ttm_bo.c 45.6 KB
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/**************************************************************************
 *
 * Copyright (c) 2006-2009 VMware, Inc., Palo Alto, CA., USA
 * 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, sub license, 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 NON-INFRINGEMENT. IN NO EVENT SHALL
 * THE COPYRIGHT HOLDERS, AUTHORS 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.
 *
 **************************************************************************/
/*
 * Authors: Thomas Hellstrom <thellstrom-at-vmware-dot-com>
 */

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#define pr_fmt(fmt) "[TTM] " fmt

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#include <drm/ttm/ttm_module.h>
#include <drm/ttm/ttm_bo_driver.h>
#include <drm/ttm/ttm_placement.h>
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#include <linux/jiffies.h>
#include <linux/slab.h>
#include <linux/sched.h>
#include <linux/mm.h>
#include <linux/file.h>
#include <linux/module.h>
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#include <linux/atomic.h>
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#define TTM_ASSERT_LOCKED(param)
#define TTM_DEBUG(fmt, arg...)
#define TTM_BO_HASH_ORDER 13

static int ttm_bo_setup_vm(struct ttm_buffer_object *bo);
static int ttm_bo_swapout(struct ttm_mem_shrink *shrink);
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static void ttm_bo_global_kobj_release(struct kobject *kobj);

static struct attribute ttm_bo_count = {
	.name = "bo_count",
	.mode = S_IRUGO
};

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static inline int ttm_mem_type_from_flags(uint32_t flags, uint32_t *mem_type)
{
	int i;

	for (i = 0; i <= TTM_PL_PRIV5; i++)
		if (flags & (1 << i)) {
			*mem_type = i;
			return 0;
		}
	return -EINVAL;
}

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static void ttm_mem_type_debug(struct ttm_bo_device *bdev, int mem_type)
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{
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	struct ttm_mem_type_manager *man = &bdev->man[mem_type];

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	pr_err("    has_type: %d\n", man->has_type);
	pr_err("    use_type: %d\n", man->use_type);
	pr_err("    flags: 0x%08X\n", man->flags);
	pr_err("    gpu_offset: 0x%08lX\n", man->gpu_offset);
	pr_err("    size: %llu\n", man->size);
	pr_err("    available_caching: 0x%08X\n", man->available_caching);
	pr_err("    default_caching: 0x%08X\n", man->default_caching);
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	if (mem_type != TTM_PL_SYSTEM)
		(*man->func->debug)(man, TTM_PFX);
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}

static void ttm_bo_mem_space_debug(struct ttm_buffer_object *bo,
					struct ttm_placement *placement)
{
	int i, ret, mem_type;

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	pr_err("No space for %p (%lu pages, %luK, %luM)\n",
	       bo, bo->mem.num_pages, bo->mem.size >> 10,
	       bo->mem.size >> 20);
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	for (i = 0; i < placement->num_placement; i++) {
		ret = ttm_mem_type_from_flags(placement->placement[i],
						&mem_type);
		if (ret)
			return;
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		pr_err("  placement[%d]=0x%08X (%d)\n",
		       i, placement->placement[i], mem_type);
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		ttm_mem_type_debug(bo->bdev, mem_type);
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	}
}

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static ssize_t ttm_bo_global_show(struct kobject *kobj,
				  struct attribute *attr,
				  char *buffer)
{
	struct ttm_bo_global *glob =
		container_of(kobj, struct ttm_bo_global, kobj);

	return snprintf(buffer, PAGE_SIZE, "%lu\n",
			(unsigned long) atomic_read(&glob->bo_count));
}

static struct attribute *ttm_bo_global_attrs[] = {
	&ttm_bo_count,
	NULL
};

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static const struct sysfs_ops ttm_bo_global_ops = {
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	.show = &ttm_bo_global_show
};

static struct kobj_type ttm_bo_glob_kobj_type  = {
	.release = &ttm_bo_global_kobj_release,
	.sysfs_ops = &ttm_bo_global_ops,
	.default_attrs = ttm_bo_global_attrs
};

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static inline uint32_t ttm_bo_type_flags(unsigned type)
{
	return 1 << (type);
}

static void ttm_bo_release_list(struct kref *list_kref)
{
	struct ttm_buffer_object *bo =
	    container_of(list_kref, struct ttm_buffer_object, list_kref);
	struct ttm_bo_device *bdev = bo->bdev;
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	size_t acc_size = bo->acc_size;
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	BUG_ON(atomic_read(&bo->list_kref.refcount));
	BUG_ON(atomic_read(&bo->kref.refcount));
	BUG_ON(atomic_read(&bo->cpu_writers));
	BUG_ON(bo->sync_obj != NULL);
	BUG_ON(bo->mem.mm_node != NULL);
	BUG_ON(!list_empty(&bo->lru));
	BUG_ON(!list_empty(&bo->ddestroy));

	if (bo->ttm)
		ttm_tt_destroy(bo->ttm);
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	atomic_dec(&bo->glob->bo_count);
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	if (bo->destroy)
		bo->destroy(bo);
	else {
		kfree(bo);
	}
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	ttm_mem_global_free(bdev->glob->mem_glob, acc_size);
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}

int ttm_bo_wait_unreserved(struct ttm_buffer_object *bo, bool interruptible)
{
	if (interruptible) {
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		return wait_event_interruptible(bo->event_queue,
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					       !ttm_bo_is_reserved(bo));
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	} else {
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		wait_event(bo->event_queue, !ttm_bo_is_reserved(bo));
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		return 0;
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	}
}
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EXPORT_SYMBOL(ttm_bo_wait_unreserved);
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void ttm_bo_add_to_lru(struct ttm_buffer_object *bo)
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{
	struct ttm_bo_device *bdev = bo->bdev;
	struct ttm_mem_type_manager *man;

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	BUG_ON(!ttm_bo_is_reserved(bo));
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	if (!(bo->mem.placement & TTM_PL_FLAG_NO_EVICT)) {

		BUG_ON(!list_empty(&bo->lru));

		man = &bdev->man[bo->mem.mem_type];
		list_add_tail(&bo->lru, &man->lru);
		kref_get(&bo->list_kref);

		if (bo->ttm != NULL) {
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			list_add_tail(&bo->swap, &bo->glob->swap_lru);
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			kref_get(&bo->list_kref);
		}
	}
}

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int ttm_bo_del_from_lru(struct ttm_buffer_object *bo)
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{
	int put_count = 0;

	if (!list_empty(&bo->swap)) {
		list_del_init(&bo->swap);
		++put_count;
	}
	if (!list_empty(&bo->lru)) {
		list_del_init(&bo->lru);
		++put_count;
	}

	/*
	 * TODO: Add a driver hook to delete from
	 * driver-specific LRU's here.
	 */

	return put_count;
}

int ttm_bo_reserve_locked(struct ttm_buffer_object *bo,
			  bool interruptible,
			  bool no_wait, bool use_sequence, uint32_t sequence)
{
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	struct ttm_bo_global *glob = bo->glob;
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	int ret;

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	while (unlikely(atomic_read(&bo->reserved) != 0)) {
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		/**
		 * Deadlock avoidance for multi-bo reserving.
		 */
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		if (use_sequence && bo->seq_valid) {
			/**
			 * We've already reserved this one.
			 */
			if (unlikely(sequence == bo->val_seq))
				return -EDEADLK;
			/**
			 * Already reserved by a thread that will not back
			 * off for us. We need to back off.
			 */
			if (unlikely(sequence - bo->val_seq < (1 << 31)))
				return -EAGAIN;
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		}

		if (no_wait)
			return -EBUSY;

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		spin_unlock(&glob->lru_lock);
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		ret = ttm_bo_wait_unreserved(bo, interruptible);
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		spin_lock(&glob->lru_lock);
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		if (unlikely(ret))
			return ret;
	}

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	atomic_set(&bo->reserved, 1);
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	if (use_sequence) {
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		/**
		 * Wake up waiters that may need to recheck for deadlock,
		 * if we decreased the sequence number.
		 */
		if (unlikely((bo->val_seq - sequence < (1 << 31))
			     || !bo->seq_valid))
			wake_up_all(&bo->event_queue);

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		bo->val_seq = sequence;
		bo->seq_valid = true;
	} else {
		bo->seq_valid = false;
	}

	return 0;
}
EXPORT_SYMBOL(ttm_bo_reserve);

static void ttm_bo_ref_bug(struct kref *list_kref)
{
	BUG();
}

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void ttm_bo_list_ref_sub(struct ttm_buffer_object *bo, int count,
			 bool never_free)
{
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	kref_sub(&bo->list_kref, count,
		 (never_free) ? ttm_bo_ref_bug : ttm_bo_release_list);
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}

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int ttm_bo_reserve(struct ttm_buffer_object *bo,
		   bool interruptible,
		   bool no_wait, bool use_sequence, uint32_t sequence)
{
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	struct ttm_bo_global *glob = bo->glob;
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	int put_count = 0;
	int ret;

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	spin_lock(&glob->lru_lock);
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	ret = ttm_bo_reserve_locked(bo, interruptible, no_wait, use_sequence,
				    sequence);
	if (likely(ret == 0))
		put_count = ttm_bo_del_from_lru(bo);
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	spin_unlock(&glob->lru_lock);
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	ttm_bo_list_ref_sub(bo, put_count, true);
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	return ret;
}

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void ttm_bo_unreserve_locked(struct ttm_buffer_object *bo)
{
	ttm_bo_add_to_lru(bo);
	atomic_set(&bo->reserved, 0);
	wake_up_all(&bo->event_queue);
}

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void ttm_bo_unreserve(struct ttm_buffer_object *bo)
{
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	struct ttm_bo_global *glob = bo->glob;
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	spin_lock(&glob->lru_lock);
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	ttm_bo_unreserve_locked(bo);
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	spin_unlock(&glob->lru_lock);
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}
EXPORT_SYMBOL(ttm_bo_unreserve);

/*
 * Call bo->mutex locked.
 */
static int ttm_bo_add_ttm(struct ttm_buffer_object *bo, bool zero_alloc)
{
	struct ttm_bo_device *bdev = bo->bdev;
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	struct ttm_bo_global *glob = bo->glob;
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	int ret = 0;
	uint32_t page_flags = 0;

	TTM_ASSERT_LOCKED(&bo->mutex);
	bo->ttm = NULL;

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	if (bdev->need_dma32)
		page_flags |= TTM_PAGE_FLAG_DMA32;

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	switch (bo->type) {
	case ttm_bo_type_device:
		if (zero_alloc)
			page_flags |= TTM_PAGE_FLAG_ZERO_ALLOC;
	case ttm_bo_type_kernel:
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		bo->ttm = bdev->driver->ttm_tt_create(bdev, bo->num_pages << PAGE_SHIFT,
						      page_flags, glob->dummy_read_page);
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		if (unlikely(bo->ttm == NULL))
			ret = -ENOMEM;
		break;
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	case ttm_bo_type_sg:
		bo->ttm = bdev->driver->ttm_tt_create(bdev, bo->num_pages << PAGE_SHIFT,
						      page_flags | TTM_PAGE_FLAG_SG,
						      glob->dummy_read_page);
		if (unlikely(bo->ttm == NULL)) {
			ret = -ENOMEM;
			break;
		}
		bo->ttm->sg = bo->sg;
		break;
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	default:
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		pr_err("Illegal buffer object type\n");
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		ret = -EINVAL;
		break;
	}

	return ret;
}

static int ttm_bo_handle_move_mem(struct ttm_buffer_object *bo,
				  struct ttm_mem_reg *mem,
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				  bool evict, bool interruptible,
				  bool no_wait_reserve, bool no_wait_gpu)
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{
	struct ttm_bo_device *bdev = bo->bdev;
	bool old_is_pci = ttm_mem_reg_is_pci(bdev, &bo->mem);
	bool new_is_pci = ttm_mem_reg_is_pci(bdev, mem);
	struct ttm_mem_type_manager *old_man = &bdev->man[bo->mem.mem_type];
	struct ttm_mem_type_manager *new_man = &bdev->man[mem->mem_type];
	int ret = 0;

	if (old_is_pci || new_is_pci ||
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	    ((mem->placement & bo->mem.placement & TTM_PL_MASK_CACHING) == 0)) {
		ret = ttm_mem_io_lock(old_man, true);
		if (unlikely(ret != 0))
			goto out_err;
		ttm_bo_unmap_virtual_locked(bo);
		ttm_mem_io_unlock(old_man);
	}
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	/*
	 * Create and bind a ttm if required.
	 */

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	if (!(new_man->flags & TTM_MEMTYPE_FLAG_FIXED)) {
		if (bo->ttm == NULL) {
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			bool zero = !(old_man->flags & TTM_MEMTYPE_FLAG_FIXED);
			ret = ttm_bo_add_ttm(bo, zero);
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			if (ret)
				goto out_err;
		}
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		ret = ttm_tt_set_placement_caching(bo->ttm, mem->placement);
		if (ret)
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			goto out_err;
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		if (mem->mem_type != TTM_PL_SYSTEM) {
			ret = ttm_tt_bind(bo->ttm, mem);
			if (ret)
				goto out_err;
		}

		if (bo->mem.mem_type == TTM_PL_SYSTEM) {
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			if (bdev->driver->move_notify)
				bdev->driver->move_notify(bo, mem);
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			bo->mem = *mem;
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			mem->mm_node = NULL;
			goto moved;
		}
	}

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	if (bdev->driver->move_notify)
		bdev->driver->move_notify(bo, mem);

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	if (!(old_man->flags & TTM_MEMTYPE_FLAG_FIXED) &&
	    !(new_man->flags & TTM_MEMTYPE_FLAG_FIXED))
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		ret = ttm_bo_move_ttm(bo, evict, no_wait_reserve, no_wait_gpu, mem);
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	else if (bdev->driver->move)
		ret = bdev->driver->move(bo, evict, interruptible,
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					 no_wait_reserve, no_wait_gpu, mem);
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	else
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		ret = ttm_bo_move_memcpy(bo, evict, no_wait_reserve, no_wait_gpu, mem);
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	if (ret) {
		if (bdev->driver->move_notify) {
			struct ttm_mem_reg tmp_mem = *mem;
			*mem = bo->mem;
			bo->mem = tmp_mem;
			bdev->driver->move_notify(bo, mem);
			bo->mem = *mem;
		}
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		goto out_err;
	}
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moved:
	if (bo->evicted) {
		ret = bdev->driver->invalidate_caches(bdev, bo->mem.placement);
		if (ret)
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			pr_err("Can not flush read caches\n");
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		bo->evicted = false;
	}

	if (bo->mem.mm_node) {
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		bo->offset = (bo->mem.start << PAGE_SHIFT) +
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		    bdev->man[bo->mem.mem_type].gpu_offset;
		bo->cur_placement = bo->mem.placement;
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	} else
		bo->offset = 0;
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	return 0;

out_err:
	new_man = &bdev->man[bo->mem.mem_type];
	if ((new_man->flags & TTM_MEMTYPE_FLAG_FIXED) && bo->ttm) {
		ttm_tt_unbind(bo->ttm);
		ttm_tt_destroy(bo->ttm);
		bo->ttm = NULL;
	}

	return ret;
}

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/**
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 * Call bo::reserved.
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 * Will release GPU memory type usage on destruction.
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 * This is the place to put in driver specific hooks to release
 * driver private resources.
 * Will release the bo::reserved lock.
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 */

static void ttm_bo_cleanup_memtype_use(struct ttm_buffer_object *bo)
{
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	if (bo->bdev->driver->move_notify)
		bo->bdev->driver->move_notify(bo, NULL);

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	if (bo->ttm) {
		ttm_tt_unbind(bo->ttm);
		ttm_tt_destroy(bo->ttm);
		bo->ttm = NULL;
	}
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	ttm_bo_mem_put(bo, &bo->mem);
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	atomic_set(&bo->reserved, 0);
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	/*
	 * Make processes trying to reserve really pick it up.
	 */
	smp_mb__after_atomic_dec();
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	wake_up_all(&bo->event_queue);
}

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static void ttm_bo_cleanup_refs_or_queue(struct ttm_buffer_object *bo)
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{
	struct ttm_bo_device *bdev = bo->bdev;
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	struct ttm_bo_global *glob = bo->glob;
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	struct ttm_bo_driver *driver;
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	void *sync_obj = NULL;
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	int put_count;
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	int ret;

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	spin_lock(&bdev->fence_lock);
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	(void) ttm_bo_wait(bo, false, false, true);
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	if (!bo->sync_obj) {

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		spin_lock(&glob->lru_lock);
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		/**
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		 * Lock inversion between bo:reserve and bdev::fence_lock here,
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		 * but that's OK, since we're only trylocking.
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		 */

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		ret = ttm_bo_reserve_locked(bo, false, true, false, 0);
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		if (unlikely(ret == -EBUSY))
			goto queue;
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		spin_unlock(&bdev->fence_lock);
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		put_count = ttm_bo_del_from_lru(bo);
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		spin_unlock(&glob->lru_lock);
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		ttm_bo_cleanup_memtype_use(bo);
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		ttm_bo_list_ref_sub(bo, put_count, true);
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		return;
	} else {
		spin_lock(&glob->lru_lock);
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	}
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queue:
	driver = bdev->driver;
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	if (bo->sync_obj)
		sync_obj = driver->sync_obj_ref(bo->sync_obj);
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	kref_get(&bo->list_kref);
	list_add_tail(&bo->ddestroy, &bdev->ddestroy);
	spin_unlock(&glob->lru_lock);
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	spin_unlock(&bdev->fence_lock);
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	if (sync_obj) {
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		driver->sync_obj_flush(sync_obj);
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		driver->sync_obj_unref(&sync_obj);
	}
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	schedule_delayed_work(&bdev->wq,
			      ((HZ / 100) < 1) ? 1 : HZ / 100);
}

/**
 * function ttm_bo_cleanup_refs
 * If bo idle, remove from delayed- and lru lists, and unref.
 * If not idle, do nothing.
 *
 * @interruptible         Any sleeps should occur interruptibly.
 * @no_wait_reserve       Never wait for reserve. Return -EBUSY instead.
 * @no_wait_gpu           Never wait for gpu. Return -EBUSY instead.
 */

static int ttm_bo_cleanup_refs(struct ttm_buffer_object *bo,
			       bool interruptible,
			       bool no_wait_reserve,
			       bool no_wait_gpu)
{
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	struct ttm_bo_device *bdev = bo->bdev;
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	struct ttm_bo_global *glob = bo->glob;
	int put_count;
	int ret = 0;

retry:
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	spin_lock(&bdev->fence_lock);
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	ret = ttm_bo_wait(bo, false, interruptible, no_wait_gpu);
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	spin_unlock(&bdev->fence_lock);
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	if (unlikely(ret != 0))
		return ret;

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retry_reserve:
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	spin_lock(&glob->lru_lock);
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	if (unlikely(list_empty(&bo->ddestroy))) {
		spin_unlock(&glob->lru_lock);
		return 0;
	}

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	ret = ttm_bo_reserve_locked(bo, false, true, false, 0);
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	if (unlikely(ret == -EBUSY)) {
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		spin_unlock(&glob->lru_lock);
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		if (likely(!no_wait_reserve))
			ret = ttm_bo_wait_unreserved(bo, interruptible);
		if (unlikely(ret != 0))
			return ret;

		goto retry_reserve;
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	}
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	BUG_ON(ret != 0);

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	/**
	 * We can re-check for sync object without taking
	 * the bo::lock since setting the sync object requires
	 * also bo::reserved. A busy object at this point may
	 * be caused by another thread recently starting an accelerated
	 * eviction.
	 */
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	if (unlikely(bo->sync_obj)) {
		atomic_set(&bo->reserved, 0);
		wake_up_all(&bo->event_queue);
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		spin_unlock(&glob->lru_lock);
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		goto retry;
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	}

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	put_count = ttm_bo_del_from_lru(bo);
	list_del_init(&bo->ddestroy);
	++put_count;

	spin_unlock(&glob->lru_lock);
	ttm_bo_cleanup_memtype_use(bo);

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	ttm_bo_list_ref_sub(bo, put_count, true);
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	return 0;
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}

/**
 * Traverse the delayed list, and call ttm_bo_cleanup_refs on all
 * encountered buffers.
 */

static int ttm_bo_delayed_delete(struct ttm_bo_device *bdev, bool remove_all)
{
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	struct ttm_bo_global *glob = bdev->glob;
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	struct ttm_buffer_object *entry = NULL;
	int ret = 0;
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642
	spin_lock(&glob->lru_lock);
643 644 645 646 647 648 649 650 651 652 653 654 655
	if (list_empty(&bdev->ddestroy))
		goto out_unlock;

	entry = list_first_entry(&bdev->ddestroy,
		struct ttm_buffer_object, ddestroy);
	kref_get(&entry->list_kref);

	for (;;) {
		struct ttm_buffer_object *nentry = NULL;

		if (entry->ddestroy.next != &bdev->ddestroy) {
			nentry = list_first_entry(&entry->ddestroy,
				struct ttm_buffer_object, ddestroy);
656 657 658
			kref_get(&nentry->list_kref);
		}

659
		spin_unlock(&glob->lru_lock);
660 661
		ret = ttm_bo_cleanup_refs(entry, false, !remove_all,
					  !remove_all);
662
		kref_put(&entry->list_kref, ttm_bo_release_list);
663 664 665 666
		entry = nentry;

		if (ret || !entry)
			goto out;
667

668
		spin_lock(&glob->lru_lock);
669
		if (list_empty(&entry->ddestroy))
670 671 672
			break;
	}

673 674 675 676 677
out_unlock:
	spin_unlock(&glob->lru_lock);
out:
	if (entry)
		kref_put(&entry->list_kref, ttm_bo_release_list);
678 679 680 681 682 683 684 685 686 687 688 689 690 691 692 693 694 695 696
	return ret;
}

static void ttm_bo_delayed_workqueue(struct work_struct *work)
{
	struct ttm_bo_device *bdev =
	    container_of(work, struct ttm_bo_device, wq.work);

	if (ttm_bo_delayed_delete(bdev, false)) {
		schedule_delayed_work(&bdev->wq,
				      ((HZ / 100) < 1) ? 1 : HZ / 100);
	}
}

static void ttm_bo_release(struct kref *kref)
{
	struct ttm_buffer_object *bo =
	    container_of(kref, struct ttm_buffer_object, kref);
	struct ttm_bo_device *bdev = bo->bdev;
697
	struct ttm_mem_type_manager *man = &bdev->man[bo->mem.mem_type];
698

699
	write_lock(&bdev->vm_lock);
700 701 702 703 704 705
	if (likely(bo->vm_node != NULL)) {
		rb_erase(&bo->vm_rb, &bdev->addr_space_rb);
		drm_mm_put_block(bo->vm_node);
		bo->vm_node = NULL;
	}
	write_unlock(&bdev->vm_lock);
706 707 708
	ttm_mem_io_lock(man, false);
	ttm_mem_io_free_vm(bo);
	ttm_mem_io_unlock(man);
709
	ttm_bo_cleanup_refs_or_queue(bo);
710 711 712 713 714 715 716 717 718 719 720 721
	kref_put(&bo->list_kref, ttm_bo_release_list);
}

void ttm_bo_unref(struct ttm_buffer_object **p_bo)
{
	struct ttm_buffer_object *bo = *p_bo;

	*p_bo = NULL;
	kref_put(&bo->kref, ttm_bo_release);
}
EXPORT_SYMBOL(ttm_bo_unref);

722 723 724 725 726 727 728 729 730 731 732 733 734 735
int ttm_bo_lock_delayed_workqueue(struct ttm_bo_device *bdev)
{
	return cancel_delayed_work_sync(&bdev->wq);
}
EXPORT_SYMBOL(ttm_bo_lock_delayed_workqueue);

void ttm_bo_unlock_delayed_workqueue(struct ttm_bo_device *bdev, int resched)
{
	if (resched)
		schedule_delayed_work(&bdev->wq,
				      ((HZ / 100) < 1) ? 1 : HZ / 100);
}
EXPORT_SYMBOL(ttm_bo_unlock_delayed_workqueue);

736
static int ttm_bo_evict(struct ttm_buffer_object *bo, bool interruptible,
737
			bool no_wait_reserve, bool no_wait_gpu)
738 739 740
{
	struct ttm_bo_device *bdev = bo->bdev;
	struct ttm_mem_reg evict_mem;
741 742
	struct ttm_placement placement;
	int ret = 0;
743

744
	spin_lock(&bdev->fence_lock);
745
	ret = ttm_bo_wait(bo, false, interruptible, no_wait_gpu);
746
	spin_unlock(&bdev->fence_lock);
747

748
	if (unlikely(ret != 0)) {
749
		if (ret != -ERESTARTSYS) {
J
Joe Perches 已提交
750
			pr_err("Failed to expire sync object before buffer eviction\n");
751
		}
752 753 754
		goto out;
	}

755
	BUG_ON(!ttm_bo_is_reserved(bo));
756 757 758

	evict_mem = bo->mem;
	evict_mem.mm_node = NULL;
759 760
	evict_mem.bus.io_reserved_vm = false;
	evict_mem.bus.io_reserved_count = 0;
761

762 763 764 765
	placement.fpfn = 0;
	placement.lpfn = 0;
	placement.num_placement = 0;
	placement.num_busy_placement = 0;
766 767
	bdev->driver->evict_flags(bo, &placement);
	ret = ttm_bo_mem_space(bo, &placement, &evict_mem, interruptible,
768
				no_wait_reserve, no_wait_gpu);
769
	if (ret) {
770
		if (ret != -ERESTARTSYS) {
J
Joe Perches 已提交
771 772
			pr_err("Failed to find memory space for buffer 0x%p eviction\n",
			       bo);
773 774
			ttm_bo_mem_space_debug(bo, &placement);
		}
775 776 777 778
		goto out;
	}

	ret = ttm_bo_handle_move_mem(bo, &evict_mem, true, interruptible,
779
				     no_wait_reserve, no_wait_gpu);
780
	if (ret) {
781
		if (ret != -ERESTARTSYS)
J
Joe Perches 已提交
782
			pr_err("Buffer eviction failed\n");
783
		ttm_bo_mem_put(bo, &evict_mem);
784 785
		goto out;
	}
786 787 788 789 790 791 792
	bo->evicted = true;
out:
	return ret;
}

static int ttm_mem_evict_first(struct ttm_bo_device *bdev,
				uint32_t mem_type,
793 794
				bool interruptible, bool no_wait_reserve,
				bool no_wait_gpu)
795 796 797 798 799
{
	struct ttm_bo_global *glob = bdev->glob;
	struct ttm_mem_type_manager *man = &bdev->man[mem_type];
	struct ttm_buffer_object *bo;
	int ret, put_count = 0;
800

801
retry:
802
	spin_lock(&glob->lru_lock);
803 804 805 806 807
	if (list_empty(&man->lru)) {
		spin_unlock(&glob->lru_lock);
		return -EBUSY;
	}

808 809
	bo = list_first_entry(&man->lru, struct ttm_buffer_object, lru);
	kref_get(&bo->list_kref);
810

811 812 813 814 815 816
	if (!list_empty(&bo->ddestroy)) {
		spin_unlock(&glob->lru_lock);
		ret = ttm_bo_cleanup_refs(bo, interruptible,
					  no_wait_reserve, no_wait_gpu);
		kref_put(&bo->list_kref, ttm_bo_release_list);

817
		return ret;
818 819
	}

T
Thomas Hellstrom 已提交
820
	ret = ttm_bo_reserve_locked(bo, false, true, false, 0);
821 822 823

	if (unlikely(ret == -EBUSY)) {
		spin_unlock(&glob->lru_lock);
T
Thomas Hellstrom 已提交
824
		if (likely(!no_wait_reserve))
825 826 827 828 829 830 831 832 833 834 835 836 837 838
			ret = ttm_bo_wait_unreserved(bo, interruptible);

		kref_put(&bo->list_kref, ttm_bo_release_list);

		/**
		 * We *need* to retry after releasing the lru lock.
		 */

		if (unlikely(ret != 0))
			return ret;
		goto retry;
	}

	put_count = ttm_bo_del_from_lru(bo);
839
	spin_unlock(&glob->lru_lock);
840 841 842

	BUG_ON(ret != 0);

843
	ttm_bo_list_ref_sub(bo, put_count, true);
844

845
	ret = ttm_bo_evict(bo, interruptible, no_wait_reserve, no_wait_gpu);
846
	ttm_bo_unreserve(bo);
847

848
	kref_put(&bo->list_kref, ttm_bo_release_list);
849 850 851
	return ret;
}

852 853
void ttm_bo_mem_put(struct ttm_buffer_object *bo, struct ttm_mem_reg *mem)
{
854
	struct ttm_mem_type_manager *man = &bo->bdev->man[mem->mem_type];
855

856 857
	if (mem->mm_node)
		(*man->func->put_node)(man, mem);
858 859 860
}
EXPORT_SYMBOL(ttm_bo_mem_put);

861 862 863 864
/**
 * Repeatedly evict memory from the LRU for @mem_type until we create enough
 * space, or we've evicted everything and there isn't enough space.
 */
865 866 867 868
static int ttm_bo_mem_force_space(struct ttm_buffer_object *bo,
					uint32_t mem_type,
					struct ttm_placement *placement,
					struct ttm_mem_reg *mem,
869 870 871
					bool interruptible,
					bool no_wait_reserve,
					bool no_wait_gpu)
872
{
873
	struct ttm_bo_device *bdev = bo->bdev;
874 875 876 877
	struct ttm_mem_type_manager *man = &bdev->man[mem_type];
	int ret;

	do {
878
		ret = (*man->func->get_node)(man, bo, placement, mem);
879 880
		if (unlikely(ret != 0))
			return ret;
881
		if (mem->mm_node)
882
			break;
883
		ret = ttm_mem_evict_first(bdev, mem_type, interruptible,
884
						no_wait_reserve, no_wait_gpu);
885 886 887
		if (unlikely(ret != 0))
			return ret;
	} while (1);
888
	if (mem->mm_node == NULL)
889 890 891 892 893
		return -ENOMEM;
	mem->mem_type = mem_type;
	return 0;
}

894 895 896 897 898 899 900 901 902 903 904 905 906 907 908 909 910 911 912 913 914 915 916 917 918
static uint32_t ttm_bo_select_caching(struct ttm_mem_type_manager *man,
				      uint32_t cur_placement,
				      uint32_t proposed_placement)
{
	uint32_t caching = proposed_placement & TTM_PL_MASK_CACHING;
	uint32_t result = proposed_placement & ~TTM_PL_MASK_CACHING;

	/**
	 * Keep current caching if possible.
	 */

	if ((cur_placement & caching) != 0)
		result |= (cur_placement & caching);
	else if ((man->default_caching & caching) != 0)
		result |= man->default_caching;
	else if ((TTM_PL_FLAG_CACHED & caching) != 0)
		result |= TTM_PL_FLAG_CACHED;
	else if ((TTM_PL_FLAG_WC & caching) != 0)
		result |= TTM_PL_FLAG_WC;
	else if ((TTM_PL_FLAG_UNCACHED & caching) != 0)
		result |= TTM_PL_FLAG_UNCACHED;

	return result;
}

919 920
static bool ttm_bo_mt_compatible(struct ttm_mem_type_manager *man,
				 uint32_t mem_type,
921 922
				 uint32_t proposed_placement,
				 uint32_t *masked_placement)
923 924 925
{
	uint32_t cur_flags = ttm_bo_type_flags(mem_type);

926
	if ((cur_flags & proposed_placement & TTM_PL_MASK_MEM) == 0)
927 928
		return false;

929
	if ((proposed_placement & man->available_caching) == 0)
930 931
		return false;

932 933 934
	cur_flags |= (proposed_placement & man->available_caching);

	*masked_placement = cur_flags;
935 936 937 938 939 940 941 942 943 944 945 946
	return true;
}

/**
 * Creates space for memory region @mem according to its type.
 *
 * This function first searches for free space in compatible memory types in
 * the priority order defined by the driver.  If free space isn't found, then
 * ttm_bo_mem_force_space is attempted in priority order to evict and find
 * space.
 */
int ttm_bo_mem_space(struct ttm_buffer_object *bo,
947 948
			struct ttm_placement *placement,
			struct ttm_mem_reg *mem,
949 950
			bool interruptible, bool no_wait_reserve,
			bool no_wait_gpu)
951 952 953 954 955 956 957
{
	struct ttm_bo_device *bdev = bo->bdev;
	struct ttm_mem_type_manager *man;
	uint32_t mem_type = TTM_PL_SYSTEM;
	uint32_t cur_flags = 0;
	bool type_found = false;
	bool type_ok = false;
958
	bool has_erestartsys = false;
959
	int i, ret;
960 961

	mem->mm_node = NULL;
962
	for (i = 0; i < placement->num_placement; ++i) {
963 964 965 966
		ret = ttm_mem_type_from_flags(placement->placement[i],
						&mem_type);
		if (ret)
			return ret;
967 968 969
		man = &bdev->man[mem_type];

		type_ok = ttm_bo_mt_compatible(man,
970 971 972
						mem_type,
						placement->placement[i],
						&cur_flags);
973 974 975 976

		if (!type_ok)
			continue;

977 978
		cur_flags = ttm_bo_select_caching(man, bo->mem.placement,
						  cur_flags);
979 980 981 982 983 984
		/*
		 * Use the access and other non-mapping-related flag bits from
		 * the memory placement flags to the current flags
		 */
		ttm_flag_masked(&cur_flags, placement->placement[i],
				~TTM_PL_MASK_MEMTYPE);
985

986 987 988 989 990
		if (mem_type == TTM_PL_SYSTEM)
			break;

		if (man->has_type && man->use_type) {
			type_found = true;
991
			ret = (*man->func->get_node)(man, bo, placement, mem);
992 993
			if (unlikely(ret))
				return ret;
994
		}
995
		if (mem->mm_node)
996 997 998
			break;
	}

999
	if ((type_ok && (mem_type == TTM_PL_SYSTEM)) || mem->mm_node) {
1000 1001 1002 1003 1004 1005 1006 1007
		mem->mem_type = mem_type;
		mem->placement = cur_flags;
		return 0;
	}

	if (!type_found)
		return -EINVAL;

1008 1009
	for (i = 0; i < placement->num_busy_placement; ++i) {
		ret = ttm_mem_type_from_flags(placement->busy_placement[i],
1010 1011 1012
						&mem_type);
		if (ret)
			return ret;
1013 1014 1015 1016
		man = &bdev->man[mem_type];
		if (!man->has_type)
			continue;
		if (!ttm_bo_mt_compatible(man,
1017
						mem_type,
1018
						placement->busy_placement[i],
1019
						&cur_flags))
1020 1021
			continue;

1022 1023
		cur_flags = ttm_bo_select_caching(man, bo->mem.placement,
						  cur_flags);
1024 1025 1026 1027
		/*
		 * Use the access and other non-mapping-related flag bits from
		 * the memory placement flags to the current flags
		 */
1028
		ttm_flag_masked(&cur_flags, placement->busy_placement[i],
1029
				~TTM_PL_MASK_MEMTYPE);
1030

1031 1032 1033 1034 1035 1036 1037 1038

		if (mem_type == TTM_PL_SYSTEM) {
			mem->mem_type = mem_type;
			mem->placement = cur_flags;
			mem->mm_node = NULL;
			return 0;
		}

1039
		ret = ttm_bo_mem_force_space(bo, mem_type, placement, mem,
1040
						interruptible, no_wait_reserve, no_wait_gpu);
1041 1042 1043 1044
		if (ret == 0 && mem->mm_node) {
			mem->placement = cur_flags;
			return 0;
		}
1045 1046
		if (ret == -ERESTARTSYS)
			has_erestartsys = true;
1047
	}
1048
	ret = (has_erestartsys) ? -ERESTARTSYS : -ENOMEM;
1049 1050 1051 1052 1053
	return ret;
}
EXPORT_SYMBOL(ttm_bo_mem_space);

int ttm_bo_move_buffer(struct ttm_buffer_object *bo,
1054
			struct ttm_placement *placement,
1055 1056
			bool interruptible, bool no_wait_reserve,
			bool no_wait_gpu)
1057 1058 1059
{
	int ret = 0;
	struct ttm_mem_reg mem;
1060
	struct ttm_bo_device *bdev = bo->bdev;
1061

1062
	BUG_ON(!ttm_bo_is_reserved(bo));
1063 1064 1065 1066 1067 1068

	/*
	 * FIXME: It's possible to pipeline buffer moves.
	 * Have the driver move function wait for idle when necessary,
	 * instead of doing it here.
	 */
1069
	spin_lock(&bdev->fence_lock);
1070
	ret = ttm_bo_wait(bo, false, interruptible, no_wait_gpu);
1071
	spin_unlock(&bdev->fence_lock);
1072 1073 1074 1075 1076
	if (ret)
		return ret;
	mem.num_pages = bo->num_pages;
	mem.size = mem.num_pages << PAGE_SHIFT;
	mem.page_alignment = bo->mem.page_alignment;
1077 1078
	mem.bus.io_reserved_vm = false;
	mem.bus.io_reserved_count = 0;
1079 1080 1081
	/*
	 * Determine where to move the buffer.
	 */
1082
	ret = ttm_bo_mem_space(bo, placement, &mem, interruptible, no_wait_reserve, no_wait_gpu);
1083 1084
	if (ret)
		goto out_unlock;
1085
	ret = ttm_bo_handle_move_mem(bo, &mem, false, interruptible, no_wait_reserve, no_wait_gpu);
1086
out_unlock:
1087 1088
	if (ret && mem.mm_node)
		ttm_bo_mem_put(bo, &mem);
1089 1090 1091
	return ret;
}

1092
static int ttm_bo_mem_compat(struct ttm_placement *placement,
1093 1094
			     struct ttm_mem_reg *mem)
{
1095
	int i;
1096

1097 1098 1099
	if (mem->mm_node && placement->lpfn != 0 &&
	    (mem->start < placement->fpfn ||
	     mem->start + mem->num_pages > placement->lpfn))
1100
		return -1;
1101 1102 1103 1104 1105 1106 1107 1108 1109

	for (i = 0; i < placement->num_placement; i++) {
		if ((placement->placement[i] & mem->placement &
			TTM_PL_MASK_CACHING) &&
			(placement->placement[i] & mem->placement &
			TTM_PL_MASK_MEM))
			return i;
	}
	return -1;
1110 1111
}

1112 1113
int ttm_bo_validate(struct ttm_buffer_object *bo,
			struct ttm_placement *placement,
1114 1115
			bool interruptible, bool no_wait_reserve,
			bool no_wait_gpu)
1116 1117 1118
{
	int ret;

1119
	BUG_ON(!ttm_bo_is_reserved(bo));
1120 1121 1122 1123 1124
	/* Check that range is valid */
	if (placement->lpfn || placement->fpfn)
		if (placement->fpfn > placement->lpfn ||
			(placement->lpfn - placement->fpfn) < bo->num_pages)
			return -EINVAL;
1125 1126 1127
	/*
	 * Check whether we need to move buffer.
	 */
1128 1129
	ret = ttm_bo_mem_compat(placement, &bo->mem);
	if (ret < 0) {
1130
		ret = ttm_bo_move_buffer(bo, placement, interruptible, no_wait_reserve, no_wait_gpu);
1131
		if (ret)
1132
			return ret;
1133 1134 1135 1136 1137 1138 1139
	} else {
		/*
		 * Use the access and other non-mapping-related flag bits from
		 * the compatible memory placement flags to the active flags
		 */
		ttm_flag_masked(&bo->mem.placement, placement->placement[ret],
				~TTM_PL_MASK_MEMTYPE);
1140 1141 1142 1143 1144 1145 1146 1147 1148 1149 1150
	}
	/*
	 * We might need to add a TTM.
	 */
	if (bo->mem.mem_type == TTM_PL_SYSTEM && bo->ttm == NULL) {
		ret = ttm_bo_add_ttm(bo, true);
		if (ret)
			return ret;
	}
	return 0;
}
1151
EXPORT_SYMBOL(ttm_bo_validate);
1152

1153 1154
int ttm_bo_check_placement(struct ttm_buffer_object *bo,
				struct ttm_placement *placement)
1155
{
1156 1157
	BUG_ON((placement->fpfn || placement->lpfn) &&
	       (bo->mem.num_pages > (placement->lpfn - placement->fpfn)));
1158 1159 1160 1161

	return 0;
}

1162 1163 1164 1165 1166 1167 1168
int ttm_bo_init(struct ttm_bo_device *bdev,
		struct ttm_buffer_object *bo,
		unsigned long size,
		enum ttm_bo_type type,
		struct ttm_placement *placement,
		uint32_t page_alignment,
		bool interruptible,
J
Jan Engelhardt 已提交
1169
		struct file *persistent_swap_storage,
1170
		size_t acc_size,
1171
		struct sg_table *sg,
1172
		void (*destroy) (struct ttm_buffer_object *))
1173
{
1174
	int ret = 0;
1175
	unsigned long num_pages;
1176 1177 1178 1179
	struct ttm_mem_global *mem_glob = bdev->glob->mem_glob;

	ret = ttm_mem_global_alloc(mem_glob, acc_size, false, false);
	if (ret) {
J
Joe Perches 已提交
1180
		pr_err("Out of kernel memory\n");
1181 1182 1183 1184 1185 1186
		if (destroy)
			(*destroy)(bo);
		else
			kfree(bo);
		return -ENOMEM;
	}
1187 1188 1189

	num_pages = (size + PAGE_SIZE - 1) >> PAGE_SHIFT;
	if (num_pages == 0) {
J
Joe Perches 已提交
1190
		pr_err("Illegal buffer object size\n");
1191 1192 1193 1194
		if (destroy)
			(*destroy)(bo);
		else
			kfree(bo);
1195
		ttm_mem_global_free(mem_glob, acc_size);
1196 1197 1198 1199 1200 1201 1202 1203 1204 1205 1206 1207
		return -EINVAL;
	}
	bo->destroy = destroy;

	kref_init(&bo->kref);
	kref_init(&bo->list_kref);
	atomic_set(&bo->cpu_writers, 0);
	atomic_set(&bo->reserved, 1);
	init_waitqueue_head(&bo->event_queue);
	INIT_LIST_HEAD(&bo->lru);
	INIT_LIST_HEAD(&bo->ddestroy);
	INIT_LIST_HEAD(&bo->swap);
1208
	INIT_LIST_HEAD(&bo->io_reserve_lru);
1209
	bo->bdev = bdev;
1210
	bo->glob = bdev->glob;
1211 1212
	bo->type = type;
	bo->num_pages = num_pages;
1213
	bo->mem.size = num_pages << PAGE_SHIFT;
1214 1215 1216 1217
	bo->mem.mem_type = TTM_PL_SYSTEM;
	bo->mem.num_pages = bo->num_pages;
	bo->mem.mm_node = NULL;
	bo->mem.page_alignment = page_alignment;
1218 1219
	bo->mem.bus.io_reserved_vm = false;
	bo->mem.bus.io_reserved_count = 0;
1220 1221 1222
	bo->priv_flags = 0;
	bo->mem.placement = (TTM_PL_FLAG_SYSTEM | TTM_PL_FLAG_CACHED);
	bo->seq_valid = false;
J
Jan Engelhardt 已提交
1223
	bo->persistent_swap_storage = persistent_swap_storage;
1224
	bo->acc_size = acc_size;
1225
	bo->sg = sg;
1226
	atomic_inc(&bo->glob->bo_count);
1227

1228
	ret = ttm_bo_check_placement(bo, placement);
1229 1230 1231 1232 1233 1234 1235
	if (unlikely(ret != 0))
		goto out_err;

	/*
	 * For ttm_bo_type_device buffers, allocate
	 * address space from the device.
	 */
1236 1237
	if (bo->type == ttm_bo_type_device ||
	    bo->type == ttm_bo_type_sg) {
1238 1239 1240 1241 1242
		ret = ttm_bo_setup_vm(bo);
		if (ret)
			goto out_err;
	}

1243
	ret = ttm_bo_validate(bo, placement, interruptible, false, false);
1244 1245 1246 1247 1248 1249 1250 1251 1252 1253 1254 1255
	if (ret)
		goto out_err;

	ttm_bo_unreserve(bo);
	return 0;

out_err:
	ttm_bo_unreserve(bo);
	ttm_bo_unref(&bo);

	return ret;
}
1256
EXPORT_SYMBOL(ttm_bo_init);
1257

1258 1259 1260
size_t ttm_bo_acc_size(struct ttm_bo_device *bdev,
		       unsigned long bo_size,
		       unsigned struct_size)
1261
{
1262 1263
	unsigned npages = (PAGE_ALIGN(bo_size)) >> PAGE_SHIFT;
	size_t size = 0;
1264

1265 1266 1267 1268
	size += ttm_round_pot(struct_size);
	size += PAGE_ALIGN(npages * sizeof(void *));
	size += ttm_round_pot(sizeof(struct ttm_tt));
	return size;
1269
}
1270 1271 1272 1273 1274 1275 1276 1277 1278 1279 1280 1281 1282 1283 1284 1285
EXPORT_SYMBOL(ttm_bo_acc_size);

size_t ttm_bo_dma_acc_size(struct ttm_bo_device *bdev,
			   unsigned long bo_size,
			   unsigned struct_size)
{
	unsigned npages = (PAGE_ALIGN(bo_size)) >> PAGE_SHIFT;
	size_t size = 0;

	size += ttm_round_pot(struct_size);
	size += PAGE_ALIGN(npages * sizeof(void *));
	size += PAGE_ALIGN(npages * sizeof(dma_addr_t));
	size += ttm_round_pot(sizeof(struct ttm_dma_tt));
	return size;
}
EXPORT_SYMBOL(ttm_bo_dma_acc_size);
1286

1287 1288 1289 1290 1291 1292
int ttm_bo_create(struct ttm_bo_device *bdev,
			unsigned long size,
			enum ttm_bo_type type,
			struct ttm_placement *placement,
			uint32_t page_alignment,
			bool interruptible,
J
Jan Engelhardt 已提交
1293
			struct file *persistent_swap_storage,
1294
			struct ttm_buffer_object **p_bo)
1295 1296
{
	struct ttm_buffer_object *bo;
1297
	size_t acc_size;
1298
	int ret;
1299 1300

	bo = kzalloc(sizeof(*bo), GFP_KERNEL);
1301
	if (unlikely(bo == NULL))
1302 1303
		return -ENOMEM;

1304
	acc_size = ttm_bo_acc_size(bdev, size, sizeof(struct ttm_buffer_object));
1305
	ret = ttm_bo_init(bdev, bo, size, type, placement, page_alignment,
1306 1307
			  interruptible, persistent_swap_storage, acc_size,
			  NULL, NULL);
1308 1309 1310 1311 1312
	if (likely(ret == 0))
		*p_bo = bo;

	return ret;
}
T
Thomas Hellstrom 已提交
1313
EXPORT_SYMBOL(ttm_bo_create);
1314 1315

static int ttm_bo_force_list_clean(struct ttm_bo_device *bdev,
1316
					unsigned mem_type, bool allow_errors)
1317
{
1318
	struct ttm_mem_type_manager *man = &bdev->man[mem_type];
1319
	struct ttm_bo_global *glob = bdev->glob;
1320 1321 1322 1323 1324 1325
	int ret;

	/*
	 * Can't use standard list traversal since we're unlocking.
	 */

1326
	spin_lock(&glob->lru_lock);
1327
	while (!list_empty(&man->lru)) {
1328
		spin_unlock(&glob->lru_lock);
1329
		ret = ttm_mem_evict_first(bdev, mem_type, false, false, false);
1330 1331 1332 1333
		if (ret) {
			if (allow_errors) {
				return ret;
			} else {
J
Joe Perches 已提交
1334
				pr_err("Cleanup eviction failed\n");
1335 1336
			}
		}
1337
		spin_lock(&glob->lru_lock);
1338
	}
1339
	spin_unlock(&glob->lru_lock);
1340 1341 1342 1343 1344
	return 0;
}

int ttm_bo_clean_mm(struct ttm_bo_device *bdev, unsigned mem_type)
{
R
Roel Kluin 已提交
1345
	struct ttm_mem_type_manager *man;
1346 1347 1348
	int ret = -EINVAL;

	if (mem_type >= TTM_NUM_MEM_TYPES) {
J
Joe Perches 已提交
1349
		pr_err("Illegal memory type %d\n", mem_type);
1350 1351
		return ret;
	}
R
Roel Kluin 已提交
1352
	man = &bdev->man[mem_type];
1353 1354

	if (!man->has_type) {
J
Joe Perches 已提交
1355 1356
		pr_err("Trying to take down uninitialized memory manager type %u\n",
		       mem_type);
1357 1358 1359 1360 1361 1362 1363 1364
		return ret;
	}

	man->use_type = false;
	man->has_type = false;

	ret = 0;
	if (mem_type > 0) {
1365
		ttm_bo_force_list_clean(bdev, mem_type, false);
1366

1367
		ret = (*man->func->takedown)(man);
1368 1369 1370 1371 1372 1373 1374 1375 1376 1377 1378
	}

	return ret;
}
EXPORT_SYMBOL(ttm_bo_clean_mm);

int ttm_bo_evict_mm(struct ttm_bo_device *bdev, unsigned mem_type)
{
	struct ttm_mem_type_manager *man = &bdev->man[mem_type];

	if (mem_type == 0 || mem_type >= TTM_NUM_MEM_TYPES) {
J
Joe Perches 已提交
1379
		pr_err("Illegal memory manager memory type %u\n", mem_type);
1380 1381 1382 1383
		return -EINVAL;
	}

	if (!man->has_type) {
J
Joe Perches 已提交
1384
		pr_err("Memory type %u has not been initialized\n", mem_type);
1385 1386 1387
		return 0;
	}

1388
	return ttm_bo_force_list_clean(bdev, mem_type, true);
1389 1390 1391 1392
}
EXPORT_SYMBOL(ttm_bo_evict_mm);

int ttm_bo_init_mm(struct ttm_bo_device *bdev, unsigned type,
1393
			unsigned long p_size)
1394 1395 1396 1397
{
	int ret = -EINVAL;
	struct ttm_mem_type_manager *man;

1398
	BUG_ON(type >= TTM_NUM_MEM_TYPES);
1399
	man = &bdev->man[type];
1400
	BUG_ON(man->has_type);
1401 1402 1403 1404
	man->io_reserve_fastpath = true;
	man->use_io_reserve_lru = false;
	mutex_init(&man->io_reserve_mutex);
	INIT_LIST_HEAD(&man->io_reserve_lru);
1405 1406 1407 1408

	ret = bdev->driver->init_mem_type(bdev, type, man);
	if (ret)
		return ret;
1409
	man->bdev = bdev;
1410 1411 1412

	ret = 0;
	if (type != TTM_PL_SYSTEM) {
1413
		ret = (*man->func->init)(man, p_size);
1414 1415 1416 1417 1418 1419 1420 1421 1422 1423 1424 1425 1426
		if (ret)
			return ret;
	}
	man->has_type = true;
	man->use_type = true;
	man->size = p_size;

	INIT_LIST_HEAD(&man->lru);

	return 0;
}
EXPORT_SYMBOL(ttm_bo_init_mm);

1427 1428 1429 1430 1431 1432 1433 1434 1435 1436
static void ttm_bo_global_kobj_release(struct kobject *kobj)
{
	struct ttm_bo_global *glob =
		container_of(kobj, struct ttm_bo_global, kobj);

	ttm_mem_unregister_shrink(glob->mem_glob, &glob->shrink);
	__free_page(glob->dummy_read_page);
	kfree(glob);
}

1437
void ttm_bo_global_release(struct drm_global_reference *ref)
1438 1439 1440 1441 1442 1443 1444 1445
{
	struct ttm_bo_global *glob = ref->object;

	kobject_del(&glob->kobj);
	kobject_put(&glob->kobj);
}
EXPORT_SYMBOL(ttm_bo_global_release);

1446
int ttm_bo_global_init(struct drm_global_reference *ref)
1447 1448 1449 1450 1451 1452 1453 1454 1455 1456 1457 1458 1459 1460 1461 1462 1463 1464 1465 1466 1467 1468
{
	struct ttm_bo_global_ref *bo_ref =
		container_of(ref, struct ttm_bo_global_ref, ref);
	struct ttm_bo_global *glob = ref->object;
	int ret;

	mutex_init(&glob->device_list_mutex);
	spin_lock_init(&glob->lru_lock);
	glob->mem_glob = bo_ref->mem_glob;
	glob->dummy_read_page = alloc_page(__GFP_ZERO | GFP_DMA32);

	if (unlikely(glob->dummy_read_page == NULL)) {
		ret = -ENOMEM;
		goto out_no_drp;
	}

	INIT_LIST_HEAD(&glob->swap_lru);
	INIT_LIST_HEAD(&glob->device_list);

	ttm_mem_init_shrink(&glob->shrink, ttm_bo_swapout);
	ret = ttm_mem_register_shrink(glob->mem_glob, &glob->shrink);
	if (unlikely(ret != 0)) {
J
Joe Perches 已提交
1469
		pr_err("Could not register buffer object swapout\n");
1470 1471 1472 1473 1474
		goto out_no_shrink;
	}

	atomic_set(&glob->bo_count, 0);

1475 1476
	ret = kobject_init_and_add(
		&glob->kobj, &ttm_bo_glob_kobj_type, ttm_get_kobj(), "buffer_objects");
1477 1478 1479 1480 1481 1482 1483 1484 1485 1486 1487 1488
	if (unlikely(ret != 0))
		kobject_put(&glob->kobj);
	return ret;
out_no_shrink:
	__free_page(glob->dummy_read_page);
out_no_drp:
	kfree(glob);
	return ret;
}
EXPORT_SYMBOL(ttm_bo_global_init);


1489 1490 1491 1492 1493
int ttm_bo_device_release(struct ttm_bo_device *bdev)
{
	int ret = 0;
	unsigned i = TTM_NUM_MEM_TYPES;
	struct ttm_mem_type_manager *man;
1494
	struct ttm_bo_global *glob = bdev->glob;
1495 1496 1497 1498 1499 1500 1501

	while (i--) {
		man = &bdev->man[i];
		if (man->has_type) {
			man->use_type = false;
			if ((i != TTM_PL_SYSTEM) && ttm_bo_clean_mm(bdev, i)) {
				ret = -EBUSY;
J
Joe Perches 已提交
1502 1503
				pr_err("DRM memory manager type %d is not clean\n",
				       i);
1504 1505 1506 1507 1508
			}
			man->has_type = false;
		}
	}

1509 1510 1511 1512
	mutex_lock(&glob->device_list_mutex);
	list_del(&bdev->device_list);
	mutex_unlock(&glob->device_list_mutex);

1513
	cancel_delayed_work_sync(&bdev->wq);
1514 1515 1516 1517

	while (ttm_bo_delayed_delete(bdev, true))
		;

1518
	spin_lock(&glob->lru_lock);
1519 1520 1521 1522 1523
	if (list_empty(&bdev->ddestroy))
		TTM_DEBUG("Delayed destroy list was clean\n");

	if (list_empty(&bdev->man[0].lru))
		TTM_DEBUG("Swap list was clean\n");
1524
	spin_unlock(&glob->lru_lock);
1525 1526 1527 1528 1529 1530 1531 1532 1533 1534 1535

	BUG_ON(!drm_mm_clean(&bdev->addr_space_mm));
	write_lock(&bdev->vm_lock);
	drm_mm_takedown(&bdev->addr_space_mm);
	write_unlock(&bdev->vm_lock);

	return ret;
}
EXPORT_SYMBOL(ttm_bo_device_release);

int ttm_bo_device_init(struct ttm_bo_device *bdev,
1536 1537
		       struct ttm_bo_global *glob,
		       struct ttm_bo_driver *driver,
D
Dave Airlie 已提交
1538
		       uint64_t file_page_offset,
D
Dave Airlie 已提交
1539
		       bool need_dma32)
1540 1541 1542 1543 1544 1545 1546 1547 1548 1549 1550 1551
{
	int ret = -EINVAL;

	rwlock_init(&bdev->vm_lock);
	bdev->driver = driver;

	memset(bdev->man, 0, sizeof(bdev->man));

	/*
	 * Initialize the system memory buffer type.
	 * Other types need to be driver / IOCTL initialized.
	 */
1552
	ret = ttm_bo_init_mm(bdev, TTM_PL_SYSTEM, 0);
1553
	if (unlikely(ret != 0))
1554
		goto out_no_sys;
1555 1556 1557 1558

	bdev->addr_space_rb = RB_ROOT;
	ret = drm_mm_init(&bdev->addr_space_mm, file_page_offset, 0x10000000);
	if (unlikely(ret != 0))
1559
		goto out_no_addr_mm;
1560 1561 1562 1563

	INIT_DELAYED_WORK(&bdev->wq, ttm_bo_delayed_workqueue);
	INIT_LIST_HEAD(&bdev->ddestroy);
	bdev->dev_mapping = NULL;
1564
	bdev->glob = glob;
D
Dave Airlie 已提交
1565
	bdev->need_dma32 = need_dma32;
1566
	bdev->val_seq = 0;
1567
	spin_lock_init(&bdev->fence_lock);
1568 1569 1570
	mutex_lock(&glob->device_list_mutex);
	list_add_tail(&bdev->device_list, &glob->device_list);
	mutex_unlock(&glob->device_list_mutex);
1571 1572

	return 0;
1573
out_no_addr_mm:
1574
	ttm_bo_clean_mm(bdev, 0);
1575
out_no_sys:
1576 1577 1578 1579 1580 1581 1582 1583 1584 1585 1586 1587 1588 1589 1590 1591 1592 1593 1594 1595 1596 1597 1598 1599 1600
	return ret;
}
EXPORT_SYMBOL(ttm_bo_device_init);

/*
 * buffer object vm functions.
 */

bool ttm_mem_reg_is_pci(struct ttm_bo_device *bdev, struct ttm_mem_reg *mem)
{
	struct ttm_mem_type_manager *man = &bdev->man[mem->mem_type];

	if (!(man->flags & TTM_MEMTYPE_FLAG_FIXED)) {
		if (mem->mem_type == TTM_PL_SYSTEM)
			return false;

		if (man->flags & TTM_MEMTYPE_FLAG_CMA)
			return false;

		if (mem->placement & TTM_PL_FLAG_CACHED)
			return false;
	}
	return true;
}

1601
void ttm_bo_unmap_virtual_locked(struct ttm_buffer_object *bo)
1602 1603 1604 1605 1606 1607 1608 1609
{
	struct ttm_bo_device *bdev = bo->bdev;
	loff_t offset = (loff_t) bo->addr_space_offset;
	loff_t holelen = ((loff_t) bo->mem.num_pages) << PAGE_SHIFT;

	if (!bdev->dev_mapping)
		return;
	unmap_mapping_range(bdev->dev_mapping, offset, holelen, 1);
1610
	ttm_mem_io_free_vm(bo);
1611
}
1612 1613 1614 1615 1616 1617 1618 1619 1620

void ttm_bo_unmap_virtual(struct ttm_buffer_object *bo)
{
	struct ttm_bo_device *bdev = bo->bdev;
	struct ttm_mem_type_manager *man = &bdev->man[bo->mem.mem_type];

	ttm_mem_io_lock(man, false);
	ttm_bo_unmap_virtual_locked(bo);
	ttm_mem_io_unlock(man);
1621
}
1622 1623


1624
EXPORT_SYMBOL(ttm_bo_unmap_virtual);
1625 1626 1627 1628 1629 1630 1631 1632 1633 1634 1635 1636 1637 1638 1639 1640 1641 1642 1643 1644 1645 1646 1647 1648 1649 1650 1651 1652 1653 1654 1655 1656 1657 1658 1659 1660 1661 1662 1663 1664 1665 1666 1667 1668 1669 1670 1671 1672 1673 1674 1675 1676 1677 1678 1679 1680 1681 1682 1683 1684 1685 1686 1687 1688 1689 1690 1691 1692 1693 1694 1695 1696 1697 1698 1699

static void ttm_bo_vm_insert_rb(struct ttm_buffer_object *bo)
{
	struct ttm_bo_device *bdev = bo->bdev;
	struct rb_node **cur = &bdev->addr_space_rb.rb_node;
	struct rb_node *parent = NULL;
	struct ttm_buffer_object *cur_bo;
	unsigned long offset = bo->vm_node->start;
	unsigned long cur_offset;

	while (*cur) {
		parent = *cur;
		cur_bo = rb_entry(parent, struct ttm_buffer_object, vm_rb);
		cur_offset = cur_bo->vm_node->start;
		if (offset < cur_offset)
			cur = &parent->rb_left;
		else if (offset > cur_offset)
			cur = &parent->rb_right;
		else
			BUG();
	}

	rb_link_node(&bo->vm_rb, parent, cur);
	rb_insert_color(&bo->vm_rb, &bdev->addr_space_rb);
}

/**
 * ttm_bo_setup_vm:
 *
 * @bo: the buffer to allocate address space for
 *
 * Allocate address space in the drm device so that applications
 * can mmap the buffer and access the contents. This only
 * applies to ttm_bo_type_device objects as others are not
 * placed in the drm device address space.
 */

static int ttm_bo_setup_vm(struct ttm_buffer_object *bo)
{
	struct ttm_bo_device *bdev = bo->bdev;
	int ret;

retry_pre_get:
	ret = drm_mm_pre_get(&bdev->addr_space_mm);
	if (unlikely(ret != 0))
		return ret;

	write_lock(&bdev->vm_lock);
	bo->vm_node = drm_mm_search_free(&bdev->addr_space_mm,
					 bo->mem.num_pages, 0, 0);

	if (unlikely(bo->vm_node == NULL)) {
		ret = -ENOMEM;
		goto out_unlock;
	}

	bo->vm_node = drm_mm_get_block_atomic(bo->vm_node,
					      bo->mem.num_pages, 0);

	if (unlikely(bo->vm_node == NULL)) {
		write_unlock(&bdev->vm_lock);
		goto retry_pre_get;
	}

	ttm_bo_vm_insert_rb(bo);
	write_unlock(&bdev->vm_lock);
	bo->addr_space_offset = ((uint64_t) bo->vm_node->start) << PAGE_SHIFT;

	return 0;
out_unlock:
	write_unlock(&bdev->vm_lock);
	return ret;
}

int ttm_bo_wait(struct ttm_buffer_object *bo,
1700
		bool lazy, bool interruptible, bool no_wait)
1701 1702
{
	struct ttm_bo_driver *driver = bo->bdev->driver;
1703
	struct ttm_bo_device *bdev = bo->bdev;
1704 1705 1706
	void *sync_obj;
	int ret = 0;

1707
	if (likely(bo->sync_obj == NULL))
1708 1709
		return 0;

1710
	while (bo->sync_obj) {
1711

1712
		if (driver->sync_obj_signaled(bo->sync_obj)) {
1713 1714 1715 1716 1717 1718
			void *tmp_obj = bo->sync_obj;
			bo->sync_obj = NULL;
			clear_bit(TTM_BO_PRIV_FLAG_MOVING, &bo->priv_flags);
			spin_unlock(&bdev->fence_lock);
			driver->sync_obj_unref(&tmp_obj);
			spin_lock(&bdev->fence_lock);
1719 1720 1721 1722 1723 1724
			continue;
		}

		if (no_wait)
			return -EBUSY;

1725
		sync_obj = driver->sync_obj_ref(bo->sync_obj);
1726
		spin_unlock(&bdev->fence_lock);
1727
		ret = driver->sync_obj_wait(sync_obj,
1728 1729 1730
					    lazy, interruptible);
		if (unlikely(ret != 0)) {
			driver->sync_obj_unref(&sync_obj);
1731
			spin_lock(&bdev->fence_lock);
1732 1733
			return ret;
		}
1734
		spin_lock(&bdev->fence_lock);
1735
		if (likely(bo->sync_obj == sync_obj)) {
1736 1737 1738 1739 1740 1741 1742 1743
			void *tmp_obj = bo->sync_obj;
			bo->sync_obj = NULL;
			clear_bit(TTM_BO_PRIV_FLAG_MOVING,
				  &bo->priv_flags);
			spin_unlock(&bdev->fence_lock);
			driver->sync_obj_unref(&sync_obj);
			driver->sync_obj_unref(&tmp_obj);
			spin_lock(&bdev->fence_lock);
1744
		} else {
1745
			spin_unlock(&bdev->fence_lock);
1746
			driver->sync_obj_unref(&sync_obj);
1747
			spin_lock(&bdev->fence_lock);
1748 1749 1750 1751 1752 1753 1754 1755
		}
	}
	return 0;
}
EXPORT_SYMBOL(ttm_bo_wait);

int ttm_bo_synccpu_write_grab(struct ttm_buffer_object *bo, bool no_wait)
{
1756
	struct ttm_bo_device *bdev = bo->bdev;
1757 1758 1759
	int ret = 0;

	/*
1760
	 * Using ttm_bo_reserve makes sure the lru lists are updated.
1761 1762 1763 1764 1765
	 */

	ret = ttm_bo_reserve(bo, true, no_wait, false, 0);
	if (unlikely(ret != 0))
		return ret;
1766
	spin_lock(&bdev->fence_lock);
1767
	ret = ttm_bo_wait(bo, false, true, no_wait);
1768
	spin_unlock(&bdev->fence_lock);
1769 1770 1771 1772 1773
	if (likely(ret == 0))
		atomic_inc(&bo->cpu_writers);
	ttm_bo_unreserve(bo);
	return ret;
}
1774
EXPORT_SYMBOL(ttm_bo_synccpu_write_grab);
1775 1776 1777

void ttm_bo_synccpu_write_release(struct ttm_buffer_object *bo)
{
1778
	atomic_dec(&bo->cpu_writers);
1779
}
1780
EXPORT_SYMBOL(ttm_bo_synccpu_write_release);
1781 1782 1783 1784 1785 1786 1787 1788

/**
 * A buffer object shrink method that tries to swap out the first
 * buffer object on the bo_global::swap_lru list.
 */

static int ttm_bo_swapout(struct ttm_mem_shrink *shrink)
{
1789 1790
	struct ttm_bo_global *glob =
	    container_of(shrink, struct ttm_bo_global, shrink);
1791 1792 1793 1794 1795
	struct ttm_buffer_object *bo;
	int ret = -EBUSY;
	int put_count;
	uint32_t swap_placement = (TTM_PL_FLAG_CACHED | TTM_PL_FLAG_SYSTEM);

1796
	spin_lock(&glob->lru_lock);
1797
	while (ret == -EBUSY) {
1798 1799
		if (unlikely(list_empty(&glob->swap_lru))) {
			spin_unlock(&glob->lru_lock);
1800 1801 1802
			return -EBUSY;
		}

1803
		bo = list_first_entry(&glob->swap_lru,
1804 1805 1806
				      struct ttm_buffer_object, swap);
		kref_get(&bo->list_kref);

1807 1808 1809 1810
		if (!list_empty(&bo->ddestroy)) {
			spin_unlock(&glob->lru_lock);
			(void) ttm_bo_cleanup_refs(bo, false, false, false);
			kref_put(&bo->list_kref, ttm_bo_release_list);
1811
			spin_lock(&glob->lru_lock);
1812 1813 1814
			continue;
		}

1815 1816 1817 1818 1819 1820 1821 1822
		/**
		 * Reserve buffer. Since we unlock while sleeping, we need
		 * to re-check that nobody removed us from the swap-list while
		 * we slept.
		 */

		ret = ttm_bo_reserve_locked(bo, false, true, false, 0);
		if (unlikely(ret == -EBUSY)) {
1823
			spin_unlock(&glob->lru_lock);
1824 1825
			ttm_bo_wait_unreserved(bo, false);
			kref_put(&bo->list_kref, ttm_bo_release_list);
1826
			spin_lock(&glob->lru_lock);
1827 1828 1829 1830 1831
		}
	}

	BUG_ON(ret != 0);
	put_count = ttm_bo_del_from_lru(bo);
1832
	spin_unlock(&glob->lru_lock);
1833

1834
	ttm_bo_list_ref_sub(bo, put_count, true);
1835 1836 1837 1838 1839

	/**
	 * Wait for GPU, then move to system cached.
	 */

1840
	spin_lock(&bo->bdev->fence_lock);
1841
	ret = ttm_bo_wait(bo, false, false, false);
1842
	spin_unlock(&bo->bdev->fence_lock);
1843 1844 1845 1846 1847 1848 1849 1850 1851 1852 1853 1854 1855

	if (unlikely(ret != 0))
		goto out;

	if ((bo->mem.placement & swap_placement) != swap_placement) {
		struct ttm_mem_reg evict_mem;

		evict_mem = bo->mem;
		evict_mem.mm_node = NULL;
		evict_mem.placement = TTM_PL_FLAG_SYSTEM | TTM_PL_FLAG_CACHED;
		evict_mem.mem_type = TTM_PL_SYSTEM;

		ret = ttm_bo_handle_move_mem(bo, &evict_mem, true,
1856
					     false, false, false);
1857 1858 1859 1860 1861 1862 1863 1864 1865 1866 1867
		if (unlikely(ret != 0))
			goto out;
	}

	ttm_bo_unmap_virtual(bo);

	/**
	 * Swap out. Buffer will be swapped in again as soon as
	 * anyone tries to access a ttm page.
	 */

1868 1869 1870
	if (bo->bdev->driver->swap_notify)
		bo->bdev->driver->swap_notify(bo);

J
Jan Engelhardt 已提交
1871
	ret = ttm_tt_swapout(bo->ttm, bo->persistent_swap_storage);
1872 1873 1874 1875 1876 1877 1878 1879 1880 1881 1882 1883 1884 1885 1886 1887
out:

	/**
	 *
	 * Unreserve without putting on LRU to avoid swapping out an
	 * already swapped buffer.
	 */

	atomic_set(&bo->reserved, 0);
	wake_up_all(&bo->event_queue);
	kref_put(&bo->list_kref, ttm_bo_release_list);
	return ret;
}

void ttm_bo_swapout_all(struct ttm_bo_device *bdev)
{
1888
	while (ttm_bo_swapout(&bdev->glob->shrink) == 0)
1889 1890
		;
}
1891
EXPORT_SYMBOL(ttm_bo_swapout_all);