777b0ba965
For now, this is just a stub containing the ecaches, with no surrounding code changed. Eventually all the core allocator bits will be moved in, in the subsequent stack of commits.
118 lines
3.3 KiB
C
118 lines
3.3 KiB
C
#include "test/jemalloc_test.h"
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#include "jemalloc/internal/pa.h"
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static void *
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alloc_hook(extent_hooks_t *extent_hooks, void *new_addr, size_t size,
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size_t alignment, bool *zero, bool *commit, unsigned arena_ind) {
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void *ret = pages_map(new_addr, size, alignment, commit);
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return ret;
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}
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static bool
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merge_hook(extent_hooks_t *extent_hooks, void *addr_a, size_t size_a,
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void *addr_b, size_t size_b, bool committed, unsigned arena_ind) {
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return !maps_coalesce;
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}
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static bool
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split_hook(extent_hooks_t *extent_hooks, void *addr, size_t size,
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size_t size_a, size_t size_b, bool committed, unsigned arena_ind) {
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return !maps_coalesce;
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}
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static void
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init_test_extent_hooks(extent_hooks_t *hooks) {
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/*
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* The default hooks are mostly fine for testing. A few of them,
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* though, access globals (alloc for dss setting in an arena, split and
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* merge touch the global emap to find head state. The first of these
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* can be fixed by keeping that state with the hooks, where it logically
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* belongs. The second, though, we can only fix when we use the extent
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* hook API.
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*/
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memcpy(hooks, &ehooks_default_extent_hooks, sizeof(extent_hooks_t));
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hooks->alloc = &alloc_hook;
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hooks->merge = &merge_hook;
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hooks->split = &split_hook;
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}
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typedef struct test_data_s test_data_t;
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struct test_data_s {
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pa_shard_t shard;
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base_t *base;
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emap_t emap;
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pa_shard_stats_t stats;
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malloc_mutex_t stats_mtx;
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extent_hooks_t hooks;
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};
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test_data_t *init_test_data(ssize_t dirty_decay_ms, ssize_t muzzy_decay_ms) {
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test_data_t *test_data = calloc(1, sizeof(test_data_t));
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assert_ptr_not_null(test_data, "");
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init_test_extent_hooks(&test_data->hooks);
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base_t *base = base_new(TSDN_NULL, /* ind */ 1, &test_data->hooks);
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assert_ptr_not_null(base, "");
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test_data->base = base;
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bool err = emap_init(&test_data->emap, test_data->base,
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/* zeroed */ true);
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assert_false(err, "");
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nstime_t time;
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nstime_init(&time, 0);
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err = pa_shard_init(TSDN_NULL, &test_data->shard, &test_data->emap,
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test_data->base, /* ind */ 1, &test_data->stats,
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&test_data->stats_mtx, &time, dirty_decay_ms, muzzy_decay_ms);
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assert_false(err, "");
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return test_data;
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}
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void destroy_test_data(test_data_t *data) {
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base_delete(TSDN_NULL, data->base);
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free(data);
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}
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static void *
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do_alloc_free_purge(void *arg) {
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test_data_t *test_data = (test_data_t *)arg;
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for (int i = 0; i < 10 * 1000; i++) {
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edata_t *edata = pa_alloc(TSDN_NULL, &test_data->shard, PAGE,
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PAGE, /* slab */ false, /* szind */ 0, /* zero */ false);
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assert_ptr_not_null(edata, "");
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bool generated_dirty;
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pa_dalloc(TSDN_NULL, &test_data->shard, edata,
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&generated_dirty);
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malloc_mutex_lock(TSDN_NULL, &test_data->shard.decay_dirty.mtx);
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pa_decay_all(TSDN_NULL, &test_data->shard,
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&test_data->shard.decay_dirty,
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&test_data->stats.decay_dirty,
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&test_data->shard.pac.ecache_dirty, true);
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malloc_mutex_unlock(TSDN_NULL,
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&test_data->shard.decay_dirty.mtx);
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}
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return NULL;
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}
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TEST_BEGIN(test_alloc_free_purge_thds) {
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test_data_t *test_data = init_test_data(0, 0);
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thd_t thds[4];
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for (int i = 0; i < 4; i++) {
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thd_create(&thds[i], do_alloc_free_purge, test_data);
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}
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for (int i = 0; i < 4; i++) {
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thd_join(thds[i], NULL);
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}
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}
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TEST_END
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int
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main(void) {
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return test(
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test_alloc_free_purge_thds);
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}
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