blob: 598e3348d53473e8107cb17a353f430cbc434af6 [file] [log] [blame]
Manu Abraham8bd135b2007-07-03 09:53:42 -03001/*
2 STB0899 Multistandard Frontend driver
3 Copyright (C) Manu Abraham (abraham.manu@gmail.com)
4
5 Copyright (C) ST Microelectronics
6
7 This program is free software; you can redistribute it and/or modify
8 it under the terms of the GNU General Public License as published by
9 the Free Software Foundation; either version 2 of the License, or
10 (at your option) any later version.
11
12 This program is distributed in the hope that it will be useful,
13 but WITHOUT ANY WARRANTY; without even the implied warranty of
14 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 GNU General Public License for more details.
16
17 You should have received a copy of the GNU General Public License
18 along with this program; if not, write to the Free Software
19 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
20*/
21
22#include <linux/init.h>
23#include <linux/kernel.h>
24#include <linux/module.h>
25#include <linux/string.h>
26
27#include <linux/dvb/frontend.h>
28#include "dvb_frontend.h"
29
30#include "stb0899_drv.h"
31#include "stb0899_priv.h"
32#include "stb0899_reg.h"
33
34static unsigned int verbose = 5;
35module_param(verbose, int, 0644);
36
37/* C/N in dB/10, NIRM/NIRL */
38static const struct stb0899_tab stb0899_cn_tab[] = {
39 { 200, 2600 },
40 { 190, 2700 },
41 { 180, 2860 },
42 { 170, 3020 },
43 { 160, 3210 },
44 { 150, 3440 },
45 { 140, 3710 },
46 { 130, 4010 },
47 { 120, 4360 },
48 { 110, 4740 },
49 { 100, 5190 },
50 { 90, 5670 },
51 { 80, 6200 },
52 { 70, 6770 },
53 { 60, 7360 },
54 { 50, 7970 },
55 { 40, 8250 },
56 { 30, 9000 },
57 { 20, 9450 },
58 { 15, 9600 },
59};
60
61/* DVB-S AGCIQ_VALUE vs. signal level in dBm/10.
62 * As measured, connected to a modulator.
63 * -8.0 to -50.0 dBm directly connected,
64 * -52.0 to -74.8 with extra attenuation.
65 * Cut-off to AGCIQ_VALUE = 0x80 below -74.8dBm.
66 * Crude linear extrapolation below -84.8dBm and above -8.0dBm.
67 */
68static const struct stb0899_tab stb0899_dvbsrf_tab[] = {
69 { -950, -128 },
70 { -748, -94 },
71 { -745, -92 },
72 { -735, -90 },
73 { -720, -87 },
74 { -670, -77 },
75 { -640, -70 },
76 { -610, -62 },
77 { -600, -60 },
78 { -590, -56 },
79 { -560, -41 },
80 { -540, -25 },
81 { -530, -17 },
82 { -520, -11 },
83 { -500, 1 },
84 { -490, 6 },
85 { -480, 10 },
86 { -440, 22 },
87 { -420, 27 },
88 { -400, 31 },
89 { -380, 34 },
90 { -340, 40 },
91 { -320, 43 },
92 { -280, 48 },
93 { -250, 52 },
94 { -230, 55 },
95 { -180, 61 },
96 { -140, 66 },
97 { -90, 73 },
98 { -80, 74 },
99 { 500, 127 }
100};
101
102/* DVB-S2 IF_AGC_GAIN vs. signal level in dBm/10.
103 * As measured, connected to a modulator.
104 * -8.0 to -50.1 dBm directly connected,
105 * -53.0 to -76.6 with extra attenuation.
106 * Cut-off to IF_AGC_GAIN = 0x3fff below -76.6dBm.
107 * Crude linear extrapolation below -76.6dBm and above -8.0dBm.
108 */
109static const struct stb0899_tab stb0899_dvbs2rf_tab[] = {
110 { 700, 0 },
111 { -80, 3217 },
112 { -150, 3893 },
113 { -190, 4217 },
114 { -240, 4621 },
115 { -280, 4945 },
116 { -320, 5273 },
117 { -350, 5545 },
118 { -370, 5741 },
119 { -410, 6147 },
120 { -450, 6671 },
121 { -490, 7413 },
122 { -501, 7665 },
123 { -530, 8767 },
124 { -560, 10219 },
125 { -580, 10939 },
126 { -590, 11518 },
127 { -600, 11723 },
128 { -650, 12659 },
129 { -690, 13219 },
130 { -730, 13645 },
131 { -750, 13909 },
132 { -766, 14153 },
133 { -999, 16383 }
134};
135
136/* DVB-S2 Es/N0 quant in dB/100 vs read value * 100*/
137struct stb0899_tab stb0899_quant_tab[] = {
138 { 0, 0 },
139 { 0, 100 },
140 { 600, 200 },
141 { 950, 299 },
142 { 1200, 398 },
143 { 1400, 501 },
144 { 1560, 603 },
145 { 1690, 700 },
146 { 1810, 804 },
147 { 1910, 902 },
148 { 2000, 1000 },
149 { 2080, 1096 },
150 { 2160, 1202 },
151 { 2230, 1303 },
152 { 2350, 1496 },
153 { 2410, 1603 },
154 { 2460, 1698 },
155 { 2510, 1799 },
156 { 2600, 1995 },
157 { 2650, 2113 },
158 { 2690, 2213 },
159 { 2720, 2291 },
160 { 2760, 2399 },
161 { 2800, 2512 },
162 { 2860, 2692 },
163 { 2930, 2917 },
164 { 2960, 3020 },
165 { 3010, 3199 },
166 { 3040, 3311 },
167 { 3060, 3388 },
168 { 3120, 3631 },
169 { 3190, 3936 },
170 { 3400, 5012 },
171 { 3610, 6383 },
172 { 3800, 7943 },
173 { 4210, 12735 },
174 { 4500, 17783 },
175 { 4690, 22131 },
176 { 4810, 25410 }
177};
178
179/* DVB-S2 Es/N0 estimate in dB/100 vs read value */
180struct stb0899_tab stb0899_est_tab[] = {
181 { 0, 0 },
182 { 0, 1 },
183 { 301, 2 },
184 { 1204, 16 },
185 { 1806, 64 },
186 { 2408, 256 },
187 { 2709, 512 },
188 { 3010, 1023 },
189 { 3311, 2046 },
190 { 3612, 4093 },
191 { 3823, 6653 },
192 { 3913, 8185 },
193 { 4010, 10233 },
194 { 4107, 12794 },
195 { 4214, 16368 },
196 { 4266, 18450 },
197 { 4311, 20464 },
198 { 4353, 22542 },
199 { 4391, 24604 },
200 { 4425, 26607 },
201 { 4457, 28642 },
202 { 4487, 30690 },
203 { 4515, 32734 },
204 { 4612, 40926 },
205 { 4692, 49204 },
206 { 4816, 65464 },
207 { 4913, 81846 },
208 { 4993, 98401 },
209 { 5060, 114815 },
210 { 5118, 131220 },
211 { 5200, 158489 },
212 { 5300, 199526 },
213 { 5400, 251189 },
214 { 5500, 316228 },
215 { 5600, 398107 },
216 { 5720, 524807 },
217 { 5721, 526017 },
218};
219
220int _stb0899_read_reg(struct stb0899_state *state, unsigned int reg)
221{
222 int ret;
223
224 u8 b0[] = { reg >> 8, reg & 0xff };
225 u8 buf;
226
227 struct i2c_msg msg[] = {
228 {
229 .addr = state->config->demod_address,
230 .flags = 0,
231 .buf = b0,
232 .len = 2
233 },{
234 .addr = state->config->demod_address,
235 .flags = I2C_M_RD,
236 .buf = &buf,
237 .len = 1
238 }
239 };
240
241 ret = i2c_transfer(state->i2c, msg, 2);
242 if (ret != 2) {
243 if (ret != -ERESTARTSYS)
244 dprintk(verbose, FE_ERROR, 1,
245 "Read error, Reg=[0x%02x], Status=%d",
246 reg, ret);
247
248 return ret < 0 ? ret : -EREMOTEIO;
249 }
250 if (unlikely(verbose >= FE_DEBUGREG))
251 dprintk(verbose, FE_ERROR, 1, "Reg=[0x%02x], data=%02x",
252 reg, buf);
253
254
255 return (unsigned int)buf;
256}
257
258int stb0899_read_reg(struct stb0899_state *state, unsigned int reg)
259{
260 int result;
261
262 result = _stb0899_read_reg(state, reg);
263 /*
264 * Bug ID 9:
265 * access to 0xf2xx/0xf6xx
266 * must be followed by read from 0xf2ff/0xf6ff.
267 */
268 if ((reg != 0xf2ff) && (reg != 0xf6ff) &&
269 (((reg & 0xff00) == 0xf200) || ((reg & 0xff00) == 0xf600)))
270 _stb0899_read_reg(state, (reg | 0x00ff));
271
272 return result;
273}
274
275u32 _stb0899_read_s2reg(struct stb0899_state *state,
276 u32 stb0899_i2cdev,
277 u32 stb0899_base_addr,
278 u16 stb0899_reg_offset)
279{
280 int status;
281 u32 data;
282 u8 buf[7] = { 0 };
283 u16 tmpaddr;
284
285 u8 buf_0[] = {
286 GETBYTE(stb0899_i2cdev, BYTE1), /* 0xf3 S2 Base Address (MSB) */
287 GETBYTE(stb0899_i2cdev, BYTE0), /* 0xfc S2 Base Address (LSB) */
288 GETBYTE(stb0899_base_addr, BYTE0), /* 0x00 Base Address (LSB) */
289 GETBYTE(stb0899_base_addr, BYTE1), /* 0x04 Base Address (LSB) */
290 GETBYTE(stb0899_base_addr, BYTE2), /* 0x00 Base Address (MSB) */
291 GETBYTE(stb0899_base_addr, BYTE3), /* 0x00 Base Address (MSB) */
292 };
293 u8 buf_1[] = {
294 0x00, /* 0xf3 Reg Offset */
295 0x00, /* 0x44 Reg Offset */
296 };
297
298 struct i2c_msg msg_0 = {
299 .addr = state->config->demod_address,
300 .flags = 0,
301 .buf = buf_0,
302 .len = 6
303 };
304
305 struct i2c_msg msg_1 = {
306 .addr = state->config->demod_address,
307 .flags = 0,
308 .buf = buf_1,
309 .len = 2
310 };
311
312 struct i2c_msg msg_r = {
313 .addr = state->config->demod_address,
314 .flags = I2C_M_RD,
315 .buf = buf,
316 .len = 4
317 };
318
319 tmpaddr = stb0899_reg_offset & 0xff00;
320 if (!(stb0899_reg_offset & 0x8))
321 tmpaddr = stb0899_reg_offset | 0x20;
322
323 buf_1[0] = GETBYTE(tmpaddr, BYTE1);
324 buf_1[1] = GETBYTE(tmpaddr, BYTE0);
325
326 status = i2c_transfer(state->i2c, &msg_0, 1);
327 if (status < 1) {
328 if (status != -ERESTARTSYS)
329 printk(KERN_ERR "%s ERR(1), Device=[0x%04x], Base address=[0x%08x], Offset=[0x%04x], Status=%d\n",
330 __func__, stb0899_i2cdev, stb0899_base_addr, stb0899_reg_offset, status);
331
332 goto err;
333 }
334
335 /* Dummy */
336 status = i2c_transfer(state->i2c, &msg_1, 1);
337 if (status < 1)
338 goto err;
339
340 status = i2c_transfer(state->i2c, &msg_r, 1);
341 if (status < 1)
342 goto err;
343
344 buf_1[0] = GETBYTE(stb0899_reg_offset, BYTE1);
345 buf_1[1] = GETBYTE(stb0899_reg_offset, BYTE0);
346
347 /* Actual */
348 status = i2c_transfer(state->i2c, &msg_1, 1);
349 if (status < 1) {
350 if (status != -ERESTARTSYS)
351 printk(KERN_ERR "%s ERR(2), Device=[0x%04x], Base address=[0x%08x], Offset=[0x%04x], Status=%d\n",
352 __func__, stb0899_i2cdev, stb0899_base_addr, stb0899_reg_offset, status);
353 goto err;
354 }
355
356 status = i2c_transfer(state->i2c, &msg_r, 1);
357 if (status < 1) {
358 if (status != -ERESTARTSYS)
359 printk(KERN_ERR "%s ERR(3), Device=[0x%04x], Base address=[0x%08x], Offset=[0x%04x], Status=%d\n",
360 __func__, stb0899_i2cdev, stb0899_base_addr, stb0899_reg_offset, status);
361 return status < 0 ? status : -EREMOTEIO;
362 }
363
364 data = MAKEWORD32(buf[3], buf[2], buf[1], buf[0]);
365 if (unlikely(state->verbose >= FE_DEBUGREG))
366 printk(KERN_DEBUG "%s Device=[0x%04x], Base address=[0x%08x], Offset=[0x%04x], Data=[0x%08x]\n",
367 __func__, stb0899_i2cdev, stb0899_base_addr, stb0899_reg_offset, data);
368
369 return data;
370
371err:
372 return status < 0 ? status : -EREMOTEIO;
373}
374
375int stb0899_write_s2reg(struct stb0899_state *state,
376 u32 stb0899_i2cdev,
377 u32 stb0899_base_addr,
378 u16 stb0899_reg_offset,
379 u32 stb0899_data)
380{
381 int status;
382
383 /* Base Address Setup */
384 u8 buf_0[] = {
385 GETBYTE(stb0899_i2cdev, BYTE1), /* 0xf3 S2 Base Address (MSB) */
386 GETBYTE(stb0899_i2cdev, BYTE0), /* 0xfc S2 Base Address (LSB) */
387 GETBYTE(stb0899_base_addr, BYTE0), /* 0x00 Base Address (LSB) */
388 GETBYTE(stb0899_base_addr, BYTE1), /* 0x04 Base Address (LSB) */
389 GETBYTE(stb0899_base_addr, BYTE2), /* 0x00 Base Address (MSB) */
390 GETBYTE(stb0899_base_addr, BYTE3), /* 0x00 Base Address (MSB) */
391 };
392 u8 buf_1[] = {
393 0x00, /* 0xf3 Reg Offset */
394 0x00, /* 0x44 Reg Offset */
395 0x00, /* data */
396 0x00, /* data */
397 0x00, /* data */
398 0x00, /* data */
399 };
400
401 struct i2c_msg msg_0 = {
402 .addr = state->config->demod_address,
403 .flags = 0,
404 .buf = buf_0,
405 .len = 6
406 };
407
408 struct i2c_msg msg_1 = {
409 .addr = state->config->demod_address,
410 .flags = 0,
411 .buf = buf_1,
412 .len = 6
413 };
414
415 buf_1[0] = GETBYTE(stb0899_reg_offset, BYTE1);
416 buf_1[1] = GETBYTE(stb0899_reg_offset, BYTE0);
417 buf_1[2] = GETBYTE(stb0899_data, BYTE0);
418 buf_1[3] = GETBYTE(stb0899_data, BYTE1);
419 buf_1[4] = GETBYTE(stb0899_data, BYTE2);
420 buf_1[5] = GETBYTE(stb0899_data, BYTE3);
421
422 if (unlikely(state->verbose >= FE_DEBUGREG))
423 printk(KERN_DEBUG "%s Device=[0x%04x], Base Address=[0x%08x], Offset=[0x%04x], Data=[0x%08x]\n",
424 __func__, stb0899_i2cdev, stb0899_base_addr, stb0899_reg_offset, stb0899_data);
425
426 status = i2c_transfer(state->i2c, &msg_0, 1);
427 if (unlikely(status < 1)) {
428 if (status != -ERESTARTSYS)
429 printk(KERN_ERR "%s ERR (1), Device=[0x%04x], Base Address=[0x%08x], Offset=[0x%04x], Data=[0x%08x], status=%d\n",
430 __func__, stb0899_i2cdev, stb0899_base_addr, stb0899_reg_offset, stb0899_data, status);
431 goto err;
432 }
433 status = i2c_transfer(state->i2c, &msg_1, 1);
434 if (unlikely(status < 1)) {
435 if (status != -ERESTARTSYS)
436 printk(KERN_ERR "%s ERR (2), Device=[0x%04x], Base Address=[0x%08x], Offset=[0x%04x], Data=[0x%08x], status=%d\n",
437 __func__, stb0899_i2cdev, stb0899_base_addr, stb0899_reg_offset, stb0899_data, status);
438
439 return status < 0 ? status : -EREMOTEIO;
440 }
441
442 return 0;
443
444err:
445 return status < 0 ? status : -EREMOTEIO;
446}
447
448int stb0899_read_regs(struct stb0899_state *state, unsigned int reg, u8 *buf, size_t count)
449{
450 int status;
451
452 u8 b0[] = { reg >> 8, reg & 0xff };
453
454 struct i2c_msg msg[] = {
455 {
456 .addr = state->config->demod_address,
457 .flags = 0,
458 .buf = b0,
459 .len = 2
460 },{
461 .addr = state->config->demod_address,
462 .flags = I2C_M_RD,
463 .buf = buf,
464 .len = count
465 }
466 };
467
468 status = i2c_transfer(state->i2c, msg, 2);
469 if (status != 2) {
470 if (status != -ERESTARTSYS)
471 printk(KERN_ERR "%s Read error, Reg=[0x%04x], Count=%u, Status=%d\n",
472 __func__, reg, count, status);
473 goto err;
474 }
475 /*
476 * Bug ID 9:
477 * access to 0xf2xx/0xf6xx
478 * must be followed by read from 0xf2ff/0xf6ff.
479 */
480 if ((reg != 0xf2ff) && (reg != 0xf6ff) &&
481 (((reg & 0xff00) == 0xf200) || ((reg & 0xff00) == 0xf600)))
482 _stb0899_read_reg(state, (reg | 0x00ff));
483
484 if (unlikely(state->verbose >= FE_DEBUGREG)) {
485 int i;
486
487 printk(KERN_DEBUG "%s [0x%04x]:", __func__, reg);
488 for (i = 0; i < count; i++) {
489 printk(" %02x", buf[i]);
490 }
491 printk("\n");
492 }
493
494 return 0;
495err:
496 return status < 0 ? status : -EREMOTEIO;
497}
498
499int stb0899_write_regs(struct stb0899_state *state, unsigned int reg, u8 *data, size_t count)
500{
501 int ret;
502 u8 buf[2 + count];
503 struct i2c_msg i2c_msg = {
504 .addr = state->config->demod_address,
505 .flags = 0,
506 .buf = buf,
507 .len = 2 + count
508 };
509
510 buf[0] = reg >> 8;
511 buf[1] = reg & 0xff;
512 memcpy(&buf[2], data, count);
513
514 if (unlikely(state->verbose >= FE_DEBUGREG)) {
515 int i;
516
517 printk(KERN_DEBUG "%s [0x%04x]:", __func__, reg);
518 for (i = 0; i < count; i++)
519 printk(" %02x", data[i]);
520 printk("\n");
521 }
522 ret = i2c_transfer(state->i2c, &i2c_msg, 1);
523
524 /*
525 * Bug ID 9:
526 * access to 0xf2xx/0xf6xx
527 * must be followed by read from 0xf2ff/0xf6ff.
528 */
529 if ((((reg & 0xff00) == 0xf200) || ((reg & 0xff00) == 0xf600)))
530 stb0899_read_reg(state, (reg | 0x00ff));
531
532 if (ret != 1) {
533 if (ret != -ERESTARTSYS)
534 dprintk(verbose, FE_ERROR, 1, "Reg=[0x%04x], Data=[0x%02x ...], Count=%u, Status=%d",
535 reg, data[0], count, ret);
536 return ret < 0 ? ret : -EREMOTEIO;
537 }
538
539 return 0;
540}
541
542int stb0899_write_reg(struct stb0899_state *state, unsigned int reg, u8 data)
543{
544 return stb0899_write_regs(state, reg, &data, 1);
545}
546
547/*
548 * stb0899_get_mclk
549 * Get STB0899 master clock frequency
550 * ExtClk: external clock frequency (Hz)
551 */
552static u32 stb0899_get_mclk(struct stb0899_state *state)
553{
554 u32 mclk = 90000000, div = 0;
555
556 div = stb0899_read_reg(state, STB0899_NCOARSE);
557 mclk = (div + 1) * state->config->xtal_freq / 6;
558 dprintk(verbose, FE_DEBUG, 1, "div=%d, mclk=%d", div, mclk);
559
560 return mclk;
561}
562
563/*
564 * stb0899_set_mclk
565 * Set STB0899 master Clock frequency
566 * Mclk: demodulator master clock
567 * ExtClk: external clock frequency (Hz)
568 */
569static void stb0899_set_mclk(struct stb0899_state *state, u32 Mclk)
570{
571 struct stb0899_internal *internal = &state->internal;
572 u8 mdiv = 0;
573
574 dprintk(verbose, FE_DEBUG, 1, "state->config=%p", state->config);
575 mdiv = ((6 * Mclk) / state->config->xtal_freq) - 1;
576 dprintk(verbose, FE_DEBUG, 1, "mdiv=%d", mdiv);
577
578 stb0899_write_reg(state, STB0899_NCOARSE, mdiv);
579 internal->master_clk = stb0899_get_mclk(state);
580
581 dprintk(verbose, FE_DEBUG, 1, "MasterCLOCK=%d", internal->master_clk);
582}
583
584static void stb0899_release(struct dvb_frontend *fe)
585{
586 struct stb0899_state *state = fe->demodulator_priv;
587
588 dprintk(verbose, FE_DEBUG, 1, "Release Frontend");
589 kfree(state);
590}
591
592/*
593 * stb0899_get_alpha
594 * return: rolloff
595 */
596static int stb0899_get_alpha(struct stb0899_state *state)
597{
598 u8 mode_coeff;
599
600 mode_coeff = stb0899_read_reg(state, STB0899_DEMOD);
601
602 if (STB0899_GETFIELD(MODECOEFF, mode_coeff) == 1)
603 return 20;
604 else
605 return 35;
606}
607
608/*
609 * stb0899_init_calc
610 */
611static void stb0899_init_calc(struct stb0899_state *state)
612{
613 struct stb0899_internal *internal = &state->internal;
614 int master_clk;
615 u8 agc[1];
616 u8 agc1cn;
617 u32 reg;
618
619 /* Read registers (in burst mode) */
620 agc1cn = stb0899_read_reg(state, STB0899_AGC1CN);
621 stb0899_read_regs(state, STB0899_AGC1REF, agc, 2); /* AGC1R and AGC2O */
622
623 /* Initial calculations */
624 master_clk = stb0899_get_mclk(state);
625 internal->t_agc1 = 0;
626 internal->t_agc2 = 0;
627 internal->master_clk = master_clk;
628 internal->mclk = master_clk / 65536L;
629 internal->rolloff = stb0899_get_alpha(state);
630
631 /* DVBS2 Initial calculations */
632 /* Set AGC value to the middle */
633 internal->agc_gain = 8154;
634 reg = STB0899_READ_S2REG(STB0899_S2DEMOD, IF_AGC_CNTRL);
635 STB0899_SETFIELD_VAL(IF_GAIN_INIT, reg, internal->agc_gain);
636 stb0899_write_s2reg(state, STB0899_S2DEMOD, STB0899_BASE_IF_AGC_CNTRL, STB0899_OFF0_IF_AGC_CNTRL, reg);
637
638 reg = STB0899_READ_S2REG(STB0899_S2DEMOD, RRC_ALPHA);
639 internal->rrc_alpha = STB0899_GETFIELD(RRC_ALPHA, reg);
640
641 internal->center_freq = 0;
642 internal->av_frame_coarse = 10;
643 internal->av_frame_fine = 20;
644 internal->step_size = 2;
645/*
646 if ((pParams->SpectralInv == FE_IQ_NORMAL) || (pParams->SpectralInv == FE_IQ_AUTO))
647 pParams->IQLocked = 0;
648 else
649 pParams->IQLocked = 1;
650*/
651}
652
653static int stb0899_wait_diseqc_fifo_empty(struct stb0899_state *state, int timeout)
654{
655 u8 reg = 0;
656 unsigned long start = jiffies;
657
658 while (1) {
659 reg = stb0899_read_reg(state, STB0899_DISSTATUS);
660 if (!STB0899_GETFIELD(FIFOFULL, reg))
661 break;
662 if ((jiffies - start) > timeout) {
663 dprintk(verbose, FE_ERROR, 1, "timed out !!");
664 return -ETIMEDOUT;
665 }
666 }
667
668 return 0;
669}
670
671static int stb0899_send_diseqc_msg(struct dvb_frontend *fe, struct dvb_diseqc_master_cmd *cmd)
672{
673 struct stb0899_state *state = fe->demodulator_priv;
674 u8 reg, i;
675
676 if (cmd->msg_len > 8)
677 return -EINVAL;
678
679 /* enable FIFO precharge */
680 reg = stb0899_read_reg(state, STB0899_DISCNTRL1);
681 STB0899_SETFIELD_VAL(DISPRECHARGE, reg, 1);
682 stb0899_write_reg(state, STB0899_DISCNTRL1, reg);
683 for (i = 0; i < cmd->msg_len; i++) {
684 /* wait for FIFO empty */
685 if (stb0899_wait_diseqc_fifo_empty(state, 10) < 0)
686 return -ETIMEDOUT;
687
688 stb0899_write_reg(state, STB0899_DISFIFO, cmd->msg[i]);
689 }
690 reg = stb0899_read_reg(state, STB0899_DISCNTRL1);
691 STB0899_SETFIELD_VAL(DISPRECHARGE, reg, 0);
692 stb0899_write_reg(state, STB0899_DISCNTRL1, reg);
693
694 return 0;
695}
696
697static int stb0899_wait_diseqc_rxidle(struct stb0899_state *state, int timeout)
698{
699 u8 reg = 0;
700 unsigned long start = jiffies;
701
702 while (!STB0899_GETFIELD(RXEND, reg)) {
703 reg = stb0899_read_reg(state, STB0899_DISRX_ST0);
704 if (jiffies - start > timeout) {
705 dprintk(verbose, FE_ERROR, 1, "timed out!!");
706 return -ETIMEDOUT;
707 }
708 msleep(10);
709 }
710
711 return 0;
712}
713
714static int stb0899_recv_slave_reply(struct dvb_frontend *fe, struct dvb_diseqc_slave_reply *reply)
715{
716 struct stb0899_state *state = fe->demodulator_priv;
717 u8 reg, length = 0, i;
718 int result;
719
720 if (stb0899_wait_diseqc_rxidle(state, 100) < 0)
721 return -ETIMEDOUT;
722
723 reg = stb0899_read_reg(state, STB0899_DISRX_ST0);
724 if (STB0899_GETFIELD(RXEND, reg)) {
725
726 reg = stb0899_read_reg(state, STB0899_DISRX_ST1);
727 length = STB0899_GETFIELD(FIFOBYTENBR, reg);
728
729 if (length > sizeof (reply->msg)) {
730 result = -EOVERFLOW;
731 goto exit;
732 }
733 reply->msg_len = length;
734
735 /* extract data */
736 for (i = 0; i < length; i++)
737 reply->msg[i] = stb0899_read_reg(state, STB0899_DISFIFO);
738 }
739
740 return 0;
741exit:
742
743 return result;
744}
745
746static int stb0899_wait_diseqc_txidle(struct stb0899_state *state, int timeout)
747{
748 u8 reg = 0;
749 unsigned long start = jiffies;
750
751 while (!STB0899_GETFIELD(TXIDLE, reg)) {
752 reg = stb0899_read_reg(state, STB0899_DISSTATUS);
753 if (jiffies - start > timeout) {
754 dprintk(verbose, FE_ERROR, 1, "timed out!!");
755 return -ETIMEDOUT;
756 }
757 msleep(10);
758 }
759 return 0;
760}
761
762static int stb0899_send_diseqc_burst(struct dvb_frontend *fe, fe_sec_mini_cmd_t burst)
763{
764 struct stb0899_state *state = fe->demodulator_priv;
765 u8 reg, old_state;
766
767 /* wait for diseqc idle */
768 if (stb0899_wait_diseqc_txidle(state, 100) < 0)
769 return -ETIMEDOUT;
770
771 reg = stb0899_read_reg(state, STB0899_DISCNTRL1);
772 old_state = reg;
773 /* set to burst mode */
774 STB0899_SETFIELD_VAL(DISEQCMODE, reg, 0x02);
775 STB0899_SETFIELD_VAL(DISPRECHARGE, reg, 0x01);
776 stb0899_write_reg(state, STB0899_DISCNTRL1, reg);
777 switch (burst) {
778 case SEC_MINI_A:
779 /* unmodulated */
780 stb0899_write_reg(state, STB0899_DISFIFO, 0x00);
781 break;
782 case SEC_MINI_B:
783 /* modulated */
784 stb0899_write_reg(state, STB0899_DISFIFO, 0xff);
785 break;
786 }
787 reg = stb0899_read_reg(state, STB0899_DISCNTRL1);
788 STB0899_SETFIELD_VAL(DISPRECHARGE, reg, 0x00);
789 stb0899_write_reg(state, STB0899_DISCNTRL1, reg);
790 /* wait for diseqc idle */
791 if (stb0899_wait_diseqc_txidle(state, 100) < 0)
792 return -ETIMEDOUT;
793
794 /* restore state */
795 stb0899_write_reg(state, STB0899_DISCNTRL1, old_state);
796
797 return 0;
798}
799
800
801static int stb0899_sleep(struct dvb_frontend *fe)
802{
803 struct stb0899_state *state = fe->demodulator_priv;
804 u8 reg;
805
806 dprintk(verbose, FE_DEBUG, 1, "Going to Sleep .. (Really tired .. :-))");
Manu Abraham8bd135b2007-07-03 09:53:42 -0300807 return 0;
808}
809
810static int stb0899_wakeup(struct dvb_frontend *fe)
811{
812 int rc;
813 struct stb0899_state *state = fe->demodulator_priv;
814
Manu Abraham8bd135b2007-07-03 09:53:42 -0300815
816 return 0;
817}
818
819static int stb0899_init(struct dvb_frontend *fe)
820{
821 int i;
822 struct stb0899_state *state = fe->demodulator_priv;
823 struct stb0899_config *config = state->config;
824
825 dprintk(verbose, FE_DEBUG, 1, "Initializing STB0899 ... ");
826// mutex_init(&state->search_lock);
827
828 /* init device */
829 dprintk(verbose, FE_DEBUG, 1, "init device");
830 for (i = 0; config->init_dev[i].address != 0xffff; i++)
831 stb0899_write_reg(state, config->init_dev[i].address, config->init_dev[i].data);
832
833 dprintk(verbose, FE_DEBUG, 1, "init S2 demod");
834 /* init S2 demod */
835 for (i = 0; config->init_s2_demod[i].offset != 0xffff; i++)
836 stb0899_write_s2reg(state, STB0899_S2DEMOD,
837 config->init_s2_demod[i].base_address,
838 config->init_s2_demod[i].offset,
839 config->init_s2_demod[i].data);
840
841 dprintk(verbose, FE_DEBUG, 1, "init S1 demod");
842 /* init S1 demod */
843 for (i = 0; config->init_s1_demod[i].address != 0xffff; i++)
844 stb0899_write_reg(state, config->init_s1_demod[i].address, config->init_s1_demod[i].data);
845
846 dprintk(verbose, FE_DEBUG, 1, "init S2 FEC");
847 /* init S2 fec */
848 for (i = 0; config->init_s2_fec[i].offset != 0xffff; i++)
849 stb0899_write_s2reg(state, STB0899_S2FEC,
850 config->init_s2_fec[i].base_address,
851 config->init_s2_fec[i].offset,
852 config->init_s2_fec[i].data);
853
854 dprintk(verbose, FE_DEBUG, 1, "init TST");
855 /* init test */
856 for (i = 0; config->init_tst[i].address != 0xffff; i++)
857 stb0899_write_reg(state, config->init_tst[i].address, config->init_tst[i].data);
858
859 stb0899_init_calc(state);
860// stb0899_diseqc_init(state);
861
862 return 0;
863}
864
865static int stb0899_table_lookup(const struct stb0899_tab *tab, int max, int val)
866{
867 int res = 0;
868 int min = 0, med;
869
870 if (val < tab[min].read)
871 res = tab[min].real;
872 else if (val >= tab[max].read)
873 res = tab[max].real;
874 else {
875 while ((max - min) > 1) {
876 med = (max + min) / 2;
877 if (val >= tab[min].read && val < tab[med].read)
878 max = med;
879 else
880 min = med;
881 }
882 res = ((val - tab[min].read) *
883 (tab[max].real - tab[min].real) /
884 (tab[max].read - tab[min].read)) +
885 tab[min].real;
886 }
887
888 return res;
889}
890
891static int stb0899_read_signal_strength(struct dvb_frontend *fe, u16 *strength)
892{
893 struct stb0899_state *state = fe->demodulator_priv;
894 struct stb0899_internal *internal = &state->internal;
895
896 int val;
897 u32 reg;
898 switch (state->delsys) {
899 case DVBFE_DELSYS_DVBS:
900 case DVBFE_DELSYS_DSS:
901 if (internal->lock) {
902 reg = stb0899_read_reg(state, STB0899_VSTATUS);
903 if (STB0899_GETFIELD(VSTATUS_LOCKEDVIT, reg)) {
904
905 reg = stb0899_read_reg(state, STB0899_AGCIQIN);
906 val = (s32)(s8)STB0899_GETFIELD(AGCIQVALUE, reg);
907
908 *strength = stb0899_table_lookup(stb0899_dvbsrf_tab, ARRAY_SIZE(stb0899_dvbsrf_tab) - 1, val);
909 *strength += 750;
910 dprintk(verbose, FE_DEBUG, 1, "AGCIQVALUE = 0x%02x, C = %d * 0.1 dBm",
911 val & 0xff, *strength);
912 }
913 }
914 break;
915 case DVBFE_DELSYS_DVBS2:
916 if (internal->lock) {
917 reg = STB0899_READ_S2REG(STB0899_DEMOD, IF_AGC_GAIN);
918 val = STB0899_GETFIELD(IF_AGC_GAIN, reg);
919
920 *strength = stb0899_table_lookup(stb0899_dvbs2rf_tab, ARRAY_SIZE(stb0899_dvbs2rf_tab) - 1, val);
921 *strength += 750;
922 dprintk(verbose, FE_DEBUG, 1, "IF_AGC_GAIN = 0x%04x, C = %d * 0.1 dBm",
923 val & 0x3fff, *strength);
924 }
925 break;
926 default:
927 dprintk(verbose, FE_DEBUG, 1, "Unsupported delivery system");
928 break;
929 }
930
931 return 0;
932}
933
934static int stb0899_read_snr(struct dvb_frontend *fe, u16 *snr)
935{
936 struct stb0899_state *state = fe->demodulator_priv;
937 struct stb0899_internal *internal = &state->internal;
938
939 unsigned int val, quant, quantn = -1, est, estn = -1;
940 u8 buf[2];
941 u32 reg;
942
943 reg = stb0899_read_reg(state, STB0899_VSTATUS);
944 switch (state->delsys) {
945 case DVBFE_DELSYS_DVBS:
946 case DVBFE_DELSYS_DSS:
947 if (internal->lock) {
948 if (STB0899_GETFIELD(VSTATUS_LOCKEDVIT, reg)) {
949
950 stb0899_read_regs(state, STB0899_NIRM, buf, 2);
951 val = MAKEWORD16(buf[0], buf[1]);
952
953 *snr = stb0899_table_lookup(stb0899_cn_tab, ARRAY_SIZE(stb0899_cn_tab) - 1, val);
954 dprintk(verbose, FE_DEBUG, 1, "NIR = 0x%02x%02x = %u, C/N = %d * 0.1 dBm\n",
955 buf[0], buf[1], val, *snr);
956 }
957 }
958 break;
959 case DVBFE_DELSYS_DVBS2:
960 if (internal->lock) {
961 reg = STB0899_READ_S2REG(STB0899_S2DEMOD, UWP_CNTRL1);
962 quant = STB0899_GETFIELD(UWP_ESN0_QUANT, reg);
963 reg = STB0899_READ_S2REG(STB0899_S2DEMOD, UWP_STAT2);
964 est = STB0899_GETFIELD(ESN0_EST, reg);
965 if (est == 1)
966 val = 301; /* C/N = 30.1 dB */
967 else if (est == 2)
968 val = 270; /* C/N = 27.0 dB */
969 else {
970 /* quantn = 100 * log(quant^2) */
971 quantn = stb0899_table_lookup(stb0899_quant_tab, ARRAY_SIZE(stb0899_quant_tab) - 1, quant * 100);
972 /* estn = 100 * log(est) */
973 estn = stb0899_table_lookup(stb0899_est_tab, ARRAY_SIZE(stb0899_est_tab) - 1, est);
974 /* snr(dBm/10) = -10*(log(est)-log(quant^2)) => snr(dBm/10) = (100*log(quant^2)-100*log(est))/10 */
975 val = (quantn - estn) / 10;
976 }
977 *snr = val;
978 dprintk(verbose, FE_DEBUG, 1, "Es/N0 quant = %d (%d) estimate = %u (%d), C/N = %d * 0.1 dBm",
979 quant, quantn, est, estn, val);
980 }
981 break;
982 default:
983 dprintk(verbose, FE_DEBUG, 1, "Unsupported delivery system");
984 break;
985 }
986
987 return 0;
988}
989
990static int stb0899_read_status(struct dvb_frontend *fe, enum fe_status *status)
991{
992 struct stb0899_state *state = fe->demodulator_priv;
993 struct stb0899_internal *internal = &state->internal;
994 u8 reg;
995 *status = 0;
996
997 switch (state->delsys) {
998 case DVBFE_DELSYS_DVBS:
999 case DVBFE_DELSYS_DSS:
1000 dprintk(state->verbose, FE_DEBUG, 1, "Delivery system DVB-S/DSS");
1001 if (internal->lock) {
1002 reg = stb0899_read_reg(state, STB0899_VSTATUS);
1003 if (STB0899_GETFIELD(VSTATUS_LOCKEDVIT, reg)) {
1004 dprintk(state->verbose, FE_DEBUG, 1, "--------> FE_HAS_CARRIER | FE_HAS_LOCK");
1005 *status |= FE_HAS_CARRIER | FE_HAS_LOCK;
1006
1007 reg = stb0899_read_reg(state, STB0899_PLPARM);
1008 if (STB0899_GETFIELD(VITCURPUN, reg)) {
1009 dprintk(state->verbose, FE_DEBUG, 1, "--------> FE_HAS_VITERBI | FE_HAS_SYNC");
1010 *status |= FE_HAS_VITERBI | FE_HAS_SYNC;
1011 }
1012 }
1013 }
1014 break;
1015 case DVBFE_DELSYS_DVBS2:
1016 dprintk(state->verbose, FE_DEBUG, 1, "Delivery system DVB-S2");
1017 if (internal->lock) {
1018 reg = STB0899_READ_S2REG(STB0899_S2DEMOD, DMD_STAT2);
1019 if (STB0899_GETFIELD(UWP_LOCK, reg) && STB0899_GETFIELD(CSM_LOCK, reg)) {
1020 *status |= FE_HAS_CARRIER;
1021 dprintk(state->verbose, FE_DEBUG, 1,
1022 "UWP & CSM Lock ! ---> DVB-S2 FE_HAS_CARRIER");
1023
1024 reg = stb0899_read_reg(state, STB0899_CFGPDELSTATUS1);
1025 if (STB0899_GETFIELD(CFGPDELSTATUS_LOCK, reg)) {
1026 *status |= FE_HAS_LOCK;
1027 dprintk(state->verbose, FE_DEBUG, 1,
1028 "Packet Delineator Locked ! -----> DVB-S2 FE_HAS_LOCK");
1029
1030 }
1031 if (STB0899_GETFIELD(CONTINUOUS_STREAM, reg)) {
1032 *status |= FE_HAS_VITERBI;
1033 dprintk(state->verbose, FE_DEBUG, 1,
1034 "Packet Delineator found VITERBI ! -----> DVB-S2 FE_HAS_VITERBI");
1035 }
1036 if (STB0899_GETFIELD(ACCEPTED_STREAM, reg)) {
1037 *status |= FE_HAS_SYNC;
1038 dprintk(state->verbose, FE_DEBUG, 1,
1039 "Packet Delineator found SYNC ! -----> DVB-S2 FE_HAS_SYNC");
1040 }
1041 }
1042 }
1043 break;
1044 default:
1045 dprintk(verbose, FE_DEBUG, 1, "Unsupported delivery system");
1046 break;
1047 }
1048 return 0;
1049}
1050
1051/*
1052 * stb0899_get_error
1053 * viterbi error for DVB-S/DSS
1054 * packet error for DVB-S2
1055 * Bit Error Rate or Packet Error Rate * 10 ^ 7
1056 */
1057static int stb0899_read_ber(struct dvb_frontend *fe, u32 *ber)
1058{
1059 struct stb0899_state *state = fe->demodulator_priv;
1060 struct stb0899_internal *internal = &state->internal;
1061
1062 u8 lsb, msb;
1063 u32 i;
1064
1065 *ber = 0;
1066
1067 switch (state->delsys) {
1068 case DVBFE_DELSYS_DVBS:
1069 case DVBFE_DELSYS_DSS:
1070 if (internal->lock) {
1071 /* average 5 BER values */
1072 for (i = 0; i < 5; i++) {
1073 msleep(100);
1074 lsb = stb0899_read_reg(state, STB0899_ECNT1L);
1075 msb = stb0899_read_reg(state, STB0899_ECNT1M);
1076 *ber += MAKEWORD16(msb, lsb);
1077 }
1078 *ber /= 5;
1079 /* Viterbi Check */
1080 if (STB0899_GETFIELD(VSTATUS_PRFVIT, internal->v_status)) {
1081 /* Error Rate */
1082 *ber *= 9766;
1083 /* ber = ber * 10 ^ 7 */
1084 *ber /= (-1 + (1 << (2 * STB0899_GETFIELD(NOE, internal->err_ctrl))));
1085 *ber /= 8;
1086 }
1087 }
1088 break;
1089 case DVBFE_DELSYS_DVBS2:
1090 if (internal->lock) {
1091 /* Average 5 PER values */
1092 for (i = 0; i < 5; i++) {
1093 msleep(100);
1094 lsb = stb0899_read_reg(state, STB0899_ECNT1L);
1095 msb = stb0899_read_reg(state, STB0899_ECNT1M);
1096 *ber += MAKEWORD16(msb, lsb);
1097 }
1098 /* ber = ber * 10 ^ 7 */
1099 *ber *= 10000000;
1100 *ber /= (-1 + (1 << (4 + 2 * STB0899_GETFIELD(NOE, internal->err_ctrl))));
1101 }
1102 break;
1103 default:
1104 dprintk(verbose, FE_DEBUG, 1, "Unsupported delivery system");
1105 }
1106
1107 return 0;
1108}
1109
1110static int stb0899_set_voltage(struct dvb_frontend *fe, fe_sec_voltage_t voltage)
1111{
1112 struct stb0899_state *state = fe->demodulator_priv;
1113
1114 switch (voltage) {
1115 case SEC_VOLTAGE_13:
1116 stb0899_write_reg(state, STB0899_GPIO00CFG, 0x82);
1117 stb0899_write_reg(state, STB0899_GPIO01CFG, 0x02);
1118 stb0899_write_reg(state, STB0899_GPIO02CFG, 0x00);
1119 break;
1120 case SEC_VOLTAGE_18:
1121 stb0899_write_reg(state, STB0899_GPIO00CFG, 0x02);
1122 stb0899_write_reg(state, STB0899_GPIO01CFG, 0x02);
1123 stb0899_write_reg(state, STB0899_GPIO02CFG, 0x82);
1124 break;
1125 case SEC_VOLTAGE_OFF:
1126 stb0899_write_reg(state, STB0899_GPIO00CFG, 0x82);
1127 stb0899_write_reg(state, STB0899_GPIO01CFG, 0x82);
1128 stb0899_write_reg(state, STB0899_GPIO02CFG, 0x82);
1129 break;
1130 default:
1131 return -EINVAL;
1132 }
1133
1134 return 0;
1135}
1136
1137static int stb0899_set_tone(struct dvb_frontend *fe, fe_sec_tone_mode_t tone)
1138{
1139 struct stb0899_state *state = fe->demodulator_priv;
1140 struct stb0899_internal *internal = &state->internal;
1141
1142 u8 div;
1143
1144 /* wait for diseqc idle */
1145 if (stb0899_wait_diseqc_txidle(state, 100) < 0)
1146 return -ETIMEDOUT;
1147
1148 switch (tone) {
1149 case SEC_TONE_ON:
1150 div = (internal->master_clk / 100) / 5632;
1151 div = (div + 5) / 10;
1152 stb0899_write_reg(state, STB0899_DISEQCOCFG, 0x66);
1153 stb0899_write_reg(state, STB0899_ACRPRESC, 0x31);
1154 stb0899_write_reg(state, STB0899_ACRDIV1, div);
1155 break;
1156 case SEC_TONE_OFF:
1157 stb0899_write_reg(state, STB0899_DISEQCOCFG, 0x20);
1158 break;
1159 default:
1160 break;
1161 }
1162 return 0;
1163}
1164
1165static int stb0899_i2c_gate_ctrl(struct dvb_frontend *fe, int enable)
1166{
1167 int i2c_stat;
1168 struct stb0899_state *state = fe->demodulator_priv;
1169
1170 i2c_stat = stb0899_read_reg(state, STB0899_I2CRPT);
1171 if (i2c_stat < 0)
1172 goto err;
1173
1174 if (enable) {
1175 dprintk(state->verbose, FE_DEBUG, 1, "Enabling I2C Repeater ...");
1176 i2c_stat |= STB0899_I2CTON;
1177 if (stb0899_write_reg(state, STB0899_I2CRPT, i2c_stat) < 0)
1178 goto err;
1179 }
1180 return 0;
1181err:
1182 dprintk(state->verbose, FE_ERROR, 1, "I2C Repeater enable failed");
1183 return -EREMOTEIO;
1184}
1185
1186
1187static inline void CONVERT32(u32 x, char *str)
1188{
1189 *str++ = (x >> 24) & 0xff;
1190 *str++ = (x >> 16) & 0xff;
1191 *str++ = (x >> 8) & 0xff;
1192 *str++ = (x >> 0) & 0xff;
1193 *str = '\0';
1194}
1195
1196int stb0899_get_dev_id(struct stb0899_state *state)
1197{
1198 u8 chip_id, release;
1199 u16 id;
1200 u32 demod_ver = 0, fec_ver = 0;
1201 char demod_str[4] = { 0 };
1202 char fec_str[4] = { 0 };
1203
1204 id = stb0899_read_reg(state, STB0899_DEV_ID);
1205 dprintk(state->verbose, FE_DEBUG, 1, "ID reg=[0x%02x]", id);
1206 chip_id = STB0899_GETFIELD(CHIP_ID, id);
1207 release = STB0899_GETFIELD(CHIP_REL, id);
1208
1209 dprintk(state->verbose, FE_ERROR, 1, "Device ID=[%d], Release=[%d]",
1210 chip_id, release);
1211
1212 CONVERT32(STB0899_READ_S2REG(STB0899_S2DEMOD, DMD_CORE_ID), (char *)&demod_str);
1213
1214 demod_ver = STB0899_READ_S2REG(STB0899_S2DEMOD, DMD_VERSION_ID);
1215 dprintk(state->verbose, FE_ERROR, 1, "Demodulator Core ID=[%s], Version=[%d]", (char *) &demod_str, demod_ver);
1216 CONVERT32(STB0899_READ_S2REG(STB0899_S2FEC, FEC_CORE_ID_REG), (char *)&fec_str);
1217 fec_ver = STB0899_READ_S2REG(STB0899_S2FEC, FEC_VER_ID_REG);
1218 if (! (chip_id > 0)) {
1219 dprintk(state->verbose, FE_ERROR, 1, "couldn't find a STB 0899");
1220
1221 return -ENODEV;
1222 }
1223 dprintk(state->verbose, FE_ERROR, 1, "FEC Core ID=[%s], Version=[%d]", (char*) &fec_str, fec_ver);
1224
1225 return 0;
1226}
1227
1228static const struct dvbfe_info dvbs_info = {
1229 .name = "STB0899 DVB-S",
1230 .delivery = DVBFE_DELSYS_DVBS,
1231 .delsys = {
1232 .dvbs.modulation = DVBFE_MOD_QPSK,
1233 .dvbs.fec = DVBFE_FEC_1_2 | DVBFE_FEC_2_3 |
1234 DVBFE_FEC_3_4 | DVBFE_FEC_5_6 |
1235 DVBFE_FEC_6_7
1236 },
1237
1238 .frequency_min = 950000,
1239 .frequency_max = 2150000,
1240 .frequency_step = 0,
1241 .symbol_rate_min = 1000000,
1242 .symbol_rate_max = 45000000,
1243 .symbol_rate_tolerance = 0
1244};
1245
1246static const struct dvbfe_info dss_info = {
1247 .name = "STB0899 DSS",
1248 .delivery = DVBFE_DELSYS_DSS,
1249 .delsys = {
1250 .dss.modulation = DVBFE_MOD_BPSK | DVBFE_MOD_QPSK,
1251 .dss.fec = DVBFE_FEC_1_2 | DVBFE_FEC_2_3 |
1252 DVBFE_FEC_3_4 | DVBFE_FEC_5_6 |
1253 DVBFE_FEC_6_7
1254 },
1255
1256 .frequency_min = 950000,
1257 .frequency_max = 2150000,
1258 .frequency_step = 0,
1259 .symbol_rate_min = 1000000,
1260 .symbol_rate_max = 45000000,
1261 .symbol_rate_tolerance = 0
1262};
1263
1264static const struct dvbfe_info dvbs2_info = {
1265 .name = "STB0899 DVB-S2",
1266 .delivery = DVBFE_DELSYS_DVBS2,
1267 .delsys = {
1268 .dvbs2.modulation = DVBFE_MOD_QPSK | DVBFE_MOD_8PSK |
1269 DVBFE_MOD_16APSK | DVBFE_MOD_32APSK,
1270
1271 .dvbs2.fec = DVBFE_FEC_1_4 | DVBFE_FEC_1_3 |
1272 DVBFE_FEC_2_5 | DVBFE_FEC_1_2 |
1273 DVBFE_FEC_3_5 | DVBFE_FEC_2_3 |
1274 DVBFE_FEC_3_4 | DVBFE_FEC_4_5 |
1275 DVBFE_FEC_5_6 | DVBFE_FEC_8_9 |
1276 DVBFE_FEC_9_10,
1277 },
1278
1279 .frequency_min = 950000,
1280 .frequency_max = 2150000,
1281 .frequency_step = 0,
1282 .symbol_rate_min = 1000000,
1283 .symbol_rate_max = 45000000,
1284 .symbol_rate_tolerance = 0
1285};
1286
1287static int stb0899_get_info(struct dvb_frontend *fe, struct dvbfe_info *fe_info)
1288{
1289 struct stb0899_state *state = fe->demodulator_priv;
1290
1291 dprintk(verbose, FE_DEBUG, 1, "Get Info");
1292
1293 state->delsys = fe_info->delivery;
1294 switch (state->delsys) {
1295 case DVBFE_DELSYS_DVBS:
1296 dprintk(verbose, FE_ERROR, 1, "Querying DVB-S info");
1297 memcpy(fe_info, &dvbs_info, sizeof (struct dvbfe_info));
1298 break;
1299 case DVBFE_DELSYS_DSS:
1300 dprintk(verbose, FE_ERROR, 1, "Querying DSS info");
1301 memcpy(fe_info, &dss_info, sizeof (struct dvbfe_info));
1302 break;
1303 case DVBFE_DELSYS_DVBS2:
1304 dprintk(verbose, FE_ERROR, 1, "Querying DVB-S2 info");
1305 memcpy(fe_info, &dvbs2_info, sizeof (struct dvbfe_info));
1306 break;
1307 default:
1308 dprintk(verbose, FE_ERROR, 1, "Unsupported delivery system");
1309 return -EINVAL;
1310 }
1311 dprintk(verbose, FE_DEBUG, 1, "delivery system=%d", state->delsys);
1312
1313 return 0;
1314}
1315
1316static int stb0899_get_delsys(struct dvb_frontend *fe, enum dvbfe_delsys *fe_delsys)
1317{
1318 *fe_delsys = DVBFE_DELSYS_DVBS | DVBFE_DELSYS_DSS | DVBFE_DELSYS_DVBS2;
1319
1320 return 0;
1321}
1322
1323void stb0899_set_delsys(struct stb0899_state *state)
1324{
1325 u8 reg;
1326 u8 stop_clk[2];
1327
1328 stop_clk[0] = stb0899_read_reg(state, STB0899_STOPCLK1);
1329 stop_clk[1] = stb0899_read_reg(state, STB0899_STOPCLK2);
1330
1331 switch (state->delsys) {
1332 case DVBFE_DELSYS_DVBS:
1333 dprintk(verbose, FE_DEBUG, 1, "Delivery System -- DVB-S");
1334 /* FECM/Viterbi ON */
1335 reg = stb0899_read_reg(state, STB0899_FECM);
1336 STB0899_SETFIELD_VAL(FECM_RSVD0, reg, 0);
1337 STB0899_SETFIELD_VAL(FECM_VITERBI_ON, reg, 1);
1338 stb0899_write_reg(state, STB0899_FECM, reg);
1339
1340 stb0899_write_reg(state, STB0899_RSULC, 0xb1);
1341 stb0899_write_reg(state, STB0899_TSULC, 0x40);
1342 stb0899_write_reg(state, STB0899_RSLLC, 0x42);
1343 stb0899_write_reg(state, STB0899_TSLPL, 0x12);
1344
1345 reg = stb0899_read_reg(state, STB0899_TSTRES);
1346 STB0899_SETFIELD_VAL(FRESLDPC, reg, 1);
1347 stb0899_write_reg(state, STB0899_TSTRES, reg);
1348
1349 STB0899_SETFIELD_VAL(STOP_CHK8PSK, stop_clk[0], 1);
1350 STB0899_SETFIELD_VAL(STOP_CKFEC108, stop_clk[0], 1);
1351 STB0899_SETFIELD_VAL(STOP_CKFEC216, stop_clk[0], 1);
1352
1353 STB0899_SETFIELD_VAL(STOP_CKPKDLIN108, stop_clk[1], 1);
1354 STB0899_SETFIELD_VAL(STOP_CKPKDLIN216, stop_clk[1], 1);
1355
1356 STB0899_SETFIELD_VAL(STOP_CKINTBUF216, stop_clk[0], 1);
1357 STB0899_SETFIELD_VAL(STOP_CKCORE216, stop_clk[0], 1);
1358
1359 STB0899_SETFIELD_VAL(STOP_CKS2DMD108, stop_clk[1], 1);
1360 break;
1361 case DVBFE_DELSYS_DVBS2:
1362 /* FECM/Viterbi OFF */
1363 reg = stb0899_read_reg(state, STB0899_FECM);
1364 STB0899_SETFIELD_VAL(FECM_RSVD0, reg, 0);
1365 STB0899_SETFIELD_VAL(FECM_VITERBI_ON, reg, 0);
1366 stb0899_write_reg(state, STB0899_FECM, reg);
1367
1368 stb0899_write_reg(state, STB0899_RSULC, 0xb1);
1369 stb0899_write_reg(state, STB0899_TSULC, 0x42);
1370 stb0899_write_reg(state, STB0899_RSLLC, 0x40);
1371 stb0899_write_reg(state, STB0899_TSLPL, 0x02);
1372
1373 reg = stb0899_read_reg(state, STB0899_TSTRES);
1374 STB0899_SETFIELD_VAL(FRESLDPC, reg, 0);
1375 stb0899_write_reg(state, STB0899_TSTRES, reg);
1376
1377 STB0899_SETFIELD_VAL(STOP_CHK8PSK, stop_clk[0], 1);
1378 STB0899_SETFIELD_VAL(STOP_CKFEC108, stop_clk[0], 0);
1379 STB0899_SETFIELD_VAL(STOP_CKFEC216, stop_clk[0], 0);
1380
1381 STB0899_SETFIELD_VAL(STOP_CKPKDLIN108, stop_clk[1], 0);
1382 STB0899_SETFIELD_VAL(STOP_CKPKDLIN216, stop_clk[1], 0);
1383
1384 STB0899_SETFIELD_VAL(STOP_CKINTBUF216, stop_clk[0], 0);
1385 STB0899_SETFIELD_VAL(STOP_CKCORE216, stop_clk[0], 0);
1386
1387 STB0899_SETFIELD_VAL(STOP_CKS2DMD108, stop_clk[1], 0);
1388 break;
1389 case DVBFE_DELSYS_DSS:
1390 /* FECM/Viterbi ON */
1391 reg = stb0899_read_reg(state, STB0899_FECM);
1392 STB0899_SETFIELD_VAL(FECM_RSVD0, reg, 1);
1393 STB0899_SETFIELD_VAL(FECM_VITERBI_ON, reg, 1);
1394 stb0899_write_reg(state, STB0899_FECM, reg);
1395
1396 stb0899_write_reg(state, STB0899_RSULC, 0xa1);
1397 stb0899_write_reg(state, STB0899_TSULC, 0x61);
1398 stb0899_write_reg(state, STB0899_RSLLC, 0x42);
1399
1400 reg = stb0899_read_reg(state, STB0899_TSTRES);
1401 STB0899_SETFIELD_VAL(FRESLDPC, reg, 1);
1402 stb0899_write_reg(state, STB0899_TSTRES, reg);
1403
1404 STB0899_SETFIELD_VAL(STOP_CHK8PSK, stop_clk[0], 1);
1405 STB0899_SETFIELD_VAL(STOP_CKFEC108, stop_clk[0], 1);
1406 STB0899_SETFIELD_VAL(STOP_CKFEC216, stop_clk[0], 1);
1407
1408 STB0899_SETFIELD_VAL(STOP_CKPKDLIN108, stop_clk[1], 1);
1409 STB0899_SETFIELD_VAL(STOP_CKPKDLIN216, stop_clk[1], 1);
1410
1411 STB0899_SETFIELD_VAL(STOP_CKCORE216, stop_clk[0], 0);
1412
1413 STB0899_SETFIELD_VAL(STOP_CKS2DMD108, stop_clk[1], 1);
1414 break;
1415 default:
1416 dprintk(verbose, FE_ERROR, 1, "Unsupported delivery system");
1417 break;
1418 }
1419 STB0899_SETFIELD_VAL(STOP_CKADCI108, stop_clk[0], 0);
1420 stb0899_write_regs(state, STB0899_STOPCLK1, stop_clk, 2);
1421}
1422
1423/*
1424 * stb0899_set_iterations
1425 * set the LDPC iteration scale function
1426 */
1427static void stb0899_set_iterations(struct stb0899_state *state)
1428{
1429 struct stb0899_internal *internal = &state->internal;
1430 struct stb0899_config *config = state->config;
1431
1432 s32 iter_scale;
1433 u32 reg;
1434
1435 iter_scale = 17 * (internal->master_clk / 1000);
1436 iter_scale += 410000;
1437 iter_scale /= (internal->srate / 1000000);
1438 iter_scale /= 1000;
1439
1440 if (iter_scale > config->ldpc_max_iter)
1441 iter_scale = config->ldpc_max_iter;
1442
1443 reg = STB0899_READ_S2REG(STB0899_S2DEMOD, MAX_ITER);
1444 STB0899_SETFIELD_VAL(MAX_ITERATIONS, reg, iter_scale);
1445 stb0899_write_s2reg(state, STB0899_S2DEMOD, STB0899_BASE_MAX_ITER, STB0899_OFF0_MAX_ITER, reg);
1446}
1447
1448static enum dvbfe_search stb0899_search(struct dvb_frontend *fe, struct dvbfe_params *params)
1449{
1450 struct stb0899_state *state = fe->demodulator_priv;
1451 struct stb0899_params *i_params = &state->params;
1452 struct stb0899_internal *internal = &state->internal;
1453
1454 u32 SearchRange, gain;
1455
1456 switch (state->delsys) {
1457 case DVBFE_DELSYS_DVBS:
1458 dprintk(verbose, FE_ERROR, 1, "set DVB-S params");
1459 i_params->freq = params->frequency;
1460 i_params->srate = params->delsys.dvbs.symbol_rate;
1461 break;
1462 case DVBFE_DELSYS_DSS:
1463 dprintk(verbose, FE_ERROR, 1, "set DSS params");
1464 i_params->freq = params->frequency;
1465 i_params->srate = params->delsys.dss.symbol_rate;
1466 break;
1467 case DVBFE_DELSYS_DVBS2:
1468 dprintk(verbose, FE_ERROR, 1, "set DVB-S2 params");
1469 i_params->freq = params->frequency;
1470 i_params->srate = params->delsys.dvbs2.symbol_rate;
1471 break;
1472 default:
1473 dprintk(verbose, FE_ERROR, 1, "Unsupported delivery system");
1474 return -EINVAL;
1475 }
1476 dprintk(verbose, FE_DEBUG, 1, "delivery system=%d", state->delsys);
1477
1478// SearchRange = 3000000; /* Search Bandwidth (3 Mhz, was initially 10 Mhz) */
1479 SearchRange = 10000000; /* Search Bandwidth (3 Mhz, was initially 10 Mhz) */
1480 dprintk(verbose, FE_DEBUG, 1, "Frequency=%d, Srate=%d", i_params->freq, i_params->srate);
1481 /* checking Search Range is meaningless for a fixed 3 Mhz */
1482 if (INRANGE(i_params->srate, 1000000, 45000000)) {
1483 dprintk(verbose, FE_DEBUG, 1, "Parameters IN RANGE");
1484 stb0899_set_delsys(state);
1485
1486 if (state->config->tuner_set_rfsiggain) {
1487 if (internal->srate > 15000000)
1488 gain = 8; /* 15Mb < srate < 45Mb, gain = 8dB */
1489 else if (internal->srate > 5000000)
1490 gain = 12; /* 5Mb < srate < 15Mb, gain = 12dB */
1491 else
1492 gain = 14; /* 1Mb < srate < 5Mb, gain = 14db */
1493 state->config->tuner_set_rfsiggain(fe, gain);
1494 }
1495
1496 if (i_params->srate <= 5000000)
1497 stb0899_set_mclk(state, 76500000);
1498 else
Manu Abraham54c358f2007-07-02 08:44:32 -03001499 stb0899_set_mclk(state, 90000000);
Manu Abraham8bd135b2007-07-03 09:53:42 -03001500
1501 switch (state->delsys) {
1502 case DVBFE_DELSYS_DVBS:
1503 case DVBFE_DELSYS_DSS:
1504 dprintk(verbose, FE_DEBUG, 1, "DVB-S delivery system");
1505 internal->freq = i_params->freq;
1506 internal->srate = i_params->srate;
1507 /*
1508 * search = user search range +
1509 * 500Khz +
1510 * 2 * Tuner_step_size +
1511 * 10% of the symbol rate
1512 */
1513 internal->srch_range = SearchRange + 1500000 + (i_params->srate / 5);
1514 internal->derot_percent = 30;
1515
1516 /* What to do for tuners having no bandwidth setup ? */
1517 if (state->config->tuner_set_bandwidth)
1518 state->config->tuner_set_bandwidth(fe, (13 * (stb0899_carr_width(state) + 10000000)) / 10);
1519 if (state->config->tuner_get_bandwidth)
1520 state->config->tuner_get_bandwidth(fe, &internal->tuner_bw);
1521 /* Set DVB-S1 AGC */
1522 stb0899_write_reg(state, STB0899_AGCRFCFG, 0x11);
1523
1524 /* Run the search algorithm */
1525 dprintk(verbose, FE_DEBUG, 1, "running DVB-S search algo ..");
1526 if (stb0899_dvbs_algo(state) == RANGEOK) {
1527 internal->lock = 1;
1528 dprintk(verbose, FE_DEBUG, 1,
1529 "-------------------------------------> DVB-S LOCK !");
1530
1531// stb0899_write_reg(state, STB0899_ERRCTRL1, 0x3d); /* Viterbi Errors */
1532// internal->v_status = stb0899_read_reg(state, STB0899_VSTATUS);
1533// internal->err_ctrl = stb0899_read_reg(state, STB0899_ERRCTRL1);
1534// dprintk(verbose, FE_DEBUG, 1, "VSTATUS=0x%02x", internal->v_status);
1535// dprintk(verbose, FE_DEBUG, 1, "ERR_CTRL=0x%02x", internal->err_ctrl);
1536
1537 return DVBFE_ALGO_SEARCH_SUCCESS;
1538 } else {
1539 internal->lock = 0;
1540
1541 return DVBFE_ALGO_SEARCH_FAILED;
1542 }
1543 break;
1544 case DVBFE_DELSYS_DVBS2:
1545 internal->freq = i_params->freq;
1546 internal->srate = i_params->srate;
1547 internal->srch_range = SearchRange;
1548
1549 if (state->config->tuner_set_bandwidth)
1550 state->config->tuner_set_bandwidth(fe, (stb0899_carr_width(state) + 10000000));
1551 if (state->config->tuner_get_bandwidth)
1552 state->config->tuner_get_bandwidth(fe, &internal->tuner_bw);
1553
1554// pParams->SpectralInv = pSearch->IQ_Inversion;
1555
1556 /* Set DVB-S2 AGC */
1557 stb0899_write_reg(state, STB0899_AGCRFCFG, 0x1c);
1558
1559 /* Set IterScale =f(MCLK,SYMB) */
1560 stb0899_set_iterations(state);
1561
1562 /* Run the search algorithm */
1563 dprintk(verbose, FE_DEBUG, 1, "running DVB-S2 search algo ..");
1564 if (stb0899_dvbs2_algo(state) == DVBS2_FEC_LOCK) {
1565 internal->lock = 1;
1566 dprintk(verbose, FE_DEBUG, 1,
1567 "-------------------------------------> DVB-S2 LOCK !");
1568
1569// stb0899_write_reg(state, STB0899_ERRCTRL1, 0xb6); /* Packet Errors */
1570// internal->v_status = stb0899_read_reg(state, STB0899_VSTATUS);
1571// internal->err_ctrl = stb0899_read_reg(state, STB0899_ERRCTRL1);
1572
1573 return DVBFE_ALGO_SEARCH_SUCCESS;
1574 } else {
1575 internal->lock = 0;
1576
1577 return DVBFE_ALGO_SEARCH_FAILED;
1578 }
1579 break;
1580 default:
1581 dprintk(verbose, FE_ERROR, 1, "Unsupported delivery system");
1582 return DVBFE_ALGO_SEARCH_INVALID;
1583 }
1584 }
1585
1586 return DVBFE_ALGO_SEARCH_ERROR;
1587}
1588
1589static enum stb0899_status stb0899_track_carrier(struct stb0899_state *state)
1590{
1591 u8 reg;
1592
1593 reg = stb0899_read_reg(state, STB0899_DSTATUS);
1594 dprintk(verbose, FE_DEBUG, 1, "--------------------> STB0899_DSTATUS=[0x%02x]", reg);
1595 if (STB0899_GETFIELD(CARRIER_FOUND, reg)) {
1596 dprintk(verbose, FE_DEBUG, 1, "-------------> CARRIEROK !");
1597 return CARRIEROK;
1598 } else {
1599 dprintk(verbose, FE_DEBUG, 1, "-------------> NOCARRIER !");
1600 return NOCARRIER;
1601 }
1602
1603 return NOCARRIER;
1604}
1605
1606static enum stb0899_status stb0899_get_ifagc(struct stb0899_state *state)
1607{
1608 u8 reg;
1609
1610 reg = STB0899_READ_S2REG(STB0899_S2DEMOD, DMD_STATUS);
1611 dprintk(verbose, FE_DEBUG, 1, "DMD_STATUS=[0x%02x]", reg);
1612 if (STB0899_GETFIELD(IF_AGC_LOCK, reg)) {
1613 dprintk(verbose, FE_DEBUG, 1, "------------->IF AGC LOCKED !");
1614 return AGC1OK;
1615 } else {
1616 dprintk(verbose, FE_DEBUG, 1, "------------->IF AGC LOCK LOST !");
1617 return NOAGC1;
1618 }
1619
1620 return NOAGC1;
1621}
1622
1623static int stb0899_get_s1fec(struct stb0899_internal *internal, enum dvbfe_fec *fec)
1624{
1625 switch (internal->fecrate) {
1626 case STB0899_FEC_1_2:
1627 *fec = DVBFE_FEC_1_2;
1628 break;
1629 case STB0899_FEC_2_3:
1630 *fec = DVBFE_FEC_2_3;
1631 break;
1632 case STB0899_FEC_3_4:
1633 *fec = DVBFE_FEC_3_4;
1634 break;
1635 case STB0899_FEC_5_6:
1636 *fec = DVBFE_FEC_5_6;
1637 break;
1638 case STB0899_FEC_6_7:
1639 *fec = DVBFE_FEC_6_7;
1640 break;
1641 case STB0899_FEC_7_8:
1642 *fec = DVBFE_FEC_7_8;
1643 break;
1644 default:
1645 return -EINVAL;
1646 }
1647
1648 return 0;
1649}
1650
1651static int stb0899_get_modcod(struct stb0899_internal *internal, struct dvbs2_params *params)
1652{
1653 switch (internal->modcod) {
1654 case STB0899_DUMMY_PLF:
1655 params->modulation = DVBFE_MOD_NONE;
1656 params->fec = DVBFE_FEC_NONE;
1657 break;
1658 case STB0899_QPSK_14:
1659 params->modulation = DVBFE_MOD_QPSK;
1660 params->fec = DVBFE_FEC_1_4;
1661 break;
1662 case STB0899_QPSK_13:
1663 params->modulation = DVBFE_MOD_QPSK;
1664 params->fec = DVBFE_FEC_1_3;
1665 break;
1666 case STB0899_QPSK_25:
1667 params->modulation = DVBFE_MOD_QPSK;
1668 params->fec = DVBFE_FEC_2_5;
1669 break;
1670 case STB0899_QPSK_12:
1671 params->modulation = DVBFE_MOD_QPSK;
1672 params->fec = DVBFE_FEC_1_2;
1673 break;
1674 case STB0899_QPSK_35:
1675 params->modulation = DVBFE_MOD_QPSK;
1676 params->fec = DVBFE_FEC_3_5;
1677 break;
1678 case STB0899_QPSK_23:
1679 params->modulation = DVBFE_MOD_QPSK;
1680 params->fec = DVBFE_FEC_2_3;
1681 break;
1682 case STB0899_QPSK_34:
1683 params->modulation = DVBFE_MOD_QPSK;
1684 params->fec = DVBFE_FEC_3_4;
1685 break;
1686 case STB0899_QPSK_45:
1687 params->modulation = DVBFE_MOD_QPSK;
1688 params->fec = DVBFE_FEC_4_5;
1689 break;
1690 case STB0899_QPSK_56:
1691 params->modulation = DVBFE_MOD_QPSK;
1692 params->fec = DVBFE_FEC_5_6;
1693 break;
1694 case STB0899_QPSK_89:
1695 params->modulation = DVBFE_MOD_QPSK;
1696 params->fec = DVBFE_FEC_8_9;
1697 break;
1698 case STB0899_QPSK_910:
1699 params->modulation = DVBFE_MOD_QPSK;
1700 params->fec = DVBFE_FEC_9_10;
1701 break;
1702 case STB0899_8PSK_35:
1703 params->modulation = DVBFE_MOD_8PSK;
1704 params->fec = DVBFE_FEC_3_5;
1705 break;
1706 case STB0899_8PSK_23:
1707 params->modulation = DVBFE_MOD_8PSK;
1708 params->fec = DVBFE_FEC_2_3;
1709 break;
1710 case STB0899_8PSK_34:
1711 params->modulation = DVBFE_MOD_8PSK;
1712 params->fec = DVBFE_FEC_3_4;
1713 break;
1714 case STB0899_8PSK_56:
1715 params->modulation = DVBFE_MOD_8PSK;
1716 params->fec = DVBFE_FEC_5_6;
1717 break;
1718 case STB0899_8PSK_89:
1719 params->modulation = DVBFE_MOD_8PSK;
1720 params->fec = DVBFE_FEC_8_9;
1721 break;
1722 case STB0899_8PSK_910:
1723 params->modulation = DVBFE_MOD_8PSK;
1724 params->fec = DVBFE_FEC_9_10;
1725 break;
1726 case STB0899_16APSK_23:
1727 params->modulation = DVBFE_MOD_16APSK;
1728 params->fec = DVBFE_FEC_2_3;
1729 break;
1730 case STB0899_16APSK_34:
1731 params->modulation = DVBFE_MOD_16APSK;
1732 params->fec = DVBFE_FEC_3_4;
1733 break;
1734 case STB0899_16APSK_45:
1735 params->modulation = DVBFE_MOD_16APSK;
1736 params->fec = DVBFE_FEC_4_5;
1737 break;
1738 case STB0899_16APSK_56:
1739 params->modulation = DVBFE_MOD_16APSK;
1740 params->fec = DVBFE_FEC_5_6;
1741 break;
1742 case STB0899_16APSK_89:
1743 params->modulation = DVBFE_MOD_16APSK;
1744 params->fec = DVBFE_FEC_8_9;
1745 break;
1746 case STB0899_16APSK_910:
1747 params->modulation = DVBFE_MOD_16APSK;
1748 params->fec = DVBFE_FEC_9_10;
1749 break;
1750 case STB0899_32APSK_34:
1751 params->modulation = DVBFE_MOD_32APSK;
1752 params->fec = DVBFE_FEC_3_4;
1753 break;
1754 case STB0899_32APSK_45:
1755 params->modulation = DVBFE_MOD_32APSK;
1756 params->fec = DVBFE_FEC_4_5;
1757 break;
1758 case STB0899_32APSK_56:
1759 params->modulation = DVBFE_MOD_32APSK;
1760 params->fec = DVBFE_FEC_5_6;
1761 break;
1762 case STB0899_32APSK_89:
1763 params->modulation = DVBFE_MOD_32APSK;
1764 params->fec = DVBFE_FEC_8_9;
1765 break;
1766 case STB0899_32APSK_910:
1767 params->modulation = DVBFE_MOD_32APSK;
1768 params->fec = DVBFE_FEC_9_10;
1769 break;
1770 default:
1771 return -EINVAL;
1772 }
1773
1774 return 0;
1775}
1776
1777/*
1778 * stb0899_track
1779 * periodically check the signal level against a specified
1780 * threshold level and perform derotator centering.
1781 * called once we have a lock from a succesful search
1782 * event.
1783 *
1784 * Will be called periodically called to maintain the
1785 * lock.
1786 *
1787 * Will be used to get parameters as well as info from
1788 * the decoded baseband header
1789 *
1790 * Once a new lock has established, the internal state
1791 * frequency (internal->freq) is updated
1792 */
Manu Abraham795b72b2007-07-02 09:01:48 -03001793static int stb0899_track(struct dvb_frontend *fe, struct dvbfe_params *params, int *delay)
Manu Abraham8bd135b2007-07-03 09:53:42 -03001794{
Manu Abraham795b72b2007-07-02 09:01:48 -03001795 u32 lock_lost;
1796
Manu Abraham8bd135b2007-07-03 09:53:42 -03001797 struct stb0899_state *state = fe->demodulator_priv;
1798 struct stb0899_internal *internal = &state->internal;
1799
Manu Abraham795b72b2007-07-02 09:01:48 -03001800 lock_lost = STB0899_READ_S2REG(STB0899_S2DEMOD, LOCK_LOST);
1801 dprintk(verbose, FE_DEBUG, 1, "Lock Lost=[0x%02x]\n", lock_lost);
1802 if (STB0899_GETFIELD(LOCK_LOST, lock_lost))
1803 dprintk(verbose, FE_ERROR, 1, "Demodulator LOST LOCK !\n");
1804
1805 *delay = HZ/10;
Manu Abraham8bd135b2007-07-03 09:53:42 -03001806
1807 return 0;
1808}
1809
1810static int stb0899_get_params(struct dvb_frontend *fe, struct dvbfe_params *params)
1811{
1812 struct stb0899_state *state = fe->demodulator_priv;
1813 struct stb0899_internal *internal = &state->internal;
1814
1815 params->frequency = internal->freq;
1816 params->inversion = internal->inversion;
1817 params->delivery = state->delsys;
1818 switch (state->delsys) {
1819 case DVBFE_DELSYS_DVBS:
1820 dprintk(verbose, FE_DEBUG, 1, "Get DVB-S params");
1821 params->delsys.dvbs.symbol_rate = internal->srate;
1822 params->delsys.dvbs.modulation = DVBFE_MOD_QPSK;
1823 break;
1824 case DVBFE_DELSYS_DSS:
1825 dprintk(verbose, FE_DEBUG, 1, "Get DSS params");
1826 params->delsys.dss.symbol_rate = internal->srate;
1827 params->delsys.dss.modulation = DVBFE_MOD_QPSK;
1828
1829 break;
1830 case DVBFE_DELSYS_DVBS2:
1831 dprintk(verbose, FE_DEBUG, 1, "Get DVB-S2 params");
1832 params->delsys.dvbs2.symbol_rate = internal->srate;
1833 break;
1834 default:
1835 dprintk(verbose, FE_ERROR, 1, "Unsupported delivery system");
1836 return -EINVAL;
1837 }
1838
1839 return 0;
1840}
1841
1842static enum dvbfe_algo stb0899_frontend_algo(struct dvb_frontend *fe)
1843{
1844 return DVBFE_ALGO_CUSTOM;
1845}
1846
1847static struct dvb_frontend_ops stb0899_ops = {
1848
1849 .info = {
1850 .name = "STB0899 Multistandard",
1851 },
1852
1853 .release = stb0899_release,
1854 .init = stb0899_init,
1855 .sleep = stb0899_sleep,
1856// .wakeup = stb0899_wakeup,
1857
1858 .i2c_gate_ctrl = stb0899_i2c_gate_ctrl,
1859 .get_info = stb0899_get_info,
1860 .get_delsys = stb0899_get_delsys,
1861
1862 .get_frontend_algo = stb0899_frontend_algo,
1863 .search = stb0899_search,
1864 .track = stb0899_track,
1865 .get_params = stb0899_get_params,
1866
1867 .read_status = stb0899_read_status,
1868 .read_snr = stb0899_read_snr,
1869 .read_signal_strength = stb0899_read_signal_strength,
1870 .read_status = stb0899_read_status,
1871 .read_ber = stb0899_read_ber,
1872
1873 .set_voltage = stb0899_set_voltage,
1874 .set_tone = stb0899_set_tone,
1875
1876 .diseqc_send_master_cmd = stb0899_send_diseqc_msg,
1877 .diseqc_recv_slave_reply = stb0899_recv_slave_reply,
1878 .diseqc_send_burst = stb0899_send_diseqc_burst,
1879};
1880
1881struct dvb_frontend *stb0899_attach(struct stb0899_config *config, struct i2c_adapter *i2c)
1882{
1883 struct stb0899_state *state = NULL;
1884
1885 state = kzalloc(sizeof (struct stb0899_state), GFP_KERNEL);
1886 if (state == NULL)
1887 goto error;
1888
1889 state->verbose = verbose;
1890 state->config = config;
1891 state->i2c = i2c;
1892 state->frontend.ops = stb0899_ops;
1893 state->frontend.demodulator_priv = state;
Manu Abrahamd189f3e2007-07-02 09:48:50 -03001894 state->internal.inversion = IQ_SWAP_AUTO;
Manu Abraham8bd135b2007-07-03 09:53:42 -03001895
1896 stb0899_wakeup(&state->frontend);
1897 if (stb0899_get_dev_id(state) == -ENODEV) {
1898 printk("%s: Exiting .. !\n", __func__);
1899 goto error;
1900 }
1901
1902 printk("%s: Attaching STB0899 \n", __func__);
1903 return &state->frontend;
1904
1905error:
1906 kfree(state);
1907 return NULL;
1908}
1909EXPORT_SYMBOL(stb0899_attach);
1910MODULE_PARM_DESC(verbose, "Set Verbosity level");
1911MODULE_AUTHOR("Manu Abraham");
1912MODULE_DESCRIPTION("STB0899 Multi-Std frontend");
1913MODULE_LICENSE("GPL");