// SPDX-License-Identifier: GPL-2.0-only // // rt766-sdca-sdw.c -- rt766 SDCA ALSA SoC audio driver // // Copyright(c) 2026 Realtek Semiconductor Corp. // // #include #include #include #include #include #include #include #include "rt766-sdca.h" #include "rt766-sdca-sdw.h" #define RT766_PROBE_TIMEOUT 5000 static bool rt766_sdca_readable_register(struct device *dev, unsigned int reg) { switch (reg) { case SDW_SCP_SDCA_INT1 ... SDW_SCP_SDCA_INTMASK4: case RT766_VERSION_ID ... RT766_BOND_LATCH_ID: case 0xc344 ... 0xc345: case 0xc900: case 0xc920: case 0xd540 ... 0xd542: case 0xf01e: case RT766_HP_POWER_STATE ... RT766_HP_FSM_CTL2_1: case 0x310100: case RT766_MCU_PATCH_ADDR1_START ... RT766_MCU_PATCH_ADDR1_END: case RT766_MCU_PATCH_ADDR2_START ... RT766_MCU_PATCH_ADDR2_END: case RT766_MUTE_REG(UAJ, USER_FU41, 1): case RT766_MUTE_REG(UAJ, USER_FU41, 2): case RT766_VOLUME_REG(UAJ, USER_FU41, 1): case RT766_VOLUME_REG(UAJ, USER_FU41, 2): case RT766_MUTE_REG(UAJ, USER_FU36, 1): case RT766_MUTE_REG(UAJ, USER_FU36, 2): case RT766_VOLUME_REG(UAJ, USER_FU36, 1): case RT766_VOLUME_REG(UAJ, USER_FU36, 2): case RT766_PDE_REQ_REG(UAJ, PDE47): case RT766_PDE_REQ_REG(UAJ, PDE34): case RT766_SDCA_CTL(UAJ, CS41, SDCA_CTL_CS_SAMPLERATEINDEX): case RT766_SDCA_CTL(UAJ, CS36, SDCA_CTL_CS_SAMPLERATEINDEX): case RT766_FUNC_STATUS_REG(UAJ): /* 0x40480000 */ case RT766_PDE_ACTUAL_REG(UAJ, PDE47): /* 0x40481400 */ case RT766_PDE_ACTUAL_REG(UAJ, PDE34): /* 0x40481480 */ case RT766_GAIN_REG(UAJ, PLATFORM_FU33, 1): case RT766_GAIN_REG(UAJ, PLATFORM_FU33, 2): case RT766_SDCA_CTL(UAJ, GE49, SDCA_CTL_GE_SELECTED_MODE): case RT766_SDCA_CTL(UAJ, GE49, SDCA_CTL_GE_DETECTED_MODE): /* 0x40600490 */ case RT766_PDE_REQ_REG(MIC, PDE11): case RT766_MUTE_REG(MIC, USER_FU113, 1): case RT766_MUTE_REG(MIC, USER_FU113, 2): case RT766_MUTE_REG(MIC, USER_FU113, 3): case RT766_MUTE_REG(MIC, USER_FU113, 4): case RT766_VOLUME_REG(MIC, USER_FU113, 1): case RT766_VOLUME_REG(MIC, USER_FU113, 2): case RT766_VOLUME_REG(MIC, USER_FU113, 3): case RT766_VOLUME_REG(MIC, USER_FU113, 4): case RT766_FUNC_STATUS_REG(MIC): /* 0x40880000 */ case RT766_SDCA_CTL(MIC, CS113, SDCA_CTL_CS_SAMPLERATEINDEX): case RT766_PDE_ACTUAL_REG(MIC, PDE11): /* 0x40881500 */ case RT766_FUNC_STATUS_REG(HID): /* 0x40c80000 */ /* 0x40c80080 - 0x40c80098 */ case RT766_SDCA_CTL(HID, HID101, SDCA_CTL_HIDE_HIDTX_CURRENTOWNER) ... RT766_SDCA_CTL(HID, HID101, SDCA_CTL_HIDE_HIDTX_MESSAGELENGTH): case RT766_MUTE_REG(AMP, USER_FU21, 1): case RT766_MUTE_REG(AMP, USER_FU21, 2): case RT766_VOLUME_REG(AMP, USER_FU21, 1): case RT766_VOLUME_REG(AMP, USER_FU21, 2): case RT766_PDE_REQ_REG(AMP, PDE23): case RT766_FUNC_STATUS_REG(AMP): /* 0x41080000 */ case RT766_SDCA_CTL(AMP, PPU21, SDCA_CTL_PPU_POSTURENUMBER): case RT766_SDCA_CTL(AMP, CS21, SDCA_CTL_CS_SAMPLERATEINDEX): case RT766_PDE_ACTUAL_REG(AMP, PDE23): /* 0x41081980 */ case RT766_BUF_ADDR_HID1 ... RT766_BUF_ADDR_HID2: return true; default: return false; } } static bool rt766_sdca_volatile_register(struct device *dev, unsigned int reg) { switch (reg) { case SDW_SCP_SDCA_INT1 ... SDW_SCP_SDCA_INTMASK4: case RT766_VERSION_ID ... RT766_BOND_LATCH_ID: case 0xc344 ... 0xc345: case 0xc900: case 0xc920: case 0xd540 ... 0xd542: case 0xf01e: case RT766_HP_POWER_STATE ... RT766_HP_FSM_CTL2_1: case 0x310100: case RT766_MCU_PATCH_ADDR1_START ... RT766_MCU_PATCH_ADDR1_END: case RT766_MCU_PATCH_ADDR2_START ... RT766_MCU_PATCH_ADDR2_END: case RT766_FUNC_STATUS_REG(UAJ): case RT766_PDE_ACTUAL_REG(UAJ, PDE47): case RT766_PDE_ACTUAL_REG(UAJ, PDE34): case RT766_SDCA_CTL(UAJ, GE49, SDCA_CTL_GE_DETECTED_MODE): case RT766_FUNC_STATUS_REG(MIC): case RT766_PDE_ACTUAL_REG(MIC, PDE11): case RT766_FUNC_STATUS_REG(HID): case RT766_SDCA_CTL(HID, HID101, SDCA_CTL_HIDE_HIDTX_CURRENTOWNER) ... RT766_SDCA_CTL(HID, HID101, SDCA_CTL_HIDE_HIDTX_MESSAGELENGTH): case RT766_FUNC_STATUS_REG(AMP): case RT766_PDE_ACTUAL_REG(AMP, PDE23): case RT766_BUF_ADDR_HID1 ... RT766_BUF_ADDR_HID2: return true; default: return false; } } static int rt766_sdca_mbq_size(struct device *dev, unsigned int reg) { switch (reg) { case RT766_VOLUME_REG(UAJ, USER_FU41, 1): case RT766_VOLUME_REG(UAJ, USER_FU41, 2): case RT766_VOLUME_REG(UAJ, USER_FU36, 1): case RT766_VOLUME_REG(UAJ, USER_FU36, 2): case RT766_GAIN_REG(UAJ, PLATFORM_FU33, 1): case RT766_GAIN_REG(UAJ, PLATFORM_FU33, 2): case RT766_VOLUME_REG(MIC, USER_FU113, 1): case RT766_VOLUME_REG(MIC, USER_FU113, 2): case RT766_VOLUME_REG(MIC, USER_FU113, 3): case RT766_VOLUME_REG(MIC, USER_FU113, 4): case RT766_VOLUME_REG(AMP, USER_FU21, 1): case RT766_VOLUME_REG(AMP, USER_FU21, 2): return 2; default: return 1; } } static const struct regmap_sdw_mbq_cfg rt766_sdca_mbq_cfg = { .mbq_size = rt766_sdca_mbq_size, }; static const struct regmap_config rt766_sdca_regmap = { .reg_bits = 32, .val_bits = 16, .readable_reg = rt766_sdca_readable_register, .volatile_reg = rt766_sdca_volatile_register, .reg_defaults = rt766_sdca_defaults, .num_reg_defaults = ARRAY_SIZE(rt766_sdca_defaults), .max_register = SDW_SDCA_MAX_REGISTER, .cache_type = REGCACHE_MAPLE, .use_single_read = true, .use_single_write = true, }; static int rt766_sdca_update_status(struct sdw_slave *slave, enum sdw_slave_status status) { struct rt766_sdca_priv *rt766 = dev_get_drvdata(&slave->dev); if (status == SDW_SLAVE_UNATTACHED) rt766->hw_init = false; if (status == SDW_SLAVE_ATTACHED) { if (rt766->hs_jack) { /* * Due to the SCP_SDCA_INTMASK will be cleared by any reset, and then * if the device attached again, we will need to set the setting back. * It could avoid losing the jack detection interrupt. * This also could sync with the cache value as the rt766_sdca_jack_init set. */ sdw_write_no_pm(rt766->slave, SDW_SCP_SDCA_INTMASK3, SDW_SCP_SDCA_INTMASK_SDCA_16); sdw_write_no_pm(rt766->slave, SDW_SCP_SDCA_INTMASK4, SDW_SCP_SDCA_INTMASK_SDCA_24); } } /* * Perform initialization only if slave status is present and * hw_init flag is false */ if (rt766->hw_init || status != SDW_SLAVE_ATTACHED) return 0; /* perform I/O transfers required for Slave initialization */ return rt766_sdca_io_init(&slave->dev, slave); } static int rt766_sdca_read_prop(struct sdw_slave *slave) { struct sdw_slave_prop *prop = &slave->prop; int ret; ret = sdw_slave_read_prop(slave); if (ret < 0) return ret; prop->scp_int1_mask = SDW_SCP_INT1_BUS_CLASH | SDW_SCP_INT1_PARITY; prop->quirks = SDW_SLAVE_QUIRKS_INVALID_INITIAL_PARITY; /* * SDCA interrupts are routed through SoundWire domain IRQ. */ prop->use_domain_irq = true; return 0; } static const struct sdw_slave_ops rt766_sdca_slave_ops = { .read_prop = rt766_sdca_read_prop, .update_status = rt766_sdca_update_status, }; static int rt766_sdca_sdw_probe(struct sdw_slave *slave, const struct sdw_device_id *id) { struct regmap *regmap; /* Regmap Initialization */ regmap = devm_regmap_init_sdw_mbq_cfg(&slave->dev, slave, &rt766_sdca_regmap, &rt766_sdca_mbq_cfg); if (IS_ERR(regmap)) return PTR_ERR(regmap); return rt766_sdca_init(&slave->dev, regmap, slave); } static void rt766_sdca_sdw_remove(struct sdw_slave *slave) { pm_runtime_disable(&slave->dev); } static const struct sdw_device_id rt766_sdca_id[] = { SDW_SLAVE_ENTRY_EXT(0x025d, 0x766, 0x3, 0x1, 0), SDW_SLAVE_ENTRY_EXT(0x025d, 0x767, 0x3, 0x1, 0), {}, }; MODULE_DEVICE_TABLE(sdw, rt766_sdca_id); static int rt766_sdca_dev_suspend(struct device *dev) { struct rt766_sdca_priv *rt766 = dev_get_drvdata(dev); if (!rt766->hw_init) return 0; regcache_cache_only(rt766->regmap, true); return 0; } static int rt766_sdca_dev_system_suspend(struct device *dev) { struct rt766_sdca_priv *rt766 = dev_get_drvdata(dev); struct sdw_slave *slave = dev_to_sdw_dev(dev); int ret1, ret2; if (!rt766->hw_init) return 0; /* * prevent new interrupts from being handled after the * deferred work completes and before the parent disables * interrupts on the link */ mutex_lock(&rt766->disable_irq_lock); rt766->disable_irq = true; ret1 = sdw_update_no_pm(slave, SDW_SCP_SDCA_INTMASK3, SDW_SCP_SDCA_INTMASK_SDCA_16, 0); ret2 = sdw_update_no_pm(slave, SDW_SCP_SDCA_INTMASK4, SDW_SCP_SDCA_INTMASK_SDCA_24, 0); mutex_unlock(&rt766->disable_irq_lock); if (ret1 < 0 || ret2 < 0) { /* log but don't prevent suspend from happening */ dev_dbg(&slave->dev, "%s: could not disable SDCA interrupts\n:", __func__); } return rt766_sdca_dev_suspend(dev); } static int rt766_sdca_dev_resume(struct device *dev) { struct sdw_slave *slave = dev_to_sdw_dev(dev); struct rt766_sdca_priv *rt766 = dev_get_drvdata(dev); int ret; if (!rt766->first_hw_init) return 0; if (!slave->unattach_request) { mutex_lock(&rt766->disable_irq_lock); if (rt766->disable_irq == true) { sdw_write_no_pm(slave, SDW_SCP_SDCA_INTMASK3, SDW_SCP_SDCA_INTMASK_SDCA_16); sdw_write_no_pm(slave, SDW_SCP_SDCA_INTMASK4, SDW_SCP_SDCA_INTMASK_SDCA_24); rt766->disable_irq = false; } mutex_unlock(&rt766->disable_irq_lock); goto regmap_sync; } ret = sdw_slave_wait_for_init(slave, RT766_PROBE_TIMEOUT); if (ret) { sdw_show_ping_status(slave->bus, true); return ret; } regmap_sync: regcache_cache_only(rt766->regmap, false); ret = regcache_sync(rt766->regmap); if (ret) { regcache_cache_only(rt766->regmap, true); regcache_mark_dirty(rt766->regmap); return ret; } return 0; } static const struct dev_pm_ops rt766_sdca_pm = { SYSTEM_SLEEP_PM_OPS(rt766_sdca_dev_system_suspend, rt766_sdca_dev_resume) RUNTIME_PM_OPS(rt766_sdca_dev_suspend, rt766_sdca_dev_resume, NULL) }; static struct sdw_driver rt766_sdca_sdw_driver = { .driver = { .name = "rt766-sdca", .pm = pm_ptr(&rt766_sdca_pm), }, .probe = rt766_sdca_sdw_probe, .remove = rt766_sdca_sdw_remove, .ops = &rt766_sdca_slave_ops, .id_table = rt766_sdca_id, }; module_sdw_driver(rt766_sdca_sdw_driver); MODULE_DESCRIPTION("ASoC RT766 SDCA SDW driver"); MODULE_AUTHOR("Shuming Fan "); MODULE_LICENSE("GPL"); MODULE_IMPORT_NS("SND_SOC_SDCA");