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Steve Tothb79cb652006-01-09 15:25:07 -02001/*
2 Conexant cx24123/cx24109 - DVB QPSK Satellite demod/tuner driver
3
4 Copyright (C) 2005 Steven Toth <stoth@hauppauge.com>
5
Vadim Catana1c956a32006-01-09 15:25:08 -02006 Support for KWorld DVB-S 100 by Vadim Catana <skystar@moldova.cc>
7
Steve Tothb79cb652006-01-09 15:25:07 -02008 This program is free software; you can redistribute it and/or modify
9 it under the terms of the GNU General Public License as published by
10 the Free Software Foundation; either version 2 of the License, or
11 (at your option) any later version.
12
13 This program is distributed in the hope that it will be useful,
14 but WITHOUT ANY WARRANTY; without even the implied warranty of
15 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
16 GNU General Public License for more details.
17
18 You should have received a copy of the GNU General Public License
19 along with this program; if not, write to the Free Software
20 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
21*/
22
23#include <linux/slab.h>
24#include <linux/kernel.h>
25#include <linux/module.h>
Steve Tothb79cb652006-01-09 15:25:07 -020026#include <linux/init.h>
27
28#include "dvb_frontend.h"
29#include "cx24123.h"
30
Vadim Catanaa74b51f2006-04-13 10:19:52 -030031#define XTAL 10111000
32
Yeasah Pell70047f92006-04-13 17:26:22 -030033static int force_band;
Steve Tothb79cb652006-01-09 15:25:07 -020034static int debug;
35#define dprintk(args...) \
36 do { \
37 if (debug) printk (KERN_DEBUG "cx24123: " args); \
38 } while (0)
39
Johannes Stezenbache3b152b2006-01-09 15:25:08 -020040struct cx24123_state
41{
Steve Tothb79cb652006-01-09 15:25:07 -020042 struct i2c_adapter* i2c;
Steve Tothb79cb652006-01-09 15:25:07 -020043 const struct cx24123_config* config;
44
45 struct dvb_frontend frontend;
46
Steve Tothb79cb652006-01-09 15:25:07 -020047 /* Some PLL specifics for tuning */
48 u32 VCAarg;
49 u32 VGAarg;
50 u32 bandselectarg;
51 u32 pllarg;
Vadim Catanaa74b51f2006-04-13 10:19:52 -030052 u32 FILTune;
Steve Tothb79cb652006-01-09 15:25:07 -020053
54 /* The Demod/Tuner can't easily provide these, we cache them */
55 u32 currentfreq;
56 u32 currentsymbolrate;
57};
58
Johannes Stezenbache3b152b2006-01-09 15:25:08 -020059/* Various tuner defaults need to be established for a given symbol rate Sps */
60static struct
61{
62 u32 symbolrate_low;
63 u32 symbolrate_high;
Johannes Stezenbache3b152b2006-01-09 15:25:08 -020064 u32 VCAprogdata;
65 u32 VGAprogdata;
Vadim Catanaa74b51f2006-04-13 10:19:52 -030066 u32 FILTune;
Johannes Stezenbache3b152b2006-01-09 15:25:08 -020067} cx24123_AGC_vals[] =
68{
69 {
70 .symbolrate_low = 1000000,
71 .symbolrate_high = 4999999,
Vadim Catanaa74b51f2006-04-13 10:19:52 -030072 /* the specs recommend other values for VGA offsets,
73 but tests show they are wrong */
Yeasah Pell0e4558a2006-04-13 17:24:13 -030074 .VGAprogdata = (1 << 19) | (0x180 << 9) | 0x1e0,
75 .VCAprogdata = (2 << 19) | (0x07 << 9) | 0x07,
76 .FILTune = 0x27f /* 0.41 V */
Johannes Stezenbache3b152b2006-01-09 15:25:08 -020077 },
78 {
79 .symbolrate_low = 5000000,
80 .symbolrate_high = 14999999,
Yeasah Pell0e4558a2006-04-13 17:24:13 -030081 .VGAprogdata = (1 << 19) | (0x180 << 9) | 0x1e0,
82 .VCAprogdata = (2 << 19) | (0x07 << 9) | 0x1f,
Vadim Catanaa74b51f2006-04-13 10:19:52 -030083 .FILTune = 0x317 /* 0.90 V */
Johannes Stezenbache3b152b2006-01-09 15:25:08 -020084 },
85 {
86 .symbolrate_low = 15000000,
87 .symbolrate_high = 45000000,
Yeasah Pell0e4558a2006-04-13 17:24:13 -030088 .VGAprogdata = (1 << 19) | (0x100 << 9) | 0x180,
89 .VCAprogdata = (2 << 19) | (0x07 << 9) | 0x3f,
90 .FILTune = 0x145 /* 2.70 V */
Johannes Stezenbache3b152b2006-01-09 15:25:08 -020091 },
92};
93
94/*
95 * Various tuner defaults need to be established for a given frequency kHz.
96 * fixme: The bounds on the bands do not match the doc in real life.
97 * fixme: Some of them have been moved, other might need adjustment.
98 */
99static struct
100{
101 u32 freq_low;
102 u32 freq_high;
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200103 u32 VCOdivider;
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200104 u32 progdata;
105} cx24123_bandselect_vals[] =
106{
Yeasah Pell70047f92006-04-13 17:26:22 -0300107 /* band 1 */
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200108 {
109 .freq_low = 950000,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200110 .freq_high = 1074999,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200111 .VCOdivider = 4,
Yeasah Pell70047f92006-04-13 17:26:22 -0300112 .progdata = (0 << 19) | (0 << 9) | 0x40,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200113 },
Yeasah Pell70047f92006-04-13 17:26:22 -0300114
115 /* band 2 */
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200116 {
117 .freq_low = 1075000,
Yeasah Pell70047f92006-04-13 17:26:22 -0300118 .freq_high = 1177999,
119 .VCOdivider = 4,
120 .progdata = (0 << 19) | (0 << 9) | 0x80,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200121 },
Yeasah Pell70047f92006-04-13 17:26:22 -0300122
123 /* band 3 */
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200124 {
Yeasah Pell70047f92006-04-13 17:26:22 -0300125 .freq_low = 1178000,
126 .freq_high = 1295999,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200127 .VCOdivider = 2,
Yeasah Pell70047f92006-04-13 17:26:22 -0300128 .progdata = (0 << 19) | (1 << 9) | 0x01,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200129 },
Yeasah Pell70047f92006-04-13 17:26:22 -0300130
131 /* band 4 */
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200132 {
Yeasah Pell70047f92006-04-13 17:26:22 -0300133 .freq_low = 1296000,
134 .freq_high = 1431999,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200135 .VCOdivider = 2,
Yeasah Pell70047f92006-04-13 17:26:22 -0300136 .progdata = (0 << 19) | (1 << 9) | 0x02,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200137 },
Yeasah Pell70047f92006-04-13 17:26:22 -0300138
139 /* band 5 */
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200140 {
Yeasah Pell70047f92006-04-13 17:26:22 -0300141 .freq_low = 1432000,
142 .freq_high = 1575999,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200143 .VCOdivider = 2,
Yeasah Pell70047f92006-04-13 17:26:22 -0300144 .progdata = (0 << 19) | (1 << 9) | 0x04,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200145 },
Yeasah Pell70047f92006-04-13 17:26:22 -0300146
147 /* band 6 */
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200148 {
Yeasah Pell70047f92006-04-13 17:26:22 -0300149 .freq_low = 1576000,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200150 .freq_high = 1717999,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200151 .VCOdivider = 2,
Yeasah Pell70047f92006-04-13 17:26:22 -0300152 .progdata = (0 << 19) | (1 << 9) | 0x08,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200153 },
Yeasah Pell70047f92006-04-13 17:26:22 -0300154
155 /* band 7 */
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200156 {
157 .freq_low = 1718000,
158 .freq_high = 1855999,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200159 .VCOdivider = 2,
Yeasah Pell70047f92006-04-13 17:26:22 -0300160 .progdata = (0 << 19) | (1 << 9) | 0x10,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200161 },
Yeasah Pell70047f92006-04-13 17:26:22 -0300162
163 /* band 8 */
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200164 {
165 .freq_low = 1856000,
166 .freq_high = 2035999,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200167 .VCOdivider = 2,
Yeasah Pell70047f92006-04-13 17:26:22 -0300168 .progdata = (0 << 19) | (1 << 9) | 0x20,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200169 },
Yeasah Pell70047f92006-04-13 17:26:22 -0300170
171 /* band 9 */
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200172 {
173 .freq_low = 2036000,
Yeasah Pell70047f92006-04-13 17:26:22 -0300174 .freq_high = 2150000,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200175 .VCOdivider = 2,
Yeasah Pell70047f92006-04-13 17:26:22 -0300176 .progdata = (0 << 19) | (1 << 9) | 0x40,
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200177 },
178};
179
Steve Tothb79cb652006-01-09 15:25:07 -0200180static struct {
181 u8 reg;
182 u8 data;
183} cx24123_regdata[] =
184{
185 {0x00, 0x03}, /* Reset system */
186 {0x00, 0x00}, /* Clear reset */
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300187 {0x03, 0x07}, /* QPSK, DVB, Auto Acquisition (default) */
188 {0x04, 0x10}, /* MPEG */
189 {0x05, 0x04}, /* MPEG */
190 {0x06, 0x31}, /* MPEG (default) */
191 {0x0b, 0x00}, /* Freq search start point (default) */
192 {0x0c, 0x00}, /* Demodulator sample gain (default) */
Mauro Carvalho Chehabd93f8862006-08-06 17:03:50 -0300193 {0x0d, 0x7f}, /* Force driver to shift until the maximum (+-10 MHz) */
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300194 {0x0e, 0x03}, /* Default non-inverted, FEC 3/4 (default) */
195 {0x0f, 0xfe}, /* FEC search mask (all supported codes) */
196 {0x10, 0x01}, /* Default search inversion, no repeat (default) */
197 {0x16, 0x00}, /* Enable reading of frequency */
198 {0x17, 0x01}, /* Enable EsNO Ready Counter */
199 {0x1c, 0x80}, /* Enable error counter */
200 {0x20, 0x00}, /* Tuner burst clock rate = 500KHz */
201 {0x21, 0x15}, /* Tuner burst mode, word length = 0x15 */
202 {0x28, 0x00}, /* Enable FILTERV with positive pol., DiSEqC 2.x off */
203 {0x29, 0x00}, /* DiSEqC LNB_DC off */
204 {0x2a, 0xb0}, /* DiSEqC Parameters (default) */
205 {0x2b, 0x73}, /* DiSEqC Tone Frequency (default) */
206 {0x2c, 0x00}, /* DiSEqC Message (0x2c - 0x31) */
Steve Tothb79cb652006-01-09 15:25:07 -0200207 {0x2d, 0x00},
208 {0x2e, 0x00},
209 {0x2f, 0x00},
210 {0x30, 0x00},
211 {0x31, 0x00},
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300212 {0x32, 0x8c}, /* DiSEqC Parameters (default) */
213 {0x33, 0x00}, /* Interrupts off (0x33 - 0x34) */
Steve Tothb79cb652006-01-09 15:25:07 -0200214 {0x34, 0x00},
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300215 {0x35, 0x03}, /* DiSEqC Tone Amplitude (default) */
216 {0x36, 0x02}, /* DiSEqC Parameters (default) */
217 {0x37, 0x3a}, /* DiSEqC Parameters (default) */
218 {0x3a, 0x00}, /* Enable AGC accumulator (for signal strength) */
219 {0x44, 0x00}, /* Constellation (default) */
220 {0x45, 0x00}, /* Symbol count (default) */
221 {0x46, 0x0d}, /* Symbol rate estimator on (default) */
Yeasah Pell18c053b2006-08-08 15:48:08 -0300222 {0x56, 0xc1}, /* Error Counter = Viterbi BER */
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300223 {0x57, 0xff}, /* Error Counter Window (default) */
Mauro Carvalho Chehabd93f8862006-08-06 17:03:50 -0300224 {0x5c, 0x20}, /* Acquisition AFC Expiration window (default is 0x10) */
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300225 {0x67, 0x83}, /* Non-DCII symbol clock */
Steve Tothb79cb652006-01-09 15:25:07 -0200226};
227
228static int cx24123_writereg(struct cx24123_state* state, int reg, int data)
229{
230 u8 buf[] = { reg, data };
231 struct i2c_msg msg = { .addr = state->config->demod_address, .flags = 0, .buf = buf, .len = 2 };
232 int err;
233
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300234 if (debug>1)
235 printk("cx24123: %s: write reg 0x%02x, value 0x%02x\n",
236 __FUNCTION__,reg, data);
237
Steve Tothb79cb652006-01-09 15:25:07 -0200238 if ((err = i2c_transfer(state->i2c, &msg, 1)) != 1) {
239 printk("%s: writereg error(err == %i, reg == 0x%02x,"
240 " data == 0x%02x)\n", __FUNCTION__, err, reg, data);
241 return -EREMOTEIO;
242 }
243
244 return 0;
245}
246
Steve Tothb79cb652006-01-09 15:25:07 -0200247static int cx24123_readreg(struct cx24123_state* state, u8 reg)
248{
249 int ret;
250 u8 b0[] = { reg };
251 u8 b1[] = { 0 };
252 struct i2c_msg msg[] = {
253 { .addr = state->config->demod_address, .flags = 0, .buf = b0, .len = 1 },
254 { .addr = state->config->demod_address, .flags = I2C_M_RD, .buf = b1, .len = 1 }
255 };
256
257 ret = i2c_transfer(state->i2c, msg, 2);
258
259 if (ret != 2) {
260 printk("%s: reg=0x%x (error=%d)\n", __FUNCTION__, reg, ret);
261 return ret;
262 }
263
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300264 if (debug>1)
265 printk("cx24123: read reg 0x%02x, value 0x%02x\n",reg, ret);
266
Steve Tothb79cb652006-01-09 15:25:07 -0200267 return b1[0];
268}
269
Steve Tothb79cb652006-01-09 15:25:07 -0200270static int cx24123_set_inversion(struct cx24123_state* state, fe_spectral_inversion_t inversion)
271{
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300272 u8 nom_reg = cx24123_readreg(state, 0x0e);
273 u8 auto_reg = cx24123_readreg(state, 0x10);
274
Steve Tothb79cb652006-01-09 15:25:07 -0200275 switch (inversion) {
276 case INVERSION_OFF:
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300277 dprintk("%s: inversion off\n",__FUNCTION__);
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300278 cx24123_writereg(state, 0x0e, nom_reg & ~0x80);
279 cx24123_writereg(state, 0x10, auto_reg | 0x80);
Steve Tothb79cb652006-01-09 15:25:07 -0200280 break;
281 case INVERSION_ON:
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300282 dprintk("%s: inversion on\n",__FUNCTION__);
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300283 cx24123_writereg(state, 0x0e, nom_reg | 0x80);
284 cx24123_writereg(state, 0x10, auto_reg | 0x80);
Steve Tothb79cb652006-01-09 15:25:07 -0200285 break;
286 case INVERSION_AUTO:
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300287 dprintk("%s: inversion auto\n",__FUNCTION__);
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300288 cx24123_writereg(state, 0x10, auto_reg & ~0x80);
Steve Tothb79cb652006-01-09 15:25:07 -0200289 break;
290 default:
291 return -EINVAL;
292 }
293
294 return 0;
295}
296
297static int cx24123_get_inversion(struct cx24123_state* state, fe_spectral_inversion_t *inversion)
298{
299 u8 val;
300
301 val = cx24123_readreg(state, 0x1b) >> 7;
302
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300303 if (val == 0) {
304 dprintk("%s: read inversion off\n",__FUNCTION__);
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200305 *inversion = INVERSION_OFF;
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300306 } else {
307 dprintk("%s: read inversion on\n",__FUNCTION__);
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200308 *inversion = INVERSION_ON;
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300309 }
Steve Tothb79cb652006-01-09 15:25:07 -0200310
311 return 0;
312}
313
314static int cx24123_set_fec(struct cx24123_state* state, fe_code_rate_t fec)
315{
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300316 u8 nom_reg = cx24123_readreg(state, 0x0e) & ~0x07;
317
Steve Tothb79cb652006-01-09 15:25:07 -0200318 if ( (fec < FEC_NONE) || (fec > FEC_AUTO) )
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200319 fec = FEC_AUTO;
Steve Tothb79cb652006-01-09 15:25:07 -0200320
Yeasah Pelld12a9b92006-08-08 15:48:08 -0300321 /* Set the soft decision threshold */
322 if(fec == FEC_1_2)
323 cx24123_writereg(state, 0x43, cx24123_readreg(state, 0x43) | 0x01);
324 else
325 cx24123_writereg(state, 0x43, cx24123_readreg(state, 0x43) & ~0x01);
326
Steve Tothb79cb652006-01-09 15:25:07 -0200327 switch (fec) {
Steve Tothb79cb652006-01-09 15:25:07 -0200328 case FEC_1_2:
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300329 dprintk("%s: set FEC to 1/2\n",__FUNCTION__);
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300330 cx24123_writereg(state, 0x0e, nom_reg | 0x01);
331 cx24123_writereg(state, 0x0f, 0x02);
332 break;
Steve Tothb79cb652006-01-09 15:25:07 -0200333 case FEC_2_3:
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300334 dprintk("%s: set FEC to 2/3\n",__FUNCTION__);
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300335 cx24123_writereg(state, 0x0e, nom_reg | 0x02);
336 cx24123_writereg(state, 0x0f, 0x04);
337 break;
Steve Tothb79cb652006-01-09 15:25:07 -0200338 case FEC_3_4:
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300339 dprintk("%s: set FEC to 3/4\n",__FUNCTION__);
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300340 cx24123_writereg(state, 0x0e, nom_reg | 0x03);
341 cx24123_writereg(state, 0x0f, 0x08);
342 break;
343 case FEC_4_5:
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300344 dprintk("%s: set FEC to 4/5\n",__FUNCTION__);
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300345 cx24123_writereg(state, 0x0e, nom_reg | 0x04);
346 cx24123_writereg(state, 0x0f, 0x10);
347 break;
348 case FEC_5_6:
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300349 dprintk("%s: set FEC to 5/6\n",__FUNCTION__);
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300350 cx24123_writereg(state, 0x0e, nom_reg | 0x05);
351 cx24123_writereg(state, 0x0f, 0x20);
352 break;
353 case FEC_6_7:
354 dprintk("%s: set FEC to 6/7\n",__FUNCTION__);
355 cx24123_writereg(state, 0x0e, nom_reg | 0x06);
356 cx24123_writereg(state, 0x0f, 0x40);
357 break;
358 case FEC_7_8:
359 dprintk("%s: set FEC to 7/8\n",__FUNCTION__);
360 cx24123_writereg(state, 0x0e, nom_reg | 0x07);
361 cx24123_writereg(state, 0x0f, 0x80);
362 break;
Steve Tothb79cb652006-01-09 15:25:07 -0200363 case FEC_AUTO:
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300364 dprintk("%s: set FEC to auto\n",__FUNCTION__);
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300365 cx24123_writereg(state, 0x0f, 0xfe);
366 break;
Steve Tothb79cb652006-01-09 15:25:07 -0200367 default:
368 return -EOPNOTSUPP;
369 }
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300370
371 return 0;
Steve Tothb79cb652006-01-09 15:25:07 -0200372}
373
374static int cx24123_get_fec(struct cx24123_state* state, fe_code_rate_t *fec)
375{
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200376 int ret;
Steve Tothb79cb652006-01-09 15:25:07 -0200377
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200378 ret = cx24123_readreg (state, 0x1b);
379 if (ret < 0)
380 return ret;
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300381 ret = ret & 0x07;
382
383 switch (ret) {
Steve Tothb79cb652006-01-09 15:25:07 -0200384 case 1:
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200385 *fec = FEC_1_2;
386 break;
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300387 case 2:
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200388 *fec = FEC_2_3;
389 break;
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300390 case 3:
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200391 *fec = FEC_3_4;
392 break;
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300393 case 4:
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200394 *fec = FEC_4_5;
395 break;
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300396 case 5:
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200397 *fec = FEC_5_6;
398 break;
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300399 case 6:
400 *fec = FEC_6_7;
401 break;
Steve Tothb79cb652006-01-09 15:25:07 -0200402 case 7:
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200403 *fec = FEC_7_8;
404 break;
Steve Tothb79cb652006-01-09 15:25:07 -0200405 default:
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300406 /* this can happen when there's no lock */
407 *fec = FEC_NONE;
Steve Tothb79cb652006-01-09 15:25:07 -0200408 }
409
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200410 return 0;
Steve Tothb79cb652006-01-09 15:25:07 -0200411}
412
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300413/* Approximation of closest integer of log2(a/b). It actually gives the
414 lowest integer i such that 2^i >= round(a/b) */
415static u32 cx24123_int_log2(u32 a, u32 b)
416{
417 u32 exp, nearest = 0;
418 u32 div = a / b;
419 if(a % b >= b / 2) ++div;
420 if(div < (1 << 31))
421 {
422 for(exp = 1; div > exp; nearest++)
423 exp += exp;
424 }
425 return nearest;
426}
427
Steve Tothb79cb652006-01-09 15:25:07 -0200428static int cx24123_set_symbolrate(struct cx24123_state* state, u32 srate)
429{
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300430 u32 tmp, sample_rate, ratio, sample_gain;
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300431 u8 pll_mult;
Steve Tothb79cb652006-01-09 15:25:07 -0200432
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300433 /* check if symbol rate is within limits */
Patrick Boettcherdea74862006-05-14 05:01:31 -0300434 if ((srate > state->frontend.ops.info.symbol_rate_max) ||
435 (srate < state->frontend.ops.info.symbol_rate_min))
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300436 return -EOPNOTSUPP;;
Steve Tothb79cb652006-01-09 15:25:07 -0200437
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300438 /* choose the sampling rate high enough for the required operation,
439 while optimizing the power consumed by the demodulator */
440 if (srate < (XTAL*2)/2)
441 pll_mult = 2;
442 else if (srate < (XTAL*3)/2)
443 pll_mult = 3;
444 else if (srate < (XTAL*4)/2)
445 pll_mult = 4;
446 else if (srate < (XTAL*5)/2)
447 pll_mult = 5;
448 else if (srate < (XTAL*6)/2)
449 pll_mult = 6;
450 else if (srate < (XTAL*7)/2)
451 pll_mult = 7;
452 else if (srate < (XTAL*8)/2)
453 pll_mult = 8;
454 else
455 pll_mult = 9;
Steve Tothb79cb652006-01-09 15:25:07 -0200456
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300457
458 sample_rate = pll_mult * XTAL;
459
460 /*
461 SYSSymbolRate[21:0] = (srate << 23) / sample_rate
462
463 We have to use 32 bit unsigned arithmetic without precision loss.
464 The maximum srate is 45000000 or 0x02AEA540. This number has
465 only 6 clear bits on top, hence we can shift it left only 6 bits
466 at a time. Borrowed from cx24110.c
467 */
468
469 tmp = srate << 6;
470 ratio = tmp / sample_rate;
471
472 tmp = (tmp % sample_rate) << 6;
473 ratio = (ratio << 6) + (tmp / sample_rate);
474
475 tmp = (tmp % sample_rate) << 6;
476 ratio = (ratio << 6) + (tmp / sample_rate);
477
478 tmp = (tmp % sample_rate) << 5;
479 ratio = (ratio << 5) + (tmp / sample_rate);
480
481
482 cx24123_writereg(state, 0x01, pll_mult * 6);
483
484 cx24123_writereg(state, 0x08, (ratio >> 16) & 0x3f );
485 cx24123_writereg(state, 0x09, (ratio >> 8) & 0xff );
486 cx24123_writereg(state, 0x0a, (ratio ) & 0xff );
487
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300488 /* also set the demodulator sample gain */
489 sample_gain = cx24123_int_log2(sample_rate, srate);
490 tmp = cx24123_readreg(state, 0x0c) & ~0xe0;
491 cx24123_writereg(state, 0x0c, tmp | sample_gain << 5);
492
493 dprintk("%s: srate=%d, ratio=0x%08x, sample_rate=%i sample_gain=%d\n", __FUNCTION__, srate, ratio, sample_rate, sample_gain);
Steve Tothb79cb652006-01-09 15:25:07 -0200494
495 return 0;
496}
497
498/*
499 * Based on the required frequency and symbolrate, the tuner AGC has to be configured
500 * and the correct band selected. Calculate those values
501 */
502static int cx24123_pll_calculate(struct dvb_frontend* fe, struct dvb_frontend_parameters *p)
503{
504 struct cx24123_state *state = fe->demodulator_priv;
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200505 u32 ndiv = 0, adiv = 0, vco_div = 0;
506 int i = 0;
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300507 int pump = 2;
Yeasah Pell70047f92006-04-13 17:26:22 -0300508 int band = 0;
Ahmed S. Darwish0496daa2007-02-14 22:57:42 -0200509 int num_bands = ARRAY_SIZE(cx24123_bandselect_vals);
Steve Tothb79cb652006-01-09 15:25:07 -0200510
511 /* Defaults for low freq, low rate */
512 state->VCAarg = cx24123_AGC_vals[0].VCAprogdata;
513 state->VGAarg = cx24123_AGC_vals[0].VGAprogdata;
514 state->bandselectarg = cx24123_bandselect_vals[0].progdata;
515 vco_div = cx24123_bandselect_vals[0].VCOdivider;
516
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300517 /* For the given symbol rate, determine the VCA, VGA and FILTUNE programming bits */
Ahmed S. Darwish0496daa2007-02-14 22:57:42 -0200518 for (i = 0; i < ARRAY_SIZE(cx24123_AGC_vals); i++)
Steve Tothb79cb652006-01-09 15:25:07 -0200519 {
520 if ((cx24123_AGC_vals[i].symbolrate_low <= p->u.qpsk.symbol_rate) &&
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300521 (cx24123_AGC_vals[i].symbolrate_high >= p->u.qpsk.symbol_rate) ) {
Steve Tothb79cb652006-01-09 15:25:07 -0200522 state->VCAarg = cx24123_AGC_vals[i].VCAprogdata;
523 state->VGAarg = cx24123_AGC_vals[i].VGAprogdata;
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300524 state->FILTune = cx24123_AGC_vals[i].FILTune;
Steve Tothb79cb652006-01-09 15:25:07 -0200525 }
526 }
527
Yeasah Pell70047f92006-04-13 17:26:22 -0300528 /* determine the band to use */
529 if(force_band < 1 || force_band > num_bands)
Steve Tothb79cb652006-01-09 15:25:07 -0200530 {
Yeasah Pell70047f92006-04-13 17:26:22 -0300531 for (i = 0; i < num_bands; i++)
532 {
533 if ((cx24123_bandselect_vals[i].freq_low <= p->frequency) &&
534 (cx24123_bandselect_vals[i].freq_high >= p->frequency) )
535 band = i;
Steve Tothb79cb652006-01-09 15:25:07 -0200536 }
537 }
Yeasah Pell70047f92006-04-13 17:26:22 -0300538 else
539 band = force_band - 1;
540
541 state->bandselectarg = cx24123_bandselect_vals[band].progdata;
542 vco_div = cx24123_bandselect_vals[band].VCOdivider;
543
544 /* determine the charge pump current */
545 if ( p->frequency < (cx24123_bandselect_vals[band].freq_low + cx24123_bandselect_vals[band].freq_high)/2 )
546 pump = 0x01;
547 else
548 pump = 0x02;
Steve Tothb79cb652006-01-09 15:25:07 -0200549
550 /* Determine the N/A dividers for the requested lband freq (in kHz). */
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300551 /* Note: the reference divider R=10, frequency is in KHz, XTAL is in Hz */
552 ndiv = ( ((p->frequency * vco_div * 10) / (2 * XTAL / 1000)) / 32) & 0x1ff;
553 adiv = ( ((p->frequency * vco_div * 10) / (2 * XTAL / 1000)) % 32) & 0x1f;
Steve Tothb79cb652006-01-09 15:25:07 -0200554
Steven Toth9b5a4a62006-10-02 21:35:40 -0300555 if (adiv == 0 && ndiv > 0)
556 ndiv--;
Steve Tothb79cb652006-01-09 15:25:07 -0200557
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300558 /* control bits 11, refdiv 11, charge pump polarity 1, charge pump current, ndiv, adiv */
559 state->pllarg = (3 << 19) | (3 << 17) | (1 << 16) | (pump << 14) | (ndiv << 5) | adiv;
Steve Tothb79cb652006-01-09 15:25:07 -0200560
561 return 0;
562}
563
564/*
565 * Tuner data is 21 bits long, must be left-aligned in data.
566 * Tuner cx24109 is written through a dedicated 3wire interface on the demod chip.
567 */
568static int cx24123_pll_writereg(struct dvb_frontend* fe, struct dvb_frontend_parameters *p, u32 data)
569{
570 struct cx24123_state *state = fe->demodulator_priv;
Steven Toth0144f3142006-01-09 15:25:22 -0200571 unsigned long timeout;
Steve Tothb79cb652006-01-09 15:25:07 -0200572
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300573 dprintk("%s: pll writereg called, data=0x%08x\n",__FUNCTION__,data);
574
Steve Tothb79cb652006-01-09 15:25:07 -0200575 /* align the 21 bytes into to bit23 boundary */
576 data = data << 3;
577
578 /* Reset the demod pll word length to 0x15 bits */
579 cx24123_writereg(state, 0x21, 0x15);
580
Steve Tothb79cb652006-01-09 15:25:07 -0200581 /* write the msb 8 bits, wait for the send to be completed */
Steven Toth0144f3142006-01-09 15:25:22 -0200582 timeout = jiffies + msecs_to_jiffies(40);
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200583 cx24123_writereg(state, 0x22, (data >> 16) & 0xff);
Steven Toth0144f3142006-01-09 15:25:22 -0200584 while ((cx24123_readreg(state, 0x20) & 0x40) == 0) {
585 if (time_after(jiffies, timeout)) {
586 printk("%s: demodulator is not responding, possibly hung, aborting.\n", __FUNCTION__);
Steve Tothb79cb652006-01-09 15:25:07 -0200587 return -EREMOTEIO;
588 }
Steven Toth0144f3142006-01-09 15:25:22 -0200589 msleep(10);
Steve Tothb79cb652006-01-09 15:25:07 -0200590 }
591
Steve Tothb79cb652006-01-09 15:25:07 -0200592 /* send another 8 bytes, wait for the send to be completed */
Steven Toth0144f3142006-01-09 15:25:22 -0200593 timeout = jiffies + msecs_to_jiffies(40);
Steve Tothb79cb652006-01-09 15:25:07 -0200594 cx24123_writereg(state, 0x22, (data>>8) & 0xff );
Steven Toth0144f3142006-01-09 15:25:22 -0200595 while ((cx24123_readreg(state, 0x20) & 0x40) == 0) {
596 if (time_after(jiffies, timeout)) {
597 printk("%s: demodulator is not responding, possibly hung, aborting.\n", __FUNCTION__);
Steve Tothb79cb652006-01-09 15:25:07 -0200598 return -EREMOTEIO;
599 }
Steven Toth0144f3142006-01-09 15:25:22 -0200600 msleep(10);
Steve Tothb79cb652006-01-09 15:25:07 -0200601 }
602
Steve Tothb79cb652006-01-09 15:25:07 -0200603 /* send the lower 5 bits of this byte, padded with 3 LBB, wait for the send to be completed */
Steven Toth0144f3142006-01-09 15:25:22 -0200604 timeout = jiffies + msecs_to_jiffies(40);
Steve Tothb79cb652006-01-09 15:25:07 -0200605 cx24123_writereg(state, 0x22, (data) & 0xff );
Steven Toth0144f3142006-01-09 15:25:22 -0200606 while ((cx24123_readreg(state, 0x20) & 0x80)) {
607 if (time_after(jiffies, timeout)) {
608 printk("%s: demodulator is not responding, possibly hung, aborting.\n", __FUNCTION__);
Steve Tothb79cb652006-01-09 15:25:07 -0200609 return -EREMOTEIO;
610 }
Steven Toth0144f3142006-01-09 15:25:22 -0200611 msleep(10);
Steve Tothb79cb652006-01-09 15:25:07 -0200612 }
613
614 /* Trigger the demod to configure the tuner */
615 cx24123_writereg(state, 0x20, cx24123_readreg(state, 0x20) | 2);
616 cx24123_writereg(state, 0x20, cx24123_readreg(state, 0x20) & 0xfd);
617
618 return 0;
619}
620
621static int cx24123_pll_tune(struct dvb_frontend* fe, struct dvb_frontend_parameters *p)
622{
623 struct cx24123_state *state = fe->demodulator_priv;
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300624 u8 val;
625
626 dprintk("frequency=%i\n", p->frequency);
Steve Tothb79cb652006-01-09 15:25:07 -0200627
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200628 if (cx24123_pll_calculate(fe, p) != 0) {
Steve Tothb79cb652006-01-09 15:25:07 -0200629 printk("%s: cx24123_pll_calcutate failed\n",__FUNCTION__);
630 return -EINVAL;
631 }
632
633 /* Write the new VCO/VGA */
634 cx24123_pll_writereg(fe, p, state->VCAarg);
635 cx24123_pll_writereg(fe, p, state->VGAarg);
636
637 /* Write the new bandselect and pll args */
638 cx24123_pll_writereg(fe, p, state->bandselectarg);
639 cx24123_pll_writereg(fe, p, state->pllarg);
640
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300641 /* set the FILTUNE voltage */
642 val = cx24123_readreg(state, 0x28) & ~0x3;
643 cx24123_writereg(state, 0x27, state->FILTune >> 2);
644 cx24123_writereg(state, 0x28, val | (state->FILTune & 0x3));
645
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300646 dprintk("%s: pll tune VCA=%d, band=%d, pll=%d\n",__FUNCTION__,state->VCAarg,
647 state->bandselectarg,state->pllarg);
648
Steve Tothb79cb652006-01-09 15:25:07 -0200649 return 0;
650}
651
652static int cx24123_initfe(struct dvb_frontend* fe)
653{
654 struct cx24123_state *state = fe->demodulator_priv;
655 int i;
656
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300657 dprintk("%s: init frontend\n",__FUNCTION__);
658
Steve Tothb79cb652006-01-09 15:25:07 -0200659 /* Configure the demod to a good set of defaults */
Ahmed S. Darwish0496daa2007-02-14 22:57:42 -0200660 for (i = 0; i < ARRAY_SIZE(cx24123_regdata); i++)
Steve Tothb79cb652006-01-09 15:25:07 -0200661 cx24123_writereg(state, cx24123_regdata[i].reg, cx24123_regdata[i].data);
662
Yeasah Pellef768562006-09-26 12:30:14 -0300663 /* Set the LNB polarity */
664 if(state->config->lnb_polarity)
665 cx24123_writereg(state, 0x32, cx24123_readreg(state, 0x32) | 0x02);
666
Steve Tothb79cb652006-01-09 15:25:07 -0200667 return 0;
668}
669
670static int cx24123_set_voltage(struct dvb_frontend* fe, fe_sec_voltage_t voltage)
671{
672 struct cx24123_state *state = fe->demodulator_priv;
673 u8 val;
674
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300675 val = cx24123_readreg(state, 0x29) & ~0x40;
Steve Tothb79cb652006-01-09 15:25:07 -0200676
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300677 switch (voltage) {
678 case SEC_VOLTAGE_13:
679 dprintk("%s: setting voltage 13V\n", __FUNCTION__);
Saqeb Akhterccd214b2006-06-29 20:29:29 -0300680 return cx24123_writereg(state, 0x29, val & 0x7f);
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300681 case SEC_VOLTAGE_18:
682 dprintk("%s: setting voltage 18V\n", __FUNCTION__);
Saqeb Akhterccd214b2006-06-29 20:29:29 -0300683 return cx24123_writereg(state, 0x29, val | 0x80);
Yeasah Pellef768562006-09-26 12:30:14 -0300684 case SEC_VOLTAGE_OFF:
685 /* already handled in cx88-dvb */
686 return 0;
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300687 default:
688 return -EINVAL;
689 };
Vadim Catana1c956a32006-01-09 15:25:08 -0200690
691 return 0;
Steve Tothb79cb652006-01-09 15:25:07 -0200692}
693
Yeasah Pelldce1dfc2006-04-13 11:40:59 -0300694/* wait for diseqc queue to become ready (or timeout) */
695static void cx24123_wait_for_diseqc(struct cx24123_state *state)
696{
697 unsigned long timeout = jiffies + msecs_to_jiffies(200);
698 while (!(cx24123_readreg(state, 0x29) & 0x40)) {
699 if(time_after(jiffies, timeout)) {
700 printk("%s: diseqc queue not ready, command may be lost.\n", __FUNCTION__);
701 break;
702 }
703 msleep(10);
704 }
705}
706
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300707static int cx24123_send_diseqc_msg(struct dvb_frontend* fe, struct dvb_diseqc_master_cmd *cmd)
Steve Tothb79cb652006-01-09 15:25:07 -0200708{
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300709 struct cx24123_state *state = fe->demodulator_priv;
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300710 int i, val, tone;
Steve Tothb79cb652006-01-09 15:25:07 -0200711
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300712 dprintk("%s:\n",__FUNCTION__);
713
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300714 /* stop continuous tone if enabled */
715 tone = cx24123_readreg(state, 0x29);
716 if (tone & 0x10)
717 cx24123_writereg(state, 0x29, tone & ~0x50);
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300718
Yeasah Pelldce1dfc2006-04-13 11:40:59 -0300719 /* wait for diseqc queue ready */
720 cx24123_wait_for_diseqc(state);
721
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300722 /* select tone mode */
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300723 cx24123_writereg(state, 0x2a, cx24123_readreg(state, 0x2a) & 0xfb);
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300724
725 for (i = 0; i < cmd->msg_len; i++)
726 cx24123_writereg(state, 0x2C + i, cmd->msg[i]);
727
728 val = cx24123_readreg(state, 0x29);
729 cx24123_writereg(state, 0x29, ((val & 0x90) | 0x40) | ((cmd->msg_len-3) & 3));
730
Yeasah Pelldce1dfc2006-04-13 11:40:59 -0300731 /* wait for diseqc message to finish sending */
732 cx24123_wait_for_diseqc(state);
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300733
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300734 /* restart continuous tone if enabled */
735 if (tone & 0x10) {
736 cx24123_writereg(state, 0x29, tone & ~0x40);
737 }
738
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300739 return 0;
740}
741
742static int cx24123_diseqc_send_burst(struct dvb_frontend* fe, fe_sec_mini_cmd_t burst)
743{
744 struct cx24123_state *state = fe->demodulator_priv;
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300745 int val, tone;
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300746
747 dprintk("%s:\n", __FUNCTION__);
748
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300749 /* stop continuous tone if enabled */
750 tone = cx24123_readreg(state, 0x29);
751 if (tone & 0x10)
752 cx24123_writereg(state, 0x29, tone & ~0x50);
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300753
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300754 /* wait for diseqc queue ready */
Yeasah Pelldce1dfc2006-04-13 11:40:59 -0300755 cx24123_wait_for_diseqc(state);
756
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300757 /* select tone mode */
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300758 cx24123_writereg(state, 0x2a, cx24123_readreg(state, 0x2a) | 0x4);
759 msleep(30);
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300760 val = cx24123_readreg(state, 0x29);
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300761 if (burst == SEC_MINI_A)
762 cx24123_writereg(state, 0x29, ((val & 0x90) | 0x40 | 0x00));
763 else if (burst == SEC_MINI_B)
764 cx24123_writereg(state, 0x29, ((val & 0x90) | 0x40 | 0x08));
765 else
766 return -EINVAL;
767
Yeasah Pelldce1dfc2006-04-13 11:40:59 -0300768 cx24123_wait_for_diseqc(state);
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300769 cx24123_writereg(state, 0x2a, cx24123_readreg(state, 0x2a) & 0xfb);
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300770
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300771 /* restart continuous tone if enabled */
772 if (tone & 0x10) {
773 cx24123_writereg(state, 0x29, tone & ~0x40);
774 }
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300775 return 0;
Steve Tothb79cb652006-01-09 15:25:07 -0200776}
777
778static int cx24123_read_status(struct dvb_frontend* fe, fe_status_t* status)
779{
780 struct cx24123_state *state = fe->demodulator_priv;
781
782 int sync = cx24123_readreg(state, 0x14);
783 int lock = cx24123_readreg(state, 0x20);
784
785 *status = 0;
786 if (lock & 0x01)
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300787 *status |= FE_HAS_SIGNAL;
788 if (sync & 0x02)
Mauro Carvalho Chehabd93f8862006-08-06 17:03:50 -0300789 *status |= FE_HAS_CARRIER; /* Phase locked */
Steve Tothb79cb652006-01-09 15:25:07 -0200790 if (sync & 0x04)
791 *status |= FE_HAS_VITERBI;
Mauro Carvalho Chehabd93f8862006-08-06 17:03:50 -0300792
793 /* Reed-Solomon Status */
Steve Tothb79cb652006-01-09 15:25:07 -0200794 if (sync & 0x08)
Vadim Catanaa74b51f2006-04-13 10:19:52 -0300795 *status |= FE_HAS_SYNC;
Steve Tothb79cb652006-01-09 15:25:07 -0200796 if (sync & 0x80)
Mauro Carvalho Chehabd93f8862006-08-06 17:03:50 -0300797 *status |= FE_HAS_LOCK; /*Full Sync */
Steve Tothb79cb652006-01-09 15:25:07 -0200798
799 return 0;
800}
801
802/*
803 * Configured to return the measurement of errors in blocks, because no UCBLOCKS value
804 * is available, so this value doubles up to satisfy both measurements
805 */
806static int cx24123_read_ber(struct dvb_frontend* fe, u32* ber)
807{
808 struct cx24123_state *state = fe->demodulator_priv;
809
Yeasah Pell18c053b2006-08-08 15:48:08 -0300810 /* The true bit error rate is this value divided by
811 the window size (set as 256 * 255) */
812 *ber = ((cx24123_readreg(state, 0x1c) & 0x3f) << 16) |
Steve Tothb79cb652006-01-09 15:25:07 -0200813 (cx24123_readreg(state, 0x1d) << 8 |
Yeasah Pell18c053b2006-08-08 15:48:08 -0300814 cx24123_readreg(state, 0x1e));
Steve Tothb79cb652006-01-09 15:25:07 -0200815
Yeasah Pell18c053b2006-08-08 15:48:08 -0300816 dprintk("%s: BER = %d\n",__FUNCTION__,*ber);
Steve Tothb79cb652006-01-09 15:25:07 -0200817
818 return 0;
819}
820
821static int cx24123_read_signal_strength(struct dvb_frontend* fe, u16* signal_strength)
822{
823 struct cx24123_state *state = fe->demodulator_priv;
Mauro Carvalho Chehabd93f8862006-08-06 17:03:50 -0300824
Steve Tothb79cb652006-01-09 15:25:07 -0200825 *signal_strength = cx24123_readreg(state, 0x3b) << 8; /* larger = better */
826
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300827 dprintk("%s: Signal strength = %d\n",__FUNCTION__,*signal_strength);
828
Steve Tothb79cb652006-01-09 15:25:07 -0200829 return 0;
830}
831
832static int cx24123_read_snr(struct dvb_frontend* fe, u16* snr)
833{
834 struct cx24123_state *state = fe->demodulator_priv;
Yeasah Pell18c053b2006-08-08 15:48:08 -0300835
836 /* Inverted raw Es/N0 count, totally bogus but better than the
837 BER threshold. */
838 *snr = 65535 - (((u16)cx24123_readreg(state, 0x18) << 8) |
839 (u16)cx24123_readreg(state, 0x19));
Steve Tothb79cb652006-01-09 15:25:07 -0200840
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300841 dprintk("%s: read S/N index = %d\n",__FUNCTION__,*snr);
842
Steve Tothb79cb652006-01-09 15:25:07 -0200843 return 0;
844}
845
Steve Tothb79cb652006-01-09 15:25:07 -0200846static int cx24123_set_frontend(struct dvb_frontend* fe, struct dvb_frontend_parameters *p)
847{
848 struct cx24123_state *state = fe->demodulator_priv;
849
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300850 dprintk("%s: set_frontend\n",__FUNCTION__);
851
Steve Tothb79cb652006-01-09 15:25:07 -0200852 if (state->config->set_ts_params)
853 state->config->set_ts_params(fe, 0);
854
855 state->currentfreq=p->frequency;
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200856 state->currentsymbolrate = p->u.qpsk.symbol_rate;
Steve Tothb79cb652006-01-09 15:25:07 -0200857
858 cx24123_set_inversion(state, p->inversion);
859 cx24123_set_fec(state, p->u.qpsk.fec_inner);
860 cx24123_set_symbolrate(state, p->u.qpsk.symbol_rate);
861 cx24123_pll_tune(fe, p);
862
863 /* Enable automatic aquisition and reset cycle */
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200864 cx24123_writereg(state, 0x03, (cx24123_readreg(state, 0x03) | 0x07));
Steve Tothb79cb652006-01-09 15:25:07 -0200865 cx24123_writereg(state, 0x00, 0x10);
866 cx24123_writereg(state, 0x00, 0);
867
868 return 0;
869}
870
871static int cx24123_get_frontend(struct dvb_frontend* fe, struct dvb_frontend_parameters *p)
872{
873 struct cx24123_state *state = fe->demodulator_priv;
874
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -0300875 dprintk("%s: get_frontend\n",__FUNCTION__);
876
Steve Tothb79cb652006-01-09 15:25:07 -0200877 if (cx24123_get_inversion(state, &p->inversion) != 0) {
878 printk("%s: Failed to get inversion status\n",__FUNCTION__);
879 return -EREMOTEIO;
880 }
881 if (cx24123_get_fec(state, &p->u.qpsk.fec_inner) != 0) {
882 printk("%s: Failed to get fec status\n",__FUNCTION__);
883 return -EREMOTEIO;
884 }
885 p->frequency = state->currentfreq;
886 p->u.qpsk.symbol_rate = state->currentsymbolrate;
887
888 return 0;
889}
890
891static int cx24123_set_tone(struct dvb_frontend* fe, fe_sec_tone_mode_t tone)
892{
893 struct cx24123_state *state = fe->demodulator_priv;
894 u8 val;
895
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300896 /* wait for diseqc queue ready */
897 cx24123_wait_for_diseqc(state);
Steve Tothb79cb652006-01-09 15:25:07 -0200898
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300899 val = cx24123_readreg(state, 0x29) & ~0x40;
Vadim Catana1c956a32006-01-09 15:25:08 -0200900
Andrew de Quinceycd20ca92006-05-12 20:31:51 -0300901 switch (tone) {
902 case SEC_TONE_ON:
903 dprintk("%s: setting tone on\n", __FUNCTION__);
904 return cx24123_writereg(state, 0x29, val | 0x10);
905 case SEC_TONE_OFF:
906 dprintk("%s: setting tone off\n",__FUNCTION__);
907 return cx24123_writereg(state, 0x29, val & 0xef);
908 default:
909 printk("%s: CASE reached default with tone=%d\n", __FUNCTION__, tone);
910 return -EINVAL;
Steve Tothb79cb652006-01-09 15:25:07 -0200911 }
Vadim Catana1c956a32006-01-09 15:25:08 -0200912
913 return 0;
Steve Tothb79cb652006-01-09 15:25:07 -0200914}
915
Yeasah Pell174ff212006-08-08 15:48:08 -0300916static int cx24123_tune(struct dvb_frontend* fe,
917 struct dvb_frontend_parameters* params,
918 unsigned int mode_flags,
Mauro Carvalho Chehab3ea96612007-07-16 09:27:20 -0300919 unsigned int *delay,
Yeasah Pell174ff212006-08-08 15:48:08 -0300920 fe_status_t *status)
921{
922 int retval = 0;
923
924 if (params != NULL)
925 retval = cx24123_set_frontend(fe, params);
926
927 if (!(mode_flags & FE_TUNE_MODE_ONESHOT))
928 cx24123_read_status(fe, status);
929 *delay = HZ/10;
930
931 return retval;
932}
933
934static int cx24123_get_algo(struct dvb_frontend *fe)
935{
936 return 1; //FE_ALGO_HW
937}
938
Steve Tothb79cb652006-01-09 15:25:07 -0200939static void cx24123_release(struct dvb_frontend* fe)
940{
941 struct cx24123_state* state = fe->demodulator_priv;
942 dprintk("%s\n",__FUNCTION__);
943 kfree(state);
944}
945
946static struct dvb_frontend_ops cx24123_ops;
947
Johannes Stezenbache3b152b2006-01-09 15:25:08 -0200948struct dvb_frontend* cx24123_attach(const struct cx24123_config* config,
949 struct i2c_adapter* i2c)
Steve Tothb79cb652006-01-09 15:25:07 -0200950{
951 struct cx24123_state* state = NULL;
952 int ret;
953
954 dprintk("%s\n",__FUNCTION__);
955
956 /* allocate memory for the internal state */
957 state = kmalloc(sizeof(struct cx24123_state), GFP_KERNEL);
958 if (state == NULL) {
959 printk("Unable to kmalloc\n");
960 goto error;
961 }
962
963 /* setup the state */
964 state->config = config;
965 state->i2c = i2c;
Steve Tothb79cb652006-01-09 15:25:07 -0200966 state->VCAarg = 0;
967 state->VGAarg = 0;
968 state->bandselectarg = 0;
969 state->pllarg = 0;
970 state->currentfreq = 0;
971 state->currentsymbolrate = 0;
972
973 /* check if the demod is there */
974 ret = cx24123_readreg(state, 0x00);
975 if ((ret != 0xd1) && (ret != 0xe1)) {
976 printk("Version != d1 or e1\n");
977 goto error;
978 }
979
980 /* create dvb_frontend */
Patrick Boettcherdea74862006-05-14 05:01:31 -0300981 memcpy(&state->frontend.ops, &cx24123_ops, sizeof(struct dvb_frontend_ops));
Steve Tothb79cb652006-01-09 15:25:07 -0200982 state->frontend.demodulator_priv = state;
983 return &state->frontend;
984
985error:
986 kfree(state);
987
988 return NULL;
989}
990
991static struct dvb_frontend_ops cx24123_ops = {
992
993 .info = {
994 .name = "Conexant CX24123/CX24109",
995 .type = FE_QPSK,
996 .frequency_min = 950000,
997 .frequency_max = 2150000,
998 .frequency_stepsize = 1011, /* kHz for QPSK frontends */
Yeasah Pell0e4558a2006-04-13 17:24:13 -0300999 .frequency_tolerance = 5000,
Steve Tothb79cb652006-01-09 15:25:07 -02001000 .symbol_rate_min = 1000000,
1001 .symbol_rate_max = 45000000,
1002 .caps = FE_CAN_INVERSION_AUTO |
1003 FE_CAN_FEC_1_2 | FE_CAN_FEC_2_3 | FE_CAN_FEC_3_4 |
Yeasah Pell0e4558a2006-04-13 17:24:13 -03001004 FE_CAN_FEC_4_5 | FE_CAN_FEC_5_6 | FE_CAN_FEC_6_7 |
1005 FE_CAN_FEC_7_8 | FE_CAN_FEC_AUTO |
Steve Tothb79cb652006-01-09 15:25:07 -02001006 FE_CAN_QPSK | FE_CAN_RECOVER
1007 },
1008
1009 .release = cx24123_release,
1010
1011 .init = cx24123_initfe,
1012 .set_frontend = cx24123_set_frontend,
1013 .get_frontend = cx24123_get_frontend,
1014 .read_status = cx24123_read_status,
1015 .read_ber = cx24123_read_ber,
1016 .read_signal_strength = cx24123_read_signal_strength,
1017 .read_snr = cx24123_read_snr,
Steve Tothb79cb652006-01-09 15:25:07 -02001018 .diseqc_send_master_cmd = cx24123_send_diseqc_msg,
Vadim Catanaa74b51f2006-04-13 10:19:52 -03001019 .diseqc_send_burst = cx24123_diseqc_send_burst,
Steve Tothb79cb652006-01-09 15:25:07 -02001020 .set_tone = cx24123_set_tone,
1021 .set_voltage = cx24123_set_voltage,
Yeasah Pell174ff212006-08-08 15:48:08 -03001022 .tune = cx24123_tune,
1023 .get_frontend_algo = cx24123_get_algo,
Steve Tothb79cb652006-01-09 15:25:07 -02001024};
1025
1026module_param(debug, int, 0644);
Mauro Carvalho Chehabcaf970e2006-04-13 11:29:13 -03001027MODULE_PARM_DESC(debug, "Activates frontend debugging (default:0)");
Steve Tothb79cb652006-01-09 15:25:07 -02001028
Yeasah Pell70047f92006-04-13 17:26:22 -03001029module_param(force_band, int, 0644);
1030MODULE_PARM_DESC(force_band, "Force a specific band select (1-9, default:off).");
1031
Steve Tothb79cb652006-01-09 15:25:07 -02001032MODULE_DESCRIPTION("DVB Frontend module for Conexant cx24123/cx24109 hardware");
1033MODULE_AUTHOR("Steven Toth");
1034MODULE_LICENSE("GPL");
1035
1036EXPORT_SYMBOL(cx24123_attach);