470 lines
13 KiB
C
470 lines
13 KiB
C
/*
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* Copyright 2024 NXP
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#include <zephyr/kernel.h>
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#include <zephyr/drivers/gpio.h>
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#include <zephyr/drivers/gpio/gpio_utils.h>
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#include <zephyr/drivers/i2c.h>
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#include <zephyr/logging/log.h>
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#include <zephyr/sys/byteorder.h>
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#include <zephyr/drivers/mfd/adp5585.h>
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#define DT_DRV_COMPAT adi_adp5585_gpio
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LOG_MODULE_REGISTER(adp5585_gpio, CONFIG_GPIO_LOG_LEVEL);
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#define ADP5585_BANK(offs) (offs >> 3)
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#define ADP5585_BIT(offs) (offs & GENMASK(2, 0))
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enum adp5585_gpio_pin_direction {
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adp5585_pin_input = 0U,
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adp5585_pin_output,
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};
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enum adp5585_gpio_pin_drive_mode {
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adp5585_pin_drive_pp = 0U,
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adp5585_pin_drive_od,
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};
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enum adp5585_gpio_pull_config {
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adp5585_pull_up_300k = 0U,
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adp5585_pull_dn_300k,
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adp5585_pull_up_100k, /* not used */
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adp5585_pull_disable,
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};
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enum adp5585_gpio_int_en {
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adp5585_int_disable = 0U,
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adp5585_int_enable,
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};
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enum adp5585_gpio_int_level {
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adp5585_int_active_low = 0U,
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adp5585_int_active_high,
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};
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/** Configuration data */
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struct adp5585_gpio_config {
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/* gpio_driver_config needs to be first */
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struct gpio_driver_config common;
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const struct device *mfd_dev;
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const struct gpio_dt_spec gpio_int;
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};
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/** Runtime driver data */
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struct adp5585_gpio_data {
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/* gpio_driver_data needs to be first */
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struct gpio_driver_data common;
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uint16_t output;
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sys_slist_t callbacks;
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};
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static int gpio_adp5585_config(const struct device *dev, gpio_pin_t pin, gpio_flags_t flags)
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{
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const struct adp5585_gpio_config *cfg = dev->config;
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struct adp5585_gpio_data *data = dev->data;
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const struct mfd_adp5585_config *parent_cfg =
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(struct mfd_adp5585_config *)(cfg->mfd_dev->config);
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struct mfd_adp5585_data *parent_data = (struct mfd_adp5585_data *)(cfg->mfd_dev->data);
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int ret = 0;
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uint8_t reg_value;
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/* ADP5585 has non-contiguous gpio pin layouts, account for this */
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if ((pin & cfg->common.port_pin_mask) == 0) {
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LOG_ERR("pin %d is invalid for this device", pin);
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return -ENOTSUP;
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}
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uint8_t bank = ADP5585_BANK(pin);
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uint8_t bank_pin = ADP5585_BIT(pin);
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/* Can't do I2C bus operations from an ISR */
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if (k_is_in_isr()) {
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return -EWOULDBLOCK;
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}
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/* Simultaneous PU & PD mode not supported */
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if (((flags & GPIO_PULL_UP) != 0) && ((flags & GPIO_PULL_DOWN) != 0)) {
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return -ENOTSUP;
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}
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/* Simultaneous input & output mode not supported */
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if (((flags & GPIO_INPUT) != 0) && ((flags & GPIO_OUTPUT) != 0)) {
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return -ENOTSUP;
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}
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k_sem_take(&parent_data->lock, K_FOREVER);
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if ((flags & GPIO_SINGLE_ENDED) != 0) {
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reg_value = adp5585_pin_drive_od << bank_pin;
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} else {
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reg_value = adp5585_pin_drive_pp << bank_pin;
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}
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ret = i2c_reg_update_byte_dt(&parent_cfg->i2c_bus, ADP5585_GPO_OUT_MODE_A + bank,
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BIT(bank_pin), reg_value);
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if (ret != 0) {
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goto out;
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}
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uint8_t regaddr = ADP5585_RPULL_CONFIG_A + (bank << 1);
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uint8_t shift = bank_pin << 1;
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if (bank_pin > 3U) {
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regaddr += 1U;
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shift = (bank_pin - 3U) << 1;
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}
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if ((flags & GPIO_PULL_UP) != 0) {
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reg_value = adp5585_pull_up_300k << shift;
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} else if ((flags & GPIO_PULL_DOWN) != 0) {
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reg_value = adp5585_pull_dn_300k << shift;
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} else {
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reg_value = adp5585_pull_disable << shift;
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}
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ret = i2c_reg_update_byte_dt(&parent_cfg->i2c_bus, regaddr,
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0b11U << shift, reg_value);
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if (ret != 0) {
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goto out;
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}
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/* Ensure either Output or Input is specified */
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if ((flags & GPIO_OUTPUT) != 0) {
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/* Set Low or High if specified */
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if ((flags & GPIO_OUTPUT_INIT_LOW) != 0) {
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data->output &= ~BIT(pin);
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} else if ((flags & GPIO_OUTPUT_INIT_HIGH) != 0) {
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data->output |= BIT(pin);
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}
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if (bank == 0) {
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/* reg_value for ADP5585_GPO_OUT_MODE */
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reg_value = (uint8_t)data->output;
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} else {
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/* reg_value for ADP5585_GPO_OUT_MODE */
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reg_value = (uint8_t)(data->output >> 8);
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}
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ret = i2c_reg_write_byte_dt(&parent_cfg->i2c_bus,
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ADP5585_GPO_OUT_MODE_A + bank,
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reg_value);
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if (ret != 0) {
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goto out;
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}
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/* reg_value for ADP5585_GPIO_DIRECTION */
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reg_value = adp5585_pin_output << bank_pin;
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} else if ((flags & GPIO_INPUT) != 0) {
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/* reg_value for ADP5585_GPIO_DIRECTION */
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reg_value = adp5585_pin_output << bank_pin;
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}
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ret = i2c_reg_update_byte_dt(&parent_cfg->i2c_bus,
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ADP5585_GPIO_DIRECTION_A + bank,
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BIT(bank_pin), reg_value);
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out:
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k_sem_give(&parent_data->lock);
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if (ret != 0) {
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LOG_ERR("pin configure error: %d", ret);
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}
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return ret;
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}
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static int gpio_adp5585_port_read(const struct device *dev, gpio_port_value_t *value)
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{
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const struct adp5585_gpio_config *cfg = dev->config;
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/* struct adp5585_gpio_data *data = dev->data; */
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const struct mfd_adp5585_config *parent_cfg =
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(struct mfd_adp5585_config *)(cfg->mfd_dev->config);
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struct mfd_adp5585_data *parent_data = (struct mfd_adp5585_data *)(cfg->mfd_dev->data);
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uint16_t input_data = 0;
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int ret = 0;
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/* Can't do I2C bus operations from an ISR */
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if (k_is_in_isr()) {
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return -EWOULDBLOCK;
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}
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k_sem_take(&parent_data->lock, K_FOREVER);
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/** Read Input Register */
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uint8_t gpi_status_reg;
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uint8_t gpi_status_buf[2];
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ret = i2c_write_read_dt(&parent_cfg->i2c_bus, &gpi_status_reg, 1U,
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gpi_status_buf, 2U);
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if (ret) {
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goto out;
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}
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input_data = sys_le16_to_cpu(*((uint16_t *)gpi_status_buf));
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*value = input_data;
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out:
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k_sem_give(&parent_data->lock);
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LOG_DBG("read %x got %d", input_data, ret);
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return ret;
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}
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static int gpio_adp5585_port_write(const struct device *dev, gpio_port_pins_t mask,
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gpio_port_value_t value, gpio_port_value_t toggle)
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{
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const struct adp5585_gpio_config *cfg = dev->config;
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struct adp5585_gpio_data *data = dev->data;
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const struct mfd_adp5585_config *parent_cfg =
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(struct mfd_adp5585_config *)(cfg->mfd_dev->config);
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struct mfd_adp5585_data *parent_data = (struct mfd_adp5585_data *)(cfg->mfd_dev->data);
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uint16_t orig_out;
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uint16_t out;
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uint8_t reg_value;
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int ret;
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/* Can't do I2C bus operations from an ISR */
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if (k_is_in_isr()) {
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return -EWOULDBLOCK;
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}
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k_sem_take(&parent_data->lock, K_FOREVER);
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orig_out = data->output;
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out = ((orig_out & ~mask) | (value & mask)) ^ toggle;
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reg_value = (uint8_t)out;
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uint8_t gpo_data_out_buf[] = { ADP5585_GPO_DATA_OUT_A,
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(uint8_t)out, (uint8_t)(out >> 8) };
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ret = i2c_write_dt(&parent_cfg->i2c_bus, gpo_data_out_buf, sizeof(gpo_data_out_buf));
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if (ret) {
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goto out;
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}
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data->output = out;
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out:
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k_sem_give(&parent_data->lock);
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LOG_DBG("write %x msk %08x val %08x => %x: %d", orig_out, mask, value, out, ret);
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return ret;
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}
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static int gpio_adp5585_port_set_masked(const struct device *dev, gpio_port_pins_t mask,
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gpio_port_value_t value)
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{
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return gpio_adp5585_port_write(dev, mask, value, 0);
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}
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static int gpio_adp5585_port_set_bits(const struct device *dev, gpio_port_pins_t pins)
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{
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return gpio_adp5585_port_write(dev, pins, pins, 0);
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}
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static int gpio_adp5585_port_clear_bits(const struct device *dev, gpio_port_pins_t pins)
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{
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return gpio_adp5585_port_write(dev, pins, 0, 0);
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}
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static int gpio_adp5585_port_toggle_bits(const struct device *dev, gpio_port_pins_t pins)
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{
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return gpio_adp5585_port_write(dev, 0, 0, pins);
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}
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static int gpio_adp5585_pin_interrupt_configure(const struct device *dev, gpio_pin_t pin,
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enum gpio_int_mode mode, enum gpio_int_trig trig)
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{
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const struct adp5585_gpio_config *cfg = dev->config;
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/* struct adp5585_gpio_data *data = dev->data; */
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const struct mfd_adp5585_config *parent_cfg =
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(struct mfd_adp5585_config *)(cfg->mfd_dev->config);
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struct mfd_adp5585_data *parent_data = (struct mfd_adp5585_data *)(cfg->mfd_dev->data);
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int ret = 0;
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if (parent_cfg->nint_gpio.port == NULL) {
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return -ENOTSUP;
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}
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/* ADP5585 has non-contiguous gpio pin layouts, account for this */
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if ((pin & cfg->common.port_pin_mask) == 0) {
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LOG_ERR("pin %d is invalid for this device", pin);
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return -ENOTSUP;
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}
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/* This device supports only level-triggered interrupts. */
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/* This device does NOT support either-level interrupt. */
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if (mode == GPIO_INT_MODE_EDGE || trig == GPIO_INT_TRIG_BOTH) {
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return -ENOTSUP;
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}
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if (k_is_in_isr()) {
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return -EWOULDBLOCK;
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}
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uint8_t bank = ADP5585_BANK(pin);
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uint8_t bank_pin = ADP5585_BIT(pin);
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k_sem_take(&parent_data->lock, K_FOREVER);
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if (mode == GPIO_INT_MODE_DISABLED) {
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ret = i2c_reg_update_byte_dt(&parent_cfg->i2c_bus,
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ADP5585_GPI_INTERRUPT_EN_A + bank, BIT(bank_pin),
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(adp5585_int_disable << bank_pin));
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} else if ((trig & GPIO_INT_TRIG_BOTH) != 0) {
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if (trig == GPIO_INT_TRIG_LOW) {
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ret = i2c_reg_update_byte_dt(
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&parent_cfg->i2c_bus, ADP5585_GPI_INT_LEVEL_A + bank,
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BIT(bank_pin), (adp5585_int_active_low << bank_pin));
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} else {
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ret = i2c_reg_update_byte_dt(
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&parent_cfg->i2c_bus, ADP5585_GPI_INT_LEVEL_A + bank,
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BIT(bank_pin), (adp5585_int_active_high << bank_pin));
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}
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/* make sure GPI_n_EVENT_EN is disabled, otherwise it will generate FIFO event */
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ret = i2c_reg_update_byte_dt(&parent_cfg->i2c_bus,
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ADP5585_GPI_EVENT_EN_A + bank, BIT(bank_pin), 0U);
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ret = i2c_reg_update_byte_dt(&parent_cfg->i2c_bus,
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ADP5585_GPI_INTERRUPT_EN_A + bank,
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BIT(bank_pin), (adp5585_int_enable << bank_pin));
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}
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k_sem_give(&parent_data->lock);
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return ret;
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}
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static int gpio_adp5585_manage_callback(const struct device *dev, struct gpio_callback *callback,
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bool set)
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{
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struct adp5585_gpio_data *data = dev->data;
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return gpio_manage_callback(&data->callbacks, callback, set);
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}
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void gpio_adp5585_irq_handler(const struct device *dev)
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{
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const struct adp5585_gpio_config *cfg = dev->config;
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struct adp5585_gpio_data *data = dev->data;
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const struct mfd_adp5585_config *parent_cfg =
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(struct mfd_adp5585_config *)(cfg->mfd_dev->config);
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struct mfd_adp5585_data *parent_data = (struct mfd_adp5585_data *)(cfg->mfd_dev->data);
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uint16_t reg_int_status;
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int ret = 0;
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k_sem_take(&parent_data->lock, K_FOREVER);
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/* Read Input Register */
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ret = i2c_burst_read_dt(&parent_cfg->i2c_bus, ADP5585_GPI_INT_STAT_A,
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(uint8_t *)®_int_status, 2U);
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if (ret != 0) {
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LOG_WRN("%s failed to read interrupt status %d", dev->name, ret);
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goto out;
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}
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out:
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k_sem_give(&parent_data->lock);
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if (ret == 0 && reg_int_status != 0) {
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gpio_fire_callbacks(&data->callbacks, dev, reg_int_status);
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}
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}
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/**
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* @brief Initialization function of ADP5585_GPIO
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*
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* This sets initial input/ output configuration and output states.
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* The interrupt is configured if this is enabled.
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*
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* @param dev Device struct
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* @return 0 if successful, failed otherwise.
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*/
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static int gpio_adp5585_init(const struct device *dev)
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{
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const struct adp5585_gpio_config *cfg = dev->config;
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struct adp5585_gpio_data *data = dev->data;
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const struct mfd_adp5585_config *parent_cfg =
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(struct mfd_adp5585_config *)(cfg->mfd_dev->config);
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struct mfd_adp5585_data *parent_data = (struct mfd_adp5585_data *)(cfg->mfd_dev->data);
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int ret = 0;
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if (!device_is_ready(cfg->mfd_dev)) {
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LOG_ERR("%s: parent dev not ready", dev->name);
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ret = -ENODEV;
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goto out;
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}
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if (!device_is_ready(parent_cfg->i2c_bus.bus)) {
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LOG_ERR("I2C bus device not found");
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ret = -EIO;
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goto out;
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}
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k_sem_take(&parent_data->lock, K_FOREVER);
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/** Read output register */
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uint8_t gpo_data_out_buf[] = { ADP5585_GPO_DATA_OUT_A,
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0x00, 0x00 };
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ret = i2c_write_read_dt(&parent_cfg->i2c_bus, gpo_data_out_buf, 1U,
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gpo_data_out_buf + 1, 2U);
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if (ret) {
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goto out;
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}
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data->output = sys_le16_to_cpu(*((uint16_t *)(gpo_data_out_buf + 1)));
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/** Set RPULL to high-z by default */
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uint8_t rpull_config_buf[] = { ADP5585_RPULL_CONFIG_A,
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0xffU, 0x03U, 0xffU, 0x03U };
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ret = i2c_write_dt(&parent_cfg->i2c_bus, rpull_config_buf, sizeof(rpull_config_buf));
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if (ret) {
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goto out;
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}
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parent_data->child.gpio_dev = dev;
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/** Enable GPI interrupt */
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if ((ret == 0) && gpio_is_ready_dt(&parent_cfg->nint_gpio)) {
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ret = i2c_reg_update_byte_dt(&parent_cfg->i2c_bus, ADP5585_INT_EN, (1U << 1),
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(1U << 1));
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}
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out:
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k_sem_give(&parent_data->lock);
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if (ret) {
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LOG_ERR("%s init failed: %d", dev->name, ret);
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} else {
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LOG_INF("%s init ok", dev->name);
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}
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return ret;
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}
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static const struct gpio_driver_api api_table = {
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.pin_configure = gpio_adp5585_config,
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.port_get_raw = gpio_adp5585_port_read,
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.port_set_masked_raw = gpio_adp5585_port_set_masked,
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.port_set_bits_raw = gpio_adp5585_port_set_bits,
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.port_clear_bits_raw = gpio_adp5585_port_clear_bits,
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.port_toggle_bits = gpio_adp5585_port_toggle_bits,
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.pin_interrupt_configure = gpio_adp5585_pin_interrupt_configure,
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.manage_callback = gpio_adp5585_manage_callback,
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};
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#define GPIO_ADP5585_INIT(inst) \
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static const struct adp5585_gpio_config adp5585_gpio_cfg_##inst = { \
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.common = { \
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.port_pin_mask = GPIO_DT_INST_PORT_PIN_MASK_NGPIOS_EXC( \
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inst, DT_INST_PROP(inst, ngpios)) \
|
|
}, \
|
|
.mfd_dev = DEVICE_DT_GET(DT_INST_PARENT(inst)), \
|
|
}; \
|
|
static struct adp5585_gpio_data adp5585_gpio_drvdata_##inst; \
|
|
DEVICE_DT_INST_DEFINE(inst, gpio_adp5585_init, NULL, \
|
|
&adp5585_gpio_drvdata_##inst, \
|
|
&adp5585_gpio_cfg_##inst, POST_KERNEL, \
|
|
CONFIG_GPIO_ADP5585_INIT_PRIORITY, &api_table);
|
|
|
|
DT_INST_FOREACH_STATUS_OKAY(GPIO_ADP5585_INIT)
|