2 Driver for ST STV0299 demodulator
4 Copyright (C) 2001-2002 Convergence Integrated Media GmbH
5 <ralph@convergence.de>,
6 <holger@convergence.de>,
12 Copyright (C) 2002 by Peter Schildmann <peter.schildmann@web.de>
17 Copyright (C) 2002 Felix Domke <tmbinc@elitedvb.net>
18 & Andreas Oberritter <obi@linuxtv.org>
21 Support for Samsung TBMU24112IMB used on Technisat SkyStar2 rev. 2.6B
23 Copyright (C) 2003 Vadim Catana <skystar@moldova.cc>:
25 Support for Philips SU1278 on Technotrend hardware
27 Copyright (C) 2004 Andrew de Quincey <adq_dvb@lidskialf.net>
29 This program is free software; you can redistribute it and/or modify
30 it under the terms of the GNU General Public License as published by
31 the Free Software Foundation; either version 2 of the License, or
32 (at your option) any later version.
34 This program is distributed in the hope that it will be useful,
35 but WITHOUT ANY WARRANTY; without even the implied warranty of
36 MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
37 GNU General Public License for more details.
39 You should have received a copy of the GNU General Public License
40 along with this program; if not, write to the Free Software
41 Foundation, Inc., 675 Mass Ave, Cambridge, MA 02139, USA.
45 #include <linux/init.h>
46 #include <linux/kernel.h>
47 #include <linux/module.h>
48 #include <linux/moduleparam.h>
49 #include <linux/string.h>
50 #include <linux/slab.h>
51 #include <asm/div64.h>
53 #include "dvb_frontend.h"
56 struct stv0299_state
{
57 struct i2c_adapter
* i2c
;
58 struct dvb_frontend_ops ops
;
59 const struct stv0299_config
* config
;
60 struct dvb_frontend frontend
;
65 fe_code_rate_t fec_inner
;
70 #define STATUS_UCBLOCKS 1
73 static int debug_legacy_dish_switch
;
74 #define dprintk(args...) \
76 if (debug) printk(KERN_DEBUG "stv0299: " args); \
80 static int stv0299_writeregI (struct stv0299_state
* state
, u8 reg
, u8 data
)
83 u8 buf
[] = { reg
, data
};
84 struct i2c_msg msg
= { .addr
= state
->config
->demod_address
, .flags
= 0, .buf
= buf
, .len
= 2 };
86 ret
= i2c_transfer (state
->i2c
, &msg
, 1);
89 dprintk("%s: writereg error (reg == 0x%02x, val == 0x%02x, "
90 "ret == %i)\n", __FUNCTION__
, reg
, data
, ret
);
92 return (ret
!= 1) ? -EREMOTEIO
: 0;
95 int stv0299_writereg (struct dvb_frontend
* fe
, u8 reg
, u8 data
)
97 struct stv0299_state
* state
= fe
->demodulator_priv
;
99 return stv0299_writeregI(state
, reg
, data
);
102 static u8
stv0299_readreg (struct stv0299_state
* state
, u8 reg
)
107 struct i2c_msg msg
[] = { { .addr
= state
->config
->demod_address
, .flags
= 0, .buf
= b0
, .len
= 1 },
108 { .addr
= state
->config
->demod_address
, .flags
= I2C_M_RD
, .buf
= b1
, .len
= 1 } };
110 ret
= i2c_transfer (state
->i2c
, msg
, 2);
113 dprintk("%s: readreg error (reg == 0x%02x, ret == %i)\n",
114 __FUNCTION__
, reg
, ret
);
119 static int stv0299_readregs (struct stv0299_state
* state
, u8 reg1
, u8
*b
, u8 len
)
122 struct i2c_msg msg
[] = { { .addr
= state
->config
->demod_address
, .flags
= 0, .buf
= ®1
, .len
= 1 },
123 { .addr
= state
->config
->demod_address
, .flags
= I2C_M_RD
, .buf
= b
, .len
= len
} };
125 ret
= i2c_transfer (state
->i2c
, msg
, 2);
128 dprintk("%s: readreg error (ret == %i)\n", __FUNCTION__
, ret
);
130 return ret
== 2 ? 0 : ret
;
133 static int stv0299_set_FEC (struct stv0299_state
* state
, fe_code_rate_t fec
)
135 dprintk ("%s\n", __FUNCTION__
);
140 return stv0299_writeregI (state
, 0x31, 0x1f);
144 return stv0299_writeregI (state
, 0x31, 0x01);
148 return stv0299_writeregI (state
, 0x31, 0x02);
152 return stv0299_writeregI (state
, 0x31, 0x04);
156 return stv0299_writeregI (state
, 0x31, 0x08);
160 return stv0299_writeregI (state
, 0x31, 0x10);
169 static fe_code_rate_t
stv0299_get_fec (struct stv0299_state
* state
)
171 static fe_code_rate_t fec_tab
[] = { FEC_2_3
, FEC_3_4
, FEC_5_6
,
175 dprintk ("%s\n", __FUNCTION__
);
177 index
= stv0299_readreg (state
, 0x1b);
183 return fec_tab
[index
];
186 static int stv0299_wait_diseqc_fifo (struct stv0299_state
* state
, int timeout
)
188 unsigned long start
= jiffies
;
190 dprintk ("%s\n", __FUNCTION__
);
192 while (stv0299_readreg(state
, 0x0a) & 1) {
193 if (jiffies
- start
> timeout
) {
194 dprintk ("%s: timeout!!\n", __FUNCTION__
);
203 static int stv0299_wait_diseqc_idle (struct stv0299_state
* state
, int timeout
)
205 unsigned long start
= jiffies
;
207 dprintk ("%s\n", __FUNCTION__
);
209 while ((stv0299_readreg(state
, 0x0a) & 3) != 2 ) {
210 if (jiffies
- start
> timeout
) {
211 dprintk ("%s: timeout!!\n", __FUNCTION__
);
220 static int stv0299_set_symbolrate (struct dvb_frontend
* fe
, u32 srate
)
222 struct stv0299_state
* state
= fe
->demodulator_priv
;
226 // check rate is within limits
227 if ((srate
< 1000000) || (srate
> 45000000)) return -EINVAL
;
229 // calculate value to program
231 big
+= (state
->config
->mclk
-1); // round correctly
232 do_div(big
, state
->config
->mclk
);
235 return state
->config
->set_symbol_rate(fe
, srate
, ratio
);
238 static int stv0299_get_symbolrate (struct stv0299_state
* state
)
240 u32 Mclk
= state
->config
->mclk
/ 4096L;
246 dprintk ("%s\n", __FUNCTION__
);
248 stv0299_readregs (state
, 0x1f, sfr
, 3);
249 stv0299_readregs (state
, 0x1a, &rtf
, 1);
251 srate
= (sfr
[0] << 8) | sfr
[1];
254 srate
+= (sfr
[2] >> 4) * Mclk
/ 256;
255 offset
= (s32
) rtf
* (srate
/ 4096L);
258 dprintk ("%s : srate = %i\n", __FUNCTION__
, srate
);
259 dprintk ("%s : ofset = %i\n", __FUNCTION__
, offset
);
270 static int stv0299_send_diseqc_msg (struct dvb_frontend
* fe
,
271 struct dvb_diseqc_master_cmd
*m
)
273 struct stv0299_state
* state
= fe
->demodulator_priv
;
277 dprintk ("%s\n", __FUNCTION__
);
279 if (stv0299_wait_diseqc_idle (state
, 100) < 0)
282 val
= stv0299_readreg (state
, 0x08);
284 if (stv0299_writeregI (state
, 0x08, (val
& ~0x7) | 0x6)) /* DiSEqC mode */
287 for (i
=0; i
<m
->msg_len
; i
++) {
288 if (stv0299_wait_diseqc_fifo (state
, 100) < 0)
291 if (stv0299_writeregI (state
, 0x09, m
->msg
[i
]))
295 if (stv0299_wait_diseqc_idle (state
, 100) < 0)
301 static int stv0299_send_diseqc_burst (struct dvb_frontend
* fe
, fe_sec_mini_cmd_t burst
)
303 struct stv0299_state
* state
= fe
->demodulator_priv
;
306 dprintk ("%s\n", __FUNCTION__
);
308 if (stv0299_wait_diseqc_idle (state
, 100) < 0)
311 val
= stv0299_readreg (state
, 0x08);
313 if (stv0299_writeregI (state
, 0x08, (val
& ~0x7) | 0x2)) /* burst mode */
316 if (stv0299_writeregI (state
, 0x09, burst
== SEC_MINI_A
? 0x00 : 0xff))
319 if (stv0299_wait_diseqc_idle (state
, 100) < 0)
322 if (stv0299_writeregI (state
, 0x08, val
))
328 static int stv0299_set_tone (struct dvb_frontend
* fe
, fe_sec_tone_mode_t tone
)
330 struct stv0299_state
* state
= fe
->demodulator_priv
;
333 if (stv0299_wait_diseqc_idle (state
, 100) < 0)
336 val
= stv0299_readreg (state
, 0x08);
340 return stv0299_writeregI (state
, 0x08, val
| 0x3);
343 return stv0299_writeregI (state
, 0x08, (val
& ~0x3) | 0x02);
350 static int stv0299_set_voltage (struct dvb_frontend
* fe
, fe_sec_voltage_t voltage
)
352 struct stv0299_state
* state
= fe
->demodulator_priv
;
356 dprintk("%s: %s\n", __FUNCTION__
,
357 voltage
== SEC_VOLTAGE_13
? "SEC_VOLTAGE_13" :
358 voltage
== SEC_VOLTAGE_18
? "SEC_VOLTAGE_18" : "??");
360 reg0x08
= stv0299_readreg (state
, 0x08);
361 reg0x0c
= stv0299_readreg (state
, 0x0c);
364 * H/V switching over OP0, OP1 and OP2 are LNB power enable bits
368 if (voltage
== SEC_VOLTAGE_OFF
) {
369 stv0299_writeregI (state
, 0x0c, 0x00); /* LNB power off! */
370 return stv0299_writeregI (state
, 0x08, 0x00); /* LNB power off! */
373 stv0299_writeregI (state
, 0x08, (reg0x08
& 0x3f) | (state
->config
->lock_output
<< 6));
377 if (state
->config
->volt13_op0_op1
== STV0299_VOLT13_OP0
) reg0x0c
|= 0x10;
378 else reg0x0c
|= 0x40;
380 return stv0299_writeregI(state
, 0x0c, reg0x0c
);
383 return stv0299_writeregI(state
, 0x0c, reg0x0c
| 0x50);
389 static inline s32
stv0299_calc_usec_delay (struct timeval lasttime
, struct timeval curtime
)
391 return ((curtime
.tv_usec
< lasttime
.tv_usec
) ?
392 1000000 - lasttime
.tv_usec
+ curtime
.tv_usec
:
393 curtime
.tv_usec
- lasttime
.tv_usec
);
396 static void stv0299_sleep_until (struct timeval
*waketime
, u32 add_usec
)
398 struct timeval lasttime
;
401 waketime
->tv_usec
+= add_usec
;
402 if (waketime
->tv_usec
>= 1000000) {
403 waketime
->tv_usec
-= 1000000;
407 do_gettimeofday (&lasttime
);
408 delta
= stv0299_calc_usec_delay (lasttime
, *waketime
);
410 msleep ((delta
- 1500) / 1000);
411 do_gettimeofday (&lasttime
);
412 newdelta
= stv0299_calc_usec_delay (lasttime
, *waketime
);
413 delta
= (newdelta
> delta
) ? 0 : newdelta
;
419 static int stv0299_send_legacy_dish_cmd (struct dvb_frontend
* fe
, u32 cmd
)
421 struct stv0299_state
* state
= fe
->demodulator_priv
;
427 struct timeval nexttime
;
428 struct timeval tv
[10];
430 reg0x08
= stv0299_readreg (state
, 0x08);
431 reg0x0c
= stv0299_readreg (state
, 0x0c);
433 stv0299_writeregI (state
, 0x08, (reg0x08
& 0x3f) | (state
->config
->lock_output
<< 6));
434 if (state
->config
->volt13_op0_op1
== STV0299_VOLT13_OP0
)
438 if (debug_legacy_dish_switch
)
439 printk ("%s switch command: 0x%04x\n",__FUNCTION__
, cmd
);
441 do_gettimeofday (&nexttime
);
442 if (debug_legacy_dish_switch
)
443 memcpy (&tv
[0], &nexttime
, sizeof (struct timeval
));
444 stv0299_writeregI (state
, 0x0c, reg0x0c
| 0x50); /* set LNB to 18V */
446 stv0299_sleep_until (&nexttime
, 32000);
448 for (i
=0; i
<9; i
++) {
449 if (debug_legacy_dish_switch
)
450 do_gettimeofday (&tv
[i
+1]);
451 if((cmd
& 0x01) != last
) {
452 /* set voltage to (last ? 13V : 18V) */
453 stv0299_writeregI (state
, 0x0c, reg0x0c
| (last
? lv_mask
: 0x50));
454 last
= (last
) ? 0 : 1;
460 stv0299_sleep_until (&nexttime
, 8000);
462 if (debug_legacy_dish_switch
) {
463 printk ("%s(%d): switch delay (should be 32k followed by all 8k\n",
464 __FUNCTION__
, fe
->dvb
->num
);
465 for (i
=1; i
< 10; i
++)
466 printk ("%d: %d\n", i
, stv0299_calc_usec_delay (tv
[i
-1] , tv
[i
]));
472 static int stv0299_init (struct dvb_frontend
* fe
)
474 struct stv0299_state
* state
= fe
->demodulator_priv
;
477 dprintk("stv0299: init chip\n");
479 for (i
=0; !(state
->config
->inittab
[i
] == 0xff && state
->config
->inittab
[i
+1] == 0xff); i
+=2)
480 stv0299_writeregI(state
, state
->config
->inittab
[i
], state
->config
->inittab
[i
+1]);
482 if (state
->config
->pll_init
) {
483 stv0299_writeregI(state
, 0x05, 0xb5); /* enable i2c repeater on stv0299 */
484 state
->config
->pll_init(fe
);
485 stv0299_writeregI(state
, 0x05, 0x35); /* disable i2c repeater on stv0299 */
491 static int stv0299_read_status(struct dvb_frontend
* fe
, fe_status_t
* status
)
493 struct stv0299_state
* state
= fe
->demodulator_priv
;
495 u8 signal
= 0xff - stv0299_readreg (state
, 0x18);
496 u8 sync
= stv0299_readreg (state
, 0x1b);
498 dprintk ("%s : FE_READ_STATUS : VSTATUS: 0x%02x\n", __FUNCTION__
, sync
);
502 *status
|= FE_HAS_SIGNAL
;
505 *status
|= FE_HAS_CARRIER
;
508 *status
|= FE_HAS_VITERBI
;
511 *status
|= FE_HAS_SYNC
;
513 if ((sync
& 0x98) == 0x98)
514 *status
|= FE_HAS_LOCK
;
519 static int stv0299_read_ber(struct dvb_frontend
* fe
, u32
* ber
)
521 struct stv0299_state
* state
= fe
->demodulator_priv
;
523 if (state
->errmode
!= STATUS_BER
) return 0;
524 *ber
= (stv0299_readreg (state
, 0x1d) << 8) | stv0299_readreg (state
, 0x1e);
529 static int stv0299_read_signal_strength(struct dvb_frontend
* fe
, u16
* strength
)
531 struct stv0299_state
* state
= fe
->demodulator_priv
;
533 s32 signal
= 0xffff - ((stv0299_readreg (state
, 0x18) << 8)
534 | stv0299_readreg (state
, 0x19));
536 dprintk ("%s : FE_READ_SIGNAL_STRENGTH : AGC2I: 0x%02x%02x, signal=0x%04x\n", __FUNCTION__
,
537 stv0299_readreg (state
, 0x18),
538 stv0299_readreg (state
, 0x19), (int) signal
);
540 signal
= signal
* 5 / 4;
541 *strength
= (signal
> 0xffff) ? 0xffff : (signal
< 0) ? 0 : signal
;
546 static int stv0299_read_snr(struct dvb_frontend
* fe
, u16
* snr
)
548 struct stv0299_state
* state
= fe
->demodulator_priv
;
550 s32 xsnr
= 0xffff - ((stv0299_readreg (state
, 0x24) << 8)
551 | stv0299_readreg (state
, 0x25));
552 xsnr
= 3 * (xsnr
- 0xa100);
553 *snr
= (xsnr
> 0xffff) ? 0xffff : (xsnr
< 0) ? 0 : xsnr
;
558 static int stv0299_read_ucblocks(struct dvb_frontend
* fe
, u32
* ucblocks
)
560 struct stv0299_state
* state
= fe
->demodulator_priv
;
562 if (state
->errmode
!= STATUS_UCBLOCKS
) *ucblocks
= 0;
563 else *ucblocks
= (stv0299_readreg (state
, 0x1d) << 8) | stv0299_readreg (state
, 0x1e);
568 static int stv0299_set_frontend(struct dvb_frontend
* fe
, struct dvb_frontend_parameters
* p
)
570 struct stv0299_state
* state
= fe
->demodulator_priv
;
573 dprintk ("%s : FE_SET_FRONTEND\n", __FUNCTION__
);
576 if (p
->inversion
== INVERSION_OFF
) invval
= 0;
577 else if (p
->inversion
== INVERSION_ON
) invval
= 1;
579 printk("stv0299 does not support auto-inversion\n");
582 if (state
->config
->invert
) invval
= (~invval
) & 1;
583 stv0299_writeregI(state
, 0x0c, (stv0299_readreg(state
, 0x0c) & 0xfe) | invval
);
585 if (state
->config
->enhanced_tuning
) {
586 /* check if we should do a finetune */
587 int frequency_delta
= p
->frequency
- state
->tuner_frequency
;
588 int minmax
= p
->u
.qpsk
.symbol_rate
/ 2000;
589 if (minmax
< 5000) minmax
= 5000;
591 if ((frequency_delta
> -minmax
) && (frequency_delta
< minmax
) && (frequency_delta
!= 0) &&
592 (state
->fec_inner
== p
->u
.qpsk
.fec_inner
) &&
593 (state
->symbol_rate
== p
->u
.qpsk
.symbol_rate
)) {
594 int Drot_freq
= (frequency_delta
<< 16) / (state
->config
->mclk
/ 1000);
596 // zap the derotator registers first
597 stv0299_writeregI(state
, 0x22, 0x00);
598 stv0299_writeregI(state
, 0x23, 0x00);
600 // now set them as we want
601 stv0299_writeregI(state
, 0x22, Drot_freq
>> 8);
602 stv0299_writeregI(state
, 0x23, Drot_freq
);
604 /* A "normal" tune is requested */
605 stv0299_writeregI(state
, 0x05, 0xb5); /* enable i2c repeater on stv0299 */
606 state
->config
->pll_set(fe
, p
);
607 stv0299_writeregI(state
, 0x05, 0x35); /* disable i2c repeater on stv0299 */
609 stv0299_writeregI(state
, 0x32, 0x80);
610 stv0299_writeregI(state
, 0x22, 0x00);
611 stv0299_writeregI(state
, 0x23, 0x00);
612 stv0299_writeregI(state
, 0x32, 0x19);
613 stv0299_set_symbolrate (fe
, p
->u
.qpsk
.symbol_rate
);
614 stv0299_set_FEC (state
, p
->u
.qpsk
.fec_inner
);
617 stv0299_writeregI(state
, 0x05, 0xb5); /* enable i2c repeater on stv0299 */
618 state
->config
->pll_set(fe
, p
);
619 stv0299_writeregI(state
, 0x05, 0x35); /* disable i2c repeater on stv0299 */
621 stv0299_set_FEC (state
, p
->u
.qpsk
.fec_inner
);
622 stv0299_set_symbolrate (fe
, p
->u
.qpsk
.symbol_rate
);
623 stv0299_writeregI(state
, 0x22, 0x00);
624 stv0299_writeregI(state
, 0x23, 0x00);
625 stv0299_readreg (state
, 0x23);
626 stv0299_writeregI(state
, 0x12, 0xb9);
629 state
->tuner_frequency
= p
->frequency
;
630 state
->fec_inner
= p
->u
.qpsk
.fec_inner
;
631 state
->symbol_rate
= p
->u
.qpsk
.symbol_rate
;
636 static int stv0299_get_frontend(struct dvb_frontend
* fe
, struct dvb_frontend_parameters
* p
)
638 struct stv0299_state
* state
= fe
->demodulator_priv
;
642 derot_freq
= (s32
)(s16
) ((stv0299_readreg (state
, 0x22) << 8)
643 | stv0299_readreg (state
, 0x23));
645 derot_freq
*= (state
->config
->mclk
>> 16);
649 p
->frequency
+= derot_freq
;
651 invval
= stv0299_readreg (state
, 0x0c) & 1;
652 if (state
->config
->invert
) invval
= (~invval
) & 1;
653 p
->inversion
= invval
? INVERSION_ON
: INVERSION_OFF
;
655 p
->u
.qpsk
.fec_inner
= stv0299_get_fec (state
);
656 p
->u
.qpsk
.symbol_rate
= stv0299_get_symbolrate (state
);
661 static int stv0299_sleep(struct dvb_frontend
* fe
)
663 struct stv0299_state
* state
= fe
->demodulator_priv
;
665 stv0299_writeregI(state
, 0x02, 0x80);
666 state
->initialised
= 0;
671 static int stv0299_get_tune_settings(struct dvb_frontend
* fe
, struct dvb_frontend_tune_settings
* fesettings
)
673 struct stv0299_state
* state
= fe
->demodulator_priv
;
675 fesettings
->min_delay_ms
= state
->config
->min_delay_ms
;
676 if (fesettings
->parameters
.u
.qpsk
.symbol_rate
< 10000000) {
677 fesettings
->step_size
= fesettings
->parameters
.u
.qpsk
.symbol_rate
/ 32000;
678 fesettings
->max_drift
= 5000;
680 fesettings
->step_size
= fesettings
->parameters
.u
.qpsk
.symbol_rate
/ 16000;
681 fesettings
->max_drift
= fesettings
->parameters
.u
.qpsk
.symbol_rate
/ 2000;
686 static void stv0299_release(struct dvb_frontend
* fe
)
688 struct stv0299_state
* state
= fe
->demodulator_priv
;
692 static struct dvb_frontend_ops stv0299_ops
;
694 struct dvb_frontend
* stv0299_attach(const struct stv0299_config
* config
,
695 struct i2c_adapter
* i2c
)
697 struct stv0299_state
* state
= NULL
;
700 /* allocate memory for the internal state */
701 state
= kmalloc(sizeof(struct stv0299_state
), GFP_KERNEL
);
702 if (state
== NULL
) goto error
;
704 /* setup the state */
705 state
->config
= config
;
707 memcpy(&state
->ops
, &stv0299_ops
, sizeof(struct dvb_frontend_ops
));
708 state
->initialised
= 0;
709 state
->tuner_frequency
= 0;
710 state
->symbol_rate
= 0;
711 state
->fec_inner
= 0;
712 state
->errmode
= STATUS_BER
;
714 /* check if the demod is there */
715 stv0299_writeregI(state
, 0x02, 0x34); /* standby off */
717 id
= stv0299_readreg(state
, 0x00);
719 /* register 0x00 contains 0xa1 for STV0299 and STV0299B */
720 /* register 0x00 might contain 0x80 when returning from standby */
721 if (id
!= 0xa1 && id
!= 0x80) goto error
;
723 /* create dvb_frontend */
724 state
->frontend
.ops
= &state
->ops
;
725 state
->frontend
.demodulator_priv
= state
;
726 return &state
->frontend
;
733 static struct dvb_frontend_ops stv0299_ops
= {
736 .name
= "ST STV0299 DVB-S",
738 .frequency_min
= 950000,
739 .frequency_max
= 2150000,
740 .frequency_stepsize
= 125, /* kHz for QPSK frontends */
741 .frequency_tolerance
= 0,
742 .symbol_rate_min
= 1000000,
743 .symbol_rate_max
= 45000000,
744 .symbol_rate_tolerance
= 500, /* ppm */
745 .caps
= FE_CAN_FEC_1_2
| FE_CAN_FEC_2_3
| FE_CAN_FEC_3_4
|
746 FE_CAN_FEC_5_6
| FE_CAN_FEC_7_8
|
751 .release
= stv0299_release
,
753 .init
= stv0299_init
,
754 .sleep
= stv0299_sleep
,
756 .set_frontend
= stv0299_set_frontend
,
757 .get_frontend
= stv0299_get_frontend
,
758 .get_tune_settings
= stv0299_get_tune_settings
,
760 .read_status
= stv0299_read_status
,
761 .read_ber
= stv0299_read_ber
,
762 .read_signal_strength
= stv0299_read_signal_strength
,
763 .read_snr
= stv0299_read_snr
,
764 .read_ucblocks
= stv0299_read_ucblocks
,
766 .diseqc_send_master_cmd
= stv0299_send_diseqc_msg
,
767 .diseqc_send_burst
= stv0299_send_diseqc_burst
,
768 .set_tone
= stv0299_set_tone
,
769 .set_voltage
= stv0299_set_voltage
,
770 .dishnetwork_send_legacy_command
= stv0299_send_legacy_dish_cmd
,
773 module_param(debug_legacy_dish_switch
, int, 0444);
774 MODULE_PARM_DESC(debug_legacy_dish_switch
, "Enable timing analysis for Dish Network legacy switches");
776 module_param(debug
, int, 0644);
777 MODULE_PARM_DESC(debug
, "Turn on/off frontend debugging (default:off).");
779 MODULE_DESCRIPTION("ST STV0299 DVB Demodulator driver");
780 MODULE_AUTHOR("Ralph Metzler, Holger Waechtler, Peter Schildmann, Felix Domke, "
781 "Andreas Oberritter, Andrew de Quincey, Kenneth Aafløy");
782 MODULE_LICENSE("GPL");
784 EXPORT_SYMBOL(stv0299_writereg
);
785 EXPORT_SYMBOL(stv0299_attach
);