// SPDX-License-Identifier: GPL-2.0+ OR BSD-3-Clause /* * Copyright (C) 2018, STMicroelectronics - All Rights Reserved */ #include #include #include #include #include #include #include #include #include #include #include #include #define STPMIC1_NUM_OF_REGS 0x100 #define STPMIC1_NVM_SIZE 8 #define STPMIC1_NVM_POLL_TIMEOUT 100000 #define STPMIC1_NVM_START_ADDRESS 0xf8 enum pmic_nvm_op { SHADOW_READ, SHADOW_WRITE, NVM_READ, NVM_WRITE, }; #if CONFIG_IS_ENABLED(DM_REGULATOR) static const struct pmic_child_info stpmic1_children_info[] = { { .prefix = "ldo", .driver = "stpmic1_ldo" }, { .prefix = "buck", .driver = "stpmic1_buck" }, { .prefix = "vref_ddr", .driver = "stpmic1_vref_ddr" }, { .prefix = "vref-ddr", .driver = "stpmic1_vref_ddr" }, { .prefix = "pwr_sw", .driver = "stpmic1_pwr_sw" }, { .prefix = "pwr-sw", .driver = "stpmic1_pwr_sw" }, { .prefix = "boost", .driver = "stpmic1_boost" }, { }, }; #endif /* DM_REGULATOR */ static int stpmic1_reg_count(struct udevice *dev) { return STPMIC1_NUM_OF_REGS; } static int stpmic1_write(struct udevice *dev, uint reg, const uint8_t *buff, int len) { int ret; ret = dm_i2c_write(dev, reg, buff, len); if (ret) dev_err(dev, "%s: failed to write register %#x :%d", __func__, reg, ret); return ret; } static int stpmic1_read(struct udevice *dev, uint reg, uint8_t *buff, int len) { int ret; ret = dm_i2c_read(dev, reg, buff, len); if (ret) dev_err(dev, "%s: failed to read register %#x : %d", __func__, reg, ret); return ret; } static int stpmic1_bind(struct udevice *dev) { int ret; #if CONFIG_IS_ENABLED(DM_REGULATOR) ofnode regulators_node; int children; regulators_node = dev_read_subnode(dev, "regulators"); if (!ofnode_valid(regulators_node)) { dev_dbg(dev, "regulators subnode not found!"); return -ENXIO; } dev_dbg(dev, "found regulators subnode\n"); children = pmic_bind_children(dev, regulators_node, stpmic1_children_info); if (!children) dev_dbg(dev, "no child found\n"); #endif /* DM_REGULATOR */ if (!IS_ENABLED(CONFIG_SPL_BUILD)) { ret = device_bind_driver(dev, "stpmic1-nvm", "stpmic1-nvm", NULL); if (ret) return ret; } if (CONFIG_IS_ENABLED(SYSRESET)) return device_bind_driver(dev, "stpmic1-sysreset", "stpmic1-sysreset", NULL); return 0; } static struct dm_pmic_ops stpmic1_ops = { .reg_count = stpmic1_reg_count, .read = stpmic1_read, .write = stpmic1_write, }; static const struct udevice_id stpmic1_ids[] = { { .compatible = "st,stpmic1" }, { } }; U_BOOT_DRIVER(pmic_stpmic1) = { .name = "stpmic1_pmic", .id = UCLASS_PMIC, .of_match = stpmic1_ids, .bind = stpmic1_bind, .ops = &stpmic1_ops, }; #ifndef CONFIG_SPL_BUILD static int stpmic1_nvm_rw(struct udevice *dev, u8 addr, u8 *buf, int buf_len, enum pmic_nvm_op op) { unsigned long timeout; u8 cmd = STPMIC1_NVM_CMD_READ; int ret, len = buf_len; if (addr < STPMIC1_NVM_START_ADDRESS) return -EACCES; if (addr + buf_len > STPMIC1_NVM_START_ADDRESS + STPMIC1_NVM_SIZE) len = STPMIC1_NVM_START_ADDRESS + STPMIC1_NVM_SIZE - addr; if (op == SHADOW_READ) { ret = pmic_read(dev, addr, buf, len); if (ret < 0) return ret; else return len; } if (op == SHADOW_WRITE) { ret = pmic_write(dev, addr, buf, len); if (ret < 0) return ret; else return len; } if (op == NVM_WRITE) { cmd = STPMIC1_NVM_CMD_PROGRAM; ret = pmic_write(dev, addr, buf, len); if (ret < 0) return ret; } ret = pmic_reg_read(dev, STPMIC1_NVM_CR); if (ret < 0) return ret; ret = pmic_reg_write(dev, STPMIC1_NVM_CR, ret | cmd); if (ret < 0) return ret; timeout = timer_get_us() + STPMIC1_NVM_POLL_TIMEOUT; for (;;) { ret = pmic_reg_read(dev, STPMIC1_NVM_SR); if (ret < 0) return ret; if (!(ret & STPMIC1_NVM_BUSY)) break; if (time_after(timer_get_us(), timeout)) break; } if (ret & STPMIC1_NVM_BUSY) return -ETIMEDOUT; if (op == NVM_READ) { ret = pmic_read(dev, addr, buf, len); if (ret < 0) return ret; } return len; } static int stpmic1_nvm_read(struct udevice *dev, int offset, void *buf, int size) { enum pmic_nvm_op op = NVM_READ; if (offset < 0) { op = SHADOW_READ; offset = -offset; } return stpmic1_nvm_rw(dev->parent, offset, buf, size, op); } static int stpmic1_nvm_write(struct udevice *dev, int offset, const void *buf, int size) { enum pmic_nvm_op op = NVM_WRITE; if (offset < 0) { op = SHADOW_WRITE; offset = -offset; } return stpmic1_nvm_rw(dev->parent, offset, (void *)buf, size, op); } static const struct misc_ops stpmic1_nvm_ops = { .read = stpmic1_nvm_read, .write = stpmic1_nvm_write, }; U_BOOT_DRIVER(stpmic1_nvm) = { .name = "stpmic1-nvm", .id = UCLASS_MISC, .ops = &stpmic1_nvm_ops, }; #endif /* CONFIG_SPL_BUILD */ #ifdef CONFIG_SYSRESET static int stpmic1_sysreset_request(struct udevice *dev, enum sysreset_t type) { struct udevice *pmic_dev = dev->parent; int ret; if (type != SYSRESET_POWER && type != SYSRESET_POWER_OFF) return -EPROTONOSUPPORT; ret = pmic_reg_read(pmic_dev, STPMIC1_MAIN_CR); if (ret < 0) return ret; ret |= STPMIC1_SWOFF; ret &= ~STPMIC1_RREQ_EN; /* request Power Cycle */ if (type == SYSRESET_POWER) ret |= STPMIC1_RREQ_EN; ret = pmic_reg_write(pmic_dev, STPMIC1_MAIN_CR, ret); if (ret < 0) return ret; return -EINPROGRESS; } static struct sysreset_ops stpmic1_sysreset_ops = { .request = stpmic1_sysreset_request, }; U_BOOT_DRIVER(stpmic1_sysreset) = { .name = "stpmic1-sysreset", .id = UCLASS_SYSRESET, .ops = &stpmic1_sysreset_ops, }; #endif