OpenCores
URL https://opencores.org/ocsvn/or1k/or1k/trunk

Subversion Repositories or1k

[/] [or1k/] [trunk/] [linux/] [linux-2.4/] [drivers/] [media/] [video/] [tuner.c] - Blame information for rev 1765

Details | Compare with Previous | View Log

Line No. Rev Author Line
1 1275 phoenix
#include <linux/module.h>
2
#include <linux/kernel.h>
3
#include <linux/sched.h>
4
#include <linux/string.h>
5
#include <linux/timer.h>
6
#include <linux/delay.h>
7
#include <linux/errno.h>
8
#include <linux/slab.h>
9
#include <linux/poll.h>
10
#include <linux/i2c.h>
11
#include <linux/types.h>
12
#include <linux/videodev.h>
13
#include <linux/init.h>
14
 
15
#include "tuner.h"
16
#include "audiochip.h"
17
#include "i2c-compat.h"
18
# define strlcpy(dest,src,len) strncpy(dest,src,(len)-1)
19
 
20
/* Addresses to scan */
21
static unsigned short normal_i2c[] = {I2C_CLIENT_END};
22
static unsigned short normal_i2c_range[] = {0x60,0x6f,I2C_CLIENT_END};
23
I2C_CLIENT_INSMOD;
24
 
25
#define UNSET (-1U)
26
 
27
/* insmod options */
28
static unsigned int debug =  0;
29
static unsigned int type  =  UNSET;
30
static unsigned int addr  =  0;
31
static char *pal =  "b";
32
static unsigned int tv_range[2]    = { 44, 958 };
33
static unsigned int radio_range[2] = { 65, 108 };
34
MODULE_PARM(debug,"i");
35
MODULE_PARM(type,"i");
36
MODULE_PARM(addr,"i");
37
MODULE_PARM(tv_range,"2i");
38
MODULE_PARM(radio_range,"2i");
39
MODULE_PARM(pal,"s");
40
 
41
#define optimize_vco 1
42
 
43
MODULE_DESCRIPTION("device driver for various TV and TV+FM radio tuners");
44
MODULE_AUTHOR("Ralph Metzler, Gerd Knorr, Gunther Mayer");
45
MODULE_LICENSE("GPL");
46
 
47
static int this_adap;
48
#define dprintk     if (debug) printk
49
 
50
struct tuner
51
{
52
        unsigned int type;            /* chip type */
53
        unsigned int freq;            /* keep track of the current settings */
54
        unsigned int std;
55
 
56
        unsigned int radio;
57
        unsigned int mode;            /* current norm for multi-norm tuners */
58
 
59
        // only for MT2032
60
        unsigned int xogc;
61
        unsigned int radio_if2;
62
};
63
 
64
static struct i2c_driver driver;
65
static struct i2c_client client_template;
66
 
67
/* ---------------------------------------------------------------------- */
68
 
69
/* tv standard selection for Temic 4046 FM5
70
   this value takes the low bits of control byte 2
71
   from datasheet Rev.01, Feb.00
72
     standard     BG      I       L       L2      D
73
     picture IF   38.9    38.9    38.9    33.95   38.9
74
     sound 1      33.4    32.9    32.4    40.45   32.4
75
     sound 2      33.16
76
     NICAM        33.05   32.348  33.05           33.05
77
 */
78
#define TEMIC_SET_PAL_I         0x05
79
#define TEMIC_SET_PAL_DK        0x09
80
#define TEMIC_SET_PAL_L         0x0a // SECAM ?
81
#define TEMIC_SET_PAL_L2        0x0b // change IF !
82
#define TEMIC_SET_PAL_BG        0x0c
83
 
84
/* tv tuner system standard selection for Philips FQ1216ME
85
   this value takes the low bits of control byte 2
86
   from datasheet "1999 Nov 16" (supersedes "1999 Mar 23")
87
     standard           BG      DK      I       L       L`
88
     picture carrier    38.90   38.90   38.90   38.90   33.95
89
     colour             34.47   34.47   34.47   34.47   38.38
90
     sound 1            33.40   32.40   32.90   32.40   40.45
91
     sound 2            33.16   -       -       -       -
92
     NICAM              33.05   33.05   32.35   33.05   39.80
93
 */
94
#define PHILIPS_SET_PAL_I       0x01 /* Bit 2 always zero !*/
95
#define PHILIPS_SET_PAL_BGDK    0x09
96
#define PHILIPS_SET_PAL_L2      0x0a
97
#define PHILIPS_SET_PAL_L       0x0b    
98
 
99
/* system switching for Philips FI1216MF MK2
100
   from datasheet "1996 Jul 09",
101
    standard         BG     L      L'
102
    picture carrier  38.90  38.90  33.95
103
    colour           34.47  34.37  38.38
104
    sound 1          33.40  32.40  40.45
105
    sound 2          33.16  -      -
106
    NICAM            33.05  33.05  39.80
107
 */
108
#define PHILIPS_MF_SET_BG       0x01 /* Bit 2 must be zero, Bit 3 is system output */
109
#define PHILIPS_MF_SET_PAL_L    0x03 // France
110
#define PHILIPS_MF_SET_PAL_L2   0x02 // L'
111
 
112
 
113
/* ---------------------------------------------------------------------- */
114
 
115
struct tunertype
116
{
117
        char *name;
118
        unsigned char Vendor;
119
        unsigned char Type;
120
 
121
        unsigned short thresh1;  /*  band switch VHF_LO <=> VHF_HI  */
122
        unsigned short thresh2;  /*  band switch VHF_HI <=> UHF     */
123
        unsigned char VHF_L;
124
        unsigned char VHF_H;
125
        unsigned char UHF;
126
        unsigned char config;
127
        unsigned short IFPCoff; /* 622.4=16*38.90 MHz PAL,
128
                                   732  =16*45.75 NTSCi,
129
                                   940  =58.75 NTSC-Japan */
130
};
131
 
132
/*
133
 *      The floats in the tuner struct are computed at compile time
134
 *      by gcc and cast back to integers. Thus we don't violate the
135
 *      "no float in kernel" rule.
136
 */
137
static struct tunertype tuners[] = {
138
        { "Temic PAL (4002 FH5)", TEMIC, PAL,
139
          16*140.25,16*463.25,0x02,0x04,0x01,0x8e,623},
140
        { "Philips PAL_I (FI1246 and compatibles)", Philips, PAL_I,
141
          16*140.25,16*463.25,0xa0,0x90,0x30,0x8e,623},
142
        { "Philips NTSC (FI1236,FM1236 and compatibles)", Philips, NTSC,
143
          16*157.25,16*451.25,0xA0,0x90,0x30,0x8e,732},
144
        { "Philips (SECAM+PAL_BG) (FI1216MF, FM1216MF, FR1216MF)", Philips, SECAM,
145
          16*168.25,16*447.25,0xA7,0x97,0x37,0x8e,623},
146
 
147
        { "NoTuner", NoTuner, NOTUNER,
148
          0,0,0x00,0x00,0x00,0x00,0x00},
149
        { "Philips PAL_BG (FI1216 and compatibles)", Philips, PAL,
150
          16*168.25,16*447.25,0xA0,0x90,0x30,0x8e,623},
151
        { "Temic NTSC (4032 FY5)", TEMIC, NTSC,
152
          16*157.25,16*463.25,0x02,0x04,0x01,0x8e,732},
153
        { "Temic PAL_I (4062 FY5)", TEMIC, PAL_I,
154
          16*170.00,16*450.00,0x02,0x04,0x01,0x8e,623},
155
 
156
        { "Temic NTSC (4036 FY5)", TEMIC, NTSC,
157
          16*157.25,16*463.25,0xa0,0x90,0x30,0x8e,732},
158
        { "Alps HSBH1", TEMIC, NTSC,
159
          16*137.25,16*385.25,0x01,0x02,0x08,0x8e,732},
160
        { "Alps TSBE1",TEMIC,PAL,
161
          16*137.25,16*385.25,0x01,0x02,0x08,0x8e,732},
162
        { "Alps TSBB5", Alps, PAL_I, /* tested (UK UHF) with Modulartech MM205 */
163
          16*133.25,16*351.25,0x01,0x02,0x08,0x8e,632},
164
 
165
        { "Alps TSBE5", Alps, PAL, /* untested - data sheet guess. Only IF differs. */
166
          16*133.25,16*351.25,0x01,0x02,0x08,0x8e,622},
167
        { "Alps TSBC5", Alps, PAL, /* untested - data sheet guess. Only IF differs. */
168
          16*133.25,16*351.25,0x01,0x02,0x08,0x8e,608},
169
        { "Temic PAL_BG (4006FH5)", TEMIC, PAL,
170
          16*170.00,16*450.00,0xa0,0x90,0x30,0x8e,623},
171
        { "Alps TSCH6",Alps,NTSC,
172
          16*137.25,16*385.25,0x14,0x12,0x11,0x8e,732},
173
 
174
        { "Temic PAL_DK (4016 FY5)",TEMIC,PAL,
175
          16*168.25,16*456.25,0xa0,0x90,0x30,0x8e,623},
176
        { "Philips NTSC_M (MK2)",Philips,NTSC,
177
          16*160.00,16*454.00,0xa0,0x90,0x30,0x8e,732},
178
        { "Temic PAL_I (4066 FY5)", TEMIC, PAL_I,
179
          16*169.00, 16*454.00, 0xa0,0x90,0x30,0x8e,623},
180
        { "Temic PAL* auto (4006 FN5)", TEMIC, PAL,
181
          16*169.00, 16*454.00, 0xa0,0x90,0x30,0x8e,623},
182
 
183
        { "Temic PAL_BG (4009 FR5) or PAL_I (4069 FR5)", TEMIC, PAL,
184
          16*141.00, 16*464.00, 0xa0,0x90,0x30,0x8e,623},
185
        { "Temic NTSC (4039 FR5)", TEMIC, NTSC,
186
          16*158.00, 16*453.00, 0xa0,0x90,0x30,0x8e,732},
187
        { "Temic PAL/SECAM multi (4046 FM5)", TEMIC, PAL,
188
          16*169.00, 16*454.00, 0xa0,0x90,0x30,0x8e,623},
189
        { "Philips PAL_DK (FI1256 and compatibles)", Philips, PAL,
190
          16*170.00,16*450.00,0xa0,0x90,0x30,0x8e,623},
191
 
192
        { "Philips PAL/SECAM multi (FQ1216ME)", Philips, PAL,
193
          16*170.00,16*450.00,0xa0,0x90,0x30,0x8e,623},
194
        { "LG PAL_I+FM (TAPC-I001D)", LGINNOTEK, PAL_I,
195
          16*170.00,16*450.00,0xa0,0x90,0x30,0x8e,623},
196
        { "LG PAL_I (TAPC-I701D)", LGINNOTEK, PAL_I,
197
          16*170.00,16*450.00,0xa0,0x90,0x30,0x8e,623},
198
        { "LG NTSC+FM (TPI8NSR01F)", LGINNOTEK, NTSC,
199
          16*210.00,16*497.00,0xa0,0x90,0x30,0x8e,732},
200
 
201
        { "LG PAL_BG+FM (TPI8PSB01D)", LGINNOTEK, PAL,
202
          16*170.00,16*450.00,0xa0,0x90,0x30,0x8e,623},
203
        { "LG PAL_BG (TPI8PSB11D)", LGINNOTEK, PAL,
204
          16*170.00,16*450.00,0xa0,0x90,0x30,0x8e,623},
205
        { "Temic PAL* auto + FM (4009 FN5)", TEMIC, PAL,
206
          16*141.00, 16*464.00, 0xa0,0x90,0x30,0x8e,623},
207
        { "SHARP NTSC_JP (2U5JF5540)", SHARP, NTSC, /* 940=16*58.75 NTSC@Japan */
208
          16*137.25,16*317.25,0x01,0x02,0x08,0x8e,732 }, // Corrected to NTSC=732 (was:940)
209
 
210
        { "Samsung PAL TCPM9091PD27", Samsung, PAL,  /* from sourceforge v3tv */
211
          16*169,16*464,0xA0,0x90,0x30,0x8e,623},
212
        { "MT2032 universal", Microtune,PAL|NTSC,
213
               0,0,0,0,0,0,0},
214
        { "Temic PAL_BG (4106 FH5)", TEMIC, PAL,
215
          16*141.00, 16*464.00, 0xa0,0x90,0x30,0x8e,623},
216
        { "Temic PAL_DK/SECAM_L (4012 FY5)", TEMIC, PAL,
217
          16*140.25, 16*463.25, 0x02,0x04,0x01,0x8e,623},
218
 
219
        { "Temic NTSC (4136 FY5)", TEMIC, NTSC,
220
          16*158.00, 16*453.00, 0xa0,0x90,0x30,0x8e,732},
221
        { "LG PAL (newer TAPC series)", LGINNOTEK, PAL,
222
          16*170.00, 16*450.00, 0x01,0x02,0x08,0x8e,623},
223
        { "Philips PAL/SECAM multi (FM1216ME MK3)", Philips, PAL,
224
          16*160.00,16*442.00,0x01,0x02,0x04,0x8e,623 },
225
        { "LG NTSC (newer TAPC series)", LGINNOTEK, NTSC,
226
          16*170.00, 16*450.00, 0x01,0x02,0x08,0x8e,732},
227
 
228
        { "HITACHI V7-J180AT", HITACHI, NTSC,
229
          16*170.00, 16*450.00, 0x01,0x02,0x00,0x8e,940 },
230
        { "Philips PAL_MK (FI1216 MK)", Philips, PAL,
231
          16*140.25,16*463.25,0x01,0xc2,0xcf,0x8e,623},
232
};
233
#define TUNERS ARRAY_SIZE(tuners)
234
 
235
/* ---------------------------------------------------------------------- */
236
 
237
static int tuner_getstatus(struct i2c_client *c)
238
{
239
        unsigned char byte;
240
 
241
        struct tuner *t = i2c_get_clientdata(c);
242
 
243
        if (t->type == TUNER_MT2032)
244
                return 0;
245
 
246
        if (1 != i2c_master_recv(c,&byte,1))
247
                return 0;
248
        return byte;
249
}
250
 
251
#define TUNER_POR       0x80
252
#define TUNER_FL        0x40
253
#define TUNER_MODE      0x38
254
#define TUNER_AFC       0x07
255
 
256
#define TUNER_STEREO    0x10 /* radio mode */
257
#define TUNER_SIGNAL    0x07 /* radio mode */
258
 
259
static int tuner_signal(struct i2c_client *c)
260
{
261
        return (tuner_getstatus(c) & TUNER_SIGNAL)<<13;
262
}
263
 
264
static int tuner_stereo(struct i2c_client *c)
265
{
266
        return (tuner_getstatus (c) & TUNER_STEREO);
267
}
268
 
269
#if 0 /* unused */
270
static int tuner_islocked (struct i2c_client *c)
271
{
272
        return (tuner_getstatus (c) & TUNER_FL);
273
}
274
 
275
static int tuner_afcstatus (struct i2c_client *c)
276
{
277
        return (tuner_getstatus (c) & TUNER_AFC) - 2;
278
}
279
 
280
static int tuner_mode (struct i2c_client *c)
281
{
282
        return (tuner_getstatus (c) & TUNER_MODE) >> 3;
283
}
284
#endif
285
 
286
// Initalization as described in "MT203x Programming Procedures", Rev 1.2, Feb.2001
287
static int mt2032_init(struct i2c_client *c)
288
{
289
        unsigned char buf[21];
290
        int ret,xogc,xok=0;
291
        struct tuner *t = i2c_get_clientdata(c);
292
 
293
        buf[0]=0;
294
        ret=i2c_master_send(c,buf,1);
295
        i2c_master_recv(c,buf,21);
296
 
297
        printk("MT2032: Companycode=%02x%02x Part=%02x Revision=%02x\n",
298
                buf[0x11],buf[0x12],buf[0x13],buf[0x14]);
299
 
300
        if(debug) {
301
                int i;
302
                printk("MT2032 hexdump:\n");
303
                for(i=0;i<21;i++) {
304
                        printk(" %02x",buf[i]);
305
                        if(((i+1)%8)==0) printk(" ");
306
                        if(((i+1)%16)==0) printk("\n ");
307
                }
308
                printk("\n ");
309
        }
310
        // Look for MT2032 id:
311
        // part= 0x04(MT2032), 0x06(MT2030), 0x07(MT2040)
312
        if((buf[0x11] != 0x4d) || (buf[0x12] != 0x54) || (buf[0x13] != 0x04)) {
313
                printk("not a MT2032.\n");
314
                return 0;
315
        }
316
 
317
 
318
        // Initialize Registers per spec.
319
        buf[1]=2; // Index to register 2
320
        buf[2]=0xff;
321
        buf[3]=0x0f;
322
        buf[4]=0x1f;
323
        ret=i2c_master_send(c,buf+1,4);
324
 
325
        buf[5]=6; // Index register 6
326
        buf[6]=0xe4;
327
        buf[7]=0x8f;
328
        buf[8]=0xc3;
329
        buf[9]=0x4e;
330
        buf[10]=0xec;
331
        ret=i2c_master_send(c,buf+5,6);
332
 
333
        buf[12]=13;  // Index register 13
334
        buf[13]=0x32;
335
        ret=i2c_master_send(c,buf+12,2);
336
 
337
        // Adjust XOGC (register 7), wait for XOK
338
        xogc=7;
339
        do {
340
                dprintk("mt2032: xogc = 0x%02x\n",xogc&0x07);
341
                mdelay(10);
342
                buf[0]=0x0e;
343
                i2c_master_send(c,buf,1);
344
                i2c_master_recv(c,buf,1);
345
                xok=buf[0]&0x01;
346
                dprintk("mt2032: xok = 0x%02x\n",xok);
347
                if (xok == 1) break;
348
 
349
                xogc--;
350
                dprintk("mt2032: xogc = 0x%02x\n",xogc&0x07);
351
                if (xogc == 3) {
352
                        xogc=4; // min. 4 per spec
353
                        break;
354
                }
355
                buf[0]=0x07;
356
                buf[1]=0x88 + xogc;
357
                ret=i2c_master_send(c,buf,2);
358
                if (ret!=2)
359
                        printk("mt2032_init failed with %d\n",ret);
360
        } while (xok != 1 );
361
        t->xogc=xogc;
362
 
363
        return(1);
364
}
365
 
366
 
367
// IsSpurInBand()?
368
static int mt2032_spurcheck(int f1, int f2, int spectrum_from,int spectrum_to)
369
{
370
        int n1=1,n2,f;
371
 
372
        f1=f1/1000; //scale to kHz to avoid 32bit overflows
373
        f2=f2/1000;
374
        spectrum_from/=1000;
375
        spectrum_to/=1000;
376
 
377
        dprintk("spurcheck f1=%d f2=%d  from=%d to=%d\n",f1,f2,spectrum_from,spectrum_to);
378
 
379
        do {
380
            n2=-n1;
381
            f=n1*(f1-f2);
382
            do {
383
                n2--;
384
                f=f-f2;
385
                dprintk(" spurtest n1=%d n2=%d ftest=%d\n",n1,n2,f);
386
 
387
                if( (f>spectrum_from) && (f<spectrum_to))
388
                        printk("mt2032 spurcheck triggered: %d\n",n1);
389
            } while ( (f>(f2-spectrum_to)) || (n2>-5));
390
            n1++;
391
        } while (n1<5);
392
 
393
        return 1;
394
}
395
 
396
static int mt2032_compute_freq(unsigned int rfin,
397
                               unsigned int if1, unsigned int if2,
398
                               unsigned int spectrum_from,
399
                               unsigned int spectrum_to,
400
                               unsigned char *buf,
401
                               int *ret_sel,
402
                               unsigned int xogc) //all in Hz
403
{
404
        unsigned int fref,lo1,lo1n,lo1a,s,sel,lo1freq, desired_lo1,
405
                desired_lo2,lo2,lo2n,lo2a,lo2num,lo2freq;
406
 
407
        fref= 5250 *1000; //5.25MHz
408
        desired_lo1=rfin+if1;
409
 
410
        lo1=(2*(desired_lo1/1000)+(fref/1000)) / (2*fref/1000);
411
        lo1n=lo1/8;
412
        lo1a=lo1-(lo1n*8);
413
 
414
        s=rfin/1000/1000+1090;
415
 
416
        if(optimize_vco) {
417
                if(s>1890) sel=0;
418
                else if(s>1720) sel=1;
419
                else if(s>1530) sel=2;
420
                else if(s>1370) sel=3;
421
                else sel=4; // >1090
422
        }
423
        else {
424
                if(s>1790) sel=0; // <1958
425
                else if(s>1617) sel=1;
426
                else if(s>1449) sel=2;
427
                else if(s>1291) sel=3;
428
                else sel=4; // >1090
429
        }
430
        *ret_sel=sel;
431
 
432
        lo1freq=(lo1a+8*lo1n)*fref;
433
 
434
        dprintk("mt2032: rfin=%d lo1=%d lo1n=%d lo1a=%d sel=%d, lo1freq=%d\n",
435
                rfin,lo1,lo1n,lo1a,sel,lo1freq);
436
 
437
        desired_lo2=lo1freq-rfin-if2;
438
        lo2=(desired_lo2)/fref;
439
        lo2n=lo2/8;
440
        lo2a=lo2-(lo2n*8);
441
        lo2num=((desired_lo2/1000)%(fref/1000))* 3780/(fref/1000); //scale to fit in 32bit arith
442
        lo2freq=(lo2a+8*lo2n)*fref + lo2num*(fref/1000)/3780*1000;
443
 
444
        dprintk("mt2032: rfin=%d lo2=%d lo2n=%d lo2a=%d num=%d lo2freq=%d\n",
445
                rfin,lo2,lo2n,lo2a,lo2num,lo2freq);
446
 
447
        if(lo1a<0 || lo1a>7 || lo1n<17 ||lo1n>48 || lo2a<0 ||lo2a >7 ||lo2n<17 || lo2n>30) {
448
                printk("mt2032: frequency parameters out of range: %d %d %d %d\n",
449
                       lo1a, lo1n, lo2a,lo2n);
450
                return(-1);
451
        }
452
 
453
        mt2032_spurcheck(lo1freq, desired_lo2,  spectrum_from, spectrum_to);
454
        // should recalculate lo1 (one step up/down)
455
 
456
        // set up MT2032 register map for transfer over i2c
457
        buf[0]=lo1n-1;
458
        buf[1]=lo1a | (sel<<4);
459
        buf[2]=0x86; // LOGC
460
        buf[3]=0x0f; //reserved
461
        buf[4]=0x1f;
462
        buf[5]=(lo2n-1) | (lo2a<<5);
463
        if(rfin >400*1000*1000)
464
                buf[6]=0xe4;
465
        else
466
                buf[6]=0xf4; // set PKEN per rev 1.2 
467
        buf[7]=8+xogc;
468
        buf[8]=0xc3; //reserved
469
        buf[9]=0x4e; //reserved
470
        buf[10]=0xec; //reserved
471
        buf[11]=(lo2num&0xff);
472
        buf[12]=(lo2num>>8) |0x80; // Lo2RST
473
 
474
        return 0;
475
}
476
 
477
static int mt2032_check_lo_lock(struct i2c_client *c)
478
{
479
        int try,lock=0;
480
        unsigned char buf[2];
481
        for(try=0;try<10;try++) {
482
                buf[0]=0x0e;
483
                i2c_master_send(c,buf,1);
484
                i2c_master_recv(c,buf,1);
485
                dprintk("mt2032 Reg.E=0x%02x\n",buf[0]);
486
                lock=buf[0] &0x06;
487
 
488
                if (lock==6)
489
                        break;
490
 
491
                dprintk("mt2032: pll wait 1ms for lock (0x%2x)\n",buf[0]);
492
                udelay(1000);
493
        }
494
        return lock;
495
}
496
 
497
static int mt2032_optimize_vco(struct i2c_client *c,int sel,int lock)
498
{
499
        unsigned char buf[2];
500
        int tad1;
501
 
502
        buf[0]=0x0f;
503
        i2c_master_send(c,buf,1);
504
        i2c_master_recv(c,buf,1);
505
        dprintk("mt2032 Reg.F=0x%02x\n",buf[0]);
506
        tad1=buf[0]&0x07;
507
 
508
        if(tad1 ==0) return lock;
509
        if(tad1 ==1) return lock;
510
 
511
        if(tad1==2) {
512
                if(sel==0)
513
                        return lock;
514
                else sel--;
515
        }
516
        else {
517
                if(sel<4)
518
                        sel++;
519
                else
520
                        return lock;
521
        }
522
 
523
        dprintk("mt2032 optimize_vco: sel=%d\n",sel);
524
 
525
        buf[0]=0x0f;
526
        buf[1]=sel;
527
        i2c_master_send(c,buf,2);
528
        lock=mt2032_check_lo_lock(c);
529
        return lock;
530
}
531
 
532
 
533
static void mt2032_set_if_freq(struct i2c_client *c, unsigned int rfin,
534
                               unsigned int if1, unsigned int if2,
535
                               unsigned int from, unsigned int to)
536
{
537
        unsigned char buf[21];
538
        int lint_try,ret,sel,lock=0;
539
        struct tuner *t = i2c_get_clientdata(c);
540
 
541
        dprintk("mt2032_set_if_freq rfin=%d if1=%d if2=%d from=%d to=%d\n",rfin,if1,if2,from,to);
542
 
543
        buf[0]=0;
544
        ret=i2c_master_send(c,buf,1);
545
        i2c_master_recv(c,buf,21);
546
 
547
        buf[0]=0;
548
        ret=mt2032_compute_freq(rfin,if1,if2,from,to,&buf[1],&sel,t->xogc);
549
        if (ret<0)
550
                return;
551
 
552
        // send only the relevant registers per Rev. 1.2
553
        buf[0]=0;
554
        ret=i2c_master_send(c,buf,4);
555
        buf[5]=5;
556
        ret=i2c_master_send(c,buf+5,4);
557
        buf[11]=11;
558
        ret=i2c_master_send(c,buf+11,3);
559
        if(ret!=3)
560
                printk("mt2032_set_if_freq failed with %d\n",ret);
561
 
562
        // wait for PLLs to lock (per manual), retry LINT if not.
563
        for(lint_try=0; lint_try<2; lint_try++) {
564
                lock=mt2032_check_lo_lock(c);
565
 
566
                if(optimize_vco)
567
                        lock=mt2032_optimize_vco(c,sel,lock);
568
                if(lock==6) break;
569
 
570
                printk("mt2032: re-init PLLs by LINT\n");
571
                buf[0]=7;
572
                buf[1]=0x80 +8+t->xogc; // set LINT to re-init PLLs
573
                i2c_master_send(c,buf,2);
574
                mdelay(10);
575
                buf[1]=8+t->xogc;
576
                i2c_master_send(c,buf,2);
577
        }
578
 
579
        if (lock!=6)
580
                printk("MT2032 Fatal Error: PLLs didn't lock.\n");
581
 
582
        buf[0]=2;
583
        buf[1]=0x20; // LOGC for optimal phase noise
584
        ret=i2c_master_send(c,buf,2);
585
        if (ret!=2)
586
                printk("mt2032_set_if_freq2 failed with %d\n",ret);
587
}
588
 
589
 
590
static void mt2032_set_tv_freq(struct i2c_client *c,
591
                               unsigned int freq, unsigned int norm)
592
{
593
        int if2,from,to;
594
 
595
        // signal bandwidth and picture carrier
596
        if (norm==VIDEO_MODE_NTSC) {
597
                from=40750*1000;
598
                to=46750*1000;
599
                if2=45750*1000;
600
        } else {
601
                // Pal 
602
                from=32900*1000;
603
                to=39900*1000;
604
                if2=38900*1000;
605
        }
606
 
607
        mt2032_set_if_freq(c, freq*62500 /* freq*1000*1000/16 */,
608
                           1090*1000*1000, if2, from, to);
609
}
610
 
611
 
612
// Set tuner frequency,  freq in Units of 62.5kHz = 1/16MHz
613
static void set_tv_freq(struct i2c_client *c, unsigned int freq)
614
{
615
        u8 config;
616
        u16 div;
617
        struct tunertype *tun;
618
        struct tuner *t = i2c_get_clientdata(c);
619
        unsigned char buffer[4];
620
        int rc;
621
 
622
        if (t->type == UNSET) {
623
                printk("tuner: tuner type not set\n");
624
                return;
625
        }
626
        if (t->type == TUNER_MT2032) {
627
                mt2032_set_tv_freq(c,freq,t->mode);
628
                return;
629
        }
630
 
631
        if (freq < tv_range[0]*16 || freq > tv_range[1]*16) {
632
                /* FIXME: better do that chip-specific, but
633
                   right now we don't have that in the config
634
                   struct and this way is still better than no
635
                   check at all */
636
                printk("tuner: TV freq (%d.%02d) out of range (%d-%d)\n",
637
                       freq/16,freq%16*100/16,tv_range[0],tv_range[1]);
638
                return;
639
        }
640
 
641
        tun=&tuners[t->type];
642
        if (freq < tun->thresh1)
643
                config = tun->VHF_L;
644
        else if (freq < tun->thresh2)
645
                config = tun->VHF_H;
646
        else
647
                config = tun->UHF;
648
 
649
 
650
        /* tv norm specific stuff for multi-norm tuners */
651
        switch (t->type) {
652
        case TUNER_PHILIPS_SECAM: // FI1216MF
653
                /* 0x01 -> ??? no change ??? */
654
                /* 0x02 -> PAL BDGHI / SECAM L */
655
                /* 0x04 -> ??? PAL others / SECAM others ??? */
656
                config &= ~0x02;
657
                if (t->mode == VIDEO_MODE_SECAM)
658
                        config |= 0x02;
659
                break;
660
 
661
        case TUNER_TEMIC_4046FM5:
662
                config &= ~0x0f;
663
                switch (pal[0]) {
664
                case 'i':
665
                case 'I':
666
                        config |= TEMIC_SET_PAL_I;
667
                        break;
668
                case 'd':
669
                case 'D':
670
                        config |= TEMIC_SET_PAL_DK;
671
                        break;
672
                case 'l':
673
                case 'L':
674
                        config |= TEMIC_SET_PAL_L;
675
                        break;
676
                case 'b':
677
                case 'B':
678
                case 'g':
679
                case 'G':
680
                default:
681
                        config |= TEMIC_SET_PAL_BG;
682
                        break;
683
                }
684
                break;
685
 
686
        case TUNER_PHILIPS_FQ1216ME:
687
                config &= ~0x0f;
688
                switch (pal[0]) {
689
                case 'i':
690
                case 'I':
691
                        config |= PHILIPS_SET_PAL_I;
692
                        break;
693
                case 'l':
694
                case 'L':
695
                        config |= PHILIPS_SET_PAL_L;
696
                        break;
697
                case 'd':
698
                case 'D':
699
                case 'b':
700
                case 'B':
701
                case 'g':
702
                case 'G':
703
                        config |= PHILIPS_SET_PAL_BGDK;
704
                        break;
705
                }
706
                break;
707
        }
708
 
709
 
710
        /*
711
         * Philips FI1216MK2 remark from specification :
712
         * for channel selection involving band switching, and to ensure
713
         * smooth tuning to the desired channel without causing
714
         * unnecessary charge pump action, it is recommended to consider
715
         * the difference between wanted channel frequency and the
716
         * current channel frequency.  Unnecessary charge pump action
717
         * will result in very low tuning voltage which may drive the
718
         * oscillator to extreme conditions.
719
         *
720
         * Progfou: specification says to send config data before
721
         * frequency in case (wanted frequency < current frequency).
722
         */
723
 
724
        div=freq + tun->IFPCoff;
725
        if (t->type == TUNER_PHILIPS_SECAM && freq < t->freq) {
726
                buffer[0] = tun->config;
727
                buffer[1] = config;
728
                buffer[2] = (div>>8) & 0x7f;
729
                buffer[3] = div      & 0xff;
730
        } else {
731
                buffer[0] = (div>>8) & 0x7f;
732
                buffer[1] = div      & 0xff;
733
                buffer[2] = tun->config;
734
                buffer[3] = config;
735
        }
736
        dprintk("tuner: tv 0x%02x 0x%02x 0x%02x 0x%02x\n",
737
                buffer[0],buffer[1],buffer[2],buffer[3]);
738
 
739
        if (4 != (rc = i2c_master_send(c,buffer,4)))
740
                printk("tuner: i2c i/o error: rc == %d (should be 4)\n",rc);
741
 
742
}
743
 
744
static void mt2032_set_radio_freq(struct i2c_client *c, unsigned int freq)
745
{
746
        struct tuner *t = i2c_get_clientdata(c);
747
        int if2 = t->radio_if2;
748
 
749
        // per Manual for FM tuning: first if center freq. 1085 MHz
750
        mt2032_set_if_freq(c, freq*62500 /* freq*1000*1000/16 */,
751
                           1085*1000*1000,if2,if2,if2);
752
}
753
 
754
static void set_radio_freq(struct i2c_client *c, unsigned int freq)
755
{
756
        struct tunertype *tun;
757
        struct tuner *t = i2c_get_clientdata(c);
758
        unsigned char buffer[4];
759
        unsigned div;
760
        int rc;
761
 
762
        if (freq < radio_range[0]*16 || freq > radio_range[1]*16) {
763
                printk("tuner: radio freq (%d.%02d) out of range (%d-%d)\n",
764
                       freq/16,freq%16*100/16,
765
                       radio_range[0],radio_range[1]);
766
                return;
767
        }
768
        if (t->type == UNSET) {
769
                printk("tuner: tuner type not set\n");
770
                return;
771
        }
772
 
773
        if (t->type == TUNER_MT2032) {
774
                mt2032_set_radio_freq(c,freq);
775
                return;
776
        }
777
 
778
        tun=&tuners[t->type];
779
        div = freq + (int)(16*10.7);
780
        buffer[0] = (div>>8) & 0x7f;
781
        buffer[1] = div      & 0xff;
782
        buffer[2] = tun->config;
783
        switch (t->type) {
784
        case TUNER_PHILIPS_FM1216ME_MK3:
785
                buffer[3] = 0x19;
786
                break;
787
        default:
788
                buffer[3] = 0xa4;
789
                break;
790
        }
791
 
792
        dprintk("tuner: radio 0x%02x 0x%02x 0x%02x 0x%02x\n",
793
                buffer[0],buffer[1],buffer[2],buffer[3]);
794
 
795
        if (4 != (rc = i2c_master_send(c,buffer,4)))
796
                printk("tuner: i2c i/o error: rc == %d (should be 4)\n",rc);
797
}
798
 
799
/* ---------------------------------------------------------------------- */
800
 
801
static int tuner_attach(struct i2c_adapter *adap, int addr,
802
                        unsigned short flags, int kind)
803
{
804
        struct tuner *t;
805
        struct i2c_client *client;
806
 
807
        if (this_adap > 0)
808
                return -1;
809
        this_adap++;
810
 
811
        client_template.adapter = adap;
812
        client_template.addr = addr;
813
 
814
        printk("tuner: chip found @ 0x%x\n", addr<<1);
815
 
816
        if (NULL == (client = kmalloc(sizeof(struct i2c_client), GFP_KERNEL)))
817
                return -ENOMEM;
818
        memcpy(client,&client_template,sizeof(struct i2c_client));
819
        t = kmalloc(sizeof(struct tuner),GFP_KERNEL);
820
        if (NULL == t) {
821
                kfree(client);
822
                return -ENOMEM;
823
        }
824
        memset(t,0,sizeof(struct tuner));
825
        i2c_set_clientdata(client, t);
826
        t->type       = UNSET;
827
        t->radio_if2  = 10700*1000; // 10.7MHz - FM radio
828
 
829
        if (type < TUNERS) {
830
                t->type = type;
831
                printk("tuner(bttv): type forced to %d (%s) [insmod]\n",t->type,tuners[t->type].name);
832
                strlcpy(client->name, tuners[t->type].name, sizeof(client->name));
833
        }
834
        i2c_attach_client(client);
835
        if (t->type == TUNER_MT2032)
836
                 mt2032_init(client);
837
 
838
        MOD_INC_USE_COUNT;
839
        return 0;
840
}
841
 
842
static int tuner_probe(struct i2c_adapter *adap)
843
{
844
        if (0 != addr) {
845
                normal_i2c_range[0] = addr;
846
                normal_i2c_range[1] = addr;
847
        }
848
        this_adap = 0;
849
 
850
#ifdef I2C_ADAP_CLASS_TV_ANALOG
851
        if (adap->class & I2C_ADAP_CLASS_TV_ANALOG)
852
                return i2c_probe(adap, &addr_data, tuner_attach);
853
#else
854
        switch (adap->id) {
855
        case I2C_ALGO_BIT | I2C_HW_B_BT848:
856
        case I2C_ALGO_BIT | I2C_HW_B_RIVA:
857
        case I2C_ALGO_SAA7134:
858
        case I2C_ALGO_SAA7146:
859
                return i2c_probe(adap, &addr_data, tuner_attach);
860
                break;
861
        }
862
#endif
863
        return 0;
864
}
865
 
866
static int tuner_detach(struct i2c_client *client)
867
{
868
        struct tuner *t = i2c_get_clientdata(client);
869
 
870
        i2c_detach_client(client);
871
        kfree(t);
872
        kfree(client);
873
        MOD_DEC_USE_COUNT;
874
        return 0;
875
}
876
 
877
static int
878
tuner_command(struct i2c_client *client, unsigned int cmd, void *arg)
879
{
880
        struct tuner *t = i2c_get_clientdata(client);
881
        unsigned int *iarg = (int*)arg;
882
 
883
        switch (cmd) {
884
 
885
        /* --- configuration --- */
886
        case TUNER_SET_TYPE:
887
                if (t->type != UNSET) {
888
                        printk("tuner: type already set (%d)\n",t->type);
889
                        return 0;
890
                }
891
                if (*iarg >= TUNERS)
892
                        return 0;
893
                t->type = *iarg;
894
                printk("tuner: type set to %d (%s)\n",
895
                        t->type,tuners[t->type].name);
896
                strlcpy(client->name, tuners[t->type].name, sizeof(client->name));
897
                if (t->type == TUNER_MT2032)
898
                        mt2032_init(client);
899
                break;
900
        case AUDC_SET_RADIO:
901
                if (!t->radio) {
902
                        set_tv_freq(client,400 * 16);
903
                        t->radio = 1;
904
                }
905
                break;
906
        case AUDC_CONFIG_PINNACLE:
907
                switch (*iarg) {
908
                case 2:
909
                        dprintk("tuner: pinnacle pal\n");
910
                        t->radio_if2 = 33300 * 1000;
911
                        break;
912
                case 3:
913
                        dprintk("tuner: pinnacle ntsc\n");
914
                        t->radio_if2 = 41300 * 1000;
915
                        break;
916
                }
917
                break;
918
 
919
        /* --- v4l ioctls --- */
920
        /* take care: bttv does userspace copying, we'll get a
921
           kernel pointer here... */
922
        case VIDIOCSCHAN:
923
        {
924
                struct video_channel *vc = arg;
925
 
926
                t->radio = 0;
927
                t->mode = vc->norm;
928
                if (t->freq)
929
                        set_tv_freq(client,t->freq);
930
                return 0;
931
        }
932
        case VIDIOCSFREQ:
933
        {
934
                unsigned long *v = arg;
935
 
936
                if (t->radio) {
937
                        dprintk("tuner: radio freq set to %d.%02d\n",
938
                                (*iarg)/16,(*iarg)%16*100/16);
939
                        set_radio_freq(client,*v);
940
                } else {
941
                        dprintk("tuner: tv freq set to %d.%02d\n",
942
                                (*iarg)/16,(*iarg)%16*100/16);
943
                        set_tv_freq(client,*v);
944
                }
945
                t->freq = *v;
946
                return 0;
947
        }
948
        case VIDIOCGTUNER:
949
        {
950
                struct video_tuner *vt = arg;
951
 
952
                if (t->radio)
953
                        vt->signal = tuner_signal(client);
954
                return 0;
955
        }
956
        case VIDIOCGAUDIO:
957
        {
958
                struct video_audio *va = arg;
959
                if (t->radio)
960
                        va->mode = (tuner_stereo(client) ? VIDEO_SOUND_STEREO : VIDEO_SOUND_MONO);
961
                return 0;
962
        }
963
        default:
964
                /* nothing */
965
                break;
966
        }
967
 
968
        return 0;
969
}
970
 
971
/* ----------------------------------------------------------------------- */
972
 
973
static struct i2c_driver driver = {
974
        .name           = "i2c TV tuner driver",
975
        .id             = I2C_DRIVERID_TUNER,
976
        .flags          = I2C_DF_NOTIFY,
977
        .attach_adapter = tuner_probe,
978
        .detach_client  = tuner_detach,
979
        .command        = tuner_command,
980
};
981
static struct i2c_client client_template =
982
{
983
        I2C_DEVNAME("(tuner unset)"),
984
        .flags      = I2C_CLIENT_ALLOW_USE,
985
        .driver     = &driver,
986
};
987
 
988
static int tuner_init_module(void)
989
{
990
        i2c_add_driver(&driver);
991
        return 0;
992
}
993
 
994
static void tuner_cleanup_module(void)
995
{
996
        i2c_del_driver(&driver);
997
}
998
 
999
module_init(tuner_init_module);
1000
module_exit(tuner_cleanup_module);
1001
 
1002
/*
1003
 * Overrides for Emacs so that we follow Linus's tabbing style.
1004
 * ---------------------------------------------------------------------------
1005
 * Local variables:
1006
 * c-basic-offset: 8
1007
 * End:
1008
 */

powered by: WebSVN 2.1.0

© copyright 1999-2025 OpenCores.org, equivalent to Oliscience, all rights reserved. OpenCores®, registered trademark.