drm/i2c: tda998x: Improve tda998x_configure_audio() audio related pdata
Define struct tda998x_audio_params in include/drm/i2c/tda998x.h and use it in pdata and for tda998x_configure_audio() parameters. Also updates tda998x_write_aif() to take struct hdmi_audio_infoframe * directly as a parameter. Signed-off-by: Jyri Sarha <jsarha@ti.com> Signed-off-by: Russell King <rmk+kernel@armlinux.org.uk>
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@ -41,7 +41,7 @@ struct tda998x_priv {
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u8 vip_cntrl_0;
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u8 vip_cntrl_1;
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u8 vip_cntrl_2;
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struct tda998x_encoder_params params;
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struct tda998x_audio_params audio_params;
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wait_queue_head_t wq_edid;
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volatile int wq_edid_wait;
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@ -666,26 +666,16 @@ tda998x_write_if(struct tda998x_priv *priv, u8 bit, u16 addr,
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reg_set(priv, REG_DIP_IF_FLAGS, bit);
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}
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static void
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tda998x_write_aif(struct tda998x_priv *priv, struct tda998x_encoder_params *p)
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static int tda998x_write_aif(struct tda998x_priv *priv,
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struct hdmi_audio_infoframe *cea)
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{
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union hdmi_infoframe frame;
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hdmi_audio_infoframe_init(&frame.audio);
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frame.audio.channels = p->audio_frame[1] & 0x07;
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frame.audio.channel_allocation = p->audio_frame[4];
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frame.audio.level_shift_value = (p->audio_frame[5] & 0x78) >> 3;
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frame.audio.downmix_inhibit = (p->audio_frame[5] & 0x80) >> 7;
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/*
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* L-PCM and IEC61937 compressed audio shall always set sample
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* frequency to "refer to stream". For others, see the HDMI
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* specification.
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*/
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frame.audio.sample_frequency = (p->audio_frame[2] & 0x1c) >> 2;
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frame.audio = *cea;
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tda998x_write_if(priv, DIP_IF_FLAGS_IF4, REG_IF4_HB0, &frame);
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return 0;
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}
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static void
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@ -710,20 +700,21 @@ static void tda998x_audio_mute(struct tda998x_priv *priv, bool on)
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}
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}
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static void
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static int
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tda998x_configure_audio(struct tda998x_priv *priv,
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struct drm_display_mode *mode, struct tda998x_encoder_params *p)
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struct tda998x_audio_params *params,
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unsigned mode_clock)
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{
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u8 buf[6], clksel_aip, clksel_fs, cts_n, adiv;
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u32 n;
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/* Enable audio ports */
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reg_write(priv, REG_ENA_AP, p->audio_cfg);
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reg_write(priv, REG_ENA_ACLK, p->audio_clk_cfg);
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reg_write(priv, REG_ENA_AP, params->config);
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/* Set audio input source */
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switch (p->audio_format) {
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switch (params->format) {
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case AFMT_SPDIF:
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reg_write(priv, REG_ENA_ACLK, 0);
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reg_write(priv, REG_MUX_AP, MUX_AP_SELECT_SPDIF);
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clksel_aip = AIP_CLKSEL_AIP_SPDIF;
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clksel_fs = AIP_CLKSEL_FS_FS64SPDIF;
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@ -731,15 +722,29 @@ tda998x_configure_audio(struct tda998x_priv *priv,
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break;
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case AFMT_I2S:
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reg_write(priv, REG_ENA_ACLK, 1);
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reg_write(priv, REG_MUX_AP, MUX_AP_SELECT_I2S);
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clksel_aip = AIP_CLKSEL_AIP_I2S;
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clksel_fs = AIP_CLKSEL_FS_ACLK;
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cts_n = CTS_N_M(3) | CTS_N_K(3);
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switch (params->sample_width) {
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case 16:
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cts_n = CTS_N_M(3) | CTS_N_K(1);
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break;
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case 18:
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case 20:
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case 24:
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cts_n = CTS_N_M(3) | CTS_N_K(2);
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break;
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default:
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case 32:
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cts_n = CTS_N_M(3) | CTS_N_K(3);
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break;
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}
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break;
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default:
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BUG();
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return;
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return -EINVAL;
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}
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reg_write(priv, REG_AIP_CLKSEL, clksel_aip);
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@ -755,11 +760,11 @@ tda998x_configure_audio(struct tda998x_priv *priv,
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* assume 100MHz requires larger divider.
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*/
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adiv = AUDIO_DIV_SERCLK_8;
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if (mode->clock > 100000)
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if (mode_clock > 100000)
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adiv++; /* AUDIO_DIV_SERCLK_16 */
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/* S/PDIF asks for a larger divider */
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if (p->audio_format == AFMT_SPDIF)
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if (params->format == AFMT_SPDIF)
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adiv++; /* AUDIO_DIV_SERCLK_16 or _32 */
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reg_write(priv, REG_AUDIO_DIV, adiv);
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@ -768,7 +773,7 @@ tda998x_configure_audio(struct tda998x_priv *priv,
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* This is the approximate value of N, which happens to be
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* the recommended values for non-coherent clocks.
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*/
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n = 128 * p->audio_sample_rate / 1000;
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n = 128 * params->sample_rate / 1000;
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/* Write the CTS and N values */
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buf[0] = 0x44;
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@ -786,20 +791,21 @@ tda998x_configure_audio(struct tda998x_priv *priv,
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reg_set(priv, REG_AIP_CNTRL_0, AIP_CNTRL_0_RST_CTS);
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reg_clear(priv, REG_AIP_CNTRL_0, AIP_CNTRL_0_RST_CTS);
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/* Write the channel status */
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buf[0] = IEC958_AES0_CON_NOT_COPYRIGHT;
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buf[1] = 0x00;
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buf[2] = IEC958_AES3_CON_FS_NOTID;
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buf[3] = IEC958_AES4_CON_ORIGFS_NOTID |
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IEC958_AES4_CON_MAX_WORDLEN_24;
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/* Write the channel status
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* The REG_CH_STAT_B-registers skip IEC958 AES2 byte, because
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* there is a separate register for each I2S wire.
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*/
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buf[0] = params->status[0];
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buf[1] = params->status[1];
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buf[2] = params->status[3];
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buf[3] = params->status[4];
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reg_write_range(priv, REG_CH_STAT_B(0), buf, 4);
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tda998x_audio_mute(priv, true);
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msleep(20);
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tda998x_audio_mute(priv, false);
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/* Write the audio information packet */
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tda998x_write_aif(priv, p);
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return tda998x_write_aif(priv, ¶ms->cea);
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}
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/* DRM encoder functions */
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@ -820,7 +826,7 @@ static void tda998x_encoder_set_config(struct tda998x_priv *priv,
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VIP_CNTRL_2_SWAP_F(p->swap_f) |
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(p->mirr_f ? VIP_CNTRL_2_MIRR_F : 0);
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priv->params = *p;
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priv->audio_params = p->audio_params;
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}
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static void tda998x_encoder_dpms(struct drm_encoder *encoder, int mode)
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@ -1057,9 +1063,11 @@ tda998x_encoder_mode_set(struct drm_encoder *encoder,
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tda998x_write_avi(priv, adjusted_mode);
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if (priv->params.audio_cfg)
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tda998x_configure_audio(priv, adjusted_mode,
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&priv->params);
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if (priv->audio_params.format != AFMT_UNUSED) {
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tda998x_configure_audio(priv,
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&priv->audio_params,
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adjusted_mode->clock);
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}
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}
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}
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@ -1,6 +1,23 @@
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#ifndef __DRM_I2C_TDA998X_H__
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#define __DRM_I2C_TDA998X_H__
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#include <linux/hdmi.h>
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enum {
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AFMT_UNUSED = 0,
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AFMT_SPDIF = 1,
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AFMT_I2S = 2,
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};
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struct tda998x_audio_params {
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u8 config;
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u8 format;
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unsigned sample_width;
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unsigned sample_rate;
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struct hdmi_audio_infoframe cea;
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u8 status[5];
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};
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struct tda998x_encoder_params {
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u8 swap_b:3;
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u8 mirr_b:1;
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@ -15,16 +32,7 @@ struct tda998x_encoder_params {
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u8 swap_e:3;
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u8 mirr_e:1;
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u8 audio_cfg;
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u8 audio_clk_cfg;
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u8 audio_frame[6];
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enum {
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AFMT_SPDIF,
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AFMT_I2S
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} audio_format;
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unsigned audio_sample_rate;
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struct tda998x_audio_params audio_params;
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};
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#endif
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