// SPDX-License-Identifier: GPL-2.0+ /* * Copyright (C) 2015 Google, Inc * Written by Simon Glass * * Based on Rockchip's drivers/power/pmic/pmic_rk808.c: * Copyright (C) 2012 rockchips * zyw */ #include #include #include #include #include #include #ifndef CONFIG_SPL_BUILD #define ENABLE_DRIVER #endif /* Field Definitions */ #define RK808_BUCK_VSEL_MASK 0x3f #define RK808_BUCK4_VSEL_MASK 0xf #define RK808_LDO_VSEL_MASK 0x1f #define RK818_BUCK_VSEL_MASK 0x3f #define RK818_BUCK4_VSEL_MASK 0x1f #define RK818_LDO_VSEL_MASK 0x1f #define RK818_LDO3_ON_VSEL_MASK 0xf #define RK818_BOOST_ON_VSEL_MASK 0xe0 #define RK818_USB_ILIM_SEL_MASK 0x0f #define RK818_USB_CHG_SD_VSEL_MASK 0x70 struct rk8xx_reg_info { uint min_uv; uint step_uv; s8 vsel_reg; u8 vsel_mask; }; static const struct rk8xx_reg_info rk808_buck[] = { { 712500, 12500, REG_BUCK1_ON_VSEL, RK808_BUCK_VSEL_MASK, }, { 712500, 12500, REG_BUCK2_ON_VSEL, RK808_BUCK_VSEL_MASK, }, { 712500, 12500, -1, RK808_BUCK_VSEL_MASK, }, { 1800000, 100000, REG_BUCK4_ON_VSEL, RK808_BUCK4_VSEL_MASK, }, }; static const struct rk8xx_reg_info rk818_buck[] = { { 712500, 12500, REG_BUCK1_ON_VSEL, RK818_BUCK_VSEL_MASK, }, { 712500, 12500, REG_BUCK2_ON_VSEL, RK818_BUCK_VSEL_MASK, }, { 712500, 12500, -1, RK818_BUCK_VSEL_MASK, }, { 1800000, 100000, REG_BUCK4_ON_VSEL, RK818_BUCK4_VSEL_MASK, }, }; #ifdef ENABLE_DRIVER static const struct rk8xx_reg_info rk808_ldo[] = { { 1800000, 100000, REG_LDO1_ON_VSEL, RK808_LDO_VSEL_MASK, }, { 1800000, 100000, REG_LDO2_ON_VSEL, RK808_LDO_VSEL_MASK, }, { 800000, 100000, REG_LDO3_ON_VSEL, RK808_BUCK4_VSEL_MASK, }, { 1800000, 100000, REG_LDO4_ON_VSEL, RK808_LDO_VSEL_MASK, }, { 1800000, 100000, REG_LDO5_ON_VSEL, RK808_LDO_VSEL_MASK, }, { 800000, 100000, REG_LDO6_ON_VSEL, RK808_LDO_VSEL_MASK, }, { 800000, 100000, REG_LDO7_ON_VSEL, RK808_LDO_VSEL_MASK, }, { 1800000, 100000, REG_LDO8_ON_VSEL, RK808_LDO_VSEL_MASK, }, }; static const struct rk8xx_reg_info rk818_ldo[] = { { 1800000, 100000, REG_LDO1_ON_VSEL, RK818_LDO_VSEL_MASK, }, { 1800000, 100000, REG_LDO2_ON_VSEL, RK818_LDO_VSEL_MASK, }, { 800000, 100000, REG_LDO3_ON_VSEL, RK818_LDO3_ON_VSEL_MASK, }, { 1800000, 100000, REG_LDO4_ON_VSEL, RK818_LDO_VSEL_MASK, }, { 1800000, 100000, REG_LDO5_ON_VSEL, RK818_LDO_VSEL_MASK, }, { 800000, 100000, REG_LDO6_ON_VSEL, RK818_LDO_VSEL_MASK, }, { 800000, 100000, REG_LDO7_ON_VSEL, RK818_LDO_VSEL_MASK, }, { 1800000, 100000, REG_LDO8_ON_VSEL, RK818_LDO_VSEL_MASK, }, }; #endif static const u16 rk818_chrg_cur_input_array[] = { 450, 800, 850, 1000, 1250, 1500, 1750, 2000, 2250, 2500, 2750, 3000 }; static const uint rk818_chrg_shutdown_vsel_array[] = { 2780000, 2850000, 2920000, 2990000, 3060000, 3130000, 3190000, 3260000 }; static const struct rk8xx_reg_info *get_buck_reg(struct udevice *pmic, int num) { struct rk8xx_priv *priv = dev_get_priv(pmic); switch (priv->variant) { case RK818_ID: return &rk818_buck[num]; default: return &rk808_buck[num]; } } static int _buck_set_value(struct udevice *pmic, int buck, int uvolt) { const struct rk8xx_reg_info *info = get_buck_reg(pmic, buck - 1); int mask = info->vsel_mask; int val; if (info->vsel_reg == -1) return -ENOSYS; val = (uvolt - info->min_uv) / info->step_uv; debug("%s: reg=%x, mask=%x, val=%x\n", __func__, info->vsel_reg, mask, val); return pmic_clrsetbits(pmic, info->vsel_reg, mask, val); } static int _buck_set_enable(struct udevice *pmic, int buck, bool enable) { uint mask; int ret; buck--; mask = 1 << buck; if (enable) { ret = pmic_clrsetbits(pmic, REG_DCDC_ILMAX, 0, 3 << (buck * 2)); if (ret) return ret; ret = pmic_clrsetbits(pmic, REG_DCDC_UV_ACT, 1 << buck, 0); if (ret) return ret; } return pmic_clrsetbits(pmic, REG_DCDC_EN, mask, enable ? mask : 0); } #ifdef ENABLE_DRIVER static const struct rk8xx_reg_info *get_ldo_reg(struct udevice *pmic, int num) { struct rk8xx_priv *priv = dev_get_priv(pmic); switch (priv->variant) { case RK818_ID: return &rk818_ldo[num]; default: return &rk808_ldo[num]; } } static int buck_get_value(struct udevice *dev) { int buck = dev->driver_data - 1; const struct rk8xx_reg_info *info = get_buck_reg(dev->parent, buck); int mask = info->vsel_mask; int ret, val; if (info->vsel_reg == -1) return -ENOSYS; ret = pmic_reg_read(dev->parent, info->vsel_reg); if (ret < 0) return ret; val = ret & mask; return info->min_uv + val * info->step_uv; } static int buck_set_value(struct udevice *dev, int uvolt) { int buck = dev->driver_data; return _buck_set_value(dev->parent, buck, uvolt); } static int buck_set_enable(struct udevice *dev, bool enable) { int buck = dev->driver_data; return _buck_set_enable(dev->parent, buck, enable); } static int buck_get_enable(struct udevice *dev) { int buck = dev->driver_data - 1; int ret; uint mask; mask = 1 << buck; ret = pmic_reg_read(dev->parent, REG_DCDC_EN); if (ret < 0) return ret; return ret & mask ? true : false; } static int ldo_get_value(struct udevice *dev) { int ldo = dev->driver_data - 1; const struct rk8xx_reg_info *info = get_ldo_reg(dev->parent, ldo); int mask = info->vsel_mask; int ret, val; if (info->vsel_reg == -1) return -ENOSYS; ret = pmic_reg_read(dev->parent, info->vsel_reg); if (ret < 0) return ret; val = ret & mask; return info->min_uv + val * info->step_uv; } static int ldo_set_value(struct udevice *dev, int uvolt) { int ldo = dev->driver_data - 1; const struct rk8xx_reg_info *info = get_ldo_reg(dev->parent, ldo); int mask = info->vsel_mask; int val; if (info->vsel_reg == -1) return -ENOSYS; val = (uvolt - info->min_uv) / info->step_uv; debug("%s: reg=%x, mask=%x, val=%x\n", __func__, info->vsel_reg, mask, val); return pmic_clrsetbits(dev->parent, info->vsel_reg, mask, val); } static int ldo_set_enable(struct udevice *dev, bool enable) { int ldo = dev->driver_data - 1; uint mask; mask = 1 << ldo; return pmic_clrsetbits(dev->parent, REG_LDO_EN, mask, enable ? mask : 0); } static int ldo_get_enable(struct udevice *dev) { int ldo = dev->driver_data - 1; int ret; uint mask; mask = 1 << ldo; ret = pmic_reg_read(dev->parent, REG_LDO_EN); if (ret < 0) return ret; return ret & mask ? true : false; } static int switch_set_enable(struct udevice *dev, bool enable) { int sw = dev->driver_data - 1; uint mask; mask = 1 << (sw + 5); return pmic_clrsetbits(dev->parent, REG_DCDC_EN, mask, enable ? mask : 0); } static int switch_get_enable(struct udevice *dev) { int sw = dev->driver_data - 1; int ret; uint mask; mask = 1 << (sw + 5); ret = pmic_reg_read(dev->parent, REG_DCDC_EN); if (ret < 0) return ret; return ret & mask ? true : false; } static int rk8xx_buck_probe(struct udevice *dev) { struct dm_regulator_uclass_platdata *uc_pdata; uc_pdata = dev_get_uclass_platdata(dev); uc_pdata->type = REGULATOR_TYPE_BUCK; uc_pdata->mode_count = 0; return 0; } static int rk8xx_ldo_probe(struct udevice *dev) { struct dm_regulator_uclass_platdata *uc_pdata; uc_pdata = dev_get_uclass_platdata(dev); uc_pdata->type = REGULATOR_TYPE_LDO; uc_pdata->mode_count = 0; return 0; } static int rk8xx_switch_probe(struct udevice *dev) { struct dm_regulator_uclass_platdata *uc_pdata; uc_pdata = dev_get_uclass_platdata(dev); uc_pdata->type = REGULATOR_TYPE_FIXED; uc_pdata->mode_count = 0; return 0; } static const struct dm_regulator_ops rk8xx_buck_ops = { .get_value = buck_get_value, .set_value = buck_set_value, .get_enable = buck_get_enable, .set_enable = buck_set_enable, }; static const struct dm_regulator_ops rk8xx_ldo_ops = { .get_value = ldo_get_value, .set_value = ldo_set_value, .get_enable = ldo_get_enable, .set_enable = ldo_set_enable, }; static const struct dm_regulator_ops rk8xx_switch_ops = { .get_enable = switch_get_enable, .set_enable = switch_set_enable, }; U_BOOT_DRIVER(rk8xx_buck) = { .name = "rk8xx_buck", .id = UCLASS_REGULATOR, .ops = &rk8xx_buck_ops, .probe = rk8xx_buck_probe, }; U_BOOT_DRIVER(rk8xx_ldo) = { .name = "rk8xx_ldo", .id = UCLASS_REGULATOR, .ops = &rk8xx_ldo_ops, .probe = rk8xx_ldo_probe, }; U_BOOT_DRIVER(rk8xx_switch) = { .name = "rk8xx_switch", .id = UCLASS_REGULATOR, .ops = &rk8xx_switch_ops, .probe = rk8xx_switch_probe, }; #endif int rk8xx_spl_configure_buck(struct udevice *pmic, int buck, int uvolt) { int ret; ret = _buck_set_value(pmic, buck, uvolt); if (ret) return ret; return _buck_set_enable(pmic, buck, true); } int rk818_spl_configure_usb_input_current(struct udevice *pmic, int current_ma) { uint i; for (i = 0; i < ARRAY_SIZE(rk818_chrg_cur_input_array); i++) if (current_ma <= rk818_chrg_cur_input_array[i]) break; return pmic_clrsetbits(pmic, REG_USB_CTRL, RK818_USB_ILIM_SEL_MASK, i); } int rk818_spl_configure_usb_chrg_shutdown(struct udevice *pmic, int uvolt) { uint i; for (i = 0; i < ARRAY_SIZE(rk818_chrg_shutdown_vsel_array); i++) if (uvolt <= rk818_chrg_shutdown_vsel_array[i]) break; return pmic_clrsetbits(pmic, REG_USB_CTRL, RK818_USB_CHG_SD_VSEL_MASK, i); }