1 // SPDX-License-Identifier: GPL-2.0-only
2 /* DVB USB framework compliant Linux driver for the
3 * DVBWorld DVB-S 2101, 2102, DVB-S2 2104, DVB-C 3101,
4 * TeVii S421, S480, S482, S600, S630, S632, S650, S660, S662,
6 * Geniatech SU3000, T220,
8 * Terratec Cinergy S2 cards
9 * Copyright (C) 2008-2012 Igor M. Liplianin (liplianin@me.by)
11 * see Documentation/media/dvb-drivers/dvb-usb.rst for more information
13 #include <media/dvb-usb-ids.h>
30 #include "stb6100_proc.h"
31 #include "m88rs2000.h"
34 #include "m88ds3103.h"
36 /* Max transfer size done by I2C transfer functions */
37 #define MAX_XFER_SIZE 64
40 #define DW210X_READ_MSG 0
41 #define DW210X_WRITE_MSG 1
43 #define REG_1F_SYMBOLRATE_BYTE0 0x1f
44 #define REG_20_SYMBOLRATE_BYTE1 0x20
45 #define REG_21_SYMBOLRATE_BYTE2 0x21
47 #define DW2102_VOLTAGE_CTRL (0x1800)
48 #define SU3000_STREAM_CTRL (0x1900)
49 #define DW2102_RC_QUERY (0x1a00)
50 #define DW2102_LED_CTRL (0x1b00)
52 #define DW2101_FIRMWARE "dvb-usb-dw2101.fw"
53 #define DW2102_FIRMWARE "dvb-usb-dw2102.fw"
54 #define DW2104_FIRMWARE "dvb-usb-dw2104.fw"
55 #define DW3101_FIRMWARE "dvb-usb-dw3101.fw"
56 #define S630_FIRMWARE "dvb-usb-s630.fw"
57 #define S660_FIRMWARE "dvb-usb-s660.fw"
58 #define P1100_FIRMWARE "dvb-usb-p1100.fw"
59 #define P7500_FIRMWARE "dvb-usb-p7500.fw"
61 #define err_str "did not find the firmware file '%s'. You can use <kernel_dir>/scripts/get_dvb_firmware to get the firmware"
66 u8 data
[MAX_XFER_SIZE
+ 4];
67 struct i2c_client
*i2c_client_demod
;
68 struct i2c_client
*i2c_client_tuner
;
70 /* fe hook functions*/
71 int (*old_set_voltage
)(struct dvb_frontend
*f
, enum fe_sec_voltage v
);
72 int (*fe_read_status
)(struct dvb_frontend
*fe
,
73 enum fe_status
*status
);
77 static int dvb_usb_dw2102_debug
;
78 module_param_named(debug
, dvb_usb_dw2102_debug
, int, 0644);
79 MODULE_PARM_DESC(debug
, "set debugging level (1=info 2=xfer 4=rc(or-able))."
80 DVB_USB_DEBUG_STATUS
);
83 static int demod_probe
= 1;
84 module_param_named(demod
, demod_probe
, int, 0644);
85 MODULE_PARM_DESC(demod
, "demod to probe (1=cx24116 2=stv0903+stv6110 4=stv0903+stb6100(or-able)).");
87 DVB_DEFINE_MOD_OPT_ADAPTER_NR(adapter_nr
);
89 static int dw210x_op_rw(struct usb_device
*dev
, u8 request
, u16 value
,
90 u16 index
, u8
* data
, u16 len
, int flags
)
94 unsigned int pipe
= (flags
== DW210X_READ_MSG
) ?
95 usb_rcvctrlpipe(dev
, 0) : usb_sndctrlpipe(dev
, 0);
96 u8 request_type
= (flags
== DW210X_READ_MSG
) ? USB_DIR_IN
: USB_DIR_OUT
;
98 u8buf
= kmalloc(len
, GFP_KERNEL
);
103 if (flags
== DW210X_WRITE_MSG
)
104 memcpy(u8buf
, data
, len
);
105 ret
= usb_control_msg(dev
, pipe
, request
, request_type
| USB_TYPE_VENDOR
,
106 value
, index
, u8buf
, len
, 2000);
108 if (flags
== DW210X_READ_MSG
)
109 memcpy(data
, u8buf
, len
);
116 static int dw2102_i2c_transfer(struct i2c_adapter
*adap
, struct i2c_msg msg
[],
119 struct dvb_usb_device
*d
= i2c_get_adapdata(adap
);
121 u8 buf6
[] = {0x2c, 0x05, 0xc0, 0, 0, 0, 0};
126 if (mutex_lock_interruptible(&d
->i2c_mutex
) < 0)
131 /* read stv0299 register */
132 value
= msg
[0].buf
[0];/* register */
133 for (i
= 0; i
< msg
[1].len
; i
++) {
134 dw210x_op_rw(d
->udev
, 0xb5, value
+ i
, 0,
135 buf6
, 2, DW210X_READ_MSG
);
136 msg
[1].buf
[i
] = buf6
[0];
140 switch (msg
[0].addr
) {
142 /* write to stv0299 register */
144 buf6
[1] = msg
[0].buf
[0];
145 buf6
[2] = msg
[0].buf
[1];
146 dw210x_op_rw(d
->udev
, 0xb2, 0, 0,
147 buf6
, 3, DW210X_WRITE_MSG
);
150 if (msg
[0].flags
== 0) {
151 /* write to tuner pll */
155 buf6
[3] = msg
[0].buf
[0];
156 buf6
[4] = msg
[0].buf
[1];
157 buf6
[5] = msg
[0].buf
[2];
158 buf6
[6] = msg
[0].buf
[3];
159 dw210x_op_rw(d
->udev
, 0xb2, 0, 0,
160 buf6
, 7, DW210X_WRITE_MSG
);
162 /* read from tuner */
163 dw210x_op_rw(d
->udev
, 0xb5, 0, 0,
164 buf6
, 1, DW210X_READ_MSG
);
165 msg
[0].buf
[0] = buf6
[0];
168 case (DW2102_RC_QUERY
):
169 dw210x_op_rw(d
->udev
, 0xb8, 0, 0,
170 buf6
, 2, DW210X_READ_MSG
);
171 msg
[0].buf
[0] = buf6
[0];
172 msg
[0].buf
[1] = buf6
[1];
174 case (DW2102_VOLTAGE_CTRL
):
176 buf6
[1] = msg
[0].buf
[0];
177 dw210x_op_rw(d
->udev
, 0xb2, 0, 0,
178 buf6
, 2, DW210X_WRITE_MSG
);
185 mutex_unlock(&d
->i2c_mutex
);
189 static int dw2102_serit_i2c_transfer(struct i2c_adapter
*adap
,
190 struct i2c_msg msg
[], int num
)
192 struct dvb_usb_device
*d
= i2c_get_adapdata(adap
);
193 u8 buf6
[] = {0, 0, 0, 0, 0, 0, 0};
197 if (mutex_lock_interruptible(&d
->i2c_mutex
) < 0)
202 if (msg
[0].len
!= 1) {
203 warn("i2c rd: len=%d is not 1!\n",
209 if (2 + msg
[1].len
> sizeof(buf6
)) {
210 warn("i2c rd: len=%d is too big!\n",
216 /* read si2109 register by number */
217 buf6
[0] = msg
[0].addr
<< 1;
218 buf6
[1] = msg
[0].len
;
219 buf6
[2] = msg
[0].buf
[0];
220 dw210x_op_rw(d
->udev
, 0xc2, 0, 0,
221 buf6
, msg
[0].len
+ 2, DW210X_WRITE_MSG
);
222 /* read si2109 register */
223 dw210x_op_rw(d
->udev
, 0xc3, 0xd0, 0,
224 buf6
, msg
[1].len
+ 2, DW210X_READ_MSG
);
225 memcpy(msg
[1].buf
, buf6
+ 2, msg
[1].len
);
229 switch (msg
[0].addr
) {
231 if (2 + msg
[0].len
> sizeof(buf6
)) {
232 warn("i2c wr: len=%d is too big!\n",
238 /* write to si2109 register */
239 buf6
[0] = msg
[0].addr
<< 1;
240 buf6
[1] = msg
[0].len
;
241 memcpy(buf6
+ 2, msg
[0].buf
, msg
[0].len
);
242 dw210x_op_rw(d
->udev
, 0xc2, 0, 0, buf6
,
243 msg
[0].len
+ 2, DW210X_WRITE_MSG
);
245 case(DW2102_RC_QUERY
):
246 dw210x_op_rw(d
->udev
, 0xb8, 0, 0,
247 buf6
, 2, DW210X_READ_MSG
);
248 msg
[0].buf
[0] = buf6
[0];
249 msg
[0].buf
[1] = buf6
[1];
251 case(DW2102_VOLTAGE_CTRL
):
253 buf6
[1] = msg
[0].buf
[0];
254 dw210x_op_rw(d
->udev
, 0xb2, 0, 0,
255 buf6
, 2, DW210X_WRITE_MSG
);
261 mutex_unlock(&d
->i2c_mutex
);
265 static int dw2102_earda_i2c_transfer(struct i2c_adapter
*adap
, struct i2c_msg msg
[], int num
)
267 struct dvb_usb_device
*d
= i2c_get_adapdata(adap
);
272 if (mutex_lock_interruptible(&d
->i2c_mutex
) < 0)
278 /* first write first register number */
279 u8 ibuf
[MAX_XFER_SIZE
], obuf
[3];
281 if (2 + msg
[0].len
!= sizeof(obuf
)) {
282 warn("i2c rd: len=%d is not 1!\n",
288 if (2 + msg
[1].len
> sizeof(ibuf
)) {
289 warn("i2c rd: len=%d is too big!\n",
295 obuf
[0] = msg
[0].addr
<< 1;
296 obuf
[1] = msg
[0].len
;
297 obuf
[2] = msg
[0].buf
[0];
298 dw210x_op_rw(d
->udev
, 0xc2, 0, 0,
299 obuf
, msg
[0].len
+ 2, DW210X_WRITE_MSG
);
300 /* second read registers */
301 dw210x_op_rw(d
->udev
, 0xc3, 0xd1 , 0,
302 ibuf
, msg
[1].len
+ 2, DW210X_READ_MSG
);
303 memcpy(msg
[1].buf
, ibuf
+ 2, msg
[1].len
);
308 switch (msg
[0].addr
) {
310 /* write to register */
311 u8 obuf
[MAX_XFER_SIZE
];
313 if (2 + msg
[0].len
> sizeof(obuf
)) {
314 warn("i2c wr: len=%d is too big!\n",
320 obuf
[0] = msg
[0].addr
<< 1;
321 obuf
[1] = msg
[0].len
;
322 memcpy(obuf
+ 2, msg
[0].buf
, msg
[0].len
);
323 dw210x_op_rw(d
->udev
, 0xc2, 0, 0,
324 obuf
, msg
[0].len
+ 2, DW210X_WRITE_MSG
);
329 u8 obuf
[MAX_XFER_SIZE
];
331 if (2 + msg
[0].len
> sizeof(obuf
)) {
332 warn("i2c wr: len=%d is too big!\n",
338 obuf
[0] = msg
[0].addr
<< 1;
339 obuf
[1] = msg
[0].len
;
340 memcpy(obuf
+ 2, msg
[0].buf
, msg
[0].len
);
341 dw210x_op_rw(d
->udev
, 0xc2, 0, 0,
342 obuf
, msg
[0].len
+ 2, DW210X_WRITE_MSG
);
345 case(DW2102_RC_QUERY
): {
347 dw210x_op_rw(d
->udev
, 0xb8, 0, 0,
348 ibuf
, 2, DW210X_READ_MSG
);
349 memcpy(msg
[0].buf
, ibuf
, 2);
352 case(DW2102_VOLTAGE_CTRL
): {
355 obuf
[1] = msg
[0].buf
[0];
356 dw210x_op_rw(d
->udev
, 0xb2, 0, 0,
357 obuf
, 2, DW210X_WRITE_MSG
);
367 mutex_unlock(&d
->i2c_mutex
);
371 static int dw2104_i2c_transfer(struct i2c_adapter
*adap
, struct i2c_msg msg
[], int num
)
373 struct dvb_usb_device
*d
= i2c_get_adapdata(adap
);
378 if (mutex_lock_interruptible(&d
->i2c_mutex
) < 0)
381 for (j
= 0; j
< num
; j
++) {
382 switch (msg
[j
].addr
) {
383 case(DW2102_RC_QUERY
): {
385 dw210x_op_rw(d
->udev
, 0xb8, 0, 0,
386 ibuf
, 2, DW210X_READ_MSG
);
387 memcpy(msg
[j
].buf
, ibuf
, 2);
390 case(DW2102_VOLTAGE_CTRL
): {
393 obuf
[1] = msg
[j
].buf
[0];
394 dw210x_op_rw(d
->udev
, 0xb2, 0, 0,
395 obuf
, 2, DW210X_WRITE_MSG
);
400 case 0x68: ds3000, stv0903
401 case 0x60: ts2020, stv6110, stb6100 */
403 if (msg
[j
].flags
== I2C_M_RD
) {
405 u8 ibuf
[MAX_XFER_SIZE
];
407 if (2 + msg
[j
].len
> sizeof(ibuf
)) {
408 warn("i2c rd: len=%d is too big!\n",
414 dw210x_op_rw(d
->udev
, 0xc3,
415 (msg
[j
].addr
<< 1) + 1, 0,
416 ibuf
, msg
[j
].len
+ 2,
418 memcpy(msg
[j
].buf
, ibuf
+ 2, msg
[j
].len
);
420 } else if (((msg
[j
].buf
[0] == 0xb0) &&
421 (msg
[j
].addr
== 0x68)) ||
422 ((msg
[j
].buf
[0] == 0xf7) &&
423 (msg
[j
].addr
== 0x55))) {
426 obuf
[0] = msg
[j
].addr
<< 1;
427 obuf
[1] = (msg
[j
].len
> 15 ? 17 : msg
[j
].len
);
428 obuf
[2] = msg
[j
].buf
[0];
429 len
= msg
[j
].len
- 1;
432 memcpy(obuf
+ 3, msg
[j
].buf
+ i
,
433 (len
> 16 ? 16 : len
));
434 dw210x_op_rw(d
->udev
, 0xc2, 0, 0,
435 obuf
, (len
> 16 ? 16 : len
) + 3,
441 /* write registers */
442 u8 obuf
[MAX_XFER_SIZE
];
444 if (2 + msg
[j
].len
> sizeof(obuf
)) {
445 warn("i2c wr: len=%d is too big!\n",
451 obuf
[0] = msg
[j
].addr
<< 1;
452 obuf
[1] = msg
[j
].len
;
453 memcpy(obuf
+ 2, msg
[j
].buf
, msg
[j
].len
);
454 dw210x_op_rw(d
->udev
, 0xc2, 0, 0,
455 obuf
, msg
[j
].len
+ 2,
466 mutex_unlock(&d
->i2c_mutex
);
470 static int dw3101_i2c_transfer(struct i2c_adapter
*adap
, struct i2c_msg msg
[],
473 struct dvb_usb_device
*d
= i2c_get_adapdata(adap
);
479 if (mutex_lock_interruptible(&d
->i2c_mutex
) < 0)
485 /* first write first register number */
486 u8 ibuf
[MAX_XFER_SIZE
], obuf
[3];
488 if (2 + msg
[0].len
!= sizeof(obuf
)) {
489 warn("i2c rd: len=%d is not 1!\n",
494 if (2 + msg
[1].len
> sizeof(ibuf
)) {
495 warn("i2c rd: len=%d is too big!\n",
500 obuf
[0] = msg
[0].addr
<< 1;
501 obuf
[1] = msg
[0].len
;
502 obuf
[2] = msg
[0].buf
[0];
503 dw210x_op_rw(d
->udev
, 0xc2, 0, 0,
504 obuf
, msg
[0].len
+ 2, DW210X_WRITE_MSG
);
505 /* second read registers */
506 dw210x_op_rw(d
->udev
, 0xc3, 0x19 , 0,
507 ibuf
, msg
[1].len
+ 2, DW210X_READ_MSG
);
508 memcpy(msg
[1].buf
, ibuf
+ 2, msg
[1].len
);
513 switch (msg
[0].addr
) {
516 /* write to register */
517 u8 obuf
[MAX_XFER_SIZE
];
519 if (2 + msg
[0].len
> sizeof(obuf
)) {
520 warn("i2c wr: len=%d is too big!\n",
525 obuf
[0] = msg
[0].addr
<< 1;
526 obuf
[1] = msg
[0].len
;
527 memcpy(obuf
+ 2, msg
[0].buf
, msg
[0].len
);
528 dw210x_op_rw(d
->udev
, 0xc2, 0, 0,
529 obuf
, msg
[0].len
+ 2, DW210X_WRITE_MSG
);
532 case(DW2102_RC_QUERY
): {
534 dw210x_op_rw(d
->udev
, 0xb8, 0, 0,
535 ibuf
, 2, DW210X_READ_MSG
);
536 memcpy(msg
[0].buf
, ibuf
, 2);
544 for (i
= 0; i
< num
; i
++) {
545 deb_xfer("%02x:%02x: %s ", i
, msg
[i
].addr
,
546 msg
[i
].flags
== 0 ? ">>>" : "<<<");
547 debug_dump(msg
[i
].buf
, msg
[i
].len
, deb_xfer
);
552 mutex_unlock(&d
->i2c_mutex
);
556 static int s6x0_i2c_transfer(struct i2c_adapter
*adap
, struct i2c_msg msg
[],
559 struct dvb_usb_device
*d
= i2c_get_adapdata(adap
);
560 struct usb_device
*udev
;
566 if (mutex_lock_interruptible(&d
->i2c_mutex
) < 0)
569 for (j
= 0; j
< num
; j
++) {
570 switch (msg
[j
].addr
) {
571 case (DW2102_RC_QUERY
): {
573 dw210x_op_rw(d
->udev
, 0xb8, 0, 0,
574 ibuf
, 5, DW210X_READ_MSG
);
575 memcpy(msg
[j
].buf
, ibuf
+ 3, 2);
578 case (DW2102_VOLTAGE_CTRL
): {
582 obuf
[1] = msg
[j
].buf
[1];/* off-on */
583 dw210x_op_rw(d
->udev
, 0x8a, 0, 0,
584 obuf
, 2, DW210X_WRITE_MSG
);
586 obuf
[1] = msg
[j
].buf
[0];/* 13v-18v */
587 dw210x_op_rw(d
->udev
, 0x8a, 0, 0,
588 obuf
, 2, DW210X_WRITE_MSG
);
591 case (DW2102_LED_CTRL
): {
595 obuf
[1] = msg
[j
].buf
[0];
596 dw210x_op_rw(d
->udev
, 0x8a, 0, 0,
597 obuf
, 2, DW210X_WRITE_MSG
);
602 case 0x68: ds3000, stv0903, rs2000
603 case 0x60: ts2020, stv6110, stb6100
606 if (msg
[j
].flags
== I2C_M_RD
) {
608 u8 ibuf
[MAX_XFER_SIZE
];
610 if (msg
[j
].len
> sizeof(ibuf
)) {
611 warn("i2c rd: len=%d is too big!\n",
617 dw210x_op_rw(d
->udev
, 0x91, 0, 0,
620 memcpy(msg
[j
].buf
, ibuf
, msg
[j
].len
);
622 } else if ((msg
[j
].buf
[0] == 0xb0) &&
623 (msg
[j
].addr
== 0x68)) {
626 obuf
[0] = (msg
[j
].len
> 16 ?
627 18 : msg
[j
].len
+ 1);
628 obuf
[1] = msg
[j
].addr
<< 1;
629 obuf
[2] = msg
[j
].buf
[0];
630 len
= msg
[j
].len
- 1;
633 memcpy(obuf
+ 3, msg
[j
].buf
+ i
,
634 (len
> 16 ? 16 : len
));
635 dw210x_op_rw(d
->udev
, 0x80, 0, 0,
636 obuf
, (len
> 16 ? 16 : len
) + 3,
641 } else if (j
< (num
- 1)) {
642 /* write register addr before read */
643 u8 obuf
[MAX_XFER_SIZE
];
645 if (2 + msg
[j
].len
> sizeof(obuf
)) {
646 warn("i2c wr: len=%d is too big!\n",
652 obuf
[0] = msg
[j
+ 1].len
;
653 obuf
[1] = (msg
[j
].addr
<< 1);
654 memcpy(obuf
+ 2, msg
[j
].buf
, msg
[j
].len
);
655 dw210x_op_rw(d
->udev
,
656 le16_to_cpu(udev
->descriptor
.idProduct
) ==
657 0x7500 ? 0x92 : 0x90, 0, 0,
658 obuf
, msg
[j
].len
+ 2,
662 /* write registers */
663 u8 obuf
[MAX_XFER_SIZE
];
665 if (2 + msg
[j
].len
> sizeof(obuf
)) {
666 warn("i2c wr: len=%d is too big!\n",
671 obuf
[0] = msg
[j
].len
+ 1;
672 obuf
[1] = (msg
[j
].addr
<< 1);
673 memcpy(obuf
+ 2, msg
[j
].buf
, msg
[j
].len
);
674 dw210x_op_rw(d
->udev
, 0x80, 0, 0,
675 obuf
, msg
[j
].len
+ 2,
686 mutex_unlock(&d
->i2c_mutex
);
690 static int su3000_i2c_transfer(struct i2c_adapter
*adap
, struct i2c_msg msg
[],
693 struct dvb_usb_device
*d
= i2c_get_adapdata(adap
);
694 struct dw2102_state
*state
;
701 if (mutex_lock_interruptible(&d
->i2c_mutex
) < 0)
703 if (mutex_lock_interruptible(&d
->data_mutex
) < 0) {
704 mutex_unlock(&d
->i2c_mutex
);
710 switch (msg
[0].addr
) {
711 case SU3000_STREAM_CTRL
:
712 state
->data
[0] = msg
[0].buf
[0] + 0x36;
715 if (dvb_usb_generic_rw(d
, state
->data
, 3,
716 state
->data
, 0, 0) < 0)
717 err("i2c transfer failed.");
719 case DW2102_RC_QUERY
:
720 state
->data
[0] = 0x10;
721 if (dvb_usb_generic_rw(d
, state
->data
, 1,
722 state
->data
, 2, 0) < 0)
723 err("i2c transfer failed.");
724 msg
[0].buf
[1] = state
->data
[0];
725 msg
[0].buf
[0] = state
->data
[1];
728 if (3 + msg
[0].len
> sizeof(state
->data
)) {
729 warn("i2c wr: len=%d is too big!\n",
735 /* always i2c write*/
736 state
->data
[0] = 0x08;
737 state
->data
[1] = msg
[0].addr
;
738 state
->data
[2] = msg
[0].len
;
740 memcpy(&state
->data
[3], msg
[0].buf
, msg
[0].len
);
742 if (dvb_usb_generic_rw(d
, state
->data
, msg
[0].len
+ 3,
743 state
->data
, 1, 0) < 0)
744 err("i2c transfer failed.");
749 /* always i2c read */
750 if (4 + msg
[0].len
> sizeof(state
->data
)) {
751 warn("i2c rd: len=%d is too big!\n",
756 if (1 + msg
[1].len
> sizeof(state
->data
)) {
757 warn("i2c rd: len=%d is too big!\n",
763 state
->data
[0] = 0x09;
764 state
->data
[1] = msg
[0].len
;
765 state
->data
[2] = msg
[1].len
;
766 state
->data
[3] = msg
[0].addr
;
767 memcpy(&state
->data
[4], msg
[0].buf
, msg
[0].len
);
769 if (dvb_usb_generic_rw(d
, state
->data
, msg
[0].len
+ 4,
770 state
->data
, msg
[1].len
+ 1, 0) < 0)
771 err("i2c transfer failed.");
773 memcpy(msg
[1].buf
, &state
->data
[1], msg
[1].len
);
776 warn("more than 2 i2c messages at a time is not handled yet.");
779 mutex_unlock(&d
->data_mutex
);
780 mutex_unlock(&d
->i2c_mutex
);
784 static u32
dw210x_i2c_func(struct i2c_adapter
*adapter
)
789 static struct i2c_algorithm dw2102_i2c_algo
= {
790 .master_xfer
= dw2102_i2c_transfer
,
791 .functionality
= dw210x_i2c_func
,
794 static struct i2c_algorithm dw2102_serit_i2c_algo
= {
795 .master_xfer
= dw2102_serit_i2c_transfer
,
796 .functionality
= dw210x_i2c_func
,
799 static struct i2c_algorithm dw2102_earda_i2c_algo
= {
800 .master_xfer
= dw2102_earda_i2c_transfer
,
801 .functionality
= dw210x_i2c_func
,
804 static struct i2c_algorithm dw2104_i2c_algo
= {
805 .master_xfer
= dw2104_i2c_transfer
,
806 .functionality
= dw210x_i2c_func
,
809 static struct i2c_algorithm dw3101_i2c_algo
= {
810 .master_xfer
= dw3101_i2c_transfer
,
811 .functionality
= dw210x_i2c_func
,
814 static struct i2c_algorithm s6x0_i2c_algo
= {
815 .master_xfer
= s6x0_i2c_transfer
,
816 .functionality
= dw210x_i2c_func
,
819 static struct i2c_algorithm su3000_i2c_algo
= {
820 .master_xfer
= su3000_i2c_transfer
,
821 .functionality
= dw210x_i2c_func
,
824 static int dw210x_read_mac_address(struct dvb_usb_device
*d
, u8 mac
[6])
828 u8 eeprom
[256], eepromline
[16];
830 for (i
= 0; i
< 256; i
++) {
831 if (dw210x_op_rw(d
->udev
, 0xb6, 0xa0 , i
, ibuf
, 2, DW210X_READ_MSG
) < 0) {
832 err("read eeprom failed.");
835 eepromline
[i
%16] = ibuf
[0];
838 if ((i
% 16) == 15) {
839 deb_xfer("%02x: ", i
- 15);
840 debug_dump(eepromline
, 16, deb_xfer
);
844 memcpy(mac
, eeprom
+ 8, 6);
848 static int s6x0_read_mac_address(struct dvb_usb_device
*d
, u8 mac
[6])
851 u8 ibuf
[] = { 0 }, obuf
[] = { 0 };
852 u8 eeprom
[256], eepromline
[16];
853 struct i2c_msg msg
[] = {
867 for (i
= 0; i
< 256; i
++) {
869 ret
= s6x0_i2c_transfer(&d
->i2c_adap
, msg
, 2);
871 err("read eeprom failed.");
874 eepromline
[i
% 16] = ibuf
[0];
878 if ((i
% 16) == 15) {
879 deb_xfer("%02x: ", i
- 15);
880 debug_dump(eepromline
, 16, deb_xfer
);
884 memcpy(mac
, eeprom
+ 16, 6);
888 static int su3000_streaming_ctrl(struct dvb_usb_adapter
*adap
, int onoff
)
890 static u8 command_start
[] = {0x00};
891 static u8 command_stop
[] = {0x01};
892 struct i2c_msg msg
= {
893 .addr
= SU3000_STREAM_CTRL
,
895 .buf
= onoff
? command_start
: command_stop
,
899 i2c_transfer(&adap
->dev
->i2c_adap
, &msg
, 1);
904 static int su3000_power_ctrl(struct dvb_usb_device
*d
, int i
)
906 struct dw2102_state
*state
= (struct dw2102_state
*)d
->priv
;
909 info("%s: %d, initialized %d", __func__
, i
, state
->initialized
);
911 if (i
&& !state
->initialized
) {
912 mutex_lock(&d
->data_mutex
);
914 state
->data
[0] = 0xde;
917 state
->initialized
= 1;
919 ret
= dvb_usb_generic_rw(d
, state
->data
, 2, NULL
, 0, 0);
920 mutex_unlock(&d
->data_mutex
);
926 static int su3000_read_mac_address(struct dvb_usb_device
*d
, u8 mac
[6])
929 u8 obuf
[] = { 0x1f, 0xf0 };
931 struct i2c_msg msg
[] = {
946 for (i
= 0; i
< 6; i
++) {
948 if (i2c_transfer(&d
->i2c_adap
, msg
, 2) != 2)
957 static int su3000_identify_state(struct usb_device
*udev
,
958 struct dvb_usb_device_properties
*props
,
959 struct dvb_usb_device_description
**desc
,
962 info("%s", __func__
);
968 static int dw210x_set_voltage(struct dvb_frontend
*fe
,
969 enum fe_sec_voltage voltage
)
971 static u8 command_13v
[] = {0x00, 0x01};
972 static u8 command_18v
[] = {0x01, 0x01};
973 static u8 command_off
[] = {0x00, 0x00};
974 struct i2c_msg msg
= {
975 .addr
= DW2102_VOLTAGE_CTRL
,
981 struct dvb_usb_adapter
*udev_adap
=
982 (struct dvb_usb_adapter
*)(fe
->dvb
->priv
);
983 if (voltage
== SEC_VOLTAGE_18
)
984 msg
.buf
= command_18v
;
985 else if (voltage
== SEC_VOLTAGE_13
)
986 msg
.buf
= command_13v
;
988 i2c_transfer(&udev_adap
->dev
->i2c_adap
, &msg
, 1);
993 static int s660_set_voltage(struct dvb_frontend
*fe
,
994 enum fe_sec_voltage voltage
)
996 struct dvb_usb_adapter
*d
=
997 (struct dvb_usb_adapter
*)(fe
->dvb
->priv
);
998 struct dw2102_state
*st
= (struct dw2102_state
*)d
->dev
->priv
;
1000 dw210x_set_voltage(fe
, voltage
);
1001 if (st
->old_set_voltage
)
1002 st
->old_set_voltage(fe
, voltage
);
1007 static void dw210x_led_ctrl(struct dvb_frontend
*fe
, int offon
)
1009 static u8 led_off
[] = { 0 };
1010 static u8 led_on
[] = { 1 };
1011 struct i2c_msg msg
= {
1012 .addr
= DW2102_LED_CTRL
,
1017 struct dvb_usb_adapter
*udev_adap
=
1018 (struct dvb_usb_adapter
*)(fe
->dvb
->priv
);
1022 i2c_transfer(&udev_adap
->dev
->i2c_adap
, &msg
, 1);
1025 static int tt_s2_4600_read_status(struct dvb_frontend
*fe
,
1026 enum fe_status
*status
)
1028 struct dvb_usb_adapter
*d
=
1029 (struct dvb_usb_adapter
*)(fe
->dvb
->priv
);
1030 struct dw2102_state
*st
= (struct dw2102_state
*)d
->dev
->priv
;
1033 ret
= st
->fe_read_status(fe
, status
);
1035 /* resync slave fifo when signal change from unlock to lock */
1036 if ((*status
& FE_HAS_LOCK
) && (!st
->last_lock
))
1037 su3000_streaming_ctrl(d
, 1);
1039 st
->last_lock
= (*status
& FE_HAS_LOCK
) ? 1 : 0;
1043 static struct stv0299_config sharp_z0194a_config
= {
1044 .demod_address
= 0x68,
1045 .inittab
= sharp_z0194a_inittab
,
1049 .lock_output
= STV0299_LOCKOUTPUT_1
,
1050 .volt13_op0_op1
= STV0299_VOLT13_OP1
,
1051 .min_delay_ms
= 100,
1052 .set_symbol_rate
= sharp_z0194a_set_symbol_rate
,
1055 static struct cx24116_config dw2104_config
= {
1056 .demod_address
= 0x55,
1057 .mpg_clk_pos_pol
= 0x01,
1060 static struct si21xx_config serit_sp1511lhb_config
= {
1061 .demod_address
= 0x68,
1062 .min_delay_ms
= 100,
1066 static struct tda10023_config dw3101_tda10023_config
= {
1067 .demod_address
= 0x0c,
1071 static struct mt312_config zl313_config
= {
1072 .demod_address
= 0x0e,
1075 static struct ds3000_config dw2104_ds3000_config
= {
1076 .demod_address
= 0x68,
1079 static struct ts2020_config dw2104_ts2020_config
= {
1080 .tuner_address
= 0x60,
1082 .frequency_div
= 1060000,
1085 static struct ds3000_config s660_ds3000_config
= {
1086 .demod_address
= 0x68,
1088 .set_lock_led
= dw210x_led_ctrl
,
1091 static struct ts2020_config s660_ts2020_config
= {
1092 .tuner_address
= 0x60,
1094 .frequency_div
= 1146000,
1097 static struct stv0900_config dw2104a_stv0900_config
= {
1098 .demod_address
= 0x6a,
1101 .clkmode
= 3,/* 0-CLKI, 2-XTALI, else AUTO */
1102 .diseqc_mode
= 2,/* 2/3 PWM */
1103 .tun1_maddress
= 0,/* 0x60 */
1104 .tun1_adc
= 0,/* 2 Vpp */
1108 static struct stb6100_config dw2104a_stb6100_config
= {
1109 .tuner_address
= 0x60,
1110 .refclock
= 27000000,
1113 static struct stv0900_config dw2104_stv0900_config
= {
1114 .demod_address
= 0x68,
1120 .tun1_adc
= 1,/* 1 Vpp */
1124 static struct stv6110_config dw2104_stv6110_config
= {
1125 .i2c_address
= 0x60,
1130 static struct stv0900_config prof_7500_stv0900_config
= {
1131 .demod_address
= 0x6a,
1134 .clkmode
= 3,/* 0-CLKI, 2-XTALI, else AUTO */
1135 .diseqc_mode
= 2,/* 2/3 PWM */
1136 .tun1_maddress
= 0,/* 0x60 */
1137 .tun1_adc
= 0,/* 2 Vpp */
1140 .set_lock_led
= dw210x_led_ctrl
,
1143 static struct ds3000_config su3000_ds3000_config
= {
1144 .demod_address
= 0x68,
1146 .set_lock_led
= dw210x_led_ctrl
,
1149 static struct cxd2820r_config cxd2820r_config
= {
1150 .i2c_address
= 0x6c, /* (0xd8 >> 1) */
1155 static struct tda18271_config tda18271_config
= {
1156 .output_opt
= TDA18271_OUTPUT_LT_OFF
,
1157 .gate
= TDA18271_GATE_DIGITAL
,
1160 static u8 m88rs2000_inittab
[] = {
1161 DEMOD_WRITE
, 0x9a, 0x30,
1162 DEMOD_WRITE
, 0x00, 0x01,
1163 WRITE_DELAY
, 0x19, 0x00,
1164 DEMOD_WRITE
, 0x00, 0x00,
1165 DEMOD_WRITE
, 0x9a, 0xb0,
1166 DEMOD_WRITE
, 0x81, 0xc1,
1167 DEMOD_WRITE
, 0x81, 0x81,
1168 DEMOD_WRITE
, 0x86, 0xc6,
1169 DEMOD_WRITE
, 0x9a, 0x30,
1170 DEMOD_WRITE
, 0xf0, 0x80,
1171 DEMOD_WRITE
, 0xf1, 0xbf,
1172 DEMOD_WRITE
, 0xb0, 0x45,
1173 DEMOD_WRITE
, 0xb2, 0x01,
1174 DEMOD_WRITE
, 0x9a, 0xb0,
1178 static struct m88rs2000_config s421_m88rs2000_config
= {
1180 .inittab
= m88rs2000_inittab
,
1183 static int dw2104_frontend_attach(struct dvb_usb_adapter
*d
)
1185 struct dvb_tuner_ops
*tuner_ops
= NULL
;
1187 if (demod_probe
& 4) {
1188 d
->fe_adap
[0].fe
= dvb_attach(stv0900_attach
, &dw2104a_stv0900_config
,
1189 &d
->dev
->i2c_adap
, 0);
1190 if (d
->fe_adap
[0].fe
!= NULL
) {
1191 if (dvb_attach(stb6100_attach
, d
->fe_adap
[0].fe
,
1192 &dw2104a_stb6100_config
,
1193 &d
->dev
->i2c_adap
)) {
1194 tuner_ops
= &d
->fe_adap
[0].fe
->ops
.tuner_ops
;
1195 tuner_ops
->set_frequency
= stb6100_set_freq
;
1196 tuner_ops
->get_frequency
= stb6100_get_freq
;
1197 tuner_ops
->set_bandwidth
= stb6100_set_bandw
;
1198 tuner_ops
->get_bandwidth
= stb6100_get_bandw
;
1199 d
->fe_adap
[0].fe
->ops
.set_voltage
= dw210x_set_voltage
;
1200 info("Attached STV0900+STB6100!");
1206 if (demod_probe
& 2) {
1207 d
->fe_adap
[0].fe
= dvb_attach(stv0900_attach
, &dw2104_stv0900_config
,
1208 &d
->dev
->i2c_adap
, 0);
1209 if (d
->fe_adap
[0].fe
!= NULL
) {
1210 if (dvb_attach(stv6110_attach
, d
->fe_adap
[0].fe
,
1211 &dw2104_stv6110_config
,
1212 &d
->dev
->i2c_adap
)) {
1213 d
->fe_adap
[0].fe
->ops
.set_voltage
= dw210x_set_voltage
;
1214 info("Attached STV0900+STV6110A!");
1220 if (demod_probe
& 1) {
1221 d
->fe_adap
[0].fe
= dvb_attach(cx24116_attach
, &dw2104_config
,
1223 if (d
->fe_adap
[0].fe
!= NULL
) {
1224 d
->fe_adap
[0].fe
->ops
.set_voltage
= dw210x_set_voltage
;
1225 info("Attached cx24116!");
1230 d
->fe_adap
[0].fe
= dvb_attach(ds3000_attach
, &dw2104_ds3000_config
,
1232 if (d
->fe_adap
[0].fe
!= NULL
) {
1233 dvb_attach(ts2020_attach
, d
->fe_adap
[0].fe
,
1234 &dw2104_ts2020_config
, &d
->dev
->i2c_adap
);
1235 d
->fe_adap
[0].fe
->ops
.set_voltage
= dw210x_set_voltage
;
1236 info("Attached DS3000!");
1243 static struct dvb_usb_device_properties dw2102_properties
;
1244 static struct dvb_usb_device_properties dw2104_properties
;
1245 static struct dvb_usb_device_properties s6x0_properties
;
1247 static int dw2102_frontend_attach(struct dvb_usb_adapter
*d
)
1249 if (dw2102_properties
.i2c_algo
== &dw2102_serit_i2c_algo
) {
1250 /*dw2102_properties.adapter->tuner_attach = NULL;*/
1251 d
->fe_adap
[0].fe
= dvb_attach(si21xx_attach
, &serit_sp1511lhb_config
,
1253 if (d
->fe_adap
[0].fe
!= NULL
) {
1254 d
->fe_adap
[0].fe
->ops
.set_voltage
= dw210x_set_voltage
;
1255 info("Attached si21xx!");
1260 if (dw2102_properties
.i2c_algo
== &dw2102_earda_i2c_algo
) {
1261 d
->fe_adap
[0].fe
= dvb_attach(stv0288_attach
, &earda_config
,
1263 if (d
->fe_adap
[0].fe
!= NULL
) {
1264 if (dvb_attach(stb6000_attach
, d
->fe_adap
[0].fe
, 0x61,
1265 &d
->dev
->i2c_adap
)) {
1266 d
->fe_adap
[0].fe
->ops
.set_voltage
= dw210x_set_voltage
;
1267 info("Attached stv0288!");
1273 if (dw2102_properties
.i2c_algo
== &dw2102_i2c_algo
) {
1274 /*dw2102_properties.adapter->tuner_attach = dw2102_tuner_attach;*/
1275 d
->fe_adap
[0].fe
= dvb_attach(stv0299_attach
, &sharp_z0194a_config
,
1277 if (d
->fe_adap
[0].fe
!= NULL
) {
1278 d
->fe_adap
[0].fe
->ops
.set_voltage
= dw210x_set_voltage
;
1279 info("Attached stv0299!");
1286 static int dw3101_frontend_attach(struct dvb_usb_adapter
*d
)
1288 d
->fe_adap
[0].fe
= dvb_attach(tda10023_attach
, &dw3101_tda10023_config
,
1289 &d
->dev
->i2c_adap
, 0x48);
1290 if (d
->fe_adap
[0].fe
!= NULL
) {
1291 info("Attached tda10023!");
1297 static int zl100313_frontend_attach(struct dvb_usb_adapter
*d
)
1299 d
->fe_adap
[0].fe
= dvb_attach(mt312_attach
, &zl313_config
,
1301 if (d
->fe_adap
[0].fe
!= NULL
) {
1302 if (dvb_attach(zl10039_attach
, d
->fe_adap
[0].fe
, 0x60,
1303 &d
->dev
->i2c_adap
)) {
1304 d
->fe_adap
[0].fe
->ops
.set_voltage
= dw210x_set_voltage
;
1305 info("Attached zl100313+zl10039!");
1313 static int stv0288_frontend_attach(struct dvb_usb_adapter
*d
)
1317 d
->fe_adap
[0].fe
= dvb_attach(stv0288_attach
, &earda_config
,
1320 if (d
->fe_adap
[0].fe
== NULL
)
1323 if (NULL
== dvb_attach(stb6000_attach
, d
->fe_adap
[0].fe
, 0x61, &d
->dev
->i2c_adap
))
1326 d
->fe_adap
[0].fe
->ops
.set_voltage
= dw210x_set_voltage
;
1328 dw210x_op_rw(d
->dev
->udev
, 0x8a, 0, 0, obuf
, 2, DW210X_WRITE_MSG
);
1330 info("Attached stv0288+stb6000!");
1336 static int ds3000_frontend_attach(struct dvb_usb_adapter
*d
)
1338 struct dw2102_state
*st
= d
->dev
->priv
;
1341 d
->fe_adap
[0].fe
= dvb_attach(ds3000_attach
, &s660_ds3000_config
,
1344 if (d
->fe_adap
[0].fe
== NULL
)
1347 dvb_attach(ts2020_attach
, d
->fe_adap
[0].fe
, &s660_ts2020_config
,
1350 st
->old_set_voltage
= d
->fe_adap
[0].fe
->ops
.set_voltage
;
1351 d
->fe_adap
[0].fe
->ops
.set_voltage
= s660_set_voltage
;
1353 dw210x_op_rw(d
->dev
->udev
, 0x8a, 0, 0, obuf
, 2, DW210X_WRITE_MSG
);
1355 info("Attached ds3000+ts2020!");
1360 static int prof_7500_frontend_attach(struct dvb_usb_adapter
*d
)
1364 d
->fe_adap
[0].fe
= dvb_attach(stv0900_attach
, &prof_7500_stv0900_config
,
1365 &d
->dev
->i2c_adap
, 0);
1366 if (d
->fe_adap
[0].fe
== NULL
)
1369 d
->fe_adap
[0].fe
->ops
.set_voltage
= dw210x_set_voltage
;
1371 dw210x_op_rw(d
->dev
->udev
, 0x8a, 0, 0, obuf
, 2, DW210X_WRITE_MSG
);
1373 info("Attached STV0900+STB6100A!");
1378 static int su3000_frontend_attach(struct dvb_usb_adapter
*adap
)
1380 struct dvb_usb_device
*d
= adap
->dev
;
1381 struct dw2102_state
*state
= d
->priv
;
1383 mutex_lock(&d
->data_mutex
);
1385 state
->data
[0] = 0xe;
1386 state
->data
[1] = 0x80;
1389 if (dvb_usb_generic_rw(d
, state
->data
, 3, state
->data
, 1, 0) < 0)
1390 err("command 0x0e transfer failed.");
1392 state
->data
[0] = 0xe;
1393 state
->data
[1] = 0x02;
1396 if (dvb_usb_generic_rw(d
, state
->data
, 3, state
->data
, 1, 0) < 0)
1397 err("command 0x0e transfer failed.");
1400 state
->data
[0] = 0xe;
1401 state
->data
[1] = 0x83;
1404 if (dvb_usb_generic_rw(d
, state
->data
, 3, state
->data
, 1, 0) < 0)
1405 err("command 0x0e transfer failed.");
1407 state
->data
[0] = 0xe;
1408 state
->data
[1] = 0x83;
1411 if (dvb_usb_generic_rw(d
, state
->data
, 3, state
->data
, 1, 0) < 0)
1412 err("command 0x0e transfer failed.");
1414 state
->data
[0] = 0x51;
1416 if (dvb_usb_generic_rw(d
, state
->data
, 1, state
->data
, 1, 0) < 0)
1417 err("command 0x51 transfer failed.");
1419 mutex_unlock(&d
->data_mutex
);
1421 adap
->fe_adap
[0].fe
= dvb_attach(ds3000_attach
, &su3000_ds3000_config
,
1423 if (adap
->fe_adap
[0].fe
== NULL
)
1426 if (dvb_attach(ts2020_attach
, adap
->fe_adap
[0].fe
,
1427 &dw2104_ts2020_config
,
1429 info("Attached DS3000/TS2020!");
1433 info("Failed to attach DS3000/TS2020!");
1437 static int t220_frontend_attach(struct dvb_usb_adapter
*adap
)
1439 struct dvb_usb_device
*d
= adap
->dev
;
1440 struct dw2102_state
*state
= d
->priv
;
1442 mutex_lock(&d
->data_mutex
);
1444 state
->data
[0] = 0xe;
1445 state
->data
[1] = 0x87;
1446 state
->data
[2] = 0x0;
1448 if (dvb_usb_generic_rw(d
, state
->data
, 3, state
->data
, 1, 0) < 0)
1449 err("command 0x0e transfer failed.");
1451 state
->data
[0] = 0xe;
1452 state
->data
[1] = 0x86;
1455 if (dvb_usb_generic_rw(d
, state
->data
, 3, state
->data
, 1, 0) < 0)
1456 err("command 0x0e transfer failed.");
1458 state
->data
[0] = 0xe;
1459 state
->data
[1] = 0x80;
1462 if (dvb_usb_generic_rw(d
, state
->data
, 3, state
->data
, 1, 0) < 0)
1463 err("command 0x0e transfer failed.");
1467 state
->data
[0] = 0xe;
1468 state
->data
[1] = 0x80;
1471 if (dvb_usb_generic_rw(d
, state
->data
, 3, state
->data
, 1, 0) < 0)
1472 err("command 0x0e transfer failed.");
1474 state
->data
[0] = 0x51;
1476 if (dvb_usb_generic_rw(d
, state
->data
, 1, state
->data
, 1, 0) < 0)
1477 err("command 0x51 transfer failed.");
1479 mutex_unlock(&d
->data_mutex
);
1481 adap
->fe_adap
[0].fe
= dvb_attach(cxd2820r_attach
, &cxd2820r_config
,
1482 &d
->i2c_adap
, NULL
);
1483 if (adap
->fe_adap
[0].fe
!= NULL
) {
1484 if (dvb_attach(tda18271_attach
, adap
->fe_adap
[0].fe
, 0x60,
1485 &d
->i2c_adap
, &tda18271_config
)) {
1486 info("Attached TDA18271HD/CXD2820R!");
1491 info("Failed to attach TDA18271HD/CXD2820R!");
1495 static int m88rs2000_frontend_attach(struct dvb_usb_adapter
*adap
)
1497 struct dvb_usb_device
*d
= adap
->dev
;
1498 struct dw2102_state
*state
= d
->priv
;
1500 mutex_lock(&d
->data_mutex
);
1502 state
->data
[0] = 0x51;
1504 if (dvb_usb_generic_rw(d
, state
->data
, 1, state
->data
, 1, 0) < 0)
1505 err("command 0x51 transfer failed.");
1507 mutex_unlock(&d
->data_mutex
);
1509 adap
->fe_adap
[0].fe
= dvb_attach(m88rs2000_attach
,
1510 &s421_m88rs2000_config
,
1513 if (adap
->fe_adap
[0].fe
== NULL
)
1516 if (dvb_attach(ts2020_attach
, adap
->fe_adap
[0].fe
,
1517 &dw2104_ts2020_config
,
1519 info("Attached RS2000/TS2020!");
1523 info("Failed to attach RS2000/TS2020!");
1527 static int tt_s2_4600_frontend_attach(struct dvb_usb_adapter
*adap
)
1529 struct dvb_usb_device
*d
= adap
->dev
;
1530 struct dw2102_state
*state
= d
->priv
;
1531 struct i2c_adapter
*i2c_adapter
;
1532 struct i2c_client
*client
;
1533 struct i2c_board_info board_info
;
1534 struct m88ds3103_platform_data m88ds3103_pdata
= {};
1535 struct ts2020_config ts2020_config
= {};
1537 mutex_lock(&d
->data_mutex
);
1539 state
->data
[0] = 0xe;
1540 state
->data
[1] = 0x80;
1541 state
->data
[2] = 0x0;
1543 if (dvb_usb_generic_rw(d
, state
->data
, 3, state
->data
, 1, 0) < 0)
1544 err("command 0x0e transfer failed.");
1546 state
->data
[0] = 0xe;
1547 state
->data
[1] = 0x02;
1550 if (dvb_usb_generic_rw(d
, state
->data
, 3, state
->data
, 1, 0) < 0)
1551 err("command 0x0e transfer failed.");
1554 state
->data
[0] = 0xe;
1555 state
->data
[1] = 0x83;
1558 if (dvb_usb_generic_rw(d
, state
->data
, 3, state
->data
, 1, 0) < 0)
1559 err("command 0x0e transfer failed.");
1561 state
->data
[0] = 0xe;
1562 state
->data
[1] = 0x83;
1565 if (dvb_usb_generic_rw(d
, state
->data
, 3, state
->data
, 1, 0) < 0)
1566 err("command 0x0e transfer failed.");
1568 state
->data
[0] = 0x51;
1570 if (dvb_usb_generic_rw(d
, state
->data
, 1, state
->data
, 1, 0) < 0)
1571 err("command 0x51 transfer failed.");
1573 mutex_unlock(&d
->data_mutex
);
1576 m88ds3103_pdata
.clk
= 27000000;
1577 m88ds3103_pdata
.i2c_wr_max
= 33;
1578 m88ds3103_pdata
.ts_mode
= M88DS3103_TS_CI
;
1579 m88ds3103_pdata
.ts_clk
= 16000;
1580 m88ds3103_pdata
.ts_clk_pol
= 0;
1581 m88ds3103_pdata
.spec_inv
= 0;
1582 m88ds3103_pdata
.agc
= 0x99;
1583 m88ds3103_pdata
.agc_inv
= 0;
1584 m88ds3103_pdata
.clk_out
= M88DS3103_CLOCK_OUT_ENABLED
;
1585 m88ds3103_pdata
.envelope_mode
= 0;
1586 m88ds3103_pdata
.lnb_hv_pol
= 1;
1587 m88ds3103_pdata
.lnb_en_pol
= 0;
1588 memset(&board_info
, 0, sizeof(board_info
));
1589 strscpy(board_info
.type
, "m88ds3103", I2C_NAME_SIZE
);
1590 board_info
.addr
= 0x68;
1591 board_info
.platform_data
= &m88ds3103_pdata
;
1592 request_module("m88ds3103");
1593 client
= i2c_new_client_device(&d
->i2c_adap
, &board_info
);
1594 if (!i2c_client_has_driver(client
))
1596 if (!try_module_get(client
->dev
.driver
->owner
)) {
1597 i2c_unregister_device(client
);
1600 adap
->fe_adap
[0].fe
= m88ds3103_pdata
.get_dvb_frontend(client
);
1601 i2c_adapter
= m88ds3103_pdata
.get_i2c_adapter(client
);
1603 state
->i2c_client_demod
= client
;
1606 ts2020_config
.fe
= adap
->fe_adap
[0].fe
;
1607 memset(&board_info
, 0, sizeof(board_info
));
1608 strscpy(board_info
.type
, "ts2022", I2C_NAME_SIZE
);
1609 board_info
.addr
= 0x60;
1610 board_info
.platform_data
= &ts2020_config
;
1611 request_module("ts2020");
1612 client
= i2c_new_client_device(i2c_adapter
, &board_info
);
1614 if (!i2c_client_has_driver(client
)) {
1615 dvb_frontend_detach(adap
->fe_adap
[0].fe
);
1619 if (!try_module_get(client
->dev
.driver
->owner
)) {
1620 i2c_unregister_device(client
);
1621 dvb_frontend_detach(adap
->fe_adap
[0].fe
);
1625 /* delegate signal strength measurement to tuner */
1626 adap
->fe_adap
[0].fe
->ops
.read_signal_strength
=
1627 adap
->fe_adap
[0].fe
->ops
.tuner_ops
.get_rf_strength
;
1629 state
->i2c_client_tuner
= client
;
1631 /* hook fe: need to resync the slave fifo when signal locks */
1632 state
->fe_read_status
= adap
->fe_adap
[0].fe
->ops
.read_status
;
1633 adap
->fe_adap
[0].fe
->ops
.read_status
= tt_s2_4600_read_status
;
1635 state
->last_lock
= 0;
1640 static int dw2102_tuner_attach(struct dvb_usb_adapter
*adap
)
1642 dvb_attach(dvb_pll_attach
, adap
->fe_adap
[0].fe
, 0x60,
1643 &adap
->dev
->i2c_adap
, DVB_PLL_OPERA1
);
1647 static int dw3101_tuner_attach(struct dvb_usb_adapter
*adap
)
1649 dvb_attach(dvb_pll_attach
, adap
->fe_adap
[0].fe
, 0x60,
1650 &adap
->dev
->i2c_adap
, DVB_PLL_TUA6034
);
1655 static int dw2102_rc_query(struct dvb_usb_device
*d
)
1658 struct i2c_msg msg
= {
1659 .addr
= DW2102_RC_QUERY
,
1665 if (d
->props
.i2c_algo
->master_xfer(&d
->i2c_adap
, &msg
, 1) == 1) {
1666 if (msg
.buf
[0] != 0xff) {
1667 deb_rc("%s: rc code: %x, %x\n",
1668 __func__
, key
[0], key
[1]);
1669 rc_keydown(d
->rc_dev
, RC_PROTO_UNKNOWN
, key
[0], 0);
1676 static int prof_rc_query(struct dvb_usb_device
*d
)
1679 struct i2c_msg msg
= {
1680 .addr
= DW2102_RC_QUERY
,
1686 if (d
->props
.i2c_algo
->master_xfer(&d
->i2c_adap
, &msg
, 1) == 1) {
1687 if (msg
.buf
[0] != 0xff) {
1688 deb_rc("%s: rc code: %x, %x\n",
1689 __func__
, key
[0], key
[1]);
1690 rc_keydown(d
->rc_dev
, RC_PROTO_UNKNOWN
, key
[0] ^ 0xff,
1698 static int su3000_rc_query(struct dvb_usb_device
*d
)
1701 struct i2c_msg msg
= {
1702 .addr
= DW2102_RC_QUERY
,
1708 if (d
->props
.i2c_algo
->master_xfer(&d
->i2c_adap
, &msg
, 1) == 1) {
1709 if (msg
.buf
[0] != 0xff) {
1710 deb_rc("%s: rc code: %x, %x\n",
1711 __func__
, key
[0], key
[1]);
1712 rc_keydown(d
->rc_dev
, RC_PROTO_RC5
,
1713 RC_SCANCODE_RC5(key
[1], key
[0]), 0);
1720 enum dw2102_table_entry
{
1732 TERRATEC_CINERGY_S2
,
1738 TERRATEC_CINERGY_S2_R2
,
1739 TERRATEC_CINERGY_S2_R3
,
1740 TERRATEC_CINERGY_S2_R4
,
1743 TECHNOTREND_S2_4600
,
1746 TERRATEC_CINERGY_S2_BOX
,
1750 static struct usb_device_id dw2102_table
[] = {
1751 [CYPRESS_DW2102
] = {USB_DEVICE(USB_VID_CYPRESS
, USB_PID_DW2102
)},
1752 [CYPRESS_DW2101
] = {USB_DEVICE(USB_VID_CYPRESS
, 0x2101)},
1753 [CYPRESS_DW2104
] = {USB_DEVICE(USB_VID_CYPRESS
, USB_PID_DW2104
)},
1754 [TEVII_S650
] = {USB_DEVICE(0x9022, USB_PID_TEVII_S650
)},
1755 [TERRATEC_CINERGY_S
] = {USB_DEVICE(USB_VID_TERRATEC
, USB_PID_TERRATEC_CINERGY_S
)},
1756 [CYPRESS_DW3101
] = {USB_DEVICE(USB_VID_CYPRESS
, USB_PID_DW3101
)},
1757 [TEVII_S630
] = {USB_DEVICE(0x9022, USB_PID_TEVII_S630
)},
1758 [PROF_1100
] = {USB_DEVICE(0x3011, USB_PID_PROF_1100
)},
1759 [TEVII_S660
] = {USB_DEVICE(0x9022, USB_PID_TEVII_S660
)},
1760 [PROF_7500
] = {USB_DEVICE(0x3034, 0x7500)},
1761 [GENIATECH_SU3000
] = {USB_DEVICE(0x1f4d, 0x3000)},
1762 [TERRATEC_CINERGY_S2
] = {USB_DEVICE(USB_VID_TERRATEC
, USB_PID_TERRATEC_CINERGY_S2_R1
)},
1763 [TEVII_S480_1
] = {USB_DEVICE(0x9022, USB_PID_TEVII_S480_1
)},
1764 [TEVII_S480_2
] = {USB_DEVICE(0x9022, USB_PID_TEVII_S480_2
)},
1765 [X3M_SPC1400HD
] = {USB_DEVICE(0x1f4d, 0x3100)},
1766 [TEVII_S421
] = {USB_DEVICE(0x9022, USB_PID_TEVII_S421
)},
1767 [TEVII_S632
] = {USB_DEVICE(0x9022, USB_PID_TEVII_S632
)},
1768 [TERRATEC_CINERGY_S2_R2
] = {USB_DEVICE(USB_VID_TERRATEC
, USB_PID_TERRATEC_CINERGY_S2_R2
)},
1769 [TERRATEC_CINERGY_S2_R3
] = {USB_DEVICE(USB_VID_TERRATEC
, USB_PID_TERRATEC_CINERGY_S2_R3
)},
1770 [TERRATEC_CINERGY_S2_R4
] = {USB_DEVICE(USB_VID_TERRATEC
, USB_PID_TERRATEC_CINERGY_S2_R4
)},
1771 [GOTVIEW_SAT_HD
] = {USB_DEVICE(0x1FE1, USB_PID_GOTVIEW_SAT_HD
)},
1772 [GENIATECH_T220
] = {USB_DEVICE(0x1f4d, 0xD220)},
1773 [TECHNOTREND_S2_4600
] = {USB_DEVICE(USB_VID_TECHNOTREND
,
1774 USB_PID_TECHNOTREND_CONNECT_S2_4600
)},
1775 [TEVII_S482_1
] = {USB_DEVICE(0x9022, 0xd483)},
1776 [TEVII_S482_2
] = {USB_DEVICE(0x9022, 0xd484)},
1777 [TERRATEC_CINERGY_S2_BOX
] = {USB_DEVICE(USB_VID_TERRATEC
, 0x0105)},
1778 [TEVII_S662
] = {USB_DEVICE(0x9022, USB_PID_TEVII_S662
)},
1782 MODULE_DEVICE_TABLE(usb
, dw2102_table
);
1784 static int dw2102_load_firmware(struct usb_device
*dev
,
1785 const struct firmware
*frmwr
)
1790 u8 reset16
[] = {0, 0, 0, 0, 0, 0, 0};
1791 const struct firmware
*fw
;
1793 switch (le16_to_cpu(dev
->descriptor
.idProduct
)) {
1795 ret
= request_firmware(&fw
, DW2101_FIRMWARE
, &dev
->dev
);
1797 err(err_str
, DW2101_FIRMWARE
);
1805 info("start downloading DW210X firmware");
1806 p
= kmalloc(fw
->size
, GFP_KERNEL
);
1809 dw210x_op_rw(dev
, 0xa0, 0x7f92, 0, &reset
, 1, DW210X_WRITE_MSG
);
1810 dw210x_op_rw(dev
, 0xa0, 0xe600, 0, &reset
, 1, DW210X_WRITE_MSG
);
1813 memcpy(p
, fw
->data
, fw
->size
);
1814 for (i
= 0; i
< fw
->size
; i
+= 0x40) {
1816 if (dw210x_op_rw(dev
, 0xa0, i
, 0, b
, 0x40,
1817 DW210X_WRITE_MSG
) != 0x40) {
1818 err("error while transferring firmware");
1823 /* restart the CPU */
1825 if (ret
|| dw210x_op_rw(dev
, 0xa0, 0x7f92, 0, &reset
, 1,
1826 DW210X_WRITE_MSG
) != 1) {
1827 err("could not restart the USB controller CPU.");
1830 if (ret
|| dw210x_op_rw(dev
, 0xa0, 0xe600, 0, &reset
, 1,
1831 DW210X_WRITE_MSG
) != 1) {
1832 err("could not restart the USB controller CPU.");
1835 /* init registers */
1836 switch (le16_to_cpu(dev
->descriptor
.idProduct
)) {
1837 case USB_PID_TEVII_S650
:
1838 dw2104_properties
.rc
.core
.rc_codes
= RC_MAP_TEVII_NEC
;
1840 case USB_PID_DW2104
:
1842 dw210x_op_rw(dev
, 0xc4, 0x0000, 0, &reset
, 1,
1845 case USB_PID_DW3101
:
1847 dw210x_op_rw(dev
, 0xbf, 0x0040, 0, &reset
, 0,
1850 case USB_PID_TERRATEC_CINERGY_S
:
1851 case USB_PID_DW2102
:
1852 dw210x_op_rw(dev
, 0xbf, 0x0040, 0, &reset
, 0,
1854 dw210x_op_rw(dev
, 0xb9, 0x0000, 0, &reset16
[0], 2,
1856 /* check STV0299 frontend */
1857 dw210x_op_rw(dev
, 0xb5, 0, 0, &reset16
[0], 2,
1859 if ((reset16
[0] == 0xa1) || (reset16
[0] == 0x80)) {
1860 dw2102_properties
.i2c_algo
= &dw2102_i2c_algo
;
1861 dw2102_properties
.adapter
->fe
[0].tuner_attach
= &dw2102_tuner_attach
;
1864 /* check STV0288 frontend */
1868 dw210x_op_rw(dev
, 0xc2, 0, 0, &reset16
[0], 3,
1870 dw210x_op_rw(dev
, 0xc3, 0xd1, 0, &reset16
[0], 3,
1872 if (reset16
[2] == 0x11) {
1873 dw2102_properties
.i2c_algo
= &dw2102_earda_i2c_algo
;
1879 dw210x_op_rw(dev
, 0xbc, 0x0030, 0, &reset16
[0], 2,
1881 dw210x_op_rw(dev
, 0xba, 0x0000, 0, &reset16
[0], 7,
1883 dw210x_op_rw(dev
, 0xba, 0x0000, 0, &reset16
[0], 7,
1885 dw210x_op_rw(dev
, 0xb9, 0x0000, 0, &reset16
[0], 2,
1894 if (le16_to_cpu(dev
->descriptor
.idProduct
) == 0x2101)
1895 release_firmware(fw
);
1899 static struct dvb_usb_device_properties dw2102_properties
= {
1900 .caps
= DVB_USB_IS_AN_I2C_ADAPTER
,
1901 .usb_ctrl
= DEVICE_SPECIFIC
,
1902 .firmware
= DW2102_FIRMWARE
,
1905 .i2c_algo
= &dw2102_serit_i2c_algo
,
1909 .rc_codes
= RC_MAP_DM1105_NEC
,
1910 .module_name
= "dw2102",
1911 .allowed_protos
= RC_PROTO_BIT_NEC
,
1912 .rc_query
= dw2102_rc_query
,
1915 .generic_bulk_ctrl_endpoint
= 0x81,
1916 /* parameter for the MPEG2-data transfer */
1918 .download_firmware
= dw2102_load_firmware
,
1919 .read_mac_address
= dw210x_read_mac_address
,
1924 .frontend_attach
= dw2102_frontend_attach
,
1938 .num_device_descs
= 3,
1940 {"DVBWorld DVB-S 2102 USB2.0",
1941 {&dw2102_table
[CYPRESS_DW2102
], NULL
},
1944 {"DVBWorld DVB-S 2101 USB2.0",
1945 {&dw2102_table
[CYPRESS_DW2101
], NULL
},
1948 {"TerraTec Cinergy S USB",
1949 {&dw2102_table
[TERRATEC_CINERGY_S
], NULL
},
1955 static struct dvb_usb_device_properties dw2104_properties
= {
1956 .caps
= DVB_USB_IS_AN_I2C_ADAPTER
,
1957 .usb_ctrl
= DEVICE_SPECIFIC
,
1958 .firmware
= DW2104_FIRMWARE
,
1961 .i2c_algo
= &dw2104_i2c_algo
,
1964 .rc_codes
= RC_MAP_DM1105_NEC
,
1965 .module_name
= "dw2102",
1966 .allowed_protos
= RC_PROTO_BIT_NEC
,
1967 .rc_query
= dw2102_rc_query
,
1970 .generic_bulk_ctrl_endpoint
= 0x81,
1971 /* parameter for the MPEG2-data transfer */
1973 .download_firmware
= dw2102_load_firmware
,
1974 .read_mac_address
= dw210x_read_mac_address
,
1979 .frontend_attach
= dw2104_frontend_attach
,
1993 .num_device_descs
= 2,
1995 { "DVBWorld DW2104 USB2.0",
1996 {&dw2102_table
[CYPRESS_DW2104
], NULL
},
1999 { "TeVii S650 USB2.0",
2000 {&dw2102_table
[TEVII_S650
], NULL
},
2006 static struct dvb_usb_device_properties dw3101_properties
= {
2007 .caps
= DVB_USB_IS_AN_I2C_ADAPTER
,
2008 .usb_ctrl
= DEVICE_SPECIFIC
,
2009 .firmware
= DW3101_FIRMWARE
,
2012 .i2c_algo
= &dw3101_i2c_algo
,
2015 .rc_codes
= RC_MAP_DM1105_NEC
,
2016 .module_name
= "dw2102",
2017 .allowed_protos
= RC_PROTO_BIT_NEC
,
2018 .rc_query
= dw2102_rc_query
,
2021 .generic_bulk_ctrl_endpoint
= 0x81,
2022 /* parameter for the MPEG2-data transfer */
2024 .download_firmware
= dw2102_load_firmware
,
2025 .read_mac_address
= dw210x_read_mac_address
,
2030 .frontend_attach
= dw3101_frontend_attach
,
2031 .tuner_attach
= dw3101_tuner_attach
,
2045 .num_device_descs
= 1,
2047 { "DVBWorld DVB-C 3101 USB2.0",
2048 {&dw2102_table
[CYPRESS_DW3101
], NULL
},
2054 static struct dvb_usb_device_properties s6x0_properties
= {
2055 .caps
= DVB_USB_IS_AN_I2C_ADAPTER
,
2056 .usb_ctrl
= DEVICE_SPECIFIC
,
2057 .size_of_priv
= sizeof(struct dw2102_state
),
2058 .firmware
= S630_FIRMWARE
,
2061 .i2c_algo
= &s6x0_i2c_algo
,
2064 .rc_codes
= RC_MAP_TEVII_NEC
,
2065 .module_name
= "dw2102",
2066 .allowed_protos
= RC_PROTO_BIT_NEC
,
2067 .rc_query
= dw2102_rc_query
,
2070 .generic_bulk_ctrl_endpoint
= 0x81,
2072 .download_firmware
= dw2102_load_firmware
,
2073 .read_mac_address
= s6x0_read_mac_address
,
2078 .frontend_attach
= zl100313_frontend_attach
,
2092 .num_device_descs
= 1,
2095 {&dw2102_table
[TEVII_S630
], NULL
},
2101 static const struct dvb_usb_device_description d1100
= {
2103 {&dw2102_table
[PROF_1100
], NULL
},
2107 static const struct dvb_usb_device_description d660
= {
2109 {&dw2102_table
[TEVII_S660
], NULL
},
2113 static const struct dvb_usb_device_description d480_1
= {
2115 {&dw2102_table
[TEVII_S480_1
], NULL
},
2119 static const struct dvb_usb_device_description d480_2
= {
2121 {&dw2102_table
[TEVII_S480_2
], NULL
},
2125 static const struct dvb_usb_device_description d7500
= {
2126 "Prof 7500 USB DVB-S2",
2127 {&dw2102_table
[PROF_7500
], NULL
},
2131 static const struct dvb_usb_device_description d421
= {
2133 {&dw2102_table
[TEVII_S421
], NULL
},
2137 static const struct dvb_usb_device_description d632
= {
2139 {&dw2102_table
[TEVII_S632
], NULL
},
2143 static struct dvb_usb_device_properties su3000_properties
= {
2144 .caps
= DVB_USB_IS_AN_I2C_ADAPTER
,
2145 .usb_ctrl
= DEVICE_SPECIFIC
,
2146 .size_of_priv
= sizeof(struct dw2102_state
),
2147 .power_ctrl
= su3000_power_ctrl
,
2149 .identify_state
= su3000_identify_state
,
2150 .i2c_algo
= &su3000_i2c_algo
,
2154 .rc_codes
= RC_MAP_SU3000
,
2155 .module_name
= "dw2102",
2156 .allowed_protos
= RC_PROTO_BIT_RC5
,
2157 .rc_query
= su3000_rc_query
,
2160 .read_mac_address
= su3000_read_mac_address
,
2162 .generic_bulk_ctrl_endpoint
= 0x01,
2168 .streaming_ctrl
= su3000_streaming_ctrl
,
2169 .frontend_attach
= su3000_frontend_attach
,
2183 .num_device_descs
= 6,
2185 { "SU3000HD DVB-S USB2.0",
2186 { &dw2102_table
[GENIATECH_SU3000
], NULL
},
2189 { "Terratec Cinergy S2 USB HD",
2190 { &dw2102_table
[TERRATEC_CINERGY_S2
], NULL
},
2193 { "X3M TV SPC1400HD PCI",
2194 { &dw2102_table
[X3M_SPC1400HD
], NULL
},
2197 { "Terratec Cinergy S2 USB HD Rev.2",
2198 { &dw2102_table
[TERRATEC_CINERGY_S2_R2
], NULL
},
2201 { "Terratec Cinergy S2 USB HD Rev.3",
2202 { &dw2102_table
[TERRATEC_CINERGY_S2_R3
], NULL
},
2205 { "GOTVIEW Satellite HD",
2206 { &dw2102_table
[GOTVIEW_SAT_HD
], NULL
},
2212 static struct dvb_usb_device_properties t220_properties
= {
2213 .caps
= DVB_USB_IS_AN_I2C_ADAPTER
,
2214 .usb_ctrl
= DEVICE_SPECIFIC
,
2215 .size_of_priv
= sizeof(struct dw2102_state
),
2216 .power_ctrl
= su3000_power_ctrl
,
2218 .identify_state
= su3000_identify_state
,
2219 .i2c_algo
= &su3000_i2c_algo
,
2223 .rc_codes
= RC_MAP_SU3000
,
2224 .module_name
= "dw2102",
2225 .allowed_protos
= RC_PROTO_BIT_RC5
,
2226 .rc_query
= su3000_rc_query
,
2229 .read_mac_address
= su3000_read_mac_address
,
2231 .generic_bulk_ctrl_endpoint
= 0x01,
2237 .streaming_ctrl
= su3000_streaming_ctrl
,
2238 .frontend_attach
= t220_frontend_attach
,
2252 .num_device_descs
= 1,
2254 { "Geniatech T220 DVB-T/T2 USB2.0",
2255 { &dw2102_table
[GENIATECH_T220
], NULL
},
2261 static struct dvb_usb_device_properties tt_s2_4600_properties
= {
2262 .caps
= DVB_USB_IS_AN_I2C_ADAPTER
,
2263 .usb_ctrl
= DEVICE_SPECIFIC
,
2264 .size_of_priv
= sizeof(struct dw2102_state
),
2265 .power_ctrl
= su3000_power_ctrl
,
2267 .identify_state
= su3000_identify_state
,
2268 .i2c_algo
= &su3000_i2c_algo
,
2272 .rc_codes
= RC_MAP_TT_1500
,
2273 .module_name
= "dw2102",
2274 .allowed_protos
= RC_PROTO_BIT_RC5
,
2275 .rc_query
= su3000_rc_query
,
2278 .read_mac_address
= su3000_read_mac_address
,
2280 .generic_bulk_ctrl_endpoint
= 0x01,
2286 .streaming_ctrl
= su3000_streaming_ctrl
,
2287 .frontend_attach
= tt_s2_4600_frontend_attach
,
2301 .num_device_descs
= 5,
2303 { "TechnoTrend TT-connect S2-4600",
2304 { &dw2102_table
[TECHNOTREND_S2_4600
], NULL
},
2307 { "TeVii S482 (tuner 1)",
2308 { &dw2102_table
[TEVII_S482_1
], NULL
},
2311 { "TeVii S482 (tuner 2)",
2312 { &dw2102_table
[TEVII_S482_2
], NULL
},
2315 { "Terratec Cinergy S2 USB BOX",
2316 { &dw2102_table
[TERRATEC_CINERGY_S2_BOX
], NULL
},
2320 { &dw2102_table
[TEVII_S662
], NULL
},
2326 static int dw2102_probe(struct usb_interface
*intf
,
2327 const struct usb_device_id
*id
)
2329 int retval
= -ENOMEM
;
2330 struct dvb_usb_device_properties
*p1100
;
2331 struct dvb_usb_device_properties
*s660
;
2332 struct dvb_usb_device_properties
*p7500
;
2333 struct dvb_usb_device_properties
*s421
;
2335 p1100
= kmemdup(&s6x0_properties
,
2336 sizeof(struct dvb_usb_device_properties
), GFP_KERNEL
);
2340 /* copy default structure */
2341 /* fill only different fields */
2342 p1100
->firmware
= P1100_FIRMWARE
;
2343 p1100
->devices
[0] = d1100
;
2344 p1100
->rc
.core
.rc_query
= prof_rc_query
;
2345 p1100
->rc
.core
.rc_codes
= RC_MAP_TBS_NEC
;
2346 p1100
->adapter
->fe
[0].frontend_attach
= stv0288_frontend_attach
;
2348 s660
= kmemdup(&s6x0_properties
,
2349 sizeof(struct dvb_usb_device_properties
), GFP_KERNEL
);
2353 s660
->firmware
= S660_FIRMWARE
;
2354 s660
->num_device_descs
= 3;
2355 s660
->devices
[0] = d660
;
2356 s660
->devices
[1] = d480_1
;
2357 s660
->devices
[2] = d480_2
;
2358 s660
->adapter
->fe
[0].frontend_attach
= ds3000_frontend_attach
;
2360 p7500
= kmemdup(&s6x0_properties
,
2361 sizeof(struct dvb_usb_device_properties
), GFP_KERNEL
);
2365 p7500
->firmware
= P7500_FIRMWARE
;
2366 p7500
->devices
[0] = d7500
;
2367 p7500
->rc
.core
.rc_query
= prof_rc_query
;
2368 p7500
->rc
.core
.rc_codes
= RC_MAP_TBS_NEC
;
2369 p7500
->adapter
->fe
[0].frontend_attach
= prof_7500_frontend_attach
;
2372 s421
= kmemdup(&su3000_properties
,
2373 sizeof(struct dvb_usb_device_properties
), GFP_KERNEL
);
2377 s421
->num_device_descs
= 2;
2378 s421
->devices
[0] = d421
;
2379 s421
->devices
[1] = d632
;
2380 s421
->adapter
->fe
[0].frontend_attach
= m88rs2000_frontend_attach
;
2382 if (0 == dvb_usb_device_init(intf
, &dw2102_properties
,
2383 THIS_MODULE
, NULL
, adapter_nr
) ||
2384 0 == dvb_usb_device_init(intf
, &dw2104_properties
,
2385 THIS_MODULE
, NULL
, adapter_nr
) ||
2386 0 == dvb_usb_device_init(intf
, &dw3101_properties
,
2387 THIS_MODULE
, NULL
, adapter_nr
) ||
2388 0 == dvb_usb_device_init(intf
, &s6x0_properties
,
2389 THIS_MODULE
, NULL
, adapter_nr
) ||
2390 0 == dvb_usb_device_init(intf
, p1100
,
2391 THIS_MODULE
, NULL
, adapter_nr
) ||
2392 0 == dvb_usb_device_init(intf
, s660
,
2393 THIS_MODULE
, NULL
, adapter_nr
) ||
2394 0 == dvb_usb_device_init(intf
, p7500
,
2395 THIS_MODULE
, NULL
, adapter_nr
) ||
2396 0 == dvb_usb_device_init(intf
, s421
,
2397 THIS_MODULE
, NULL
, adapter_nr
) ||
2398 0 == dvb_usb_device_init(intf
, &su3000_properties
,
2399 THIS_MODULE
, NULL
, adapter_nr
) ||
2400 0 == dvb_usb_device_init(intf
, &t220_properties
,
2401 THIS_MODULE
, NULL
, adapter_nr
) ||
2402 0 == dvb_usb_device_init(intf
, &tt_s2_4600_properties
,
2403 THIS_MODULE
, NULL
, adapter_nr
)) {
2405 /* clean up copied properties */
2426 static void dw2102_disconnect(struct usb_interface
*intf
)
2428 struct dvb_usb_device
*d
= usb_get_intfdata(intf
);
2429 struct dw2102_state
*st
= (struct dw2102_state
*)d
->priv
;
2430 struct i2c_client
*client
;
2432 /* remove I2C client for tuner */
2433 client
= st
->i2c_client_tuner
;
2435 module_put(client
->dev
.driver
->owner
);
2436 i2c_unregister_device(client
);
2439 /* remove I2C client for demodulator */
2440 client
= st
->i2c_client_demod
;
2442 module_put(client
->dev
.driver
->owner
);
2443 i2c_unregister_device(client
);
2446 dvb_usb_device_exit(intf
);
2449 static struct usb_driver dw2102_driver
= {
2451 .probe
= dw2102_probe
,
2452 .disconnect
= dw2102_disconnect
,
2453 .id_table
= dw2102_table
,
2456 module_usb_driver(dw2102_driver
);
2458 MODULE_AUTHOR("Igor M. Liplianin (c) liplianin@me.by");
2459 MODULE_DESCRIPTION("Driver for DVBWorld DVB-S 2101, 2102, DVB-S2 2104, DVB-C 3101 USB2.0, TeVii S421, S480, S482, S600, S630, S632, S650, TeVii S660, S662, Prof 1100, 7500 USB2.0, Geniatech SU3000, T220, TechnoTrend S2-4600, Terratec Cinergy S2 devices");
2460 MODULE_VERSION("0.1");
2461 MODULE_LICENSE("GPL");
2462 MODULE_FIRMWARE(DW2101_FIRMWARE
);
2463 MODULE_FIRMWARE(DW2102_FIRMWARE
);
2464 MODULE_FIRMWARE(DW2104_FIRMWARE
);
2465 MODULE_FIRMWARE(DW3101_FIRMWARE
);
2466 MODULE_FIRMWARE(S630_FIRMWARE
);
2467 MODULE_FIRMWARE(S660_FIRMWARE
);
2468 MODULE_FIRMWARE(P1100_FIRMWARE
);
2469 MODULE_FIRMWARE(P7500_FIRMWARE
);