779 lines
24 KiB
C
779 lines
24 KiB
C
// SPDX-License-Identifier: MIT
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/*
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* Copyright © 2019 Intel Corporation
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* Copyright © 2022 Maíra Canal <mairacanal@riseup.net>
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*/
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#include <kunit/test.h>
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#include <linux/prime_numbers.h>
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#include <linux/sched/signal.h>
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#include <linux/sizes.h>
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#include <drm/drm_buddy.h>
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#include "../lib/drm_random.h"
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static unsigned int random_seed;
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static inline u64 get_size(int order, u64 chunk_size)
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{
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return (1 << order) * chunk_size;
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}
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static void drm_test_buddy_alloc_range_bias(struct kunit *test)
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{
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u32 mm_size, size, ps, bias_size, bias_start, bias_end, bias_rem;
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DRM_RND_STATE(prng, random_seed);
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unsigned int i, count, *order;
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struct drm_buddy_block *block;
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unsigned long flags;
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struct drm_buddy mm;
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LIST_HEAD(allocated);
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bias_size = SZ_1M;
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ps = roundup_pow_of_two(prandom_u32_state(&prng) % bias_size);
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ps = max(SZ_4K, ps);
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mm_size = (SZ_8M-1) & ~(ps-1); /* Multiple roots */
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kunit_info(test, "mm_size=%u, ps=%u\n", mm_size, ps);
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KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_init(&mm, mm_size, ps),
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"buddy_init failed\n");
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count = mm_size / bias_size;
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order = drm_random_order(count, &prng);
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KUNIT_EXPECT_TRUE(test, order);
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/*
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* Idea is to split the address space into uniform bias ranges, and then
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* in some random order allocate within each bias, using various
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* patterns within. This should detect if allocations leak out from a
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* given bias, for example.
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*/
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for (i = 0; i < count; i++) {
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LIST_HEAD(tmp);
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u32 size;
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bias_start = order[i] * bias_size;
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bias_end = bias_start + bias_size;
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bias_rem = bias_size;
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/* internal round_up too big */
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KUNIT_ASSERT_TRUE_MSG(test,
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drm_buddy_alloc_blocks(&mm, bias_start,
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bias_end, bias_size + ps, bias_size,
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&allocated,
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DRM_BUDDY_RANGE_ALLOCATION),
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"buddy_alloc failed with bias(%x-%x), size=%u, ps=%u\n",
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bias_start, bias_end, bias_size, bias_size);
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/* size too big */
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KUNIT_ASSERT_TRUE_MSG(test,
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drm_buddy_alloc_blocks(&mm, bias_start,
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bias_end, bias_size + ps, ps,
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&allocated,
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DRM_BUDDY_RANGE_ALLOCATION),
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"buddy_alloc didn't fail with bias(%x-%x), size=%u, ps=%u\n",
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bias_start, bias_end, bias_size + ps, ps);
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/* bias range too small for size */
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KUNIT_ASSERT_TRUE_MSG(test,
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drm_buddy_alloc_blocks(&mm, bias_start + ps,
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bias_end, bias_size, ps,
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&allocated,
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DRM_BUDDY_RANGE_ALLOCATION),
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"buddy_alloc didn't fail with bias(%x-%x), size=%u, ps=%u\n",
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bias_start + ps, bias_end, bias_size, ps);
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/* bias misaligned */
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KUNIT_ASSERT_TRUE_MSG(test,
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drm_buddy_alloc_blocks(&mm, bias_start + ps,
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bias_end - ps,
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bias_size >> 1, bias_size >> 1,
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&allocated,
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DRM_BUDDY_RANGE_ALLOCATION),
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"buddy_alloc h didn't fail with bias(%x-%x), size=%u, ps=%u\n",
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bias_start + ps, bias_end - ps, bias_size >> 1, bias_size >> 1);
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/* single big page */
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KUNIT_ASSERT_FALSE_MSG(test,
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drm_buddy_alloc_blocks(&mm, bias_start,
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bias_end, bias_size, bias_size,
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&tmp,
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DRM_BUDDY_RANGE_ALLOCATION),
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"buddy_alloc i failed with bias(%x-%x), size=%u, ps=%u\n",
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bias_start, bias_end, bias_size, bias_size);
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drm_buddy_free_list(&mm, &tmp, 0);
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/* single page with internal round_up */
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KUNIT_ASSERT_FALSE_MSG(test,
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drm_buddy_alloc_blocks(&mm, bias_start,
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bias_end, ps, bias_size,
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&tmp,
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DRM_BUDDY_RANGE_ALLOCATION),
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"buddy_alloc failed with bias(%x-%x), size=%u, ps=%u\n",
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bias_start, bias_end, ps, bias_size);
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drm_buddy_free_list(&mm, &tmp, 0);
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/* random size within */
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size = max(round_up(prandom_u32_state(&prng) % bias_rem, ps), ps);
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if (size)
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KUNIT_ASSERT_FALSE_MSG(test,
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drm_buddy_alloc_blocks(&mm, bias_start,
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bias_end, size, ps,
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&tmp,
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DRM_BUDDY_RANGE_ALLOCATION),
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"buddy_alloc failed with bias(%x-%x), size=%u, ps=%u\n",
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bias_start, bias_end, size, ps);
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bias_rem -= size;
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/* too big for current avail */
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KUNIT_ASSERT_TRUE_MSG(test,
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drm_buddy_alloc_blocks(&mm, bias_start,
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bias_end, bias_rem + ps, ps,
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&allocated,
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DRM_BUDDY_RANGE_ALLOCATION),
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"buddy_alloc didn't fail with bias(%x-%x), size=%u, ps=%u\n",
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bias_start, bias_end, bias_rem + ps, ps);
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if (bias_rem) {
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/* random fill of the remainder */
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size = max(round_up(prandom_u32_state(&prng) % bias_rem, ps), ps);
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size = max(size, ps);
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KUNIT_ASSERT_FALSE_MSG(test,
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drm_buddy_alloc_blocks(&mm, bias_start,
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bias_end, size, ps,
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&allocated,
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DRM_BUDDY_RANGE_ALLOCATION),
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"buddy_alloc failed with bias(%x-%x), size=%u, ps=%u\n",
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bias_start, bias_end, size, ps);
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/*
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* Intentionally allow some space to be left
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* unallocated, and ideally not always on the bias
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* boundaries.
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*/
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drm_buddy_free_list(&mm, &tmp, 0);
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} else {
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list_splice_tail(&tmp, &allocated);
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}
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}
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kfree(order);
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drm_buddy_free_list(&mm, &allocated, 0);
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drm_buddy_fini(&mm);
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/*
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* Something more free-form. Idea is to pick a random starting bias
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* range within the address space and then start filling it up. Also
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* randomly grow the bias range in both directions as we go along. This
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* should give us bias start/end which is not always uniform like above,
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* and in some cases will require the allocator to jump over already
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* allocated nodes in the middle of the address space.
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*/
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KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_init(&mm, mm_size, ps),
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"buddy_init failed\n");
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bias_start = round_up(prandom_u32_state(&prng) % (mm_size - ps), ps);
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bias_end = round_up(bias_start + prandom_u32_state(&prng) % (mm_size - bias_start), ps);
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bias_end = max(bias_end, bias_start + ps);
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bias_rem = bias_end - bias_start;
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do {
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u32 size = max(round_up(prandom_u32_state(&prng) % bias_rem, ps), ps);
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KUNIT_ASSERT_FALSE_MSG(test,
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drm_buddy_alloc_blocks(&mm, bias_start,
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bias_end, size, ps,
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&allocated,
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DRM_BUDDY_RANGE_ALLOCATION),
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"buddy_alloc failed with bias(%x-%x), size=%u, ps=%u\n",
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bias_start, bias_end, size, ps);
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bias_rem -= size;
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/*
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* Try to randomly grow the bias range in both directions, or
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* only one, or perhaps don't grow at all.
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*/
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do {
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u32 old_bias_start = bias_start;
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u32 old_bias_end = bias_end;
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if (bias_start)
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bias_start -= round_up(prandom_u32_state(&prng) % bias_start, ps);
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if (bias_end != mm_size)
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bias_end += round_up(prandom_u32_state(&prng) % (mm_size - bias_end), ps);
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bias_rem += old_bias_start - bias_start;
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bias_rem += bias_end - old_bias_end;
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} while (!bias_rem && (bias_start || bias_end != mm_size));
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} while (bias_rem);
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KUNIT_ASSERT_EQ(test, bias_start, 0);
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KUNIT_ASSERT_EQ(test, bias_end, mm_size);
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KUNIT_ASSERT_TRUE_MSG(test,
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drm_buddy_alloc_blocks(&mm, bias_start, bias_end,
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ps, ps,
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&allocated,
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DRM_BUDDY_RANGE_ALLOCATION),
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"buddy_alloc passed with bias(%x-%x), size=%u\n",
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bias_start, bias_end, ps);
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drm_buddy_free_list(&mm, &allocated, 0);
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drm_buddy_fini(&mm);
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/*
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* Allocate cleared blocks in the bias range when the DRM buddy's clear avail is
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* zero. This will validate the bias range allocation in scenarios like system boot
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* when no cleared blocks are available and exercise the fallback path too. The resulting
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* blocks should always be dirty.
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*/
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KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_init(&mm, mm_size, ps),
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"buddy_init failed\n");
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bias_start = round_up(prandom_u32_state(&prng) % (mm_size - ps), ps);
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bias_end = round_up(bias_start + prandom_u32_state(&prng) % (mm_size - bias_start), ps);
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bias_end = max(bias_end, bias_start + ps);
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bias_rem = bias_end - bias_start;
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flags = DRM_BUDDY_CLEAR_ALLOCATION | DRM_BUDDY_RANGE_ALLOCATION;
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size = max(round_up(prandom_u32_state(&prng) % bias_rem, ps), ps);
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KUNIT_ASSERT_FALSE_MSG(test,
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drm_buddy_alloc_blocks(&mm, bias_start,
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bias_end, size, ps,
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&allocated,
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flags),
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"buddy_alloc failed with bias(%x-%x), size=%u, ps=%u\n",
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bias_start, bias_end, size, ps);
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list_for_each_entry(block, &allocated, link)
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KUNIT_EXPECT_EQ(test, drm_buddy_block_is_clear(block), false);
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drm_buddy_free_list(&mm, &allocated, 0);
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drm_buddy_fini(&mm);
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}
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static void drm_test_buddy_alloc_clear(struct kunit *test)
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{
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unsigned long n_pages, total, i = 0;
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DRM_RND_STATE(prng, random_seed);
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const unsigned long ps = SZ_4K;
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struct drm_buddy_block *block;
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const int max_order = 12;
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LIST_HEAD(allocated);
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struct drm_buddy mm;
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unsigned int order;
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u32 mm_size, size;
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LIST_HEAD(dirty);
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LIST_HEAD(clean);
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mm_size = SZ_4K << max_order;
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KUNIT_EXPECT_FALSE(test, drm_buddy_init(&mm, mm_size, ps));
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KUNIT_EXPECT_EQ(test, mm.max_order, max_order);
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/*
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* Idea is to allocate and free some random portion of the address space,
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* returning those pages as non-dirty and randomly alternate between
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* requesting dirty and non-dirty pages (not going over the limit
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* we freed as non-dirty), putting that into two separate lists.
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* Loop over both lists at the end checking that the dirty list
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* is indeed all dirty pages and vice versa. Free it all again,
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* keeping the dirty/clear status.
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*/
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KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, 0, mm_size,
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5 * ps, ps, &allocated,
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DRM_BUDDY_TOPDOWN_ALLOCATION),
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"buddy_alloc hit an error size=%lu\n", 5 * ps);
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drm_buddy_free_list(&mm, &allocated, DRM_BUDDY_CLEARED);
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n_pages = 10;
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do {
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unsigned long flags;
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struct list_head *list;
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int slot = i % 2;
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if (slot == 0) {
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list = &dirty;
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flags = 0;
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} else {
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list = &clean;
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flags = DRM_BUDDY_CLEAR_ALLOCATION;
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}
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KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, 0, mm_size,
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ps, ps, list,
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flags),
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"buddy_alloc hit an error size=%lu\n", ps);
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} while (++i < n_pages);
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list_for_each_entry(block, &clean, link)
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KUNIT_EXPECT_EQ(test, drm_buddy_block_is_clear(block), true);
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list_for_each_entry(block, &dirty, link)
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KUNIT_EXPECT_EQ(test, drm_buddy_block_is_clear(block), false);
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drm_buddy_free_list(&mm, &clean, DRM_BUDDY_CLEARED);
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/*
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* Trying to go over the clear limit for some allocation.
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* The allocation should never fail with reasonable page-size.
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*/
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KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, 0, mm_size,
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10 * ps, ps, &clean,
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DRM_BUDDY_CLEAR_ALLOCATION),
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"buddy_alloc hit an error size=%lu\n", 10 * ps);
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drm_buddy_free_list(&mm, &clean, DRM_BUDDY_CLEARED);
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drm_buddy_free_list(&mm, &dirty, 0);
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drm_buddy_fini(&mm);
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KUNIT_EXPECT_FALSE(test, drm_buddy_init(&mm, mm_size, ps));
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/*
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* Create a new mm. Intentionally fragment the address space by creating
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* two alternating lists. Free both lists, one as dirty the other as clean.
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* Try to allocate double the previous size with matching min_page_size. The
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* allocation should never fail as it calls the force_merge. Also check that
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* the page is always dirty after force_merge. Free the page as dirty, then
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* repeat the whole thing, increment the order until we hit the max_order.
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*/
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i = 0;
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n_pages = mm_size / ps;
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do {
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struct list_head *list;
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int slot = i % 2;
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if (slot == 0)
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list = &dirty;
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else
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list = &clean;
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KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, 0, mm_size,
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ps, ps, list, 0),
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"buddy_alloc hit an error size=%lu\n", ps);
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} while (++i < n_pages);
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drm_buddy_free_list(&mm, &clean, DRM_BUDDY_CLEARED);
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drm_buddy_free_list(&mm, &dirty, 0);
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order = 1;
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do {
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size = SZ_4K << order;
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KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, 0, mm_size,
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size, size, &allocated,
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DRM_BUDDY_CLEAR_ALLOCATION),
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"buddy_alloc hit an error size=%u\n", size);
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total = 0;
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list_for_each_entry(block, &allocated, link) {
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if (size != mm_size)
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KUNIT_EXPECT_EQ(test, drm_buddy_block_is_clear(block), false);
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total += drm_buddy_block_size(&mm, block);
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}
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KUNIT_EXPECT_EQ(test, total, size);
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drm_buddy_free_list(&mm, &allocated, 0);
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} while (++order <= max_order);
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drm_buddy_fini(&mm);
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/*
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* Create a new mm with a non power-of-two size. Allocate a random size, free as
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* cleared and then call fini. This will ensure the multi-root force merge during
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* fini.
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*/
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mm_size = 12 * SZ_4K;
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size = max(round_up(prandom_u32_state(&prng) % mm_size, ps), ps);
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KUNIT_EXPECT_FALSE(test, drm_buddy_init(&mm, mm_size, ps));
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KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, 0, mm_size,
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size, ps, &allocated,
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DRM_BUDDY_TOPDOWN_ALLOCATION),
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"buddy_alloc hit an error size=%u\n", size);
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drm_buddy_free_list(&mm, &allocated, DRM_BUDDY_CLEARED);
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drm_buddy_fini(&mm);
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}
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static void drm_test_buddy_alloc_contiguous(struct kunit *test)
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{
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const unsigned long ps = SZ_4K, mm_size = 16 * 3 * SZ_4K;
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unsigned long i, n_pages, total;
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struct drm_buddy_block *block;
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struct drm_buddy mm;
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LIST_HEAD(left);
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LIST_HEAD(middle);
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LIST_HEAD(right);
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LIST_HEAD(allocated);
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KUNIT_EXPECT_FALSE(test, drm_buddy_init(&mm, mm_size, ps));
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/*
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* Idea is to fragment the address space by alternating block
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* allocations between three different lists; one for left, middle and
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* right. We can then free a list to simulate fragmentation. In
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* particular we want to exercise the DRM_BUDDY_CONTIGUOUS_ALLOCATION,
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* including the try_harder path.
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*/
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i = 0;
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n_pages = mm_size / ps;
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do {
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struct list_head *list;
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int slot = i % 3;
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if (slot == 0)
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list = &left;
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else if (slot == 1)
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list = &middle;
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else
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list = &right;
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KUNIT_ASSERT_FALSE_MSG(test,
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drm_buddy_alloc_blocks(&mm, 0, mm_size,
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ps, ps, list, 0),
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"buddy_alloc hit an error size=%lu\n",
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ps);
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} while (++i < n_pages);
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KUNIT_ASSERT_TRUE_MSG(test, drm_buddy_alloc_blocks(&mm, 0, mm_size,
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3 * ps, ps, &allocated,
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DRM_BUDDY_CONTIGUOUS_ALLOCATION),
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"buddy_alloc didn't error size=%lu\n", 3 * ps);
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drm_buddy_free_list(&mm, &middle, 0);
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KUNIT_ASSERT_TRUE_MSG(test, drm_buddy_alloc_blocks(&mm, 0, mm_size,
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3 * ps, ps, &allocated,
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DRM_BUDDY_CONTIGUOUS_ALLOCATION),
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"buddy_alloc didn't error size=%lu\n", 3 * ps);
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KUNIT_ASSERT_TRUE_MSG(test, drm_buddy_alloc_blocks(&mm, 0, mm_size,
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2 * ps, ps, &allocated,
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DRM_BUDDY_CONTIGUOUS_ALLOCATION),
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"buddy_alloc didn't error size=%lu\n", 2 * ps);
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drm_buddy_free_list(&mm, &right, 0);
|
|
KUNIT_ASSERT_TRUE_MSG(test, drm_buddy_alloc_blocks(&mm, 0, mm_size,
|
|
3 * ps, ps, &allocated,
|
|
DRM_BUDDY_CONTIGUOUS_ALLOCATION),
|
|
"buddy_alloc didn't error size=%lu\n", 3 * ps);
|
|
/*
|
|
* At this point we should have enough contiguous space for 2 blocks,
|
|
* however they are never buddies (since we freed middle and right) so
|
|
* will require the try_harder logic to find them.
|
|
*/
|
|
KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, 0, mm_size,
|
|
2 * ps, ps, &allocated,
|
|
DRM_BUDDY_CONTIGUOUS_ALLOCATION),
|
|
"buddy_alloc hit an error size=%lu\n", 2 * ps);
|
|
|
|
drm_buddy_free_list(&mm, &left, 0);
|
|
KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, 0, mm_size,
|
|
3 * ps, ps, &allocated,
|
|
DRM_BUDDY_CONTIGUOUS_ALLOCATION),
|
|
"buddy_alloc hit an error size=%lu\n", 3 * ps);
|
|
|
|
total = 0;
|
|
list_for_each_entry(block, &allocated, link)
|
|
total += drm_buddy_block_size(&mm, block);
|
|
|
|
KUNIT_ASSERT_EQ(test, total, ps * 2 + ps * 3);
|
|
|
|
drm_buddy_free_list(&mm, &allocated, 0);
|
|
drm_buddy_fini(&mm);
|
|
}
|
|
|
|
static void drm_test_buddy_alloc_pathological(struct kunit *test)
|
|
{
|
|
u64 mm_size, size, start = 0;
|
|
struct drm_buddy_block *block;
|
|
const int max_order = 3;
|
|
unsigned long flags = 0;
|
|
int order, top;
|
|
struct drm_buddy mm;
|
|
LIST_HEAD(blocks);
|
|
LIST_HEAD(holes);
|
|
LIST_HEAD(tmp);
|
|
|
|
/*
|
|
* Create a pot-sized mm, then allocate one of each possible
|
|
* order within. This should leave the mm with exactly one
|
|
* page left. Free the largest block, then whittle down again.
|
|
* Eventually we will have a fully 50% fragmented mm.
|
|
*/
|
|
|
|
mm_size = SZ_4K << max_order;
|
|
KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_init(&mm, mm_size, SZ_4K),
|
|
"buddy_init failed\n");
|
|
|
|
KUNIT_EXPECT_EQ(test, mm.max_order, max_order);
|
|
|
|
for (top = max_order; top; top--) {
|
|
/* Make room by freeing the largest allocated block */
|
|
block = list_first_entry_or_null(&blocks, typeof(*block), link);
|
|
if (block) {
|
|
list_del(&block->link);
|
|
drm_buddy_free_block(&mm, block);
|
|
}
|
|
|
|
for (order = top; order--;) {
|
|
size = get_size(order, mm.chunk_size);
|
|
KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, start,
|
|
mm_size, size, size,
|
|
&tmp, flags),
|
|
"buddy_alloc hit -ENOMEM with order=%d, top=%d\n",
|
|
order, top);
|
|
|
|
block = list_first_entry_or_null(&tmp, struct drm_buddy_block, link);
|
|
KUNIT_ASSERT_TRUE_MSG(test, block, "alloc_blocks has no blocks\n");
|
|
|
|
list_move_tail(&block->link, &blocks);
|
|
}
|
|
|
|
/* There should be one final page for this sub-allocation */
|
|
size = get_size(0, mm.chunk_size);
|
|
KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, start, mm_size,
|
|
size, size, &tmp, flags),
|
|
"buddy_alloc hit -ENOMEM for hole\n");
|
|
|
|
block = list_first_entry_or_null(&tmp, struct drm_buddy_block, link);
|
|
KUNIT_ASSERT_TRUE_MSG(test, block, "alloc_blocks has no blocks\n");
|
|
|
|
list_move_tail(&block->link, &holes);
|
|
|
|
size = get_size(top, mm.chunk_size);
|
|
KUNIT_ASSERT_TRUE_MSG(test, drm_buddy_alloc_blocks(&mm, start, mm_size,
|
|
size, size, &tmp, flags),
|
|
"buddy_alloc unexpectedly succeeded at top-order %d/%d, it should be full!",
|
|
top, max_order);
|
|
}
|
|
|
|
drm_buddy_free_list(&mm, &holes, 0);
|
|
|
|
/* Nothing larger than blocks of chunk_size now available */
|
|
for (order = 1; order <= max_order; order++) {
|
|
size = get_size(order, mm.chunk_size);
|
|
KUNIT_ASSERT_TRUE_MSG(test, drm_buddy_alloc_blocks(&mm, start, mm_size,
|
|
size, size, &tmp, flags),
|
|
"buddy_alloc unexpectedly succeeded at order %d, it should be full!",
|
|
order);
|
|
}
|
|
|
|
list_splice_tail(&holes, &blocks);
|
|
drm_buddy_free_list(&mm, &blocks, 0);
|
|
drm_buddy_fini(&mm);
|
|
}
|
|
|
|
static void drm_test_buddy_alloc_pessimistic(struct kunit *test)
|
|
{
|
|
u64 mm_size, size, start = 0;
|
|
struct drm_buddy_block *block, *bn;
|
|
const unsigned int max_order = 16;
|
|
unsigned long flags = 0;
|
|
struct drm_buddy mm;
|
|
unsigned int order;
|
|
LIST_HEAD(blocks);
|
|
LIST_HEAD(tmp);
|
|
|
|
/*
|
|
* Create a pot-sized mm, then allocate one of each possible
|
|
* order within. This should leave the mm with exactly one
|
|
* page left.
|
|
*/
|
|
|
|
mm_size = SZ_4K << max_order;
|
|
KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_init(&mm, mm_size, SZ_4K),
|
|
"buddy_init failed\n");
|
|
|
|
KUNIT_EXPECT_EQ(test, mm.max_order, max_order);
|
|
|
|
for (order = 0; order < max_order; order++) {
|
|
size = get_size(order, mm.chunk_size);
|
|
KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, start, mm_size,
|
|
size, size, &tmp, flags),
|
|
"buddy_alloc hit -ENOMEM with order=%d\n",
|
|
order);
|
|
|
|
block = list_first_entry_or_null(&tmp, struct drm_buddy_block, link);
|
|
KUNIT_ASSERT_TRUE_MSG(test, block, "alloc_blocks has no blocks\n");
|
|
|
|
list_move_tail(&block->link, &blocks);
|
|
}
|
|
|
|
/* And now the last remaining block available */
|
|
size = get_size(0, mm.chunk_size);
|
|
KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, start, mm_size,
|
|
size, size, &tmp, flags),
|
|
"buddy_alloc hit -ENOMEM on final alloc\n");
|
|
|
|
block = list_first_entry_or_null(&tmp, struct drm_buddy_block, link);
|
|
KUNIT_ASSERT_TRUE_MSG(test, block, "alloc_blocks has no blocks\n");
|
|
|
|
list_move_tail(&block->link, &blocks);
|
|
|
|
/* Should be completely full! */
|
|
for (order = max_order; order--;) {
|
|
size = get_size(order, mm.chunk_size);
|
|
KUNIT_ASSERT_TRUE_MSG(test, drm_buddy_alloc_blocks(&mm, start, mm_size,
|
|
size, size, &tmp, flags),
|
|
"buddy_alloc unexpectedly succeeded, it should be full!");
|
|
}
|
|
|
|
block = list_last_entry(&blocks, typeof(*block), link);
|
|
list_del(&block->link);
|
|
drm_buddy_free_block(&mm, block);
|
|
|
|
/* As we free in increasing size, we make available larger blocks */
|
|
order = 1;
|
|
list_for_each_entry_safe(block, bn, &blocks, link) {
|
|
list_del(&block->link);
|
|
drm_buddy_free_block(&mm, block);
|
|
|
|
size = get_size(order, mm.chunk_size);
|
|
KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, start, mm_size,
|
|
size, size, &tmp, flags),
|
|
"buddy_alloc hit -ENOMEM with order=%d\n",
|
|
order);
|
|
|
|
block = list_first_entry_or_null(&tmp, struct drm_buddy_block, link);
|
|
KUNIT_ASSERT_TRUE_MSG(test, block, "alloc_blocks has no blocks\n");
|
|
|
|
list_del(&block->link);
|
|
drm_buddy_free_block(&mm, block);
|
|
order++;
|
|
}
|
|
|
|
/* To confirm, now the whole mm should be available */
|
|
size = get_size(max_order, mm.chunk_size);
|
|
KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, start, mm_size,
|
|
size, size, &tmp, flags),
|
|
"buddy_alloc (realloc) hit -ENOMEM with order=%d\n",
|
|
max_order);
|
|
|
|
block = list_first_entry_or_null(&tmp, struct drm_buddy_block, link);
|
|
KUNIT_ASSERT_TRUE_MSG(test, block, "alloc_blocks has no blocks\n");
|
|
|
|
list_del(&block->link);
|
|
drm_buddy_free_block(&mm, block);
|
|
drm_buddy_free_list(&mm, &blocks, 0);
|
|
drm_buddy_fini(&mm);
|
|
}
|
|
|
|
static void drm_test_buddy_alloc_optimistic(struct kunit *test)
|
|
{
|
|
u64 mm_size, size, start = 0;
|
|
struct drm_buddy_block *block;
|
|
unsigned long flags = 0;
|
|
const int max_order = 16;
|
|
struct drm_buddy mm;
|
|
LIST_HEAD(blocks);
|
|
LIST_HEAD(tmp);
|
|
int order;
|
|
|
|
/*
|
|
* Create a mm with one block of each order available, and
|
|
* try to allocate them all.
|
|
*/
|
|
|
|
mm_size = SZ_4K * ((1 << (max_order + 1)) - 1);
|
|
|
|
KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_init(&mm, mm_size, SZ_4K),
|
|
"buddy_init failed\n");
|
|
|
|
KUNIT_EXPECT_EQ(test, mm.max_order, max_order);
|
|
|
|
for (order = 0; order <= max_order; order++) {
|
|
size = get_size(order, mm.chunk_size);
|
|
KUNIT_ASSERT_FALSE_MSG(test, drm_buddy_alloc_blocks(&mm, start, mm_size,
|
|
size, size, &tmp, flags),
|
|
"buddy_alloc hit -ENOMEM with order=%d\n",
|
|
order);
|
|
|
|
block = list_first_entry_or_null(&tmp, struct drm_buddy_block, link);
|
|
KUNIT_ASSERT_TRUE_MSG(test, block, "alloc_blocks has no blocks\n");
|
|
|
|
list_move_tail(&block->link, &blocks);
|
|
}
|
|
|
|
/* Should be completely full! */
|
|
size = get_size(0, mm.chunk_size);
|
|
KUNIT_ASSERT_TRUE_MSG(test, drm_buddy_alloc_blocks(&mm, start, mm_size,
|
|
size, size, &tmp, flags),
|
|
"buddy_alloc unexpectedly succeeded, it should be full!");
|
|
|
|
drm_buddy_free_list(&mm, &blocks, 0);
|
|
drm_buddy_fini(&mm);
|
|
}
|
|
|
|
static void drm_test_buddy_alloc_limit(struct kunit *test)
|
|
{
|
|
u64 size = U64_MAX, start = 0;
|
|
struct drm_buddy_block *block;
|
|
unsigned long flags = 0;
|
|
LIST_HEAD(allocated);
|
|
struct drm_buddy mm;
|
|
|
|
KUNIT_EXPECT_FALSE(test, drm_buddy_init(&mm, size, SZ_4K));
|
|
|
|
KUNIT_EXPECT_EQ_MSG(test, mm.max_order, DRM_BUDDY_MAX_ORDER,
|
|
"mm.max_order(%d) != %d\n", mm.max_order,
|
|
DRM_BUDDY_MAX_ORDER);
|
|
|
|
size = mm.chunk_size << mm.max_order;
|
|
KUNIT_EXPECT_FALSE(test, drm_buddy_alloc_blocks(&mm, start, size, size,
|
|
mm.chunk_size, &allocated, flags));
|
|
|
|
block = list_first_entry_or_null(&allocated, struct drm_buddy_block, link);
|
|
KUNIT_EXPECT_TRUE(test, block);
|
|
|
|
KUNIT_EXPECT_EQ_MSG(test, drm_buddy_block_order(block), mm.max_order,
|
|
"block order(%d) != %d\n",
|
|
drm_buddy_block_order(block), mm.max_order);
|
|
|
|
KUNIT_EXPECT_EQ_MSG(test, drm_buddy_block_size(&mm, block),
|
|
BIT_ULL(mm.max_order) * mm.chunk_size,
|
|
"block size(%llu) != %llu\n",
|
|
drm_buddy_block_size(&mm, block),
|
|
BIT_ULL(mm.max_order) * mm.chunk_size);
|
|
|
|
drm_buddy_free_list(&mm, &allocated, 0);
|
|
drm_buddy_fini(&mm);
|
|
}
|
|
|
|
static int drm_buddy_suite_init(struct kunit_suite *suite)
|
|
{
|
|
while (!random_seed)
|
|
random_seed = get_random_u32();
|
|
|
|
kunit_info(suite, "Testing DRM buddy manager, with random_seed=0x%x\n",
|
|
random_seed);
|
|
|
|
return 0;
|
|
}
|
|
|
|
static struct kunit_case drm_buddy_tests[] = {
|
|
KUNIT_CASE(drm_test_buddy_alloc_limit),
|
|
KUNIT_CASE(drm_test_buddy_alloc_optimistic),
|
|
KUNIT_CASE(drm_test_buddy_alloc_pessimistic),
|
|
KUNIT_CASE(drm_test_buddy_alloc_pathological),
|
|
KUNIT_CASE(drm_test_buddy_alloc_contiguous),
|
|
KUNIT_CASE(drm_test_buddy_alloc_clear),
|
|
KUNIT_CASE(drm_test_buddy_alloc_range_bias),
|
|
{}
|
|
};
|
|
|
|
static struct kunit_suite drm_buddy_test_suite = {
|
|
.name = "drm_buddy",
|
|
.suite_init = drm_buddy_suite_init,
|
|
.test_cases = drm_buddy_tests,
|
|
};
|
|
|
|
kunit_test_suite(drm_buddy_test_suite);
|
|
|
|
MODULE_AUTHOR("Intel Corporation");
|
|
MODULE_DESCRIPTION("Kunit test for drm_buddy functions");
|
|
MODULE_LICENSE("GPL");
|