V4L/DVB (13360): stv090x: fix the calculation of the r divider in stv6110x_set_frequency
[safe/jmp/linux-2.6] / drivers / media / dvb / frontends / stv6110x.c
1 /*
2         STV6110(A) Silicon tuner driver
3
4         Copyright (C) Manu Abraham <abraham.manu@gmail.com>
5
6         Copyright (C) ST Microelectronics
7
8         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/init.h>
24 #include <linux/kernel.h>
25 #include <linux/module.h>
26 #include <linux/string.h>
27
28 #include "dvb_frontend.h"
29
30 #include "stv6110x_reg.h"
31 #include "stv6110x.h"
32 #include "stv6110x_priv.h"
33
34 static unsigned int verbose;
35 module_param(verbose, int, 0644);
36 MODULE_PARM_DESC(verbose, "Set Verbosity level");
37
38 static u8 stv6110x_regs[] = {0x07, 0x11, 0xdc, 0x85, 0x17, 0x01, 0xe6, 0x1e};
39
40 static int stv6110x_read_reg(struct stv6110x_state *stv6110x, u8 reg, u8 *data)
41 {
42         int ret;
43         const struct stv6110x_config *config = stv6110x->config;
44         u8 b0[] = { reg };
45         u8 b1[] = { 0 };
46         struct i2c_msg msg[] = {
47                 { .addr = config->addr, .flags = 0,        .buf = b0, .len = 1 },
48                 { .addr = config->addr, .flags = I2C_M_RD, .buf = b1, .len = 1 }
49         };
50
51         ret = i2c_transfer(stv6110x->i2c, msg, 2);
52         if (ret != 2) {
53                 dprintk(FE_ERROR, 1, "I/O Error");
54                 return -EREMOTEIO;
55         }
56         *data = b1[0];
57
58         return 0;
59 }
60
61 static int stv6110x_write_reg(struct stv6110x_state *stv6110x, u8 reg, u8 data)
62 {
63         int ret;
64         const struct stv6110x_config *config = stv6110x->config;
65         u8 buf[] = { reg, data };
66         struct i2c_msg msg = { .addr = config->addr, .flags = 0, . buf = buf, .len = 2 };
67
68         ret = i2c_transfer(stv6110x->i2c, &msg, 1);
69         if (ret != 1) {
70                 dprintk(FE_ERROR, 1, "I/O Error");
71                 return -EREMOTEIO;
72         }
73
74         return 0;
75 }
76
77 static int stv6110x_init(struct dvb_frontend *fe)
78 {
79         struct stv6110x_state *stv6110x = fe->tuner_priv;
80         int ret;
81         u8 i;
82
83         for (i = 0; i < ARRAY_SIZE(stv6110x_regs); i++) {
84                 ret = stv6110x_write_reg(stv6110x, i, stv6110x_regs[i]);
85                 if (ret < 0) {
86                         dprintk(FE_ERROR, 1, "Initialization failed");
87                         return -1;
88                 }
89         }
90
91         return 0;
92 }
93
94 static int stv6110x_set_frequency(struct dvb_frontend *fe, u32 frequency)
95 {
96         struct stv6110x_state *stv6110x = fe->tuner_priv;
97         u32 rDiv, divider;
98         s32 pVal, pCalc, rDivOpt = 0, pCalcOpt = 1000;
99         u8 i;
100
101         STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL1], CTRL1_K, (REFCLOCK_MHz - 16));
102
103         if (frequency <= 1023000) {
104                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_TNG1], TNG1_DIV4SEL, 1);
105                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_TNG1], TNG1_PRESC32_ON, 0);
106                 pVal = 40;
107         } else if (frequency <= 1300000) {
108                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_TNG1], TNG1_DIV4SEL, 1);
109                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_TNG1], TNG1_PRESC32_ON, 1);
110                 pVal = 40;
111         } else if (frequency <= 2046000) {
112                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_TNG1], TNG1_DIV4SEL, 0);
113                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_TNG1], TNG1_PRESC32_ON, 0);
114                 pVal = 20;
115         } else {
116                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_TNG1], TNG1_DIV4SEL, 0);
117                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_TNG1], TNG1_PRESC32_ON, 1);
118                 pVal = 20;
119         }
120
121         for (rDiv = 0; rDiv <= 3; rDiv++) {
122                 pCalc = (REFCLOCK_kHz / 100) / R_DIV(rDiv);
123
124                 if ((abs((s32)(pCalc - pVal))) < (abs((s32)(pCalcOpt - pVal))))
125                         rDivOpt = rDiv;
126
127                 pCalcOpt = (REFCLOCK_kHz / 100) / R_DIV(rDivOpt);
128         }
129
130         divider = (frequency * R_DIV(rDivOpt) * pVal) / REFCLOCK_kHz;
131         divider = (divider + 5) / 10;
132
133         STV6110x_SETFIELD(stv6110x_regs[STV6110x_TNG1], TNG1_R_DIV, rDivOpt);
134         STV6110x_SETFIELD(stv6110x_regs[STV6110x_TNG1], TNG1_N_DIV_11_8, MSB(divider));
135         STV6110x_SETFIELD(stv6110x_regs[STV6110x_TNG0], TNG0_N_DIV_7_0, LSB(divider));
136
137         /* VCO Auto calibration */
138         STV6110x_SETFIELD(stv6110x_regs[STV6110x_STAT1], STAT1_CALVCO_STRT, 1);
139
140         stv6110x_write_reg(stv6110x, STV6110x_CTRL1, stv6110x_regs[STV6110x_CTRL1]);
141         stv6110x_write_reg(stv6110x, STV6110x_TNG1, stv6110x_regs[STV6110x_TNG1]);
142         stv6110x_write_reg(stv6110x, STV6110x_TNG0, stv6110x_regs[STV6110x_TNG0]);
143         stv6110x_write_reg(stv6110x, STV6110x_STAT1, stv6110x_regs[STV6110x_STAT1]);
144
145         for (i = 0; i < TRIALS; i++) {
146                 stv6110x_read_reg(stv6110x, STV6110x_STAT1, &stv6110x_regs[STV6110x_STAT1]);
147                 if (!STV6110x_GETFIELD(STAT1_CALVCO_STRT, stv6110x_regs[STV6110x_STAT1]))
148                                 break;
149                 msleep(1);
150         }
151
152         return 0;
153 }
154
155 static int stv6110x_get_frequency(struct dvb_frontend *fe, u32 *frequency)
156 {
157         struct stv6110x_state *stv6110x = fe->tuner_priv;
158
159         stv6110x_read_reg(stv6110x, STV6110x_TNG1, &stv6110x_regs[STV6110x_TNG1]);
160         stv6110x_read_reg(stv6110x, STV6110x_TNG0, &stv6110x_regs[STV6110x_TNG0]);
161
162         *frequency = (MAKEWORD16(STV6110x_GETFIELD(TNG1_N_DIV_11_8, stv6110x_regs[STV6110x_TNG1]),
163                                  STV6110x_GETFIELD(TNG0_N_DIV_7_0, stv6110x_regs[STV6110x_TNG0]))) * REFCLOCK_kHz;
164
165         *frequency /= (1 << (STV6110x_GETFIELD(TNG1_R_DIV, stv6110x_regs[STV6110x_TNG1]) +
166                              STV6110x_GETFIELD(TNG1_DIV4SEL, stv6110x_regs[STV6110x_TNG1])));
167
168         *frequency >>= 2;
169
170         return 0;
171 }
172
173 static int stv6110x_set_bandwidth(struct dvb_frontend *fe, u32 bandwidth)
174 {
175         struct stv6110x_state *stv6110x = fe->tuner_priv;
176         u32 halfbw;
177         u8 i;
178
179         halfbw = bandwidth >> 1;
180
181         if (halfbw > 36000000)
182                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL3], CTRL3_CF, 31); /* LPF */
183         else if (halfbw < 5000000)
184                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL3], CTRL3_CF, 0); /* LPF */
185         else
186                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL3], CTRL3_CF, ((halfbw / 1000000) - 5)); /* LPF */
187
188
189         STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL3], CTRL3_RCCLK_OFF, 0x0); /* cal. clk activated */
190         STV6110x_SETFIELD(stv6110x_regs[STV6110x_STAT1], STAT1_CALRC_STRT, 0x1); /* LPF auto cal */
191
192         stv6110x_write_reg(stv6110x, STV6110x_CTRL3, stv6110x_regs[STV6110x_CTRL3]);
193         stv6110x_write_reg(stv6110x, STV6110x_STAT1, stv6110x_regs[STV6110x_STAT1]);
194
195         for (i = 0; i < TRIALS; i++) {
196                 stv6110x_read_reg(stv6110x, STV6110x_STAT1, &stv6110x_regs[STV6110x_STAT1]);
197                 if (!STV6110x_GETFIELD(STAT1_CALRC_STRT, stv6110x_regs[STV6110x_STAT1]))
198                         break;
199                 msleep(1);
200         }
201         STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL3], CTRL3_RCCLK_OFF, 0x1); /* cal. done */
202         stv6110x_write_reg(stv6110x, STV6110x_CTRL3, stv6110x_regs[STV6110x_CTRL3]);
203
204         return 0;
205 }
206
207 static int stv6110x_get_bandwidth(struct dvb_frontend *fe, u32 *bandwidth)
208 {
209         struct stv6110x_state *stv6110x = fe->tuner_priv;
210
211         stv6110x_read_reg(stv6110x, STV6110x_CTRL3, &stv6110x_regs[STV6110x_CTRL3]);
212         *bandwidth = (STV6110x_GETFIELD(CTRL3_CF, stv6110x_regs[STV6110x_CTRL3]) + 5) * 2000000;
213
214         return 0;
215 }
216
217 static int stv6110x_set_refclock(struct dvb_frontend *fe, u32 refclock)
218 {
219         struct stv6110x_state *stv6110x = fe->tuner_priv;
220
221         /* setup divider */
222         switch (refclock) {
223         default:
224         case 1:
225                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL2], CTRL2_CO_DIV, 0);
226                 break;
227         case 2:
228                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL2], CTRL2_CO_DIV, 1);
229                 break;
230         case 4:
231                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL2], CTRL2_CO_DIV, 2);
232                 break;
233         case 8:
234         case 0:
235                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL2], CTRL2_CO_DIV, 3);
236                 break;
237         }
238         stv6110x_write_reg(stv6110x, STV6110x_CTRL2, stv6110x_regs[STV6110x_CTRL2]);
239
240         return 0;
241 }
242
243 static int stv6110x_get_bbgain(struct dvb_frontend *fe, u32 *gain)
244 {
245         struct stv6110x_state *stv6110x = fe->tuner_priv;
246
247         stv6110x_read_reg(stv6110x, STV6110x_CTRL2, &stv6110x_regs[STV6110x_CTRL2]);
248         *gain = 2 * STV6110x_GETFIELD(CTRL2_BBGAIN, stv6110x_regs[STV6110x_CTRL2]);
249
250         return 0;
251 }
252
253 static int stv6110x_set_bbgain(struct dvb_frontend *fe, u32 gain)
254 {
255         struct stv6110x_state *stv6110x = fe->tuner_priv;
256
257         STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL2], CTRL2_BBGAIN, gain / 2);
258         stv6110x_write_reg(stv6110x, STV6110x_CTRL2, stv6110x_regs[STV6110x_CTRL2]);
259
260         return 0;
261 }
262
263 static int stv6110x_set_mode(struct dvb_frontend *fe, enum tuner_mode mode)
264 {
265         struct stv6110x_state *stv6110x = fe->tuner_priv;
266         int ret;
267
268         switch (mode) {
269         case TUNER_SLEEP:
270                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL1], CTRL1_SYN, 0);
271                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL1], CTRL1_RX, 0);
272                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL1], CTRL1_LPT, 0);
273                 break;
274
275         case TUNER_WAKE:
276                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL1], CTRL1_SYN, 1);
277                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL1], CTRL1_RX, 1);
278                 STV6110x_SETFIELD(stv6110x_regs[STV6110x_CTRL1], CTRL1_LPT, 1);
279                 break;
280         }
281
282         ret = stv6110x_write_reg(stv6110x, STV6110x_CTRL1, stv6110x_regs[STV6110x_CTRL1]);
283         if (ret < 0) {
284                 dprintk(FE_ERROR, 1, "I/O Error");
285                 return -EIO;
286         }
287
288         return 0;
289 }
290
291 static int stv6110x_sleep(struct dvb_frontend *fe)
292 {
293         return stv6110x_set_mode(fe, TUNER_SLEEP);
294 }
295
296 static int stv6110x_get_status(struct dvb_frontend *fe, u32 *status)
297 {
298         struct stv6110x_state *stv6110x = fe->tuner_priv;
299
300         stv6110x_read_reg(stv6110x, STV6110x_STAT1, &stv6110x_regs[STV6110x_STAT1]);
301
302         if (STV6110x_GETFIELD(STAT1_LOCK, stv6110x_regs[STV6110x_STAT1]))
303                 *status = TUNER_PHASELOCKED;
304         else
305                 *status = 0;
306
307         return 0;
308 }
309
310
311 static int stv6110x_release(struct dvb_frontend *fe)
312 {
313         struct stv6110x_state *stv6110x = fe->tuner_priv;
314
315         fe->tuner_priv = NULL;
316         kfree(stv6110x);
317
318         return 0;
319 }
320
321 static struct dvb_tuner_ops stv6110x_ops = {
322         .info = {
323                 .name           = "STV6110(A) Silicon Tuner",
324                 .frequency_min  =  950000,
325                 .frequency_max  = 2150000,
326                 .frequency_step = 0,
327         },
328
329         .init                   = stv6110x_init,
330         .sleep                  = stv6110x_sleep,
331         .release                = stv6110x_release
332 };
333
334 static struct stv6110x_devctl stv6110x_ctl = {
335         .tuner_init             = stv6110x_init,
336         .tuner_set_mode         = stv6110x_set_mode,
337         .tuner_set_frequency    = stv6110x_set_frequency,
338         .tuner_get_frequency    = stv6110x_get_frequency,
339         .tuner_set_bandwidth    = stv6110x_set_bandwidth,
340         .tuner_get_bandwidth    = stv6110x_get_bandwidth,
341         .tuner_set_bbgain       = stv6110x_set_bbgain,
342         .tuner_get_bbgain       = stv6110x_get_bbgain,
343         .tuner_set_refclk       = stv6110x_set_refclock,
344         .tuner_get_status       = stv6110x_get_status,
345 };
346
347 struct stv6110x_devctl *stv6110x_attach(struct dvb_frontend *fe,
348                                         const struct stv6110x_config *config,
349                                         struct i2c_adapter *i2c)
350 {
351         struct stv6110x_state *stv6110x;
352
353         stv6110x = kzalloc(sizeof (struct stv6110x_state), GFP_KERNEL);
354         if (stv6110x == NULL)
355                 goto error;
356
357         stv6110x->i2c           = i2c;
358         stv6110x->config        = config;
359         stv6110x->devctl        = &stv6110x_ctl;
360
361         fe->tuner_priv          = stv6110x;
362         fe->ops.tuner_ops       = stv6110x_ops;
363
364         printk("%s: Attaching STV6110x \n", __func__);
365         return stv6110x->devctl;
366
367 error:
368         kfree(stv6110x);
369         return NULL;
370 }
371 EXPORT_SYMBOL(stv6110x_attach);
372
373 MODULE_AUTHOR("Manu Abraham");
374 MODULE_DESCRIPTION("STV6110x Silicon tuner");
375 MODULE_LICENSE("GPL");