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<div class=" wh_topic_content body "><main role="main"><article class="- topic/topic concept/concept topic concept" role="article" aria-labelledby="ariaid-title1"><span class="edit-link" style="font-size:12px; opacity:0.6; text-align:right; vertical-align:middle"><a target="_blank" href="http://172.16.35.88/tasks/jdssno1uvvbf2mltu9kb9v3if05d5gopuakboe8hlud18rma/edit/F:/aicdita/aicdita-cn/topics/sdk/i2s/i2s_key_procedure.dita">Edit online</a></span><h1 class="- topic/title title topictitle1" id="ariaid-title1">关键流程设计</h1><div class="date inPage">2 Dec 2024</div><div style="color: gray;">
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Read time: 4 minute(s)
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</div><div class="- topic/body concept/conbody body conbody"><section class="- topic/section section" id="i2s_key_procedures__section_nh2_5g3_d1c" data-ofbid="i2s_key_procedures__section_nh2_5g3_d1c"><h2 class="- topic/title title sectiontitle">操作函数集实现</h2>
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<p class="- topic/p p" data-ofbid="d303369e27__20250121171808">在 S 的驱动设计中,snd_soc_dai_ops 是一个非常重要的结构体,它是 dai 的操作函数集,所有对 S 接口的设置都是通过此结构体完成。所以,I2S 驱动中一项非常重要的部分就是实现此结构体中的函数接口。snd_soc_dai_ops 函数集可以分为如下几个部分:</p>
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<ol class="- topic/ol ol" id="i2s_key_procedures__ol_oh2_5g3_d1c" data-ofbid="i2s_key_procedures__ol_oh2_5g3_d1c"><li class="- topic/li li" data-ofbid="d303369e31__20250121171808">
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<p class="- topic/p p" data-ofbid="d303369e33__20250121171808">cpu_dai 时钟配置函数,通常由 machine 驱动调用</p>
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<ul class="- topic/ul ul" id="i2s_key_procedures__ul_ph2_5g3_d1c" data-ofbid="i2s_key_procedures__ul_ph2_5g3_d1c"><li class="- topic/li li" data-ofbid="d303369e37__20250121171808">
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<p class="- topic/p p" data-ofbid="d303369e39__20250121171808">set_sysclk:设置 dai 的主时钟 MCLK</p>
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</li><li class="- topic/li li" data-ofbid="d303369e42__20250121171808">
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<p class="- topic/p p" data-ofbid="d303369e44__20250121171808">set_clkdiv:设置分频系数,用于实现 BCLK 和 LRCK 的分频系数</p>
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</li><li class="- topic/li li" data-ofbid="d303369e47__20250121171808">
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<p class="- topic/p p" data-ofbid="d303369e49__20250121171808">set_bclk_ratio:设置 BCLK 和 LRCK 的比率</p>
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</li></ul>
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</li><li class="- topic/li li" data-ofbid="d303369e53__20250121171808">
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<p class="- topic/p p" data-ofbid="d303369e55__20250121171808">cpu_dai 格式设置,通常由 machine 驱动调用</p>
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<ul class="- topic/ul ul" id="i2s_key_procedures__ul_qh2_5g3_d1c" data-ofbid="i2s_key_procedures__ul_qh2_5g3_d1c"><li class="- topic/li li" data-ofbid="d303369e59__20250121171808">
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<p class="- topic/p p" data-ofbid="d303369e61__20250121171808">set_fmt:设置主从模式(LRCK 和 BCLK 时钟由 SOC 提供还是由 codec 提供),BCLK 和 LRCK 的极性,以及传输模式</p>
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</li><li class="- topic/li li" data-ofbid="d303369e64__20250121171808">
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<p class="- topic/p p" data-ofbid="d303369e66__20250121171808">set_tdm_slot:cpu_dai 支持时分复用时,用于设置时分复用的 slot</p>
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</li><li class="- topic/li li" data-ofbid="d303369e69__20250121171808">
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<p class="- topic/p p" data-ofbid="d303369e71__20250121171808">set_channel_map:声道时分复用时的映射关系设置</p>
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</li></ul>
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</li><li class="- topic/li li" data-ofbid="d303369e75__20250121171808">
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<p class="- topic/p p" data-ofbid="d303369e77__20250121171808">ALSA PCM 音频操作,由 ALSA 的 soc-core 在执行音频操作时调用</p>
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<ul class="- topic/ul ul" id="i2s_key_procedures__ul_rh2_5g3_d1c" data-ofbid="i2s_key_procedures__ul_rh2_5g3_d1c"><li class="- topic/li li" data-ofbid="d303369e81__20250121171808">
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<p class="- topic/p p" data-ofbid="d303369e83__20250121171808">hw_params:硬件参数设置,一般用于采样精度,通道位宽的设置</p>
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</li><li class="- topic/li li" data-ofbid="d303369e86__20250121171808">
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<p class="- topic/p p" data-ofbid="d303369e88__20250121171808">trigger:命令触发函数,用于执行音频数据传输的开始、结束、暂停、恢复等</p>
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</li></ul>
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</li></ol>
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<div class="- topic/p p" data-ofbid="d303369e93__20250121171808">在 S 的驱动中,需要实现的接口有:<pre class="+ topic/pre pr-d/codeblock pre codeblock language-c" id="i2s_key_procedures__codeblock_kzc_wg3_d1c" data-ofbid="i2s_key_procedures__codeblock_kzc_wg3_d1c"><strong class="hl-keyword">static</strong> <strong class="hl-keyword">const</strong> <strong class="hl-keyword">struct</strong> snd_soc_dai_ops aic_i2s_dai_ops = {
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.set_sysclk = aic_i2s_set_sysclk,
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.set_bclk_ratio = aic_i2s_set_bclk_ratio,
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.set_fmt = aic_i2s_set_fmt,
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.set_tdm_slot = aic_i2s_set_tdm_slot,
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.hw_params = aic_i2s_hw_params,
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.trigger = aic_i2s_trigger,
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};</pre></div>
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<p class="- topic/p p" data-ofbid="d303369e98__20250121171808">在实现的几个接口函数中,除 params 和 trigger 外,其它函数是需要在 machine 驱动中根据 I2S 和 codec 双方所支持的格式、时钟等进行调用设置的,使 S 和 codec 两边的格式设置相同。</p>
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</section><section class="- topic/section section" id="i2s_key_procedures__section_th2_5g3_d1c" data-ofbid="i2s_key_procedures__section_th2_5g3_d1c"><h2 class="- topic/title title sectiontitle">I2S 时钟设置</h2>
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<div class="- topic/p p" data-ofbid="d303369e106__20250121171808">
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<ol class="- topic/ol ol" id="i2s_key_procedures__ol_v4j_xg3_d1c" data-ofbid="i2s_key_procedures__ol_v4j_xg3_d1c"><li class="- topic/li li" data-ofbid="d303369e109__20250121171808"> MCLK
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主时钟设置。<p class="- topic/p p" data-ofbid="d303369e111__20250121171808">MCLK 是 S 的主时钟,主要作用是向外部的 codec 芯片提供工作时钟,由 S 模块的工作时钟分频得到。在驱动中由 sysclk 设置 MCLK 的频率,MCLK 一般采用 128fs,256fs,512fs 的表示方式,具体的设置需要参考实际使用的 codec 芯片规格书。Fs 是采样频率,常见的采样频率有 44.1khz,48khz,32khz 等,可以据此算出 MCLK 的频率值。一般会在 machine 驱动中调用设置 MCLK 的函数。</p></li><li class="- topic/li li" data-ofbid="d303369e113__20250121171808">LRCK 和 BCLK
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左右声道时钟设置。<p class="- topic/p p" data-ofbid="d303369e115__20250121171808">LRCK 是左右声道时钟。LRCK 的时钟频率等于 fs,在 D211 中,通过 PERIOD 位域设置 LRCK 的频率,LRCK_PERIOD 表示一个 LRCK 时钟周期内,有多少个 BCLK 周期。在 S 模式下,若为立体声(2 通道),32bit 采样深度,则 BCLK=64fs,则 PERIOD 应设置为(64/2-1)。若为 4 通道,24bit 采样深度,则 BCLK=96fs,则 PERIOD 应设置为(96/2-1)。由采样频率可以算出 BCLK 时钟的频率。并由 BCLK 的频率算出 LRCK,即采样率。</p></li><li class="- topic/li li" data-ofbid="d303369e117__20250121171808">period
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bytes 对齐<div class="- topic/p p" data-ofbid="d303369e119__20250121171808">在使用 DMA 传输音频数据时,DMA 要求每次传输的数据长度必须 128bytes/8bytes 对齐。在 ALSA 框架下,音频数据以 period 为周期调用 DMA 传输,每次传输的数据长度为 bytes。所以,必须满足 bytes 按照 128bytes/8bytes 对齐。ALSA 中提供了相应的 API 接口(snd_pcm_hw_constraint_step)来满足这一需求。<pre class="+ topic/pre pr-d/codeblock pre codeblock language-c" id="i2s_key_procedures__codeblock_qd3_1h3_d1c" data-ofbid="i2s_key_procedures__codeblock_qd3_1h3_d1c"><strong class="hl-keyword">static</strong> <strong class="hl-keyword">int</strong> aic_i2s_startup(<strong class="hl-keyword">struct</strong> snd_pcm_substream *substream,
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<strong class="hl-keyword">struct</strong> snd_soc_dai *dai)
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{
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<strong class="hl-keyword">int</strong> ret;
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<em class="hl-comment">/* Make sure that the period bytes are 8/128 bytes aligned according to
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* the DMA transfer requested.
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*/</em>
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<strong class="hl-keyword">if</strong> (of_device_is_compatible(dai->dev->of_node,
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<span class="hl-string">"artinchip,aic-i2s-v1.0"</span>)) {
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||
ret = snd_pcm_hw_constraint_step(substream->runtime, <span class="hl-number">0</span>,
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SNDRV_PCM_HW_PARAM_PERIOD_BYTES, <span class="hl-number">8</span>);
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<strong class="hl-keyword">if</strong> (ret < <span class="hl-number">0</span>) {
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||
dev_err(dai->dev,
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<span class="hl-string">"Could not apply period step: %d\n"</span>, ret);
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||
<strong class="hl-keyword">return</strong> ret;
|
||
}
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||
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||
ret = snd_pcm_hw_constraint_step(substream->runtime, <span class="hl-number">0</span>,
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||
SNDRV_PCM_HW_PARAM_BUFFER_BYTES, <span class="hl-number">8</span>);
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||
<strong class="hl-keyword">if</strong> (ret < <span class="hl-number">0</span>) {
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||
dev_err(dai->dev,
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||
<span class="hl-string">"Could not apply buffer step: %d\n"</span>, ret);
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||
<strong class="hl-keyword">return</strong> ret;
|
||
}
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||
} <strong class="hl-keyword">else</strong> {
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||
ret = snd_pcm_hw_constraint_step(substream->runtime, <span class="hl-number">0</span>,
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||
SNDRV_PCM_HW_PARAM_PERIOD_BYTES, <span class="hl-number">128</span>);
|
||
<strong class="hl-keyword">if</strong> (ret < <span class="hl-number">0</span>) {
|
||
dev_err(dai->dev,
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||
<span class="hl-string">"Could not apply period step: %d\n"</span>, ret);
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||
<strong class="hl-keyword">return</strong> ret;
|
||
}
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||
|
||
ret = snd_pcm_hw_constraint_step(substream->runtime, <span class="hl-number">0</span>,
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||
SNDRV_PCM_HW_PARAM_BUFFER_BYTES, <span class="hl-number">128</span>);
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||
<strong class="hl-keyword">if</strong> (ret < <span class="hl-number">0</span>) {
|
||
dev_err(dai->dev,
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||
<span class="hl-string">"Could not apply buffer step: %d\n"</span>, ret);
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||
<strong class="hl-keyword">return</strong> ret;
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||
}
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||
}
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<strong class="hl-keyword">return</strong> ret;
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||
}</pre></div></li></ol>
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||
</div>
|
||
</section><section class="- topic/section section" id="i2s_key_procedures__section_bhv_2yl_4dc" data-ofbid="i2s_key_procedures__section_bhv_2yl_4dc"><h2 class="- topic/title title sectiontitle"><strong class="+ topic/ph hi-d/b ph b">Record 流程</strong></h2>
|
||
|
||
<ul class="- topic/ul ul" id="i2s_key_procedures__ul_xt4_fnf_fdc" data-ofbid="i2s_key_procedures__ul_xt4_fnf_fdc"><li class="- topic/li li" data-ofbid="d303369e132__20250121171808">
|
||
<div class="- topic/div div section" id="i2s_key_procedures__id8">
|
||
<strong class="+ topic/ph hi-d/b ph b"><code class="+ topic/ph pr-d/codeph ph codeph">init</code> 流程</strong>
|
||
<ol class="- topic/ol ol arabic simple" id="i2s_key_procedures__ol_fvg_kkf_fdc" data-ofbid="i2s_key_procedures__ol_fvg_kkf_fdc"><li class="- topic/li li" data-ofbid="d303369e142__20250121171808">
|
||
<p class="- topic/p p" data-ofbid="d303369e144__20250121171808">初始化 DMA 传输的起始地址、<span class="+ topic/keyword pr-d/parmname keyword parmname">buf_len</span> 以及
|
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<span class="+ topic/keyword pr-d/parmname keyword parmname">period_len</span>。</p>
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||
<p class="- topic/p p" data-ofbid="d303369e153__20250121171808">I2S 模块使用 DMA 传输音频数据,DMA 采用环形链表形式,依次将音频数据传送到硬件。所以需要配置 DMA
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传输时的起始地址(即 RX buffer 地址)以及
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||
<span class="+ topic/keyword pr-d/parmname keyword parmname">buf_len</span>,<span class="+ topic/keyword pr-d/parmname keyword parmname">period_len</span>。</p>
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||
</li><li class="- topic/li li" data-ofbid="d303369e162__20250121171808">
|
||
<p class="- topic/p p" data-ofbid="d303369e164__20250121171808">注册 HAL 层的回调函数。</p>
|
||
<p class="- topic/p p" data-ofbid="d303369e167__20250121171808">在 Driver 层驱动,将 <span class="+ topic/keyword pr-d/parmname keyword parmname">buf_len</span> 配置为
|
||
<span class="+ topic/keyword pr-d/parmname keyword parmname">period_len</span> 的 2 倍,DMA 每传输
|
||
<span class="+ topic/keyword pr-d/parmname keyword parmname">period_len</span> 长度的数据,触发一次 DMA 中断,通知 CPU 向
|
||
pipe 设备写入数据。</p>
|
||
</li></ol></div>
|
||
</li><li class="- topic/li li" data-ofbid="d303369e180__20250121171808">
|
||
<div class="- topic/div div section" id="i2s_key_procedures__id9">
|
||
<strong class="+ topic/ph hi-d/b ph b"><code class="+ topic/ph pr-d/codeph ph codeph">start</code> 流程</strong>
|
||
<p class="- topic/p p" data-ofbid="d303369e189__20250121171808">按照 RT-Thread audio 的框架,在执行 <span class="+ topic/keyword pr-d/apiname keyword apiname">rt_device_open</span> 时,就会调用
|
||
<code class="+ topic/ph pr-d/codeph ph codeph">start</code> 流程,开始音频的录制,然后再通过
|
||
<span class="+ topic/keyword pr-d/apiname keyword apiname">rt_device_control</span>
|
||
设置音频的格式(采样率,通道数等)。按照这个流程,最开始可能会录制一段不符合设置的音频格式的数据,这显然是不合理的。所以,在 Driver
|
||
层的驱动实现中,<code class="+ topic/ph pr-d/codeph ph codeph">start</code>
|
||
流程并未做任何处理,而是在设置完音频格式后才开始音频的录制。</p></div>
|
||
</li><li class="- topic/li li" data-ofbid="d303369e204__20250121171808">
|
||
<div class="- topic/div div section" id="i2s_key_procedures__id10">
|
||
<strong class="+ topic/ph hi-d/b ph b">DMA 中断流程</strong>
|
||
<p class="- topic/p p" data-ofbid="d303369e211__20250121171808">DMA 每传输完 <span class="+ topic/keyword pr-d/parmname keyword parmname">period_len</span> 长度的数据后,触发一次 DMA 中断,然后通过 DMA
|
||
回调函数的逐级调用,最终调用 <span class="+ topic/keyword pr-d/apiname keyword apiname">rt_audio_rx_done</span>,将 RX buffer 的数据写入到
|
||
pipe 设备,每次写入 <span class="+ topic/keyword pr-d/parmname keyword parmname">period_len</span> 长度的音频数据。</p></div>
|
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</li></ul>
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<div class=" wh_topic_toc "><div class="wh_topic_label">在本页上</div><ul><li class="section-item"><div class="section-title"><a href="#i2s_key_procedures__section_nh2_5g3_d1c" data-tocid="i2s_key_procedures__section_nh2_5g3_d1c">操作函数集实现</a></div></li><li class="section-item"><div class="section-title"><a href="#i2s_key_procedures__section_th2_5g3_d1c" data-tocid="i2s_key_procedures__section_th2_5g3_d1c">I2S 时钟设置</a></div></li><li class="section-item"><div class="section-title"><a href="#i2s_key_procedures__section_bhv_2yl_4dc" data-tocid="i2s_key_procedures__section_bhv_2yl_4dc"><strong class="+ topic/ph hi-d/b ph b">Record 流程</strong></a></div></li></ul></div>
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