gpiolib-acpi.c 28.3 KB
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/*
 * ACPI helpers for GPIO API
 *
 * Copyright (C) 2012, Intel Corporation
 * Authors: Mathias Nyman <mathias.nyman@linux.intel.com>
 *          Mika Westerberg <mika.westerberg@linux.intel.com>
 *
 * This program is free software; you can redistribute it and/or modify
 * it under the terms of the GNU General Public License version 2 as
 * published by the Free Software Foundation.
 */

#include <linux/errno.h>
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#include <linux/gpio.h>
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#include <linux/gpio/consumer.h>
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#include <linux/gpio/driver.h>
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#include <linux/gpio/machine.h>
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#include <linux/export.h>
#include <linux/acpi.h>
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#include <linux/interrupt.h>
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#include <linux/mutex.h>
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#include <linux/pinctrl/pinctrl.h>
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#include "gpiolib.h"

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struct acpi_gpio_event {
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	struct list_head node;
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	acpi_handle handle;
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	unsigned int pin;
	unsigned int irq;
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	struct gpio_desc *desc;
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};

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struct acpi_gpio_connection {
	struct list_head node;
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	unsigned int pin;
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	struct gpio_desc *desc;
};

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struct acpi_gpio_chip {
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	/*
	 * ACPICA requires that the first field of the context parameter
	 * passed to acpi_install_address_space_handler() is large enough
	 * to hold struct acpi_connection_info.
	 */
	struct acpi_connection_info conn_info;
	struct list_head conns;
	struct mutex conn_lock;
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	struct gpio_chip *chip;
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	struct list_head events;
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};

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static int acpi_gpiochip_find(struct gpio_chip *gc, void *data)
{
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	if (!gc->parent)
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		return false;

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	return ACPI_HANDLE(gc->parent) == data;
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}

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#ifdef CONFIG_PINCTRL
/**
 * acpi_gpiochip_pin_to_gpio_offset() - translates ACPI GPIO to Linux GPIO
 * @chip: GPIO chip
 * @pin: ACPI GPIO pin number from GpioIo/GpioInt resource
 *
 * Function takes ACPI GpioIo/GpioInt pin number as a parameter and
 * translates it to a corresponding offset suitable to be passed to a
 * GPIO controller driver.
 *
 * Typically the returned offset is same as @pin, but if the GPIO
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 * controller uses pin controller and the mapping is not contiguous the
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 * offset might be different.
 */
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static int acpi_gpiochip_pin_to_gpio_offset(struct gpio_device *gdev, int pin)
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{
	struct gpio_pin_range *pin_range;

	/* If there are no ranges in this chip, use 1:1 mapping */
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	if (list_empty(&gdev->pin_ranges))
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		return pin;

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	list_for_each_entry(pin_range, &gdev->pin_ranges, node) {
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		const struct pinctrl_gpio_range *range = &pin_range->range;
		int i;

		if (range->pins) {
			for (i = 0; i < range->npins; i++) {
				if (range->pins[i] == pin)
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					return range->base + i - gdev->base;
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			}
		} else {
			if (pin >= range->pin_base &&
			    pin < range->pin_base + range->npins) {
				unsigned gpio_base;

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				gpio_base = range->base - gdev->base;
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				return gpio_base + pin - range->pin_base;
			}
		}
	}

	return -EINVAL;
}
#else
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static inline int acpi_gpiochip_pin_to_gpio_offset(struct gpio_device *gdev,
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						   int pin)
{
	return pin;
}
#endif

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/**
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 * acpi_get_gpiod() - Translate ACPI GPIO pin to GPIO descriptor usable with GPIO API
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 * @path:	ACPI GPIO controller full path name, (e.g. "\\_SB.GPO1")
 * @pin:	ACPI GPIO pin number (0-based, controller-relative)
 *
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 * Return: GPIO descriptor to use with Linux generic GPIO API, or ERR_PTR
 * error value. Specifically returns %-EPROBE_DEFER if the referenced GPIO
 * controller does not have gpiochip registered at the moment. This is to
 * support probe deferral.
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 */
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static struct gpio_desc *acpi_get_gpiod(char *path, int pin)
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{
	struct gpio_chip *chip;
	acpi_handle handle;
	acpi_status status;
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	int offset;
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	status = acpi_get_handle(NULL, path, &handle);
	if (ACPI_FAILURE(status))
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		return ERR_PTR(-ENODEV);
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	chip = gpiochip_find(handle, acpi_gpiochip_find);
	if (!chip)
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		return ERR_PTR(-EPROBE_DEFER);
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	offset = acpi_gpiochip_pin_to_gpio_offset(chip->gpiodev, pin);
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	if (offset < 0)
		return ERR_PTR(offset);
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	return gpiochip_get_desc(chip, offset);
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}
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static irqreturn_t acpi_gpio_irq_handler(int irq, void *data)
{
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	struct acpi_gpio_event *event = data;
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	acpi_evaluate_object(event->handle, NULL, NULL, NULL);
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	return IRQ_HANDLED;
}

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static irqreturn_t acpi_gpio_irq_handler_evt(int irq, void *data)
{
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	struct acpi_gpio_event *event = data;
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	acpi_execute_simple_method(event->handle, NULL, event->pin);
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	return IRQ_HANDLED;
}

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static void acpi_gpio_chip_dh(acpi_handle handle, void *data)
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{
	/* The address of this function is used as a key. */
}

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static acpi_status acpi_gpiochip_request_interrupt(struct acpi_resource *ares,
						   void *context)
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{
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	struct acpi_gpio_chip *acpi_gpio = context;
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	struct gpio_chip *chip = acpi_gpio->chip;
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	struct acpi_resource_gpio *agpio;
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	acpi_handle handle, evt_handle;
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	struct acpi_gpio_event *event;
	irq_handler_t handler = NULL;
	struct gpio_desc *desc;
	unsigned long irqflags;
	int ret, pin, irq;
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	if (ares->type != ACPI_RESOURCE_TYPE_GPIO)
		return AE_OK;

	agpio = &ares->data.gpio;
	if (agpio->connection_type != ACPI_RESOURCE_GPIO_TYPE_INT)
		return AE_OK;
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	handle = ACPI_HANDLE(chip->parent);
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	pin = agpio->pin_table[0];

	if (pin <= 255) {
		char ev_name[5];
		sprintf(ev_name, "_%c%02X",
			agpio->triggering == ACPI_EDGE_SENSITIVE ? 'E' : 'L',
			pin);
		if (ACPI_SUCCESS(acpi_get_handle(handle, ev_name, &evt_handle)))
			handler = acpi_gpio_irq_handler;
	}
	if (!handler) {
		if (ACPI_SUCCESS(acpi_get_handle(handle, "_EVT", &evt_handle)))
			handler = acpi_gpio_irq_handler_evt;
	}
	if (!handler)
		return AE_BAD_PARAMETER;
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	pin = acpi_gpiochip_pin_to_gpio_offset(chip->gpiodev, pin);
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	if (pin < 0)
		return AE_BAD_PARAMETER;

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	desc = gpiochip_request_own_desc(chip, pin, "ACPI:Event");
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	if (IS_ERR(desc)) {
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		dev_err(chip->parent, "Failed to request GPIO\n");
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		return AE_ERROR;
	}
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	gpiod_direction_input(desc);
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	ret = gpiochip_lock_as_irq(chip, pin);
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	if (ret) {
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		dev_err(chip->parent, "Failed to lock GPIO as interrupt\n");
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		goto fail_free_desc;
	}
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	irq = gpiod_to_irq(desc);
	if (irq < 0) {
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		dev_err(chip->parent, "Failed to translate GPIO to IRQ\n");
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		goto fail_unlock_irq;
	}
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	irqflags = IRQF_ONESHOT;
	if (agpio->triggering == ACPI_LEVEL_SENSITIVE) {
		if (agpio->polarity == ACPI_ACTIVE_HIGH)
			irqflags |= IRQF_TRIGGER_HIGH;
		else
			irqflags |= IRQF_TRIGGER_LOW;
	} else {
		switch (agpio->polarity) {
		case ACPI_ACTIVE_HIGH:
			irqflags |= IRQF_TRIGGER_RISING;
			break;
		case ACPI_ACTIVE_LOW:
			irqflags |= IRQF_TRIGGER_FALLING;
			break;
		default:
			irqflags |= IRQF_TRIGGER_RISING |
				    IRQF_TRIGGER_FALLING;
			break;
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		}
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	}
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	event = kzalloc(sizeof(*event), GFP_KERNEL);
	if (!event)
		goto fail_unlock_irq;
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	event->handle = evt_handle;
	event->irq = irq;
	event->pin = pin;
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	event->desc = desc;
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	ret = request_threaded_irq(event->irq, NULL, handler, irqflags,
				   "ACPI:Event", event);
	if (ret) {
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		dev_err(chip->parent,
			"Failed to setup interrupt handler for %d\n",
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			event->irq);
		goto fail_free_event;
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	}
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	list_add_tail(&event->node, &acpi_gpio->events);
	return AE_OK;

fail_free_event:
	kfree(event);
fail_unlock_irq:
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	gpiochip_unlock_as_irq(chip, pin);
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fail_free_desc:
	gpiochip_free_own_desc(desc);

	return AE_ERROR;
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}
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/**
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 * acpi_gpiochip_request_interrupts() - Register isr for gpio chip ACPI events
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 * @chip:      GPIO chip
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 *
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 * ACPI5 platforms can use GPIO signaled ACPI events. These GPIO interrupts are
 * handled by ACPI event methods which need to be called from the GPIO
 * chip's interrupt handler. acpi_gpiochip_request_interrupts finds out which
 * gpio pins have acpi event methods and assigns interrupt handlers that calls
 * the acpi event methods for those pins.
 */
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void acpi_gpiochip_request_interrupts(struct gpio_chip *chip)
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{
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	struct acpi_gpio_chip *acpi_gpio;
	acpi_handle handle;
	acpi_status status;

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	if (!chip->parent || !chip->to_irq)
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		return;
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	handle = ACPI_HANDLE(chip->parent);
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	if (!handle)
		return;

	status = acpi_get_data(handle, acpi_gpio_chip_dh, (void **)&acpi_gpio);
	if (ACPI_FAILURE(status))
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		return;

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	acpi_walk_resources(handle, "_AEI",
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			    acpi_gpiochip_request_interrupt, acpi_gpio);
}
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EXPORT_SYMBOL_GPL(acpi_gpiochip_request_interrupts);
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/**
 * acpi_gpiochip_free_interrupts() - Free GPIO ACPI event interrupts.
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 * @chip:      GPIO chip
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 *
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 * Free interrupts associated with GPIO ACPI event method for the given
 * GPIO chip.
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 */
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void acpi_gpiochip_free_interrupts(struct gpio_chip *chip)
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{
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	struct acpi_gpio_chip *acpi_gpio;
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	struct acpi_gpio_event *event, *ep;
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	acpi_handle handle;
	acpi_status status;

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	if (!chip->parent || !chip->to_irq)
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		return;
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	handle = ACPI_HANDLE(chip->parent);
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	if (!handle)
		return;

	status = acpi_get_data(handle, acpi_gpio_chip_dh, (void **)&acpi_gpio);
	if (ACPI_FAILURE(status))
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		return;

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	list_for_each_entry_safe_reverse(event, ep, &acpi_gpio->events, node) {
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		struct gpio_desc *desc;

		free_irq(event->irq, event);
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		desc = event->desc;
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		if (WARN_ON(IS_ERR(desc)))
			continue;
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		gpiochip_unlock_as_irq(chip, event->pin);
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		gpiochip_free_own_desc(desc);
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		list_del(&event->node);
		kfree(event);
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	}
}
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EXPORT_SYMBOL_GPL(acpi_gpiochip_free_interrupts);
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int acpi_dev_add_driver_gpios(struct acpi_device *adev,
			      const struct acpi_gpio_mapping *gpios)
{
	if (adev && gpios) {
		adev->driver_gpios = gpios;
		return 0;
	}
	return -EINVAL;
}
EXPORT_SYMBOL_GPL(acpi_dev_add_driver_gpios);

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static void devm_acpi_dev_release_driver_gpios(struct device *dev, void *res)
{
	acpi_dev_remove_driver_gpios(ACPI_COMPANION(dev));
}

int devm_acpi_dev_add_driver_gpios(struct device *dev,
				   const struct acpi_gpio_mapping *gpios)
{
	void *res;
	int ret;

	res = devres_alloc(devm_acpi_dev_release_driver_gpios, 0, GFP_KERNEL);
	if (!res)
		return -ENOMEM;

	ret = acpi_dev_add_driver_gpios(ACPI_COMPANION(dev), gpios);
	if (ret) {
		devres_free(res);
		return ret;
	}
	devres_add(dev, res);
	return 0;
}
EXPORT_SYMBOL_GPL(devm_acpi_dev_add_driver_gpios);

void devm_acpi_dev_remove_driver_gpios(struct device *dev)
{
	WARN_ON(devres_release(dev, devm_acpi_dev_release_driver_gpios, NULL, NULL));
}
EXPORT_SYMBOL_GPL(devm_acpi_dev_remove_driver_gpios);

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static bool acpi_get_driver_gpio_data(struct acpi_device *adev,
				      const char *name, int index,
				      struct acpi_reference_args *args)
{
	const struct acpi_gpio_mapping *gm;

	if (!adev->driver_gpios)
		return false;

	for (gm = adev->driver_gpios; gm->name; gm++)
		if (!strcmp(name, gm->name) && gm->data && index < gm->size) {
			const struct acpi_gpio_params *par = gm->data + index;

			args->adev = adev;
			args->args[0] = par->crs_entry_index;
			args->args[1] = par->line_index;
			args->args[2] = par->active_low;
			args->nargs = 3;
			return true;
		}

	return false;
}

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struct acpi_gpio_lookup {
	struct acpi_gpio_info info;
	int index;
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	int pin_index;
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	bool active_low;
	struct acpi_device *adev;
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	struct gpio_desc *desc;
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	int n;
};

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static int acpi_populate_gpio_lookup(struct acpi_resource *ares, void *data)
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{
	struct acpi_gpio_lookup *lookup = data;

	if (ares->type != ACPI_RESOURCE_TYPE_GPIO)
		return 1;

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	if (lookup->n++ == lookup->index && !lookup->desc) {
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		const struct acpi_resource_gpio *agpio = &ares->data.gpio;
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		int pin_index = lookup->pin_index;

		if (pin_index >= agpio->pin_table_length)
			return 1;
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		lookup->desc = acpi_get_gpiod(agpio->resource_source.string_ptr,
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					      agpio->pin_table[pin_index]);
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		lookup->info.gpioint =
			agpio->connection_type == ACPI_RESOURCE_GPIO_TYPE_INT;
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		/*
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		 * Polarity and triggering are only specified for GpioInt
		 * resource.
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		 * Note: we expect here:
		 * - ACPI_ACTIVE_LOW == GPIO_ACTIVE_LOW
		 * - ACPI_ACTIVE_HIGH == GPIO_ACTIVE_HIGH
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		 */
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		if (lookup->info.gpioint) {
			lookup->info.polarity = agpio->polarity;
			lookup->info.triggering = agpio->triggering;
		}

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	}

	return 1;
}

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static int acpi_gpio_resource_lookup(struct acpi_gpio_lookup *lookup,
				     struct acpi_gpio_info *info)
{
	struct list_head res_list;
	int ret;

	INIT_LIST_HEAD(&res_list);

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	ret = acpi_dev_get_resources(lookup->adev, &res_list,
				     acpi_populate_gpio_lookup,
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				     lookup);
	if (ret < 0)
		return ret;

	acpi_dev_free_resource_list(&res_list);

	if (!lookup->desc)
		return -ENOENT;

	if (info) {
		*info = lookup->info;
		if (lookup->active_low)
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			info->polarity = lookup->active_low;
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	}
	return 0;
}

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static int acpi_gpio_property_lookup(struct fwnode_handle *fwnode,
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				     const char *propname, int index,
				     struct acpi_gpio_lookup *lookup)
{
	struct acpi_reference_args args;
	int ret;

	memset(&args, 0, sizeof(args));
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	ret = __acpi_node_get_property_reference(fwnode, propname, index, 3,
						 &args);
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	if (ret) {
		struct acpi_device *adev = to_acpi_device_node(fwnode);
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		if (!adev)
			return ret;

		if (!acpi_get_driver_gpio_data(adev, propname, index, &args))
			return ret;
	}
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	/*
	 * The property was found and resolved, so need to lookup the GPIO based
	 * on returned args.
	 */
	lookup->adev = args.adev;
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	if (args.nargs != 3)
		return -EPROTO;

	lookup->index = args.args[0];
	lookup->pin_index = args.args[1];
	lookup->active_low = !!args.args[2];

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	return 0;
}

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/**
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 * acpi_get_gpiod_by_index() - get a GPIO descriptor from device resources
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 * @adev: pointer to a ACPI device to get GPIO from
 * @propname: Property name of the GPIO (optional)
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 * @index: index of GpioIo/GpioInt resource (starting from %0)
 * @info: info pointer to fill in (optional)
 *
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 * Function goes through ACPI resources for @adev and based on @index looks
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 * up a GpioIo/GpioInt resource, translates it to the Linux GPIO descriptor,
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 * and returns it. @index matches GpioIo/GpioInt resources only so if there
 * are total %3 GPIO resources, the index goes from %0 to %2.
 *
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 * If @propname is specified the GPIO is looked using device property. In
 * that case @index is used to select the GPIO entry in the property value
 * (in case of multiple).
 *
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 * If the GPIO cannot be translated or there is an error an ERR_PTR is
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 * returned.
 *
 * Note: if the GPIO resource has multiple entries in the pin list, this
 * function only returns the first.
 */
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static struct gpio_desc *acpi_get_gpiod_by_index(struct acpi_device *adev,
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					  const char *propname, int index,
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					  struct acpi_gpio_info *info)
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{
	struct acpi_gpio_lookup lookup;
	int ret;

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	if (!adev)
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		return ERR_PTR(-ENODEV);
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	memset(&lookup, 0, sizeof(lookup));
	lookup.index = index;

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	if (propname) {
		dev_dbg(&adev->dev, "GPIO: looking up %s\n", propname);

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		ret = acpi_gpio_property_lookup(acpi_fwnode_handle(adev),
						propname, index, &lookup);
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		if (ret)
			return ERR_PTR(ret);
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		dev_dbg(&adev->dev, "GPIO: _DSD returned %s %d %d %u\n",
			dev_name(&lookup.adev->dev), lookup.index,
			lookup.pin_index, lookup.active_low);
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	} else {
		dev_dbg(&adev->dev, "GPIO: looking up %d in _CRS\n", index);
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		lookup.adev = adev;
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	}

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	ret = acpi_gpio_resource_lookup(&lookup, info);
	return ret ? ERR_PTR(ret) : lookup.desc;
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}
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struct gpio_desc *acpi_find_gpio(struct device *dev,
				 const char *con_id,
				 unsigned int idx,
				 enum gpiod_flags flags,
				 enum gpio_lookup_flags *lookupflags)
{
	struct acpi_device *adev = ACPI_COMPANION(dev);
	struct acpi_gpio_info info;
	struct gpio_desc *desc;
	char propname[32];
	int i;

	/* Try first from _DSD */
	for (i = 0; i < ARRAY_SIZE(gpio_suffixes); i++) {
		if (con_id && strcmp(con_id, "gpios")) {
			snprintf(propname, sizeof(propname), "%s-%s",
				 con_id, gpio_suffixes[i]);
		} else {
			snprintf(propname, sizeof(propname), "%s",
				 gpio_suffixes[i]);
		}

		desc = acpi_get_gpiod_by_index(adev, propname, idx, &info);
		if (!IS_ERR(desc) || (PTR_ERR(desc) == -EPROBE_DEFER))
			break;
	}

	/* Then from plain _CRS GPIOs */
	if (IS_ERR(desc)) {
		if (!acpi_can_fallback_to_crs(adev, con_id))
			return ERR_PTR(-ENOENT);

		desc = acpi_get_gpiod_by_index(adev, NULL, idx, &info);
		if (IS_ERR(desc))
			return desc;

		if ((flags == GPIOD_OUT_LOW || flags == GPIOD_OUT_HIGH) &&
		    info.gpioint) {
			dev_dbg(dev, "refusing GpioInt() entry when doing GPIOD_OUT_* lookup\n");
			return ERR_PTR(-ENOENT);
		}
	}

	if (info.polarity == GPIO_ACTIVE_LOW)
		*lookupflags |= GPIO_ACTIVE_LOW;

	return desc;
}

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/**
 * acpi_node_get_gpiod() - get a GPIO descriptor from ACPI resources
 * @fwnode: pointer to an ACPI firmware node to get the GPIO information from
 * @propname: Property name of the GPIO
 * @index: index of GpioIo/GpioInt resource (starting from %0)
 * @info: info pointer to fill in (optional)
 *
 * If @fwnode is an ACPI device object, call %acpi_get_gpiod_by_index() for it.
 * Otherwise (ie. it is a data-only non-device object), use the property-based
 * GPIO lookup to get to the GPIO resource with the relevant information and use
 * that to obtain the GPIO descriptor to return.
 */
struct gpio_desc *acpi_node_get_gpiod(struct fwnode_handle *fwnode,
				      const char *propname, int index,
				      struct acpi_gpio_info *info)
{
	struct acpi_gpio_lookup lookup;
	struct acpi_device *adev;
	int ret;
650

651 652 653
	adev = to_acpi_device_node(fwnode);
	if (adev)
		return acpi_get_gpiod_by_index(adev, propname, index, info);
654

655 656 657 658 659 660 661 662 663 664 665 666
	if (!is_acpi_data_node(fwnode))
		return ERR_PTR(-ENODEV);

	if (!propname)
		return ERR_PTR(-EINVAL);

	memset(&lookup, 0, sizeof(lookup));
	lookup.index = index;

	ret = acpi_gpio_property_lookup(fwnode, propname, index, &lookup);
	if (ret)
		return ERR_PTR(ret);
667

668 669
	ret = acpi_gpio_resource_lookup(&lookup, info);
	return ret ? ERR_PTR(ret) : lookup.desc;
670
}
671

672 673 674 675 676 677 678 679 680 681 682 683 684 685
/**
 * acpi_dev_gpio_irq_get() - Find GpioInt and translate it to Linux IRQ number
 * @adev: pointer to a ACPI device to get IRQ from
 * @index: index of GpioInt resource (starting from %0)
 *
 * If the device has one or more GpioInt resources, this function can be
 * used to translate from the GPIO offset in the resource to the Linux IRQ
 * number.
 *
 * Return: Linux IRQ number (>%0) on success, negative errno on failure.
 */
int acpi_dev_gpio_irq_get(struct acpi_device *adev, int index)
{
	int idx, i;
686
	unsigned int irq_flags;
687
	int ret = -ENOENT;
688 689 690 691 692 693

	for (i = 0, idx = 0; idx <= index; i++) {
		struct acpi_gpio_info info;
		struct gpio_desc *desc;

		desc = acpi_get_gpiod_by_index(adev, NULL, i, &info);
694 695
		if (IS_ERR(desc)) {
			ret = PTR_ERR(desc);
696
			break;
697
		}
698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714
		if (info.gpioint && idx++ == index) {
			int irq = gpiod_to_irq(desc);

			if (irq < 0)
				return irq;

			irq_flags = acpi_dev_get_irq_type(info.triggering,
							  info.polarity);

			/* Set type if specified and different than the current one */
			if (irq_flags != IRQ_TYPE_NONE &&
			    irq_flags != irq_get_trigger_type(irq))
				irq_set_irq_type(irq, irq_flags);

			return irq;
		}

715
	}
716
	return ret;
717 718 719
}
EXPORT_SYMBOL_GPL(acpi_dev_gpio_irq_get);

720 721 722 723 724 725 726 727 728
static acpi_status
acpi_gpio_adr_space_handler(u32 function, acpi_physical_address address,
			    u32 bits, u64 *value, void *handler_context,
			    void *region_context)
{
	struct acpi_gpio_chip *achip = region_context;
	struct gpio_chip *chip = achip->chip;
	struct acpi_resource_gpio *agpio;
	struct acpi_resource *ares;
729
	int pin_index = (int)address;
730 731
	acpi_status status;
	bool pull_up;
732
	int length;
733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753
	int i;

	status = acpi_buffer_to_resource(achip->conn_info.connection,
					 achip->conn_info.length, &ares);
	if (ACPI_FAILURE(status))
		return status;

	if (WARN_ON(ares->type != ACPI_RESOURCE_TYPE_GPIO)) {
		ACPI_FREE(ares);
		return AE_BAD_PARAMETER;
	}

	agpio = &ares->data.gpio;
	pull_up = agpio->pin_config == ACPI_PIN_CONFIG_PULLUP;

	if (WARN_ON(agpio->io_restriction == ACPI_IO_RESTRICT_INPUT &&
	    function == ACPI_WRITE)) {
		ACPI_FREE(ares);
		return AE_BAD_PARAMETER;
	}

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	length = min(agpio->pin_table_length, (u16)(pin_index + bits));
	for (i = pin_index; i < length; ++i) {
756
		int pin = agpio->pin_table[i];
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		struct acpi_gpio_connection *conn;
		struct gpio_desc *desc;
		bool found;

761
		pin = acpi_gpiochip_pin_to_gpio_offset(chip->gpiodev, pin);
762 763 764 765 766
		if (pin < 0) {
			status = AE_BAD_PARAMETER;
			goto out;
		}

767 768 769 770
		mutex_lock(&achip->conn_lock);

		found = false;
		list_for_each_entry(conn, &achip->conns, node) {
771
			if (conn->pin == pin) {
772
				found = true;
773
				desc = conn->desc;
774 775 776
				break;
			}
		}
777 778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795

		/*
		 * The same GPIO can be shared between operation region and
		 * event but only if the access here is ACPI_READ. In that
		 * case we "borrow" the event GPIO instead.
		 */
		if (!found && agpio->sharable == ACPI_SHARED &&
		     function == ACPI_READ) {
			struct acpi_gpio_event *event;

			list_for_each_entry(event, &achip->events, node) {
				if (event->pin == pin) {
					desc = event->desc;
					found = true;
					break;
				}
			}
		}

796
		if (!found) {
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			desc = gpiochip_request_own_desc(chip, pin,
							 "ACPI:OpRegion");
799
			if (IS_ERR(desc)) {
800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833 834 835
				status = AE_ERROR;
				mutex_unlock(&achip->conn_lock);
				goto out;
			}

			switch (agpio->io_restriction) {
			case ACPI_IO_RESTRICT_INPUT:
				gpiod_direction_input(desc);
				break;
			case ACPI_IO_RESTRICT_OUTPUT:
				/*
				 * ACPI GPIO resources don't contain an
				 * initial value for the GPIO. Therefore we
				 * deduce that value from the pull field
				 * instead. If the pin is pulled up we
				 * assume default to be high, otherwise
				 * low.
				 */
				gpiod_direction_output(desc, pull_up);
				break;
			default:
				/*
				 * Assume that the BIOS has configured the
				 * direction and pull accordingly.
				 */
				break;
			}

			conn = kzalloc(sizeof(*conn), GFP_KERNEL);
			if (!conn) {
				status = AE_NO_MEMORY;
				gpiochip_free_own_desc(desc);
				mutex_unlock(&achip->conn_lock);
				goto out;
			}

836
			conn->pin = pin;
837 838 839 840 841 842 843
			conn->desc = desc;
			list_add_tail(&conn->node, &achip->conns);
		}

		mutex_unlock(&achip->conn_lock);

		if (function == ACPI_WRITE)
844 845
			gpiod_set_raw_value_cansleep(desc,
						     !!((1 << i) & *value));
846
		else
847
			*value |= (u64)gpiod_get_raw_value_cansleep(desc) << i;
848 849 850 851 852 853 854 855 856 857
	}

out:
	ACPI_FREE(ares);
	return status;
}

static void acpi_gpiochip_request_regions(struct acpi_gpio_chip *achip)
{
	struct gpio_chip *chip = achip->chip;
858
	acpi_handle handle = ACPI_HANDLE(chip->parent);
859 860 861 862 863 864 865 866
	acpi_status status;

	INIT_LIST_HEAD(&achip->conns);
	mutex_init(&achip->conn_lock);
	status = acpi_install_address_space_handler(handle, ACPI_ADR_SPACE_GPIO,
						    acpi_gpio_adr_space_handler,
						    NULL, achip);
	if (ACPI_FAILURE(status))
867 868
		dev_err(chip->parent,
		        "Failed to install GPIO OpRegion handler\n");
869 870 871 872 873
}

static void acpi_gpiochip_free_regions(struct acpi_gpio_chip *achip)
{
	struct gpio_chip *chip = achip->chip;
874
	acpi_handle handle = ACPI_HANDLE(chip->parent);
875 876 877 878 879 880
	struct acpi_gpio_connection *conn, *tmp;
	acpi_status status;

	status = acpi_remove_address_space_handler(handle, ACPI_ADR_SPACE_GPIO,
						   acpi_gpio_adr_space_handler);
	if (ACPI_FAILURE(status)) {
881 882
		dev_err(chip->parent,
			"Failed to remove GPIO OpRegion handler\n");
883 884 885 886 887 888 889 890 891 892
		return;
	}

	list_for_each_entry_safe_reverse(conn, tmp, &achip->conns, node) {
		gpiochip_free_own_desc(conn->desc);
		list_del(&conn->node);
		kfree(conn);
	}
}

893 894 895
static struct gpio_desc *acpi_gpiochip_parse_own_gpio(
	struct acpi_gpio_chip *achip, struct fwnode_handle *fwnode,
	const char **name, unsigned int *lflags, unsigned int *dflags)
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{
	struct gpio_chip *chip = achip->chip;
	struct gpio_desc *desc;
	u32 gpios[2];
	int ret;

902 903 904 905
	*lflags = 0;
	*dflags = 0;
	*name = NULL;

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	ret = fwnode_property_read_u32_array(fwnode, "gpios", gpios,
					     ARRAY_SIZE(gpios));
	if (ret < 0)
		return ERR_PTR(ret);

	ret = acpi_gpiochip_pin_to_gpio_offset(chip->gpiodev, gpios[0]);
	if (ret < 0)
		return ERR_PTR(ret);

	desc = gpiochip_get_desc(chip, ret);
	if (IS_ERR(desc))
		return desc;

	if (gpios[1])
		*lflags |= GPIO_ACTIVE_LOW;

	if (fwnode_property_present(fwnode, "input"))
		*dflags |= GPIOD_IN;
	else if (fwnode_property_present(fwnode, "output-low"))
		*dflags |= GPIOD_OUT_LOW;
	else if (fwnode_property_present(fwnode, "output-high"))
		*dflags |= GPIOD_OUT_HIGH;
	else
		return ERR_PTR(-EINVAL);

	fwnode_property_read_string(fwnode, "line-name", name);

	return desc;
}

static void acpi_gpiochip_scan_gpios(struct acpi_gpio_chip *achip)
{
	struct gpio_chip *chip = achip->chip;
	struct fwnode_handle *fwnode;

	device_for_each_child_node(chip->parent, fwnode) {
		unsigned int lflags, dflags;
		struct gpio_desc *desc;
		const char *name;
		int ret;

		if (!fwnode_property_present(fwnode, "gpio-hog"))
			continue;

		desc = acpi_gpiochip_parse_own_gpio(achip, fwnode, &name,
						    &lflags, &dflags);
		if (IS_ERR(desc))
			continue;

		ret = gpiod_hog(desc, name, lflags, dflags);
		if (ret) {
			dev_err(chip->parent, "Failed to hog GPIO\n");
958
			fwnode_handle_put(fwnode);
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			return;
		}
	}
}

964 965
void acpi_gpiochip_add(struct gpio_chip *chip)
{
966 967 968 969
	struct acpi_gpio_chip *acpi_gpio;
	acpi_handle handle;
	acpi_status status;

970
	if (!chip || !chip->parent)
971 972
		return;

973
	handle = ACPI_HANDLE(chip->parent);
974 975 976 977 978
	if (!handle)
		return;

	acpi_gpio = kzalloc(sizeof(*acpi_gpio), GFP_KERNEL);
	if (!acpi_gpio) {
979
		dev_err(chip->parent,
980 981 982 983 984
			"Failed to allocate memory for ACPI GPIO chip\n");
		return;
	}

	acpi_gpio->chip = chip;
985
	INIT_LIST_HEAD(&acpi_gpio->events);
986 987 988

	status = acpi_attach_data(handle, acpi_gpio_chip_dh, acpi_gpio);
	if (ACPI_FAILURE(status)) {
989
		dev_err(chip->parent, "Failed to attach ACPI GPIO chip\n");
990 991 992 993
		kfree(acpi_gpio);
		return;
	}

994 995 996
	if (!chip->names)
		devprop_gpiochip_set_names(chip);

997
	acpi_gpiochip_request_regions(acpi_gpio);
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Mika Westerberg 已提交
998
	acpi_gpiochip_scan_gpios(acpi_gpio);
999
	acpi_walk_dep_device_list(handle);
1000 1001 1002 1003
}

void acpi_gpiochip_remove(struct gpio_chip *chip)
{
1004 1005 1006 1007
	struct acpi_gpio_chip *acpi_gpio;
	acpi_handle handle;
	acpi_status status;

1008
	if (!chip || !chip->parent)
1009 1010
		return;

1011
	handle = ACPI_HANDLE(chip->parent);
1012 1013 1014 1015 1016
	if (!handle)
		return;

	status = acpi_get_data(handle, acpi_gpio_chip_dh, (void **)&acpi_gpio);
	if (ACPI_FAILURE(status)) {
1017
		dev_warn(chip->parent, "Failed to retrieve ACPI GPIO chip\n");
1018 1019 1020
		return;
	}

1021
	acpi_gpiochip_free_regions(acpi_gpio);
1022 1023 1024

	acpi_detach_data(handle, acpi_gpio_chip_dh);
	kfree(acpi_gpio);
1025
}
1026

1027
static int acpi_gpio_package_count(const union acpi_object *obj)
1028 1029 1030 1031 1032 1033
{
	const union acpi_object *element = obj->package.elements;
	const union acpi_object *end = element + obj->package.count;
	unsigned int count = 0;

	while (element < end) {
1034 1035 1036 1037 1038 1039
		switch (element->type) {
		case ACPI_TYPE_LOCAL_REFERENCE:
			element += 3;
			/* Fallthrough */
		case ACPI_TYPE_INTEGER:
			element++;
1040
			count++;
1041
			break;
1042

1043 1044 1045
		default:
			return -EPROTO;
		}
1046
	}
1047

1048 1049 1050 1051 1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066 1067 1068 1069 1070 1071 1072 1073 1074 1075 1076 1077 1078 1079 1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100
	return count;
}

static int acpi_find_gpio_count(struct acpi_resource *ares, void *data)
{
	unsigned int *count = data;

	if (ares->type == ACPI_RESOURCE_TYPE_GPIO)
		*count += ares->data.gpio.pin_table_length;

	return 1;
}

/**
 * acpi_gpio_count - return the number of GPIOs associated with a
 *		device / function or -ENOENT if no GPIO has been
 *		assigned to the requested function.
 * @dev:	GPIO consumer, can be NULL for system-global GPIOs
 * @con_id:	function within the GPIO consumer
 */
int acpi_gpio_count(struct device *dev, const char *con_id)
{
	struct acpi_device *adev = ACPI_COMPANION(dev);
	const union acpi_object *obj;
	const struct acpi_gpio_mapping *gm;
	int count = -ENOENT;
	int ret;
	char propname[32];
	unsigned int i;

	/* Try first from _DSD */
	for (i = 0; i < ARRAY_SIZE(gpio_suffixes); i++) {
		if (con_id && strcmp(con_id, "gpios"))
			snprintf(propname, sizeof(propname), "%s-%s",
				 con_id, gpio_suffixes[i]);
		else
			snprintf(propname, sizeof(propname), "%s",
				 gpio_suffixes[i]);

		ret = acpi_dev_get_property(adev, propname, ACPI_TYPE_ANY,
					    &obj);
		if (ret == 0) {
			if (obj->type == ACPI_TYPE_LOCAL_REFERENCE)
				count = 1;
			else if (obj->type == ACPI_TYPE_PACKAGE)
				count = acpi_gpio_package_count(obj);
		} else if (adev->driver_gpios) {
			for (gm = adev->driver_gpios; gm->name; gm++)
				if (strcmp(propname, gm->name) == 0) {
					count = gm->size;
					break;
				}
		}
1101
		if (count > 0)
1102 1103 1104 1105 1106 1107 1108 1109 1110 1111 1112 1113 1114 1115 1116
			break;
	}

	/* Then from plain _CRS GPIOs */
	if (count < 0) {
		struct list_head resource_list;
		unsigned int crs_count = 0;

		INIT_LIST_HEAD(&resource_list);
		acpi_dev_get_resources(adev, &resource_list,
				       acpi_find_gpio_count, &crs_count);
		acpi_dev_free_resource_list(&resource_list);
		if (crs_count > 0)
			count = crs_count;
	}
1117
	return count ? count : -ENOENT;
1118
}
1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136 1137 1138 1139 1140 1141 1142 1143 1144 1145 1146 1147 1148 1149

struct acpi_crs_lookup {
	struct list_head node;
	struct acpi_device *adev;
	const char *con_id;
};

static DEFINE_MUTEX(acpi_crs_lookup_lock);
static LIST_HEAD(acpi_crs_lookup_list);

bool acpi_can_fallback_to_crs(struct acpi_device *adev, const char *con_id)
{
	struct acpi_crs_lookup *l, *lookup = NULL;

	/* Never allow fallback if the device has properties */
	if (adev->data.properties || adev->driver_gpios)
		return false;

	mutex_lock(&acpi_crs_lookup_lock);

	list_for_each_entry(l, &acpi_crs_lookup_list, node) {
		if (l->adev == adev) {
			lookup = l;
			break;
		}
	}

	if (!lookup) {
		lookup = kmalloc(sizeof(*lookup), GFP_KERNEL);
		if (lookup) {
			lookup->adev = adev;
1150
			lookup->con_id = kstrdup(con_id, GFP_KERNEL);
1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161
			list_add_tail(&lookup->node, &acpi_crs_lookup_list);
		}
	}

	mutex_unlock(&acpi_crs_lookup_lock);

	return lookup &&
		((!lookup->con_id && !con_id) ||
		 (lookup->con_id && con_id &&
		  strcmp(lookup->con_id, con_id) == 0));
}