i915_vma.c 35.1 KB
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/*
 * Copyright © 2016 Intel Corporation
 *
 * 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
 * THE AUTHORS OR COPYRIGHT HOLDERS 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 <linux/sched/mm.h>
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#include <drm/drm_gem.h>
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#include "display/intel_frontbuffer.h"

#include "gt/intel_engine.h"
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#include "gt/intel_engine_heartbeat.h"
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#include "gt/intel_gt.h"
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#include "gt/intel_gt_requests.h"
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#include "i915_drv.h"
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#include "i915_globals.h"
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#include "i915_sw_fence_work.h"
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#include "i915_trace.h"
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#include "i915_vma.h"
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static struct i915_global_vma {
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	struct i915_global base;
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	struct kmem_cache *slab_vmas;
} global;

struct i915_vma *i915_vma_alloc(void)
{
	return kmem_cache_zalloc(global.slab_vmas, GFP_KERNEL);
}

void i915_vma_free(struct i915_vma *vma)
{
	return kmem_cache_free(global.slab_vmas, vma);
}

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#if IS_ENABLED(CONFIG_DRM_I915_ERRLOG_GEM) && IS_ENABLED(CONFIG_DRM_DEBUG_MM)
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#include <linux/stackdepot.h>

static void vma_print_allocator(struct i915_vma *vma, const char *reason)
{
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	unsigned long *entries;
	unsigned int nr_entries;
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	char buf[512];

	if (!vma->node.stack) {
		DRM_DEBUG_DRIVER("vma.node [%08llx + %08llx] %s: unknown owner\n",
				 vma->node.start, vma->node.size, reason);
		return;
	}

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	nr_entries = stack_depot_fetch(vma->node.stack, &entries);
	stack_trace_snprint(buf, sizeof(buf), entries, nr_entries, 0);
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	DRM_DEBUG_DRIVER("vma.node [%08llx + %08llx] %s: inserted at %s\n",
			 vma->node.start, vma->node.size, reason, buf);
}

#else

static void vma_print_allocator(struct i915_vma *vma, const char *reason)
{
}

#endif

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static inline struct i915_vma *active_to_vma(struct i915_active *ref)
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{
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	return container_of(ref, typeof(struct i915_vma), active);
}
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static int __i915_vma_active(struct i915_active *ref)
{
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	return i915_vma_tryget(active_to_vma(ref)) ? 0 : -ENOENT;
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}

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__i915_active_call
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static void __i915_vma_retire(struct i915_active *ref)
{
	i915_vma_put(active_to_vma(ref));
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}

static struct i915_vma *
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vma_create(struct drm_i915_gem_object *obj,
	   struct i915_address_space *vm,
	   const struct i915_ggtt_view *view)
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{
	struct i915_vma *vma;
	struct rb_node *rb, **p;

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	/* The aliasing_ppgtt should never be used directly! */
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	GEM_BUG_ON(vm == &vm->gt->ggtt->alias->vm);
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	vma = i915_vma_alloc();
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	if (vma == NULL)
		return ERR_PTR(-ENOMEM);

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	kref_init(&vma->ref);
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	mutex_init(&vma->pages_mutex);
	vma->vm = i915_vm_get(vm);
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	vma->ops = &vm->vma_ops;
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	vma->obj = obj;
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	vma->resv = obj->base.resv;
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	vma->size = obj->base.size;
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	vma->display_alignment = I915_GTT_MIN_ALIGNMENT;
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	i915_active_init(&vma->active, __i915_vma_active, __i915_vma_retire);
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	/* Declare ourselves safe for use inside shrinkers */
	if (IS_ENABLED(CONFIG_LOCKDEP)) {
		fs_reclaim_acquire(GFP_KERNEL);
		might_lock(&vma->active.mutex);
		fs_reclaim_release(GFP_KERNEL);
	}

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	INIT_LIST_HEAD(&vma->closed_link);

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	if (view && view->type != I915_GGTT_VIEW_NORMAL) {
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		vma->ggtt_view = *view;
		if (view->type == I915_GGTT_VIEW_PARTIAL) {
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			GEM_BUG_ON(range_overflows_t(u64,
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						     view->partial.offset,
						     view->partial.size,
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						     obj->base.size >> PAGE_SHIFT));
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			vma->size = view->partial.size;
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			vma->size <<= PAGE_SHIFT;
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			GEM_BUG_ON(vma->size > obj->base.size);
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		} else if (view->type == I915_GGTT_VIEW_ROTATED) {
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			vma->size = intel_rotation_info_size(&view->rotated);
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			vma->size <<= PAGE_SHIFT;
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		} else if (view->type == I915_GGTT_VIEW_REMAPPED) {
			vma->size = intel_remapped_info_size(&view->remapped);
			vma->size <<= PAGE_SHIFT;
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		}
	}

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	if (unlikely(vma->size > vm->total))
		goto err_vma;

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	GEM_BUG_ON(!IS_ALIGNED(vma->size, I915_GTT_PAGE_SIZE));

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	if (i915_is_ggtt(vm)) {
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		if (unlikely(overflows_type(vma->size, u32)))
			goto err_vma;

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		vma->fence_size = i915_gem_fence_size(vm->i915, vma->size,
						      i915_gem_object_get_tiling(obj),
						      i915_gem_object_get_stride(obj));
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		if (unlikely(vma->fence_size < vma->size || /* overflow */
			     vma->fence_size > vm->total))
			goto err_vma;

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		GEM_BUG_ON(!IS_ALIGNED(vma->fence_size, I915_GTT_MIN_ALIGNMENT));
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		vma->fence_alignment = i915_gem_fence_alignment(vm->i915, vma->size,
								i915_gem_object_get_tiling(obj),
								i915_gem_object_get_stride(obj));
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		GEM_BUG_ON(!is_power_of_2(vma->fence_alignment));

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		__set_bit(I915_VMA_GGTT_BIT, __i915_vma_flags(vma));
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	}

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	spin_lock(&obj->vma.lock);

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	rb = NULL;
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	p = &obj->vma.tree.rb_node;
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	while (*p) {
		struct i915_vma *pos;
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		long cmp;
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		rb = *p;
		pos = rb_entry(rb, struct i915_vma, obj_node);
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		/*
		 * If the view already exists in the tree, another thread
		 * already created a matching vma, so return the older instance
		 * and dispose of ours.
		 */
		cmp = i915_vma_compare(pos, vm, view);
		if (cmp == 0) {
			spin_unlock(&obj->vma.lock);
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			i915_vma_free(vma);
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			return pos;
		}

		if (cmp < 0)
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			p = &rb->rb_right;
		else
			p = &rb->rb_left;
	}
	rb_link_node(&vma->obj_node, rb, p);
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	rb_insert_color(&vma->obj_node, &obj->vma.tree);

	if (i915_vma_is_ggtt(vma))
		/*
		 * We put the GGTT vma at the start of the vma-list, followed
		 * by the ppGGTT vma. This allows us to break early when
		 * iterating over only the GGTT vma for an object, see
		 * for_each_ggtt_vma()
		 */
		list_add(&vma->obj_link, &obj->vma.list);
	else
		list_add_tail(&vma->obj_link, &obj->vma.list);

	spin_unlock(&obj->vma.lock);
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	return vma;
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err_vma:
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	i915_vma_free(vma);
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	return ERR_PTR(-E2BIG);
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}

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static struct i915_vma *
vma_lookup(struct drm_i915_gem_object *obj,
	   struct i915_address_space *vm,
	   const struct i915_ggtt_view *view)
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{
	struct rb_node *rb;

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	rb = obj->vma.tree.rb_node;
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	while (rb) {
		struct i915_vma *vma = rb_entry(rb, struct i915_vma, obj_node);
		long cmp;

		cmp = i915_vma_compare(vma, vm, view);
		if (cmp == 0)
			return vma;

		if (cmp < 0)
			rb = rb->rb_right;
		else
			rb = rb->rb_left;
	}

	return NULL;
}

/**
 * i915_vma_instance - return the singleton instance of the VMA
 * @obj: parent &struct drm_i915_gem_object to be mapped
 * @vm: address space in which the mapping is located
 * @view: additional mapping requirements
 *
 * i915_vma_instance() looks up an existing VMA of the @obj in the @vm with
 * the same @view characteristics. If a match is not found, one is created.
 * Once created, the VMA is kept until either the object is freed, or the
 * address space is closed.
 *
 * Returns the vma, or an error pointer.
 */
struct i915_vma *
i915_vma_instance(struct drm_i915_gem_object *obj,
		  struct i915_address_space *vm,
		  const struct i915_ggtt_view *view)
{
	struct i915_vma *vma;

	GEM_BUG_ON(view && !i915_is_ggtt(vm));
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	GEM_BUG_ON(!atomic_read(&vm->open));
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	spin_lock(&obj->vma.lock);
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	vma = vma_lookup(obj, vm, view);
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	spin_unlock(&obj->vma.lock);

	/* vma_create() will resolve the race if another creates the vma */
	if (unlikely(!vma))
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		vma = vma_create(obj, vm, view);
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	GEM_BUG_ON(!IS_ERR(vma) && i915_vma_compare(vma, vm, view));
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	return vma;
}

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struct i915_vma_work {
	struct dma_fence_work base;
	struct i915_vma *vma;
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	struct drm_i915_gem_object *pinned;
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	struct i915_sw_dma_fence_cb cb;
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	enum i915_cache_level cache_level;
	unsigned int flags;
};

static int __vma_bind(struct dma_fence_work *work)
{
	struct i915_vma_work *vw = container_of(work, typeof(*vw), base);
	struct i915_vma *vma = vw->vma;
	int err;

	err = vma->ops->bind_vma(vma, vw->cache_level, vw->flags);
	if (err)
		atomic_or(I915_VMA_ERROR, &vma->flags);

	return err;
}

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static void __vma_release(struct dma_fence_work *work)
{
	struct i915_vma_work *vw = container_of(work, typeof(*vw), base);

	if (vw->pinned)
		__i915_gem_object_unpin_pages(vw->pinned);
}

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static const struct dma_fence_work_ops bind_ops = {
	.name = "bind",
	.work = __vma_bind,
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	.release = __vma_release,
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};

struct i915_vma_work *i915_vma_work(void)
{
	struct i915_vma_work *vw;

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

	dma_fence_work_init(&vw->base, &bind_ops);
	vw->base.dma.error = -EAGAIN; /* disable the worker by default */

	return vw;
}

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int i915_vma_wait_for_bind(struct i915_vma *vma)
{
	int err = 0;

	if (rcu_access_pointer(vma->active.excl.fence)) {
		struct dma_fence *fence;

		rcu_read_lock();
		fence = dma_fence_get_rcu_safe(&vma->active.excl.fence);
		rcu_read_unlock();
		if (fence) {
			err = dma_fence_wait(fence, MAX_SCHEDULE_TIMEOUT);
			dma_fence_put(fence);
		}
	}

	return err;
}

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/**
 * i915_vma_bind - Sets up PTEs for an VMA in it's corresponding address space.
 * @vma: VMA to map
 * @cache_level: mapping cache level
 * @flags: flags like global or local mapping
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 * @work: preallocated worker for allocating and binding the PTE
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 *
 * DMA addresses are taken from the scatter-gather table of this object (or of
 * this VMA in case of non-default GGTT views) and PTE entries set up.
 * Note that DMA addresses are also the only part of the SG table we care about.
 */
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int i915_vma_bind(struct i915_vma *vma,
		  enum i915_cache_level cache_level,
		  u32 flags,
		  struct i915_vma_work *work)
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{
	u32 bind_flags;
	u32 vma_flags;
	int ret;

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	GEM_BUG_ON(!drm_mm_node_allocated(&vma->node));
	GEM_BUG_ON(vma->size > vma->node.size);

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	if (GEM_DEBUG_WARN_ON(range_overflows(vma->node.start,
					      vma->node.size,
					      vma->vm->total)))
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		return -ENODEV;

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	if (GEM_DEBUG_WARN_ON(!flags))
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		return -EINVAL;

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	bind_flags = flags;
	bind_flags &= I915_VMA_GLOBAL_BIND | I915_VMA_LOCAL_BIND;
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	vma_flags = atomic_read(&vma->flags);
	vma_flags &= I915_VMA_GLOBAL_BIND | I915_VMA_LOCAL_BIND;
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	if (flags & PIN_UPDATE)
		bind_flags |= vma_flags;
	else
		bind_flags &= ~vma_flags;
	if (bind_flags == 0)
		return 0;

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	GEM_BUG_ON(!vma->pages);

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	trace_i915_vma_bind(vma, bind_flags);
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	if (work && (bind_flags & ~vma_flags) & vma->vm->bind_async_flags) {
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		struct dma_fence *prev;

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		work->vma = vma;
		work->cache_level = cache_level;
		work->flags = bind_flags | I915_VMA_ALLOC;

		/*
		 * Note we only want to chain up to the migration fence on
		 * the pages (not the object itself). As we don't track that,
		 * yet, we have to use the exclusive fence instead.
		 *
		 * Also note that we do not want to track the async vma as
		 * part of the obj->resv->excl_fence as it only affects
		 * execution and not content or object's backing store lifetime.
		 */
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		prev = i915_active_set_exclusive(&vma->active, &work->base.dma);
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		if (prev) {
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			__i915_sw_fence_await_dma_fence(&work->base.chain,
							prev,
							&work->cb);
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			dma_fence_put(prev);
		}
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		work->base.dma.error = 0; /* enable the queue_work() */

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		if (vma->obj) {
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			__i915_gem_object_pin_pages(vma->obj);
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			work->pinned = vma->obj;
		}
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	} else {
		ret = vma->ops->bind_vma(vma, cache_level, bind_flags);
		if (ret)
			return ret;
	}
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	atomic_or(bind_flags, &vma->flags);
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	return 0;
}

void __iomem *i915_vma_pin_iomap(struct i915_vma *vma)
{
	void __iomem *ptr;
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	int err;
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	if (GEM_WARN_ON(!i915_vma_is_map_and_fenceable(vma))) {
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		err = -ENODEV;
		goto err;
	}
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	GEM_BUG_ON(!i915_vma_is_ggtt(vma));
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	GEM_BUG_ON(!i915_vma_is_bound(vma, I915_VMA_GLOBAL_BIND));
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	ptr = READ_ONCE(vma->iomap);
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	if (ptr == NULL) {
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		ptr = io_mapping_map_wc(&i915_vm_to_ggtt(vma->vm)->iomap,
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					vma->node.start,
					vma->node.size);
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		if (ptr == NULL) {
			err = -ENOMEM;
			goto err;
		}
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		if (unlikely(cmpxchg(&vma->iomap, NULL, ptr))) {
			io_mapping_unmap(ptr);
			ptr = vma->iomap;
		}
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	}

	__i915_vma_pin(vma);
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	err = i915_vma_pin_fence(vma);
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	if (err)
		goto err_unpin;

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	i915_vma_set_ggtt_write(vma);
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	/* NB Access through the GTT requires the device to be awake. */
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	return ptr;
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err_unpin:
	__i915_vma_unpin(vma);
err:
	return IO_ERR_PTR(err);
}

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void i915_vma_flush_writes(struct i915_vma *vma)
{
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	if (i915_vma_unset_ggtt_write(vma))
		intel_gt_flush_ggtt_writes(vma->vm->gt);
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}

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void i915_vma_unpin_iomap(struct i915_vma *vma)
{
	GEM_BUG_ON(vma->iomap == NULL);

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	i915_vma_flush_writes(vma);

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	i915_vma_unpin_fence(vma);
	i915_vma_unpin(vma);
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}

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void i915_vma_unpin_and_release(struct i915_vma **p_vma, unsigned int flags)
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{
	struct i915_vma *vma;
	struct drm_i915_gem_object *obj;

	vma = fetch_and_zero(p_vma);
	if (!vma)
		return;

	obj = vma->obj;
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	GEM_BUG_ON(!obj);
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	i915_vma_unpin(vma);
	i915_vma_close(vma);

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	if (flags & I915_VMA_RELEASE_MAP)
		i915_gem_object_unpin_map(obj);

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	i915_gem_object_put(obj);
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}

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bool i915_vma_misplaced(const struct i915_vma *vma,
			u64 size, u64 alignment, u64 flags)
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{
	if (!drm_mm_node_allocated(&vma->node))
		return false;

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	if (test_bit(I915_VMA_ERROR_BIT, __i915_vma_flags(vma)))
		return true;

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	if (vma->node.size < size)
		return true;

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	GEM_BUG_ON(alignment && !is_power_of_2(alignment));
	if (alignment && !IS_ALIGNED(vma->node.start, alignment))
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		return true;

	if (flags & PIN_MAPPABLE && !i915_vma_is_map_and_fenceable(vma))
		return true;

	if (flags & PIN_OFFSET_BIAS &&
	    vma->node.start < (flags & PIN_OFFSET_MASK))
		return true;

	if (flags & PIN_OFFSET_FIXED &&
	    vma->node.start != (flags & PIN_OFFSET_MASK))
		return true;

	return false;
}

void __i915_vma_set_map_and_fenceable(struct i915_vma *vma)
{
	bool mappable, fenceable;

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	GEM_BUG_ON(!i915_vma_is_ggtt(vma));
	GEM_BUG_ON(!vma->fence_size);
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	fenceable = (vma->node.size >= vma->fence_size &&
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		     IS_ALIGNED(vma->node.start, vma->fence_alignment));
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	mappable = vma->node.start + vma->fence_size <= i915_vm_to_ggtt(vma->vm)->mappable_end;

	if (mappable && fenceable)
574
		set_bit(I915_VMA_CAN_FENCE_BIT, __i915_vma_flags(vma));
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575
	else
576
		clear_bit(I915_VMA_CAN_FENCE_BIT, __i915_vma_flags(vma));
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577 578
}

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bool i915_gem_valid_gtt_space(struct i915_vma *vma, unsigned long color)
580 581
{
	struct drm_mm_node *node = &vma->node;
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582 583 584 585 586 587 588 589 590
	struct drm_mm_node *other;

	/*
	 * On some machines we have to be careful when putting differing types
	 * of snoopable memory together to avoid the prefetcher crossing memory
	 * domains and dying. During vm initialisation, we decide whether or not
	 * these constraints apply and set the drm_mm.color_adjust
	 * appropriately.
	 */
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	if (!i915_vm_has_cache_coloring(vma->vm))
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592 593
		return true;

594 595 596
	/* Only valid to be called on an already inserted vma */
	GEM_BUG_ON(!drm_mm_node_allocated(node));
	GEM_BUG_ON(list_empty(&node->node_list));
J
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597

598
	other = list_prev_entry(node, node_list);
M
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599
	if (i915_node_color_differs(other, color) &&
M
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600
	    !drm_mm_hole_follows(other))
J
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601 602
		return false;

603
	other = list_next_entry(node, node_list);
M
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604
	if (i915_node_color_differs(other, color) &&
M
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605
	    !drm_mm_hole_follows(node))
J
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606 607 608 609 610
		return false;

	return true;
}

611 612 613 614 615 616 617 618 619
static void assert_bind_count(const struct drm_i915_gem_object *obj)
{
	/*
	 * Combine the assertion that the object is bound and that we have
	 * pinned its pages. But we should never have bound the object
	 * more than we have pinned its pages. (For complete accuracy, we
	 * assume that no else is pinning the pages, but as a rough assertion
	 * that we will not run into problems later, this will do!)
	 */
620
	GEM_BUG_ON(atomic_read(&obj->mm.pages_pin_count) < atomic_read(&obj->bind_count));
621 622
}

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623 624 625 626 627 628 629 630 631 632 633 634 635 636 637 638 639
/**
 * i915_vma_insert - finds a slot for the vma in its address space
 * @vma: the vma
 * @size: requested size in bytes (can be larger than the VMA)
 * @alignment: required alignment
 * @flags: mask of PIN_* flags to use
 *
 * First we try to allocate some free space that meets the requirements for
 * the VMA. Failiing that, if the flags permit, it will evict an old VMA,
 * preferrably the oldest idle entry to make room for the new VMA.
 *
 * Returns:
 * 0 on success, negative error code otherwise.
 */
static int
i915_vma_insert(struct i915_vma *vma, u64 size, u64 alignment, u64 flags)
{
M
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640
	unsigned long color;
J
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641 642 643
	u64 start, end;
	int ret;

644
	GEM_BUG_ON(i915_vma_is_bound(vma, I915_VMA_GLOBAL_BIND | I915_VMA_LOCAL_BIND));
J
Joonas Lahtinen 已提交
645 646 647
	GEM_BUG_ON(drm_mm_node_allocated(&vma->node));

	size = max(size, vma->size);
648 649 650 651 652 653
	alignment = max(alignment, vma->display_alignment);
	if (flags & PIN_MAPPABLE) {
		size = max_t(typeof(size), size, vma->fence_size);
		alignment = max_t(typeof(alignment),
				  alignment, vma->fence_alignment);
	}
J
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655 656 657 658
	GEM_BUG_ON(!IS_ALIGNED(size, I915_GTT_PAGE_SIZE));
	GEM_BUG_ON(!IS_ALIGNED(alignment, I915_GTT_MIN_ALIGNMENT));
	GEM_BUG_ON(!is_power_of_2(alignment));

J
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659
	start = flags & PIN_OFFSET_BIAS ? flags & PIN_OFFSET_MASK : 0;
660
	GEM_BUG_ON(!IS_ALIGNED(start, I915_GTT_PAGE_SIZE));
J
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	end = vma->vm->total;
	if (flags & PIN_MAPPABLE)
664
		end = min_t(u64, end, i915_vm_to_ggtt(vma->vm)->mappable_end);
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665
	if (flags & PIN_ZONE_4G)
666 667
		end = min_t(u64, end, (1ULL << 32) - I915_GTT_PAGE_SIZE);
	GEM_BUG_ON(!IS_ALIGNED(end, I915_GTT_PAGE_SIZE));
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668 669 670 671 672 673

	/* If binding the object/GGTT view requires more space than the entire
	 * aperture has, reject it early before evicting everything in a vain
	 * attempt to find space.
	 */
	if (size > end) {
674 675
		DRM_DEBUG("Attempting to bind an object larger than the aperture: request=%llu > %s aperture=%llu\n",
			  size, flags & PIN_MAPPABLE ? "mappable" : "total",
J
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676
			  end);
677
		return -ENOSPC;
J
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678 679
	}

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680
	color = 0;
681 682
	if (vma->obj && i915_vm_has_cache_coloring(vma->vm))
		color = vma->obj->cache_level;
683

J
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684 685
	if (flags & PIN_OFFSET_FIXED) {
		u64 offset = flags & PIN_OFFSET_MASK;
686
		if (!IS_ALIGNED(offset, alignment) ||
687 688
		    range_overflows(offset, size, end))
			return -EINVAL;
J
Joonas Lahtinen 已提交
689

690
		ret = i915_gem_gtt_reserve(vma->vm, &vma->node,
M
Matthew Auld 已提交
691
					   size, offset, color,
692 693
					   flags);
		if (ret)
694
			return ret;
J
Joonas Lahtinen 已提交
695
	} else {
696 697 698 699 700 701 702 703 704 705
		/*
		 * We only support huge gtt pages through the 48b PPGTT,
		 * however we also don't want to force any alignment for
		 * objects which need to be tightly packed into the low 32bits.
		 *
		 * Note that we assume that GGTT are limited to 4GiB for the
		 * forseeable future. See also i915_ggtt_offset().
		 */
		if (upper_32_bits(end - 1) &&
		    vma->page_sizes.sg > I915_GTT_PAGE_SIZE) {
M
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706 707 708 709 710 711
			/*
			 * We can't mix 64K and 4K PTEs in the same page-table
			 * (2M block), and so to avoid the ugliness and
			 * complexity of coloring we opt for just aligning 64K
			 * objects to 2M.
			 */
712
			u64 page_alignment =
M
Matthew Auld 已提交
713 714
				rounddown_pow_of_two(vma->page_sizes.sg |
						     I915_GTT_PAGE_SIZE_2M);
715

716 717 718 719 720 721 722
			/*
			 * Check we don't expand for the limited Global GTT
			 * (mappable aperture is even more precious!). This
			 * also checks that we exclude the aliasing-ppgtt.
			 */
			GEM_BUG_ON(i915_vma_is_ggtt(vma));

723
			alignment = max(alignment, page_alignment);
M
Matthew Auld 已提交
724 725 726

			if (vma->page_sizes.sg & I915_GTT_PAGE_SIZE_64K)
				size = round_up(size, I915_GTT_PAGE_SIZE_2M);
727 728
		}

729
		ret = i915_gem_gtt_insert(vma->vm, &vma->node,
M
Matthew Auld 已提交
730
					  size, alignment, color,
731 732
					  start, end, flags);
		if (ret)
733
			return ret;
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734 735 736 737

		GEM_BUG_ON(vma->node.start < start);
		GEM_BUG_ON(vma->node.start + vma->node.size > end);
	}
738
	GEM_BUG_ON(!drm_mm_node_allocated(&vma->node));
M
Matthew Auld 已提交
739
	GEM_BUG_ON(!i915_gem_valid_gtt_space(vma, color));
J
Joonas Lahtinen 已提交
740

741
	if (vma->obj) {
742 743 744 745
		struct drm_i915_gem_object *obj = vma->obj;

		atomic_inc(&obj->bind_count);
		assert_bind_count(obj);
746
	}
747
	list_add_tail(&vma->vm_link, &vma->vm->bound_list);
J
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748 749 750 751

	return 0;
}

752
static void
753
i915_vma_detach(struct i915_vma *vma)
754 755
{
	GEM_BUG_ON(!drm_mm_node_allocated(&vma->node));
756
	GEM_BUG_ON(i915_vma_is_bound(vma, I915_VMA_GLOBAL_BIND | I915_VMA_LOCAL_BIND));
757

758
	/*
759 760 761
	 * And finally now the object is completely decoupled from this
	 * vma, we can drop its hold on the backing storage and allow
	 * it to be reaped by the shrinker.
762
	 */
763
	list_del(&vma->vm_link);
764 765
	if (vma->obj) {
		struct drm_i915_gem_object *obj = vma->obj;
766

767
		assert_bind_count(obj);
768
		atomic_dec(&obj->bind_count);
769
	}
770 771
}

772
static bool try_qad_pin(struct i915_vma *vma, unsigned int flags)
J
Joonas Lahtinen 已提交
773
{
774 775
	unsigned int bound;
	bool pinned = true;
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776

777 778 779 780
	bound = atomic_read(&vma->flags);
	do {
		if (unlikely(flags & ~bound))
			return false;
J
Joonas Lahtinen 已提交
781

782 783 784 785 786 787 788 789 790 791 792 793 794 795 796 797 798 799 800 801 802 803 804 805 806 807 808 809 810 811 812 813 814 815 816 817 818 819 820 821 822 823 824 825 826 827 828 829 830 831 832 833
		if (unlikely(bound & (I915_VMA_OVERFLOW | I915_VMA_ERROR)))
			return false;

		if (!(bound & I915_VMA_PIN_MASK))
			goto unpinned;

		GEM_BUG_ON(((bound + 1) & I915_VMA_PIN_MASK) == 0);
	} while (!atomic_try_cmpxchg(&vma->flags, &bound, bound + 1));

	return true;

unpinned:
	/*
	 * If pin_count==0, but we are bound, check under the lock to avoid
	 * racing with a concurrent i915_vma_unbind().
	 */
	mutex_lock(&vma->vm->mutex);
	do {
		if (unlikely(bound & (I915_VMA_OVERFLOW | I915_VMA_ERROR))) {
			pinned = false;
			break;
		}

		if (unlikely(flags & ~bound)) {
			pinned = false;
			break;
		}
	} while (!atomic_try_cmpxchg(&vma->flags, &bound, bound + 1));
	mutex_unlock(&vma->vm->mutex);

	return pinned;
}

static int vma_get_pages(struct i915_vma *vma)
{
	int err = 0;

	if (atomic_add_unless(&vma->pages_count, 1, 0))
		return 0;

	/* Allocations ahoy! */
	if (mutex_lock_interruptible(&vma->pages_mutex))
		return -EINTR;

	if (!atomic_read(&vma->pages_count)) {
		if (vma->obj) {
			err = i915_gem_object_pin_pages(vma->obj);
			if (err)
				goto unlock;
		}

		err = vma->ops->set_pages(vma);
834 835 836
		if (err) {
			if (vma->obj)
				i915_gem_object_unpin_pages(vma->obj);
837
			goto unlock;
838
		}
J
Joonas Lahtinen 已提交
839
	}
840
	atomic_inc(&vma->pages_count);
J
Joonas Lahtinen 已提交
841

842 843 844 845 846 847 848 849 850 851 852 853 854 855 856 857
unlock:
	mutex_unlock(&vma->pages_mutex);

	return err;
}

static void __vma_put_pages(struct i915_vma *vma, unsigned int count)
{
	/* We allocate under vma_get_pages, so beware the shrinker */
	mutex_lock_nested(&vma->pages_mutex, SINGLE_DEPTH_NESTING);
	GEM_BUG_ON(atomic_read(&vma->pages_count) < count);
	if (atomic_sub_return(count, &vma->pages_count) == 0) {
		vma->ops->clear_pages(vma);
		GEM_BUG_ON(vma->pages);
		if (vma->obj)
			i915_gem_object_unpin_pages(vma->obj);
J
Joonas Lahtinen 已提交
858
	}
859 860
	mutex_unlock(&vma->pages_mutex);
}
J
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861

862 863 864 865 866 867 868 869 870 871 872 873 874 875 876 877 878 879 880 881 882 883 884 885 886
static void vma_put_pages(struct i915_vma *vma)
{
	if (atomic_add_unless(&vma->pages_count, -1, 1))
		return;

	__vma_put_pages(vma, 1);
}

static void vma_unbind_pages(struct i915_vma *vma)
{
	unsigned int count;

	lockdep_assert_held(&vma->vm->mutex);

	/* The upper portion of pages_count is the number of bindings */
	count = atomic_read(&vma->pages_count);
	count >>= I915_VMA_PAGES_BIAS;
	GEM_BUG_ON(!count);

	__vma_put_pages(vma, count | count << I915_VMA_PAGES_BIAS);
}

int i915_vma_pin(struct i915_vma *vma, u64 size, u64 alignment, u64 flags)
{
	struct i915_vma_work *work = NULL;
887
	intel_wakeref_t wakeref = 0;
888 889 890 891 892 893 894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912
	unsigned int bound;
	int err;

	BUILD_BUG_ON(PIN_GLOBAL != I915_VMA_GLOBAL_BIND);
	BUILD_BUG_ON(PIN_USER != I915_VMA_LOCAL_BIND);

	GEM_BUG_ON(flags & PIN_UPDATE);
	GEM_BUG_ON(!(flags & (PIN_USER | PIN_GLOBAL)));

	/* First try and grab the pin without rebinding the vma */
	if (try_qad_pin(vma, flags & I915_VMA_BIND_MASK))
		return 0;

	err = vma_get_pages(vma);
	if (err)
		return err;

	if (flags & vma->vm->bind_async_flags) {
		work = i915_vma_work();
		if (!work) {
			err = -ENOMEM;
			goto err_pages;
		}
	}

913 914 915
	if (flags & PIN_GLOBAL)
		wakeref = intel_runtime_pm_get(&vma->vm->i915->runtime_pm);

916 917 918 919 920 921 922 923 924 925 926 927 928 929 930 931 932 933 934
	/*
	 * Differentiate between user/kernel vma inside the aliasing-ppgtt.
	 *
	 * We conflate the Global GTT with the user's vma when using the
	 * aliasing-ppgtt, but it is still vitally important to try and
	 * keep the use cases distinct. For example, userptr objects are
	 * not allowed inside the Global GTT as that will cause lock
	 * inversions when we have to evict them the mmu_notifier callbacks -
	 * but they are allowed to be part of the user ppGTT which can never
	 * be mapped. As such we try to give the distinct users of the same
	 * mutex, distinct lockclasses [equivalent to how we keep i915_ggtt
	 * and i915_ppgtt separate].
	 *
	 * NB this may cause us to mask real lock inversions -- while the
	 * code is safe today, lockdep may not be able to spot future
	 * transgressions.
	 */
	err = mutex_lock_interruptible_nested(&vma->vm->mutex,
					      !(flags & PIN_GLOBAL));
935 936 937
	if (err)
		goto err_fence;

938 939
	/* No more allocations allowed now we hold vm->mutex */

940 941 942 943 944
	if (unlikely(i915_vma_is_closed(vma))) {
		err = -ENOENT;
		goto err_unlock;
	}

945 946 947 948 949 950 951 952 953 954 955 956 957 958 959 960 961 962 963 964 965 966 967 968 969 970 971 972
	bound = atomic_read(&vma->flags);
	if (unlikely(bound & I915_VMA_ERROR)) {
		err = -ENOMEM;
		goto err_unlock;
	}

	if (unlikely(!((bound + 1) & I915_VMA_PIN_MASK))) {
		err = -EAGAIN; /* pins are meant to be fairly temporary */
		goto err_unlock;
	}

	if (unlikely(!(flags & ~bound & I915_VMA_BIND_MASK))) {
		__i915_vma_pin(vma);
		goto err_unlock;
	}

	err = i915_active_acquire(&vma->active);
	if (err)
		goto err_unlock;

	if (!(bound & I915_VMA_BIND_MASK)) {
		err = i915_vma_insert(vma, size, alignment, flags);
		if (err)
			goto err_active;

		if (i915_is_ggtt(vma->vm))
			__i915_vma_set_map_and_fenceable(vma);
	}
J
Joonas Lahtinen 已提交
973

974 975 976 977 978 979
	GEM_BUG_ON(!vma->pages);
	err = i915_vma_bind(vma,
			    vma->obj ? vma->obj->cache_level : 0,
			    flags, work);
	if (err)
		goto err_remove;
980

981 982 983 984
	/* There should only be at most 2 active bindings (user, global) */
	GEM_BUG_ON(bound + I915_VMA_PAGES_ACTIVE < bound);
	atomic_add(I915_VMA_PAGES_ACTIVE, &vma->pages_count);
	list_move_tail(&vma->vm_link, &vma->vm->bound_list);
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985

986 987 988
	__i915_vma_pin(vma);
	GEM_BUG_ON(!i915_vma_is_pinned(vma));
	GEM_BUG_ON(!i915_vma_is_bound(vma, flags));
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989 990
	GEM_BUG_ON(i915_vma_misplaced(vma, size, alignment, flags));

991
err_remove:
992 993 994 995
	if (!i915_vma_is_bound(vma, I915_VMA_BIND_MASK)) {
		i915_vma_detach(vma);
		drm_mm_remove_node(&vma->node);
	}
996 997 998 999 1000 1001
err_active:
	i915_active_release(&vma->active);
err_unlock:
	mutex_unlock(&vma->vm->mutex);
err_fence:
	if (work)
1002
		dma_fence_work_commit_imm(&work->base);
1003 1004
	if (wakeref)
		intel_runtime_pm_put(&vma->vm->i915->runtime_pm, wakeref);
1005 1006 1007
err_pages:
	vma_put_pages(vma);
	return err;
J
Joonas Lahtinen 已提交
1008 1009
}

1010 1011 1012 1013 1014 1015 1016 1017 1018 1019 1020 1021 1022 1023 1024 1025 1026 1027 1028 1029
static void flush_idle_contexts(struct intel_gt *gt)
{
	struct intel_engine_cs *engine;
	enum intel_engine_id id;

	for_each_engine(engine, gt, id)
		intel_engine_flush_barriers(engine);

	intel_gt_wait_for_idle(gt, MAX_SCHEDULE_TIMEOUT);
}

int i915_ggtt_pin(struct i915_vma *vma, u32 align, unsigned int flags)
{
	struct i915_address_space *vm = vma->vm;
	int err;

	GEM_BUG_ON(!i915_vma_is_ggtt(vma));

	do {
		err = i915_vma_pin(vma, 0, align, flags | PIN_GLOBAL);
1030 1031 1032 1033 1034 1035
		if (err != -ENOSPC) {
			if (!err) {
				err = i915_vma_wait_for_bind(vma);
				if (err)
					i915_vma_unpin(vma);
			}
1036
			return err;
1037
		}
1038 1039 1040 1041 1042 1043 1044 1045 1046 1047

		/* Unlike i915_vma_pin, we don't take no for an answer! */
		flush_idle_contexts(vm->gt);
		if (mutex_lock_interruptible(&vm->mutex) == 0) {
			i915_gem_evict_vm(vm);
			mutex_unlock(&vm->mutex);
		}
	} while (1);
}

1048 1049
void i915_vma_close(struct i915_vma *vma)
{
1050
	struct intel_gt *gt = vma->vm->gt;
1051
	unsigned long flags;
1052 1053 1054 1055 1056 1057 1058 1059 1060 1061 1062 1063 1064 1065 1066

	GEM_BUG_ON(i915_vma_is_closed(vma));

	/*
	 * We defer actually closing, unbinding and destroying the VMA until
	 * the next idle point, or if the object is freed in the meantime. By
	 * postponing the unbind, we allow for it to be resurrected by the
	 * client, avoiding the work required to rebind the VMA. This is
	 * advantageous for DRI, where the client/server pass objects
	 * between themselves, temporarily opening a local VMA to the
	 * object, and then closing it again. The same object is then reused
	 * on the next frame (or two, depending on the depth of the swap queue)
	 * causing us to rebind the VMA once more. This ends up being a lot
	 * of wasted work for the steady state.
	 */
1067 1068 1069
	spin_lock_irqsave(&gt->closed_lock, flags);
	list_add(&vma->closed_link, &gt->closed_vma);
	spin_unlock_irqrestore(&gt->closed_lock, flags);
1070 1071
}

1072
static void __i915_vma_remove_closed(struct i915_vma *vma)
1073
{
1074
	struct intel_gt *gt = vma->vm->gt;
1075

1076
	spin_lock_irq(&gt->closed_lock);
1077
	list_del_init(&vma->closed_link);
1078
	spin_unlock_irq(&gt->closed_lock);
1079 1080 1081 1082
}

void i915_vma_reopen(struct i915_vma *vma)
{
1083 1084
	if (i915_vma_is_closed(vma))
		__i915_vma_remove_closed(vma);
1085 1086
}

C
Chris Wilson 已提交
1087
void i915_vma_release(struct kref *ref)
J
Joonas Lahtinen 已提交
1088
{
C
Chris Wilson 已提交
1089 1090
	struct i915_vma *vma = container_of(ref, typeof(*vma), ref);

1091 1092 1093 1094 1095 1096 1097 1098
	if (drm_mm_node_allocated(&vma->node)) {
		mutex_lock(&vma->vm->mutex);
		atomic_and(~I915_VMA_PIN_MASK, &vma->flags);
		WARN_ON(__i915_vma_unbind(vma));
		mutex_unlock(&vma->vm->mutex);
		GEM_BUG_ON(drm_mm_node_allocated(&vma->node));
	}
	GEM_BUG_ON(i915_vma_is_active(vma));
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1099

1100 1101 1102 1103 1104
	if (vma->obj) {
		struct drm_i915_gem_object *obj = vma->obj;

		spin_lock(&obj->vma.lock);
		list_del(&vma->obj_link);
1105
		rb_erase(&vma->obj_node, &obj->vma.tree);
1106 1107
		spin_unlock(&obj->vma.lock);
	}
1108

1109
	__i915_vma_remove_closed(vma);
1110
	i915_vm_put(vma->vm);
1111

1112 1113
	i915_active_fini(&vma->active);
	i915_vma_free(vma);
1114 1115
}

1116
void i915_vma_parked(struct intel_gt *gt)
1117 1118
{
	struct i915_vma *vma, *next;
1119
	LIST_HEAD(closed);
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1120

1121 1122
	spin_lock_irq(&gt->closed_lock);
	list_for_each_entry_safe(vma, next, &gt->closed_vma, closed_link) {
1123 1124 1125 1126 1127 1128 1129 1130
		struct drm_i915_gem_object *obj = vma->obj;
		struct i915_address_space *vm = vma->vm;

		/* XXX All to avoid keeping a reference on i915_vma itself */

		if (!kref_get_unless_zero(&obj->base.refcount))
			continue;

1131
		if (!i915_vm_tryopen(vm)) {
1132
			i915_gem_object_put(obj);
1133
			continue;
1134 1135
		}

1136 1137 1138
		list_move(&vma->closed_link, &closed);
	}
	spin_unlock_irq(&gt->closed_lock);
1139

1140 1141 1142 1143
	/* As the GT is held idle, no vma can be reopened as we destroy them */
	list_for_each_entry_safe(vma, next, &closed, closed_link) {
		struct drm_i915_gem_object *obj = vma->obj;
		struct i915_address_space *vm = vma->vm;
1144

1145 1146
		INIT_LIST_HEAD(&vma->closed_link);
		__i915_vma_put(vma);
1147

1148 1149
		i915_gem_object_put(obj);
		i915_vm_close(vm);
1150
	}
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1151 1152 1153 1154 1155 1156 1157 1158 1159 1160 1161 1162 1163
}

static void __i915_vma_iounmap(struct i915_vma *vma)
{
	GEM_BUG_ON(i915_vma_is_pinned(vma));

	if (vma->iomap == NULL)
		return;

	io_mapping_unmap(vma->iomap);
	vma->iomap = NULL;
}

1164 1165
void i915_vma_revoke_mmap(struct i915_vma *vma)
{
1166
	struct drm_vma_offset_node *node;
1167 1168 1169 1170 1171 1172 1173 1174
	u64 vma_offset;

	if (!i915_vma_has_userfault(vma))
		return;

	GEM_BUG_ON(!i915_vma_is_map_and_fenceable(vma));
	GEM_BUG_ON(!vma->obj->userfault_count);

1175
	node = &vma->mmo->vma_node;
1176 1177 1178 1179 1180 1181 1182 1183 1184 1185 1186
	vma_offset = vma->ggtt_view.partial.offset << PAGE_SHIFT;
	unmap_mapping_range(vma->vm->i915->drm.anon_inode->i_mapping,
			    drm_vma_node_offset_addr(node) + vma_offset,
			    vma->size,
			    1);

	i915_vma_unset_userfault(vma);
	if (!--vma->obj->userfault_count)
		list_del(&vma->obj->userfault_link);
}

1187 1188 1189 1190 1191 1192 1193
int __i915_vma_move_to_active(struct i915_vma *vma, struct i915_request *rq)
{
	int err;

	GEM_BUG_ON(!i915_vma_is_pinned(vma));

	/* Wait for the vma to be bound before we start! */
1194
	err = i915_request_await_active(rq, &vma->active, 0);
1195 1196 1197 1198 1199 1200
	if (err)
		return err;

	return i915_active_add_request(&vma->active, rq);
}

1201 1202 1203 1204 1205
int i915_vma_move_to_active(struct i915_vma *vma,
			    struct i915_request *rq,
			    unsigned int flags)
{
	struct drm_i915_gem_object *obj = vma->obj;
1206
	int err;
1207

1208
	assert_object_held(obj);
1209

1210
	err = __i915_vma_move_to_active(vma, rq);
1211 1212
	if (unlikely(err))
		return err;
1213 1214

	if (flags & EXEC_OBJECT_WRITE) {
1215 1216 1217 1218 1219 1220 1221 1222
		struct intel_frontbuffer *front;

		front = __intel_frontbuffer_get(obj);
		if (unlikely(front)) {
			if (intel_frontbuffer_invalidate(front, ORIGIN_CS))
				i915_active_add_request(&front->write, rq);
			intel_frontbuffer_put(front);
		}
1223

1224
		dma_resv_add_excl_fence(vma->resv, &rq->fence);
1225
		obj->write_domain = I915_GEM_DOMAIN_RENDER;
1226
		obj->read_domains = 0;
1227
	} else {
1228
		err = dma_resv_reserve_shared(vma->resv, 1);
1229 1230 1231
		if (unlikely(err))
			return err;

1232
		dma_resv_add_shared_fence(vma->resv, &rq->fence);
1233
		obj->write_domain = 0;
1234
	}
1235 1236 1237 1238

	if (flags & EXEC_OBJECT_NEEDS_FENCE && vma->fence)
		i915_active_add_request(&vma->fence->active, rq);

1239
	obj->read_domains |= I915_GEM_GPU_DOMAINS;
1240
	obj->mm.dirty = true;
1241

1242
	GEM_BUG_ON(!i915_vma_is_active(vma));
1243 1244 1245
	return 0;
}

1246
int __i915_vma_unbind(struct i915_vma *vma)
J
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1247 1248 1249
{
	int ret;

1250
	lockdep_assert_held(&vma->vm->mutex);
J
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1251

1252 1253
	/*
	 * First wait upon any activity as retiring the request may
J
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1254
	 * have side-effects such as unpinning or even unbinding this vma.
1255 1256 1257 1258
	 *
	 * XXX Actually waiting under the vm->mutex is a hinderance and
	 * should be pipelined wherever possible. In cases where that is
	 * unavoidable, we should lift the wait to before the mutex.
J
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1259
	 */
1260 1261 1262
	ret = i915_vma_sync(vma);
	if (ret)
		return ret;
J
Joonas Lahtinen 已提交
1263

1264 1265
	if (i915_vma_is_pinned(vma)) {
		vma_print_allocator(vma, "is pinned");
1266
		return -EAGAIN;
1267
	}
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1268

1269 1270 1271 1272 1273 1274 1275 1276 1277
	/*
	 * After confirming that no one else is pinning this vma, wait for
	 * any laggards who may have crept in during the wait (through
	 * a residual pin skipping the vm->mutex) to complete.
	 */
	ret = i915_vma_sync(vma);
	if (ret)
		return ret;

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1278
	if (!drm_mm_node_allocated(&vma->node))
1279
		return 0;
J
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1280

1281 1282 1283
	GEM_BUG_ON(i915_vma_is_pinned(vma));
	GEM_BUG_ON(i915_vma_is_active(vma));

J
Joonas Lahtinen 已提交
1284
	if (i915_vma_is_map_and_fenceable(vma)) {
1285 1286 1287 1288 1289
		/*
		 * Check that we have flushed all writes through the GGTT
		 * before the unbind, other due to non-strict nature of those
		 * indirect writes they may end up referencing the GGTT PTE
		 * after the unbind.
1290 1291 1292 1293 1294 1295 1296
		 *
		 * Note that we may be concurrently poking at the GGTT_WRITE
		 * bit from set-domain, as we mark all GGTT vma associated
		 * with an object. We know this is for another vma, as we
		 * are currently unbinding this one -- so if this vma will be
		 * reused, it will be refaulted and have its dirty bit set
		 * before the next write.
1297 1298 1299
		 */
		i915_vma_flush_writes(vma);

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1300
		/* release the fence reg _after_ flushing */
1301
		ret = i915_vma_revoke_fence(vma);
J
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1302 1303 1304 1305
		if (ret)
			return ret;

		/* Force a pagefault for domain tracking on next user access */
1306
		i915_vma_revoke_mmap(vma);
J
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1307 1308

		__i915_vma_iounmap(vma);
1309
		clear_bit(I915_VMA_CAN_FENCE_BIT, __i915_vma_flags(vma));
J
Joonas Lahtinen 已提交
1310
	}
1311 1312
	GEM_BUG_ON(vma->fence);
	GEM_BUG_ON(i915_vma_has_userfault(vma));
J
Joonas Lahtinen 已提交
1313

1314
	if (likely(atomic_read(&vma->vm->open))) {
J
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1315
		trace_i915_vma_unbind(vma);
1316
		vma->ops->unbind_vma(vma);
J
Joonas Lahtinen 已提交
1317
	}
1318 1319
	atomic_and(~(I915_VMA_BIND_MASK | I915_VMA_ERROR | I915_VMA_GGTT_WRITE),
		   &vma->flags);
J
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1320

1321
	i915_vma_detach(vma);
1322
	vma_unbind_pages(vma);
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1323

C
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1324
	drm_mm_remove_node(&vma->node); /* pairs with i915_vma_release() */
J
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1325 1326 1327
	return 0;
}

1328 1329 1330
int i915_vma_unbind(struct i915_vma *vma)
{
	struct i915_address_space *vm = vma->vm;
1331
	intel_wakeref_t wakeref = 0;
1332 1333
	int err;

1334 1335 1336
	if (!drm_mm_node_allocated(&vma->node))
		return 0;

1337 1338 1339 1340
	if (i915_vma_is_bound(vma, I915_VMA_GLOBAL_BIND))
		/* XXX not always required: nop_clear_range */
		wakeref = intel_runtime_pm_get(&vm->i915->runtime_pm);

1341 1342 1343 1344 1345
	/* Optimistic wait before taking the mutex */
	err = i915_vma_sync(vma);
	if (err)
		goto out_rpm;

1346
	err = mutex_lock_interruptible_nested(&vma->vm->mutex, !wakeref);
1347
	if (err)
1348
		goto out_rpm;
1349 1350 1351 1352

	err = __i915_vma_unbind(vma);
	mutex_unlock(&vm->mutex);

1353
out_rpm:
1354 1355
	if (wakeref)
		intel_runtime_pm_put(&vm->i915->runtime_pm, wakeref);
1356 1357 1358
	return err;
}

1359 1360 1361 1362 1363 1364 1365 1366 1367 1368 1369 1370 1371 1372 1373 1374
struct i915_vma *i915_vma_make_unshrinkable(struct i915_vma *vma)
{
	i915_gem_object_make_unshrinkable(vma->obj);
	return vma;
}

void i915_vma_make_shrinkable(struct i915_vma *vma)
{
	i915_gem_object_make_shrinkable(vma->obj);
}

void i915_vma_make_purgeable(struct i915_vma *vma)
{
	i915_gem_object_make_purgeable(vma->obj);
}

C
Chris Wilson 已提交
1375 1376 1377
#if IS_ENABLED(CONFIG_DRM_I915_SELFTEST)
#include "selftests/i915_vma.c"
#endif
1378

1379
static void i915_global_vma_shrink(void)
1380
{
1381
	kmem_cache_shrink(global.slab_vmas);
1382 1383
}

1384
static void i915_global_vma_exit(void)
1385
{
1386
	kmem_cache_destroy(global.slab_vmas);
1387 1388
}

1389 1390 1391 1392 1393 1394
static struct i915_global_vma global = { {
	.shrink = i915_global_vma_shrink,
	.exit = i915_global_vma_exit,
} };

int __init i915_global_vma_init(void)
1395
{
1396 1397 1398 1399 1400 1401
	global.slab_vmas = KMEM_CACHE(i915_vma, SLAB_HWCACHE_ALIGN);
	if (!global.slab_vmas)
		return -ENOMEM;

	i915_global_register(&global.base);
	return 0;
1402
}