265 lines
7.8 KiB
C
265 lines
7.8 KiB
C
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/***************************************************************************
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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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* Copyright (C) 2006 Thom Johansen
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* Copyright (C) 2012 Michael Sevakis
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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"
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#include "dsp.h"
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#include "settings.h"
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#include "sound.h"
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#include "fixedpoint.h"
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#include "fracmul.h"
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#include "dsp_proc_entry.h"
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#if 0
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/* SOUND_CHAN_STEREO mode is a noop so has no function - just outline one for
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* completeness. */
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void channel_mode_proc_stereo(struct dsp_proc_entry *this,
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struct dsp_buffer **buf_p);
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#endif
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void channel_mode_proc_mono(struct dsp_proc_entry *this,
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struct dsp_buffer **buf_p);
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void channel_mode_proc_mono_left(struct dsp_proc_entry *this,
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struct dsp_buffer **buf_p);
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void channel_mode_proc_mono_right(struct dsp_proc_entry *this,
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struct dsp_buffer **buf_p);
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void channel_mode_proc_custom(struct dsp_proc_entry *this,
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struct dsp_buffer **buf_p);
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void channel_mode_proc_karaoke(struct dsp_proc_entry *this,
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struct dsp_buffer **buf_p);
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static struct channel_mode_data
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{
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long sw_gain; /* 00h: for mode: custom */
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long sw_cross; /* 04h: for mode: custom */
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struct dsp_config *dsp;
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int mode;
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const dsp_proc_fn_type fns[SOUND_CHAN_NUM_MODES];
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} channel_mode_data =
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{
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.sw_gain = 0,
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.sw_cross = 0,
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.mode = SOUND_CHAN_STEREO,
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.fns =
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{
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[SOUND_CHAN_STEREO] = NULL,
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[SOUND_CHAN_MONO] = channel_mode_proc_mono,
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[SOUND_CHAN_CUSTOM] = channel_mode_proc_custom,
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[SOUND_CHAN_MONO_LEFT] = channel_mode_proc_mono_left,
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[SOUND_CHAN_MONO_RIGHT] = channel_mode_proc_mono_right,
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[SOUND_CHAN_KARAOKE] = channel_mode_proc_karaoke,
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},
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};
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static dsp_proc_fn_type get_process_fn(void)
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{
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return channel_mode_data.fns[channel_mode_data.mode];
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}
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#if 0
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/* SOUND_CHAN_STEREO mode is a noop so has no function - just outline one for
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* completeness. */
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void channel_mode_proc_stereo(struct dsp_proc_entry *this,
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struct dsp_buffer **buf_p)
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{
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/* The channels are each just themselves */
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(void)this; (void)buf_p;
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}
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#endif
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#if !defined(CPU_COLDFIRE) && !defined(CPU_ARM)
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/* Unoptimized routines */
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void channel_mode_proc_mono(struct dsp_proc_entry *this,
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struct dsp_buffer **buf_p)
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{
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struct dsp_buffer *buf = *buf_p;
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int32_t *sl = buf->p32[0];
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int32_t *sr = buf->p32[1];
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int count = buf->remcount;
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do
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{
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int32_t lr = *sl / 2 + *sr / 2;
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*sl++ = lr;
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*sr++ = lr;
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}
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while (--count > 0);
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(void)this;
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}
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void channel_mode_proc_custom(struct dsp_proc_entry *this,
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struct dsp_buffer **buf_p)
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{
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struct channel_mode_data *data = (void *)this->data;
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struct dsp_buffer *buf = *buf_p;
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int32_t *sl = buf->p32[0];
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int32_t *sr = buf->p32[1];
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int count = buf->remcount;
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const int32_t gain = data->sw_gain;
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const int32_t cross = data->sw_cross;
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do
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{
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int32_t l = *sl;
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int32_t r = *sr;
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*sl++ = FRACMUL(l, gain) + FRACMUL(r, cross);
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*sr++ = FRACMUL(r, gain) + FRACMUL(l, cross);
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}
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while (--count > 0);
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}
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void channel_mode_proc_karaoke(struct dsp_proc_entry *this,
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struct dsp_buffer **buf_p)
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{
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struct dsp_buffer *buf = *buf_p;
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int32_t *sl = buf->p32[0];
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int32_t *sr = buf->p32[1];
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int count = buf->remcount;
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do
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{
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int32_t ch = *sl / 2 - *sr / 2;
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*sl++ = ch;
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*sr++ = -ch;
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}
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while (--count > 0);
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(void)this;
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}
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#endif /* CPU */
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void channel_mode_proc_mono_left(struct dsp_proc_entry *this,
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struct dsp_buffer **buf_p)
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{
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/* Just copy over the other channel */
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struct dsp_buffer *buf = *buf_p;
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memcpy(buf->p32[1], buf->p32[0], buf->remcount * sizeof (int32_t));
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(void)this;
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}
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void channel_mode_proc_mono_right(struct dsp_proc_entry *this,
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struct dsp_buffer **buf_p)
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{
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/* Just copy over the other channel */
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struct dsp_buffer *buf = *buf_p;
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memcpy(buf->p32[0], buf->p32[1], buf->remcount * sizeof (int32_t));
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(void)this;
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}
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/* This is the initial function pointer when first enabled/changed in order
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* to facilitate verification of the format compatibility at the proper time
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* This gets called for changes even if stage is inactive. */
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static void channel_mode_process_new_format(struct dsp_proc_entry *this,
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struct dsp_buffer **buf_p)
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{
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struct channel_mode_data *data = (void *)this->data;
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struct dsp_buffer *buf = *buf_p;
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DSP_PRINT_FORMAT(DSP_PROC_CHANNEL_MODE, DSP_PROC_CHANNEL_MODE,
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buf->format);
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bool active = buf->format.num_channels >= 2;
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dsp_proc_activate(data->dsp, DSP_PROC_CHANNEL_MODE, active);
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if (!active)
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{
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/* Can't do this. Sleep until next change. */
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DEBUGF(" DSP_PROC_CHANNEL_MODE- deactivated\n");
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return;
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}
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/* Switch to the real function and call it once */
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this->process[0] = get_process_fn();
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dsp_proc_call(this, buf_p, (unsigned)buf->format.changed - 1);
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}
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void channel_mode_set_config(int value)
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{
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if (value < 0 || value >= SOUND_CHAN_NUM_MODES)
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value = SOUND_CHAN_STEREO; /* Out of range */
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if (value == channel_mode_data.mode)
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return;
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channel_mode_data.mode = value;
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dsp_proc_enable(dsp_get_config(CODEC_IDX_AUDIO), DSP_PROC_CHANNEL_MODE,
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value != SOUND_CHAN_STEREO);
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}
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void channel_mode_custom_set_width(int value)
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{
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long width, straight, cross;
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width = value * 0x7fffff / 100;
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if (value <= 100)
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{
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straight = (0x7fffff + width) / 2;
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cross = straight - 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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straight = fp_div(0x7fffff + width, width, 22);
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cross = straight - 0x7fffff;
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}
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channel_mode_data.sw_gain = straight << 8;
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channel_mode_data.sw_cross = cross << 8;
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}
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/* DSP message hook */
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static intptr_t channel_mode_configure(struct dsp_proc_entry *this,
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struct dsp_config *dsp,
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unsigned int setting,
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intptr_t value)
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{
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switch (setting)
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{
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case DSP_PROC_INIT:
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if (value == 0)
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{
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/* New object */
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this->data = (intptr_t)&channel_mode_data;
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this->process[1] = channel_mode_process_new_format;
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((struct channel_mode_data *)this->data)->dsp = dsp;
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}
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/* Force format change call each time */
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this->process[0] = channel_mode_process_new_format;
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dsp_proc_activate(dsp, DSP_PROC_CHANNEL_MODE, true);
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break;
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case DSP_PROC_CLOSE:
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((struct channel_mode_data *)this->data)->dsp = NULL;
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break;
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}
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return 1;
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}
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/* Database entry */
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DSP_PROC_DB_ENTRY(
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CHANNEL_MODE,
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channel_mode_configure);
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