2 * Driver for Xceive XC5000 "QAM/8VSB single chip tuner"
4 * Copyright (c) 2007 Xceive Corporation
5 * Copyright (c) 2007 Steven Toth <stoth@linuxtv.org>
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.
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
16 * GNU General Public License for more details.
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.
23 #include <linux/module.h>
24 #include <linux/moduleparam.h>
25 #include <linux/videodev2.h>
26 #include <linux/delay.h>
27 #include <linux/dvb/frontend.h>
28 #include <linux/i2c.h>
30 #include "dvb_frontend.h"
33 #include "tuner-i2c.h"
36 module_param(debug, int, 0644);
37 MODULE_PARM_DESC(debug, "Turn on/off debugging (default:off).");
39 static int xc5000_load_fw_on_attach;
40 module_param_named(init_fw, xc5000_load_fw_on_attach, int, 0644);
41 MODULE_PARM_DESC(init_fw, "Load firmware during driver initialization.");
43 static DEFINE_MUTEX(xc5000_list_mutex);
44 static LIST_HEAD(hybrid_tuner_instance_list);
46 #define dprintk(level, fmt, arg...) if (debug >= level) \
47 printk(KERN_INFO "%s: " fmt, "xc5000", ## arg)
49 #define XC5000_DEFAULT_FIRMWARE "dvb-fe-xc5000-1.1.fw"
50 #define XC5000_DEFAULT_FIRMWARE_SIZE 12332
53 struct tuner_i2c_props i2c_props;
54 struct list_head hybrid_tuner_instance_list;
64 #define MAX_TV_STANDARD 23
65 #define XC_MAX_I2C_WRITE_LENGTH 64
68 #define XC_RF_MODE_AIR 0
69 #define XC_RF_MODE_CABLE 1
72 #define XC_RESULT_SUCCESS 0
73 #define XC_RESULT_RESET_FAILURE 1
74 #define XC_RESULT_I2C_WRITE_FAILURE 2
75 #define XC_RESULT_I2C_READ_FAILURE 3
76 #define XC_RESULT_OUT_OF_RANGE 5
79 #define XC_PRODUCT_ID_FW_NOT_LOADED 0x2000
80 #define XC_PRODUCT_ID_FW_LOADED 0x1388
83 #define XREG_INIT 0x00
84 #define XREG_VIDEO_MODE 0x01
85 #define XREG_AUDIO_MODE 0x02
86 #define XREG_RF_FREQ 0x03
87 #define XREG_D_CODE 0x04
88 #define XREG_IF_OUT 0x05
89 #define XREG_SEEK_MODE 0x07
90 #define XREG_POWER_DOWN 0x0A
91 #define XREG_SIGNALSOURCE 0x0D /* 0=Air, 1=Cable */
92 #define XREG_SMOOTHEDCVBS 0x0E
93 #define XREG_XTALFREQ 0x0F
94 #define XREG_FINERFFREQ 0x10
95 #define XREG_DDIMODE 0x11
97 #define XREG_ADC_ENV 0x00
98 #define XREG_QUALITY 0x01
99 #define XREG_FRAME_LINES 0x02
100 #define XREG_HSYNC_FREQ 0x03
101 #define XREG_LOCK 0x04
102 #define XREG_FREQ_ERROR 0x05
103 #define XREG_SNR 0x06
104 #define XREG_VERSION 0x07
105 #define XREG_PRODUCT_ID 0x08
106 #define XREG_BUSY 0x09
109 Basic firmware description. This will remain with
110 the driver for documentation purposes.
112 This represents an I2C firmware file encoded as a
113 string of unsigned char. Format is as follows:
115 char[0 ]=len0_MSB -> len = len_MSB * 256 + len_LSB
116 char[1 ]=len0_LSB -> length of first write transaction
117 char[2 ]=data0 -> first byte to be sent
121 char[M ]=dataN -> last byte to be sent
122 char[M+1]=len1_MSB -> len = len_MSB * 256 + len_LSB
123 char[M+2]=len1_LSB -> length of second write transaction
129 The [len] value should be interpreted as follows:
131 len= len_MSB _ len_LSB
132 len=1111_1111_1111_1111 : End of I2C_SEQUENCE
133 len=0000_0000_0000_0000 : Reset command: Do hardware reset
134 len=0NNN_NNNN_NNNN_NNNN : Normal transaction: number of bytes = {1:32767)
135 len=1WWW_WWWW_WWWW_WWWW : Wait command: wait for {1:32767} ms
137 For the RESET and WAIT commands, the two following bytes will contain
138 immediately the length of the following transaction.
141 struct XC_TV_STANDARD {
147 /* Tuner standards */
148 #define MN_NTSC_PAL_BTSC 0
149 #define MN_NTSC_PAL_A2 1
150 #define MN_NTSC_PAL_EIAJ 2
151 #define MN_NTSC_PAL_Mono 3
153 #define BG_PAL_NICAM 5
154 #define BG_PAL_MONO 6
155 #define I_PAL_NICAM 7
156 #define I_PAL_NICAM_MONO 8
158 #define DK_PAL_NICAM 10
159 #define DK_PAL_MONO 11
160 #define DK_SECAM_A2DK1 12
161 #define DK_SECAM_A2LDK3 13
162 #define DK_SECAM_A2MONO 14
163 #define L_SECAM_NICAM 15
164 #define LC_SECAM_NICAM 16
169 #define FM_Radio_INPUT2 21
170 #define FM_Radio_INPUT1 22
172 static struct XC_TV_STANDARD XC5000_Standard[MAX_TV_STANDARD] = {
173 {"M/N-NTSC/PAL-BTSC", 0x0400, 0x8020},
174 {"M/N-NTSC/PAL-A2", 0x0600, 0x8020},
175 {"M/N-NTSC/PAL-EIAJ", 0x0440, 0x8020},
176 {"M/N-NTSC/PAL-Mono", 0x0478, 0x8020},
177 {"B/G-PAL-A2", 0x0A00, 0x8049},
178 {"B/G-PAL-NICAM", 0x0C04, 0x8049},
179 {"B/G-PAL-MONO", 0x0878, 0x8059},
180 {"I-PAL-NICAM", 0x1080, 0x8009},
181 {"I-PAL-NICAM-MONO", 0x0E78, 0x8009},
182 {"D/K-PAL-A2", 0x1600, 0x8009},
183 {"D/K-PAL-NICAM", 0x0E80, 0x8009},
184 {"D/K-PAL-MONO", 0x1478, 0x8009},
185 {"D/K-SECAM-A2 DK1", 0x1200, 0x8009},
186 {"D/K-SECAM-A2 L/DK3", 0x0E00, 0x8009},
187 {"D/K-SECAM-A2 MONO", 0x1478, 0x8009},
188 {"L-SECAM-NICAM", 0x8E82, 0x0009},
189 {"L'-SECAM-NICAM", 0x8E82, 0x4009},
190 {"DTV6", 0x00C0, 0x8002},
191 {"DTV8", 0x00C0, 0x800B},
192 {"DTV7/8", 0x00C0, 0x801B},
193 {"DTV7", 0x00C0, 0x8007},
194 {"FM Radio-INPUT2", 0x9802, 0x9002},
195 {"FM Radio-INPUT1", 0x0208, 0x9002}
198 static int xc5000_is_firmware_loaded(struct dvb_frontend *fe);
199 static int xc5000_writeregs(struct xc5000_priv *priv, u8 *buf, u8 len);
200 static int xc5000_readregs(struct xc5000_priv *priv, u8 *buf, u8 len);
201 static void xc5000_TunerReset(struct dvb_frontend *fe);
203 static int xc_send_i2c_data(struct xc5000_priv *priv, u8 *buf, int len)
205 return xc5000_writeregs(priv, buf, len)
206 ? XC_RESULT_I2C_WRITE_FAILURE : XC_RESULT_SUCCESS;
209 static int xc_read_i2c_data(struct xc5000_priv *priv, u8 *buf, int len)
211 return xc5000_readregs(priv, buf, len)
212 ? XC_RESULT_I2C_READ_FAILURE : XC_RESULT_SUCCESS;
215 static int xc_reset(struct dvb_frontend *fe)
217 xc5000_TunerReset(fe);
218 return XC_RESULT_SUCCESS;
221 static void xc_wait(int wait_ms)
226 static void xc5000_TunerReset(struct dvb_frontend *fe)
228 struct xc5000_priv *priv = fe->tuner_priv;
231 dprintk(1, "%s()\n", __func__);
234 ret = fe->callback(((fe->dvb) && (fe->dvb->priv)) ?
236 priv->i2c_props.adap->algo_data,
237 DVB_FRONTEND_COMPONENT_TUNER,
238 XC5000_TUNER_RESET, 0);
240 printk(KERN_ERR "xc5000: reset failed\n");
242 printk(KERN_ERR "xc5000: no tuner reset callback function, fatal\n");
245 static int xc_write_reg(struct xc5000_priv *priv, u16 regAddr, u16 i2cData)
248 int WatchDogTimer = 5;
251 buf[0] = (regAddr >> 8) & 0xFF;
252 buf[1] = regAddr & 0xFF;
253 buf[2] = (i2cData >> 8) & 0xFF;
254 buf[3] = i2cData & 0xFF;
255 result = xc_send_i2c_data(priv, buf, 4);
256 if (result == XC_RESULT_SUCCESS) {
257 /* wait for busy flag to clear */
258 while ((WatchDogTimer > 0) && (result == XC_RESULT_SUCCESS)) {
262 result = xc_send_i2c_data(priv, buf, 2);
263 if (result == XC_RESULT_SUCCESS) {
264 result = xc_read_i2c_data(priv, buf, 2);
265 if (result == XC_RESULT_SUCCESS) {
266 if ((buf[0] == 0) && (buf[1] == 0)) {
267 /* busy flag cleared */
270 xc_wait(100); /* wait 5 ms */
277 if (WatchDogTimer < 0)
278 result = XC_RESULT_I2C_WRITE_FAILURE;
283 static int xc_read_reg(struct xc5000_priv *priv, u16 regAddr, u16 *i2cData)
288 buf[0] = (regAddr >> 8) & 0xFF;
289 buf[1] = regAddr & 0xFF;
290 result = xc_send_i2c_data(priv, buf, 2);
291 if (result != XC_RESULT_SUCCESS)
294 result = xc_read_i2c_data(priv, buf, 2);
295 if (result != XC_RESULT_SUCCESS)
298 *i2cData = buf[0] * 256 + buf[1];
302 static int xc_load_i2c_sequence(struct dvb_frontend *fe, const u8 *i2c_sequence)
304 struct xc5000_priv *priv = fe->tuner_priv;
306 int i, nbytes_to_send, result;
307 unsigned int len, pos, index;
308 u8 buf[XC_MAX_I2C_WRITE_LENGTH];
311 while ((i2c_sequence[index] != 0xFF) ||
312 (i2c_sequence[index + 1] != 0xFF)) {
313 len = i2c_sequence[index] * 256 + i2c_sequence[index+1];
316 result = xc_reset(fe);
318 if (result != XC_RESULT_SUCCESS)
320 } else if (len & 0x8000) {
322 xc_wait(len & 0x7FFF);
325 /* Send i2c data whilst ensuring individual transactions
326 * do not exceed XC_MAX_I2C_WRITE_LENGTH bytes.
329 buf[0] = i2c_sequence[index];
330 buf[1] = i2c_sequence[index + 1];
333 if ((len - pos) > XC_MAX_I2C_WRITE_LENGTH - 2)
335 XC_MAX_I2C_WRITE_LENGTH;
337 nbytes_to_send = (len - pos + 2);
338 for (i = 2; i < nbytes_to_send; i++) {
339 buf[i] = i2c_sequence[index + pos +
342 result = xc_send_i2c_data(priv, buf,
345 if (result != XC_RESULT_SUCCESS)
348 pos += nbytes_to_send - 2;
353 return XC_RESULT_SUCCESS;
356 static int xc_initialize(struct xc5000_priv *priv)
358 dprintk(1, "%s()\n", __func__);
359 return xc_write_reg(priv, XREG_INIT, 0);
362 static int xc_SetTVStandard(struct xc5000_priv *priv,
363 u16 VideoMode, u16 AudioMode)
366 dprintk(1, "%s(0x%04x,0x%04x)\n", __func__, VideoMode, AudioMode);
367 dprintk(1, "%s() Standard = %s\n",
369 XC5000_Standard[priv->video_standard].Name);
371 ret = xc_write_reg(priv, XREG_VIDEO_MODE, VideoMode);
372 if (ret == XC_RESULT_SUCCESS)
373 ret = xc_write_reg(priv, XREG_AUDIO_MODE, AudioMode);
378 static int xc_shutdown(struct xc5000_priv *priv)
380 return XC_RESULT_SUCCESS;
381 /* Fixme: cannot bring tuner back alive once shutdown
382 * without reloading the driver modules.
383 * return xc_write_reg(priv, XREG_POWER_DOWN, 0);
387 static int xc_SetSignalSource(struct xc5000_priv *priv, u16 rf_mode)
389 dprintk(1, "%s(%d) Source = %s\n", __func__, rf_mode,
390 rf_mode == XC_RF_MODE_AIR ? "ANTENNA" : "CABLE");
392 if ((rf_mode != XC_RF_MODE_AIR) && (rf_mode != XC_RF_MODE_CABLE)) {
393 rf_mode = XC_RF_MODE_CABLE;
395 "%s(), Invalid mode, defaulting to CABLE",
398 return xc_write_reg(priv, XREG_SIGNALSOURCE, rf_mode);
401 static const struct dvb_tuner_ops xc5000_tuner_ops;
403 static int xc_set_RF_frequency(struct xc5000_priv *priv, u32 freq_hz)
407 dprintk(1, "%s(%u)\n", __func__, freq_hz);
409 if ((freq_hz > xc5000_tuner_ops.info.frequency_max) ||
410 (freq_hz < xc5000_tuner_ops.info.frequency_min))
411 return XC_RESULT_OUT_OF_RANGE;
413 freq_code = (u16)(freq_hz / 15625);
415 return xc_write_reg(priv, XREG_RF_FREQ, freq_code);
419 static int xc_set_IF_frequency(struct xc5000_priv *priv, u32 freq_khz)
421 u32 freq_code = (freq_khz * 1024)/1000;
422 dprintk(1, "%s(freq_khz = %d) freq_code = 0x%x\n",
423 __func__, freq_khz, freq_code);
425 return xc_write_reg(priv, XREG_IF_OUT, freq_code);
429 static int xc_get_ADC_Envelope(struct xc5000_priv *priv, u16 *adc_envelope)
431 return xc_read_reg(priv, XREG_ADC_ENV, adc_envelope);
434 static int xc_get_frequency_error(struct xc5000_priv *priv, u32 *freq_error_hz)
440 result = xc_read_reg(priv, XREG_FREQ_ERROR, ®Data);
445 (*freq_error_hz) = (tmp * 15625) / 1000;
449 static int xc_get_lock_status(struct xc5000_priv *priv, u16 *lock_status)
451 return xc_read_reg(priv, XREG_LOCK, lock_status);
454 static int xc_get_version(struct xc5000_priv *priv,
455 u8 *hw_majorversion, u8 *hw_minorversion,
456 u8 *fw_majorversion, u8 *fw_minorversion)
461 result = xc_read_reg(priv, XREG_VERSION, &data);
465 (*hw_majorversion) = (data >> 12) & 0x0F;
466 (*hw_minorversion) = (data >> 8) & 0x0F;
467 (*fw_majorversion) = (data >> 4) & 0x0F;
468 (*fw_minorversion) = data & 0x0F;
473 static int xc_get_hsync_freq(struct xc5000_priv *priv, u32 *hsync_freq_hz)
478 result = xc_read_reg(priv, XREG_HSYNC_FREQ, ®Data);
482 (*hsync_freq_hz) = ((regData & 0x0fff) * 763)/100;
486 static int xc_get_frame_lines(struct xc5000_priv *priv, u16 *frame_lines)
488 return xc_read_reg(priv, XREG_FRAME_LINES, frame_lines);
491 static int xc_get_quality(struct xc5000_priv *priv, u16 *quality)
493 return xc_read_reg(priv, XREG_QUALITY, quality);
496 static u16 WaitForLock(struct xc5000_priv *priv)
499 int watchDogCount = 40;
501 while ((lockState == 0) && (watchDogCount > 0)) {
502 xc_get_lock_status(priv, &lockState);
503 if (lockState != 1) {
511 static int xc_tune_channel(struct xc5000_priv *priv, u32 freq_hz)
515 dprintk(1, "%s(%u)\n", __func__, freq_hz);
517 if (xc_set_RF_frequency(priv, freq_hz) != XC_RESULT_SUCCESS)
520 if (WaitForLock(priv) == 1)
526 static int xc5000_readreg(struct xc5000_priv *priv, u16 reg, u16 *val)
528 u8 buf[2] = { reg >> 8, reg & 0xff };
529 u8 bval[2] = { 0, 0 };
530 struct i2c_msg msg[2] = {
531 { .addr = priv->i2c_props.addr,
532 .flags = 0, .buf = &buf[0], .len = 2 },
533 { .addr = priv->i2c_props.addr,
534 .flags = I2C_M_RD, .buf = &bval[0], .len = 2 },
537 if (i2c_transfer(priv->i2c_props.adap, msg, 2) != 2) {
538 printk(KERN_WARNING "xc5000: I2C read failed\n");
542 *val = (bval[0] << 8) | bval[1];
546 static int xc5000_writeregs(struct xc5000_priv *priv, u8 *buf, u8 len)
548 struct i2c_msg msg = { .addr = priv->i2c_props.addr,
549 .flags = 0, .buf = buf, .len = len };
551 if (i2c_transfer(priv->i2c_props.adap, &msg, 1) != 1) {
552 printk(KERN_ERR "xc5000: I2C write failed (len=%i)\n",
559 static int xc5000_readregs(struct xc5000_priv *priv, u8 *buf, u8 len)
561 struct i2c_msg msg = { .addr = priv->i2c_props.addr,
562 .flags = I2C_M_RD, .buf = buf, .len = len };
564 if (i2c_transfer(priv->i2c_props.adap, &msg, 1) != 1) {
565 printk(KERN_ERR "xc5000 I2C read failed (len=%i)\n", (int)len);
571 static int xc5000_fwupload(struct dvb_frontend *fe)
573 struct xc5000_priv *priv = fe->tuner_priv;
574 const struct firmware *fw;
577 /* request the firmware, this will block and timeout */
578 printk(KERN_INFO "xc5000: waiting for firmware upload (%s)...\n",
579 XC5000_DEFAULT_FIRMWARE);
581 ret = request_firmware(&fw, XC5000_DEFAULT_FIRMWARE,
582 &priv->i2c_props.adap->dev);
584 printk(KERN_ERR "xc5000: Upload failed. (file not found?)\n");
585 ret = XC_RESULT_RESET_FAILURE;
588 printk(KERN_INFO "xc5000: firmware read %Zu bytes.\n",
590 ret = XC_RESULT_SUCCESS;
593 if (fw->size != XC5000_DEFAULT_FIRMWARE_SIZE) {
594 printk(KERN_ERR "xc5000: firmware incorrect size\n");
595 ret = XC_RESULT_RESET_FAILURE;
597 printk(KERN_INFO "xc5000: firmware upload\n");
598 ret = xc_load_i2c_sequence(fe, fw->data);
602 release_firmware(fw);
606 static void xc_debug_dump(struct xc5000_priv *priv)
609 u32 freq_error_hz = 0;
611 u32 hsync_freq_hz = 0;
614 u8 hw_majorversion = 0, hw_minorversion = 0;
615 u8 fw_majorversion = 0, fw_minorversion = 0;
617 /* Wait for stats to stabilize.
618 * Frame Lines needs two frame times after initial lock
619 * before it is valid.
623 xc_get_ADC_Envelope(priv, &adc_envelope);
624 dprintk(1, "*** ADC envelope (0-1023) = %d\n", adc_envelope);
626 xc_get_frequency_error(priv, &freq_error_hz);
627 dprintk(1, "*** Frequency error = %d Hz\n", freq_error_hz);
629 xc_get_lock_status(priv, &lock_status);
630 dprintk(1, "*** Lock status (0-Wait, 1-Locked, 2-No-signal) = %d\n",
633 xc_get_version(priv, &hw_majorversion, &hw_minorversion,
634 &fw_majorversion, &fw_minorversion);
635 dprintk(1, "*** HW: V%02x.%02x, FW: V%02x.%02x\n",
636 hw_majorversion, hw_minorversion,
637 fw_majorversion, fw_minorversion);
639 xc_get_hsync_freq(priv, &hsync_freq_hz);
640 dprintk(1, "*** Horizontal sync frequency = %d Hz\n", hsync_freq_hz);
642 xc_get_frame_lines(priv, &frame_lines);
643 dprintk(1, "*** Frame lines = %d\n", frame_lines);
645 xc_get_quality(priv, &quality);
646 dprintk(1, "*** Quality (0:<8dB, 7:>56dB) = %d\n", quality);
649 static int xc5000_set_params(struct dvb_frontend *fe,
650 struct dvb_frontend_parameters *params)
652 struct xc5000_priv *priv = fe->tuner_priv;
655 dprintk(1, "%s() frequency=%d (Hz)\n", __func__, params->frequency);
657 switch (params->u.vsb.modulation) {
660 dprintk(1, "%s() VSB modulation\n", __func__);
661 priv->rf_mode = XC_RF_MODE_AIR;
662 priv->freq_hz = params->frequency - 1750000;
663 priv->bandwidth = BANDWIDTH_6_MHZ;
664 priv->video_standard = DTV6;
669 dprintk(1, "%s() QAM modulation\n", __func__);
670 priv->rf_mode = XC_RF_MODE_CABLE;
671 priv->freq_hz = params->frequency - 1750000;
672 priv->bandwidth = BANDWIDTH_6_MHZ;
673 priv->video_standard = DTV6;
679 dprintk(1, "%s() frequency=%d (compensated)\n",
680 __func__, priv->freq_hz);
682 ret = xc_SetSignalSource(priv, priv->rf_mode);
683 if (ret != XC_RESULT_SUCCESS) {
685 "xc5000: xc_SetSignalSource(%d) failed\n",
690 ret = xc_SetTVStandard(priv,
691 XC5000_Standard[priv->video_standard].VideoMode,
692 XC5000_Standard[priv->video_standard].AudioMode);
693 if (ret != XC_RESULT_SUCCESS) {
694 printk(KERN_ERR "xc5000: xc_SetTVStandard failed\n");
698 ret = xc_set_IF_frequency(priv, priv->if_khz);
699 if (ret != XC_RESULT_SUCCESS) {
700 printk(KERN_ERR "xc5000: xc_Set_IF_frequency(%d) failed\n",
705 xc_tune_channel(priv, priv->freq_hz);
713 static int xc5000_is_firmware_loaded(struct dvb_frontend *fe)
715 struct xc5000_priv *priv = fe->tuner_priv;
719 ret = xc5000_readreg(priv, XREG_PRODUCT_ID, &id);
720 if (ret == XC_RESULT_SUCCESS) {
721 if (id == XC_PRODUCT_ID_FW_NOT_LOADED)
722 ret = XC_RESULT_RESET_FAILURE;
724 ret = XC_RESULT_SUCCESS;
727 dprintk(1, "%s() returns %s id = 0x%x\n", __func__,
728 ret == XC_RESULT_SUCCESS ? "True" : "False", id);
732 static int xc_load_fw_and_init_tuner(struct dvb_frontend *fe);
734 static int xc5000_set_analog_params(struct dvb_frontend *fe,
735 struct analog_parameters *params)
737 struct xc5000_priv *priv = fe->tuner_priv;
740 if (xc5000_is_firmware_loaded(fe) != XC_RESULT_SUCCESS)
741 xc_load_fw_and_init_tuner(fe);
743 dprintk(1, "%s() frequency=%d (in units of 62.5khz)\n",
744 __func__, params->frequency);
746 priv->rf_mode = XC_RF_MODE_CABLE; /* Fix me: it could be air. */
748 /* params->frequency is in units of 62.5khz */
749 priv->freq_hz = params->frequency * 62500;
751 /* FIX ME: Some video standards may have several possible audio
752 standards. We simply default to one of them here.
754 if (params->std & V4L2_STD_MN) {
755 /* default to BTSC audio standard */
756 priv->video_standard = MN_NTSC_PAL_BTSC;
760 if (params->std & V4L2_STD_PAL_BG) {
761 /* default to NICAM audio standard */
762 priv->video_standard = BG_PAL_NICAM;
766 if (params->std & V4L2_STD_PAL_I) {
767 /* default to NICAM audio standard */
768 priv->video_standard = I_PAL_NICAM;
772 if (params->std & V4L2_STD_PAL_DK) {
773 /* default to NICAM audio standard */
774 priv->video_standard = DK_PAL_NICAM;
778 if (params->std & V4L2_STD_SECAM_DK) {
779 /* default to A2 DK1 audio standard */
780 priv->video_standard = DK_SECAM_A2DK1;
784 if (params->std & V4L2_STD_SECAM_L) {
785 priv->video_standard = L_SECAM_NICAM;
789 if (params->std & V4L2_STD_SECAM_LC) {
790 priv->video_standard = LC_SECAM_NICAM;
795 ret = xc_SetSignalSource(priv, priv->rf_mode);
796 if (ret != XC_RESULT_SUCCESS) {
798 "xc5000: xc_SetSignalSource(%d) failed\n",
803 ret = xc_SetTVStandard(priv,
804 XC5000_Standard[priv->video_standard].VideoMode,
805 XC5000_Standard[priv->video_standard].AudioMode);
806 if (ret != XC_RESULT_SUCCESS) {
807 printk(KERN_ERR "xc5000: xc_SetTVStandard failed\n");
811 xc_tune_channel(priv, priv->freq_hz);
819 static int xc5000_get_frequency(struct dvb_frontend *fe, u32 *freq)
821 struct xc5000_priv *priv = fe->tuner_priv;
822 dprintk(1, "%s()\n", __func__);
823 *freq = priv->freq_hz;
827 static int xc5000_get_bandwidth(struct dvb_frontend *fe, u32 *bw)
829 struct xc5000_priv *priv = fe->tuner_priv;
830 dprintk(1, "%s()\n", __func__);
832 *bw = priv->bandwidth;
836 static int xc5000_get_status(struct dvb_frontend *fe, u32 *status)
838 struct xc5000_priv *priv = fe->tuner_priv;
841 xc_get_lock_status(priv, &lock_status);
843 dprintk(1, "%s() lock_status = 0x%08x\n", __func__, lock_status);
845 *status = lock_status;
850 static int xc_load_fw_and_init_tuner(struct dvb_frontend *fe)
852 struct xc5000_priv *priv = fe->tuner_priv;
855 if (xc5000_is_firmware_loaded(fe) != XC_RESULT_SUCCESS) {
856 ret = xc5000_fwupload(fe);
857 if (ret != XC_RESULT_SUCCESS)
861 /* Start the tuner self-calibration process */
862 ret |= xc_initialize(priv);
864 /* Wait for calibration to complete.
865 * We could continue but XC5000 will clock stretch subsequent
866 * I2C transactions until calibration is complete. This way we
867 * don't have to rely on clock stretching working.
871 /* Default to "CABLE" mode */
872 ret |= xc_write_reg(priv, XREG_SIGNALSOURCE, XC_RF_MODE_CABLE);
877 static int xc5000_sleep(struct dvb_frontend *fe)
879 struct xc5000_priv *priv = fe->tuner_priv;
882 dprintk(1, "%s()\n", __func__);
884 /* On Pinnacle PCTV HD 800i, the tuner cannot be reinitialized
885 * once shutdown without reloading the driver. Maybe I am not
886 * doing something right.
890 ret = xc_shutdown(priv);
891 if (ret != XC_RESULT_SUCCESS) {
893 "xc5000: %s() unable to shutdown tuner\n",
897 return XC_RESULT_SUCCESS;
900 static int xc5000_init(struct dvb_frontend *fe)
902 struct xc5000_priv *priv = fe->tuner_priv;
903 dprintk(1, "%s()\n", __func__);
905 if (xc_load_fw_and_init_tuner(fe) != XC_RESULT_SUCCESS) {
906 printk(KERN_ERR "xc5000: Unable to initialise tuner\n");
916 static int xc5000_release(struct dvb_frontend *fe)
918 struct xc5000_priv *priv = fe->tuner_priv;
920 dprintk(1, "%s()\n", __func__);
922 mutex_lock(&xc5000_list_mutex);
925 hybrid_tuner_release_state(priv);
927 mutex_unlock(&xc5000_list_mutex);
929 fe->tuner_priv = NULL;
934 static const struct dvb_tuner_ops xc5000_tuner_ops = {
936 .name = "Xceive XC5000",
937 .frequency_min = 1000000,
938 .frequency_max = 1023000000,
939 .frequency_step = 50000,
942 .release = xc5000_release,
944 .sleep = xc5000_sleep,
946 .set_params = xc5000_set_params,
947 .set_analog_params = xc5000_set_analog_params,
948 .get_frequency = xc5000_get_frequency,
949 .get_bandwidth = xc5000_get_bandwidth,
950 .get_status = xc5000_get_status
953 struct dvb_frontend *xc5000_attach(struct dvb_frontend *fe,
954 struct i2c_adapter *i2c,
955 struct xc5000_config *cfg)
957 struct xc5000_priv *priv = NULL;
961 dprintk(1, "%s(%d-%04x)\n", __func__,
962 i2c ? i2c_adapter_id(i2c) : -1,
963 cfg ? cfg->i2c_address : -1);
965 mutex_lock(&xc5000_list_mutex);
967 instance = hybrid_tuner_request_state(struct xc5000_priv, priv,
968 hybrid_tuner_instance_list,
969 i2c, cfg->i2c_address, "xc5000");
975 /* new tuner instance */
976 priv->bandwidth = BANDWIDTH_6_MHZ;
977 priv->if_khz = cfg->if_khz;
979 fe->tuner_priv = priv;
982 /* existing tuner instance */
983 fe->tuner_priv = priv;
987 /* Check if firmware has been loaded. It is possible that another
988 instance of the driver has loaded the firmware.
990 if (xc5000_readreg(priv, XREG_PRODUCT_ID, &id) != 0)
994 case XC_PRODUCT_ID_FW_LOADED:
996 "xc5000: Successfully identified at address 0x%02x\n",
999 "xc5000: Firmware has been loaded previously\n");
1001 case XC_PRODUCT_ID_FW_NOT_LOADED:
1003 "xc5000: Successfully identified at address 0x%02x\n",
1006 "xc5000: Firmware has not been loaded previously\n");
1010 "xc5000: Device not found at addr 0x%02x (0x%x)\n",
1011 cfg->i2c_address, id);
1015 mutex_unlock(&xc5000_list_mutex);
1017 memcpy(&fe->ops.tuner_ops, &xc5000_tuner_ops,
1018 sizeof(struct dvb_tuner_ops));
1020 if (xc5000_load_fw_on_attach)
1025 mutex_unlock(&xc5000_list_mutex);
1030 EXPORT_SYMBOL(xc5000_attach);
1032 MODULE_AUTHOR("Steven Toth");
1033 MODULE_DESCRIPTION("Xceive xc5000 silicon tuner driver");
1034 MODULE_LICENSE("GPL");