1414 lines
31 KiB
C
1414 lines
31 KiB
C
// SPDX-License-Identifier: MIT
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/*
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* Copyright © 2019 Intel Corporation
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*/
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#include <linux/prime_numbers.h>
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#include <linux/sort.h>
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#include <drm/drm_buddy.h>
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#include "../i915_selftest.h"
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#include "mock_drm.h"
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#include "mock_gem_device.h"
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#include "mock_region.h"
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#include "gem/i915_gem_context.h"
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#include "gem/i915_gem_lmem.h"
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#include "gem/i915_gem_region.h"
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#include "gem/i915_gem_ttm.h"
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#include "gem/selftests/igt_gem_utils.h"
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#include "gem/selftests/mock_context.h"
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#include "gt/intel_engine_pm.h"
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#include "gt/intel_engine_user.h"
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#include "gt/intel_gt.h"
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#include "gt/intel_migrate.h"
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#include "i915_memcpy.h"
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#include "i915_ttm_buddy_manager.h"
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#include "selftests/igt_flush_test.h"
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#include "selftests/i915_random.h"
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static void close_objects(struct intel_memory_region *mem,
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struct list_head *objects)
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{
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struct drm_i915_private *i915 = mem->i915;
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struct drm_i915_gem_object *obj, *on;
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list_for_each_entry_safe(obj, on, objects, st_link) {
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i915_gem_object_lock(obj, NULL);
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if (i915_gem_object_has_pinned_pages(obj))
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i915_gem_object_unpin_pages(obj);
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/* No polluting the memory region between tests */
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__i915_gem_object_put_pages(obj);
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i915_gem_object_unlock(obj);
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list_del(&obj->st_link);
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i915_gem_object_put(obj);
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}
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cond_resched();
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i915_gem_drain_freed_objects(i915);
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}
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static int igt_mock_fill(void *arg)
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{
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struct intel_memory_region *mem = arg;
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resource_size_t total = resource_size(&mem->region);
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resource_size_t page_size;
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resource_size_t rem;
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unsigned long max_pages;
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unsigned long page_num;
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LIST_HEAD(objects);
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int err = 0;
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page_size = PAGE_SIZE;
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max_pages = div64_u64(total, page_size);
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rem = total;
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for_each_prime_number_from(page_num, 1, max_pages) {
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resource_size_t size = page_num * page_size;
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struct drm_i915_gem_object *obj;
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obj = i915_gem_object_create_region(mem, size, 0, 0);
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if (IS_ERR(obj)) {
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err = PTR_ERR(obj);
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break;
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}
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err = i915_gem_object_pin_pages_unlocked(obj);
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if (err) {
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i915_gem_object_put(obj);
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break;
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}
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list_add(&obj->st_link, &objects);
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rem -= size;
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}
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if (err == -ENOMEM)
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err = 0;
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if (err == -ENXIO) {
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if (page_num * page_size <= rem) {
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pr_err("%s failed, space still left in region\n",
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__func__);
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err = -EINVAL;
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} else {
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err = 0;
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}
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}
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close_objects(mem, &objects);
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return err;
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}
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static struct drm_i915_gem_object *
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igt_object_create(struct intel_memory_region *mem,
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struct list_head *objects,
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u64 size,
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unsigned int flags)
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{
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struct drm_i915_gem_object *obj;
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int err;
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obj = i915_gem_object_create_region(mem, size, 0, flags);
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if (IS_ERR(obj))
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return obj;
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err = i915_gem_object_pin_pages_unlocked(obj);
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if (err)
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goto put;
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list_add(&obj->st_link, objects);
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return obj;
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put:
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i915_gem_object_put(obj);
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return ERR_PTR(err);
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}
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static void igt_object_release(struct drm_i915_gem_object *obj)
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{
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i915_gem_object_lock(obj, NULL);
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i915_gem_object_unpin_pages(obj);
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__i915_gem_object_put_pages(obj);
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i915_gem_object_unlock(obj);
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list_del(&obj->st_link);
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i915_gem_object_put(obj);
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}
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static bool is_contiguous(struct drm_i915_gem_object *obj)
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{
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struct scatterlist *sg;
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dma_addr_t addr = -1;
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for (sg = obj->mm.pages->sgl; sg; sg = sg_next(sg)) {
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if (addr != -1 && sg_dma_address(sg) != addr)
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return false;
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addr = sg_dma_address(sg) + sg_dma_len(sg);
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}
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return true;
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}
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static int igt_mock_reserve(void *arg)
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{
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struct intel_memory_region *mem = arg;
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struct drm_i915_private *i915 = mem->i915;
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resource_size_t avail = resource_size(&mem->region);
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struct drm_i915_gem_object *obj;
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const u32 chunk_size = SZ_32M;
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u32 i, offset, count, *order;
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u64 allocated, cur_avail;
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I915_RND_STATE(prng);
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LIST_HEAD(objects);
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int err = 0;
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count = avail / chunk_size;
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order = i915_random_order(count, &prng);
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if (!order)
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return 0;
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mem = mock_region_create(i915, 0, SZ_2G, I915_GTT_PAGE_SIZE_4K, 0, 0);
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if (IS_ERR(mem)) {
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pr_err("failed to create memory region\n");
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err = PTR_ERR(mem);
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goto out_free_order;
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}
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/* Reserve a bunch of ranges within the region */
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for (i = 0; i < count; ++i) {
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u64 start = order[i] * chunk_size;
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u64 size = i915_prandom_u32_max_state(chunk_size, &prng);
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/* Allow for some really big holes */
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if (!size)
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continue;
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size = round_up(size, PAGE_SIZE);
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offset = igt_random_offset(&prng, 0, chunk_size, size,
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PAGE_SIZE);
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err = intel_memory_region_reserve(mem, start + offset, size);
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if (err) {
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pr_err("%s failed to reserve range", __func__);
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goto out_close;
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}
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/* XXX: maybe sanity check the block range here? */
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avail -= size;
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}
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/* Try to see if we can allocate from the remaining space */
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allocated = 0;
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cur_avail = avail;
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do {
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u32 size = i915_prandom_u32_max_state(cur_avail, &prng);
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size = max_t(u32, round_up(size, PAGE_SIZE), PAGE_SIZE);
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obj = igt_object_create(mem, &objects, size, 0);
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if (IS_ERR(obj)) {
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if (PTR_ERR(obj) == -ENXIO)
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break;
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err = PTR_ERR(obj);
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goto out_close;
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}
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cur_avail -= size;
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allocated += size;
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} while (1);
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if (allocated != avail) {
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pr_err("%s mismatch between allocation and free space", __func__);
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err = -EINVAL;
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}
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out_close:
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close_objects(mem, &objects);
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intel_memory_region_destroy(mem);
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out_free_order:
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kfree(order);
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return err;
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}
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static int igt_mock_contiguous(void *arg)
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{
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struct intel_memory_region *mem = arg;
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struct drm_i915_gem_object *obj;
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unsigned long n_objects;
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LIST_HEAD(objects);
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LIST_HEAD(holes);
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I915_RND_STATE(prng);
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resource_size_t total;
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resource_size_t min;
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u64 target;
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int err = 0;
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total = resource_size(&mem->region);
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/* Min size */
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obj = igt_object_create(mem, &objects, PAGE_SIZE,
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I915_BO_ALLOC_CONTIGUOUS);
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if (IS_ERR(obj))
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return PTR_ERR(obj);
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if (!is_contiguous(obj)) {
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pr_err("%s min object spans disjoint sg entries\n", __func__);
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err = -EINVAL;
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goto err_close_objects;
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}
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igt_object_release(obj);
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/* Max size */
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obj = igt_object_create(mem, &objects, total, I915_BO_ALLOC_CONTIGUOUS);
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if (IS_ERR(obj))
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return PTR_ERR(obj);
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if (!is_contiguous(obj)) {
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pr_err("%s max object spans disjoint sg entries\n", __func__);
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err = -EINVAL;
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goto err_close_objects;
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}
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igt_object_release(obj);
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/* Internal fragmentation should not bleed into the object size */
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target = i915_prandom_u64_state(&prng);
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div64_u64_rem(target, total, &target);
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target = round_up(target, PAGE_SIZE);
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target = max_t(u64, PAGE_SIZE, target);
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obj = igt_object_create(mem, &objects, target,
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I915_BO_ALLOC_CONTIGUOUS);
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if (IS_ERR(obj))
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return PTR_ERR(obj);
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if (obj->base.size != target) {
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pr_err("%s obj->base.size(%zx) != target(%llx)\n", __func__,
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obj->base.size, target);
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err = -EINVAL;
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goto err_close_objects;
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}
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if (!is_contiguous(obj)) {
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pr_err("%s object spans disjoint sg entries\n", __func__);
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err = -EINVAL;
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goto err_close_objects;
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}
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igt_object_release(obj);
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/*
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* Try to fragment the address space, such that half of it is free, but
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* the max contiguous block size is SZ_64K.
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*/
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target = SZ_64K;
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n_objects = div64_u64(total, target);
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while (n_objects--) {
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struct list_head *list;
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if (n_objects % 2)
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list = &holes;
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else
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list = &objects;
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obj = igt_object_create(mem, list, target,
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I915_BO_ALLOC_CONTIGUOUS);
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if (IS_ERR(obj)) {
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err = PTR_ERR(obj);
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goto err_close_objects;
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}
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}
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close_objects(mem, &holes);
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min = target;
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target = total >> 1;
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/* Make sure we can still allocate all the fragmented space */
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obj = igt_object_create(mem, &objects, target, 0);
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if (IS_ERR(obj)) {
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err = PTR_ERR(obj);
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goto err_close_objects;
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}
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igt_object_release(obj);
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/*
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* Even though we have enough free space, we don't have a big enough
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* contiguous block. Make sure that holds true.
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*/
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do {
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bool should_fail = target > min;
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obj = igt_object_create(mem, &objects, target,
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I915_BO_ALLOC_CONTIGUOUS);
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if (should_fail != IS_ERR(obj)) {
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pr_err("%s target allocation(%llx) mismatch\n",
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__func__, target);
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err = -EINVAL;
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goto err_close_objects;
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}
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target >>= 1;
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} while (target >= PAGE_SIZE);
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err_close_objects:
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list_splice_tail(&holes, &objects);
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close_objects(mem, &objects);
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return err;
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}
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static int igt_mock_splintered_region(void *arg)
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{
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struct intel_memory_region *mem = arg;
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struct drm_i915_private *i915 = mem->i915;
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struct i915_ttm_buddy_resource *res;
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struct drm_i915_gem_object *obj;
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struct drm_buddy *mm;
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unsigned int expected_order;
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LIST_HEAD(objects);
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u64 size;
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int err = 0;
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/*
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* Sanity check we can still allocate everything even if the
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* mm.max_order != mm.size. i.e our starting address space size is not a
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* power-of-two.
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*/
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size = (SZ_4G - 1) & PAGE_MASK;
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mem = mock_region_create(i915, 0, size, PAGE_SIZE, 0, 0);
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if (IS_ERR(mem))
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return PTR_ERR(mem);
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obj = igt_object_create(mem, &objects, size, 0);
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if (IS_ERR(obj)) {
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err = PTR_ERR(obj);
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goto out_close;
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}
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res = to_ttm_buddy_resource(obj->mm.res);
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mm = res->mm;
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if (mm->size != size) {
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pr_err("%s size mismatch(%llu != %llu)\n",
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__func__, mm->size, size);
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err = -EINVAL;
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goto out_put;
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}
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expected_order = get_order(rounddown_pow_of_two(size));
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if (mm->max_order != expected_order) {
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pr_err("%s order mismatch(%u != %u)\n",
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__func__, mm->max_order, expected_order);
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err = -EINVAL;
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goto out_put;
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}
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close_objects(mem, &objects);
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/*
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* While we should be able allocate everything without any flag
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* restrictions, if we consider I915_BO_ALLOC_CONTIGUOUS then we are
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* actually limited to the largest power-of-two for the region size i.e
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* max_order, due to the inner workings of the buddy allocator. So make
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* sure that does indeed hold true.
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*/
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obj = igt_object_create(mem, &objects, size, I915_BO_ALLOC_CONTIGUOUS);
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if (!IS_ERR(obj)) {
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pr_err("%s too large contiguous allocation was not rejected\n",
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__func__);
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err = -EINVAL;
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goto out_close;
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}
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obj = igt_object_create(mem, &objects, rounddown_pow_of_two(size),
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I915_BO_ALLOC_CONTIGUOUS);
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if (IS_ERR(obj)) {
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pr_err("%s largest possible contiguous allocation failed\n",
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__func__);
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err = PTR_ERR(obj);
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goto out_close;
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}
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out_close:
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close_objects(mem, &objects);
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out_put:
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intel_memory_region_destroy(mem);
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return err;
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}
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|
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#ifndef SZ_8G
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#define SZ_8G BIT_ULL(33)
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#endif
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static int igt_mock_max_segment(void *arg)
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{
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struct intel_memory_region *mem = arg;
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struct drm_i915_private *i915 = mem->i915;
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struct i915_ttm_buddy_resource *res;
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struct drm_i915_gem_object *obj;
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struct drm_buddy_block *block;
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struct drm_buddy *mm;
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struct list_head *blocks;
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struct scatterlist *sg;
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I915_RND_STATE(prng);
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LIST_HEAD(objects);
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unsigned int max_segment;
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unsigned int ps;
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u64 size;
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int err = 0;
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|
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/*
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* While we may create very large contiguous blocks, we may need
|
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* to break those down for consumption elsewhere. In particular,
|
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* dma-mapping with scatterlist elements have an implicit limit of
|
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* UINT_MAX on each element.
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*/
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|
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size = SZ_8G;
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ps = PAGE_SIZE;
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if (i915_prandom_u64_state(&prng) & 1)
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ps = SZ_64K; /* For something like DG2 */
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max_segment = round_down(UINT_MAX, ps);
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|
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mem = mock_region_create(i915, 0, size, ps, 0, 0);
|
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if (IS_ERR(mem))
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return PTR_ERR(mem);
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|
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obj = igt_object_create(mem, &objects, size, 0);
|
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if (IS_ERR(obj)) {
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err = PTR_ERR(obj);
|
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goto out_put;
|
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}
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|
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res = to_ttm_buddy_resource(obj->mm.res);
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blocks = &res->blocks;
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mm = res->mm;
|
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size = 0;
|
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list_for_each_entry(block, blocks, link) {
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if (drm_buddy_block_size(mm, block) > size)
|
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size = drm_buddy_block_size(mm, block);
|
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}
|
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if (size < max_segment) {
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pr_err("%s: Failed to create a huge contiguous block [> %u], largest block %lld\n",
|
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__func__, max_segment, size);
|
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err = -EINVAL;
|
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goto out_close;
|
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}
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|
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for (sg = obj->mm.pages->sgl; sg; sg = sg_next(sg)) {
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dma_addr_t daddr = sg_dma_address(sg);
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|
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if (sg->length > max_segment) {
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pr_err("%s: Created an oversized scatterlist entry, %u > %u\n",
|
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__func__, sg->length, max_segment);
|
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err = -EINVAL;
|
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goto out_close;
|
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}
|
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|
|
if (!IS_ALIGNED(daddr, ps)) {
|
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pr_err("%s: Created an unaligned scatterlist entry, addr=%pa, ps=%u\n",
|
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__func__, &daddr, ps);
|
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err = -EINVAL;
|
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goto out_close;
|
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}
|
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}
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|
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out_close:
|
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close_objects(mem, &objects);
|
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out_put:
|
|
intel_memory_region_destroy(mem);
|
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return err;
|
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}
|
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|
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static u64 igt_object_mappable_total(struct drm_i915_gem_object *obj)
|
|
{
|
|
struct intel_memory_region *mr = obj->mm.region;
|
|
struct i915_ttm_buddy_resource *bman_res =
|
|
to_ttm_buddy_resource(obj->mm.res);
|
|
struct drm_buddy *mm = bman_res->mm;
|
|
struct drm_buddy_block *block;
|
|
u64 total;
|
|
|
|
total = 0;
|
|
list_for_each_entry(block, &bman_res->blocks, link) {
|
|
u64 start = drm_buddy_block_offset(block);
|
|
u64 end = start + drm_buddy_block_size(mm, block);
|
|
|
|
if (start < mr->io_size)
|
|
total += min_t(u64, end, mr->io_size) - start;
|
|
}
|
|
|
|
return total;
|
|
}
|
|
|
|
static int igt_mock_io_size(void *arg)
|
|
{
|
|
struct intel_memory_region *mr = arg;
|
|
struct drm_i915_private *i915 = mr->i915;
|
|
struct drm_i915_gem_object *obj;
|
|
u64 mappable_theft_total;
|
|
u64 io_size;
|
|
u64 total;
|
|
u64 ps;
|
|
u64 rem;
|
|
u64 size;
|
|
I915_RND_STATE(prng);
|
|
LIST_HEAD(objects);
|
|
int err = 0;
|
|
|
|
ps = SZ_4K;
|
|
if (i915_prandom_u64_state(&prng) & 1)
|
|
ps = SZ_64K; /* For something like DG2 */
|
|
|
|
div64_u64_rem(i915_prandom_u64_state(&prng), SZ_8G, &total);
|
|
total = round_down(total, ps);
|
|
total = max_t(u64, total, SZ_1G);
|
|
|
|
div64_u64_rem(i915_prandom_u64_state(&prng), total - ps, &io_size);
|
|
io_size = round_down(io_size, ps);
|
|
io_size = max_t(u64, io_size, SZ_256M); /* 256M seems to be the common lower limit */
|
|
|
|
pr_info("%s with ps=%llx, io_size=%llx, total=%llx\n",
|
|
__func__, ps, io_size, total);
|
|
|
|
mr = mock_region_create(i915, 0, total, ps, 0, io_size);
|
|
if (IS_ERR(mr)) {
|
|
err = PTR_ERR(mr);
|
|
goto out_err;
|
|
}
|
|
|
|
mappable_theft_total = 0;
|
|
rem = total - io_size;
|
|
do {
|
|
div64_u64_rem(i915_prandom_u64_state(&prng), rem, &size);
|
|
size = round_down(size, ps);
|
|
size = max(size, ps);
|
|
|
|
obj = igt_object_create(mr, &objects, size,
|
|
I915_BO_ALLOC_GPU_ONLY);
|
|
if (IS_ERR(obj)) {
|
|
pr_err("%s TOPDOWN failed with rem=%llx, size=%llx\n",
|
|
__func__, rem, size);
|
|
err = PTR_ERR(obj);
|
|
goto out_close;
|
|
}
|
|
|
|
mappable_theft_total += igt_object_mappable_total(obj);
|
|
rem -= size;
|
|
} while (rem);
|
|
|
|
pr_info("%s mappable theft=(%lluMiB/%lluMiB), total=%lluMiB\n",
|
|
__func__,
|
|
(u64)mappable_theft_total >> 20,
|
|
(u64)io_size >> 20,
|
|
(u64)total >> 20);
|
|
|
|
/*
|
|
* Even if we allocate all of the non-mappable portion, we should still
|
|
* be able to dip into the mappable portion.
|
|
*/
|
|
obj = igt_object_create(mr, &objects, io_size,
|
|
I915_BO_ALLOC_GPU_ONLY);
|
|
if (IS_ERR(obj)) {
|
|
pr_err("%s allocation unexpectedly failed\n", __func__);
|
|
err = PTR_ERR(obj);
|
|
goto out_close;
|
|
}
|
|
|
|
close_objects(mr, &objects);
|
|
|
|
rem = io_size;
|
|
do {
|
|
div64_u64_rem(i915_prandom_u64_state(&prng), rem, &size);
|
|
size = round_down(size, ps);
|
|
size = max(size, ps);
|
|
|
|
obj = igt_object_create(mr, &objects, size, 0);
|
|
if (IS_ERR(obj)) {
|
|
pr_err("%s MAPPABLE failed with rem=%llx, size=%llx\n",
|
|
__func__, rem, size);
|
|
err = PTR_ERR(obj);
|
|
goto out_close;
|
|
}
|
|
|
|
if (igt_object_mappable_total(obj) != size) {
|
|
pr_err("%s allocation is not mappable(size=%llx)\n",
|
|
__func__, size);
|
|
err = -EINVAL;
|
|
goto out_close;
|
|
}
|
|
rem -= size;
|
|
} while (rem);
|
|
|
|
/*
|
|
* We assume CPU access is required by default, which should result in a
|
|
* failure here, even though the non-mappable portion is free.
|
|
*/
|
|
obj = igt_object_create(mr, &objects, ps, 0);
|
|
if (!IS_ERR(obj)) {
|
|
pr_err("%s allocation unexpectedly succeeded\n", __func__);
|
|
err = -EINVAL;
|
|
goto out_close;
|
|
}
|
|
|
|
out_close:
|
|
close_objects(mr, &objects);
|
|
intel_memory_region_destroy(mr);
|
|
out_err:
|
|
if (err == -ENOMEM)
|
|
err = 0;
|
|
|
|
return err;
|
|
}
|
|
|
|
static int igt_gpu_write_dw(struct intel_context *ce,
|
|
struct i915_vma *vma,
|
|
u32 dword,
|
|
u32 value)
|
|
{
|
|
return igt_gpu_fill_dw(ce, vma, dword * sizeof(u32),
|
|
vma->size >> PAGE_SHIFT, value);
|
|
}
|
|
|
|
static int igt_cpu_check(struct drm_i915_gem_object *obj, u32 dword, u32 val)
|
|
{
|
|
unsigned long n = obj->base.size >> PAGE_SHIFT;
|
|
u32 *ptr;
|
|
int err;
|
|
|
|
err = i915_gem_object_wait(obj, 0, MAX_SCHEDULE_TIMEOUT);
|
|
if (err)
|
|
return err;
|
|
|
|
ptr = i915_gem_object_pin_map(obj, I915_MAP_WC);
|
|
if (IS_ERR(ptr))
|
|
return PTR_ERR(ptr);
|
|
|
|
ptr += dword;
|
|
while (n--) {
|
|
if (*ptr != val) {
|
|
pr_err("base[%u]=%08x, val=%08x\n",
|
|
dword, *ptr, val);
|
|
err = -EINVAL;
|
|
break;
|
|
}
|
|
|
|
ptr += PAGE_SIZE / sizeof(*ptr);
|
|
}
|
|
|
|
i915_gem_object_unpin_map(obj);
|
|
return err;
|
|
}
|
|
|
|
static int igt_gpu_write(struct i915_gem_context *ctx,
|
|
struct drm_i915_gem_object *obj)
|
|
{
|
|
struct i915_gem_engines *engines;
|
|
struct i915_gem_engines_iter it;
|
|
struct i915_address_space *vm;
|
|
struct intel_context *ce;
|
|
I915_RND_STATE(prng);
|
|
IGT_TIMEOUT(end_time);
|
|
unsigned int count;
|
|
struct i915_vma *vma;
|
|
int *order;
|
|
int i, n;
|
|
int err = 0;
|
|
|
|
GEM_BUG_ON(!i915_gem_object_has_pinned_pages(obj));
|
|
|
|
n = 0;
|
|
count = 0;
|
|
for_each_gem_engine(ce, i915_gem_context_lock_engines(ctx), it) {
|
|
count++;
|
|
if (!intel_engine_can_store_dword(ce->engine))
|
|
continue;
|
|
|
|
vm = ce->vm;
|
|
n++;
|
|
}
|
|
i915_gem_context_unlock_engines(ctx);
|
|
if (!n)
|
|
return 0;
|
|
|
|
order = i915_random_order(count * count, &prng);
|
|
if (!order)
|
|
return -ENOMEM;
|
|
|
|
vma = i915_vma_instance(obj, vm, NULL);
|
|
if (IS_ERR(vma)) {
|
|
err = PTR_ERR(vma);
|
|
goto out_free;
|
|
}
|
|
|
|
err = i915_vma_pin(vma, 0, 0, PIN_USER);
|
|
if (err)
|
|
goto out_free;
|
|
|
|
i = 0;
|
|
engines = i915_gem_context_lock_engines(ctx);
|
|
do {
|
|
u32 rng = prandom_u32_state(&prng);
|
|
u32 dword = offset_in_page(rng) / 4;
|
|
|
|
ce = engines->engines[order[i] % engines->num_engines];
|
|
i = (i + 1) % (count * count);
|
|
if (!ce || !intel_engine_can_store_dword(ce->engine))
|
|
continue;
|
|
|
|
err = igt_gpu_write_dw(ce, vma, dword, rng);
|
|
if (err)
|
|
break;
|
|
|
|
i915_gem_object_lock(obj, NULL);
|
|
err = igt_cpu_check(obj, dword, rng);
|
|
i915_gem_object_unlock(obj);
|
|
if (err)
|
|
break;
|
|
} while (!__igt_timeout(end_time, NULL));
|
|
i915_gem_context_unlock_engines(ctx);
|
|
|
|
out_free:
|
|
kfree(order);
|
|
|
|
if (err == -ENOMEM)
|
|
err = 0;
|
|
|
|
return err;
|
|
}
|
|
|
|
static int igt_lmem_create(void *arg)
|
|
{
|
|
struct drm_i915_private *i915 = arg;
|
|
struct drm_i915_gem_object *obj;
|
|
int err = 0;
|
|
|
|
obj = i915_gem_object_create_lmem(i915, PAGE_SIZE, 0);
|
|
if (IS_ERR(obj))
|
|
return PTR_ERR(obj);
|
|
|
|
err = i915_gem_object_pin_pages_unlocked(obj);
|
|
if (err)
|
|
goto out_put;
|
|
|
|
i915_gem_object_unpin_pages(obj);
|
|
out_put:
|
|
i915_gem_object_put(obj);
|
|
|
|
return err;
|
|
}
|
|
|
|
static int igt_lmem_create_with_ps(void *arg)
|
|
{
|
|
struct drm_i915_private *i915 = arg;
|
|
int err = 0;
|
|
u32 ps;
|
|
|
|
for (ps = PAGE_SIZE; ps <= SZ_1G; ps <<= 1) {
|
|
struct drm_i915_gem_object *obj;
|
|
dma_addr_t daddr;
|
|
|
|
obj = __i915_gem_object_create_lmem_with_ps(i915, ps, ps, 0);
|
|
if (IS_ERR(obj)) {
|
|
err = PTR_ERR(obj);
|
|
if (err == -ENXIO || err == -E2BIG) {
|
|
pr_info("%s not enough lmem for ps(%u) err=%d\n",
|
|
__func__, ps, err);
|
|
err = 0;
|
|
}
|
|
|
|
break;
|
|
}
|
|
|
|
if (obj->base.size != ps) {
|
|
pr_err("%s size(%zu) != ps(%u)\n",
|
|
__func__, obj->base.size, ps);
|
|
err = -EINVAL;
|
|
goto out_put;
|
|
}
|
|
|
|
i915_gem_object_lock(obj, NULL);
|
|
err = i915_gem_object_pin_pages(obj);
|
|
if (err) {
|
|
if (err == -ENXIO || err == -E2BIG || err == -ENOMEM) {
|
|
pr_info("%s not enough lmem for ps(%u) err=%d\n",
|
|
__func__, ps, err);
|
|
err = 0;
|
|
}
|
|
goto out_put;
|
|
}
|
|
|
|
daddr = i915_gem_object_get_dma_address(obj, 0);
|
|
if (!IS_ALIGNED(daddr, ps)) {
|
|
pr_err("%s daddr(%pa) not aligned with ps(%u)\n",
|
|
__func__, &daddr, ps);
|
|
err = -EINVAL;
|
|
goto out_unpin;
|
|
}
|
|
|
|
out_unpin:
|
|
i915_gem_object_unpin_pages(obj);
|
|
__i915_gem_object_put_pages(obj);
|
|
out_put:
|
|
i915_gem_object_unlock(obj);
|
|
i915_gem_object_put(obj);
|
|
|
|
if (err)
|
|
break;
|
|
}
|
|
|
|
return err;
|
|
}
|
|
|
|
static int igt_lmem_create_cleared_cpu(void *arg)
|
|
{
|
|
struct drm_i915_private *i915 = arg;
|
|
I915_RND_STATE(prng);
|
|
IGT_TIMEOUT(end_time);
|
|
u32 size, i;
|
|
int err;
|
|
|
|
i915_gem_drain_freed_objects(i915);
|
|
|
|
size = max_t(u32, PAGE_SIZE, i915_prandom_u32_max_state(SZ_32M, &prng));
|
|
size = round_up(size, PAGE_SIZE);
|
|
i = 0;
|
|
|
|
do {
|
|
struct drm_i915_gem_object *obj;
|
|
unsigned int flags;
|
|
u32 dword, val;
|
|
void *vaddr;
|
|
|
|
/*
|
|
* Alternate between cleared and uncleared allocations, while
|
|
* also dirtying the pages each time to check that the pages are
|
|
* always cleared if requested, since we should get some overlap
|
|
* of the underlying pages, if not all, since we are the only
|
|
* user.
|
|
*/
|
|
|
|
flags = I915_BO_ALLOC_CPU_CLEAR;
|
|
if (i & 1)
|
|
flags = 0;
|
|
|
|
obj = i915_gem_object_create_lmem(i915, size, flags);
|
|
if (IS_ERR(obj))
|
|
return PTR_ERR(obj);
|
|
|
|
i915_gem_object_lock(obj, NULL);
|
|
err = i915_gem_object_pin_pages(obj);
|
|
if (err)
|
|
goto out_put;
|
|
|
|
dword = i915_prandom_u32_max_state(PAGE_SIZE / sizeof(u32),
|
|
&prng);
|
|
|
|
if (flags & I915_BO_ALLOC_CPU_CLEAR) {
|
|
err = igt_cpu_check(obj, dword, 0);
|
|
if (err) {
|
|
pr_err("%s failed with size=%u, flags=%u\n",
|
|
__func__, size, flags);
|
|
goto out_unpin;
|
|
}
|
|
}
|
|
|
|
vaddr = i915_gem_object_pin_map(obj, I915_MAP_WC);
|
|
if (IS_ERR(vaddr)) {
|
|
err = PTR_ERR(vaddr);
|
|
goto out_unpin;
|
|
}
|
|
|
|
val = prandom_u32_state(&prng);
|
|
|
|
memset32(vaddr, val, obj->base.size / sizeof(u32));
|
|
|
|
i915_gem_object_flush_map(obj);
|
|
i915_gem_object_unpin_map(obj);
|
|
out_unpin:
|
|
i915_gem_object_unpin_pages(obj);
|
|
__i915_gem_object_put_pages(obj);
|
|
out_put:
|
|
i915_gem_object_unlock(obj);
|
|
i915_gem_object_put(obj);
|
|
|
|
if (err)
|
|
break;
|
|
++i;
|
|
} while (!__igt_timeout(end_time, NULL));
|
|
|
|
pr_info("%s completed (%u) iterations\n", __func__, i);
|
|
|
|
return err;
|
|
}
|
|
|
|
static int igt_lmem_write_gpu(void *arg)
|
|
{
|
|
struct drm_i915_private *i915 = arg;
|
|
struct drm_i915_gem_object *obj;
|
|
struct i915_gem_context *ctx;
|
|
struct file *file;
|
|
I915_RND_STATE(prng);
|
|
u32 sz;
|
|
int err;
|
|
|
|
file = mock_file(i915);
|
|
if (IS_ERR(file))
|
|
return PTR_ERR(file);
|
|
|
|
ctx = live_context(i915, file);
|
|
if (IS_ERR(ctx)) {
|
|
err = PTR_ERR(ctx);
|
|
goto out_file;
|
|
}
|
|
|
|
sz = round_up(prandom_u32_state(&prng) % SZ_32M, PAGE_SIZE);
|
|
|
|
obj = i915_gem_object_create_lmem(i915, sz, 0);
|
|
if (IS_ERR(obj)) {
|
|
err = PTR_ERR(obj);
|
|
goto out_file;
|
|
}
|
|
|
|
err = i915_gem_object_pin_pages_unlocked(obj);
|
|
if (err)
|
|
goto out_put;
|
|
|
|
err = igt_gpu_write(ctx, obj);
|
|
if (err)
|
|
pr_err("igt_gpu_write failed(%d)\n", err);
|
|
|
|
i915_gem_object_unpin_pages(obj);
|
|
out_put:
|
|
i915_gem_object_put(obj);
|
|
out_file:
|
|
fput(file);
|
|
return err;
|
|
}
|
|
|
|
static struct intel_engine_cs *
|
|
random_engine_class(struct drm_i915_private *i915,
|
|
unsigned int class,
|
|
struct rnd_state *prng)
|
|
{
|
|
struct intel_engine_cs *engine;
|
|
unsigned int count;
|
|
|
|
count = 0;
|
|
for (engine = intel_engine_lookup_user(i915, class, 0);
|
|
engine && engine->uabi_class == class;
|
|
engine = rb_entry_safe(rb_next(&engine->uabi_node),
|
|
typeof(*engine), uabi_node))
|
|
count++;
|
|
|
|
count = i915_prandom_u32_max_state(count, prng);
|
|
return intel_engine_lookup_user(i915, class, count);
|
|
}
|
|
|
|
static int igt_lmem_write_cpu(void *arg)
|
|
{
|
|
struct drm_i915_private *i915 = arg;
|
|
struct drm_i915_gem_object *obj;
|
|
I915_RND_STATE(prng);
|
|
IGT_TIMEOUT(end_time);
|
|
u32 bytes[] = {
|
|
0, /* rng placeholder */
|
|
sizeof(u32),
|
|
sizeof(u64),
|
|
64, /* cl */
|
|
PAGE_SIZE,
|
|
PAGE_SIZE - sizeof(u32),
|
|
PAGE_SIZE - sizeof(u64),
|
|
PAGE_SIZE - 64,
|
|
};
|
|
struct intel_engine_cs *engine;
|
|
struct i915_request *rq;
|
|
u32 *vaddr;
|
|
u32 sz;
|
|
u32 i;
|
|
int *order;
|
|
int count;
|
|
int err;
|
|
|
|
engine = random_engine_class(i915, I915_ENGINE_CLASS_COPY, &prng);
|
|
if (!engine)
|
|
return 0;
|
|
|
|
pr_info("%s: using %s\n", __func__, engine->name);
|
|
|
|
sz = round_up(prandom_u32_state(&prng) % SZ_32M, PAGE_SIZE);
|
|
sz = max_t(u32, 2 * PAGE_SIZE, sz);
|
|
|
|
obj = i915_gem_object_create_lmem(i915, sz, I915_BO_ALLOC_CONTIGUOUS);
|
|
if (IS_ERR(obj))
|
|
return PTR_ERR(obj);
|
|
|
|
vaddr = i915_gem_object_pin_map_unlocked(obj, I915_MAP_WC);
|
|
if (IS_ERR(vaddr)) {
|
|
err = PTR_ERR(vaddr);
|
|
goto out_put;
|
|
}
|
|
|
|
i915_gem_object_lock(obj, NULL);
|
|
|
|
err = dma_resv_reserve_fences(obj->base.resv, 1);
|
|
if (err) {
|
|
i915_gem_object_unlock(obj);
|
|
goto out_put;
|
|
}
|
|
|
|
/* Put the pages into a known state -- from the gpu for added fun */
|
|
intel_engine_pm_get(engine);
|
|
err = intel_context_migrate_clear(engine->gt->migrate.context, NULL,
|
|
obj->mm.pages->sgl,
|
|
i915_gem_get_pat_index(i915,
|
|
I915_CACHE_NONE),
|
|
true, 0xdeadbeaf, &rq);
|
|
if (rq) {
|
|
dma_resv_add_fence(obj->base.resv, &rq->fence,
|
|
DMA_RESV_USAGE_WRITE);
|
|
i915_request_put(rq);
|
|
}
|
|
|
|
intel_engine_pm_put(engine);
|
|
if (!err)
|
|
err = i915_gem_object_set_to_wc_domain(obj, true);
|
|
i915_gem_object_unlock(obj);
|
|
if (err)
|
|
goto out_unpin;
|
|
|
|
count = ARRAY_SIZE(bytes);
|
|
order = i915_random_order(count * count, &prng);
|
|
if (!order) {
|
|
err = -ENOMEM;
|
|
goto out_unpin;
|
|
}
|
|
|
|
/* A random multiple of u32, picked between [64, PAGE_SIZE - 64] */
|
|
bytes[0] = igt_random_offset(&prng, 64, PAGE_SIZE - 64, 0, sizeof(u32));
|
|
GEM_BUG_ON(!IS_ALIGNED(bytes[0], sizeof(u32)));
|
|
|
|
i = 0;
|
|
do {
|
|
u32 offset;
|
|
u32 align;
|
|
u32 dword;
|
|
u32 size;
|
|
u32 val;
|
|
|
|
size = bytes[order[i] % count];
|
|
i = (i + 1) % (count * count);
|
|
|
|
align = bytes[order[i] % count];
|
|
i = (i + 1) % (count * count);
|
|
|
|
align = max_t(u32, sizeof(u32), rounddown_pow_of_two(align));
|
|
|
|
offset = igt_random_offset(&prng, 0, obj->base.size,
|
|
size, align);
|
|
|
|
val = prandom_u32_state(&prng);
|
|
memset32(vaddr + offset / sizeof(u32), val ^ 0xdeadbeaf,
|
|
size / sizeof(u32));
|
|
|
|
/*
|
|
* Sample random dw -- don't waste precious time reading every
|
|
* single dw.
|
|
*/
|
|
dword = igt_random_offset(&prng, offset,
|
|
offset + size,
|
|
sizeof(u32), sizeof(u32));
|
|
dword /= sizeof(u32);
|
|
if (vaddr[dword] != (val ^ 0xdeadbeaf)) {
|
|
pr_err("%s vaddr[%u]=%u, val=%u, size=%u, align=%u, offset=%u\n",
|
|
__func__, dword, vaddr[dword], val ^ 0xdeadbeaf,
|
|
size, align, offset);
|
|
err = -EINVAL;
|
|
break;
|
|
}
|
|
} while (!__igt_timeout(end_time, NULL));
|
|
|
|
out_unpin:
|
|
i915_gem_object_unpin_map(obj);
|
|
out_put:
|
|
i915_gem_object_put(obj);
|
|
|
|
return err;
|
|
}
|
|
|
|
static const char *repr_type(u32 type)
|
|
{
|
|
switch (type) {
|
|
case I915_MAP_WB:
|
|
return "WB";
|
|
case I915_MAP_WC:
|
|
return "WC";
|
|
}
|
|
|
|
return "";
|
|
}
|
|
|
|
static struct drm_i915_gem_object *
|
|
create_region_for_mapping(struct intel_memory_region *mr, u64 size, u32 type,
|
|
void **out_addr)
|
|
{
|
|
struct drm_i915_gem_object *obj;
|
|
void *addr;
|
|
|
|
obj = i915_gem_object_create_region(mr, size, 0, 0);
|
|
if (IS_ERR(obj)) {
|
|
if (PTR_ERR(obj) == -ENOSPC) /* Stolen memory */
|
|
return ERR_PTR(-ENODEV);
|
|
return obj;
|
|
}
|
|
|
|
addr = i915_gem_object_pin_map_unlocked(obj, type);
|
|
if (IS_ERR(addr)) {
|
|
i915_gem_object_put(obj);
|
|
if (PTR_ERR(addr) == -ENXIO)
|
|
return ERR_PTR(-ENODEV);
|
|
return addr;
|
|
}
|
|
|
|
*out_addr = addr;
|
|
return obj;
|
|
}
|
|
|
|
static int wrap_ktime_compare(const void *A, const void *B)
|
|
{
|
|
const ktime_t *a = A, *b = B;
|
|
|
|
return ktime_compare(*a, *b);
|
|
}
|
|
|
|
static void igt_memcpy_long(void *dst, const void *src, size_t size)
|
|
{
|
|
unsigned long *tmp = dst;
|
|
const unsigned long *s = src;
|
|
|
|
size = size / sizeof(unsigned long);
|
|
while (size--)
|
|
*tmp++ = *s++;
|
|
}
|
|
|
|
static inline void igt_memcpy(void *dst, const void *src, size_t size)
|
|
{
|
|
memcpy(dst, src, size);
|
|
}
|
|
|
|
static inline void igt_memcpy_from_wc(void *dst, const void *src, size_t size)
|
|
{
|
|
i915_memcpy_from_wc(dst, src, size);
|
|
}
|
|
|
|
static int _perf_memcpy(struct intel_memory_region *src_mr,
|
|
struct intel_memory_region *dst_mr,
|
|
u64 size, u32 src_type, u32 dst_type)
|
|
{
|
|
struct drm_i915_private *i915 = src_mr->i915;
|
|
const struct {
|
|
const char *name;
|
|
void (*copy)(void *dst, const void *src, size_t size);
|
|
bool skip;
|
|
} tests[] = {
|
|
{
|
|
"memcpy",
|
|
igt_memcpy,
|
|
},
|
|
{
|
|
"memcpy_long",
|
|
igt_memcpy_long,
|
|
},
|
|
{
|
|
"memcpy_from_wc",
|
|
igt_memcpy_from_wc,
|
|
!i915_has_memcpy_from_wc(),
|
|
},
|
|
};
|
|
struct drm_i915_gem_object *src, *dst;
|
|
void *src_addr, *dst_addr;
|
|
int ret = 0;
|
|
int i;
|
|
|
|
src = create_region_for_mapping(src_mr, size, src_type, &src_addr);
|
|
if (IS_ERR(src)) {
|
|
ret = PTR_ERR(src);
|
|
goto out;
|
|
}
|
|
|
|
dst = create_region_for_mapping(dst_mr, size, dst_type, &dst_addr);
|
|
if (IS_ERR(dst)) {
|
|
ret = PTR_ERR(dst);
|
|
goto out_unpin_src;
|
|
}
|
|
|
|
for (i = 0; i < ARRAY_SIZE(tests); ++i) {
|
|
ktime_t t[5];
|
|
int pass;
|
|
|
|
if (tests[i].skip)
|
|
continue;
|
|
|
|
for (pass = 0; pass < ARRAY_SIZE(t); pass++) {
|
|
ktime_t t0, t1;
|
|
|
|
t0 = ktime_get();
|
|
|
|
tests[i].copy(dst_addr, src_addr, size);
|
|
|
|
t1 = ktime_get();
|
|
t[pass] = ktime_sub(t1, t0);
|
|
}
|
|
|
|
sort(t, ARRAY_SIZE(t), sizeof(*t), wrap_ktime_compare, NULL);
|
|
if (t[0] <= 0) {
|
|
/* ignore the impossible to protect our sanity */
|
|
pr_debug("Skipping %s src(%s, %s) -> dst(%s, %s) %14s %4lluKiB copy, unstable measurement [%lld, %lld]\n",
|
|
__func__,
|
|
src_mr->name, repr_type(src_type),
|
|
dst_mr->name, repr_type(dst_type),
|
|
tests[i].name, size >> 10,
|
|
t[0], t[4]);
|
|
continue;
|
|
}
|
|
|
|
pr_info("%s src(%s, %s) -> dst(%s, %s) %14s %4llu KiB copy: %5lld MiB/s\n",
|
|
__func__,
|
|
src_mr->name, repr_type(src_type),
|
|
dst_mr->name, repr_type(dst_type),
|
|
tests[i].name, size >> 10,
|
|
div64_u64(mul_u32_u32(4 * size,
|
|
1000 * 1000 * 1000),
|
|
t[1] + 2 * t[2] + t[3]) >> 20);
|
|
|
|
cond_resched();
|
|
}
|
|
|
|
i915_gem_object_unpin_map(dst);
|
|
i915_gem_object_put(dst);
|
|
out_unpin_src:
|
|
i915_gem_object_unpin_map(src);
|
|
i915_gem_object_put(src);
|
|
|
|
i915_gem_drain_freed_objects(i915);
|
|
out:
|
|
if (ret == -ENODEV)
|
|
ret = 0;
|
|
|
|
return ret;
|
|
}
|
|
|
|
static int perf_memcpy(void *arg)
|
|
{
|
|
struct drm_i915_private *i915 = arg;
|
|
static const u32 types[] = {
|
|
I915_MAP_WB,
|
|
I915_MAP_WC,
|
|
};
|
|
static const u32 sizes[] = {
|
|
SZ_4K,
|
|
SZ_64K,
|
|
SZ_4M,
|
|
};
|
|
struct intel_memory_region *src_mr, *dst_mr;
|
|
int src_id, dst_id;
|
|
int i, j, k;
|
|
int ret;
|
|
|
|
for_each_memory_region(src_mr, i915, src_id) {
|
|
for_each_memory_region(dst_mr, i915, dst_id) {
|
|
for (i = 0; i < ARRAY_SIZE(sizes); ++i) {
|
|
for (j = 0; j < ARRAY_SIZE(types); ++j) {
|
|
for (k = 0; k < ARRAY_SIZE(types); ++k) {
|
|
ret = _perf_memcpy(src_mr,
|
|
dst_mr,
|
|
sizes[i],
|
|
types[j],
|
|
types[k]);
|
|
if (ret)
|
|
return ret;
|
|
}
|
|
}
|
|
}
|
|
}
|
|
}
|
|
|
|
return 0;
|
|
}
|
|
|
|
int intel_memory_region_mock_selftests(void)
|
|
{
|
|
static const struct i915_subtest tests[] = {
|
|
SUBTEST(igt_mock_reserve),
|
|
SUBTEST(igt_mock_fill),
|
|
SUBTEST(igt_mock_contiguous),
|
|
SUBTEST(igt_mock_splintered_region),
|
|
SUBTEST(igt_mock_max_segment),
|
|
SUBTEST(igt_mock_io_size),
|
|
};
|
|
struct intel_memory_region *mem;
|
|
struct drm_i915_private *i915;
|
|
int err;
|
|
|
|
i915 = mock_gem_device();
|
|
if (!i915)
|
|
return -ENOMEM;
|
|
|
|
mem = mock_region_create(i915, 0, SZ_2G, I915_GTT_PAGE_SIZE_4K, 0, 0);
|
|
if (IS_ERR(mem)) {
|
|
pr_err("failed to create memory region\n");
|
|
err = PTR_ERR(mem);
|
|
goto out_unref;
|
|
}
|
|
|
|
err = i915_subtests(tests, mem);
|
|
|
|
intel_memory_region_destroy(mem);
|
|
out_unref:
|
|
mock_destroy_device(i915);
|
|
return err;
|
|
}
|
|
|
|
int intel_memory_region_live_selftests(struct drm_i915_private *i915)
|
|
{
|
|
static const struct i915_subtest tests[] = {
|
|
SUBTEST(igt_lmem_create),
|
|
SUBTEST(igt_lmem_create_with_ps),
|
|
SUBTEST(igt_lmem_create_cleared_cpu),
|
|
SUBTEST(igt_lmem_write_cpu),
|
|
SUBTEST(igt_lmem_write_gpu),
|
|
};
|
|
|
|
if (!HAS_LMEM(i915)) {
|
|
pr_info("device lacks LMEM support, skipping\n");
|
|
return 0;
|
|
}
|
|
|
|
if (intel_gt_is_wedged(to_gt(i915)))
|
|
return 0;
|
|
|
|
return i915_live_subtests(tests, i915);
|
|
}
|
|
|
|
int intel_memory_region_perf_selftests(struct drm_i915_private *i915)
|
|
{
|
|
static const struct i915_subtest tests[] = {
|
|
SUBTEST(perf_memcpy),
|
|
};
|
|
|
|
if (intel_gt_is_wedged(to_gt(i915)))
|
|
return 0;
|
|
|
|
return i915_live_subtests(tests, i915);
|
|
}
|