174 lines
4.0 KiB
C
174 lines
4.0 KiB
C
/*
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* Copyright (c) 2020 arithmetics.io
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*
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* SPDX-License-Identifier: Apache-2.0
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*/
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#define DT_DRV_COMPAT ti_fdc2x1x
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#include <device.h>
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#include <drivers/gpio.h>
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#include <sys/util.h>
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#include <kernel.h>
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#include <drivers/sensor.h>
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#include "fdc2x1x.h"
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#include <stdio.h>
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#include <logging/log.h>
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LOG_MODULE_DECLARE(FDC2X1X, CONFIG_SENSOR_LOG_LEVEL);
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static void fdc2x1x_thread_cb(const struct device *dev)
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{
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struct fdc2x1x_data *drv_data = dev->data;
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uint16_t status;
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#ifdef CONFIG_PM_DEVICE
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enum pm_device_state state;
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/* INTB asserts after exiting shutdown mode. Drop this interrupt */
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(void)pm_device_state_get(dev, &state);
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if (state == PM_DEVICE_STATE_OFF) {
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return;
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}
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#endif
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/* Clear the status */
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if (fdc2x1x_get_status(dev, &status) < 0) {
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LOG_ERR("Unable to get status.");
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return;
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}
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k_mutex_lock(&drv_data->trigger_mutex, K_FOREVER);
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if ((drv_data->drdy_handler != NULL) && FDC2X1X_STATUS_DRDY(status)) {
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drv_data->drdy_handler(dev, &drv_data->drdy_trigger);
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}
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k_mutex_unlock(&drv_data->trigger_mutex);
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}
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static void fdc2x1x_gpio_callback(const struct device *dev,
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struct gpio_callback *cb, uint32_t pins)
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{
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struct fdc2x1x_data *drv_data =
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CONTAINER_OF(cb, struct fdc2x1x_data, gpio_cb);
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#ifdef CONFIG_FDC2X1X_TRIGGER_OWN_THREAD
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k_sem_give(&drv_data->gpio_sem);
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#elif CONFIG_FDC2X1X_TRIGGER_GLOBAL_THREAD
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k_work_submit(&drv_data->work);
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#endif
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}
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#ifdef CONFIG_FDC2X1X_TRIGGER_OWN_THREAD
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static void fdc2x1x_thread(struct fdc2x1x_data *drv_data)
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{
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while (true) {
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k_sem_take(&drv_data->gpio_sem, K_FOREVER);
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fdc2x1x_thread_cb(drv_data->dev);
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}
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}
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#elif CONFIG_FDC2X1X_TRIGGER_GLOBAL_THREAD
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static void fdc2x1x_work_cb(struct k_work *work)
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{
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struct fdc2x1x_data *drv_data =
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CONTAINER_OF(work, struct fdc2x1x_data, work);
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fdc2x1x_thread_cb(drv_data->dev);
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}
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#endif
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int fdc2x1x_trigger_set(const struct device *dev,
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const struct sensor_trigger *trig,
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sensor_trigger_handler_t handler)
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{
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struct fdc2x1x_data *drv_data = dev->data;
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const struct fdc2x1x_config *cfg = dev->config;
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uint16_t status, int_mask, int_en;
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int ret;
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gpio_pin_interrupt_configure(cfg->intb_gpio, cfg->intb_pin,
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GPIO_INT_DISABLE);
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switch (trig->type) {
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case SENSOR_TRIG_DATA_READY:
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k_mutex_lock(&drv_data->trigger_mutex, K_FOREVER);
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drv_data->drdy_handler = handler;
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drv_data->drdy_trigger = *trig;
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k_mutex_unlock(&drv_data->trigger_mutex);
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int_mask = FDC2X1X_ERROR_CONFIG_DRDY_2INT_MSK;
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break;
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default:
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LOG_ERR("Unsupported sensor trigger");
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ret = -ENOTSUP;
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goto out;
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}
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if (handler) {
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int_en = int_mask;
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drv_data->int_config |= int_mask;
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} else {
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int_en = 0U;
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}
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ret = fdc2x1x_reg_write_mask(dev,
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FDC2X1X_ERROR_CONFIG, int_mask, int_en);
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/* Clear INTB pin by reading STATUS register */
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fdc2x1x_get_status(dev, &status);
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out:
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gpio_pin_interrupt_configure(cfg->intb_gpio, cfg->intb_pin,
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GPIO_INT_EDGE_TO_ACTIVE);
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return ret;
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}
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int fdc2x1x_init_interrupt(const struct device *dev)
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{
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struct fdc2x1x_data *drv_data = dev->data;
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const struct fdc2x1x_config *cfg = dev->config;
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int ret;
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k_mutex_init(&drv_data->trigger_mutex);
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if (!device_is_ready(cfg->intb_gpio)) {
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LOG_ERR("%s: intb_gpio device not ready", cfg->intb_gpio->name);
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return -ENODEV;
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}
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ret = fdc2x1x_set_interrupt_pin(dev, true);
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if (ret) {
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return ret;
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}
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gpio_pin_configure(cfg->intb_gpio, cfg->intb_pin,
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GPIO_INPUT | cfg->intb_flags);
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gpio_init_callback(&drv_data->gpio_cb,
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fdc2x1x_gpio_callback,
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BIT(cfg->intb_pin));
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if (gpio_add_callback(cfg->intb_gpio, &drv_data->gpio_cb) < 0) {
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LOG_ERR("Failed to set gpio callback!");
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return -EIO;
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}
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drv_data->dev = dev;
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#ifdef CONFIG_FDC2X1X_TRIGGER_OWN_THREAD
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k_sem_init(&drv_data->gpio_sem, 0, UINT_MAX);
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k_thread_create(&drv_data->thread, drv_data->thread_stack,
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CONFIG_FDC2X1X_THREAD_STACK_SIZE,
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(k_thread_entry_t)fdc2x1x_thread,
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drv_data, 0, NULL,
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K_PRIO_COOP(CONFIG_FDC2X1X_THREAD_PRIORITY),
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0, K_NO_WAIT);
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#elif CONFIG_FDC2X1X_TRIGGER_GLOBAL_THREAD
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drv_data->work.handler = fdc2x1x_work_cb;
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#endif
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return 0;
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}
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