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1/* 2 * For the STS-Thompson TDA7432 audio processor chip 3 * 4 * Handles audio functions: volume, balance, tone, loudness 5 * This driver will not complain if used with any 6 * other i2c device with the same address. 7 * 8 * Muting and tone control by Jonathan Isom <jisom@ematic.com> 9 * 10 * Copyright (c) 2000 Eric Sandeen <eric_sandeen@bigfoot.com> 11 * Copyright (c) 2006 Mauro Carvalho Chehab <mchehab@infradead.org> 12 * This code is placed under the terms of the GNU General Public License 13 * Based on tda9855.c by Steve VanDeBogart (vandebo@uclink.berkeley.edu) 14 * Which was based on tda8425.c by Greg Alexander (c) 1998 15 * 16 * OPTIONS: 17 * debug - set to 1 if you'd like to see debug messages 18 * set to 2 if you'd like to be inundated with debug messages 19 * 20 * loudness - set between 0 and 15 for varying degrees of loudness effect 21 * 22 * maxvol - set maximium volume to +20db (1), default is 0db(0) 23 */ 24 25#include <linux/module.h> 26#include <linux/init.h> 27#include <linux/kernel.h> 28#include <linux/string.h> 29#include <linux/timer.h> 30#include <linux/delay.h> 31#include <linux/errno.h> 32#include <linux/slab.h> 33#include <linux/videodev2.h> 34#include <linux/i2c.h> 35 36#include <media/v4l2-device.h> 37#include <media/v4l2-ioctl.h> 38#include <media/i2c-addr.h> 39 40#ifndef VIDEO_AUDIO_BALANCE 41# define VIDEO_AUDIO_BALANCE 32 42#endif 43 44MODULE_AUTHOR("Eric Sandeen <eric_sandeen@bigfoot.com>"); 45MODULE_DESCRIPTION("bttv driver for the tda7432 audio processor chip"); 46MODULE_LICENSE("GPL"); 47 48static int maxvol; 49static int loudness; /* disable loudness by default */ 50static int debug; /* insmod parameter */ 51module_param(debug, int, S_IRUGO | S_IWUSR); 52module_param(loudness, int, S_IRUGO); 53MODULE_PARM_DESC(maxvol,"Set maximium volume to +20db (0), default is 0db(1)"); 54module_param(maxvol, int, S_IRUGO | S_IWUSR); 55 56 57 58/* Structure of address and subaddresses for the tda7432 */ 59 60struct tda7432 { 61 struct v4l2_subdev sd; 62 int addr; 63 int input; 64 int volume; 65 int muted; 66 int bass, treble; 67 int lf, lr, rf, rr; 68 int loud; 69}; 70 71static inline struct tda7432 *to_state(struct v4l2_subdev *sd) 72{ 73 return container_of(sd, struct tda7432, sd); 74} 75 76/* The TDA7432 is made by STS-Thompson 77 * http://www.st.com 78 * http://us.st.com/stonline/books/pdf/docs/4056.pdf 79 * 80 * TDA7432: I2C-bus controlled basic audio processor 81 * 82 * The TDA7432 controls basic audio functions like volume, balance, 83 * and tone control (including loudness). It also has four channel 84 * output (for front and rear). Since most vidcap cards probably 85 * don't have 4 channel output, this driver will set front & rear 86 * together (no independent control). 87 */ 88 89 /* Subaddresses for TDA7432 */ 90 91#define TDA7432_IN 0x00 /* Input select */ 92#define TDA7432_VL 0x01 /* Volume */ 93#define TDA7432_TN 0x02 /* Bass, Treble (Tone) */ 94#define TDA7432_LF 0x03 /* Attenuation LF (Left Front) */ 95#define TDA7432_LR 0x04 /* Attenuation LR (Left Rear) */ 96#define TDA7432_RF 0x05 /* Attenuation RF (Right Front) */ 97#define TDA7432_RR 0x06 /* Attenuation RR (Right Rear) */ 98#define TDA7432_LD 0x07 /* Loudness */ 99 100 101 /* Masks for bits in TDA7432 subaddresses */ 102 103/* Many of these not used - just for documentation */ 104 105/* Subaddress 0x00 - Input selection and bass control */ 106 107/* Bits 0,1,2 control input: 108 * 0x00 - Stereo input 109 * 0x02 - Mono input 110 * 0x03 - Mute (Using Attenuators Plays better with modules) 111 * Mono probably isn't used - I'm guessing only the stereo 112 * input is connected on most cards, so we'll set it to stereo. 113 * 114 * Bit 3 controls bass cut: 0/1 is non-symmetric/symmetric bass cut 115 * Bit 4 controls bass range: 0/1 is extended/standard bass range 116 * 117 * Highest 3 bits not used 118 */ 119 120#define TDA7432_STEREO_IN 0 121#define TDA7432_MONO_IN 2 /* Probably won't be used */ 122#define TDA7432_BASS_SYM 1 << 3 123#define TDA7432_BASS_NORM 1 << 4 124 125/* Subaddress 0x01 - Volume */ 126 127/* Lower 7 bits control volume from -79dB to +32dB in 1dB steps 128 * Recommended maximum is +20 dB 129 * 130 * +32dB: 0x00 131 * +20dB: 0x0c 132 * 0dB: 0x20 133 * -79dB: 0x6f 134 * 135 * MSB (bit 7) controls loudness: 1/0 is loudness on/off 136 */ 137 138#define TDA7432_VOL_0DB 0x20 139#define TDA7432_LD_ON 1 << 7 140 141 142/* Subaddress 0x02 - Tone control */ 143 144/* Bits 0,1,2 control absolute treble gain from 0dB to 14dB 145 * 0x0 is 14dB, 0x7 is 0dB 146 * 147 * Bit 3 controls treble attenuation/gain (sign) 148 * 1 = gain (+) 149 * 0 = attenuation (-) 150 * 151 * Bits 4,5,6 control absolute bass gain from 0dB to 14dB 152 * (This is only true for normal base range, set in 0x00) 153 * 0x0 << 4 is 14dB, 0x7 is 0dB 154 * 155 * Bit 7 controls bass attenuation/gain (sign) 156 * 1 << 7 = gain (+) 157 * 0 << 7 = attenuation (-) 158 * 159 * Example: 160 * 1 1 0 1 0 1 0 1 is +4dB bass, -4dB treble 161 */ 162 163#define TDA7432_TREBLE_0DB 0xf 164#define TDA7432_TREBLE 7 165#define TDA7432_TREBLE_GAIN 1 << 3 166#define TDA7432_BASS_0DB 0xf 167#define TDA7432_BASS 7 << 4 168#define TDA7432_BASS_GAIN 1 << 7 169 170 171/* Subaddress 0x03 - Left Front attenuation */ 172/* Subaddress 0x04 - Left Rear attenuation */ 173/* Subaddress 0x05 - Right Front attenuation */ 174/* Subaddress 0x06 - Right Rear attenuation */ 175 176/* Bits 0,1,2,3,4 control attenuation from 0dB to -37.5dB 177 * in 1.5dB steps. 178 * 179 * 0x00 is 0dB 180 * 0x1f is -37.5dB 181 * 182 * Bit 5 mutes that channel when set (1 = mute, 0 = unmute) 183 * We'll use the mute on the input, though (above) 184 * Bits 6,7 unused 185 */ 186 187#define TDA7432_ATTEN_0DB 0x00 188#define TDA7432_MUTE 0x1 << 5 189 190 191/* Subaddress 0x07 - Loudness Control */ 192 193/* Bits 0,1,2,3 control loudness from 0dB to -15dB in 1dB steps 194 * when bit 4 is NOT set 195 * 196 * 0x0 is 0dB 197 * 0xf is -15dB 198 * 199 * If bit 4 is set, then there is a flat attenuation according to 200 * the lower 4 bits, as above. 201 * 202 * Bits 5,6,7 unused 203 */ 204 205 206 207/* Begin code */ 208 209static int tda7432_write(struct v4l2_subdev *sd, int subaddr, int val) 210{ 211 struct i2c_client *client = v4l2_get_subdevdata(sd); 212 unsigned char buffer[2]; 213 214 v4l2_dbg(2, debug, sd, "In tda7432_write\n"); 215 v4l2_dbg(1, debug, sd, "Writing %d 0x%x\n", subaddr, val); 216 buffer[0] = subaddr; 217 buffer[1] = val; 218 if (2 != i2c_master_send(client, buffer, 2)) { 219 v4l2_err(sd, "I/O error, trying (write %d 0x%x)\n", 220 subaddr, val); 221 return -1; 222 } 223 return 0; 224} 225 226static int tda7432_set(struct v4l2_subdev *sd) 227{ 228 struct i2c_client *client = v4l2_get_subdevdata(sd); 229 struct tda7432 *t = to_state(sd); 230 unsigned char buf[16]; 231 232 v4l2_dbg(1, debug, sd, 233 "tda7432: 7432_set(0x%02x,0x%02x,0x%02x,0x%02x,0x%02x,0x%02x,0x%02x,0x%02x,0x%02x)\n", 234 t->input, t->volume, t->bass, t->treble, t->lf, t->lr, 235 t->rf, t->rr, t->loud); 236 buf[0] = TDA7432_IN; 237 buf[1] = t->input; 238 buf[2] = t->volume; 239 buf[3] = t->bass; 240 buf[4] = t->treble; 241 buf[5] = t->lf; 242 buf[6] = t->lr; 243 buf[7] = t->rf; 244 buf[8] = t->rr; 245 buf[9] = t->loud; 246 if (10 != i2c_master_send(client, buf, 10)) { 247 v4l2_err(sd, "I/O error, trying tda7432_set\n"); 248 return -1; 249 } 250 251 return 0; 252} 253 254static void do_tda7432_init(struct v4l2_subdev *sd) 255{ 256 struct tda7432 *t = to_state(sd); 257 258 v4l2_dbg(2, debug, sd, "In tda7432_init\n"); 259 260 t->input = TDA7432_STEREO_IN | /* Main (stereo) input */ 261 TDA7432_BASS_SYM | /* Symmetric bass cut */ 262 TDA7432_BASS_NORM; /* Normal bass range */ 263 t->volume = 0x3b ; /* -27dB Volume */ 264 if (loudness) /* Turn loudness on? */ 265 t->volume |= TDA7432_LD_ON; 266 t->muted = 1; 267 t->treble = TDA7432_TREBLE_0DB; /* 0dB Treble */ 268 t->bass = TDA7432_BASS_0DB; /* 0dB Bass */ 269 t->lf = TDA7432_ATTEN_0DB; /* 0dB attenuation */ 270 t->lr = TDA7432_ATTEN_0DB; /* 0dB attenuation */ 271 t->rf = TDA7432_ATTEN_0DB; /* 0dB attenuation */ 272 t->rr = TDA7432_ATTEN_0DB; /* 0dB attenuation */ 273 t->loud = loudness; /* insmod parameter */ 274 275 tda7432_set(sd); 276} 277 278static int tda7432_g_ctrl(struct v4l2_subdev *sd, struct v4l2_control *ctrl) 279{ 280 struct tda7432 *t = to_state(sd); 281 282 switch (ctrl->id) { 283 case V4L2_CID_AUDIO_MUTE: 284 ctrl->value=t->muted; 285 return 0; 286 case V4L2_CID_AUDIO_VOLUME: 287 if (!maxvol){ /* max +20db */ 288 ctrl->value = ( 0x6f - (t->volume & 0x7F) ) * 630; 289 } else { /* max 0db */ 290 ctrl->value = ( 0x6f - (t->volume & 0x7F) ) * 829; 291 } 292 return 0; 293 case V4L2_CID_AUDIO_BALANCE: 294 { 295 if ( (t->lf) < (t->rf) ) 296 /* right is attenuated, balance shifted left */ 297 ctrl->value = (32768 - 1057*(t->rf)); 298 else 299 /* left is attenuated, balance shifted right */ 300 ctrl->value = (32768 + 1057*(t->lf)); 301 return 0; 302 } 303 case V4L2_CID_AUDIO_BASS: 304 { 305 /* Bass/treble 4 bits each */ 306 int bass=t->bass; 307 if(bass >= 0x8) 308 bass = ~(bass - 0x8) & 0xf; 309 ctrl->value = (bass << 12)+(bass << 8)+(bass << 4)+(bass); 310 return 0; 311 } 312 case V4L2_CID_AUDIO_TREBLE: 313 { 314 int treble=t->treble; 315 if(treble >= 0x8) 316 treble = ~(treble - 0x8) & 0xf; 317 ctrl->value = (treble << 12)+(treble << 8)+(treble << 4)+(treble); 318 return 0; 319 } 320 } 321 return -EINVAL; 322} 323 324static int tda7432_s_ctrl(struct v4l2_subdev *sd, struct v4l2_control *ctrl) 325{ 326 struct tda7432 *t = to_state(sd); 327 328 switch (ctrl->id) { 329 case V4L2_CID_AUDIO_MUTE: 330 t->muted=ctrl->value; 331 break; 332 case V4L2_CID_AUDIO_VOLUME: 333 if(!maxvol){ /* max +20db */ 334 t->volume = 0x6f - ((ctrl->value)/630); 335 } else { /* max 0db */ 336 t->volume = 0x6f - ((ctrl->value)/829); 337 } 338 if (loudness) /* Turn on the loudness bit */ 339 t->volume |= TDA7432_LD_ON; 340 341 tda7432_write(sd, TDA7432_VL, t->volume); 342 return 0; 343 case V4L2_CID_AUDIO_BALANCE: 344 if (ctrl->value < 32768) { 345 /* shifted to left, attenuate right */ 346 t->rr = (32768 - ctrl->value)/1057; 347 t->rf = t->rr; 348 t->lr = TDA7432_ATTEN_0DB; 349 t->lf = TDA7432_ATTEN_0DB; 350 } else if(ctrl->value > 32769) { 351 /* shifted to right, attenuate left */ 352 t->lf = (ctrl->value - 32768)/1057; 353 t->lr = t->lf; 354 t->rr = TDA7432_ATTEN_0DB; 355 t->rf = TDA7432_ATTEN_0DB; 356 } else { 357 /* centered */ 358 t->rr = TDA7432_ATTEN_0DB; 359 t->rf = TDA7432_ATTEN_0DB; 360 t->lf = TDA7432_ATTEN_0DB; 361 t->lr = TDA7432_ATTEN_0DB; 362 } 363 break; 364 case V4L2_CID_AUDIO_BASS: 365 t->bass = ctrl->value >> 12; 366 if(t->bass>= 0x8) 367 t->bass = (~t->bass & 0xf) + 0x8 ; 368 369 tda7432_write(sd, TDA7432_TN, 0x10 | (t->bass << 4) | t->treble); 370 return 0; 371 case V4L2_CID_AUDIO_TREBLE: 372 t->treble= ctrl->value >> 12; 373 if(t->treble>= 0x8) 374 t->treble = (~t->treble & 0xf) + 0x8 ; 375 376 tda7432_write(sd, TDA7432_TN, 0x10 | (t->bass << 4) | t->treble); 377 return 0; 378 default: 379 return -EINVAL; 380 } 381 382 /* Used for both mute and balance changes */ 383 if (t->muted) 384 { 385 /* Mute & update balance*/ 386 tda7432_write(sd, TDA7432_LF, t->lf | TDA7432_MUTE); 387 tda7432_write(sd, TDA7432_LR, t->lr | TDA7432_MUTE); 388 tda7432_write(sd, TDA7432_RF, t->rf | TDA7432_MUTE); 389 tda7432_write(sd, TDA7432_RR, t->rr | TDA7432_MUTE); 390 } else { 391 tda7432_write(sd, TDA7432_LF, t->lf); 392 tda7432_write(sd, TDA7432_LR, t->lr); 393 tda7432_write(sd, TDA7432_RF, t->rf); 394 tda7432_write(sd, TDA7432_RR, t->rr); 395 } 396 return 0; 397} 398 399static int tda7432_queryctrl(struct v4l2_subdev *sd, struct v4l2_queryctrl *qc) 400{ 401 switch (qc->id) { 402 case V4L2_CID_AUDIO_VOLUME: 403 return v4l2_ctrl_query_fill(qc, 0, 65535, 65535 / 100, 58880); 404 case V4L2_CID_AUDIO_MUTE: 405 return v4l2_ctrl_query_fill(qc, 0, 1, 1, 0); 406 case V4L2_CID_AUDIO_BALANCE: 407 case V4L2_CID_AUDIO_BASS: 408 case V4L2_CID_AUDIO_TREBLE: 409 return v4l2_ctrl_query_fill(qc, 0, 65535, 65535 / 100, 32768); 410 } 411 return -EINVAL; 412} 413 414/* ----------------------------------------------------------------------- */ 415 416static const struct v4l2_subdev_core_ops tda7432_core_ops = { 417 .queryctrl = tda7432_queryctrl, 418 .g_ctrl = tda7432_g_ctrl, 419 .s_ctrl = tda7432_s_ctrl, 420}; 421 422static const struct v4l2_subdev_ops tda7432_ops = { 423 .core = &tda7432_core_ops, 424}; 425 426/* ----------------------------------------------------------------------- */ 427 428/* *********************** * 429 * i2c interface functions * 430 * *********************** */ 431 432static int tda7432_probe(struct i2c_client *client, 433 const struct i2c_device_id *id) 434{ 435 struct tda7432 *t; 436 struct v4l2_subdev *sd; 437 438 v4l_info(client, "chip found @ 0x%02x (%s)\n", 439 client->addr << 1, client->adapter->name); 440 441 t = kzalloc(sizeof(*t), GFP_KERNEL); 442 if (!t) 443 return -ENOMEM; 444 sd = &t->sd; 445 v4l2_i2c_subdev_init(sd, client, &tda7432_ops); 446 if (loudness < 0 || loudness > 15) { 447 v4l2_warn(sd, "loudness parameter must be between 0 and 15\n"); 448 if (loudness < 0) 449 loudness = 0; 450 if (loudness > 15) 451 loudness = 15; 452 } 453 454 do_tda7432_init(sd); 455 return 0; 456} 457 458static int tda7432_remove(struct i2c_client *client) 459{ 460 struct v4l2_subdev *sd = i2c_get_clientdata(client); 461 462 do_tda7432_init(sd); 463 v4l2_device_unregister_subdev(sd); 464 kfree(to_state(sd)); 465 return 0; 466} 467 468static const struct i2c_device_id tda7432_id[] = { 469 { "tda7432", 0 }, 470 { } 471}; 472MODULE_DEVICE_TABLE(i2c, tda7432_id); 473 474static struct i2c_driver tda7432_driver = { 475 .driver = { 476 .owner = THIS_MODULE, 477 .name = "tda7432", 478 }, 479 .probe = tda7432_probe, 480 .remove = tda7432_remove, 481 .id_table = tda7432_id, 482}; 483 484static __init int init_tda7432(void) 485{ 486 return i2c_add_driver(&tda7432_driver); 487} 488 489static __exit void exit_tda7432(void) 490{ 491 i2c_del_driver(&tda7432_driver); 492} 493 494module_init(init_tda7432); 495module_exit(exit_tda7432);