2019-10-10 01:55:20 +02:00
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/***************************************************************************
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2020-01-07 15:21:58 +01:00
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* boards/arm/cxd56xx/drivers/audio/cxd56_audio_aca.c
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2019-10-10 01:55:20 +02:00
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*
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* Copyright 2018 Sony Semiconductor Solutions Corporation
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*
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* Redistribution and use in source and binary forms, with or without
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* modification, are permitted provided that the following conditions
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* are met:
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*
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* 1. Redistributions of source code must retain the above copyright
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* notice, this list of conditions and the following disclaimer.
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* 2. Redistributions in binary form must reproduce the above copyright
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* notice, this list of conditions and the following disclaimer in
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* the documentation and/or other materials provided with the
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* distribution.
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* 3. Neither the name of Sony Semiconductor Solutions Corporation nor
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* the names of its contributors may be used to endorse or promote
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* products derived from this software without specific prior written
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* permission.
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*
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* THIS SOFTWARE IS PROVIDED BY THE COPYRIGHT HOLDERS AND CONTRIBUTORS
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* "AS IS" AND ANY EXPRESS OR IMPLIED WARRANTIES, INCLUDING, BUT NOT
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* LIMITED TO, THE IMPLIED WARRANTIES OF MERCHANTABILITY AND FITNESS
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* FOR A PARTICULAR PURPOSE ARE DISCLAIMED. IN NO EVENT SHALL THE
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* COPYRIGHT OWNER OR CONTRIBUTORS BE LIABLE FOR ANY DIRECT, INDIRECT,
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* INCIDENTAL, SPECIAL, EXEMPLARY, OR CONSEQUENTIAL DAMAGES (INCLUDING,
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* BUT NOT LIMITED TO, PROCUREMENT OF SUBSTITUTE GOODS OR SERVICES; LOSS
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* OF USE, DATA, OR PROFITS; OR BUSINESS INTERRUPTION) HOWEVER CAUSED
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* AND ON ANY THEORY OF LIABILITY, WHETHER IN CONTRACT, STRICT
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* LIABILITY, OR TORT (INCLUDING NEGLIGENCE OR OTHERWISE) ARISING IN
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* ANY WAY OUT OF THE USE OF THIS SOFTWARE, EVEN IF ADVISED OF THE
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* POSSIBILITY OF SUCH DAMAGE.
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*
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****************************************************************************/
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/****************************************************************************
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* Included Files
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****************************************************************************/
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#include <string.h>
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#include <nuttx/config.h>
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#include <nuttx/irq.h>
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#include <debug.h>
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#include <arch/board/board.h>
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#include <arch/chip/audio.h>
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#include "cxd56_audio_config.h"
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#include "cxd56_audio_aca.h"
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/****************************************************************************
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* Pre-processor Definitions
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****************************************************************************/
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#define MIC_CH_BITNUM 4
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#define MIC_CH_BITMAP 0xf
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#define MIC_GAIN_MAX 150
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#define MIC_GAIN_MIN 0
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#define PGA_GAIN_MAX 60
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#define PGA_GAIN_MIN 0
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#define AS_VGAIN_MAX 60
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#define AS_VGAIN_MIN -95
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typedef enum
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{
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AS_ACA_OSC_UNKNOWN,
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AS_ACA_OSC_24_576MHZ, /* 24.576MHz */
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AS_ACA_OSC_24_576MHZ_HIRES, /* 24.576MHz,Hi-Res */
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AS_ACA_OSC_49_152MHZ, /* 49.152MHz */
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AS_ACA_OSC_49_152MHZ_HIRES, /* 49.152MHz,Hi-Res */
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AS_ACA_OSC_MAX_ENTRY
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} asAcaPulcoOscModeId;
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typedef enum
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{
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AS_ACA_MIC_UNKNOWN,
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AS_ACA_MIC_AMIC, /* Analog MIC */
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AS_ACA_MIC_DMIC, /* Digital MIC */
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AS_ACA_MIC_BOTH, /* Analog MIC and Digital MIC */
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AS_ACA_MIC_MAX_ENTRY
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} asAcaPulcoMicDeviceId;
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typedef enum
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{
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AS_ACA_MICBIAS_SEL_UNKNOWN,
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AS_ACA_MICBIAS_SEL_2_0V, /* 2.0V */
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AS_ACA_MICBIAS_SEL_2_8V, /* 2.8V */
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AS_ACA_MICBIAS_SEL_MAX_ENTRY
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} asAcaPulcoMicBiasSelId;
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typedef enum
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{
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AS_ACA_IO_DS_UNKNOWN,
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AS_ACA_IO_DS_WEAKEST, /* Weakest */
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AS_ACA_IO_DS_WEAKER, /* Weaker */
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AS_ACA_IO_DS_STRONGER, /* Stronger */
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AS_ACA_IO_DS_STRONGEST, /* Strongest */
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AS_ACA_IO_DS_MAX_ENTRY
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} asAcaPulcoIoDsId;
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typedef enum
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{
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AS_SMSTR_MODE_FS_UNKNOWN,
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AS_SMSTR_MODE_FS_16, /* 16fs */
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AS_SMSTR_MODE_FS_32, /* 32fs */
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AS_SMSTR_MODE_FS_MAX_ENTRY
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} asSmstrModeId;
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typedef enum
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{
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AS_SMSTR_MCK_FS_UNKNOWN,
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AS_SMSTR_MCK_FS_512, /* 512fs */
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AS_SMSTR_MCK_FS_1024, /* 1024fs */
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AS_SMSTR_MCK_FS_MAX_ENTRY
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} asSmstrMckId;
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typedef enum
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{
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AS_SMSTR_PWMMD_UNKNOWN,
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AS_SMSTR_PWMMD_SINGLE, /* Single side */
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AS_SMSTR_PWMMD_BOTH, /* Both side */
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AS_SMSTR_PWMMD_SINGLE_ALTER, /* Single side alternating */
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AS_SMSTR_PWMMD_BOTH_ALTER, /* Both side alternating */
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AS_SMSTR_PWMMD_MAX_ENTRY
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} asSmstrPwmModeId;
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typedef enum
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{
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AS_SMSTR_CHSEL_UNKNOWN,
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AS_SMSTR_CHSEL_NORMAL, /* Normal */
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AS_SMSTR_CHSEL_EXCHANGE, /* Exchange L and R */
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AS_SMSTR_CHSEL_MAX_ENTRY
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} asSmstrChSelId;
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typedef enum
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{
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AS_ACA_OUT_UNKNOWN,
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AS_ACA_OUT_HP, /* Headphone output */
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AS_ACA_OUT_EP, /* Ear Speaker output */
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AS_ACA_OUT_PWM, /* PWM output */
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AS_ACA_OUT_HP_PWM, /* Headphone and PWM output */
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AS_ACA_OUT_EP_PWM, /* Ear Speaker and PWM output */
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AS_ACA_OUT_OFF, /* Disable output */
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AS_ACA_OUT_MAX_ENTRY
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} asAcaPulcoOutDeviceId;
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typedef enum
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{
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AS_ACA_PWMOUT_UNKNOWN,
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AS_ACA_PWMOUT_OFF, /* Disable */
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AS_ACA_PWMOUT_LN, /* LN */
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AS_ACA_PWMOUT_LP, /* LP */
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AS_ACA_PWMOUT_RN, /* RN */
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AS_ACA_PWMOUT_RP, /* RP */
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AS_ACA_PWMOUT_MAX_ENTRY
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} asAcaPulcoPwmOutId;
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typedef enum
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{
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AS_ACA_SP_LOOP_MODE_UNKNOWN,
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AS_ACA_SP_LOOP_MODE_ENABLE,
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AS_ACA_SP_LOOP_MODE_DISABLE,
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AS_ACA_SP_LOOP_MODE_MAX_ENTRY
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} asAcaSpLoopModeId;
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typedef enum
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{
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AS_ACA_SP_DELAY_SEL_UNKNOWN,
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AS_ACA_SP_DELAY_SEL_NON,
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AS_ACA_SP_DELAY_SEL_SHORT,
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AS_ACA_SP_DELAY_SEL_MIDDLE,
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AS_ACA_SP_DELAY_SEL_LONG,
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AS_ACA_SP_DELAY_SEL_MAX_ENTRY
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} asAcaSpDelaySelId;
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typedef enum
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{
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AS_ACA_SP_DLY_FREE_UNKNOWN,
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AS_ACA_SP_DLY_FREE_OFF,
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AS_ACA_SP_DLY_FREE_ON,
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AS_ACA_SP_DLY_FREE_MAX_ENTRY
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} asAcaSpDlyFreeId;
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typedef enum
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{
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AS_ACA_SP_SPLITON_SEL_UNKNOWN,
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AS_ACA_SP_SPLITON_SEL_SHORTEST,
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AS_ACA_SP_SPLITON_SEL_SHORT,
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AS_ACA_SP_SPLITON_SEL_LONG,
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AS_ACA_SP_SPLITON_SEL_LONGEST,
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AS_ACA_SP_SPLITON_SEL_MAX_ENTRY
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} asAcaSpSplitonSelId;
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typedef enum
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{
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AS_ACA_SP_DRV_SEL_UNKNOWN,
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AS_ACA_SP_DRV_SEL_4DRIVER,
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AS_ACA_SP_DRV_SEL_2DRIVER,
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AS_ACA_SP_DRV_SEL_1DRIVER,
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AS_ACA_SP_DRV_SEL_LINEOUT,
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AS_ACA_SP_DRV_SEL_MAX_ENTRY
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} asAcaSpDrvSelId;
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typedef enum
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{
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AS_ACA_SER_MODE_UNKNOWN,
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AS_ACA_SER_MODE_8CH, /* 8ch */
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AS_ACA_SER_MODE_4CH, /* 4ch */
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AS_ACA_SER_MODE_MAX_ENTRY
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} asAcaPulcoSerModeId;
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typedef enum
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{
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AS_ACA_SER_FS_UNKNOWN,
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AS_ACA_SER_FS_128, /* 128fs */
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AS_ACA_SER_FS_64, /* 64fs */
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AS_ACA_SER_FS_MAX_ENTRY
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} asAcaPulcoSerFsId;
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typedef enum
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{
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AS_ACA_SER_SEL_FIX0 = 0,
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AS_ACA_SER_SEL_AMIC1 = 1,
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AS_ACA_SER_SEL_AMIC2 = 2,
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AS_ACA_SER_SEL_AMIC3 = 3,
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AS_ACA_SER_SEL_AMIC4 = 4,
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AS_ACA_SER_SEL_DMIC1 = 5,
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AS_ACA_SER_SEL_DMIC2 = 6,
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AS_ACA_SER_SEL_DMIC3 = 7,
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AS_ACA_SER_SEL_DMIC4 = 8,
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AS_ACA_SER_SEL_DMIC5 = 9,
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AS_ACA_SER_SEL_DMIC6 = 10,
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AS_ACA_SER_SEL_DMIC7 = 11,
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AS_ACA_SER_SEL_DMIC8 = 12,
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AS_ACA_SER_SEL_UNKNOWN = 15,
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AS_ACA_SER_SEL_MAX_ENTRY = 16
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} asAcaPulcoSerSelChId;
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typedef enum
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{
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AS_SDES_DES_SEL_UNKNOWN,
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AS_SDES_DES_SEL_CH1,
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AS_SDES_DES_SEL_CH2,
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AS_SDES_DES_SEL_CH3,
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AS_SDES_DES_SEL_CH4,
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AS_SDES_DES_SEL_CH5,
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AS_SDES_DES_SEL_CH6,
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AS_SDES_DES_SEL_CH7,
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AS_SDES_DES_SEL_CH8,
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AS_SDES_DES_SEL_MAX_ENTRY
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} asSdesDesSelOutId;
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typedef enum
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{
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AS_ACA_CHECK_ID,
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AS_ACA_POWER_ON_COMMON,
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AS_ACA_POWER_ON_INPUT,
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AS_ACA_POWER_ON_OUTPUT,
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AS_ACA_SET_SERDES,
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AS_ACA_SET_SMASTER,
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AS_ACA_POWER_OFF_COMMON,
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AS_ACA_POWER_OFF_INPUT,
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AS_ACA_POWER_OFF_OUTPUT,
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AS_ACA_POWER_ON_MICBIAS,
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AS_ACA_POWER_OFF_MICBIAS,
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AS_ACA_INIT_AMIC,
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AS_ACA_SET_AMIC_BOOT_DONE,
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AS_ACA_SET_OUTPUT_DEVICE,
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AS_ACA_GET_REGISTER,
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AS_ACA_SET_REGISTER,
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AS_ACA_CONTROL_TYPE_NUM
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} AsAcaControlType;
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typedef struct
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{
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asAcaPulcoOscModeId oscMode;
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asAcaPulcoMicDeviceId micDev;
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asAcaPulcoIoDsId gpoDs;
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asAcaPulcoIoDsId adDataDs;
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asAcaPulcoIoDsId dmicClkDs;
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asAcaPulcoIoDsId mclkDs;
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} asAcaPulcoParam;
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typedef struct
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{
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asAcaPulcoMicDeviceId micDev;
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asAcaPulcoMicBiasSelId micBiasSel;
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uint32_t micGain[4];
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uint32_t pgaGain[4];
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int32_t vgain[4];
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} asAcaPulcoInParam;
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typedef struct
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{
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asSmstrModeId mode;
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asSmstrMckId mckFs;
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asSmstrPwmModeId pwmMode;
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asSmstrChSelId chSel;
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uint8_t out2Dly;
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} asAcaPulcoSmstrParam;
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typedef struct
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{
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asAcaPulcoOutDeviceId outDev;
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asAcaPulcoPwmOutId pwmOut[2];
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asAcaSpDelaySelId spDelay;
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asAcaSpLoopModeId loopMode;
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asSmstrModeId mode;
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asAcaSpDlyFreeId spDlyFree;
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asAcaSpSplitonSelId spSpliton;
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asAcaSpDrvSelId spDrv;
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} asAcaPulcoOutParam;
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typedef struct
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{
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uint32_t bank;
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uint32_t addr;
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uint32_t value;
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} asAcaPulcoRegParam;
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typedef struct
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{
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asAcaPulcoSerModeId serMode;
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asAcaPulcoSerFsId serFs;
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union
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{
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asAcaPulcoSerSelChId in[CXD56_AUDIO_MIC_CH_MAX];
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asSdesDesSelOutId out[CXD56_AUDIO_MIC_CH_MAX];
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} selCh;
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} asSerDesParam;
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/* Select output device ID */
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typedef enum
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{
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/* output device none */
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AS_OUT_DEV_OFF,
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/* output device speaker */
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AS_OUT_DEV_SP,
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/* output device i2s */
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AS_OUT_DEV_I2S,
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AS_OUT_DEV_NUM
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} asOutDeviceId;
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/****************************************************************************
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* Public Function Prototypes
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****************************************************************************/
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extern uint32_t AS_AcaControl(uint8_t type, uint32_t param);
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/****************************************************************************
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* Private Data
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****************************************************************************/
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/****************************************************************************
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* Public Data
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****************************************************************************/
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/****************************************************************************
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* Private Functions
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****************************************************************************/
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static void get_osc_mode(uint8_t cfg_mclk, asAcaPulcoOscModeId *osc)
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{
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cxd56_audio_clkmode_t clk_mode = cxd56_audio_config_get_clkmode();
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if (cfg_mclk == CXD56_AUDIO_CFG_XTAL_24_576MHZ)
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{
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if (clk_mode == CXD56_AUDIO_CLKMODE_HIRES)
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{
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*osc = AS_ACA_OSC_24_576MHZ_HIRES;
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}
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else
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{
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*osc = AS_ACA_OSC_24_576MHZ;
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}
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}
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else
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{
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if (clk_mode == CXD56_AUDIO_CLKMODE_HIRES)
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{
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*osc = AS_ACA_OSC_49_152MHZ_HIRES;
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}
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else
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{
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*osc = AS_ACA_OSC_49_152MHZ;
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}
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}
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}
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static void get_mic_dev(uint32_t cfg_mic, FAR asAcaPulcoMicDeviceId *dev)
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{
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bool is_amic = false;
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bool is_dmic = false;
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uint8_t i;
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for (i = 0; i < CXD56_AUDIO_MIC_CH_MAX; i++)
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{
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uint8_t mic_sel;
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mic_sel = (cfg_mic >> (i * MIC_CH_BITNUM)) & MIC_CH_BITMAP;
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if ((mic_sel >= 1) && (mic_sel <= 4))
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{
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is_amic = true;
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}
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else if ((mic_sel >= 5) && (mic_sel <= 12))
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{
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is_dmic = true;
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}
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}
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if (is_amic && is_dmic)
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{
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*dev = AS_ACA_MIC_BOTH;
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}
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else if(is_amic)
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{
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*dev = AS_ACA_MIC_AMIC;
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}
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else
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{
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*dev = AS_ACA_MIC_DMIC;
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}
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}
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static void get_drv_str(uint8_t cfg_ds, FAR asAcaPulcoIoDsId *ds)
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{
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switch (cfg_ds)
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{
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case CXD56_AUDIO_CFG_DS_WEAKEST:
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*ds = AS_ACA_IO_DS_WEAKEST;
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break;
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case CXD56_AUDIO_CFG_DS_WEAKER:
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*ds = AS_ACA_IO_DS_WEAKER;
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break;
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case CXD56_AUDIO_CFG_DS_STRONGER:
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*ds = AS_ACA_IO_DS_STRONGER;
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break;
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case CXD56_AUDIO_CFG_DS_STRONGEST:
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*ds = AS_ACA_IO_DS_STRONGEST;
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break;
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default:
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*ds = AS_ACA_IO_DS_WEAKEST;
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break;
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}
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}
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static void get_mic_bias(uint8_t cfg_bsel, FAR asAcaPulcoMicBiasSelId *bsel)
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{
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switch (cfg_bsel)
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{
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case CXD56_AUDIO_CFG_MIC_BIAS_20V:
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*bsel = AS_ACA_MICBIAS_SEL_2_0V;
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break;
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case CXD56_AUDIO_CFG_MIC_BIAS_28V:
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*bsel = AS_ACA_MICBIAS_SEL_2_8V;
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break;
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default:
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*bsel = AS_ACA_MICBIAS_SEL_2_0V;
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break;
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}
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}
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static void get_sp_split_on(uint8_t cf_sp_spliton, FAR asAcaSpSplitonSelId *spSpliton)
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{
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switch (cf_sp_spliton)
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{
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case CXD56_AUDIO_CFG_SP_SPLITON_LONGEST:
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*spSpliton = AS_ACA_SP_SPLITON_SEL_LONGEST;
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break;
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case CXD56_AUDIO_CFG_SP_SPLITON_LONG:
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*spSpliton = AS_ACA_SP_SPLITON_SEL_LONG;
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break;
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case CXD56_AUDIO_CFG_SP_SPLITON_SHORT:
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*spSpliton = AS_ACA_SP_SPLITON_SEL_SHORT;
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break;
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default:
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*spSpliton = AS_ACA_SP_SPLITON_SEL_SHORTEST;
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break;
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}
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}
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static void get_sp_driver(uint8_t cfg_sp_drv, FAR asAcaSpDrvSelId *spDrv)
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{
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switch (cfg_sp_drv)
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{
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case CXD56_AUDIO_SP_DRV_LINEOUT:
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*spDrv = AS_ACA_SP_DRV_SEL_LINEOUT;
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break;
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case CXD56_AUDIO_SP_DRV_1DRIVER:
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*spDrv = AS_ACA_SP_DRV_SEL_1DRIVER;
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break;
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case CXD56_AUDIO_SP_DRV_2DRIVER:
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*spDrv = AS_ACA_SP_DRV_SEL_2DRIVER;
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break;
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default:
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*spDrv = AS_ACA_SP_DRV_SEL_4DRIVER;
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break;
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}
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}
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void get_pwon_param(asAcaPulcoParam *param)
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{
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uint32_t mic_map = cxd56_audio_config_get_micmap();
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get_osc_mode((uint8_t)CXD56_AUDIO_CFG_MCLK, ¶m->oscMode);
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get_mic_dev(mic_map, ¶m->micDev);
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get_drv_str((uint8_t)CXD56_AUDIO_CFG_GPO_A_DS, ¶m->gpoDs);
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get_drv_str((uint8_t)CXD56_AUDIO_CFG_DA_DS, ¶m->adDataDs);
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get_drv_str((uint8_t)CXD56_AUDIO_CFG_DMIC_CLK_DS, ¶m->dmicClkDs);
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get_drv_str((uint8_t)CXD56_AUDIO_CFG_MCLKOUT_DS, ¶m->mclkDs);
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}
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void get_serial_param(asSerDesParam *param)
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{
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uint8_t mic_mode = cxd56_audio_config_get_micmode();
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uint32_t mic_map = cxd56_audio_config_get_micmap();
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uint8_t mic_sel = 0;
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uint8_t i;
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if (CXD56_AUDIO_CFG_MIC_MODE_128FS == mic_mode)
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{
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param->serMode = AS_ACA_SER_MODE_4CH;
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param->serFs = AS_ACA_SER_FS_128;
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}
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else
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{
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param->serMode = AS_ACA_SER_MODE_8CH;
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param->serFs = AS_ACA_SER_FS_64;
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}
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for (i = 0; i < CXD56_AUDIO_MIC_CH_MAX; i++)
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{
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mic_sel = (mic_map >> (i * MIC_CH_BITNUM)) & MIC_CH_BITMAP;
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param->selCh.in[i] = (asAcaPulcoSerSelChId)mic_sel;
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}
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}
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void get_input_param(asAcaPulcoInParam *param,
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FAR cxd56_audio_mic_gain_t *gain)
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{
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uint8_t mic_sel;
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uint8_t mic_id;
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uint32_t mic_map = cxd56_audio_config_get_micmap();
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uint32_t pga_gain;
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uint8_t i;
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memset((void *)param, 0, sizeof(asAcaPulcoInParam));
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get_mic_dev(mic_map, ¶m->micDev);
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get_mic_bias((uint8_t)CXD56_AUDIO_CFG_MIC_BIAS, ¶m->micBiasSel);
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for (i = 0; i < CXD56_AUDIO_MIC_CH_MAX; i++)
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{
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mic_sel = (mic_map >> (i * MIC_CH_BITNUM)) & MIC_CH_BITMAP;
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if ((mic_sel >= 1) && (mic_sel <= 4))
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{
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mic_id = mic_sel - 1;
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param->micGain[mic_id] = (gain->gain[i] >= MIC_GAIN_MAX) ?
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MIC_GAIN_MAX : (gain->gain[i] / 30) * 30;
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pga_gain = gain->gain[i] - param->micGain[mic_id];
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param->pgaGain[mic_id] = (pga_gain >= PGA_GAIN_MAX) ?
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PGA_GAIN_MAX : pga_gain;
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}
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}
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}
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void get_smaster_param(asAcaPulcoSmstrParam *param)
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{
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cxd56_audio_clkmode_t clk_mode = cxd56_audio_config_get_clkmode();
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if (clk_mode == CXD56_AUDIO_CLKMODE_HIRES)
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{
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param->mode = AS_SMSTR_MODE_FS_32;
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param->mckFs = AS_SMSTR_MCK_FS_1024;
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}
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else
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{
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param->mode = AS_SMSTR_MODE_FS_16;
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param->mckFs = AS_SMSTR_MCK_FS_512;
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}
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param->chSel = AS_SMSTR_CHSEL_NORMAL;
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param->out2Dly = 0x00;
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param->pwmMode = AS_SMSTR_PWMMD_BOTH;
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}
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void get_pwon_out_param(asAcaPulcoOutParam *param)
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{
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cxd56_audio_clkmode_t clk_mode = cxd56_audio_config_get_clkmode();
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if (clk_mode == CXD56_AUDIO_CLKMODE_HIRES)
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{
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param->mode = AS_SMSTR_MODE_FS_32;
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}
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else
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{
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param->mode = AS_SMSTR_MODE_FS_16;
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}
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param->outDev = AS_ACA_OUT_OFF;
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param->pwmOut[0] = AS_ACA_PWMOUT_UNKNOWN;
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param->pwmOut[1] = AS_ACA_PWMOUT_UNKNOWN;
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param->spDelay = AS_ACA_SP_DELAY_SEL_UNKNOWN;
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param->loopMode = AS_ACA_SP_LOOP_MODE_UNKNOWN;
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param->spDlyFree = AS_ACA_SP_DLY_FREE_UNKNOWN;
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get_sp_split_on((uint8_t)CXD56_AUDIO_CFG_SP_SPLIT_ON, ¶m->spSpliton);
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get_sp_driver((uint8_t)cxd56_audio_config_get_spdriver(), ¶m->spDrv);
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}
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/***************************************************************************
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* Public Functions
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****************************************************************************/
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CXD56_AUDIO_ECODE cxd56_audio_aca_poweron(void)
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{
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if (AS_AcaControl(AS_ACA_CHECK_ID, (uint32_t)NULL) != 0)
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{
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return CXD56_AUDIO_ECODE_ANA_CHKID;
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}
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asAcaPulcoParam pwon_param;
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get_pwon_param(&pwon_param);
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if (AS_AcaControl(AS_ACA_POWER_ON_COMMON, (uint32_t)&pwon_param) != 0)
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{
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return CXD56_AUDIO_ECODE_ANA_PWON;
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}
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asSerDesParam serial_param;
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get_serial_param(&serial_param);
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if (AS_AcaControl(AS_ACA_SET_SERDES, (uint32_t)&serial_param) != 0)
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{
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return CXD56_AUDIO_ECODE_ANA_SERIAL;
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}
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return CXD56_AUDIO_ECODE_OK;
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}
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CXD56_AUDIO_ECODE cxd56_audio_aca_poweroff(void)
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{
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if (AS_AcaControl(AS_ACA_POWER_OFF_COMMON, (uint32_t)NULL) != 0)
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{
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return CXD56_AUDIO_ECODE_ANA_PWOFF;
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}
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return CXD56_AUDIO_ECODE_OK;
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}
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CXD56_AUDIO_ECODE cxd56_audio_aca_poweron_micbias(void)
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{
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if (AS_AcaControl(AS_ACA_POWER_ON_MICBIAS, (uint32_t)NULL) != 0)
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{
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return CXD56_AUDIO_ECODE_ANA_PWON_MBIAS;
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}
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return CXD56_AUDIO_ECODE_OK;
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}
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CXD56_AUDIO_ECODE cxd56_audio_aca_poweron_input(FAR cxd56_audio_mic_gain_t *gain)
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{
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asAcaPulcoInParam pwon_input_param;
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get_input_param(&pwon_input_param, gain);
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if (AS_AcaControl(AS_ACA_POWER_ON_INPUT, (uint32_t)&pwon_input_param) != 0)
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{
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return CXD56_AUDIO_ECODE_ANA_PWON_INPUT;
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}
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return CXD56_AUDIO_ECODE_OK;
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}
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CXD56_AUDIO_ECODE cxd56_audio_aca_set_smaster(void)
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{
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asAcaPulcoSmstrParam smaster_param;
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get_smaster_param(&smaster_param);
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if (AS_AcaControl(AS_ACA_SET_SMASTER, (uint32_t)&smaster_param) != 0)
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{
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return CXD56_AUDIO_ECODE_ANA_SET_SMASTER;
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}
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return CXD56_AUDIO_ECODE_OK;
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}
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CXD56_AUDIO_ECODE cxd56_audio_aca_poweron_output(void)
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{
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asAcaPulcoOutParam pwon_output_param;
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get_pwon_out_param(&pwon_output_param);
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if (AS_AcaControl(AS_ACA_POWER_ON_OUTPUT, (uint32_t)&pwon_output_param) != 0)
|
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|
{
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return CXD56_AUDIO_ECODE_ANA_PWON_OUTPUT;
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}
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return CXD56_AUDIO_ECODE_OK;
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}
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CXD56_AUDIO_ECODE cxd56_audio_aca_poweroff_input(void)
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{
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if (AS_AcaControl(AS_ACA_POWER_OFF_INPUT, (uint32_t)NULL) != 0)
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{
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return CXD56_AUDIO_ECODE_ANA_PWOFF_INPUT;
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}
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return CXD56_AUDIO_ECODE_OK;
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}
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CXD56_AUDIO_ECODE cxd56_audio_aca_poweroff_output(void)
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{
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if (AS_AcaControl(AS_ACA_POWER_OFF_OUTPUT, (uint32_t)NULL) != 0)
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{
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return CXD56_AUDIO_ECODE_ANA_PWOFF_OUTPUT;
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}
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return CXD56_AUDIO_ECODE_OK;
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}
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CXD56_AUDIO_ECODE cxd56_audio_aca_enable_output(void)
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{
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if (AS_AcaControl(AS_ACA_SET_OUTPUT_DEVICE, (uint32_t)AS_OUT_DEV_SP) != 0)
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{
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return CXD56_AUDIO_ECODE_ANA_ENABLE_OUTPUT;
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}
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return CXD56_AUDIO_ECODE_OK;
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}
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CXD56_AUDIO_ECODE cxd56_audio_aca_disable_output(void)
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{
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if (AS_AcaControl(AS_ACA_SET_OUTPUT_DEVICE, (uint32_t)AS_OUT_DEV_OFF) != 0)
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{
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return CXD56_AUDIO_ECODE_ANA_DISABLE_OUTPUT;
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}
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return CXD56_AUDIO_ECODE_OK;
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}
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CXD56_AUDIO_ECODE cxd56_audio_aca_set_micgain(FAR cxd56_audio_mic_gain_t *gain)
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{
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asAcaPulcoInParam mic_gain_param;
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get_input_param(&mic_gain_param, gain);
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if (AS_AcaControl(AS_ACA_INIT_AMIC, (uint32_t)&mic_gain_param) != 0)
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{
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return CXD56_AUDIO_ECODE_ANA_SET_MICGAIN;
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}
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return CXD56_AUDIO_ECODE_OK;
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}
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CXD56_AUDIO_ECODE cxd56_audio_aca_notify_micbootdone(void)
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{
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if (AS_AcaControl(AS_ACA_SET_AMIC_BOOT_DONE, (uint32_t)NULL) != 0)
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{
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return CXD56_AUDIO_ECODE_ANA_NOTIFY_MICBOOT;
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}
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return CXD56_AUDIO_ECODE_OK;
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}
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CXD56_AUDIO_ECODE cxd56_audio_aca_read_reg(asAcaPulcoRegParam *param)
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{
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AS_AcaControl(AS_ACA_GET_REGISTER, (uint32_t)param);
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return CXD56_AUDIO_ECODE_OK;
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}
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CXD56_AUDIO_ECODE cxd56_audio_aca_write_reg(asAcaPulcoRegParam *param)
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{
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AS_AcaControl(AS_ACA_SET_REGISTER, (uint32_t)param);
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return CXD56_AUDIO_ECODE_OK;
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}
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