test: skip unsupported tests on Windows
[dpdk.git] / app / test / test_event_crypto_adapter.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2018 Intel Corporation.
3  * All rights reserved.
4  */
5
6 #include "test.h"
7 #include <string.h>
8 #include <rte_common.h>
9 #include <rte_mempool.h>
10 #include <rte_mbuf.h>
11 #include <rte_cryptodev.h>
12
13 #ifdef RTE_EXEC_ENV_WINDOWS
14 static int
15 test_event_crypto_adapter(void)
16 {
17         printf("event_crypto_adapter not supported on Windows, skipping test\n");
18         return TEST_SKIPPED;
19 }
20
21 #else
22
23 #include <rte_eventdev.h>
24 #include <rte_bus_vdev.h>
25 #include <rte_service.h>
26 #include <rte_event_crypto_adapter.h>
27
28 #define PKT_TRACE                  0
29 #define NUM                        1
30 #define DEFAULT_NUM_XFORMS        (2)
31 #define NUM_MBUFS                 (8191)
32 #define MBUF_CACHE_SIZE           (256)
33 #define MAXIMUM_IV_LENGTH         (16)
34 #define DEFAULT_NUM_OPS_INFLIGHT  (128)
35 #define MAX_NB_SESSIONS            4
36 #define TEST_APP_PORT_ID           0
37 #define TEST_APP_EV_QUEUE_ID       0
38 #define TEST_APP_EV_PRIORITY       0
39 #define TEST_APP_EV_FLOWID         0xAABB
40 #define TEST_CRYPTO_EV_QUEUE_ID    1
41 #define TEST_ADAPTER_ID            0
42 #define TEST_CDEV_ID               0
43 #define TEST_CDEV_QP_ID            0
44 #define PACKET_LENGTH              64
45 #define NB_TEST_PORTS              1
46 #define NB_TEST_QUEUES             2
47 #define NUM_CORES                  1
48 #define CRYPTODEV_NAME_NULL_PMD    crypto_null
49
50 #define MBUF_SIZE              (sizeof(struct rte_mbuf) + \
51                                 RTE_PKTMBUF_HEADROOM + PACKET_LENGTH)
52 #define IV_OFFSET              (sizeof(struct rte_crypto_op) + \
53                                 sizeof(struct rte_crypto_sym_op) + \
54                                 DEFAULT_NUM_XFORMS * \
55                                 sizeof(struct rte_crypto_sym_xform))
56
57 /* Handle log statements in same manner as test macros */
58 #define LOG_DBG(...)    RTE_LOG(DEBUG, EAL, __VA_ARGS__)
59
60 static const uint8_t text_64B[] = {
61         0x05, 0x15, 0x77, 0x32, 0xc9, 0x66, 0x91, 0x50,
62         0x93, 0x9f, 0xbb, 0x4e, 0x2e, 0x5a, 0x02, 0xd0,
63         0x2d, 0x9d, 0x31, 0x5d, 0xc8, 0x9e, 0x86, 0x36,
64         0x54, 0x5c, 0x50, 0xe8, 0x75, 0x54, 0x74, 0x5e,
65         0xd5, 0xa2, 0x84, 0x21, 0x2d, 0xc5, 0xf8, 0x1c,
66         0x55, 0x1a, 0xba, 0x91, 0xce, 0xb5, 0xa3, 0x1e,
67         0x31, 0xbf, 0xe9, 0xa1, 0x97, 0x5c, 0x2b, 0xd6,
68         0x57, 0xa5, 0x9f, 0xab, 0xbd, 0xb0, 0x9b, 0x9c
69 };
70
71 struct event_crypto_adapter_test_params {
72         struct rte_mempool *mbuf_pool;
73         struct rte_mempool *op_mpool;
74         struct rte_mempool *session_mpool;
75         struct rte_mempool *session_priv_mpool;
76         struct rte_cryptodev_config *config;
77         uint8_t crypto_event_port_id;
78         uint8_t internal_port_op_fwd;
79 };
80
81 struct rte_event response_info = {
82         .queue_id = TEST_APP_EV_QUEUE_ID,
83         .sched_type = RTE_SCHED_TYPE_ATOMIC,
84         .flow_id = TEST_APP_EV_FLOWID,
85         .priority = TEST_APP_EV_PRIORITY
86 };
87
88 struct rte_event_crypto_request request_info = {
89         .cdev_id = TEST_CDEV_ID,
90         .queue_pair_id = TEST_CDEV_QP_ID
91 };
92
93 static struct event_crypto_adapter_test_params params;
94 static uint8_t crypto_adapter_setup_done;
95 static uint32_t slcore_id;
96 static int evdev;
97
98 static struct rte_mbuf *
99 alloc_fill_mbuf(struct rte_mempool *mpool, const uint8_t *data,
100                 size_t len, uint8_t blocksize)
101 {
102         struct rte_mbuf *m = rte_pktmbuf_alloc(mpool);
103         size_t t_len = len - (blocksize ? (len % blocksize) : 0);
104
105         if (m) {
106                 char *dst = rte_pktmbuf_append(m, t_len);
107
108                 if (!dst) {
109                         rte_pktmbuf_free(m);
110                         return NULL;
111                 }
112
113                 rte_memcpy(dst, (const void *)data, t_len);
114         }
115         return m;
116 }
117
118 static int
119 send_recv_ev(struct rte_event *ev)
120 {
121         struct rte_crypto_op *op;
122         struct rte_event recv_ev;
123         int ret;
124
125         if (params.internal_port_op_fwd)
126                 ret = rte_event_crypto_adapter_enqueue(evdev, TEST_APP_PORT_ID,
127                                                        ev, NUM);
128         else
129                 ret = rte_event_enqueue_burst(evdev, TEST_APP_PORT_ID, ev, NUM);
130         TEST_ASSERT_EQUAL(ret, NUM, "Failed to send event to crypto adapter\n");
131
132         while (rte_event_dequeue_burst(evdev,
133                         TEST_APP_PORT_ID, &recv_ev, NUM, 0) == 0)
134                 rte_pause();
135
136         op = recv_ev.event_ptr;
137 #if PKT_TRACE
138         struct rte_mbuf *m = op->sym->m_src;
139         rte_pktmbuf_dump(stdout, m, rte_pktmbuf_pkt_len(m));
140 #endif
141         rte_pktmbuf_free(op->sym->m_src);
142         rte_crypto_op_free(op);
143
144         return TEST_SUCCESS;
145 }
146
147 static int
148 test_crypto_adapter_stats(void)
149 {
150         struct rte_event_crypto_adapter_stats stats;
151
152         rte_event_crypto_adapter_stats_get(TEST_ADAPTER_ID, &stats);
153         printf(" +------------------------------------------------------+\n");
154         printf(" + Crypto adapter stats for instance %u:\n", TEST_ADAPTER_ID);
155         printf(" + Event port poll count          %" PRIx64 "\n",
156                 stats.event_poll_count);
157         printf(" + Event dequeue count            %" PRIx64 "\n",
158                 stats.event_deq_count);
159         printf(" + Cryptodev enqueue count        %" PRIx64 "\n",
160                 stats.crypto_enq_count);
161         printf(" + Cryptodev enqueue failed count %" PRIx64 "\n",
162                 stats.crypto_enq_fail);
163         printf(" + Cryptodev dequeue count        %" PRIx64 "\n",
164                 stats.crypto_deq_count);
165         printf(" + Event enqueue count            %" PRIx64 "\n",
166                 stats.event_enq_count);
167         printf(" + Event enqueue retry count      %" PRIx64 "\n",
168                 stats.event_enq_retry_count);
169         printf(" + Event enqueue fail count       %" PRIx64 "\n",
170                 stats.event_enq_fail_count);
171         printf(" +------------------------------------------------------+\n");
172
173         rte_event_crypto_adapter_stats_reset(TEST_ADAPTER_ID);
174         return TEST_SUCCESS;
175 }
176
177 static int
178 test_op_forward_mode(uint8_t session_less)
179 {
180         struct rte_crypto_sym_xform cipher_xform;
181         struct rte_cryptodev_sym_session *sess;
182         union rte_event_crypto_metadata m_data;
183         struct rte_crypto_sym_op *sym_op;
184         struct rte_crypto_op *op;
185         struct rte_mbuf *m;
186         struct rte_event ev;
187         uint32_t cap;
188         int ret;
189
190         memset(&m_data, 0, sizeof(m_data));
191
192         m = alloc_fill_mbuf(params.mbuf_pool, text_64B, PACKET_LENGTH, 0);
193         TEST_ASSERT_NOT_NULL(m, "Failed to allocate mbuf!\n");
194 #if PKT_TRACE
195         rte_pktmbuf_dump(stdout, m, rte_pktmbuf_pkt_len(m));
196 #endif
197         /* Setup Cipher Parameters */
198         cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
199         cipher_xform.next = NULL;
200         cipher_xform.cipher.algo = RTE_CRYPTO_CIPHER_NULL;
201         cipher_xform.cipher.op = RTE_CRYPTO_CIPHER_OP_ENCRYPT;
202
203         op = rte_crypto_op_alloc(params.op_mpool,
204                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
205         TEST_ASSERT_NOT_NULL(op,
206                 "Failed to allocate symmetric crypto operation struct\n");
207
208         sym_op = op->sym;
209
210         if (!session_less) {
211                 sess = rte_cryptodev_sym_session_create(
212                                 params.session_mpool);
213                 TEST_ASSERT_NOT_NULL(sess, "Session creation failed\n");
214
215                 /* Create Crypto session*/
216                 ret = rte_cryptodev_sym_session_init(TEST_CDEV_ID, sess,
217                                 &cipher_xform, params.session_priv_mpool);
218                 TEST_ASSERT_SUCCESS(ret, "Failed to init session\n");
219
220                 ret = rte_event_crypto_adapter_caps_get(evdev, TEST_CDEV_ID,
221                                                         &cap);
222                 TEST_ASSERT_SUCCESS(ret, "Failed to get adapter capabilities\n");
223
224                 if (cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_SESSION_PRIVATE_DATA) {
225                         /* Fill in private user data information */
226                         m_data.request_info.cdev_id = request_info.cdev_id;
227                         m_data.request_info.queue_pair_id =
228                                 request_info.queue_pair_id;
229                         m_data.response_info.event = response_info.event;
230                         rte_cryptodev_sym_session_set_user_data(sess,
231                                                 &m_data, sizeof(m_data));
232                 }
233
234                 rte_crypto_op_attach_sym_session(op, sess);
235         } else {
236                 struct rte_crypto_sym_xform *first_xform;
237
238                 rte_crypto_op_sym_xforms_alloc(op, NUM);
239                 op->sess_type = RTE_CRYPTO_OP_SESSIONLESS;
240                 first_xform = &cipher_xform;
241                 sym_op->xform = first_xform;
242                 uint32_t len = IV_OFFSET + MAXIMUM_IV_LENGTH;
243                 op->private_data_offset = len;
244                 /* Fill in private data information */
245                 m_data.request_info.cdev_id = request_info.cdev_id;
246                 m_data.request_info.queue_pair_id = request_info.queue_pair_id;
247                 m_data.response_info.event = response_info.event;
248                 rte_memcpy((uint8_t *)op + len, &m_data, sizeof(m_data));
249         }
250
251         sym_op->m_src = m;
252         sym_op->cipher.data.offset = 0;
253         sym_op->cipher.data.length = PACKET_LENGTH;
254
255         /* Fill in event info and update event_ptr with rte_crypto_op */
256         memset(&ev, 0, sizeof(ev));
257         ev.queue_id = TEST_CRYPTO_EV_QUEUE_ID;
258         ev.sched_type = RTE_SCHED_TYPE_ATOMIC;
259         ev.flow_id = 0xAABB;
260         ev.event_ptr = op;
261
262         ret = send_recv_ev(&ev);
263         TEST_ASSERT_SUCCESS(ret, "Failed to send/receive event to "
264                                 "crypto adapter\n");
265
266         test_crypto_adapter_stats();
267
268         return TEST_SUCCESS;
269 }
270
271 static int
272 map_adapter_service_core(void)
273 {
274         uint32_t adapter_service_id;
275         int ret;
276
277         if (rte_event_crypto_adapter_service_id_get(TEST_ADAPTER_ID,
278                                                 &adapter_service_id) == 0) {
279                 uint32_t core_list[NUM_CORES];
280
281                 ret = rte_service_lcore_list(core_list, NUM_CORES);
282                 TEST_ASSERT(ret >= 0, "Failed to get service core list!");
283
284                 if (core_list[0] != slcore_id) {
285                         TEST_ASSERT_SUCCESS(rte_service_lcore_add(slcore_id),
286                                                 "Failed to add service core");
287                         TEST_ASSERT_SUCCESS(rte_service_lcore_start(slcore_id),
288                                                 "Failed to start service core");
289                 }
290
291                 TEST_ASSERT_SUCCESS(rte_service_map_lcore_set(
292                                         adapter_service_id, slcore_id, 1),
293                                         "Failed to map adapter service");
294         }
295
296         return TEST_SUCCESS;
297 }
298
299 static int
300 test_sessionless_with_op_forward_mode(void)
301 {
302         uint32_t cap;
303         int ret;
304
305         ret = rte_event_crypto_adapter_caps_get(evdev, TEST_CDEV_ID, &cap);
306         TEST_ASSERT_SUCCESS(ret, "Failed to get adapter capabilities\n");
307
308         if (!(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_FWD) &&
309             !(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_NEW))
310                 map_adapter_service_core();
311         else {
312                 if (!(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_FWD))
313                         return TEST_SKIPPED;
314         }
315
316         TEST_ASSERT_SUCCESS(rte_event_crypto_adapter_start(TEST_ADAPTER_ID),
317                                 "Failed to start event crypto adapter");
318
319         ret = test_op_forward_mode(1);
320         TEST_ASSERT_SUCCESS(ret, "Sessionless - FORWARD mode test failed\n");
321         return TEST_SUCCESS;
322 }
323
324 static int
325 test_session_with_op_forward_mode(void)
326 {
327         uint32_t cap;
328         int ret;
329
330         ret = rte_event_crypto_adapter_caps_get(evdev, TEST_CDEV_ID, &cap);
331         TEST_ASSERT_SUCCESS(ret, "Failed to get adapter capabilities\n");
332
333         if (!(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_FWD) &&
334             !(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_NEW))
335                 map_adapter_service_core();
336         else {
337                 if (!(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_FWD))
338                         return TEST_SKIPPED;
339         }
340
341         TEST_ASSERT_SUCCESS(rte_event_crypto_adapter_start(TEST_ADAPTER_ID
342                                 ), "Failed to start event crypto adapter");
343
344         ret = test_op_forward_mode(0);
345         TEST_ASSERT_SUCCESS(ret, "Session based - FORWARD mode test failed\n");
346         return TEST_SUCCESS;
347 }
348
349 static int
350 send_op_recv_ev(struct rte_crypto_op *op)
351 {
352         struct rte_crypto_op *recv_op;
353         struct rte_event ev;
354         int ret;
355
356         ret = rte_cryptodev_enqueue_burst(TEST_CDEV_ID, TEST_CDEV_QP_ID,
357                                           &op, NUM);
358         TEST_ASSERT_EQUAL(ret, NUM, "Failed to enqueue to cryptodev\n");
359         memset(&ev, 0, sizeof(ev));
360
361         while (rte_event_dequeue_burst(evdev,
362                 TEST_APP_PORT_ID, &ev, NUM, 0) == 0)
363                 rte_pause();
364
365         recv_op = ev.event_ptr;
366 #if PKT_TRACE
367         struct rte_mbuf *m = recv_op->sym->m_src;
368         rte_pktmbuf_dump(stdout, m, rte_pktmbuf_pkt_len(m));
369 #endif
370         rte_pktmbuf_free(recv_op->sym->m_src);
371         rte_crypto_op_free(recv_op);
372
373         return TEST_SUCCESS;
374 }
375
376 static int
377 test_op_new_mode(uint8_t session_less)
378 {
379         struct rte_crypto_sym_xform cipher_xform;
380         struct rte_cryptodev_sym_session *sess;
381         union rte_event_crypto_metadata m_data;
382         struct rte_crypto_sym_op *sym_op;
383         struct rte_crypto_op *op;
384         struct rte_mbuf *m;
385         uint32_t cap;
386         int ret;
387
388         memset(&m_data, 0, sizeof(m_data));
389
390         m = alloc_fill_mbuf(params.mbuf_pool, text_64B, PACKET_LENGTH, 0);
391         TEST_ASSERT_NOT_NULL(m, "Failed to allocate mbuf!\n");
392 #if PKT_TRACE
393         rte_pktmbuf_dump(stdout, m, rte_pktmbuf_pkt_len(m));
394 #endif
395         /* Setup Cipher Parameters */
396         cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
397         cipher_xform.next = NULL;
398         cipher_xform.cipher.algo = RTE_CRYPTO_CIPHER_NULL;
399         cipher_xform.cipher.op = RTE_CRYPTO_CIPHER_OP_ENCRYPT;
400
401         op = rte_crypto_op_alloc(params.op_mpool,
402                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
403         TEST_ASSERT_NOT_NULL(op, "Failed to allocate crypto_op!\n");
404
405         sym_op = op->sym;
406
407         if (!session_less) {
408                 sess = rte_cryptodev_sym_session_create(
409                                 params.session_mpool);
410                 TEST_ASSERT_NOT_NULL(sess, "Session creation failed\n");
411
412                 ret = rte_event_crypto_adapter_caps_get(evdev, TEST_CDEV_ID,
413                                                         &cap);
414                 TEST_ASSERT_SUCCESS(ret, "Failed to get adapter capabilities\n");
415
416                 if (cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_SESSION_PRIVATE_DATA) {
417                         /* Fill in private user data information */
418                         m_data.response_info.event = response_info.event;
419                         rte_cryptodev_sym_session_set_user_data(sess,
420                                                 &m_data, sizeof(m_data));
421                 }
422                 ret = rte_cryptodev_sym_session_init(TEST_CDEV_ID, sess,
423                                 &cipher_xform, params.session_priv_mpool);
424                 TEST_ASSERT_SUCCESS(ret, "Failed to init session\n");
425
426                 rte_crypto_op_attach_sym_session(op, sess);
427         } else {
428                 struct rte_crypto_sym_xform *first_xform;
429
430                 rte_crypto_op_sym_xforms_alloc(op, NUM);
431                 op->sess_type = RTE_CRYPTO_OP_SESSIONLESS;
432                 first_xform = &cipher_xform;
433                 sym_op->xform = first_xform;
434                 uint32_t len = IV_OFFSET + MAXIMUM_IV_LENGTH;
435                 op->private_data_offset = len;
436                 /* Fill in private data information */
437                 m_data.response_info.event = response_info.event;
438                 rte_memcpy((uint8_t *)op + len, &m_data, sizeof(m_data));
439         }
440
441         sym_op->m_src = m;
442         sym_op->cipher.data.offset = 0;
443         sym_op->cipher.data.length = PACKET_LENGTH;
444
445         ret = send_op_recv_ev(op);
446         TEST_ASSERT_SUCCESS(ret, "Failed to enqueue op to cryptodev\n");
447
448         test_crypto_adapter_stats();
449
450         return TEST_SUCCESS;
451 }
452
453 static int
454 test_sessionless_with_op_new_mode(void)
455 {
456         uint32_t cap;
457         int ret;
458
459         ret = rte_event_crypto_adapter_caps_get(evdev, TEST_CDEV_ID, &cap);
460         TEST_ASSERT_SUCCESS(ret, "Failed to get adapter capabilities\n");
461
462         if (!(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_FWD) &&
463             !(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_NEW))
464                 map_adapter_service_core();
465         else {
466                 if (!(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_NEW))
467                         return TEST_SKIPPED;
468         }
469
470         /* start the event crypto adapter */
471         TEST_ASSERT_SUCCESS(rte_event_crypto_adapter_start(TEST_ADAPTER_ID),
472                                 "Failed to start event crypto adapter");
473
474         ret = test_op_new_mode(1);
475         TEST_ASSERT_SUCCESS(ret, "Sessionless - NEW mode test failed\n");
476         return TEST_SUCCESS;
477 }
478
479 static int
480 test_session_with_op_new_mode(void)
481 {
482         uint32_t cap;
483         int ret;
484
485         ret = rte_event_crypto_adapter_caps_get(evdev, TEST_CDEV_ID, &cap);
486         TEST_ASSERT_SUCCESS(ret, "Failed to get adapter capabilities\n");
487
488         if (!(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_FWD) &&
489             !(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_NEW))
490                 map_adapter_service_core();
491         else {
492                 if (!(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_NEW))
493                         return TEST_SKIPPED;
494         }
495
496         TEST_ASSERT_SUCCESS(rte_event_crypto_adapter_start(TEST_ADAPTER_ID),
497                                 "Failed to start event crypto adapter");
498
499         ret = test_op_new_mode(0);
500         TEST_ASSERT_SUCCESS(ret, "Session based - NEW mode test failed\n");
501         return TEST_SUCCESS;
502 }
503
504 static int
505 configure_cryptodev(void)
506 {
507         struct rte_cryptodev_qp_conf qp_conf;
508         struct rte_cryptodev_config conf;
509         struct rte_cryptodev_info info;
510         unsigned int session_size;
511         uint8_t nb_devs;
512         int ret;
513
514         params.mbuf_pool = rte_pktmbuf_pool_create(
515                         "CRYPTO_ADAPTER_MBUFPOOL",
516                         NUM_MBUFS, MBUF_CACHE_SIZE, 0, MBUF_SIZE,
517                         rte_socket_id());
518         if (params.mbuf_pool == NULL) {
519                 RTE_LOG(ERR, USER1, "Can't create CRYPTO_MBUFPOOL\n");
520                 return TEST_FAILED;
521         }
522
523         params.op_mpool = rte_crypto_op_pool_create(
524                         "EVENT_CRYPTO_SYM_OP_POOL",
525                         RTE_CRYPTO_OP_TYPE_SYMMETRIC,
526                         NUM_MBUFS, MBUF_CACHE_SIZE,
527                         DEFAULT_NUM_XFORMS *
528                         sizeof(struct rte_crypto_sym_xform) +
529                         MAXIMUM_IV_LENGTH +
530                         sizeof(union rte_event_crypto_metadata),
531                         rte_socket_id());
532         if (params.op_mpool == NULL) {
533                 RTE_LOG(ERR, USER1, "Can't create CRYPTO_OP_POOL\n");
534                 return TEST_FAILED;
535         }
536
537         /* Create a NULL crypto device */
538         nb_devs = rte_cryptodev_device_count_by_driver(
539                         rte_cryptodev_driver_id_get(
540                         RTE_STR(CRYPTODEV_NAME_NULL_PMD)));
541         if (!nb_devs) {
542                 ret = rte_vdev_init(
543                         RTE_STR(CRYPTODEV_NAME_NULL_PMD), NULL);
544
545                 TEST_ASSERT(ret == 0, "Failed to create pmd:%s instance\n",
546                             RTE_STR(CRYPTODEV_NAME_NULL_PMD));
547         }
548
549         nb_devs = rte_cryptodev_count();
550         if (!nb_devs) {
551                 RTE_LOG(ERR, USER1, "No crypto devices found!\n");
552                 return TEST_FAILED;
553         }
554
555         /*
556          * Create mempool with maximum number of sessions * 2,
557          * to include the session headers & private data
558          */
559         session_size = rte_cryptodev_sym_get_private_session_size(TEST_CDEV_ID);
560         session_size += sizeof(union rte_event_crypto_metadata);
561
562         params.session_mpool = rte_cryptodev_sym_session_pool_create(
563                         "CRYPTO_ADAPTER_SESSION_MP",
564                         MAX_NB_SESSIONS, 0, 0,
565                         sizeof(union rte_event_crypto_metadata),
566                         SOCKET_ID_ANY);
567         TEST_ASSERT_NOT_NULL(params.session_mpool,
568                         "session mempool allocation failed\n");
569
570         params.session_priv_mpool = rte_mempool_create(
571                                 "CRYPTO_AD_SESS_MP_PRIV",
572                                 MAX_NB_SESSIONS,
573                                 session_size,
574                                 0, 0, NULL, NULL, NULL,
575                                 NULL, SOCKET_ID_ANY,
576                                 0);
577         TEST_ASSERT_NOT_NULL(params.session_priv_mpool,
578                         "session mempool allocation failed\n");
579
580         rte_cryptodev_info_get(TEST_CDEV_ID, &info);
581         conf.nb_queue_pairs = info.max_nb_queue_pairs;
582         conf.socket_id = SOCKET_ID_ANY;
583         conf.ff_disable = RTE_CRYPTODEV_FF_SECURITY;
584
585         TEST_ASSERT_SUCCESS(rte_cryptodev_configure(TEST_CDEV_ID, &conf),
586                         "Failed to configure cryptodev %u with %u qps\n",
587                         TEST_CDEV_ID, conf.nb_queue_pairs);
588
589         qp_conf.nb_descriptors = DEFAULT_NUM_OPS_INFLIGHT;
590         qp_conf.mp_session = params.session_mpool;
591         qp_conf.mp_session_private = params.session_priv_mpool;
592
593         TEST_ASSERT_SUCCESS(rte_cryptodev_queue_pair_setup(
594                         TEST_CDEV_ID, TEST_CDEV_QP_ID, &qp_conf,
595                         rte_cryptodev_socket_id(TEST_CDEV_ID)),
596                         "Failed to setup queue pair %u on cryptodev %u\n",
597                         TEST_CDEV_QP_ID, TEST_CDEV_ID);
598
599         return TEST_SUCCESS;
600 }
601
602 static inline void
603 evdev_set_conf_values(struct rte_event_dev_config *dev_conf,
604                         struct rte_event_dev_info *info)
605 {
606         memset(dev_conf, 0, sizeof(struct rte_event_dev_config));
607         dev_conf->dequeue_timeout_ns = info->min_dequeue_timeout_ns;
608         dev_conf->nb_event_ports = NB_TEST_PORTS;
609         dev_conf->nb_event_queues = NB_TEST_QUEUES;
610         dev_conf->nb_event_queue_flows = info->max_event_queue_flows;
611         dev_conf->nb_event_port_dequeue_depth =
612                         info->max_event_port_dequeue_depth;
613         dev_conf->nb_event_port_enqueue_depth =
614                         info->max_event_port_enqueue_depth;
615         dev_conf->nb_event_port_enqueue_depth =
616                         info->max_event_port_enqueue_depth;
617         dev_conf->nb_events_limit =
618                         info->max_num_events;
619 }
620
621 static int
622 configure_eventdev(void)
623 {
624         struct rte_event_queue_conf queue_conf;
625         struct rte_event_dev_config devconf;
626         struct rte_event_dev_info info;
627         uint32_t queue_count;
628         uint32_t port_count;
629         int ret;
630         uint8_t qid;
631
632         if (!rte_event_dev_count()) {
633                 /* If there is no hardware eventdev, or no software vdev was
634                  * specified on the command line, create an instance of
635                  * event_sw.
636                  */
637                 LOG_DBG("Failed to find a valid event device... "
638                         "testing with event_sw device\n");
639                 TEST_ASSERT_SUCCESS(rte_vdev_init("event_sw0", NULL),
640                                         "Error creating eventdev");
641                 evdev = rte_event_dev_get_dev_id("event_sw0");
642         }
643
644         ret = rte_event_dev_info_get(evdev, &info);
645         TEST_ASSERT_SUCCESS(ret, "Failed to get event dev info\n");
646
647         evdev_set_conf_values(&devconf, &info);
648
649         ret = rte_event_dev_configure(evdev, &devconf);
650         TEST_ASSERT_SUCCESS(ret, "Failed to configure eventdev\n");
651
652         /* Set up event queue */
653         ret = rte_event_dev_attr_get(evdev, RTE_EVENT_DEV_ATTR_QUEUE_COUNT,
654                                         &queue_count);
655         TEST_ASSERT_SUCCESS(ret, "Queue count get failed\n");
656         TEST_ASSERT_EQUAL(queue_count, 2, "Unexpected queue count\n");
657
658         qid = TEST_APP_EV_QUEUE_ID;
659         ret = rte_event_queue_setup(evdev, qid, NULL);
660         TEST_ASSERT_SUCCESS(ret, "Failed to setup queue=%d\n", qid);
661
662         queue_conf.nb_atomic_flows = info.max_event_queue_flows;
663         queue_conf.nb_atomic_order_sequences = 32;
664         queue_conf.schedule_type = RTE_SCHED_TYPE_ATOMIC;
665         queue_conf.priority = RTE_EVENT_DEV_PRIORITY_HIGHEST;
666         queue_conf.event_queue_cfg = RTE_EVENT_QUEUE_CFG_SINGLE_LINK;
667
668         qid = TEST_CRYPTO_EV_QUEUE_ID;
669         ret = rte_event_queue_setup(evdev, qid, &queue_conf);
670         TEST_ASSERT_SUCCESS(ret, "Failed to setup queue=%u\n", qid);
671
672         /* Set up event port */
673         ret = rte_event_dev_attr_get(evdev, RTE_EVENT_DEV_ATTR_PORT_COUNT,
674                                         &port_count);
675         TEST_ASSERT_SUCCESS(ret, "Port count get failed\n");
676         TEST_ASSERT_EQUAL(port_count, 1, "Unexpected port count\n");
677
678         ret = rte_event_port_setup(evdev, TEST_APP_PORT_ID, NULL);
679         TEST_ASSERT_SUCCESS(ret, "Failed to setup port=%d\n",
680                             TEST_APP_PORT_ID);
681
682         qid = TEST_APP_EV_QUEUE_ID;
683         ret = rte_event_port_link(evdev, TEST_APP_PORT_ID, &qid, NULL, 1);
684         TEST_ASSERT(ret >= 0, "Failed to link queue port=%d\n",
685                     TEST_APP_PORT_ID);
686
687         return TEST_SUCCESS;
688 }
689
690 static void
691 test_crypto_adapter_free(void)
692 {
693         rte_event_crypto_adapter_free(TEST_ADAPTER_ID);
694 }
695
696 static int
697 test_crypto_adapter_create(void)
698 {
699         struct rte_event_port_conf conf = {
700                 .dequeue_depth = 8,
701                 .enqueue_depth = 8,
702                 .new_event_threshold = 1200,
703         };
704         int ret;
705
706         /* Create adapter with default port creation callback */
707         ret = rte_event_crypto_adapter_create(TEST_ADAPTER_ID,
708                                               evdev,
709                                               &conf, 0);
710         TEST_ASSERT_SUCCESS(ret, "Failed to create event crypto adapter\n");
711
712         return TEST_SUCCESS;
713 }
714
715 static int
716 test_crypto_adapter_qp_add_del(void)
717 {
718         uint32_t cap;
719         int ret;
720
721         ret = rte_event_crypto_adapter_caps_get(evdev, TEST_CDEV_ID, &cap);
722         TEST_ASSERT_SUCCESS(ret, "Failed to get adapter capabilities\n");
723
724         if (cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_QP_EV_BIND) {
725                 ret = rte_event_crypto_adapter_queue_pair_add(TEST_ADAPTER_ID,
726                                 TEST_CDEV_ID, TEST_CDEV_QP_ID, &response_info);
727         } else
728                 ret = rte_event_crypto_adapter_queue_pair_add(TEST_ADAPTER_ID,
729                                         TEST_CDEV_ID, TEST_CDEV_QP_ID, NULL);
730
731         TEST_ASSERT_SUCCESS(ret, "Failed to create add queue pair\n");
732
733         ret = rte_event_crypto_adapter_queue_pair_del(TEST_ADAPTER_ID,
734                                         TEST_CDEV_ID, TEST_CDEV_QP_ID);
735         TEST_ASSERT_SUCCESS(ret, "Failed to delete add queue pair\n");
736
737         return TEST_SUCCESS;
738 }
739
740 static int
741 configure_event_crypto_adapter(enum rte_event_crypto_adapter_mode mode)
742 {
743         struct rte_event_port_conf conf = {
744                 .dequeue_depth = 8,
745                 .enqueue_depth = 8,
746                 .new_event_threshold = 1200,
747         };
748
749         uint32_t cap;
750         int ret;
751
752         ret = rte_event_crypto_adapter_caps_get(evdev, TEST_CDEV_ID, &cap);
753         TEST_ASSERT_SUCCESS(ret, "Failed to get adapter capabilities\n");
754
755         /* Skip mode and capability mismatch check for SW eventdev */
756         if (!(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_NEW) &&
757             !(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_FWD) &&
758             !(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_QP_EV_BIND))
759                 goto adapter_create;
760
761         if (mode == RTE_EVENT_CRYPTO_ADAPTER_OP_FORWARD) {
762                 if (cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_FWD)
763                         params.internal_port_op_fwd = 1;
764                 else
765                         return -ENOTSUP;
766         }
767
768         if ((mode == RTE_EVENT_CRYPTO_ADAPTER_OP_NEW) &&
769             !(cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_OP_NEW))
770                 return -ENOTSUP;
771
772 adapter_create:
773         /* Create adapter with default port creation callback */
774         ret = rte_event_crypto_adapter_create(TEST_ADAPTER_ID,
775                                               evdev,
776                                               &conf, mode);
777         TEST_ASSERT_SUCCESS(ret, "Failed to create event crypto adapter\n");
778
779         if (cap & RTE_EVENT_CRYPTO_ADAPTER_CAP_INTERNAL_PORT_QP_EV_BIND) {
780                 ret = rte_event_crypto_adapter_queue_pair_add(TEST_ADAPTER_ID,
781                                 TEST_CDEV_ID, TEST_CDEV_QP_ID, &response_info);
782         } else
783                 ret = rte_event_crypto_adapter_queue_pair_add(TEST_ADAPTER_ID,
784                                 TEST_CDEV_ID, TEST_CDEV_QP_ID, NULL);
785
786         TEST_ASSERT_SUCCESS(ret, "Failed to add queue pair\n");
787
788         if (!params.internal_port_op_fwd) {
789                 ret = rte_event_crypto_adapter_event_port_get(TEST_ADAPTER_ID,
790                                                 &params.crypto_event_port_id);
791                 TEST_ASSERT_SUCCESS(ret, "Failed to get event port\n");
792         }
793
794         return TEST_SUCCESS;
795 }
796
797 static void
798 test_crypto_adapter_stop(void)
799 {
800         uint32_t evdev_service_id, adapter_service_id;
801
802         /* retrieve service ids & stop services */
803         if (rte_event_crypto_adapter_service_id_get(TEST_ADAPTER_ID,
804                                                 &adapter_service_id) == 0) {
805                 rte_service_runstate_set(adapter_service_id, 0);
806                 rte_service_lcore_stop(slcore_id);
807                 rte_service_lcore_del(slcore_id);
808                 rte_event_crypto_adapter_stop(TEST_ADAPTER_ID);
809         }
810
811         if (rte_event_dev_service_id_get(evdev, &evdev_service_id) == 0) {
812                 rte_service_runstate_set(evdev_service_id, 0);
813                 rte_service_lcore_stop(slcore_id);
814                 rte_service_lcore_del(slcore_id);
815                 rte_cryptodev_stop(TEST_CDEV_ID);
816                 rte_event_dev_stop(evdev);
817         } else {
818                 rte_cryptodev_stop(TEST_CDEV_ID);
819                 rte_event_dev_stop(evdev);
820         }
821 }
822
823 static int
824 test_crypto_adapter_conf(enum rte_event_crypto_adapter_mode mode)
825 {
826         uint32_t evdev_service_id;
827         uint8_t qid;
828         int ret;
829
830         if (!crypto_adapter_setup_done) {
831                 ret = configure_event_crypto_adapter(mode);
832                 if (ret)
833                         return ret;
834                 if (!params.internal_port_op_fwd) {
835                         qid = TEST_CRYPTO_EV_QUEUE_ID;
836                         ret = rte_event_port_link(evdev,
837                                 params.crypto_event_port_id, &qid, NULL, 1);
838                         TEST_ASSERT(ret >= 0, "Failed to link queue %d "
839                                         "port=%u\n", qid,
840                                         params.crypto_event_port_id);
841                 }
842                 crypto_adapter_setup_done = 1;
843         }
844
845         /* retrieve service ids */
846         if (rte_event_dev_service_id_get(evdev, &evdev_service_id) == 0) {
847                 /* add a service core and start it */
848                 TEST_ASSERT_SUCCESS(rte_service_lcore_add(slcore_id),
849                                         "Failed to add service core");
850                 TEST_ASSERT_SUCCESS(rte_service_lcore_start(slcore_id),
851                                         "Failed to start service core");
852
853                 /* map services to it */
854                 TEST_ASSERT_SUCCESS(rte_service_map_lcore_set(evdev_service_id,
855                                 slcore_id, 1), "Failed to map evdev service");
856
857                 /* set services to running */
858                 TEST_ASSERT_SUCCESS(rte_service_runstate_set(evdev_service_id,
859                                         1), "Failed to start evdev service");
860         }
861
862         /* start the eventdev */
863         TEST_ASSERT_SUCCESS(rte_event_dev_start(evdev),
864                                 "Failed to start event device");
865
866         /* start the cryptodev */
867         TEST_ASSERT_SUCCESS(rte_cryptodev_start(TEST_CDEV_ID),
868                                 "Failed to start crypto device");
869
870         return TEST_SUCCESS;
871 }
872
873 static int
874 test_crypto_adapter_conf_op_forward_mode(void)
875 {
876         enum rte_event_crypto_adapter_mode mode;
877
878         mode = RTE_EVENT_CRYPTO_ADAPTER_OP_FORWARD;
879
880         return test_crypto_adapter_conf(mode);
881 }
882
883 static int
884 test_crypto_adapter_conf_op_new_mode(void)
885 {
886         enum rte_event_crypto_adapter_mode mode;
887
888         mode = RTE_EVENT_CRYPTO_ADAPTER_OP_NEW;
889
890         return test_crypto_adapter_conf(mode);
891 }
892
893
894 static int
895 testsuite_setup(void)
896 {
897         int ret;
898
899         slcore_id = rte_get_next_lcore(-1, 1, 0);
900         TEST_ASSERT_NOT_EQUAL(slcore_id, RTE_MAX_LCORE, "At least 2 lcores "
901                         "are required to run this autotest\n");
902
903         /* Setup and start event device. */
904         ret = configure_eventdev();
905         TEST_ASSERT_SUCCESS(ret, "Failed to setup eventdev\n");
906
907         /* Setup and start crypto device. */
908         ret = configure_cryptodev();
909         TEST_ASSERT_SUCCESS(ret, "cryptodev initialization failed\n");
910
911         return TEST_SUCCESS;
912 }
913
914 static void
915 crypto_adapter_teardown(void)
916 {
917         int ret;
918
919         ret = rte_event_crypto_adapter_stop(TEST_ADAPTER_ID);
920         if (ret < 0)
921                 RTE_LOG(ERR, USER1, "Failed to stop adapter!");
922
923         ret = rte_event_crypto_adapter_queue_pair_del(TEST_ADAPTER_ID,
924                                         TEST_CDEV_ID, TEST_CDEV_QP_ID);
925         if (ret < 0)
926                 RTE_LOG(ERR, USER1, "Failed to delete queue pair!");
927
928         ret = rte_event_crypto_adapter_free(TEST_ADAPTER_ID);
929         if (ret < 0)
930                 RTE_LOG(ERR, USER1, "Failed to free adapter!");
931
932         crypto_adapter_setup_done = 0;
933 }
934
935 static void
936 crypto_teardown(void)
937 {
938         /* Free mbuf mempool */
939         if (params.mbuf_pool != NULL) {
940                 RTE_LOG(DEBUG, USER1, "CRYPTO_ADAPTER_MBUFPOOL count %u\n",
941                 rte_mempool_avail_count(params.mbuf_pool));
942                 rte_mempool_free(params.mbuf_pool);
943                 params.mbuf_pool = NULL;
944         }
945
946         /* Free session mempool */
947         if (params.session_mpool != NULL) {
948                 RTE_LOG(DEBUG, USER1, "CRYPTO_ADAPTER_SESSION_MP count %u\n",
949                 rte_mempool_avail_count(params.session_mpool));
950                 rte_mempool_free(params.session_mpool);
951                 params.session_mpool = NULL;
952         }
953         if (params.session_priv_mpool != NULL) {
954                 rte_mempool_avail_count(params.session_priv_mpool);
955                 rte_mempool_free(params.session_priv_mpool);
956                 params.session_priv_mpool = NULL;
957         }
958
959         /* Free ops mempool */
960         if (params.op_mpool != NULL) {
961                 RTE_LOG(DEBUG, USER1, "EVENT_CRYPTO_SYM_OP_POOL count %u\n",
962                 rte_mempool_avail_count(params.op_mpool));
963                 rte_mempool_free(params.op_mpool);
964                 params.op_mpool = NULL;
965         }
966 }
967
968 static void
969 eventdev_teardown(void)
970 {
971         rte_event_dev_stop(evdev);
972 }
973
974 static void
975 testsuite_teardown(void)
976 {
977         crypto_adapter_teardown();
978         crypto_teardown();
979         eventdev_teardown();
980 }
981
982 static struct unit_test_suite functional_testsuite = {
983         .suite_name = "Event crypto adapter test suite",
984         .setup = testsuite_setup,
985         .teardown = testsuite_teardown,
986         .unit_test_cases = {
987
988                 TEST_CASE_ST(NULL, test_crypto_adapter_free,
989                                 test_crypto_adapter_create),
990
991                 TEST_CASE_ST(test_crypto_adapter_create,
992                                 test_crypto_adapter_free,
993                                 test_crypto_adapter_qp_add_del),
994
995                 TEST_CASE_ST(test_crypto_adapter_create,
996                                 test_crypto_adapter_free,
997                                 test_crypto_adapter_stats),
998
999                 TEST_CASE_ST(test_crypto_adapter_conf_op_forward_mode,
1000                                 test_crypto_adapter_stop,
1001                                 test_session_with_op_forward_mode),
1002
1003                 TEST_CASE_ST(test_crypto_adapter_conf_op_forward_mode,
1004                                 test_crypto_adapter_stop,
1005                                 test_sessionless_with_op_forward_mode),
1006
1007                 TEST_CASE_ST(test_crypto_adapter_conf_op_new_mode,
1008                                 test_crypto_adapter_stop,
1009                                 test_session_with_op_new_mode),
1010
1011                 TEST_CASE_ST(test_crypto_adapter_conf_op_new_mode,
1012                                 test_crypto_adapter_stop,
1013                                 test_sessionless_with_op_new_mode),
1014
1015                 TEST_CASES_END() /**< NULL terminate unit test array */
1016         }
1017 };
1018
1019 static int
1020 test_event_crypto_adapter(void)
1021 {
1022         return unit_test_suite_runner(&functional_testsuite);
1023 }
1024
1025 #endif /* !RTE_EXEC_ENV_WINDOWS */
1026
1027 REGISTER_TEST_COMMAND(event_crypto_adapter_autotest,
1028                 test_event_crypto_adapter);