7be78d0279
The tool comes from https://github.com/jsoref Signed-off-by: Josh Soref <jsoref@gmail.com> Signed-off-by: Thomas Monjalon <thomas@monjalon.net>
1047 lines
27 KiB
C
1047 lines
27 KiB
C
/* SPDX-License-Identifier: BSD-3-Clause
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* Copyright(c) 2010-2014 Intel Corporation
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*/
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#include <string.h>
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#include <stdio.h>
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#include <stdlib.h>
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#include <stdint.h>
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#include <inttypes.h>
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#include <stdarg.h>
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#include <errno.h>
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#include <sys/queue.h>
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#include <rte_common.h>
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#include <rte_eal_paging.h>
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#include <rte_log.h>
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#include <rte_debug.h>
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#include <rte_errno.h>
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#include <rte_memory.h>
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#include <rte_launch.h>
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#include <rte_cycles.h>
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#include <rte_eal.h>
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#include <rte_per_lcore.h>
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#include <rte_lcore.h>
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#include <rte_branch_prediction.h>
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#include <rte_mempool.h>
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#include <rte_spinlock.h>
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#include <rte_malloc.h>
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#include <rte_mbuf_pool_ops.h>
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#include <rte_mbuf.h>
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#include "test.h"
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/*
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* Mempool
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* =======
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*
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* Basic tests: done on one core with and without cache:
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*
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* - Get one object, put one object
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* - Get two objects, put two objects
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* - Get all objects, test that their content is not modified and
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* put them back in the pool.
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*/
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#define MEMPOOL_ELT_SIZE 2048
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#define MAX_KEEP 16
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#define MEMPOOL_SIZE ((rte_lcore_count()*(MAX_KEEP+RTE_MEMPOOL_CACHE_MAX_SIZE))-1)
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#define LOG_ERR() printf("test failed at %s():%d\n", __func__, __LINE__)
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#define RET_ERR() do { \
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LOG_ERR(); \
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return -1; \
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} while (0)
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#define GOTO_ERR(var, label) do { \
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LOG_ERR(); \
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var = -1; \
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goto label; \
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} while (0)
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/*
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* save the object number in the first 4 bytes of object data. All
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* other bytes are set to 0.
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*/
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static void
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my_obj_init(struct rte_mempool *mp, __rte_unused void *arg,
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void *obj, unsigned i)
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{
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uint32_t *objnum = obj;
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memset(obj, 0, mp->elt_size);
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*objnum = i;
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}
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/* basic tests (done on one core) */
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static int
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test_mempool_basic(struct rte_mempool *mp, int use_external_cache)
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{
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uint32_t *objnum;
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void **objtable;
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void *obj, *obj2;
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char *obj_data;
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int ret = 0;
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unsigned i, j;
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int offset;
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struct rte_mempool_cache *cache;
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if (use_external_cache) {
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/* Create a user-owned mempool cache. */
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cache = rte_mempool_cache_create(RTE_MEMPOOL_CACHE_MAX_SIZE,
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SOCKET_ID_ANY);
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if (cache == NULL)
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RET_ERR();
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} else {
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/* May be NULL if cache is disabled. */
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cache = rte_mempool_default_cache(mp, rte_lcore_id());
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}
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/* dump the mempool status */
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rte_mempool_dump(stdout, mp);
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printf("get an object\n");
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if (rte_mempool_generic_get(mp, &obj, 1, cache) < 0)
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GOTO_ERR(ret, out);
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rte_mempool_dump(stdout, mp);
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/* tests that improve coverage */
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printf("get object count\n");
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/* We have to count the extra caches, one in this case. */
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offset = use_external_cache ? 1 * cache->len : 0;
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if (rte_mempool_avail_count(mp) + offset != MEMPOOL_SIZE - 1)
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GOTO_ERR(ret, out);
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printf("get private data\n");
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if (rte_mempool_get_priv(mp) != (char *)mp +
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RTE_MEMPOOL_HEADER_SIZE(mp, mp->cache_size))
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GOTO_ERR(ret, out);
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#ifndef RTE_EXEC_ENV_FREEBSD /* rte_mem_virt2iova() not supported on bsd */
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printf("get physical address of an object\n");
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if (rte_mempool_virt2iova(obj) != rte_mem_virt2iova(obj))
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GOTO_ERR(ret, out);
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#endif
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printf("put the object back\n");
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rte_mempool_generic_put(mp, &obj, 1, cache);
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rte_mempool_dump(stdout, mp);
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printf("get 2 objects\n");
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if (rte_mempool_generic_get(mp, &obj, 1, cache) < 0)
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GOTO_ERR(ret, out);
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if (rte_mempool_generic_get(mp, &obj2, 1, cache) < 0) {
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rte_mempool_generic_put(mp, &obj, 1, cache);
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GOTO_ERR(ret, out);
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}
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rte_mempool_dump(stdout, mp);
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printf("put the objects back\n");
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rte_mempool_generic_put(mp, &obj, 1, cache);
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rte_mempool_generic_put(mp, &obj2, 1, cache);
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rte_mempool_dump(stdout, mp);
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/*
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* get many objects: we cannot get them all because the cache
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* on other cores may not be empty.
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*/
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objtable = malloc(MEMPOOL_SIZE * sizeof(void *));
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if (objtable == NULL)
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GOTO_ERR(ret, out);
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for (i = 0; i < MEMPOOL_SIZE; i++) {
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if (rte_mempool_generic_get(mp, &objtable[i], 1, cache) < 0)
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break;
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}
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/*
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* for each object, check that its content was not modified,
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* and put objects back in pool
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*/
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while (i--) {
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obj = objtable[i];
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obj_data = obj;
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objnum = obj;
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if (*objnum > MEMPOOL_SIZE) {
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printf("bad object number(%d)\n", *objnum);
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ret = -1;
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break;
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}
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for (j = sizeof(*objnum); j < mp->elt_size; j++) {
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if (obj_data[j] != 0)
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ret = -1;
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}
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rte_mempool_generic_put(mp, &objtable[i], 1, cache);
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}
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free(objtable);
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if (ret == -1)
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printf("objects were modified!\n");
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out:
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if (use_external_cache) {
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rte_mempool_cache_flush(cache, mp);
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rte_mempool_cache_free(cache);
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}
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return ret;
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}
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static int test_mempool_creation_with_exceeded_cache_size(void)
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{
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struct rte_mempool *mp_cov;
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mp_cov = rte_mempool_create("test_mempool_cache_too_big",
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MEMPOOL_SIZE,
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MEMPOOL_ELT_SIZE,
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RTE_MEMPOOL_CACHE_MAX_SIZE + 32, 0,
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NULL, NULL,
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my_obj_init, NULL,
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SOCKET_ID_ANY, 0);
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if (mp_cov != NULL) {
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rte_mempool_free(mp_cov);
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RET_ERR();
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}
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return 0;
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}
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static int test_mempool_creation_with_invalid_flags(void)
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{
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struct rte_mempool *mp_cov;
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mp_cov = rte_mempool_create("test_mempool_invalid_flags", MEMPOOL_SIZE,
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MEMPOOL_ELT_SIZE, 0, 0,
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NULL, NULL,
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NULL, NULL,
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SOCKET_ID_ANY, ~RTE_MEMPOOL_VALID_USER_FLAGS);
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if (mp_cov != NULL) {
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rte_mempool_free(mp_cov);
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RET_ERR();
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}
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return 0;
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}
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static struct rte_mempool *mp_spsc;
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static rte_spinlock_t scsp_spinlock;
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static void *scsp_obj_table[MAX_KEEP];
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/*
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* single producer function
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*/
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static int test_mempool_single_producer(void)
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{
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unsigned int i;
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void *obj = NULL;
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uint64_t start_cycles, end_cycles;
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uint64_t duration = rte_get_timer_hz() / 4;
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start_cycles = rte_get_timer_cycles();
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while (1) {
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end_cycles = rte_get_timer_cycles();
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/* duration uses up, stop producing */
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if (start_cycles + duration < end_cycles)
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break;
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rte_spinlock_lock(&scsp_spinlock);
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for (i = 0; i < MAX_KEEP; i ++) {
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if (NULL != scsp_obj_table[i]) {
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obj = scsp_obj_table[i];
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break;
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}
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}
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rte_spinlock_unlock(&scsp_spinlock);
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if (i >= MAX_KEEP) {
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continue;
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}
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if (rte_mempool_from_obj(obj) != mp_spsc) {
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printf("obj not owned by this mempool\n");
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RET_ERR();
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}
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rte_mempool_put(mp_spsc, obj);
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rte_spinlock_lock(&scsp_spinlock);
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scsp_obj_table[i] = NULL;
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rte_spinlock_unlock(&scsp_spinlock);
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}
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return 0;
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}
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/*
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* single consumer function
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*/
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static int test_mempool_single_consumer(void)
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{
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unsigned int i;
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void * obj;
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uint64_t start_cycles, end_cycles;
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uint64_t duration = rte_get_timer_hz() / 8;
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start_cycles = rte_get_timer_cycles();
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while (1) {
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end_cycles = rte_get_timer_cycles();
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/* duration uses up, stop consuming */
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if (start_cycles + duration < end_cycles)
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break;
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rte_spinlock_lock(&scsp_spinlock);
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for (i = 0; i < MAX_KEEP; i ++) {
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if (NULL == scsp_obj_table[i])
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break;
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}
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rte_spinlock_unlock(&scsp_spinlock);
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if (i >= MAX_KEEP)
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continue;
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if (rte_mempool_get(mp_spsc, &obj) < 0)
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break;
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rte_spinlock_lock(&scsp_spinlock);
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scsp_obj_table[i] = obj;
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rte_spinlock_unlock(&scsp_spinlock);
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}
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return 0;
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}
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/*
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* test function for mempool test based on single consumer and single producer,
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* can run on one lcore only
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*/
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static int
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test_mempool_launch_single_consumer(__rte_unused void *arg)
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{
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return test_mempool_single_consumer();
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}
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static void
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my_mp_init(struct rte_mempool *mp, __rte_unused void *arg)
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{
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printf("mempool name is %s\n", mp->name);
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/* nothing to be implemented here*/
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return ;
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}
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/*
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* it tests the mempool operations based on single producer and single consumer
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*/
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static int
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test_mempool_sp_sc(void)
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{
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int ret = 0;
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unsigned lcore_id = rte_lcore_id();
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unsigned lcore_next;
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/* create a mempool with single producer/consumer ring */
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if (mp_spsc == NULL) {
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mp_spsc = rte_mempool_create("test_mempool_sp_sc", MEMPOOL_SIZE,
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MEMPOOL_ELT_SIZE, 0, 0,
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my_mp_init, NULL,
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my_obj_init, NULL,
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SOCKET_ID_ANY,
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RTE_MEMPOOL_F_NO_CACHE_ALIGN | RTE_MEMPOOL_F_SP_PUT |
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RTE_MEMPOOL_F_SC_GET);
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if (mp_spsc == NULL)
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RET_ERR();
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}
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if (rte_mempool_lookup("test_mempool_sp_sc") != mp_spsc) {
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printf("Cannot lookup mempool from its name\n");
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ret = -1;
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goto err;
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}
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lcore_next = rte_get_next_lcore(lcore_id, 0, 1);
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if (lcore_next >= RTE_MAX_LCORE) {
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ret = -1;
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goto err;
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}
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if (rte_eal_lcore_role(lcore_next) != ROLE_RTE) {
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ret = -1;
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goto err;
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}
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rte_spinlock_init(&scsp_spinlock);
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memset(scsp_obj_table, 0, sizeof(scsp_obj_table));
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rte_eal_remote_launch(test_mempool_launch_single_consumer, NULL,
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lcore_next);
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if (test_mempool_single_producer() < 0)
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ret = -1;
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if (rte_eal_wait_lcore(lcore_next) < 0)
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ret = -1;
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err:
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rte_mempool_free(mp_spsc);
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mp_spsc = NULL;
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return ret;
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}
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/*
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* it tests some more basic of mempool
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*/
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static int
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test_mempool_basic_ex(struct rte_mempool *mp)
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{
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unsigned i;
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void **obj;
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void *err_obj;
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int ret = -1;
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if (mp == NULL)
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return ret;
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obj = rte_calloc("test_mempool_basic_ex", MEMPOOL_SIZE,
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sizeof(void *), 0);
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if (obj == NULL) {
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printf("test_mempool_basic_ex fail to rte_malloc\n");
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return ret;
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}
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printf("test_mempool_basic_ex now mempool (%s) has %u free entries\n",
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mp->name, rte_mempool_in_use_count(mp));
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if (rte_mempool_full(mp) != 1) {
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printf("test_mempool_basic_ex the mempool should be full\n");
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goto fail_mp_basic_ex;
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}
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for (i = 0; i < MEMPOOL_SIZE; i ++) {
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if (rte_mempool_get(mp, &obj[i]) < 0) {
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printf("test_mp_basic_ex fail to get object for [%u]\n",
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i);
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goto fail_mp_basic_ex;
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}
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}
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if (rte_mempool_get(mp, &err_obj) == 0) {
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printf("test_mempool_basic_ex get an impossible obj\n");
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goto fail_mp_basic_ex;
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}
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printf("number: %u\n", i);
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if (rte_mempool_empty(mp) != 1) {
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printf("test_mempool_basic_ex the mempool should be empty\n");
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goto fail_mp_basic_ex;
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}
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for (i = 0; i < MEMPOOL_SIZE; i++)
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rte_mempool_put(mp, obj[i]);
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if (rte_mempool_full(mp) != 1) {
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printf("test_mempool_basic_ex the mempool should be full\n");
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goto fail_mp_basic_ex;
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}
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ret = 0;
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fail_mp_basic_ex:
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if (obj != NULL)
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rte_free((void *)obj);
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return ret;
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}
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|
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static int
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test_mempool_same_name_twice_creation(void)
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{
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struct rte_mempool *mp_tc, *mp_tc2;
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mp_tc = rte_mempool_create("test_mempool_same_name", MEMPOOL_SIZE,
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MEMPOOL_ELT_SIZE, 0, 0,
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NULL, NULL,
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NULL, NULL,
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SOCKET_ID_ANY, 0);
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|
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if (mp_tc == NULL)
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RET_ERR();
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|
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mp_tc2 = rte_mempool_create("test_mempool_same_name", MEMPOOL_SIZE,
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MEMPOOL_ELT_SIZE, 0, 0,
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NULL, NULL,
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NULL, NULL,
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SOCKET_ID_ANY, 0);
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if (mp_tc2 != NULL) {
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rte_mempool_free(mp_tc);
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rte_mempool_free(mp_tc2);
|
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RET_ERR();
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}
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|
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rte_mempool_free(mp_tc);
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return 0;
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}
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|
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static void
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walk_cb(struct rte_mempool *mp, void *userdata __rte_unused)
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{
|
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printf("\t%s\n", mp->name);
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}
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|
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struct mp_data {
|
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int16_t ret;
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};
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|
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static void
|
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test_mp_mem_init(struct rte_mempool *mp,
|
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__rte_unused void *opaque,
|
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__rte_unused struct rte_mempool_memhdr *memhdr,
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__rte_unused unsigned int mem_idx)
|
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{
|
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struct mp_data *data = opaque;
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|
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if (mp == NULL) {
|
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data->ret = -1;
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return;
|
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}
|
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/* nothing to be implemented here*/
|
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data->ret = 0;
|
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}
|
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|
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struct test_mempool_events_data {
|
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struct rte_mempool *mp;
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enum rte_mempool_event event;
|
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bool invoked;
|
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};
|
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|
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static void
|
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test_mempool_events_cb(enum rte_mempool_event event,
|
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struct rte_mempool *mp, void *user_data)
|
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{
|
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struct test_mempool_events_data *data = user_data;
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|
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data->mp = mp;
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data->event = event;
|
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data->invoked = true;
|
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}
|
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|
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static int
|
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test_mempool_events(int (*populate)(struct rte_mempool *mp))
|
|
{
|
|
#pragma push_macro("RTE_TEST_TRACE_FAILURE")
|
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#undef RTE_TEST_TRACE_FAILURE
|
|
#define RTE_TEST_TRACE_FAILURE(...) do { goto fail; } while (0)
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|
|
static const size_t callback_num = 3;
|
|
static const size_t mempool_num = 2;
|
|
static const unsigned int mempool_elt_size = 64;
|
|
static const unsigned int mempool_size = 64;
|
|
|
|
struct test_mempool_events_data data[callback_num];
|
|
struct rte_mempool *mp[mempool_num], *freed;
|
|
char name[RTE_MEMPOOL_NAMESIZE];
|
|
size_t i, j;
|
|
int ret;
|
|
|
|
memset(mp, 0, sizeof(mp));
|
|
for (i = 0; i < callback_num; i++) {
|
|
ret = rte_mempool_event_callback_register
|
|
(test_mempool_events_cb, &data[i]);
|
|
RTE_TEST_ASSERT_EQUAL(ret, 0, "Failed to register the callback %zu: %s",
|
|
i, rte_strerror(rte_errno));
|
|
}
|
|
ret = rte_mempool_event_callback_unregister(test_mempool_events_cb, mp);
|
|
RTE_TEST_ASSERT_NOT_EQUAL(ret, 0, "Unregistered a non-registered callback");
|
|
/* NULL argument has no special meaning in this API. */
|
|
ret = rte_mempool_event_callback_unregister(test_mempool_events_cb,
|
|
NULL);
|
|
RTE_TEST_ASSERT_NOT_EQUAL(ret, 0, "Unregistered a non-registered callback with NULL argument");
|
|
|
|
/* Create mempool 0 that will be observed by all callbacks. */
|
|
memset(&data, 0, sizeof(data));
|
|
strcpy(name, "empty0");
|
|
mp[0] = rte_mempool_create_empty(name, mempool_size,
|
|
mempool_elt_size, 0, 0,
|
|
SOCKET_ID_ANY, 0);
|
|
RTE_TEST_ASSERT_NOT_NULL(mp[0], "Cannot create mempool %s: %s",
|
|
name, rte_strerror(rte_errno));
|
|
for (j = 0; j < callback_num; j++)
|
|
RTE_TEST_ASSERT_EQUAL(data[j].invoked, false,
|
|
"Callback %zu invoked on %s mempool creation",
|
|
j, name);
|
|
|
|
rte_mempool_set_ops_byname(mp[0], rte_mbuf_best_mempool_ops(), NULL);
|
|
ret = populate(mp[0]);
|
|
RTE_TEST_ASSERT_EQUAL(ret, (int)mp[0]->size, "Failed to populate mempool %s: %s",
|
|
name, rte_strerror(-ret));
|
|
for (j = 0; j < callback_num; j++) {
|
|
RTE_TEST_ASSERT_EQUAL(data[j].invoked, true,
|
|
"Callback %zu not invoked on mempool %s population",
|
|
j, name);
|
|
RTE_TEST_ASSERT_EQUAL(data[j].event,
|
|
RTE_MEMPOOL_EVENT_READY,
|
|
"Wrong callback invoked, expected READY");
|
|
RTE_TEST_ASSERT_EQUAL(data[j].mp, mp[0],
|
|
"Callback %zu invoked for a wrong mempool instead of %s",
|
|
j, name);
|
|
}
|
|
|
|
/* Check that unregistered callback 0 observes no events. */
|
|
ret = rte_mempool_event_callback_unregister(test_mempool_events_cb,
|
|
&data[0]);
|
|
RTE_TEST_ASSERT_EQUAL(ret, 0, "Failed to unregister callback 0: %s",
|
|
rte_strerror(rte_errno));
|
|
memset(&data, 0, sizeof(data));
|
|
strcpy(name, "empty1");
|
|
mp[1] = rte_mempool_create_empty(name, mempool_size,
|
|
mempool_elt_size, 0, 0,
|
|
SOCKET_ID_ANY, 0);
|
|
RTE_TEST_ASSERT_NOT_NULL(mp[1], "Cannot create mempool %s: %s",
|
|
name, rte_strerror(rte_errno));
|
|
rte_mempool_set_ops_byname(mp[1], rte_mbuf_best_mempool_ops(), NULL);
|
|
ret = populate(mp[1]);
|
|
RTE_TEST_ASSERT_EQUAL(ret, (int)mp[1]->size, "Failed to populate mempool %s: %s",
|
|
name, rte_strerror(-ret));
|
|
RTE_TEST_ASSERT_EQUAL(data[0].invoked, false,
|
|
"Unregistered callback 0 invoked on %s mempool populaton",
|
|
name);
|
|
|
|
for (i = 0; i < mempool_num; i++) {
|
|
memset(&data, 0, sizeof(data));
|
|
sprintf(name, "empty%zu", i);
|
|
rte_mempool_free(mp[i]);
|
|
/*
|
|
* Save pointer to check that it was passed to the callback,
|
|
* but put NULL into the array in case cleanup is called early.
|
|
*/
|
|
freed = mp[i];
|
|
mp[i] = NULL;
|
|
for (j = 1; j < callback_num; j++) {
|
|
RTE_TEST_ASSERT_EQUAL(data[j].invoked, true,
|
|
"Callback %zu not invoked on mempool %s destruction",
|
|
j, name);
|
|
RTE_TEST_ASSERT_EQUAL(data[j].event,
|
|
RTE_MEMPOOL_EVENT_DESTROY,
|
|
"Wrong callback invoked, expected DESTROY");
|
|
RTE_TEST_ASSERT_EQUAL(data[j].mp, freed,
|
|
"Callback %zu invoked for a wrong mempool instead of %s",
|
|
j, name);
|
|
}
|
|
RTE_TEST_ASSERT_EQUAL(data[0].invoked, false,
|
|
"Unregistered callback 0 invoked on %s mempool destruction",
|
|
name);
|
|
}
|
|
|
|
for (j = 1; j < callback_num; j++) {
|
|
ret = rte_mempool_event_callback_unregister
|
|
(test_mempool_events_cb, &data[j]);
|
|
RTE_TEST_ASSERT_EQUAL(ret, 0, "Failed to unregister the callback %zu: %s",
|
|
j, rte_strerror(rte_errno));
|
|
}
|
|
return TEST_SUCCESS;
|
|
|
|
fail:
|
|
for (j = 0; j < callback_num; j++)
|
|
rte_mempool_event_callback_unregister
|
|
(test_mempool_events_cb, &data[j]);
|
|
for (i = 0; i < mempool_num; i++)
|
|
rte_mempool_free(mp[i]);
|
|
return TEST_FAILED;
|
|
|
|
#pragma pop_macro("RTE_TEST_TRACE_FAILURE")
|
|
}
|
|
|
|
struct test_mempool_events_safety_data {
|
|
bool invoked;
|
|
int (*api_func)(rte_mempool_event_callback *func, void *user_data);
|
|
rte_mempool_event_callback *cb_func;
|
|
void *cb_user_data;
|
|
int ret;
|
|
};
|
|
|
|
static void
|
|
test_mempool_events_safety_cb(enum rte_mempool_event event,
|
|
struct rte_mempool *mp, void *user_data)
|
|
{
|
|
struct test_mempool_events_safety_data *data = user_data;
|
|
|
|
RTE_SET_USED(event);
|
|
RTE_SET_USED(mp);
|
|
data->invoked = true;
|
|
data->ret = data->api_func(data->cb_func, data->cb_user_data);
|
|
}
|
|
|
|
static int
|
|
test_mempool_events_safety(void)
|
|
{
|
|
#pragma push_macro("RTE_TEST_TRACE_FAILURE")
|
|
#undef RTE_TEST_TRACE_FAILURE
|
|
#define RTE_TEST_TRACE_FAILURE(...) do { \
|
|
ret = TEST_FAILED; \
|
|
goto exit; \
|
|
} while (0)
|
|
|
|
struct test_mempool_events_data data;
|
|
struct test_mempool_events_safety_data sdata[2];
|
|
struct rte_mempool *mp;
|
|
size_t i;
|
|
int ret;
|
|
|
|
/* removes itself */
|
|
sdata[0].api_func = rte_mempool_event_callback_unregister;
|
|
sdata[0].cb_func = test_mempool_events_safety_cb;
|
|
sdata[0].cb_user_data = &sdata[0];
|
|
sdata[0].ret = -1;
|
|
rte_mempool_event_callback_register(test_mempool_events_safety_cb,
|
|
&sdata[0]);
|
|
/* inserts a callback after itself */
|
|
sdata[1].api_func = rte_mempool_event_callback_register;
|
|
sdata[1].cb_func = test_mempool_events_cb;
|
|
sdata[1].cb_user_data = &data;
|
|
sdata[1].ret = -1;
|
|
rte_mempool_event_callback_register(test_mempool_events_safety_cb,
|
|
&sdata[1]);
|
|
|
|
mp = rte_mempool_create_empty("empty", MEMPOOL_SIZE,
|
|
MEMPOOL_ELT_SIZE, 0, 0,
|
|
SOCKET_ID_ANY, 0);
|
|
RTE_TEST_ASSERT_NOT_NULL(mp, "Cannot create mempool: %s",
|
|
rte_strerror(rte_errno));
|
|
memset(&data, 0, sizeof(data));
|
|
ret = rte_mempool_populate_default(mp);
|
|
RTE_TEST_ASSERT_EQUAL(ret, (int)mp->size, "Failed to populate mempool: %s",
|
|
rte_strerror(-ret));
|
|
|
|
RTE_TEST_ASSERT_EQUAL(sdata[0].ret, 0, "Callback failed to unregister itself: %s",
|
|
rte_strerror(rte_errno));
|
|
RTE_TEST_ASSERT_EQUAL(sdata[1].ret, 0, "Failed to insert a new callback: %s",
|
|
rte_strerror(rte_errno));
|
|
RTE_TEST_ASSERT_EQUAL(data.invoked, false,
|
|
"Inserted callback is invoked on mempool population");
|
|
|
|
memset(&data, 0, sizeof(data));
|
|
sdata[0].invoked = false;
|
|
rte_mempool_free(mp);
|
|
mp = NULL;
|
|
RTE_TEST_ASSERT_EQUAL(sdata[0].invoked, false,
|
|
"Callback that unregistered itself was called");
|
|
RTE_TEST_ASSERT_EQUAL(sdata[1].ret, -EEXIST,
|
|
"New callback inserted twice");
|
|
RTE_TEST_ASSERT_EQUAL(data.invoked, true,
|
|
"Inserted callback is not invoked on mempool destruction");
|
|
|
|
rte_mempool_event_callback_unregister(test_mempool_events_cb, &data);
|
|
for (i = 0; i < RTE_DIM(sdata); i++)
|
|
rte_mempool_event_callback_unregister
|
|
(test_mempool_events_safety_cb, &sdata[i]);
|
|
ret = TEST_SUCCESS;
|
|
|
|
exit:
|
|
/* cleanup, don't care which callbacks are already removed */
|
|
rte_mempool_event_callback_unregister(test_mempool_events_cb, &data);
|
|
for (i = 0; i < RTE_DIM(sdata); i++)
|
|
rte_mempool_event_callback_unregister
|
|
(test_mempool_events_safety_cb, &sdata[i]);
|
|
/* in case of failure before the planned destruction */
|
|
rte_mempool_free(mp);
|
|
return ret;
|
|
|
|
#pragma pop_macro("RTE_TEST_TRACE_FAILURE")
|
|
}
|
|
|
|
#pragma push_macro("RTE_TEST_TRACE_FAILURE")
|
|
#undef RTE_TEST_TRACE_FAILURE
|
|
#define RTE_TEST_TRACE_FAILURE(...) do { \
|
|
ret = TEST_FAILED; \
|
|
goto exit; \
|
|
} while (0)
|
|
|
|
static int
|
|
test_mempool_flag_non_io_set_when_no_iova_contig_set(void)
|
|
{
|
|
const struct rte_memzone *mz = NULL;
|
|
void *virt;
|
|
rte_iova_t iova;
|
|
size_t size = MEMPOOL_ELT_SIZE * 16;
|
|
struct rte_mempool *mp = NULL;
|
|
int ret;
|
|
|
|
mz = rte_memzone_reserve("test_mempool", size, SOCKET_ID_ANY, 0);
|
|
RTE_TEST_ASSERT_NOT_NULL(mz, "Cannot allocate memory");
|
|
virt = mz->addr;
|
|
iova = mz->iova;
|
|
mp = rte_mempool_create_empty("empty", MEMPOOL_SIZE,
|
|
MEMPOOL_ELT_SIZE, 0, 0,
|
|
SOCKET_ID_ANY, RTE_MEMPOOL_F_NO_IOVA_CONTIG);
|
|
RTE_TEST_ASSERT_NOT_NULL(mp, "Cannot create mempool: %s",
|
|
rte_strerror(rte_errno));
|
|
rte_mempool_set_ops_byname(mp, rte_mbuf_best_mempool_ops(), NULL);
|
|
|
|
RTE_TEST_ASSERT(mp->flags & RTE_MEMPOOL_F_NON_IO,
|
|
"NON_IO flag is not set on an empty mempool");
|
|
|
|
/*
|
|
* Always use valid IOVA so that populate() has no other reason
|
|
* to infer that the mempool cannot be used for IO.
|
|
*/
|
|
ret = rte_mempool_populate_iova(mp, virt, iova, size, NULL, NULL);
|
|
RTE_TEST_ASSERT(ret > 0, "Failed to populate mempool: %s",
|
|
rte_strerror(-ret));
|
|
RTE_TEST_ASSERT(mp->flags & RTE_MEMPOOL_F_NON_IO,
|
|
"NON_IO flag is not set when NO_IOVA_CONTIG is set");
|
|
ret = TEST_SUCCESS;
|
|
exit:
|
|
rte_mempool_free(mp);
|
|
rte_memzone_free(mz);
|
|
return ret;
|
|
}
|
|
|
|
static int
|
|
test_mempool_flag_non_io_unset_when_populated_with_valid_iova(void)
|
|
{
|
|
const struct rte_memzone *mz = NULL;
|
|
void *virt;
|
|
rte_iova_t iova;
|
|
size_t total_size = MEMPOOL_ELT_SIZE * MEMPOOL_SIZE;
|
|
size_t block_size = total_size / 3;
|
|
struct rte_mempool *mp = NULL;
|
|
int ret;
|
|
|
|
/*
|
|
* Since objects from the pool are never used in the test,
|
|
* we don't care for contiguous IOVA, on the other hand,
|
|
* requiring it could cause spurious test failures.
|
|
*/
|
|
mz = rte_memzone_reserve("test_mempool", total_size, SOCKET_ID_ANY, 0);
|
|
RTE_TEST_ASSERT_NOT_NULL(mz, "Cannot allocate memory");
|
|
virt = mz->addr;
|
|
iova = mz->iova;
|
|
mp = rte_mempool_create_empty("empty", MEMPOOL_SIZE,
|
|
MEMPOOL_ELT_SIZE, 0, 0,
|
|
SOCKET_ID_ANY, 0);
|
|
RTE_TEST_ASSERT_NOT_NULL(mp, "Cannot create mempool: %s",
|
|
rte_strerror(rte_errno));
|
|
|
|
RTE_TEST_ASSERT(mp->flags & RTE_MEMPOOL_F_NON_IO,
|
|
"NON_IO flag is not set on an empty mempool");
|
|
|
|
ret = rte_mempool_populate_iova(mp, RTE_PTR_ADD(virt, 1 * block_size),
|
|
RTE_BAD_IOVA, block_size, NULL, NULL);
|
|
RTE_TEST_ASSERT(ret > 0, "Failed to populate mempool: %s",
|
|
rte_strerror(-ret));
|
|
RTE_TEST_ASSERT(mp->flags & RTE_MEMPOOL_F_NON_IO,
|
|
"NON_IO flag is not set when mempool is populated with only RTE_BAD_IOVA");
|
|
|
|
ret = rte_mempool_populate_iova(mp, virt, iova, block_size, NULL, NULL);
|
|
RTE_TEST_ASSERT(ret > 0, "Failed to populate mempool: %s",
|
|
rte_strerror(-ret));
|
|
RTE_TEST_ASSERT(!(mp->flags & RTE_MEMPOOL_F_NON_IO),
|
|
"NON_IO flag is not unset when mempool is populated with valid IOVA");
|
|
|
|
ret = rte_mempool_populate_iova(mp, RTE_PTR_ADD(virt, 2 * block_size),
|
|
RTE_BAD_IOVA, block_size, NULL, NULL);
|
|
RTE_TEST_ASSERT(ret > 0, "Failed to populate mempool: %s",
|
|
rte_strerror(-ret));
|
|
RTE_TEST_ASSERT(!(mp->flags & RTE_MEMPOOL_F_NON_IO),
|
|
"NON_IO flag is set even when some objects have valid IOVA");
|
|
ret = TEST_SUCCESS;
|
|
|
|
exit:
|
|
rte_mempool_free(mp);
|
|
rte_memzone_free(mz);
|
|
return ret;
|
|
}
|
|
|
|
#pragma pop_macro("RTE_TEST_TRACE_FAILURE")
|
|
|
|
static int
|
|
test_mempool(void)
|
|
{
|
|
int ret = -1;
|
|
uint32_t nb_objs = 0;
|
|
uint32_t nb_mem_chunks = 0;
|
|
struct rte_mempool *mp_cache = NULL;
|
|
struct rte_mempool *mp_nocache = NULL;
|
|
struct rte_mempool *mp_stack_anon = NULL;
|
|
struct rte_mempool *mp_stack_mempool_iter = NULL;
|
|
struct rte_mempool *mp_stack = NULL;
|
|
struct rte_mempool *default_pool = NULL;
|
|
struct mp_data cb_arg = {
|
|
.ret = -1
|
|
};
|
|
const char *default_pool_ops = rte_mbuf_best_mempool_ops();
|
|
|
|
/* create a mempool (without cache) */
|
|
mp_nocache = rte_mempool_create("test_nocache", MEMPOOL_SIZE,
|
|
MEMPOOL_ELT_SIZE, 0, 0,
|
|
NULL, NULL,
|
|
my_obj_init, NULL,
|
|
SOCKET_ID_ANY, 0);
|
|
|
|
if (mp_nocache == NULL) {
|
|
printf("cannot allocate mp_nocache mempool\n");
|
|
GOTO_ERR(ret, err);
|
|
}
|
|
|
|
/* create a mempool (with cache) */
|
|
mp_cache = rte_mempool_create("test_cache", MEMPOOL_SIZE,
|
|
MEMPOOL_ELT_SIZE,
|
|
RTE_MEMPOOL_CACHE_MAX_SIZE, 0,
|
|
NULL, NULL,
|
|
my_obj_init, NULL,
|
|
SOCKET_ID_ANY, 0);
|
|
|
|
if (mp_cache == NULL) {
|
|
printf("cannot allocate mp_cache mempool\n");
|
|
GOTO_ERR(ret, err);
|
|
}
|
|
|
|
/* create an empty mempool */
|
|
mp_stack_anon = rte_mempool_create_empty("test_stack_anon",
|
|
MEMPOOL_SIZE,
|
|
MEMPOOL_ELT_SIZE,
|
|
RTE_MEMPOOL_CACHE_MAX_SIZE, 0,
|
|
SOCKET_ID_ANY, 0);
|
|
|
|
if (mp_stack_anon == NULL)
|
|
GOTO_ERR(ret, err);
|
|
|
|
/* populate an empty mempool */
|
|
ret = rte_mempool_populate_anon(mp_stack_anon);
|
|
printf("%s ret = %d\n", __func__, ret);
|
|
if (ret < 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
/* Try to populate when already populated */
|
|
ret = rte_mempool_populate_anon(mp_stack_anon);
|
|
if (ret != 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
/* create a mempool */
|
|
mp_stack_mempool_iter = rte_mempool_create("test_iter_obj",
|
|
MEMPOOL_SIZE,
|
|
MEMPOOL_ELT_SIZE,
|
|
RTE_MEMPOOL_CACHE_MAX_SIZE, 0,
|
|
NULL, NULL,
|
|
my_obj_init, NULL,
|
|
SOCKET_ID_ANY, 0);
|
|
|
|
if (mp_stack_mempool_iter == NULL)
|
|
GOTO_ERR(ret, err);
|
|
|
|
/* test to initialize mempool objects and memory */
|
|
nb_objs = rte_mempool_obj_iter(mp_stack_mempool_iter, my_obj_init,
|
|
NULL);
|
|
if (nb_objs == 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
nb_mem_chunks = rte_mempool_mem_iter(mp_stack_mempool_iter,
|
|
test_mp_mem_init, &cb_arg);
|
|
if (nb_mem_chunks == 0 || cb_arg.ret < 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
/* create a mempool with an external handler */
|
|
mp_stack = rte_mempool_create_empty("test_stack",
|
|
MEMPOOL_SIZE,
|
|
MEMPOOL_ELT_SIZE,
|
|
RTE_MEMPOOL_CACHE_MAX_SIZE, 0,
|
|
SOCKET_ID_ANY, 0);
|
|
|
|
if (mp_stack == NULL) {
|
|
printf("cannot allocate mp_stack mempool\n");
|
|
GOTO_ERR(ret, err);
|
|
}
|
|
if (rte_mempool_set_ops_byname(mp_stack, "stack", NULL) < 0) {
|
|
printf("cannot set stack handler\n");
|
|
GOTO_ERR(ret, err);
|
|
}
|
|
if (rte_mempool_populate_default(mp_stack) < 0) {
|
|
printf("cannot populate mp_stack mempool\n");
|
|
GOTO_ERR(ret, err);
|
|
}
|
|
rte_mempool_obj_iter(mp_stack, my_obj_init, NULL);
|
|
|
|
/* Create a mempool based on Default handler */
|
|
printf("Testing %s mempool handler\n", default_pool_ops);
|
|
default_pool = rte_mempool_create_empty("default_pool",
|
|
MEMPOOL_SIZE,
|
|
MEMPOOL_ELT_SIZE,
|
|
RTE_MEMPOOL_CACHE_MAX_SIZE, 0,
|
|
SOCKET_ID_ANY, 0);
|
|
|
|
if (default_pool == NULL) {
|
|
printf("cannot allocate default mempool\n");
|
|
GOTO_ERR(ret, err);
|
|
}
|
|
if (rte_mempool_set_ops_byname(default_pool,
|
|
default_pool_ops, NULL) < 0) {
|
|
printf("cannot set %s handler\n", default_pool_ops);
|
|
GOTO_ERR(ret, err);
|
|
}
|
|
if (rte_mempool_populate_default(default_pool) < 0) {
|
|
printf("cannot populate %s mempool\n", default_pool_ops);
|
|
GOTO_ERR(ret, err);
|
|
}
|
|
rte_mempool_obj_iter(default_pool, my_obj_init, NULL);
|
|
|
|
/* retrieve the mempool from its name */
|
|
if (rte_mempool_lookup("test_nocache") != mp_nocache) {
|
|
printf("Cannot lookup mempool from its name\n");
|
|
GOTO_ERR(ret, err);
|
|
}
|
|
|
|
printf("Walk into mempools:\n");
|
|
rte_mempool_walk(walk_cb, NULL);
|
|
|
|
rte_mempool_list_dump(stdout);
|
|
|
|
/* basic tests without cache */
|
|
if (test_mempool_basic(mp_nocache, 0) < 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
/* basic tests with cache */
|
|
if (test_mempool_basic(mp_cache, 0) < 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
/* basic tests with user-owned cache */
|
|
if (test_mempool_basic(mp_nocache, 1) < 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
/* more basic tests without cache */
|
|
if (test_mempool_basic_ex(mp_nocache) < 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
/* mempool operation test based on single producer and single consumer */
|
|
if (test_mempool_sp_sc() < 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
if (test_mempool_creation_with_exceeded_cache_size() < 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
if (test_mempool_creation_with_invalid_flags() < 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
if (test_mempool_same_name_twice_creation() < 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
/* test the stack handler */
|
|
if (test_mempool_basic(mp_stack, 1) < 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
if (test_mempool_basic(default_pool, 1) < 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
/* test mempool event callbacks */
|
|
if (test_mempool_events(rte_mempool_populate_default) < 0)
|
|
GOTO_ERR(ret, err);
|
|
if (test_mempool_events(rte_mempool_populate_anon) < 0)
|
|
GOTO_ERR(ret, err);
|
|
if (test_mempool_events_safety() < 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
/* test NON_IO flag inference */
|
|
if (test_mempool_flag_non_io_set_when_no_iova_contig_set() < 0)
|
|
GOTO_ERR(ret, err);
|
|
if (test_mempool_flag_non_io_unset_when_populated_with_valid_iova() < 0)
|
|
GOTO_ERR(ret, err);
|
|
|
|
rte_mempool_list_dump(stdout);
|
|
|
|
ret = 0;
|
|
|
|
err:
|
|
rte_mempool_free(mp_nocache);
|
|
rte_mempool_free(mp_cache);
|
|
rte_mempool_free(mp_stack_anon);
|
|
rte_mempool_free(mp_stack_mempool_iter);
|
|
rte_mempool_free(mp_stack);
|
|
rte_mempool_free(default_pool);
|
|
|
|
return ret;
|
|
}
|
|
|
|
REGISTER_TEST_COMMAND(mempool_autotest, test_mempool);
|