evdev.c 27.2 KB
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/*
 * Event char devices, giving access to raw input device events.
 *
 * Copyright (c) 1999-2002 Vojtech Pavlik
 *
 * 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.
 */

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#define pr_fmt(fmt) KBUILD_MODNAME ": " fmt

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#define EVDEV_MINOR_BASE	64
#define EVDEV_MINORS		32
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#define EVDEV_MIN_BUFFER_SIZE	64U
#define EVDEV_BUF_PACKETS	8
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#include <linux/poll.h>
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#include <linux/sched.h>
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#include <linux/slab.h>
#include <linux/module.h>
#include <linux/init.h>
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#include <linux/input/mt.h>
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#include <linux/major.h>
#include <linux/device.h>
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#include <linux/cdev.h>
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#include "input-compat.h"
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struct evdev {
	int open;
	struct input_handle handle;
	wait_queue_head_t wait;
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	struct evdev_client __rcu *grab;
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	struct list_head client_list;
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	spinlock_t client_lock; /* protects client_list */
	struct mutex mutex;
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	struct device dev;
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	struct cdev cdev;
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	bool exist;
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};

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struct evdev_client {
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	unsigned int head;
	unsigned int tail;
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	unsigned int packet_head; /* [future] position of the first element of next packet */
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	spinlock_t buffer_lock; /* protects access to buffer, head and tail */
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	struct fasync_struct *fasync;
	struct evdev *evdev;
	struct list_head node;
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	int clkid;
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	unsigned int bufsize;
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	struct input_event buffer[];
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};

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/* flush queued events of type @type, caller must hold client->buffer_lock */
static void __evdev_flush_queue(struct evdev_client *client, unsigned int type)
{
	unsigned int i, head, num;
	unsigned int mask = client->bufsize - 1;
	bool is_report;
	struct input_event *ev;

	BUG_ON(type == EV_SYN);

	head = client->tail;
	client->packet_head = client->tail;

	/* init to 1 so a leading SYN_REPORT will not be dropped */
	num = 1;

	for (i = client->tail; i != client->head; i = (i + 1) & mask) {
		ev = &client->buffer[i];
		is_report = ev->type == EV_SYN && ev->code == SYN_REPORT;

		if (ev->type == type) {
			/* drop matched entry */
			continue;
		} else if (is_report && !num) {
			/* drop empty SYN_REPORT groups */
			continue;
		} else if (head != i) {
			/* move entry to fill the gap */
			client->buffer[head].time = ev->time;
			client->buffer[head].type = ev->type;
			client->buffer[head].code = ev->code;
			client->buffer[head].value = ev->value;
		}

		num++;
		head = (head + 1) & mask;

		if (is_report) {
			num = 0;
			client->packet_head = head;
		}
	}

	client->head = head;
}

/* queue SYN_DROPPED event */
static void evdev_queue_syn_dropped(struct evdev_client *client)
{
	unsigned long flags;
	struct input_event ev;
	ktime_t time;

	time = ktime_get();
	if (client->clkid != CLOCK_MONOTONIC)
		time = ktime_sub(time, ktime_get_monotonic_offset());

	ev.time = ktime_to_timeval(time);
	ev.type = EV_SYN;
	ev.code = SYN_DROPPED;
	ev.value = 0;

	spin_lock_irqsave(&client->buffer_lock, flags);

	client->buffer[client->head++] = ev;
	client->head &= client->bufsize - 1;

	if (unlikely(client->head == client->tail)) {
		/* drop queue but keep our SYN_DROPPED event */
		client->tail = (client->head - 1) & (client->bufsize - 1);
		client->packet_head = client->tail;
	}

	spin_unlock_irqrestore(&client->buffer_lock, flags);
}

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static void __pass_event(struct evdev_client *client,
			 const struct input_event *event)
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{
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	client->buffer[client->head++] = *event;
	client->head &= client->bufsize - 1;

	if (unlikely(client->head == client->tail)) {
		/*
		 * This effectively "drops" all unconsumed events, leaving
		 * EV_SYN/SYN_DROPPED plus the newest event in the queue.
		 */
		client->tail = (client->head - 2) & (client->bufsize - 1);

		client->buffer[client->tail].time = event->time;
		client->buffer[client->tail].type = EV_SYN;
		client->buffer[client->tail].code = SYN_DROPPED;
		client->buffer[client->tail].value = 0;

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		client->packet_head = client->tail;
	}
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	if (event->type == EV_SYN && event->code == SYN_REPORT) {
		client->packet_head = client->head;
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		kill_fasync(&client->fasync, SIGIO, POLL_IN);
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	}
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}

static void evdev_pass_values(struct evdev_client *client,
			const struct input_value *vals, unsigned int count,
			ktime_t mono, ktime_t real)
{
	struct evdev *evdev = client->evdev;
	const struct input_value *v;
	struct input_event event;
	bool wakeup = false;

	event.time = ktime_to_timeval(client->clkid == CLOCK_MONOTONIC ?
				      mono : real);

	/* Interrupts are disabled, just acquire the lock. */
	spin_lock(&client->buffer_lock);

	for (v = vals; v != vals + count; v++) {
		event.type = v->type;
		event.code = v->code;
		event.value = v->value;
		__pass_event(client, &event);
		if (v->type == EV_SYN && v->code == SYN_REPORT)
			wakeup = true;
	}
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	spin_unlock(&client->buffer_lock);
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	if (wakeup)
		wake_up_interruptible(&evdev->wait);
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}

/*
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 * Pass incoming events to all connected clients.
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 */
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static void evdev_events(struct input_handle *handle,
			 const struct input_value *vals, unsigned int count)
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{
	struct evdev *evdev = handle->private;
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	struct evdev_client *client;
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	ktime_t time_mono, time_real;

	time_mono = ktime_get();
	time_real = ktime_sub(time_mono, ktime_get_monotonic_offset());
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	rcu_read_lock();

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	client = rcu_dereference(evdev->grab);
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	if (client)
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		evdev_pass_values(client, vals, count, time_mono, time_real);
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	else
		list_for_each_entry_rcu(client, &evdev->client_list, node)
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			evdev_pass_values(client, vals, count,
					  time_mono, time_real);
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	rcu_read_unlock();
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}
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/*
 * Pass incoming event to all connected clients.
 */
static void evdev_event(struct input_handle *handle,
			unsigned int type, unsigned int code, int value)
{
	struct input_value vals[] = { { type, code, value } };

	evdev_events(handle, vals, 1);
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}

static int evdev_fasync(int fd, struct file *file, int on)
{
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	struct evdev_client *client = file->private_data;
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	return fasync_helper(fd, file, on, &client->fasync);
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}

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static int evdev_flush(struct file *file, fl_owner_t id)
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{
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	struct evdev_client *client = file->private_data;
	struct evdev *evdev = client->evdev;
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	int retval;

	retval = mutex_lock_interruptible(&evdev->mutex);
	if (retval)
		return retval;
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	if (!evdev->exist)
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		retval = -ENODEV;
	else
		retval = input_flush_device(&evdev->handle, file);
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	mutex_unlock(&evdev->mutex);
	return retval;
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}

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static void evdev_free(struct device *dev)
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{
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	struct evdev *evdev = container_of(dev, struct evdev, dev);

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	input_put_device(evdev->handle.dev);
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	kfree(evdev);
}

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/*
 * Grabs an event device (along with underlying input device).
 * This function is called with evdev->mutex taken.
 */
static int evdev_grab(struct evdev *evdev, struct evdev_client *client)
{
	int error;

	if (evdev->grab)
		return -EBUSY;

	error = input_grab_device(&evdev->handle);
	if (error)
		return error;

	rcu_assign_pointer(evdev->grab, client);

	return 0;
}

static int evdev_ungrab(struct evdev *evdev, struct evdev_client *client)
{
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	struct evdev_client *grab = rcu_dereference_protected(evdev->grab,
					lockdep_is_held(&evdev->mutex));

	if (grab != client)
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		return  -EINVAL;

	rcu_assign_pointer(evdev->grab, NULL);
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	synchronize_rcu();
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	input_release_device(&evdev->handle);

	return 0;
}

static void evdev_attach_client(struct evdev *evdev,
				struct evdev_client *client)
{
	spin_lock(&evdev->client_lock);
	list_add_tail_rcu(&client->node, &evdev->client_list);
	spin_unlock(&evdev->client_lock);
}

static void evdev_detach_client(struct evdev *evdev,
				struct evdev_client *client)
{
	spin_lock(&evdev->client_lock);
	list_del_rcu(&client->node);
	spin_unlock(&evdev->client_lock);
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	synchronize_rcu();
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}

static int evdev_open_device(struct evdev *evdev)
{
	int retval;

	retval = mutex_lock_interruptible(&evdev->mutex);
	if (retval)
		return retval;

	if (!evdev->exist)
		retval = -ENODEV;
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	else if (!evdev->open++) {
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		retval = input_open_device(&evdev->handle);
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		if (retval)
			evdev->open--;
	}
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	mutex_unlock(&evdev->mutex);
	return retval;
}

static void evdev_close_device(struct evdev *evdev)
{
	mutex_lock(&evdev->mutex);

	if (evdev->exist && !--evdev->open)
		input_close_device(&evdev->handle);

	mutex_unlock(&evdev->mutex);
}

/*
 * Wake up users waiting for IO so they can disconnect from
 * dead device.
 */
static void evdev_hangup(struct evdev *evdev)
{
	struct evdev_client *client;

	spin_lock(&evdev->client_lock);
	list_for_each_entry(client, &evdev->client_list, node)
		kill_fasync(&client->fasync, SIGIO, POLL_HUP);
	spin_unlock(&evdev->client_lock);

	wake_up_interruptible(&evdev->wait);
}

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static int evdev_release(struct inode *inode, struct file *file)
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{
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	struct evdev_client *client = file->private_data;
	struct evdev *evdev = client->evdev;
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	mutex_lock(&evdev->mutex);
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	evdev_ungrab(evdev, client);
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	mutex_unlock(&evdev->mutex);
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	evdev_detach_client(evdev, client);
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	kfree(client);
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	evdev_close_device(evdev);
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	return 0;
}

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static unsigned int evdev_compute_buffer_size(struct input_dev *dev)
{
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	unsigned int n_events =
		max(dev->hint_events_per_packet * EVDEV_BUF_PACKETS,
		    EVDEV_MIN_BUFFER_SIZE);

	return roundup_pow_of_two(n_events);
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}

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static int evdev_open(struct inode *inode, struct file *file)
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{
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	struct evdev *evdev = container_of(inode->i_cdev, struct evdev, cdev);
	unsigned int bufsize = evdev_compute_buffer_size(evdev->handle.dev);
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	struct evdev_client *client;
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	int error;
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	client = kzalloc(sizeof(struct evdev_client) +
				bufsize * sizeof(struct input_event),
			 GFP_KERNEL);
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	if (!client)
		return -ENOMEM;
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	client->bufsize = bufsize;
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	spin_lock_init(&client->buffer_lock);
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	client->evdev = evdev;
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	evdev_attach_client(evdev, client);
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	error = evdev_open_device(evdev);
	if (error)
		goto err_free_client;
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	file->private_data = client;
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	nonseekable_open(inode, file);

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	return 0;
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 err_free_client:
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	evdev_detach_client(evdev, client);
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	kfree(client);
	return error;
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}

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static ssize_t evdev_write(struct file *file, const char __user *buffer,
			   size_t count, loff_t *ppos)
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{
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	struct evdev_client *client = file->private_data;
	struct evdev *evdev = client->evdev;
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	struct input_event event;
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	int retval = 0;
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	if (count != 0 && count < input_event_size())
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		return -EINVAL;

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	retval = mutex_lock_interruptible(&evdev->mutex);
	if (retval)
		return retval;

	if (!evdev->exist) {
		retval = -ENODEV;
		goto out;
	}
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	while (retval + input_event_size() <= count) {

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		if (input_event_from_user(buffer + retval, &event)) {
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			retval = -EFAULT;
			goto out;
		}
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		retval += input_event_size();
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		input_inject_event(&evdev->handle,
				   event.type, event.code, event.value);
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	}
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 out:
	mutex_unlock(&evdev->mutex);
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	return retval;
}

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static int evdev_fetch_next_event(struct evdev_client *client,
				  struct input_event *event)
{
	int have_event;

	spin_lock_irq(&client->buffer_lock);

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	have_event = client->packet_head != client->tail;
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	if (have_event) {
		*event = client->buffer[client->tail++];
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		client->tail &= client->bufsize - 1;
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	}

	spin_unlock_irq(&client->buffer_lock);

	return have_event;
}

static ssize_t evdev_read(struct file *file, char __user *buffer,
			  size_t count, loff_t *ppos)
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{
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	struct evdev_client *client = file->private_data;
	struct evdev *evdev = client->evdev;
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	struct input_event event;
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	size_t read = 0;
	int error;
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	if (count != 0 && count < input_event_size())
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		return -EINVAL;

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	for (;;) {
		if (!evdev->exist)
			return -ENODEV;
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		if (client->packet_head == client->tail &&
		    (file->f_flags & O_NONBLOCK))
			return -EAGAIN;

		/*
		 * count == 0 is special - no IO is done but we check
		 * for error conditions (see above).
		 */
		if (count == 0)
			break;
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		while (read + input_event_size() <= count &&
		       evdev_fetch_next_event(client, &event)) {
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			if (input_event_to_user(buffer + read, &event))
				return -EFAULT;
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			read += input_event_size();
		}
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		if (read)
			break;
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		if (!(file->f_flags & O_NONBLOCK)) {
			error = wait_event_interruptible(evdev->wait,
					client->packet_head != client->tail ||
					!evdev->exist);
			if (error)
				return error;
		}
	}

	return read;
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}

/* No kernel lock - fine */
static unsigned int evdev_poll(struct file *file, poll_table *wait)
{
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	struct evdev_client *client = file->private_data;
	struct evdev *evdev = client->evdev;
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	unsigned int mask;
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	poll_wait(file, &evdev->wait, wait);
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	mask = evdev->exist ? POLLOUT | POLLWRNORM : POLLHUP | POLLERR;
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	if (client->packet_head != client->tail)
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		mask |= POLLIN | POLLRDNORM;

	return mask;
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}

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#ifdef CONFIG_COMPAT

#define BITS_PER_LONG_COMPAT (sizeof(compat_long_t) * 8)
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#define BITS_TO_LONGS_COMPAT(x) ((((x) - 1) / BITS_PER_LONG_COMPAT) + 1)
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#ifdef __BIG_ENDIAN
static int bits_to_user(unsigned long *bits, unsigned int maxbit,
			unsigned int maxlen, void __user *p, int compat)
{
	int len, i;

	if (compat) {
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		len = BITS_TO_LONGS_COMPAT(maxbit) * sizeof(compat_long_t);
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		if (len > maxlen)
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			len = maxlen;

		for (i = 0; i < len / sizeof(compat_long_t); i++)
			if (copy_to_user((compat_long_t __user *) p + i,
					 (compat_long_t *) bits +
						i + 1 - ((i % 2) << 1),
					 sizeof(compat_long_t)))
				return -EFAULT;
	} else {
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		len = BITS_TO_LONGS(maxbit) * sizeof(long);
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		if (len > maxlen)
			len = maxlen;

		if (copy_to_user(p, bits, len))
			return -EFAULT;
	}

	return len;
}
#else
static int bits_to_user(unsigned long *bits, unsigned int maxbit,
			unsigned int maxlen, void __user *p, int compat)
{
	int len = compat ?
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			BITS_TO_LONGS_COMPAT(maxbit) * sizeof(compat_long_t) :
			BITS_TO_LONGS(maxbit) * sizeof(long);
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	if (len > maxlen)
		len = maxlen;

	return copy_to_user(p, bits, len) ? -EFAULT : len;
}
#endif /* __BIG_ENDIAN */

#else

static int bits_to_user(unsigned long *bits, unsigned int maxbit,
			unsigned int maxlen, void __user *p, int compat)
{
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	int len = BITS_TO_LONGS(maxbit) * sizeof(long);
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	if (len > maxlen)
		len = maxlen;

	return copy_to_user(p, bits, len) ? -EFAULT : len;
}

#endif /* CONFIG_COMPAT */

static int str_to_user(const char *str, unsigned int maxlen, void __user *p)
{
	int len;

	if (!str)
		return -ENOENT;

	len = strlen(str) + 1;
	if (len > maxlen)
		len = maxlen;

	return copy_to_user(p, str, len) ? -EFAULT : len;
}

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#define OLD_KEY_MAX	0x1ff
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static int handle_eviocgbit(struct input_dev *dev,
			    unsigned int type, unsigned int size,
			    void __user *p, int compat_mode)
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{
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	static unsigned long keymax_warn_time;
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	unsigned long *bits;
	int len;

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	switch (type) {
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	case      0: bits = dev->evbit;  len = EV_MAX;  break;
	case EV_KEY: bits = dev->keybit; len = KEY_MAX; break;
	case EV_REL: bits = dev->relbit; len = REL_MAX; break;
	case EV_ABS: bits = dev->absbit; len = ABS_MAX; break;
	case EV_MSC: bits = dev->mscbit; len = MSC_MAX; break;
	case EV_LED: bits = dev->ledbit; len = LED_MAX; break;
	case EV_SND: bits = dev->sndbit; len = SND_MAX; break;
	case EV_FF:  bits = dev->ffbit;  len = FF_MAX;  break;
	case EV_SW:  bits = dev->swbit;  len = SW_MAX;  break;
	default: return -EINVAL;
	}
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	/*
	 * Work around bugs in userspace programs that like to do
	 * EVIOCGBIT(EV_KEY, KEY_MAX) and not realize that 'len'
	 * should be in bytes, not in bits.
	 */
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	if (type == EV_KEY && size == OLD_KEY_MAX) {
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		len = OLD_KEY_MAX;
		if (printk_timed_ratelimit(&keymax_warn_time, 10 * 1000))
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			pr_warning("(EVIOCGBIT): Suspicious buffer size %u, "
				   "limiting output to %zu bytes. See "
				   "http://userweb.kernel.org/~dtor/eviocgbit-bug.html\n",
				   OLD_KEY_MAX,
				   BITS_TO_LONGS(OLD_KEY_MAX) * sizeof(long));
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	}

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	return bits_to_user(bits, len, size, p, compat_mode);
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}
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#undef OLD_KEY_MAX
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static int evdev_handle_get_keycode(struct input_dev *dev, void __user *p)
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{
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	struct input_keymap_entry ke = {
		.len	= sizeof(unsigned int),
		.flags	= 0,
	};
	int __user *ip = (int __user *)p;
665 666
	int error;

667 668 669
	/* legacy case */
	if (copy_from_user(ke.scancode, p, sizeof(unsigned int)))
		return -EFAULT;
670

671 672 673
	error = input_get_keycode(dev, &ke);
	if (error)
		return error;
674

675 676
	if (put_user(ke.keycode, ip + 1))
		return -EFAULT;
677

678 679
	return 0;
}
680

681 682 683 684
static int evdev_handle_get_keycode_v2(struct input_dev *dev, void __user *p)
{
	struct input_keymap_entry ke;
	int error;
685

686 687
	if (copy_from_user(&ke, p, sizeof(ke)))
		return -EFAULT;
688

689 690 691
	error = input_get_keycode(dev, &ke);
	if (error)
		return error;
692

693 694
	if (copy_to_user(p, &ke, sizeof(ke)))
		return -EFAULT;
695 696 697 698

	return 0;
}

699
static int evdev_handle_set_keycode(struct input_dev *dev, void __user *p)
700
{
701 702 703 704 705
	struct input_keymap_entry ke = {
		.len	= sizeof(unsigned int),
		.flags	= 0,
	};
	int __user *ip = (int __user *)p;
706

707 708
	if (copy_from_user(ke.scancode, p, sizeof(unsigned int)))
		return -EFAULT;
709

710 711
	if (get_user(ke.keycode, ip + 1))
		return -EFAULT;
712

713 714
	return input_set_keycode(dev, &ke);
}
715

716 717 718
static int evdev_handle_set_keycode_v2(struct input_dev *dev, void __user *p)
{
	struct input_keymap_entry ke;
719

720 721
	if (copy_from_user(&ke, p, sizeof(ke)))
		return -EFAULT;
722

723 724
	if (ke.len > sizeof(ke.scancode))
		return -EINVAL;
725 726 727 728

	return input_set_keycode(dev, &ke);
}

729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752 753 754 755 756 757 758 759 760 761 762 763 764 765 766 767 768 769 770 771 772 773
/*
 * If we transfer state to the user, we should flush all pending events
 * of the same type from the client's queue. Otherwise, they might end up
 * with duplicate events, which can screw up client's state tracking.
 * If bits_to_user fails after flushing the queue, we queue a SYN_DROPPED
 * event so user-space will notice missing events.
 *
 * LOCKING:
 * We need to take event_lock before buffer_lock to avoid dead-locks. But we
 * need the even_lock only to guarantee consistent state. We can safely release
 * it while flushing the queue. This allows input-core to handle filters while
 * we flush the queue.
 */
static int evdev_handle_get_val(struct evdev_client *client,
				struct input_dev *dev, unsigned int type,
				unsigned long *bits, unsigned int max,
				unsigned int size, void __user *p, int compat)
{
	int ret;
	unsigned long *mem;

	mem = kmalloc(sizeof(unsigned long) * max, GFP_KERNEL);
	if (!mem)
		return -ENOMEM;

	spin_lock_irq(&dev->event_lock);
	spin_lock(&client->buffer_lock);

	memcpy(mem, bits, sizeof(unsigned long) * max);

	spin_unlock(&dev->event_lock);

	__evdev_flush_queue(client, type);

	spin_unlock_irq(&client->buffer_lock);

	ret = bits_to_user(mem, max, size, p, compat);
	if (ret < 0)
		evdev_queue_syn_dropped(client);

	kfree(mem);

	return ret;
}

774 775 776 777
static int evdev_handle_mt_request(struct input_dev *dev,
				   unsigned int size,
				   int __user *ip)
{
H
Henrik Rydberg 已提交
778
	const struct input_mt *mt = dev->mt;
779 780 781 782 783 784
	unsigned int code;
	int max_slots;
	int i;

	if (get_user(code, &ip[0]))
		return -EFAULT;
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785
	if (!mt || !input_is_mt_value(code))
786 787 788
		return -EINVAL;

	max_slots = (size - sizeof(__u32)) / sizeof(__s32);
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789 790 791
	for (i = 0; i < mt->num_slots && i < max_slots; i++) {
		int value = input_mt_get_value(&mt->slots[i], code);
		if (put_user(value, &ip[1 + i]))
792
			return -EFAULT;
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Henrik Rydberg 已提交
793
	}
794 795 796 797

	return 0;
}

798 799
static long evdev_do_ioctl(struct file *file, unsigned int cmd,
			   void __user *p, int compat_mode)
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{
801 802
	struct evdev_client *client = file->private_data;
	struct evdev *evdev = client->evdev;
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	struct input_dev *dev = evdev->handle.dev;
	struct input_absinfo abs;
805
	struct ff_effect effect;
806
	int __user *ip = (int __user *)p;
807
	unsigned int i, t, u, v;
808
	unsigned int size;
809
	int error;
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810

811
	/* First we check for fixed-length commands */
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812 813
	switch (cmd) {

814 815
	case EVIOCGVERSION:
		return put_user(EV_VERSION, ip);
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817 818 819 820
	case EVIOCGID:
		if (copy_to_user(p, &dev->id, sizeof(struct input_id)))
			return -EFAULT;
		return 0;
821

822 823 824 825 826 827 828 829
	case EVIOCGREP:
		if (!test_bit(EV_REP, dev->evbit))
			return -ENOSYS;
		if (put_user(dev->rep[REP_DELAY], ip))
			return -EFAULT;
		if (put_user(dev->rep[REP_PERIOD], ip + 1))
			return -EFAULT;
		return 0;
830

831 832 833 834 835 836 837
	case EVIOCSREP:
		if (!test_bit(EV_REP, dev->evbit))
			return -ENOSYS;
		if (get_user(u, ip))
			return -EFAULT;
		if (get_user(v, ip + 1))
			return -EFAULT;
838

839 840
		input_inject_event(&evdev->handle, EV_REP, REP_DELAY, u);
		input_inject_event(&evdev->handle, EV_REP, REP_PERIOD, v);
841

842
		return 0;
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843

844 845
	case EVIOCRMFF:
		return input_ff_erase(dev, (int)(unsigned long) p, file);
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847 848 849 850 851 852 853 854 855 856 857 858
	case EVIOCGEFFECTS:
		i = test_bit(EV_FF, dev->evbit) ?
				dev->ff->max_effects : 0;
		if (put_user(i, ip))
			return -EFAULT;
		return 0;

	case EVIOCGRAB:
		if (p)
			return evdev_grab(evdev, client);
		else
			return evdev_ungrab(evdev, client);
859

860 861 862 863 864 865 866 867
	case EVIOCSCLOCKID:
		if (copy_from_user(&i, p, sizeof(unsigned int)))
			return -EFAULT;
		if (i != CLOCK_MONOTONIC && i != CLOCK_REALTIME)
			return -EINVAL;
		client->clkid = i;
		return 0;

868 869 870 871 872 873 874 875 876 877 878
	case EVIOCGKEYCODE:
		return evdev_handle_get_keycode(dev, p);

	case EVIOCSKEYCODE:
		return evdev_handle_set_keycode(dev, p);

	case EVIOCGKEYCODE_V2:
		return evdev_handle_get_keycode_v2(dev, p);

	case EVIOCSKEYCODE_V2:
		return evdev_handle_set_keycode_v2(dev, p);
879
	}
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881
	size = _IOC_SIZE(cmd);
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882

883 884 885
	/* Now check variable-length commands */
#define EVIOC_MASK_SIZE(nr)	((nr) & ~(_IOC_SIZEMASK << _IOC_SIZESHIFT))
	switch (EVIOC_MASK_SIZE(cmd)) {
886

887 888 889 890
	case EVIOCGPROP(0):
		return bits_to_user(dev->propbit, INPUT_PROP_MAX,
				    size, p, compat_mode);

891 892 893
	case EVIOCGMTSLOTS(0):
		return evdev_handle_mt_request(dev, size, ip);

894
	case EVIOCGKEY(0):
895 896
		return evdev_handle_get_val(client, dev, EV_KEY, dev->key,
					    KEY_MAX, size, p, compat_mode);
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898
	case EVIOCGLED(0):
899 900
		return evdev_handle_get_val(client, dev, EV_LED, dev->led,
					    LED_MAX, size, p, compat_mode);
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901

902
	case EVIOCGSND(0):
903 904
		return evdev_handle_get_val(client, dev, EV_SND, dev->snd,
					    SND_MAX, size, p, compat_mode);
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905

906
	case EVIOCGSW(0):
907 908
		return evdev_handle_get_val(client, dev, EV_SW, dev->sw,
					    SW_MAX, size, p, compat_mode);
909

910 911
	case EVIOCGNAME(0):
		return str_to_user(dev->name, size, p);
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912

913 914
	case EVIOCGPHYS(0):
		return str_to_user(dev->phys, size, p);
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916 917
	case EVIOCGUNIQ(0):
		return str_to_user(dev->uniq, size, p);
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919 920 921
	case EVIOC_MASK_SIZE(EVIOCSFF):
		if (input_ff_effect_from_user(p, size, &effect))
			return -EFAULT;
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922

923
		error = input_ff_upload(dev, &effect, file);
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924

925 926
		if (put_user(effect.id, &(((struct ff_effect __user *)p)->id)))
			return -EFAULT;
927

928 929
		return error;
	}
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931 932 933
	/* Multi-number variable-length handlers */
	if (_IOC_TYPE(cmd) != 'E')
		return -EINVAL;
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934

935
	if (_IOC_DIR(cmd) == _IOC_READ) {
936

937 938 939 940
		if ((_IOC_NR(cmd) & ~EV_MAX) == _IOC_NR(EVIOCGBIT(0, 0)))
			return handle_eviocgbit(dev,
						_IOC_NR(cmd) & EV_MAX, size,
						p, compat_mode);
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942
		if ((_IOC_NR(cmd) & ~ABS_MAX) == _IOC_NR(EVIOCGABS(0))) {
943

944 945 946
			if (!dev->absinfo)
				return -EINVAL;

947 948
			t = _IOC_NR(cmd) & ABS_MAX;
			abs = dev->absinfo[t];
949

950 951 952
			if (copy_to_user(p, &abs, min_t(size_t,
					size, sizeof(struct input_absinfo))))
				return -EFAULT;
953

954 955 956
			return 0;
		}
	}
957

958
	if (_IOC_DIR(cmd) == _IOC_WRITE) {
959

960
		if ((_IOC_NR(cmd) & ~ABS_MAX) == _IOC_NR(EVIOCSABS(0))) {
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961

962 963 964
			if (!dev->absinfo)
				return -EINVAL;

965
			t = _IOC_NR(cmd) & ABS_MAX;
966

967 968 969
			if (copy_from_user(&abs, p, min_t(size_t,
					size, sizeof(struct input_absinfo))))
				return -EFAULT;
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970

971 972
			if (size < sizeof(struct input_absinfo))
				abs.resolution = 0;
973

974 975 976
			/* We can't change number of reserved MT slots */
			if (t == ABS_MT_SLOT)
				return -EINVAL;
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Henrik Rydberg 已提交
977

978 979 980 981 982 983 984 985
			/*
			 * Take event lock to ensure that we are not
			 * changing device parameters in the middle
			 * of event.
			 */
			spin_lock_irq(&dev->event_lock);
			dev->absinfo[t] = abs;
			spin_unlock_irq(&dev->event_lock);
986

987
			return 0;
988
		}
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989
	}
990

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991 992 993
	return -EINVAL;
}

994 995 996 997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016
static long evdev_ioctl_handler(struct file *file, unsigned int cmd,
				void __user *p, int compat_mode)
{
	struct evdev_client *client = file->private_data;
	struct evdev *evdev = client->evdev;
	int retval;

	retval = mutex_lock_interruptible(&evdev->mutex);
	if (retval)
		return retval;

	if (!evdev->exist) {
		retval = -ENODEV;
		goto out;
	}

	retval = evdev_do_ioctl(file, cmd, p, compat_mode);

 out:
	mutex_unlock(&evdev->mutex);
	return retval;
}

1017 1018 1019 1020
static long evdev_ioctl(struct file *file, unsigned int cmd, unsigned long arg)
{
	return evdev_ioctl_handler(file, cmd, (void __user *)arg, 0);
}
1021

1022
#ifdef CONFIG_COMPAT
1023 1024
static long evdev_ioctl_compat(struct file *file,
				unsigned int cmd, unsigned long arg)
1025
{
1026
	return evdev_ioctl_handler(file, cmd, compat_ptr(arg), 1);
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1027
}
1028
#endif
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1029

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Dmitry Torokhov 已提交
1030
static const struct file_operations evdev_fops = {
1031 1032 1033 1034 1035 1036 1037
	.owner		= THIS_MODULE,
	.read		= evdev_read,
	.write		= evdev_write,
	.poll		= evdev_poll,
	.open		= evdev_open,
	.release	= evdev_release,
	.unlocked_ioctl	= evdev_ioctl,
1038
#ifdef CONFIG_COMPAT
1039
	.compat_ioctl	= evdev_ioctl_compat,
1040
#endif
1041
	.fasync		= evdev_fasync,
1042 1043
	.flush		= evdev_flush,
	.llseek		= no_llseek,
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1044 1045
};

1046 1047 1048 1049 1050 1051 1052 1053
/*
 * Mark device non-existent. This disables writes, ioctls and
 * prevents new users from opening the device. Already posted
 * blocking reads will stay, however new ones will fail.
 */
static void evdev_mark_dead(struct evdev *evdev)
{
	mutex_lock(&evdev->mutex);
1054
	evdev->exist = false;
1055 1056 1057 1058 1059 1060 1061 1062 1063
	mutex_unlock(&evdev->mutex);
}

static void evdev_cleanup(struct evdev *evdev)
{
	struct input_handle *handle = &evdev->handle;

	evdev_mark_dead(evdev);
	evdev_hangup(evdev);
1064 1065

	cdev_del(&evdev->cdev);
1066 1067 1068 1069 1070 1071 1072 1073 1074 1075

	/* evdev is marked dead so no one else accesses evdev->open */
	if (evdev->open) {
		input_flush_device(handle, NULL);
		input_close_device(handle);
	}
}

/*
 * Create new evdev device. Note that input core serializes calls
1076
 * to connect and disconnect.
1077
 */
1078 1079
static int evdev_connect(struct input_handler *handler, struct input_dev *dev,
			 const struct input_device_id *id)
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1080 1081 1082
{
	struct evdev *evdev;
	int minor;
1083
	int dev_no;
1084
	int error;
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1086 1087 1088 1089 1090
	minor = input_get_new_minor(EVDEV_MINOR_BASE, EVDEV_MINORS, true);
	if (minor < 0) {
		error = minor;
		pr_err("failed to reserve new minor: %d\n", error);
		return error;
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1091 1092
	}

1093
	evdev = kzalloc(sizeof(struct evdev), GFP_KERNEL);
1094 1095 1096 1097
	if (!evdev) {
		error = -ENOMEM;
		goto err_free_minor;
	}
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1099
	INIT_LIST_HEAD(&evdev->client_list);
1100 1101
	spin_lock_init(&evdev->client_lock);
	mutex_init(&evdev->mutex);
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	init_waitqueue_head(&evdev->wait);
1103
	evdev->exist = true;
1104 1105 1106 1107 1108 1109

	dev_no = minor;
	/* Normalize device number if it falls into legacy range */
	if (dev_no < EVDEV_MINOR_BASE + EVDEV_MINORS)
		dev_no -= EVDEV_MINOR_BASE;
	dev_set_name(&evdev->dev, "event%d", dev_no);
1110

1111
	evdev->handle.dev = input_get_device(dev);
1112
	evdev->handle.name = dev_name(&evdev->dev);
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	evdev->handle.handler = handler;
	evdev->handle.private = evdev;

1116
	evdev->dev.devt = MKDEV(INPUT_MAJOR, minor);
1117 1118 1119 1120
	evdev->dev.class = &input_class;
	evdev->dev.parent = &dev->dev;
	evdev->dev.release = evdev_free;
	device_initialize(&evdev->dev);
1121

1122
	error = input_register_handle(&evdev->handle);
1123
	if (error)
1124
		goto err_free_evdev;
1125

1126
	cdev_init(&evdev->cdev, &evdev_fops);
1127
	evdev->cdev.kobj.parent = &evdev->dev.kobj;
1128
	error = cdev_add(&evdev->cdev, evdev->dev.devt, 1);
1129 1130 1131 1132
	if (error)
		goto err_unregister_handle;

	error = device_add(&evdev->dev);
1133
	if (error)
1134
		goto err_cleanup_evdev;
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1135

1136
	return 0;
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1137

1138 1139 1140 1141
 err_cleanup_evdev:
	evdev_cleanup(evdev);
 err_unregister_handle:
	input_unregister_handle(&evdev->handle);
1142
 err_free_evdev:
1143
	put_device(&evdev->dev);
1144 1145
 err_free_minor:
	input_free_minor(minor);
1146
	return error;
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}

static void evdev_disconnect(struct input_handle *handle)
{
	struct evdev *evdev = handle->private;

1153
	device_del(&evdev->dev);
1154
	evdev_cleanup(evdev);
1155
	input_free_minor(MINOR(evdev->dev.devt));
1156
	input_unregister_handle(handle);
1157
	put_device(&evdev->dev);
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}

D
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static const struct input_device_id evdev_ids[] = {
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	{ .driver_info = 1 },	/* Matches all devices */
	{ },			/* Terminating zero entry */
};

MODULE_DEVICE_TABLE(input, evdev_ids);

static struct input_handler evdev_handler = {
1168
	.event		= evdev_event,
1169
	.events		= evdev_events,
1170 1171
	.connect	= evdev_connect,
	.disconnect	= evdev_disconnect,
1172
	.legacy_minors	= true,
1173 1174 1175
	.minor		= EVDEV_MINOR_BASE,
	.name		= "evdev",
	.id_table	= evdev_ids,
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};

static int __init evdev_init(void)
{
1180
	return input_register_handler(&evdev_handler);
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}

static void __exit evdev_exit(void)
{
	input_unregister_handler(&evdev_handler);
}

module_init(evdev_init);
module_exit(evdev_exit);

MODULE_AUTHOR("Vojtech Pavlik <vojtech@ucw.cz>");
MODULE_DESCRIPTION("Input driver event char devices");
MODULE_LICENSE("GPL");