drm_irq.c 38.2 KB
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/**
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 * \file drm_irq.c
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 * IRQ support
 *
 * \author Rickard E. (Rik) Faith <faith@valinux.com>
 * \author Gareth Hughes <gareth@valinux.com>
 */

/*
 * Created: Fri Mar 19 14:30:16 1999 by faith@valinux.com
 *
 * Copyright 1999, 2000 Precision Insight, Inc., Cedar Park, Texas.
 * Copyright 2000 VA Linux Systems, Inc., Sunnyvale, California.
 * All Rights Reserved.
 *
 * Permission is hereby granted, free of charge, to any person obtaining a
 * copy of this software and associated documentation files (the "Software"),
 * to deal in the Software without restriction, including without limitation
 * the rights to use, copy, modify, merge, publish, distribute, sublicense,
 * and/or sell copies of the Software, and to permit persons to whom the
 * Software is furnished to do so, subject to the following conditions:
 *
 * The above copyright notice and this permission notice (including the next
 * paragraph) shall be included in all copies or substantial portions of the
 * Software.
 *
 * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
 * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
 * FITNESS FOR A PARTICULAR PURPOSE AND NONINFRINGEMENT.  IN NO EVENT SHALL
 * VA LINUX SYSTEMS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM, DAMAGES OR
 * OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR OTHERWISE,
 * ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE USE OR
 * OTHER DEALINGS IN THE SOFTWARE.
 */

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#include <drm/drmP.h>
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#include "drm_trace.h"
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#include <linux/interrupt.h>	/* For task queue support */
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#include <linux/slab.h>
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#include <linux/vgaarb.h>
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#include <linux/export.h>
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/* Access macro for slots in vblank timestamp ringbuffer. */
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#define vblanktimestamp(dev, crtc, count) \
	((dev)->vblank[crtc].time[(count) % DRM_VBLANKTIME_RBSIZE])
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/* Retry timestamp calculation up to 3 times to satisfy
 * drm_timestamp_precision before giving up.
 */
#define DRM_TIMESTAMP_MAXRETRIES 3

/* Threshold in nanoseconds for detection of redundant
 * vblank irq in drm_handle_vblank(). 1 msec should be ok.
 */
#define DRM_REDUNDANT_VBLIRQ_THRESH_NS 1000000

/*
 * Clear vblank timestamp buffer for a crtc.
 */
static void clear_vblank_timestamps(struct drm_device *dev, int crtc)
{
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	memset(dev->vblank[crtc].time, 0, sizeof(dev->vblank[crtc].time));
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}

/*
 * Disable vblank irq's on crtc, make sure that last vblank count
 * of hardware and corresponding consistent software vblank counter
 * are preserved, even if there are any spurious vblank irq's after
 * disable.
 */
static void vblank_disable_and_save(struct drm_device *dev, int crtc)
{
	unsigned long irqflags;
	u32 vblcount;
	s64 diff_ns;
	int vblrc;
	struct timeval tvblank;
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	int count = DRM_TIMESTAMP_MAXRETRIES;
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	/* Prevent vblank irq processing while disabling vblank irqs,
	 * so no updates of timestamps or count can happen after we've
	 * disabled. Needed to prevent races in case of delayed irq's.
	 */
	spin_lock_irqsave(&dev->vblank_time_lock, irqflags);

	dev->driver->disable_vblank(dev, crtc);
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	dev->vblank[crtc].enabled = false;
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	/* No further vblank irq's will be processed after
	 * this point. Get current hardware vblank count and
	 * vblank timestamp, repeat until they are consistent.
	 *
	 * FIXME: There is still a race condition here and in
	 * drm_update_vblank_count() which can cause off-by-one
	 * reinitialization of software vblank counter. If gpu
	 * vblank counter doesn't increment exactly at the leading
	 * edge of a vblank interval, then we can lose 1 count if
	 * we happen to execute between start of vblank and the
	 * delayed gpu counter increment.
	 */
	do {
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		dev->vblank[crtc].last = dev->driver->get_vblank_counter(dev, crtc);
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		vblrc = drm_get_last_vbltimestamp(dev, crtc, &tvblank, 0);
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	} while (dev->vblank[crtc].last != dev->driver->get_vblank_counter(dev, crtc) && (--count) && vblrc);
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	if (!count)
		vblrc = 0;
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	/* Compute time difference to stored timestamp of last vblank
	 * as updated by last invocation of drm_handle_vblank() in vblank irq.
	 */
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	vblcount = atomic_read(&dev->vblank[crtc].count);
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	diff_ns = timeval_to_ns(&tvblank) -
		  timeval_to_ns(&vblanktimestamp(dev, crtc, vblcount));

	/* If there is at least 1 msec difference between the last stored
	 * timestamp and tvblank, then we are currently executing our
	 * disable inside a new vblank interval, the tvblank timestamp
	 * corresponds to this new vblank interval and the irq handler
	 * for this vblank didn't run yet and won't run due to our disable.
	 * Therefore we need to do the job of drm_handle_vblank() and
	 * increment the vblank counter by one to account for this vblank.
	 *
	 * Skip this step if there isn't any high precision timestamp
	 * available. In that case we can't account for this and just
	 * hope for the best.
	 */
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	if ((vblrc > 0) && (abs64(diff_ns) > 1000000)) {
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		atomic_inc(&dev->vblank[crtc].count);
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		smp_mb__after_atomic_inc();
	}
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	/* Invalidate all timestamps while vblank irq's are off. */
	clear_vblank_timestamps(dev, crtc);

	spin_unlock_irqrestore(&dev->vblank_time_lock, irqflags);
}

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static void vblank_disable_fn(unsigned long arg)
{
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	struct drm_vblank_crtc *vblank = (void *)arg;
	struct drm_device *dev = vblank->dev;
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	unsigned long irqflags;
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	int crtc = vblank->crtc;
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	if (!dev->vblank_disable_allowed)
		return;

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	spin_lock_irqsave(&dev->vbl_lock, irqflags);
	if (atomic_read(&vblank->refcount) == 0 && vblank->enabled) {
		DRM_DEBUG("disabling vblank on crtc %d\n", crtc);
		vblank_disable_and_save(dev, crtc);
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	}
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	spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
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}

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void drm_vblank_cleanup(struct drm_device *dev)
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{
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	int crtc;

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	/* Bail if the driver didn't call drm_vblank_init() */
	if (dev->num_crtcs == 0)
		return;

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	for (crtc = 0; crtc < dev->num_crtcs; crtc++) {
		del_timer_sync(&dev->vblank[crtc].disable_timer);
		vblank_disable_fn((unsigned long)&dev->vblank[crtc]);
	}
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	kfree(dev->vblank);
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	dev->num_crtcs = 0;
}
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EXPORT_SYMBOL(drm_vblank_cleanup);
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int drm_vblank_init(struct drm_device *dev, int num_crtcs)
{
	int i, ret = -ENOMEM;

	spin_lock_init(&dev->vbl_lock);
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	spin_lock_init(&dev->vblank_time_lock);

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	dev->num_crtcs = num_crtcs;

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	dev->vblank = kcalloc(num_crtcs, sizeof(*dev->vblank), GFP_KERNEL);
	if (!dev->vblank)
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		goto err;

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	for (i = 0; i < num_crtcs; i++) {
		dev->vblank[i].dev = dev;
		dev->vblank[i].crtc = i;
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		init_waitqueue_head(&dev->vblank[i].queue);
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		setup_timer(&dev->vblank[i].disable_timer, vblank_disable_fn,
			    (unsigned long)&dev->vblank[i]);
	}
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	DRM_INFO("Supports vblank timestamp caching Rev 2 (21.10.2013).\n");
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	/* Driver specific high-precision vblank timestamping supported? */
	if (dev->driver->get_vblank_timestamp)
		DRM_INFO("Driver supports precise vblank timestamp query.\n");
	else
		DRM_INFO("No driver support for vblank timestamp query.\n");

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	dev->vblank_disable_allowed = false;

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	return 0;

err:
	drm_vblank_cleanup(dev);
	return ret;
}
EXPORT_SYMBOL(drm_vblank_init);

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static void drm_irq_vgaarb_nokms(void *cookie, bool state)
{
	struct drm_device *dev = cookie;

	if (dev->driver->vgaarb_irq) {
		dev->driver->vgaarb_irq(dev, state);
		return;
	}

	if (!dev->irq_enabled)
		return;

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	if (state) {
		if (dev->driver->irq_uninstall)
			dev->driver->irq_uninstall(dev);
	} else {
		if (dev->driver->irq_preinstall)
			dev->driver->irq_preinstall(dev);
		if (dev->driver->irq_postinstall)
			dev->driver->irq_postinstall(dev);
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	}
}

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/**
 * Install IRQ handler.
 *
 * \param dev DRM device.
 *
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 * Initializes the IRQ related data. Installs the handler, calling the driver
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 * \c irq_preinstall() and \c irq_postinstall() functions
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 * before and after the installation.
 */
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int drm_irq_install(struct drm_device *dev, int irq)
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{
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	int ret;
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	unsigned long sh_flags = 0;
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	if (!drm_core_check_feature(dev, DRIVER_HAVE_IRQ))
		return -EINVAL;

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	if (irq == 0)
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		return -EINVAL;

	/* Driver must have been initialized */
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	if (!dev->dev_private)
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		return -EINVAL;

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	if (dev->irq_enabled)
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		return -EBUSY;
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	dev->irq_enabled = true;
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	DRM_DEBUG("irq=%d\n", irq);
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	/* Before installing handler */
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	if (dev->driver->irq_preinstall)
		dev->driver->irq_preinstall(dev);
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	/* Install handler */
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	if (drm_core_check_feature(dev, DRIVER_IRQ_SHARED))
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		sh_flags = IRQF_SHARED;
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	ret = request_irq(irq, dev->driver->irq_handler,
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			  sh_flags, dev->driver->name, dev);
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	if (ret < 0) {
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		dev->irq_enabled = false;
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		return ret;
	}

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	if (!drm_core_check_feature(dev, DRIVER_MODESET))
		vga_client_register(dev->pdev, (void *)dev, drm_irq_vgaarb_nokms, NULL);

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	/* After installing handler */
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	if (dev->driver->irq_postinstall)
		ret = dev->driver->irq_postinstall(dev);

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	if (ret < 0) {
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		dev->irq_enabled = false;
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		if (!drm_core_check_feature(dev, DRIVER_MODESET))
			vga_client_register(dev->pdev, NULL, NULL, NULL);
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		free_irq(irq, dev);
	} else {
		dev->irq = irq;
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	}
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	return ret;
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}
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EXPORT_SYMBOL(drm_irq_install);
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/**
 * Uninstall the IRQ handler.
 *
 * \param dev DRM device.
 *
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 * Calls the driver's \c irq_uninstall() function, and stops the irq.
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 */
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int drm_irq_uninstall(struct drm_device *dev)
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{
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	unsigned long irqflags;
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	bool irq_enabled;
	int i;
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	if (!drm_core_check_feature(dev, DRIVER_HAVE_IRQ))
		return -EINVAL;

	irq_enabled = dev->irq_enabled;
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	dev->irq_enabled = false;
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	/*
	 * Wake up any waiters so they don't hang.
	 */
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	if (dev->num_crtcs) {
		spin_lock_irqsave(&dev->vbl_lock, irqflags);
		for (i = 0; i < dev->num_crtcs; i++) {
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			wake_up(&dev->vblank[i].queue);
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			dev->vblank[i].enabled = false;
			dev->vblank[i].last =
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				dev->driver->get_vblank_counter(dev, i);
		}
		spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
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	}

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	if (!irq_enabled)
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		return -EINVAL;

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	DRM_DEBUG("irq=%d\n", dev->irq);
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	if (!drm_core_check_feature(dev, DRIVER_MODESET))
		vga_client_register(dev->pdev, NULL, NULL, NULL);

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	if (dev->driver->irq_uninstall)
		dev->driver->irq_uninstall(dev);
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	free_irq(dev->irq, dev);
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	return 0;
}
EXPORT_SYMBOL(drm_irq_uninstall);

/**
 * IRQ control ioctl.
 *
 * \param inode device inode.
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 * \param file_priv DRM file private.
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 * \param cmd command.
 * \param arg user argument, pointing to a drm_control structure.
 * \return zero on success or a negative number on failure.
 *
 * Calls irq_install() or irq_uninstall() according to \p arg.
 */
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int drm_control(struct drm_device *dev, void *data,
		struct drm_file *file_priv)
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{
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	struct drm_control *ctl = data;
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	int ret = 0, irq;
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	/* if we haven't irq we fallback for compatibility reasons -
	 * this used to be a separate function in drm_dma.h
	 */
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	if (!drm_core_check_feature(dev, DRIVER_HAVE_IRQ))
		return 0;
	if (drm_core_check_feature(dev, DRIVER_MODESET))
		return 0;
	/* UMS was only ever support on pci devices. */
	if (WARN_ON(!dev->pdev))
		return -EINVAL;
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	switch (ctl->func) {
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	case DRM_INST_HANDLER:
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		irq = dev->pdev->irq;

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		if (dev->if_version < DRM_IF_VERSION(1, 2) &&
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		    ctl->irq != irq)
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			return -EINVAL;
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		mutex_lock(&dev->struct_mutex);
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		ret = drm_irq_install(dev, irq);
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		mutex_unlock(&dev->struct_mutex);

		return ret;
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	case DRM_UNINST_HANDLER:
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		mutex_lock(&dev->struct_mutex);
		ret = drm_irq_uninstall(dev);
		mutex_unlock(&dev->struct_mutex);

		return ret;
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	default:
		return -EINVAL;
	}
}

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/**
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 * drm_calc_timestamping_constants - Calculate vblank timestamp constants
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 *
 * @crtc drm_crtc whose timestamp constants should be updated.
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 * @mode display mode containing the scanout timings
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 *
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 * Calculate and store various constants which are later
 * needed by vblank and swap-completion timestamping, e.g,
 * by drm_calc_vbltimestamp_from_scanoutpos(). They are
 * derived from crtc's true scanout timing, so they take
 * things like panel scaling or other adjustments into account.
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 */
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void drm_calc_timestamping_constants(struct drm_crtc *crtc,
				     const struct drm_display_mode *mode)
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{
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	int linedur_ns = 0, pixeldur_ns = 0, framedur_ns = 0;
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	int dotclock = mode->crtc_clock;
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	/* Valid dotclock? */
	if (dotclock > 0) {
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		int frame_size = mode->crtc_htotal * mode->crtc_vtotal;

		/*
		 * Convert scanline length in pixels and video
		 * dot clock to line duration, frame duration
		 * and pixel duration in nanoseconds:
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		 */
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		pixeldur_ns = 1000000 / dotclock;
		linedur_ns  = div_u64((u64) mode->crtc_htotal * 1000000, dotclock);
		framedur_ns = div_u64((u64) frame_size * 1000000, dotclock);
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		/*
		 * Fields of interlaced scanout modes are only half a frame duration.
		 */
		if (mode->flags & DRM_MODE_FLAG_INTERLACE)
			framedur_ns /= 2;
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	} else
		DRM_ERROR("crtc %d: Can't calculate constants, dotclock = 0!\n",
			  crtc->base.id);

	crtc->pixeldur_ns = pixeldur_ns;
	crtc->linedur_ns  = linedur_ns;
	crtc->framedur_ns = framedur_ns;

	DRM_DEBUG("crtc %d: hwmode: htotal %d, vtotal %d, vdisplay %d\n",
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		  crtc->base.id, mode->crtc_htotal,
		  mode->crtc_vtotal, mode->crtc_vdisplay);
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	DRM_DEBUG("crtc %d: clock %d kHz framedur %d linedur %d, pixeldur %d\n",
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		  crtc->base.id, dotclock, framedur_ns,
		  linedur_ns, pixeldur_ns);
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}
EXPORT_SYMBOL(drm_calc_timestamping_constants);

/**
 * drm_calc_vbltimestamp_from_scanoutpos - helper routine for kms
 * drivers. Implements calculation of exact vblank timestamps from
 * given drm_display_mode timings and current video scanout position
 * of a crtc. This can be called from within get_vblank_timestamp()
 * implementation of a kms driver to implement the actual timestamping.
 *
 * Should return timestamps conforming to the OML_sync_control OpenML
 * extension specification. The timestamp corresponds to the end of
 * the vblank interval, aka start of scanout of topmost-leftmost display
 * pixel in the following video frame.
 *
 * Requires support for optional dev->driver->get_scanout_position()
 * in kms driver, plus a bit of setup code to provide a drm_display_mode
 * that corresponds to the true scanout timing.
 *
 * The current implementation only handles standard video modes. It
 * returns as no operation if a doublescan or interlaced video mode is
 * active. Higher level code is expected to handle this.
 *
 * @dev: DRM device.
 * @crtc: Which crtc's vblank timestamp to retrieve.
 * @max_error: Desired maximum allowable error in timestamps (nanosecs).
 *             On return contains true maximum error of timestamp.
 * @vblank_time: Pointer to struct timeval which should receive the timestamp.
 * @flags: Flags to pass to driver:
 *         0 = Default.
 *         DRM_CALLED_FROM_VBLIRQ = If function is called from vbl irq handler.
 * @refcrtc: drm_crtc* of crtc which defines scanout timing.
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 * @mode: mode which defines the scanout timings
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 *
 * Returns negative value on error, failure or if not supported in current
 * video mode:
 *
 * -EINVAL   - Invalid crtc.
 * -EAGAIN   - Temporary unavailable, e.g., called before initial modeset.
 * -ENOTSUPP - Function not supported in current display mode.
 * -EIO      - Failed, e.g., due to failed scanout position query.
 *
 * Returns or'ed positive status flags on success:
 *
 * DRM_VBLANKTIME_SCANOUTPOS_METHOD - Signal this method used for timestamping.
 * DRM_VBLANKTIME_INVBL - Timestamp taken while scanout was in vblank interval.
 *
 */
int drm_calc_vbltimestamp_from_scanoutpos(struct drm_device *dev, int crtc,
					  int *max_error,
					  struct timeval *vblank_time,
					  unsigned flags,
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					  const struct drm_crtc *refcrtc,
					  const struct drm_display_mode *mode)
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{
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	ktime_t stime, etime, mono_time_offset;
	struct timeval tv_etime;
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	int vbl_status;
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	int vpos, hpos, i;
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	int framedur_ns, linedur_ns, pixeldur_ns, delta_ns, duration_ns;
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	bool invbl;

	if (crtc < 0 || crtc >= dev->num_crtcs) {
		DRM_ERROR("Invalid crtc %d\n", crtc);
		return -EINVAL;
	}

	/* Scanout position query not supported? Should not happen. */
	if (!dev->driver->get_scanout_position) {
		DRM_ERROR("Called from driver w/o get_scanout_position()!?\n");
		return -EIO;
	}

	/* Durations of frames, lines, pixels in nanoseconds. */
	framedur_ns = refcrtc->framedur_ns;
	linedur_ns  = refcrtc->linedur_ns;
	pixeldur_ns = refcrtc->pixeldur_ns;

	/* If mode timing undefined, just return as no-op:
	 * Happens during initial modesetting of a crtc.
	 */
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	if (framedur_ns == 0) {
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		DRM_DEBUG("crtc %d: Noop due to uninitialized mode.\n", crtc);
		return -EAGAIN;
	}

	/* Get current scanout position with system timestamp.
	 * Repeat query up to DRM_TIMESTAMP_MAXRETRIES times
	 * if single query takes longer than max_error nanoseconds.
	 *
	 * This guarantees a tight bound on maximum error if
	 * code gets preempted or delayed for some reason.
	 */
	for (i = 0; i < DRM_TIMESTAMP_MAXRETRIES; i++) {
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		/*
		 * Get vertical and horizontal scanout position vpos, hpos,
		 * and bounding timestamps stime, etime, pre/post query.
		 */
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		vbl_status = dev->driver->get_scanout_position(dev, crtc, flags, &vpos,
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							       &hpos, &stime, &etime);
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		/*
		 * Get correction for CLOCK_MONOTONIC -> CLOCK_REALTIME if
		 * CLOCK_REALTIME is requested.
		 */
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		if (!drm_timestamp_monotonic)
			mono_time_offset = ktime_get_monotonic_offset();
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		/* Return as no-op if scanout query unsupported or failed. */
		if (!(vbl_status & DRM_SCANOUTPOS_VALID)) {
			DRM_DEBUG("crtc %d : scanoutpos query failed [%d].\n",
				  crtc, vbl_status);
			return -EIO;
		}

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		/* Compute uncertainty in timestamp of scanout position query. */
574
		duration_ns = ktime_to_ns(etime) - ktime_to_ns(stime);
575 576

		/* Accept result with <  max_error nsecs timing uncertainty. */
577
		if (duration_ns <= *max_error)
578 579 580 581 582 583
			break;
	}

	/* Noisy system timing? */
	if (i == DRM_TIMESTAMP_MAXRETRIES) {
		DRM_DEBUG("crtc %d: Noisy timestamp %d us > %d us [%d reps].\n",
584
			  crtc, duration_ns/1000, *max_error/1000, i);
585 586 587
	}

	/* Return upper bound of timestamp precision error. */
588
	*max_error = duration_ns;
589 590 591 592 593 594 595 596 597 598 599 600

	/* Check if in vblank area:
	 * vpos is >=0 in video scanout area, but negative
	 * within vblank area, counting down the number of lines until
	 * start of scanout.
	 */
	invbl = vbl_status & DRM_SCANOUTPOS_INVBL;

	/* Convert scanout position into elapsed time at raw_time query
	 * since start of scanout at first display scanline. delta_ns
	 * can be negative if start of scanout hasn't happened yet.
	 */
601
	delta_ns = vpos * linedur_ns + hpos * pixeldur_ns;
602

603 604 605
	if (!drm_timestamp_monotonic)
		etime = ktime_sub(etime, mono_time_offset);

606 607
	/* save this only for debugging purposes */
	tv_etime = ktime_to_timeval(etime);
608 609 610
	/* Subtract time delta from raw timestamp to get final
	 * vblank_time timestamp for end of vblank.
	 */
611 612 613 614
	if (delta_ns < 0)
		etime = ktime_add_ns(etime, -delta_ns);
	else
		etime = ktime_sub_ns(etime, delta_ns);
615
	*vblank_time = ktime_to_timeval(etime);
616

617 618
	DRM_DEBUG("crtc %d : v %d p(%d,%d)@ %ld.%ld -> %ld.%ld [e %d us, %d rep]\n",
		  crtc, (int)vbl_status, hpos, vpos,
619
		  (long)tv_etime.tv_sec, (long)tv_etime.tv_usec,
620
		  (long)vblank_time->tv_sec, (long)vblank_time->tv_usec,
621
		  duration_ns/1000, i);
622 623 624 625 626 627 628 629 630

	vbl_status = DRM_VBLANKTIME_SCANOUTPOS_METHOD;
	if (invbl)
		vbl_status |= DRM_VBLANKTIME_INVBL;

	return vbl_status;
}
EXPORT_SYMBOL(drm_calc_vbltimestamp_from_scanoutpos);

631 632 633 634 635 636 637 638 639 640 641
static struct timeval get_drm_timestamp(void)
{
	ktime_t now;

	now = ktime_get();
	if (!drm_timestamp_monotonic)
		now = ktime_sub(now, ktime_get_monotonic_offset());

	return ktime_to_timeval(now);
}

642 643 644 645 646 647 648 649 650 651 652 653 654 655 656 657 658 659 660 661 662 663 664
/**
 * drm_get_last_vbltimestamp - retrieve raw timestamp for the most recent
 * vblank interval.
 *
 * @dev: DRM device
 * @crtc: which crtc's vblank timestamp to retrieve
 * @tvblank: Pointer to target struct timeval which should receive the timestamp
 * @flags: Flags to pass to driver:
 *         0 = Default.
 *         DRM_CALLED_FROM_VBLIRQ = If function is called from vbl irq handler.
 *
 * Fetches the system timestamp corresponding to the time of the most recent
 * vblank interval on specified crtc. May call into kms-driver to
 * compute the timestamp with a high-precision GPU specific method.
 *
 * Returns zero if timestamp originates from uncorrected do_gettimeofday()
 * call, i.e., it isn't very precisely locked to the true vblank.
 *
 * Returns non-zero if timestamp is considered to be very precise.
 */
u32 drm_get_last_vbltimestamp(struct drm_device *dev, int crtc,
			      struct timeval *tvblank, unsigned flags)
{
665
	int ret;
666 667 668 669 670 671 672 673 674 675 676 677 678

	/* Define requested maximum error on timestamps (nanoseconds). */
	int max_error = (int) drm_timestamp_precision * 1000;

	/* Query driver if possible and precision timestamping enabled. */
	if (dev->driver->get_vblank_timestamp && (max_error > 0)) {
		ret = dev->driver->get_vblank_timestamp(dev, crtc, &max_error,
							tvblank, flags);
		if (ret > 0)
			return (u32) ret;
	}

	/* GPU high precision timestamp query unsupported or failed.
679
	 * Return current monotonic/gettimeofday timestamp as best estimate.
680
	 */
681
	*tvblank = get_drm_timestamp();
682 683 684 685 686

	return 0;
}
EXPORT_SYMBOL(drm_get_last_vbltimestamp);

687 688 689 690 691 692 693 694 695 696 697
/**
 * drm_vblank_count - retrieve "cooked" vblank counter value
 * @dev: DRM device
 * @crtc: which counter to retrieve
 *
 * Fetches the "cooked" vblank count value that represents the number of
 * vblank events since the system was booted, including lost events due to
 * modesetting activity.
 */
u32 drm_vblank_count(struct drm_device *dev, int crtc)
{
698
	return atomic_read(&dev->vblank[crtc].count);
699 700 701
}
EXPORT_SYMBOL(drm_vblank_count);

702 703 704 705 706 707 708 709 710 711 712 713 714 715 716 717 718 719 720 721 722 723 724 725 726
/**
 * drm_vblank_count_and_time - retrieve "cooked" vblank counter value
 * and the system timestamp corresponding to that vblank counter value.
 *
 * @dev: DRM device
 * @crtc: which counter to retrieve
 * @vblanktime: Pointer to struct timeval to receive the vblank timestamp.
 *
 * Fetches the "cooked" vblank count value that represents the number of
 * vblank events since the system was booted, including lost events due to
 * modesetting activity. Returns corresponding system timestamp of the time
 * of the vblank interval that corresponds to the current value vblank counter
 * value.
 */
u32 drm_vblank_count_and_time(struct drm_device *dev, int crtc,
			      struct timeval *vblanktime)
{
	u32 cur_vblank;

	/* Read timestamp from slot of _vblank_time ringbuffer
	 * that corresponds to current vblank count. Retry if
	 * count has incremented during readout. This works like
	 * a seqlock.
	 */
	do {
727
		cur_vblank = atomic_read(&dev->vblank[crtc].count);
728 729
		*vblanktime = vblanktimestamp(dev, crtc, cur_vblank);
		smp_rmb();
730
	} while (cur_vblank != atomic_read(&dev->vblank[crtc].count));
731 732 733 734 735

	return cur_vblank;
}
EXPORT_SYMBOL(drm_vblank_count_and_time);

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
static void send_vblank_event(struct drm_device *dev,
		struct drm_pending_vblank_event *e,
		unsigned long seq, struct timeval *now)
{
	WARN_ON_SMP(!spin_is_locked(&dev->event_lock));
	e->event.sequence = seq;
	e->event.tv_sec = now->tv_sec;
	e->event.tv_usec = now->tv_usec;

	list_add_tail(&e->base.link,
		      &e->base.file_priv->event_list);
	wake_up_interruptible(&e->base.file_priv->event_wait);
	trace_drm_vblank_event_delivered(e->base.pid, e->pipe,
					 e->event.sequence);
}

/**
 * drm_send_vblank_event - helper to send vblank event after pageflip
 * @dev: DRM device
 * @crtc: CRTC in question
 * @e: the event to send
 *
 * Updates sequence # and timestamp on event, and sends it to userspace.
 * Caller must hold event lock.
 */
void drm_send_vblank_event(struct drm_device *dev, int crtc,
		struct drm_pending_vblank_event *e)
{
	struct timeval now;
	unsigned int seq;
	if (crtc >= 0) {
		seq = drm_vblank_count_and_time(dev, crtc, &now);
	} else {
		seq = 0;
770 771

		now = get_drm_timestamp();
772
	}
773
	e->pipe = crtc;
774 775 776 777
	send_vblank_event(dev, e, seq, &now);
}
EXPORT_SYMBOL(drm_send_vblank_event);

778 779 780 781 782 783 784 785 786 787 788 789 790 791 792 793 794 795
/**
 * drm_update_vblank_count - update the master vblank counter
 * @dev: DRM device
 * @crtc: counter to update
 *
 * Call back into the driver to update the appropriate vblank counter
 * (specified by @crtc).  Deal with wraparound, if it occurred, and
 * update the last read value so we can deal with wraparound on the next
 * call if necessary.
 *
 * Only necessary when going from off->on, to account for frames we
 * didn't get an interrupt for.
 *
 * Note: caller must hold dev->vbl_lock since this reads & writes
 * device vblank fields.
 */
static void drm_update_vblank_count(struct drm_device *dev, int crtc)
{
796 797
	u32 cur_vblank, diff, tslot, rc;
	struct timeval t_vblank;
798 799 800 801 802 803 804

	/*
	 * Interrupts were disabled prior to this call, so deal with counter
	 * wrap if needed.
	 * NOTE!  It's possible we lost a full dev->max_vblank_count events
	 * here if the register is small or we had vblank interrupts off for
	 * a long time.
805 806 807 808 809
	 *
	 * We repeat the hardware vblank counter & timestamp query until
	 * we get consistent results. This to prevent races between gpu
	 * updating its hardware counter while we are retrieving the
	 * corresponding vblank timestamp.
810
	 */
811 812 813 814 815 816
	do {
		cur_vblank = dev->driver->get_vblank_counter(dev, crtc);
		rc = drm_get_last_vbltimestamp(dev, crtc, &t_vblank, 0);
	} while (cur_vblank != dev->driver->get_vblank_counter(dev, crtc));

	/* Deal with counter wrap */
817 818
	diff = cur_vblank - dev->vblank[crtc].last;
	if (cur_vblank < dev->vblank[crtc].last) {
819 820 821
		diff += dev->max_vblank_count;

		DRM_DEBUG("last_vblank[%d]=0x%x, cur_vblank=0x%x => diff=0x%x\n",
822
			  crtc, dev->vblank[crtc].last, cur_vblank, diff);
823 824 825 826 827
	}

	DRM_DEBUG("enabling vblank interrupts on crtc %d, missed %d\n",
		  crtc, diff);

828 829 830 831 832
	/* Reinitialize corresponding vblank timestamp if high-precision query
	 * available. Skip this step if query unsupported or failed. Will
	 * reinitialize delayed at next vblank interrupt in that case.
	 */
	if (rc) {
833
		tslot = atomic_read(&dev->vblank[crtc].count) + diff;
834 835 836
		vblanktimestamp(dev, crtc, tslot) = t_vblank;
	}

837
	smp_mb__before_atomic_inc();
838
	atomic_add(diff, &dev->vblank[crtc].count);
839
	smp_mb__after_atomic_inc();
840 841 842 843 844 845 846 847 848 849 850 851 852 853 854
}

/**
 * drm_vblank_get - get a reference count on vblank events
 * @dev: DRM device
 * @crtc: which CRTC to own
 *
 * Acquire a reference count on vblank events to avoid having them disabled
 * while in use.
 *
 * RETURNS
 * Zero on success, nonzero on failure.
 */
int drm_vblank_get(struct drm_device *dev, int crtc)
{
855
	unsigned long irqflags;
856 857 858 859
	int ret = 0;

	spin_lock_irqsave(&dev->vbl_lock, irqflags);
	/* Going from 0->1 means we have to enable interrupts again */
860
	if (atomic_add_return(1, &dev->vblank[crtc].refcount) == 1) {
861
		spin_lock(&dev->vblank_time_lock);
862
		if (!dev->vblank[crtc].enabled) {
863 864 865 866 867 868
			/* Enable vblank irqs under vblank_time_lock protection.
			 * All vblank count & timestamp updates are held off
			 * until we are done reinitializing master counter and
			 * timestamps. Filtercode in drm_handle_vblank() will
			 * prevent double-accounting of same vblank interval.
			 */
869
			ret = dev->driver->enable_vblank(dev, crtc);
870 871
			DRM_DEBUG("enabling vblank on crtc %d, ret: %d\n",
				  crtc, ret);
872
			if (ret)
873
				atomic_dec(&dev->vblank[crtc].refcount);
874
			else {
875
				dev->vblank[crtc].enabled = true;
876 877 878
				drm_update_vblank_count(dev, crtc);
			}
		}
879
		spin_unlock(&dev->vblank_time_lock);
880
	} else {
881 882
		if (!dev->vblank[crtc].enabled) {
			atomic_dec(&dev->vblank[crtc].refcount);
883
			ret = -EINVAL;
884 885 886 887 888 889 890 891 892 893 894 895 896 897
		}
	}
	spin_unlock_irqrestore(&dev->vbl_lock, irqflags);

	return ret;
}
EXPORT_SYMBOL(drm_vblank_get);

/**
 * drm_vblank_put - give up ownership of vblank events
 * @dev: DRM device
 * @crtc: which counter to give up
 *
 * Release ownership of a given vblank counter, turning off interrupts
898
 * if possible. Disable interrupts after drm_vblank_offdelay milliseconds.
899 900 901
 */
void drm_vblank_put(struct drm_device *dev, int crtc)
{
902
	BUG_ON(atomic_read(&dev->vblank[crtc].refcount) == 0);
903

904
	/* Last user schedules interrupt disable */
905
	if (atomic_dec_and_test(&dev->vblank[crtc].refcount) &&
906
	    (drm_vblank_offdelay > 0))
907
		mod_timer(&dev->vblank[crtc].disable_timer,
D
Daniel Vetter 已提交
908
			  jiffies + ((drm_vblank_offdelay * HZ)/1000));
909 910 911
}
EXPORT_SYMBOL(drm_vblank_put);

912 913 914 915 916
/**
 * drm_vblank_off - disable vblank events on a CRTC
 * @dev: DRM device
 * @crtc: CRTC in question
 */
917 918
void drm_vblank_off(struct drm_device *dev, int crtc)
{
919 920
	struct drm_pending_vblank_event *e, *t;
	struct timeval now;
921
	unsigned long irqflags;
922
	unsigned int seq;
923 924

	spin_lock_irqsave(&dev->vbl_lock, irqflags);
925
	vblank_disable_and_save(dev, crtc);
926
	wake_up(&dev->vblank[crtc].queue);
927 928 929

	/* Send any queued vblank events, lest the natives grow disquiet */
	seq = drm_vblank_count_and_time(dev, crtc, &now);
930 931

	spin_lock(&dev->event_lock);
932 933 934 935 936 937
	list_for_each_entry_safe(e, t, &dev->vblank_event_list, base.link) {
		if (e->pipe != crtc)
			continue;
		DRM_DEBUG("Sending premature vblank event on disable: \
			  wanted %d, current %d\n",
			  e->event.sequence, seq);
938
		list_del(&e->base.link);
939
		drm_vblank_put(dev, e->pipe);
940
		send_vblank_event(dev, e, seq, &now);
941
	}
942
	spin_unlock(&dev->event_lock);
943

944 945 946 947
	spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
}
EXPORT_SYMBOL(drm_vblank_off);

D
Dave Airlie 已提交
948 949 950 951 952 953 954 955 956 957
/**
 * drm_vblank_pre_modeset - account for vblanks across mode sets
 * @dev: DRM device
 * @crtc: CRTC in question
 *
 * Account for vblank events across mode setting events, which will likely
 * reset the hardware frame counter.
 */
void drm_vblank_pre_modeset(struct drm_device *dev, int crtc)
{
958
	/* vblank is not initialized (IRQ not installed ?), or has been freed */
959 960
	if (!dev->num_crtcs)
		return;
D
Dave Airlie 已提交
961 962 963 964 965 966 967
	/*
	 * To avoid all the problems that might happen if interrupts
	 * were enabled/disabled around or between these calls, we just
	 * have the kernel take a reference on the CRTC (just once though
	 * to avoid corrupting the count if multiple, mismatch calls occur),
	 * so that interrupts remain enabled in the interim.
	 */
968 969
	if (!dev->vblank[crtc].inmodeset) {
		dev->vblank[crtc].inmodeset = 0x1;
970
		if (drm_vblank_get(dev, crtc) == 0)
971
			dev->vblank[crtc].inmodeset |= 0x2;
D
Dave Airlie 已提交
972 973 974 975 976 977 978 979
	}
}
EXPORT_SYMBOL(drm_vblank_pre_modeset);

void drm_vblank_post_modeset(struct drm_device *dev, int crtc)
{
	unsigned long irqflags;

980 981 982 983
	/* vblank is not initialized (IRQ not installed ?), or has been freed */
	if (!dev->num_crtcs)
		return;

984
	if (dev->vblank[crtc].inmodeset) {
D
Dave Airlie 已提交
985
		spin_lock_irqsave(&dev->vbl_lock, irqflags);
986
		dev->vblank_disable_allowed = true;
D
Dave Airlie 已提交
987
		spin_unlock_irqrestore(&dev->vbl_lock, irqflags);
988

989
		if (dev->vblank[crtc].inmodeset & 0x2)
990 991
			drm_vblank_put(dev, crtc);

992
		dev->vblank[crtc].inmodeset = 0;
D
Dave Airlie 已提交
993 994 995 996
	}
}
EXPORT_SYMBOL(drm_vblank_post_modeset);

997 998 999 1000 1001 1002 1003 1004 1005 1006 1007 1008 1009 1010 1011
/**
 * drm_modeset_ctl - handle vblank event counter changes across mode switch
 * @DRM_IOCTL_ARGS: standard ioctl arguments
 *
 * Applications should call the %_DRM_PRE_MODESET and %_DRM_POST_MODESET
 * ioctls around modesetting so that any lost vblank events are accounted for.
 *
 * Generally the counter will reset across mode sets.  If interrupts are
 * enabled around this call, we don't have to do anything since the counter
 * will have already been incremented.
 */
int drm_modeset_ctl(struct drm_device *dev, void *data,
		    struct drm_file *file_priv)
{
	struct drm_modeset_ctl *modeset = data;
1012
	unsigned int crtc;
1013 1014 1015

	/* If drm_vblank_init() hasn't been called yet, just no-op */
	if (!dev->num_crtcs)
1016
		return 0;
1017

1018 1019 1020 1021
	/* KMS drivers handle this internally */
	if (drm_core_check_feature(dev, DRIVER_MODESET))
		return 0;

1022
	crtc = modeset->crtc;
1023 1024
	if (crtc >= dev->num_crtcs)
		return -EINVAL;
1025 1026 1027

	switch (modeset->cmd) {
	case _DRM_PRE_MODESET:
D
Dave Airlie 已提交
1028
		drm_vblank_pre_modeset(dev, crtc);
1029 1030
		break;
	case _DRM_POST_MODESET:
D
Dave Airlie 已提交
1031
		drm_vblank_post_modeset(dev, crtc);
1032 1033
		break;
	default:
1034
		return -EINVAL;
1035 1036
	}

1037
	return 0;
1038 1039
}

1040 1041 1042 1043 1044 1045 1046 1047
static int drm_queue_vblank_event(struct drm_device *dev, int pipe,
				  union drm_wait_vblank *vblwait,
				  struct drm_file *file_priv)
{
	struct drm_pending_vblank_event *e;
	struct timeval now;
	unsigned long flags;
	unsigned int seq;
1048
	int ret;
1049 1050

	e = kzalloc(sizeof *e, GFP_KERNEL);
1051 1052 1053 1054
	if (e == NULL) {
		ret = -ENOMEM;
		goto err_put;
	}
1055 1056

	e->pipe = pipe;
1057
	e->base.pid = current->pid;
1058 1059 1060 1061 1062 1063 1064 1065 1066 1067
	e->event.base.type = DRM_EVENT_VBLANK;
	e->event.base.length = sizeof e->event;
	e->event.user_data = vblwait->request.signal;
	e->base.event = &e->event.base;
	e->base.file_priv = file_priv;
	e->base.destroy = (void (*) (struct drm_pending_event *)) kfree;

	spin_lock_irqsave(&dev->event_lock, flags);

	if (file_priv->event_space < sizeof e->event) {
1068 1069
		ret = -EBUSY;
		goto err_unlock;
1070 1071 1072
	}

	file_priv->event_space -= sizeof e->event;
1073 1074
	seq = drm_vblank_count_and_time(dev, pipe, &now);

1075 1076 1077
	if ((vblwait->request.type & _DRM_VBLANK_NEXTONMISS) &&
	    (seq - vblwait->request.sequence) <= (1 << 23)) {
		vblwait->request.sequence = seq + 1;
1078
		vblwait->reply.sequence = vblwait->request.sequence;
1079 1080 1081 1082 1083
	}

	DRM_DEBUG("event on vblank count %d, current %d, crtc %d\n",
		  vblwait->request.sequence, seq, pipe);

1084 1085 1086
	trace_drm_vblank_event_queued(current->pid, pipe,
				      vblwait->request.sequence);

1087 1088
	e->event.sequence = vblwait->request.sequence;
	if ((seq - vblwait->request.sequence) <= (1 << 23)) {
1089
		drm_vblank_put(dev, pipe);
1090
		send_vblank_event(dev, e, seq, &now);
1091
		vblwait->reply.sequence = seq;
1092
	} else {
1093
		/* drm_handle_vblank_events will call drm_vblank_put */
1094
		list_add_tail(&e->base.link, &dev->vblank_event_list);
1095
		vblwait->reply.sequence = vblwait->request.sequence;
1096 1097 1098 1099 1100
	}

	spin_unlock_irqrestore(&dev->event_lock, flags);

	return 0;
1101 1102 1103 1104 1105

err_unlock:
	spin_unlock_irqrestore(&dev->event_lock, flags);
	kfree(e);
err_put:
1106
	drm_vblank_put(dev, pipe);
1107
	return ret;
1108 1109
}

L
Linus Torvalds 已提交
1110 1111 1112 1113
/**
 * Wait for VBLANK.
 *
 * \param inode device inode.
1114
 * \param file_priv DRM file private.
L
Linus Torvalds 已提交
1115 1116 1117 1118
 * \param cmd command.
 * \param data user argument, pointing to a drm_wait_vblank structure.
 * \return zero on success or a negative number on failure.
 *
1119 1120 1121 1122
 * This function enables the vblank interrupt on the pipe requested, then
 * sleeps waiting for the requested sequence number to occur, and drops
 * the vblank interrupt refcount afterwards. (vblank irq disable follows that
 * after a timeout with no further vblank waits scheduled).
L
Linus Torvalds 已提交
1123
 */
1124 1125
int drm_wait_vblank(struct drm_device *dev, void *data,
		    struct drm_file *file_priv)
L
Linus Torvalds 已提交
1126
{
1127
	union drm_wait_vblank *vblwait = data;
1128
	int ret;
1129
	unsigned int flags, seq, crtc, high_crtc;
L
Linus Torvalds 已提交
1130

1131 1132
	if (!dev->irq_enabled)
		return -EINVAL;
L
Linus Torvalds 已提交
1133

1134 1135 1136
	if (vblwait->request.type & _DRM_VBLANK_SIGNAL)
		return -EINVAL;

1137
	if (vblwait->request.type &
1138 1139
	    ~(_DRM_VBLANK_TYPES_MASK | _DRM_VBLANK_FLAGS_MASK |
	      _DRM_VBLANK_HIGH_CRTC_MASK)) {
1140
		DRM_ERROR("Unsupported type value 0x%x, supported mask 0x%x\n",
1141
			  vblwait->request.type,
1142 1143
			  (_DRM_VBLANK_TYPES_MASK | _DRM_VBLANK_FLAGS_MASK |
			   _DRM_VBLANK_HIGH_CRTC_MASK));
1144 1145 1146
		return -EINVAL;
	}

1147
	flags = vblwait->request.type & _DRM_VBLANK_FLAGS_MASK;
1148 1149 1150 1151 1152
	high_crtc = (vblwait->request.type & _DRM_VBLANK_HIGH_CRTC_MASK);
	if (high_crtc)
		crtc = high_crtc >> _DRM_VBLANK_HIGH_CRTC_SHIFT;
	else
		crtc = flags & _DRM_VBLANK_SECONDARY ? 1 : 0;
1153
	if (crtc >= dev->num_crtcs)
1154 1155
		return -EINVAL;

1156 1157
	ret = drm_vblank_get(dev, crtc);
	if (ret) {
1158
		DRM_DEBUG("failed to acquire vblank counter, %d\n", ret);
1159 1160 1161
		return ret;
	}
	seq = drm_vblank_count(dev, crtc);
1162

1163
	switch (vblwait->request.type & _DRM_VBLANK_TYPES_MASK) {
L
Linus Torvalds 已提交
1164
	case _DRM_VBLANK_RELATIVE:
1165 1166
		vblwait->request.sequence += seq;
		vblwait->request.type &= ~_DRM_VBLANK_RELATIVE;
L
Linus Torvalds 已提交
1167 1168 1169
	case _DRM_VBLANK_ABSOLUTE:
		break;
	default:
1170 1171
		ret = -EINVAL;
		goto done;
L
Linus Torvalds 已提交
1172 1173
	}

1174 1175 1176 1177
	if (flags & _DRM_VBLANK_EVENT) {
		/* must hold on to the vblank ref until the event fires
		 * drm_vblank_put will be called asynchronously
		 */
1178
		return drm_queue_vblank_event(dev, crtc, vblwait, file_priv);
1179
	}
1180

1181
	if ((flags & _DRM_VBLANK_NEXTONMISS) &&
1182 1183
	    (seq - vblwait->request.sequence) <= (1<<23)) {
		vblwait->request.sequence = seq + 1;
1184 1185
	}

1186 1187
	DRM_DEBUG("waiting on vblank count %d, crtc %d\n",
		  vblwait->request.sequence, crtc);
1188
	dev->vblank[crtc].last_wait = vblwait->request.sequence;
D
Daniel Vetter 已提交
1189
	DRM_WAIT_ON(ret, dev->vblank[crtc].queue, 3 * HZ,
1190 1191 1192
		    (((drm_vblank_count(dev, crtc) -
		       vblwait->request.sequence) <= (1 << 23)) ||
		     !dev->irq_enabled));
L
Linus Torvalds 已提交
1193

1194 1195
	if (ret != -EINTR) {
		struct timeval now;
L
Linus Torvalds 已提交
1196

1197
		vblwait->reply.sequence = drm_vblank_count_and_time(dev, crtc, &now);
1198 1199
		vblwait->reply.tval_sec = now.tv_sec;
		vblwait->reply.tval_usec = now.tv_usec;
1200

1201 1202
		DRM_DEBUG("returning %d to client\n",
			  vblwait->reply.sequence);
L
Linus Torvalds 已提交
1203
	} else {
1204
		DRM_DEBUG("vblank wait interrupted by signal\n");
L
Linus Torvalds 已提交
1205 1206
	}

1207 1208
done:
	drm_vblank_put(dev, crtc);
L
Linus Torvalds 已提交
1209 1210 1211
	return ret;
}

1212
static void drm_handle_vblank_events(struct drm_device *dev, int crtc)
1213 1214 1215 1216 1217 1218
{
	struct drm_pending_vblank_event *e, *t;
	struct timeval now;
	unsigned long flags;
	unsigned int seq;

1219
	seq = drm_vblank_count_and_time(dev, crtc, &now);
1220 1221 1222 1223 1224 1225 1226 1227 1228 1229 1230 1231

	spin_lock_irqsave(&dev->event_lock, flags);

	list_for_each_entry_safe(e, t, &dev->vblank_event_list, base.link) {
		if (e->pipe != crtc)
			continue;
		if ((seq - e->event.sequence) > (1<<23))
			continue;

		DRM_DEBUG("vblank event on %d, current %d\n",
			  e->event.sequence, seq);

1232
		list_del(&e->base.link);
1233
		drm_vblank_put(dev, e->pipe);
1234
		send_vblank_event(dev, e, seq, &now);
1235 1236 1237
	}

	spin_unlock_irqrestore(&dev->event_lock, flags);
J
Jesse Barnes 已提交
1238 1239

	trace_drm_vblank_event(crtc, seq);
1240 1241
}

1242 1243 1244 1245 1246 1247 1248 1249
/**
 * drm_handle_vblank - handle a vblank event
 * @dev: DRM device
 * @crtc: where this event occurred
 *
 * Drivers should call this routine in their vblank interrupt handlers to
 * update the vblank counter and send any signals that may be pending.
 */
1250
bool drm_handle_vblank(struct drm_device *dev, int crtc)
1251
{
1252 1253 1254 1255 1256
	u32 vblcount;
	s64 diff_ns;
	struct timeval tvblank;
	unsigned long irqflags;

1257
	if (!dev->num_crtcs)
1258
		return false;
1259

1260 1261 1262 1263 1264 1265 1266
	/* Need timestamp lock to prevent concurrent execution with
	 * vblank enable/disable, as this would cause inconsistent
	 * or corrupted timestamps and vblank counts.
	 */
	spin_lock_irqsave(&dev->vblank_time_lock, irqflags);

	/* Vblank irq handling disabled. Nothing to do. */
1267
	if (!dev->vblank[crtc].enabled) {
1268
		spin_unlock_irqrestore(&dev->vblank_time_lock, irqflags);
1269
		return false;
1270 1271 1272 1273 1274 1275 1276
	}

	/* Fetch corresponding timestamp for this vblank interval from
	 * driver and store it in proper slot of timestamp ringbuffer.
	 */

	/* Get current timestamp and count. */
1277
	vblcount = atomic_read(&dev->vblank[crtc].count);
1278 1279 1280 1281 1282 1283 1284 1285 1286 1287 1288 1289 1290 1291 1292
	drm_get_last_vbltimestamp(dev, crtc, &tvblank, DRM_CALLED_FROM_VBLIRQ);

	/* Compute time difference to timestamp of last vblank */
	diff_ns = timeval_to_ns(&tvblank) -
		  timeval_to_ns(&vblanktimestamp(dev, crtc, vblcount));

	/* Update vblank timestamp and count if at least
	 * DRM_REDUNDANT_VBLIRQ_THRESH_NS nanoseconds
	 * difference between last stored timestamp and current
	 * timestamp. A smaller difference means basically
	 * identical timestamps. Happens if this vblank has
	 * been already processed and this is a redundant call,
	 * e.g., due to spurious vblank interrupts. We need to
	 * ignore those for accounting.
	 */
1293
	if (abs64(diff_ns) > DRM_REDUNDANT_VBLIRQ_THRESH_NS) {
1294 1295 1296 1297 1298 1299
		/* Store new timestamp in ringbuffer. */
		vblanktimestamp(dev, crtc, vblcount + 1) = tvblank;

		/* Increment cooked vblank count. This also atomically commits
		 * the timestamp computed above.
		 */
1300
		smp_mb__before_atomic_inc();
1301
		atomic_inc(&dev->vblank[crtc].count);
1302
		smp_mb__after_atomic_inc();
1303 1304 1305 1306 1307
	} else {
		DRM_DEBUG("crtc %d: Redundant vblirq ignored. diff_ns = %d\n",
			  crtc, (int) diff_ns);
	}

1308
	wake_up(&dev->vblank[crtc].queue);
1309
	drm_handle_vblank_events(dev, crtc);
1310 1311

	spin_unlock_irqrestore(&dev->vblank_time_lock, irqflags);
1312
	return true;
1313 1314
}
EXPORT_SYMBOL(drm_handle_vblank);