13592b7f6SOla Lilja /* 23592b7f6SOla Lilja * Copyright (C) ST-Ericsson SA 2012 33592b7f6SOla Lilja * 43592b7f6SOla Lilja * Author: Ola Lilja <ola.o.lilja@stericsson.com>, 53592b7f6SOla Lilja * Roger Nilsson <roger.xr.nilsson@stericsson.com> 63592b7f6SOla Lilja * for ST-Ericsson. 73592b7f6SOla Lilja * 83592b7f6SOla Lilja * License terms: 93592b7f6SOla Lilja * 103592b7f6SOla Lilja * This program is free software; you can redistribute it and/or modify 113592b7f6SOla Lilja * it under the terms of the GNU General Public License version 2 as published 123592b7f6SOla Lilja * by the Free Software Foundation. 133592b7f6SOla Lilja */ 143592b7f6SOla Lilja 153592b7f6SOla Lilja #include <linux/module.h> 163592b7f6SOla Lilja #include <linux/slab.h> 173592b7f6SOla Lilja #include <linux/bitops.h> 183592b7f6SOla Lilja #include <linux/platform_device.h> 193592b7f6SOla Lilja #include <linux/clk.h> 20f382acbeSLee Jones #include <linux/of.h> 213592b7f6SOla Lilja #include <linux/regulator/consumer.h> 223592b7f6SOla Lilja #include <linux/mfd/dbx500-prcmu.h> 23ab0fc6ceSArnd Bergmann #include <linux/platform_data/asoc-ux500-msp.h> 243592b7f6SOla Lilja 253592b7f6SOla Lilja #include <sound/soc.h> 263592b7f6SOla Lilja #include <sound/soc-dai.h> 27f382acbeSLee Jones #include <sound/dmaengine_pcm.h> 283592b7f6SOla Lilja 293592b7f6SOla Lilja #include "ux500_msp_i2s.h" 303592b7f6SOla Lilja #include "ux500_msp_dai.h" 311428c20fSLee Jones #include "ux500_pcm.h" 323592b7f6SOla Lilja 333592b7f6SOla Lilja static int setup_pcm_multichan(struct snd_soc_dai *dai, 343592b7f6SOla Lilja struct ux500_msp_config *msp_config) 353592b7f6SOla Lilja { 363592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(dai->dev); 373592b7f6SOla Lilja struct msp_multichannel_config *multi = 383592b7f6SOla Lilja &msp_config->multichannel_config; 393592b7f6SOla Lilja 403592b7f6SOla Lilja if (drvdata->slots > 1) { 413592b7f6SOla Lilja msp_config->multichannel_configured = 1; 423592b7f6SOla Lilja 433592b7f6SOla Lilja multi->tx_multichannel_enable = true; 443592b7f6SOla Lilja multi->rx_multichannel_enable = true; 453592b7f6SOla Lilja multi->rx_comparison_enable_mode = MSP_COMPARISON_DISABLED; 463592b7f6SOla Lilja 473592b7f6SOla Lilja multi->tx_channel_0_enable = drvdata->tx_mask; 483592b7f6SOla Lilja multi->tx_channel_1_enable = 0; 493592b7f6SOla Lilja multi->tx_channel_2_enable = 0; 503592b7f6SOla Lilja multi->tx_channel_3_enable = 0; 513592b7f6SOla Lilja 523592b7f6SOla Lilja multi->rx_channel_0_enable = drvdata->rx_mask; 533592b7f6SOla Lilja multi->rx_channel_1_enable = 0; 543592b7f6SOla Lilja multi->rx_channel_2_enable = 0; 553592b7f6SOla Lilja multi->rx_channel_3_enable = 0; 563592b7f6SOla Lilja 573592b7f6SOla Lilja dev_dbg(dai->dev, 583592b7f6SOla Lilja "%s: Multichannel enabled. Slots: %d, TX: %u, RX: %u\n", 593592b7f6SOla Lilja __func__, drvdata->slots, multi->tx_channel_0_enable, 603592b7f6SOla Lilja multi->rx_channel_0_enable); 613592b7f6SOla Lilja } 623592b7f6SOla Lilja 633592b7f6SOla Lilja return 0; 643592b7f6SOla Lilja } 653592b7f6SOla Lilja 663592b7f6SOla Lilja static int setup_frameper(struct snd_soc_dai *dai, unsigned int rate, 673592b7f6SOla Lilja struct msp_protdesc *prot_desc) 683592b7f6SOla Lilja { 693592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(dai->dev); 703592b7f6SOla Lilja 713592b7f6SOla Lilja switch (drvdata->slots) { 723592b7f6SOla Lilja case 1: 733592b7f6SOla Lilja switch (rate) { 743592b7f6SOla Lilja case 8000: 753592b7f6SOla Lilja prot_desc->frame_period = 763592b7f6SOla Lilja FRAME_PER_SINGLE_SLOT_8_KHZ; 773592b7f6SOla Lilja break; 783592b7f6SOla Lilja 793592b7f6SOla Lilja case 16000: 803592b7f6SOla Lilja prot_desc->frame_period = 813592b7f6SOla Lilja FRAME_PER_SINGLE_SLOT_16_KHZ; 823592b7f6SOla Lilja break; 833592b7f6SOla Lilja 843592b7f6SOla Lilja case 44100: 853592b7f6SOla Lilja prot_desc->frame_period = 863592b7f6SOla Lilja FRAME_PER_SINGLE_SLOT_44_1_KHZ; 873592b7f6SOla Lilja break; 883592b7f6SOla Lilja 893592b7f6SOla Lilja case 48000: 903592b7f6SOla Lilja prot_desc->frame_period = 913592b7f6SOla Lilja FRAME_PER_SINGLE_SLOT_48_KHZ; 923592b7f6SOla Lilja break; 933592b7f6SOla Lilja 943592b7f6SOla Lilja default: 953592b7f6SOla Lilja dev_err(dai->dev, 963592b7f6SOla Lilja "%s: Error: Unsupported sample-rate (freq = %d)!\n", 973592b7f6SOla Lilja __func__, rate); 983592b7f6SOla Lilja return -EINVAL; 993592b7f6SOla Lilja } 1003592b7f6SOla Lilja break; 1013592b7f6SOla Lilja 1023592b7f6SOla Lilja case 2: 1033592b7f6SOla Lilja prot_desc->frame_period = FRAME_PER_2_SLOTS; 1043592b7f6SOla Lilja break; 1053592b7f6SOla Lilja 1063592b7f6SOla Lilja case 8: 1073592b7f6SOla Lilja prot_desc->frame_period = FRAME_PER_8_SLOTS; 1083592b7f6SOla Lilja break; 1093592b7f6SOla Lilja 1103592b7f6SOla Lilja case 16: 1113592b7f6SOla Lilja prot_desc->frame_period = FRAME_PER_16_SLOTS; 1123592b7f6SOla Lilja break; 1133592b7f6SOla Lilja default: 1143592b7f6SOla Lilja dev_err(dai->dev, 1153592b7f6SOla Lilja "%s: Error: Unsupported slot-count (slots = %d)!\n", 1163592b7f6SOla Lilja __func__, drvdata->slots); 1173592b7f6SOla Lilja return -EINVAL; 1183592b7f6SOla Lilja } 1193592b7f6SOla Lilja 1203592b7f6SOla Lilja prot_desc->clocks_per_frame = 1213592b7f6SOla Lilja prot_desc->frame_period+1; 1223592b7f6SOla Lilja 1233592b7f6SOla Lilja dev_dbg(dai->dev, "%s: Clocks per frame: %u\n", 1243592b7f6SOla Lilja __func__, 1253592b7f6SOla Lilja prot_desc->clocks_per_frame); 1263592b7f6SOla Lilja 1273592b7f6SOla Lilja return 0; 1283592b7f6SOla Lilja } 1293592b7f6SOla Lilja 1303592b7f6SOla Lilja static int setup_pcm_framing(struct snd_soc_dai *dai, unsigned int rate, 1313592b7f6SOla Lilja struct msp_protdesc *prot_desc) 1323592b7f6SOla Lilja { 1333592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(dai->dev); 1343592b7f6SOla Lilja 1353592b7f6SOla Lilja u32 frame_length = MSP_FRAME_LEN_1; 136*fe3a980cSCodrut Grosu 1373592b7f6SOla Lilja prot_desc->frame_width = 0; 1383592b7f6SOla Lilja 1393592b7f6SOla Lilja switch (drvdata->slots) { 1403592b7f6SOla Lilja case 1: 1413592b7f6SOla Lilja frame_length = MSP_FRAME_LEN_1; 1423592b7f6SOla Lilja break; 1433592b7f6SOla Lilja 1443592b7f6SOla Lilja case 2: 1453592b7f6SOla Lilja frame_length = MSP_FRAME_LEN_2; 1463592b7f6SOla Lilja break; 1473592b7f6SOla Lilja 1483592b7f6SOla Lilja case 8: 1493592b7f6SOla Lilja frame_length = MSP_FRAME_LEN_8; 1503592b7f6SOla Lilja break; 1513592b7f6SOla Lilja 1523592b7f6SOla Lilja case 16: 1533592b7f6SOla Lilja frame_length = MSP_FRAME_LEN_16; 1543592b7f6SOla Lilja break; 1553592b7f6SOla Lilja default: 1563592b7f6SOla Lilja dev_err(dai->dev, 1573592b7f6SOla Lilja "%s: Error: Unsupported slot-count (slots = %d)!\n", 1583592b7f6SOla Lilja __func__, drvdata->slots); 1593592b7f6SOla Lilja return -EINVAL; 1603592b7f6SOla Lilja } 1613592b7f6SOla Lilja 1623592b7f6SOla Lilja prot_desc->tx_frame_len_1 = frame_length; 1633592b7f6SOla Lilja prot_desc->rx_frame_len_1 = frame_length; 1643592b7f6SOla Lilja prot_desc->tx_frame_len_2 = frame_length; 1653592b7f6SOla Lilja prot_desc->rx_frame_len_2 = frame_length; 1663592b7f6SOla Lilja 1673592b7f6SOla Lilja prot_desc->tx_elem_len_1 = MSP_ELEM_LEN_16; 1683592b7f6SOla Lilja prot_desc->rx_elem_len_1 = MSP_ELEM_LEN_16; 1693592b7f6SOla Lilja prot_desc->tx_elem_len_2 = MSP_ELEM_LEN_16; 1703592b7f6SOla Lilja prot_desc->rx_elem_len_2 = MSP_ELEM_LEN_16; 1713592b7f6SOla Lilja 1723592b7f6SOla Lilja return setup_frameper(dai, rate, prot_desc); 1733592b7f6SOla Lilja } 1743592b7f6SOla Lilja 1753592b7f6SOla Lilja static int setup_clocking(struct snd_soc_dai *dai, 1763592b7f6SOla Lilja unsigned int fmt, 1773592b7f6SOla Lilja struct ux500_msp_config *msp_config) 1783592b7f6SOla Lilja { 1793592b7f6SOla Lilja switch (fmt & SND_SOC_DAIFMT_INV_MASK) { 1803592b7f6SOla Lilja case SND_SOC_DAIFMT_NB_NF: 1813592b7f6SOla Lilja break; 1823592b7f6SOla Lilja 1833592b7f6SOla Lilja case SND_SOC_DAIFMT_NB_IF: 1843592b7f6SOla Lilja msp_config->tx_fsync_pol ^= 1 << TFSPOL_SHIFT; 1853592b7f6SOla Lilja msp_config->rx_fsync_pol ^= 1 << RFSPOL_SHIFT; 1863592b7f6SOla Lilja 1873592b7f6SOla Lilja break; 1883592b7f6SOla Lilja 1893592b7f6SOla Lilja default: 1903592b7f6SOla Lilja dev_err(dai->dev, 191c3d7abcaSColin Ian King "%s: Error: Unsupported inversion (fmt = 0x%x)!\n", 1923592b7f6SOla Lilja __func__, fmt); 1933592b7f6SOla Lilja 1943592b7f6SOla Lilja return -EINVAL; 1953592b7f6SOla Lilja } 1963592b7f6SOla Lilja 1973592b7f6SOla Lilja switch (fmt & SND_SOC_DAIFMT_MASTER_MASK) { 1983592b7f6SOla Lilja case SND_SOC_DAIFMT_CBM_CFM: 1993592b7f6SOla Lilja dev_dbg(dai->dev, "%s: Codec is master.\n", __func__); 2003592b7f6SOla Lilja 2013592b7f6SOla Lilja msp_config->iodelay = 0x20; 2023592b7f6SOla Lilja msp_config->rx_fsync_sel = 0; 2033592b7f6SOla Lilja msp_config->tx_fsync_sel = 1 << TFSSEL_SHIFT; 2043592b7f6SOla Lilja msp_config->tx_clk_sel = 0; 2053592b7f6SOla Lilja msp_config->rx_clk_sel = 0; 2063592b7f6SOla Lilja msp_config->srg_clk_sel = 0x2 << SCKSEL_SHIFT; 2073592b7f6SOla Lilja 2083592b7f6SOla Lilja break; 2093592b7f6SOla Lilja 2103592b7f6SOla Lilja case SND_SOC_DAIFMT_CBS_CFS: 2113592b7f6SOla Lilja dev_dbg(dai->dev, "%s: Codec is slave.\n", __func__); 2123592b7f6SOla Lilja 2133592b7f6SOla Lilja msp_config->tx_clk_sel = TX_CLK_SEL_SRG; 2143592b7f6SOla Lilja msp_config->tx_fsync_sel = TX_SYNC_SRG_PROG; 2153592b7f6SOla Lilja msp_config->rx_clk_sel = RX_CLK_SEL_SRG; 2163592b7f6SOla Lilja msp_config->rx_fsync_sel = RX_SYNC_SRG; 2173592b7f6SOla Lilja msp_config->srg_clk_sel = 1 << SCKSEL_SHIFT; 2183592b7f6SOla Lilja 2193592b7f6SOla Lilja break; 2203592b7f6SOla Lilja 2213592b7f6SOla Lilja default: 222c3d7abcaSColin Ian King dev_err(dai->dev, "%s: Error: Unsupported master (fmt = 0x%x)!\n", 2233592b7f6SOla Lilja __func__, fmt); 2243592b7f6SOla Lilja 2253592b7f6SOla Lilja return -EINVAL; 2263592b7f6SOla Lilja } 2273592b7f6SOla Lilja 2283592b7f6SOla Lilja return 0; 2293592b7f6SOla Lilja } 2303592b7f6SOla Lilja 2313592b7f6SOla Lilja static int setup_pcm_protdesc(struct snd_soc_dai *dai, 2323592b7f6SOla Lilja unsigned int fmt, 2333592b7f6SOla Lilja struct msp_protdesc *prot_desc) 2343592b7f6SOla Lilja { 2353592b7f6SOla Lilja prot_desc->rx_phase_mode = MSP_SINGLE_PHASE; 2363592b7f6SOla Lilja prot_desc->tx_phase_mode = MSP_SINGLE_PHASE; 2373592b7f6SOla Lilja prot_desc->rx_phase2_start_mode = MSP_PHASE2_START_MODE_IMEDIATE; 2383592b7f6SOla Lilja prot_desc->tx_phase2_start_mode = MSP_PHASE2_START_MODE_IMEDIATE; 2393592b7f6SOla Lilja prot_desc->rx_byte_order = MSP_BTF_MS_BIT_FIRST; 2403592b7f6SOla Lilja prot_desc->tx_byte_order = MSP_BTF_MS_BIT_FIRST; 2413592b7f6SOla Lilja prot_desc->tx_fsync_pol = MSP_FSYNC_POL(MSP_FSYNC_POL_ACT_HI); 2423592b7f6SOla Lilja prot_desc->rx_fsync_pol = MSP_FSYNC_POL_ACT_HI << RFSPOL_SHIFT; 2433592b7f6SOla Lilja 2443592b7f6SOla Lilja if ((fmt & SND_SOC_DAIFMT_FORMAT_MASK) == SND_SOC_DAIFMT_DSP_A) { 2453592b7f6SOla Lilja dev_dbg(dai->dev, "%s: DSP_A.\n", __func__); 2463592b7f6SOla Lilja prot_desc->rx_clk_pol = MSP_RISING_EDGE; 2473592b7f6SOla Lilja prot_desc->tx_clk_pol = MSP_FALLING_EDGE; 2483592b7f6SOla Lilja 2493592b7f6SOla Lilja prot_desc->rx_data_delay = MSP_DELAY_1; 2503592b7f6SOla Lilja prot_desc->tx_data_delay = MSP_DELAY_1; 2513592b7f6SOla Lilja } else { 2523592b7f6SOla Lilja dev_dbg(dai->dev, "%s: DSP_B.\n", __func__); 2533592b7f6SOla Lilja prot_desc->rx_clk_pol = MSP_FALLING_EDGE; 2543592b7f6SOla Lilja prot_desc->tx_clk_pol = MSP_RISING_EDGE; 2553592b7f6SOla Lilja 2563592b7f6SOla Lilja prot_desc->rx_data_delay = MSP_DELAY_0; 2573592b7f6SOla Lilja prot_desc->tx_data_delay = MSP_DELAY_0; 2583592b7f6SOla Lilja } 2593592b7f6SOla Lilja 2603592b7f6SOla Lilja prot_desc->rx_half_word_swap = MSP_SWAP_NONE; 2613592b7f6SOla Lilja prot_desc->tx_half_word_swap = MSP_SWAP_NONE; 2623592b7f6SOla Lilja prot_desc->compression_mode = MSP_COMPRESS_MODE_LINEAR; 2633592b7f6SOla Lilja prot_desc->expansion_mode = MSP_EXPAND_MODE_LINEAR; 2643592b7f6SOla Lilja prot_desc->frame_sync_ignore = MSP_FSYNC_IGNORE; 2653592b7f6SOla Lilja 2663592b7f6SOla Lilja return 0; 2673592b7f6SOla Lilja } 2683592b7f6SOla Lilja 2693592b7f6SOla Lilja static int setup_i2s_protdesc(struct msp_protdesc *prot_desc) 2703592b7f6SOla Lilja { 2713592b7f6SOla Lilja prot_desc->rx_phase_mode = MSP_DUAL_PHASE; 2723592b7f6SOla Lilja prot_desc->tx_phase_mode = MSP_DUAL_PHASE; 2733592b7f6SOla Lilja prot_desc->rx_phase2_start_mode = MSP_PHASE2_START_MODE_FSYNC; 2743592b7f6SOla Lilja prot_desc->tx_phase2_start_mode = MSP_PHASE2_START_MODE_FSYNC; 2753592b7f6SOla Lilja prot_desc->rx_byte_order = MSP_BTF_MS_BIT_FIRST; 2763592b7f6SOla Lilja prot_desc->tx_byte_order = MSP_BTF_MS_BIT_FIRST; 2773592b7f6SOla Lilja prot_desc->tx_fsync_pol = MSP_FSYNC_POL(MSP_FSYNC_POL_ACT_LO); 2783592b7f6SOla Lilja prot_desc->rx_fsync_pol = MSP_FSYNC_POL_ACT_LO << RFSPOL_SHIFT; 2793592b7f6SOla Lilja 2803592b7f6SOla Lilja prot_desc->rx_frame_len_1 = MSP_FRAME_LEN_1; 2813592b7f6SOla Lilja prot_desc->rx_frame_len_2 = MSP_FRAME_LEN_1; 2823592b7f6SOla Lilja prot_desc->tx_frame_len_1 = MSP_FRAME_LEN_1; 2833592b7f6SOla Lilja prot_desc->tx_frame_len_2 = MSP_FRAME_LEN_1; 2843592b7f6SOla Lilja prot_desc->rx_elem_len_1 = MSP_ELEM_LEN_16; 2853592b7f6SOla Lilja prot_desc->rx_elem_len_2 = MSP_ELEM_LEN_16; 2863592b7f6SOla Lilja prot_desc->tx_elem_len_1 = MSP_ELEM_LEN_16; 2873592b7f6SOla Lilja prot_desc->tx_elem_len_2 = MSP_ELEM_LEN_16; 2883592b7f6SOla Lilja 2893592b7f6SOla Lilja prot_desc->rx_clk_pol = MSP_RISING_EDGE; 2903592b7f6SOla Lilja prot_desc->tx_clk_pol = MSP_FALLING_EDGE; 2913592b7f6SOla Lilja 2923592b7f6SOla Lilja prot_desc->rx_data_delay = MSP_DELAY_0; 2933592b7f6SOla Lilja prot_desc->tx_data_delay = MSP_DELAY_0; 2943592b7f6SOla Lilja 2953592b7f6SOla Lilja prot_desc->tx_half_word_swap = MSP_SWAP_NONE; 2963592b7f6SOla Lilja prot_desc->rx_half_word_swap = MSP_SWAP_NONE; 2973592b7f6SOla Lilja prot_desc->compression_mode = MSP_COMPRESS_MODE_LINEAR; 2983592b7f6SOla Lilja prot_desc->expansion_mode = MSP_EXPAND_MODE_LINEAR; 2993592b7f6SOla Lilja prot_desc->frame_sync_ignore = MSP_FSYNC_IGNORE; 3003592b7f6SOla Lilja 3013592b7f6SOla Lilja return 0; 3023592b7f6SOla Lilja } 3033592b7f6SOla Lilja 3043592b7f6SOla Lilja static int setup_msp_config(struct snd_pcm_substream *substream, 3053592b7f6SOla Lilja struct snd_soc_dai *dai, 3063592b7f6SOla Lilja struct ux500_msp_config *msp_config) 3073592b7f6SOla Lilja { 3083592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(dai->dev); 3093592b7f6SOla Lilja struct msp_protdesc *prot_desc = &msp_config->protdesc; 3103592b7f6SOla Lilja struct snd_pcm_runtime *runtime = substream->runtime; 3113592b7f6SOla Lilja unsigned int fmt = drvdata->fmt; 3123592b7f6SOla Lilja int ret; 3133592b7f6SOla Lilja 3143592b7f6SOla Lilja memset(msp_config, 0, sizeof(*msp_config)); 3153592b7f6SOla Lilja 3163592b7f6SOla Lilja msp_config->f_inputclk = drvdata->master_clk; 3173592b7f6SOla Lilja 3183592b7f6SOla Lilja msp_config->tx_fifo_config = TX_FIFO_ENABLE; 3193592b7f6SOla Lilja msp_config->rx_fifo_config = RX_FIFO_ENABLE; 3203592b7f6SOla Lilja msp_config->def_elem_len = 1; 3213592b7f6SOla Lilja msp_config->direction = substream->stream == SNDRV_PCM_STREAM_PLAYBACK ? 3223592b7f6SOla Lilja MSP_DIR_TX : MSP_DIR_RX; 3233592b7f6SOla Lilja msp_config->data_size = MSP_DATA_BITS_32; 3243592b7f6SOla Lilja msp_config->frame_freq = runtime->rate; 3253592b7f6SOla Lilja 3263592b7f6SOla Lilja dev_dbg(dai->dev, "%s: f_inputclk = %u, frame_freq = %u.\n", 3273592b7f6SOla Lilja __func__, msp_config->f_inputclk, msp_config->frame_freq); 3283592b7f6SOla Lilja /* To avoid division by zero */ 3293592b7f6SOla Lilja prot_desc->clocks_per_frame = 1; 3303592b7f6SOla Lilja 3313592b7f6SOla Lilja dev_dbg(dai->dev, "%s: rate: %u, channels: %d.\n", __func__, 3323592b7f6SOla Lilja runtime->rate, runtime->channels); 3333592b7f6SOla Lilja switch (fmt & 3343592b7f6SOla Lilja (SND_SOC_DAIFMT_FORMAT_MASK | SND_SOC_DAIFMT_MASTER_MASK)) { 3353592b7f6SOla Lilja case SND_SOC_DAIFMT_I2S | SND_SOC_DAIFMT_CBS_CFS: 3363592b7f6SOla Lilja dev_dbg(dai->dev, "%s: SND_SOC_DAIFMT_I2S.\n", __func__); 3373592b7f6SOla Lilja 3383592b7f6SOla Lilja msp_config->default_protdesc = 1; 3393592b7f6SOla Lilja msp_config->protocol = MSP_I2S_PROTOCOL; 3403592b7f6SOla Lilja break; 3413592b7f6SOla Lilja 3423592b7f6SOla Lilja case SND_SOC_DAIFMT_I2S | SND_SOC_DAIFMT_CBM_CFM: 3433592b7f6SOla Lilja dev_dbg(dai->dev, "%s: SND_SOC_DAIFMT_I2S.\n", __func__); 3443592b7f6SOla Lilja 3453592b7f6SOla Lilja msp_config->data_size = MSP_DATA_BITS_16; 3463592b7f6SOla Lilja msp_config->protocol = MSP_I2S_PROTOCOL; 3473592b7f6SOla Lilja 3483592b7f6SOla Lilja ret = setup_i2s_protdesc(prot_desc); 3493592b7f6SOla Lilja if (ret < 0) 3503592b7f6SOla Lilja return ret; 3513592b7f6SOla Lilja 3523592b7f6SOla Lilja break; 3533592b7f6SOla Lilja 3543592b7f6SOla Lilja case SND_SOC_DAIFMT_DSP_A | SND_SOC_DAIFMT_CBS_CFS: 3553592b7f6SOla Lilja case SND_SOC_DAIFMT_DSP_A | SND_SOC_DAIFMT_CBM_CFM: 3563592b7f6SOla Lilja case SND_SOC_DAIFMT_DSP_B | SND_SOC_DAIFMT_CBS_CFS: 3573592b7f6SOla Lilja case SND_SOC_DAIFMT_DSP_B | SND_SOC_DAIFMT_CBM_CFM: 3583592b7f6SOla Lilja dev_dbg(dai->dev, "%s: PCM format.\n", __func__); 3593592b7f6SOla Lilja 3603592b7f6SOla Lilja msp_config->data_size = MSP_DATA_BITS_16; 3613592b7f6SOla Lilja msp_config->protocol = MSP_PCM_PROTOCOL; 3623592b7f6SOla Lilja 3633592b7f6SOla Lilja ret = setup_pcm_protdesc(dai, fmt, prot_desc); 3643592b7f6SOla Lilja if (ret < 0) 3653592b7f6SOla Lilja return ret; 3663592b7f6SOla Lilja 3673592b7f6SOla Lilja ret = setup_pcm_multichan(dai, msp_config); 3683592b7f6SOla Lilja if (ret < 0) 3693592b7f6SOla Lilja return ret; 3703592b7f6SOla Lilja 3713592b7f6SOla Lilja ret = setup_pcm_framing(dai, runtime->rate, prot_desc); 3723592b7f6SOla Lilja if (ret < 0) 3733592b7f6SOla Lilja return ret; 3743592b7f6SOla Lilja 3753592b7f6SOla Lilja break; 3763592b7f6SOla Lilja 3773592b7f6SOla Lilja default: 378c3d7abcaSColin Ian King dev_err(dai->dev, "%s: Error: Unsupported format (%d)!\n", 3793592b7f6SOla Lilja __func__, fmt); 3803592b7f6SOla Lilja return -EINVAL; 3813592b7f6SOla Lilja } 3823592b7f6SOla Lilja 3833592b7f6SOla Lilja return setup_clocking(dai, fmt, msp_config); 3843592b7f6SOla Lilja } 3853592b7f6SOla Lilja 3863592b7f6SOla Lilja static int ux500_msp_dai_startup(struct snd_pcm_substream *substream, 3873592b7f6SOla Lilja struct snd_soc_dai *dai) 3883592b7f6SOla Lilja { 3893592b7f6SOla Lilja int ret = 0; 3903592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(dai->dev); 3913592b7f6SOla Lilja 3923592b7f6SOla Lilja dev_dbg(dai->dev, "%s: MSP %d (%s): Enter.\n", __func__, dai->id, 3933592b7f6SOla Lilja snd_pcm_stream_str(substream)); 3943592b7f6SOla Lilja 3953592b7f6SOla Lilja /* Enable regulator */ 3963592b7f6SOla Lilja ret = regulator_enable(drvdata->reg_vape); 3973592b7f6SOla Lilja if (ret != 0) { 3983592b7f6SOla Lilja dev_err(drvdata->msp->dev, 3993592b7f6SOla Lilja "%s: Failed to enable regulator!\n", __func__); 4003592b7f6SOla Lilja return ret; 4013592b7f6SOla Lilja } 4023592b7f6SOla Lilja 403f61ab093SUlf Hansson /* Prepare and enable clocks */ 404f61ab093SUlf Hansson dev_dbg(dai->dev, "%s: Enabling MSP-clocks.\n", __func__); 405f61ab093SUlf Hansson ret = clk_prepare_enable(drvdata->pclk); 406f61ab093SUlf Hansson if (ret) { 407f61ab093SUlf Hansson dev_err(drvdata->msp->dev, 408f61ab093SUlf Hansson "%s: Failed to prepare/enable pclk!\n", __func__); 409f61ab093SUlf Hansson goto err_pclk; 410f61ab093SUlf Hansson } 4113592b7f6SOla Lilja 412f61ab093SUlf Hansson ret = clk_prepare_enable(drvdata->clk); 413f61ab093SUlf Hansson if (ret) { 414f61ab093SUlf Hansson dev_err(drvdata->msp->dev, 415f61ab093SUlf Hansson "%s: Failed to prepare/enable clk!\n", __func__); 416f61ab093SUlf Hansson goto err_clk; 417f61ab093SUlf Hansson } 418f61ab093SUlf Hansson 419f61ab093SUlf Hansson return ret; 420f61ab093SUlf Hansson err_clk: 421f61ab093SUlf Hansson clk_disable_unprepare(drvdata->pclk); 422f61ab093SUlf Hansson err_pclk: 423f61ab093SUlf Hansson regulator_disable(drvdata->reg_vape); 424fe36a0b2SUlf Hansson return ret; 4253592b7f6SOla Lilja } 4263592b7f6SOla Lilja 4273592b7f6SOla Lilja static void ux500_msp_dai_shutdown(struct snd_pcm_substream *substream, 4283592b7f6SOla Lilja struct snd_soc_dai *dai) 4293592b7f6SOla Lilja { 4303592b7f6SOla Lilja int ret; 4313592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(dai->dev); 4323592b7f6SOla Lilja bool is_playback = (substream->stream == SNDRV_PCM_STREAM_PLAYBACK); 4333592b7f6SOla Lilja 4343592b7f6SOla Lilja dev_dbg(dai->dev, "%s: MSP %d (%s): Enter.\n", __func__, dai->id, 4353592b7f6SOla Lilja snd_pcm_stream_str(substream)); 4363592b7f6SOla Lilja 4373592b7f6SOla Lilja if (drvdata->vape_opp_constraint == 1) { 4383592b7f6SOla Lilja prcmu_qos_update_requirement(PRCMU_QOS_APE_OPP, 4393592b7f6SOla Lilja "ux500_msp_i2s", 50); 4403592b7f6SOla Lilja drvdata->vape_opp_constraint = 0; 4413592b7f6SOla Lilja } 4423592b7f6SOla Lilja 4433592b7f6SOla Lilja if (ux500_msp_i2s_close(drvdata->msp, 4443592b7f6SOla Lilja is_playback ? MSP_DIR_TX : MSP_DIR_RX)) { 4453592b7f6SOla Lilja dev_err(dai->dev, 4463592b7f6SOla Lilja "%s: Error: MSP %d (%s): Unable to close i2s.\n", 4473592b7f6SOla Lilja __func__, dai->id, snd_pcm_stream_str(substream)); 4483592b7f6SOla Lilja } 4493592b7f6SOla Lilja 450f61ab093SUlf Hansson /* Disable and unprepare clocks */ 451fe36a0b2SUlf Hansson clk_disable_unprepare(drvdata->clk); 452f61ab093SUlf Hansson clk_disable_unprepare(drvdata->pclk); 4533592b7f6SOla Lilja 4543592b7f6SOla Lilja /* Disable regulator */ 4553592b7f6SOla Lilja ret = regulator_disable(drvdata->reg_vape); 4563592b7f6SOla Lilja if (ret < 0) 4573592b7f6SOla Lilja dev_err(dai->dev, 4583592b7f6SOla Lilja "%s: ERROR: Failed to disable regulator (%d)!\n", 4593592b7f6SOla Lilja __func__, ret); 4603592b7f6SOla Lilja } 4613592b7f6SOla Lilja 4623592b7f6SOla Lilja static int ux500_msp_dai_prepare(struct snd_pcm_substream *substream, 4633592b7f6SOla Lilja struct snd_soc_dai *dai) 4643592b7f6SOla Lilja { 4653592b7f6SOla Lilja int ret = 0; 4663592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(dai->dev); 4673592b7f6SOla Lilja struct snd_pcm_runtime *runtime = substream->runtime; 4683592b7f6SOla Lilja struct ux500_msp_config msp_config; 4693592b7f6SOla Lilja 4703592b7f6SOla Lilja dev_dbg(dai->dev, "%s: MSP %d (%s): Enter (rate = %d).\n", __func__, 4713592b7f6SOla Lilja dai->id, snd_pcm_stream_str(substream), runtime->rate); 4723592b7f6SOla Lilja 4733592b7f6SOla Lilja setup_msp_config(substream, dai, &msp_config); 4743592b7f6SOla Lilja 4753592b7f6SOla Lilja ret = ux500_msp_i2s_open(drvdata->msp, &msp_config); 4763592b7f6SOla Lilja if (ret < 0) { 4773592b7f6SOla Lilja dev_err(dai->dev, "%s: Error: msp_setup failed (ret = %d)!\n", 4783592b7f6SOla Lilja __func__, ret); 4793592b7f6SOla Lilja return ret; 4803592b7f6SOla Lilja } 4813592b7f6SOla Lilja 4823592b7f6SOla Lilja /* Set OPP-level */ 4833592b7f6SOla Lilja if ((drvdata->fmt & SND_SOC_DAIFMT_MASTER_MASK) && 4843592b7f6SOla Lilja (drvdata->msp->f_bitclk > 19200000)) { 4853592b7f6SOla Lilja /* If the bit-clock is higher than 19.2MHz, Vape should be 4868fcf1e5eSCodrut Grosu * run in 100% OPP. Only when bit-clock is used (MSP master) 4878fcf1e5eSCodrut Grosu */ 4883592b7f6SOla Lilja prcmu_qos_update_requirement(PRCMU_QOS_APE_OPP, 4893592b7f6SOla Lilja "ux500-msp-i2s", 100); 4903592b7f6SOla Lilja drvdata->vape_opp_constraint = 1; 4913592b7f6SOla Lilja } else { 4923592b7f6SOla Lilja prcmu_qos_update_requirement(PRCMU_QOS_APE_OPP, 4933592b7f6SOla Lilja "ux500-msp-i2s", 50); 4943592b7f6SOla Lilja drvdata->vape_opp_constraint = 0; 4953592b7f6SOla Lilja } 4963592b7f6SOla Lilja 4973592b7f6SOla Lilja return ret; 4983592b7f6SOla Lilja } 4993592b7f6SOla Lilja 5003592b7f6SOla Lilja static int ux500_msp_dai_hw_params(struct snd_pcm_substream *substream, 5013592b7f6SOla Lilja struct snd_pcm_hw_params *params, 5023592b7f6SOla Lilja struct snd_soc_dai *dai) 5033592b7f6SOla Lilja { 5043592b7f6SOla Lilja unsigned int mask, slots_active; 5053592b7f6SOla Lilja struct snd_pcm_runtime *runtime = substream->runtime; 5063592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(dai->dev); 5073592b7f6SOla Lilja 5083592b7f6SOla Lilja dev_dbg(dai->dev, "%s: MSP %d (%s): Enter.\n", 5093592b7f6SOla Lilja __func__, dai->id, snd_pcm_stream_str(substream)); 5103592b7f6SOla Lilja 5113592b7f6SOla Lilja switch (drvdata->fmt & SND_SOC_DAIFMT_FORMAT_MASK) { 5123592b7f6SOla Lilja case SND_SOC_DAIFMT_I2S: 5133592b7f6SOla Lilja snd_pcm_hw_constraint_minmax(runtime, 5143592b7f6SOla Lilja SNDRV_PCM_HW_PARAM_CHANNELS, 5153592b7f6SOla Lilja 1, 2); 5163592b7f6SOla Lilja break; 5173592b7f6SOla Lilja 5183592b7f6SOla Lilja case SND_SOC_DAIFMT_DSP_B: 5193592b7f6SOla Lilja case SND_SOC_DAIFMT_DSP_A: 5203592b7f6SOla Lilja mask = substream->stream == SNDRV_PCM_STREAM_PLAYBACK ? 5213592b7f6SOla Lilja drvdata->tx_mask : 5223592b7f6SOla Lilja drvdata->rx_mask; 5233592b7f6SOla Lilja 5243592b7f6SOla Lilja slots_active = hweight32(mask); 5253592b7f6SOla Lilja dev_dbg(dai->dev, "TDM-slots active: %d", slots_active); 5263592b7f6SOla Lilja 5271bf2d35bSLars-Peter Clausen snd_pcm_hw_constraint_single(runtime, 5283592b7f6SOla Lilja SNDRV_PCM_HW_PARAM_CHANNELS, 5291bf2d35bSLars-Peter Clausen slots_active); 5303592b7f6SOla Lilja break; 5313592b7f6SOla Lilja 5323592b7f6SOla Lilja default: 5333592b7f6SOla Lilja dev_err(dai->dev, 5343592b7f6SOla Lilja "%s: Error: Unsupported protocol (fmt = 0x%x)!\n", 5353592b7f6SOla Lilja __func__, drvdata->fmt); 5363592b7f6SOla Lilja return -EINVAL; 5373592b7f6SOla Lilja } 5383592b7f6SOla Lilja 5393592b7f6SOla Lilja return 0; 5403592b7f6SOla Lilja } 5413592b7f6SOla Lilja 5423592b7f6SOla Lilja static int ux500_msp_dai_set_dai_fmt(struct snd_soc_dai *dai, 5433592b7f6SOla Lilja unsigned int fmt) 5443592b7f6SOla Lilja { 5453592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(dai->dev); 5463592b7f6SOla Lilja 5473592b7f6SOla Lilja dev_dbg(dai->dev, "%s: MSP %d: Enter.\n", __func__, dai->id); 5483592b7f6SOla Lilja 5493592b7f6SOla Lilja switch (fmt & (SND_SOC_DAIFMT_FORMAT_MASK | 5503592b7f6SOla Lilja SND_SOC_DAIFMT_MASTER_MASK)) { 5513592b7f6SOla Lilja case SND_SOC_DAIFMT_I2S | SND_SOC_DAIFMT_CBS_CFS: 5523592b7f6SOla Lilja case SND_SOC_DAIFMT_I2S | SND_SOC_DAIFMT_CBM_CFM: 5533592b7f6SOla Lilja case SND_SOC_DAIFMT_DSP_B | SND_SOC_DAIFMT_CBS_CFS: 5543592b7f6SOla Lilja case SND_SOC_DAIFMT_DSP_B | SND_SOC_DAIFMT_CBM_CFM: 5553592b7f6SOla Lilja case SND_SOC_DAIFMT_DSP_A | SND_SOC_DAIFMT_CBS_CFS: 5563592b7f6SOla Lilja case SND_SOC_DAIFMT_DSP_A | SND_SOC_DAIFMT_CBM_CFM: 5573592b7f6SOla Lilja break; 5583592b7f6SOla Lilja 5593592b7f6SOla Lilja default: 5603592b7f6SOla Lilja dev_err(dai->dev, 5613592b7f6SOla Lilja "%s: Error: Unsupported protocol/master (fmt = 0x%x)!\n", 5623592b7f6SOla Lilja __func__, drvdata->fmt); 5633592b7f6SOla Lilja return -EINVAL; 5643592b7f6SOla Lilja } 5653592b7f6SOla Lilja 5663592b7f6SOla Lilja switch (fmt & SND_SOC_DAIFMT_INV_MASK) { 5673592b7f6SOla Lilja case SND_SOC_DAIFMT_NB_NF: 5683592b7f6SOla Lilja case SND_SOC_DAIFMT_NB_IF: 5693592b7f6SOla Lilja case SND_SOC_DAIFMT_IB_IF: 5703592b7f6SOla Lilja break; 5713592b7f6SOla Lilja 5723592b7f6SOla Lilja default: 5733592b7f6SOla Lilja dev_err(dai->dev, 5743592b7f6SOla Lilja "%s: Error: Unsupported inversion (fmt = 0x%x)!\n", 5753592b7f6SOla Lilja __func__, drvdata->fmt); 5763592b7f6SOla Lilja return -EINVAL; 5773592b7f6SOla Lilja } 5783592b7f6SOla Lilja 5793592b7f6SOla Lilja drvdata->fmt = fmt; 5803592b7f6SOla Lilja return 0; 5813592b7f6SOla Lilja } 5823592b7f6SOla Lilja 5833592b7f6SOla Lilja static int ux500_msp_dai_set_tdm_slot(struct snd_soc_dai *dai, 5843592b7f6SOla Lilja unsigned int tx_mask, 5853592b7f6SOla Lilja unsigned int rx_mask, 5863592b7f6SOla Lilja int slots, int slot_width) 5873592b7f6SOla Lilja { 5883592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(dai->dev); 5893592b7f6SOla Lilja unsigned int cap; 5903592b7f6SOla Lilja 5913592b7f6SOla Lilja switch (slots) { 5923592b7f6SOla Lilja case 1: 5933592b7f6SOla Lilja cap = 0x01; 5943592b7f6SOla Lilja break; 5953592b7f6SOla Lilja case 2: 5963592b7f6SOla Lilja cap = 0x03; 5973592b7f6SOla Lilja break; 5983592b7f6SOla Lilja case 8: 5993592b7f6SOla Lilja cap = 0xFF; 6003592b7f6SOla Lilja break; 6013592b7f6SOla Lilja case 16: 6023592b7f6SOla Lilja cap = 0xFFFF; 6033592b7f6SOla Lilja break; 6043592b7f6SOla Lilja default: 6053592b7f6SOla Lilja dev_err(dai->dev, "%s: Error: Unsupported slot-count (%d)!\n", 6063592b7f6SOla Lilja __func__, slots); 6073592b7f6SOla Lilja return -EINVAL; 6083592b7f6SOla Lilja } 6093592b7f6SOla Lilja drvdata->slots = slots; 6103592b7f6SOla Lilja 6113592b7f6SOla Lilja if (!(slot_width == 16)) { 6123592b7f6SOla Lilja dev_err(dai->dev, "%s: Error: Unsupported slot-width (%d)!\n", 6133592b7f6SOla Lilja __func__, slot_width); 6143592b7f6SOla Lilja return -EINVAL; 6153592b7f6SOla Lilja } 6163592b7f6SOla Lilja drvdata->slot_width = slot_width; 6173592b7f6SOla Lilja 6183592b7f6SOla Lilja drvdata->tx_mask = tx_mask & cap; 6193592b7f6SOla Lilja drvdata->rx_mask = rx_mask & cap; 6203592b7f6SOla Lilja 6213592b7f6SOla Lilja return 0; 6223592b7f6SOla Lilja } 6233592b7f6SOla Lilja 6243592b7f6SOla Lilja static int ux500_msp_dai_set_dai_sysclk(struct snd_soc_dai *dai, 6253592b7f6SOla Lilja int clk_id, unsigned int freq, int dir) 6263592b7f6SOla Lilja { 6273592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(dai->dev); 6283592b7f6SOla Lilja 6293592b7f6SOla Lilja dev_dbg(dai->dev, "%s: MSP %d: Enter. clk-id: %d, freq: %u.\n", 6303592b7f6SOla Lilja __func__, dai->id, clk_id, freq); 6313592b7f6SOla Lilja 6323592b7f6SOla Lilja switch (clk_id) { 6333592b7f6SOla Lilja case UX500_MSP_MASTER_CLOCK: 6343592b7f6SOla Lilja drvdata->master_clk = freq; 6353592b7f6SOla Lilja break; 6363592b7f6SOla Lilja 6373592b7f6SOla Lilja default: 6383592b7f6SOla Lilja dev_err(dai->dev, "%s: MSP %d: Invalid clk-id (%d)!\n", 6393592b7f6SOla Lilja __func__, dai->id, clk_id); 6403592b7f6SOla Lilja return -EINVAL; 6413592b7f6SOla Lilja } 6423592b7f6SOla Lilja 6433592b7f6SOla Lilja return 0; 6443592b7f6SOla Lilja } 6453592b7f6SOla Lilja 6463592b7f6SOla Lilja static int ux500_msp_dai_trigger(struct snd_pcm_substream *substream, 6473592b7f6SOla Lilja int cmd, struct snd_soc_dai *dai) 6483592b7f6SOla Lilja { 6493592b7f6SOla Lilja int ret = 0; 6503592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(dai->dev); 6513592b7f6SOla Lilja 6523592b7f6SOla Lilja dev_dbg(dai->dev, "%s: MSP %d (%s): Enter (msp->id = %d, cmd = %d).\n", 6533592b7f6SOla Lilja __func__, dai->id, snd_pcm_stream_str(substream), 6543592b7f6SOla Lilja (int)drvdata->msp->id, cmd); 6553592b7f6SOla Lilja 6563592b7f6SOla Lilja ret = ux500_msp_i2s_trigger(drvdata->msp, cmd, substream->stream); 6573592b7f6SOla Lilja 6583592b7f6SOla Lilja return ret; 6593592b7f6SOla Lilja } 6603592b7f6SOla Lilja 661f382acbeSLee Jones static int ux500_msp_dai_of_probe(struct snd_soc_dai *dai) 662f382acbeSLee Jones { 663f382acbeSLee Jones struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(dai->dev); 664f382acbeSLee Jones struct snd_dmaengine_dai_dma_data *playback_dma_data; 665f382acbeSLee Jones struct snd_dmaengine_dai_dma_data *capture_dma_data; 666f382acbeSLee Jones 667f382acbeSLee Jones playback_dma_data = devm_kzalloc(dai->dev, 668f382acbeSLee Jones sizeof(*playback_dma_data), 669f382acbeSLee Jones GFP_KERNEL); 670f382acbeSLee Jones if (!playback_dma_data) 671f382acbeSLee Jones return -ENOMEM; 672f382acbeSLee Jones 673f382acbeSLee Jones capture_dma_data = devm_kzalloc(dai->dev, 674f382acbeSLee Jones sizeof(*capture_dma_data), 675f382acbeSLee Jones GFP_KERNEL); 676f382acbeSLee Jones if (!capture_dma_data) 677f382acbeSLee Jones return -ENOMEM; 678f382acbeSLee Jones 679f382acbeSLee Jones playback_dma_data->addr = drvdata->msp->playback_dma_data.tx_rx_addr; 680f382acbeSLee Jones capture_dma_data->addr = drvdata->msp->capture_dma_data.tx_rx_addr; 681f382acbeSLee Jones 682f382acbeSLee Jones playback_dma_data->maxburst = 4; 683f382acbeSLee Jones capture_dma_data->maxburst = 4; 684f382acbeSLee Jones 685f382acbeSLee Jones snd_soc_dai_init_dma_data(dai, playback_dma_data, capture_dma_data); 686f382acbeSLee Jones 687f382acbeSLee Jones return 0; 688f382acbeSLee Jones } 689f382acbeSLee Jones 6903592b7f6SOla Lilja static int ux500_msp_dai_probe(struct snd_soc_dai *dai) 6913592b7f6SOla Lilja { 6923592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(dai->dev); 693f382acbeSLee Jones struct msp_i2s_platform_data *pdata = dai->dev->platform_data; 694f382acbeSLee Jones int ret; 6953592b7f6SOla Lilja 696f382acbeSLee Jones if (!pdata) { 697f382acbeSLee Jones ret = ux500_msp_dai_of_probe(dai); 698f382acbeSLee Jones return ret; 699f382acbeSLee Jones } 7003592b7f6SOla Lilja 701f3fe53ddSFabio Baltieri drvdata->msp->playback_dma_data.data_size = drvdata->slot_width; 702f3fe53ddSFabio Baltieri drvdata->msp->capture_dma_data.data_size = drvdata->slot_width; 7033592b7f6SOla Lilja 704f382acbeSLee Jones snd_soc_dai_init_dma_data(dai, 705f382acbeSLee Jones &drvdata->msp->playback_dma_data, 706f382acbeSLee Jones &drvdata->msp->capture_dma_data); 7073592b7f6SOla Lilja return 0; 7083592b7f6SOla Lilja } 7093592b7f6SOla Lilja 7103592b7f6SOla Lilja static struct snd_soc_dai_ops ux500_msp_dai_ops[] = { 7113592b7f6SOla Lilja { 7123592b7f6SOla Lilja .set_sysclk = ux500_msp_dai_set_dai_sysclk, 7133592b7f6SOla Lilja .set_fmt = ux500_msp_dai_set_dai_fmt, 7143592b7f6SOla Lilja .set_tdm_slot = ux500_msp_dai_set_tdm_slot, 7153592b7f6SOla Lilja .startup = ux500_msp_dai_startup, 7163592b7f6SOla Lilja .shutdown = ux500_msp_dai_shutdown, 7173592b7f6SOla Lilja .prepare = ux500_msp_dai_prepare, 7183592b7f6SOla Lilja .trigger = ux500_msp_dai_trigger, 7193592b7f6SOla Lilja .hw_params = ux500_msp_dai_hw_params, 7203592b7f6SOla Lilja } 7213592b7f6SOla Lilja }; 7223592b7f6SOla Lilja 72333899b19SLee Jones static struct snd_soc_dai_driver ux500_msp_dai_drv = { 7243592b7f6SOla Lilja .probe = ux500_msp_dai_probe, 7253592b7f6SOla Lilja .suspend = NULL, 7263592b7f6SOla Lilja .resume = NULL, 72733899b19SLee Jones .playback.channels_min = UX500_MSP_MIN_CHANNELS, 72833899b19SLee Jones .playback.channels_max = UX500_MSP_MAX_CHANNELS, 72933899b19SLee Jones .playback.rates = UX500_I2S_RATES, 73033899b19SLee Jones .playback.formats = UX500_I2S_FORMATS, 73133899b19SLee Jones .capture.channels_min = UX500_MSP_MIN_CHANNELS, 73233899b19SLee Jones .capture.channels_max = UX500_MSP_MAX_CHANNELS, 73333899b19SLee Jones .capture.rates = UX500_I2S_RATES, 73433899b19SLee Jones .capture.formats = UX500_I2S_FORMATS, 7353592b7f6SOla Lilja .ops = ux500_msp_dai_ops, 7363592b7f6SOla Lilja }; 7373592b7f6SOla Lilja 73842277bddSKuninori Morimoto static const struct snd_soc_component_driver ux500_msp_component = { 73942277bddSKuninori Morimoto .name = "ux500-msp", 74042277bddSKuninori Morimoto }; 74142277bddSKuninori Morimoto 74242277bddSKuninori Morimoto 743da794876SBill Pemberton static int ux500_msp_drv_probe(struct platform_device *pdev) 7443592b7f6SOla Lilja { 7453592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata; 746a61f9e31SLee Jones struct msp_i2s_platform_data *pdata = pdev->dev.platform_data; 747a61f9e31SLee Jones struct device_node *np = pdev->dev.of_node; 7483592b7f6SOla Lilja int ret = 0; 7493592b7f6SOla Lilja 750a61f9e31SLee Jones if (!pdata && !np) { 751a61f9e31SLee Jones dev_err(&pdev->dev, "No platform data or Device Tree found\n"); 752a61f9e31SLee Jones return -ENODEV; 753a61f9e31SLee Jones } 7543592b7f6SOla Lilja 7553592b7f6SOla Lilja drvdata = devm_kzalloc(&pdev->dev, 7563592b7f6SOla Lilja sizeof(struct ux500_msp_i2s_drvdata), 7573592b7f6SOla Lilja GFP_KERNEL); 7580dcd4742SLee Jones if (!drvdata) 7590dcd4742SLee Jones return -ENOMEM; 7600dcd4742SLee Jones 7613592b7f6SOla Lilja drvdata->fmt = 0; 7623592b7f6SOla Lilja drvdata->slots = 1; 7633592b7f6SOla Lilja drvdata->tx_mask = 0x01; 7643592b7f6SOla Lilja drvdata->rx_mask = 0x01; 7653592b7f6SOla Lilja drvdata->slot_width = 16; 7663592b7f6SOla Lilja drvdata->master_clk = MSP_INPUT_FREQ_APB; 7673592b7f6SOla Lilja 7683592b7f6SOla Lilja drvdata->reg_vape = devm_regulator_get(&pdev->dev, "v-ape"); 7693592b7f6SOla Lilja if (IS_ERR(drvdata->reg_vape)) { 7703592b7f6SOla Lilja ret = (int)PTR_ERR(drvdata->reg_vape); 7713592b7f6SOla Lilja dev_err(&pdev->dev, 7723592b7f6SOla Lilja "%s: ERROR: Failed to get Vape supply (%d)!\n", 7733592b7f6SOla Lilja __func__, ret); 7743592b7f6SOla Lilja return ret; 7753592b7f6SOla Lilja } 7763592b7f6SOla Lilja prcmu_qos_add_requirement(PRCMU_QOS_APE_OPP, (char *)pdev->name, 50); 7773592b7f6SOla Lilja 7784313489cSJulia Lawall drvdata->pclk = devm_clk_get(&pdev->dev, "apb_pclk"); 779f61ab093SUlf Hansson if (IS_ERR(drvdata->pclk)) { 780f61ab093SUlf Hansson ret = (int)PTR_ERR(drvdata->pclk); 7814313489cSJulia Lawall dev_err(&pdev->dev, 7824313489cSJulia Lawall "%s: ERROR: devm_clk_get of pclk failed (%d)!\n", 783f61ab093SUlf Hansson __func__, ret); 7844313489cSJulia Lawall return ret; 785f61ab093SUlf Hansson } 786f61ab093SUlf Hansson 7874313489cSJulia Lawall drvdata->clk = devm_clk_get(&pdev->dev, NULL); 7883592b7f6SOla Lilja if (IS_ERR(drvdata->clk)) { 7893592b7f6SOla Lilja ret = (int)PTR_ERR(drvdata->clk); 7904313489cSJulia Lawall dev_err(&pdev->dev, 7914313489cSJulia Lawall "%s: ERROR: devm_clk_get failed (%d)!\n", 7923592b7f6SOla Lilja __func__, ret); 7934313489cSJulia Lawall return ret; 7943592b7f6SOla Lilja } 7953592b7f6SOla Lilja 7963592b7f6SOla Lilja ret = ux500_msp_i2s_init_msp(pdev, &drvdata->msp, 7973592b7f6SOla Lilja pdev->dev.platform_data); 7983592b7f6SOla Lilja if (!drvdata->msp) { 7993592b7f6SOla Lilja dev_err(&pdev->dev, 8003592b7f6SOla Lilja "%s: ERROR: Failed to init MSP-struct (%d)!", 8013592b7f6SOla Lilja __func__, ret); 8024313489cSJulia Lawall return ret; 8033592b7f6SOla Lilja } 8043592b7f6SOla Lilja dev_set_drvdata(&pdev->dev, drvdata); 8053592b7f6SOla Lilja 80642277bddSKuninori Morimoto ret = snd_soc_register_component(&pdev->dev, &ux500_msp_component, 80733899b19SLee Jones &ux500_msp_dai_drv, 1); 8083592b7f6SOla Lilja if (ret < 0) { 8093592b7f6SOla Lilja dev_err(&pdev->dev, "Error: %s: Failed to register MSP%d!\n", 8103592b7f6SOla Lilja __func__, drvdata->msp->id); 8114313489cSJulia Lawall return ret; 8123592b7f6SOla Lilja } 8133592b7f6SOla Lilja 8141428c20fSLee Jones ret = ux500_pcm_register_platform(pdev); 8151428c20fSLee Jones if (ret < 0) { 8161428c20fSLee Jones dev_err(&pdev->dev, 8171428c20fSLee Jones "Error: %s: Failed to register PCM platform device!\n", 8181428c20fSLee Jones __func__); 8191428c20fSLee Jones goto err_reg_plat; 8201428c20fSLee Jones } 8211428c20fSLee Jones 8223592b7f6SOla Lilja return 0; 8233592b7f6SOla Lilja 8241428c20fSLee Jones err_reg_plat: 82542277bddSKuninori Morimoto snd_soc_unregister_component(&pdev->dev); 8263592b7f6SOla Lilja return ret; 8273592b7f6SOla Lilja } 8283592b7f6SOla Lilja 829da794876SBill Pemberton static int ux500_msp_drv_remove(struct platform_device *pdev) 8303592b7f6SOla Lilja { 8313592b7f6SOla Lilja struct ux500_msp_i2s_drvdata *drvdata = dev_get_drvdata(&pdev->dev); 8323592b7f6SOla Lilja 8331428c20fSLee Jones ux500_pcm_unregister_platform(pdev); 8341428c20fSLee Jones 83542277bddSKuninori Morimoto snd_soc_unregister_component(&pdev->dev); 8363592b7f6SOla Lilja 8373592b7f6SOla Lilja prcmu_qos_remove_requirement(PRCMU_QOS_APE_OPP, "ux500_msp_i2s"); 8383592b7f6SOla Lilja 8393592b7f6SOla Lilja ux500_msp_i2s_cleanup_msp(pdev, drvdata->msp); 8403592b7f6SOla Lilja 8413592b7f6SOla Lilja return 0; 8423592b7f6SOla Lilja } 8433592b7f6SOla Lilja 84449731c23SLee Jones static const struct of_device_id ux500_msp_i2s_match[] = { 84549731c23SLee Jones { .compatible = "stericsson,ux500-msp-i2s", }, 84649731c23SLee Jones {}, 84749731c23SLee Jones }; 848c81740e0SLuis de Bethencourt MODULE_DEVICE_TABLE(of, ux500_msp_i2s_match); 84949731c23SLee Jones 8503592b7f6SOla Lilja static struct platform_driver msp_i2s_driver = { 8513592b7f6SOla Lilja .driver = { 8523592b7f6SOla Lilja .name = "ux500-msp-i2s", 85349731c23SLee Jones .of_match_table = ux500_msp_i2s_match, 8543592b7f6SOla Lilja }, 8553592b7f6SOla Lilja .probe = ux500_msp_drv_probe, 8563592b7f6SOla Lilja .remove = ux500_msp_drv_remove, 8573592b7f6SOla Lilja }; 8583592b7f6SOla Lilja module_platform_driver(msp_i2s_driver); 8593592b7f6SOla Lilja 8603592b7f6SOla Lilja MODULE_LICENSE("GPL v2"); 861