162306a36Sopenharmony_ci// SPDX-License-Identifier: GPL-2.0 OR MIT
262306a36Sopenharmony_ci/**************************************************************************
362306a36Sopenharmony_ci *
462306a36Sopenharmony_ci * Copyright 2009-2015 VMware, Inc., Palo Alto, CA., USA
562306a36Sopenharmony_ci *
662306a36Sopenharmony_ci * Permission is hereby granted, free of charge, to any person obtaining a
762306a36Sopenharmony_ci * copy of this software and associated documentation files (the
862306a36Sopenharmony_ci * "Software"), to deal in the Software without restriction, including
962306a36Sopenharmony_ci * without limitation the rights to use, copy, modify, merge, publish,
1062306a36Sopenharmony_ci * distribute, sub license, and/or sell copies of the Software, and to
1162306a36Sopenharmony_ci * permit persons to whom the Software is furnished to do so, subject to
1262306a36Sopenharmony_ci * the following conditions:
1362306a36Sopenharmony_ci *
1462306a36Sopenharmony_ci * The above copyright notice and this permission notice (including the
1562306a36Sopenharmony_ci * next paragraph) shall be included in all copies or substantial portions
1662306a36Sopenharmony_ci * of the Software.
1762306a36Sopenharmony_ci *
1862306a36Sopenharmony_ci * THE SOFTWARE IS PROVIDED "AS IS", WITHOUT WARRANTY OF ANY KIND, EXPRESS OR
1962306a36Sopenharmony_ci * IMPLIED, INCLUDING BUT NOT LIMITED TO THE WARRANTIES OF MERCHANTABILITY,
2062306a36Sopenharmony_ci * FITNESS FOR A PARTICULAR PURPOSE AND NON-INFRINGEMENT. IN NO EVENT SHALL
2162306a36Sopenharmony_ci * THE COPYRIGHT HOLDERS, AUTHORS AND/OR ITS SUPPLIERS BE LIABLE FOR ANY CLAIM,
2262306a36Sopenharmony_ci * DAMAGES OR OTHER LIABILITY, WHETHER IN AN ACTION OF CONTRACT, TORT OR
2362306a36Sopenharmony_ci * OTHERWISE, ARISING FROM, OUT OF OR IN CONNECTION WITH THE SOFTWARE OR THE
2462306a36Sopenharmony_ci * USE OR OTHER DEALINGS IN THE SOFTWARE.
2562306a36Sopenharmony_ci *
2662306a36Sopenharmony_ci **************************************************************************/
2762306a36Sopenharmony_ci
2862306a36Sopenharmony_ci#include <linux/pci.h>
2962306a36Sopenharmony_ci#include <linux/sched/signal.h>
3062306a36Sopenharmony_ci
3162306a36Sopenharmony_ci#include "vmwgfx_drv.h"
3262306a36Sopenharmony_ci
3362306a36Sopenharmony_ci#define VMW_FENCE_WRAP (1 << 24)
3462306a36Sopenharmony_ci
3562306a36Sopenharmony_cistatic u32 vmw_irqflag_fence_goal(struct vmw_private *vmw)
3662306a36Sopenharmony_ci{
3762306a36Sopenharmony_ci	if ((vmw->capabilities2 & SVGA_CAP2_EXTRA_REGS) != 0)
3862306a36Sopenharmony_ci		return SVGA_IRQFLAG_REG_FENCE_GOAL;
3962306a36Sopenharmony_ci	else
4062306a36Sopenharmony_ci		return SVGA_IRQFLAG_FENCE_GOAL;
4162306a36Sopenharmony_ci}
4262306a36Sopenharmony_ci
4362306a36Sopenharmony_ci/**
4462306a36Sopenharmony_ci * vmw_thread_fn - Deferred (process context) irq handler
4562306a36Sopenharmony_ci *
4662306a36Sopenharmony_ci * @irq: irq number
4762306a36Sopenharmony_ci * @arg: Closure argument. Pointer to a struct drm_device cast to void *
4862306a36Sopenharmony_ci *
4962306a36Sopenharmony_ci * This function implements the deferred part of irq processing.
5062306a36Sopenharmony_ci * The function is guaranteed to run at least once after the
5162306a36Sopenharmony_ci * vmw_irq_handler has returned with IRQ_WAKE_THREAD.
5262306a36Sopenharmony_ci *
5362306a36Sopenharmony_ci */
5462306a36Sopenharmony_cistatic irqreturn_t vmw_thread_fn(int irq, void *arg)
5562306a36Sopenharmony_ci{
5662306a36Sopenharmony_ci	struct drm_device *dev = (struct drm_device *)arg;
5762306a36Sopenharmony_ci	struct vmw_private *dev_priv = vmw_priv(dev);
5862306a36Sopenharmony_ci	irqreturn_t ret = IRQ_NONE;
5962306a36Sopenharmony_ci
6062306a36Sopenharmony_ci	if (test_and_clear_bit(VMW_IRQTHREAD_FENCE,
6162306a36Sopenharmony_ci			       dev_priv->irqthread_pending)) {
6262306a36Sopenharmony_ci		vmw_fences_update(dev_priv->fman);
6362306a36Sopenharmony_ci		wake_up_all(&dev_priv->fence_queue);
6462306a36Sopenharmony_ci		ret = IRQ_HANDLED;
6562306a36Sopenharmony_ci	}
6662306a36Sopenharmony_ci
6762306a36Sopenharmony_ci	if (test_and_clear_bit(VMW_IRQTHREAD_CMDBUF,
6862306a36Sopenharmony_ci			       dev_priv->irqthread_pending)) {
6962306a36Sopenharmony_ci		vmw_cmdbuf_irqthread(dev_priv->cman);
7062306a36Sopenharmony_ci		ret = IRQ_HANDLED;
7162306a36Sopenharmony_ci	}
7262306a36Sopenharmony_ci
7362306a36Sopenharmony_ci	return ret;
7462306a36Sopenharmony_ci}
7562306a36Sopenharmony_ci
7662306a36Sopenharmony_ci/**
7762306a36Sopenharmony_ci * vmw_irq_handler: irq handler
7862306a36Sopenharmony_ci *
7962306a36Sopenharmony_ci * @irq: irq number
8062306a36Sopenharmony_ci * @arg: Closure argument. Pointer to a struct drm_device cast to void *
8162306a36Sopenharmony_ci *
8262306a36Sopenharmony_ci * This function implements the quick part of irq processing.
8362306a36Sopenharmony_ci * The function performs fast actions like clearing the device interrupt
8462306a36Sopenharmony_ci * flags and also reasonably quick actions like waking processes waiting for
8562306a36Sopenharmony_ci * FIFO space. Other IRQ actions are deferred to the IRQ thread.
8662306a36Sopenharmony_ci */
8762306a36Sopenharmony_cistatic irqreturn_t vmw_irq_handler(int irq, void *arg)
8862306a36Sopenharmony_ci{
8962306a36Sopenharmony_ci	struct drm_device *dev = (struct drm_device *)arg;
9062306a36Sopenharmony_ci	struct vmw_private *dev_priv = vmw_priv(dev);
9162306a36Sopenharmony_ci	uint32_t status, masked_status;
9262306a36Sopenharmony_ci	irqreturn_t ret = IRQ_HANDLED;
9362306a36Sopenharmony_ci
9462306a36Sopenharmony_ci	status = vmw_irq_status_read(dev_priv);
9562306a36Sopenharmony_ci	masked_status = status & READ_ONCE(dev_priv->irq_mask);
9662306a36Sopenharmony_ci
9762306a36Sopenharmony_ci	if (likely(status))
9862306a36Sopenharmony_ci		vmw_irq_status_write(dev_priv, status);
9962306a36Sopenharmony_ci
10062306a36Sopenharmony_ci	if (!status)
10162306a36Sopenharmony_ci		return IRQ_NONE;
10262306a36Sopenharmony_ci
10362306a36Sopenharmony_ci	if (masked_status & SVGA_IRQFLAG_FIFO_PROGRESS)
10462306a36Sopenharmony_ci		wake_up_all(&dev_priv->fifo_queue);
10562306a36Sopenharmony_ci
10662306a36Sopenharmony_ci	if ((masked_status & (SVGA_IRQFLAG_ANY_FENCE |
10762306a36Sopenharmony_ci			      vmw_irqflag_fence_goal(dev_priv))) &&
10862306a36Sopenharmony_ci	    !test_and_set_bit(VMW_IRQTHREAD_FENCE, dev_priv->irqthread_pending))
10962306a36Sopenharmony_ci		ret = IRQ_WAKE_THREAD;
11062306a36Sopenharmony_ci
11162306a36Sopenharmony_ci	if ((masked_status & (SVGA_IRQFLAG_COMMAND_BUFFER |
11262306a36Sopenharmony_ci			      SVGA_IRQFLAG_ERROR)) &&
11362306a36Sopenharmony_ci	    !test_and_set_bit(VMW_IRQTHREAD_CMDBUF,
11462306a36Sopenharmony_ci			      dev_priv->irqthread_pending))
11562306a36Sopenharmony_ci		ret = IRQ_WAKE_THREAD;
11662306a36Sopenharmony_ci
11762306a36Sopenharmony_ci	return ret;
11862306a36Sopenharmony_ci}
11962306a36Sopenharmony_ci
12062306a36Sopenharmony_cistatic bool vmw_fifo_idle(struct vmw_private *dev_priv, uint32_t seqno)
12162306a36Sopenharmony_ci{
12262306a36Sopenharmony_ci
12362306a36Sopenharmony_ci	return (vmw_read(dev_priv, SVGA_REG_BUSY) == 0);
12462306a36Sopenharmony_ci}
12562306a36Sopenharmony_ci
12662306a36Sopenharmony_civoid vmw_update_seqno(struct vmw_private *dev_priv)
12762306a36Sopenharmony_ci{
12862306a36Sopenharmony_ci	uint32_t seqno = vmw_fence_read(dev_priv);
12962306a36Sopenharmony_ci
13062306a36Sopenharmony_ci	if (dev_priv->last_read_seqno != seqno) {
13162306a36Sopenharmony_ci		dev_priv->last_read_seqno = seqno;
13262306a36Sopenharmony_ci		vmw_fences_update(dev_priv->fman);
13362306a36Sopenharmony_ci	}
13462306a36Sopenharmony_ci}
13562306a36Sopenharmony_ci
13662306a36Sopenharmony_cibool vmw_seqno_passed(struct vmw_private *dev_priv,
13762306a36Sopenharmony_ci			 uint32_t seqno)
13862306a36Sopenharmony_ci{
13962306a36Sopenharmony_ci	bool ret;
14062306a36Sopenharmony_ci
14162306a36Sopenharmony_ci	if (likely(dev_priv->last_read_seqno - seqno < VMW_FENCE_WRAP))
14262306a36Sopenharmony_ci		return true;
14362306a36Sopenharmony_ci
14462306a36Sopenharmony_ci	vmw_update_seqno(dev_priv);
14562306a36Sopenharmony_ci	if (likely(dev_priv->last_read_seqno - seqno < VMW_FENCE_WRAP))
14662306a36Sopenharmony_ci		return true;
14762306a36Sopenharmony_ci
14862306a36Sopenharmony_ci	if (!vmw_has_fences(dev_priv) && vmw_fifo_idle(dev_priv, seqno))
14962306a36Sopenharmony_ci		return true;
15062306a36Sopenharmony_ci
15162306a36Sopenharmony_ci	/**
15262306a36Sopenharmony_ci	 * Then check if the seqno is higher than what we've actually
15362306a36Sopenharmony_ci	 * emitted. Then the fence is stale and signaled.
15462306a36Sopenharmony_ci	 */
15562306a36Sopenharmony_ci
15662306a36Sopenharmony_ci	ret = ((atomic_read(&dev_priv->marker_seq) - seqno)
15762306a36Sopenharmony_ci	       > VMW_FENCE_WRAP);
15862306a36Sopenharmony_ci
15962306a36Sopenharmony_ci	return ret;
16062306a36Sopenharmony_ci}
16162306a36Sopenharmony_ci
16262306a36Sopenharmony_ciint vmw_fallback_wait(struct vmw_private *dev_priv,
16362306a36Sopenharmony_ci		      bool lazy,
16462306a36Sopenharmony_ci		      bool fifo_idle,
16562306a36Sopenharmony_ci		      uint32_t seqno,
16662306a36Sopenharmony_ci		      bool interruptible,
16762306a36Sopenharmony_ci		      unsigned long timeout)
16862306a36Sopenharmony_ci{
16962306a36Sopenharmony_ci	struct vmw_fifo_state *fifo_state = dev_priv->fifo;
17062306a36Sopenharmony_ci	bool fifo_down = false;
17162306a36Sopenharmony_ci
17262306a36Sopenharmony_ci	uint32_t count = 0;
17362306a36Sopenharmony_ci	uint32_t signal_seq;
17462306a36Sopenharmony_ci	int ret;
17562306a36Sopenharmony_ci	unsigned long end_jiffies = jiffies + timeout;
17662306a36Sopenharmony_ci	bool (*wait_condition)(struct vmw_private *, uint32_t);
17762306a36Sopenharmony_ci	DEFINE_WAIT(__wait);
17862306a36Sopenharmony_ci
17962306a36Sopenharmony_ci	wait_condition = (fifo_idle) ? &vmw_fifo_idle :
18062306a36Sopenharmony_ci		&vmw_seqno_passed;
18162306a36Sopenharmony_ci
18262306a36Sopenharmony_ci	/**
18362306a36Sopenharmony_ci	 * Block command submission while waiting for idle.
18462306a36Sopenharmony_ci	 */
18562306a36Sopenharmony_ci
18662306a36Sopenharmony_ci	if (fifo_idle) {
18762306a36Sopenharmony_ci		if (dev_priv->cman) {
18862306a36Sopenharmony_ci			ret = vmw_cmdbuf_idle(dev_priv->cman, interruptible,
18962306a36Sopenharmony_ci					      10*HZ);
19062306a36Sopenharmony_ci			if (ret)
19162306a36Sopenharmony_ci				goto out_err;
19262306a36Sopenharmony_ci		} else if (fifo_state) {
19362306a36Sopenharmony_ci			down_read(&fifo_state->rwsem);
19462306a36Sopenharmony_ci			fifo_down = true;
19562306a36Sopenharmony_ci		}
19662306a36Sopenharmony_ci	}
19762306a36Sopenharmony_ci
19862306a36Sopenharmony_ci	signal_seq = atomic_read(&dev_priv->marker_seq);
19962306a36Sopenharmony_ci	ret = 0;
20062306a36Sopenharmony_ci
20162306a36Sopenharmony_ci	for (;;) {
20262306a36Sopenharmony_ci		prepare_to_wait(&dev_priv->fence_queue, &__wait,
20362306a36Sopenharmony_ci				(interruptible) ?
20462306a36Sopenharmony_ci				TASK_INTERRUPTIBLE : TASK_UNINTERRUPTIBLE);
20562306a36Sopenharmony_ci		if (wait_condition(dev_priv, seqno))
20662306a36Sopenharmony_ci			break;
20762306a36Sopenharmony_ci		if (time_after_eq(jiffies, end_jiffies)) {
20862306a36Sopenharmony_ci			DRM_ERROR("SVGA device lockup.\n");
20962306a36Sopenharmony_ci			break;
21062306a36Sopenharmony_ci		}
21162306a36Sopenharmony_ci		if (lazy)
21262306a36Sopenharmony_ci			schedule_timeout(1);
21362306a36Sopenharmony_ci		else if ((++count & 0x0F) == 0) {
21462306a36Sopenharmony_ci			/**
21562306a36Sopenharmony_ci			 * FIXME: Use schedule_hr_timeout here for
21662306a36Sopenharmony_ci			 * newer kernels and lower CPU utilization.
21762306a36Sopenharmony_ci			 */
21862306a36Sopenharmony_ci
21962306a36Sopenharmony_ci			__set_current_state(TASK_RUNNING);
22062306a36Sopenharmony_ci			schedule();
22162306a36Sopenharmony_ci			__set_current_state((interruptible) ?
22262306a36Sopenharmony_ci					    TASK_INTERRUPTIBLE :
22362306a36Sopenharmony_ci					    TASK_UNINTERRUPTIBLE);
22462306a36Sopenharmony_ci		}
22562306a36Sopenharmony_ci		if (interruptible && signal_pending(current)) {
22662306a36Sopenharmony_ci			ret = -ERESTARTSYS;
22762306a36Sopenharmony_ci			break;
22862306a36Sopenharmony_ci		}
22962306a36Sopenharmony_ci	}
23062306a36Sopenharmony_ci	finish_wait(&dev_priv->fence_queue, &__wait);
23162306a36Sopenharmony_ci	if (ret == 0 && fifo_idle && fifo_state)
23262306a36Sopenharmony_ci		vmw_fence_write(dev_priv, signal_seq);
23362306a36Sopenharmony_ci
23462306a36Sopenharmony_ci	wake_up_all(&dev_priv->fence_queue);
23562306a36Sopenharmony_ciout_err:
23662306a36Sopenharmony_ci	if (fifo_down)
23762306a36Sopenharmony_ci		up_read(&fifo_state->rwsem);
23862306a36Sopenharmony_ci
23962306a36Sopenharmony_ci	return ret;
24062306a36Sopenharmony_ci}
24162306a36Sopenharmony_ci
24262306a36Sopenharmony_civoid vmw_generic_waiter_add(struct vmw_private *dev_priv,
24362306a36Sopenharmony_ci			    u32 flag, int *waiter_count)
24462306a36Sopenharmony_ci{
24562306a36Sopenharmony_ci	spin_lock_bh(&dev_priv->waiter_lock);
24662306a36Sopenharmony_ci	if ((*waiter_count)++ == 0) {
24762306a36Sopenharmony_ci		vmw_irq_status_write(dev_priv, flag);
24862306a36Sopenharmony_ci		dev_priv->irq_mask |= flag;
24962306a36Sopenharmony_ci		vmw_write(dev_priv, SVGA_REG_IRQMASK, dev_priv->irq_mask);
25062306a36Sopenharmony_ci	}
25162306a36Sopenharmony_ci	spin_unlock_bh(&dev_priv->waiter_lock);
25262306a36Sopenharmony_ci}
25362306a36Sopenharmony_ci
25462306a36Sopenharmony_civoid vmw_generic_waiter_remove(struct vmw_private *dev_priv,
25562306a36Sopenharmony_ci			       u32 flag, int *waiter_count)
25662306a36Sopenharmony_ci{
25762306a36Sopenharmony_ci	spin_lock_bh(&dev_priv->waiter_lock);
25862306a36Sopenharmony_ci	if (--(*waiter_count) == 0) {
25962306a36Sopenharmony_ci		dev_priv->irq_mask &= ~flag;
26062306a36Sopenharmony_ci		vmw_write(dev_priv, SVGA_REG_IRQMASK, dev_priv->irq_mask);
26162306a36Sopenharmony_ci	}
26262306a36Sopenharmony_ci	spin_unlock_bh(&dev_priv->waiter_lock);
26362306a36Sopenharmony_ci}
26462306a36Sopenharmony_ci
26562306a36Sopenharmony_civoid vmw_seqno_waiter_add(struct vmw_private *dev_priv)
26662306a36Sopenharmony_ci{
26762306a36Sopenharmony_ci	vmw_generic_waiter_add(dev_priv, SVGA_IRQFLAG_ANY_FENCE,
26862306a36Sopenharmony_ci			       &dev_priv->fence_queue_waiters);
26962306a36Sopenharmony_ci}
27062306a36Sopenharmony_ci
27162306a36Sopenharmony_civoid vmw_seqno_waiter_remove(struct vmw_private *dev_priv)
27262306a36Sopenharmony_ci{
27362306a36Sopenharmony_ci	vmw_generic_waiter_remove(dev_priv, SVGA_IRQFLAG_ANY_FENCE,
27462306a36Sopenharmony_ci				  &dev_priv->fence_queue_waiters);
27562306a36Sopenharmony_ci}
27662306a36Sopenharmony_ci
27762306a36Sopenharmony_civoid vmw_goal_waiter_add(struct vmw_private *dev_priv)
27862306a36Sopenharmony_ci{
27962306a36Sopenharmony_ci	vmw_generic_waiter_add(dev_priv, vmw_irqflag_fence_goal(dev_priv),
28062306a36Sopenharmony_ci			       &dev_priv->goal_queue_waiters);
28162306a36Sopenharmony_ci}
28262306a36Sopenharmony_ci
28362306a36Sopenharmony_civoid vmw_goal_waiter_remove(struct vmw_private *dev_priv)
28462306a36Sopenharmony_ci{
28562306a36Sopenharmony_ci	vmw_generic_waiter_remove(dev_priv, vmw_irqflag_fence_goal(dev_priv),
28662306a36Sopenharmony_ci				  &dev_priv->goal_queue_waiters);
28762306a36Sopenharmony_ci}
28862306a36Sopenharmony_ci
28962306a36Sopenharmony_cistatic void vmw_irq_preinstall(struct drm_device *dev)
29062306a36Sopenharmony_ci{
29162306a36Sopenharmony_ci	struct vmw_private *dev_priv = vmw_priv(dev);
29262306a36Sopenharmony_ci	uint32_t status;
29362306a36Sopenharmony_ci
29462306a36Sopenharmony_ci	status = vmw_irq_status_read(dev_priv);
29562306a36Sopenharmony_ci	vmw_irq_status_write(dev_priv, status);
29662306a36Sopenharmony_ci}
29762306a36Sopenharmony_ci
29862306a36Sopenharmony_civoid vmw_irq_uninstall(struct drm_device *dev)
29962306a36Sopenharmony_ci{
30062306a36Sopenharmony_ci	struct vmw_private *dev_priv = vmw_priv(dev);
30162306a36Sopenharmony_ci	struct pci_dev *pdev = to_pci_dev(dev->dev);
30262306a36Sopenharmony_ci	uint32_t status;
30362306a36Sopenharmony_ci	u32 i;
30462306a36Sopenharmony_ci
30562306a36Sopenharmony_ci	if (!(dev_priv->capabilities & SVGA_CAP_IRQMASK))
30662306a36Sopenharmony_ci		return;
30762306a36Sopenharmony_ci
30862306a36Sopenharmony_ci	vmw_write(dev_priv, SVGA_REG_IRQMASK, 0);
30962306a36Sopenharmony_ci
31062306a36Sopenharmony_ci	status = vmw_irq_status_read(dev_priv);
31162306a36Sopenharmony_ci	vmw_irq_status_write(dev_priv, status);
31262306a36Sopenharmony_ci
31362306a36Sopenharmony_ci	for (i = 0; i < dev_priv->num_irq_vectors; ++i)
31462306a36Sopenharmony_ci		free_irq(dev_priv->irqs[i], dev);
31562306a36Sopenharmony_ci
31662306a36Sopenharmony_ci	pci_free_irq_vectors(pdev);
31762306a36Sopenharmony_ci	dev_priv->num_irq_vectors = 0;
31862306a36Sopenharmony_ci}
31962306a36Sopenharmony_ci
32062306a36Sopenharmony_ci/**
32162306a36Sopenharmony_ci * vmw_irq_install - Install the irq handlers
32262306a36Sopenharmony_ci *
32362306a36Sopenharmony_ci * @dev_priv:  Pointer to the vmw_private device.
32462306a36Sopenharmony_ci * Return:  Zero if successful. Negative number otherwise.
32562306a36Sopenharmony_ci */
32662306a36Sopenharmony_ciint vmw_irq_install(struct vmw_private *dev_priv)
32762306a36Sopenharmony_ci{
32862306a36Sopenharmony_ci	struct pci_dev *pdev = to_pci_dev(dev_priv->drm.dev);
32962306a36Sopenharmony_ci	struct drm_device *dev = &dev_priv->drm;
33062306a36Sopenharmony_ci	int ret;
33162306a36Sopenharmony_ci	int nvec;
33262306a36Sopenharmony_ci	int i = 0;
33362306a36Sopenharmony_ci
33462306a36Sopenharmony_ci	BUILD_BUG_ON((SVGA_IRQFLAG_MAX >> VMWGFX_MAX_NUM_IRQS) != 1);
33562306a36Sopenharmony_ci	BUG_ON(VMWGFX_MAX_NUM_IRQS != get_count_order(SVGA_IRQFLAG_MAX));
33662306a36Sopenharmony_ci
33762306a36Sopenharmony_ci	nvec = pci_alloc_irq_vectors(pdev, 1, VMWGFX_MAX_NUM_IRQS,
33862306a36Sopenharmony_ci				     PCI_IRQ_ALL_TYPES);
33962306a36Sopenharmony_ci
34062306a36Sopenharmony_ci	if (nvec <= 0) {
34162306a36Sopenharmony_ci		drm_err(&dev_priv->drm,
34262306a36Sopenharmony_ci			"IRQ's are unavailable, nvec: %d\n", nvec);
34362306a36Sopenharmony_ci		ret = nvec;
34462306a36Sopenharmony_ci		goto done;
34562306a36Sopenharmony_ci	}
34662306a36Sopenharmony_ci
34762306a36Sopenharmony_ci	vmw_irq_preinstall(dev);
34862306a36Sopenharmony_ci
34962306a36Sopenharmony_ci	for (i = 0; i < nvec; ++i) {
35062306a36Sopenharmony_ci		ret = pci_irq_vector(pdev, i);
35162306a36Sopenharmony_ci		if (ret < 0) {
35262306a36Sopenharmony_ci			drm_err(&dev_priv->drm,
35362306a36Sopenharmony_ci				"failed getting irq vector: %d\n", ret);
35462306a36Sopenharmony_ci			goto done;
35562306a36Sopenharmony_ci		}
35662306a36Sopenharmony_ci		dev_priv->irqs[i] = ret;
35762306a36Sopenharmony_ci
35862306a36Sopenharmony_ci		ret = request_threaded_irq(dev_priv->irqs[i], vmw_irq_handler, vmw_thread_fn,
35962306a36Sopenharmony_ci					   IRQF_SHARED, VMWGFX_DRIVER_NAME, dev);
36062306a36Sopenharmony_ci		if (ret != 0) {
36162306a36Sopenharmony_ci			drm_err(&dev_priv->drm,
36262306a36Sopenharmony_ci				"Failed installing irq(%d): %d\n",
36362306a36Sopenharmony_ci				dev_priv->irqs[i], ret);
36462306a36Sopenharmony_ci			goto done;
36562306a36Sopenharmony_ci		}
36662306a36Sopenharmony_ci	}
36762306a36Sopenharmony_ci
36862306a36Sopenharmony_cidone:
36962306a36Sopenharmony_ci	dev_priv->num_irq_vectors = i;
37062306a36Sopenharmony_ci	return ret;
37162306a36Sopenharmony_ci}
372