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0008 #include <linux/regmap.h>
0009 #include <sound/pcm_params.h>
0010 #include "mt8183-afe-common.h"
0011 #include "mt8183-interconnection.h"
0012 #include "mt8183-reg.h"
0013
0014 enum AUD_TX_LCH_RPT {
0015 AUD_TX_LCH_RPT_NO_REPEAT = 0,
0016 AUD_TX_LCH_RPT_REPEAT = 1
0017 };
0018
0019 enum AUD_VBT_16K_MODE {
0020 AUD_VBT_16K_MODE_DISABLE = 0,
0021 AUD_VBT_16K_MODE_ENABLE = 1
0022 };
0023
0024 enum AUD_EXT_MODEM {
0025 AUD_EXT_MODEM_SELECT_INTERNAL = 0,
0026 AUD_EXT_MODEM_SELECT_EXTERNAL = 1
0027 };
0028
0029 enum AUD_PCM_SYNC_TYPE {
0030
0031 AUD_PCM_ONE_BCK_CYCLE_SYNC = 0,
0032
0033 AUD_PCM_EXTENDED_BCK_CYCLE_SYNC = 1
0034 };
0035
0036 enum AUD_BT_MODE {
0037 AUD_BT_MODE_DUAL_MIC_ON_TX = 0,
0038 AUD_BT_MODE_SINGLE_MIC_ON_TX = 1
0039 };
0040
0041 enum AUD_PCM_AFIFO_SRC {
0042
0043 AUD_PCM_AFIFO_ASRC = 0,
0044
0045 AUD_PCM_AFIFO_AFIFO = 1
0046 };
0047
0048 enum AUD_PCM_CLOCK_SOURCE {
0049 AUD_PCM_CLOCK_MASTER_MODE = 0,
0050 AUD_PCM_CLOCK_SLAVE_MODE = 1
0051 };
0052
0053 enum AUD_PCM_WLEN {
0054 AUD_PCM_WLEN_PCM_32_BCK_CYCLES = 0,
0055 AUD_PCM_WLEN_PCM_64_BCK_CYCLES = 1
0056 };
0057
0058 enum AUD_PCM_MODE {
0059 AUD_PCM_MODE_PCM_MODE_8K = 0,
0060 AUD_PCM_MODE_PCM_MODE_16K = 1,
0061 AUD_PCM_MODE_PCM_MODE_32K = 2,
0062 AUD_PCM_MODE_PCM_MODE_48K = 3,
0063 };
0064
0065 enum AUD_PCM_FMT {
0066 AUD_PCM_FMT_I2S = 0,
0067 AUD_PCM_FMT_EIAJ = 1,
0068 AUD_PCM_FMT_PCM_MODE_A = 2,
0069 AUD_PCM_FMT_PCM_MODE_B = 3
0070 };
0071
0072 enum AUD_BCLK_OUT_INV {
0073 AUD_BCLK_OUT_INV_NO_INVERSE = 0,
0074 AUD_BCLK_OUT_INV_INVERSE = 1
0075 };
0076
0077 enum AUD_PCM_EN {
0078 AUD_PCM_EN_DISABLE = 0,
0079 AUD_PCM_EN_ENABLE = 1
0080 };
0081
0082
0083 static const struct snd_kcontrol_new mtk_pcm_1_playback_ch1_mix[] = {
0084 SOC_DAPM_SINGLE_AUTODISABLE("ADDA_UL_CH1", AFE_CONN7,
0085 I_ADDA_UL_CH1, 1, 0),
0086 SOC_DAPM_SINGLE_AUTODISABLE("DL2_CH1", AFE_CONN7,
0087 I_DL2_CH1, 1, 0),
0088 };
0089
0090 static const struct snd_kcontrol_new mtk_pcm_1_playback_ch2_mix[] = {
0091 SOC_DAPM_SINGLE_AUTODISABLE("ADDA_UL_CH2", AFE_CONN8,
0092 I_ADDA_UL_CH2, 1, 0),
0093 SOC_DAPM_SINGLE_AUTODISABLE("DL2_CH2", AFE_CONN8,
0094 I_DL2_CH2, 1, 0),
0095 };
0096
0097 static const struct snd_kcontrol_new mtk_pcm_1_playback_ch4_mix[] = {
0098 SOC_DAPM_SINGLE_AUTODISABLE("DL1_CH1", AFE_CONN27,
0099 I_DL1_CH1, 1, 0),
0100 };
0101
0102 static const struct snd_kcontrol_new mtk_pcm_2_playback_ch1_mix[] = {
0103 SOC_DAPM_SINGLE_AUTODISABLE("ADDA_UL_CH1", AFE_CONN17,
0104 I_ADDA_UL_CH1, 1, 0),
0105 SOC_DAPM_SINGLE_AUTODISABLE("DL2_CH1", AFE_CONN17,
0106 I_DL2_CH1, 1, 0),
0107 };
0108
0109 static const struct snd_kcontrol_new mtk_pcm_2_playback_ch2_mix[] = {
0110 SOC_DAPM_SINGLE_AUTODISABLE("ADDA_UL_CH2", AFE_CONN18,
0111 I_ADDA_UL_CH2, 1, 0),
0112 SOC_DAPM_SINGLE_AUTODISABLE("DL2_CH2", AFE_CONN18,
0113 I_DL2_CH2, 1, 0),
0114 };
0115
0116 static const struct snd_kcontrol_new mtk_pcm_2_playback_ch4_mix[] = {
0117 SOC_DAPM_SINGLE_AUTODISABLE("DL1_CH1", AFE_CONN24,
0118 I_DL1_CH1, 1, 0),
0119 };
0120
0121 static const struct snd_soc_dapm_widget mtk_dai_pcm_widgets[] = {
0122
0123 SND_SOC_DAPM_MIXER("PCM_1_PB_CH1", SND_SOC_NOPM, 0, 0,
0124 mtk_pcm_1_playback_ch1_mix,
0125 ARRAY_SIZE(mtk_pcm_1_playback_ch1_mix)),
0126 SND_SOC_DAPM_MIXER("PCM_1_PB_CH2", SND_SOC_NOPM, 0, 0,
0127 mtk_pcm_1_playback_ch2_mix,
0128 ARRAY_SIZE(mtk_pcm_1_playback_ch2_mix)),
0129 SND_SOC_DAPM_MIXER("PCM_1_PB_CH4", SND_SOC_NOPM, 0, 0,
0130 mtk_pcm_1_playback_ch4_mix,
0131 ARRAY_SIZE(mtk_pcm_1_playback_ch4_mix)),
0132 SND_SOC_DAPM_MIXER("PCM_2_PB_CH1", SND_SOC_NOPM, 0, 0,
0133 mtk_pcm_2_playback_ch1_mix,
0134 ARRAY_SIZE(mtk_pcm_2_playback_ch1_mix)),
0135 SND_SOC_DAPM_MIXER("PCM_2_PB_CH2", SND_SOC_NOPM, 0, 0,
0136 mtk_pcm_2_playback_ch2_mix,
0137 ARRAY_SIZE(mtk_pcm_2_playback_ch2_mix)),
0138 SND_SOC_DAPM_MIXER("PCM_2_PB_CH4", SND_SOC_NOPM, 0, 0,
0139 mtk_pcm_2_playback_ch4_mix,
0140 ARRAY_SIZE(mtk_pcm_2_playback_ch4_mix)),
0141
0142 SND_SOC_DAPM_SUPPLY("PCM_1_EN", PCM_INTF_CON1, PCM_EN_SFT, 0,
0143 NULL, 0),
0144
0145 SND_SOC_DAPM_SUPPLY("PCM_2_EN", PCM2_INTF_CON, PCM2_EN_SFT, 0,
0146 NULL, 0),
0147
0148 SND_SOC_DAPM_INPUT("MD1_TO_AFE"),
0149 SND_SOC_DAPM_INPUT("MD2_TO_AFE"),
0150 SND_SOC_DAPM_OUTPUT("AFE_TO_MD1"),
0151 SND_SOC_DAPM_OUTPUT("AFE_TO_MD2"),
0152 };
0153
0154 static const struct snd_soc_dapm_route mtk_dai_pcm_routes[] = {
0155 {"PCM 1 Playback", NULL, "PCM_1_PB_CH1"},
0156 {"PCM 1 Playback", NULL, "PCM_1_PB_CH2"},
0157 {"PCM 1 Playback", NULL, "PCM_1_PB_CH4"},
0158 {"PCM 2 Playback", NULL, "PCM_2_PB_CH1"},
0159 {"PCM 2 Playback", NULL, "PCM_2_PB_CH2"},
0160 {"PCM 2 Playback", NULL, "PCM_2_PB_CH4"},
0161
0162 {"PCM 1 Playback", NULL, "PCM_1_EN"},
0163 {"PCM 2 Playback", NULL, "PCM_2_EN"},
0164 {"PCM 1 Capture", NULL, "PCM_1_EN"},
0165 {"PCM 2 Capture", NULL, "PCM_2_EN"},
0166
0167 {"AFE_TO_MD1", NULL, "PCM 2 Playback"},
0168 {"AFE_TO_MD2", NULL, "PCM 1 Playback"},
0169 {"PCM 2 Capture", NULL, "MD1_TO_AFE"},
0170 {"PCM 1 Capture", NULL, "MD2_TO_AFE"},
0171
0172 {"PCM_1_PB_CH1", "DL2_CH1", "DL2"},
0173 {"PCM_1_PB_CH2", "DL2_CH2", "DL2"},
0174 {"PCM_1_PB_CH4", "DL1_CH1", "DL1"},
0175 {"PCM_2_PB_CH1", "DL2_CH1", "DL2"},
0176 {"PCM_2_PB_CH2", "DL2_CH2", "DL2"},
0177 {"PCM_2_PB_CH4", "DL1_CH1", "DL1"},
0178 };
0179
0180
0181 static int mtk_dai_pcm_hw_params(struct snd_pcm_substream *substream,
0182 struct snd_pcm_hw_params *params,
0183 struct snd_soc_dai *dai)
0184 {
0185 struct mtk_base_afe *afe = snd_soc_dai_get_drvdata(dai);
0186 unsigned int rate = params_rate(params);
0187 unsigned int rate_reg = mt8183_rate_transform(afe->dev, rate, dai->id);
0188 unsigned int pcm_con = 0;
0189
0190 dev_dbg(afe->dev, "%s(), id %d, stream %d, rate %d, rate_reg %d, widget active p %d, c %d\n",
0191 __func__,
0192 dai->id,
0193 substream->stream,
0194 rate,
0195 rate_reg,
0196 dai->playback_widget->active,
0197 dai->capture_widget->active);
0198
0199 if (dai->playback_widget->active || dai->capture_widget->active)
0200 return 0;
0201
0202 switch (dai->id) {
0203 case MT8183_DAI_PCM_1:
0204 pcm_con |= AUD_BCLK_OUT_INV_NO_INVERSE << PCM_BCLK_OUT_INV_SFT;
0205 pcm_con |= AUD_TX_LCH_RPT_NO_REPEAT << PCM_TX_LCH_RPT_SFT;
0206 pcm_con |= AUD_VBT_16K_MODE_DISABLE << PCM_VBT_16K_MODE_SFT;
0207 pcm_con |= AUD_EXT_MODEM_SELECT_INTERNAL << PCM_EXT_MODEM_SFT;
0208 pcm_con |= 0 << PCM_SYNC_LENGTH_SFT;
0209 pcm_con |= AUD_PCM_ONE_BCK_CYCLE_SYNC << PCM_SYNC_TYPE_SFT;
0210 pcm_con |= AUD_BT_MODE_DUAL_MIC_ON_TX << PCM_BT_MODE_SFT;
0211 pcm_con |= AUD_PCM_AFIFO_AFIFO << PCM_BYP_ASRC_SFT;
0212 pcm_con |= AUD_PCM_CLOCK_SLAVE_MODE << PCM_SLAVE_SFT;
0213 pcm_con |= rate_reg << PCM_MODE_SFT;
0214 pcm_con |= AUD_PCM_FMT_PCM_MODE_B << PCM_FMT_SFT;
0215
0216 regmap_update_bits(afe->regmap, PCM_INTF_CON1,
0217 0xfffffffe, pcm_con);
0218 break;
0219 case MT8183_DAI_PCM_2:
0220 pcm_con |= AUD_TX_LCH_RPT_NO_REPEAT << PCM2_TX_LCH_RPT_SFT;
0221 pcm_con |= AUD_VBT_16K_MODE_DISABLE << PCM2_VBT_16K_MODE_SFT;
0222 pcm_con |= AUD_BT_MODE_DUAL_MIC_ON_TX << PCM2_BT_MODE_SFT;
0223 pcm_con |= AUD_PCM_AFIFO_AFIFO << PCM2_AFIFO_SFT;
0224 pcm_con |= AUD_PCM_WLEN_PCM_32_BCK_CYCLES << PCM2_WLEN_SFT;
0225 pcm_con |= rate_reg << PCM2_MODE_SFT;
0226 pcm_con |= AUD_PCM_FMT_PCM_MODE_B << PCM2_FMT_SFT;
0227
0228 regmap_update_bits(afe->regmap, PCM2_INTF_CON,
0229 0xfffffffe, pcm_con);
0230 break;
0231 default:
0232 dev_warn(afe->dev, "%s(), id %d not support\n",
0233 __func__, dai->id);
0234 return -EINVAL;
0235 }
0236
0237 return 0;
0238 }
0239
0240 static const struct snd_soc_dai_ops mtk_dai_pcm_ops = {
0241 .hw_params = mtk_dai_pcm_hw_params,
0242 };
0243
0244
0245 #define MTK_PCM_RATES (SNDRV_PCM_RATE_8000 |\
0246 SNDRV_PCM_RATE_16000 |\
0247 SNDRV_PCM_RATE_32000 |\
0248 SNDRV_PCM_RATE_48000)
0249
0250 #define MTK_PCM_FORMATS (SNDRV_PCM_FMTBIT_S16_LE |\
0251 SNDRV_PCM_FMTBIT_S24_LE |\
0252 SNDRV_PCM_FMTBIT_S32_LE)
0253
0254 static struct snd_soc_dai_driver mtk_dai_pcm_driver[] = {
0255 {
0256 .name = "PCM 1",
0257 .id = MT8183_DAI_PCM_1,
0258 .playback = {
0259 .stream_name = "PCM 1 Playback",
0260 .channels_min = 1,
0261 .channels_max = 2,
0262 .rates = MTK_PCM_RATES,
0263 .formats = MTK_PCM_FORMATS,
0264 },
0265 .capture = {
0266 .stream_name = "PCM 1 Capture",
0267 .channels_min = 1,
0268 .channels_max = 2,
0269 .rates = MTK_PCM_RATES,
0270 .formats = MTK_PCM_FORMATS,
0271 },
0272 .ops = &mtk_dai_pcm_ops,
0273 .symmetric_rate = 1,
0274 .symmetric_sample_bits = 1,
0275 },
0276 {
0277 .name = "PCM 2",
0278 .id = MT8183_DAI_PCM_2,
0279 .playback = {
0280 .stream_name = "PCM 2 Playback",
0281 .channels_min = 1,
0282 .channels_max = 2,
0283 .rates = MTK_PCM_RATES,
0284 .formats = MTK_PCM_FORMATS,
0285 },
0286 .capture = {
0287 .stream_name = "PCM 2 Capture",
0288 .channels_min = 1,
0289 .channels_max = 2,
0290 .rates = MTK_PCM_RATES,
0291 .formats = MTK_PCM_FORMATS,
0292 },
0293 .ops = &mtk_dai_pcm_ops,
0294 .symmetric_rate = 1,
0295 .symmetric_sample_bits = 1,
0296 },
0297 };
0298
0299 int mt8183_dai_pcm_register(struct mtk_base_afe *afe)
0300 {
0301 struct mtk_base_afe_dai *dai;
0302
0303 dai = devm_kzalloc(afe->dev, sizeof(*dai), GFP_KERNEL);
0304 if (!dai)
0305 return -ENOMEM;
0306
0307 list_add(&dai->list, &afe->sub_dais);
0308
0309 dai->dai_drivers = mtk_dai_pcm_driver;
0310 dai->num_dai_drivers = ARRAY_SIZE(mtk_dai_pcm_driver);
0311
0312 dai->dapm_widgets = mtk_dai_pcm_widgets;
0313 dai->num_dapm_widgets = ARRAY_SIZE(mtk_dai_pcm_widgets);
0314 dai->dapm_routes = mtk_dai_pcm_routes;
0315 dai->num_dapm_routes = ARRAY_SIZE(mtk_dai_pcm_routes);
0316
0317 return 0;
0318 }