struct pms_device *dev, char __user *buf, int rgb555, int count)
634 int y;
635 int dw = 2*dev->width;
637 char tmp[dw+32]; /* using a temp buffer is faster than direct */
638 int cnt = 0;
639 int len=0;
640 unsigned char r8 = 0x5; /* value for reg8 */
642 if (rgb555)
643 r8 |= 0x20; /* else use untranslated rgb = 565 */
644 mvv_write(0x08,r8); /* capture rgb555/565, init DRAM, PC enable */
646 /* printf("%d %d %d %d %d %x %x\n",width,height,voff,nom,den,mvv_buf); */
648 for (y = 0; y < dev->height; y++ )
650 writeb(0, mem); /* synchronisiert neue Zeile */
653 * This is in truth a fifo, be very careful as if you
654 * forgot this odd things will occur 8)
657 memcpy_fromio(tmp, mem, dw+32); /* discard 16 word */
658 cnt -= dev->height;
659 while (cnt <= 0)
662 * Don't copy too far
664 int dt=dw;
665 if(dt+len>count)
666 dt=count-len;
667 cnt += dev->height;
668 if (copy_to_user(buf, tmp+32, dt))
669 return len ? len : -EFAULT;
670 buf += dt;
671 len += dt;
674 return len;
679 * Video4linux interfacing
682 static int pms_do_ioctl(struct inode *inode, struct file *file,
683 unsigned int cmd, void *arg)
685 struct video_device *dev = video_devdata(file);
686 struct pms_device *pd=(struct pms_device *)dev;
688 switch(cmd)
690 case VIDIOCGCAP:
692 struct video_capability *b = arg;
693 strcpy(b->name, "Mediavision PMS");
694 b->type = VID_TYPE_CAPTURE|VID_TYPE_SCALES;
695 b->channels = 4;
696 b->audios = 0;
697 b->maxwidth = 640;
698 b->maxheight = 480;
699 b->minwidth = 16;
700 b->minheight = 16;
701 return 0;
703 case VIDIOCGCHAN:
705 struct video_channel *v = arg;
706 if(v->channel<0 || v->channel>3)
707 return -EINVAL;
708 v->flags=0;
709 v->tuners=1;
710 /* Good question.. its composite or SVHS so.. */
711 v->type = VIDEO_TYPE_CAMERA;
712 switch(v->channel)
714 case 0:
715 strcpy(v->name, "Composite");break;
716 case 1:
717 strcpy(v->name, "SVideo");break;
718 case 2:
719 strcpy(v->name, "Composite(VCR)");break;
720 case 3:
721 strcpy(v->name, "SVideo(VCR)");break;
723 return 0;
725 case VIDIOCSCHAN:
727 struct video_channel *v = arg;
728 if(v->channel<0 || v->channel>3)
729 return -EINVAL;
730 mutex_lock(&pd->lock);
731 pms_videosource(v->channel&1);
732 pms_vcrinput(v->channel>>1);
733 mutex_unlock(&pd->lock);
734 return 0;
736 case VIDIOCGTUNER:
738 struct video_tuner *v = arg;
739 if(v->tuner)
740 return -EINVAL;
741 strcpy(v->name, "Format");
742 v->rangelow=0;
743 v->rangehigh=0;
744 v->flags= VIDEO_TUNER_PAL|VIDEO_TUNER_NTSC|VIDEO_TUNER_SECAM;
745 switch(standard)
747 case 0:
748 v->mode = VIDEO_MODE_AUTO;
749 break;
750 case 1:
751 v->mode = VIDEO_MODE_NTSC;
752 break;
753 case 2:
754 v->mode = VIDEO_MODE_PAL;
755 break;
756 case 3:
757 v->mode = VIDEO_MODE_SECAM;
758 break;
760 return 0;
762 case VIDIOCSTUNER:
764 struct video_tuner *v = arg;
765 if(v->tuner)
766 return -EINVAL;
767 mutex_lock(&pd->lock);
768 switch(v->mode)
770 case VIDEO_MODE_AUTO:
771 pms_framerate(25);
772 pms_secamcross(0);
773 pms_format(0);
774 break;
775 case VIDEO_MODE_NTSC:
776 pms_framerate(30);
777 pms_secamcross(0);
778 pms_format(1);
779 break;
780 case VIDEO_MODE_PAL:
781 pms_framerate(25);
782 pms_secamcross(0);
783 pms_format(2);
784 break;
785 case VIDEO_MODE_SECAM:
786 pms_framerate(25);
787 pms_secamcross(1);
788 pms_format(2);
789 break;
790 default:
791 mutex_unlock(&pd->lock);
792 return -EINVAL;
794 mutex_unlock(&pd->lock);
795 return 0;
797 case VIDIOCGPICT:
799 struct video_picture *p = arg;
800 *p = pd->picture;
801 return 0;
803 case VIDIOCSPICT:
805 struct video_picture *p = arg;
806 if(!((p->palette==VIDEO_PALETTE_RGB565 && p->depth==16)
807 ||(p->palette==VIDEO_PALETTE_RGB555 && p->depth==15)))
808 return -EINVAL;
809 pd->picture= *p;
812 * Now load the card.
815 mutex_lock(&pd->lock);
816 pms_brightness(p->brightness>>8);
817 pms_hue(p->hue>>8);
818 pms_colour(p->colour>>8);
819 pms_contrast(p->contrast>>8);
820 mutex_unlock(&pd->lock);
821 return 0;
823 case VIDIOCSWIN:
825 struct video_window *vw = arg;
826 if(vw->flags)
827 return -EINVAL;
828 if(vw->clipcount)
829 return -EINVAL;
830 if(vw->height<16||vw->height>480)
831 return -EINVAL;
832 if(vw->width<16||vw->width>640)
833 return -EINVAL;
834 pd->width=vw->width;
835 pd->height=vw->height;
836 mutex_lock(&pd->lock);
837 pms_resolution(pd->width, pd->height);
838 mutex_unlock(&pd->lock); /* Ok we figured out what to use from our wide choice */
839 return 0;
841 case VIDIOCGWIN:
843 struct video_window *vw = arg;
844 memset(vw,0,sizeof(*vw));
845 vw->width=pd->width;
846 vw->height=pd->height;
847 return 0;
849 case VIDIOCKEY:
850 return 0;
851 case VIDIOCCAPTURE:
852 case VIDIOCGFBUF:
853 case VIDIOCSFBUF:
854 case VIDIOCGFREQ:
855 case VIDIOCSFREQ:
856 case VIDIOCGAUDIO:
857 case VIDIOCSAUDIO:
858 return -EINVAL;
859 default:
860 return -ENOIOCTLCMD;
862 return 0;
865 static int pms_ioctl(struct inode *inode, struct file *file,
866 unsigned int cmd, unsigned long arg)
868 return video_usercopy(inode, file, cmd, arg, pms_do_ioctl);
871 static ssize_t pms_read(struct file *file, char __user *buf,
872 size_t count, loff_t *ppos)
874 struct video_device *v = video_devdata(file);
875 struct pms_device *pd=(struct pms_device *)v;
876 int len;
878 mutex_lock(&pd->lock);
879 len=pms_capture(pd, buf, (pd->picture.depth==16)?0:1,count);
880 mutex_unlock(&pd->lock);
881 return len;
884 static const struct file_operations pms_fops = {
885 .owner = THIS_MODULE,
886 .open = video_exclusive_open,
887 .release = video_exclusive_release,
888 .ioctl = pms_ioctl,
889 #ifdef CONFIG_COMPAT
890 .compat_ioctl = v4l_compat_ioctl32,
891 #endif
892 .read = pms_read,
893 .llseek = no_llseek,
896 static struct video_device pms_template=
898 .name = "Mediavision PMS",
899 .fops = &pms_fops,
902 static struct pms_device pms_device;
906 * Probe for and initialise the Mediavision PMS
909 static int init_mediavision(void)
911 int id;
912 int idec, decst;
913 int i;
915 unsigned char i2c_defs[]={
916 0x4C,0x30,0x00,0xE8,
917 0xB6,0xE2,0x00,0x00,
918 0xFF,0xFF,0x00,0x00,
919 0x00,0x00,0x78,0x98,
920 0x00,0x00,0x00,0x00,
921 0x34,0x0A,0xF4,0xCE,
922 0xE4
925 mem = ioremap(mem_base, 0x800);
926 if (!mem)
927 return -ENOMEM;
929 if (!request_region(0x9A01, 1, "Mediavision PMS config"))
931 printk(KERN_WARNING "mediavision: unable to detect: 0x9A01 in use.\n");
932 iounmap(mem);
933 return -EBUSY;
935 if (!request_region(io_port, 3, "Mediavision PMS"))
937 printk(KERN_WARNING "mediavision: I/O port %d in use.\n", io_port);
938 release_region(0x9A01, 1);
939 iounmap(mem);
940 return -EBUSY;
942 outb(0xB8, 0x9A01); /* Unlock */
943 outb(io_port>>4, 0x9A01); /* Set IO port */
946 id=mvv_read(3);
947 decst=pms_i2c_stat(0x43);
949 if(decst!=-1)
950 idec=2;
951 else if(pms_i2c_stat(0xb9)!=-1)
952 idec=3;
953 else if(pms_i2c_stat(0x8b)!=-1)
954 idec=1;
955 else
956 idec=0;
958 printk(KERN_INFO "PMS type is %d\n", idec);
959 if(idec == 0) {
960 release_region(io_port, 3);
961 release_region(0x9A01, 1);
962 iounmap(mem);
963 return -ENODEV;
967 * Ok we have a PMS of some sort
970 mvv_write(0x04, mem_base>>12); /* Set the memory area */
972 /* Ok now load the defaults */
974 for(i=0;i<0x19;i++)
976 if(i2c_defs[i]==0xFF)
977 pms_i2c_andor(0x8A, i, 0x07,0x00);
978 else
979 pms_i2c_write(0x8A, i, i2c_defs[i]);
982 pms_i2c_write(0xB8,0x00,0x12);
983 pms_i2c_write(0xB8,0x04,0x00);
984 pms_i2c_write(0xB8,0x07,0x00);
985 pms_i2c_write(0xB8,0x08,0x00);
986 pms_i2c_write(0xB8,0x09,0xFF);
987 pms_i2c_write(0xB8,0x0A,0x00);
988 pms_i2c_write(0xB8,0x0B,0x10);
989 pms_i2c_write(0xB8,0x10,0x03);
991 mvv_write(0x01, 0x00);
992 mvv_write(0x05, 0xA0);
993 mvv_write(0x08, 0x25);
994 mvv_write(0x09, 0x00);
995 mvv_write(0x0A, 0x20|MVVMEMORYWIDTH);
997 mvv_write(0x10, 0x02);
998 mvv_write(0x1E, 0x0C);
999 mvv_write(0x1F, 0x03);
1000 mvv_write(0x26, 0x06);
1002 mvv_write(0x2B, 0x00);
1003 mvv_write(0x2C, 0x20);
1004 mvv_write(0x2D, 0x00);
1005 mvv_write(0x2F, 0x70);
1006 mvv_write(0x32, 0x00);
1007 mvv_write(0x33, MVVMEMORYWIDTH);
1008 mvv_write(0x34, 0x00);
1009 mvv_write(0x35, 0x00);
1010 mvv_write(0x3A, 0x80);
1011 mvv_write(0x3B, 0x10);
1012 mvv_write(0x20, 0x00);
1013 mvv_write(0x21, 0x00);
1014 mvv_write(0x30, 0x22);
1015 return 0;
1019 * Initialization and module stuff
1022 static int __init init_pms_cards(void)
1024 printk(KERN_INFO "Mediavision Pro Movie Studio driver 0.02\n");
1026 data_port = io_port +1;
1028 if(init_mediavision())
1030 printk(KERN_INFO "Board not found.\n");
1031 return -ENODEV;
1033 memcpy(&pms_device, &pms_template, sizeof(pms_template));
1034 mutex_init(&pms_device.lock);
1035 pms_device.height=240;
1036 pms_device.width=320;
1037 pms_swsense(75);
1038 pms_resolution(320,240);
1039 return video_register_device((struct video_device *)&pms_device, VFL_TYPE_GRABBER, video_nr);
1042 module_param(io_port, int, 0);
1043 module_param(mem_base, int, 0);
1044 module_param(video_nr, int, 0);
1045 MODULE_LICENSE("GPL");
1048 static void __exit shutdown_mediavision(void)
1050 release_region(io_port,3);
1051 release_region(0x9A01, 1);
1054 static void __exit cleanup_pms_module(void)
1056 shutdown_mediavision();
1057 video_unregister_device((struct video_device *)&pms_device);
1058 iounmap(mem);
1061 module_init(init_pms_cards);
1062 module_exit(cleanup_pms_module);