hid-wiimote-core.c 33.1 KB
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/*
 * HID driver for Nintendo Wiimote devices
 * Copyright (c) 2011 David Herrmann
 */

/*
 * This program is free software; you can redistribute it and/or modify it
 * under the terms of the GNU General Public License as published by the Free
 * Software Foundation; either version 2 of the License, or (at your option)
 * any later version.
 */

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#include <linux/completion.h>
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#include <linux/device.h>
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#include <linux/hid.h>
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#include <linux/input.h>
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#include <linux/leds.h>
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#include <linux/module.h>
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#include <linux/mutex.h>
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#include <linux/power_supply.h>
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#include <linux/spinlock.h>
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#include "hid-ids.h"
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#include "hid-wiimote.h"
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enum wiiproto_keys {
	WIIPROTO_KEY_LEFT,
	WIIPROTO_KEY_RIGHT,
	WIIPROTO_KEY_UP,
	WIIPROTO_KEY_DOWN,
	WIIPROTO_KEY_PLUS,
	WIIPROTO_KEY_MINUS,
	WIIPROTO_KEY_ONE,
	WIIPROTO_KEY_TWO,
	WIIPROTO_KEY_A,
	WIIPROTO_KEY_B,
	WIIPROTO_KEY_HOME,
	WIIPROTO_KEY_COUNT
};

static __u16 wiiproto_keymap[] = {
	KEY_LEFT,	/* WIIPROTO_KEY_LEFT */
	KEY_RIGHT,	/* WIIPROTO_KEY_RIGHT */
	KEY_UP,		/* WIIPROTO_KEY_UP */
	KEY_DOWN,	/* WIIPROTO_KEY_DOWN */
	KEY_NEXT,	/* WIIPROTO_KEY_PLUS */
	KEY_PREVIOUS,	/* WIIPROTO_KEY_MINUS */
	BTN_1,		/* WIIPROTO_KEY_ONE */
	BTN_2,		/* WIIPROTO_KEY_TWO */
	BTN_A,		/* WIIPROTO_KEY_A */
	BTN_B,		/* WIIPROTO_KEY_B */
	BTN_MODE,	/* WIIPROTO_KEY_HOME */
};

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static enum power_supply_property wiimote_battery_props[] = {
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	POWER_SUPPLY_PROP_CAPACITY,
	POWER_SUPPLY_PROP_SCOPE,
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};

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static ssize_t wiimote_hid_send(struct hid_device *hdev, __u8 *buffer,
								size_t count)
{
	__u8 *buf;
	ssize_t ret;

	if (!hdev->hid_output_raw_report)
		return -ENODEV;

	buf = kmemdup(buffer, count, GFP_KERNEL);
	if (!buf)
		return -ENOMEM;

	ret = hdev->hid_output_raw_report(hdev, buf, count, HID_OUTPUT_REPORT);

	kfree(buf);
	return ret;
}

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static void wiimote_worker(struct work_struct *work)
{
	struct wiimote_data *wdata = container_of(work, struct wiimote_data,
									worker);
	unsigned long flags;

	spin_lock_irqsave(&wdata->qlock, flags);

	while (wdata->head != wdata->tail) {
		spin_unlock_irqrestore(&wdata->qlock, flags);
		wiimote_hid_send(wdata->hdev, wdata->outq[wdata->tail].data,
						wdata->outq[wdata->tail].size);
		spin_lock_irqsave(&wdata->qlock, flags);

		wdata->tail = (wdata->tail + 1) % WIIMOTE_BUFSIZE;
	}

	spin_unlock_irqrestore(&wdata->qlock, flags);
}

static void wiimote_queue(struct wiimote_data *wdata, const __u8 *buffer,
								size_t count)
{
	unsigned long flags;
	__u8 newhead;

	if (count > HID_MAX_BUFFER_SIZE) {
		hid_warn(wdata->hdev, "Sending too large output report\n");
		return;
	}

	/*
	 * Copy new request into our output queue and check whether the
	 * queue is full. If it is full, discard this request.
	 * If it is empty we need to start a new worker that will
	 * send out the buffer to the hid device.
	 * If the queue is not empty, then there must be a worker
	 * that is currently sending out our buffer and this worker
	 * will reschedule itself until the queue is empty.
	 */

	spin_lock_irqsave(&wdata->qlock, flags);

	memcpy(wdata->outq[wdata->head].data, buffer, count);
	wdata->outq[wdata->head].size = count;
	newhead = (wdata->head + 1) % WIIMOTE_BUFSIZE;

	if (wdata->head == wdata->tail) {
		wdata->head = newhead;
		schedule_work(&wdata->worker);
	} else if (newhead != wdata->tail) {
		wdata->head = newhead;
	} else {
		hid_warn(wdata->hdev, "Output queue is full");
	}

	spin_unlock_irqrestore(&wdata->qlock, flags);
}

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/*
 * This sets the rumble bit on the given output report if rumble is
 * currently enabled.
 * \cmd1 must point to the second byte in the output report => &cmd[1]
 * This must be called on nearly every output report before passing it
 * into the output queue!
 */
static inline void wiiproto_keep_rumble(struct wiimote_data *wdata, __u8 *cmd1)
{
	if (wdata->state.flags & WIIPROTO_FLAG_RUMBLE)
		*cmd1 |= 0x01;
}

static void wiiproto_req_rumble(struct wiimote_data *wdata, __u8 rumble)
{
	__u8 cmd[2];

	rumble = !!rumble;
	if (rumble == !!(wdata->state.flags & WIIPROTO_FLAG_RUMBLE))
		return;

	if (rumble)
		wdata->state.flags |= WIIPROTO_FLAG_RUMBLE;
	else
		wdata->state.flags &= ~WIIPROTO_FLAG_RUMBLE;

	cmd[0] = WIIPROTO_REQ_RUMBLE;
	cmd[1] = 0;

	wiiproto_keep_rumble(wdata, &cmd[1]);
	wiimote_queue(wdata, cmd, sizeof(cmd));
}

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static void wiiproto_req_leds(struct wiimote_data *wdata, int leds)
{
	__u8 cmd[2];

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	leds &= WIIPROTO_FLAGS_LEDS;
	if ((wdata->state.flags & WIIPROTO_FLAGS_LEDS) == leds)
		return;
	wdata->state.flags = (wdata->state.flags & ~WIIPROTO_FLAGS_LEDS) | leds;

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	cmd[0] = WIIPROTO_REQ_LED;
	cmd[1] = 0;

	if (leds & WIIPROTO_FLAG_LED1)
		cmd[1] |= 0x10;
	if (leds & WIIPROTO_FLAG_LED2)
		cmd[1] |= 0x20;
	if (leds & WIIPROTO_FLAG_LED3)
		cmd[1] |= 0x40;
	if (leds & WIIPROTO_FLAG_LED4)
		cmd[1] |= 0x80;

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	wiiproto_keep_rumble(wdata, &cmd[1]);
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	wiimote_queue(wdata, cmd, sizeof(cmd));
}

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/*
 * Check what peripherals of the wiimote are currently
 * active and select a proper DRM that supports all of
 * the requested data inputs.
 */
static __u8 select_drm(struct wiimote_data *wdata)
{
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	__u8 ir = wdata->state.flags & WIIPROTO_FLAGS_IR;
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	bool ext = wiiext_active(wdata);
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	if (ir == WIIPROTO_FLAG_IR_BASIC) {
		if (wdata->state.flags & WIIPROTO_FLAG_ACCEL)
			return WIIPROTO_REQ_DRM_KAIE;
		else
			return WIIPROTO_REQ_DRM_KIE;
	} else if (ir == WIIPROTO_FLAG_IR_EXT) {
		return WIIPROTO_REQ_DRM_KAI;
	} else if (ir == WIIPROTO_FLAG_IR_FULL) {
		return WIIPROTO_REQ_DRM_SKAI1;
	} else {
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		if (wdata->state.flags & WIIPROTO_FLAG_ACCEL) {
			if (ext)
				return WIIPROTO_REQ_DRM_KAE;
			else
				return WIIPROTO_REQ_DRM_KA;
		} else {
			if (ext)
				return WIIPROTO_REQ_DRM_KE;
			else
				return WIIPROTO_REQ_DRM_K;
		}
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	}
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}

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void wiiproto_req_drm(struct wiimote_data *wdata, __u8 drm)
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{
	__u8 cmd[3];

	if (drm == WIIPROTO_REQ_NULL)
		drm = select_drm(wdata);

	cmd[0] = WIIPROTO_REQ_DRM;
	cmd[1] = 0;
	cmd[2] = drm;

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	wdata->state.drm = drm;
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	wiiproto_keep_rumble(wdata, &cmd[1]);
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	wiimote_queue(wdata, cmd, sizeof(cmd));
}

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static void wiiproto_req_status(struct wiimote_data *wdata)
{
	__u8 cmd[2];

	cmd[0] = WIIPROTO_REQ_SREQ;
	cmd[1] = 0;

	wiiproto_keep_rumble(wdata, &cmd[1]);
	wiimote_queue(wdata, cmd, sizeof(cmd));
}

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static void wiiproto_req_accel(struct wiimote_data *wdata, __u8 accel)
{
	accel = !!accel;
	if (accel == !!(wdata->state.flags & WIIPROTO_FLAG_ACCEL))
		return;

	if (accel)
		wdata->state.flags |= WIIPROTO_FLAG_ACCEL;
	else
		wdata->state.flags &= ~WIIPROTO_FLAG_ACCEL;

	wiiproto_req_drm(wdata, WIIPROTO_REQ_NULL);
}

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static void wiiproto_req_ir1(struct wiimote_data *wdata, __u8 flags)
{
	__u8 cmd[2];

	cmd[0] = WIIPROTO_REQ_IR1;
	cmd[1] = flags;

	wiiproto_keep_rumble(wdata, &cmd[1]);
	wiimote_queue(wdata, cmd, sizeof(cmd));
}

static void wiiproto_req_ir2(struct wiimote_data *wdata, __u8 flags)
{
	__u8 cmd[2];

	cmd[0] = WIIPROTO_REQ_IR2;
	cmd[1] = flags;

	wiiproto_keep_rumble(wdata, &cmd[1]);
	wiimote_queue(wdata, cmd, sizeof(cmd));
}

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#define wiiproto_req_wreg(wdata, os, buf, sz) \
			wiiproto_req_wmem((wdata), false, (os), (buf), (sz))

#define wiiproto_req_weeprom(wdata, os, buf, sz) \
			wiiproto_req_wmem((wdata), true, (os), (buf), (sz))

static void wiiproto_req_wmem(struct wiimote_data *wdata, bool eeprom,
				__u32 offset, const __u8 *buf, __u8 size)
{
	__u8 cmd[22];

	if (size > 16 || size == 0) {
		hid_warn(wdata->hdev, "Invalid length %d wmem request\n", size);
		return;
	}

	memset(cmd, 0, sizeof(cmd));
	cmd[0] = WIIPROTO_REQ_WMEM;
	cmd[2] = (offset >> 16) & 0xff;
	cmd[3] = (offset >> 8) & 0xff;
	cmd[4] = offset & 0xff;
	cmd[5] = size;
	memcpy(&cmd[6], buf, size);

	if (!eeprom)
		cmd[1] |= 0x04;

	wiiproto_keep_rumble(wdata, &cmd[1]);
	wiimote_queue(wdata, cmd, sizeof(cmd));
}

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void wiiproto_req_rmem(struct wiimote_data *wdata, bool eeprom, __u32 offset,
								__u16 size)
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{
	__u8 cmd[7];

	if (size == 0) {
		hid_warn(wdata->hdev, "Invalid length %d rmem request\n", size);
		return;
	}

	cmd[0] = WIIPROTO_REQ_RMEM;
	cmd[1] = 0;
	cmd[2] = (offset >> 16) & 0xff;
	cmd[3] = (offset >> 8) & 0xff;
	cmd[4] = offset & 0xff;
	cmd[5] = (size >> 8) & 0xff;
	cmd[6] = size & 0xff;

	if (!eeprom)
		cmd[1] |= 0x04;

	wiiproto_keep_rumble(wdata, &cmd[1]);
	wiimote_queue(wdata, cmd, sizeof(cmd));
}

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/* requries the cmd-mutex to be held */
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int wiimote_cmd_write(struct wiimote_data *wdata, __u32 offset,
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						const __u8 *wmem, __u8 size)
{
	unsigned long flags;
	int ret;

	spin_lock_irqsave(&wdata->state.lock, flags);
	wiimote_cmd_set(wdata, WIIPROTO_REQ_WMEM, 0);
	wiiproto_req_wreg(wdata, offset, wmem, size);
	spin_unlock_irqrestore(&wdata->state.lock, flags);

	ret = wiimote_cmd_wait(wdata);
	if (!ret && wdata->state.cmd_err)
		ret = -EIO;

	return ret;
}

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/* requries the cmd-mutex to be held */
ssize_t wiimote_cmd_read(struct wiimote_data *wdata, __u32 offset, __u8 *rmem,
								__u8 size)
{
	unsigned long flags;
	ssize_t ret;

	spin_lock_irqsave(&wdata->state.lock, flags);
	wdata->state.cmd_read_size = size;
	wdata->state.cmd_read_buf = rmem;
	wiimote_cmd_set(wdata, WIIPROTO_REQ_RMEM, offset & 0xffff);
	wiiproto_req_rreg(wdata, offset, size);
	spin_unlock_irqrestore(&wdata->state.lock, flags);

	ret = wiimote_cmd_wait(wdata);

	spin_lock_irqsave(&wdata->state.lock, flags);
	wdata->state.cmd_read_buf = NULL;
	spin_unlock_irqrestore(&wdata->state.lock, flags);

	if (!ret) {
		if (wdata->state.cmd_read_size == 0)
			ret = -EIO;
		else
			ret = wdata->state.cmd_read_size;
	}

	return ret;
}

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static int wiimote_battery_get_property(struct power_supply *psy,
						enum power_supply_property psp,
						union power_supply_propval *val)
{
	struct wiimote_data *wdata = container_of(psy,
						struct wiimote_data, battery);
	int ret = 0, state;
	unsigned long flags;

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	if (psp == POWER_SUPPLY_PROP_SCOPE) {
		val->intval = POWER_SUPPLY_SCOPE_DEVICE;
		return 0;
	}

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	ret = wiimote_cmd_acquire(wdata);
	if (ret)
		return ret;

	spin_lock_irqsave(&wdata->state.lock, flags);
	wiimote_cmd_set(wdata, WIIPROTO_REQ_SREQ, 0);
	wiiproto_req_status(wdata);
	spin_unlock_irqrestore(&wdata->state.lock, flags);

	ret = wiimote_cmd_wait(wdata);
	state = wdata->state.cmd_battery;
	wiimote_cmd_release(wdata);

	if (ret)
		return ret;

	switch (psp) {
		case POWER_SUPPLY_PROP_CAPACITY:
			val->intval = state * 100 / 255;
			break;
		default:
			ret = -EINVAL;
			break;
	}

	return ret;
}

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static int wiimote_init_ir(struct wiimote_data *wdata, __u16 mode)
{
	int ret;
	unsigned long flags;
	__u8 format = 0;
	static const __u8 data_enable[] = { 0x01 };
	static const __u8 data_sens1[] = { 0x02, 0x00, 0x00, 0x71, 0x01,
						0x00, 0xaa, 0x00, 0x64 };
	static const __u8 data_sens2[] = { 0x63, 0x03 };
	static const __u8 data_fin[] = { 0x08 };

	spin_lock_irqsave(&wdata->state.lock, flags);

	if (mode == (wdata->state.flags & WIIPROTO_FLAGS_IR)) {
		spin_unlock_irqrestore(&wdata->state.lock, flags);
		return 0;
	}

	if (mode == 0) {
		wdata->state.flags &= ~WIIPROTO_FLAGS_IR;
		wiiproto_req_ir1(wdata, 0);
		wiiproto_req_ir2(wdata, 0);
		wiiproto_req_drm(wdata, WIIPROTO_REQ_NULL);
		spin_unlock_irqrestore(&wdata->state.lock, flags);
		return 0;
	}

	spin_unlock_irqrestore(&wdata->state.lock, flags);

	ret = wiimote_cmd_acquire(wdata);
	if (ret)
		return ret;

	/* send PIXEL CLOCK ENABLE cmd first */
	spin_lock_irqsave(&wdata->state.lock, flags);
	wiimote_cmd_set(wdata, WIIPROTO_REQ_IR1, 0);
	wiiproto_req_ir1(wdata, 0x06);
	spin_unlock_irqrestore(&wdata->state.lock, flags);

	ret = wiimote_cmd_wait(wdata);
	if (ret)
		goto unlock;
	if (wdata->state.cmd_err) {
		ret = -EIO;
		goto unlock;
	}

	/* enable IR LOGIC */
	spin_lock_irqsave(&wdata->state.lock, flags);
	wiimote_cmd_set(wdata, WIIPROTO_REQ_IR2, 0);
	wiiproto_req_ir2(wdata, 0x06);
	spin_unlock_irqrestore(&wdata->state.lock, flags);

	ret = wiimote_cmd_wait(wdata);
	if (ret)
		goto unlock;
	if (wdata->state.cmd_err) {
		ret = -EIO;
		goto unlock;
	}

	/* enable IR cam but do not make it send data, yet */
	ret = wiimote_cmd_write(wdata, 0xb00030, data_enable,
							sizeof(data_enable));
	if (ret)
		goto unlock;

	/* write first sensitivity block */
	ret = wiimote_cmd_write(wdata, 0xb00000, data_sens1,
							sizeof(data_sens1));
	if (ret)
		goto unlock;

	/* write second sensitivity block */
	ret = wiimote_cmd_write(wdata, 0xb0001a, data_sens2,
							sizeof(data_sens2));
	if (ret)
		goto unlock;

	/* put IR cam into desired state */
	switch (mode) {
		case WIIPROTO_FLAG_IR_FULL:
			format = 5;
			break;
		case WIIPROTO_FLAG_IR_EXT:
			format = 3;
			break;
		case WIIPROTO_FLAG_IR_BASIC:
			format = 1;
			break;
	}
	ret = wiimote_cmd_write(wdata, 0xb00033, &format, sizeof(format));
	if (ret)
		goto unlock;

	/* make IR cam send data */
	ret = wiimote_cmd_write(wdata, 0xb00030, data_fin, sizeof(data_fin));
	if (ret)
		goto unlock;

	/* request new DRM mode compatible to IR mode */
	spin_lock_irqsave(&wdata->state.lock, flags);
	wdata->state.flags &= ~WIIPROTO_FLAGS_IR;
	wdata->state.flags |= mode & WIIPROTO_FLAGS_IR;
	wiiproto_req_drm(wdata, WIIPROTO_REQ_NULL);
	spin_unlock_irqrestore(&wdata->state.lock, flags);

unlock:
	wiimote_cmd_release(wdata);
	return ret;
}

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static enum led_brightness wiimote_leds_get(struct led_classdev *led_dev)
{
	struct wiimote_data *wdata;
	struct device *dev = led_dev->dev->parent;
	int i;
	unsigned long flags;
	bool value = false;

	wdata = hid_get_drvdata(container_of(dev, struct hid_device, dev));

	for (i = 0; i < 4; ++i) {
		if (wdata->leds[i] == led_dev) {
			spin_lock_irqsave(&wdata->state.lock, flags);
			value = wdata->state.flags & WIIPROTO_FLAG_LED(i + 1);
			spin_unlock_irqrestore(&wdata->state.lock, flags);
			break;
		}
	}

	return value ? LED_FULL : LED_OFF;
}

static void wiimote_leds_set(struct led_classdev *led_dev,
						enum led_brightness value)
{
	struct wiimote_data *wdata;
	struct device *dev = led_dev->dev->parent;
	int i;
	unsigned long flags;
	__u8 state, flag;

	wdata = hid_get_drvdata(container_of(dev, struct hid_device, dev));

	for (i = 0; i < 4; ++i) {
		if (wdata->leds[i] == led_dev) {
			flag = WIIPROTO_FLAG_LED(i + 1);
			spin_lock_irqsave(&wdata->state.lock, flags);
			state = wdata->state.flags;
			if (value == LED_OFF)
				wiiproto_req_leds(wdata, state & ~flag);
			else
				wiiproto_req_leds(wdata, state | flag);
			spin_unlock_irqrestore(&wdata->state.lock, flags);
			break;
		}
	}
}
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static int wiimote_ff_play(struct input_dev *dev, void *data,
							struct ff_effect *eff)
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{
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	struct wiimote_data *wdata = input_get_drvdata(dev);
	__u8 value;
	unsigned long flags;

	/*
	 * The wiimote supports only a single rumble motor so if any magnitude
	 * is set to non-zero then we start the rumble motor. If both are set to
	 * zero, we stop the rumble motor.
	 */

	if (eff->u.rumble.strong_magnitude || eff->u.rumble.weak_magnitude)
		value = 1;
	else
		value = 0;

	spin_lock_irqsave(&wdata->state.lock, flags);
	wiiproto_req_rumble(wdata, value);
	spin_unlock_irqrestore(&wdata->state.lock, flags);

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	return 0;
}

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static int wiimote_input_open(struct input_dev *dev)
{
	struct wiimote_data *wdata = input_get_drvdata(dev);

	return hid_hw_open(wdata->hdev);
}

static void wiimote_input_close(struct input_dev *dev)
{
	struct wiimote_data *wdata = input_get_drvdata(dev);

	hid_hw_close(wdata->hdev);
}

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static int wiimote_accel_open(struct input_dev *dev)
{
	struct wiimote_data *wdata = input_get_drvdata(dev);
	int ret;
	unsigned long flags;

	ret = hid_hw_open(wdata->hdev);
	if (ret)
		return ret;

	spin_lock_irqsave(&wdata->state.lock, flags);
	wiiproto_req_accel(wdata, true);
	spin_unlock_irqrestore(&wdata->state.lock, flags);

	return 0;
}

static void wiimote_accel_close(struct input_dev *dev)
{
	struct wiimote_data *wdata = input_get_drvdata(dev);
	unsigned long flags;

	spin_lock_irqsave(&wdata->state.lock, flags);
	wiiproto_req_accel(wdata, false);
	spin_unlock_irqrestore(&wdata->state.lock, flags);

	hid_hw_close(wdata->hdev);
}

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static int wiimote_ir_open(struct input_dev *dev)
{
	struct wiimote_data *wdata = input_get_drvdata(dev);
	int ret;

	ret = hid_hw_open(wdata->hdev);
	if (ret)
		return ret;

	ret = wiimote_init_ir(wdata, WIIPROTO_FLAG_IR_BASIC);
	if (ret) {
		hid_hw_close(wdata->hdev);
		return ret;
	}

	return 0;
}

static void wiimote_ir_close(struct input_dev *dev)
{
	struct wiimote_data *wdata = input_get_drvdata(dev);

	wiimote_init_ir(wdata, 0);
	hid_hw_close(wdata->hdev);
}

693 694 695 696 697 698 699 700 701 702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719
static void handler_keys(struct wiimote_data *wdata, const __u8 *payload)
{
	input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_LEFT],
							!!(payload[0] & 0x01));
	input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_RIGHT],
							!!(payload[0] & 0x02));
	input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_DOWN],
							!!(payload[0] & 0x04));
	input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_UP],
							!!(payload[0] & 0x08));
	input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_PLUS],
							!!(payload[0] & 0x10));
	input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_TWO],
							!!(payload[1] & 0x01));
	input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_ONE],
							!!(payload[1] & 0x02));
	input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_B],
							!!(payload[1] & 0x04));
	input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_A],
							!!(payload[1] & 0x08));
	input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_MINUS],
							!!(payload[1] & 0x10));
	input_report_key(wdata->input, wiiproto_keymap[WIIPROTO_KEY_HOME],
							!!(payload[1] & 0x80));
	input_sync(wdata->input);
}

720 721 722 723 724 725 726 727 728 729 730 731 732 733 734 735 736 737 738 739 740 741 742 743 744 745 746 747 748 749 750 751 752
static void handler_accel(struct wiimote_data *wdata, const __u8 *payload)
{
	__u16 x, y, z;

	if (!(wdata->state.flags & WIIPROTO_FLAG_ACCEL))
		return;

	/*
	 * payload is: BB BB XX YY ZZ
	 * Accelerometer data is encoded into 3 10bit values. XX, YY and ZZ
	 * contain the upper 8 bits of each value. The lower 2 bits are
	 * contained in the buttons data BB BB.
	 * Bits 6 and 7 of the first buttons byte BB is the lower 2 bits of the
	 * X accel value. Bit 5 of the second buttons byte is the 2nd bit of Y
	 * accel value and bit 6 is the second bit of the Z value.
	 * The first bit of Y and Z values is not available and always set to 0.
	 * 0x200 is returned on no movement.
	 */

	x = payload[2] << 2;
	y = payload[3] << 2;
	z = payload[4] << 2;

	x |= (payload[0] >> 5) & 0x3;
	y |= (payload[1] >> 4) & 0x2;
	z |= (payload[1] >> 5) & 0x2;

	input_report_abs(wdata->accel, ABS_RX, x - 0x200);
	input_report_abs(wdata->accel, ABS_RY, y - 0x200);
	input_report_abs(wdata->accel, ABS_RZ, z - 0x200);
	input_sync(wdata->accel);
}

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#define ir_to_input0(wdata, ir, packed) __ir_to_input((wdata), (ir), (packed), \
							ABS_HAT0X, ABS_HAT0Y)
#define ir_to_input1(wdata, ir, packed) __ir_to_input((wdata), (ir), (packed), \
							ABS_HAT1X, ABS_HAT1Y)
#define ir_to_input2(wdata, ir, packed) __ir_to_input((wdata), (ir), (packed), \
							ABS_HAT2X, ABS_HAT2Y)
#define ir_to_input3(wdata, ir, packed) __ir_to_input((wdata), (ir), (packed), \
							ABS_HAT3X, ABS_HAT3Y)

static void __ir_to_input(struct wiimote_data *wdata, const __u8 *ir,
						bool packed, __u8 xid, __u8 yid)
{
	__u16 x, y;

	if (!(wdata->state.flags & WIIPROTO_FLAGS_IR))
		return;

	/*
	 * Basic IR data is encoded into 3 bytes. The first two bytes are the
772
	 * lower 8 bit of the X/Y data, the 3rd byte contains the upper 2 bits
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	 * of both.
	 * If data is packed, then the 3rd byte is put first and slightly
	 * reordered. This allows to interleave packed and non-packed data to
	 * have two IR sets in 5 bytes instead of 6.
	 * The resulting 10bit X/Y values are passed to the ABS_HATXY input dev.
	 */

	if (packed) {
781 782
		x = ir[1] | ((ir[0] & 0x03) << 8);
		y = ir[2] | ((ir[0] & 0x0c) << 6);
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	} else {
784 785
		x = ir[0] | ((ir[2] & 0x30) << 4);
		y = ir[1] | ((ir[2] & 0xc0) << 2);
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	}

	input_report_abs(wdata->ir, xid, x);
	input_report_abs(wdata->ir, yid, y);
}
791

792 793 794 795 796 797
static void handler_status(struct wiimote_data *wdata, const __u8 *payload)
{
	handler_keys(wdata, payload);

	/* on status reports the drm is reset so we need to resend the drm */
	wiiproto_req_drm(wdata, WIIPROTO_REQ_NULL);
798

799 800
	wiiext_event(wdata, payload[2] & 0x02);

801 802 803 804
	if (wiimote_cmd_pending(wdata, WIIPROTO_REQ_SREQ, 0)) {
		wdata->state.cmd_battery = payload[5];
		wiimote_cmd_complete(wdata);
	}
805 806
}

807 808
static void handler_data(struct wiimote_data *wdata, const __u8 *payload)
{
809 810 811 812
	__u16 offset = payload[3] << 8 | payload[4];
	__u8 size = (payload[2] >> 4) + 1;
	__u8 err = payload[2] & 0x0f;

813
	handler_keys(wdata, payload);
814 815 816 817 818 819 820 821 822 823 824 825

	if (wiimote_cmd_pending(wdata, WIIPROTO_REQ_RMEM, offset)) {
		if (err)
			size = 0;
		else if (size > wdata->state.cmd_read_size)
			size = wdata->state.cmd_read_size;

		wdata->state.cmd_read_size = size;
		if (wdata->state.cmd_read_buf)
			memcpy(wdata->state.cmd_read_buf, &payload[5], size);
		wiimote_cmd_complete(wdata);
	}
826 827
}

828 829 830 831 832 833 834
static void handler_return(struct wiimote_data *wdata, const __u8 *payload)
{
	__u8 err = payload[3];
	__u8 cmd = payload[2];

	handler_keys(wdata, payload);

835 836 837 838
	if (wiimote_cmd_pending(wdata, cmd, 0)) {
		wdata->state.cmd_err = err;
		wiimote_cmd_complete(wdata);
	} else if (err) {
839 840
		hid_warn(wdata->hdev, "Remote error %hhu on req %hhu\n", err,
									cmd);
841
	}
842 843
}

844 845 846 847 848 849
static void handler_drm_KA(struct wiimote_data *wdata, const __u8 *payload)
{
	handler_keys(wdata, payload);
	handler_accel(wdata, payload);
}

850 851 852
static void handler_drm_KE(struct wiimote_data *wdata, const __u8 *payload)
{
	handler_keys(wdata, payload);
853
	wiiext_handle(wdata, &payload[2]);
854 855
}

856 857 858 859
static void handler_drm_KAI(struct wiimote_data *wdata, const __u8 *payload)
{
	handler_keys(wdata, payload);
	handler_accel(wdata, payload);
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	ir_to_input0(wdata, &payload[5], false);
	ir_to_input1(wdata, &payload[8], false);
	ir_to_input2(wdata, &payload[11], false);
	ir_to_input3(wdata, &payload[14], false);
	input_sync(wdata->ir);
}

867 868 869
static void handler_drm_KEE(struct wiimote_data *wdata, const __u8 *payload)
{
	handler_keys(wdata, payload);
870
	wiiext_handle(wdata, &payload[2]);
871 872
}

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static void handler_drm_KIE(struct wiimote_data *wdata, const __u8 *payload)
{
	handler_keys(wdata, payload);
	ir_to_input0(wdata, &payload[2], false);
	ir_to_input1(wdata, &payload[4], true);
	ir_to_input2(wdata, &payload[7], false);
	ir_to_input3(wdata, &payload[9], true);
	input_sync(wdata->ir);
881
	wiiext_handle(wdata, &payload[12]);
882 883 884 885 886 887
}

static void handler_drm_KAE(struct wiimote_data *wdata, const __u8 *payload)
{
	handler_keys(wdata, payload);
	handler_accel(wdata, payload);
888
	wiiext_handle(wdata, &payload[5]);
889 890 891 892 893 894
}

static void handler_drm_KAIE(struct wiimote_data *wdata, const __u8 *payload)
{
	handler_keys(wdata, payload);
	handler_accel(wdata, payload);
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	ir_to_input0(wdata, &payload[5], false);
	ir_to_input1(wdata, &payload[7], true);
	ir_to_input2(wdata, &payload[10], false);
	ir_to_input3(wdata, &payload[12], true);
	input_sync(wdata->ir);
900
	wiiext_handle(wdata, &payload[15]);
901 902
}

903 904
static void handler_drm_E(struct wiimote_data *wdata, const __u8 *payload)
{
905
	wiiext_handle(wdata, payload);
906 907
}

908 909 910 911 912 913 914
static void handler_drm_SKAI1(struct wiimote_data *wdata, const __u8 *payload)
{
	handler_keys(wdata, payload);

	wdata->state.accel_split[0] = payload[2];
	wdata->state.accel_split[1] = (payload[0] >> 1) & (0x10 | 0x20);
	wdata->state.accel_split[1] |= (payload[1] << 1) & (0x40 | 0x80);
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915 916 917 918

	ir_to_input0(wdata, &payload[3], false);
	ir_to_input1(wdata, &payload[12], false);
	input_sync(wdata->ir);
919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934 935
}

static void handler_drm_SKAI2(struct wiimote_data *wdata, const __u8 *payload)
{
	__u8 buf[5];

	handler_keys(wdata, payload);

	wdata->state.accel_split[1] |= (payload[0] >> 5) & (0x01 | 0x02);
	wdata->state.accel_split[1] |= (payload[1] >> 3) & (0x04 | 0x08);

	buf[0] = 0;
	buf[1] = 0;
	buf[2] = wdata->state.accel_split[0];
	buf[3] = payload[2];
	buf[4] = wdata->state.accel_split[1];
	handler_accel(wdata, buf);
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	ir_to_input2(wdata, &payload[3], false);
	ir_to_input3(wdata, &payload[12], false);
	input_sync(wdata->ir);
940 941
}

942 943 944 945 946 947 948
struct wiiproto_handler {
	__u8 id;
	size_t size;
	void (*func)(struct wiimote_data *wdata, const __u8 *payload);
};

static struct wiiproto_handler handlers[] = {
949
	{ .id = WIIPROTO_REQ_STATUS, .size = 6, .func = handler_status },
950
	{ .id = WIIPROTO_REQ_DATA, .size = 21, .func = handler_data },
951
	{ .id = WIIPROTO_REQ_RETURN, .size = 4, .func = handler_return },
952
	{ .id = WIIPROTO_REQ_DRM_K, .size = 2, .func = handler_keys },
953
	{ .id = WIIPROTO_REQ_DRM_KA, .size = 5, .func = handler_drm_KA },
954
	{ .id = WIIPROTO_REQ_DRM_KE, .size = 10, .func = handler_drm_KE },
955
	{ .id = WIIPROTO_REQ_DRM_KAI, .size = 17, .func = handler_drm_KAI },
956
	{ .id = WIIPROTO_REQ_DRM_KEE, .size = 21, .func = handler_drm_KEE },
957
	{ .id = WIIPROTO_REQ_DRM_KAE, .size = 21, .func = handler_drm_KAE },
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958
	{ .id = WIIPROTO_REQ_DRM_KIE, .size = 21, .func = handler_drm_KIE },
959
	{ .id = WIIPROTO_REQ_DRM_KAIE, .size = 21, .func = handler_drm_KAIE },
960
	{ .id = WIIPROTO_REQ_DRM_E, .size = 21, .func = handler_drm_E },
961 962
	{ .id = WIIPROTO_REQ_DRM_SKAI1, .size = 21, .func = handler_drm_SKAI1 },
	{ .id = WIIPROTO_REQ_DRM_SKAI2, .size = 21, .func = handler_drm_SKAI2 },
963 964 965
	{ .id = 0 }
};

966 967 968
static int wiimote_hid_event(struct hid_device *hdev, struct hid_report *report,
							u8 *raw_data, int size)
{
969
	struct wiimote_data *wdata = hid_get_drvdata(hdev);
970 971
	struct wiiproto_handler *h;
	int i;
972
	unsigned long flags;
973
	bool handled = false;
974

975 976 977
	if (size < 1)
		return -EINVAL;

978 979
	spin_lock_irqsave(&wdata->state.lock, flags);

980 981
	for (i = 0; handlers[i].id; ++i) {
		h = &handlers[i];
982
		if (h->id == raw_data[0] && h->size < size) {
983
			h->func(wdata, &raw_data[1]);
984 985
			handled = true;
		}
986 987
	}

988 989 990 991
	if (!handled)
		hid_warn(hdev, "Unhandled report %hhu size %d\n", raw_data[0],
									size);

992 993
	spin_unlock_irqrestore(&wdata->state.lock, flags);

994 995 996
	return 0;
}

997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029 1030 1031 1032 1033 1034 1035 1036 1037 1038 1039 1040 1041 1042 1043 1044 1045 1046 1047 1048
static void wiimote_leds_destroy(struct wiimote_data *wdata)
{
	int i;
	struct led_classdev *led;

	for (i = 0; i < 4; ++i) {
		if (wdata->leds[i]) {
			led = wdata->leds[i];
			wdata->leds[i] = NULL;
			led_classdev_unregister(led);
			kfree(led);
		}
	}
}

static int wiimote_leds_create(struct wiimote_data *wdata)
{
	int i, ret;
	struct device *dev = &wdata->hdev->dev;
	size_t namesz = strlen(dev_name(dev)) + 9;
	struct led_classdev *led;
	char *name;

	for (i = 0; i < 4; ++i) {
		led = kzalloc(sizeof(struct led_classdev) + namesz, GFP_KERNEL);
		if (!led) {
			ret = -ENOMEM;
			goto err;
		}
		name = (void*)&led[1];
		snprintf(name, namesz, "%s:blue:p%d", dev_name(dev), i);
		led->name = name;
		led->brightness = 0;
		led->max_brightness = 1;
		led->brightness_get = wiimote_leds_get;
		led->brightness_set = wiimote_leds_set;

		ret = led_classdev_register(dev, led);
		if (ret) {
			kfree(led);
			goto err;
		}
		wdata->leds[i] = led;
	}

	return 0;

err:
	wiimote_leds_destroy(wdata);
	return ret;
}

1049 1050 1051
static struct wiimote_data *wiimote_create(struct hid_device *hdev)
{
	struct wiimote_data *wdata;
1052
	int i;
1053 1054 1055 1056 1057

	wdata = kzalloc(sizeof(*wdata), GFP_KERNEL);
	if (!wdata)
		return NULL;

1058
	wdata->input = input_allocate_device();
1059 1060
	if (!wdata->input)
		goto err;
1061

1062 1063 1064
	wdata->hdev = hdev;
	hid_set_drvdata(hdev, wdata);

1065
	input_set_drvdata(wdata->input, wdata);
1066 1067
	wdata->input->open = wiimote_input_open;
	wdata->input->close = wiimote_input_close;
1068 1069 1070 1071 1072 1073 1074
	wdata->input->dev.parent = &wdata->hdev->dev;
	wdata->input->id.bustype = wdata->hdev->bus;
	wdata->input->id.vendor = wdata->hdev->vendor;
	wdata->input->id.product = wdata->hdev->product;
	wdata->input->id.version = wdata->hdev->version;
	wdata->input->name = WIIMOTE_NAME;

1075 1076 1077 1078
	set_bit(EV_KEY, wdata->input->evbit);
	for (i = 0; i < WIIPROTO_KEY_COUNT; ++i)
		set_bit(wiiproto_keymap[i], wdata->input->keybit);

1079
	set_bit(FF_RUMBLE, wdata->input->ffbit);
1080 1081 1082 1083 1084 1085 1086 1087 1088 1089 1090 1091 1092 1093 1094 1095 1096 1097 1098 1099 1100 1101 1102 1103
	if (input_ff_create_memless(wdata->input, NULL, wiimote_ff_play))
		goto err_input;

	wdata->accel = input_allocate_device();
	if (!wdata->accel)
		goto err_input;

	input_set_drvdata(wdata->accel, wdata);
	wdata->accel->open = wiimote_accel_open;
	wdata->accel->close = wiimote_accel_close;
	wdata->accel->dev.parent = &wdata->hdev->dev;
	wdata->accel->id.bustype = wdata->hdev->bus;
	wdata->accel->id.vendor = wdata->hdev->vendor;
	wdata->accel->id.product = wdata->hdev->product;
	wdata->accel->id.version = wdata->hdev->version;
	wdata->accel->name = WIIMOTE_NAME " Accelerometer";

	set_bit(EV_ABS, wdata->accel->evbit);
	set_bit(ABS_RX, wdata->accel->absbit);
	set_bit(ABS_RY, wdata->accel->absbit);
	set_bit(ABS_RZ, wdata->accel->absbit);
	input_set_abs_params(wdata->accel, ABS_RX, -500, 500, 2, 4);
	input_set_abs_params(wdata->accel, ABS_RY, -500, 500, 2, 4);
	input_set_abs_params(wdata->accel, ABS_RZ, -500, 500, 2, 4);
1104

1105 1106 1107 1108 1109
	wdata->ir = input_allocate_device();
	if (!wdata->ir)
		goto err_ir;

	input_set_drvdata(wdata->ir, wdata);
1110 1111
	wdata->ir->open = wiimote_ir_open;
	wdata->ir->close = wiimote_ir_close;
1112 1113 1114 1115 1116 1117 1118 1119 1120 1121 1122 1123 1124 1125 1126 1127 1128 1129 1130 1131 1132 1133 1134 1135 1136
	wdata->ir->dev.parent = &wdata->hdev->dev;
	wdata->ir->id.bustype = wdata->hdev->bus;
	wdata->ir->id.vendor = wdata->hdev->vendor;
	wdata->ir->id.product = wdata->hdev->product;
	wdata->ir->id.version = wdata->hdev->version;
	wdata->ir->name = WIIMOTE_NAME " IR";

	set_bit(EV_ABS, wdata->ir->evbit);
	set_bit(ABS_HAT0X, wdata->ir->absbit);
	set_bit(ABS_HAT0Y, wdata->ir->absbit);
	set_bit(ABS_HAT1X, wdata->ir->absbit);
	set_bit(ABS_HAT1Y, wdata->ir->absbit);
	set_bit(ABS_HAT2X, wdata->ir->absbit);
	set_bit(ABS_HAT2Y, wdata->ir->absbit);
	set_bit(ABS_HAT3X, wdata->ir->absbit);
	set_bit(ABS_HAT3Y, wdata->ir->absbit);
	input_set_abs_params(wdata->ir, ABS_HAT0X, 0, 1023, 2, 4);
	input_set_abs_params(wdata->ir, ABS_HAT0Y, 0, 767, 2, 4);
	input_set_abs_params(wdata->ir, ABS_HAT1X, 0, 1023, 2, 4);
	input_set_abs_params(wdata->ir, ABS_HAT1Y, 0, 767, 2, 4);
	input_set_abs_params(wdata->ir, ABS_HAT2X, 0, 1023, 2, 4);
	input_set_abs_params(wdata->ir, ABS_HAT2Y, 0, 767, 2, 4);
	input_set_abs_params(wdata->ir, ABS_HAT3X, 0, 1023, 2, 4);
	input_set_abs_params(wdata->ir, ABS_HAT3Y, 0, 767, 2, 4);

1137 1138 1139
	spin_lock_init(&wdata->qlock);
	INIT_WORK(&wdata->worker, wiimote_worker);

1140
	spin_lock_init(&wdata->state.lock);
1141 1142
	init_completion(&wdata->state.ready);
	mutex_init(&wdata->state.sync);
1143
	wdata->state.drm = WIIPROTO_REQ_DRM_K;
1144

1145
	return wdata;
1146

1147 1148
err_ir:
	input_free_device(wdata->accel);
1149 1150 1151 1152 1153
err_input:
	input_free_device(wdata->input);
err:
	kfree(wdata);
	return NULL;
1154 1155 1156 1157
}

static void wiimote_destroy(struct wiimote_data *wdata)
{
1158
	wiidebug_deinit(wdata);
1159
	wiiext_deinit(wdata);
1160
	wiimote_leds_destroy(wdata);
1161

1162
	power_supply_unregister(&wdata->battery);
1163
	kfree(wdata->battery.name);
1164
	input_unregister_device(wdata->accel);
1165
	input_unregister_device(wdata->ir);
1166 1167 1168 1169
	input_unregister_device(wdata->input);
	cancel_work_sync(&wdata->worker);
	hid_hw_stop(wdata->hdev);

1170 1171 1172
	kfree(wdata);
}

1173 1174
static int wiimote_hid_probe(struct hid_device *hdev,
				const struct hid_device_id *id)
1175
{
1176
	struct wiimote_data *wdata;
1177 1178
	int ret;

1179 1180
	hdev->quirks |= HID_QUIRK_NO_INIT_REPORTS;

1181 1182 1183 1184 1185 1186
	wdata = wiimote_create(hdev);
	if (!wdata) {
		hid_err(hdev, "Can't alloc device\n");
		return -ENOMEM;
	}

1187 1188 1189
	ret = hid_parse(hdev);
	if (ret) {
		hid_err(hdev, "HID parse failed\n");
1190
		goto err;
1191 1192 1193 1194 1195
	}

	ret = hid_hw_start(hdev, HID_CONNECT_HIDRAW);
	if (ret) {
		hid_err(hdev, "HW start failed\n");
1196
		goto err;
1197 1198
	}

1199
	ret = input_register_device(wdata->accel);
1200 1201 1202 1203 1204
	if (ret) {
		hid_err(hdev, "Cannot register input device\n");
		goto err_stop;
	}

1205 1206 1207 1208 1209 1210
	ret = input_register_device(wdata->ir);
	if (ret) {
		hid_err(hdev, "Cannot register input device\n");
		goto err_ir;
	}

1211 1212 1213 1214 1215 1216
	ret = input_register_device(wdata->input);
	if (ret) {
		hid_err(hdev, "Cannot register input device\n");
		goto err_input;
	}

1217 1218 1219 1220 1221
	wdata->battery.properties = wiimote_battery_props;
	wdata->battery.num_properties = ARRAY_SIZE(wiimote_battery_props);
	wdata->battery.get_property = wiimote_battery_get_property;
	wdata->battery.type = POWER_SUPPLY_TYPE_BATTERY;
	wdata->battery.use_for_apm = 0;
1222 1223 1224 1225 1226 1227
	wdata->battery.name = kasprintf(GFP_KERNEL, "wiimote_battery_%s",
					wdata->hdev->uniq);
	if (!wdata->battery.name) {
		ret = -ENOMEM;
		goto err_battery_name;
	}
1228 1229 1230 1231 1232 1233 1234

	ret = power_supply_register(&wdata->hdev->dev, &wdata->battery);
	if (ret) {
		hid_err(hdev, "Cannot register battery device\n");
		goto err_battery;
	}

1235 1236
	power_supply_powers(&wdata->battery, &hdev->dev);

1237
	ret = wiimote_leds_create(wdata);
1238 1239 1240
	if (ret)
		goto err_free;

1241 1242 1243 1244
	ret = wiiext_init(wdata);
	if (ret)
		goto err_free;

1245 1246 1247 1248
	ret = wiidebug_init(wdata);
	if (ret)
		goto err_free;

1249
	hid_info(hdev, "New device registered\n");
1250 1251 1252

	/* by default set led1 after device initialization */
	spin_lock_irq(&wdata->state.lock);
1253
	wiiproto_req_leds(wdata, WIIPROTO_FLAG_LED1);
1254 1255
	spin_unlock_irq(&wdata->state.lock);

1256
	return 0;
1257

1258 1259 1260 1261
err_free:
	wiimote_destroy(wdata);
	return ret;

1262
err_battery:
1263 1264
	kfree(wdata->battery.name);
err_battery_name:
1265 1266
	input_unregister_device(wdata->input);
	wdata->input = NULL;
1267
err_input:
1268 1269 1270
	input_unregister_device(wdata->ir);
	wdata->ir = NULL;
err_ir:
1271 1272
	input_unregister_device(wdata->accel);
	wdata->accel = NULL;
1273 1274
err_stop:
	hid_hw_stop(hdev);
1275
err:
1276
	input_free_device(wdata->ir);
1277
	input_free_device(wdata->accel);
1278
	input_free_device(wdata->input);
1279
	kfree(wdata);
1280
	return ret;
1281 1282
}

1283 1284
static void wiimote_hid_remove(struct hid_device *hdev)
{
1285 1286
	struct wiimote_data *wdata = hid_get_drvdata(hdev);

1287
	hid_info(hdev, "Device removed\n");
1288
	wiimote_destroy(wdata);
1289 1290 1291 1292 1293
}

static const struct hid_device_id wiimote_hid_devices[] = {
	{ HID_BLUETOOTH_DEVICE(USB_VENDOR_ID_NINTENDO,
				USB_DEVICE_ID_NINTENDO_WIIMOTE) },
1294 1295
	{ HID_BLUETOOTH_DEVICE(USB_VENDOR_ID_NINTENDO,
				USB_DEVICE_ID_NINTENDO_WIIMOTE2) },
1296 1297 1298 1299 1300 1301 1302 1303 1304 1305 1306
	{ }
};
MODULE_DEVICE_TABLE(hid, wiimote_hid_devices);

static struct hid_driver wiimote_hid_driver = {
	.name = "wiimote",
	.id_table = wiimote_hid_devices,
	.probe = wiimote_hid_probe,
	.remove = wiimote_hid_remove,
	.raw_event = wiimote_hid_event,
};
1307
module_hid_driver(wiimote_hid_driver);
1308

1309 1310 1311
MODULE_LICENSE("GPL");
MODULE_AUTHOR("David Herrmann <dh.herrmann@gmail.com>");
MODULE_DESCRIPTION(WIIMOTE_NAME " Device Driver");