Files
luban-lite-t3e-pro/bsp/artinchip/drv/audio/drv_amic.c
刘可亮 0ef85b55da v1.1.0
2024-09-30 17:06:01 +08:00

369 lines
8.5 KiB
C

/*
* Copyright (c) 2022-2024, ArtInChip Technology Co., Ltd
*
* SPDX-License-Identifier: Apache-2.0
*
* Authors: dwj <weijie.ding@artinchip.com>
*/
#include <stdio.h>
#include <rtdevice.h>
#include <rtthread.h>
#include <aic_core.h>
#include <aic_drv.h>
#include <string.h>
#include <aic_osal.h>
#include <getopt.h>
#include "hal_audio.h"
#define RX_AMIC_FIFO_SIZE (RT_AUDIO_RECORD_PIPE_SIZE * 2)
static rt_uint8_t amic_rx_fifo[RX_AMIC_FIFO_SIZE] __attribute__((aligned(64)));
struct aic_amic
{
struct rt_audio_device audio;
aic_audio_ctrl codec;
rt_uint8_t volume;
uint8_t index;
};
static struct aic_amic amic_dev;
static void drv_amic_callback(aic_audio_ctrl *pcodec, void *arg);
rt_err_t drv_amic_init(struct rt_audio_device *audio)
{
struct aic_amic *p_amic_dev;
aic_audio_ctrl *pcodec;
p_amic_dev = (struct aic_amic *)audio;
pcodec = &p_amic_dev->codec;
pcodec->amic_info.buf_info.buf = (void *)amic_rx_fifo;
pcodec->amic_info.buf_info.buf_len = RX_AMIC_FIFO_SIZE;
pcodec->amic_info.buf_info.period_len = RX_AMIC_FIFO_SIZE / 2;
hal_audio_attach_callback(pcodec, drv_amic_callback, NULL);
return RT_EOK;
}
rt_err_t drv_amic_start(struct rt_audio_device *audio, int stream)
{
struct aic_amic *p_amic_dev;
aic_audio_ctrl *pcodec;
p_amic_dev = (struct aic_amic *)audio;
pcodec = &p_amic_dev->codec;
if (stream == AUDIO_STREAM_RECORD)
{
/* 0db to amic record is too small,so default set 45db,
* this default value can be change according to the hardware circuit
*/
hal_audio_set_amic_volume(pcodec, AIC_AMIC_DEF_VAL);
}
else
{
hal_log_err("stream error\n");
return -RT_EINVAL;
}
return RT_EOK;
}
rt_err_t drv_amic_stop(struct rt_audio_device *audio, int stream)
{
struct aic_amic *p_amic_dev;
aic_audio_ctrl *pcodec;
p_amic_dev = (struct aic_amic *)audio;
pcodec = &p_amic_dev->codec;
if (stream == AUDIO_STREAM_RECORD)
{
hal_audio_amic_stop(pcodec);
}
else
{
hal_log_err("stream error\n");
return -RT_EINVAL;
}
return RT_EOK;
}
rt_err_t drv_amic_configure(struct rt_audio_device *audio,
struct rt_audio_caps *caps)
{
rt_err_t ret = RT_EOK;
struct aic_amic *p_amic_dev;
aic_audio_ctrl *pcodec;
rt_uint32_t volume, reg_volume;
p_amic_dev = (struct aic_amic *)audio;
pcodec = &p_amic_dev->codec;
switch (caps->main_type)
{
case AUDIO_TYPE_MIXER:
{
switch (caps->sub_type)
{
case AUDIO_MIXER_VOLUME:
volume = caps->udata.value;
/*
* Set max user volume to 0db
*/
reg_volume = volume * MAX_VOLUME_0DB / 100;
hal_audio_set_amic_volume(pcodec, reg_volume);
p_amic_dev->volume = volume;
break;
default:
ret = -RT_ERROR;
break;
}
break;
}
case AUDIO_TYPE_INPUT:
{
switch (caps->sub_type)
{
case AUDIO_DSP_PARAM:
/* AudioCodec only support 16 bits, amic only support mono */
hal_audio_set_amic_channel(pcodec);
hal_audio_set_samplerate(pcodec, caps->udata.config.samplerate);
pcodec->config.samplerate = caps->udata.config.samplerate;
pcodec->config.channel = 1;
pcodec->config.samplebits = 16;
LOG_D("set samplerate %d, channel: %d\n",
caps->udata.config.samplerate, caps->udata.config.channels);
break;
case AUDIO_DSP_SAMPLERATE:
hal_audio_set_samplerate(pcodec, caps->udata.config.samplerate);
pcodec->config.samplerate = caps->udata.config.samplerate;
LOG_D("set samplerate %d\n", caps->udata.config.samplerate);
break;
case AUDIO_DSP_CHANNELS:
hal_audio_set_amic_channel(pcodec);
pcodec->config.channel = caps->udata.config.channels;
LOG_D("set channel: %d\n", caps->udata.config.channels);
break;
case AUDIO_DSP_SAMPLEBITS:
LOG_D("AudioCodec only support 16 sample bits\n");
break;
default:
ret = -RT_ERROR;
}
hal_audio_amic_start(pcodec);
break;
}
default:
break;
}
return ret;
}
static rt_err_t drv_amic_getcaps(struct rt_audio_device *audio,
struct rt_audio_caps *caps)
{
rt_err_t ret = RT_EOK;
struct aic_amic *p_amic_dev;
aic_audio_ctrl *pcodec;
p_amic_dev = (struct aic_amic *)audio;
pcodec = &p_amic_dev->codec;
switch (caps->main_type)
{
case AUDIO_TYPE_QUERY:
{
switch (caps->sub_type)
{
case AUDIO_TYPE_QUERY:
caps->udata.mask = AUDIO_TYPE_INPUT | AUDIO_TYPE_MIXER;
break;
default:
ret = -RT_ERROR;
break;
}
break;
}
case AUDIO_TYPE_INPUT:
{
switch (caps->sub_type)
{
case AUDIO_DSP_PARAM:
caps->udata.config.samplerate = pcodec->config.samplerate;
caps->udata.config.channels = 1;
caps->udata.config.samplebits = 16;
break;
case AUDIO_DSP_SAMPLERATE:
caps->udata.config.samplerate = pcodec->config.samplerate;
break;
case AUDIO_DSP_CHANNELS:
caps->udata.config.channels = 1;
break;
case AUDIO_DSP_SAMPLEBITS:
caps->udata.config.samplebits = 16;
break;
default:
ret = -RT_ERROR;
break;
}
break;
}
case AUDIO_TYPE_MIXER:
{
switch (caps->sub_type)
{
case AUDIO_MIXER_QUERY:
caps->udata.mask = AUDIO_MIXER_VOLUME;
break;
case AUDIO_MIXER_VOLUME:
caps->udata.value = p_amic_dev->volume;
break;
default:
ret = -RT_ERROR;
break;
}
break;
}
default:
ret = -RT_ERROR;
break;
}
return ret;
}
static void drv_amic_callback(aic_audio_ctrl *pcodec, void *arg)
{
unsigned long event = (unsigned long)arg;
struct aic_amic *p_amic_dev;
struct rt_audio_device *audio;
uint32_t period_len = 0;
p_amic_dev = rt_container_of(pcodec, struct aic_amic, codec);
audio = (struct rt_audio_device *)p_amic_dev;
switch (event)
{
case AUDIO_RX_AMIC_PERIOD_INT:
aicos_dcache_invalid_range((void *)amic_rx_fifo, RX_AMIC_FIFO_SIZE);
period_len = pcodec->amic_info.buf_info.period_len;
if (!p_amic_dev->index) {
rt_audio_rx_done(audio, &amic_rx_fifo[0], period_len);
p_amic_dev->index = 1;
} else {
rt_audio_rx_done(audio, &amic_rx_fifo[period_len], period_len);
p_amic_dev->index = 0;
}
break;
default:
hal_log_err("not support event\n");
break;
}
}
struct rt_audio_ops aic_amic_ops =
{
.getcaps = drv_amic_getcaps,
.configure = drv_amic_configure,
.init = drv_amic_init,
.start = drv_amic_start,
.stop = drv_amic_stop,
.transmit = NULL,
.buffer_info = NULL,
};
#ifdef RT_USING_PM
static int aic_amic_suspend(const struct rt_device *device, rt_uint8_t mode)
{
switch (mode)
{
case PM_SLEEP_MODE_IDLE:
break;
case PM_SLEEP_MODE_LIGHT:
case PM_SLEEP_MODE_DEEP:
case PM_SLEEP_MODE_STANDBY:
if (hal_clk_is_enabled(CLK_CODEC))
hal_clk_disable(CLK_CODEC);
break;
default:
break;
}
return 0;
}
static void aic_amic_resume(const struct rt_device *device, rt_uint8_t mode)
{
switch (mode)
{
case PM_SLEEP_MODE_IDLE:
break;
case PM_SLEEP_MODE_LIGHT:
case PM_SLEEP_MODE_DEEP:
case PM_SLEEP_MODE_STANDBY:
if (!hal_clk_is_enabled(CLK_CODEC))
hal_clk_enable(CLK_CODEC);
break;
default:
break;
}
}
static struct rt_device_pm_ops aic_amic_pm_ops =
{
SET_DEVICE_PM_OPS(aic_amic_suspend, aic_amic_resume)
NULL,
};
#endif
int rt_hw_amic_init(void)
{
rt_err_t ret = RT_EOK;
hal_audio_init(&amic_dev.codec);
amic_dev.audio.ops = &aic_amic_ops;
ret = rt_audio_register(&amic_dev.audio, "amic0",
RT_DEVICE_FLAG_RDONLY, &amic_dev);
#ifdef RT_USING_PM
rt_pm_device_register(&amic_dev.audio.parent, &aic_amic_pm_ops);
#endif
return ret;
}
INIT_DEVICE_EXPORT(rt_hw_amic_init);