blob: 9edd071153951362ec1113b999fcfc7c9e732712 [file] [log] [blame]
Steven Tothaacb9d32007-12-18 01:55:51 -03001/*
2 * Driver for Xceive XC5000 "QAM/8VSB single chip tuner"
3 *
4 * Copyright (c) 2007 Xceive Corporation
5 * Copyright (c) 2007 Steven Toth <stoth@hauppauge.com>
6 *
7 * This program is free software; you can redistribute it and/or modify
8 * it under the terms of the GNU General Public License as published by
9 * the Free Software Foundation; either version 2 of the License, or
10 * (at your option) any later version.
11 *
12 * This program is distributed in the hope that it will be useful,
13 * but WITHOUT ANY WARRANTY; without even the implied warranty of
14 * MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
15 *
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/module.h>
24#include <linux/moduleparam.h>
25#include <linux/delay.h>
26#include <linux/dvb/frontend.h>
27#include <linux/i2c.h>
28
29#include "dvb_frontend.h"
30
31#include "xc5000.h"
32#include "xc5000_priv.h"
33
34static int debug;
35module_param(debug, int, 0644);
36MODULE_PARM_DESC(debug, "Turn on/off debugging (default:off).");
37
38#define dprintk(level,fmt, arg...) if (debug >= level) \
39 printk(KERN_INFO "%s: " fmt, "xc5000", ## arg)
40
41#define XC5000_DEFAULT_FIRMWARE "dvb-fe-xc5000-1.1.fw"
42#define XC5000_DEFAULT_FIRMWARE_SIZE 12400
43
44/* Misc Defines */
45#define MAX_TV_STANDARD 23
46#define XC_MAX_I2C_WRITE_LENGTH 64
47
48/* Signal Types */
49#define XC_RF_MODE_AIR 0
50#define XC_RF_MODE_CABLE 1
51
52/* Result codes */
53#define XC_RESULT_SUCCESS 0
54#define XC_RESULT_RESET_FAILURE 1
55#define XC_RESULT_I2C_WRITE_FAILURE 2
56#define XC_RESULT_I2C_READ_FAILURE 3
57#define XC_RESULT_OUT_OF_RANGE 5
58
59/* Registers */
60#define XREG_INIT 0x00
61#define XREG_VIDEO_MODE 0x01
62#define XREG_AUDIO_MODE 0x02
63#define XREG_RF_FREQ 0x03
64#define XREG_D_CODE 0x04
65#define XREG_IF_OUT 0x05
66#define XREG_SEEK_MODE 0x07
67#define XREG_POWER_DOWN 0x0A
68#define XREG_SIGNALSOURCE 0x0D /* 0=Air, 1=Cable */
69#define XREG_SMOOTHEDCVBS 0x0E
70#define XREG_XTALFREQ 0x0F
71#define XREG_FINERFFREQ 0x10
72#define XREG_DDIMODE 0x11
73
74#define XREG_ADC_ENV 0x00
75#define XREG_QUALITY 0x01
76#define XREG_FRAME_LINES 0x02
77#define XREG_HSYNC_FREQ 0x03
78#define XREG_LOCK 0x04
79#define XREG_FREQ_ERROR 0x05
80#define XREG_SNR 0x06
81#define XREG_VERSION 0x07
82#define XREG_PRODUCT_ID 0x08
83#define XREG_BUSY 0x09
84
85/*
86 Basic firmware description. This will remain with
87 the driver for documentation purposes.
88
89 This represents an I2C firmware file encoded as a
90 string of unsigned char. Format is as follows:
91
92 char[0 ]=len0_MSB -> len = len_MSB * 256 + len_LSB
93 char[1 ]=len0_LSB -> length of first write transaction
94 char[2 ]=data0 -> first byte to be sent
95 char[3 ]=data1
96 char[4 ]=data2
97 char[ ]=...
98 char[M ]=dataN -> last byte to be sent
99 char[M+1]=len1_MSB -> len = len_MSB * 256 + len_LSB
100 char[M+2]=len1_LSB -> length of second write transaction
101 char[M+3]=data0
102 char[M+4]=data1
103 ...
104 etc.
105
106 The [len] value should be interpreted as follows:
107
108 len= len_MSB _ len_LSB
109 len=1111_1111_1111_1111 : End of I2C_SEQUENCE
110 len=0000_0000_0000_0000 : Reset command: Do hardware reset
111 len=0NNN_NNNN_NNNN_NNNN : Normal transaction: number of bytes = {1:32767)
112 len=1WWW_WWWW_WWWW_WWWW : Wait command: wait for {1:32767} ms
113
114 For the RESET and WAIT commands, the two following bytes will contain
115 immediately the length of the following transaction.
116
117*/
118typedef struct {
119 char *Name;
Steven Tothe12671c2007-12-20 01:14:43 -0300120 u16 AudioMode;
121 u16 VideoMode;
Steven Tothaacb9d32007-12-18 01:55:51 -0300122} XC_TV_STANDARD;
123
124/* Tuner standards */
125#define DTV6 17
126
127XC_TV_STANDARD XC5000_Standard[MAX_TV_STANDARD] = {
128 {"M/N-NTSC/PAL-BTSC", 0x0400, 0x8020},
129 {"M/N-NTSC/PAL-A2", 0x0600, 0x8020},
130 {"M/N-NTSC/PAL-EIAJ", 0x0440, 0x8020},
131 {"M/N-NTSC/PAL-Mono", 0x0478, 0x8020},
132 {"B/G-PAL-A2", 0x0A00, 0x8049},
133 {"B/G-PAL-NICAM", 0x0C04, 0x8049},
134 {"B/G-PAL-MONO", 0x0878, 0x8059},
135 {"I-PAL-NICAM", 0x1080, 0x8009},
136 {"I-PAL-NICAM-MONO", 0x0E78, 0x8009},
137 {"D/K-PAL-A2", 0x1600, 0x8009},
138 {"D/K-PAL-NICAM", 0x0E80, 0x8009},
139 {"D/K-PAL-MONO", 0x1478, 0x8009},
140 {"D/K-SECAM-A2 DK1", 0x1200, 0x8009},
141 {"D/K-SECAM-A2 L/DK3",0x0E00, 0x8009},
142 {"D/K-SECAM-A2 MONO", 0x1478, 0x8009},
143 {"L-SECAM-NICAM", 0x8E82, 0x0009},
144 {"L'-SECAM-NICAM", 0x8E82, 0x4009},
145 {"DTV6", 0x00C0, 0x8002},
146 {"DTV8", 0x00C0, 0x800B},
147 {"DTV7/8", 0x00C0, 0x801B},
148 {"DTV7", 0x00C0, 0x8007},
149 {"FM Radio-INPUT2", 0x9802, 0x9002},
150 {"FM Radio-INPUT1", 0x0208, 0x9002}
151};
152
153static int xc5000_writeregs(struct xc5000_priv *priv, u8 *buf, u8 len);
154static int xc5000_readregs(struct xc5000_priv *priv, u8 *buf, u8 len);
155static void xc5000_TunerReset(struct dvb_frontend *fe);
156
Steven Tothe12671c2007-12-20 01:14:43 -0300157static int xc_send_i2c_data(struct xc5000_priv *priv, u8 *buf, int len)
Steven Tothaacb9d32007-12-18 01:55:51 -0300158{
Steven Tothe12671c2007-12-20 01:14:43 -0300159 return xc5000_writeregs(priv, buf, len)
Steven Tothaacb9d32007-12-18 01:55:51 -0300160 ? XC_RESULT_I2C_WRITE_FAILURE : XC_RESULT_SUCCESS;
161}
162
Steven Tothe12671c2007-12-20 01:14:43 -0300163static int xc_read_i2c_data(struct xc5000_priv *priv, u8 *buf, int len)
Steven Tothaacb9d32007-12-18 01:55:51 -0300164{
Steven Tothe12671c2007-12-20 01:14:43 -0300165 return xc5000_readregs(priv, buf, len)
Steven Tothaacb9d32007-12-18 01:55:51 -0300166 ? XC_RESULT_I2C_READ_FAILURE : XC_RESULT_SUCCESS;
167}
168
Steven Tothe12671c2007-12-20 01:14:43 -0300169static int xc_reset(struct dvb_frontend *fe)
Steven Tothaacb9d32007-12-18 01:55:51 -0300170{
171 xc5000_TunerReset(fe);
172 return XC_RESULT_SUCCESS;
173}
174
Steven Tothe12671c2007-12-20 01:14:43 -0300175static void xc_wait(int wait_ms)
Steven Tothaacb9d32007-12-18 01:55:51 -0300176{
Steven Tothe12671c2007-12-20 01:14:43 -0300177 msleep(wait_ms);
Steven Tothaacb9d32007-12-18 01:55:51 -0300178}
179
180static void xc5000_TunerReset(struct dvb_frontend *fe)
181{
182 struct xc5000_priv *priv = fe->tuner_priv;
183 int ret;
184
185 dprintk(1, "%s()\n", __FUNCTION__);
186
Steven Tothe12671c2007-12-20 01:14:43 -0300187 if (priv->cfg->tuner_reset) {
Steven Tothaacb9d32007-12-18 01:55:51 -0300188 ret = priv->cfg->tuner_reset(fe);
189 if (ret)
190 printk(KERN_ERR "xc5000: reset failed\n");
191 } else
192 printk(KERN_ERR "xc5000: no tuner reset function, fatal\n");
193}
194
Steven Tothe12671c2007-12-20 01:14:43 -0300195static int xc_write_reg(struct xc5000_priv *priv, u16 regAddr, u16 i2cData)
Steven Tothaacb9d32007-12-18 01:55:51 -0300196{
Steven Tothe12671c2007-12-20 01:14:43 -0300197 u8 buf[4];
Steven Tothaacb9d32007-12-18 01:55:51 -0300198 int WatchDogTimer = 5;
199 int result;
200
201 buf[0] = (regAddr >> 8) & 0xFF;
202 buf[1] = regAddr & 0xFF;
203 buf[2] = (i2cData >> 8) & 0xFF;
204 buf[3] = i2cData & 0xFF;
205 result = xc_send_i2c_data(priv, buf, 4);
Steven Tothe12671c2007-12-20 01:14:43 -0300206 if (result == XC_RESULT_SUCCESS) {
Steven Tothaacb9d32007-12-18 01:55:51 -0300207 /* wait for busy flag to clear */
208 while ((WatchDogTimer > 0) && (result == XC_RESULT_SUCCESS)) {
209 buf[0] = 0;
210 buf[1] = XREG_BUSY;
211
212 result = xc_send_i2c_data(priv, buf, 2);
213 if (result == XC_RESULT_SUCCESS) {
214 result = xc_read_i2c_data(priv, buf, 2);
215 if (result == XC_RESULT_SUCCESS) {
216 if ((buf[0] == 0) && (buf[1] == 0)) {
217 /* busy flag cleared */
218 break;
219 } else {
220 xc_wait(100); /* wait 5 ms */
221 WatchDogTimer--;
222 }
223 }
224 }
225 }
226 }
227 if (WatchDogTimer < 0)
228 result = XC_RESULT_I2C_WRITE_FAILURE;
229
230 return result;
231}
232
Steven Tothe12671c2007-12-20 01:14:43 -0300233static int xc_read_reg(struct xc5000_priv *priv, u16 regAddr, u16 *i2cData)
Steven Tothaacb9d32007-12-18 01:55:51 -0300234{
Steven Tothe12671c2007-12-20 01:14:43 -0300235 u8 buf[2];
Steven Tothaacb9d32007-12-18 01:55:51 -0300236 int result;
237
238 buf[0] = (regAddr >> 8) & 0xFF;
239 buf[1] = regAddr & 0xFF;
240 result = xc_send_i2c_data(priv, buf, 2);
Steven Tothe12671c2007-12-20 01:14:43 -0300241 if (result != XC_RESULT_SUCCESS)
Steven Tothaacb9d32007-12-18 01:55:51 -0300242 return result;
243
244 result = xc_read_i2c_data(priv, buf, 2);
Steven Tothe12671c2007-12-20 01:14:43 -0300245 if (result != XC_RESULT_SUCCESS)
Steven Tothaacb9d32007-12-18 01:55:51 -0300246 return result;
247
248 *i2cData = buf[0] * 256 + buf[1];
249 return result;
250}
251
Steven Tothe12671c2007-12-20 01:14:43 -0300252static int xc_load_i2c_sequence(struct dvb_frontend *fe, u8 i2c_sequence[])
Steven Tothaacb9d32007-12-18 01:55:51 -0300253{
254 struct xc5000_priv *priv = fe->tuner_priv;
255
256 int i, nbytes_to_send, result;
257 unsigned int len, pos, index;
Steven Tothe12671c2007-12-20 01:14:43 -0300258 u8 buf[XC_MAX_I2C_WRITE_LENGTH];
Steven Tothaacb9d32007-12-18 01:55:51 -0300259
260 index=0;
261 while ((i2c_sequence[index]!=0xFF) || (i2c_sequence[index+1]!=0xFF)) {
262
263 len = i2c_sequence[index]* 256 + i2c_sequence[index+1];
Steven Tothe12671c2007-12-20 01:14:43 -0300264 if (len == 0x0000) {
Steven Tothaacb9d32007-12-18 01:55:51 -0300265 /* RESET command */
266 result = xc_reset(fe);
267 index += 2;
Steven Tothe12671c2007-12-20 01:14:43 -0300268 if (result != XC_RESULT_SUCCESS)
Steven Tothaacb9d32007-12-18 01:55:51 -0300269 return result;
270 } else if (len & 0x8000) {
271 /* WAIT command */
272 xc_wait(len & 0x7FFF);
273 index += 2;
274 } else {
275 /* Send i2c data whilst ensuring individual transactions
276 * do not exceed XC_MAX_I2C_WRITE_LENGTH bytes.
277 */
278 index += 2;
279 buf[0] = i2c_sequence[index];
280 buf[1] = i2c_sequence[index + 1];
281 pos = 2;
282 while (pos < len) {
283 if ((len - pos) > XC_MAX_I2C_WRITE_LENGTH - 2) {
284 nbytes_to_send = XC_MAX_I2C_WRITE_LENGTH;
285 } else {
286 nbytes_to_send = (len - pos + 2);
287 }
288 for (i=2; i<nbytes_to_send; i++) {
289 buf[i] = i2c_sequence[index + pos + i - 2];
290 }
291 result = xc_send_i2c_data(priv, buf, nbytes_to_send);
292
Steven Tothe12671c2007-12-20 01:14:43 -0300293 if (result != XC_RESULT_SUCCESS)
Steven Tothaacb9d32007-12-18 01:55:51 -0300294 return result;
295
296 pos += nbytes_to_send - 2;
297 }
298 index += len;
299 }
300 }
301 return XC_RESULT_SUCCESS;
302}
303
Steven Tothe12671c2007-12-20 01:14:43 -0300304static int xc_initialize(struct xc5000_priv *priv)
Steven Tothaacb9d32007-12-18 01:55:51 -0300305{
306 dprintk(1, "%s()\n", __FUNCTION__);
307 return xc_write_reg(priv, XREG_INIT, 0);
308}
309
Steven Tothe12671c2007-12-20 01:14:43 -0300310static int xc_SetTVStandard(struct xc5000_priv *priv,
311 u16 VideoMode, u16 AudioMode)
Steven Tothaacb9d32007-12-18 01:55:51 -0300312{
313 int ret;
314 dprintk(1, "%s(%d,%d)\n", __FUNCTION__, VideoMode, AudioMode);
315 dprintk(1, "%s() Standard = %s\n",
316 __FUNCTION__,
317 XC5000_Standard[priv->video_standard].Name);
318
319 ret = xc_write_reg(priv, XREG_VIDEO_MODE, VideoMode);
320 if (ret == XC_RESULT_SUCCESS)
321 ret = xc_write_reg(priv, XREG_AUDIO_MODE, AudioMode);
322
323 return ret;
324}
325
Steven Tothe12671c2007-12-20 01:14:43 -0300326static int xc_shutdown(struct xc5000_priv *priv)
Steven Tothaacb9d32007-12-18 01:55:51 -0300327{
328 return xc_write_reg(priv, XREG_POWER_DOWN, 0);
329}
330
Steven Tothe12671c2007-12-20 01:14:43 -0300331static int xc_SetSignalSource(struct xc5000_priv *priv, u16 rf_mode)
Steven Tothaacb9d32007-12-18 01:55:51 -0300332{
333 dprintk(1, "%s(%d) Source = %s\n", __FUNCTION__, rf_mode,
334 rf_mode == XC_RF_MODE_AIR ? "ANTENNA" : "CABLE");
335
Steven Tothe12671c2007-12-20 01:14:43 -0300336 if ((rf_mode != XC_RF_MODE_AIR) && (rf_mode != XC_RF_MODE_CABLE))
Steven Tothaacb9d32007-12-18 01:55:51 -0300337 {
338 rf_mode = XC_RF_MODE_CABLE;
339 printk(KERN_ERR
340 "%s(), Invalid mode, defaulting to CABLE",
341 __FUNCTION__);
342 }
343 return xc_write_reg(priv, XREG_SIGNALSOURCE, rf_mode);
344}
345
Steven Tothe12671c2007-12-20 01:14:43 -0300346static const struct dvb_tuner_ops xc5000_tuner_ops;
347
348static int xc_set_RF_frequency(struct xc5000_priv *priv, u32 freq_hz)
Steven Tothaacb9d32007-12-18 01:55:51 -0300349{
Steven Tothe12671c2007-12-20 01:14:43 -0300350 u16 freq_code;
Steven Tothaacb9d32007-12-18 01:55:51 -0300351
Steven Tothaacb9d32007-12-18 01:55:51 -0300352 dprintk(1, "%s(%d)\n", __FUNCTION__, freq_hz);
353
Steven Tothe12671c2007-12-20 01:14:43 -0300354 if ((freq_hz > xc5000_tuner_ops.info.frequency_max) ||
355 (freq_hz < xc5000_tuner_ops.info.frequency_min))
356 return XC_RESULT_OUT_OF_RANGE;
Steven Tothaacb9d32007-12-18 01:55:51 -0300357
Steven Tothe12671c2007-12-20 01:14:43 -0300358 freq_code = (u16)(freq_hz / 15625);
359
360 return xc_write_reg(priv, XREG_RF_FREQ, freq_code);
Steven Tothaacb9d32007-12-18 01:55:51 -0300361}
362
Steven Tothe12671c2007-12-20 01:14:43 -0300363
364static int xc_set_IF_frequency(struct xc5000_priv *priv, u32 freq_khz)
Steven Tothaacb9d32007-12-18 01:55:51 -0300365{
Steven Tothe12671c2007-12-20 01:14:43 -0300366 u32 freq_code = (freq_khz * 1024)/1000;
367 dprintk(1, "%s(freq_khz = %d) freq_code = 0x%x\n",
368 __FUNCTION__, freq_khz, freq_code);
369
370 return xc_write_reg(priv, XREG_IF_OUT, freq_code);
Steven Tothaacb9d32007-12-18 01:55:51 -0300371}
372
Steven Tothe12671c2007-12-20 01:14:43 -0300373
374static int xc_get_ADC_Envelope(struct xc5000_priv *priv, u16 *adc_envelope)
Steven Tothaacb9d32007-12-18 01:55:51 -0300375{
376 return xc_read_reg(priv, XREG_ADC_ENV, adc_envelope);
377}
378
Steven Tothe12671c2007-12-20 01:14:43 -0300379static int xc_get_frequency_error(struct xc5000_priv *priv, u32 *freq_error_hz)
Steven Tothaacb9d32007-12-18 01:55:51 -0300380{
381 int result;
Steven Tothe12671c2007-12-20 01:14:43 -0300382 u16 regData;
Steven Tothaacb9d32007-12-18 01:55:51 -0300383 u32 tmp;
384
385 result = xc_read_reg(priv, XREG_FREQ_ERROR, &regData);
386 if (result)
387 return result;
388
389 tmp = (u32)regData;
Steven Tothe12671c2007-12-20 01:14:43 -0300390 (*freq_error_hz) = (tmp * 15625) / 1000;
Steven Tothaacb9d32007-12-18 01:55:51 -0300391 return result;
392}
393
Steven Tothe12671c2007-12-20 01:14:43 -0300394static int xc_get_lock_status(struct xc5000_priv *priv, u16 *lock_status)
Steven Tothaacb9d32007-12-18 01:55:51 -0300395{
396 return xc_read_reg(priv, XREG_LOCK, lock_status);
397}
398
Steven Tothe12671c2007-12-20 01:14:43 -0300399static int xc_get_version(struct xc5000_priv *priv,
400 u8 *hw_majorversion, u8 *hw_minorversion,
401 u8 *fw_majorversion, u8 *fw_minorversion)
Steven Tothaacb9d32007-12-18 01:55:51 -0300402{
Steven Tothe12671c2007-12-20 01:14:43 -0300403 u16 data;
Steven Tothaacb9d32007-12-18 01:55:51 -0300404 int result;
405
406 result = xc_read_reg(priv, XREG_VERSION, &data);
407 if (result)
408 return result;
409
Steven Tothe12671c2007-12-20 01:14:43 -0300410 (*hw_majorversion) = (data >> 12) & 0x0F;
411 (*hw_minorversion) = (data >> 8) & 0x0F;
412 (*fw_majorversion) = (data >> 4) & 0x0F;
413 (*fw_minorversion) = data & 0x0F;
Steven Tothaacb9d32007-12-18 01:55:51 -0300414
415 return 0;
416}
417
Steven Tothe12671c2007-12-20 01:14:43 -0300418static int xc_get_hsync_freq(struct xc5000_priv *priv, u32 *hsync_freq_hz)
Steven Tothaacb9d32007-12-18 01:55:51 -0300419{
Steven Tothe12671c2007-12-20 01:14:43 -0300420 u16 regData;
Steven Tothaacb9d32007-12-18 01:55:51 -0300421 int result;
422
423 result = xc_read_reg(priv, XREG_HSYNC_FREQ, &regData);
424 if (result)
425 return result;
426
427 (*hsync_freq_hz) = ((regData & 0x0fff) * 763)/100;
428 return result;
429}
430
Steven Tothe12671c2007-12-20 01:14:43 -0300431static int xc_get_frame_lines(struct xc5000_priv *priv, u16 *frame_lines)
Steven Tothaacb9d32007-12-18 01:55:51 -0300432{
433 return xc_read_reg(priv, XREG_FRAME_LINES, frame_lines);
434}
435
Steven Tothe12671c2007-12-20 01:14:43 -0300436static int xc_get_quality(struct xc5000_priv *priv, u16 *quality)
Steven Tothaacb9d32007-12-18 01:55:51 -0300437{
438 return xc_read_reg(priv, XREG_QUALITY, quality);
439}
440
Steven Tothe12671c2007-12-20 01:14:43 -0300441static u16 WaitForLock(struct xc5000_priv *priv)
Steven Tothaacb9d32007-12-18 01:55:51 -0300442{
Steven Tothe12671c2007-12-20 01:14:43 -0300443 u16 lockState = 0;
Steven Tothaacb9d32007-12-18 01:55:51 -0300444 int watchDogCount = 40;
Steven Tothe12671c2007-12-20 01:14:43 -0300445
446 while ((lockState == 0) && (watchDogCount > 0)) {
Steven Tothaacb9d32007-12-18 01:55:51 -0300447 xc_get_lock_status(priv, &lockState);
Steven Tothe12671c2007-12-20 01:14:43 -0300448 if (lockState != 1) {
Steven Tothaacb9d32007-12-18 01:55:51 -0300449 xc_wait(5);
450 watchDogCount--;
451 }
452 }
453 return lockState;
454}
455
Steven Tothe12671c2007-12-20 01:14:43 -0300456static int xc_tune_channel(struct xc5000_priv *priv, u32 freq_hz)
Steven Tothaacb9d32007-12-18 01:55:51 -0300457{
458 int found = 0;
459
Steven Tothe12671c2007-12-20 01:14:43 -0300460 dprintk(1, "%s(%d)\n", __FUNCTION__, freq_hz);
Steven Tothaacb9d32007-12-18 01:55:51 -0300461
Steven Tothe12671c2007-12-20 01:14:43 -0300462 if (xc_set_RF_frequency(priv, freq_hz) != XC_RESULT_SUCCESS)
Steven Tothaacb9d32007-12-18 01:55:51 -0300463 return 0;
464
Steven Tothe12671c2007-12-20 01:14:43 -0300465 if (WaitForLock(priv) == 1)
Steven Tothaacb9d32007-12-18 01:55:51 -0300466 found = 1;
467
468 return found;
469}
470
471static int xc5000_readreg(struct xc5000_priv *priv, u16 reg, u16 *val)
472{
473 u8 buf[2] = { reg >> 8, reg & 0xff };
474 u8 bval[2] = { 0, 0 };
475 struct i2c_msg msg[2] = {
476 { .addr = priv->cfg->i2c_address,
477 .flags = 0, .buf = &buf[0], .len = 2 },
478 { .addr = priv->cfg->i2c_address,
479 .flags = I2C_M_RD, .buf = &bval[0], .len = 2 },
480 };
481
482 if (i2c_transfer(priv->i2c, msg, 2) != 2) {
483 printk(KERN_WARNING "xc5000 I2C read failed\n");
484 return -EREMOTEIO;
485 }
486
487 *val = (bval[0] << 8) | bval[1];
488 return 0;
489}
490
491static int xc5000_writeregs(struct xc5000_priv *priv, u8 *buf, u8 len)
492{
493 struct i2c_msg msg = { .addr = priv->cfg->i2c_address,
494 .flags = 0, .buf = buf, .len = len };
495
496 if (i2c_transfer(priv->i2c, &msg, 1) != 1) {
497 printk(KERN_ERR "xc5000 I2C write failed (len=%i)\n",
498 (int)len);
499 return -EREMOTEIO;
500 }
501 return 0;
502}
503
504static int xc5000_readregs(struct xc5000_priv *priv, u8 *buf, u8 len)
505{
506 struct i2c_msg msg = { .addr = priv->cfg->i2c_address,
507 .flags = I2C_M_RD, .buf = buf, .len = len };
508
509 if (i2c_transfer(priv->i2c, &msg, 1) != 1) {
510 printk(KERN_ERR "xc5000 I2C read failed (len=%i)\n",(int)len);
511 return -EREMOTEIO;
512 }
513 return 0;
514}
515
516static int xc5000_fwupload(struct dvb_frontend* fe)
517{
518 struct xc5000_priv *priv = fe->tuner_priv;
519 const struct firmware *fw;
520 int ret;
521
Steven Tothe12671c2007-12-20 01:14:43 -0300522 if (!priv->cfg->request_firmware) {
Steven Tothaacb9d32007-12-18 01:55:51 -0300523 printk(KERN_ERR "xc5000: no firmware callback, fatal\n");
524 return -EIO;
525 }
526
Steven Tothe12671c2007-12-20 01:14:43 -0300527 /* request the firmware, this will block and timeout */
528 printk(KERN_INFO "xc5000: waiting for firmware upload (%s)...\n",
529 XC5000_DEFAULT_FIRMWARE);
530
Steven Tothaacb9d32007-12-18 01:55:51 -0300531 ret = priv->cfg->request_firmware(fe, &fw, XC5000_DEFAULT_FIRMWARE);
532 if (ret) {
533 printk(KERN_ERR "xc5000: Upload failed. (file not found?)\n");
534 ret = XC_RESULT_RESET_FAILURE;
535 } else {
536 printk(KERN_INFO "xc5000: firmware read %d bytes.\n", fw->size);
537 ret = XC_RESULT_SUCCESS;
538 }
539
Steven Tothe12671c2007-12-20 01:14:43 -0300540 if (fw->size != XC5000_DEFAULT_FIRMWARE_SIZE) {
Steven Tothaacb9d32007-12-18 01:55:51 -0300541 printk(KERN_ERR "xc5000: firmware incorrect size\n");
542 ret = XC_RESULT_RESET_FAILURE;
543 } else {
544 printk(KERN_INFO "xc5000: firmware upload\n");
545 ret = xc_load_i2c_sequence(fe, fw->data );
546 }
547
548 release_firmware(fw);
549 return ret;
550}
551
Steven Tothe12671c2007-12-20 01:14:43 -0300552static void xc_debug_dump(struct xc5000_priv *priv)
Steven Tothaacb9d32007-12-18 01:55:51 -0300553{
Steven Tothe12671c2007-12-20 01:14:43 -0300554 u16 adc_envelope;
555 u32 freq_error_hz = 0;
556 u16 lock_status;
557 u32 hsync_freq_hz = 0;
558 u16 frame_lines;
559 u16 quality;
560 u8 hw_majorversion = 0, hw_minorversion = 0;
561 u8 fw_majorversion = 0, fw_minorversion = 0;
Steven Tothaacb9d32007-12-18 01:55:51 -0300562
563 /* Wait for stats to stabilize.
564 * Frame Lines needs two frame times after initial lock
565 * before it is valid.
566 */
Steven Tothe12671c2007-12-20 01:14:43 -0300567 xc_wait(100);
Steven Tothaacb9d32007-12-18 01:55:51 -0300568
Steven Tothe12671c2007-12-20 01:14:43 -0300569 xc_get_ADC_Envelope(priv, &adc_envelope);
570 dprintk(1, "*** ADC envelope (0-1023) = %d\n", adc_envelope);
Steven Tothaacb9d32007-12-18 01:55:51 -0300571
Steven Tothe12671c2007-12-20 01:14:43 -0300572 xc_get_frequency_error(priv, &freq_error_hz);
573 dprintk(1, "*** Frequency error = %d Hz\n", freq_error_hz);
Steven Tothaacb9d32007-12-18 01:55:51 -0300574
Steven Tothe12671c2007-12-20 01:14:43 -0300575 xc_get_lock_status(priv, &lock_status);
576 dprintk(1, "*** Lock status (0-Wait, 1-Locked, 2-No-signal) = %d\n",
Steven Tothaacb9d32007-12-18 01:55:51 -0300577 lock_status);
578
579 xc_get_version(priv, &hw_majorversion, &hw_minorversion,
Steven Tothe12671c2007-12-20 01:14:43 -0300580 &fw_majorversion, &fw_minorversion);
Steven Tothaacb9d32007-12-18 01:55:51 -0300581 dprintk(1, "*** HW: V%02x.%02x, FW: V%02x.%02x\n",
582 hw_majorversion, hw_minorversion,
583 fw_majorversion, fw_minorversion);
584
Steven Tothe12671c2007-12-20 01:14:43 -0300585 xc_get_hsync_freq(priv, &hsync_freq_hz);
586 dprintk(1, "*** Horizontal sync frequency = %d Hz\n", hsync_freq_hz);
Steven Tothaacb9d32007-12-18 01:55:51 -0300587
Steven Tothe12671c2007-12-20 01:14:43 -0300588 xc_get_frame_lines(priv, &frame_lines);
589 dprintk(1, "*** Frame lines = %d\n", frame_lines);
Steven Tothaacb9d32007-12-18 01:55:51 -0300590
Steven Tothe12671c2007-12-20 01:14:43 -0300591 xc_get_quality(priv, &quality);
592 dprintk(1, "*** Quality (0:<8dB, 7:>56dB) = %d\n", quality);
Steven Tothaacb9d32007-12-18 01:55:51 -0300593}
594
595static int xc5000_set_params(struct dvb_frontend *fe,
596 struct dvb_frontend_parameters *params)
597{
598 struct xc5000_priv *priv = fe->tuner_priv;
Steven Tothe12671c2007-12-20 01:14:43 -0300599 int ret;
Steven Tothaacb9d32007-12-18 01:55:51 -0300600
Steven Tothe12671c2007-12-20 01:14:43 -0300601 dprintk(1, "%s() frequency=%d (Hz)\n", __FUNCTION__, params->frequency);
Steven Tothaacb9d32007-12-18 01:55:51 -0300602
Steven Tothaacb9d32007-12-18 01:55:51 -0300603
604 switch(params->u.vsb.modulation) {
605 case VSB_8:
606 case VSB_16:
607 dprintk(1, "%s() VSB modulation\n", __FUNCTION__);
608 priv->rf_mode = XC_RF_MODE_AIR;
Steven Tothe12671c2007-12-20 01:14:43 -0300609 priv->freq_hz = params->frequency - 1750000;
610 priv->bandwidth = BANDWIDTH_6_MHZ;
611 priv->video_standard = DTV6;
Steven Tothaacb9d32007-12-18 01:55:51 -0300612 break;
613 case QAM_64:
614 case QAM_256:
615 case QAM_AUTO:
616 dprintk(1, "%s() QAM modulation\n", __FUNCTION__);
617 priv->rf_mode = XC_RF_MODE_CABLE;
Steven Tothe12671c2007-12-20 01:14:43 -0300618 priv->freq_hz = params->frequency - 1750000;
619 priv->bandwidth = BANDWIDTH_6_MHZ;
620 priv->video_standard = DTV6;
Steven Tothaacb9d32007-12-18 01:55:51 -0300621 break;
622 default:
623 return -EINVAL;
624 }
625
626 dprintk(1, "%s() frequency=%d (compensated)\n",
Steven Tothe12671c2007-12-20 01:14:43 -0300627 __FUNCTION__, priv->freq_hz);
Steven Tothaacb9d32007-12-18 01:55:51 -0300628
Steven Tothe12671c2007-12-20 01:14:43 -0300629 ret = xc_SetSignalSource(priv, priv->rf_mode);
630 if (ret != XC_RESULT_SUCCESS) {
631 printk(KERN_ERR
632 "xc5000: xc_SetSignalSource(%d) failed\n",
633 priv->rf_mode);
634 return -EREMOTEIO;
635 }
Steven Tothaacb9d32007-12-18 01:55:51 -0300636
Steven Tothe12671c2007-12-20 01:14:43 -0300637 ret = xc_SetTVStandard(priv,
Steven Tothaacb9d32007-12-18 01:55:51 -0300638 XC5000_Standard[priv->video_standard].VideoMode,
639 XC5000_Standard[priv->video_standard].AudioMode);
Steven Tothe12671c2007-12-20 01:14:43 -0300640 if (ret != XC_RESULT_SUCCESS) {
641 printk(KERN_ERR "xc5000: xc_SetTVStandard failed\n");
642 return -EREMOTEIO;
643 }
Steven Tothaacb9d32007-12-18 01:55:51 -0300644
Steven Tothe12671c2007-12-20 01:14:43 -0300645 ret = xc_set_IF_frequency(priv, priv->cfg->if_khz);
646 if (ret != XC_RESULT_SUCCESS) {
647 printk(KERN_ERR "xc5000: xc_Set_IF_frequency(%d) failed\n",
648 priv->cfg->if_khz);
649 return -EIO;
650 }
651
652 xc_tune_channel(priv, priv->freq_hz);
653
654 if (debug)
655 xc_debug_dump(priv);
Steven Tothaacb9d32007-12-18 01:55:51 -0300656
657 return 0;
658}
659
660static int xc5000_get_frequency(struct dvb_frontend *fe, u32 *freq)
661{
662 struct xc5000_priv *priv = fe->tuner_priv;
663 dprintk(1, "%s()\n", __FUNCTION__);
Steven Tothe12671c2007-12-20 01:14:43 -0300664 *freq = priv->freq_hz;
Steven Tothaacb9d32007-12-18 01:55:51 -0300665 return 0;
666}
667
668static int xc5000_get_bandwidth(struct dvb_frontend *fe, u32 *bw)
669{
670 struct xc5000_priv *priv = fe->tuner_priv;
671 dprintk(1, "%s()\n", __FUNCTION__);
672 *bw = priv->bandwidth;
673 return 0;
674}
675
676static int xc5000_get_status(struct dvb_frontend *fe, u32 *status)
677{
678 struct xc5000_priv *priv = fe->tuner_priv;
Steven Tothe12671c2007-12-20 01:14:43 -0300679 u16 lock_status = 0;
Steven Tothaacb9d32007-12-18 01:55:51 -0300680
681 xc_get_lock_status(priv, &lock_status);
682
683 dprintk(1, "%s() lock_status = 0x%08x\n", __FUNCTION__, lock_status);
684
685 *status = lock_status;
686
687 return 0;
688}
689
Steven Tothe12671c2007-12-20 01:14:43 -0300690static int xc_load_fw_and_init_tuner(struct dvb_frontend *fe)
Steven Tothaacb9d32007-12-18 01:55:51 -0300691{
692 struct xc5000_priv *priv = fe->tuner_priv;
693 int ret;
694
Steven Tothe12671c2007-12-20 01:14:43 -0300695 if (priv->fwloaded == 0) {
Steven Tothaacb9d32007-12-18 01:55:51 -0300696 ret = xc5000_fwupload(fe);
Steven Tothe12671c2007-12-20 01:14:43 -0300697 if (ret != XC_RESULT_SUCCESS)
698 return ret;
Steven Tothaacb9d32007-12-18 01:55:51 -0300699
700 priv->fwloaded = 1;
701 }
702
703 /* Start the tuner self-calibration process */
704 ret |= xc_initialize(priv);
705
706 /* Wait for calibration to complete.
707 * We could continue but XC5000 will clock stretch subsequent
708 * I2C transactions until calibration is complete. This way we
709 * don't have to rely on clock stretching working.
710 */
711 xc_wait( 100 );
712
713 /* Default to "CABLE" mode */
714 ret |= xc_write_reg(priv, XREG_SIGNALSOURCE, XC_RF_MODE_CABLE);
715
716 return ret;
717}
718
Steven Tothe12671c2007-12-20 01:14:43 -0300719static int xc5000_sleep(struct dvb_frontend *fe)
720{
721 struct xc5000_priv *priv = fe->tuner_priv;
722 dprintk(1, "%s()\n", __FUNCTION__);
723
724 return xc_shutdown(priv);
725}
726
Steven Tothaacb9d32007-12-18 01:55:51 -0300727static int xc5000_init(struct dvb_frontend *fe)
728{
729 struct xc5000_priv *priv = fe->tuner_priv;
730 dprintk(1, "%s()\n", __FUNCTION__);
731
Steven Tothe12671c2007-12-20 01:14:43 -0300732 if (xc_load_fw_and_init_tuner(fe) != XC_RESULT_SUCCESS) {
733 printk(KERN_ERR "xc5000: Unable to initialise tuner\n");
734 return -EREMOTEIO;
735 }
736
737 if (debug)
738 xc_debug_dump(priv);
Steven Tothaacb9d32007-12-18 01:55:51 -0300739
740 return 0;
741}
742
743static int xc5000_release(struct dvb_frontend *fe)
744{
745 dprintk(1, "%s()\n", __FUNCTION__);
746 kfree(fe->tuner_priv);
747 fe->tuner_priv = NULL;
748 return 0;
749}
750
751static const struct dvb_tuner_ops xc5000_tuner_ops = {
752 .info = {
753 .name = "Xceive XC5000",
754 .frequency_min = 1000000,
755 .frequency_max = 1023000000,
756 .frequency_step = 50000,
757 },
758
759 .release = xc5000_release,
760 .init = xc5000_init,
Steven Tothe12671c2007-12-20 01:14:43 -0300761 .sleep = xc5000_sleep,
Steven Tothaacb9d32007-12-18 01:55:51 -0300762
763 .set_params = xc5000_set_params,
764 .get_frequency = xc5000_get_frequency,
765 .get_bandwidth = xc5000_get_bandwidth,
766 .get_status = xc5000_get_status
767};
768
769struct dvb_frontend * xc5000_attach(struct dvb_frontend *fe,
770 struct i2c_adapter *i2c,
771 struct xc5000_config *cfg)
772{
773 struct xc5000_priv *priv = NULL;
774 u16 id = 0;
775
776 dprintk(1, "%s()\n", __FUNCTION__);
777
778 priv = kzalloc(sizeof(struct xc5000_priv), GFP_KERNEL);
779 if (priv == NULL)
780 return NULL;
781
782 priv->cfg = cfg;
Steven Tothe12671c2007-12-20 01:14:43 -0300783 priv->bandwidth = BANDWIDTH_6_MHZ;
Steven Tothaacb9d32007-12-18 01:55:51 -0300784 priv->i2c = i2c;
785 priv->fwloaded = 0;
786
787 if (xc5000_readreg(priv, XREG_PRODUCT_ID, &id) != 0) {
788 kfree(priv);
789 return NULL;
790 }
791
Steven Tothe12671c2007-12-20 01:14:43 -0300792 if ((id != 0x2000) && (id != 0x1388)) {
Steven Tothaacb9d32007-12-18 01:55:51 -0300793 printk(KERN_ERR
794 "xc5000: Device not found at addr 0x%02x (0x%x)\n",
795 cfg->i2c_address, id);
796 kfree(priv);
797 return NULL;
798 }
799
800 printk(KERN_INFO "xc5000: successfully identified at address 0x%02x\n",
801 cfg->i2c_address);
802
803 memcpy(&fe->ops.tuner_ops, &xc5000_tuner_ops,
804 sizeof(struct dvb_tuner_ops));
805
806 fe->tuner_priv = priv;
807
808 return fe;
809}
810EXPORT_SYMBOL(xc5000_attach);
811
812MODULE_AUTHOR("Steven Toth");
Steven Tothe12671c2007-12-20 01:14:43 -0300813MODULE_DESCRIPTION("Xceive xc5000 silicon tuner driver");
Steven Tothaacb9d32007-12-18 01:55:51 -0300814MODULE_LICENSE("GPL");