Audio: 8916 Audio HAL bringup changes
-Separate platform specific code from generic audio HAL code -Platform specific code is: - platform initialization - pcm device selection - pcm stream configuration - sound device selection - acdb ID selection - HDMI configuration Change-Id: I9b02d60035ea632776e59c9d953909d3b851f3d7
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/*
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* Copyright (C) 2013 The Android Open Source Project
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*
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* Licensed under the Apache License, Version 2.0 (the "License");
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* you may not use this file except in compliance with the License.
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* You may obtain a copy of the License at
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*
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* http://www.apache.org/licenses/LICENSE-2.0
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*
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* Unless required by applicable law or agreed to in writing, software
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* distributed under the License is distributed on an "AS IS" BASIS,
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* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
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* See the License for the specific language governing permissions and
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* limitations under the License.
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*/
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#define LOG_TAG "msm8974_platform"
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/*#define LOG_NDEBUG 0*/
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#define LOG_NDDEBUG 0
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#include <stdlib.h>
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#include <dlfcn.h>
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#include <cutils/log.h>
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#include <cutils/properties.h>
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#include <audio_hw.h>
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#include <platform_api.h>
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#include "platform.h"
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#define LIB_ACDB_LOADER "libacdbloader.so"
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#define DUALMIC_CONFIG_NONE 0 /* Target does not contain 2 mics */
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#define DUALMIC_CONFIG_ENDFIRE 1
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#define DUALMIC_CONFIG_BROADSIDE 2
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/*
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* This is the sysfs path for the HDMI audio data block
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*/
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#define AUDIO_DATA_BLOCK_PATH "/sys/class/graphics/fb1/audio_data_block"
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/*
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* This file will have a maximum of 38 bytes:
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*
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* 4 bytes: number of audio blocks
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* 4 bytes: total length of Short Audio Descriptor (SAD) blocks
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* Maximum 10 * 3 bytes: SAD blocks
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*/
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#define MAX_SAD_BLOCKS 10
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#define SAD_BLOCK_SIZE 3
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/* EDID format ID for LPCM audio */
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#define EDID_FORMAT_LPCM 1
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struct audio_block_header
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{
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int reserved;
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int length;
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};
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typedef void (*acdb_deallocate_t)();
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typedef int (*acdb_init_t)();
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typedef void (*acdb_send_audio_cal_t)(int, int);
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typedef void (*acdb_send_voice_cal_t)(int, int);
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/* Audio calibration related functions */
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struct platform_data {
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struct audio_device *adev;
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bool fluence_in_spkr_mode;
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bool fluence_in_voice_call;
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bool fluence_in_voice_rec;
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int dualmic_config;
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void *acdb_handle;
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acdb_init_t acdb_init;
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acdb_deallocate_t acdb_deallocate;
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acdb_send_audio_cal_t acdb_send_audio_cal;
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acdb_send_voice_cal_t acdb_send_voice_cal;
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};
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static const int pcm_device_table[AUDIO_USECASE_MAX][2] = {
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[USECASE_AUDIO_PLAYBACK_DEEP_BUFFER] = {0, 0},
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[USECASE_AUDIO_PLAYBACK_LOW_LATENCY] = {15, 15},
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[USECASE_AUDIO_PLAYBACK_MULTI_CH] = {1, 1},
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[USECASE_AUDIO_RECORD] = {0, 0},
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[USECASE_AUDIO_RECORD_LOW_LATENCY] = {15, 15},
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[USECASE_VOICE_CALL] = {2, 2},
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};
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/* Array to store sound devices */
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static const char * const device_table[SND_DEVICE_MAX] = {
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[SND_DEVICE_NONE] = "none",
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/* Playback sound devices */
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[SND_DEVICE_OUT_HANDSET] = "handset",
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[SND_DEVICE_OUT_SPEAKER] = "speaker",
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[SND_DEVICE_OUT_SPEAKER_REVERSE] = "speaker-reverse",
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[SND_DEVICE_OUT_HEADPHONES] = "headphones",
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[SND_DEVICE_OUT_SPEAKER_AND_HEADPHONES] = "speaker-and-headphones",
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[SND_DEVICE_OUT_VOICE_HANDSET] = "voice-handset",
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[SND_DEVICE_OUT_VOICE_SPEAKER] = "voice-speaker",
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[SND_DEVICE_OUT_VOICE_HEADPHONES] = "voice-headphones",
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[SND_DEVICE_OUT_HDMI] = "hdmi",
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[SND_DEVICE_OUT_SPEAKER_AND_HDMI] = "speaker-and-hdmi",
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[SND_DEVICE_OUT_BT_SCO] = "bt-sco-headset",
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[SND_DEVICE_OUT_VOICE_HANDSET_TMUS] = "voice-handset-tmus",
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[SND_DEVICE_OUT_VOICE_TTY_FULL_HEADPHONES] = "voice-tty-full-headphones",
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[SND_DEVICE_OUT_VOICE_TTY_VCO_HEADPHONES] = "voice-tty-vco-headphones",
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[SND_DEVICE_OUT_VOICE_TTY_HCO_HANDSET] = "voice-tty-hco-handset",
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/* Capture sound devices */
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[SND_DEVICE_IN_HANDSET_MIC] = "handset-mic",
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[SND_DEVICE_IN_SPEAKER_MIC] = "speaker-mic",
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[SND_DEVICE_IN_HEADSET_MIC] = "headset-mic",
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[SND_DEVICE_IN_HANDSET_MIC_AEC] = "handset-mic",
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[SND_DEVICE_IN_SPEAKER_MIC_AEC] = "voice-speaker-mic",
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[SND_DEVICE_IN_HEADSET_MIC_AEC] = "headset-mic",
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[SND_DEVICE_IN_VOICE_SPEAKER_MIC] = "voice-speaker-mic",
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[SND_DEVICE_IN_VOICE_HEADSET_MIC] = "voice-headset-mic",
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[SND_DEVICE_IN_HDMI_MIC] = "hdmi-mic",
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[SND_DEVICE_IN_BT_SCO_MIC] = "bt-sco-mic",
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[SND_DEVICE_IN_CAMCORDER_MIC] = "camcorder-mic",
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[SND_DEVICE_IN_VOICE_DMIC_EF] = "voice-dmic-ef",
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[SND_DEVICE_IN_VOICE_DMIC_BS] = "voice-dmic-bs",
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[SND_DEVICE_IN_VOICE_DMIC_EF_TMUS] = "voice-dmic-ef-tmus",
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[SND_DEVICE_IN_VOICE_SPEAKER_DMIC_EF] = "voice-speaker-dmic-ef",
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[SND_DEVICE_IN_VOICE_SPEAKER_DMIC_BS] = "voice-speaker-dmic-bs",
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[SND_DEVICE_IN_VOICE_TTY_FULL_HEADSET_MIC] = "voice-tty-full-headset-mic",
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[SND_DEVICE_IN_VOICE_TTY_VCO_HANDSET_MIC] = "voice-tty-vco-handset-mic",
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[SND_DEVICE_IN_VOICE_TTY_HCO_HEADSET_MIC] = "voice-tty-hco-headset-mic",
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[SND_DEVICE_IN_VOICE_REC_MIC] = "voice-rec-mic",
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[SND_DEVICE_IN_VOICE_REC_DMIC_EF] = "voice-rec-dmic-ef",
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[SND_DEVICE_IN_VOICE_REC_DMIC_BS] = "voice-rec-dmic-bs",
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[SND_DEVICE_IN_VOICE_REC_DMIC_EF_FLUENCE] = "voice-rec-dmic-ef-fluence",
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[SND_DEVICE_IN_VOICE_REC_DMIC_BS_FLUENCE] = "voice-rec-dmic-bs-fluence",
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};
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/* ACDB IDs (audio DSP path configuration IDs) for each sound device */
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static const int acdb_device_table[SND_DEVICE_MAX] = {
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[SND_DEVICE_NONE] = -1,
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[SND_DEVICE_OUT_HANDSET] = 7,
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[SND_DEVICE_OUT_SPEAKER] = 15,
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[SND_DEVICE_OUT_SPEAKER_REVERSE] = 15,
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[SND_DEVICE_OUT_HEADPHONES] = 10,
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[SND_DEVICE_OUT_SPEAKER_AND_HEADPHONES] = 10,
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[SND_DEVICE_OUT_VOICE_HANDSET] = 7,
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[SND_DEVICE_OUT_VOICE_SPEAKER] = 15,
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[SND_DEVICE_OUT_VOICE_HEADPHONES] = 10,
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[SND_DEVICE_OUT_HDMI] = 18,
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[SND_DEVICE_OUT_SPEAKER_AND_HDMI] = 15,
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[SND_DEVICE_OUT_BT_SCO] = 22,
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[SND_DEVICE_OUT_VOICE_HANDSET_TMUS] = 81,
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[SND_DEVICE_OUT_VOICE_TTY_FULL_HEADPHONES] = 17,
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[SND_DEVICE_OUT_VOICE_TTY_VCO_HEADPHONES] = 17,
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[SND_DEVICE_OUT_VOICE_TTY_HCO_HANDSET] = 37,
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[SND_DEVICE_IN_HANDSET_MIC] = 4,
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[SND_DEVICE_IN_SPEAKER_MIC] = 4, /* ToDo: Check if this needs to changed to 11 */
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[SND_DEVICE_IN_HEADSET_MIC] = 8,
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[SND_DEVICE_IN_HANDSET_MIC_AEC] = 40,
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[SND_DEVICE_IN_SPEAKER_MIC_AEC] = 42,
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[SND_DEVICE_IN_HEADSET_MIC_AEC] = 47,
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[SND_DEVICE_IN_VOICE_SPEAKER_MIC] = 11,
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[SND_DEVICE_IN_VOICE_HEADSET_MIC] = 8,
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[SND_DEVICE_IN_HDMI_MIC] = 4,
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[SND_DEVICE_IN_BT_SCO_MIC] = 21,
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[SND_DEVICE_IN_CAMCORDER_MIC] = 61,
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[SND_DEVICE_IN_VOICE_DMIC_EF] = 41,
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[SND_DEVICE_IN_VOICE_DMIC_BS] = 5,
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[SND_DEVICE_IN_VOICE_DMIC_EF_TMUS] = 91,
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[SND_DEVICE_IN_VOICE_SPEAKER_DMIC_EF] = 43,
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[SND_DEVICE_IN_VOICE_SPEAKER_DMIC_BS] = 12,
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[SND_DEVICE_IN_VOICE_TTY_FULL_HEADSET_MIC] = 16,
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[SND_DEVICE_IN_VOICE_TTY_VCO_HANDSET_MIC] = 36,
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[SND_DEVICE_IN_VOICE_TTY_HCO_HEADSET_MIC] = 16,
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[SND_DEVICE_IN_VOICE_REC_MIC] = 62,
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/* TODO: Update with proper acdb ids */
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[SND_DEVICE_IN_VOICE_REC_DMIC_EF] = 62,
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[SND_DEVICE_IN_VOICE_REC_DMIC_BS] = 62,
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[SND_DEVICE_IN_VOICE_REC_DMIC_EF_FLUENCE] = 6,
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[SND_DEVICE_IN_VOICE_REC_DMIC_BS_FLUENCE] = 5,
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};
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static pthread_once_t check_op_once_ctl = PTHREAD_ONCE_INIT;
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static bool is_tmus = false;
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static void check_operator()
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{
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char value[PROPERTY_VALUE_MAX];
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int mccmnc;
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property_get("gsm.sim.operator.numeric",value,"0");
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mccmnc = atoi(value);
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ALOGD("%s: tmus mccmnc %d", __func__, mccmnc);
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switch(mccmnc) {
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/* TMUS MCC(310), MNC(490, 260, 026) */
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case 310490:
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case 310260:
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case 310026:
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is_tmus = true;
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break;
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}
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}
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bool is_operator_tmus()
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{
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pthread_once(&check_op_once_ctl, check_operator);
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return is_tmus;
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}
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static int set_echo_reference(struct mixer *mixer, const char* ec_ref)
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{
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struct mixer_ctl *ctl;
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const char *mixer_ctl_name = "EC_REF_RX";
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ctl = mixer_get_ctl_by_name(mixer, mixer_ctl_name);
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if (!ctl) {
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ALOGE("%s: Could not get ctl for mixer cmd - %s",
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__func__, mixer_ctl_name);
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return -EINVAL;
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}
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ALOGV("Setting EC Reference: %s", ec_ref);
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mixer_ctl_set_enum_by_string(ctl, ec_ref);
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return 0;
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}
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void *platform_init(struct audio_device *adev)
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{
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char value[PROPERTY_VALUE_MAX];
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struct platform_data *my_data;
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my_data = calloc(1, sizeof(struct platform_data));
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my_data->adev = adev;
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my_data->dualmic_config = DUALMIC_CONFIG_NONE;
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my_data->fluence_in_spkr_mode = false;
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my_data->fluence_in_voice_call = false;
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my_data->fluence_in_voice_rec = false;
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property_get("persist.audio.dualmic.config",value,"");
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if (!strcmp("broadside", value)) {
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my_data->dualmic_config = DUALMIC_CONFIG_BROADSIDE;
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adev->acdb_settings |= DMIC_FLAG;
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} else if (!strcmp("endfire", value)) {
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my_data->dualmic_config = DUALMIC_CONFIG_ENDFIRE;
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adev->acdb_settings |= DMIC_FLAG;
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}
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if (my_data->dualmic_config != DUALMIC_CONFIG_NONE) {
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property_get("persist.audio.fluence.voicecall",value,"");
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if (!strcmp("true", value)) {
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my_data->fluence_in_voice_call = true;
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}
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property_get("persist.audio.fluence.voicerec",value,"");
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if (!strcmp("true", value)) {
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my_data->fluence_in_voice_rec = true;
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}
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property_get("persist.audio.fluence.speaker",value,"");
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if (!strcmp("true", value)) {
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my_data->fluence_in_spkr_mode = true;
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}
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}
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my_data->acdb_handle = dlopen(LIB_ACDB_LOADER, RTLD_NOW);
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if (my_data->acdb_handle == NULL) {
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ALOGE("%s: DLOPEN failed for %s", __func__, LIB_ACDB_LOADER);
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} else {
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ALOGV("%s: DLOPEN successful for %s", __func__, LIB_ACDB_LOADER);
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my_data->acdb_deallocate = (acdb_deallocate_t)dlsym(my_data->acdb_handle,
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"acdb_loader_deallocate_ACDB");
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my_data->acdb_send_audio_cal = (acdb_send_audio_cal_t)dlsym(my_data->acdb_handle,
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"acdb_loader_send_audio_cal");
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if (!my_data->acdb_send_audio_cal)
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ALOGW("%s: Could not find the symbol acdb_send_audio_cal from %s",
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__func__, LIB_ACDB_LOADER);
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my_data->acdb_send_voice_cal = (acdb_send_voice_cal_t)dlsym(my_data->acdb_handle,
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"acdb_loader_send_voice_cal");
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my_data->acdb_init = (acdb_init_t)dlsym(my_data->acdb_handle,
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"acdb_loader_init_ACDB");
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if (my_data->acdb_init == NULL)
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ALOGE("%s: dlsym error %s for acdb_loader_init_ACDB", __func__, dlerror());
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else
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my_data->acdb_init();
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}
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return my_data;
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}
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void platform_deinit(void *platform)
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{
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free(platform);
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}
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const char *platform_get_snd_device_name(snd_device_t snd_device)
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{
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if (snd_device >= SND_DEVICE_MIN && snd_device < SND_DEVICE_MAX)
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return device_table[snd_device];
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else
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return "";
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}
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void platform_add_backend_name(char *mixer_path, snd_device_t snd_device)
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{
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if (snd_device == SND_DEVICE_IN_BT_SCO_MIC)
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strcat(mixer_path, " bt-sco");
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else if(snd_device == SND_DEVICE_OUT_BT_SCO)
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strcat(mixer_path, " bt-sco");
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else if (snd_device == SND_DEVICE_OUT_HDMI)
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strcat(mixer_path, " hdmi");
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else if (snd_device == SND_DEVICE_OUT_SPEAKER_AND_HDMI)
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strcat(mixer_path, " speaker-and-hdmi");
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}
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int platform_get_pcm_device_id(audio_usecase_t usecase, int device_type)
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{
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int device_id;
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if (device_type == PCM_PLAYBACK)
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device_id = pcm_device_table[usecase][0];
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else
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device_id = pcm_device_table[usecase][1];
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return device_id;
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}
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int platform_send_audio_calibration(void *platform, snd_device_t snd_device)
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{
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struct platform_data *my_data = (struct platform_data *)platform;
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int acdb_dev_id, acdb_dev_type;
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acdb_dev_id = acdb_device_table[snd_device];
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if (acdb_dev_id < 0) {
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ALOGE("%s: Could not find acdb id for device(%d)",
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__func__, snd_device);
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return -EINVAL;
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}
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if (my_data->acdb_send_audio_cal) {
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ALOGD("%s: sending audio calibration for snd_device(%d) acdb_id(%d)",
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__func__, snd_device, acdb_dev_id);
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if (snd_device >= SND_DEVICE_OUT_BEGIN &&
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snd_device < SND_DEVICE_OUT_END)
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acdb_dev_type = ACDB_DEV_TYPE_OUT;
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else
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acdb_dev_type = ACDB_DEV_TYPE_IN;
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my_data->acdb_send_audio_cal(acdb_dev_id, acdb_dev_type);
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}
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return 0;
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}
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int platform_switch_voice_call_device_pre(void *platform)
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{
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return 0;
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}
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int platform_switch_voice_call_device_post(void *platform,
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snd_device_t out_snd_device,
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snd_device_t in_snd_device)
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{
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struct platform_data *my_data = (struct platform_data *)platform;
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int acdb_rx_id, acdb_tx_id;
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if (my_data->acdb_send_voice_cal == NULL) {
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ALOGE("%s: dlsym error for acdb_send_voice_call", __func__);
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} else {
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acdb_rx_id = acdb_device_table[out_snd_device];
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acdb_tx_id = acdb_device_table[in_snd_device];
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if (acdb_rx_id > 0 && acdb_tx_id > 0)
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my_data->acdb_send_voice_cal(acdb_rx_id, acdb_tx_id);
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else
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ALOGE("%s: Incorrect ACDB IDs (rx: %d tx: %d)", __func__,
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acdb_rx_id, acdb_tx_id);
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}
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return 0;
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}
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int platform_start_voice_call(void *platform)
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{
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return 0;
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}
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int platform_stop_voice_call(void *platform)
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{
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return 0;
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}
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int platform_set_voice_volume(void *platform, int volume)
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{
|
||||
struct platform_data *my_data = (struct platform_data *)platform;
|
||||
struct audio_device *adev = my_data->adev;
|
||||
struct mixer_ctl *ctl;
|
||||
const char *mixer_ctl_name = "Voice Rx Volume";
|
||||
|
||||
// Voice volume levels are mapped to adsp volume levels as follows.
|
||||
// 100 -> 5, 80 -> 4, 60 -> 3, 40 -> 2, 20 -> 1 0 -> 0
|
||||
// But this values don't changed in kernel. So, below change is need.
|
||||
volume = volume / 20;
|
||||
|
||||
ctl = mixer_get_ctl_by_name(adev->mixer, mixer_ctl_name);
|
||||
if (!ctl) {
|
||||
ALOGE("%s: Could not get ctl for mixer cmd - %s",
|
||||
__func__, mixer_ctl_name);
|
||||
return -EINVAL;
|
||||
}
|
||||
ALOGV("Setting voice volume: %d", volume);
|
||||
mixer_ctl_set_value(ctl, 0, volume);
|
||||
|
||||
return 0;
|
||||
}
|
||||
|
||||
int platform_set_mic_mute(void *platform, bool state)
|
||||
{
|
||||
struct platform_data *my_data = (struct platform_data *)platform;
|
||||
struct audio_device *adev = my_data->adev;
|
||||
struct mixer_ctl *ctl;
|
||||
const char *mixer_ctl_name = "Voice Tx Mute";
|
||||
|
||||
if (adev->mode == AUDIO_MODE_IN_CALL) {
|
||||
ctl = mixer_get_ctl_by_name(adev->mixer, mixer_ctl_name);
|
||||
if (!ctl) {
|
||||
ALOGE("%s: Could not get ctl for mixer cmd - %s",
|
||||
__func__, mixer_ctl_name);
|
||||
return -EINVAL;
|
||||
}
|
||||
ALOGV("Setting mic mute: %d", state);
|
||||
mixer_ctl_set_value(ctl, 0, state);
|
||||
}
|
||||
|
||||
return 0;
|
||||
}
|
||||
|
||||
snd_device_t platform_get_output_snd_device(void *platform, audio_devices_t devices)
|
||||
{
|
||||
struct platform_data *my_data = (struct platform_data *)platform;
|
||||
struct audio_device *adev = my_data->adev;
|
||||
audio_mode_t mode = adev->mode;
|
||||
snd_device_t snd_device = SND_DEVICE_NONE;
|
||||
|
||||
ALOGV("%s: enter: output devices(%#x)", __func__, devices);
|
||||
if (devices == AUDIO_DEVICE_NONE ||
|
||||
devices & AUDIO_DEVICE_BIT_IN) {
|
||||
ALOGV("%s: Invalid output devices (%#x)", __func__, devices);
|
||||
goto exit;
|
||||
}
|
||||
|
||||
if (mode == AUDIO_MODE_IN_CALL) {
|
||||
if (devices & AUDIO_DEVICE_OUT_WIRED_HEADPHONE ||
|
||||
devices & AUDIO_DEVICE_OUT_WIRED_HEADSET) {
|
||||
if (adev->tty_mode == TTY_MODE_FULL)
|
||||
snd_device = SND_DEVICE_OUT_VOICE_TTY_FULL_HEADPHONES;
|
||||
else if (adev->tty_mode == TTY_MODE_VCO)
|
||||
snd_device = SND_DEVICE_OUT_VOICE_TTY_VCO_HEADPHONES;
|
||||
else if (adev->tty_mode == TTY_MODE_HCO)
|
||||
snd_device = SND_DEVICE_OUT_VOICE_TTY_HCO_HANDSET;
|
||||
else
|
||||
snd_device = SND_DEVICE_OUT_VOICE_HEADPHONES;
|
||||
} else if (devices & AUDIO_DEVICE_OUT_ALL_SCO) {
|
||||
snd_device = SND_DEVICE_OUT_BT_SCO;
|
||||
} else if (devices & AUDIO_DEVICE_OUT_SPEAKER) {
|
||||
snd_device = SND_DEVICE_OUT_VOICE_SPEAKER;
|
||||
} else if (devices & AUDIO_DEVICE_OUT_EARPIECE) {
|
||||
if (is_operator_tmus())
|
||||
snd_device = SND_DEVICE_OUT_VOICE_HANDSET_TMUS;
|
||||
else
|
||||
snd_device = SND_DEVICE_OUT_HANDSET;
|
||||
}
|
||||
if (snd_device != SND_DEVICE_NONE) {
|
||||
goto exit;
|
||||
}
|
||||
}
|
||||
|
||||
if (popcount(devices) == 2) {
|
||||
if (devices == (AUDIO_DEVICE_OUT_WIRED_HEADPHONE |
|
||||
AUDIO_DEVICE_OUT_SPEAKER)) {
|
||||
snd_device = SND_DEVICE_OUT_SPEAKER_AND_HEADPHONES;
|
||||
} else if (devices == (AUDIO_DEVICE_OUT_WIRED_HEADSET |
|
||||
AUDIO_DEVICE_OUT_SPEAKER)) {
|
||||
snd_device = SND_DEVICE_OUT_SPEAKER_AND_HEADPHONES;
|
||||
} else if (devices == (AUDIO_DEVICE_OUT_AUX_DIGITAL |
|
||||
AUDIO_DEVICE_OUT_SPEAKER)) {
|
||||
snd_device = SND_DEVICE_OUT_SPEAKER_AND_HDMI;
|
||||
} else {
|
||||
ALOGE("%s: Invalid combo device(%#x)", __func__, devices);
|
||||
goto exit;
|
||||
}
|
||||
if (snd_device != SND_DEVICE_NONE) {
|
||||
goto exit;
|
||||
}
|
||||
}
|
||||
|
||||
if (popcount(devices) != 1) {
|
||||
ALOGE("%s: Invalid output devices(%#x)", __func__, devices);
|
||||
goto exit;
|
||||
}
|
||||
|
||||
if (devices & AUDIO_DEVICE_OUT_WIRED_HEADPHONE ||
|
||||
devices & AUDIO_DEVICE_OUT_WIRED_HEADSET) {
|
||||
snd_device = SND_DEVICE_OUT_HEADPHONES;
|
||||
} else if (devices & AUDIO_DEVICE_OUT_SPEAKER) {
|
||||
if (adev->speaker_lr_swap)
|
||||
snd_device = SND_DEVICE_OUT_SPEAKER_REVERSE;
|
||||
else
|
||||
snd_device = SND_DEVICE_OUT_SPEAKER;
|
||||
} else if (devices & AUDIO_DEVICE_OUT_ALL_SCO) {
|
||||
snd_device = SND_DEVICE_OUT_BT_SCO;
|
||||
} else if (devices & AUDIO_DEVICE_OUT_AUX_DIGITAL) {
|
||||
snd_device = SND_DEVICE_OUT_HDMI ;
|
||||
} else if (devices & AUDIO_DEVICE_OUT_EARPIECE) {
|
||||
snd_device = SND_DEVICE_OUT_HANDSET;
|
||||
} else {
|
||||
ALOGE("%s: Unknown device(s) %#x", __func__, devices);
|
||||
}
|
||||
exit:
|
||||
ALOGV("%s: exit: snd_device(%s)", __func__, device_table[snd_device]);
|
||||
return snd_device;
|
||||
}
|
||||
|
||||
snd_device_t platform_get_input_snd_device(void *platform, audio_devices_t out_device)
|
||||
{
|
||||
struct platform_data *my_data = (struct platform_data *)platform;
|
||||
struct audio_device *adev = my_data->adev;
|
||||
audio_source_t source = (adev->active_input == NULL) ?
|
||||
AUDIO_SOURCE_DEFAULT : adev->active_input->source;
|
||||
|
||||
audio_mode_t mode = adev->mode;
|
||||
audio_devices_t in_device = ((adev->active_input == NULL) ?
|
||||
AUDIO_DEVICE_NONE : adev->active_input->device)
|
||||
& ~AUDIO_DEVICE_BIT_IN;
|
||||
audio_channel_mask_t channel_mask = (adev->active_input == NULL) ?
|
||||
AUDIO_CHANNEL_IN_MONO : adev->active_input->channel_mask;
|
||||
snd_device_t snd_device = SND_DEVICE_NONE;
|
||||
|
||||
ALOGV("%s: enter: out_device(%#x) in_device(%#x)",
|
||||
__func__, out_device, in_device);
|
||||
if (mode == AUDIO_MODE_IN_CALL) {
|
||||
if (out_device == AUDIO_DEVICE_NONE) {
|
||||
ALOGE("%s: No output device set for voice call", __func__);
|
||||
goto exit;
|
||||
}
|
||||
if (adev->tty_mode != TTY_MODE_OFF) {
|
||||
if (out_device & AUDIO_DEVICE_OUT_WIRED_HEADPHONE ||
|
||||
out_device & AUDIO_DEVICE_OUT_WIRED_HEADSET) {
|
||||
switch (adev->tty_mode) {
|
||||
case TTY_MODE_FULL:
|
||||
snd_device = SND_DEVICE_IN_VOICE_TTY_FULL_HEADSET_MIC;
|
||||
break;
|
||||
case TTY_MODE_VCO:
|
||||
snd_device = SND_DEVICE_IN_VOICE_TTY_VCO_HANDSET_MIC;
|
||||
break;
|
||||
case TTY_MODE_HCO:
|
||||
snd_device = SND_DEVICE_IN_VOICE_TTY_HCO_HEADSET_MIC;
|
||||
break;
|
||||
default:
|
||||
ALOGE("%s: Invalid TTY mode (%#x)", __func__, adev->tty_mode);
|
||||
}
|
||||
goto exit;
|
||||
}
|
||||
}
|
||||
if (out_device & AUDIO_DEVICE_OUT_EARPIECE ||
|
||||
out_device & AUDIO_DEVICE_OUT_WIRED_HEADPHONE) {
|
||||
if (my_data->fluence_in_voice_call == false) {
|
||||
snd_device = SND_DEVICE_IN_HANDSET_MIC;
|
||||
} else {
|
||||
if (my_data->dualmic_config == DUALMIC_CONFIG_ENDFIRE) {
|
||||
if (is_operator_tmus())
|
||||
snd_device = SND_DEVICE_IN_VOICE_DMIC_EF_TMUS;
|
||||
else
|
||||
snd_device = SND_DEVICE_IN_VOICE_DMIC_EF;
|
||||
} else if(my_data->dualmic_config == DUALMIC_CONFIG_BROADSIDE)
|
||||
snd_device = SND_DEVICE_IN_VOICE_DMIC_BS;
|
||||
else
|
||||
snd_device = SND_DEVICE_IN_HANDSET_MIC;
|
||||
}
|
||||
} else if (out_device & AUDIO_DEVICE_OUT_WIRED_HEADSET) {
|
||||
snd_device = SND_DEVICE_IN_VOICE_HEADSET_MIC;
|
||||
} else if (out_device & AUDIO_DEVICE_OUT_ALL_SCO) {
|
||||
snd_device = SND_DEVICE_IN_BT_SCO_MIC ;
|
||||
} else if (out_device & AUDIO_DEVICE_OUT_SPEAKER) {
|
||||
if (my_data->fluence_in_voice_call && my_data->fluence_in_spkr_mode &&
|
||||
my_data->dualmic_config == DUALMIC_CONFIG_ENDFIRE) {
|
||||
snd_device = SND_DEVICE_IN_VOICE_SPEAKER_DMIC_EF;
|
||||
} else if (my_data->fluence_in_voice_call && my_data->fluence_in_spkr_mode &&
|
||||
my_data->dualmic_config == DUALMIC_CONFIG_BROADSIDE) {
|
||||
snd_device = SND_DEVICE_IN_VOICE_SPEAKER_DMIC_BS;
|
||||
} else {
|
||||
snd_device = SND_DEVICE_IN_VOICE_SPEAKER_MIC;
|
||||
}
|
||||
}
|
||||
} else if (source == AUDIO_SOURCE_CAMCORDER) {
|
||||
if (in_device & AUDIO_DEVICE_IN_BUILTIN_MIC ||
|
||||
in_device & AUDIO_DEVICE_IN_BACK_MIC) {
|
||||
snd_device = SND_DEVICE_IN_CAMCORDER_MIC;
|
||||
}
|
||||
} else if (source == AUDIO_SOURCE_VOICE_RECOGNITION) {
|
||||
if (in_device & AUDIO_DEVICE_IN_BUILTIN_MIC) {
|
||||
if (my_data->dualmic_config == DUALMIC_CONFIG_ENDFIRE) {
|
||||
if (channel_mask == AUDIO_CHANNEL_IN_FRONT_BACK)
|
||||
snd_device = SND_DEVICE_IN_VOICE_REC_DMIC_EF;
|
||||
else if (my_data->fluence_in_voice_rec)
|
||||
snd_device = SND_DEVICE_IN_VOICE_REC_DMIC_EF_FLUENCE;
|
||||
} else if (my_data->dualmic_config == DUALMIC_CONFIG_BROADSIDE) {
|
||||
if (channel_mask == AUDIO_CHANNEL_IN_FRONT_BACK)
|
||||
snd_device = SND_DEVICE_IN_VOICE_REC_DMIC_BS;
|
||||
else if (my_data->fluence_in_voice_rec)
|
||||
snd_device = SND_DEVICE_IN_VOICE_REC_DMIC_BS_FLUENCE;
|
||||
}
|
||||
|
||||
if (snd_device == SND_DEVICE_NONE) {
|
||||
snd_device = SND_DEVICE_IN_VOICE_REC_MIC;
|
||||
}
|
||||
}
|
||||
} else if (source == AUDIO_SOURCE_VOICE_COMMUNICATION) {
|
||||
if (out_device & AUDIO_DEVICE_OUT_SPEAKER)
|
||||
in_device = AUDIO_DEVICE_IN_BACK_MIC;
|
||||
if (adev->active_input) {
|
||||
if (adev->active_input->enable_aec) {
|
||||
if (in_device & AUDIO_DEVICE_IN_BACK_MIC) {
|
||||
snd_device = SND_DEVICE_IN_SPEAKER_MIC_AEC;
|
||||
} else if (in_device & AUDIO_DEVICE_IN_BUILTIN_MIC) {
|
||||
snd_device = SND_DEVICE_IN_HANDSET_MIC_AEC;
|
||||
} else if (in_device & AUDIO_DEVICE_IN_WIRED_HEADSET) {
|
||||
snd_device = SND_DEVICE_IN_HEADSET_MIC_AEC;
|
||||
}
|
||||
set_echo_reference(adev->mixer, "SLIM_RX");
|
||||
} else
|
||||
set_echo_reference(adev->mixer, "NONE");
|
||||
}
|
||||
} else if (source == AUDIO_SOURCE_DEFAULT) {
|
||||
goto exit;
|
||||
}
|
||||
|
||||
|
||||
if (snd_device != SND_DEVICE_NONE) {
|
||||
goto exit;
|
||||
}
|
||||
|
||||
if (in_device != AUDIO_DEVICE_NONE &&
|
||||
!(in_device & AUDIO_DEVICE_IN_VOICE_CALL) &&
|
||||
!(in_device & AUDIO_DEVICE_IN_COMMUNICATION)) {
|
||||
if (in_device & AUDIO_DEVICE_IN_BUILTIN_MIC) {
|
||||
snd_device = SND_DEVICE_IN_HANDSET_MIC;
|
||||
} else if (in_device & AUDIO_DEVICE_IN_BACK_MIC) {
|
||||
snd_device = SND_DEVICE_IN_SPEAKER_MIC;
|
||||
} else if (in_device & AUDIO_DEVICE_IN_WIRED_HEADSET) {
|
||||
snd_device = SND_DEVICE_IN_HEADSET_MIC;
|
||||
} else if (in_device & AUDIO_DEVICE_IN_BLUETOOTH_SCO_HEADSET) {
|
||||
snd_device = SND_DEVICE_IN_BT_SCO_MIC ;
|
||||
} else if (in_device & AUDIO_DEVICE_IN_AUX_DIGITAL) {
|
||||
snd_device = SND_DEVICE_IN_HDMI_MIC;
|
||||
} else {
|
||||
ALOGE("%s: Unknown input device(s) %#x", __func__, in_device);
|
||||
ALOGW("%s: Using default handset-mic", __func__);
|
||||
snd_device = SND_DEVICE_IN_HANDSET_MIC;
|
||||
}
|
||||
} else {
|
||||
if (out_device & AUDIO_DEVICE_OUT_EARPIECE) {
|
||||
snd_device = SND_DEVICE_IN_HANDSET_MIC;
|
||||
} else if (out_device & AUDIO_DEVICE_OUT_WIRED_HEADSET) {
|
||||
snd_device = SND_DEVICE_IN_HEADSET_MIC;
|
||||
} else if (out_device & AUDIO_DEVICE_OUT_SPEAKER) {
|
||||
snd_device = SND_DEVICE_IN_SPEAKER_MIC;
|
||||
} else if (out_device & AUDIO_DEVICE_OUT_WIRED_HEADPHONE) {
|
||||
snd_device = SND_DEVICE_IN_HANDSET_MIC;
|
||||
} else if (out_device & AUDIO_DEVICE_OUT_BLUETOOTH_SCO_HEADSET) {
|
||||
snd_device = SND_DEVICE_IN_BT_SCO_MIC;
|
||||
} else if (out_device & AUDIO_DEVICE_OUT_AUX_DIGITAL) {
|
||||
snd_device = SND_DEVICE_IN_HDMI_MIC;
|
||||
} else {
|
||||
ALOGE("%s: Unknown output device(s) %#x", __func__, out_device);
|
||||
ALOGW("%s: Using default handset-mic", __func__);
|
||||
snd_device = SND_DEVICE_IN_HANDSET_MIC;
|
||||
}
|
||||
}
|
||||
exit:
|
||||
ALOGV("%s: exit: in_snd_device(%s)", __func__, device_table[snd_device]);
|
||||
return snd_device;
|
||||
}
|
||||
|
||||
int platform_set_hdmi_channels(void *platform, int channel_count)
|
||||
{
|
||||
struct platform_data *my_data = (struct platform_data *)platform;
|
||||
struct audio_device *adev = my_data->adev;
|
||||
struct mixer_ctl *ctl;
|
||||
const char *channel_cnt_str = NULL;
|
||||
const char *mixer_ctl_name = "HDMI_RX Channels";
|
||||
switch (channel_count) {
|
||||
case 8:
|
||||
channel_cnt_str = "Eight"; break;
|
||||
case 7:
|
||||
channel_cnt_str = "Seven"; break;
|
||||
case 6:
|
||||
channel_cnt_str = "Six"; break;
|
||||
case 5:
|
||||
channel_cnt_str = "Five"; break;
|
||||
case 4:
|
||||
channel_cnt_str = "Four"; break;
|
||||
case 3:
|
||||
channel_cnt_str = "Three"; break;
|
||||
default:
|
||||
channel_cnt_str = "Two"; break;
|
||||
}
|
||||
ctl = mixer_get_ctl_by_name(adev->mixer, mixer_ctl_name);
|
||||
if (!ctl) {
|
||||
ALOGE("%s: Could not get ctl for mixer cmd - %s",
|
||||
__func__, mixer_ctl_name);
|
||||
return -EINVAL;
|
||||
}
|
||||
ALOGV("HDMI channel count: %s", channel_cnt_str);
|
||||
mixer_ctl_set_enum_by_string(ctl, channel_cnt_str);
|
||||
return 0;
|
||||
}
|
||||
|
||||
int platform_edid_get_max_channels(void)
|
||||
{
|
||||
FILE *file;
|
||||
struct audio_block_header header;
|
||||
char block[MAX_SAD_BLOCKS * SAD_BLOCK_SIZE];
|
||||
char *sad = block;
|
||||
int num_audio_blocks;
|
||||
int channel_count;
|
||||
int max_channels = 0;
|
||||
int i;
|
||||
|
||||
file = fopen(AUDIO_DATA_BLOCK_PATH, "rb");
|
||||
if (file == NULL) {
|
||||
ALOGE("Unable to open '%s'", AUDIO_DATA_BLOCK_PATH);
|
||||
return 0;
|
||||
}
|
||||
|
||||
/* Read audio block header */
|
||||
fread(&header, 1, sizeof(header), file);
|
||||
|
||||
/* Read SAD blocks, clamping the maximum size for safety */
|
||||
if (header.length > (int)sizeof(block))
|
||||
header.length = (int)sizeof(block);
|
||||
fread(&block, header.length, 1, file);
|
||||
|
||||
fclose(file);
|
||||
|
||||
/* Calculate the number of SAD blocks */
|
||||
num_audio_blocks = header.length / SAD_BLOCK_SIZE;
|
||||
|
||||
for (i = 0; i < num_audio_blocks; i++) {
|
||||
/* Only consider LPCM blocks */
|
||||
if ((sad[0] >> 3) != EDID_FORMAT_LPCM)
|
||||
continue;
|
||||
|
||||
channel_count = (sad[0] & 0x7) + 1;
|
||||
if (channel_count > max_channels)
|
||||
max_channels = channel_count;
|
||||
|
||||
/* Advance to next block */
|
||||
sad += 3;
|
||||
}
|
||||
|
||||
return max_channels;
|
||||
}
|
|
@ -0,0 +1,118 @@
|
|||
/*
|
||||
* Copyright (C) 2013 The Android Open Source Project
|
||||
*
|
||||
* Licensed under the Apache License, Version 2.0 (the "License");
|
||||
* you may not use this file except in compliance with the License.
|
||||
* You may obtain a copy of the License at
|
||||
*
|
||||
* http://www.apache.org/licenses/LICENSE-2.0
|
||||
*
|
||||
* Unless required by applicable law or agreed to in writing, software
|
||||
* distributed under the License is distributed on an "AS IS" BASIS,
|
||||
* WITHOUT WARRANTIES OR CONDITIONS OF ANY KIND, either express or implied.
|
||||
* See the License for the specific language governing permissions and
|
||||
* limitations under the License.
|
||||
*/
|
||||
|
||||
#ifndef QCOM_AUDIO_PLATFORM_H
|
||||
#define QCOM_AUDIO_PLATFORM_H
|
||||
|
||||
/*
|
||||
* Below are the devices for which is back end is same, SLIMBUS_0_RX.
|
||||
* All these devices are handled by the internal HW codec. We can
|
||||
* enable any one of these devices at any time
|
||||
*/
|
||||
#define AUDIO_DEVICE_OUT_ALL_CODEC_BACKEND \
|
||||
(AUDIO_DEVICE_OUT_EARPIECE | AUDIO_DEVICE_OUT_SPEAKER | \
|
||||
AUDIO_DEVICE_OUT_WIRED_HEADSET | AUDIO_DEVICE_OUT_WIRED_HEADPHONE)
|
||||
|
||||
/* Sound devices specific to the platform
|
||||
* The DEVICE_OUT_* and DEVICE_IN_* should be mapped to these sound
|
||||
* devices to enable corresponding mixer paths
|
||||
*/
|
||||
enum {
|
||||
SND_DEVICE_NONE = 0,
|
||||
|
||||
/* Playback devices */
|
||||
SND_DEVICE_MIN,
|
||||
SND_DEVICE_OUT_BEGIN = SND_DEVICE_MIN,
|
||||
SND_DEVICE_OUT_HANDSET = SND_DEVICE_OUT_BEGIN,
|
||||
SND_DEVICE_OUT_SPEAKER,
|
||||
SND_DEVICE_OUT_SPEAKER_REVERSE,
|
||||
SND_DEVICE_OUT_HEADPHONES,
|
||||
SND_DEVICE_OUT_SPEAKER_AND_HEADPHONES,
|
||||
SND_DEVICE_OUT_VOICE_HANDSET,
|
||||
SND_DEVICE_OUT_VOICE_SPEAKER,
|
||||
SND_DEVICE_OUT_VOICE_HEADPHONES,
|
||||
SND_DEVICE_OUT_HDMI,
|
||||
SND_DEVICE_OUT_SPEAKER_AND_HDMI,
|
||||
SND_DEVICE_OUT_BT_SCO,
|
||||
SND_DEVICE_OUT_VOICE_HANDSET_TMUS,
|
||||
SND_DEVICE_OUT_VOICE_TTY_FULL_HEADPHONES,
|
||||
SND_DEVICE_OUT_VOICE_TTY_VCO_HEADPHONES,
|
||||
SND_DEVICE_OUT_VOICE_TTY_HCO_HANDSET,
|
||||
SND_DEVICE_OUT_END,
|
||||
|
||||
/*
|
||||
* Note: IN_BEGIN should be same as OUT_END because total number of devices
|
||||
* SND_DEVICES_MAX should not exceed MAX_RX + MAX_TX devices.
|
||||
*/
|
||||
/* Capture devices */
|
||||
SND_DEVICE_IN_BEGIN = SND_DEVICE_OUT_END,
|
||||
SND_DEVICE_IN_HANDSET_MIC = SND_DEVICE_IN_BEGIN,
|
||||
SND_DEVICE_IN_SPEAKER_MIC,
|
||||
SND_DEVICE_IN_HEADSET_MIC,
|
||||
SND_DEVICE_IN_HANDSET_MIC_AEC,
|
||||
SND_DEVICE_IN_SPEAKER_MIC_AEC,
|
||||
SND_DEVICE_IN_HEADSET_MIC_AEC,
|
||||
SND_DEVICE_IN_VOICE_SPEAKER_MIC,
|
||||
SND_DEVICE_IN_VOICE_HEADSET_MIC,
|
||||
SND_DEVICE_IN_HDMI_MIC,
|
||||
SND_DEVICE_IN_BT_SCO_MIC,
|
||||
SND_DEVICE_IN_CAMCORDER_MIC,
|
||||
SND_DEVICE_IN_VOICE_DMIC_EF,
|
||||
SND_DEVICE_IN_VOICE_DMIC_BS,
|
||||
SND_DEVICE_IN_VOICE_DMIC_EF_TMUS,
|
||||
SND_DEVICE_IN_VOICE_SPEAKER_DMIC_EF,
|
||||
SND_DEVICE_IN_VOICE_SPEAKER_DMIC_BS,
|
||||
SND_DEVICE_IN_VOICE_TTY_FULL_HEADSET_MIC,
|
||||
SND_DEVICE_IN_VOICE_TTY_VCO_HANDSET_MIC,
|
||||
SND_DEVICE_IN_VOICE_TTY_HCO_HEADSET_MIC,
|
||||
SND_DEVICE_IN_VOICE_REC_MIC,
|
||||
SND_DEVICE_IN_VOICE_REC_DMIC_EF,
|
||||
SND_DEVICE_IN_VOICE_REC_DMIC_BS,
|
||||
SND_DEVICE_IN_VOICE_REC_DMIC_EF_FLUENCE,
|
||||
SND_DEVICE_IN_VOICE_REC_DMIC_BS_FLUENCE,
|
||||
SND_DEVICE_IN_END,
|
||||
|
||||
SND_DEVICE_MAX = SND_DEVICE_IN_END,
|
||||
|
||||
};
|
||||
|
||||
#define MIXER_CARD 0
|
||||
#define SOUND_CARD 0
|
||||
|
||||
#define DEFAULT_OUTPUT_SAMPLING_RATE 48000
|
||||
|
||||
/*
|
||||
* tinyAlsa library interprets period size as number of frames
|
||||
* one frame = channel_count * sizeof (pcm sample)
|
||||
* so if format = 16-bit PCM and channels = Stereo, frame size = 2 ch * 2 = 4 bytes
|
||||
* DEEP_BUFFER_OUTPUT_PERIOD_SIZE = 1024 means 1024 * 4 = 4096 bytes
|
||||
* We should take care of returning proper size when AudioFlinger queries for
|
||||
* the buffer size of an input/output stream
|
||||
*/
|
||||
#define DEEP_BUFFER_OUTPUT_PERIOD_SIZE 1024
|
||||
#define DEEP_BUFFER_OUTPUT_PERIOD_COUNT 8
|
||||
#define LOW_LATENCY_OUTPUT_PERIOD_SIZE 256
|
||||
#define LOW_LATENCY_OUTPUT_PERIOD_COUNT 2
|
||||
|
||||
#define HDMI_MULTI_PERIOD_SIZE 336
|
||||
#define HDMI_MULTI_PERIOD_COUNT 8
|
||||
#define HDMI_MULTI_DEFAULT_CHANNEL_COUNT 6
|
||||
#define HDMI_MULTI_PERIOD_BYTES (HDMI_MULTI_PERIOD_SIZE * HDMI_MULTI_DEFAULT_CHANNEL_COUNT * 2)
|
||||
|
||||
#define AUDIO_CAPTURE_PERIOD_SIZE 512
|
||||
#define AUDIO_CAPTURE_PERIOD_COUNT 16
|
||||
|
||||
#endif // QCOM_AUDIO_PLATFORM_H
|
Loading…
Reference in New Issue