project:cfg:BoardConfig_IPC: Added fastboot BoardConfig file and firmware post-scripts, distinguishing between the BoardConfigs for Luckfox Pico Pro and Luckfox Pico Max. project:app: Added fastboot_client and rk_smart_door for quick boot applications; updated rkipc app to adapt to the latest media library. media:samples: Added more usage examples. media:rockit: Fixed bugs; removed support for retrieving data frames from VPSS. media:isp: Updated rkaiq library and related tools to support connection to RKISP_Tuner. sysdrv:Makefile: Added support for compiling drv_ko on Luckfox Pico Ultra W using Ubuntu; added support for custom root filesystem. sysdrv:tools:board: Updated Buildroot optional mirror sources, updated some software versions, and stored device tree files and configuration files that undergo multiple modifications for U-Boot and kernel separately. sysdrv:source:mcu: Used RISC-V MCU SDK with RT-Thread system, mainly for initializing camera AE during quick boot. sysdrv:source:uboot: Added support for fastboot; added high baud rate DDR bin for serial firmware upgrades. sysdrv:source:kernel: Upgraded to version 5.10.160; increased NPU frequency for RV1106G3; added support for fastboot. Signed-off-by: luckfox-eng29 <eng29@luckfox.com>
233 lines
5.4 KiB
C
233 lines
5.4 KiB
C
/**
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* Copyright (c) 2022 Rockchip Electronics Co., Ltd
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#include "aupipe.h"
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#ifdef RT_USING_AUPIPE_AUDIOSINK
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#include "drv_heap.h"
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#include "rk_audio.h"
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#undef DBG_SECTION_NAME
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#define DBG_SECTION_NAME "AUDIOSINK"
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#define AUDIOSINK(obj) ((ApAudioSink *)(obj))
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typedef struct audiosink_object
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{
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ApObject base;
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ApPad *sink_pad;
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int channels;
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char *card_name;
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char *buffer;
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rt_thread_t loop;
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struct rt_device *card;
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struct AUDIO_PARAMS param;
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struct audio_buf abuf;
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uint32_t bit_width;
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uint32_t sink_map;
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uint32_t default_map;
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} ApAudioSink;
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static int audiosink_process(ApPad *pad, ApBuffer *buffer);
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static int audiosink_init(ApObject *obj, void *arg)
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{
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ApAudioSink *audsink = AUDIOSINK(obj);
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int status = RT_EOK;
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Aupipe *aupipe = obj->parent;
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char *parameters = (char *)arg;
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status |= aupipe_find_property(parameters, "card",
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VALUE_TYPE_STRING, &audsink->card_name);
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status |= aupipe_find_property(parameters, "channels",
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VALUE_TYPE_INT, &audsink->channels);
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if (status != RT_EOK)
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{
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LOG_E("%s plug-in parameter initialization failed", audsink->base.name);
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return -RT_ERROR;
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}
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audsink->bit_width = aupipe->bits >> 3;
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audsink->sink_map = (1 << audsink->channels) - 1;
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audsink->buffer = rt_malloc(aupipe->period_size * audsink->channels * audsink->bit_width);
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audsink->sink_pad = aupipe_pad_new(obj, audsink->channels);
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RT_ASSERT(audsink->sink_pad != NULL);
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for (int i = 0; i < audsink->channels; i++)
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{
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audsink->sink_pad[i].process = audiosink_process;
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}
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return RT_EOK;
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}
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static int audiosink_deinit(ApObject *obj)
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{
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ApAudioSink *audsink = AUDIOSINK(obj);
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rt_free(audsink->buffer);
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rt_free(audsink->sink_pad);
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rt_free(audsink->card_name);
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return RT_EOK;
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}
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static int audiosink_process(ApPad *pad, ApBuffer *buffer)
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{
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ApAudioSink *obj = AUDIOSINK(pad->parent);
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int ret = RT_EOK;
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short *out = (short *)obj->buffer;
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if (buffer->type != DATA_TYPE_AUDIO)
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{
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aupipe_buffer_unref(buffer);
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return -RT_ERROR;
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}
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for (int i = 0; i < obj->abuf.period_size; i++)
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{
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rt_memcpy(obj->buffer + (obj->param.channels * i + pad->id) * obj->bit_width,
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buffer->data + obj->bit_width * i, obj->bit_width);
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}
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aupipe_buffer_unref(buffer);
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obj->sink_map = obj->sink_map & (~(1 << pad->id));
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if (obj->sink_map != 0)
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{
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return ret;
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}
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obj->sink_map = (1 << obj->channels) - 1;
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if (!rt_device_write(obj->card, 0, out, obj->abuf.period_size))
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{
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rt_kprintf("Error playing sample\n");
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ret = -RT_ERROR;
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}
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return ret;
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}
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static int audiosink_open_card(ApAudioSink *obj)
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{
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int size;
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rt_err_t ret;
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int period_count = 4;
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Aupipe *aupipe = obj->base.parent;
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struct audio_buf *abuf = &obj->abuf;
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struct AUDIO_PARAMS *param = &obj->param;
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obj->card = rt_device_find(obj->card_name);
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if (!obj->card)
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{
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LOG_E("Can't find sound device: %s\n", obj->card_name);
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goto no_card;
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}
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ret = rt_device_open(obj->card, RT_DEVICE_OFLAG_WRONLY);
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if (ret < 0)
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{
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LOG_E("Failed to open %s, err: %d\n", obj->card->parent.name, ret);
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goto open_failed;
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}
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abuf->period_size = aupipe->period_size;
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abuf->buf_size = aupipe->period_size * period_count;
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size = abuf->buf_size * obj->channels * (aupipe->bits >> 3); /* frames to bytes */
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abuf->buf = rt_malloc_uncache(size);
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if (!abuf->buf)
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{
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LOG_E("Buffer alloc failed!\n");
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goto malloc_failed;
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}
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param->channels = obj->channels;
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param->sampleRate = aupipe->rate;
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param->sampleBits = aupipe->bits;
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ret = rt_device_control(obj->card, RK_AUDIO_CTL_PCM_PREPARE, abuf);
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RT_ASSERT(ret == RT_EOK);
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ret = rt_device_control(obj->card, RK_AUDIO_CTL_HW_PARAMS, param);
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RT_ASSERT(ret == RT_EOK);
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return RT_EOK;
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malloc_failed:
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rt_device_close(obj->card);
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open_failed:
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no_card:
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return -RT_ERROR;
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}
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static int audiosink_close_card(ApAudioSink *obj)
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{
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struct audio_buf *abuf = &obj->abuf;
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rt_err_t ret;
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ret = rt_device_control(obj->card, RK_AUDIO_CTL_STOP, NULL);
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RT_ASSERT(ret == RT_EOK);
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ret = rt_device_control(obj->card, RK_AUDIO_CTL_PCM_RELEASE, NULL);
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RT_ASSERT(ret == RT_EOK);
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rt_free_uncache(abuf->buf);
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rt_device_close(obj->card);
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return RT_EOK;
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}
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static int audiosink_set_state(ApObject *obj, int state)
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{
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ApAudioSink *audsink = AUDIOSINK(obj);
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switch (state)
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{
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case STATE_NULL_TO_READY:
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LOG_I("STATE_NULL_TO_READY");
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if (audiosink_open_card(audsink) != RT_EOK)
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return -RT_ERROR;
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break;
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case STATE_READY_TO_NULL:
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LOG_I("STATE_READY_TO_NULL");
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audiosink_close_card(audsink);
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break;
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default:
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break;
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}
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return RT_EOK;
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}
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static int audiosink_set_property(ApObject *obj, char *name, void *arg)
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{
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return RT_EOK;
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}
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static int audiosink_get_property(ApObject *obj, char *name, void *arg)
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{
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return RT_EOK;
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}
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static ApPad *audiosink_get_pad(ApObject *obj, int type, int id)
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{
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ApAudioSink *audsink = AUDIOSINK(obj);
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if (type == PAD_TYPE_SRC)
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return NULL;
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return &audsink->sink_pad[id];
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}
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OBJECT_BASE_DEFINE(audiosink, ApAudioSink);
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#endif
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