blob: a02d6404f755d401f93b98d149dbc304cd5e11d1 [file] [log] [blame]
Michael Krufky5bea1cd2007-10-22 09:56:38 -03001/*
Michael Krufky6ca04de2007-11-23 16:52:15 -03002 tda18271-fe.c - driver for the Philips / NXP TDA18271 silicon tuner
Michael Krufky5bea1cd2007-10-22 09:56:38 -03003
Michael Krufky59067f72008-01-02 01:58:26 -03004 Copyright (C) 2007, 2008 Michael Krufky <mkrufky@linuxtv.org>
Michael Krufky5bea1cd2007-10-22 09:56:38 -03005
6 This program is free software; you can redistribute it and/or modify
7 it under the terms of the GNU General Public License as published by
8 the Free Software Foundation; either version 2 of the License, or
9 (at your option) any later version.
10
11 This program is distributed in the hope that it will be useful,
12 but WITHOUT ANY WARRANTY; without even the implied warranty of
13 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
14 GNU General Public License for more details.
15
16 You should have received a copy of the GNU General Public License
17 along with this program; if not, write to the Free Software
18 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
19*/
20
Michael Krufky5bea1cd2007-10-22 09:56:38 -030021#include <linux/delay.h>
22#include <linux/videodev2.h>
Michael Krufky6ca04de2007-11-23 16:52:15 -030023#include "tda18271-priv.h"
Michael Krufky5bea1cd2007-10-22 09:56:38 -030024
Michael Krufkyb5f3e1e2007-12-02 16:36:05 -030025int tda18271_debug;
Michael Krufky54465b02007-11-23 18:14:53 -030026module_param_named(debug, tda18271_debug, int, 0644);
Michael Krufky293da0e2007-12-02 02:45:04 -030027MODULE_PARM_DESC(debug, "set debug level (info=1, map=2, reg=4 (or-able))");
Michael Krufky5bea1cd2007-10-22 09:56:38 -030028
Michael Krufky5bea1cd2007-10-22 09:56:38 -030029/*---------------------------------------------------------------------*/
30
Michael Krufkyefce8412007-12-01 17:40:16 -030031static int tda18271_init(struct dvb_frontend *fe)
32{
33 struct tda18271_priv *priv = fe->tuner_priv;
34 unsigned char *regs = priv->tda18271_regs;
35
36 tda18271_read_regs(fe);
37
38 /* test IR_CAL_OK to see if we need init */
39 if ((regs[R_EP1] & 0x08) == 0)
40 tda18271_init_regs(fe);
41
42 return 0;
43}
44
Michael Krufky255b5112008-01-01 22:52:09 -030045/* ------------------------------------------------------------------ */
46
47static int tda18271_channel_configuration(struct dvb_frontend *fe,
48 u32 ifc, u32 freq, u32 bw, u8 std)
49{
50 struct tda18271_priv *priv = fe->tuner_priv;
51 unsigned char *regs = priv->tda18271_regs;
52 u32 N;
53
54 /* update TV broadcast parameters */
55
56 /* set standard */
57 regs[R_EP3] &= ~0x1f; /* clear std bits */
58 regs[R_EP3] |= std;
59
60 /* set cal mode to normal */
61 regs[R_EP4] &= ~0x03;
62
63 /* update IF output level & IF notch frequency */
64 regs[R_EP4] &= ~0x1c; /* clear if level bits */
65
66 switch (priv->mode) {
67 case TDA18271_ANALOG:
68 regs[R_MPD] &= ~0x80; /* IF notch = 0 */
69 break;
70 case TDA18271_DIGITAL:
71 regs[R_EP4] |= 0x04; /* IF level = 1 */
72 regs[R_MPD] |= 0x80; /* IF notch = 1 */
73 break;
74 }
75 regs[R_EP4] &= ~0x80; /* FM_RFn: turn this bit on only for fm radio */
76
77 /* update RF_TOP / IF_TOP */
78 switch (priv->mode) {
79 case TDA18271_ANALOG:
80 regs[R_EB22] = 0x2c;
81 break;
82 case TDA18271_DIGITAL:
83 regs[R_EB22] = 0x37;
84 break;
85 }
86 tda18271_write_regs(fe, R_EB22, 1);
87
88 /* --------------------------------------------------------------- */
89
90 /* disable Power Level Indicator */
91 regs[R_EP1] |= 0x40;
92
93 /* frequency dependent parameters */
94
95 tda18271_calc_ir_measure(fe, &freq);
96
97 tda18271_calc_bp_filter(fe, &freq);
98
99 tda18271_calc_rf_band(fe, &freq);
100
101 tda18271_calc_gain_taper(fe, &freq);
102
103 /* --------------------------------------------------------------- */
104
105 /* dual tuner and agc1 extra configuration */
106
107 /* main vco when Master, cal vco when slave */
108 regs[R_EB1] |= 0x04; /* FIXME: assumes master */
109
110 /* agc1 always active */
111 regs[R_EB1] &= ~0x02;
112
113 /* agc1 has priority on agc2 */
114 regs[R_EB1] &= ~0x01;
115
116 tda18271_write_regs(fe, R_EB1, 1);
117
118 /* --------------------------------------------------------------- */
119
120 N = freq + ifc;
121
122 /* FIXME: assumes master */
123 tda18271_calc_main_pll(fe, N);
124 tda18271_write_regs(fe, R_MPD, 4);
125
126 tda18271_write_regs(fe, R_TM, 7);
127
128 /* main pll charge pump source */
129 regs[R_EB4] |= 0x20;
130 tda18271_write_regs(fe, R_EB4, 1);
131
132 msleep(1);
133
134 /* normal operation for the main pll */
135 regs[R_EB4] &= ~0x20;
136 tda18271_write_regs(fe, R_EB4, 1);
137
138 msleep(5);
139
140 return 0;
141}
142
143static int tda18271_read_thermometer(struct dvb_frontend *fe)
144{
145 struct tda18271_priv *priv = fe->tuner_priv;
146 unsigned char *regs = priv->tda18271_regs;
147 int tm;
148
149 /* switch thermometer on */
150 regs[R_TM] |= 0x10;
151 tda18271_write_regs(fe, R_TM, 1);
152
153 /* read thermometer info */
154 tda18271_read_regs(fe);
155
156 if ((((regs[R_TM] & 0x0f) == 0x00) && ((regs[R_TM] & 0x20) == 0x20)) ||
157 (((regs[R_TM] & 0x0f) == 0x08) && ((regs[R_TM] & 0x20) == 0x00))) {
158
159 if ((regs[R_TM] & 0x20) == 0x20)
160 regs[R_TM] &= ~0x20;
161 else
162 regs[R_TM] |= 0x20;
163
164 tda18271_write_regs(fe, R_TM, 1);
165
166 msleep(10); /* temperature sensing */
167
168 /* read thermometer info */
169 tda18271_read_regs(fe);
170 }
171
172 tm = tda18271_lookup_thermometer(fe);
173
174 /* switch thermometer off */
175 regs[R_TM] &= ~0x10;
176 tda18271_write_regs(fe, R_TM, 1);
177
178 /* set CAL mode to normal */
179 regs[R_EP4] &= ~0x03;
180 tda18271_write_regs(fe, R_EP4, 1);
181
182 return tm;
183}
184
185static int tda18271_rf_tracking_filters_correction(struct dvb_frontend *fe,
186 u32 freq, int tm_rfcal)
187{
188 struct tda18271_priv *priv = fe->tuner_priv;
189 struct tda18271_rf_tracking_filter_cal *map = priv->rf_cal_state;
190 unsigned char *regs = priv->tda18271_regs;
191 int tm_current, rfcal_comp, approx, i;
192 u8 dc_over_dt, rf_tab;
193
194 /* power up */
195 regs[R_EP3] &= ~0xe0; /* sm = 0, sm_lt = 0, sm_xt = 0 */
196 tda18271_write_regs(fe, R_EP3, 1);
197
198 /* read die current temperature */
199 tm_current = tda18271_read_thermometer(fe);
200
201 /* frequency dependent parameters */
202
203 tda18271_calc_rf_cal(fe, &freq);
204 rf_tab = regs[R_EB14];
205
206 i = tda18271_lookup_rf_band(fe, &freq, NULL);
207 if (i < 0)
208 return -EINVAL;
209
210 if ((0 == map[i].rf3) || (freq / 1000 < map[i].rf2)) {
211 approx = map[i].rf_a1 *
212 (freq / 1000 - map[i].rf1) + map[i].rf_b1 + rf_tab;
213 } else {
214 approx = map[i].rf_a2 *
215 (freq / 1000 - map[i].rf2) + map[i].rf_b2 + rf_tab;
216 }
217
218 if (approx < 0)
219 approx = 0;
220 if (approx > 255)
221 approx = 255;
222
223 tda18271_lookup_map(fe, RF_CAL_DC_OVER_DT, &freq, &dc_over_dt);
224
225 /* calculate temperature compensation */
226 rfcal_comp = dc_over_dt * (tm_current - tm_rfcal);
227
228 regs[R_EB14] = approx + rfcal_comp;
229 tda18271_write_regs(fe, R_EB14, 1);
230
231 return 0;
232}
233
234static int tda18271_por(struct dvb_frontend *fe)
235{
236 struct tda18271_priv *priv = fe->tuner_priv;
237 unsigned char *regs = priv->tda18271_regs;
238
239 /* power up detector 1 */
240 regs[R_EB12] &= ~0x20;
241 tda18271_write_regs(fe, R_EB12, 1);
242
243 regs[R_EB18] &= ~0x80; /* turn agc1 loop on */
244 regs[R_EB18] &= ~0x03; /* set agc1_gain to 6 dB */
245 tda18271_write_regs(fe, R_EB18, 1);
246
247 regs[R_EB21] |= 0x03; /* set agc2_gain to -6 dB */
248
249 /* POR mode */
250 regs[R_EP3] &= ~0xe0; /* clear sm, sm_lt, sm_xt */
251 regs[R_EP3] |= 0x80; /* sm = 1, sm_lt = 0, sm_xt = 0 */
252 tda18271_write_regs(fe, R_EP3, 1);
253
254 /* disable 1.5 MHz low pass filter */
255 regs[R_EB23] &= ~0x04; /* forcelp_fc2_en = 0 */
256 regs[R_EB23] &= ~0x02; /* XXX: lp_fc[2] = 0 */
257 tda18271_write_regs(fe, R_EB21, 3);
258
259 return 0;
260}
261
262static int tda18271_calibrate_rf(struct dvb_frontend *fe, u32 freq)
263{
264 struct tda18271_priv *priv = fe->tuner_priv;
265 unsigned char *regs = priv->tda18271_regs;
266 u32 N;
267
268 /* set CAL mode to normal */
269 regs[R_EP4] &= ~0x03;
270 tda18271_write_regs(fe, R_EP4, 1);
271
272 /* switch off agc1 */
273 regs[R_EP3] |= 0x40; /* sm_lt = 1 */
274
275 regs[R_EB18] |= 0x03; /* set agc1_gain to 15 dB */
276 tda18271_write_regs(fe, R_EB18, 1);
277
278 /* frequency dependent parameters */
279
280 tda18271_calc_bp_filter(fe, &freq);
281 tda18271_calc_gain_taper(fe, &freq);
282 tda18271_calc_rf_band(fe, &freq);
283 tda18271_calc_km(fe, &freq);
284
285 tda18271_write_regs(fe, R_EP1, 3);
286 tda18271_write_regs(fe, R_EB13, 1);
287
288 /* main pll charge pump source */
289 regs[R_EB4] |= 0x20;
290 tda18271_write_regs(fe, R_EB4, 1);
291
292 /* cal pll charge pump source */
293 regs[R_EB7] |= 0x20;
294 tda18271_write_regs(fe, R_EB7, 1);
295
296 /* force dcdc converter to 0 V */
297 regs[R_EB14] = 0x00;
298 tda18271_write_regs(fe, R_EB14, 1);
299
300 /* disable plls lock */
301 regs[R_EB20] &= ~0x20;
302 tda18271_write_regs(fe, R_EB20, 1);
303
304 /* set CAL mode to RF tracking filter calibration */
305 regs[R_EP4] |= 0x03;
306 tda18271_write_regs(fe, R_EP4, 2);
307
308 /* --------------------------------------------------------------- */
309
310 /* set the internal calibration signal */
311 N = freq;
312
313 tda18271_calc_main_pll(fe, N);
314 tda18271_write_regs(fe, R_MPD, 4);
315
316 /* downconvert internal calibration */
317 N += 1000000;
318
319 tda18271_calc_main_pll(fe, N);
320 tda18271_write_regs(fe, R_MPD, 4);
321
322 msleep(5);
323
324 tda18271_write_regs(fe, R_EP2, 1);
325 tda18271_write_regs(fe, R_EP1, 1);
326 tda18271_write_regs(fe, R_EP2, 1);
327 tda18271_write_regs(fe, R_EP1, 1);
328
329 /* --------------------------------------------------------------- */
330
331 /* normal operation for the main pll */
332 regs[R_EB4] &= ~0x20;
333 tda18271_write_regs(fe, R_EB4, 1);
334
335 /* normal operation for the cal pll */
336 regs[R_EB7] &= ~0x20;
337 tda18271_write_regs(fe, R_EB7, 1);
338
339 msleep(5); /* plls locking */
340
341 /* launch the rf tracking filters calibration */
342 regs[R_EB20] |= 0x20;
343 tda18271_write_regs(fe, R_EB20, 1);
344
345 msleep(60); /* calibration */
346
347 /* --------------------------------------------------------------- */
348
349 /* set CAL mode to normal */
350 regs[R_EP4] &= ~0x03;
351
352 /* switch on agc1 */
353 regs[R_EP3] &= ~0x40; /* sm_lt = 0 */
354
355 regs[R_EB18] &= ~0x03; /* set agc1_gain to 6 dB */
356 tda18271_write_regs(fe, R_EB18, 1);
357
358 tda18271_write_regs(fe, R_EP3, 2);
359
360 /* synchronization */
361 tda18271_write_regs(fe, R_EP1, 1);
362
363 /* get calibration result */
364 tda18271_read_extended(fe);
365
366 return regs[R_EB14];
367}
368
369static int tda18271_powerscan(struct dvb_frontend *fe,
370 u32 *freq_in, u32 *freq_out)
371{
372 struct tda18271_priv *priv = fe->tuner_priv;
373 unsigned char *regs = priv->tda18271_regs;
374 int sgn, bcal, count, wait;
375 u8 cid_target;
376 u16 count_limit;
377 u32 freq;
378
379 freq = *freq_in;
380
381 tda18271_calc_rf_band(fe, &freq);
382 tda18271_calc_rf_cal(fe, &freq);
383 tda18271_calc_gain_taper(fe, &freq);
384 tda18271_lookup_cid_target(fe, &freq, &cid_target, &count_limit);
385
386 tda18271_write_regs(fe, R_EP2, 1);
387 tda18271_write_regs(fe, R_EB14, 1);
388
389 /* downconvert frequency */
390 freq += 1000000;
391
392 tda18271_calc_main_pll(fe, freq);
393 tda18271_write_regs(fe, R_MPD, 4);
394
395 msleep(5); /* pll locking */
396
397 /* detection mode */
398 regs[R_EP4] &= ~0x03;
399 regs[R_EP4] |= 0x01;
400 tda18271_write_regs(fe, R_EP4, 1);
401
402 /* launch power detection measurement */
403 tda18271_write_regs(fe, R_EP2, 1);
404
405 /* read power detection info, stored in EB10 */
406 tda18271_read_extended(fe);
407
408 /* algorithm initialization */
409 sgn = 1;
410 *freq_out = *freq_in;
411 bcal = 0;
412 count = 0;
413 wait = false;
414
415 while ((regs[R_EB10] & 0x3f) < cid_target) {
416 /* downconvert updated freq to 1 MHz */
417 freq = *freq_in + (sgn * count) + 1000000;
418
419 tda18271_calc_main_pll(fe, freq);
420 tda18271_write_regs(fe, R_MPD, 4);
421
422 if (wait) {
423 msleep(5); /* pll locking */
424 wait = false;
425 } else
426 udelay(100); /* pll locking */
427
428 /* launch power detection measurement */
429 tda18271_write_regs(fe, R_EP2, 1);
430
431 /* read power detection info, stored in EB10 */
432 tda18271_read_extended(fe);
433
434 count += 200;
435
436 if (count < count_limit)
437 continue;
438
439 if (sgn <= 0)
440 break;
441
442 sgn = -1 * sgn;
443 count = 200;
444 wait = true;
445 }
446
447 if ((regs[R_EB10] & 0x3f) >= cid_target) {
448 bcal = 1;
449 *freq_out = freq - 1000000;
450 } else
451 bcal = 0;
452
453 tda_dbg("bcal = %d, freq_in = %d, freq_out = %d (freq = %d)\n",
454 bcal, *freq_in, *freq_out, freq);
455
456 return bcal;
457}
458
459static int tda18271_powerscan_init(struct dvb_frontend *fe)
460{
461 struct tda18271_priv *priv = fe->tuner_priv;
462 unsigned char *regs = priv->tda18271_regs;
463
464 /* set standard to digital */
465 regs[R_EP3] &= ~0x1f; /* clear std bits */
466 regs[R_EP3] |= 0x12;
467
468 /* set cal mode to normal */
469 regs[R_EP4] &= ~0x03;
470
471 /* update IF output level & IF notch frequency */
472 regs[R_EP4] &= ~0x1c; /* clear if level bits */
473
474 tda18271_write_regs(fe, R_EP3, 2);
475
476 regs[R_EB18] &= ~0x03; /* set agc1_gain to 6 dB */
477 tda18271_write_regs(fe, R_EB18, 1);
478
479 regs[R_EB21] &= ~0x03; /* set agc2_gain to -15 dB */
480
481 /* 1.5 MHz low pass filter */
482 regs[R_EB23] |= 0x04; /* forcelp_fc2_en = 1 */
483 regs[R_EB23] |= 0x02; /* lp_fc[2] = 1 */
484
485 tda18271_write_regs(fe, R_EB21, 3);
486
487 return 0;
488}
489
490static int tda18271_rf_tracking_filters_init(struct dvb_frontend *fe, u32 freq)
491{
492 struct tda18271_priv *priv = fe->tuner_priv;
493 struct tda18271_rf_tracking_filter_cal *map = priv->rf_cal_state;
494 unsigned char *regs = priv->tda18271_regs;
495 int bcal, rf, i;
496#define RF1 0
497#define RF2 1
498#define RF3 2
499 u32 rf_default[3];
500 u32 rf_freq[3];
501 u8 prog_cal[3];
502 u8 prog_tab[3];
503
504 i = tda18271_lookup_rf_band(fe, &freq, NULL);
505
506 if (i < 0)
507 return i;
508
509 rf_default[RF1] = 1000 * map[i].rf1_def;
510 rf_default[RF2] = 1000 * map[i].rf2_def;
511 rf_default[RF3] = 1000 * map[i].rf3_def;
512
513 for (rf = RF1; rf <= RF3; rf++) {
514 if (0 == rf_default[rf])
515 return 0;
516 tda_dbg("freq = %d, rf = %d\n", freq, rf);
517
518 /* look for optimized calibration frequency */
519 bcal = tda18271_powerscan(fe, &rf_default[rf], &rf_freq[rf]);
520
521 tda18271_calc_rf_cal(fe, &rf_freq[rf]);
522 prog_tab[rf] = regs[R_EB14];
523
524 if (1 == bcal)
525 prog_cal[rf] = tda18271_calibrate_rf(fe, rf_freq[rf]);
526 else
527 prog_cal[rf] = prog_tab[rf];
528
529 switch (rf) {
530 case RF1:
531 map[i].rf_a1 = 0;
532 map[i].rf_b1 = prog_cal[RF1] - prog_tab[RF1];
533 map[i].rf1 = rf_freq[RF1] / 1000;
534 break;
535 case RF2:
536 map[i].rf_a1 = (prog_cal[RF2] - prog_tab[RF2] -
537 prog_cal[RF1] + prog_tab[RF1]) /
538 ((rf_freq[RF2] - rf_freq[RF1]) / 1000);
539 map[i].rf2 = rf_freq[RF2] / 1000;
540 break;
541 case RF3:
542 map[i].rf_a2 = (prog_cal[RF3] - prog_tab[RF3] -
543 prog_cal[RF2] + prog_tab[RF2]) /
544 ((rf_freq[RF3] - rf_freq[RF2]) / 1000);
545 map[i].rf_b2 = prog_cal[RF2] - prog_tab[RF2];
546 map[i].rf3 = rf_freq[RF3] / 1000;
547 break;
548 default:
549 BUG();
550 }
551 }
552
553 return 0;
554}
555
556static int tda18271_calc_rf_filter_curve(struct dvb_frontend *fe,
557 int *tm_rfcal)
558{
559 struct tda18271_priv *priv = fe->tuner_priv;
560 unsigned int i;
561
562 tda_info("tda18271: performing RF tracking filter calibration\n");
563
564 /* wait for die temperature stabilization */
565 msleep(200);
566
567 tda18271_powerscan_init(fe);
568
569 /* rf band calibration */
570 for (i = 0; priv->rf_cal_state[i].rfmax != 0; i++)
571 tda18271_rf_tracking_filters_init(fe, 1000 *
572 priv->rf_cal_state[i].rfmax);
573
574 *tm_rfcal = tda18271_read_thermometer(fe);
575
576 return 0;
577}
578
579/* ------------------------------------------------------------------ */
580
581static int tda18271_init_cal(struct dvb_frontend *fe, int *tm)
582{
583 struct tda18271_priv *priv = fe->tuner_priv;
584
585 if (priv->cal_initialized)
586 return 0;
587
588 /* initialization */
589 tda18271_init(fe);
590
591 tda18271_calc_rf_filter_curve(fe, tm);
592
593 tda18271_por(fe);
594
595 priv->cal_initialized = true;
596
597 return 0;
598}
599
600static int tda18271c2_tune(struct dvb_frontend *fe,
601 u32 ifc, u32 freq, u32 bw, u8 std)
602{
603 int tm = 0;
604
605 tda_dbg("freq = %d, ifc = %d\n", freq, ifc);
606
607 tda18271_init_cal(fe, &tm);
608
609 tda18271_rf_tracking_filters_correction(fe, freq, tm);
610
611 tda18271_channel_configuration(fe, ifc, freq, bw, std);
612
613 return 0;
614}
615
616/* ------------------------------------------------------------------ */
617
618static int tda18271c1_tune(struct dvb_frontend *fe,
619 u32 ifc, u32 freq, u32 bw, u8 std)
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300620{
621 struct tda18271_priv *priv = fe->tuner_priv;
622 unsigned char *regs = priv->tda18271_regs;
Michael Krufkyfe0bf6d2007-12-24 05:05:05 -0300623 u32 N = 0;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300624
Michael Krufky14572632007-12-02 02:32:49 -0300625 tda18271_init(fe);
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300626
Michael Krufky182519f2007-12-25 15:10:11 -0300627 tda_dbg("freq = %d, ifc = %d\n", freq, ifc);
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300628
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300629 /* RF tracking filter calibration */
630
Michael Krufky255b5112008-01-01 22:52:09 -0300631 /* calculate bp filter */
Michael Krufkyb92bf0f2007-12-25 18:54:22 -0300632 tda18271_calc_bp_filter(fe, &freq);
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300633 tda18271_write_regs(fe, R_EP1, 1);
634
635 regs[R_EB4] &= 0x07;
636 regs[R_EB4] |= 0x60;
637 tda18271_write_regs(fe, R_EB4, 1);
638
639 regs[R_EB7] = 0x60;
640 tda18271_write_regs(fe, R_EB7, 1);
641
642 regs[R_EB14] = 0x00;
643 tda18271_write_regs(fe, R_EB14, 1);
644
645 regs[R_EB20] = 0xcc;
646 tda18271_write_regs(fe, R_EB20, 1);
647
Michael Krufky255b5112008-01-01 22:52:09 -0300648 /* set cal mode to RF tracking filter calibration */
Michael Krufky26501a72007-12-21 14:28:46 -0300649 regs[R_EP4] |= 0x03;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300650
Michael Krufky255b5112008-01-01 22:52:09 -0300651 /* calculate cal pll */
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300652
653 switch (priv->mode) {
654 case TDA18271_ANALOG:
655 N = freq - 1250000;
656 break;
657 case TDA18271_DIGITAL:
658 N = freq + bw / 2;
659 break;
660 }
661
Michael Krufkyfe0bf6d2007-12-24 05:05:05 -0300662 tda18271_calc_cal_pll(fe, N);
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300663
Michael Krufky255b5112008-01-01 22:52:09 -0300664 /* calculate main pll */
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300665
666 switch (priv->mode) {
667 case TDA18271_ANALOG:
668 N = freq - 250000;
669 break;
670 case TDA18271_DIGITAL:
671 N = freq + bw / 2 + 1000000;
672 break;
673 }
674
Michael Krufkyfe0bf6d2007-12-24 05:05:05 -0300675 tda18271_calc_main_pll(fe, N);
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300676
677 tda18271_write_regs(fe, R_EP3, 11);
678 msleep(5); /* RF tracking filter calibration initialization */
679
Michael Krufky255b5112008-01-01 22:52:09 -0300680 /* search for K,M,CO for RF calibration */
Michael Krufkyb92bf0f2007-12-25 18:54:22 -0300681 tda18271_calc_km(fe, &freq);
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300682 tda18271_write_regs(fe, R_EB13, 1);
683
Michael Krufky255b5112008-01-01 22:52:09 -0300684 /* search for rf band */
Michael Krufkyb92bf0f2007-12-25 18:54:22 -0300685 tda18271_calc_rf_band(fe, &freq);
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300686
Michael Krufky255b5112008-01-01 22:52:09 -0300687 /* search for gain taper */
Michael Krufkyb92bf0f2007-12-25 18:54:22 -0300688 tda18271_calc_gain_taper(fe, &freq);
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300689
690 tda18271_write_regs(fe, R_EP2, 1);
691 tda18271_write_regs(fe, R_EP1, 1);
692 tda18271_write_regs(fe, R_EP2, 1);
693 tda18271_write_regs(fe, R_EP1, 1);
694
695 regs[R_EB4] &= 0x07;
696 regs[R_EB4] |= 0x40;
697 tda18271_write_regs(fe, R_EB4, 1);
698
699 regs[R_EB7] = 0x40;
700 tda18271_write_regs(fe, R_EB7, 1);
701 msleep(10);
702
703 regs[R_EB20] = 0xec;
704 tda18271_write_regs(fe, R_EB20, 1);
705 msleep(60); /* RF tracking filter calibration completion */
706
707 regs[R_EP4] &= ~0x03; /* set cal mode to normal */
708 tda18271_write_regs(fe, R_EP4, 1);
709
710 tda18271_write_regs(fe, R_EP1, 1);
711
Michael Krufkyb92bf0f2007-12-25 18:54:22 -0300712 /* RF tracking filter correction for VHF_Low band */
713 if (0 == tda18271_calc_rf_cal(fe, &freq))
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300714 tda18271_write_regs(fe, R_EB14, 1);
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300715
716 /* Channel Configuration */
717
718 switch (priv->mode) {
719 case TDA18271_ANALOG:
720 regs[R_EB22] = 0x2c;
721 break;
722 case TDA18271_DIGITAL:
723 regs[R_EB22] = 0x37;
724 break;
725 }
726 tda18271_write_regs(fe, R_EB22, 1);
727
728 regs[R_EP1] |= 0x40; /* set dis power level on */
729
730 /* set standard */
731 regs[R_EP3] &= ~0x1f; /* clear std bits */
732
733 /* see table 22 */
734 regs[R_EP3] |= std;
735
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300736 regs[R_EP4] &= ~0x03; /* set cal mode to normal */
737
738 regs[R_EP4] &= ~0x1c; /* clear if level bits */
739 switch (priv->mode) {
740 case TDA18271_ANALOG:
741 regs[R_MPD] &= ~0x80; /* IF notch = 0 */
742 break;
743 case TDA18271_DIGITAL:
744 regs[R_EP4] |= 0x04;
745 regs[R_MPD] |= 0x80;
746 break;
747 }
748
749 regs[R_EP4] &= ~0x80; /* turn this bit on only for fm */
750
Michael Krufkyb92bf0f2007-12-25 18:54:22 -0300751 /* image rejection validity */
752 tda18271_calc_ir_measure(fe, &freq);
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300753
754 /* calculate MAIN PLL */
755 N = freq + ifc;
756
Michael Krufkyfe0bf6d2007-12-24 05:05:05 -0300757 tda18271_calc_main_pll(fe, N);
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300758
759 tda18271_write_regs(fe, R_TM, 15);
760 msleep(5);
Michael Krufky6ca04de2007-11-23 16:52:15 -0300761
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300762 return 0;
763}
764
765/* ------------------------------------------------------------------ */
766
767static int tda18271_set_params(struct dvb_frontend *fe,
768 struct dvb_frontend_parameters *params)
769{
770 struct tda18271_priv *priv = fe->tuner_priv;
Michael Krufkyf21e0d72008-01-02 03:01:54 -0300771 struct tda18271_std_map *std_map = &priv->std;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300772 u8 std;
Michael Krufky2ba65d52008-01-03 01:17:45 -0300773 u16 sgIF;
774 u32 bw, freq = params->frequency;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300775
Michael Krufkyf21e0d72008-01-02 03:01:54 -0300776 BUG_ON(!priv->tune);
Michael Krufky255b5112008-01-01 22:52:09 -0300777
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300778 priv->mode = TDA18271_DIGITAL;
779
780 /* see table 22 */
781 if (fe->ops.info.type == FE_ATSC) {
782 switch (params->u.vsb.modulation) {
783 case VSB_8:
784 case VSB_16:
Michael Krufky255b5112008-01-01 22:52:09 -0300785 std = std_map->atsc_6.std_bits;
786 sgIF = std_map->atsc_6.if_freq;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300787 break;
788 case QAM_64:
789 case QAM_256:
Michael Krufky255b5112008-01-01 22:52:09 -0300790 std = std_map->qam_6.std_bits;
791 sgIF = std_map->qam_6.if_freq;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300792 break;
793 default:
Michael Krufky182519f2007-12-25 15:10:11 -0300794 tda_warn("modulation not set!\n");
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300795 return -EINVAL;
796 }
Michael Krufky14e3c152007-12-07 00:33:08 -0300797#if 0
798 /* userspace request is already center adjusted */
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300799 freq += 1750000; /* Adjust to center (+1.75MHZ) */
Michael Krufky14e3c152007-12-07 00:33:08 -0300800#endif
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300801 bw = 6000000;
802 } else if (fe->ops.info.type == FE_OFDM) {
803 switch (params->u.ofdm.bandwidth) {
804 case BANDWIDTH_6_MHZ:
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300805 bw = 6000000;
Michael Krufky255b5112008-01-01 22:52:09 -0300806 std = std_map->dvbt_6.std_bits;
807 sgIF = std_map->dvbt_6.if_freq;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300808 break;
809 case BANDWIDTH_7_MHZ:
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300810 bw = 7000000;
Michael Krufky255b5112008-01-01 22:52:09 -0300811 std = std_map->dvbt_7.std_bits;
812 sgIF = std_map->dvbt_7.if_freq;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300813 break;
814 case BANDWIDTH_8_MHZ:
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300815 bw = 8000000;
Michael Krufky255b5112008-01-01 22:52:09 -0300816 std = std_map->dvbt_8.std_bits;
817 sgIF = std_map->dvbt_8.if_freq;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300818 break;
819 default:
Michael Krufky182519f2007-12-25 15:10:11 -0300820 tda_warn("bandwidth not set!\n");
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300821 return -EINVAL;
822 }
823 } else {
Michael Krufky182519f2007-12-25 15:10:11 -0300824 tda_warn("modulation type not supported!\n");
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300825 return -EINVAL;
826 }
827
Michael Krufky2ba65d52008-01-03 01:17:45 -0300828 return priv->tune(fe, sgIF * 1000, freq, bw, std);
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300829}
830
831static int tda18271_set_analog_params(struct dvb_frontend *fe,
832 struct analog_parameters *params)
833{
834 struct tda18271_priv *priv = fe->tuner_priv;
Michael Krufkyf21e0d72008-01-02 03:01:54 -0300835 struct tda18271_std_map *std_map = &priv->std;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300836 char *mode;
Michael Krufky95af8a22008-01-01 18:31:34 -0300837 u8 std;
Michael Krufky2ba65d52008-01-03 01:17:45 -0300838 u16 sgIF;
839 u32 freq = params->frequency * 62500;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300840
Michael Krufkyf21e0d72008-01-02 03:01:54 -0300841 BUG_ON(!priv->tune);
Michael Krufky255b5112008-01-01 22:52:09 -0300842
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300843 priv->mode = TDA18271_ANALOG;
844
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300845 if (params->std & V4L2_STD_MN) {
Michael Krufky255b5112008-01-01 22:52:09 -0300846 std = std_map->atv_mn.std_bits;
847 sgIF = std_map->atv_mn.if_freq;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300848 mode = "MN";
849 } else if (params->std & V4L2_STD_B) {
Michael Krufky255b5112008-01-01 22:52:09 -0300850 std = std_map->atv_b.std_bits;
851 sgIF = std_map->atv_b.if_freq;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300852 mode = "B";
853 } else if (params->std & V4L2_STD_GH) {
Michael Krufky255b5112008-01-01 22:52:09 -0300854 std = std_map->atv_gh.std_bits;
855 sgIF = std_map->atv_gh.if_freq;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300856 mode = "GH";
857 } else if (params->std & V4L2_STD_PAL_I) {
Michael Krufky255b5112008-01-01 22:52:09 -0300858 std = std_map->atv_i.std_bits;
859 sgIF = std_map->atv_i.if_freq;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300860 mode = "I";
861 } else if (params->std & V4L2_STD_DK) {
Michael Krufky255b5112008-01-01 22:52:09 -0300862 std = std_map->atv_dk.std_bits;
863 sgIF = std_map->atv_dk.if_freq;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300864 mode = "DK";
865 } else if (params->std & V4L2_STD_SECAM_L) {
Michael Krufky255b5112008-01-01 22:52:09 -0300866 std = std_map->atv_l.std_bits;
867 sgIF = std_map->atv_l.if_freq;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300868 mode = "L";
869 } else if (params->std & V4L2_STD_SECAM_LC) {
Michael Krufky255b5112008-01-01 22:52:09 -0300870 std = std_map->atv_lc.std_bits;
871 sgIF = std_map->atv_lc.if_freq;
Michael Krufky95af8a22008-01-01 18:31:34 -0300872 mode = "L'";
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300873 } else {
Michael Krufky255b5112008-01-01 22:52:09 -0300874 std = std_map->atv_i.std_bits;
875 sgIF = std_map->atv_i.if_freq;
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300876 mode = "xx";
877 }
878
Michael Krufky182519f2007-12-25 15:10:11 -0300879 tda_dbg("setting tda18271 to system %s\n", mode);
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300880
Michael Krufky2ba65d52008-01-03 01:17:45 -0300881 return priv->tune(fe, sgIF * 1000, freq, 0, std);
Michael Krufky5bea1cd2007-10-22 09:56:38 -0300882}
883
884static int tda18271_release(struct dvb_frontend *fe)
885{
886 kfree(fe->tuner_priv);
887 fe->tuner_priv = NULL;
888 return 0;
889}
890
891static int tda18271_get_frequency(struct dvb_frontend *fe, u32 *frequency)
892{
893 struct tda18271_priv *priv = fe->tuner_priv;
894 *frequency = priv->frequency;
895 return 0;
896}
897
898static int tda18271_get_bandwidth(struct dvb_frontend *fe, u32 *bandwidth)
899{
900 struct tda18271_priv *priv = fe->tuner_priv;
901 *bandwidth = priv->bandwidth;
902 return 0;
903}
904
Michael Krufkyf21e0d72008-01-02 03:01:54 -0300905/* ------------------------------------------------------------------ */
906
907#define tda18271_update_std(std_cfg, name) do { \
908 if (map->std_cfg.if_freq + map->std_cfg.std_bits > 0) { \
909 tda_dbg("Using custom std config for %s\n", name); \
910 memcpy(&std->std_cfg, &map->std_cfg, \
911 sizeof(struct tda18271_std_map_item)); \
912 } } while (0)
913
914#define tda18271_dump_std_item(std_cfg, name) do { \
915 tda_dbg("(%s) if freq = %d, std bits = 0x%02x\n", \
916 name, std->std_cfg.if_freq, std->std_cfg.std_bits); \
917 } while (0)
918
919static int tda18271_dump_std_map(struct dvb_frontend *fe)
920{
921 struct tda18271_priv *priv = fe->tuner_priv;
922 struct tda18271_std_map *std = &priv->std;
923
924 tda_dbg("========== STANDARD MAP SETTINGS ==========\n");
925 tda18271_dump_std_item(atv_b, "pal b");
926 tda18271_dump_std_item(atv_dk, "pal dk");
927 tda18271_dump_std_item(atv_gh, "pal gh");
928 tda18271_dump_std_item(atv_i, "pal i");
929 tda18271_dump_std_item(atv_l, "pal l");
930 tda18271_dump_std_item(atv_lc, "pal l'");
931 tda18271_dump_std_item(atv_mn, "atv mn");
932 tda18271_dump_std_item(atsc_6, "atsc 6");
933 tda18271_dump_std_item(dvbt_6, "dvbt 6");
934 tda18271_dump_std_item(dvbt_7, "dvbt 7");
935 tda18271_dump_std_item(dvbt_8, "dvbt 8");
936 tda18271_dump_std_item(qam_6, "qam 6");
937 tda18271_dump_std_item(qam_8, "qam 8");
938
939 return 0;
940}
941
942static int tda18271_update_std_map(struct dvb_frontend *fe,
943 struct tda18271_std_map *map)
944{
945 struct tda18271_priv *priv = fe->tuner_priv;
946 struct tda18271_std_map *std = &priv->std;
947
948 if (!map)
949 return -EINVAL;
950
951 tda18271_update_std(atv_b, "atv b");
952 tda18271_update_std(atv_dk, "atv dk");
953 tda18271_update_std(atv_gh, "atv gh");
954 tda18271_update_std(atv_i, "atv i");
955 tda18271_update_std(atv_l, "atv l");
956 tda18271_update_std(atv_lc, "atv l'");
957 tda18271_update_std(atv_mn, "atv mn");
958 tda18271_update_std(atsc_6, "atsc 6");
959 tda18271_update_std(dvbt_6, "dvbt 6");
960 tda18271_update_std(dvbt_7, "dvbt 7");
961 tda18271_update_std(dvbt_8, "dvbt 8");
962 tda18271_update_std(qam_6, "qam 6");
963 tda18271_update_std(qam_8, "qam 8");
964
965 return 0;
966}
967
Michael Krufky49e7aaf2007-12-24 04:15:20 -0300968static int tda18271_get_id(struct dvb_frontend *fe)
969{
970 struct tda18271_priv *priv = fe->tuner_priv;
971 unsigned char *regs = priv->tda18271_regs;
972 char *name;
973 int ret = 0;
974
975 tda18271_read_regs(fe);
976
977 switch (regs[R_ID] & 0x7f) {
978 case 3:
979 name = "TDA18271HD/C1";
Michael Krufky255b5112008-01-01 22:52:09 -0300980 priv->id = TDA18271HDC1;
981 priv->tune = tda18271c1_tune;
Michael Krufky49e7aaf2007-12-24 04:15:20 -0300982 break;
983 case 4:
984 name = "TDA18271HD/C2";
Michael Krufky255b5112008-01-01 22:52:09 -0300985 priv->id = TDA18271HDC2;
986 priv->tune = tda18271c2_tune;
Michael Krufky49e7aaf2007-12-24 04:15:20 -0300987 break;
988 default:
989 name = "Unknown device";
990 ret = -EINVAL;
991 break;
992 }
993
Michael Krufky182519f2007-12-25 15:10:11 -0300994 tda_info("%s detected @ %d-%04x%s\n", name,
Michael Krufky49e7aaf2007-12-24 04:15:20 -0300995 i2c_adapter_id(priv->i2c_adap), priv->i2c_addr,
996 (0 == ret) ? "" : ", device not supported.");
997
998 return ret;
999}
1000
Michael Krufky5bea1cd2007-10-22 09:56:38 -03001001static struct dvb_tuner_ops tda18271_tuner_ops = {
1002 .info = {
1003 .name = "NXP TDA18271HD",
1004 .frequency_min = 45000000,
1005 .frequency_max = 864000000,
1006 .frequency_step = 62500
1007 },
Michael Krufkyefce8412007-12-01 17:40:16 -03001008 .init = tda18271_init,
Michael Krufky5bea1cd2007-10-22 09:56:38 -03001009 .set_params = tda18271_set_params,
1010 .set_analog_params = tda18271_set_analog_params,
1011 .release = tda18271_release,
1012 .get_frequency = tda18271_get_frequency,
1013 .get_bandwidth = tda18271_get_bandwidth,
1014};
1015
1016struct dvb_frontend *tda18271_attach(struct dvb_frontend *fe, u8 addr,
Michael Krufkye435f952007-12-09 22:23:30 -03001017 struct i2c_adapter *i2c,
Michael Krufkyf21e0d72008-01-02 03:01:54 -03001018 struct tda18271_config *cfg)
Michael Krufky5bea1cd2007-10-22 09:56:38 -03001019{
1020 struct tda18271_priv *priv = NULL;
1021
Michael Krufky5bea1cd2007-10-22 09:56:38 -03001022 priv = kzalloc(sizeof(struct tda18271_priv), GFP_KERNEL);
1023 if (priv == NULL)
1024 return NULL;
1025
1026 priv->i2c_addr = addr;
1027 priv->i2c_adap = i2c;
Michael Krufkyf21e0d72008-01-02 03:01:54 -03001028 priv->gate = (cfg) ? cfg->gate : TDA18271_GATE_AUTO;
Michael Krufky255b5112008-01-01 22:52:09 -03001029 priv->cal_initialized = false;
Michael Krufky5bea1cd2007-10-22 09:56:38 -03001030
Michael Krufky49e7aaf2007-12-24 04:15:20 -03001031 fe->tuner_priv = priv;
1032
1033 if (tda18271_get_id(fe) < 0)
1034 goto fail;
1035
Michael Krufky255b5112008-01-01 22:52:09 -03001036 if (tda18271_assign_map_layout(fe) < 0)
1037 goto fail;
1038
Michael Krufky5bea1cd2007-10-22 09:56:38 -03001039 memcpy(&fe->ops.tuner_ops, &tda18271_tuner_ops,
1040 sizeof(struct dvb_tuner_ops));
1041
Michael Krufkyf21e0d72008-01-02 03:01:54 -03001042 /* override default std map with values in config struct */
1043 if ((cfg) && (cfg->std_map))
1044 tda18271_update_std_map(fe, cfg->std_map);
1045
1046 if (tda18271_debug & DBG_MAP)
1047 tda18271_dump_std_map(fe);
1048
Michael Krufkyefce8412007-12-01 17:40:16 -03001049 tda18271_init_regs(fe);
1050
Michael Krufky5bea1cd2007-10-22 09:56:38 -03001051 return fe;
Michael Krufky49e7aaf2007-12-24 04:15:20 -03001052fail:
1053 tda18271_release(fe);
1054 return NULL;
Michael Krufky5bea1cd2007-10-22 09:56:38 -03001055}
1056EXPORT_SYMBOL_GPL(tda18271_attach);
1057MODULE_DESCRIPTION("NXP TDA18271HD analog / digital tuner driver");
1058MODULE_AUTHOR("Michael Krufky <mkrufky@linuxtv.org>");
1059MODULE_LICENSE("GPL");
Michael Krufky255b5112008-01-01 22:52:09 -03001060MODULE_VERSION("0.2");
Michael Krufky5bea1cd2007-10-22 09:56:38 -03001061
1062/*
1063 * Overrides for Emacs so that we follow Linus's tabbing style.
1064 * ---------------------------------------------------------------------------
1065 * Local variables:
1066 * c-basic-offset: 8
1067 * End:
1068 */