1 // SPDX-License-Identifier: GPL-2.0-only 2 // Copyright (c) 2018-2020, The Linux Foundation. All rights reserved. 3 4 #include <linux/cleanup.h> 5 #include <linux/module.h> 6 #include <linux/init.h> 7 #include <linux/io.h> 8 #include <linux/of.h> 9 #include <linux/platform_device.h> 10 #include <linux/clk.h> 11 #include <linux/of_clk.h> 12 #include <linux/clk-provider.h> 13 #include <sound/soc.h> 14 #include <sound/soc-dapm.h> 15 #include <linux/pm_clock.h> 16 #include <linux/pm_runtime.h> 17 #include <linux/of_platform.h> 18 #include <sound/tlv.h> 19 20 #include "lpass-macro-common.h" 21 #include "lpass-wsa-macro.h" 22 23 #define CDC_WSA_CLK_RST_CTRL_MCLK_CONTROL (0x0000) 24 #define CDC_WSA_MCLK_EN_MASK BIT(0) 25 #define CDC_WSA_MCLK_ENABLE BIT(0) 26 #define CDC_WSA_MCLK_DISABLE 0 27 #define CDC_WSA_CLK_RST_CTRL_FS_CNT_CONTROL (0x0004) 28 #define CDC_WSA_FS_CNT_EN_MASK BIT(0) 29 #define CDC_WSA_FS_CNT_ENABLE BIT(0) 30 #define CDC_WSA_FS_CNT_DISABLE 0 31 #define CDC_WSA_CLK_RST_CTRL_SWR_CONTROL (0x0008) 32 #define CDC_WSA_SWR_CLK_EN_MASK BIT(0) 33 #define CDC_WSA_SWR_CLK_ENABLE BIT(0) 34 #define CDC_WSA_SWR_RST_EN_MASK BIT(1) 35 #define CDC_WSA_SWR_RST_ENABLE BIT(1) 36 #define CDC_WSA_SWR_RST_DISABLE 0 37 #define CDC_WSA_TOP_TOP_CFG0 (0x0080) 38 #define CDC_WSA_TOP_TOP_CFG1 (0x0084) 39 #define CDC_WSA_TOP_FREQ_MCLK (0x0088) 40 #define CDC_WSA_TOP_DEBUG_BUS_SEL (0x008C) 41 #define CDC_WSA_TOP_DEBUG_EN0 (0x0090) 42 #define CDC_WSA_TOP_DEBUG_EN1 (0x0094) 43 #define CDC_WSA_TOP_DEBUG_DSM_LB (0x0098) 44 #define CDC_WSA_TOP_RX_I2S_CTL (0x009C) 45 #define CDC_WSA_TOP_TX_I2S_CTL (0x00A0) 46 #define CDC_WSA_TOP_I2S_CLK (0x00A4) 47 #define CDC_WSA_TOP_I2S_RESET (0x00A8) 48 #define CDC_WSA_RX_INP_MUX_RX_INT0_CFG0 (0x0100) 49 #define CDC_WSA_RX_INP_MUX_RX_INT0_CFG1 (0x0104) 50 #define CDC_WSA_RX_INP_MUX_RX_INT1_CFG0 (0x0108) 51 #define CDC_WSA_RX_INP_MUX_RX_INT1_CFG1 (0x010C) 52 #define CDC_WSA_RX_INP_MUX_RX_MIX_CFG0 (0x0110) 53 #define CDC_WSA_RX_MIX_TX1_SEL_MASK GENMASK(5, 3) 54 #define CDC_WSA_RX_MIX_TX1_SEL_SHFT 3 55 #define CDC_WSA_RX_MIX_TX0_SEL_MASK GENMASK(2, 0) 56 #define CDC_WSA_RX_INP_MUX_RX_EC_CFG0 (0x0114) 57 #define CDC_WSA_RX_INP_MUX_SOFTCLIP_CFG0 (0x0118) 58 #define CDC_WSA_TX0_SPKR_PROT_PATH_CTL (0x0244) 59 #define CDC_WSA_TX_SPKR_PROT_RESET_MASK BIT(5) 60 #define CDC_WSA_TX_SPKR_PROT_RESET BIT(5) 61 #define CDC_WSA_TX_SPKR_PROT_NO_RESET 0 62 #define CDC_WSA_TX_SPKR_PROT_CLK_EN_MASK BIT(4) 63 #define CDC_WSA_TX_SPKR_PROT_CLK_ENABLE BIT(4) 64 #define CDC_WSA_TX_SPKR_PROT_CLK_DISABLE 0 65 #define CDC_WSA_TX_SPKR_PROT_PCM_RATE_MASK GENMASK(3, 0) 66 #define CDC_WSA_TX_SPKR_PROT_PCM_RATE_8K 0 67 #define CDC_WSA_TX_SPKR_PROT_PCM_RATE_16K 1 68 #define CDC_WSA_TX_SPKR_PROT_PCM_RATE_24K 2 69 #define CDC_WSA_TX_SPKR_PROT_PCM_RATE_32K 3 70 #define CDC_WSA_TX_SPKR_PROT_PCM_RATE_48K 4 71 #define CDC_WSA_TX0_SPKR_PROT_PATH_CFG0 (0x0248) 72 #define CDC_WSA_TX1_SPKR_PROT_PATH_CTL (0x0264) 73 #define CDC_WSA_TX1_SPKR_PROT_PATH_CFG0 (0x0268) 74 #define CDC_WSA_TX2_SPKR_PROT_PATH_CTL (0x0284) 75 #define CDC_WSA_TX2_SPKR_PROT_PATH_CFG0 (0x0288) 76 #define CDC_WSA_TX3_SPKR_PROT_PATH_CTL (0x02A4) 77 #define CDC_WSA_TX3_SPKR_PROT_PATH_CFG0 (0x02A8) 78 #define CDC_WSA_INTR_CTRL_CFG (0x0340) 79 #define CDC_WSA_INTR_CTRL_CLR_COMMIT (0x0344) 80 #define CDC_WSA_INTR_CTRL_PIN1_MASK0 (0x0360) 81 #define CDC_WSA_INTR_CTRL_PIN1_STATUS0 (0x0368) 82 #define CDC_WSA_INTR_CTRL_PIN1_CLEAR0 (0x0370) 83 #define CDC_WSA_INTR_CTRL_PIN2_MASK0 (0x0380) 84 #define CDC_WSA_INTR_CTRL_PIN2_STATUS0 (0x0388) 85 #define CDC_WSA_INTR_CTRL_PIN2_CLEAR0 (0x0390) 86 #define CDC_WSA_INTR_CTRL_LEVEL0 (0x03C0) 87 #define CDC_WSA_INTR_CTRL_BYPASS0 (0x03C8) 88 #define CDC_WSA_INTR_CTRL_SET0 (0x03D0) 89 #define CDC_WSA_RX0_RX_PATH_CTL (0x0400) 90 #define CDC_WSA_RX_PATH_CLK_EN_MASK BIT(5) 91 #define CDC_WSA_RX_PATH_CLK_ENABLE BIT(5) 92 #define CDC_WSA_RX_PATH_CLK_DISABLE 0 93 #define CDC_WSA_RX_PATH_PGA_MUTE_EN_MASK BIT(4) 94 #define CDC_WSA_RX_PATH_PGA_MUTE_ENABLE BIT(4) 95 #define CDC_WSA_RX_PATH_PGA_MUTE_DISABLE 0 96 #define CDC_WSA_RX0_RX_PATH_CFG0 (0x0404) 97 #define CDC_WSA_RX_PATH_COMP_EN_MASK BIT(1) 98 #define CDC_WSA_RX_PATH_COMP_ENABLE BIT(1) 99 #define CDC_WSA_RX_PATH_HD2_EN_MASK BIT(2) 100 #define CDC_WSA_RX_PATH_HD2_ENABLE BIT(2) 101 #define CDC_WSA_RX_PATH_SPKR_RATE_MASK BIT(3) 102 #define CDC_WSA_RX_PATH_SPKR_RATE_FS_2P4_3P072 BIT(3) 103 #define CDC_WSA_RX0_RX_PATH_CFG1 (0x0408) 104 #define CDC_WSA_RX_PATH_SMART_BST_EN_MASK BIT(0) 105 #define CDC_WSA_RX_PATH_SMART_BST_ENABLE BIT(0) 106 #define CDC_WSA_RX_PATH_SMART_BST_DISABLE 0 107 #define CDC_WSA_RX0_RX_PATH_CFG2 (0x040C) 108 #define CDC_WSA_RX0_RX_PATH_CFG3 (0x0410) 109 #define CDC_WSA_RX_DC_DCOEFF_MASK GENMASK(1, 0) 110 #define CDC_WSA_RX0_RX_VOL_CTL (0x0414) 111 #define CDC_WSA_RX0_RX_PATH_MIX_CTL (0x0418) 112 #define CDC_WSA_RX_PATH_MIX_CLK_EN_MASK BIT(5) 113 #define CDC_WSA_RX_PATH_MIX_CLK_ENABLE BIT(5) 114 #define CDC_WSA_RX_PATH_MIX_CLK_DISABLE 0 115 #define CDC_WSA_RX0_RX_PATH_MIX_CFG (0x041C) 116 #define CDC_WSA_RX0_RX_VOL_MIX_CTL (0x0420) 117 #define CDC_WSA_RX0_RX_PATH_SEC0 (0x0424) 118 #define CDC_WSA_RX0_RX_PATH_SEC1 (0x0428) 119 #define CDC_WSA_RX_PGA_HALF_DB_MASK BIT(0) 120 #define CDC_WSA_RX_PGA_HALF_DB_ENABLE BIT(0) 121 #define CDC_WSA_RX_PGA_HALF_DB_DISABLE 0 122 #define CDC_WSA_RX0_RX_PATH_SEC2 (0x042C) 123 #define CDC_WSA_RX0_RX_PATH_SEC3 (0x0430) 124 #define CDC_WSA_RX_PATH_HD2_SCALE_MASK GENMASK(1, 0) 125 #define CDC_WSA_RX_PATH_HD2_ALPHA_MASK GENMASK(5, 2) 126 #define CDC_WSA_RX0_RX_PATH_SEC5 (0x0438) 127 #define CDC_WSA_RX0_RX_PATH_SEC6 (0x043C) 128 #define CDC_WSA_RX0_RX_PATH_SEC7 (0x0440) 129 #define CDC_WSA_RX0_RX_PATH_MIX_SEC0 (0x0444) 130 #define CDC_WSA_RX0_RX_PATH_MIX_SEC1 (0x0448) 131 #define CDC_WSA_RX0_RX_PATH_DSMDEM_CTL (0x044C) 132 #define CDC_WSA_RX_DSMDEM_CLK_EN_MASK BIT(0) 133 #define CDC_WSA_RX_DSMDEM_CLK_ENABLE BIT(0) 134 #define CDC_WSA_RX1_RX_PATH_CTL (0x0480) 135 #define CDC_WSA_RX1_RX_PATH_CFG0 (0x0484) 136 #define CDC_WSA_RX1_RX_PATH_CFG1 (0x0488) 137 #define CDC_WSA_RX1_RX_PATH_CFG2 (0x048C) 138 #define CDC_WSA_RX1_RX_PATH_CFG3 (0x0490) 139 #define CDC_WSA_RX1_RX_VOL_CTL (0x0494) 140 #define CDC_WSA_RX1_RX_PATH_MIX_CTL (0x0498) 141 #define CDC_WSA_RX1_RX_PATH_MIX_CFG (0x049C) 142 #define CDC_WSA_RX1_RX_VOL_MIX_CTL (0x04A0) 143 #define CDC_WSA_RX1_RX_PATH_SEC0 (0x04A4) 144 #define CDC_WSA_RX1_RX_PATH_SEC1 (0x04A8) 145 #define CDC_WSA_RX1_RX_PATH_SEC2 (0x04AC) 146 #define CDC_WSA_RX1_RX_PATH_SEC3 (0x04B0) 147 #define CDC_WSA_RX1_RX_PATH_SEC5 (0x04B8) 148 #define CDC_WSA_RX1_RX_PATH_SEC6 (0x04BC) 149 #define CDC_WSA_RX1_RX_PATH_SEC7 (0x04C0) 150 #define CDC_WSA_RX1_RX_PATH_MIX_SEC0 (0x04C4) 151 #define CDC_WSA_RX1_RX_PATH_MIX_SEC1 (0x04C8) 152 #define CDC_WSA_RX1_RX_PATH_DSMDEM_CTL (0x04CC) 153 #define CDC_WSA_BOOST0_BOOST_PATH_CTL (0x0500) 154 #define CDC_WSA_BOOST_PATH_CLK_EN_MASK BIT(4) 155 #define CDC_WSA_BOOST_PATH_CLK_ENABLE BIT(4) 156 #define CDC_WSA_BOOST_PATH_CLK_DISABLE 0 157 #define CDC_WSA_BOOST0_BOOST_CTL (0x0504) 158 #define CDC_WSA_BOOST0_BOOST_CFG1 (0x0508) 159 #define CDC_WSA_BOOST0_BOOST_CFG2 (0x050C) 160 #define CDC_WSA_BOOST1_BOOST_PATH_CTL (0x0540) 161 #define CDC_WSA_BOOST1_BOOST_CTL (0x0544) 162 #define CDC_WSA_BOOST1_BOOST_CFG1 (0x0548) 163 #define CDC_WSA_BOOST1_BOOST_CFG2 (0x054C) 164 #define CDC_WSA_COMPANDER0_CTL0 (0x0580) 165 #define CDC_WSA_COMPANDER_CLK_EN_MASK BIT(0) 166 #define CDC_WSA_COMPANDER_CLK_ENABLE BIT(0) 167 #define CDC_WSA_COMPANDER_SOFT_RST_MASK BIT(1) 168 #define CDC_WSA_COMPANDER_SOFT_RST_ENABLE BIT(1) 169 #define CDC_WSA_COMPANDER_HALT_MASK BIT(2) 170 #define CDC_WSA_COMPANDER_HALT BIT(2) 171 #define CDC_WSA_COMPANDER0_CTL1 (0x0584) 172 #define CDC_WSA_COMPANDER0_CTL2 (0x0588) 173 #define CDC_WSA_COMPANDER0_CTL3 (0x058C) 174 #define CDC_WSA_COMPANDER0_CTL4 (0x0590) 175 #define CDC_WSA_COMPANDER0_CTL5 (0x0594) 176 #define CDC_WSA_COMPANDER0_CTL6 (0x0598) 177 #define CDC_WSA_COMPANDER0_CTL7 (0x059C) 178 /* CDC_WSA_COMPANDER1_CTLx and CDC_WSA_SOFTCLIPx differ per LPASS codec versions */ 179 #define CDC_WSA_EC_HQ0_EC_REF_HQ_PATH_CTL (0x0680) 180 #define CDC_WSA_EC_HQ_EC_CLK_EN_MASK BIT(0) 181 #define CDC_WSA_EC_HQ_EC_CLK_ENABLE BIT(0) 182 #define CDC_WSA_EC_HQ0_EC_REF_HQ_CFG0 (0x0684) 183 #define CDC_WSA_EC_HQ_EC_REF_PCM_RATE_MASK GENMASK(4, 1) 184 #define CDC_WSA_EC_HQ_EC_REF_PCM_RATE_48K BIT(3) 185 #define CDC_WSA_EC_HQ1_EC_REF_HQ_PATH_CTL (0x06C0) 186 #define CDC_WSA_EC_HQ1_EC_REF_HQ_CFG0 (0x06C4) 187 #define CDC_WSA_SPLINE_ASRC0_CLK_RST_CTL (0x0700) 188 #define CDC_WSA_SPLINE_ASRC0_CTL0 (0x0704) 189 #define CDC_WSA_SPLINE_ASRC0_CTL1 (0x0708) 190 #define CDC_WSA_SPLINE_ASRC0_FIFO_CTL (0x070C) 191 #define CDC_WSA_SPLINE_ASRC0_STATUS_FMIN_CNTR_LSB (0x0710) 192 #define CDC_WSA_SPLINE_ASRC0_STATUS_FMIN_CNTR_MSB (0x0714) 193 #define CDC_WSA_SPLINE_ASRC0_STATUS_FMAX_CNTR_LSB (0x0718) 194 #define CDC_WSA_SPLINE_ASRC0_STATUS_FMAX_CNTR_MSB (0x071C) 195 #define CDC_WSA_SPLINE_ASRC0_STATUS_FIFO (0x0720) 196 #define CDC_WSA_SPLINE_ASRC1_CLK_RST_CTL (0x0740) 197 #define CDC_WSA_SPLINE_ASRC1_CTL0 (0x0744) 198 #define CDC_WSA_SPLINE_ASRC1_CTL1 (0x0748) 199 #define CDC_WSA_SPLINE_ASRC1_FIFO_CTL (0x074C) 200 #define CDC_WSA_SPLINE_ASRC1_STATUS_FMIN_CNTR_LSB (0x0750) 201 #define CDC_WSA_SPLINE_ASRC1_STATUS_FMIN_CNTR_MSB (0x0754) 202 #define CDC_WSA_SPLINE_ASRC1_STATUS_FMAX_CNTR_LSB (0x0758) 203 #define CDC_WSA_SPLINE_ASRC1_STATUS_FMAX_CNTR_MSB (0x075C) 204 #define CDC_WSA_SPLINE_ASRC1_STATUS_FIFO (0x0760) 205 #define WSA_MAX_OFFSET (0x0760) 206 207 /* LPASS codec version <=2.4 register offsets */ 208 #define CDC_WSA_COMPANDER1_CTL0 (0x05C0) 209 #define CDC_WSA_COMPANDER1_CTL1 (0x05C4) 210 #define CDC_WSA_COMPANDER1_CTL2 (0x05C8) 211 #define CDC_WSA_COMPANDER1_CTL3 (0x05CC) 212 #define CDC_WSA_COMPANDER1_CTL4 (0x05D0) 213 #define CDC_WSA_COMPANDER1_CTL5 (0x05D4) 214 #define CDC_WSA_COMPANDER1_CTL6 (0x05D8) 215 #define CDC_WSA_COMPANDER1_CTL7 (0x05DC) 216 #define CDC_WSA_SOFTCLIP0_CRC (0x0600) 217 #define CDC_WSA_SOFTCLIP_CLK_EN_MASK BIT(0) 218 #define CDC_WSA_SOFTCLIP_CLK_ENABLE BIT(0) 219 #define CDC_WSA_SOFTCLIP0_SOFTCLIP_CTRL (0x0604) 220 #define CDC_WSA_SOFTCLIP_EN_MASK BIT(0) 221 #define CDC_WSA_SOFTCLIP_ENABLE BIT(0) 222 #define CDC_WSA_SOFTCLIP1_CRC (0x0640) 223 #define CDC_WSA_SOFTCLIP1_SOFTCLIP_CTRL (0x0644) 224 225 /* LPASS codec version >=2.5 register offsets */ 226 #define CDC_WSA_TOP_FS_UNGATE (0x00AC) 227 #define CDC_WSA_TOP_GRP_SEL (0x00B0) 228 #define CDC_WSA_TOP_FS_UNGATE2 (0x00DC) 229 #define CDC_2_5_WSA_COMPANDER0_CTL8 (0x05A0) 230 #define CDC_2_5_WSA_COMPANDER0_CTL9 (0x05A4) 231 #define CDC_2_5_WSA_COMPANDER0_CTL10 (0x05A8) 232 #define CDC_2_5_WSA_COMPANDER0_CTL11 (0x05AC) 233 #define CDC_2_5_WSA_COMPANDER0_CTL12 (0x05B0) 234 #define CDC_2_5_WSA_COMPANDER0_CTL13 (0x05B4) 235 #define CDC_2_5_WSA_COMPANDER0_CTL14 (0x05B8) 236 #define CDC_2_5_WSA_COMPANDER0_CTL15 (0x05BC) 237 #define CDC_2_5_WSA_COMPANDER0_CTL16 (0x05C0) 238 #define CDC_2_5_WSA_COMPANDER0_CTL17 (0x05C4) 239 #define CDC_2_5_WSA_COMPANDER0_CTL18 (0x05C8) 240 #define CDC_2_5_WSA_COMPANDER0_CTL19 (0x05CC) 241 #define CDC_2_5_WSA_COMPANDER1_CTL0 (0x05E0) 242 #define CDC_2_5_WSA_COMPANDER1_CTL1 (0x05E4) 243 #define CDC_2_5_WSA_COMPANDER1_CTL2 (0x05E8) 244 #define CDC_2_5_WSA_COMPANDER1_CTL3 (0x05EC) 245 #define CDC_2_5_WSA_COMPANDER1_CTL4 (0x05F0) 246 #define CDC_2_5_WSA_COMPANDER1_CTL5 (0x05F4) 247 #define CDC_2_5_WSA_COMPANDER1_CTL6 (0x05F8) 248 #define CDC_2_5_WSA_COMPANDER1_CTL7 (0x05FC) 249 #define CDC_2_5_WSA_COMPANDER1_CTL8 (0x0600) 250 #define CDC_2_5_WSA_COMPANDER1_CTL9 (0x0604) 251 #define CDC_2_5_WSA_COMPANDER1_CTL10 (0x0608) 252 #define CDC_2_5_WSA_COMPANDER1_CTL11 (0x060C) 253 #define CDC_2_5_WSA_COMPANDER1_CTL12 (0x0610) 254 #define CDC_2_5_WSA_COMPANDER1_CTL13 (0x0614) 255 #define CDC_2_5_WSA_COMPANDER1_CTL14 (0x0618) 256 #define CDC_2_5_WSA_COMPANDER1_CTL15 (0x061C) 257 #define CDC_2_5_WSA_COMPANDER1_CTL16 (0x0620) 258 #define CDC_2_5_WSA_COMPANDER1_CTL17 (0x0624) 259 #define CDC_2_5_WSA_COMPANDER1_CTL18 (0x0628) 260 #define CDC_2_5_WSA_COMPANDER1_CTL19 (0x062C) 261 #define CDC_2_5_WSA_SOFTCLIP0_CRC (0x0640) 262 #define CDC_2_5_WSA_SOFTCLIP0_SOFTCLIP_CTRL (0x0644) 263 #define CDC_2_5_WSA_SOFTCLIP1_CRC (0x0660) 264 #define CDC_2_5_WSA_SOFTCLIP1_SOFTCLIP_CTRL (0x0664) 265 266 #define WSA_MACRO_RX_RATES (SNDRV_PCM_RATE_8000 | SNDRV_PCM_RATE_16000 |\ 267 SNDRV_PCM_RATE_32000 | SNDRV_PCM_RATE_48000 |\ 268 SNDRV_PCM_RATE_96000 | SNDRV_PCM_RATE_192000) 269 #define WSA_MACRO_RX_MIX_RATES (SNDRV_PCM_RATE_48000 |\ 270 SNDRV_PCM_RATE_96000 | SNDRV_PCM_RATE_192000) 271 #define WSA_MACRO_RX_FORMATS (SNDRV_PCM_FMTBIT_S16_LE |\ 272 SNDRV_PCM_FMTBIT_S24_LE |\ 273 SNDRV_PCM_FMTBIT_S24_3LE | SNDRV_PCM_FMTBIT_S32_LE) 274 275 #define WSA_MACRO_ECHO_RATES (SNDRV_PCM_RATE_8000 | SNDRV_PCM_RATE_16000 |\ 276 SNDRV_PCM_RATE_48000) 277 #define WSA_MACRO_ECHO_FORMATS (SNDRV_PCM_FMTBIT_S16_LE |\ 278 SNDRV_PCM_FMTBIT_S24_LE |\ 279 SNDRV_PCM_FMTBIT_S24_3LE) 280 281 #define NUM_INTERPOLATORS 2 282 #define WSA_NUM_CLKS_MAX 5 283 #define WSA_MACRO_MCLK_FREQ 19200000 284 #define WSA_MACRO_MUX_CFG_OFFSET 0x8 285 #define WSA_MACRO_MUX_CFG1_OFFSET 0x4 286 #define WSA_MACRO_RX_PATH_OFFSET 0x80 287 #define WSA_MACRO_RX_PATH_CFG3_OFFSET 0x10 288 #define WSA_MACRO_RX_PATH_DSMDEM_OFFSET 0x4C 289 #define WSA_MACRO_FS_RATE_MASK 0x0F 290 #define WSA_MACRO_EC_MIX_TX0_MASK 0x03 291 #define WSA_MACRO_EC_MIX_TX1_MASK 0x18 292 #define WSA_MACRO_MAX_DMA_CH_PER_PORT 0x2 293 294 enum { 295 WSA_MACRO_GAIN_OFFSET_M1P5_DB, 296 WSA_MACRO_GAIN_OFFSET_0_DB, 297 }; 298 enum { 299 WSA_MACRO_RX0 = 0, 300 WSA_MACRO_RX1, 301 WSA_MACRO_RX_MIX0, 302 WSA_MACRO_RX_MIX1, 303 WSA_MACRO_RX_MAX, 304 }; 305 306 enum { 307 WSA_MACRO_TX0 = 0, 308 WSA_MACRO_TX1, 309 WSA_MACRO_TX_MAX, 310 }; 311 312 enum { 313 WSA_MACRO_EC0_MUX = 0, 314 WSA_MACRO_EC1_MUX, 315 WSA_MACRO_EC_MUX_MAX, 316 }; 317 318 enum { 319 WSA_MACRO_COMP1, /* SPK_L */ 320 WSA_MACRO_COMP2, /* SPK_R */ 321 WSA_MACRO_COMP_MAX 322 }; 323 324 enum { 325 WSA_MACRO_SOFTCLIP0, /* RX0 */ 326 WSA_MACRO_SOFTCLIP1, /* RX1 */ 327 WSA_MACRO_SOFTCLIP_MAX 328 }; 329 330 enum { 331 INTn_1_INP_SEL_ZERO = 0, 332 INTn_1_INP_SEL_RX0, 333 INTn_1_INP_SEL_RX1, 334 INTn_1_INP_SEL_RX2, 335 INTn_1_INP_SEL_RX3, 336 INTn_1_INP_SEL_DEC0, 337 INTn_1_INP_SEL_DEC1, 338 }; 339 340 enum { 341 INTn_2_INP_SEL_ZERO = 0, 342 INTn_2_INP_SEL_RX0, 343 INTn_2_INP_SEL_RX1, 344 INTn_2_INP_SEL_RX2, 345 INTn_2_INP_SEL_RX3, 346 }; 347 348 struct interp_sample_rate { 349 int sample_rate; 350 int rate_val; 351 }; 352 353 static struct interp_sample_rate int_prim_sample_rate_val[] = { 354 {8000, 0x0}, /* 8K */ 355 {16000, 0x1}, /* 16K */ 356 {24000, -EINVAL},/* 24K */ 357 {32000, 0x3}, /* 32K */ 358 {48000, 0x4}, /* 48K */ 359 {96000, 0x5}, /* 96K */ 360 {192000, 0x6}, /* 192K */ 361 {384000, 0x7}, /* 384K */ 362 {44100, 0x8}, /* 44.1K */ 363 }; 364 365 static struct interp_sample_rate int_mix_sample_rate_val[] = { 366 {48000, 0x4}, /* 48K */ 367 {96000, 0x5}, /* 96K */ 368 {192000, 0x6}, /* 192K */ 369 }; 370 371 /* Matches also rx_mux_text */ 372 enum { 373 WSA_MACRO_AIF1_PB, 374 WSA_MACRO_AIF_MIX1_PB, 375 WSA_MACRO_AIF_VI, 376 WSA_MACRO_AIF_ECHO, 377 WSA_MACRO_MAX_DAIS, 378 }; 379 380 /** 381 * struct wsa_reg_layout - Register layout differences 382 * @rx_intx_1_mix_inp0_sel_mask: register mask for RX_INTX_1_MIX_INP0_SEL_MASK 383 * @rx_intx_1_mix_inp1_sel_mask: register mask for RX_INTX_1_MIX_INP1_SEL_MASK 384 * @rx_intx_1_mix_inp2_sel_mask: register mask for RX_INTX_1_MIX_INP2_SEL_MASK 385 * @rx_intx_2_sel_mask: register mask for RX_INTX_2_SEL_MASK 386 * @compander1_reg_offset: offset between compander registers (compander1 - compander0) 387 * @softclip0_reg_base: base address of softclip0 register 388 * @softclip1_reg_offset: offset between compander registers (softclip1 - softclip0) 389 */ 390 struct wsa_reg_layout { 391 unsigned int rx_intx_1_mix_inp0_sel_mask; 392 unsigned int rx_intx_1_mix_inp1_sel_mask; 393 unsigned int rx_intx_1_mix_inp2_sel_mask; 394 unsigned int rx_intx_2_sel_mask; 395 unsigned int compander1_reg_offset; 396 unsigned int softclip0_reg_base; 397 unsigned int softclip1_reg_offset; 398 }; 399 400 struct wsa_macro { 401 struct device *dev; 402 int comp_enabled[WSA_MACRO_COMP_MAX]; 403 int ec_hq[WSA_MACRO_RX1 + 1]; 404 u16 prim_int_users[WSA_MACRO_RX1 + 1]; 405 u16 wsa_mclk_users; 406 enum lpass_codec_version codec_version; 407 const struct wsa_reg_layout *reg_layout; 408 unsigned long active_ch_mask[WSA_MACRO_MAX_DAIS]; 409 unsigned long active_ch_cnt[WSA_MACRO_MAX_DAIS]; 410 int rx_port_value[WSA_MACRO_RX_MAX]; 411 int ear_spkr_gain; 412 int spkr_gain_offset; 413 int spkr_mode; 414 u32 pcm_rate_vi; 415 int is_softclip_on[WSA_MACRO_SOFTCLIP_MAX]; 416 int softclip_clk_users[WSA_MACRO_SOFTCLIP_MAX]; 417 struct regmap *regmap; 418 struct clk *mclk; 419 struct clk *npl; 420 struct clk *macro; 421 struct clk *dcodec; 422 struct clk *fsgen; 423 struct clk_hw hw; 424 }; 425 #define to_wsa_macro(_hw) container_of(_hw, struct wsa_macro, hw) 426 427 static const struct wsa_reg_layout wsa_codec_v2_1 = { 428 .rx_intx_1_mix_inp0_sel_mask = GENMASK(2, 0), 429 .rx_intx_1_mix_inp1_sel_mask = GENMASK(5, 3), 430 .rx_intx_1_mix_inp2_sel_mask = GENMASK(5, 3), 431 .rx_intx_2_sel_mask = GENMASK(2, 0), 432 .compander1_reg_offset = 0x40, 433 .softclip0_reg_base = 0x600, 434 .softclip1_reg_offset = 0x40, 435 }; 436 437 static const struct wsa_reg_layout wsa_codec_v2_5 = { 438 .rx_intx_1_mix_inp0_sel_mask = GENMASK(3, 0), 439 .rx_intx_1_mix_inp1_sel_mask = GENMASK(7, 4), 440 .rx_intx_1_mix_inp2_sel_mask = GENMASK(7, 4), 441 .rx_intx_2_sel_mask = GENMASK(3, 0), 442 .compander1_reg_offset = 0x60, 443 .softclip0_reg_base = 0x640, 444 .softclip1_reg_offset = 0x20, 445 }; 446 447 static const DECLARE_TLV_DB_SCALE(digital_gain, -8400, 100, -8400); 448 449 static const char *const rx_text_v2_1[] = { 450 "ZERO", "RX0", "RX1", "RX_MIX0", "RX_MIX1", "DEC0", "DEC1" 451 }; 452 453 static const char *const rx_text_v2_5[] = { 454 "ZERO", "RX0", "RX1", "RX_MIX0", "RX_MIX1", "RX4", "RX5", "RX6", "RX7", "RX8", "DEC0", "DEC1" 455 }; 456 457 static const char *const rx_mix_text_v2_1[] = { 458 "ZERO", "RX0", "RX1", "RX_MIX0", "RX_MIX1" 459 }; 460 461 static const char *const rx_mix_text_v2_5[] = { 462 "ZERO", "RX0", "RX1", "RX_MIX0", "RX_MIX1", "RX4", "RX5", "RX6", "RX7", "RX8" 463 }; 464 465 static const char *const rx_mix_ec_text[] = { 466 "ZERO", "RX_MIX_TX0", "RX_MIX_TX1" 467 }; 468 469 /* Order must match WSA_MACRO_MAX_DAIS enum (offset by 1) */ 470 static const char *const rx_mux_text[] = { 471 "ZERO", "AIF1_PB", "AIF_MIX1_PB" 472 }; 473 474 static const char *const rx_sidetone_mix_text[] = { 475 "ZERO", "SRC0" 476 }; 477 478 static const char * const wsa_macro_ear_spkr_pa_gain_text[] = { 479 "G_DEFAULT", "G_0_DB", "G_1_DB", "G_2_DB", "G_3_DB", 480 "G_4_DB", "G_5_DB", "G_6_DB" 481 }; 482 483 static SOC_ENUM_SINGLE_EXT_DECL(wsa_macro_ear_spkr_pa_gain_enum, 484 wsa_macro_ear_spkr_pa_gain_text); 485 486 /* RX INT0 */ 487 static const struct soc_enum rx0_prim_inp0_chain_enum_v2_1 = 488 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT0_CFG0, 489 0, 7, rx_text_v2_1); 490 491 static const struct soc_enum rx0_prim_inp1_chain_enum_v2_1 = 492 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT0_CFG0, 493 3, 7, rx_text_v2_1); 494 495 static const struct soc_enum rx0_prim_inp2_chain_enum_v2_1 = 496 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT0_CFG1, 497 3, 7, rx_text_v2_1); 498 499 static const struct soc_enum rx0_mix_chain_enum_v2_1 = 500 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT0_CFG1, 501 0, 5, rx_mix_text_v2_1); 502 503 static const struct soc_enum rx0_prim_inp0_chain_enum_v2_5 = 504 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT0_CFG0, 505 0, 12, rx_text_v2_5); 506 507 static const struct soc_enum rx0_prim_inp1_chain_enum_v2_5 = 508 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT0_CFG0, 509 4, 12, rx_text_v2_5); 510 511 static const struct soc_enum rx0_prim_inp2_chain_enum_v2_5 = 512 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT0_CFG1, 513 4, 12, rx_text_v2_5); 514 515 static const struct soc_enum rx0_mix_chain_enum_v2_5 = 516 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT0_CFG1, 517 0, 10, rx_mix_text_v2_5); 518 519 static const struct soc_enum rx0_sidetone_mix_enum = 520 SOC_ENUM_SINGLE(SND_SOC_NOPM, 0, 2, rx_sidetone_mix_text); 521 522 static const struct snd_kcontrol_new rx0_prim_inp0_mux_v2_1 = 523 SOC_DAPM_ENUM("WSA_RX0 INP0 Mux", rx0_prim_inp0_chain_enum_v2_1); 524 525 static const struct snd_kcontrol_new rx0_prim_inp1_mux_v2_1 = 526 SOC_DAPM_ENUM("WSA_RX0 INP1 Mux", rx0_prim_inp1_chain_enum_v2_1); 527 528 static const struct snd_kcontrol_new rx0_prim_inp2_mux_v2_1 = 529 SOC_DAPM_ENUM("WSA_RX0 INP2 Mux", rx0_prim_inp2_chain_enum_v2_1); 530 531 static const struct snd_kcontrol_new rx0_mix_mux_v2_1 = 532 SOC_DAPM_ENUM("WSA_RX0 MIX Mux", rx0_mix_chain_enum_v2_1); 533 534 static const struct snd_kcontrol_new rx0_prim_inp0_mux_v2_5 = 535 SOC_DAPM_ENUM("WSA_RX0 INP0 Mux", rx0_prim_inp0_chain_enum_v2_5); 536 537 static const struct snd_kcontrol_new rx0_prim_inp1_mux_v2_5 = 538 SOC_DAPM_ENUM("WSA_RX0 INP1 Mux", rx0_prim_inp1_chain_enum_v2_5); 539 540 static const struct snd_kcontrol_new rx0_prim_inp2_mux_v2_5 = 541 SOC_DAPM_ENUM("WSA_RX0 INP2 Mux", rx0_prim_inp2_chain_enum_v2_5); 542 543 static const struct snd_kcontrol_new rx0_mix_mux_v2_5 = 544 SOC_DAPM_ENUM("WSA_RX0 MIX Mux", rx0_mix_chain_enum_v2_5); 545 546 static const struct snd_kcontrol_new rx0_sidetone_mix_mux = 547 SOC_DAPM_ENUM("WSA_RX0 SIDETONE MIX Mux", rx0_sidetone_mix_enum); 548 549 /* RX INT1 */ 550 static const struct soc_enum rx1_prim_inp0_chain_enum_v2_1 = 551 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT1_CFG0, 552 0, 7, rx_text_v2_1); 553 554 static const struct soc_enum rx1_prim_inp1_chain_enum_v2_1 = 555 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT1_CFG0, 556 3, 7, rx_text_v2_1); 557 558 static const struct soc_enum rx1_prim_inp2_chain_enum_v2_1 = 559 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT1_CFG1, 560 3, 7, rx_text_v2_1); 561 562 static const struct soc_enum rx1_mix_chain_enum_v2_1 = 563 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT1_CFG1, 564 0, 5, rx_mix_text_v2_1); 565 566 static const struct soc_enum rx1_prim_inp0_chain_enum_v2_5 = 567 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT1_CFG0, 568 0, 12, rx_text_v2_5); 569 570 static const struct soc_enum rx1_prim_inp1_chain_enum_v2_5 = 571 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT1_CFG0, 572 4, 12, rx_text_v2_5); 573 574 static const struct soc_enum rx1_prim_inp2_chain_enum_v2_5 = 575 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT1_CFG1, 576 4, 12, rx_text_v2_5); 577 578 static const struct soc_enum rx1_mix_chain_enum_v2_5 = 579 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_INT1_CFG1, 580 0, 10, rx_mix_text_v2_5); 581 582 static const struct snd_kcontrol_new rx1_prim_inp0_mux_v2_1 = 583 SOC_DAPM_ENUM("WSA_RX1 INP0 Mux", rx1_prim_inp0_chain_enum_v2_1); 584 585 static const struct snd_kcontrol_new rx1_prim_inp1_mux_v2_1 = 586 SOC_DAPM_ENUM("WSA_RX1 INP1 Mux", rx1_prim_inp1_chain_enum_v2_1); 587 588 static const struct snd_kcontrol_new rx1_prim_inp2_mux_v2_1 = 589 SOC_DAPM_ENUM("WSA_RX1 INP2 Mux", rx1_prim_inp2_chain_enum_v2_1); 590 591 static const struct snd_kcontrol_new rx1_mix_mux_v2_1 = 592 SOC_DAPM_ENUM("WSA_RX1 MIX Mux", rx1_mix_chain_enum_v2_1); 593 594 static const struct snd_kcontrol_new rx1_prim_inp0_mux_v2_5 = 595 SOC_DAPM_ENUM("WSA_RX1 INP0 Mux", rx1_prim_inp0_chain_enum_v2_5); 596 597 static const struct snd_kcontrol_new rx1_prim_inp1_mux_v2_5 = 598 SOC_DAPM_ENUM("WSA_RX1 INP1 Mux", rx1_prim_inp1_chain_enum_v2_5); 599 600 static const struct snd_kcontrol_new rx1_prim_inp2_mux_v2_5 = 601 SOC_DAPM_ENUM("WSA_RX1 INP2 Mux", rx1_prim_inp2_chain_enum_v2_5); 602 603 static const struct snd_kcontrol_new rx1_mix_mux_v2_5 = 604 SOC_DAPM_ENUM("WSA_RX1 MIX Mux", rx1_mix_chain_enum_v2_5); 605 606 static const struct soc_enum rx_mix_ec0_enum = 607 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_MIX_CFG0, 608 0, 3, rx_mix_ec_text); 609 610 static const struct soc_enum rx_mix_ec1_enum = 611 SOC_ENUM_SINGLE(CDC_WSA_RX_INP_MUX_RX_MIX_CFG0, 612 3, 3, rx_mix_ec_text); 613 614 static const struct snd_kcontrol_new rx_mix_ec0_mux = 615 SOC_DAPM_ENUM("WSA RX_MIX EC0_Mux", rx_mix_ec0_enum); 616 617 static const struct snd_kcontrol_new rx_mix_ec1_mux = 618 SOC_DAPM_ENUM("WSA RX_MIX EC1_Mux", rx_mix_ec1_enum); 619 620 static const struct reg_default wsa_defaults[] = { 621 /* WSA Macro */ 622 { CDC_WSA_CLK_RST_CTRL_MCLK_CONTROL, 0x00}, 623 { CDC_WSA_CLK_RST_CTRL_FS_CNT_CONTROL, 0x00}, 624 { CDC_WSA_CLK_RST_CTRL_SWR_CONTROL, 0x00}, 625 { CDC_WSA_TOP_TOP_CFG0, 0x00}, 626 { CDC_WSA_TOP_TOP_CFG1, 0x00}, 627 { CDC_WSA_TOP_FREQ_MCLK, 0x00}, 628 { CDC_WSA_TOP_DEBUG_BUS_SEL, 0x00}, 629 { CDC_WSA_TOP_DEBUG_EN0, 0x00}, 630 { CDC_WSA_TOP_DEBUG_EN1, 0x00}, 631 { CDC_WSA_TOP_DEBUG_DSM_LB, 0x88}, 632 { CDC_WSA_TOP_RX_I2S_CTL, 0x0C}, 633 { CDC_WSA_TOP_TX_I2S_CTL, 0x0C}, 634 { CDC_WSA_TOP_I2S_CLK, 0x02}, 635 { CDC_WSA_TOP_I2S_RESET, 0x00}, 636 { CDC_WSA_RX_INP_MUX_RX_INT0_CFG0, 0x00}, 637 { CDC_WSA_RX_INP_MUX_RX_INT0_CFG1, 0x00}, 638 { CDC_WSA_RX_INP_MUX_RX_INT1_CFG0, 0x00}, 639 { CDC_WSA_RX_INP_MUX_RX_INT1_CFG1, 0x00}, 640 { CDC_WSA_RX_INP_MUX_RX_MIX_CFG0, 0x00}, 641 { CDC_WSA_RX_INP_MUX_RX_EC_CFG0, 0x00}, 642 { CDC_WSA_RX_INP_MUX_SOFTCLIP_CFG0, 0x00}, 643 { CDC_WSA_INTR_CTRL_CFG, 0x00}, 644 { CDC_WSA_INTR_CTRL_CLR_COMMIT, 0x00}, 645 { CDC_WSA_INTR_CTRL_PIN1_MASK0, 0xFF}, 646 { CDC_WSA_INTR_CTRL_PIN1_STATUS0, 0x00}, 647 { CDC_WSA_INTR_CTRL_PIN1_CLEAR0, 0x00}, 648 { CDC_WSA_INTR_CTRL_PIN2_MASK0, 0xFF}, 649 { CDC_WSA_INTR_CTRL_PIN2_STATUS0, 0x00}, 650 { CDC_WSA_INTR_CTRL_PIN2_CLEAR0, 0x00}, 651 { CDC_WSA_INTR_CTRL_LEVEL0, 0x00}, 652 { CDC_WSA_INTR_CTRL_BYPASS0, 0x00}, 653 { CDC_WSA_INTR_CTRL_SET0, 0x00}, 654 { CDC_WSA_RX0_RX_PATH_CTL, 0x04}, 655 { CDC_WSA_RX0_RX_PATH_CFG0, 0x00}, 656 { CDC_WSA_RX0_RX_PATH_CFG1, 0x64}, 657 { CDC_WSA_RX0_RX_PATH_CFG2, 0x8F}, 658 { CDC_WSA_RX0_RX_PATH_CFG3, 0x00}, 659 { CDC_WSA_RX0_RX_VOL_CTL, 0x00}, 660 { CDC_WSA_RX0_RX_PATH_MIX_CTL, 0x04}, 661 { CDC_WSA_RX0_RX_PATH_MIX_CFG, 0x7E}, 662 { CDC_WSA_RX0_RX_VOL_MIX_CTL, 0x00}, 663 { CDC_WSA_RX0_RX_PATH_SEC0, 0x04}, 664 { CDC_WSA_RX0_RX_PATH_SEC1, 0x08}, 665 { CDC_WSA_RX0_RX_PATH_SEC2, 0x00}, 666 { CDC_WSA_RX0_RX_PATH_SEC3, 0x00}, 667 { CDC_WSA_RX0_RX_PATH_SEC5, 0x00}, 668 { CDC_WSA_RX0_RX_PATH_SEC6, 0x00}, 669 { CDC_WSA_RX0_RX_PATH_SEC7, 0x00}, 670 { CDC_WSA_RX0_RX_PATH_MIX_SEC0, 0x08}, 671 { CDC_WSA_RX0_RX_PATH_MIX_SEC1, 0x00}, 672 { CDC_WSA_RX0_RX_PATH_DSMDEM_CTL, 0x00}, 673 { CDC_WSA_RX1_RX_PATH_CFG0, 0x00}, 674 { CDC_WSA_RX1_RX_PATH_CFG1, 0x64}, 675 { CDC_WSA_RX1_RX_PATH_CFG2, 0x8F}, 676 { CDC_WSA_RX1_RX_PATH_CFG3, 0x00}, 677 { CDC_WSA_RX1_RX_VOL_CTL, 0x00}, 678 { CDC_WSA_RX1_RX_PATH_MIX_CTL, 0x04}, 679 { CDC_WSA_RX1_RX_PATH_MIX_CFG, 0x7E}, 680 { CDC_WSA_RX1_RX_VOL_MIX_CTL, 0x00}, 681 { CDC_WSA_RX1_RX_PATH_SEC0, 0x04}, 682 { CDC_WSA_RX1_RX_PATH_SEC1, 0x08}, 683 { CDC_WSA_RX1_RX_PATH_SEC2, 0x00}, 684 { CDC_WSA_RX1_RX_PATH_SEC3, 0x00}, 685 { CDC_WSA_RX1_RX_PATH_SEC5, 0x00}, 686 { CDC_WSA_RX1_RX_PATH_SEC6, 0x00}, 687 { CDC_WSA_RX1_RX_PATH_SEC7, 0x00}, 688 { CDC_WSA_RX1_RX_PATH_MIX_SEC0, 0x08}, 689 { CDC_WSA_RX1_RX_PATH_MIX_SEC1, 0x00}, 690 { CDC_WSA_RX1_RX_PATH_DSMDEM_CTL, 0x00}, 691 { CDC_WSA_BOOST0_BOOST_PATH_CTL, 0x00}, 692 { CDC_WSA_BOOST0_BOOST_CTL, 0xD0}, 693 { CDC_WSA_BOOST0_BOOST_CFG1, 0x89}, 694 { CDC_WSA_BOOST0_BOOST_CFG2, 0x04}, 695 { CDC_WSA_BOOST1_BOOST_PATH_CTL, 0x00}, 696 { CDC_WSA_BOOST1_BOOST_CTL, 0xD0}, 697 { CDC_WSA_BOOST1_BOOST_CFG1, 0x89}, 698 { CDC_WSA_BOOST1_BOOST_CFG2, 0x04}, 699 { CDC_WSA_COMPANDER0_CTL0, 0x60}, 700 { CDC_WSA_COMPANDER0_CTL1, 0xDB}, 701 { CDC_WSA_COMPANDER0_CTL2, 0xFF}, 702 { CDC_WSA_COMPANDER0_CTL3, 0x35}, 703 { CDC_WSA_COMPANDER0_CTL4, 0xFF}, 704 { CDC_WSA_COMPANDER0_CTL5, 0x00}, 705 { CDC_WSA_COMPANDER0_CTL6, 0x01}, 706 { CDC_WSA_COMPANDER0_CTL7, 0x28}, 707 { CDC_WSA_EC_HQ0_EC_REF_HQ_PATH_CTL, 0x00}, 708 { CDC_WSA_EC_HQ0_EC_REF_HQ_CFG0, 0x01}, 709 { CDC_WSA_EC_HQ1_EC_REF_HQ_PATH_CTL, 0x00}, 710 { CDC_WSA_EC_HQ1_EC_REF_HQ_CFG0, 0x01}, 711 { CDC_WSA_SPLINE_ASRC0_CLK_RST_CTL, 0x00}, 712 { CDC_WSA_SPLINE_ASRC0_CTL0, 0x00}, 713 { CDC_WSA_SPLINE_ASRC0_CTL1, 0x00}, 714 { CDC_WSA_SPLINE_ASRC0_FIFO_CTL, 0xA8}, 715 { CDC_WSA_SPLINE_ASRC0_STATUS_FMIN_CNTR_LSB, 0x00}, 716 { CDC_WSA_SPLINE_ASRC0_STATUS_FMIN_CNTR_MSB, 0x00}, 717 { CDC_WSA_SPLINE_ASRC0_STATUS_FMAX_CNTR_LSB, 0x00}, 718 { CDC_WSA_SPLINE_ASRC0_STATUS_FMAX_CNTR_MSB, 0x00}, 719 { CDC_WSA_SPLINE_ASRC0_STATUS_FIFO, 0x00}, 720 { CDC_WSA_SPLINE_ASRC1_CLK_RST_CTL, 0x00}, 721 { CDC_WSA_SPLINE_ASRC1_CTL0, 0x00}, 722 { CDC_WSA_SPLINE_ASRC1_CTL1, 0x00}, 723 { CDC_WSA_SPLINE_ASRC1_FIFO_CTL, 0xA8}, 724 { CDC_WSA_SPLINE_ASRC1_STATUS_FMIN_CNTR_LSB, 0x00}, 725 { CDC_WSA_SPLINE_ASRC1_STATUS_FMIN_CNTR_MSB, 0x00}, 726 { CDC_WSA_SPLINE_ASRC1_STATUS_FMAX_CNTR_LSB, 0x00}, 727 { CDC_WSA_SPLINE_ASRC1_STATUS_FMAX_CNTR_MSB, 0x00}, 728 { CDC_WSA_SPLINE_ASRC1_STATUS_FIFO, 0x00}, 729 }; 730 731 static const struct reg_default wsa_defaults_v2_1[] = { 732 { CDC_WSA_TX0_SPKR_PROT_PATH_CTL, 0x02}, 733 { CDC_WSA_TX0_SPKR_PROT_PATH_CFG0, 0x00}, 734 { CDC_WSA_TX1_SPKR_PROT_PATH_CTL, 0x02}, 735 { CDC_WSA_TX1_SPKR_PROT_PATH_CFG0, 0x00}, 736 { CDC_WSA_TX2_SPKR_PROT_PATH_CTL, 0x02}, 737 { CDC_WSA_TX2_SPKR_PROT_PATH_CFG0, 0x00}, 738 { CDC_WSA_TX3_SPKR_PROT_PATH_CTL, 0x02}, 739 { CDC_WSA_TX3_SPKR_PROT_PATH_CFG0, 0x00}, 740 { CDC_WSA_COMPANDER1_CTL0, 0x60}, 741 { CDC_WSA_COMPANDER1_CTL1, 0xDB}, 742 { CDC_WSA_COMPANDER1_CTL2, 0xFF}, 743 { CDC_WSA_COMPANDER1_CTL3, 0x35}, 744 { CDC_WSA_COMPANDER1_CTL4, 0xFF}, 745 { CDC_WSA_COMPANDER1_CTL5, 0x00}, 746 { CDC_WSA_COMPANDER1_CTL6, 0x01}, 747 { CDC_WSA_COMPANDER1_CTL7, 0x28}, 748 { CDC_WSA_SOFTCLIP0_CRC, 0x00}, 749 { CDC_WSA_SOFTCLIP0_SOFTCLIP_CTRL, 0x38}, 750 { CDC_WSA_SOFTCLIP1_CRC, 0x00}, 751 { CDC_WSA_SOFTCLIP1_SOFTCLIP_CTRL, 0x38}, 752 }; 753 754 static const struct reg_default wsa_defaults_v2_5[] = { 755 { CDC_WSA_TOP_FS_UNGATE, 0xFF}, 756 { CDC_WSA_TOP_GRP_SEL, 0x08}, 757 { CDC_WSA_TOP_FS_UNGATE2, 0x1F}, 758 { CDC_WSA_TX0_SPKR_PROT_PATH_CTL, 0x04}, 759 { CDC_WSA_TX0_SPKR_PROT_PATH_CFG0, 0x02}, 760 { CDC_WSA_TX1_SPKR_PROT_PATH_CTL, 0x04}, 761 { CDC_WSA_TX1_SPKR_PROT_PATH_CFG0, 0x02}, 762 { CDC_WSA_TX2_SPKR_PROT_PATH_CTL, 0x04}, 763 { CDC_WSA_TX2_SPKR_PROT_PATH_CFG0, 0x02}, 764 { CDC_WSA_TX3_SPKR_PROT_PATH_CTL, 0x04}, 765 { CDC_WSA_TX3_SPKR_PROT_PATH_CFG0, 0x02}, 766 { CDC_2_5_WSA_COMPANDER0_CTL8, 0x00}, 767 { CDC_2_5_WSA_COMPANDER0_CTL9, 0x00}, 768 { CDC_2_5_WSA_COMPANDER0_CTL10, 0x06}, 769 { CDC_2_5_WSA_COMPANDER0_CTL11, 0x12}, 770 { CDC_2_5_WSA_COMPANDER0_CTL12, 0x1E}, 771 { CDC_2_5_WSA_COMPANDER0_CTL13, 0x24}, 772 { CDC_2_5_WSA_COMPANDER0_CTL14, 0x24}, 773 { CDC_2_5_WSA_COMPANDER0_CTL15, 0x24}, 774 { CDC_2_5_WSA_COMPANDER0_CTL16, 0x00}, 775 { CDC_2_5_WSA_COMPANDER0_CTL17, 0x24}, 776 { CDC_2_5_WSA_COMPANDER0_CTL18, 0x2A}, 777 { CDC_2_5_WSA_COMPANDER0_CTL19, 0x16}, 778 { CDC_2_5_WSA_COMPANDER1_CTL0, 0x60}, 779 { CDC_2_5_WSA_COMPANDER1_CTL1, 0xDB}, 780 { CDC_2_5_WSA_COMPANDER1_CTL2, 0xFF}, 781 { CDC_2_5_WSA_COMPANDER1_CTL3, 0x35}, 782 { CDC_2_5_WSA_COMPANDER1_CTL4, 0xFF}, 783 { CDC_2_5_WSA_COMPANDER1_CTL5, 0x00}, 784 { CDC_2_5_WSA_COMPANDER1_CTL6, 0x01}, 785 { CDC_2_5_WSA_COMPANDER1_CTL7, 0x28}, 786 { CDC_2_5_WSA_COMPANDER1_CTL8, 0x00}, 787 { CDC_2_5_WSA_COMPANDER1_CTL9, 0x00}, 788 { CDC_2_5_WSA_COMPANDER1_CTL10, 0x06}, 789 { CDC_2_5_WSA_COMPANDER1_CTL11, 0x12}, 790 { CDC_2_5_WSA_COMPANDER1_CTL12, 0x1E}, 791 { CDC_2_5_WSA_COMPANDER1_CTL13, 0x24}, 792 { CDC_2_5_WSA_COMPANDER1_CTL14, 0x24}, 793 { CDC_2_5_WSA_COMPANDER1_CTL15, 0x24}, 794 { CDC_2_5_WSA_COMPANDER1_CTL16, 0x00}, 795 { CDC_2_5_WSA_COMPANDER1_CTL17, 0x24}, 796 { CDC_2_5_WSA_COMPANDER1_CTL18, 0x2A}, 797 { CDC_2_5_WSA_COMPANDER1_CTL19, 0x16}, 798 { CDC_2_5_WSA_SOFTCLIP0_CRC, 0x00}, 799 { CDC_2_5_WSA_SOFTCLIP0_SOFTCLIP_CTRL, 0x38}, 800 { CDC_2_5_WSA_SOFTCLIP1_CRC, 0x00}, 801 { CDC_2_5_WSA_SOFTCLIP1_SOFTCLIP_CTRL, 0x38}, 802 }; 803 804 static bool wsa_is_wronly_register(struct device *dev, 805 unsigned int reg) 806 { 807 switch (reg) { 808 case CDC_WSA_INTR_CTRL_CLR_COMMIT: 809 case CDC_WSA_INTR_CTRL_PIN1_CLEAR0: 810 case CDC_WSA_INTR_CTRL_PIN2_CLEAR0: 811 return true; 812 } 813 814 return false; 815 } 816 817 static bool wsa_is_rw_register_v2_1(struct device *dev, unsigned int reg) 818 { 819 switch (reg) { 820 case CDC_WSA_COMPANDER1_CTL0: 821 case CDC_WSA_COMPANDER1_CTL1: 822 case CDC_WSA_COMPANDER1_CTL2: 823 case CDC_WSA_COMPANDER1_CTL3: 824 case CDC_WSA_COMPANDER1_CTL4: 825 case CDC_WSA_COMPANDER1_CTL5: 826 case CDC_WSA_COMPANDER1_CTL7: 827 case CDC_WSA_SOFTCLIP0_CRC: 828 case CDC_WSA_SOFTCLIP0_SOFTCLIP_CTRL: 829 case CDC_WSA_SOFTCLIP1_CRC: 830 case CDC_WSA_SOFTCLIP1_SOFTCLIP_CTRL: 831 return true; 832 } 833 834 return false; 835 } 836 837 static bool wsa_is_rw_register_v2_5(struct device *dev, unsigned int reg) 838 { 839 switch (reg) { 840 case CDC_WSA_TOP_FS_UNGATE: 841 case CDC_WSA_TOP_GRP_SEL: 842 case CDC_WSA_TOP_FS_UNGATE2: 843 case CDC_2_5_WSA_COMPANDER0_CTL8: 844 case CDC_2_5_WSA_COMPANDER0_CTL9: 845 case CDC_2_5_WSA_COMPANDER0_CTL10: 846 case CDC_2_5_WSA_COMPANDER0_CTL11: 847 case CDC_2_5_WSA_COMPANDER0_CTL12: 848 case CDC_2_5_WSA_COMPANDER0_CTL13: 849 case CDC_2_5_WSA_COMPANDER0_CTL14: 850 case CDC_2_5_WSA_COMPANDER0_CTL15: 851 case CDC_2_5_WSA_COMPANDER0_CTL16: 852 case CDC_2_5_WSA_COMPANDER0_CTL17: 853 case CDC_2_5_WSA_COMPANDER0_CTL18: 854 case CDC_2_5_WSA_COMPANDER0_CTL19: 855 case CDC_2_5_WSA_COMPANDER1_CTL0: 856 case CDC_2_5_WSA_COMPANDER1_CTL1: 857 case CDC_2_5_WSA_COMPANDER1_CTL2: 858 case CDC_2_5_WSA_COMPANDER1_CTL3: 859 case CDC_2_5_WSA_COMPANDER1_CTL4: 860 case CDC_2_5_WSA_COMPANDER1_CTL5: 861 case CDC_2_5_WSA_COMPANDER1_CTL7: 862 case CDC_2_5_WSA_COMPANDER1_CTL8: 863 case CDC_2_5_WSA_COMPANDER1_CTL9: 864 case CDC_2_5_WSA_COMPANDER1_CTL10: 865 case CDC_2_5_WSA_COMPANDER1_CTL11: 866 case CDC_2_5_WSA_COMPANDER1_CTL12: 867 case CDC_2_5_WSA_COMPANDER1_CTL13: 868 case CDC_2_5_WSA_COMPANDER1_CTL14: 869 case CDC_2_5_WSA_COMPANDER1_CTL15: 870 case CDC_2_5_WSA_COMPANDER1_CTL16: 871 case CDC_2_5_WSA_COMPANDER1_CTL17: 872 case CDC_2_5_WSA_COMPANDER1_CTL18: 873 case CDC_2_5_WSA_COMPANDER1_CTL19: 874 case CDC_2_5_WSA_SOFTCLIP0_CRC: 875 case CDC_2_5_WSA_SOFTCLIP0_SOFTCLIP_CTRL: 876 case CDC_2_5_WSA_SOFTCLIP1_CRC: 877 case CDC_2_5_WSA_SOFTCLIP1_SOFTCLIP_CTRL: 878 return true; 879 } 880 881 return false; 882 } 883 884 static bool wsa_is_rw_register(struct device *dev, unsigned int reg) 885 { 886 struct wsa_macro *wsa = dev_get_drvdata(dev); 887 888 switch (reg) { 889 case CDC_WSA_CLK_RST_CTRL_MCLK_CONTROL: 890 case CDC_WSA_CLK_RST_CTRL_FS_CNT_CONTROL: 891 case CDC_WSA_CLK_RST_CTRL_SWR_CONTROL: 892 case CDC_WSA_TOP_TOP_CFG0: 893 case CDC_WSA_TOP_TOP_CFG1: 894 case CDC_WSA_TOP_FREQ_MCLK: 895 case CDC_WSA_TOP_DEBUG_BUS_SEL: 896 case CDC_WSA_TOP_DEBUG_EN0: 897 case CDC_WSA_TOP_DEBUG_EN1: 898 case CDC_WSA_TOP_DEBUG_DSM_LB: 899 case CDC_WSA_TOP_RX_I2S_CTL: 900 case CDC_WSA_TOP_TX_I2S_CTL: 901 case CDC_WSA_TOP_I2S_CLK: 902 case CDC_WSA_TOP_I2S_RESET: 903 case CDC_WSA_RX_INP_MUX_RX_INT0_CFG0: 904 case CDC_WSA_RX_INP_MUX_RX_INT0_CFG1: 905 case CDC_WSA_RX_INP_MUX_RX_INT1_CFG0: 906 case CDC_WSA_RX_INP_MUX_RX_INT1_CFG1: 907 case CDC_WSA_RX_INP_MUX_RX_MIX_CFG0: 908 case CDC_WSA_RX_INP_MUX_RX_EC_CFG0: 909 case CDC_WSA_RX_INP_MUX_SOFTCLIP_CFG0: 910 case CDC_WSA_TX0_SPKR_PROT_PATH_CTL: 911 case CDC_WSA_TX0_SPKR_PROT_PATH_CFG0: 912 case CDC_WSA_TX1_SPKR_PROT_PATH_CTL: 913 case CDC_WSA_TX1_SPKR_PROT_PATH_CFG0: 914 case CDC_WSA_TX2_SPKR_PROT_PATH_CTL: 915 case CDC_WSA_TX2_SPKR_PROT_PATH_CFG0: 916 case CDC_WSA_TX3_SPKR_PROT_PATH_CTL: 917 case CDC_WSA_TX3_SPKR_PROT_PATH_CFG0: 918 case CDC_WSA_INTR_CTRL_CFG: 919 case CDC_WSA_INTR_CTRL_PIN1_MASK0: 920 case CDC_WSA_INTR_CTRL_PIN2_MASK0: 921 case CDC_WSA_INTR_CTRL_LEVEL0: 922 case CDC_WSA_INTR_CTRL_BYPASS0: 923 case CDC_WSA_INTR_CTRL_SET0: 924 case CDC_WSA_RX0_RX_PATH_CTL: 925 case CDC_WSA_RX0_RX_PATH_CFG0: 926 case CDC_WSA_RX0_RX_PATH_CFG1: 927 case CDC_WSA_RX0_RX_PATH_CFG2: 928 case CDC_WSA_RX0_RX_PATH_CFG3: 929 case CDC_WSA_RX0_RX_VOL_CTL: 930 case CDC_WSA_RX0_RX_PATH_MIX_CTL: 931 case CDC_WSA_RX0_RX_PATH_MIX_CFG: 932 case CDC_WSA_RX0_RX_VOL_MIX_CTL: 933 case CDC_WSA_RX0_RX_PATH_SEC0: 934 case CDC_WSA_RX0_RX_PATH_SEC1: 935 case CDC_WSA_RX0_RX_PATH_SEC2: 936 case CDC_WSA_RX0_RX_PATH_SEC3: 937 case CDC_WSA_RX0_RX_PATH_SEC5: 938 case CDC_WSA_RX0_RX_PATH_SEC6: 939 case CDC_WSA_RX0_RX_PATH_SEC7: 940 case CDC_WSA_RX0_RX_PATH_MIX_SEC0: 941 case CDC_WSA_RX0_RX_PATH_MIX_SEC1: 942 case CDC_WSA_RX0_RX_PATH_DSMDEM_CTL: 943 case CDC_WSA_RX1_RX_PATH_CTL: 944 case CDC_WSA_RX1_RX_PATH_CFG0: 945 case CDC_WSA_RX1_RX_PATH_CFG1: 946 case CDC_WSA_RX1_RX_PATH_CFG2: 947 case CDC_WSA_RX1_RX_PATH_CFG3: 948 case CDC_WSA_RX1_RX_VOL_CTL: 949 case CDC_WSA_RX1_RX_PATH_MIX_CTL: 950 case CDC_WSA_RX1_RX_PATH_MIX_CFG: 951 case CDC_WSA_RX1_RX_VOL_MIX_CTL: 952 case CDC_WSA_RX1_RX_PATH_SEC0: 953 case CDC_WSA_RX1_RX_PATH_SEC1: 954 case CDC_WSA_RX1_RX_PATH_SEC2: 955 case CDC_WSA_RX1_RX_PATH_SEC3: 956 case CDC_WSA_RX1_RX_PATH_SEC5: 957 case CDC_WSA_RX1_RX_PATH_SEC6: 958 case CDC_WSA_RX1_RX_PATH_SEC7: 959 case CDC_WSA_RX1_RX_PATH_MIX_SEC0: 960 case CDC_WSA_RX1_RX_PATH_MIX_SEC1: 961 case CDC_WSA_RX1_RX_PATH_DSMDEM_CTL: 962 case CDC_WSA_BOOST0_BOOST_PATH_CTL: 963 case CDC_WSA_BOOST0_BOOST_CTL: 964 case CDC_WSA_BOOST0_BOOST_CFG1: 965 case CDC_WSA_BOOST0_BOOST_CFG2: 966 case CDC_WSA_BOOST1_BOOST_PATH_CTL: 967 case CDC_WSA_BOOST1_BOOST_CTL: 968 case CDC_WSA_BOOST1_BOOST_CFG1: 969 case CDC_WSA_BOOST1_BOOST_CFG2: 970 case CDC_WSA_COMPANDER0_CTL0: 971 case CDC_WSA_COMPANDER0_CTL1: 972 case CDC_WSA_COMPANDER0_CTL2: 973 case CDC_WSA_COMPANDER0_CTL3: 974 case CDC_WSA_COMPANDER0_CTL4: 975 case CDC_WSA_COMPANDER0_CTL5: 976 case CDC_WSA_COMPANDER0_CTL7: 977 case CDC_WSA_EC_HQ0_EC_REF_HQ_PATH_CTL: 978 case CDC_WSA_EC_HQ0_EC_REF_HQ_CFG0: 979 case CDC_WSA_EC_HQ1_EC_REF_HQ_PATH_CTL: 980 case CDC_WSA_EC_HQ1_EC_REF_HQ_CFG0: 981 case CDC_WSA_SPLINE_ASRC0_CLK_RST_CTL: 982 case CDC_WSA_SPLINE_ASRC0_CTL0: 983 case CDC_WSA_SPLINE_ASRC0_CTL1: 984 case CDC_WSA_SPLINE_ASRC0_FIFO_CTL: 985 case CDC_WSA_SPLINE_ASRC1_CLK_RST_CTL: 986 case CDC_WSA_SPLINE_ASRC1_CTL0: 987 case CDC_WSA_SPLINE_ASRC1_CTL1: 988 case CDC_WSA_SPLINE_ASRC1_FIFO_CTL: 989 return true; 990 } 991 992 if (wsa->codec_version >= LPASS_CODEC_VERSION_2_5) 993 return wsa_is_rw_register_v2_5(dev, reg); 994 995 return wsa_is_rw_register_v2_1(dev, reg); 996 } 997 998 static bool wsa_is_writeable_register(struct device *dev, unsigned int reg) 999 { 1000 bool ret; 1001 1002 ret = wsa_is_rw_register(dev, reg); 1003 if (!ret) 1004 return wsa_is_wronly_register(dev, reg); 1005 1006 return ret; 1007 } 1008 1009 static bool wsa_is_readable_register_v2_1(struct device *dev, unsigned int reg) 1010 { 1011 switch (reg) { 1012 case CDC_WSA_COMPANDER1_CTL6: 1013 return true; 1014 } 1015 1016 return wsa_is_rw_register(dev, reg); 1017 } 1018 1019 static bool wsa_is_readable_register_v2_5(struct device *dev, unsigned int reg) 1020 { 1021 switch (reg) { 1022 case CDC_2_5_WSA_COMPANDER1_CTL6: 1023 return true; 1024 } 1025 1026 return wsa_is_rw_register(dev, reg); 1027 } 1028 1029 static bool wsa_is_readable_register(struct device *dev, unsigned int reg) 1030 { 1031 struct wsa_macro *wsa = dev_get_drvdata(dev); 1032 1033 switch (reg) { 1034 case CDC_WSA_INTR_CTRL_CLR_COMMIT: 1035 case CDC_WSA_INTR_CTRL_PIN1_CLEAR0: 1036 case CDC_WSA_INTR_CTRL_PIN2_CLEAR0: 1037 case CDC_WSA_INTR_CTRL_PIN1_STATUS0: 1038 case CDC_WSA_INTR_CTRL_PIN2_STATUS0: 1039 case CDC_WSA_COMPANDER0_CTL6: 1040 case CDC_WSA_SPLINE_ASRC0_STATUS_FMIN_CNTR_LSB: 1041 case CDC_WSA_SPLINE_ASRC0_STATUS_FMIN_CNTR_MSB: 1042 case CDC_WSA_SPLINE_ASRC0_STATUS_FMAX_CNTR_LSB: 1043 case CDC_WSA_SPLINE_ASRC0_STATUS_FMAX_CNTR_MSB: 1044 case CDC_WSA_SPLINE_ASRC0_STATUS_FIFO: 1045 case CDC_WSA_SPLINE_ASRC1_STATUS_FMIN_CNTR_LSB: 1046 case CDC_WSA_SPLINE_ASRC1_STATUS_FMIN_CNTR_MSB: 1047 case CDC_WSA_SPLINE_ASRC1_STATUS_FMAX_CNTR_LSB: 1048 case CDC_WSA_SPLINE_ASRC1_STATUS_FMAX_CNTR_MSB: 1049 case CDC_WSA_SPLINE_ASRC1_STATUS_FIFO: 1050 return true; 1051 } 1052 1053 if (wsa->codec_version >= LPASS_CODEC_VERSION_2_5) 1054 return wsa_is_readable_register_v2_5(dev, reg); 1055 1056 return wsa_is_readable_register_v2_1(dev, reg); 1057 } 1058 1059 static bool wsa_is_volatile_register_v2_1(struct device *dev, unsigned int reg) 1060 { 1061 switch (reg) { 1062 case CDC_WSA_COMPANDER1_CTL6: 1063 return true; 1064 } 1065 1066 return false; 1067 } 1068 1069 static bool wsa_is_volatile_register_v2_5(struct device *dev, unsigned int reg) 1070 { 1071 switch (reg) { 1072 case CDC_2_5_WSA_COMPANDER1_CTL6: 1073 return true; 1074 } 1075 1076 return false; 1077 } 1078 1079 static bool wsa_is_volatile_register(struct device *dev, unsigned int reg) 1080 { 1081 struct wsa_macro *wsa = dev_get_drvdata(dev); 1082 1083 /* Update volatile list for rx/tx macros */ 1084 switch (reg) { 1085 case CDC_WSA_INTR_CTRL_PIN1_STATUS0: 1086 case CDC_WSA_INTR_CTRL_PIN2_STATUS0: 1087 case CDC_WSA_COMPANDER0_CTL6: 1088 case CDC_WSA_SPLINE_ASRC0_STATUS_FMIN_CNTR_LSB: 1089 case CDC_WSA_SPLINE_ASRC0_STATUS_FMIN_CNTR_MSB: 1090 case CDC_WSA_SPLINE_ASRC0_STATUS_FMAX_CNTR_LSB: 1091 case CDC_WSA_SPLINE_ASRC0_STATUS_FMAX_CNTR_MSB: 1092 case CDC_WSA_SPLINE_ASRC0_STATUS_FIFO: 1093 case CDC_WSA_SPLINE_ASRC1_STATUS_FMIN_CNTR_LSB: 1094 case CDC_WSA_SPLINE_ASRC1_STATUS_FMIN_CNTR_MSB: 1095 case CDC_WSA_SPLINE_ASRC1_STATUS_FMAX_CNTR_LSB: 1096 case CDC_WSA_SPLINE_ASRC1_STATUS_FMAX_CNTR_MSB: 1097 case CDC_WSA_SPLINE_ASRC1_STATUS_FIFO: 1098 return true; 1099 } 1100 1101 if (wsa->codec_version >= LPASS_CODEC_VERSION_2_5) 1102 return wsa_is_volatile_register_v2_5(dev, reg); 1103 1104 return wsa_is_volatile_register_v2_1(dev, reg); 1105 } 1106 1107 static const struct regmap_config wsa_regmap_config = { 1108 .name = "wsa_macro", 1109 .reg_bits = 16, 1110 .val_bits = 32, /* 8 but with 32 bit read/write */ 1111 .reg_stride = 4, 1112 .cache_type = REGCACHE_FLAT, 1113 /* .reg_defaults and .num_reg_defaults set in probe() */ 1114 .max_register = WSA_MAX_OFFSET, 1115 .writeable_reg = wsa_is_writeable_register, 1116 .volatile_reg = wsa_is_volatile_register, 1117 .readable_reg = wsa_is_readable_register, 1118 }; 1119 1120 /** 1121 * wsa_macro_set_spkr_mode - Configures speaker compander and smartboost 1122 * settings based on speaker mode. 1123 * 1124 * @component: codec instance 1125 * @mode: Indicates speaker configuration mode. 1126 * 1127 * Returns 0 on success or -EINVAL on error. 1128 */ 1129 int wsa_macro_set_spkr_mode(struct snd_soc_component *component, int mode) 1130 { 1131 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 1132 1133 wsa->spkr_mode = mode; 1134 1135 switch (mode) { 1136 case WSA_MACRO_SPKR_MODE_1: 1137 snd_soc_component_update_bits(component, CDC_WSA_COMPANDER0_CTL3, 0x80, 0x00); 1138 snd_soc_component_update_bits(component, CDC_WSA_COMPANDER1_CTL3, 0x80, 0x00); 1139 snd_soc_component_update_bits(component, CDC_WSA_COMPANDER0_CTL7, 0x01, 0x00); 1140 snd_soc_component_update_bits(component, CDC_WSA_COMPANDER1_CTL7, 0x01, 0x00); 1141 snd_soc_component_update_bits(component, CDC_WSA_BOOST0_BOOST_CTL, 0x7C, 0x44); 1142 snd_soc_component_update_bits(component, CDC_WSA_BOOST1_BOOST_CTL, 0x7C, 0x44); 1143 break; 1144 default: 1145 snd_soc_component_update_bits(component, CDC_WSA_COMPANDER0_CTL3, 0x80, 0x80); 1146 snd_soc_component_update_bits(component, CDC_WSA_COMPANDER1_CTL3, 0x80, 0x80); 1147 snd_soc_component_update_bits(component, CDC_WSA_COMPANDER0_CTL7, 0x01, 0x01); 1148 snd_soc_component_update_bits(component, CDC_WSA_COMPANDER1_CTL7, 0x01, 0x01); 1149 snd_soc_component_update_bits(component, CDC_WSA_BOOST0_BOOST_CTL, 0x7C, 0x58); 1150 snd_soc_component_update_bits(component, CDC_WSA_BOOST1_BOOST_CTL, 0x7C, 0x58); 1151 break; 1152 } 1153 return 0; 1154 } 1155 EXPORT_SYMBOL(wsa_macro_set_spkr_mode); 1156 1157 static int wsa_macro_set_prim_interpolator_rate(struct snd_soc_dai *dai, 1158 u8 int_prim_fs_rate_reg_val, 1159 u32 sample_rate) 1160 { 1161 u8 int_1_mix1_inp; 1162 u32 j, port; 1163 u16 int_mux_cfg0, int_mux_cfg1; 1164 u16 int_fs_reg; 1165 u8 inp0_sel, inp1_sel, inp2_sel; 1166 struct snd_soc_component *component = dai->component; 1167 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 1168 1169 for_each_set_bit(port, &wsa->active_ch_mask[dai->id], WSA_MACRO_RX_MAX) { 1170 int_1_mix1_inp = port; 1171 int_mux_cfg0 = CDC_WSA_RX_INP_MUX_RX_INT0_CFG0; 1172 1173 /* 1174 * Loop through all interpolator MUX inputs and find out 1175 * to which interpolator input, the cdc_dma rx port 1176 * is connected 1177 */ 1178 for (j = 0; j < NUM_INTERPOLATORS; j++) { 1179 int_mux_cfg1 = int_mux_cfg0 + WSA_MACRO_MUX_CFG1_OFFSET; 1180 inp0_sel = snd_soc_component_read_field(component, int_mux_cfg0, 1181 wsa->reg_layout->rx_intx_1_mix_inp0_sel_mask); 1182 inp1_sel = snd_soc_component_read_field(component, int_mux_cfg0, 1183 wsa->reg_layout->rx_intx_1_mix_inp1_sel_mask); 1184 inp2_sel = snd_soc_component_read_field(component, int_mux_cfg1, 1185 wsa->reg_layout->rx_intx_1_mix_inp2_sel_mask); 1186 1187 if ((inp0_sel == int_1_mix1_inp + INTn_1_INP_SEL_RX0) || 1188 (inp1_sel == int_1_mix1_inp + INTn_1_INP_SEL_RX0) || 1189 (inp2_sel == int_1_mix1_inp + INTn_1_INP_SEL_RX0)) { 1190 int_fs_reg = CDC_WSA_RX0_RX_PATH_CTL + 1191 WSA_MACRO_RX_PATH_OFFSET * j; 1192 /* sample_rate is in Hz */ 1193 snd_soc_component_update_bits(component, int_fs_reg, 1194 WSA_MACRO_FS_RATE_MASK, 1195 int_prim_fs_rate_reg_val); 1196 } 1197 int_mux_cfg0 += WSA_MACRO_MUX_CFG_OFFSET; 1198 } 1199 } 1200 1201 return 0; 1202 } 1203 1204 static int wsa_macro_set_mix_interpolator_rate(struct snd_soc_dai *dai, 1205 u8 int_mix_fs_rate_reg_val, 1206 u32 sample_rate) 1207 { 1208 u8 int_2_inp; 1209 u32 j, port; 1210 u16 int_mux_cfg1, int_fs_reg; 1211 u8 int_mux_cfg1_val; 1212 struct snd_soc_component *component = dai->component; 1213 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 1214 1215 for_each_set_bit(port, &wsa->active_ch_mask[dai->id], WSA_MACRO_RX_MAX) { 1216 int_2_inp = port; 1217 1218 int_mux_cfg1 = CDC_WSA_RX_INP_MUX_RX_INT0_CFG1; 1219 for (j = 0; j < NUM_INTERPOLATORS; j++) { 1220 int_mux_cfg1_val = snd_soc_component_read_field(component, int_mux_cfg1, 1221 wsa->reg_layout->rx_intx_2_sel_mask); 1222 1223 if (int_mux_cfg1_val == int_2_inp + INTn_2_INP_SEL_RX0) { 1224 int_fs_reg = CDC_WSA_RX0_RX_PATH_MIX_CTL + 1225 WSA_MACRO_RX_PATH_OFFSET * j; 1226 1227 snd_soc_component_update_bits(component, 1228 int_fs_reg, 1229 WSA_MACRO_FS_RATE_MASK, 1230 int_mix_fs_rate_reg_val); 1231 } 1232 int_mux_cfg1 += WSA_MACRO_MUX_CFG_OFFSET; 1233 } 1234 } 1235 return 0; 1236 } 1237 1238 static int wsa_macro_set_interpolator_rate(struct snd_soc_dai *dai, 1239 u32 sample_rate) 1240 { 1241 int rate_val = 0; 1242 int i, ret; 1243 1244 /* set mixing path rate */ 1245 for (i = 0; i < ARRAY_SIZE(int_mix_sample_rate_val); i++) { 1246 if (sample_rate == int_mix_sample_rate_val[i].sample_rate) { 1247 rate_val = int_mix_sample_rate_val[i].rate_val; 1248 break; 1249 } 1250 } 1251 if ((i == ARRAY_SIZE(int_mix_sample_rate_val)) || (rate_val < 0)) 1252 goto prim_rate; 1253 1254 ret = wsa_macro_set_mix_interpolator_rate(dai, (u8) rate_val, sample_rate); 1255 if (ret < 0) 1256 return ret; 1257 prim_rate: 1258 /* set primary path sample rate */ 1259 for (i = 0; i < ARRAY_SIZE(int_prim_sample_rate_val); i++) { 1260 if (sample_rate == int_prim_sample_rate_val[i].sample_rate) { 1261 rate_val = int_prim_sample_rate_val[i].rate_val; 1262 break; 1263 } 1264 } 1265 if ((i == ARRAY_SIZE(int_prim_sample_rate_val)) || (rate_val < 0)) 1266 return -EINVAL; 1267 1268 ret = wsa_macro_set_prim_interpolator_rate(dai, (u8) rate_val, sample_rate); 1269 1270 return ret; 1271 } 1272 1273 static int wsa_macro_hw_params(struct snd_pcm_substream *substream, 1274 struct snd_pcm_hw_params *params, 1275 struct snd_soc_dai *dai) 1276 { 1277 struct snd_soc_component *component = dai->component; 1278 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 1279 int ret; 1280 1281 switch (substream->stream) { 1282 case SNDRV_PCM_STREAM_PLAYBACK: 1283 ret = wsa_macro_set_interpolator_rate(dai, params_rate(params)); 1284 if (ret) { 1285 dev_err(component->dev, 1286 "%s: cannot set sample rate: %u\n", 1287 __func__, params_rate(params)); 1288 return ret; 1289 } 1290 break; 1291 case SNDRV_PCM_STREAM_CAPTURE: 1292 if (dai->id == WSA_MACRO_AIF_VI) 1293 wsa->pcm_rate_vi = params_rate(params); 1294 1295 break; 1296 default: 1297 break; 1298 } 1299 return 0; 1300 } 1301 1302 static int wsa_macro_get_channel_map(const struct snd_soc_dai *dai, 1303 unsigned int *tx_num, unsigned int *tx_slot, 1304 unsigned int *rx_num, unsigned int *rx_slot) 1305 { 1306 struct snd_soc_component *component = dai->component; 1307 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 1308 u16 val, mask = 0, cnt = 0, temp; 1309 1310 switch (dai->id) { 1311 case WSA_MACRO_AIF_VI: 1312 *tx_slot = wsa->active_ch_mask[dai->id]; 1313 *tx_num = wsa->active_ch_cnt[dai->id]; 1314 break; 1315 case WSA_MACRO_AIF1_PB: 1316 case WSA_MACRO_AIF_MIX1_PB: 1317 for_each_set_bit(temp, &wsa->active_ch_mask[dai->id], 1318 WSA_MACRO_RX_MAX) { 1319 mask |= (1 << temp); 1320 if (++cnt == WSA_MACRO_MAX_DMA_CH_PER_PORT) 1321 break; 1322 } 1323 if (mask & 0x0C) 1324 mask = mask >> 0x2; 1325 *rx_slot = mask; 1326 *rx_num = cnt; 1327 break; 1328 case WSA_MACRO_AIF_ECHO: 1329 val = snd_soc_component_read(component, CDC_WSA_RX_INP_MUX_RX_MIX_CFG0); 1330 if (val & WSA_MACRO_EC_MIX_TX1_MASK) { 1331 mask |= 0x2; 1332 cnt++; 1333 } 1334 if (val & WSA_MACRO_EC_MIX_TX0_MASK) { 1335 mask |= 0x1; 1336 cnt++; 1337 } 1338 *tx_slot = mask; 1339 *tx_num = cnt; 1340 break; 1341 default: 1342 dev_err(component->dev, "%s: Invalid AIF\n", __func__); 1343 break; 1344 } 1345 return 0; 1346 } 1347 1348 static const struct snd_soc_dai_ops wsa_macro_dai_ops = { 1349 .hw_params = wsa_macro_hw_params, 1350 .get_channel_map = wsa_macro_get_channel_map, 1351 }; 1352 1353 static struct snd_soc_dai_driver wsa_macro_dai[] = { 1354 { 1355 .name = "wsa_macro_rx1", 1356 .id = WSA_MACRO_AIF1_PB, 1357 .playback = { 1358 .stream_name = "WSA_AIF1 Playback", 1359 .rates = WSA_MACRO_RX_RATES, 1360 .formats = WSA_MACRO_RX_FORMATS, 1361 .rate_max = 384000, 1362 .rate_min = 8000, 1363 .channels_min = 1, 1364 .channels_max = 2, 1365 }, 1366 .ops = &wsa_macro_dai_ops, 1367 }, 1368 { 1369 .name = "wsa_macro_rx_mix", 1370 .id = WSA_MACRO_AIF_MIX1_PB, 1371 .playback = { 1372 .stream_name = "WSA_AIF_MIX1 Playback", 1373 .rates = WSA_MACRO_RX_MIX_RATES, 1374 .formats = WSA_MACRO_RX_FORMATS, 1375 .rate_max = 192000, 1376 .rate_min = 48000, 1377 .channels_min = 1, 1378 .channels_max = 2, 1379 }, 1380 .ops = &wsa_macro_dai_ops, 1381 }, 1382 { 1383 .name = "wsa_macro_vifeedback", 1384 .id = WSA_MACRO_AIF_VI, 1385 .capture = { 1386 .stream_name = "WSA_AIF_VI Capture", 1387 .rates = SNDRV_PCM_RATE_8000 | SNDRV_PCM_RATE_48000, 1388 .formats = WSA_MACRO_RX_FORMATS, 1389 .rate_max = 48000, 1390 .rate_min = 8000, 1391 .channels_min = 1, 1392 .channels_max = 4, 1393 }, 1394 .ops = &wsa_macro_dai_ops, 1395 }, 1396 { 1397 .name = "wsa_macro_echo", 1398 .id = WSA_MACRO_AIF_ECHO, 1399 .capture = { 1400 .stream_name = "WSA_AIF_ECHO Capture", 1401 .rates = WSA_MACRO_ECHO_RATES, 1402 .formats = WSA_MACRO_ECHO_FORMATS, 1403 .rate_max = 48000, 1404 .rate_min = 8000, 1405 .channels_min = 1, 1406 .channels_max = 2, 1407 }, 1408 .ops = &wsa_macro_dai_ops, 1409 }, 1410 }; 1411 1412 static void wsa_macro_mclk_enable(struct wsa_macro *wsa, bool mclk_enable) 1413 { 1414 struct regmap *regmap = wsa->regmap; 1415 1416 if (mclk_enable) { 1417 if (wsa->wsa_mclk_users == 0) { 1418 regcache_mark_dirty(regmap); 1419 regcache_sync(regmap); 1420 /* 9.6MHz MCLK, set value 0x00 if other frequency */ 1421 regmap_update_bits(regmap, CDC_WSA_TOP_FREQ_MCLK, 0x01, 0x01); 1422 regmap_update_bits(regmap, 1423 CDC_WSA_CLK_RST_CTRL_MCLK_CONTROL, 1424 CDC_WSA_MCLK_EN_MASK, 1425 CDC_WSA_MCLK_ENABLE); 1426 regmap_update_bits(regmap, 1427 CDC_WSA_CLK_RST_CTRL_FS_CNT_CONTROL, 1428 CDC_WSA_FS_CNT_EN_MASK, 1429 CDC_WSA_FS_CNT_ENABLE); 1430 } 1431 wsa->wsa_mclk_users++; 1432 } else { 1433 if (wsa->wsa_mclk_users <= 0) { 1434 dev_err(wsa->dev, "clock already disabled\n"); 1435 wsa->wsa_mclk_users = 0; 1436 return; 1437 } 1438 wsa->wsa_mclk_users--; 1439 if (wsa->wsa_mclk_users == 0) { 1440 regmap_update_bits(regmap, 1441 CDC_WSA_CLK_RST_CTRL_FS_CNT_CONTROL, 1442 CDC_WSA_FS_CNT_EN_MASK, 1443 CDC_WSA_FS_CNT_DISABLE); 1444 regmap_update_bits(regmap, 1445 CDC_WSA_CLK_RST_CTRL_MCLK_CONTROL, 1446 CDC_WSA_MCLK_EN_MASK, 1447 CDC_WSA_MCLK_DISABLE); 1448 } 1449 } 1450 } 1451 1452 static void wsa_macro_enable_disable_vi_sense(struct snd_soc_component *component, bool enable, 1453 u32 tx_reg0, u32 tx_reg1, u32 val) 1454 { 1455 if (enable) { 1456 /* Enable V&I sensing */ 1457 snd_soc_component_update_bits(component, tx_reg0, 1458 CDC_WSA_TX_SPKR_PROT_RESET_MASK, 1459 CDC_WSA_TX_SPKR_PROT_RESET); 1460 snd_soc_component_update_bits(component, tx_reg1, 1461 CDC_WSA_TX_SPKR_PROT_RESET_MASK, 1462 CDC_WSA_TX_SPKR_PROT_RESET); 1463 snd_soc_component_update_bits(component, tx_reg0, 1464 CDC_WSA_TX_SPKR_PROT_PCM_RATE_MASK, 1465 val); 1466 snd_soc_component_update_bits(component, tx_reg1, 1467 CDC_WSA_TX_SPKR_PROT_PCM_RATE_MASK, 1468 val); 1469 snd_soc_component_update_bits(component, tx_reg0, 1470 CDC_WSA_TX_SPKR_PROT_CLK_EN_MASK, 1471 CDC_WSA_TX_SPKR_PROT_CLK_ENABLE); 1472 snd_soc_component_update_bits(component, tx_reg1, 1473 CDC_WSA_TX_SPKR_PROT_CLK_EN_MASK, 1474 CDC_WSA_TX_SPKR_PROT_CLK_ENABLE); 1475 snd_soc_component_update_bits(component, tx_reg0, 1476 CDC_WSA_TX_SPKR_PROT_RESET_MASK, 1477 CDC_WSA_TX_SPKR_PROT_NO_RESET); 1478 snd_soc_component_update_bits(component, tx_reg1, 1479 CDC_WSA_TX_SPKR_PROT_RESET_MASK, 1480 CDC_WSA_TX_SPKR_PROT_NO_RESET); 1481 } else { 1482 snd_soc_component_update_bits(component, tx_reg0, 1483 CDC_WSA_TX_SPKR_PROT_RESET_MASK, 1484 CDC_WSA_TX_SPKR_PROT_RESET); 1485 snd_soc_component_update_bits(component, tx_reg1, 1486 CDC_WSA_TX_SPKR_PROT_RESET_MASK, 1487 CDC_WSA_TX_SPKR_PROT_RESET); 1488 snd_soc_component_update_bits(component, tx_reg0, 1489 CDC_WSA_TX_SPKR_PROT_CLK_EN_MASK, 1490 CDC_WSA_TX_SPKR_PROT_CLK_DISABLE); 1491 snd_soc_component_update_bits(component, tx_reg1, 1492 CDC_WSA_TX_SPKR_PROT_CLK_EN_MASK, 1493 CDC_WSA_TX_SPKR_PROT_CLK_DISABLE); 1494 } 1495 } 1496 1497 static void wsa_macro_enable_disable_vi_feedback(struct snd_soc_component *component, 1498 bool enable, u32 rate) 1499 { 1500 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 1501 1502 if (test_bit(WSA_MACRO_TX0, &wsa->active_ch_mask[WSA_MACRO_AIF_VI])) 1503 wsa_macro_enable_disable_vi_sense(component, enable, 1504 CDC_WSA_TX0_SPKR_PROT_PATH_CTL, 1505 CDC_WSA_TX1_SPKR_PROT_PATH_CTL, rate); 1506 1507 if (test_bit(WSA_MACRO_TX1, &wsa->active_ch_mask[WSA_MACRO_AIF_VI])) 1508 wsa_macro_enable_disable_vi_sense(component, enable, 1509 CDC_WSA_TX2_SPKR_PROT_PATH_CTL, 1510 CDC_WSA_TX3_SPKR_PROT_PATH_CTL, rate); 1511 } 1512 1513 static int wsa_macro_mclk_event(struct snd_soc_dapm_widget *w, 1514 struct snd_kcontrol *kcontrol, int event) 1515 { 1516 struct snd_soc_component *component = snd_soc_dapm_to_component(w->dapm); 1517 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 1518 1519 wsa_macro_mclk_enable(wsa, event == SND_SOC_DAPM_PRE_PMU); 1520 return 0; 1521 } 1522 1523 static int wsa_macro_enable_vi_feedback(struct snd_soc_dapm_widget *w, 1524 struct snd_kcontrol *kcontrol, 1525 int event) 1526 { 1527 struct snd_soc_component *component = snd_soc_dapm_to_component(w->dapm); 1528 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 1529 u32 rate_val; 1530 1531 switch (wsa->pcm_rate_vi) { 1532 case 8000: 1533 rate_val = CDC_WSA_TX_SPKR_PROT_PCM_RATE_8K; 1534 break; 1535 case 16000: 1536 rate_val = CDC_WSA_TX_SPKR_PROT_PCM_RATE_16K; 1537 break; 1538 case 24000: 1539 rate_val = CDC_WSA_TX_SPKR_PROT_PCM_RATE_24K; 1540 break; 1541 case 32000: 1542 rate_val = CDC_WSA_TX_SPKR_PROT_PCM_RATE_32K; 1543 break; 1544 case 48000: 1545 rate_val = CDC_WSA_TX_SPKR_PROT_PCM_RATE_48K; 1546 break; 1547 default: 1548 rate_val = CDC_WSA_TX_SPKR_PROT_PCM_RATE_8K; 1549 break; 1550 } 1551 1552 switch (event) { 1553 case SND_SOC_DAPM_POST_PMU: 1554 /* Enable V&I sensing */ 1555 wsa_macro_enable_disable_vi_feedback(component, true, rate_val); 1556 break; 1557 case SND_SOC_DAPM_POST_PMD: 1558 /* Disable V&I sensing */ 1559 wsa_macro_enable_disable_vi_feedback(component, false, rate_val); 1560 break; 1561 } 1562 1563 return 0; 1564 } 1565 1566 static void wsa_macro_hd2_control(struct snd_soc_component *component, 1567 u16 reg, int event) 1568 { 1569 u16 hd2_scale_reg; 1570 u16 hd2_enable_reg; 1571 1572 if (reg == CDC_WSA_RX0_RX_PATH_CTL) { 1573 hd2_scale_reg = CDC_WSA_RX0_RX_PATH_SEC3; 1574 hd2_enable_reg = CDC_WSA_RX0_RX_PATH_CFG0; 1575 } 1576 if (reg == CDC_WSA_RX1_RX_PATH_CTL) { 1577 hd2_scale_reg = CDC_WSA_RX1_RX_PATH_SEC3; 1578 hd2_enable_reg = CDC_WSA_RX1_RX_PATH_CFG0; 1579 } 1580 1581 if (hd2_enable_reg && SND_SOC_DAPM_EVENT_ON(event)) { 1582 snd_soc_component_update_bits(component, hd2_scale_reg, 1583 CDC_WSA_RX_PATH_HD2_ALPHA_MASK, 1584 0x10); 1585 snd_soc_component_update_bits(component, hd2_scale_reg, 1586 CDC_WSA_RX_PATH_HD2_SCALE_MASK, 1587 0x1); 1588 snd_soc_component_update_bits(component, hd2_enable_reg, 1589 CDC_WSA_RX_PATH_HD2_EN_MASK, 1590 CDC_WSA_RX_PATH_HD2_ENABLE); 1591 } 1592 1593 if (hd2_enable_reg && SND_SOC_DAPM_EVENT_OFF(event)) { 1594 snd_soc_component_update_bits(component, hd2_enable_reg, 1595 CDC_WSA_RX_PATH_HD2_EN_MASK, 0); 1596 snd_soc_component_update_bits(component, hd2_scale_reg, 1597 CDC_WSA_RX_PATH_HD2_SCALE_MASK, 1598 0); 1599 snd_soc_component_update_bits(component, hd2_scale_reg, 1600 CDC_WSA_RX_PATH_HD2_ALPHA_MASK, 1601 0); 1602 } 1603 } 1604 1605 static int wsa_macro_config_compander(struct snd_soc_component *component, 1606 int comp, int event) 1607 { 1608 u16 comp_ctl0_reg, rx_path_cfg0_reg; 1609 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 1610 1611 if (!wsa->comp_enabled[comp]) 1612 return 0; 1613 1614 comp_ctl0_reg = CDC_WSA_COMPANDER0_CTL0 + 1615 (comp * wsa->reg_layout->compander1_reg_offset); 1616 rx_path_cfg0_reg = CDC_WSA_RX0_RX_PATH_CFG0 + 1617 (comp * WSA_MACRO_RX_PATH_OFFSET); 1618 1619 if (SND_SOC_DAPM_EVENT_ON(event)) { 1620 /* Enable Compander Clock */ 1621 snd_soc_component_update_bits(component, comp_ctl0_reg, 1622 CDC_WSA_COMPANDER_CLK_EN_MASK, 1623 CDC_WSA_COMPANDER_CLK_ENABLE); 1624 snd_soc_component_update_bits(component, comp_ctl0_reg, 1625 CDC_WSA_COMPANDER_SOFT_RST_MASK, 1626 CDC_WSA_COMPANDER_SOFT_RST_ENABLE); 1627 snd_soc_component_update_bits(component, comp_ctl0_reg, 1628 CDC_WSA_COMPANDER_SOFT_RST_MASK, 1629 0); 1630 snd_soc_component_update_bits(component, rx_path_cfg0_reg, 1631 CDC_WSA_RX_PATH_COMP_EN_MASK, 1632 CDC_WSA_RX_PATH_COMP_ENABLE); 1633 } 1634 1635 if (SND_SOC_DAPM_EVENT_OFF(event)) { 1636 snd_soc_component_update_bits(component, comp_ctl0_reg, 1637 CDC_WSA_COMPANDER_HALT_MASK, 1638 CDC_WSA_COMPANDER_HALT); 1639 snd_soc_component_update_bits(component, rx_path_cfg0_reg, 1640 CDC_WSA_RX_PATH_COMP_EN_MASK, 0); 1641 snd_soc_component_update_bits(component, comp_ctl0_reg, 1642 CDC_WSA_COMPANDER_SOFT_RST_MASK, 1643 CDC_WSA_COMPANDER_SOFT_RST_ENABLE); 1644 snd_soc_component_update_bits(component, comp_ctl0_reg, 1645 CDC_WSA_COMPANDER_SOFT_RST_MASK, 1646 0); 1647 snd_soc_component_update_bits(component, comp_ctl0_reg, 1648 CDC_WSA_COMPANDER_CLK_EN_MASK, 0); 1649 snd_soc_component_update_bits(component, comp_ctl0_reg, 1650 CDC_WSA_COMPANDER_HALT_MASK, 0); 1651 } 1652 1653 return 0; 1654 } 1655 1656 static void wsa_macro_enable_softclip_clk(struct snd_soc_component *component, 1657 struct wsa_macro *wsa, 1658 int path, 1659 bool enable) 1660 { 1661 u16 softclip_clk_reg = wsa->reg_layout->softclip0_reg_base + 1662 (path * wsa->reg_layout->softclip1_reg_offset); 1663 u8 softclip_mux_mask = (1 << path); 1664 u8 softclip_mux_value = (1 << path); 1665 1666 if (enable) { 1667 if (wsa->softclip_clk_users[path] == 0) { 1668 snd_soc_component_update_bits(component, 1669 softclip_clk_reg, 1670 CDC_WSA_SOFTCLIP_CLK_EN_MASK, 1671 CDC_WSA_SOFTCLIP_CLK_ENABLE); 1672 snd_soc_component_update_bits(component, 1673 CDC_WSA_RX_INP_MUX_SOFTCLIP_CFG0, 1674 softclip_mux_mask, softclip_mux_value); 1675 } 1676 wsa->softclip_clk_users[path]++; 1677 } else { 1678 wsa->softclip_clk_users[path]--; 1679 if (wsa->softclip_clk_users[path] == 0) { 1680 snd_soc_component_update_bits(component, 1681 softclip_clk_reg, 1682 CDC_WSA_SOFTCLIP_CLK_EN_MASK, 1683 0); 1684 snd_soc_component_update_bits(component, 1685 CDC_WSA_RX_INP_MUX_SOFTCLIP_CFG0, 1686 softclip_mux_mask, 0x00); 1687 } 1688 } 1689 } 1690 1691 static int wsa_macro_config_softclip(struct snd_soc_component *component, 1692 int path, int event) 1693 { 1694 u16 softclip_ctrl_reg; 1695 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 1696 int softclip_path = 0; 1697 1698 if (path == WSA_MACRO_COMP1) 1699 softclip_path = WSA_MACRO_SOFTCLIP0; 1700 else if (path == WSA_MACRO_COMP2) 1701 softclip_path = WSA_MACRO_SOFTCLIP1; 1702 1703 if (!wsa->is_softclip_on[softclip_path]) 1704 return 0; 1705 1706 softclip_ctrl_reg = CDC_WSA_SOFTCLIP0_SOFTCLIP_CTRL + 1707 (softclip_path * wsa->reg_layout->softclip1_reg_offset); 1708 1709 if (SND_SOC_DAPM_EVENT_ON(event)) { 1710 /* Enable Softclip clock and mux */ 1711 wsa_macro_enable_softclip_clk(component, wsa, softclip_path, 1712 true); 1713 /* Enable Softclip control */ 1714 snd_soc_component_update_bits(component, softclip_ctrl_reg, 1715 CDC_WSA_SOFTCLIP_EN_MASK, 1716 CDC_WSA_SOFTCLIP_ENABLE); 1717 } 1718 1719 if (SND_SOC_DAPM_EVENT_OFF(event)) { 1720 snd_soc_component_update_bits(component, softclip_ctrl_reg, 1721 CDC_WSA_SOFTCLIP_EN_MASK, 0); 1722 wsa_macro_enable_softclip_clk(component, wsa, softclip_path, 1723 false); 1724 } 1725 1726 return 0; 1727 } 1728 1729 static int wsa_macro_interp_get_primary_reg(u16 reg, u16 *ind) 1730 { 1731 u16 prim_int_reg = 0; 1732 1733 switch (reg) { 1734 case CDC_WSA_RX0_RX_PATH_CTL: 1735 case CDC_WSA_RX0_RX_PATH_MIX_CTL: 1736 prim_int_reg = CDC_WSA_RX0_RX_PATH_CTL; 1737 *ind = 0; 1738 break; 1739 case CDC_WSA_RX1_RX_PATH_CTL: 1740 case CDC_WSA_RX1_RX_PATH_MIX_CTL: 1741 prim_int_reg = CDC_WSA_RX1_RX_PATH_CTL; 1742 *ind = 1; 1743 break; 1744 } 1745 1746 return prim_int_reg; 1747 } 1748 1749 static int wsa_macro_enable_prim_interpolator(struct snd_soc_component *component, 1750 u16 reg, int event) 1751 { 1752 u16 prim_int_reg; 1753 u16 ind = 0; 1754 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 1755 1756 prim_int_reg = wsa_macro_interp_get_primary_reg(reg, &ind); 1757 1758 switch (event) { 1759 case SND_SOC_DAPM_PRE_PMU: 1760 wsa->prim_int_users[ind]++; 1761 if (wsa->prim_int_users[ind] == 1) { 1762 snd_soc_component_update_bits(component, 1763 prim_int_reg + WSA_MACRO_RX_PATH_CFG3_OFFSET, 1764 CDC_WSA_RX_DC_DCOEFF_MASK, 1765 0x3); 1766 snd_soc_component_update_bits(component, prim_int_reg, 1767 CDC_WSA_RX_PATH_PGA_MUTE_EN_MASK, 1768 CDC_WSA_RX_PATH_PGA_MUTE_ENABLE); 1769 wsa_macro_hd2_control(component, prim_int_reg, event); 1770 snd_soc_component_update_bits(component, 1771 prim_int_reg + WSA_MACRO_RX_PATH_DSMDEM_OFFSET, 1772 CDC_WSA_RX_DSMDEM_CLK_EN_MASK, 1773 CDC_WSA_RX_DSMDEM_CLK_ENABLE); 1774 } 1775 if ((reg != prim_int_reg) && 1776 ((snd_soc_component_read( 1777 component, prim_int_reg)) & 0x10)) 1778 snd_soc_component_update_bits(component, reg, 1779 0x10, 0x10); 1780 break; 1781 case SND_SOC_DAPM_POST_PMD: 1782 wsa->prim_int_users[ind]--; 1783 if (wsa->prim_int_users[ind] == 0) { 1784 snd_soc_component_update_bits(component, 1785 prim_int_reg + WSA_MACRO_RX_PATH_DSMDEM_OFFSET, 1786 CDC_WSA_RX_DSMDEM_CLK_EN_MASK, 0); 1787 wsa_macro_hd2_control(component, prim_int_reg, event); 1788 } 1789 break; 1790 } 1791 1792 return 0; 1793 } 1794 1795 static int wsa_macro_config_ear_spkr_gain(struct snd_soc_component *component, 1796 struct wsa_macro *wsa, 1797 int event, int gain_reg) 1798 { 1799 int comp_gain_offset, val; 1800 1801 switch (wsa->spkr_mode) { 1802 /* Compander gain in WSA_MACRO_SPKR_MODE1 case is 12 dB */ 1803 case WSA_MACRO_SPKR_MODE_1: 1804 comp_gain_offset = -12; 1805 break; 1806 /* Default case compander gain is 15 dB */ 1807 default: 1808 comp_gain_offset = -15; 1809 break; 1810 } 1811 1812 switch (event) { 1813 case SND_SOC_DAPM_POST_PMU: 1814 /* Apply ear spkr gain only if compander is enabled */ 1815 if (wsa->comp_enabled[WSA_MACRO_COMP1] && 1816 (gain_reg == CDC_WSA_RX0_RX_VOL_CTL) && 1817 (wsa->ear_spkr_gain != 0)) { 1818 /* For example, val is -8(-12+5-1) for 4dB of gain */ 1819 val = comp_gain_offset + wsa->ear_spkr_gain - 1; 1820 snd_soc_component_write(component, gain_reg, val); 1821 } 1822 break; 1823 case SND_SOC_DAPM_POST_PMD: 1824 /* 1825 * Reset RX0 volume to 0 dB if compander is enabled and 1826 * ear_spkr_gain is non-zero. 1827 */ 1828 if (wsa->comp_enabled[WSA_MACRO_COMP1] && 1829 (gain_reg == CDC_WSA_RX0_RX_VOL_CTL) && 1830 (wsa->ear_spkr_gain != 0)) { 1831 snd_soc_component_write(component, gain_reg, 0x0); 1832 } 1833 break; 1834 } 1835 1836 return 0; 1837 } 1838 1839 static int wsa_macro_enable_interpolator(struct snd_soc_dapm_widget *w, 1840 struct snd_kcontrol *kcontrol, 1841 int event) 1842 { 1843 struct snd_soc_component *component = snd_soc_dapm_to_component(w->dapm); 1844 unsigned int gain; 1845 u16 gain_reg; 1846 u16 reg; 1847 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 1848 1849 if (w->shift == WSA_MACRO_COMP1) { 1850 reg = CDC_WSA_RX0_RX_PATH_CTL; 1851 gain_reg = CDC_WSA_RX0_RX_VOL_CTL; 1852 } else if (w->shift == WSA_MACRO_COMP2) { 1853 reg = CDC_WSA_RX1_RX_PATH_CTL; 1854 gain_reg = CDC_WSA_RX1_RX_VOL_CTL; 1855 } 1856 1857 switch (event) { 1858 case SND_SOC_DAPM_PRE_PMU: 1859 /* Reset if needed */ 1860 wsa_macro_enable_prim_interpolator(component, reg, event); 1861 break; 1862 case SND_SOC_DAPM_POST_PMU: 1863 wsa_macro_config_compander(component, w->shift, event); 1864 wsa_macro_config_softclip(component, w->shift, event); 1865 /* apply gain after int clk is enabled */ 1866 if ((wsa->spkr_gain_offset == WSA_MACRO_GAIN_OFFSET_M1P5_DB) && 1867 (wsa->comp_enabled[WSA_MACRO_COMP1] || 1868 wsa->comp_enabled[WSA_MACRO_COMP2])) { 1869 snd_soc_component_update_bits(component, 1870 CDC_WSA_RX0_RX_PATH_SEC1, 1871 CDC_WSA_RX_PGA_HALF_DB_MASK, 1872 CDC_WSA_RX_PGA_HALF_DB_ENABLE); 1873 snd_soc_component_update_bits(component, 1874 CDC_WSA_RX0_RX_PATH_MIX_SEC0, 1875 CDC_WSA_RX_PGA_HALF_DB_MASK, 1876 CDC_WSA_RX_PGA_HALF_DB_ENABLE); 1877 snd_soc_component_update_bits(component, 1878 CDC_WSA_RX1_RX_PATH_SEC1, 1879 CDC_WSA_RX_PGA_HALF_DB_MASK, 1880 CDC_WSA_RX_PGA_HALF_DB_ENABLE); 1881 snd_soc_component_update_bits(component, 1882 CDC_WSA_RX1_RX_PATH_MIX_SEC0, 1883 CDC_WSA_RX_PGA_HALF_DB_MASK, 1884 CDC_WSA_RX_PGA_HALF_DB_ENABLE); 1885 } 1886 gain = snd_soc_component_read(component, gain_reg); 1887 snd_soc_component_write(component, gain_reg, gain); 1888 wsa_macro_config_ear_spkr_gain(component, wsa, 1889 event, gain_reg); 1890 break; 1891 case SND_SOC_DAPM_POST_PMD: 1892 wsa_macro_config_compander(component, w->shift, event); 1893 wsa_macro_config_softclip(component, w->shift, event); 1894 wsa_macro_enable_prim_interpolator(component, reg, event); 1895 if ((wsa->spkr_gain_offset == WSA_MACRO_GAIN_OFFSET_M1P5_DB) && 1896 (wsa->comp_enabled[WSA_MACRO_COMP1] || 1897 wsa->comp_enabled[WSA_MACRO_COMP2])) { 1898 snd_soc_component_update_bits(component, 1899 CDC_WSA_RX0_RX_PATH_SEC1, 1900 CDC_WSA_RX_PGA_HALF_DB_MASK, 1901 CDC_WSA_RX_PGA_HALF_DB_DISABLE); 1902 snd_soc_component_update_bits(component, 1903 CDC_WSA_RX0_RX_PATH_MIX_SEC0, 1904 CDC_WSA_RX_PGA_HALF_DB_MASK, 1905 CDC_WSA_RX_PGA_HALF_DB_DISABLE); 1906 snd_soc_component_update_bits(component, 1907 CDC_WSA_RX1_RX_PATH_SEC1, 1908 CDC_WSA_RX_PGA_HALF_DB_MASK, 1909 CDC_WSA_RX_PGA_HALF_DB_DISABLE); 1910 snd_soc_component_update_bits(component, 1911 CDC_WSA_RX1_RX_PATH_MIX_SEC0, 1912 CDC_WSA_RX_PGA_HALF_DB_MASK, 1913 CDC_WSA_RX_PGA_HALF_DB_DISABLE); 1914 } 1915 wsa_macro_config_ear_spkr_gain(component, wsa, 1916 event, gain_reg); 1917 break; 1918 } 1919 1920 return 0; 1921 } 1922 1923 static int wsa_macro_spk_boost_event(struct snd_soc_dapm_widget *w, 1924 struct snd_kcontrol *kcontrol, 1925 int event) 1926 { 1927 struct snd_soc_component *component = snd_soc_dapm_to_component(w->dapm); 1928 u16 boost_path_ctl, boost_path_cfg1; 1929 u16 reg, reg_mix; 1930 1931 if (!snd_soc_dapm_widget_name_cmp(w, "WSA_RX INT0 CHAIN")) { 1932 boost_path_ctl = CDC_WSA_BOOST0_BOOST_PATH_CTL; 1933 boost_path_cfg1 = CDC_WSA_RX0_RX_PATH_CFG1; 1934 reg = CDC_WSA_RX0_RX_PATH_CTL; 1935 reg_mix = CDC_WSA_RX0_RX_PATH_MIX_CTL; 1936 } else if (!snd_soc_dapm_widget_name_cmp(w, "WSA_RX INT1 CHAIN")) { 1937 boost_path_ctl = CDC_WSA_BOOST1_BOOST_PATH_CTL; 1938 boost_path_cfg1 = CDC_WSA_RX1_RX_PATH_CFG1; 1939 reg = CDC_WSA_RX1_RX_PATH_CTL; 1940 reg_mix = CDC_WSA_RX1_RX_PATH_MIX_CTL; 1941 } else { 1942 dev_warn(component->dev, "Incorrect widget name in the driver\n"); 1943 return -EINVAL; 1944 } 1945 1946 switch (event) { 1947 case SND_SOC_DAPM_PRE_PMU: 1948 snd_soc_component_update_bits(component, boost_path_cfg1, 1949 CDC_WSA_RX_PATH_SMART_BST_EN_MASK, 1950 CDC_WSA_RX_PATH_SMART_BST_ENABLE); 1951 snd_soc_component_update_bits(component, boost_path_ctl, 1952 CDC_WSA_BOOST_PATH_CLK_EN_MASK, 1953 CDC_WSA_BOOST_PATH_CLK_ENABLE); 1954 if ((snd_soc_component_read(component, reg_mix)) & 0x10) 1955 snd_soc_component_update_bits(component, reg_mix, 1956 0x10, 0x00); 1957 break; 1958 case SND_SOC_DAPM_POST_PMU: 1959 snd_soc_component_update_bits(component, reg, 0x10, 0x00); 1960 break; 1961 case SND_SOC_DAPM_POST_PMD: 1962 snd_soc_component_update_bits(component, boost_path_ctl, 1963 CDC_WSA_BOOST_PATH_CLK_EN_MASK, 1964 CDC_WSA_BOOST_PATH_CLK_DISABLE); 1965 snd_soc_component_update_bits(component, boost_path_cfg1, 1966 CDC_WSA_RX_PATH_SMART_BST_EN_MASK, 1967 CDC_WSA_RX_PATH_SMART_BST_DISABLE); 1968 break; 1969 } 1970 1971 return 0; 1972 } 1973 1974 static int wsa_macro_enable_echo(struct snd_soc_dapm_widget *w, 1975 struct snd_kcontrol *kcontrol, 1976 int event) 1977 { 1978 struct snd_soc_component *component = snd_soc_dapm_to_component(w->dapm); 1979 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 1980 u16 val, ec_tx, ec_hq_reg; 1981 1982 val = snd_soc_component_read(component, CDC_WSA_RX_INP_MUX_RX_MIX_CFG0); 1983 1984 switch (w->shift) { 1985 case WSA_MACRO_EC0_MUX: 1986 val = val & CDC_WSA_RX_MIX_TX0_SEL_MASK; 1987 ec_tx = val - 1; 1988 break; 1989 case WSA_MACRO_EC1_MUX: 1990 val = val & CDC_WSA_RX_MIX_TX1_SEL_MASK; 1991 ec_tx = (val >> CDC_WSA_RX_MIX_TX1_SEL_SHFT) - 1; 1992 break; 1993 default: 1994 dev_err(component->dev, "%s: Invalid shift %u\n", 1995 __func__, w->shift); 1996 return -EINVAL; 1997 } 1998 1999 if (wsa->ec_hq[ec_tx]) { 2000 ec_hq_reg = CDC_WSA_EC_HQ0_EC_REF_HQ_PATH_CTL + 0x40 * ec_tx; 2001 snd_soc_component_update_bits(component, ec_hq_reg, 2002 CDC_WSA_EC_HQ_EC_CLK_EN_MASK, 2003 CDC_WSA_EC_HQ_EC_CLK_ENABLE); 2004 ec_hq_reg = CDC_WSA_EC_HQ0_EC_REF_HQ_CFG0 + 0x40 * ec_tx; 2005 /* default set to 48k */ 2006 snd_soc_component_update_bits(component, ec_hq_reg, 2007 CDC_WSA_EC_HQ_EC_REF_PCM_RATE_MASK, 2008 CDC_WSA_EC_HQ_EC_REF_PCM_RATE_48K); 2009 } 2010 2011 return 0; 2012 } 2013 2014 static int wsa_macro_get_ec_hq(struct snd_kcontrol *kcontrol, 2015 struct snd_ctl_elem_value *ucontrol) 2016 { 2017 2018 struct snd_soc_component *component = snd_kcontrol_chip(kcontrol); 2019 int ec_tx = ((struct soc_mixer_control *) kcontrol->private_value)->shift; 2020 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 2021 2022 ucontrol->value.integer.value[0] = wsa->ec_hq[ec_tx]; 2023 2024 return 0; 2025 } 2026 2027 static int wsa_macro_set_ec_hq(struct snd_kcontrol *kcontrol, 2028 struct snd_ctl_elem_value *ucontrol) 2029 { 2030 struct snd_soc_component *component = snd_kcontrol_chip(kcontrol); 2031 int ec_tx = ((struct soc_mixer_control *) kcontrol->private_value)->shift; 2032 int value = ucontrol->value.integer.value[0]; 2033 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 2034 2035 wsa->ec_hq[ec_tx] = value; 2036 2037 return 0; 2038 } 2039 2040 static int wsa_macro_get_compander(struct snd_kcontrol *kcontrol, 2041 struct snd_ctl_elem_value *ucontrol) 2042 { 2043 2044 struct snd_soc_component *component = snd_kcontrol_chip(kcontrol); 2045 int comp = ((struct soc_mixer_control *) kcontrol->private_value)->shift; 2046 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 2047 2048 ucontrol->value.integer.value[0] = wsa->comp_enabled[comp]; 2049 return 0; 2050 } 2051 2052 static int wsa_macro_set_compander(struct snd_kcontrol *kcontrol, 2053 struct snd_ctl_elem_value *ucontrol) 2054 { 2055 struct snd_soc_component *component = snd_kcontrol_chip(kcontrol); 2056 int comp = ((struct soc_mixer_control *) kcontrol->private_value)->shift; 2057 int value = ucontrol->value.integer.value[0]; 2058 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 2059 2060 wsa->comp_enabled[comp] = value; 2061 2062 return 0; 2063 } 2064 2065 static int wsa_macro_ear_spkr_pa_gain_get(struct snd_kcontrol *kcontrol, 2066 struct snd_ctl_elem_value *ucontrol) 2067 { 2068 struct snd_soc_component *component = snd_kcontrol_chip(kcontrol); 2069 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 2070 2071 ucontrol->value.enumerated.item[0] = wsa->ear_spkr_gain; 2072 2073 return 0; 2074 } 2075 2076 static int wsa_macro_ear_spkr_pa_gain_put(struct snd_kcontrol *kcontrol, 2077 struct snd_ctl_elem_value *ucontrol) 2078 { 2079 struct snd_soc_component *component = snd_kcontrol_chip(kcontrol); 2080 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 2081 2082 wsa->ear_spkr_gain = ucontrol->value.enumerated.item[0]; 2083 2084 return 0; 2085 } 2086 2087 static int wsa_macro_rx_mux_get(struct snd_kcontrol *kcontrol, 2088 struct snd_ctl_elem_value *ucontrol) 2089 { 2090 struct snd_soc_dapm_widget *widget = snd_soc_dapm_kcontrol_to_widget(kcontrol); 2091 struct snd_soc_component *component = 2092 snd_soc_dapm_to_component(widget->dapm); 2093 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 2094 2095 ucontrol->value.enumerated.item[0] = 2096 wsa->rx_port_value[widget->shift]; 2097 return 0; 2098 } 2099 2100 static int wsa_macro_rx_mux_put(struct snd_kcontrol *kcontrol, 2101 struct snd_ctl_elem_value *ucontrol) 2102 { 2103 struct snd_soc_dapm_widget *widget = snd_soc_dapm_kcontrol_to_widget(kcontrol); 2104 struct snd_soc_component *component = 2105 snd_soc_dapm_to_component(widget->dapm); 2106 struct soc_enum *e = (struct soc_enum *)kcontrol->private_value; 2107 struct snd_soc_dapm_update *update = NULL; 2108 u32 rx_port_value = ucontrol->value.enumerated.item[0]; 2109 u32 bit_input; 2110 u32 aif_rst; 2111 unsigned int dai_id; 2112 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 2113 2114 aif_rst = wsa->rx_port_value[widget->shift]; 2115 if (!rx_port_value) { 2116 if (aif_rst == 0) 2117 return 0; 2118 if (aif_rst >= WSA_MACRO_RX_MAX) { 2119 dev_err(component->dev, "%s: Invalid AIF reset\n", __func__); 2120 return 0; 2121 } 2122 } 2123 wsa->rx_port_value[widget->shift] = rx_port_value; 2124 2125 bit_input = widget->shift; 2126 2127 switch (rx_port_value) { 2128 case 0: 2129 /* 2130 * active_ch_cnt and active_ch_mask use DAI IDs (WSA_MACRO_MAX_DAIS). 2131 * active_ch_cnt == 0 was tested in if() above. 2132 */ 2133 dai_id = aif_rst - 1; 2134 if (wsa->active_ch_cnt[dai_id]) { 2135 clear_bit(bit_input, &wsa->active_ch_mask[dai_id]); 2136 wsa->active_ch_cnt[dai_id]--; 2137 } 2138 break; 2139 case 1: 2140 case 2: 2141 /* active_ch_cnt and active_ch_mask use DAI IDs (WSA_MACRO_MAX_DAIS). */ 2142 dai_id = rx_port_value - 1; 2143 set_bit(bit_input, &wsa->active_ch_mask[dai_id]); 2144 wsa->active_ch_cnt[dai_id]++; 2145 break; 2146 default: 2147 dev_err(component->dev, 2148 "%s: Invalid AIF_ID for WSA RX MUX %d\n", 2149 __func__, rx_port_value); 2150 return -EINVAL; 2151 } 2152 2153 snd_soc_dapm_mux_update_power(widget->dapm, kcontrol, 2154 rx_port_value, e, update); 2155 return 0; 2156 } 2157 2158 static int wsa_macro_soft_clip_enable_get(struct snd_kcontrol *kcontrol, 2159 struct snd_ctl_elem_value *ucontrol) 2160 { 2161 struct snd_soc_component *component = snd_kcontrol_chip(kcontrol); 2162 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 2163 int path = ((struct soc_mixer_control *)kcontrol->private_value)->shift; 2164 2165 ucontrol->value.integer.value[0] = wsa->is_softclip_on[path]; 2166 2167 return 0; 2168 } 2169 2170 static int wsa_macro_soft_clip_enable_put(struct snd_kcontrol *kcontrol, 2171 struct snd_ctl_elem_value *ucontrol) 2172 { 2173 struct snd_soc_component *component = snd_kcontrol_chip(kcontrol); 2174 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 2175 int path = ((struct soc_mixer_control *) kcontrol->private_value)->shift; 2176 2177 wsa->is_softclip_on[path] = ucontrol->value.integer.value[0]; 2178 2179 return 0; 2180 } 2181 2182 static const struct snd_kcontrol_new wsa_macro_snd_controls[] = { 2183 SOC_ENUM_EXT("EAR SPKR PA Gain", wsa_macro_ear_spkr_pa_gain_enum, 2184 wsa_macro_ear_spkr_pa_gain_get, 2185 wsa_macro_ear_spkr_pa_gain_put), 2186 SOC_SINGLE_EXT("WSA_Softclip0 Enable", SND_SOC_NOPM, 2187 WSA_MACRO_SOFTCLIP0, 1, 0, 2188 wsa_macro_soft_clip_enable_get, 2189 wsa_macro_soft_clip_enable_put), 2190 SOC_SINGLE_EXT("WSA_Softclip1 Enable", SND_SOC_NOPM, 2191 WSA_MACRO_SOFTCLIP1, 1, 0, 2192 wsa_macro_soft_clip_enable_get, 2193 wsa_macro_soft_clip_enable_put), 2194 2195 SOC_SINGLE_S8_TLV("WSA_RX0 Digital Volume", CDC_WSA_RX0_RX_VOL_CTL, 2196 -84, 40, digital_gain), 2197 SOC_SINGLE_S8_TLV("WSA_RX1 Digital Volume", CDC_WSA_RX1_RX_VOL_CTL, 2198 -84, 40, digital_gain), 2199 SOC_SINGLE_S8_TLV("WSA_RX0_MIX Digital Volume", CDC_WSA_RX0_RX_VOL_MIX_CTL, 2200 -84, 40, digital_gain), 2201 SOC_SINGLE_S8_TLV("WSA_RX1_MIX Digital Volume", CDC_WSA_RX1_RX_VOL_MIX_CTL, 2202 -84, 40, digital_gain), 2203 2204 SOC_SINGLE("WSA_RX0 Digital Mute", CDC_WSA_RX0_RX_PATH_CTL, 4, 1, 0), 2205 SOC_SINGLE("WSA_RX1 Digital Mute", CDC_WSA_RX1_RX_PATH_CTL, 4, 1, 0), 2206 SOC_SINGLE("WSA_RX0_MIX Digital Mute", CDC_WSA_RX0_RX_PATH_MIX_CTL, 4, 2207 1, 0), 2208 SOC_SINGLE("WSA_RX1_MIX Digital Mute", CDC_WSA_RX1_RX_PATH_MIX_CTL, 4, 2209 1, 0), 2210 SOC_SINGLE_EXT("WSA_COMP1 Switch", SND_SOC_NOPM, WSA_MACRO_COMP1, 1, 0, 2211 wsa_macro_get_compander, wsa_macro_set_compander), 2212 SOC_SINGLE_EXT("WSA_COMP2 Switch", SND_SOC_NOPM, WSA_MACRO_COMP2, 1, 0, 2213 wsa_macro_get_compander, wsa_macro_set_compander), 2214 SOC_SINGLE_EXT("WSA_RX0 EC_HQ Switch", SND_SOC_NOPM, WSA_MACRO_RX0, 1, 0, 2215 wsa_macro_get_ec_hq, wsa_macro_set_ec_hq), 2216 SOC_SINGLE_EXT("WSA_RX1 EC_HQ Switch", SND_SOC_NOPM, WSA_MACRO_RX1, 1, 0, 2217 wsa_macro_get_ec_hq, wsa_macro_set_ec_hq), 2218 }; 2219 2220 static const struct soc_enum rx_mux_enum = 2221 SOC_ENUM_SINGLE_EXT(ARRAY_SIZE(rx_mux_text), rx_mux_text); 2222 2223 static const struct snd_kcontrol_new rx_mux[WSA_MACRO_RX_MAX] = { 2224 SOC_DAPM_ENUM_EXT("WSA RX0 Mux", rx_mux_enum, 2225 wsa_macro_rx_mux_get, wsa_macro_rx_mux_put), 2226 SOC_DAPM_ENUM_EXT("WSA RX1 Mux", rx_mux_enum, 2227 wsa_macro_rx_mux_get, wsa_macro_rx_mux_put), 2228 SOC_DAPM_ENUM_EXT("WSA RX_MIX0 Mux", rx_mux_enum, 2229 wsa_macro_rx_mux_get, wsa_macro_rx_mux_put), 2230 SOC_DAPM_ENUM_EXT("WSA RX_MIX1 Mux", rx_mux_enum, 2231 wsa_macro_rx_mux_get, wsa_macro_rx_mux_put), 2232 }; 2233 2234 static int wsa_macro_vi_feed_mixer_get(struct snd_kcontrol *kcontrol, 2235 struct snd_ctl_elem_value *ucontrol) 2236 { 2237 struct snd_soc_dapm_widget *widget = snd_soc_dapm_kcontrol_to_widget(kcontrol); 2238 struct snd_soc_component *component = snd_soc_dapm_to_component(widget->dapm); 2239 struct soc_mixer_control *mixer = (struct soc_mixer_control *)kcontrol->private_value; 2240 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 2241 u32 spk_tx_id = mixer->shift; 2242 u32 dai_id = widget->shift; 2243 2244 if (test_bit(spk_tx_id, &wsa->active_ch_mask[dai_id])) 2245 ucontrol->value.integer.value[0] = 1; 2246 else 2247 ucontrol->value.integer.value[0] = 0; 2248 2249 return 0; 2250 } 2251 2252 static int wsa_macro_vi_feed_mixer_put(struct snd_kcontrol *kcontrol, 2253 struct snd_ctl_elem_value *ucontrol) 2254 { 2255 struct snd_soc_dapm_widget *widget = snd_soc_dapm_kcontrol_to_widget(kcontrol); 2256 struct snd_soc_component *component = snd_soc_dapm_to_component(widget->dapm); 2257 struct soc_mixer_control *mixer = (struct soc_mixer_control *)kcontrol->private_value; 2258 struct wsa_macro *wsa = snd_soc_component_get_drvdata(component); 2259 u32 enable = ucontrol->value.integer.value[0]; 2260 u32 spk_tx_id = mixer->shift; 2261 u32 dai_id = widget->shift; 2262 2263 if (enable) { 2264 if (spk_tx_id == WSA_MACRO_TX0 && 2265 !test_bit(WSA_MACRO_TX0, 2266 &wsa->active_ch_mask[dai_id])) { 2267 set_bit(WSA_MACRO_TX0, 2268 &wsa->active_ch_mask[dai_id]); 2269 wsa->active_ch_cnt[dai_id]++; 2270 } 2271 if (spk_tx_id == WSA_MACRO_TX1 && 2272 !test_bit(WSA_MACRO_TX1, 2273 &wsa->active_ch_mask[dai_id])) { 2274 set_bit(WSA_MACRO_TX1, 2275 &wsa->active_ch_mask[dai_id]); 2276 wsa->active_ch_cnt[dai_id]++; 2277 } 2278 } else { 2279 if (spk_tx_id == WSA_MACRO_TX0 && 2280 test_bit(WSA_MACRO_TX0, 2281 &wsa->active_ch_mask[dai_id])) { 2282 clear_bit(WSA_MACRO_TX0, 2283 &wsa->active_ch_mask[dai_id]); 2284 wsa->active_ch_cnt[dai_id]--; 2285 } 2286 if (spk_tx_id == WSA_MACRO_TX1 && 2287 test_bit(WSA_MACRO_TX1, 2288 &wsa->active_ch_mask[dai_id])) { 2289 clear_bit(WSA_MACRO_TX1, 2290 &wsa->active_ch_mask[dai_id]); 2291 wsa->active_ch_cnt[dai_id]--; 2292 } 2293 } 2294 snd_soc_dapm_mixer_update_power(widget->dapm, kcontrol, enable, NULL); 2295 2296 return 0; 2297 } 2298 2299 static const struct snd_kcontrol_new aif_vi_mixer[] = { 2300 SOC_SINGLE_EXT("WSA_SPKR_VI_1", SND_SOC_NOPM, WSA_MACRO_TX0, 1, 0, 2301 wsa_macro_vi_feed_mixer_get, 2302 wsa_macro_vi_feed_mixer_put), 2303 SOC_SINGLE_EXT("WSA_SPKR_VI_2", SND_SOC_NOPM, WSA_MACRO_TX1, 1, 0, 2304 wsa_macro_vi_feed_mixer_get, 2305 wsa_macro_vi_feed_mixer_put), 2306 }; 2307 2308 static const struct snd_soc_dapm_widget wsa_macro_dapm_widgets[] = { 2309 SND_SOC_DAPM_AIF_IN("WSA AIF1 PB", "WSA_AIF1 Playback", 0, 2310 SND_SOC_NOPM, 0, 0), 2311 SND_SOC_DAPM_AIF_IN("WSA AIF_MIX1 PB", "WSA_AIF_MIX1 Playback", 0, 2312 SND_SOC_NOPM, 0, 0), 2313 2314 SND_SOC_DAPM_AIF_OUT_E("WSA AIF_VI", "WSA_AIF_VI Capture", 0, 2315 SND_SOC_NOPM, WSA_MACRO_AIF_VI, 0, 2316 wsa_macro_enable_vi_feedback, 2317 SND_SOC_DAPM_POST_PMU | SND_SOC_DAPM_POST_PMD), 2318 SND_SOC_DAPM_AIF_OUT("WSA AIF_ECHO", "WSA_AIF_ECHO Capture", 0, 2319 SND_SOC_NOPM, 0, 0), 2320 2321 SND_SOC_DAPM_MIXER("WSA_AIF_VI Mixer", SND_SOC_NOPM, WSA_MACRO_AIF_VI, 2322 0, aif_vi_mixer, ARRAY_SIZE(aif_vi_mixer)), 2323 SND_SOC_DAPM_MUX_E("WSA RX_MIX EC0_MUX", SND_SOC_NOPM, 2324 WSA_MACRO_EC0_MUX, 0, 2325 &rx_mix_ec0_mux, wsa_macro_enable_echo, 2326 SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD), 2327 SND_SOC_DAPM_MUX_E("WSA RX_MIX EC1_MUX", SND_SOC_NOPM, 2328 WSA_MACRO_EC1_MUX, 0, 2329 &rx_mix_ec1_mux, wsa_macro_enable_echo, 2330 SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD), 2331 2332 SND_SOC_DAPM_MUX("WSA RX0 MUX", SND_SOC_NOPM, WSA_MACRO_RX0, 0, 2333 &rx_mux[WSA_MACRO_RX0]), 2334 SND_SOC_DAPM_MUX("WSA RX1 MUX", SND_SOC_NOPM, WSA_MACRO_RX1, 0, 2335 &rx_mux[WSA_MACRO_RX1]), 2336 SND_SOC_DAPM_MUX("WSA RX_MIX0 MUX", SND_SOC_NOPM, WSA_MACRO_RX_MIX0, 0, 2337 &rx_mux[WSA_MACRO_RX_MIX0]), 2338 SND_SOC_DAPM_MUX("WSA RX_MIX1 MUX", SND_SOC_NOPM, WSA_MACRO_RX_MIX1, 0, 2339 &rx_mux[WSA_MACRO_RX_MIX1]), 2340 2341 SND_SOC_DAPM_MIXER("WSA RX0", SND_SOC_NOPM, 0, 0, NULL, 0), 2342 SND_SOC_DAPM_MIXER("WSA RX1", SND_SOC_NOPM, 0, 0, NULL, 0), 2343 SND_SOC_DAPM_MIXER("WSA RX_MIX0", SND_SOC_NOPM, 0, 0, NULL, 0), 2344 SND_SOC_DAPM_MIXER("WSA RX_MIX1", SND_SOC_NOPM, 0, 0, NULL, 0), 2345 2346 SND_SOC_DAPM_MIXER("WSA_RX INT0 MIX", SND_SOC_NOPM, 0, 0, NULL, 0), 2347 SND_SOC_DAPM_MIXER("WSA_RX INT1 MIX", SND_SOC_NOPM, 0, 0, NULL, 0), 2348 2349 SND_SOC_DAPM_MIXER("WSA_RX INT0 SEC MIX", SND_SOC_NOPM, 0, 0, NULL, 0), 2350 SND_SOC_DAPM_MIXER("WSA_RX INT1 SEC MIX", SND_SOC_NOPM, 0, 0, NULL, 0), 2351 2352 SND_SOC_DAPM_MUX("WSA_RX0 INT0 SIDETONE MIX", CDC_WSA_RX0_RX_PATH_CFG1, 2353 4, 0, &rx0_sidetone_mix_mux), 2354 2355 SND_SOC_DAPM_INPUT("WSA SRC0_INP"), 2356 SND_SOC_DAPM_INPUT("WSA_TX DEC0_INP"), 2357 SND_SOC_DAPM_INPUT("WSA_TX DEC1_INP"), 2358 2359 SND_SOC_DAPM_MIXER_E("WSA_RX INT0 INTERP", SND_SOC_NOPM, 2360 WSA_MACRO_COMP1, 0, NULL, 0, 2361 wsa_macro_enable_interpolator, 2362 SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU | 2363 SND_SOC_DAPM_POST_PMD), 2364 2365 SND_SOC_DAPM_MIXER_E("WSA_RX INT1 INTERP", SND_SOC_NOPM, 2366 WSA_MACRO_COMP2, 0, NULL, 0, 2367 wsa_macro_enable_interpolator, 2368 SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU | 2369 SND_SOC_DAPM_POST_PMD), 2370 2371 SND_SOC_DAPM_MIXER_E("WSA_RX INT0 CHAIN", SND_SOC_NOPM, 0, 0, 2372 NULL, 0, wsa_macro_spk_boost_event, 2373 SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU | 2374 SND_SOC_DAPM_POST_PMD), 2375 2376 SND_SOC_DAPM_MIXER_E("WSA_RX INT1 CHAIN", SND_SOC_NOPM, 0, 0, 2377 NULL, 0, wsa_macro_spk_boost_event, 2378 SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMU | 2379 SND_SOC_DAPM_POST_PMD), 2380 2381 SND_SOC_DAPM_INPUT("VIINPUT_WSA"), 2382 SND_SOC_DAPM_OUTPUT("WSA_SPK1 OUT"), 2383 SND_SOC_DAPM_OUTPUT("WSA_SPK2 OUT"), 2384 2385 SND_SOC_DAPM_SUPPLY("WSA_RX0_CLK", CDC_WSA_RX0_RX_PATH_CTL, 5, 0, NULL, 0), 2386 SND_SOC_DAPM_SUPPLY("WSA_RX1_CLK", CDC_WSA_RX1_RX_PATH_CTL, 5, 0, NULL, 0), 2387 SND_SOC_DAPM_SUPPLY("WSA_RX_MIX0_CLK", CDC_WSA_RX0_RX_PATH_MIX_CTL, 5, 0, NULL, 0), 2388 SND_SOC_DAPM_SUPPLY("WSA_RX_MIX1_CLK", CDC_WSA_RX1_RX_PATH_MIX_CTL, 5, 0, NULL, 0), 2389 SND_SOC_DAPM_SUPPLY_S("WSA_MCLK", 0, SND_SOC_NOPM, 0, 0, 2390 wsa_macro_mclk_event, 2391 SND_SOC_DAPM_PRE_PMU | SND_SOC_DAPM_POST_PMD), 2392 }; 2393 2394 static const struct snd_soc_dapm_widget wsa_macro_dapm_widgets_v2_1[] = { 2395 SND_SOC_DAPM_MUX("WSA_RX0 INP0", SND_SOC_NOPM, 0, 0, &rx0_prim_inp0_mux_v2_1), 2396 SND_SOC_DAPM_MUX("WSA_RX0 INP1", SND_SOC_NOPM, 0, 0, &rx0_prim_inp1_mux_v2_1), 2397 SND_SOC_DAPM_MUX("WSA_RX0 INP2", SND_SOC_NOPM, 0, 0, &rx0_prim_inp2_mux_v2_1), 2398 SND_SOC_DAPM_MUX("WSA_RX0 MIX INP", SND_SOC_NOPM, 0, 0, &rx0_mix_mux_v2_1), 2399 SND_SOC_DAPM_MUX("WSA_RX1 INP0", SND_SOC_NOPM, 0, 0, &rx1_prim_inp0_mux_v2_1), 2400 SND_SOC_DAPM_MUX("WSA_RX1 INP1", SND_SOC_NOPM, 0, 0, &rx1_prim_inp1_mux_v2_1), 2401 SND_SOC_DAPM_MUX("WSA_RX1 INP2", SND_SOC_NOPM, 0, 0, &rx1_prim_inp2_mux_v2_1), 2402 SND_SOC_DAPM_MUX("WSA_RX1 MIX INP", SND_SOC_NOPM, 0, 0, &rx1_mix_mux_v2_1), 2403 }; 2404 2405 static const struct snd_soc_dapm_widget wsa_macro_dapm_widgets_v2_5[] = { 2406 SND_SOC_DAPM_MUX("WSA_RX0 INP0", SND_SOC_NOPM, 0, 0, &rx0_prim_inp0_mux_v2_5), 2407 SND_SOC_DAPM_MUX("WSA_RX0 INP1", SND_SOC_NOPM, 0, 0, &rx0_prim_inp1_mux_v2_5), 2408 SND_SOC_DAPM_MUX("WSA_RX0 INP2", SND_SOC_NOPM, 0, 0, &rx0_prim_inp2_mux_v2_5), 2409 SND_SOC_DAPM_MUX("WSA_RX0 MIX INP", SND_SOC_NOPM, 0, 0, &rx0_mix_mux_v2_5), 2410 SND_SOC_DAPM_MUX("WSA_RX1 INP0", SND_SOC_NOPM, 0, 0, &rx1_prim_inp0_mux_v2_5), 2411 SND_SOC_DAPM_MUX("WSA_RX1 INP1", SND_SOC_NOPM, 0, 0, &rx1_prim_inp1_mux_v2_5), 2412 SND_SOC_DAPM_MUX("WSA_RX1 INP2", SND_SOC_NOPM, 0, 0, &rx1_prim_inp2_mux_v2_5), 2413 SND_SOC_DAPM_MUX("WSA_RX1 MIX INP", SND_SOC_NOPM, 0, 0, &rx1_mix_mux_v2_5), 2414 }; 2415 2416 static const struct snd_soc_dapm_route wsa_audio_map[] = { 2417 /* VI Feedback */ 2418 {"WSA_AIF_VI Mixer", "WSA_SPKR_VI_1", "VIINPUT_WSA"}, 2419 {"WSA_AIF_VI Mixer", "WSA_SPKR_VI_2", "VIINPUT_WSA"}, 2420 {"WSA AIF_VI", NULL, "WSA_AIF_VI Mixer"}, 2421 {"WSA AIF_VI", NULL, "WSA_MCLK"}, 2422 2423 {"WSA RX_MIX EC0_MUX", "RX_MIX_TX0", "WSA_RX INT0 SEC MIX"}, 2424 {"WSA RX_MIX EC1_MUX", "RX_MIX_TX0", "WSA_RX INT0 SEC MIX"}, 2425 {"WSA RX_MIX EC0_MUX", "RX_MIX_TX1", "WSA_RX INT1 SEC MIX"}, 2426 {"WSA RX_MIX EC1_MUX", "RX_MIX_TX1", "WSA_RX INT1 SEC MIX"}, 2427 {"WSA AIF_ECHO", NULL, "WSA RX_MIX EC0_MUX"}, 2428 {"WSA AIF_ECHO", NULL, "WSA RX_MIX EC1_MUX"}, 2429 {"WSA AIF_ECHO", NULL, "WSA_MCLK"}, 2430 2431 {"WSA AIF1 PB", NULL, "WSA_MCLK"}, 2432 {"WSA AIF_MIX1 PB", NULL, "WSA_MCLK"}, 2433 2434 {"WSA RX0 MUX", "AIF1_PB", "WSA AIF1 PB"}, 2435 {"WSA RX1 MUX", "AIF1_PB", "WSA AIF1 PB"}, 2436 {"WSA RX_MIX0 MUX", "AIF1_PB", "WSA AIF1 PB"}, 2437 {"WSA RX_MIX1 MUX", "AIF1_PB", "WSA AIF1 PB"}, 2438 2439 {"WSA RX0 MUX", "AIF_MIX1_PB", "WSA AIF_MIX1 PB"}, 2440 {"WSA RX1 MUX", "AIF_MIX1_PB", "WSA AIF_MIX1 PB"}, 2441 {"WSA RX_MIX0 MUX", "AIF_MIX1_PB", "WSA AIF_MIX1 PB"}, 2442 {"WSA RX_MIX1 MUX", "AIF_MIX1_PB", "WSA AIF_MIX1 PB"}, 2443 2444 {"WSA RX0", NULL, "WSA RX0 MUX"}, 2445 {"WSA RX1", NULL, "WSA RX1 MUX"}, 2446 {"WSA RX_MIX0", NULL, "WSA RX_MIX0 MUX"}, 2447 {"WSA RX_MIX1", NULL, "WSA RX_MIX1 MUX"}, 2448 2449 {"WSA_RX INT0 MIX", NULL, "WSA_RX0_CLK"}, 2450 {"WSA_RX INT1 MIX", NULL, "WSA_RX1_CLK"}, 2451 2452 {"WSA_RX0 INP0", "RX0", "WSA RX0"}, 2453 {"WSA_RX0 INP0", "RX1", "WSA RX1"}, 2454 {"WSA_RX0 INP0", "RX_MIX0", "WSA RX_MIX0"}, 2455 {"WSA_RX0 INP0", "RX_MIX1", "WSA RX_MIX1"}, 2456 {"WSA_RX0 INP0", "DEC0", "WSA_TX DEC0_INP"}, 2457 {"WSA_RX0 INP0", "DEC1", "WSA_TX DEC1_INP"}, 2458 {"WSA_RX INT0 MIX", NULL, "WSA_RX0 INP0"}, 2459 2460 {"WSA_RX0 INP1", "RX0", "WSA RX0"}, 2461 {"WSA_RX0 INP1", "RX1", "WSA RX1"}, 2462 {"WSA_RX0 INP1", "RX_MIX0", "WSA RX_MIX0"}, 2463 {"WSA_RX0 INP1", "RX_MIX1", "WSA RX_MIX1"}, 2464 {"WSA_RX0 INP1", "DEC0", "WSA_TX DEC0_INP"}, 2465 {"WSA_RX0 INP1", "DEC1", "WSA_TX DEC1_INP"}, 2466 {"WSA_RX INT0 MIX", NULL, "WSA_RX0 INP1"}, 2467 2468 {"WSA_RX0 INP2", "RX0", "WSA RX0"}, 2469 {"WSA_RX0 INP2", "RX1", "WSA RX1"}, 2470 {"WSA_RX0 INP2", "RX_MIX0", "WSA RX_MIX0"}, 2471 {"WSA_RX0 INP2", "RX_MIX1", "WSA RX_MIX1"}, 2472 {"WSA_RX0 INP2", "DEC0", "WSA_TX DEC0_INP"}, 2473 {"WSA_RX0 INP2", "DEC1", "WSA_TX DEC1_INP"}, 2474 {"WSA_RX INT0 MIX", NULL, "WSA_RX0 INP2"}, 2475 2476 {"WSA_RX0 MIX INP", "RX0", "WSA RX0"}, 2477 {"WSA_RX0 MIX INP", "RX1", "WSA RX1"}, 2478 {"WSA_RX0 MIX INP", "RX_MIX0", "WSA RX_MIX0"}, 2479 {"WSA_RX0 MIX INP", "RX_MIX1", "WSA RX_MIX1"}, 2480 {"WSA_RX0 MIX INP", NULL, "WSA_RX0_CLK"}, 2481 {"WSA_RX0 MIX INP", NULL, "WSA_RX_MIX0_CLK"}, 2482 {"WSA_RX INT0 SEC MIX", NULL, "WSA_RX0 MIX INP"}, 2483 2484 {"WSA_RX INT0 SEC MIX", NULL, "WSA_RX INT0 MIX"}, 2485 {"WSA_RX INT0 INTERP", NULL, "WSA_RX INT0 SEC MIX"}, 2486 {"WSA_RX0 INT0 SIDETONE MIX", "SRC0", "WSA SRC0_INP"}, 2487 {"WSA_RX INT0 INTERP", NULL, "WSA_RX0 INT0 SIDETONE MIX"}, 2488 {"WSA_RX INT0 CHAIN", NULL, "WSA_RX INT0 INTERP"}, 2489 2490 {"WSA_SPK1 OUT", NULL, "WSA_RX INT0 CHAIN"}, 2491 {"WSA_SPK1 OUT", NULL, "WSA_MCLK"}, 2492 2493 {"WSA_RX1 INP0", "RX0", "WSA RX0"}, 2494 {"WSA_RX1 INP0", "RX1", "WSA RX1"}, 2495 {"WSA_RX1 INP0", "RX_MIX0", "WSA RX_MIX0"}, 2496 {"WSA_RX1 INP0", "RX_MIX1", "WSA RX_MIX1"}, 2497 {"WSA_RX1 INP0", "DEC0", "WSA_TX DEC0_INP"}, 2498 {"WSA_RX1 INP0", "DEC1", "WSA_TX DEC1_INP"}, 2499 {"WSA_RX INT1 MIX", NULL, "WSA_RX1 INP0"}, 2500 2501 {"WSA_RX1 INP1", "RX0", "WSA RX0"}, 2502 {"WSA_RX1 INP1", "RX1", "WSA RX1"}, 2503 {"WSA_RX1 INP1", "RX_MIX0", "WSA RX_MIX0"}, 2504 {"WSA_RX1 INP1", "RX_MIX1", "WSA RX_MIX1"}, 2505 {"WSA_RX1 INP1", "DEC0", "WSA_TX DEC0_INP"}, 2506 {"WSA_RX1 INP1", "DEC1", "WSA_TX DEC1_INP"}, 2507 {"WSA_RX INT1 MIX", NULL, "WSA_RX1 INP1"}, 2508 2509 {"WSA_RX1 INP2", "RX0", "WSA RX0"}, 2510 {"WSA_RX1 INP2", "RX1", "WSA RX1"}, 2511 {"WSA_RX1 INP2", "RX_MIX0", "WSA RX_MIX0"}, 2512 {"WSA_RX1 INP2", "RX_MIX1", "WSA RX_MIX1"}, 2513 {"WSA_RX1 INP2", "DEC0", "WSA_TX DEC0_INP"}, 2514 {"WSA_RX1 INP2", "DEC1", "WSA_TX DEC1_INP"}, 2515 {"WSA_RX INT1 MIX", NULL, "WSA_RX1 INP2"}, 2516 2517 {"WSA_RX1 MIX INP", "RX0", "WSA RX0"}, 2518 {"WSA_RX1 MIX INP", "RX1", "WSA RX1"}, 2519 {"WSA_RX1 MIX INP", "RX_MIX0", "WSA RX_MIX0"}, 2520 {"WSA_RX1 MIX INP", "RX_MIX1", "WSA RX_MIX1"}, 2521 {"WSA_RX1 MIX INP", NULL, "WSA_RX1_CLK"}, 2522 {"WSA_RX1 MIX INP", NULL, "WSA_RX_MIX1_CLK"}, 2523 {"WSA_RX INT1 SEC MIX", NULL, "WSA_RX1 MIX INP"}, 2524 2525 {"WSA_RX INT1 SEC MIX", NULL, "WSA_RX INT1 MIX"}, 2526 {"WSA_RX INT1 INTERP", NULL, "WSA_RX INT1 SEC MIX"}, 2527 2528 {"WSA_RX INT1 CHAIN", NULL, "WSA_RX INT1 INTERP"}, 2529 {"WSA_SPK2 OUT", NULL, "WSA_RX INT1 CHAIN"}, 2530 {"WSA_SPK2 OUT", NULL, "WSA_MCLK"}, 2531 }; 2532 2533 static int wsa_swrm_clock(struct wsa_macro *wsa, bool enable) 2534 { 2535 struct regmap *regmap = wsa->regmap; 2536 int ret; 2537 2538 if (enable) { 2539 ret = pm_runtime_resume_and_get(wsa->dev); 2540 if (ret < 0) 2541 return ret; 2542 2543 wsa_macro_mclk_enable(wsa, true); 2544 2545 regmap_update_bits(regmap, CDC_WSA_CLK_RST_CTRL_SWR_CONTROL, 2546 CDC_WSA_SWR_CLK_EN_MASK, 2547 CDC_WSA_SWR_CLK_ENABLE); 2548 2549 } else { 2550 regmap_update_bits(regmap, CDC_WSA_CLK_RST_CTRL_SWR_CONTROL, 2551 CDC_WSA_SWR_CLK_EN_MASK, 0); 2552 wsa_macro_mclk_enable(wsa, false); 2553 2554 ret = pm_runtime_put_autosuspend(wsa->dev); 2555 if (ret < 0) 2556 dev_warn(wsa->dev, "runtime PM put failed: %d\n", ret); 2557 } 2558 2559 return 0; 2560 } 2561 2562 static int wsa_macro_component_probe(struct snd_soc_component *comp) 2563 { 2564 struct snd_soc_dapm_context *dapm = snd_soc_component_to_dapm(comp); 2565 struct wsa_macro *wsa = snd_soc_component_get_drvdata(comp); 2566 const struct snd_soc_dapm_widget *widgets; 2567 unsigned int num_widgets; 2568 2569 snd_soc_component_init_regmap(comp, wsa->regmap); 2570 2571 wsa->spkr_gain_offset = WSA_MACRO_GAIN_OFFSET_M1P5_DB; 2572 2573 /* set SPKR rate to FS_2P4_3P072 */ 2574 snd_soc_component_update_bits(comp, CDC_WSA_RX0_RX_PATH_CFG1, 2575 CDC_WSA_RX_PATH_SPKR_RATE_MASK, 2576 CDC_WSA_RX_PATH_SPKR_RATE_FS_2P4_3P072); 2577 2578 snd_soc_component_update_bits(comp, CDC_WSA_RX1_RX_PATH_CFG1, 2579 CDC_WSA_RX_PATH_SPKR_RATE_MASK, 2580 CDC_WSA_RX_PATH_SPKR_RATE_FS_2P4_3P072); 2581 2582 wsa_macro_set_spkr_mode(comp, WSA_MACRO_SPKR_MODE_1); 2583 2584 switch (wsa->codec_version) { 2585 case LPASS_CODEC_VERSION_1_0: 2586 case LPASS_CODEC_VERSION_1_1: 2587 case LPASS_CODEC_VERSION_1_2: 2588 case LPASS_CODEC_VERSION_2_0: 2589 case LPASS_CODEC_VERSION_2_1: 2590 widgets = wsa_macro_dapm_widgets_v2_1; 2591 num_widgets = ARRAY_SIZE(wsa_macro_dapm_widgets_v2_1); 2592 break; 2593 case LPASS_CODEC_VERSION_2_5: 2594 case LPASS_CODEC_VERSION_2_6: 2595 case LPASS_CODEC_VERSION_2_7: 2596 case LPASS_CODEC_VERSION_2_8: 2597 case LPASS_CODEC_VERSION_2_9: 2598 widgets = wsa_macro_dapm_widgets_v2_5; 2599 num_widgets = ARRAY_SIZE(wsa_macro_dapm_widgets_v2_5); 2600 break; 2601 default: 2602 return -EINVAL; 2603 } 2604 2605 return snd_soc_dapm_new_controls(dapm, widgets, num_widgets); 2606 } 2607 2608 static int swclk_gate_enable(struct clk_hw *hw) 2609 { 2610 return wsa_swrm_clock(to_wsa_macro(hw), true); 2611 } 2612 2613 static void swclk_gate_disable(struct clk_hw *hw) 2614 { 2615 wsa_swrm_clock(to_wsa_macro(hw), false); 2616 } 2617 2618 static int swclk_gate_is_enabled(struct clk_hw *hw) 2619 { 2620 struct wsa_macro *wsa = to_wsa_macro(hw); 2621 int ret, val; 2622 2623 regmap_read(wsa->regmap, CDC_WSA_CLK_RST_CTRL_SWR_CONTROL, &val); 2624 ret = val & BIT(0); 2625 2626 return ret; 2627 } 2628 2629 static unsigned long swclk_recalc_rate(struct clk_hw *hw, 2630 unsigned long parent_rate) 2631 { 2632 return parent_rate / 2; 2633 } 2634 2635 static const struct clk_ops swclk_gate_ops = { 2636 .prepare = swclk_gate_enable, 2637 .unprepare = swclk_gate_disable, 2638 .is_enabled = swclk_gate_is_enabled, 2639 .recalc_rate = swclk_recalc_rate, 2640 }; 2641 2642 static int wsa_macro_register_mclk_output(struct wsa_macro *wsa) 2643 { 2644 struct device *dev = wsa->dev; 2645 const char *parent_clk_name; 2646 struct clk_hw *hw; 2647 struct clk_init_data init; 2648 int ret; 2649 2650 if (wsa->npl) 2651 parent_clk_name = __clk_get_name(wsa->npl); 2652 else 2653 parent_clk_name = __clk_get_name(wsa->mclk); 2654 2655 init.name = "mclk"; 2656 of_property_read_string(dev_of_node(dev), "clock-output-names", 2657 &init.name); 2658 init.ops = &swclk_gate_ops; 2659 init.flags = 0; 2660 init.parent_names = &parent_clk_name; 2661 init.num_parents = 1; 2662 wsa->hw.init = &init; 2663 hw = &wsa->hw; 2664 ret = devm_clk_hw_register(wsa->dev, hw); 2665 if (ret) 2666 return ret; 2667 2668 return devm_of_clk_add_hw_provider(dev, of_clk_hw_simple_get, hw); 2669 } 2670 2671 static const struct snd_soc_component_driver wsa_macro_component_drv = { 2672 .name = "WSA MACRO", 2673 .probe = wsa_macro_component_probe, 2674 .controls = wsa_macro_snd_controls, 2675 .num_controls = ARRAY_SIZE(wsa_macro_snd_controls), 2676 .dapm_widgets = wsa_macro_dapm_widgets, 2677 .num_dapm_widgets = ARRAY_SIZE(wsa_macro_dapm_widgets), 2678 .dapm_routes = wsa_audio_map, 2679 .num_dapm_routes = ARRAY_SIZE(wsa_audio_map), 2680 }; 2681 2682 static int wsa_macro_probe(struct platform_device *pdev) 2683 { 2684 struct device *dev = &pdev->dev; 2685 struct wsa_macro *wsa; 2686 kernel_ulong_t flags; 2687 void __iomem *base; 2688 int ret, def_count; 2689 2690 flags = (kernel_ulong_t)device_get_match_data(dev); 2691 2692 wsa = devm_kzalloc(dev, sizeof(*wsa), GFP_KERNEL); 2693 if (!wsa) 2694 return -ENOMEM; 2695 2696 wsa->macro = devm_clk_get_optional(dev, "macro"); 2697 if (IS_ERR(wsa->macro)) 2698 return dev_err_probe(dev, PTR_ERR(wsa->macro), "unable to get macro clock\n"); 2699 2700 wsa->dcodec = devm_clk_get_optional(dev, "dcodec"); 2701 if (IS_ERR(wsa->dcodec)) 2702 return dev_err_probe(dev, PTR_ERR(wsa->dcodec), "unable to get dcodec clock\n"); 2703 2704 wsa->mclk = devm_clk_get(dev, "mclk"); 2705 if (IS_ERR(wsa->mclk)) 2706 return dev_err_probe(dev, PTR_ERR(wsa->mclk), "unable to get mclk clock\n"); 2707 2708 if (flags & LPASS_MACRO_FLAG_HAS_NPL_CLOCK) { 2709 wsa->npl = devm_clk_get(dev, "npl"); 2710 if (IS_ERR(wsa->npl)) 2711 return dev_err_probe(dev, PTR_ERR(wsa->npl), "unable to get npl clock\n"); 2712 } 2713 2714 wsa->fsgen = devm_clk_get(dev, "fsgen"); 2715 if (IS_ERR(wsa->fsgen)) 2716 return dev_err_probe(dev, PTR_ERR(wsa->fsgen), "unable to get fsgen clock\n"); 2717 2718 base = devm_platform_ioremap_resource(pdev, 0); 2719 if (IS_ERR(base)) 2720 return PTR_ERR(base); 2721 2722 wsa->codec_version = lpass_macro_get_codec_version(); 2723 struct reg_default *reg_defaults __free(kfree) = NULL; 2724 2725 switch (wsa->codec_version) { 2726 case LPASS_CODEC_VERSION_1_0: 2727 case LPASS_CODEC_VERSION_1_1: 2728 case LPASS_CODEC_VERSION_1_2: 2729 case LPASS_CODEC_VERSION_2_0: 2730 case LPASS_CODEC_VERSION_2_1: 2731 wsa->reg_layout = &wsa_codec_v2_1; 2732 def_count = ARRAY_SIZE(wsa_defaults) + ARRAY_SIZE(wsa_defaults_v2_1); 2733 reg_defaults = kmalloc_objs(*reg_defaults, def_count); 2734 if (!reg_defaults) 2735 return -ENOMEM; 2736 memcpy(®_defaults[0], wsa_defaults, sizeof(wsa_defaults)); 2737 memcpy(®_defaults[ARRAY_SIZE(wsa_defaults)], 2738 wsa_defaults_v2_1, sizeof(wsa_defaults_v2_1)); 2739 break; 2740 2741 case LPASS_CODEC_VERSION_2_5: 2742 case LPASS_CODEC_VERSION_2_6: 2743 case LPASS_CODEC_VERSION_2_7: 2744 case LPASS_CODEC_VERSION_2_8: 2745 case LPASS_CODEC_VERSION_2_9: 2746 wsa->reg_layout = &wsa_codec_v2_5; 2747 def_count = ARRAY_SIZE(wsa_defaults) + ARRAY_SIZE(wsa_defaults_v2_5); 2748 reg_defaults = kmalloc_objs(*reg_defaults, def_count); 2749 if (!reg_defaults) 2750 return -ENOMEM; 2751 memcpy(®_defaults[0], wsa_defaults, sizeof(wsa_defaults)); 2752 memcpy(®_defaults[ARRAY_SIZE(wsa_defaults)], 2753 wsa_defaults_v2_5, sizeof(wsa_defaults_v2_5)); 2754 break; 2755 2756 default: 2757 dev_err(dev, "Unsupported Codec version (%d)\n", wsa->codec_version); 2758 return -EINVAL; 2759 } 2760 2761 struct regmap_config *reg_config __free(kfree) = kmemdup(&wsa_regmap_config, 2762 sizeof(*reg_config), 2763 GFP_KERNEL); 2764 if (!reg_config) 2765 return -ENOMEM; 2766 2767 reg_config->reg_defaults = reg_defaults; 2768 reg_config->num_reg_defaults = def_count; 2769 2770 wsa->regmap = devm_regmap_init_mmio(dev, base, reg_config); 2771 if (IS_ERR(wsa->regmap)) 2772 return PTR_ERR(wsa->regmap); 2773 2774 dev_set_drvdata(dev, wsa); 2775 2776 wsa->dev = dev; 2777 2778 /* set MCLK and NPL rates */ 2779 ret = clk_set_rate(wsa->mclk, WSA_MACRO_MCLK_FREQ); 2780 if (ret) 2781 return ret; 2782 2783 ret = clk_set_rate(wsa->npl, WSA_MACRO_MCLK_FREQ); 2784 if (ret) 2785 return ret; 2786 2787 ret = devm_pm_clk_create(dev); 2788 if (ret) 2789 return ret; 2790 2791 ret = of_pm_clk_add_clks(dev); 2792 if (ret < 0) 2793 return ret; 2794 2795 pm_runtime_set_autosuspend_delay(dev, 100); 2796 pm_runtime_use_autosuspend(dev); 2797 ret = devm_pm_runtime_enable(dev); 2798 if (ret) 2799 return ret; 2800 2801 ret = pm_runtime_resume_and_get(dev); 2802 if (ret < 0) 2803 return ret; 2804 2805 /* reset swr ip */ 2806 regmap_update_bits(wsa->regmap, CDC_WSA_CLK_RST_CTRL_SWR_CONTROL, 2807 CDC_WSA_SWR_RST_EN_MASK, CDC_WSA_SWR_RST_ENABLE); 2808 2809 regmap_update_bits(wsa->regmap, CDC_WSA_CLK_RST_CTRL_SWR_CONTROL, 2810 CDC_WSA_SWR_CLK_EN_MASK, CDC_WSA_SWR_CLK_ENABLE); 2811 2812 /* Bring out of reset */ 2813 regmap_update_bits(wsa->regmap, CDC_WSA_CLK_RST_CTRL_SWR_CONTROL, 2814 CDC_WSA_SWR_RST_EN_MASK, CDC_WSA_SWR_RST_DISABLE); 2815 2816 ret = devm_snd_soc_register_component(dev, &wsa_macro_component_drv, 2817 wsa_macro_dai, 2818 ARRAY_SIZE(wsa_macro_dai)); 2819 if (ret) 2820 goto err_rpm_put; 2821 2822 ret = wsa_macro_register_mclk_output(wsa); 2823 if (ret) 2824 goto err_rpm_put; 2825 2826 ret = pm_runtime_put_autosuspend(dev); 2827 if (ret < 0) 2828 dev_warn(dev, "runtime PM put failed after probe: %d\n", ret); 2829 2830 return 0; 2831 err_rpm_put: 2832 if (pm_runtime_put_sync_suspend(dev) < 0) 2833 dev_warn(dev, "runtime PM sync suspend failed in probe unwind\n"); 2834 return ret; 2835 } 2836 2837 static int wsa_macro_runtime_suspend(struct device *dev) 2838 { 2839 struct wsa_macro *wsa = dev_get_drvdata(dev); 2840 int ret; 2841 2842 regcache_cache_only(wsa->regmap, true); 2843 2844 ret = pm_clk_suspend(dev); 2845 if (ret) { 2846 regcache_cache_only(wsa->regmap, false); 2847 return ret; 2848 } 2849 2850 regcache_mark_dirty(wsa->regmap); 2851 2852 return 0; 2853 } 2854 2855 static int wsa_macro_runtime_resume(struct device *dev) 2856 { 2857 struct wsa_macro *wsa = dev_get_drvdata(dev); 2858 int ret, sret; 2859 2860 ret = pm_clk_resume(dev); 2861 if (ret) { 2862 regcache_cache_only(wsa->regmap, true); 2863 regcache_mark_dirty(wsa->regmap); 2864 return ret; 2865 } 2866 regcache_cache_only(wsa->regmap, false); 2867 2868 ret = regcache_sync(wsa->regmap); 2869 if (ret) { 2870 regcache_cache_only(wsa->regmap, true); 2871 regcache_mark_dirty(wsa->regmap); 2872 sret = pm_clk_suspend(dev); 2873 if (sret) 2874 dev_err(dev, 2875 "failed to suspend clocks after regcache sync failure: %d\n", 2876 sret); 2877 return ret; 2878 } 2879 2880 return 0; 2881 } 2882 2883 static const struct dev_pm_ops wsa_macro_pm_ops = { 2884 RUNTIME_PM_OPS(wsa_macro_runtime_suspend, wsa_macro_runtime_resume, NULL) 2885 }; 2886 2887 static const struct of_device_id wsa_macro_dt_match[] = { 2888 { 2889 .compatible = "qcom,sc7280-lpass-wsa-macro", 2890 .data = (void *)LPASS_MACRO_FLAG_HAS_NPL_CLOCK, 2891 }, { 2892 .compatible = "qcom,sm8250-lpass-wsa-macro", 2893 .data = (void *)LPASS_MACRO_FLAG_HAS_NPL_CLOCK, 2894 }, { 2895 .compatible = "qcom,sm8450-lpass-wsa-macro", 2896 .data = (void *)LPASS_MACRO_FLAG_HAS_NPL_CLOCK, 2897 }, { 2898 .compatible = "qcom,sm8550-lpass-wsa-macro", 2899 }, { 2900 .compatible = "qcom,sc8280xp-lpass-wsa-macro", 2901 .data = (void *)LPASS_MACRO_FLAG_HAS_NPL_CLOCK, 2902 }, 2903 {} 2904 }; 2905 MODULE_DEVICE_TABLE(of, wsa_macro_dt_match); 2906 2907 static struct platform_driver wsa_macro_driver = { 2908 .driver = { 2909 .name = "wsa_macro", 2910 .of_match_table = wsa_macro_dt_match, 2911 .pm = pm_ptr(&wsa_macro_pm_ops), 2912 }, 2913 .probe = wsa_macro_probe, 2914 }; 2915 2916 module_platform_driver(wsa_macro_driver); 2917 MODULE_DESCRIPTION("WSA macro driver"); 2918 MODULE_LICENSE("GPL"); 2919