608 lines
18 KiB
C
608 lines
18 KiB
C
/******************************************************************************
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* Copyright (C) 2019-2021 NXP
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* *
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* This program is free software; you can redistribute it and/or modify
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* it under the terms of the GNU General Public License as published by
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* the Free Software Foundation; either version 2 of the License, or
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* (at your option) any later version.
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*
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* This program is distributed in the hope that it will be useful,
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* but WITHOUT ANY WARRANTY; without even the implied warranty of
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* MERCHANTABILITY or FITNESS FOR A PARTICULAR PURPOSE. See the
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* GNU General Public License for more details.
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*
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* You should have received a copy of the GNU General Public License
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* along with this program; if not, write to the Free Software
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* Foundation, Inc., 59 Temple Place, Suite 330, Boston, MA 02111-1307 USA
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*
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******************************************************************************/
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#include <linux/of_gpio.h>
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#include <linux/of_device.h>
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#include <linux/delay.h>
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#include <linux/version.h>
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#include "common.h"
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#include "common_ese.h"
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#if defined(RECOVERY_ENABLE)
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#include "recovery_seq.h"
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#endif
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int nfc_parse_dt(struct device *dev, platform_configs_t *nfc_configs,
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uint8_t interface)
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{
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struct device_node *np = dev->of_node;
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platform_gpio_t *nfc_gpio = &nfc_configs->gpio;
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if (!np) {
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pr_err("nfc of_node NULL\n");
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return -EINVAL;
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}
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nfc_gpio->irq = -EINVAL;
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nfc_gpio->dwl_req = -EINVAL;
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nfc_gpio->ven = -EINVAL;
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//required for i2c based chips only
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if (interface == PLATFORM_IF_I2C) {
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nfc_gpio->irq = of_get_named_gpio(np, DTS_IRQ_GPIO_STR, 0);
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if ((!gpio_is_valid(nfc_gpio->irq))) {
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pr_err("nfc irq gpio invalid %d\n", nfc_gpio->irq);
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return -EINVAL;
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}
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pr_info("%s: irq %d\n", __func__, nfc_gpio->irq);
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}
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nfc_gpio->ven = of_get_named_gpio(np, DTS_VEN_GPIO_STR, 0);
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if ((!gpio_is_valid(nfc_gpio->ven))) {
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pr_err("nfc ven gpio invalid %d\n", nfc_gpio->ven);
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return -EINVAL;
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}
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nfc_gpio->dwl_req = of_get_named_gpio(np, DTS_FWDN_GPIO_STR, 0);
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if ((!gpio_is_valid(nfc_gpio->dwl_req))) {
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pr_warn("nfc dwl_req gpio invalid %d\n", nfc_gpio->dwl_req);
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}
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pr_info("%s: %d, %d, %d, %d\n", __func__, nfc_gpio->irq, nfc_gpio->ven,
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nfc_gpio->dwl_req);
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return 0;
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}
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void set_valid_gpio(int gpio, int value)
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{
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if (gpio_is_valid(gpio)) {
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pr_debug("%s gpio %d value %d\n", __func__, gpio, value);
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gpio_set_value(gpio, value);
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// hardware dependent delay
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usleep_range(NFC_GPIO_SET_WAIT_TIME_USEC,
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NFC_GPIO_SET_WAIT_TIME_USEC + 100);
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}
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}
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int get_valid_gpio(int gpio)
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{
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int value = -1;
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if (gpio_is_valid(gpio)) {
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value = gpio_get_value(gpio);
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pr_debug("%s gpio %d value %d\n", __func__, gpio, value);
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}
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return value;
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}
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void gpio_set_ven(struct nfc_dev *nfc_dev, int value)
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{
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platform_gpio_t *nfc_gpio = &nfc_dev->configs.gpio;
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if (gpio_get_value(nfc_gpio->ven) != value) {
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pr_debug("%s: gpio_set_ven %d\n", __func__, value);
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/*reset on change in level from high to low */
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if (value) {
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common_ese_on_hard_reset(nfc_dev);
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}
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gpio_set_value(nfc_gpio->ven, value);
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// hardware dependent delay
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usleep_range(NFC_GPIO_SET_WAIT_TIME_USEC,
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NFC_GPIO_SET_WAIT_TIME_USEC + 100);
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}
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}
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int configure_gpio(unsigned int gpio, int flag)
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{
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int ret;
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pr_debug("%s: nfc gpio [%d] flag [%01x]\n", __func__, gpio, flag);
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if (gpio_is_valid(gpio)) {
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ret = gpio_request(gpio, "nfc_gpio");
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if (ret) {
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pr_err("%s: unable to request nfc gpio [%d]\n", __func__, gpio);
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return ret;
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}
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/*set direction and value for output pin */
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if (flag & GPIO_OUTPUT) {
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ret = gpio_direction_output(gpio, (GPIO_HIGH & flag));
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pr_debug("nfc o/p gpio %d level %d\n", gpio, gpio_get_value(gpio));
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} else {
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ret = gpio_direction_input(gpio);
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pr_debug("nfc i/p gpio %d\n", gpio);
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}
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if (ret) {
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pr_err("%s: unable to set direction for nfc gpio [%d]\n", __func__, gpio);
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gpio_free(gpio);
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return ret;
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}
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/*Consider value as control for input IRQ pin */
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if (flag & GPIO_IRQ) {
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ret = gpio_to_irq(gpio);
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if (ret < 0) {
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pr_err("%s: unable to set irq for nfc gpio [%d]\n", __func__, gpio);
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gpio_free(gpio);
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return ret;
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}
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pr_debug("%s: gpio_to_irq successful [%d]\n", __func__, gpio);
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return ret;
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}
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} else {
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pr_err("%s: invalid gpio\n", __func__);
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ret = -EINVAL;
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}
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return ret;
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}
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void gpio_free_all(nfc_dev_t *nfc_dev)
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{
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platform_gpio_t *nfc_gpio = &nfc_dev->configs.gpio;
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if (gpio_is_valid(nfc_gpio->dwl_req)) {
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gpio_free(nfc_gpio->dwl_req);
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}
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if (gpio_is_valid(nfc_gpio->irq)) {
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gpio_free(nfc_gpio->irq);
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}
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if (gpio_is_valid(nfc_gpio->ven)) {
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gpio_free(nfc_gpio->ven);
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}
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}
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void nfc_misc_unregister(nfc_dev_t *nfc_dev, int count)
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{
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pr_debug("%s: entry\n", __func__);
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device_destroy(nfc_dev->nfc_class, nfc_dev->devno);
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cdev_del(&nfc_dev->c_dev);
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class_destroy(nfc_dev->nfc_class);
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unregister_chrdev_region(nfc_dev->devno, count);
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}
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int nfc_misc_register(nfc_dev_t *nfc_dev,
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const struct file_operations *nfc_fops,
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int count, char *devname, char *classname)
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{
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int ret = 0;
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ret = alloc_chrdev_region(&nfc_dev->devno, 0, count, devname);
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if (ret < 0) {
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pr_err("%s: failed to alloc chrdev region ret %d\n", __func__, ret);
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return ret;
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}
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nfc_dev->nfc_class = class_create(THIS_MODULE, classname);
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if (IS_ERR(nfc_dev->nfc_class)) {
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ret = PTR_ERR(nfc_dev->nfc_class);
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pr_err("%s: failed to register device class ret %d\n", __func__, ret);
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unregister_chrdev_region(nfc_dev->devno, count);
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return ret;
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}
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cdev_init(&nfc_dev->c_dev, nfc_fops);
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ret = cdev_add(&nfc_dev->c_dev, nfc_dev->devno, count);
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if (ret < 0) {
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pr_err("%s: failed to add cdev ret %d\n", __func__, ret);
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class_destroy(nfc_dev->nfc_class);
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unregister_chrdev_region(nfc_dev->devno, count);
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return ret;
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}
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nfc_dev->nfc_device = device_create(nfc_dev->nfc_class, NULL,
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nfc_dev->devno, nfc_dev, devname);
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if (IS_ERR(nfc_dev->nfc_device)) {
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ret = PTR_ERR(nfc_dev->nfc_device);
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pr_err("%s: failed to create the device ret %d\n", __func__, ret);
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cdev_del(&nfc_dev->c_dev);
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class_destroy(nfc_dev->nfc_class);
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unregister_chrdev_region(nfc_dev->devno, count);
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return ret;
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}
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return 0;
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}
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/*
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* nfc_ioctl_power_states() - power control
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* @nfc_dev: nfc device data structure
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* @arg: mode that we want to move to
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*
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* Device power control. Depending on the arg value, device moves to
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* different states, refer common.h for args
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*
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* Return: -ENOIOCTLCMD if arg is not supported, 0 in any other case
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*/
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static int nfc_ioctl_power_states(nfc_dev_t *nfc_dev, unsigned long arg)
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{
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int ret = 0;
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platform_gpio_t *nfc_gpio = &nfc_dev->configs.gpio;
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if (arg == NFC_POWER_OFF) {
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/*
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* We are attempting a hardware reset so let us disable
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* interrupts to avoid spurious notifications to upper
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* layers.
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*/
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nfc_dev->nfc_disable_intr(nfc_dev);
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set_valid_gpio(nfc_gpio->dwl_req, 0);
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gpio_set_ven(nfc_dev, 0);
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nfc_dev->nfc_ven_enabled = false;
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} else if (arg == NFC_POWER_ON) {
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nfc_dev->nfc_enable_intr(nfc_dev);
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set_valid_gpio(nfc_gpio->dwl_req, 0);
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gpio_set_ven(nfc_dev, 1);
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nfc_dev->nfc_ven_enabled = true;
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} else if (arg == NFC_FW_DWL_VEN_TOGGLE) {
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/*
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* We are switching to download Mode, toggle the enable pin
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* in order to set the NFCC in the new mode
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*/
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nfc_dev->nfc_disable_intr(nfc_dev);
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set_valid_gpio(nfc_gpio->dwl_req, 1);
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nfc_dev->nfc_state = NFC_STATE_FW_DWL;
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gpio_set_ven(nfc_dev, 0);
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gpio_set_ven(nfc_dev, 1);
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nfc_dev->nfc_enable_intr(nfc_dev);
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} else if (arg == NFC_FW_DWL_HIGH) {
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/*
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* Setting firmware download gpio to HIGH
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* before FW download start
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*/
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set_valid_gpio(nfc_gpio->dwl_req, 1);
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nfc_dev->nfc_state = NFC_STATE_FW_DWL;
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} else if (arg == NFC_VEN_FORCED_HARD_RESET) {
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nfc_dev->nfc_disable_intr(nfc_dev);
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gpio_set_ven(nfc_dev, 0);
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gpio_set_ven(nfc_dev, 1);
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nfc_dev->nfc_enable_intr(nfc_dev);
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} else if (arg == NFC_FW_DWL_LOW) {
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/*
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* Setting firmware download gpio to LOW
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* FW download finished
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*/
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set_valid_gpio(nfc_gpio->dwl_req, 0);
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nfc_dev->nfc_state = NFC_STATE_NCI;
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} else {
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pr_err("%s bad arg %lu\n", __func__, arg);
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ret = -ENOIOCTLCMD;
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}
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return ret;
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}
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/** @brief IOCTL function to be used to set or get data from upper layer.
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*
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* @param pfile fil node for opened device.
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* @cmd IOCTL type from upper layer.
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* @arg IOCTL arg from upper layer.
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*
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* @return 0 on success, error code for failures.
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*/
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long nfc_dev_ioctl(struct file *pfile, unsigned int cmd, unsigned long arg)
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{
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int ret = 0;
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struct nfc_dev *nfc_dev = pfile->private_data;
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if (!nfc_dev)
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return -ENODEV;
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pr_debug("%s cmd = %x arg = %zx\n", __func__, cmd, arg);
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switch (cmd) {
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case NFC_SET_PWR:
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ret = nfc_ioctl_power_states(nfc_dev, arg);
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break;
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case ESE_SET_PWR:
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ret = nfc_ese_pwr(nfc_dev, arg);
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break;
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case ESE_GET_PWR:
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ret = nfc_ese_pwr(nfc_dev, ESE_POWER_STATE);
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break;
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case NFC_GET_PLATFORM_TYPE:
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ret = nfc_dev->interface;
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break;
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case NFC_GET_NFC_STATE:
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ret = nfc_dev->nfc_state;
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pr_debug("nfc get state %d\n", ret);
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break;
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case NFC_GET_IRQ_STATE:
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ret = gpio_get_value(nfc_dev->configs.gpio.irq);
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break;
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default:
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pr_err("%s bad cmd %lu\n", __func__, arg);
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ret = -ENOIOCTLCMD;
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};
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return ret;
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}
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int nfc_dev_open(struct inode *inode, struct file *filp)
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{
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nfc_dev_t *nfc_dev = container_of(inode->i_cdev, nfc_dev_t, c_dev);
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pr_debug("%s: %d, %d\n", __func__, imajor(inode), iminor(inode));
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mutex_lock(&nfc_dev->dev_ref_mutex);
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filp->private_data = nfc_dev;
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if (nfc_dev->dev_ref_count == 0) {
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set_valid_gpio(nfc_dev->configs.gpio.dwl_req, 0);
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nfc_dev->nfc_enable_intr(nfc_dev);
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}
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nfc_dev->dev_ref_count = nfc_dev->dev_ref_count + 1;
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mutex_unlock(&nfc_dev->dev_ref_mutex);
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return 0;
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}
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int nfc_dev_close(struct inode *inode, struct file *filp)
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{
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nfc_dev_t *nfc_dev = container_of(inode->i_cdev, nfc_dev_t, c_dev);
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pr_debug("%s: %d, %d\n", __func__, imajor(inode), iminor(inode));
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mutex_lock(&nfc_dev->dev_ref_mutex);
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if (nfc_dev->dev_ref_count == 1) {
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nfc_dev->nfc_disable_intr(nfc_dev);
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set_valid_gpio(nfc_dev->configs.gpio.dwl_req, 0);
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}
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if (nfc_dev->dev_ref_count > 0)
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nfc_dev->dev_ref_count = nfc_dev->dev_ref_count - 1;
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else {
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nfc_ese_pwr(nfc_dev, ESE_RST_PROT_DIS_NFC);
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/* Uncomment below line incase of eSE calls flow is via NFC driver
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* i.e. direct calls from SPI HAL to NFC driver*/
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//nfc_ese_pwr(nfc_dev, ESE_RST_PROT_DIS);
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}
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filp->private_data = NULL;
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mutex_unlock(&nfc_dev->dev_ref_mutex);
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return 0;
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}
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static int get_nfcc_boot_state(struct nfc_dev *nfc_dev)
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{
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int ret = 0;
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char get_version_cmd[] = { 0x00, 0x04, 0xF1, 0x00, 0x00, 0x00, 0x6E, 0xEF };
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char get_session_state_cmd[] = { 0x00, 0x04, 0xF2, 0x00, 0x00, 0x00, 0xF5, 0x33 };
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char rsp_buf[MAX_BUFFER_SIZE];
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pr_debug("%s:Sending GET_VERSION cmd\n", __func__);
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ret = nfc_dev->nfc_write(nfc_dev, get_version_cmd,
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sizeof(get_version_cmd), MAX_RETRY_COUNT);
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if (ret <= 0) {
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pr_err("%s: - nfc get version cmd error ret %d\n", __func__, ret);
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goto err;
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}
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memset(rsp_buf, 0x00, MAX_BUFFER_SIZE);
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pr_debug("%s:Reading response of GET_VERSION cmd\n", __func__);
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ret = nfc_dev->nfc_read(nfc_dev, rsp_buf, DL_GET_VERSION_RSP_LEN_2, NCI_CMD_RSP_TIMEOUT);
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if (ret <= 0) {
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pr_err("%s: - nfc get version rsp error ret %d\n", __func__, ret);
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goto err;
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} else if (rsp_buf[0] == FW_MSG_CMD_RSP
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&& ret >= DL_GET_VERSION_RSP_LEN_2) {
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#if defined(RECOVERY_ENABLE)
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nfc_dev->fw_major_version = rsp_buf[FW_MAJOR_VER_OFFSET];
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/* recvoery neeeded only for SN1xx */
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if(rsp_buf[FW_ROM_CODE_VER_OFFSET] == RECOVERY_FW_SUPPORTED_ROM_VER &&
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nfc_dev->fw_major_version == RECOVERY_FW_SUPPORTED_MAJOR_VER)
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nfc_dev->recovery_required = true;
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#endif
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pr_info("%s:NFC chip_type 0x%02x rom_version 0x%02x fw_minor 0x%02x fw_major 0x%02x\n",
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__func__, rsp_buf[3], rsp_buf[4], rsp_buf[6], rsp_buf[7]);
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} else if (rsp_buf[0] != FW_MSG_CMD_RSP
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&& ret >= (NCI_HDR_LEN + rsp_buf[NCI_PAYLOAD_LEN_IDX])) {
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pr_info("%s:NFC response bytes 0x%02x 0x%02x 0x%02x 0x%02x 0x%02x\n", __func__,
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rsp_buf[0], rsp_buf[1], rsp_buf[2], rsp_buf[3], rsp_buf[3]);
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pr_debug("%s NFCC booted in NCI mode %d\n", __func__, __LINE__);
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return NFC_STATE_NCI;
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}
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pr_debug("%s:Sending GET_SESSION_STATE cmd \n", __func__);
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ret = nfc_dev->nfc_write(nfc_dev, get_session_state_cmd,
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sizeof(get_session_state_cmd),
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MAX_RETRY_COUNT);
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if (ret <= 0) {
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pr_err("%s: - nfc get session state cmd err ret %d\n", __func__, ret);
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goto err;
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}
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memset(rsp_buf, 0x00, DL_GET_SESSION_STATE_RSP_LEN);
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pr_debug("%s:Reading response of GET_SESSION_STATE cmd\n", __func__);
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ret = nfc_dev->nfc_read(nfc_dev, rsp_buf, DL_GET_SESSION_STATE_RSP_LEN, NCI_CMD_RSP_TIMEOUT);
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if (ret <= 0) {
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pr_err("%s: - nfc get session state rsp err %d\n", __func__, ret);
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goto err;
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}
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pr_debug("Response bytes are %02x,%02x,%02x,%02x,%02x,%02x,%02x,%02x",
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rsp_buf[0], rsp_buf[1], rsp_buf[2], rsp_buf[3], rsp_buf[4], rsp_buf[5],
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rsp_buf[6], rsp_buf[7]);
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/*verify fw in non-teared state */
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if (rsp_buf[GET_SESSION_STS_OFF] != NFCC_SESSION_STS_CLOSED) {
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pr_debug("%s NFCC booted in teared fw state %d\n", __func__, __LINE__);
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return NFC_STATE_FW_TEARED;
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}
|
|
pr_debug("%s NFCC booted in FW DN mode %d\n", __func__, __LINE__);
|
|
return NFC_STATE_FW_DWL;
|
|
err:
|
|
pr_err("%s Unlikely NFCC not booted in FW DN mode %d\n", __func__, __LINE__);
|
|
return NFC_STATE_UNKNOWN;
|
|
}
|
|
|
|
int validate_nfc_state_nci(nfc_dev_t *nfc_dev)
|
|
{
|
|
platform_gpio_t *nfc_gpio = &nfc_dev->configs.gpio;
|
|
if (!gpio_get_value(nfc_gpio->ven)) {
|
|
pr_err("VEN LOW - NFCC powered off\n");
|
|
return -ENODEV;
|
|
} else {
|
|
if (get_valid_gpio(nfc_gpio->dwl_req) == 1) {
|
|
pr_err("FW download in-progress\n");
|
|
return -EBUSY;
|
|
} else if (nfc_dev->nfc_state == NFC_STATE_FW_DWL) {
|
|
pr_err("FW download state \n");
|
|
return -EBUSY;
|
|
}
|
|
}
|
|
return 0;
|
|
}
|
|
|
|
static int set_nfcc_nci_state(struct nfc_dev *nfc_dev)
|
|
{
|
|
int ret = 0;
|
|
char dl_reset_cmd[] = { 0x00, 0x04, 0xF0, 0x00, 0x00, 0x00, 0x18, 0x5B };
|
|
|
|
pr_debug("%s:Sending DL_RESET to boot in NCI mode\n", __func__);
|
|
ret = nfc_dev->nfc_write(nfc_dev, dl_reset_cmd,
|
|
sizeof(dl_reset_cmd), MAX_RETRY_COUNT);
|
|
if (ret <= 0) {
|
|
pr_err("%s: nfc dl reset cmd err ret %d\n", __func__, ret);
|
|
goto err;
|
|
}
|
|
usleep_range(NFC_SOFT_RESET_WAIT_TIME_USEC,
|
|
NFC_SOFT_RESET_WAIT_TIME_USEC + 100);
|
|
pr_debug("%s NFCC booted in NCI mode %d\n", __func__, __LINE__);
|
|
return 0;
|
|
|
|
err:
|
|
pr_err("%s Unlikely NFCC not booted in NCI mode %d\n", __func__, __LINE__);
|
|
return -1;
|
|
}
|
|
|
|
static bool do_nci_reset(nfc_dev_t *nfc_dev) {
|
|
const uint8_t cmd_reset_nci[] = {0x20, 0x00, 0x01, 0x00};
|
|
char rsp_buf[MAX_BUFFER_SIZE];
|
|
int status = 0;
|
|
|
|
if (NULL == nfc_dev) {
|
|
pr_err("%s invalid params ", __func__);
|
|
return false;
|
|
}
|
|
pr_debug("%s Entry \n", __func__);
|
|
gpio_set_ven(nfc_dev, 0);
|
|
gpio_set_ven(nfc_dev, 1);
|
|
pr_debug(" %s send core reset cmd \n", __func__);
|
|
status = nfc_dev->nfc_write(nfc_dev, cmd_reset_nci,
|
|
sizeof(cmd_reset_nci), NO_RETRY);
|
|
if (status <= 0) {
|
|
pr_err(" %s: nfc nci core reset cmd err status %d\n", __func__, status);
|
|
return false;
|
|
}
|
|
usleep_range(NCI_RESET_RESP_READ_DELAY, NCI_RESET_RESP_READ_DELAY + 100);
|
|
nfc_dev->nfc_enable_intr(nfc_dev);
|
|
pr_debug(" %s Reading response of NCI reset \n", __func__);
|
|
memset(rsp_buf, 0x00, MAX_BUFFER_SIZE);
|
|
status = nfc_dev->nfc_read(nfc_dev, rsp_buf, MAX_BUFFER_SIZE, NCI_RESET_RESP_TIMEOUT);
|
|
if (status <= 0) {
|
|
pr_err(" %s - nfc nci rest rsp error status %d\n", __func__, status);
|
|
nfc_dev->nfc_disable_intr(nfc_dev);
|
|
return false;
|
|
}
|
|
pr_debug(" %s: nci core reset response 0x%02x 0x%02x 0x%02x 0x%02x \n",
|
|
__func__, rsp_buf[0], rsp_buf[1],rsp_buf[2], rsp_buf[3]);
|
|
if(rsp_buf[0] != NCI_MSG_RSP) {
|
|
/* reset response failed response*/
|
|
pr_err("%s invalid nci core reset response");
|
|
nfc_dev->nfc_disable_intr(nfc_dev);
|
|
return false;
|
|
}
|
|
memset(rsp_buf, 0x00, MAX_BUFFER_SIZE);
|
|
/* read nci rest response ntf */
|
|
status = nfc_dev->nfc_read(nfc_dev, rsp_buf, MAX_BUFFER_SIZE, NCI_CMD_RSP_TIMEOUT);
|
|
if (status <= 0) {
|
|
pr_err("%s - nfc nci rest rsp ntf error status %d\n"
|
|
, __func__, status);
|
|
}
|
|
pr_debug(" %s:NFC NCI Reset Response ntf 0x%02x 0x%02x 0x%02x 0x%02x \n",
|
|
__func__, rsp_buf[0], rsp_buf[1],rsp_buf[2], rsp_buf[3]);
|
|
nfc_dev->nfc_disable_intr(nfc_dev);
|
|
gpio_set_ven(nfc_dev, 0);
|
|
gpio_set_ven(nfc_dev, 1);
|
|
return true;
|
|
}
|
|
|
|
/* Check for availability of NFC controller hardware */
|
|
int nfcc_hw_check(struct nfc_dev *nfc_dev)
|
|
{
|
|
int ret = 0;
|
|
uint8_t nfc_state = NFC_STATE_UNKNOWN;
|
|
if(do_nci_reset(nfc_dev)) {
|
|
pr_info("%s recovery not required", __func__);
|
|
return ret;
|
|
}
|
|
nfc_dev->nfc_enable_intr(nfc_dev);
|
|
|
|
/*set download mode for i2c products with dwl pin */
|
|
enable_dwnld_mode(nfc_dev, true);
|
|
|
|
nfc_state = get_nfcc_boot_state(nfc_dev);
|
|
switch (nfc_state) {
|
|
case NFC_STATE_FW_DWL:
|
|
usleep_range(NFC_GPIO_SET_WAIT_TIME_USEC,
|
|
NFC_GPIO_SET_WAIT_TIME_USEC + 100);
|
|
if (set_nfcc_nci_state(nfc_dev)) {
|
|
pr_debug("%s: - NFCC DL Reset Fails\n", __func__);
|
|
} else {
|
|
nfc_state = NFC_STATE_NCI;
|
|
/*set NCI mode for i2c products with dwl pin */
|
|
enable_dwnld_mode(nfc_dev, false);
|
|
}
|
|
/* fall-through */
|
|
case NFC_STATE_NCI:
|
|
nfc_dev->nfc_ven_enabled = true;
|
|
pr_debug("%s: - NFCC HW detected\n", __func__);
|
|
break;
|
|
case NFC_STATE_FW_TEARED:
|
|
pr_warn("%s: - NFCC FW Teared State\n", __func__);
|
|
#if defined(RECOVERY_ENABLE)
|
|
if(nfc_dev->recovery_required &&
|
|
(do_recovery(nfc_dev) == STATUS_SUCCESS)) {
|
|
pr_debug("%s: - NFCC HW detected\n", __func__);
|
|
}
|
|
#endif
|
|
nfc_dev->nfc_ven_enabled = true;
|
|
break;
|
|
case NFC_STATE_UNKNOWN:
|
|
default:
|
|
ret = -ENXIO;
|
|
pr_debug("%s: - NFCC HW not available\n", __func__);
|
|
};
|
|
|
|
nfc_dev->nfc_disable_intr(nfc_dev);
|
|
if (nfc_state == NFC_STATE_FW_TEARED) {
|
|
nfc_state = NFC_STATE_FW_DWL;
|
|
}
|
|
nfc_dev->nfc_state = nfc_state;
|
|
return ret;
|
|
}
|
|
|
|
void enable_dwnld_mode(nfc_dev_t* nfc_dev, bool value) {
|
|
if(nfc_dev != NULL) {
|
|
platform_gpio_t *nfc_gpio = &nfc_dev->configs.gpio;
|
|
if (get_valid_gpio(nfc_gpio->dwl_req) != -1) {
|
|
set_valid_gpio(nfc_gpio->dwl_req, value);
|
|
gpio_set_ven(nfc_dev, 0);
|
|
gpio_set_ven(nfc_dev, 1);
|
|
}
|
|
}
|
|
}
|
|
|
|
void set_nfcc_state_from_rsp(struct nfc_dev *dev, const char *buf,
|
|
const int count)
|
|
{
|
|
int packet_size = 0;
|
|
if (buf[0] == FW_MSG_CMD_RSP && buf[1] >= FW_MIN_PAYLOAD_LEN) {
|
|
packet_size = FW_HDR_LEN + buf[FW_PAYLOAD_LEN_IDX] + FW_CRC_LEN;
|
|
if (packet_size == count && dev->nfc_state == NFC_STATE_NCI)
|
|
dev->nfc_state = NFC_STATE_FW_DWL;
|
|
} else {
|
|
packet_size = NCI_HDR_LEN + buf[NCI_PAYLOAD_LEN_IDX];
|
|
if (packet_size == count && dev->nfc_state == NFC_STATE_FW_DWL)
|
|
dev->nfc_state = NFC_STATE_NCI;
|
|
}
|
|
if (count != packet_size) {
|
|
pr_err("%s: Unlikely mismatch in packet size received (%d/%d)/\n", __func__,
|
|
packet_size, count);
|
|
}
|
|
}
|