bbd991ad63
Change-Id: Ib67d0ab344e36964cadbcc982dc2afe35733770b
285 lines
8 KiB
C
285 lines
8 KiB
C
/***************************************************************************
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* __________ __ ___.
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* Open \______ \ ____ ____ | | _\_ |__ _______ ___
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* Source | _// _ \_/ ___\| |/ /| __ \ / _ \ \/ /
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* Jukebox | | ( <_> ) \___| < | \_\ ( <_> > < <
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* Firmware |____|_ /\____/ \___ >__|_ \|___ /\____/__/\_ \
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* \/ \/ \/ \/ \/
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* $Id$
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*
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* Driver for MAS35xx audio codec
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*
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*
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* Copyright (c) 2007 by Christian Gmeiner
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*
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* This program is free software; you can redistribute it and/or
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* modify it under the terms of the GNU General Public License
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* as published by the Free Software Foundation; either version 2
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* of the License, or (at your option) any later version.
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*
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* This software is distributed on an "AS IS" basis, WITHOUT WARRANTY OF ANY
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* KIND, either express or implied.
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*
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****************************************************************************/
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#include "config.h"
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#include "system.h" /* MAX MIN macros */
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#include "sound.h"
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int channel_configuration = SOUND_CHAN_STEREO;
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int stereo_width = 100;
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#if (CONFIG_CODEC == MAS3587F) || (CONFIG_CODEC == MAS3539F)
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unsigned long mdb_shape_shadow = 0;
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unsigned long loudness_shadow = 0;
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unsigned long shadow_io_control_main;
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#endif
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static void set_channel_config(void)
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{
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/* default values: stereo */
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unsigned long val_ll = 0x80000;
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unsigned long val_lr = 0;
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unsigned long val_rl = 0;
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unsigned long val_rr = 0x80000;
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int bank;
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switch(channel_configuration)
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{
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/* case SOUND_CHAN_STEREO unnecessary */
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case SOUND_CHAN_MONO:
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val_ll = 0xc0000;
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val_lr = 0xc0000;
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val_rl = 0xc0000;
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val_rr = 0xc0000;
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break;
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case SOUND_CHAN_CUSTOM:
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{
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/* fixed point variables (matching MAS internal format)
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integer part: upper 13 bits (inlcuding sign)
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fractional part: lower 19 bits */
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long fp_width, fp_straight, fp_cross;
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fp_width = (stereo_width << 19) / 100;
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if (stereo_width <= 100)
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{
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fp_straight = - ((1<<19) + fp_width) / 2;
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fp_cross = fp_straight + fp_width;
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}
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else
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{
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/* straight = - (1 + width) / (2 * width) */
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fp_straight = - ((((1<<19) + fp_width) / (fp_width >> 9)) << 9);
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fp_cross = (1<<19) + fp_straight;
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}
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val_ll = val_rr = fp_straight & 0xfffff;
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val_lr = val_rl = fp_cross & 0xfffff;
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}
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break;
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case SOUND_CHAN_MONO_LEFT:
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val_ll = 0x80000;
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val_lr = 0x80000;
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val_rl = 0;
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val_rr = 0;
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break;
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case SOUND_CHAN_MONO_RIGHT:
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val_ll = 0;
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val_lr = 0;
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val_rl = 0x80000;
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val_rr = 0x80000;
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break;
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case SOUND_CHAN_KARAOKE:
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val_ll = 0xc0000;
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val_lr = 0x40000;
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val_rl = 0x40000;
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val_rr = 0xc0000;
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break;
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}
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#if (CONFIG_CODEC == MAS3587F) || (CONFIG_CODEC == MAS3539F)
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bank = MAS_BANK_D0;
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#elif CONFIG_CODEC == MAS3507D
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bank = MAS_BANK_D1;
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#endif
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mas_writemem(bank, MAS_D0_OUT_LL, &val_ll, 1); /* LL */
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mas_writemem(bank, MAS_D0_OUT_LR, &val_lr, 1); /* LR */
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mas_writemem(bank, MAS_D0_OUT_RL, &val_rl, 1); /* RL */
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mas_writemem(bank, MAS_D0_OUT_RR, &val_rr, 1); /* RR */
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}
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void audiohw_set_channel(int val)
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{
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channel_configuration = val;
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set_channel_config();
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}
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void audiohw_set_stereo_width(int val)
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{
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stereo_width = val;
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if (channel_configuration == SOUND_CHAN_CUSTOM) {
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set_channel_config();
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}
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}
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void audiohw_set_bass(int val)
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{
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#if (CONFIG_CODEC == MAS3587F) || (CONFIG_CODEC == MAS3539F)
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unsigned tmp = ((unsigned)(val * 8) & 0xff) << 8;
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mas_codec_writereg(MAS_REG_KBASS, tmp);
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#elif CONFIG_CODEC == MAS3507D
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mas_writereg(MAS_REG_KBASS, bass_table[val+15]);
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#endif
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}
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#if CONFIG_CODEC == MAS3507D
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void audiohw_set_prescaler(int val)
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{
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mas_writereg(MAS_REG_KPRESCALE, prescale_table[val/10]);
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}
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#endif
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void audiohw_set_treble(int val)
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{
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#if (CONFIG_CODEC == MAS3587F) || (CONFIG_CODEC == MAS3539F)
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unsigned tmp = ((unsigned)(val * 8) & 0xff) << 8;
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mas_codec_writereg(MAS_REG_KTREBLE, tmp);
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#elif CONFIG_CODEC == MAS3507D
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mas_writereg(MAS_REG_KTREBLE, treble_table[val+15]);
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#endif
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}
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#if (CONFIG_CODEC == MAS3507D)
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/* convert tenth of dB volume (-780..+180) to dac3550 register value */
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static unsigned int tenthdb2reg(int db)
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{
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if (db < -540) /* 3 dB steps */
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return (db + 780) / 30;
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else /* 1.5 dB steps */
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return (db + 660) / 15;
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}
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void audiohw_set_volume(int vol_l, int vol_r)
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{
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dac_volume(tenthdb2reg(vol_l), tenthdb2reg(vol_r), false);
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}
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#endif /* CONFIG_CODEC == MAS3507D */
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#if (CONFIG_CODEC == MAS3587F) || (CONFIG_CODEC == MAS3539F)
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void audiohw_set_volume(int val)
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{
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unsigned tmp = ((unsigned)(val + 115) & 0xff) << 8;
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mas_codec_writereg(MAS_REG_VOLUME_CONTROL, tmp);
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}
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void audiohw_set_loudness(int value)
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{
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loudness_shadow = (loudness_shadow & 0x04) |
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(MAX(MIN(value * 4, 0x44), 0) << 8);
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mas_codec_writereg(MAS_REG_KLOUDNESS, loudness_shadow);
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}
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void audiohw_set_avc(int value)
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{
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int tmp;
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static const uint16_t avc_vals[] =
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{
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(0x1 << 8) | (0x8 << 12), /* 20ms */
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(0x2 << 8) | (0x8 << 12), /* 2s */
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(0x4 << 8) | (0x8 << 12), /* 4s */
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(0x8 << 8) | (0x8 << 12), /* 8s */
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};
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switch (value) {
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case 1:
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case 2:
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case 3:
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case 4:
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tmp = avc_vals[value -1];
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break;
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case -1: /* turn off and then turn on again to decay quickly */
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tmp = mas_codec_readreg(MAS_REG_KAVC);
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mas_codec_writereg(MAS_REG_KAVC, 0);
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break;
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default: /* off */
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tmp = 0;
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break;
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}
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mas_codec_writereg(MAS_REG_KAVC, tmp);
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}
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void audiohw_set_mdb_strength(int value)
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{
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mas_codec_writereg(MAS_REG_KMDB_STR, (value & 0x7f) << 8);
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}
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void audiohw_set_mdb_harmonics(int value)
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{
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int tmp = value * 127 / 100;
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mas_codec_writereg(MAS_REG_KMDB_HAR, (tmp & 0x7f) << 8);
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}
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void audiohw_set_mdb_center(int value)
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{
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mas_codec_writereg(MAS_REG_KMDB_FC, (value/10) << 8);
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}
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void audiohw_set_mdb_shape(int value)
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{
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mdb_shape_shadow = (mdb_shape_shadow & 0x02) | ((value/10) << 8);
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mas_codec_writereg(MAS_REG_KMDB_SWITCH, mdb_shape_shadow);
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}
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void audiohw_set_mdb_enable(int value)
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{
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mdb_shape_shadow = (mdb_shape_shadow & ~0x02) | (value?2:0);
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mas_codec_writereg(MAS_REG_KMDB_SWITCH, mdb_shape_shadow);
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}
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void audiohw_set_superbass(int value)
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{
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loudness_shadow = (loudness_shadow & ~0x04) | (value?4:0);
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mas_codec_writereg(MAS_REG_KLOUDNESS, loudness_shadow);
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}
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void audiohw_set_balance(int val)
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{
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unsigned tmp = ((unsigned)(val * 127 / 100) & 0xff) << 8;
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mas_codec_writereg(MAS_REG_BALANCE, tmp);
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}
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/* This functionality works by telling the decoder that we have another
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crystal frequency than we actually have. It will adjust its internal
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parameters and the result is that the audio is played at another pitch.
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*/
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static int32_t last_pitch = PITCH_SPEED_100;
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void audiohw_set_pitch(int32_t val)
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{
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if (val == last_pitch)
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return;
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/* Calculate the new (bogus) frequency */
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unsigned long reg = 18432 * PITCH_SPEED_100 / val;
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mas_writemem(MAS_BANK_D0, MAS_D0_OFREQ_CONTROL, ®, 1);
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/* We must tell the MAS that the frequency has changed.
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* This will unfortunately cause a short silence. */
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mas_writemem(MAS_BANK_D0, MAS_D0_IO_CONTROL_MAIN,
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&shadow_io_control_main, 1);
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last_pitch = val;
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}
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int32_t audiohw_get_pitch(void)
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{
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return last_pitch;
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}
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#endif /* CONFIG_CODEC == MAS3587F || CONFIG_CODEC == MAS3539F */
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