GNU Linux-libre 4.4.295-gnu1
[releases.git] / drivers / media / dvb-frontends / stb0899_drv.c
1 /*
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/jiffies.h>
24 #include <linux/kernel.h>
25 #include <linux/module.h>
26 #include <linux/slab.h>
27 #include <linux/string.h>
28
29 #include <linux/dvb/frontend.h>
30 #include "dvb_frontend.h"
31
32 #include "stb0899_drv.h"
33 #include "stb0899_priv.h"
34 #include "stb0899_reg.h"
35
36 /* Max transfer size done by I2C transfer functions */
37 #define MAX_XFER_SIZE  64
38
39 static unsigned int verbose = 0;//1;
40 module_param(verbose, int, 0644);
41
42 /* C/N in dB/10, NIRM/NIRL */
43 static const struct stb0899_tab stb0899_cn_tab[] = {
44         { 200,  2600 },
45         { 190,  2700 },
46         { 180,  2860 },
47         { 170,  3020 },
48         { 160,  3210 },
49         { 150,  3440 },
50         { 140,  3710 },
51         { 130,  4010 },
52         { 120,  4360 },
53         { 110,  4740 },
54         { 100,  5190 },
55         { 90,   5670 },
56         { 80,   6200 },
57         { 70,   6770 },
58         { 60,   7360 },
59         { 50,   7970 },
60         { 40,   8250 },
61         { 30,   9000 },
62         { 20,   9450 },
63         { 15,   9600 },
64 };
65
66 /* DVB-S AGCIQ_VALUE vs. signal level in dBm/10.
67  * As measured, connected to a modulator.
68  * -8.0 to -50.0 dBm directly connected,
69  * -52.0 to -74.8 with extra attenuation.
70  * Cut-off to AGCIQ_VALUE = 0x80 below -74.8dBm.
71  * Crude linear extrapolation below -84.8dBm and above -8.0dBm.
72  */
73 static const struct stb0899_tab stb0899_dvbsrf_tab[] = {
74         { -750, -128 },
75         { -748,  -94 },
76         { -745,  -92 },
77         { -735,  -90 },
78         { -720,  -87 },
79         { -670,  -77 },
80         { -640,  -70 },
81         { -610,  -62 },
82         { -600,  -60 },
83         { -590,  -56 },
84         { -560,  -41 },
85         { -540,  -25 },
86         { -530,  -17 },
87         { -520,  -11 },
88         { -500,    1 },
89         { -490,    6 },
90         { -480,   10 },
91         { -440,   22 },
92         { -420,   27 },
93         { -400,   31 },
94         { -380,   34 },
95         { -340,   40 },
96         { -320,   43 },
97         { -280,   48 },
98         { -250,   52 },
99         { -230,   55 },
100         { -180,   61 },
101         { -140,   66 },
102         {  -90,   73 },
103         {  -80,   74 },
104         {  500,  127 }
105 };
106
107 /* DVB-S2 IF_AGC_GAIN vs. signal level in dBm/10.
108  * As measured, connected to a modulator.
109  * -8.0 to -50.1 dBm directly connected,
110  * -53.0 to -76.6 with extra attenuation.
111  * Cut-off to IF_AGC_GAIN = 0x3fff below -76.6dBm.
112  * Crude linear extrapolation below -76.6dBm and above -8.0dBm.
113  */
114 static const struct stb0899_tab stb0899_dvbs2rf_tab[] = {
115         {  700,     0 },
116         {  -80,  3217 },
117         { -150,  3893 },
118         { -190,  4217 },
119         { -240,  4621 },
120         { -280,  4945 },
121         { -320,  5273 },
122         { -350,  5545 },
123         { -370,  5741 },
124         { -410,  6147 },
125         { -450,  6671 },
126         { -490,  7413 },
127         { -501,  7665 },
128         { -530,  8767 },
129         { -560, 10219 },
130         { -580, 10939 },
131         { -590, 11518 },
132         { -600, 11723 },
133         { -650, 12659 },
134         { -690, 13219 },
135         { -730, 13645 },
136         { -750, 13909 },
137         { -766, 14153 },
138         { -950, 16383 }
139 };
140
141 /* DVB-S2 Es/N0 quant in dB/100 vs read value * 100*/
142 static struct stb0899_tab stb0899_quant_tab[] = {
143         {    0,     0 },
144         {    0,   100 },
145         {  600,   200 },
146         {  950,   299 },
147         { 1200,   398 },
148         { 1400,   501 },
149         { 1560,   603 },
150         { 1690,   700 },
151         { 1810,   804 },
152         { 1910,   902 },
153         { 2000,  1000 },
154         { 2080,  1096 },
155         { 2160,  1202 },
156         { 2230,  1303 },
157         { 2350,  1496 },
158         { 2410,  1603 },
159         { 2460,  1698 },
160         { 2510,  1799 },
161         { 2600,  1995 },
162         { 2650,  2113 },
163         { 2690,  2213 },
164         { 2720,  2291 },
165         { 2760,  2399 },
166         { 2800,  2512 },
167         { 2860,  2692 },
168         { 2930,  2917 },
169         { 2960,  3020 },
170         { 3010,  3199 },
171         { 3040,  3311 },
172         { 3060,  3388 },
173         { 3120,  3631 },
174         { 3190,  3936 },
175         { 3400,  5012 },
176         { 3610,  6383 },
177         { 3800,  7943 },
178         { 4210, 12735 },
179         { 4500, 17783 },
180         { 4690, 22131 },
181         { 4810, 25410 }
182 };
183
184 /* DVB-S2 Es/N0 estimate in dB/100 vs read value */
185 static struct stb0899_tab stb0899_est_tab[] = {
186         {    0,      0 },
187         {    0,      1 },
188         {  301,      2 },
189         { 1204,     16 },
190         { 1806,     64 },
191         { 2408,    256 },
192         { 2709,    512 },
193         { 3010,   1023 },
194         { 3311,   2046 },
195         { 3612,   4093 },
196         { 3823,   6653 },
197         { 3913,   8185 },
198         { 4010,  10233 },
199         { 4107,  12794 },
200         { 4214,  16368 },
201         { 4266,  18450 },
202         { 4311,  20464 },
203         { 4353,  22542 },
204         { 4391,  24604 },
205         { 4425,  26607 },
206         { 4457,  28642 },
207         { 4487,  30690 },
208         { 4515,  32734 },
209         { 4612,  40926 },
210         { 4692,  49204 },
211         { 4816,  65464 },
212         { 4913,  81846 },
213         { 4993,  98401 },
214         { 5060, 114815 },
215         { 5118, 131220 },
216         { 5200, 158489 },
217         { 5300, 199526 },
218         { 5400, 251189 },
219         { 5500, 316228 },
220         { 5600, 398107 },
221         { 5720, 524807 },
222         { 5721, 526017 },
223 };
224
225 static int _stb0899_read_reg(struct stb0899_state *state, unsigned int reg)
226 {
227         int ret;
228
229         u8 b0[] = { reg >> 8, reg & 0xff };
230         u8 buf;
231
232         struct i2c_msg msg[] = {
233                 {
234                         .addr   = state->config->demod_address,
235                         .flags  = 0,
236                         .buf    = b0,
237                         .len    = 2
238                 },{
239                         .addr   = state->config->demod_address,
240                         .flags  = I2C_M_RD,
241                         .buf    = &buf,
242                         .len    = 1
243                 }
244         };
245
246         ret = i2c_transfer(state->i2c, msg, 2);
247         if (ret != 2) {
248                 if (ret != -ERESTARTSYS)
249                         dprintk(state->verbose, FE_ERROR, 1,
250                                 "Read error, Reg=[0x%02x], Status=%d",
251                                 reg, ret);
252
253                 return ret < 0 ? ret : -EREMOTEIO;
254         }
255         if (unlikely(*state->verbose >= FE_DEBUGREG))
256                 dprintk(state->verbose, FE_ERROR, 1, "Reg=[0x%02x], data=%02x",
257                         reg, buf);
258
259         return (unsigned int)buf;
260 }
261
262 int stb0899_read_reg(struct stb0899_state *state, unsigned int reg)
263 {
264         int result;
265
266         result = _stb0899_read_reg(state, reg);
267         /*
268          * Bug ID 9:
269          * access to 0xf2xx/0xf6xx
270          * must be followed by read from 0xf2ff/0xf6ff.
271          */
272         if ((reg != 0xf2ff) && (reg != 0xf6ff) &&
273             (((reg & 0xff00) == 0xf200) || ((reg & 0xff00) == 0xf600)))
274                 _stb0899_read_reg(state, (reg | 0x00ff));
275
276         return result;
277 }
278
279 u32 _stb0899_read_s2reg(struct stb0899_state *state,
280                         u32 stb0899_i2cdev,
281                         u32 stb0899_base_addr,
282                         u16 stb0899_reg_offset)
283 {
284         int status;
285         u32 data;
286         u8 buf[7] = { 0 };
287         u16 tmpaddr;
288
289         u8 buf_0[] = {
290                 GETBYTE(stb0899_i2cdev, BYTE1),         /* 0xf3 S2 Base Address (MSB)   */
291                 GETBYTE(stb0899_i2cdev, BYTE0),         /* 0xfc S2 Base Address (LSB)   */
292                 GETBYTE(stb0899_base_addr, BYTE0),      /* 0x00 Base Address (LSB)      */
293                 GETBYTE(stb0899_base_addr, BYTE1),      /* 0x04 Base Address (LSB)      */
294                 GETBYTE(stb0899_base_addr, BYTE2),      /* 0x00 Base Address (MSB)      */
295                 GETBYTE(stb0899_base_addr, BYTE3),      /* 0x00 Base Address (MSB)      */
296         };
297         u8 buf_1[] = {
298                 0x00,   /* 0xf3 Reg Offset      */
299                 0x00,   /* 0x44 Reg Offset      */
300         };
301
302         struct i2c_msg msg_0 = {
303                 .addr   = state->config->demod_address,
304                 .flags  = 0,
305                 .buf    = buf_0,
306                 .len    = 6
307         };
308
309         struct i2c_msg msg_1 = {
310                 .addr   = state->config->demod_address,
311                 .flags  = 0,
312                 .buf    = buf_1,
313                 .len    = 2
314         };
315
316         struct i2c_msg msg_r = {
317                 .addr   = state->config->demod_address,
318                 .flags  = I2C_M_RD,
319                 .buf    = buf,
320                 .len    = 4
321         };
322
323         tmpaddr = stb0899_reg_offset & 0xff00;
324         if (!(stb0899_reg_offset & 0x8))
325                 tmpaddr = stb0899_reg_offset | 0x20;
326
327         buf_1[0] = GETBYTE(tmpaddr, BYTE1);
328         buf_1[1] = GETBYTE(tmpaddr, BYTE0);
329
330         status = i2c_transfer(state->i2c, &msg_0, 1);
331         if (status < 1) {
332                 if (status != -ERESTARTSYS)
333                         printk(KERN_ERR "%s ERR(1), Device=[0x%04x], Base address=[0x%08x], Offset=[0x%04x], Status=%d\n",
334                                __func__, stb0899_i2cdev, stb0899_base_addr, stb0899_reg_offset, status);
335
336                 goto err;
337         }
338
339         /* Dummy        */
340         status = i2c_transfer(state->i2c, &msg_1, 1);
341         if (status < 1)
342                 goto err;
343
344         status = i2c_transfer(state->i2c, &msg_r, 1);
345         if (status < 1)
346                 goto err;
347
348         buf_1[0] = GETBYTE(stb0899_reg_offset, BYTE1);
349         buf_1[1] = GETBYTE(stb0899_reg_offset, BYTE0);
350
351         /* Actual       */
352         status = i2c_transfer(state->i2c, &msg_1, 1);
353         if (status < 1) {
354                 if (status != -ERESTARTSYS)
355                         printk(KERN_ERR "%s ERR(2), Device=[0x%04x], Base address=[0x%08x], Offset=[0x%04x], Status=%d\n",
356                                __func__, stb0899_i2cdev, stb0899_base_addr, stb0899_reg_offset, status);
357                 goto err;
358         }
359
360         status = i2c_transfer(state->i2c, &msg_r, 1);
361         if (status < 1) {
362                 if (status != -ERESTARTSYS)
363                         printk(KERN_ERR "%s ERR(3), Device=[0x%04x], Base address=[0x%08x], Offset=[0x%04x], Status=%d\n",
364                                __func__, stb0899_i2cdev, stb0899_base_addr, stb0899_reg_offset, status);
365                 return status < 0 ? status : -EREMOTEIO;
366         }
367
368         data = MAKEWORD32(buf[3], buf[2], buf[1], buf[0]);
369         if (unlikely(*state->verbose >= FE_DEBUGREG))
370                 printk(KERN_DEBUG "%s Device=[0x%04x], Base address=[0x%08x], Offset=[0x%04x], Data=[0x%08x]\n",
371                        __func__, stb0899_i2cdev, stb0899_base_addr, stb0899_reg_offset, data);
372
373         return data;
374
375 err:
376         return status < 0 ? status : -EREMOTEIO;
377 }
378
379 int stb0899_write_s2reg(struct stb0899_state *state,
380                         u32 stb0899_i2cdev,
381                         u32 stb0899_base_addr,
382                         u16 stb0899_reg_offset,
383                         u32 stb0899_data)
384 {
385         int status;
386
387         /* Base Address Setup   */
388         u8 buf_0[] = {
389                 GETBYTE(stb0899_i2cdev, BYTE1),         /* 0xf3 S2 Base Address (MSB)   */
390                 GETBYTE(stb0899_i2cdev, BYTE0),         /* 0xfc S2 Base Address (LSB)   */
391                 GETBYTE(stb0899_base_addr, BYTE0),      /* 0x00 Base Address (LSB)      */
392                 GETBYTE(stb0899_base_addr, BYTE1),      /* 0x04 Base Address (LSB)      */
393                 GETBYTE(stb0899_base_addr, BYTE2),      /* 0x00 Base Address (MSB)      */
394                 GETBYTE(stb0899_base_addr, BYTE3),      /* 0x00 Base Address (MSB)      */
395         };
396         u8 buf_1[] = {
397                 0x00,   /* 0xf3 Reg Offset      */
398                 0x00,   /* 0x44 Reg Offset      */
399                 0x00,   /* data                 */
400                 0x00,   /* data                 */
401                 0x00,   /* data                 */
402                 0x00,   /* data                 */
403         };
404
405         struct i2c_msg msg_0 = {
406                 .addr   = state->config->demod_address,
407                 .flags  = 0,
408                 .buf    = buf_0,
409                 .len    = 6
410         };
411
412         struct i2c_msg msg_1 = {
413                 .addr   = state->config->demod_address,
414                 .flags  = 0,
415                 .buf    = buf_1,
416                 .len    = 6
417         };
418
419         buf_1[0] = GETBYTE(stb0899_reg_offset, BYTE1);
420         buf_1[1] = GETBYTE(stb0899_reg_offset, BYTE0);
421         buf_1[2] = GETBYTE(stb0899_data, BYTE0);
422         buf_1[3] = GETBYTE(stb0899_data, BYTE1);
423         buf_1[4] = GETBYTE(stb0899_data, BYTE2);
424         buf_1[5] = GETBYTE(stb0899_data, BYTE3);
425
426         if (unlikely(*state->verbose >= FE_DEBUGREG))
427                 printk(KERN_DEBUG "%s Device=[0x%04x], Base Address=[0x%08x], Offset=[0x%04x], Data=[0x%08x]\n",
428                        __func__, stb0899_i2cdev, stb0899_base_addr, stb0899_reg_offset, stb0899_data);
429
430         status = i2c_transfer(state->i2c, &msg_0, 1);
431         if (unlikely(status < 1)) {
432                 if (status != -ERESTARTSYS)
433                         printk(KERN_ERR "%s ERR (1), Device=[0x%04x], Base Address=[0x%08x], Offset=[0x%04x], Data=[0x%08x], status=%d\n",
434                                __func__, stb0899_i2cdev, stb0899_base_addr, stb0899_reg_offset, stb0899_data, status);
435                 goto err;
436         }
437         status = i2c_transfer(state->i2c, &msg_1, 1);
438         if (unlikely(status < 1)) {
439                 if (status != -ERESTARTSYS)
440                         printk(KERN_ERR "%s ERR (2), Device=[0x%04x], Base Address=[0x%08x], Offset=[0x%04x], Data=[0x%08x], status=%d\n",
441                                __func__, stb0899_i2cdev, stb0899_base_addr, stb0899_reg_offset, stb0899_data, status);
442
443                 return status < 0 ? status : -EREMOTEIO;
444         }
445
446         return 0;
447
448 err:
449         return status < 0 ? status : -EREMOTEIO;
450 }
451
452 int stb0899_read_regs(struct stb0899_state *state, unsigned int reg, u8 *buf, u32 count)
453 {
454         int status;
455
456         u8 b0[] = { reg >> 8, reg & 0xff };
457
458         struct i2c_msg msg[] = {
459                 {
460                         .addr   = state->config->demod_address,
461                         .flags  = 0,
462                         .buf    = b0,
463                         .len    = 2
464                 },{
465                         .addr   = state->config->demod_address,
466                         .flags  = I2C_M_RD,
467                         .buf    = buf,
468                         .len    = count
469                 }
470         };
471
472         status = i2c_transfer(state->i2c, msg, 2);
473         if (status != 2) {
474                 if (status != -ERESTARTSYS)
475                         printk(KERN_ERR "%s Read error, Reg=[0x%04x], Count=%u, Status=%d\n",
476                                __func__, reg, count, status);
477                 goto err;
478         }
479         /*
480          * Bug ID 9:
481          * access to 0xf2xx/0xf6xx
482          * must be followed by read from 0xf2ff/0xf6ff.
483          */
484         if ((reg != 0xf2ff) && (reg != 0xf6ff) &&
485             (((reg & 0xff00) == 0xf200) || ((reg & 0xff00) == 0xf600)))
486                 _stb0899_read_reg(state, (reg | 0x00ff));
487
488         if (unlikely(*state->verbose >= FE_DEBUGREG)) {
489                 int i;
490
491                 printk(KERN_DEBUG "%s [0x%04x]:", __func__, reg);
492                 for (i = 0; i < count; i++) {
493                         printk(" %02x", buf[i]);
494                 }
495                 printk("\n");
496         }
497
498         return 0;
499 err:
500         return status < 0 ? status : -EREMOTEIO;
501 }
502
503 int stb0899_write_regs(struct stb0899_state *state, unsigned int reg, u8 *data, u32 count)
504 {
505         int ret;
506         u8 buf[MAX_XFER_SIZE];
507         struct i2c_msg i2c_msg = {
508                 .addr   = state->config->demod_address,
509                 .flags  = 0,
510                 .buf    = buf,
511                 .len    = 2 + count
512         };
513
514         if (2 + count > sizeof(buf)) {
515                 printk(KERN_WARNING
516                        "%s: i2c wr reg=%04x: len=%d is too big!\n",
517                        KBUILD_MODNAME, reg, count);
518                 return -EINVAL;
519         }
520
521         buf[0] = reg >> 8;
522         buf[1] = reg & 0xff;
523         memcpy(&buf[2], data, count);
524
525         if (unlikely(*state->verbose >= FE_DEBUGREG)) {
526                 int i;
527
528                 printk(KERN_DEBUG "%s [0x%04x]:", __func__, reg);
529                 for (i = 0; i < count; i++)
530                         printk(" %02x", data[i]);
531                 printk("\n");
532         }
533         ret = i2c_transfer(state->i2c, &i2c_msg, 1);
534
535         /*
536          * Bug ID 9:
537          * access to 0xf2xx/0xf6xx
538          * must be followed by read from 0xf2ff/0xf6ff.
539          */
540         if ((((reg & 0xff00) == 0xf200) || ((reg & 0xff00) == 0xf600)))
541                 stb0899_read_reg(state, (reg | 0x00ff));
542
543         if (ret != 1) {
544                 if (ret != -ERESTARTSYS)
545                         dprintk(state->verbose, FE_ERROR, 1, "Reg=[0x%04x], Data=[0x%02x ...], Count=%u, Status=%d",
546                                 reg, data[0], count, ret);
547                 return ret < 0 ? ret : -EREMOTEIO;
548         }
549
550         return 0;
551 }
552
553 int stb0899_write_reg(struct stb0899_state *state, unsigned int reg, u8 data)
554 {
555         u8 tmp = data;
556         return stb0899_write_regs(state, reg, &tmp, 1);
557 }
558
559 /*
560  * stb0899_get_mclk
561  * Get STB0899 master clock frequency
562  * ExtClk: external clock frequency (Hz)
563  */
564 static u32 stb0899_get_mclk(struct stb0899_state *state)
565 {
566         u32 mclk = 0, div = 0;
567
568         div = stb0899_read_reg(state, STB0899_NCOARSE);
569         mclk = (div + 1) * state->config->xtal_freq / 6;
570         dprintk(state->verbose, FE_DEBUG, 1, "div=%d, mclk=%d", div, mclk);
571
572         return mclk;
573 }
574
575 /*
576  * stb0899_set_mclk
577  * Set STB0899 master Clock frequency
578  * Mclk: demodulator master clock
579  * ExtClk: external clock frequency (Hz)
580  */
581 static void stb0899_set_mclk(struct stb0899_state *state, u32 Mclk)
582 {
583         struct stb0899_internal *internal = &state->internal;
584         u8 mdiv = 0;
585
586         dprintk(state->verbose, FE_DEBUG, 1, "state->config=%p", state->config);
587         mdiv = ((6 * Mclk) / state->config->xtal_freq) - 1;
588         dprintk(state->verbose, FE_DEBUG, 1, "mdiv=%d", mdiv);
589
590         stb0899_write_reg(state, STB0899_NCOARSE, mdiv);
591         internal->master_clk = stb0899_get_mclk(state);
592
593         dprintk(state->verbose, FE_DEBUG, 1, "MasterCLOCK=%d", internal->master_clk);
594 }
595
596 static int stb0899_postproc(struct stb0899_state *state, u8 ctl, int enable)
597 {
598         struct stb0899_config *config           = state->config;
599         const struct stb0899_postproc *postproc = config->postproc;
600
601         /* post process event */
602         if (postproc) {
603                 if (enable) {
604                         if (postproc[ctl].level == STB0899_GPIOPULLUP)
605                                 stb0899_write_reg(state, postproc[ctl].gpio, 0x02);
606                         else
607                                 stb0899_write_reg(state, postproc[ctl].gpio, 0x82);
608                 } else {
609                         if (postproc[ctl].level == STB0899_GPIOPULLUP)
610                                 stb0899_write_reg(state, postproc[ctl].gpio, 0x82);
611                         else
612                                 stb0899_write_reg(state, postproc[ctl].gpio, 0x02);
613                 }
614         }
615         return 0;
616 }
617
618 static void stb0899_release(struct dvb_frontend *fe)
619 {
620         struct stb0899_state *state = fe->demodulator_priv;
621
622         dprintk(state->verbose, FE_DEBUG, 1, "Release Frontend");
623         /* post process event */
624         stb0899_postproc(state, STB0899_POSTPROC_GPIO_POWER, 0);
625         kfree(state);
626 }
627
628 /*
629  * stb0899_get_alpha
630  * return: rolloff
631  */
632 static int stb0899_get_alpha(struct stb0899_state *state)
633 {
634         u8 mode_coeff;
635
636         mode_coeff = stb0899_read_reg(state, STB0899_DEMOD);
637
638         if (STB0899_GETFIELD(MODECOEFF, mode_coeff) == 1)
639                 return 20;
640         else
641                 return 35;
642 }
643
644 /*
645  * stb0899_init_calc
646  */
647 static void stb0899_init_calc(struct stb0899_state *state)
648 {
649         struct stb0899_internal *internal = &state->internal;
650         int master_clk;
651         u8 agc[2];
652         u32 reg;
653
654         /* Read registers (in burst mode)       */
655         stb0899_read_regs(state, STB0899_AGC1REF, agc, 2); /* AGC1R and AGC2O   */
656
657         /* Initial calculations */
658         master_clk                      = stb0899_get_mclk(state);
659         internal->t_agc1                = 0;
660         internal->t_agc2                = 0;
661         internal->master_clk            = master_clk;
662         internal->mclk                  = master_clk / 65536L;
663         internal->rolloff               = stb0899_get_alpha(state);
664
665         /* DVBS2 Initial calculations   */
666         /* Set AGC value to the middle  */
667         internal->agc_gain              = 8154;
668         reg = STB0899_READ_S2REG(STB0899_S2DEMOD, IF_AGC_CNTRL);
669         STB0899_SETFIELD_VAL(IF_GAIN_INIT, reg, internal->agc_gain);
670         stb0899_write_s2reg(state, STB0899_S2DEMOD, STB0899_BASE_IF_AGC_CNTRL, STB0899_OFF0_IF_AGC_CNTRL, reg);
671
672         reg = STB0899_READ_S2REG(STB0899_S2DEMOD, RRC_ALPHA);
673         internal->rrc_alpha             = STB0899_GETFIELD(RRC_ALPHA, reg);
674
675         internal->center_freq           = 0;
676         internal->av_frame_coarse       = 10;
677         internal->av_frame_fine         = 20;
678         internal->step_size             = 2;
679 /*
680         if ((pParams->SpectralInv == FE_IQ_NORMAL) || (pParams->SpectralInv == FE_IQ_AUTO))
681                 pParams->IQLocked = 0;
682         else
683                 pParams->IQLocked = 1;
684 */
685 }
686
687 static int stb0899_wait_diseqc_fifo_empty(struct stb0899_state *state, int timeout)
688 {
689         u8 reg = 0;
690         unsigned long start = jiffies;
691
692         while (1) {
693                 reg = stb0899_read_reg(state, STB0899_DISSTATUS);
694                 if (!STB0899_GETFIELD(FIFOFULL, reg))
695                         break;
696                 if (time_after(jiffies, start + timeout)) {
697                         dprintk(state->verbose, FE_ERROR, 1, "timed out !!");
698                         return -ETIMEDOUT;
699                 }
700         }
701
702         return 0;
703 }
704
705 static int stb0899_send_diseqc_msg(struct dvb_frontend *fe, struct dvb_diseqc_master_cmd *cmd)
706 {
707         struct stb0899_state *state = fe->demodulator_priv;
708         u8 reg, i;
709
710         if (cmd->msg_len > sizeof(cmd->msg))
711                 return -EINVAL;
712
713         /* enable FIFO precharge        */
714         reg = stb0899_read_reg(state, STB0899_DISCNTRL1);
715         STB0899_SETFIELD_VAL(DISPRECHARGE, reg, 1);
716         stb0899_write_reg(state, STB0899_DISCNTRL1, reg);
717         for (i = 0; i < cmd->msg_len; i++) {
718                 /* wait for FIFO empty  */
719                 if (stb0899_wait_diseqc_fifo_empty(state, 100) < 0)
720                         return -ETIMEDOUT;
721
722                 stb0899_write_reg(state, STB0899_DISFIFO, cmd->msg[i]);
723         }
724         reg = stb0899_read_reg(state, STB0899_DISCNTRL1);
725         STB0899_SETFIELD_VAL(DISPRECHARGE, reg, 0);
726         stb0899_write_reg(state, STB0899_DISCNTRL1, reg);
727         msleep(100);
728         return 0;
729 }
730
731 static int stb0899_wait_diseqc_rxidle(struct stb0899_state *state, int timeout)
732 {
733         u8 reg = 0;
734         unsigned long start = jiffies;
735
736         while (!STB0899_GETFIELD(RXEND, reg)) {
737                 reg = stb0899_read_reg(state, STB0899_DISRX_ST0);
738                 if (time_after(jiffies, start + timeout)) {
739                         dprintk(state->verbose, FE_ERROR, 1, "timed out!!");
740                         return -ETIMEDOUT;
741                 }
742                 msleep(10);
743         }
744
745         return 0;
746 }
747
748 static int stb0899_recv_slave_reply(struct dvb_frontend *fe, struct dvb_diseqc_slave_reply *reply)
749 {
750         struct stb0899_state *state = fe->demodulator_priv;
751         u8 reg, length = 0, i;
752         int result;
753
754         if (stb0899_wait_diseqc_rxidle(state, 100) < 0)
755                 return -ETIMEDOUT;
756
757         reg = stb0899_read_reg(state, STB0899_DISRX_ST0);
758         if (STB0899_GETFIELD(RXEND, reg)) {
759
760                 reg = stb0899_read_reg(state, STB0899_DISRX_ST1);
761                 length = STB0899_GETFIELD(FIFOBYTENBR, reg);
762
763                 if (length > sizeof (reply->msg)) {
764                         result = -EOVERFLOW;
765                         goto exit;
766                 }
767                 reply->msg_len = length;
768
769                 /* extract data */
770                 for (i = 0; i < length; i++)
771                         reply->msg[i] = stb0899_read_reg(state, STB0899_DISFIFO);
772         }
773
774         return 0;
775 exit:
776
777         return result;
778 }
779
780 static int stb0899_wait_diseqc_txidle(struct stb0899_state *state, int timeout)
781 {
782         u8 reg = 0;
783         unsigned long start = jiffies;
784
785         while (!STB0899_GETFIELD(TXIDLE, reg)) {
786                 reg = stb0899_read_reg(state, STB0899_DISSTATUS);
787                 if (time_after(jiffies, start + timeout)) {
788                         dprintk(state->verbose, FE_ERROR, 1, "timed out!!");
789                         return -ETIMEDOUT;
790                 }
791                 msleep(10);
792         }
793         return 0;
794 }
795
796 static int stb0899_send_diseqc_burst(struct dvb_frontend *fe,
797                                      enum fe_sec_mini_cmd burst)
798 {
799         struct stb0899_state *state = fe->demodulator_priv;
800         u8 reg, old_state;
801
802         /* wait for diseqc idle */
803         if (stb0899_wait_diseqc_txidle(state, 100) < 0)
804                 return -ETIMEDOUT;
805
806         reg = stb0899_read_reg(state, STB0899_DISCNTRL1);
807         old_state = reg;
808         /* set to burst mode    */
809         STB0899_SETFIELD_VAL(DISEQCMODE, reg, 0x03);
810         STB0899_SETFIELD_VAL(DISPRECHARGE, reg, 0x01);
811         stb0899_write_reg(state, STB0899_DISCNTRL1, reg);
812         switch (burst) {
813         case SEC_MINI_A:
814                 /* unmodulated  */
815                 stb0899_write_reg(state, STB0899_DISFIFO, 0x00);
816                 break;
817         case SEC_MINI_B:
818                 /* modulated    */
819                 stb0899_write_reg(state, STB0899_DISFIFO, 0xff);
820                 break;
821         }
822         reg = stb0899_read_reg(state, STB0899_DISCNTRL1);
823         STB0899_SETFIELD_VAL(DISPRECHARGE, reg, 0x00);
824         stb0899_write_reg(state, STB0899_DISCNTRL1, reg);
825         /* wait for diseqc idle */
826         if (stb0899_wait_diseqc_txidle(state, 100) < 0)
827                 return -ETIMEDOUT;
828
829         /* restore state        */
830         stb0899_write_reg(state, STB0899_DISCNTRL1, old_state);
831
832         return 0;
833 }
834
835 static int stb0899_diseqc_init(struct stb0899_state *state)
836 {
837 /*
838         struct dvb_diseqc_slave_reply rx_data;
839 */
840         u8 f22_tx, reg;
841
842         u32 mclk, tx_freq = 22000;/* count = 0, i; */
843         reg = stb0899_read_reg(state, STB0899_DISCNTRL2);
844         STB0899_SETFIELD_VAL(ONECHIP_TRX, reg, 0);
845         stb0899_write_reg(state, STB0899_DISCNTRL2, reg);
846
847         /* disable Tx spy       */
848         reg = stb0899_read_reg(state, STB0899_DISCNTRL1);
849         STB0899_SETFIELD_VAL(DISEQCRESET, reg, 1);
850         stb0899_write_reg(state, STB0899_DISCNTRL1, reg);
851
852         reg = stb0899_read_reg(state, STB0899_DISCNTRL1);
853         STB0899_SETFIELD_VAL(DISEQCRESET, reg, 0);
854         stb0899_write_reg(state, STB0899_DISCNTRL1, reg);
855
856         mclk = stb0899_get_mclk(state);
857         f22_tx = mclk / (tx_freq * 32);
858         stb0899_write_reg(state, STB0899_DISF22, f22_tx); /* DiSEqC Tx freq     */
859         state->rx_freq = 20000;
860
861         return 0;
862 }
863
864 static int stb0899_sleep(struct dvb_frontend *fe)
865 {
866         struct stb0899_state *state = fe->demodulator_priv;
867 /*
868         u8 reg;
869 */
870         dprintk(state->verbose, FE_DEBUG, 1, "Going to Sleep .. (Really tired .. :-))");
871         /* post process event */
872         stb0899_postproc(state, STB0899_POSTPROC_GPIO_POWER, 0);
873
874         return 0;
875 }
876
877 static int stb0899_wakeup(struct dvb_frontend *fe)
878 {
879         int rc;
880         struct stb0899_state *state = fe->demodulator_priv;
881
882         if ((rc = stb0899_write_reg(state, STB0899_SYNTCTRL, STB0899_SELOSCI)))
883                 return rc;
884         /* Activate all clocks; DVB-S2 registers are inaccessible otherwise. */
885         if ((rc = stb0899_write_reg(state, STB0899_STOPCLK1, 0x00)))
886                 return rc;
887         if ((rc = stb0899_write_reg(state, STB0899_STOPCLK2, 0x00)))
888                 return rc;
889
890         /* post process event */
891         stb0899_postproc(state, STB0899_POSTPROC_GPIO_POWER, 1);
892
893         return 0;
894 }
895
896 static int stb0899_init(struct dvb_frontend *fe)
897 {
898         int i;
899         struct stb0899_state *state = fe->demodulator_priv;
900         struct stb0899_config *config = state->config;
901
902         dprintk(state->verbose, FE_DEBUG, 1, "Initializing STB0899 ... ");
903
904         /* init device          */
905         dprintk(state->verbose, FE_DEBUG, 1, "init device");
906         for (i = 0; config->init_dev[i].address != 0xffff; i++)
907                 stb0899_write_reg(state, config->init_dev[i].address, config->init_dev[i].data);
908
909         dprintk(state->verbose, FE_DEBUG, 1, "init S2 demod");
910         /* init S2 demod        */
911         for (i = 0; config->init_s2_demod[i].offset != 0xffff; i++)
912                 stb0899_write_s2reg(state, STB0899_S2DEMOD,
913                                     config->init_s2_demod[i].base_address,
914                                     config->init_s2_demod[i].offset,
915                                     config->init_s2_demod[i].data);
916
917         dprintk(state->verbose, FE_DEBUG, 1, "init S1 demod");
918         /* init S1 demod        */
919         for (i = 0; config->init_s1_demod[i].address != 0xffff; i++)
920                 stb0899_write_reg(state, config->init_s1_demod[i].address, config->init_s1_demod[i].data);
921
922         dprintk(state->verbose, FE_DEBUG, 1, "init S2 FEC");
923         /* init S2 fec          */
924         for (i = 0; config->init_s2_fec[i].offset != 0xffff; i++)
925                 stb0899_write_s2reg(state, STB0899_S2FEC,
926                                     config->init_s2_fec[i].base_address,
927                                     config->init_s2_fec[i].offset,
928                                     config->init_s2_fec[i].data);
929
930         dprintk(state->verbose, FE_DEBUG, 1, "init TST");
931         /* init test            */
932         for (i = 0; config->init_tst[i].address != 0xffff; i++)
933                 stb0899_write_reg(state, config->init_tst[i].address, config->init_tst[i].data);
934
935         stb0899_init_calc(state);
936         stb0899_diseqc_init(state);
937
938         return 0;
939 }
940
941 static int stb0899_table_lookup(const struct stb0899_tab *tab, int max, int val)
942 {
943         int res = 0;
944         int min = 0, med;
945
946         if (val < tab[min].read)
947                 res = tab[min].real;
948         else if (val >= tab[max].read)
949                 res = tab[max].real;
950         else {
951                 while ((max - min) > 1) {
952                         med = (max + min) / 2;
953                         if (val >= tab[min].read && val < tab[med].read)
954                                 max = med;
955                         else
956                                 min = med;
957                 }
958                 res = ((val - tab[min].read) *
959                        (tab[max].real - tab[min].real) /
960                        (tab[max].read - tab[min].read)) +
961                         tab[min].real;
962         }
963
964         return res;
965 }
966
967 static int stb0899_read_signal_strength(struct dvb_frontend *fe, u16 *strength)
968 {
969         struct stb0899_state *state             = fe->demodulator_priv;
970         struct stb0899_internal *internal       = &state->internal;
971
972         int val;
973         u32 reg;
974         *strength = 0;
975         switch (state->delsys) {
976         case SYS_DVBS:
977         case SYS_DSS:
978                 if (internal->lock) {
979                         reg  = stb0899_read_reg(state, STB0899_VSTATUS);
980                         if (STB0899_GETFIELD(VSTATUS_LOCKEDVIT, reg)) {
981
982                                 reg = stb0899_read_reg(state, STB0899_AGCIQIN);
983                                 val = (s32)(s8)STB0899_GETFIELD(AGCIQVALUE, reg);
984
985                                 *strength = stb0899_table_lookup(stb0899_dvbsrf_tab, ARRAY_SIZE(stb0899_dvbsrf_tab) - 1, val);
986                                 *strength += 750;
987                                 dprintk(state->verbose, FE_DEBUG, 1, "AGCIQVALUE = 0x%02x, C = %d * 0.1 dBm",
988                                         val & 0xff, *strength);
989                         }
990                 }
991                 break;
992         case SYS_DVBS2:
993                 if (internal->lock) {
994                         reg = STB0899_READ_S2REG(STB0899_S2DEMOD, IF_AGC_GAIN);
995                         val = STB0899_GETFIELD(IF_AGC_GAIN, reg);
996
997                         *strength = stb0899_table_lookup(stb0899_dvbs2rf_tab, ARRAY_SIZE(stb0899_dvbs2rf_tab) - 1, val);
998                         *strength += 950;
999                         dprintk(state->verbose, FE_DEBUG, 1, "IF_AGC_GAIN = 0x%04x, C = %d * 0.1 dBm",
1000                                 val & 0x3fff, *strength);
1001                 }
1002                 break;
1003         default:
1004                 dprintk(state->verbose, FE_DEBUG, 1, "Unsupported delivery system");
1005                 return -EINVAL;
1006         }
1007
1008         return 0;
1009 }
1010
1011 static int stb0899_read_snr(struct dvb_frontend *fe, u16 *snr)
1012 {
1013         struct stb0899_state *state             = fe->demodulator_priv;
1014         struct stb0899_internal *internal       = &state->internal;
1015
1016         unsigned int val, quant, quantn = -1, est, estn = -1;
1017         u8 buf[2];
1018         u32 reg;
1019
1020         *snr = 0;
1021         reg  = stb0899_read_reg(state, STB0899_VSTATUS);
1022         switch (state->delsys) {
1023         case SYS_DVBS:
1024         case SYS_DSS:
1025                 if (internal->lock) {
1026                         if (STB0899_GETFIELD(VSTATUS_LOCKEDVIT, reg)) {
1027
1028                                 stb0899_read_regs(state, STB0899_NIRM, buf, 2);
1029                                 val = MAKEWORD16(buf[0], buf[1]);
1030
1031                                 *snr = stb0899_table_lookup(stb0899_cn_tab, ARRAY_SIZE(stb0899_cn_tab) - 1, val);
1032                                 dprintk(state->verbose, FE_DEBUG, 1, "NIR = 0x%02x%02x = %u, C/N = %d * 0.1 dBm\n",
1033                                         buf[0], buf[1], val, *snr);
1034                         }
1035                 }
1036                 break;
1037         case SYS_DVBS2:
1038                 if (internal->lock) {
1039                         reg = STB0899_READ_S2REG(STB0899_S2DEMOD, UWP_CNTRL1);
1040                         quant = STB0899_GETFIELD(UWP_ESN0_QUANT, reg);
1041                         reg = STB0899_READ_S2REG(STB0899_S2DEMOD, UWP_STAT2);
1042                         est = STB0899_GETFIELD(ESN0_EST, reg);
1043                         if (est == 1)
1044                                 val = 301; /* C/N = 30.1 dB */
1045                         else if (est == 2)
1046                                 val = 270; /* C/N = 27.0 dB */
1047                         else {
1048                                 /* quantn = 100 * log(quant^2) */
1049                                 quantn = stb0899_table_lookup(stb0899_quant_tab, ARRAY_SIZE(stb0899_quant_tab) - 1, quant * 100);
1050                                 /* estn = 100 * log(est) */
1051                                 estn = stb0899_table_lookup(stb0899_est_tab, ARRAY_SIZE(stb0899_est_tab) - 1, est);
1052                                 /* snr(dBm/10) = -10*(log(est)-log(quant^2)) => snr(dBm/10) = (100*log(quant^2)-100*log(est))/10 */
1053                                 val = (quantn - estn) / 10;
1054                         }
1055                         *snr = val;
1056                         dprintk(state->verbose, FE_DEBUG, 1, "Es/N0 quant = %d (%d) estimate = %u (%d), C/N = %d * 0.1 dBm",
1057                                 quant, quantn, est, estn, val);
1058                 }
1059                 break;
1060         default:
1061                 dprintk(state->verbose, FE_DEBUG, 1, "Unsupported delivery system");
1062                 return -EINVAL;
1063         }
1064
1065         return 0;
1066 }
1067
1068 static int stb0899_read_status(struct dvb_frontend *fe, enum fe_status *status)
1069 {
1070         struct stb0899_state *state             = fe->demodulator_priv;
1071         struct stb0899_internal *internal       = &state->internal;
1072         u8 reg;
1073         *status = 0;
1074
1075         switch (state->delsys) {
1076         case SYS_DVBS:
1077         case SYS_DSS:
1078                 dprintk(state->verbose, FE_DEBUG, 1, "Delivery system DVB-S/DSS");
1079                 if (internal->lock) {
1080                         reg  = stb0899_read_reg(state, STB0899_VSTATUS);
1081                         if (STB0899_GETFIELD(VSTATUS_LOCKEDVIT, reg)) {
1082                                 dprintk(state->verbose, FE_DEBUG, 1, "--------> FE_HAS_CARRIER | FE_HAS_LOCK");
1083                                 *status |= FE_HAS_SIGNAL | FE_HAS_CARRIER | FE_HAS_LOCK;
1084
1085                                 reg = stb0899_read_reg(state, STB0899_PLPARM);
1086                                 if (STB0899_GETFIELD(VITCURPUN, reg)) {
1087                                         dprintk(state->verbose, FE_DEBUG, 1, "--------> FE_HAS_VITERBI | FE_HAS_SYNC");
1088                                         *status |= FE_HAS_VITERBI | FE_HAS_SYNC;
1089                                         /* post process event */
1090                                         stb0899_postproc(state, STB0899_POSTPROC_GPIO_LOCK, 1);
1091                                 }
1092                         }
1093                 }
1094                 break;
1095         case SYS_DVBS2:
1096                 dprintk(state->verbose, FE_DEBUG, 1, "Delivery system DVB-S2");
1097                 if (internal->lock) {
1098                         reg = STB0899_READ_S2REG(STB0899_S2DEMOD, DMD_STAT2);
1099                         if (STB0899_GETFIELD(UWP_LOCK, reg) && STB0899_GETFIELD(CSM_LOCK, reg)) {
1100                                 *status |= FE_HAS_CARRIER;
1101                                 dprintk(state->verbose, FE_DEBUG, 1,
1102                                         "UWP & CSM Lock ! ---> DVB-S2 FE_HAS_CARRIER");
1103
1104                                 reg = stb0899_read_reg(state, STB0899_CFGPDELSTATUS1);
1105                                 if (STB0899_GETFIELD(CFGPDELSTATUS_LOCK, reg)) {
1106                                         *status |= FE_HAS_LOCK;
1107                                         dprintk(state->verbose, FE_DEBUG, 1,
1108                                                 "Packet Delineator Locked ! -----> DVB-S2 FE_HAS_LOCK");
1109
1110                                 }
1111                                 if (STB0899_GETFIELD(CONTINUOUS_STREAM, reg)) {
1112                                         *status |= FE_HAS_VITERBI;
1113                                         dprintk(state->verbose, FE_DEBUG, 1,
1114                                                 "Packet Delineator found VITERBI ! -----> DVB-S2 FE_HAS_VITERBI");
1115                                 }
1116                                 if (STB0899_GETFIELD(ACCEPTED_STREAM, reg)) {
1117                                         *status |= FE_HAS_SYNC;
1118                                         dprintk(state->verbose, FE_DEBUG, 1,
1119                                                 "Packet Delineator found SYNC ! -----> DVB-S2 FE_HAS_SYNC");
1120                                         /* post process event */
1121                                         stb0899_postproc(state, STB0899_POSTPROC_GPIO_LOCK, 1);
1122                                 }
1123                         }
1124                 }
1125                 break;
1126         default:
1127                 dprintk(state->verbose, FE_DEBUG, 1, "Unsupported delivery system");
1128                 return -EINVAL;
1129         }
1130         return 0;
1131 }
1132
1133 /*
1134  * stb0899_get_error
1135  * viterbi error for DVB-S/DSS
1136  * packet error for DVB-S2
1137  * Bit Error Rate or Packet Error Rate * 10 ^ 7
1138  */
1139 static int stb0899_read_ber(struct dvb_frontend *fe, u32 *ber)
1140 {
1141         struct stb0899_state *state             = fe->demodulator_priv;
1142         struct stb0899_internal *internal       = &state->internal;
1143
1144         u8  lsb, msb;
1145
1146         *ber = 0;
1147
1148         switch (state->delsys) {
1149         case SYS_DVBS:
1150         case SYS_DSS:
1151                 if (internal->lock) {
1152                         lsb = stb0899_read_reg(state, STB0899_ECNT1L);
1153                         msb = stb0899_read_reg(state, STB0899_ECNT1M);
1154                         *ber = MAKEWORD16(msb, lsb);
1155                         /* Viterbi Check        */
1156                         if (STB0899_GETFIELD(VSTATUS_PRFVIT, internal->v_status)) {
1157                                 /* Error Rate           */
1158                                 *ber *= 9766;
1159                                 /* ber = ber * 10 ^ 7   */
1160                                 *ber /= (-1 + (1 << (2 * STB0899_GETFIELD(NOE, internal->err_ctrl))));
1161                                 *ber /= 8;
1162                         }
1163                 }
1164                 break;
1165         case SYS_DVBS2:
1166                 if (internal->lock) {
1167                         lsb = stb0899_read_reg(state, STB0899_ECNT1L);
1168                         msb = stb0899_read_reg(state, STB0899_ECNT1M);
1169                         *ber = MAKEWORD16(msb, lsb);
1170                         /* ber = ber * 10 ^ 7   */
1171                         *ber *= 10000000;
1172                         *ber /= (-1 + (1 << (4 + 2 * STB0899_GETFIELD(NOE, internal->err_ctrl))));
1173                 }
1174                 break;
1175         default:
1176                 dprintk(state->verbose, FE_DEBUG, 1, "Unsupported delivery system");
1177                 return -EINVAL;
1178         }
1179
1180         return 0;
1181 }
1182
1183 static int stb0899_set_voltage(struct dvb_frontend *fe,
1184                                enum fe_sec_voltage voltage)
1185 {
1186         struct stb0899_state *state = fe->demodulator_priv;
1187
1188         switch (voltage) {
1189         case SEC_VOLTAGE_13:
1190                 stb0899_write_reg(state, STB0899_GPIO00CFG, 0x82);
1191                 stb0899_write_reg(state, STB0899_GPIO01CFG, 0x02);
1192                 stb0899_write_reg(state, STB0899_GPIO02CFG, 0x00);
1193                 break;
1194         case SEC_VOLTAGE_18:
1195                 stb0899_write_reg(state, STB0899_GPIO00CFG, 0x02);
1196                 stb0899_write_reg(state, STB0899_GPIO01CFG, 0x02);
1197                 stb0899_write_reg(state, STB0899_GPIO02CFG, 0x82);
1198                 break;
1199         case SEC_VOLTAGE_OFF:
1200                 stb0899_write_reg(state, STB0899_GPIO00CFG, 0x82);
1201                 stb0899_write_reg(state, STB0899_GPIO01CFG, 0x82);
1202                 stb0899_write_reg(state, STB0899_GPIO02CFG, 0x82);
1203                 break;
1204         default:
1205                 return -EINVAL;
1206         }
1207
1208         return 0;
1209 }
1210
1211 static int stb0899_set_tone(struct dvb_frontend *fe, enum fe_sec_tone_mode tone)
1212 {
1213         struct stb0899_state *state = fe->demodulator_priv;
1214         struct stb0899_internal *internal = &state->internal;
1215
1216         u8 div, reg;
1217
1218         /* wait for diseqc idle */
1219         if (stb0899_wait_diseqc_txidle(state, 100) < 0)
1220                 return -ETIMEDOUT;
1221
1222         switch (tone) {
1223         case SEC_TONE_ON:
1224                 div = (internal->master_clk / 100) / 5632;
1225                 div = (div + 5) / 10;
1226                 stb0899_write_reg(state, STB0899_DISEQCOCFG, 0x66);
1227                 reg = stb0899_read_reg(state, STB0899_ACRPRESC);
1228                 STB0899_SETFIELD_VAL(ACRPRESC, reg, 0x03);
1229                 stb0899_write_reg(state, STB0899_ACRPRESC, reg);
1230                 stb0899_write_reg(state, STB0899_ACRDIV1, div);
1231                 break;
1232         case SEC_TONE_OFF:
1233                 stb0899_write_reg(state, STB0899_DISEQCOCFG, 0x20);
1234                 break;
1235         default:
1236                 return -EINVAL;
1237         }
1238         return 0;
1239 }
1240
1241 int stb0899_i2c_gate_ctrl(struct dvb_frontend *fe, int enable)
1242 {
1243         int i2c_stat;
1244         struct stb0899_state *state = fe->demodulator_priv;
1245
1246         i2c_stat = stb0899_read_reg(state, STB0899_I2CRPT);
1247         if (i2c_stat < 0)
1248                 goto err;
1249
1250         if (enable) {
1251                 dprintk(state->verbose, FE_DEBUG, 1, "Enabling I2C Repeater ...");
1252                 i2c_stat |=  STB0899_I2CTON;
1253                 if (stb0899_write_reg(state, STB0899_I2CRPT, i2c_stat) < 0)
1254                         goto err;
1255         } else {
1256                 dprintk(state->verbose, FE_DEBUG, 1, "Disabling I2C Repeater ...");
1257                 i2c_stat &= ~STB0899_I2CTON;
1258                 if (stb0899_write_reg(state, STB0899_I2CRPT, i2c_stat) < 0)
1259                         goto err;
1260         }
1261         return 0;
1262 err:
1263         dprintk(state->verbose, FE_ERROR, 1, "I2C Repeater control failed");
1264         return -EREMOTEIO;
1265 }
1266
1267
1268 static inline void CONVERT32(u32 x, char *str)
1269 {
1270         *str++  = (x >> 24) & 0xff;
1271         *str++  = (x >> 16) & 0xff;
1272         *str++  = (x >>  8) & 0xff;
1273         *str++  = (x >>  0) & 0xff;
1274         *str    = '\0';
1275 }
1276
1277 static int stb0899_get_dev_id(struct stb0899_state *state)
1278 {
1279         u8 chip_id, release;
1280         u16 id;
1281         u32 demod_ver = 0, fec_ver = 0;
1282         char demod_str[5] = { 0 };
1283         char fec_str[5] = { 0 };
1284
1285         id = stb0899_read_reg(state, STB0899_DEV_ID);
1286         dprintk(state->verbose, FE_DEBUG, 1, "ID reg=[0x%02x]", id);
1287         chip_id = STB0899_GETFIELD(CHIP_ID, id);
1288         release = STB0899_GETFIELD(CHIP_REL, id);
1289
1290         dprintk(state->verbose, FE_ERROR, 1, "Device ID=[%d], Release=[%d]",
1291                 chip_id, release);
1292
1293         CONVERT32(STB0899_READ_S2REG(STB0899_S2DEMOD, DMD_CORE_ID), (char *)&demod_str);
1294
1295         demod_ver = STB0899_READ_S2REG(STB0899_S2DEMOD, DMD_VERSION_ID);
1296         dprintk(state->verbose, FE_ERROR, 1, "Demodulator Core ID=[%s], Version=[%d]", (char *) &demod_str, demod_ver);
1297         CONVERT32(STB0899_READ_S2REG(STB0899_S2FEC, FEC_CORE_ID_REG), (char *)&fec_str);
1298         fec_ver = STB0899_READ_S2REG(STB0899_S2FEC, FEC_VER_ID_REG);
1299         if (! (chip_id > 0)) {
1300                 dprintk(state->verbose, FE_ERROR, 1, "couldn't find a STB 0899");
1301
1302                 return -ENODEV;
1303         }
1304         dprintk(state->verbose, FE_ERROR, 1, "FEC Core ID=[%s], Version=[%d]", (char*) &fec_str, fec_ver);
1305
1306         return 0;
1307 }
1308
1309 static void stb0899_set_delivery(struct stb0899_state *state)
1310 {
1311         u8 reg;
1312         u8 stop_clk[2];
1313
1314         stop_clk[0] = stb0899_read_reg(state, STB0899_STOPCLK1);
1315         stop_clk[1] = stb0899_read_reg(state, STB0899_STOPCLK2);
1316
1317         switch (state->delsys) {
1318         case SYS_DVBS:
1319                 dprintk(state->verbose, FE_DEBUG, 1, "Delivery System -- DVB-S");
1320                 /* FECM/Viterbi ON      */
1321                 reg = stb0899_read_reg(state, STB0899_FECM);
1322                 STB0899_SETFIELD_VAL(FECM_RSVD0, reg, 0);
1323                 STB0899_SETFIELD_VAL(FECM_VITERBI_ON, reg, 1);
1324                 stb0899_write_reg(state, STB0899_FECM, reg);
1325
1326                 stb0899_write_reg(state, STB0899_RSULC, 0xb1);
1327                 stb0899_write_reg(state, STB0899_TSULC, 0x40);
1328                 stb0899_write_reg(state, STB0899_RSLLC, 0x42);
1329                 stb0899_write_reg(state, STB0899_TSLPL, 0x12);
1330
1331                 reg = stb0899_read_reg(state, STB0899_TSTRES);
1332                 STB0899_SETFIELD_VAL(FRESLDPC, reg, 1);
1333                 stb0899_write_reg(state, STB0899_TSTRES, reg);
1334
1335                 STB0899_SETFIELD_VAL(STOP_CHK8PSK, stop_clk[0], 1);
1336                 STB0899_SETFIELD_VAL(STOP_CKFEC108, stop_clk[0], 1);
1337                 STB0899_SETFIELD_VAL(STOP_CKFEC216, stop_clk[0], 1);
1338
1339                 STB0899_SETFIELD_VAL(STOP_CKPKDLIN108, stop_clk[1], 1);
1340                 STB0899_SETFIELD_VAL(STOP_CKPKDLIN216, stop_clk[1], 1);
1341
1342                 STB0899_SETFIELD_VAL(STOP_CKINTBUF216, stop_clk[0], 1);
1343                 STB0899_SETFIELD_VAL(STOP_CKCORE216, stop_clk[0], 0);
1344
1345                 STB0899_SETFIELD_VAL(STOP_CKS2DMD108, stop_clk[1], 1);
1346                 break;
1347         case SYS_DVBS2:
1348                 /* FECM/Viterbi OFF     */
1349                 reg = stb0899_read_reg(state, STB0899_FECM);
1350                 STB0899_SETFIELD_VAL(FECM_RSVD0, reg, 0);
1351                 STB0899_SETFIELD_VAL(FECM_VITERBI_ON, reg, 0);
1352                 stb0899_write_reg(state, STB0899_FECM, reg);
1353
1354                 stb0899_write_reg(state, STB0899_RSULC, 0xb1);
1355                 stb0899_write_reg(state, STB0899_TSULC, 0x42);
1356                 stb0899_write_reg(state, STB0899_RSLLC, 0x40);
1357                 stb0899_write_reg(state, STB0899_TSLPL, 0x02);
1358
1359                 reg = stb0899_read_reg(state, STB0899_TSTRES);
1360                 STB0899_SETFIELD_VAL(FRESLDPC, reg, 0);
1361                 stb0899_write_reg(state, STB0899_TSTRES, reg);
1362
1363                 STB0899_SETFIELD_VAL(STOP_CHK8PSK, stop_clk[0], 1);
1364                 STB0899_SETFIELD_VAL(STOP_CKFEC108, stop_clk[0], 0);
1365                 STB0899_SETFIELD_VAL(STOP_CKFEC216, stop_clk[0], 0);
1366
1367                 STB0899_SETFIELD_VAL(STOP_CKPKDLIN108, stop_clk[1], 0);
1368                 STB0899_SETFIELD_VAL(STOP_CKPKDLIN216, stop_clk[1], 0);
1369
1370                 STB0899_SETFIELD_VAL(STOP_CKINTBUF216, stop_clk[0], 0);
1371                 STB0899_SETFIELD_VAL(STOP_CKCORE216, stop_clk[0], 0);
1372
1373                 STB0899_SETFIELD_VAL(STOP_CKS2DMD108, stop_clk[1], 0);
1374                 break;
1375         case SYS_DSS:
1376                 /* FECM/Viterbi ON      */
1377                 reg = stb0899_read_reg(state, STB0899_FECM);
1378                 STB0899_SETFIELD_VAL(FECM_RSVD0, reg, 1);
1379                 STB0899_SETFIELD_VAL(FECM_VITERBI_ON, reg, 1);
1380                 stb0899_write_reg(state, STB0899_FECM, reg);
1381
1382                 stb0899_write_reg(state, STB0899_RSULC, 0xa1);
1383                 stb0899_write_reg(state, STB0899_TSULC, 0x61);
1384                 stb0899_write_reg(state, STB0899_RSLLC, 0x42);
1385
1386                 reg = stb0899_read_reg(state, STB0899_TSTRES);
1387                 STB0899_SETFIELD_VAL(FRESLDPC, reg, 1);
1388                 stb0899_write_reg(state, STB0899_TSTRES, reg);
1389
1390                 STB0899_SETFIELD_VAL(STOP_CHK8PSK, stop_clk[0], 1);
1391                 STB0899_SETFIELD_VAL(STOP_CKFEC108, stop_clk[0], 1);
1392                 STB0899_SETFIELD_VAL(STOP_CKFEC216, stop_clk[0], 1);
1393
1394                 STB0899_SETFIELD_VAL(STOP_CKPKDLIN108, stop_clk[1], 1);
1395                 STB0899_SETFIELD_VAL(STOP_CKPKDLIN216, stop_clk[1], 1);
1396
1397                 STB0899_SETFIELD_VAL(STOP_CKCORE216, stop_clk[0], 0);
1398
1399                 STB0899_SETFIELD_VAL(STOP_CKS2DMD108, stop_clk[1], 1);
1400                 break;
1401         default:
1402                 dprintk(state->verbose, FE_ERROR, 1, "Unsupported delivery system");
1403                 break;
1404         }
1405         STB0899_SETFIELD_VAL(STOP_CKADCI108, stop_clk[0], 0);
1406         stb0899_write_regs(state, STB0899_STOPCLK1, stop_clk, 2);
1407 }
1408
1409 /*
1410  * stb0899_set_iterations
1411  * set the LDPC iteration scale function
1412  */
1413 static void stb0899_set_iterations(struct stb0899_state *state)
1414 {
1415         struct stb0899_internal *internal = &state->internal;
1416         struct stb0899_config *config = state->config;
1417
1418         s32 iter_scale;
1419         u32 reg;
1420
1421         iter_scale = 17 * (internal->master_clk / 1000);
1422         iter_scale += 410000;
1423         iter_scale /= (internal->srate / 1000000);
1424         iter_scale /= 1000;
1425
1426         if (iter_scale > config->ldpc_max_iter)
1427                 iter_scale = config->ldpc_max_iter;
1428
1429         reg = STB0899_READ_S2REG(STB0899_S2FEC, MAX_ITER);
1430         STB0899_SETFIELD_VAL(MAX_ITERATIONS, reg, iter_scale);
1431         stb0899_write_s2reg(state, STB0899_S2FEC, STB0899_BASE_MAX_ITER, STB0899_OFF0_MAX_ITER, reg);
1432 }
1433
1434 static enum dvbfe_search stb0899_search(struct dvb_frontend *fe)
1435 {
1436         struct stb0899_state *state = fe->demodulator_priv;
1437         struct stb0899_params *i_params = &state->params;
1438         struct stb0899_internal *internal = &state->internal;
1439         struct stb0899_config *config = state->config;
1440         struct dtv_frontend_properties *props = &fe->dtv_property_cache;
1441
1442         u32 SearchRange, gain;
1443
1444         i_params->freq  = props->frequency;
1445         i_params->srate = props->symbol_rate;
1446         state->delsys = props->delivery_system;
1447         dprintk(state->verbose, FE_DEBUG, 1, "delivery system=%d", state->delsys);
1448
1449         SearchRange = 10000000;
1450         dprintk(state->verbose, FE_DEBUG, 1, "Frequency=%d, Srate=%d", i_params->freq, i_params->srate);
1451         /* checking Search Range is meaningless for a fixed 3 Mhz                       */
1452         if (INRANGE(i_params->srate, 1000000, 45000000)) {
1453                 dprintk(state->verbose, FE_DEBUG, 1, "Parameters IN RANGE");
1454                 stb0899_set_delivery(state);
1455
1456                 if (state->config->tuner_set_rfsiggain) {
1457                         if (internal->srate > 15000000)
1458                                 gain =  8; /* 15Mb < srate < 45Mb, gain = 8dB   */
1459                         else if (internal->srate > 5000000)
1460                                 gain = 12; /*  5Mb < srate < 15Mb, gain = 12dB  */
1461                         else
1462                                 gain = 14; /*  1Mb < srate <  5Mb, gain = 14db  */
1463                         state->config->tuner_set_rfsiggain(fe, gain);
1464                 }
1465
1466                 if (i_params->srate <= 5000000)
1467                         stb0899_set_mclk(state, config->lo_clk);
1468                 else
1469                         stb0899_set_mclk(state, config->hi_clk);
1470
1471                 switch (state->delsys) {
1472                 case SYS_DVBS:
1473                 case SYS_DSS:
1474                         dprintk(state->verbose, FE_DEBUG, 1, "DVB-S delivery system");
1475                         internal->freq  = i_params->freq;
1476                         internal->srate = i_params->srate;
1477                         /*
1478                          * search = user search range +
1479                          *          500Khz +
1480                          *          2 * Tuner_step_size +
1481                          *          10% of the symbol rate
1482                          */
1483                         internal->srch_range    = SearchRange + 1500000 + (i_params->srate / 5);
1484                         internal->derot_percent = 30;
1485
1486                         /* What to do for tuners having no bandwidth setup ?    */
1487                         /* enable tuner I/O */
1488                         stb0899_i2c_gate_ctrl(&state->frontend, 1);
1489
1490                         if (state->config->tuner_set_bandwidth)
1491                                 state->config->tuner_set_bandwidth(fe, (13 * (stb0899_carr_width(state) + SearchRange)) / 10);
1492                         if (state->config->tuner_get_bandwidth)
1493                                 state->config->tuner_get_bandwidth(fe, &internal->tuner_bw);
1494
1495                         /* disable tuner I/O */
1496                         stb0899_i2c_gate_ctrl(&state->frontend, 0);
1497
1498                         /* Set DVB-S1 AGC               */
1499                         stb0899_write_reg(state, STB0899_AGCRFCFG, 0x11);
1500
1501                         /* Run the search algorithm     */
1502                         dprintk(state->verbose, FE_DEBUG, 1, "running DVB-S search algo ..");
1503                         if (stb0899_dvbs_algo(state)    == RANGEOK) {
1504                                 internal->lock          = 1;
1505                                 dprintk(state->verbose, FE_DEBUG, 1,
1506                                         "-------------------------------------> DVB-S LOCK !");
1507
1508 //                              stb0899_write_reg(state, STB0899_ERRCTRL1, 0x3d); /* Viterbi Errors     */
1509 //                              internal->v_status = stb0899_read_reg(state, STB0899_VSTATUS);
1510 //                              internal->err_ctrl = stb0899_read_reg(state, STB0899_ERRCTRL1);
1511 //                              dprintk(state->verbose, FE_DEBUG, 1, "VSTATUS=0x%02x", internal->v_status);
1512 //                              dprintk(state->verbose, FE_DEBUG, 1, "ERR_CTRL=0x%02x", internal->err_ctrl);
1513
1514                                 return DVBFE_ALGO_SEARCH_SUCCESS;
1515                         } else {
1516                                 internal->lock          = 0;
1517
1518                                 return DVBFE_ALGO_SEARCH_FAILED;
1519                         }
1520                         break;
1521                 case SYS_DVBS2:
1522                         internal->freq                  = i_params->freq;
1523                         internal->srate                 = i_params->srate;
1524                         internal->srch_range            = SearchRange;
1525
1526                         /* enable tuner I/O */
1527                         stb0899_i2c_gate_ctrl(&state->frontend, 1);
1528
1529                         if (state->config->tuner_set_bandwidth)
1530                                 state->config->tuner_set_bandwidth(fe, (stb0899_carr_width(state) + SearchRange));
1531                         if (state->config->tuner_get_bandwidth)
1532                                 state->config->tuner_get_bandwidth(fe, &internal->tuner_bw);
1533
1534                         /* disable tuner I/O */
1535                         stb0899_i2c_gate_ctrl(&state->frontend, 0);
1536
1537 //                      pParams->SpectralInv            = pSearch->IQ_Inversion;
1538
1539                         /* Set DVB-S2 AGC               */
1540                         stb0899_write_reg(state, STB0899_AGCRFCFG, 0x1c);
1541
1542                         /* Set IterScale =f(MCLK,SYMB)  */
1543                         stb0899_set_iterations(state);
1544
1545                         /* Run the search algorithm     */
1546                         dprintk(state->verbose, FE_DEBUG, 1, "running DVB-S2 search algo ..");
1547                         if (stb0899_dvbs2_algo(state)   == DVBS2_FEC_LOCK) {
1548                                 internal->lock          = 1;
1549                                 dprintk(state->verbose, FE_DEBUG, 1,
1550                                         "-------------------------------------> DVB-S2 LOCK !");
1551
1552 //                              stb0899_write_reg(state, STB0899_ERRCTRL1, 0xb6); /* Packet Errors      */
1553 //                              internal->v_status = stb0899_read_reg(state, STB0899_VSTATUS);
1554 //                              internal->err_ctrl = stb0899_read_reg(state, STB0899_ERRCTRL1);
1555
1556                                 return DVBFE_ALGO_SEARCH_SUCCESS;
1557                         } else {
1558                                 internal->lock          = 0;
1559
1560                                 return DVBFE_ALGO_SEARCH_FAILED;
1561                         }
1562                         break;
1563                 default:
1564                         dprintk(state->verbose, FE_ERROR, 1, "Unsupported delivery system");
1565                         return DVBFE_ALGO_SEARCH_INVALID;
1566                 }
1567         }
1568
1569         return DVBFE_ALGO_SEARCH_ERROR;
1570 }
1571
1572 static int stb0899_get_frontend(struct dvb_frontend *fe)
1573 {
1574         struct dtv_frontend_properties *p = &fe->dtv_property_cache;
1575         struct stb0899_state *state             = fe->demodulator_priv;
1576         struct stb0899_internal *internal       = &state->internal;
1577
1578         dprintk(state->verbose, FE_DEBUG, 1, "Get params");
1579         p->symbol_rate = internal->srate;
1580         p->frequency = internal->freq;
1581
1582         return 0;
1583 }
1584
1585 static enum dvbfe_algo stb0899_frontend_algo(struct dvb_frontend *fe)
1586 {
1587         return DVBFE_ALGO_CUSTOM;
1588 }
1589
1590 static struct dvb_frontend_ops stb0899_ops = {
1591         .delsys = { SYS_DVBS, SYS_DVBS2, SYS_DSS },
1592         .info = {
1593                 .name                   = "STB0899 Multistandard",
1594                 .frequency_min          = 950000,
1595                 .frequency_max          = 2150000,
1596                 .frequency_stepsize     = 0,
1597                 .frequency_tolerance    = 0,
1598                 .symbol_rate_min        =  5000000,
1599                 .symbol_rate_max        = 45000000,
1600
1601                 .caps                   = FE_CAN_INVERSION_AUTO |
1602                                           FE_CAN_FEC_AUTO       |
1603                                           FE_CAN_2G_MODULATION  |
1604                                           FE_CAN_QPSK
1605         },
1606
1607         .release                        = stb0899_release,
1608         .init                           = stb0899_init,
1609         .sleep                          = stb0899_sleep,
1610 //      .wakeup                         = stb0899_wakeup,
1611
1612         .i2c_gate_ctrl                  = stb0899_i2c_gate_ctrl,
1613
1614         .get_frontend_algo              = stb0899_frontend_algo,
1615         .search                         = stb0899_search,
1616         .get_frontend                   = stb0899_get_frontend,
1617
1618
1619         .read_status                    = stb0899_read_status,
1620         .read_snr                       = stb0899_read_snr,
1621         .read_signal_strength           = stb0899_read_signal_strength,
1622         .read_ber                       = stb0899_read_ber,
1623
1624         .set_voltage                    = stb0899_set_voltage,
1625         .set_tone                       = stb0899_set_tone,
1626
1627         .diseqc_send_master_cmd         = stb0899_send_diseqc_msg,
1628         .diseqc_recv_slave_reply        = stb0899_recv_slave_reply,
1629         .diseqc_send_burst              = stb0899_send_diseqc_burst,
1630 };
1631
1632 struct dvb_frontend *stb0899_attach(struct stb0899_config *config, struct i2c_adapter *i2c)
1633 {
1634         struct stb0899_state *state = NULL;
1635
1636         state = kzalloc(sizeof (struct stb0899_state), GFP_KERNEL);
1637         if (state == NULL)
1638                 goto error;
1639
1640         state->verbose                          = &verbose;
1641         state->config                           = config;
1642         state->i2c                              = i2c;
1643         state->frontend.ops                     = stb0899_ops;
1644         state->frontend.demodulator_priv        = state;
1645         /* use configured inversion as default -- we'll later autodetect inversion */
1646         state->internal.inversion               = config->inversion;
1647
1648         stb0899_wakeup(&state->frontend);
1649         if (stb0899_get_dev_id(state) == -ENODEV) {
1650                 printk("%s: Exiting .. !\n", __func__);
1651                 goto error;
1652         }
1653
1654         printk("%s: Attaching STB0899 \n", __func__);
1655         return &state->frontend;
1656
1657 error:
1658         kfree(state);
1659         return NULL;
1660 }
1661 EXPORT_SYMBOL(stb0899_attach);
1662 MODULE_PARM_DESC(verbose, "Set Verbosity level");
1663 MODULE_AUTHOR("Manu Abraham");
1664 MODULE_DESCRIPTION("STB0899 Multi-Std frontend");
1665 MODULE_LICENSE("GPL");