test/crypto: add PDCP U-Plane encap cases
[dpdk.git] / app / test / test_cryptodev.c
1 /* SPDX-License-Identifier: BSD-3-Clause
2  * Copyright(c) 2015-2019 Intel Corporation
3  */
4
5 #include <time.h>
6
7 #include <rte_common.h>
8 #include <rte_hexdump.h>
9 #include <rte_mbuf.h>
10 #include <rte_malloc.h>
11 #include <rte_memcpy.h>
12 #include <rte_pause.h>
13 #include <rte_bus_vdev.h>
14
15 #include <rte_crypto.h>
16 #include <rte_cryptodev.h>
17 #include <rte_cryptodev_pmd.h>
18 #include <rte_string_fns.h>
19
20 #ifdef RTE_LIBRTE_PMD_CRYPTO_SCHEDULER
21 #include <rte_cryptodev_scheduler.h>
22 #include <rte_cryptodev_scheduler_operations.h>
23 #endif
24
25 #include <rte_lcore.h>
26
27 #include "test.h"
28 #include "test_cryptodev.h"
29
30 #include "test_cryptodev_blockcipher.h"
31 #include "test_cryptodev_aes_test_vectors.h"
32 #include "test_cryptodev_des_test_vectors.h"
33 #include "test_cryptodev_hash_test_vectors.h"
34 #include "test_cryptodev_kasumi_test_vectors.h"
35 #include "test_cryptodev_kasumi_hash_test_vectors.h"
36 #include "test_cryptodev_snow3g_test_vectors.h"
37 #include "test_cryptodev_snow3g_hash_test_vectors.h"
38 #include "test_cryptodev_zuc_test_vectors.h"
39 #include "test_cryptodev_aead_test_vectors.h"
40 #include "test_cryptodev_hmac_test_vectors.h"
41 #ifdef RTE_LIBRTE_SECURITY
42 #include "test_cryptodev_security_pdcp_test_vectors.h"
43 #include "test_cryptodev_security_pdcp_test_func.h"
44 #endif
45
46 #define VDEV_ARGS_SIZE 100
47 #define MAX_NB_SESSIONS 4
48
49 #define IN_PLACE 0
50 #define OUT_OF_PLACE 1
51
52 static int gbl_driver_id;
53
54 struct crypto_testsuite_params {
55         struct rte_mempool *mbuf_pool;
56         struct rte_mempool *large_mbuf_pool;
57         struct rte_mempool *op_mpool;
58         struct rte_mempool *session_mpool;
59         struct rte_mempool *session_priv_mpool;
60         struct rte_cryptodev_config conf;
61         struct rte_cryptodev_qp_conf qp_conf;
62
63         uint8_t valid_devs[RTE_CRYPTO_MAX_DEVS];
64         uint8_t valid_dev_count;
65 };
66
67 struct crypto_unittest_params {
68         struct rte_crypto_sym_xform cipher_xform;
69         struct rte_crypto_sym_xform auth_xform;
70         struct rte_crypto_sym_xform aead_xform;
71
72         union {
73                 struct rte_cryptodev_sym_session *sess;
74                 struct rte_security_session *sec_session;
75         };
76         enum rte_security_session_action_type type;
77         struct rte_crypto_op *op;
78
79         struct rte_mbuf *obuf, *ibuf;
80
81         uint8_t *digest;
82 };
83
84 #define ALIGN_POW2_ROUNDUP(num, align) \
85         (((num) + (align) - 1) & ~((align) - 1))
86
87 /*
88  * Forward declarations.
89  */
90 static int
91 test_AES_CBC_HMAC_SHA512_decrypt_create_session_params(
92                 struct crypto_unittest_params *ut_params, uint8_t *cipher_key,
93                 uint8_t *hmac_key);
94
95 static int
96 test_AES_CBC_HMAC_SHA512_decrypt_perform(struct rte_cryptodev_sym_session *sess,
97                 struct crypto_unittest_params *ut_params,
98                 struct crypto_testsuite_params *ts_param,
99                 const uint8_t *cipher,
100                 const uint8_t *digest,
101                 const uint8_t *iv);
102
103 static struct rte_mbuf *
104 setup_test_string(struct rte_mempool *mpool,
105                 const char *string, size_t len, uint8_t blocksize)
106 {
107         struct rte_mbuf *m = rte_pktmbuf_alloc(mpool);
108         size_t t_len = len - (blocksize ? (len % blocksize) : 0);
109
110         memset(m->buf_addr, 0, m->buf_len);
111         if (m) {
112                 char *dst = rte_pktmbuf_append(m, t_len);
113
114                 if (!dst) {
115                         rte_pktmbuf_free(m);
116                         return NULL;
117                 }
118                 if (string != NULL)
119                         rte_memcpy(dst, string, t_len);
120                 else
121                         memset(dst, 0, t_len);
122         }
123
124         return m;
125 }
126
127 /* Get number of bytes in X bits (rounding up) */
128 static uint32_t
129 ceil_byte_length(uint32_t num_bits)
130 {
131         if (num_bits % 8)
132                 return ((num_bits >> 3) + 1);
133         else
134                 return (num_bits >> 3);
135 }
136
137 static struct rte_crypto_op *
138 process_crypto_request(uint8_t dev_id, struct rte_crypto_op *op)
139 {
140         if (rte_cryptodev_enqueue_burst(dev_id, 0, &op, 1) != 1) {
141                 printf("Error sending packet for encryption");
142                 return NULL;
143         }
144
145         op = NULL;
146
147         while (rte_cryptodev_dequeue_burst(dev_id, 0, &op, 1) == 0)
148                 rte_pause();
149
150         return op;
151 }
152
153 static struct crypto_testsuite_params testsuite_params = { NULL };
154 static struct crypto_unittest_params unittest_params;
155
156 static int
157 testsuite_setup(void)
158 {
159         struct crypto_testsuite_params *ts_params = &testsuite_params;
160         struct rte_cryptodev_info info;
161         uint32_t i = 0, nb_devs, dev_id;
162         int ret;
163         uint16_t qp_id;
164
165         memset(ts_params, 0, sizeof(*ts_params));
166
167         ts_params->mbuf_pool = rte_mempool_lookup("CRYPTO_MBUFPOOL");
168         if (ts_params->mbuf_pool == NULL) {
169                 /* Not already created so create */
170                 ts_params->mbuf_pool = rte_pktmbuf_pool_create(
171                                 "CRYPTO_MBUFPOOL",
172                                 NUM_MBUFS, MBUF_CACHE_SIZE, 0, MBUF_SIZE,
173                                 rte_socket_id());
174                 if (ts_params->mbuf_pool == NULL) {
175                         RTE_LOG(ERR, USER1, "Can't create CRYPTO_MBUFPOOL\n");
176                         return TEST_FAILED;
177                 }
178         }
179
180         ts_params->large_mbuf_pool = rte_mempool_lookup(
181                         "CRYPTO_LARGE_MBUFPOOL");
182         if (ts_params->large_mbuf_pool == NULL) {
183                 /* Not already created so create */
184                 ts_params->large_mbuf_pool = rte_pktmbuf_pool_create(
185                                 "CRYPTO_LARGE_MBUFPOOL",
186                                 1, 0, 0, UINT16_MAX,
187                                 rte_socket_id());
188                 if (ts_params->large_mbuf_pool == NULL) {
189                         RTE_LOG(ERR, USER1,
190                                 "Can't create CRYPTO_LARGE_MBUFPOOL\n");
191                         return TEST_FAILED;
192                 }
193         }
194
195         ts_params->op_mpool = rte_crypto_op_pool_create(
196                         "MBUF_CRYPTO_SYM_OP_POOL",
197                         RTE_CRYPTO_OP_TYPE_SYMMETRIC,
198                         NUM_MBUFS, MBUF_CACHE_SIZE,
199                         DEFAULT_NUM_XFORMS *
200                         sizeof(struct rte_crypto_sym_xform) +
201                         MAXIMUM_IV_LENGTH,
202                         rte_socket_id());
203         if (ts_params->op_mpool == NULL) {
204                 RTE_LOG(ERR, USER1, "Can't create CRYPTO_OP_POOL\n");
205                 return TEST_FAILED;
206         }
207
208         /* Create an AESNI MB device if required */
209         if (gbl_driver_id == rte_cryptodev_driver_id_get(
210                         RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD))) {
211                 nb_devs = rte_cryptodev_device_count_by_driver(
212                                 rte_cryptodev_driver_id_get(
213                                 RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD)));
214                 if (nb_devs < 1) {
215                         ret = rte_vdev_init(
216                                 RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD), NULL);
217
218                         TEST_ASSERT(ret == 0,
219                                 "Failed to create instance of"
220                                 " pmd : %s",
221                                 RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD));
222                 }
223         }
224
225         /* Create an AESNI GCM device if required */
226         if (gbl_driver_id == rte_cryptodev_driver_id_get(
227                         RTE_STR(CRYPTODEV_NAME_AESNI_GCM_PMD))) {
228                 nb_devs = rte_cryptodev_device_count_by_driver(
229                                 rte_cryptodev_driver_id_get(
230                                 RTE_STR(CRYPTODEV_NAME_AESNI_GCM_PMD)));
231                 if (nb_devs < 1) {
232                         TEST_ASSERT_SUCCESS(rte_vdev_init(
233                                 RTE_STR(CRYPTODEV_NAME_AESNI_GCM_PMD), NULL),
234                                 "Failed to create instance of"
235                                 " pmd : %s",
236                                 RTE_STR(CRYPTODEV_NAME_AESNI_GCM_PMD));
237                 }
238         }
239
240         /* Create a SNOW 3G device if required */
241         if (gbl_driver_id == rte_cryptodev_driver_id_get(
242                         RTE_STR(CRYPTODEV_NAME_SNOW3G_PMD))) {
243                 nb_devs = rte_cryptodev_device_count_by_driver(
244                                 rte_cryptodev_driver_id_get(
245                                 RTE_STR(CRYPTODEV_NAME_SNOW3G_PMD)));
246                 if (nb_devs < 1) {
247                         TEST_ASSERT_SUCCESS(rte_vdev_init(
248                                 RTE_STR(CRYPTODEV_NAME_SNOW3G_PMD), NULL),
249                                 "Failed to create instance of"
250                                 " pmd : %s",
251                                 RTE_STR(CRYPTODEV_NAME_SNOW3G_PMD));
252                 }
253         }
254
255         /* Create a KASUMI device if required */
256         if (gbl_driver_id == rte_cryptodev_driver_id_get(
257                         RTE_STR(CRYPTODEV_NAME_KASUMI_PMD))) {
258                 nb_devs = rte_cryptodev_device_count_by_driver(
259                                 rte_cryptodev_driver_id_get(
260                                 RTE_STR(CRYPTODEV_NAME_KASUMI_PMD)));
261                 if (nb_devs < 1) {
262                         TEST_ASSERT_SUCCESS(rte_vdev_init(
263                                 RTE_STR(CRYPTODEV_NAME_KASUMI_PMD), NULL),
264                                 "Failed to create instance of"
265                                 " pmd : %s",
266                                 RTE_STR(CRYPTODEV_NAME_KASUMI_PMD));
267                 }
268         }
269
270         /* Create a ZUC device if required */
271         if (gbl_driver_id == rte_cryptodev_driver_id_get(
272                         RTE_STR(CRYPTODEV_NAME_ZUC_PMD))) {
273                 nb_devs = rte_cryptodev_device_count_by_driver(
274                                 rte_cryptodev_driver_id_get(
275                                 RTE_STR(CRYPTODEV_NAME_ZUC_PMD)));
276                 if (nb_devs < 1) {
277                         TEST_ASSERT_SUCCESS(rte_vdev_init(
278                                 RTE_STR(CRYPTODEV_NAME_ZUC_PMD), NULL),
279                                 "Failed to create instance of"
280                                 " pmd : %s",
281                                 RTE_STR(CRYPTODEV_NAME_ZUC_PMD));
282                 }
283         }
284
285         /* Create a NULL device if required */
286         if (gbl_driver_id == rte_cryptodev_driver_id_get(
287                         RTE_STR(CRYPTODEV_NAME_NULL_PMD))) {
288                 nb_devs = rte_cryptodev_device_count_by_driver(
289                                 rte_cryptodev_driver_id_get(
290                                 RTE_STR(CRYPTODEV_NAME_NULL_PMD)));
291                 if (nb_devs < 1) {
292                         ret = rte_vdev_init(
293                                 RTE_STR(CRYPTODEV_NAME_NULL_PMD), NULL);
294
295                         TEST_ASSERT(ret == 0,
296                                 "Failed to create instance of"
297                                 " pmd : %s",
298                                 RTE_STR(CRYPTODEV_NAME_NULL_PMD));
299                 }
300         }
301
302         /* Create an OPENSSL device if required */
303         if (gbl_driver_id == rte_cryptodev_driver_id_get(
304                         RTE_STR(CRYPTODEV_NAME_OPENSSL_PMD))) {
305                 nb_devs = rte_cryptodev_device_count_by_driver(
306                                 rte_cryptodev_driver_id_get(
307                                 RTE_STR(CRYPTODEV_NAME_OPENSSL_PMD)));
308                 if (nb_devs < 1) {
309                         ret = rte_vdev_init(
310                                 RTE_STR(CRYPTODEV_NAME_OPENSSL_PMD),
311                                 NULL);
312
313                         TEST_ASSERT(ret == 0, "Failed to create "
314                                 "instance of pmd : %s",
315                                 RTE_STR(CRYPTODEV_NAME_OPENSSL_PMD));
316                 }
317         }
318
319         /* Create a ARMv8 device if required */
320         if (gbl_driver_id == rte_cryptodev_driver_id_get(
321                         RTE_STR(CRYPTODEV_NAME_ARMV8_PMD))) {
322                 nb_devs = rte_cryptodev_device_count_by_driver(
323                                 rte_cryptodev_driver_id_get(
324                                 RTE_STR(CRYPTODEV_NAME_ARMV8_PMD)));
325                 if (nb_devs < 1) {
326                         ret = rte_vdev_init(
327                                 RTE_STR(CRYPTODEV_NAME_ARMV8_PMD),
328                                 NULL);
329
330                         TEST_ASSERT(ret == 0, "Failed to create "
331                                 "instance of pmd : %s",
332                                 RTE_STR(CRYPTODEV_NAME_ARMV8_PMD));
333                 }
334         }
335
336         /* Create a MVSAM device if required */
337         if (gbl_driver_id == rte_cryptodev_driver_id_get(
338                         RTE_STR(CRYPTODEV_NAME_MVSAM_PMD))) {
339                 nb_devs = rte_cryptodev_device_count_by_driver(
340                                 rte_cryptodev_driver_id_get(
341                                 RTE_STR(CRYPTODEV_NAME_MVSAM_PMD)));
342                 if (nb_devs < 1) {
343                         ret = rte_vdev_init(
344                                 RTE_STR(CRYPTODEV_NAME_MVSAM_PMD),
345                                 NULL);
346
347                         TEST_ASSERT(ret == 0, "Failed to create "
348                                 "instance of pmd : %s",
349                                 RTE_STR(CRYPTODEV_NAME_MVSAM_PMD));
350                 }
351         }
352
353         /* Create an CCP device if required */
354         if (gbl_driver_id == rte_cryptodev_driver_id_get(
355                         RTE_STR(CRYPTODEV_NAME_CCP_PMD))) {
356                 nb_devs = rte_cryptodev_device_count_by_driver(
357                                 rte_cryptodev_driver_id_get(
358                                 RTE_STR(CRYPTODEV_NAME_CCP_PMD)));
359                 if (nb_devs < 1) {
360                         ret = rte_vdev_init(
361                                 RTE_STR(CRYPTODEV_NAME_CCP_PMD),
362                                 NULL);
363
364                         TEST_ASSERT(ret == 0, "Failed to create "
365                                 "instance of pmd : %s",
366                                 RTE_STR(CRYPTODEV_NAME_CCP_PMD));
367                 }
368         }
369
370 #ifdef RTE_LIBRTE_PMD_CRYPTO_SCHEDULER
371         char vdev_args[VDEV_ARGS_SIZE] = {""};
372         char temp_str[VDEV_ARGS_SIZE] = {"mode=multi-core,"
373                 "ordering=enable,name=cryptodev_test_scheduler,corelist="};
374         uint16_t slave_core_count = 0;
375         uint16_t socket_id = 0;
376
377         if (gbl_driver_id == rte_cryptodev_driver_id_get(
378                         RTE_STR(CRYPTODEV_NAME_SCHEDULER_PMD))) {
379
380                 /* Identify the Slave Cores
381                  * Use 2 slave cores for the device args
382                  */
383                 RTE_LCORE_FOREACH_SLAVE(i) {
384                         if (slave_core_count > 1)
385                                 break;
386                         snprintf(vdev_args, sizeof(vdev_args),
387                                         "%s%d", temp_str, i);
388                         strcpy(temp_str, vdev_args);
389                         strlcat(temp_str, ";", sizeof(temp_str));
390                         slave_core_count++;
391                         socket_id = rte_lcore_to_socket_id(i);
392                 }
393                 if (slave_core_count != 2) {
394                         RTE_LOG(ERR, USER1,
395                                 "Cryptodev scheduler test require at least "
396                                 "two slave cores to run. "
397                                 "Please use the correct coremask.\n");
398                         return TEST_FAILED;
399                 }
400                 strcpy(temp_str, vdev_args);
401                 snprintf(vdev_args, sizeof(vdev_args), "%s,socket_id=%d",
402                                 temp_str, socket_id);
403                 RTE_LOG(DEBUG, USER1, "vdev_args: %s\n", vdev_args);
404                 nb_devs = rte_cryptodev_device_count_by_driver(
405                                 rte_cryptodev_driver_id_get(
406                                 RTE_STR(CRYPTODEV_NAME_SCHEDULER_PMD)));
407                 if (nb_devs < 1) {
408                         ret = rte_vdev_init(
409                                 RTE_STR(CRYPTODEV_NAME_SCHEDULER_PMD),
410                                         vdev_args);
411                         TEST_ASSERT(ret == 0,
412                                 "Failed to create instance %u of"
413                                 " pmd : %s",
414                                 i, RTE_STR(CRYPTODEV_NAME_SCHEDULER_PMD));
415                 }
416         }
417 #endif /* RTE_LIBRTE_PMD_CRYPTO_SCHEDULER */
418
419         nb_devs = rte_cryptodev_count();
420         if (nb_devs < 1) {
421                 RTE_LOG(WARNING, USER1, "No crypto devices found?\n");
422                 return TEST_SKIPPED;
423         }
424
425         /* Create list of valid crypto devs */
426         for (i = 0; i < nb_devs; i++) {
427                 rte_cryptodev_info_get(i, &info);
428                 if (info.driver_id == gbl_driver_id)
429                         ts_params->valid_devs[ts_params->valid_dev_count++] = i;
430         }
431
432         if (ts_params->valid_dev_count < 1)
433                 return TEST_FAILED;
434
435         /* Set up all the qps on the first of the valid devices found */
436
437         dev_id = ts_params->valid_devs[0];
438
439         rte_cryptodev_info_get(dev_id, &info);
440
441         ts_params->conf.nb_queue_pairs = info.max_nb_queue_pairs;
442         ts_params->conf.socket_id = SOCKET_ID_ANY;
443         ts_params->conf.ff_disable = RTE_CRYPTODEV_FF_SECURITY;
444
445         unsigned int session_size =
446                 rte_cryptodev_sym_get_private_session_size(dev_id);
447
448         /*
449          * Create mempool with maximum number of sessions * 2,
450          * to include the session headers
451          */
452         if (info.sym.max_nb_sessions != 0 &&
453                         info.sym.max_nb_sessions < MAX_NB_SESSIONS) {
454                 RTE_LOG(ERR, USER1, "Device does not support "
455                                 "at least %u sessions\n",
456                                 MAX_NB_SESSIONS);
457                 return TEST_FAILED;
458         }
459
460         ts_params->session_mpool = rte_cryptodev_sym_session_pool_create(
461                         "test_sess_mp", MAX_NB_SESSIONS, 0, 0, 0,
462                         SOCKET_ID_ANY);
463         TEST_ASSERT_NOT_NULL(ts_params->session_mpool,
464                         "session mempool allocation failed");
465
466         ts_params->session_priv_mpool = rte_mempool_create(
467                         "test_sess_mp_priv",
468                         MAX_NB_SESSIONS,
469                         session_size,
470                         0, 0, NULL, NULL, NULL,
471                         NULL, SOCKET_ID_ANY,
472                         0);
473         TEST_ASSERT_NOT_NULL(ts_params->session_priv_mpool,
474                         "session mempool allocation failed");
475
476
477
478         TEST_ASSERT_SUCCESS(rte_cryptodev_configure(dev_id,
479                         &ts_params->conf),
480                         "Failed to configure cryptodev %u with %u qps",
481                         dev_id, ts_params->conf.nb_queue_pairs);
482
483         ts_params->qp_conf.nb_descriptors = MAX_NUM_OPS_INFLIGHT;
484         ts_params->qp_conf.mp_session = ts_params->session_mpool;
485         ts_params->qp_conf.mp_session_private = ts_params->session_priv_mpool;
486
487         for (qp_id = 0; qp_id < info.max_nb_queue_pairs; qp_id++) {
488                 TEST_ASSERT_SUCCESS(rte_cryptodev_queue_pair_setup(
489                         dev_id, qp_id, &ts_params->qp_conf,
490                         rte_cryptodev_socket_id(dev_id)),
491                         "Failed to setup queue pair %u on cryptodev %u",
492                         qp_id, dev_id);
493         }
494
495         return TEST_SUCCESS;
496 }
497
498 static void
499 testsuite_teardown(void)
500 {
501         struct crypto_testsuite_params *ts_params = &testsuite_params;
502
503         if (ts_params->mbuf_pool != NULL) {
504                 RTE_LOG(DEBUG, USER1, "CRYPTO_MBUFPOOL count %u\n",
505                 rte_mempool_avail_count(ts_params->mbuf_pool));
506         }
507
508         if (ts_params->op_mpool != NULL) {
509                 RTE_LOG(DEBUG, USER1, "CRYPTO_OP_POOL count %u\n",
510                 rte_mempool_avail_count(ts_params->op_mpool));
511         }
512
513         /* Free session mempools */
514         if (ts_params->session_priv_mpool != NULL) {
515                 rte_mempool_free(ts_params->session_priv_mpool);
516                 ts_params->session_priv_mpool = NULL;
517         }
518
519         if (ts_params->session_mpool != NULL) {
520                 rte_mempool_free(ts_params->session_mpool);
521                 ts_params->session_mpool = NULL;
522         }
523 }
524
525 static int
526 ut_setup(void)
527 {
528         struct crypto_testsuite_params *ts_params = &testsuite_params;
529         struct crypto_unittest_params *ut_params = &unittest_params;
530
531         uint16_t qp_id;
532
533         /* Clear unit test parameters before running test */
534         memset(ut_params, 0, sizeof(*ut_params));
535
536         /* Reconfigure device to default parameters */
537         ts_params->conf.socket_id = SOCKET_ID_ANY;
538         ts_params->conf.ff_disable = RTE_CRYPTODEV_FF_SECURITY;
539         ts_params->qp_conf.nb_descriptors = MAX_NUM_OPS_INFLIGHT;
540         ts_params->qp_conf.mp_session = ts_params->session_mpool;
541         ts_params->qp_conf.mp_session_private = ts_params->session_priv_mpool;
542
543         TEST_ASSERT_SUCCESS(rte_cryptodev_configure(ts_params->valid_devs[0],
544                         &ts_params->conf),
545                         "Failed to configure cryptodev %u",
546                         ts_params->valid_devs[0]);
547
548         for (qp_id = 0; qp_id < ts_params->conf.nb_queue_pairs ; qp_id++) {
549                 TEST_ASSERT_SUCCESS(rte_cryptodev_queue_pair_setup(
550                         ts_params->valid_devs[0], qp_id,
551                         &ts_params->qp_conf,
552                         rte_cryptodev_socket_id(ts_params->valid_devs[0])),
553                         "Failed to setup queue pair %u on cryptodev %u",
554                         qp_id, ts_params->valid_devs[0]);
555         }
556
557
558         rte_cryptodev_stats_reset(ts_params->valid_devs[0]);
559
560         /* Start the device */
561         TEST_ASSERT_SUCCESS(rte_cryptodev_start(ts_params->valid_devs[0]),
562                         "Failed to start cryptodev %u",
563                         ts_params->valid_devs[0]);
564
565         return TEST_SUCCESS;
566 }
567
568 static void
569 ut_teardown(void)
570 {
571         struct crypto_testsuite_params *ts_params = &testsuite_params;
572         struct crypto_unittest_params *ut_params = &unittest_params;
573         struct rte_cryptodev_stats stats;
574
575         /* free crypto session structure */
576         if (ut_params->type == RTE_SECURITY_ACTION_TYPE_LOOKASIDE_PROTOCOL) {
577                 if (ut_params->sec_session) {
578                         rte_security_session_destroy(rte_cryptodev_get_sec_ctx
579                                                 (ts_params->valid_devs[0]),
580                                                 ut_params->sec_session);
581                         ut_params->sec_session = NULL;
582                 }
583         } else {
584                 if (ut_params->sess) {
585                         rte_cryptodev_sym_session_clear(
586                                         ts_params->valid_devs[0],
587                                         ut_params->sess);
588                         rte_cryptodev_sym_session_free(ut_params->sess);
589                         ut_params->sess = NULL;
590                 }
591         }
592
593         /* free crypto operation structure */
594         if (ut_params->op)
595                 rte_crypto_op_free(ut_params->op);
596
597         /*
598          * free mbuf - both obuf and ibuf are usually the same,
599          * so check if they point at the same address is necessary,
600          * to avoid freeing the mbuf twice.
601          */
602         if (ut_params->obuf) {
603                 rte_pktmbuf_free(ut_params->obuf);
604                 if (ut_params->ibuf == ut_params->obuf)
605                         ut_params->ibuf = 0;
606                 ut_params->obuf = 0;
607         }
608         if (ut_params->ibuf) {
609                 rte_pktmbuf_free(ut_params->ibuf);
610                 ut_params->ibuf = 0;
611         }
612
613         if (ts_params->mbuf_pool != NULL)
614                 RTE_LOG(DEBUG, USER1, "CRYPTO_MBUFPOOL count %u\n",
615                         rte_mempool_avail_count(ts_params->mbuf_pool));
616
617         rte_cryptodev_stats_get(ts_params->valid_devs[0], &stats);
618
619         /* Stop the device */
620         rte_cryptodev_stop(ts_params->valid_devs[0]);
621 }
622
623 static int
624 test_device_configure_invalid_dev_id(void)
625 {
626         struct crypto_testsuite_params *ts_params = &testsuite_params;
627         uint16_t dev_id, num_devs = 0;
628
629         TEST_ASSERT((num_devs = rte_cryptodev_count()) >= 1,
630                         "Need at least %d devices for test", 1);
631
632         /* valid dev_id values */
633         dev_id = ts_params->valid_devs[ts_params->valid_dev_count - 1];
634
635         /* Stop the device in case it's started so it can be configured */
636         rte_cryptodev_stop(dev_id);
637
638         TEST_ASSERT_SUCCESS(rte_cryptodev_configure(dev_id, &ts_params->conf),
639                         "Failed test for rte_cryptodev_configure: "
640                         "invalid dev_num %u", dev_id);
641
642         /* invalid dev_id values */
643         dev_id = num_devs;
644
645         TEST_ASSERT_FAIL(rte_cryptodev_configure(dev_id, &ts_params->conf),
646                         "Failed test for rte_cryptodev_configure: "
647                         "invalid dev_num %u", dev_id);
648
649         dev_id = 0xff;
650
651         TEST_ASSERT_FAIL(rte_cryptodev_configure(dev_id, &ts_params->conf),
652                         "Failed test for rte_cryptodev_configure:"
653                         "invalid dev_num %u", dev_id);
654
655         return TEST_SUCCESS;
656 }
657
658 static int
659 test_device_configure_invalid_queue_pair_ids(void)
660 {
661         struct crypto_testsuite_params *ts_params = &testsuite_params;
662         uint16_t orig_nb_qps = ts_params->conf.nb_queue_pairs;
663
664         /* Stop the device in case it's started so it can be configured */
665         rte_cryptodev_stop(ts_params->valid_devs[0]);
666
667         /* valid - one queue pairs */
668         ts_params->conf.nb_queue_pairs = 1;
669
670         TEST_ASSERT_SUCCESS(rte_cryptodev_configure(ts_params->valid_devs[0],
671                         &ts_params->conf),
672                         "Failed to configure cryptodev: dev_id %u, qp_id %u",
673                         ts_params->valid_devs[0], ts_params->conf.nb_queue_pairs);
674
675
676         /* valid - max value queue pairs */
677         ts_params->conf.nb_queue_pairs = orig_nb_qps;
678
679         TEST_ASSERT_SUCCESS(rte_cryptodev_configure(ts_params->valid_devs[0],
680                         &ts_params->conf),
681                         "Failed to configure cryptodev: dev_id %u, qp_id %u",
682                         ts_params->valid_devs[0],
683                         ts_params->conf.nb_queue_pairs);
684
685
686         /* invalid - zero queue pairs */
687         ts_params->conf.nb_queue_pairs = 0;
688
689         TEST_ASSERT_FAIL(rte_cryptodev_configure(ts_params->valid_devs[0],
690                         &ts_params->conf),
691                         "Failed test for rte_cryptodev_configure, dev_id %u,"
692                         " invalid qps: %u",
693                         ts_params->valid_devs[0],
694                         ts_params->conf.nb_queue_pairs);
695
696
697         /* invalid - max value supported by field queue pairs */
698         ts_params->conf.nb_queue_pairs = UINT16_MAX;
699
700         TEST_ASSERT_FAIL(rte_cryptodev_configure(ts_params->valid_devs[0],
701                         &ts_params->conf),
702                         "Failed test for rte_cryptodev_configure, dev_id %u,"
703                         " invalid qps: %u",
704                         ts_params->valid_devs[0],
705                         ts_params->conf.nb_queue_pairs);
706
707
708         /* invalid - max value + 1 queue pairs */
709         ts_params->conf.nb_queue_pairs = orig_nb_qps + 1;
710
711         TEST_ASSERT_FAIL(rte_cryptodev_configure(ts_params->valid_devs[0],
712                         &ts_params->conf),
713                         "Failed test for rte_cryptodev_configure, dev_id %u,"
714                         " invalid qps: %u",
715                         ts_params->valid_devs[0],
716                         ts_params->conf.nb_queue_pairs);
717
718         /* revert to original testsuite value */
719         ts_params->conf.nb_queue_pairs = orig_nb_qps;
720
721         return TEST_SUCCESS;
722 }
723
724 static int
725 test_queue_pair_descriptor_setup(void)
726 {
727         struct crypto_testsuite_params *ts_params = &testsuite_params;
728         struct rte_cryptodev_info dev_info;
729         struct rte_cryptodev_qp_conf qp_conf = {
730                 .nb_descriptors = MAX_NUM_OPS_INFLIGHT
731         };
732
733         uint16_t qp_id;
734
735         /* Stop the device in case it's started so it can be configured */
736         rte_cryptodev_stop(ts_params->valid_devs[0]);
737
738
739         rte_cryptodev_info_get(ts_params->valid_devs[0], &dev_info);
740
741         TEST_ASSERT_SUCCESS(rte_cryptodev_configure(ts_params->valid_devs[0],
742                         &ts_params->conf),
743                         "Failed to configure cryptodev %u",
744                         ts_params->valid_devs[0]);
745
746         /*
747          * Test various ring sizes on this device. memzones can't be
748          * freed so are re-used if ring is released and re-created.
749          */
750         qp_conf.nb_descriptors = MIN_NUM_OPS_INFLIGHT; /* min size*/
751         qp_conf.mp_session = ts_params->session_mpool;
752         qp_conf.mp_session_private = ts_params->session_priv_mpool;
753
754         for (qp_id = 0; qp_id < ts_params->conf.nb_queue_pairs; qp_id++) {
755                 TEST_ASSERT_SUCCESS(rte_cryptodev_queue_pair_setup(
756                                 ts_params->valid_devs[0], qp_id, &qp_conf,
757                                 rte_cryptodev_socket_id(
758                                                 ts_params->valid_devs[0])),
759                                 "Failed test for "
760                                 "rte_cryptodev_queue_pair_setup: num_inflights "
761                                 "%u on qp %u on cryptodev %u",
762                                 qp_conf.nb_descriptors, qp_id,
763                                 ts_params->valid_devs[0]);
764         }
765
766         qp_conf.nb_descriptors = (uint32_t)(MAX_NUM_OPS_INFLIGHT / 2);
767
768         for (qp_id = 0; qp_id < ts_params->conf.nb_queue_pairs; qp_id++) {
769                 TEST_ASSERT_SUCCESS(rte_cryptodev_queue_pair_setup(
770                                 ts_params->valid_devs[0], qp_id, &qp_conf,
771                                 rte_cryptodev_socket_id(
772                                                 ts_params->valid_devs[0])),
773                                 "Failed test for"
774                                 " rte_cryptodev_queue_pair_setup: num_inflights"
775                                 " %u on qp %u on cryptodev %u",
776                                 qp_conf.nb_descriptors, qp_id,
777                                 ts_params->valid_devs[0]);
778         }
779
780         qp_conf.nb_descriptors = MAX_NUM_OPS_INFLIGHT; /* valid */
781
782         for (qp_id = 0; qp_id < ts_params->conf.nb_queue_pairs; qp_id++) {
783                 TEST_ASSERT_SUCCESS(rte_cryptodev_queue_pair_setup(
784                                 ts_params->valid_devs[0], qp_id, &qp_conf,
785                                 rte_cryptodev_socket_id(
786                                                 ts_params->valid_devs[0])),
787                                 "Failed test for "
788                                 "rte_cryptodev_queue_pair_setup: num_inflights"
789                                 " %u on qp %u on cryptodev %u",
790                                 qp_conf.nb_descriptors, qp_id,
791                                 ts_params->valid_devs[0]);
792         }
793
794         /* invalid number of descriptors - max supported + 2 */
795         qp_conf.nb_descriptors = MAX_NUM_OPS_INFLIGHT + 2;
796
797         for (qp_id = 0; qp_id < ts_params->conf.nb_queue_pairs; qp_id++) {
798                 TEST_ASSERT_FAIL(rte_cryptodev_queue_pair_setup(
799                                 ts_params->valid_devs[0], qp_id, &qp_conf,
800                                 rte_cryptodev_socket_id(
801                                                 ts_params->valid_devs[0])),
802                                 "Unexpectedly passed test for "
803                                 "rte_cryptodev_queue_pair_setup:"
804                                 "num_inflights %u on qp %u on cryptodev %u",
805                                 qp_conf.nb_descriptors, qp_id,
806                                 ts_params->valid_devs[0]);
807         }
808
809         /* invalid number of descriptors - max value of parameter */
810         qp_conf.nb_descriptors = UINT32_MAX-1;
811
812         for (qp_id = 0; qp_id < ts_params->conf.nb_queue_pairs; qp_id++) {
813                 TEST_ASSERT_FAIL(rte_cryptodev_queue_pair_setup(
814                                 ts_params->valid_devs[0], qp_id, &qp_conf,
815                                 rte_cryptodev_socket_id(
816                                                 ts_params->valid_devs[0])),
817                                 "Unexpectedly passed test for "
818                                 "rte_cryptodev_queue_pair_setup:"
819                                 "num_inflights %u on qp %u on cryptodev %u",
820                                 qp_conf.nb_descriptors, qp_id,
821                                 ts_params->valid_devs[0]);
822         }
823
824         qp_conf.nb_descriptors = DEFAULT_NUM_OPS_INFLIGHT;
825
826         for (qp_id = 0; qp_id < ts_params->conf.nb_queue_pairs; qp_id++) {
827                 TEST_ASSERT_SUCCESS(rte_cryptodev_queue_pair_setup(
828                                 ts_params->valid_devs[0], qp_id, &qp_conf,
829                                 rte_cryptodev_socket_id(
830                                                 ts_params->valid_devs[0])),
831                                 "Failed test for"
832                                 " rte_cryptodev_queue_pair_setup:"
833                                 "num_inflights %u on qp %u on cryptodev %u",
834                                 qp_conf.nb_descriptors, qp_id,
835                                 ts_params->valid_devs[0]);
836         }
837
838         /* invalid number of descriptors - max supported + 1 */
839         qp_conf.nb_descriptors = DEFAULT_NUM_OPS_INFLIGHT + 1;
840
841         for (qp_id = 0; qp_id < ts_params->conf.nb_queue_pairs; qp_id++) {
842                 TEST_ASSERT_FAIL(rte_cryptodev_queue_pair_setup(
843                                 ts_params->valid_devs[0], qp_id, &qp_conf,
844                                 rte_cryptodev_socket_id(
845                                                 ts_params->valid_devs[0])),
846                                 "Unexpectedly passed test for "
847                                 "rte_cryptodev_queue_pair_setup:"
848                                 "num_inflights %u on qp %u on cryptodev %u",
849                                 qp_conf.nb_descriptors, qp_id,
850                                 ts_params->valid_devs[0]);
851         }
852
853         /* test invalid queue pair id */
854         qp_conf.nb_descriptors = DEFAULT_NUM_OPS_INFLIGHT;      /*valid */
855
856         qp_id = ts_params->conf.nb_queue_pairs;         /*invalid */
857
858         TEST_ASSERT_FAIL(rte_cryptodev_queue_pair_setup(
859                         ts_params->valid_devs[0],
860                         qp_id, &qp_conf,
861                         rte_cryptodev_socket_id(ts_params->valid_devs[0])),
862                         "Failed test for rte_cryptodev_queue_pair_setup:"
863                         "invalid qp %u on cryptodev %u",
864                         qp_id, ts_params->valid_devs[0]);
865
866         qp_id = 0xffff; /*invalid*/
867
868         TEST_ASSERT_FAIL(rte_cryptodev_queue_pair_setup(
869                         ts_params->valid_devs[0],
870                         qp_id, &qp_conf,
871                         rte_cryptodev_socket_id(ts_params->valid_devs[0])),
872                         "Failed test for rte_cryptodev_queue_pair_setup:"
873                         "invalid qp %u on cryptodev %u",
874                         qp_id, ts_params->valid_devs[0]);
875
876         return TEST_SUCCESS;
877 }
878
879 /* ***** Plaintext data for tests ***** */
880
881 const char catch_22_quote_1[] =
882                 "There was only one catch and that was Catch-22, which "
883                 "specified that a concern for one's safety in the face of "
884                 "dangers that were real and immediate was the process of a "
885                 "rational mind. Orr was crazy and could be grounded. All he "
886                 "had to do was ask; and as soon as he did, he would no longer "
887                 "be crazy and would have to fly more missions. Orr would be "
888                 "crazy to fly more missions and sane if he didn't, but if he "
889                 "was sane he had to fly them. If he flew them he was crazy "
890                 "and didn't have to; but if he didn't want to he was sane and "
891                 "had to. Yossarian was moved very deeply by the absolute "
892                 "simplicity of this clause of Catch-22 and let out a "
893                 "respectful whistle. \"That's some catch, that Catch-22\", he "
894                 "observed. \"It's the best there is,\" Doc Daneeka agreed.";
895
896 const char catch_22_quote[] =
897                 "What a lousy earth! He wondered how many people were "
898                 "destitute that same night even in his own prosperous country, "
899                 "how many homes were shanties, how many husbands were drunk "
900                 "and wives socked, and how many children were bullied, abused, "
901                 "or abandoned. How many families hungered for food they could "
902                 "not afford to buy? How many hearts were broken? How many "
903                 "suicides would take place that same night, how many people "
904                 "would go insane? How many cockroaches and landlords would "
905                 "triumph? How many winners were losers, successes failures, "
906                 "and rich men poor men? How many wise guys were stupid? How "
907                 "many happy endings were unhappy endings? How many honest men "
908                 "were liars, brave men cowards, loyal men traitors, how many "
909                 "sainted men were corrupt, how many people in positions of "
910                 "trust had sold their souls to bodyguards, how many had never "
911                 "had souls? How many straight-and-narrow paths were crooked "
912                 "paths? How many best families were worst families and how "
913                 "many good people were bad people? When you added them all up "
914                 "and then subtracted, you might be left with only the children, "
915                 "and perhaps with Albert Einstein and an old violinist or "
916                 "sculptor somewhere.";
917
918 #define QUOTE_480_BYTES         (480)
919 #define QUOTE_512_BYTES         (512)
920 #define QUOTE_768_BYTES         (768)
921 #define QUOTE_1024_BYTES        (1024)
922
923
924
925 /* ***** SHA1 Hash Tests ***** */
926
927 #define HMAC_KEY_LENGTH_SHA1    (DIGEST_BYTE_LENGTH_SHA1)
928
929 static uint8_t hmac_sha1_key[] = {
930         0xF8, 0x2A, 0xC7, 0x54, 0xDB, 0x96, 0x18, 0xAA,
931         0xC3, 0xA1, 0x53, 0xF6, 0x1F, 0x17, 0x60, 0xBD,
932         0xDE, 0xF4, 0xDE, 0xAD };
933
934 /* ***** SHA224 Hash Tests ***** */
935
936 #define HMAC_KEY_LENGTH_SHA224  (DIGEST_BYTE_LENGTH_SHA224)
937
938
939 /* ***** AES-CBC Cipher Tests ***** */
940
941 #define CIPHER_KEY_LENGTH_AES_CBC       (16)
942 #define CIPHER_IV_LENGTH_AES_CBC        (CIPHER_KEY_LENGTH_AES_CBC)
943
944 static uint8_t aes_cbc_key[] = {
945         0xE4, 0x23, 0x33, 0x8A, 0x35, 0x64, 0x61, 0xE2,
946         0x49, 0x03, 0xDD, 0xC6, 0xB8, 0xCA, 0x55, 0x7A };
947
948 static uint8_t aes_cbc_iv[] = {
949         0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
950         0x08, 0x09, 0x0a, 0x0b, 0x0c, 0x0d, 0x0e, 0x0f };
951
952
953 /* ***** AES-CBC / HMAC-SHA1 Hash Tests ***** */
954
955 static const uint8_t catch_22_quote_2_512_bytes_AES_CBC_ciphertext[] = {
956         0x8B, 0x4D, 0xDA, 0x1B, 0xCF, 0x04, 0xA0, 0x31,
957         0xB4, 0xBF, 0xBD, 0x68, 0x43, 0x20, 0x7E, 0x76,
958         0xB1, 0x96, 0x8B, 0xA2, 0x7C, 0xA2, 0x83, 0x9E,
959         0x39, 0x5A, 0x2F, 0x7E, 0x92, 0xB4, 0x48, 0x1A,
960         0x3F, 0x6B, 0x5D, 0xDF, 0x52, 0x85, 0x5F, 0x8E,
961         0x42, 0x3C, 0xFB, 0xE9, 0x1A, 0x24, 0xD6, 0x08,
962         0xDD, 0xFD, 0x16, 0xFB, 0xE9, 0x55, 0xEF, 0xF0,
963         0xA0, 0x8D, 0x13, 0xAB, 0x81, 0xC6, 0x90, 0x01,
964         0xB5, 0x18, 0x84, 0xB3, 0xF6, 0xE6, 0x11, 0x57,
965         0xD6, 0x71, 0xC6, 0x3C, 0x3F, 0x2F, 0x33, 0xEE,
966         0x24, 0x42, 0x6E, 0xAC, 0x0B, 0xCA, 0xEC, 0xF9,
967         0x84, 0xF8, 0x22, 0xAA, 0x60, 0xF0, 0x32, 0xA9,
968         0x75, 0x75, 0x3B, 0xCB, 0x70, 0x21, 0x0A, 0x8D,
969         0x0F, 0xE0, 0xC4, 0x78, 0x2B, 0xF8, 0x97, 0xE3,
970         0xE4, 0x26, 0x4B, 0x29, 0xDA, 0x88, 0xCD, 0x46,
971         0xEC, 0xAA, 0xF9, 0x7F, 0xF1, 0x15, 0xEA, 0xC3,
972         0x87, 0xE6, 0x31, 0xF2, 0xCF, 0xDE, 0x4D, 0x80,
973         0x70, 0x91, 0x7E, 0x0C, 0xF7, 0x26, 0x3A, 0x92,
974         0x4F, 0x18, 0x83, 0xC0, 0x8F, 0x59, 0x01, 0xA5,
975         0x88, 0xD1, 0xDB, 0x26, 0x71, 0x27, 0x16, 0xF5,
976         0xEE, 0x10, 0x82, 0xAC, 0x68, 0x26, 0x9B, 0xE2,
977         0x6D, 0xD8, 0x9A, 0x80, 0xDF, 0x04, 0x31, 0xD5,
978         0xF1, 0x35, 0x5C, 0x3B, 0xDD, 0x9A, 0x65, 0xBA,
979         0x58, 0x34, 0x85, 0x61, 0x1C, 0x42, 0x10, 0x76,
980         0x73, 0x02, 0x42, 0xC9, 0x23, 0x18, 0x8E, 0xB4,
981         0x6F, 0xB4, 0xA3, 0x54, 0x6E, 0x88, 0x3B, 0x62,
982         0x7C, 0x02, 0x8D, 0x4C, 0x9F, 0xC8, 0x45, 0xF4,
983         0xC9, 0xDE, 0x4F, 0xEB, 0x22, 0x83, 0x1B, 0xE4,
984         0x49, 0x37, 0xE4, 0xAD, 0xE7, 0xCD, 0x21, 0x54,
985         0xBC, 0x1C, 0xC2, 0x04, 0x97, 0xB4, 0x10, 0x61,
986         0xF0, 0xE4, 0xEF, 0x27, 0x63, 0x3A, 0xDA, 0x91,
987         0x41, 0x25, 0x62, 0x1C, 0x5C, 0xB6, 0x38, 0x4A,
988         0x88, 0x71, 0x59, 0x5A, 0x8D, 0xA0, 0x09, 0xAF,
989         0x72, 0x94, 0xD7, 0x79, 0x5C, 0x60, 0x7C, 0x8F,
990         0x4C, 0xF5, 0xD9, 0xA1, 0x39, 0x6D, 0x81, 0x28,
991         0xEF, 0x13, 0x28, 0xDF, 0xF5, 0x3E, 0xF7, 0x8E,
992         0x09, 0x9C, 0x78, 0x18, 0x79, 0xB8, 0x68, 0xD7,
993         0xA8, 0x29, 0x62, 0xAD, 0xDE, 0xE1, 0x61, 0x76,
994         0x1B, 0x05, 0x16, 0xCD, 0xBF, 0x02, 0x8E, 0xA6,
995         0x43, 0x6E, 0x92, 0x55, 0x4F, 0x60, 0x9C, 0x03,
996         0xB8, 0x4F, 0xA3, 0x02, 0xAC, 0xA8, 0xA7, 0x0C,
997         0x1E, 0xB5, 0x6B, 0xF8, 0xC8, 0x4D, 0xDE, 0xD2,
998         0xB0, 0x29, 0x6E, 0x40, 0xE6, 0xD6, 0xC9, 0xE6,
999         0xB9, 0x0F, 0xB6, 0x63, 0xF5, 0xAA, 0x2B, 0x96,
1000         0xA7, 0x16, 0xAC, 0x4E, 0x0A, 0x33, 0x1C, 0xA6,
1001         0xE6, 0xBD, 0x8A, 0xCF, 0x40, 0xA9, 0xB2, 0xFA,
1002         0x63, 0x27, 0xFD, 0x9B, 0xD9, 0xFC, 0xD5, 0x87,
1003         0x8D, 0x4C, 0xB6, 0xA4, 0xCB, 0xE7, 0x74, 0x55,
1004         0xF4, 0xFB, 0x41, 0x25, 0xB5, 0x4B, 0x0A, 0x1B,
1005         0xB1, 0xD6, 0xB7, 0xD9, 0x47, 0x2A, 0xC3, 0x98,
1006         0x6A, 0xC4, 0x03, 0x73, 0x1F, 0x93, 0x6E, 0x53,
1007         0x19, 0x25, 0x64, 0x15, 0x83, 0xF9, 0x73, 0x2A,
1008         0x74, 0xB4, 0x93, 0x69, 0xC4, 0x72, 0xFC, 0x26,
1009         0xA2, 0x9F, 0x43, 0x45, 0xDD, 0xB9, 0xEF, 0x36,
1010         0xC8, 0x3A, 0xCD, 0x99, 0x9B, 0x54, 0x1A, 0x36,
1011         0xC1, 0x59, 0xF8, 0x98, 0xA8, 0xCC, 0x28, 0x0D,
1012         0x73, 0x4C, 0xEE, 0x98, 0xCB, 0x7C, 0x58, 0x7E,
1013         0x20, 0x75, 0x1E, 0xB7, 0xC9, 0xF8, 0xF2, 0x0E,
1014         0x63, 0x9E, 0x05, 0x78, 0x1A, 0xB6, 0xA8, 0x7A,
1015         0xF9, 0x98, 0x6A, 0xA6, 0x46, 0x84, 0x2E, 0xF6,
1016         0x4B, 0xDC, 0x9B, 0x8F, 0x9B, 0x8F, 0xEE, 0xB4,
1017         0xAA, 0x3F, 0xEE, 0xC0, 0x37, 0x27, 0x76, 0xC7,
1018         0x95, 0xBB, 0x26, 0x74, 0x69, 0x12, 0x7F, 0xF1,
1019         0xBB, 0xFF, 0xAE, 0xB5, 0x99, 0x6E, 0xCB, 0x0C
1020 };
1021
1022 static const uint8_t catch_22_quote_2_512_bytes_AES_CBC_HMAC_SHA1_digest[] = {
1023         0x9a, 0x4f, 0x88, 0x1b, 0xb6, 0x8f, 0xd8, 0x60,
1024         0x42, 0x1a, 0x7d, 0x3d, 0xf5, 0x82, 0x80, 0xf1,
1025         0x18, 0x8c, 0x1d, 0x32
1026 };
1027
1028
1029 /* Multisession Vector context Test */
1030 /*Begin Session 0 */
1031 static uint8_t ms_aes_cbc_key0[] = {
1032         0xf0, 0xf1, 0xf2, 0xf3, 0xf4, 0xf5, 0xf6, 0xf7,
1033         0xf8, 0xf9, 0xfa, 0xfb, 0xfc, 0xfd, 0xfe, 0xff
1034 };
1035
1036 static uint8_t ms_aes_cbc_iv0[] = {
1037         0xf0, 0xf1, 0xf2, 0xf3, 0xf4, 0xf5, 0xf6, 0xf7,
1038         0xf8, 0xf9, 0xfa, 0xfb, 0xfc, 0xfd, 0xfe, 0xff
1039 };
1040
1041 static const uint8_t ms_aes_cbc_cipher0[] = {
1042                 0x3C, 0xE4, 0xEE, 0x42, 0xB6, 0x9B, 0xC3, 0x38,
1043                 0x5F, 0xAD, 0x54, 0xDC, 0xA8, 0x32, 0x81, 0xDC,
1044                 0x7A, 0x6F, 0x85, 0x58, 0x07, 0x35, 0xED, 0xEB,
1045                 0xAD, 0x79, 0x79, 0x96, 0xD3, 0x0E, 0xA6, 0xD9,
1046                 0xAA, 0x86, 0xA4, 0x8F, 0xB5, 0xD6, 0x6E, 0x6D,
1047                 0x0C, 0x91, 0x2F, 0xC4, 0x67, 0x98, 0x0E, 0xC4,
1048                 0x8D, 0x83, 0x68, 0x69, 0xC4, 0xD3, 0x94, 0x34,
1049                 0xC4, 0x5D, 0x60, 0x55, 0x22, 0x87, 0x8F, 0x6F,
1050                 0x17, 0x8E, 0x75, 0xE4, 0x02, 0xF5, 0x1B, 0x99,
1051                 0xC8, 0x39, 0xA9, 0xAB, 0x23, 0x91, 0x12, 0xED,
1052                 0x08, 0xE7, 0xD9, 0x25, 0x89, 0x24, 0x4F, 0x8D,
1053                 0x68, 0xF3, 0x10, 0x39, 0x0A, 0xEE, 0x45, 0x24,
1054                 0xDF, 0x7A, 0x9D, 0x00, 0x25, 0xE5, 0x35, 0x71,
1055                 0x4E, 0x40, 0x59, 0x6F, 0x0A, 0x13, 0xB3, 0x72,
1056                 0x1D, 0x98, 0x63, 0x94, 0x89, 0xA5, 0x39, 0x8E,
1057                 0xD3, 0x9C, 0x8A, 0x7F, 0x71, 0x2F, 0xC7, 0xCD,
1058                 0x81, 0x05, 0xDC, 0xC0, 0x8D, 0xCE, 0x6D, 0x18,
1059                 0x30, 0xC4, 0x72, 0x51, 0xF0, 0x27, 0xC8, 0xF6,
1060                 0x60, 0x5B, 0x7C, 0xB2, 0xE3, 0x49, 0x0C, 0x29,
1061                 0xC6, 0x9F, 0x39, 0x57, 0x80, 0x55, 0x24, 0x2C,
1062                 0x9B, 0x0F, 0x5A, 0xB3, 0x89, 0x55, 0x31, 0x96,
1063                 0x0D, 0xCD, 0xF6, 0x51, 0x03, 0x2D, 0x89, 0x26,
1064                 0x74, 0x44, 0xD6, 0xE8, 0xDC, 0xEA, 0x44, 0x55,
1065                 0x64, 0x71, 0x9C, 0x9F, 0x5D, 0xBA, 0x39, 0x46,
1066                 0xA8, 0x17, 0xA1, 0x9C, 0x52, 0x9D, 0xBC, 0x6B,
1067                 0x4A, 0x98, 0xE6, 0xEA, 0x33, 0xEC, 0x58, 0xB4,
1068                 0x43, 0xF0, 0x32, 0x45, 0xA4, 0xC1, 0x55, 0xB7,
1069                 0x5D, 0xB5, 0x59, 0xB2, 0xE3, 0x96, 0xFF, 0xA5,
1070                 0xAF, 0xE1, 0x86, 0x1B, 0x42, 0xE6, 0x3B, 0xA0,
1071                 0x90, 0x4A, 0xE8, 0x8C, 0x21, 0x7F, 0x36, 0x1E,
1072                 0x5B, 0x65, 0x25, 0xD1, 0xC1, 0x5A, 0xCA, 0x3D,
1073                 0x10, 0xED, 0x2D, 0x79, 0xD0, 0x0F, 0x58, 0x44,
1074                 0x69, 0x81, 0xF5, 0xD4, 0xC9, 0x0F, 0x90, 0x76,
1075                 0x1F, 0x54, 0xD2, 0xD5, 0x97, 0xCE, 0x2C, 0xE3,
1076                 0xEF, 0xF4, 0xB7, 0xC6, 0x3A, 0x87, 0x7F, 0x83,
1077                 0x2A, 0xAF, 0xCD, 0x90, 0x12, 0xA7, 0x7D, 0x85,
1078                 0x1D, 0x62, 0xD3, 0x85, 0x25, 0x05, 0xDB, 0x45,
1079                 0x92, 0xA3, 0xF6, 0xA2, 0xA8, 0x41, 0xE4, 0x25,
1080                 0x86, 0x87, 0x67, 0x24, 0xEC, 0x89, 0x23, 0x2A,
1081                 0x9B, 0x20, 0x4D, 0x93, 0xEE, 0xE2, 0x2E, 0xC1,
1082                 0x0B, 0x15, 0x33, 0xCF, 0x00, 0xD1, 0x1A, 0xDA,
1083                 0x93, 0xFD, 0x28, 0x21, 0x5B, 0xCF, 0xD1, 0xF3,
1084                 0x5A, 0x81, 0xBA, 0x82, 0x5E, 0x2F, 0x61, 0xB4,
1085                 0x05, 0x71, 0xB5, 0xF4, 0x39, 0x3C, 0x1F, 0x60,
1086                 0x00, 0x7A, 0xC4, 0xF8, 0x35, 0x20, 0x6C, 0x3A,
1087                 0xCC, 0x03, 0x8F, 0x7B, 0xA2, 0xB6, 0x65, 0x8A,
1088                 0xB6, 0x5F, 0xFD, 0x25, 0xD3, 0x5F, 0x92, 0xF9,
1089                 0xAE, 0x17, 0x9B, 0x5E, 0x6E, 0x9A, 0xE4, 0x55,
1090                 0x10, 0x25, 0x07, 0xA4, 0xAF, 0x21, 0x69, 0x13,
1091                 0xD8, 0xFA, 0x31, 0xED, 0xF7, 0xA7, 0xA7, 0x3B,
1092                 0xB8, 0x96, 0x8E, 0x10, 0x86, 0x74, 0xD8, 0xB1,
1093                 0x34, 0x9E, 0x9B, 0x6A, 0x26, 0xA8, 0xD4, 0xD0,
1094                 0xB5, 0xF6, 0xDE, 0xE7, 0xCA, 0x06, 0xDC, 0xA3,
1095                 0x6F, 0xEE, 0x6B, 0x1E, 0xB5, 0x30, 0x99, 0x23,
1096                 0xF9, 0x76, 0xF0, 0xA0, 0xCF, 0x3B, 0x94, 0x7B,
1097                 0x19, 0x8D, 0xA5, 0x0C, 0x18, 0xA6, 0x1D, 0x07,
1098                 0x89, 0xBE, 0x5B, 0x61, 0xE5, 0xF1, 0x42, 0xDB,
1099                 0xD4, 0x2E, 0x02, 0x1F, 0xCE, 0xEF, 0x92, 0xB1,
1100                 0x1B, 0x56, 0x50, 0xF2, 0x16, 0xE5, 0xE7, 0x4F,
1101                 0xFD, 0xBB, 0x3E, 0xD2, 0xFC, 0x3C, 0xC6, 0x0F,
1102                 0xF9, 0x12, 0x4E, 0xCB, 0x1E, 0x0C, 0x15, 0x84,
1103                 0x2A, 0x14, 0x8A, 0x02, 0xE4, 0x7E, 0x95, 0x5B,
1104                 0x86, 0xDB, 0x9B, 0x62, 0x5B, 0x19, 0xD2, 0x17,
1105                 0xFA, 0x13, 0xBB, 0x6B, 0x3F, 0x45, 0x9F, 0xBF
1106 };
1107
1108
1109 static  uint8_t ms_hmac_key0[] = {
1110                 0xFF, 0x1A, 0x7D, 0x3D, 0xF5, 0x82, 0x80, 0xF1,
1111                 0xF1, 0x35, 0x5C, 0x3B, 0xDD, 0x9A, 0x65, 0xBA,
1112                 0x58, 0x34, 0x85, 0x65, 0x1C, 0x42, 0x50, 0x76,
1113                 0x9A, 0xAF, 0x88, 0x1B, 0xB6, 0x8F, 0xF8, 0x60,
1114                 0xA2, 0x5A, 0x7F, 0x3F, 0xF4, 0x72, 0x70, 0xF1,
1115                 0xF5, 0x35, 0x4C, 0x3B, 0xDD, 0x90, 0x65, 0xB0,
1116                 0x47, 0x3A, 0x75, 0x61, 0x5C, 0xA2, 0x10, 0x76,
1117                 0x9A, 0xAF, 0x77, 0x5B, 0xB6, 0x7F, 0xF7, 0x60
1118 };
1119
1120 static const uint8_t ms_hmac_digest0[] = {
1121                 0x43, 0x52, 0xED, 0x34, 0xAB, 0x36, 0xB2, 0x51,
1122                 0xFB, 0xA3, 0xA6, 0x7C, 0x38, 0xFC, 0x42, 0x8F,
1123                 0x57, 0x64, 0xAB, 0x81, 0xA7, 0x89, 0xB7, 0x6C,
1124                 0xA0, 0xDC, 0xB9, 0x4D, 0xC4, 0x30, 0xF9, 0xD4,
1125                 0x10, 0x82, 0x55, 0xD0, 0xAB, 0x32, 0xFB, 0x56,
1126                 0x0D, 0xE4, 0x68, 0x3D, 0x76, 0xD0, 0x7B, 0xE4,
1127                 0xA6, 0x2C, 0x34, 0x9E, 0x8C, 0x41, 0xF8, 0x23,
1128                 0x28, 0x1B, 0x3A, 0x90, 0x26, 0x34, 0x47, 0x90
1129                 };
1130
1131 /* End Session 0 */
1132 /* Begin session 1 */
1133
1134 static  uint8_t ms_aes_cbc_key1[] = {
1135                 0xf1, 0xf1, 0xf2, 0xf3, 0xf4, 0xf5, 0xf6, 0xf7,
1136                 0xf8, 0xf9, 0xfa, 0xfb, 0xfc, 0xfd, 0xfe, 0xff
1137 };
1138
1139 static  uint8_t ms_aes_cbc_iv1[] = {
1140         0xf1, 0xf1, 0xf2, 0xf3, 0xf4, 0xf5, 0xf6, 0xf7,
1141         0xf8, 0xf9, 0xfa, 0xfb, 0xfc, 0xfd, 0xfe, 0xff
1142 };
1143
1144 static const uint8_t ms_aes_cbc_cipher1[] = {
1145                 0x5A, 0x7A, 0x67, 0x5D, 0xB8, 0xE1, 0xDC, 0x71,
1146                 0x39, 0xA8, 0x74, 0x93, 0x9C, 0x4C, 0xFE, 0x23,
1147                 0x61, 0xCD, 0xA4, 0xB3, 0xD9, 0xCE, 0x99, 0x09,
1148                 0x2A, 0x23, 0xF3, 0x29, 0xBF, 0x4C, 0xB4, 0x6A,
1149                 0x1B, 0x6B, 0x73, 0x4D, 0x48, 0x0C, 0xCF, 0x6C,
1150                 0x5E, 0x34, 0x9E, 0x7F, 0xBC, 0x8F, 0xCC, 0x8F,
1151                 0x75, 0x1D, 0x3D, 0x77, 0x10, 0x76, 0xC8, 0xB9,
1152                 0x99, 0x6F, 0xD6, 0x56, 0x75, 0xA9, 0xB2, 0x66,
1153                 0xC2, 0x24, 0x2B, 0x9C, 0xFE, 0x40, 0x8E, 0x43,
1154                 0x20, 0x97, 0x1B, 0xFA, 0xD0, 0xCF, 0x04, 0xAB,
1155                 0xBB, 0xF6, 0x5D, 0xF5, 0xA0, 0x19, 0x7C, 0x23,
1156                 0x5D, 0x80, 0x8C, 0x49, 0xF6, 0x76, 0x88, 0x29,
1157                 0x27, 0x4C, 0x59, 0x2B, 0x43, 0xA6, 0xB2, 0x26,
1158                 0x27, 0x78, 0xBE, 0x1B, 0xE1, 0x4F, 0x5A, 0x1F,
1159                 0xFC, 0x68, 0x08, 0xE7, 0xC4, 0xD1, 0x34, 0x68,
1160                 0xB7, 0x13, 0x14, 0x41, 0x62, 0x6B, 0x1F, 0x77,
1161                 0x0C, 0x68, 0x1D, 0x0D, 0xED, 0x89, 0xAA, 0xD8,
1162                 0x97, 0x02, 0xBA, 0x5E, 0xD4, 0x84, 0x25, 0x97,
1163                 0x03, 0xA5, 0xA6, 0x13, 0x66, 0x02, 0xF4, 0xC3,
1164                 0xF3, 0xD3, 0xCC, 0x95, 0xC3, 0x87, 0x46, 0x90,
1165                 0x1F, 0x6E, 0x14, 0xA8, 0x00, 0xF2, 0x6F, 0xD5,
1166                 0xA1, 0xAD, 0xD5, 0x40, 0xA2, 0x0F, 0x32, 0x7E,
1167                 0x99, 0xA3, 0xF5, 0x53, 0xC3, 0x26, 0xA1, 0x45,
1168                 0x01, 0x88, 0x57, 0x84, 0x3E, 0x7B, 0x4E, 0x0B,
1169                 0x3C, 0xB5, 0x3E, 0x9E, 0xE9, 0x78, 0x77, 0xC5,
1170                 0xC0, 0x89, 0xA8, 0xF8, 0xF1, 0xA5, 0x2D, 0x5D,
1171                 0xF9, 0xC6, 0xFB, 0xCB, 0x05, 0x23, 0xBD, 0x6E,
1172                 0x5E, 0x14, 0xC6, 0x57, 0x73, 0xCF, 0x98, 0xBD,
1173                 0x10, 0x8B, 0x18, 0xA6, 0x01, 0x5B, 0x13, 0xAE,
1174                 0x8E, 0xDE, 0x1F, 0xB5, 0xB7, 0x40, 0x6C, 0xC1,
1175                 0x1E, 0xA1, 0x19, 0x20, 0x9E, 0x95, 0xE0, 0x2F,
1176                 0x1C, 0xF5, 0xD9, 0xD0, 0x2B, 0x1E, 0x82, 0x25,
1177                 0x62, 0xB4, 0xEB, 0xA1, 0x1F, 0xCE, 0x44, 0xA1,
1178                 0xCB, 0x92, 0x01, 0x6B, 0xE4, 0x26, 0x23, 0xE3,
1179                 0xC5, 0x67, 0x35, 0x55, 0xDA, 0xE5, 0x27, 0xEE,
1180                 0x8D, 0x12, 0x84, 0xB7, 0xBA, 0xA7, 0x1C, 0xD6,
1181                 0x32, 0x3F, 0x67, 0xED, 0xFB, 0x5B, 0x8B, 0x52,
1182                 0x46, 0x8C, 0xF9, 0x69, 0xCD, 0xAE, 0x79, 0xAA,
1183                 0x37, 0x78, 0x49, 0xEB, 0xC6, 0x8E, 0x76, 0x63,
1184                 0x84, 0xFF, 0x9D, 0x22, 0x99, 0x51, 0xB7, 0x5E,
1185                 0x83, 0x4C, 0x8B, 0xDF, 0x5A, 0x07, 0xCC, 0xBA,
1186                 0x42, 0xA5, 0x98, 0xB6, 0x47, 0x0E, 0x66, 0xEB,
1187                 0x23, 0x0E, 0xBA, 0x44, 0xA8, 0xAA, 0x20, 0x71,
1188                 0x79, 0x9C, 0x77, 0x5F, 0xF5, 0xFE, 0xEC, 0xEF,
1189                 0xC6, 0x64, 0x3D, 0x84, 0xD0, 0x2B, 0xA7, 0x0A,
1190                 0xC3, 0x72, 0x5B, 0x9C, 0xFA, 0xA8, 0x87, 0x95,
1191                 0x94, 0x11, 0x38, 0xA7, 0x1E, 0x58, 0xE3, 0x73,
1192                 0xC6, 0xC9, 0xD1, 0x7B, 0x92, 0xDB, 0x0F, 0x49,
1193                 0x74, 0xC2, 0xA2, 0x0E, 0x35, 0x57, 0xAC, 0xDB,
1194                 0x9A, 0x1C, 0xCF, 0x5A, 0x32, 0x3E, 0x26, 0x9B,
1195                 0xEC, 0xB3, 0xEF, 0x9C, 0xFE, 0xBE, 0x52, 0xAC,
1196                 0xB1, 0x29, 0xDD, 0xFD, 0x07, 0xE2, 0xEE, 0xED,
1197                 0xE4, 0x46, 0x37, 0xFE, 0xD1, 0xDC, 0xCD, 0x02,
1198                 0xF9, 0x31, 0xB0, 0xFB, 0x36, 0xB7, 0x34, 0xA4,
1199                 0x76, 0xE8, 0x57, 0xBF, 0x99, 0x92, 0xC7, 0xAF,
1200                 0x98, 0x10, 0xE2, 0x70, 0xCA, 0xC9, 0x2B, 0x82,
1201                 0x06, 0x96, 0x88, 0x0D, 0xB3, 0xAC, 0x9E, 0x6D,
1202                 0x43, 0xBC, 0x5B, 0x31, 0xCF, 0x65, 0x8D, 0xA6,
1203                 0xC7, 0xFE, 0x73, 0xE1, 0x54, 0xF7, 0x10, 0xF9,
1204                 0x86, 0xF7, 0xDF, 0xA1, 0xA1, 0xD8, 0xAE, 0x35,
1205                 0xB3, 0x90, 0xDC, 0x6F, 0x43, 0x7A, 0x8B, 0xE0,
1206                 0xFE, 0x8F, 0x33, 0x4D, 0x29, 0x6C, 0x45, 0x53,
1207                 0x73, 0xDD, 0x21, 0x0B, 0x85, 0x30, 0xB5, 0xA5,
1208                 0xF3, 0x5D, 0xEC, 0x79, 0x61, 0x9D, 0x9E, 0xB3
1209
1210 };
1211
1212 static uint8_t ms_hmac_key1[] = {
1213                 0xFE, 0x1A, 0x7D, 0x3D, 0xF5, 0x82, 0x80, 0xF1,
1214                 0xF1, 0x35, 0x5C, 0x3B, 0xDD, 0x9A, 0x65, 0xBA,
1215                 0x58, 0x34, 0x85, 0x65, 0x1C, 0x42, 0x50, 0x76,
1216                 0x9A, 0xAF, 0x88, 0x1B, 0xB6, 0x8F, 0xF8, 0x60,
1217                 0xA2, 0x5A, 0x7F, 0x3F, 0xF4, 0x72, 0x70, 0xF1,
1218                 0xF5, 0x35, 0x4C, 0x3B, 0xDD, 0x90, 0x65, 0xB0,
1219                 0x47, 0x3A, 0x75, 0x61, 0x5C, 0xA2, 0x10, 0x76,
1220                 0x9A, 0xAF, 0x77, 0x5B, 0xB6, 0x7F, 0xF7, 0x60
1221 };
1222
1223 static const uint8_t ms_hmac_digest1[] = {
1224                 0xCE, 0x6E, 0x5F, 0x77, 0x96, 0x9A, 0xB1, 0x69,
1225                 0x2D, 0x5E, 0xF3, 0x2F, 0x32, 0x10, 0xCB, 0x50,
1226                 0x0E, 0x09, 0x56, 0x25, 0x07, 0x34, 0xC9, 0x20,
1227                 0xEC, 0x13, 0x43, 0x23, 0x5C, 0x08, 0x8B, 0xCD,
1228                 0xDC, 0x86, 0x8C, 0xEE, 0x0A, 0x95, 0x2E, 0xB9,
1229                 0x8C, 0x7B, 0x02, 0x7A, 0xD4, 0xE1, 0x49, 0xB4,
1230                 0x45, 0xB5, 0x52, 0x37, 0xC6, 0xFF, 0xFE, 0xAA,
1231                 0x0A, 0x87, 0xB8, 0x51, 0xF9, 0x2A, 0x01, 0x8F
1232 };
1233 /* End Session 1  */
1234 /* Begin Session 2 */
1235 static  uint8_t ms_aes_cbc_key2[] = {
1236                 0xff, 0xf1, 0xf2, 0xf3, 0xf4, 0xf5, 0xf6, 0xf7,
1237                 0xf8, 0xf9, 0xfa, 0xfb, 0xfc, 0xfd, 0xfe, 0xff
1238 };
1239
1240 static  uint8_t ms_aes_cbc_iv2[] = {
1241                 0xff, 0xf1, 0xf2, 0xf3, 0xf4, 0xf5, 0xf6, 0xf7,
1242                 0xf8, 0xf9, 0xfa, 0xfb, 0xfc, 0xfd, 0xfe, 0xff
1243 };
1244
1245 static const uint8_t ms_aes_cbc_cipher2[] = {
1246                 0xBB, 0x3C, 0x68, 0x25, 0xFD, 0xB6, 0xA2, 0x91,
1247                 0x20, 0x56, 0xF6, 0x30, 0x35, 0xFC, 0x9E, 0x97,
1248                 0xF2, 0x90, 0xFC, 0x7E, 0x3E, 0x0A, 0x75, 0xC8,
1249                 0x4C, 0xF2, 0x2D, 0xAC, 0xD3, 0x93, 0xF0, 0xC5,
1250                 0x14, 0x88, 0x8A, 0x23, 0xC2, 0x59, 0x9A, 0x98,
1251                 0x4B, 0xD5, 0x2C, 0xDA, 0x43, 0xA9, 0x34, 0x69,
1252                 0x7C, 0x6D, 0xDB, 0xDC, 0xCB, 0xC0, 0xA0, 0x09,
1253                 0xA7, 0x86, 0x16, 0x4B, 0xBF, 0xA8, 0xB6, 0xCF,
1254                 0x7F, 0x74, 0x1F, 0x22, 0xF0, 0xF6, 0xBB, 0x44,
1255                 0x8B, 0x4C, 0x9E, 0x23, 0xF8, 0x9F, 0xFC, 0x5B,
1256                 0x9E, 0x9C, 0x2A, 0x79, 0x30, 0x8F, 0xBF, 0xA9,
1257                 0x68, 0xA1, 0x20, 0x71, 0x7C, 0x77, 0x22, 0x34,
1258                 0x07, 0xCD, 0xC6, 0xF6, 0x50, 0x0A, 0x08, 0x99,
1259                 0x17, 0x98, 0xE3, 0x93, 0x8A, 0xB0, 0xEE, 0xDF,
1260                 0xC2, 0xBA, 0x3B, 0x44, 0x73, 0xDF, 0xDD, 0xDC,
1261                 0x14, 0x4D, 0x3B, 0xBB, 0x5E, 0x58, 0xC1, 0x26,
1262                 0xA7, 0xAE, 0x47, 0xF3, 0x24, 0x6D, 0x4F, 0xD3,
1263                 0x6E, 0x3E, 0x33, 0xE6, 0x7F, 0xCA, 0x50, 0xAF,
1264                 0x5D, 0x3D, 0xA0, 0xDD, 0xC9, 0xF3, 0x30, 0xD3,
1265                 0x6E, 0x8B, 0x2E, 0x12, 0x24, 0x34, 0xF0, 0xD3,
1266                 0xC7, 0x8D, 0x23, 0x29, 0xAA, 0x05, 0xE1, 0xFA,
1267                 0x2E, 0xF6, 0x8D, 0x37, 0x86, 0xC0, 0x6D, 0x13,
1268                 0x2D, 0x98, 0xF3, 0x52, 0x39, 0x22, 0xCE, 0x38,
1269                 0xC2, 0x1A, 0x72, 0xED, 0xFB, 0xCC, 0xE4, 0x71,
1270                 0x5A, 0x0C, 0x0D, 0x09, 0xF8, 0xE8, 0x1B, 0xBC,
1271                 0x53, 0xC8, 0xD8, 0x8F, 0xE5, 0x98, 0x5A, 0xB1,
1272                 0x06, 0xA6, 0x5B, 0xE6, 0xA2, 0x88, 0x21, 0x9E,
1273                 0x36, 0xC0, 0x34, 0xF9, 0xFB, 0x3B, 0x0A, 0x22,
1274                 0x00, 0x00, 0x39, 0x48, 0x8D, 0x23, 0x74, 0x62,
1275                 0x72, 0x91, 0xE6, 0x36, 0xAA, 0x77, 0x9C, 0x72,
1276                 0x9D, 0xA8, 0xC3, 0xA9, 0xD5, 0x44, 0x72, 0xA6,
1277                 0xB9, 0x28, 0x8F, 0x64, 0x4C, 0x8A, 0x64, 0xE6,
1278                 0x4E, 0xFA, 0xEF, 0x87, 0xDE, 0x7B, 0x22, 0x44,
1279                 0xB0, 0xDF, 0x2E, 0x5F, 0x0B, 0xA5, 0xF2, 0x24,
1280                 0x07, 0x5C, 0x2D, 0x39, 0xB7, 0x3D, 0x8A, 0xE5,
1281                 0x0E, 0x9D, 0x4E, 0x50, 0xED, 0x03, 0x99, 0x8E,
1282                 0xF0, 0x06, 0x55, 0x4E, 0xA2, 0x24, 0xE7, 0x17,
1283                 0x46, 0xDF, 0x6C, 0xCD, 0xC6, 0x44, 0xE8, 0xF9,
1284                 0xB9, 0x1B, 0x36, 0xF6, 0x7F, 0x10, 0xA4, 0x7D,
1285                 0x90, 0xBD, 0xE4, 0xAA, 0xD6, 0x9E, 0x18, 0x9D,
1286                 0x22, 0x35, 0xD6, 0x55, 0x54, 0xAA, 0xF7, 0x22,
1287                 0xA3, 0x3E, 0xEF, 0xC8, 0xA2, 0x34, 0x8D, 0xA9,
1288                 0x37, 0x63, 0xA6, 0xC3, 0x57, 0xCB, 0x0C, 0x49,
1289                 0x7D, 0x02, 0xBE, 0xAA, 0x13, 0x75, 0xB7, 0x4E,
1290                 0x52, 0x62, 0xA5, 0xC2, 0x33, 0xC7, 0x6C, 0x1B,
1291                 0xF6, 0x34, 0xF6, 0x09, 0xA5, 0x0C, 0xC7, 0xA2,
1292                 0x61, 0x48, 0x62, 0x7D, 0x17, 0x15, 0xE3, 0x95,
1293                 0xC8, 0x63, 0xD2, 0xA4, 0x43, 0xA9, 0x49, 0x07,
1294                 0xB2, 0x3B, 0x2B, 0x62, 0x7D, 0xCB, 0x51, 0xB3,
1295                 0x25, 0x33, 0x47, 0x0E, 0x14, 0x67, 0xDC, 0x6A,
1296                 0x9B, 0x51, 0xAC, 0x9D, 0x8F, 0xA2, 0x2B, 0x57,
1297                 0x8C, 0x5C, 0x5F, 0x76, 0x23, 0x92, 0x0F, 0x84,
1298                 0x46, 0x0E, 0x40, 0x85, 0x38, 0x60, 0xFA, 0x61,
1299                 0x20, 0xC5, 0xE3, 0xF1, 0x70, 0xAC, 0x1B, 0xBF,
1300                 0xC4, 0x2B, 0xC5, 0x67, 0xD1, 0x43, 0xC5, 0x17,
1301                 0x74, 0x71, 0x69, 0x6F, 0x82, 0x89, 0x19, 0x8A,
1302                 0x70, 0x43, 0x92, 0x01, 0xC4, 0x63, 0x7E, 0xB1,
1303                 0x59, 0x4E, 0xCD, 0xEA, 0x93, 0xA4, 0x52, 0x53,
1304                 0x9B, 0x61, 0x5B, 0xD2, 0x3E, 0x19, 0x39, 0xB7,
1305                 0x32, 0xEA, 0x8E, 0xF8, 0x1D, 0x76, 0x5C, 0xB2,
1306                 0x73, 0x2D, 0x91, 0xC0, 0x18, 0xED, 0x25, 0x2A,
1307                 0x53, 0x64, 0xF0, 0x92, 0x31, 0x55, 0x21, 0xA8,
1308                 0x24, 0xA9, 0xD1, 0x02, 0xF6, 0x6C, 0x2B, 0x70,
1309                 0xA9, 0x59, 0xC1, 0xD6, 0xC3, 0x57, 0x5B, 0x92
1310 };
1311
1312 static  uint8_t ms_hmac_key2[] = {
1313                 0xFC, 0x1A, 0x7D, 0x3D, 0xF5, 0x82, 0x80, 0xF1,
1314                 0xF1, 0x35, 0x5C, 0x3B, 0xDD, 0x9A, 0x65, 0xBA,
1315                 0x58, 0x34, 0x85, 0x65, 0x1C, 0x42, 0x50, 0x76,
1316                 0x9A, 0xAF, 0x88, 0x1B, 0xB6, 0x8F, 0xF8, 0x60,
1317                 0xA2, 0x5A, 0x7F, 0x3F, 0xF4, 0x72, 0x70, 0xF1,
1318                 0xF5, 0x35, 0x4C, 0x3B, 0xDD, 0x90, 0x65, 0xB0,
1319                 0x47, 0x3A, 0x75, 0x61, 0x5C, 0xA2, 0x10, 0x76,
1320                 0x9A, 0xAF, 0x77, 0x5B, 0xB6, 0x7F, 0xF7, 0x60
1321 };
1322
1323 static const uint8_t ms_hmac_digest2[] = {
1324                 0xA5, 0x0F, 0x9C, 0xFB, 0x08, 0x62, 0x59, 0xFF,
1325                 0x80, 0x2F, 0xEB, 0x4B, 0xE1, 0x46, 0x21, 0xD6,
1326                 0x02, 0x98, 0xF2, 0x8E, 0xF4, 0xEC, 0xD4, 0x77,
1327                 0x86, 0x4C, 0x31, 0x28, 0xC8, 0x25, 0x80, 0x27,
1328                 0x3A, 0x72, 0x5D, 0x6A, 0x56, 0x8A, 0xD3, 0x82,
1329                 0xB0, 0xEC, 0x31, 0x6D, 0x8B, 0x6B, 0xB4, 0x24,
1330                 0xE7, 0x62, 0xC1, 0x52, 0xBC, 0x14, 0x1B, 0x8E,
1331                 0xEC, 0x9A, 0xF1, 0x47, 0x80, 0xD2, 0xB0, 0x59
1332 };
1333
1334 /* End Session 2 */
1335
1336
1337 static int
1338 test_AES_CBC_HMAC_SHA1_encrypt_digest(void)
1339 {
1340         struct crypto_testsuite_params *ts_params = &testsuite_params;
1341         struct crypto_unittest_params *ut_params = &unittest_params;
1342
1343         /* Generate test mbuf data and space for digest */
1344         ut_params->ibuf = setup_test_string(ts_params->mbuf_pool,
1345                         catch_22_quote, QUOTE_512_BYTES, 0);
1346
1347         ut_params->digest = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
1348                         DIGEST_BYTE_LENGTH_SHA1);
1349         TEST_ASSERT_NOT_NULL(ut_params->digest, "no room to append digest");
1350
1351         /* Setup Cipher Parameters */
1352         ut_params->cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
1353         ut_params->cipher_xform.next = &ut_params->auth_xform;
1354
1355         ut_params->cipher_xform.cipher.algo = RTE_CRYPTO_CIPHER_AES_CBC;
1356         ut_params->cipher_xform.cipher.op = RTE_CRYPTO_CIPHER_OP_ENCRYPT;
1357         ut_params->cipher_xform.cipher.key.data = aes_cbc_key;
1358         ut_params->cipher_xform.cipher.key.length = CIPHER_KEY_LENGTH_AES_CBC;
1359         ut_params->cipher_xform.cipher.iv.offset = IV_OFFSET;
1360         ut_params->cipher_xform.cipher.iv.length = CIPHER_IV_LENGTH_AES_CBC;
1361
1362         /* Setup HMAC Parameters */
1363         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
1364
1365         ut_params->auth_xform.next = NULL;
1366
1367         ut_params->auth_xform.auth.op = RTE_CRYPTO_AUTH_OP_GENERATE;
1368         ut_params->auth_xform.auth.algo = RTE_CRYPTO_AUTH_SHA1_HMAC;
1369         ut_params->auth_xform.auth.key.length = HMAC_KEY_LENGTH_SHA1;
1370         ut_params->auth_xform.auth.key.data = hmac_sha1_key;
1371         ut_params->auth_xform.auth.digest_length = DIGEST_BYTE_LENGTH_SHA1;
1372
1373         ut_params->sess = rte_cryptodev_sym_session_create(
1374                         ts_params->session_mpool);
1375
1376         /* Create crypto session*/
1377         rte_cryptodev_sym_session_init(ts_params->valid_devs[0],
1378                         ut_params->sess, &ut_params->cipher_xform,
1379                         ts_params->session_priv_mpool);
1380         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
1381
1382         /* Generate crypto op data structure */
1383         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
1384                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
1385         TEST_ASSERT_NOT_NULL(ut_params->op,
1386                         "Failed to allocate symmetric crypto operation struct");
1387
1388         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
1389
1390         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
1391
1392         /* set crypto operation source mbuf */
1393         sym_op->m_src = ut_params->ibuf;
1394
1395         /* Set crypto operation authentication parameters */
1396         sym_op->auth.digest.data = ut_params->digest;
1397         sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(
1398                         ut_params->ibuf, QUOTE_512_BYTES);
1399
1400         sym_op->auth.data.offset = 0;
1401         sym_op->auth.data.length = QUOTE_512_BYTES;
1402
1403         /* Copy IV at the end of the crypto operation */
1404         rte_memcpy(rte_crypto_op_ctod_offset(ut_params->op, uint8_t *, IV_OFFSET),
1405                         aes_cbc_iv, CIPHER_IV_LENGTH_AES_CBC);
1406
1407         /* Set crypto operation cipher parameters */
1408         sym_op->cipher.data.offset = 0;
1409         sym_op->cipher.data.length = QUOTE_512_BYTES;
1410
1411         /* Process crypto operation */
1412         TEST_ASSERT_NOT_NULL(process_crypto_request(ts_params->valid_devs[0],
1413                         ut_params->op), "failed to process sym crypto op");
1414
1415         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
1416                         "crypto op processing failed");
1417
1418         /* Validate obuf */
1419         uint8_t *ciphertext = rte_pktmbuf_mtod(ut_params->op->sym->m_src,
1420                         uint8_t *);
1421
1422         TEST_ASSERT_BUFFERS_ARE_EQUAL(ciphertext,
1423                         catch_22_quote_2_512_bytes_AES_CBC_ciphertext,
1424                         QUOTE_512_BYTES,
1425                         "ciphertext data not as expected");
1426
1427         uint8_t *digest = ciphertext + QUOTE_512_BYTES;
1428
1429         TEST_ASSERT_BUFFERS_ARE_EQUAL(digest,
1430                         catch_22_quote_2_512_bytes_AES_CBC_HMAC_SHA1_digest,
1431                         gbl_driver_id == rte_cryptodev_driver_id_get(
1432                                         RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD)) ?
1433                                         TRUNCATED_DIGEST_BYTE_LENGTH_SHA1 :
1434                                         DIGEST_BYTE_LENGTH_SHA1,
1435                         "Generated digest data not as expected");
1436
1437         return TEST_SUCCESS;
1438 }
1439
1440 /* ***** AES-CBC / HMAC-SHA512 Hash Tests ***** */
1441
1442 #define HMAC_KEY_LENGTH_SHA512  (DIGEST_BYTE_LENGTH_SHA512)
1443
1444 static uint8_t hmac_sha512_key[] = {
1445         0x42, 0x1a, 0x7d, 0x3d, 0xf5, 0x82, 0x80, 0xf1,
1446         0xF1, 0x35, 0x5C, 0x3B, 0xDD, 0x9A, 0x65, 0xBA,
1447         0x58, 0x34, 0x85, 0x65, 0x1C, 0x42, 0x50, 0x76,
1448         0x9a, 0xaf, 0x88, 0x1b, 0xb6, 0x8f, 0xf8, 0x60,
1449         0xa2, 0x5a, 0x7f, 0x3f, 0xf4, 0x72, 0x70, 0xf1,
1450         0xF5, 0x35, 0x4C, 0x3B, 0xDD, 0x90, 0x65, 0xB0,
1451         0x47, 0x3a, 0x75, 0x61, 0x5C, 0xa2, 0x10, 0x76,
1452         0x9a, 0xaf, 0x77, 0x5b, 0xb6, 0x7f, 0xf7, 0x60 };
1453
1454 static const uint8_t catch_22_quote_2_512_bytes_AES_CBC_HMAC_SHA512_digest[] = {
1455         0x5D, 0x54, 0x66, 0xC1, 0x6E, 0xBC, 0x04, 0xB8,
1456         0x46, 0xB8, 0x08, 0x6E, 0xE0, 0xF0, 0x43, 0x48,
1457         0x37, 0x96, 0x9C, 0xC6, 0x9C, 0xC2, 0x1E, 0xE8,
1458         0xF2, 0x0C, 0x0B, 0xEF, 0x86, 0xA2, 0xE3, 0x70,
1459         0x95, 0xC8, 0xB3, 0x06, 0x47, 0xA9, 0x90, 0xE8,
1460         0xA0, 0xC6, 0x72, 0x69, 0x05, 0xC0, 0x0D, 0x0E,
1461         0x21, 0x96, 0x65, 0x93, 0x74, 0x43, 0x2A, 0x1D,
1462         0x2E, 0xBF, 0xC2, 0xC2, 0xEE, 0xCC, 0x2F, 0x0A };
1463
1464
1465
1466 static int
1467 test_AES_CBC_HMAC_SHA512_decrypt_create_session_params(
1468                 struct crypto_unittest_params *ut_params,
1469                 uint8_t *cipher_key,
1470                 uint8_t *hmac_key);
1471
1472 static int
1473 test_AES_CBC_HMAC_SHA512_decrypt_perform(struct rte_cryptodev_sym_session *sess,
1474                 struct crypto_unittest_params *ut_params,
1475                 struct crypto_testsuite_params *ts_params,
1476                 const uint8_t *cipher,
1477                 const uint8_t *digest,
1478                 const uint8_t *iv);
1479
1480
1481 static int
1482 test_AES_CBC_HMAC_SHA512_decrypt_create_session_params(
1483                 struct crypto_unittest_params *ut_params,
1484                 uint8_t *cipher_key,
1485                 uint8_t *hmac_key)
1486 {
1487
1488         /* Setup Cipher Parameters */
1489         ut_params->cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
1490         ut_params->cipher_xform.next = NULL;
1491
1492         ut_params->cipher_xform.cipher.algo = RTE_CRYPTO_CIPHER_AES_CBC;
1493         ut_params->cipher_xform.cipher.op = RTE_CRYPTO_CIPHER_OP_DECRYPT;
1494         ut_params->cipher_xform.cipher.key.data = cipher_key;
1495         ut_params->cipher_xform.cipher.key.length = CIPHER_KEY_LENGTH_AES_CBC;
1496         ut_params->cipher_xform.cipher.iv.offset = IV_OFFSET;
1497         ut_params->cipher_xform.cipher.iv.length = CIPHER_IV_LENGTH_AES_CBC;
1498
1499         /* Setup HMAC Parameters */
1500         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
1501         ut_params->auth_xform.next = &ut_params->cipher_xform;
1502
1503         ut_params->auth_xform.auth.op = RTE_CRYPTO_AUTH_OP_VERIFY;
1504         ut_params->auth_xform.auth.algo = RTE_CRYPTO_AUTH_SHA512_HMAC;
1505         ut_params->auth_xform.auth.key.data = hmac_key;
1506         ut_params->auth_xform.auth.key.length = HMAC_KEY_LENGTH_SHA512;
1507         ut_params->auth_xform.auth.digest_length = DIGEST_BYTE_LENGTH_SHA512;
1508
1509         return TEST_SUCCESS;
1510 }
1511
1512
1513 static int
1514 test_AES_CBC_HMAC_SHA512_decrypt_perform(struct rte_cryptodev_sym_session *sess,
1515                 struct crypto_unittest_params *ut_params,
1516                 struct crypto_testsuite_params *ts_params,
1517                 const uint8_t *cipher,
1518                 const uint8_t *digest,
1519                 const uint8_t *iv)
1520 {
1521         /* Generate test mbuf data and digest */
1522         ut_params->ibuf = setup_test_string(ts_params->mbuf_pool,
1523                         (const char *)
1524                         cipher,
1525                         QUOTE_512_BYTES, 0);
1526
1527         ut_params->digest = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
1528                         DIGEST_BYTE_LENGTH_SHA512);
1529         TEST_ASSERT_NOT_NULL(ut_params->digest, "no room to append digest");
1530
1531         rte_memcpy(ut_params->digest,
1532                         digest,
1533                         DIGEST_BYTE_LENGTH_SHA512);
1534
1535         /* Generate Crypto op data structure */
1536         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
1537                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
1538         TEST_ASSERT_NOT_NULL(ut_params->op,
1539                         "Failed to allocate symmetric crypto operation struct");
1540
1541         rte_crypto_op_attach_sym_session(ut_params->op, sess);
1542
1543         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
1544
1545         /* set crypto operation source mbuf */
1546         sym_op->m_src = ut_params->ibuf;
1547
1548         sym_op->auth.digest.data = ut_params->digest;
1549         sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(
1550                         ut_params->ibuf, QUOTE_512_BYTES);
1551
1552         sym_op->auth.data.offset = 0;
1553         sym_op->auth.data.length = QUOTE_512_BYTES;
1554
1555         /* Copy IV at the end of the crypto operation */
1556         rte_memcpy(rte_crypto_op_ctod_offset(ut_params->op, uint8_t *, IV_OFFSET),
1557                         iv, CIPHER_IV_LENGTH_AES_CBC);
1558
1559         sym_op->cipher.data.offset = 0;
1560         sym_op->cipher.data.length = QUOTE_512_BYTES;
1561
1562         /* Process crypto operation */
1563         TEST_ASSERT_NOT_NULL(process_crypto_request(ts_params->valid_devs[0],
1564                         ut_params->op), "failed to process sym crypto op");
1565
1566         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
1567                         "crypto op processing failed");
1568
1569         ut_params->obuf = ut_params->op->sym->m_src;
1570
1571         /* Validate obuf */
1572         TEST_ASSERT_BUFFERS_ARE_EQUAL(
1573                         rte_pktmbuf_mtod(ut_params->obuf, uint8_t *),
1574                         catch_22_quote,
1575                         QUOTE_512_BYTES,
1576                         "Plaintext data not as expected");
1577
1578         /* Validate obuf */
1579         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
1580                         "Digest verification failed");
1581
1582         return TEST_SUCCESS;
1583 }
1584
1585 static int
1586 test_AES_cipheronly_mb_all(void)
1587 {
1588         struct crypto_testsuite_params *ts_params = &testsuite_params;
1589         int status;
1590
1591         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1592                 ts_params->op_mpool,
1593                 ts_params->session_mpool, ts_params->session_priv_mpool,
1594                 ts_params->valid_devs[0],
1595                 rte_cryptodev_driver_id_get(
1596                 RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD)),
1597                 BLKCIPHER_AES_CIPHERONLY_TYPE);
1598
1599         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1600
1601         return TEST_SUCCESS;
1602 }
1603
1604 static int
1605 test_AES_docsis_mb_all(void)
1606 {
1607         struct crypto_testsuite_params *ts_params = &testsuite_params;
1608         int status;
1609
1610         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1611                 ts_params->op_mpool,
1612                 ts_params->session_mpool, ts_params->session_priv_mpool,
1613                 ts_params->valid_devs[0],
1614                 rte_cryptodev_driver_id_get(
1615                 RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD)),
1616                 BLKCIPHER_AES_DOCSIS_TYPE);
1617
1618         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1619
1620         return TEST_SUCCESS;
1621 }
1622
1623 static int
1624 test_AES_docsis_qat_all(void)
1625 {
1626         struct crypto_testsuite_params *ts_params = &testsuite_params;
1627         int status;
1628
1629         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1630                 ts_params->op_mpool,
1631                 ts_params->session_mpool, ts_params->session_priv_mpool,
1632                 ts_params->valid_devs[0],
1633                 rte_cryptodev_driver_id_get(
1634                 RTE_STR(CRYPTODEV_NAME_QAT_SYM_PMD)),
1635                 BLKCIPHER_AES_DOCSIS_TYPE);
1636
1637         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1638
1639         return TEST_SUCCESS;
1640 }
1641
1642 static int
1643 test_DES_docsis_qat_all(void)
1644 {
1645         struct crypto_testsuite_params *ts_params = &testsuite_params;
1646         int status;
1647
1648         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1649                 ts_params->op_mpool,
1650                 ts_params->session_mpool, ts_params->session_priv_mpool,
1651                 ts_params->valid_devs[0],
1652                 rte_cryptodev_driver_id_get(
1653                 RTE_STR(CRYPTODEV_NAME_QAT_SYM_PMD)),
1654                 BLKCIPHER_DES_DOCSIS_TYPE);
1655
1656         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1657
1658         return TEST_SUCCESS;
1659 }
1660
1661 static int
1662 test_authonly_mb_all(void)
1663 {
1664         struct crypto_testsuite_params *ts_params = &testsuite_params;
1665         int status;
1666
1667         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1668                 ts_params->op_mpool,
1669                 ts_params->session_mpool, ts_params->session_priv_mpool,
1670                 ts_params->valid_devs[0],
1671                 rte_cryptodev_driver_id_get(
1672                 RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD)),
1673                 BLKCIPHER_AUTHONLY_TYPE);
1674
1675         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1676
1677         return TEST_SUCCESS;
1678 }
1679
1680 static int
1681 test_authonly_qat_all(void)
1682 {
1683         struct crypto_testsuite_params *ts_params = &testsuite_params;
1684         int status;
1685
1686         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1687                 ts_params->op_mpool,
1688                 ts_params->session_mpool, ts_params->session_priv_mpool,
1689                 ts_params->valid_devs[0],
1690                 rte_cryptodev_driver_id_get(
1691                 RTE_STR(CRYPTODEV_NAME_QAT_SYM_PMD)),
1692                 BLKCIPHER_AUTHONLY_TYPE);
1693
1694         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1695
1696         return TEST_SUCCESS;
1697 }
1698
1699 static int
1700 test_AES_chain_null_all(void)
1701 {
1702         struct crypto_testsuite_params *ts_params = &testsuite_params;
1703         int status;
1704
1705         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1706                 ts_params->op_mpool,
1707                 ts_params->session_mpool, ts_params->session_priv_mpool,
1708                 ts_params->valid_devs[0],
1709                 rte_cryptodev_driver_id_get(
1710                 RTE_STR(CRYPTODEV_NAME_NULL_PMD)),
1711                 BLKCIPHER_AES_CHAIN_TYPE);
1712
1713         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1714
1715         return TEST_SUCCESS;
1716 }
1717
1718 static int
1719 test_AES_cipheronly_null_all(void)
1720 {
1721         struct crypto_testsuite_params *ts_params = &testsuite_params;
1722         int status;
1723
1724         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1725                 ts_params->op_mpool,
1726                 ts_params->session_mpool, ts_params->session_priv_mpool,
1727                 ts_params->valid_devs[0],
1728                 rte_cryptodev_driver_id_get(
1729                 RTE_STR(CRYPTODEV_NAME_NULL_PMD)),
1730                 BLKCIPHER_AES_CIPHERONLY_TYPE);
1731
1732         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1733
1734         return TEST_SUCCESS;
1735 }
1736
1737 static int
1738 test_authonly_null_all(void)
1739 {
1740         struct crypto_testsuite_params *ts_params = &testsuite_params;
1741         int status;
1742
1743         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1744                 ts_params->op_mpool,
1745                 ts_params->session_mpool, ts_params->session_priv_mpool,
1746                 ts_params->valid_devs[0],
1747                 rte_cryptodev_driver_id_get(
1748                 RTE_STR(CRYPTODEV_NAME_NULL_PMD)),
1749                 BLKCIPHER_AUTHONLY_TYPE);
1750
1751         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1752
1753         return TEST_SUCCESS;
1754 }
1755
1756 static int
1757 test_AES_chain_mb_all(void)
1758 {
1759         struct crypto_testsuite_params *ts_params = &testsuite_params;
1760         int status;
1761
1762         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1763                 ts_params->op_mpool,
1764                 ts_params->session_mpool, ts_params->session_priv_mpool,
1765                 ts_params->valid_devs[0],
1766                 rte_cryptodev_driver_id_get(
1767                 RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD)),
1768                 BLKCIPHER_AES_CHAIN_TYPE);
1769
1770         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1771
1772         return TEST_SUCCESS;
1773 }
1774
1775 #ifdef RTE_LIBRTE_PMD_CRYPTO_SCHEDULER
1776
1777 static int
1778 test_AES_cipheronly_scheduler_all(void)
1779 {
1780         struct crypto_testsuite_params *ts_params = &testsuite_params;
1781         int status;
1782
1783         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1784                 ts_params->op_mpool,
1785                 ts_params->session_mpool, ts_params->session_priv_mpool,
1786                 ts_params->valid_devs[0],
1787                 rte_cryptodev_driver_id_get(
1788                 RTE_STR(CRYPTODEV_NAME_SCHEDULER_PMD)),
1789                 BLKCIPHER_AES_CIPHERONLY_TYPE);
1790
1791         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1792
1793         return TEST_SUCCESS;
1794 }
1795
1796 static int
1797 test_AES_chain_scheduler_all(void)
1798 {
1799         struct crypto_testsuite_params *ts_params = &testsuite_params;
1800         int status;
1801
1802         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1803                 ts_params->op_mpool,
1804                 ts_params->session_mpool, ts_params->session_priv_mpool,
1805                 ts_params->valid_devs[0],
1806                 rte_cryptodev_driver_id_get(
1807                 RTE_STR(CRYPTODEV_NAME_SCHEDULER_PMD)),
1808                 BLKCIPHER_AES_CHAIN_TYPE);
1809
1810         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1811
1812         return TEST_SUCCESS;
1813 }
1814
1815 static int
1816 test_authonly_scheduler_all(void)
1817 {
1818         struct crypto_testsuite_params *ts_params = &testsuite_params;
1819         int status;
1820
1821         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1822                 ts_params->op_mpool,
1823                 ts_params->session_mpool, ts_params->session_priv_mpool,
1824                 ts_params->valid_devs[0],
1825                 rte_cryptodev_driver_id_get(
1826                 RTE_STR(CRYPTODEV_NAME_SCHEDULER_PMD)),
1827                 BLKCIPHER_AUTHONLY_TYPE);
1828
1829         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1830
1831         return TEST_SUCCESS;
1832 }
1833
1834 #endif /* RTE_LIBRTE_PMD_CRYPTO_SCHEDULER */
1835
1836 static int
1837 test_AES_chain_openssl_all(void)
1838 {
1839         struct crypto_testsuite_params *ts_params = &testsuite_params;
1840         int status;
1841
1842         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1843                 ts_params->op_mpool,
1844                 ts_params->session_mpool, ts_params->session_priv_mpool,
1845                 ts_params->valid_devs[0],
1846                 rte_cryptodev_driver_id_get(
1847                 RTE_STR(CRYPTODEV_NAME_OPENSSL_PMD)),
1848                 BLKCIPHER_AES_CHAIN_TYPE);
1849
1850         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1851
1852         return TEST_SUCCESS;
1853 }
1854
1855 static int
1856 test_AES_cipheronly_openssl_all(void)
1857 {
1858         struct crypto_testsuite_params *ts_params = &testsuite_params;
1859         int status;
1860
1861         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1862                 ts_params->op_mpool,
1863                 ts_params->session_mpool, ts_params->session_priv_mpool,
1864                 ts_params->valid_devs[0],
1865                 rte_cryptodev_driver_id_get(
1866                 RTE_STR(CRYPTODEV_NAME_OPENSSL_PMD)),
1867                 BLKCIPHER_AES_CIPHERONLY_TYPE);
1868
1869         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1870
1871         return TEST_SUCCESS;
1872 }
1873
1874 static int
1875 test_AES_chain_ccp_all(void)
1876 {
1877         struct crypto_testsuite_params *ts_params = &testsuite_params;
1878         int status;
1879
1880         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1881                 ts_params->op_mpool,
1882                 ts_params->session_mpool, ts_params->session_priv_mpool,
1883                 ts_params->valid_devs[0],
1884                 rte_cryptodev_driver_id_get(
1885                 RTE_STR(CRYPTODEV_NAME_CCP_PMD)),
1886                 BLKCIPHER_AES_CHAIN_TYPE);
1887
1888         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1889
1890         return TEST_SUCCESS;
1891 }
1892
1893 static int
1894 test_AES_cipheronly_ccp_all(void)
1895 {
1896         struct crypto_testsuite_params *ts_params = &testsuite_params;
1897         int status;
1898
1899         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1900                 ts_params->op_mpool,
1901                 ts_params->session_mpool, ts_params->session_priv_mpool,
1902                 ts_params->valid_devs[0],
1903                 rte_cryptodev_driver_id_get(
1904                 RTE_STR(CRYPTODEV_NAME_CCP_PMD)),
1905                 BLKCIPHER_AES_CIPHERONLY_TYPE);
1906
1907         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1908
1909         return TEST_SUCCESS;
1910 }
1911
1912 static int
1913 test_AES_chain_qat_all(void)
1914 {
1915         struct crypto_testsuite_params *ts_params = &testsuite_params;
1916         int status;
1917
1918         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1919                 ts_params->op_mpool,
1920                 ts_params->session_mpool, ts_params->session_priv_mpool,
1921                 ts_params->valid_devs[0],
1922                 rte_cryptodev_driver_id_get(
1923                 RTE_STR(CRYPTODEV_NAME_QAT_SYM_PMD)),
1924                 BLKCIPHER_AES_CHAIN_TYPE);
1925
1926         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1927
1928         return TEST_SUCCESS;
1929 }
1930
1931 static int
1932 test_AES_cipheronly_qat_all(void)
1933 {
1934         struct crypto_testsuite_params *ts_params = &testsuite_params;
1935         int status;
1936
1937         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1938                 ts_params->op_mpool,
1939                 ts_params->session_mpool, ts_params->session_priv_mpool,
1940                 ts_params->valid_devs[0],
1941                 rte_cryptodev_driver_id_get(
1942                 RTE_STR(CRYPTODEV_NAME_QAT_SYM_PMD)),
1943                 BLKCIPHER_AES_CIPHERONLY_TYPE);
1944
1945         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1946
1947         return TEST_SUCCESS;
1948 }
1949
1950 static int
1951 test_AES_cipheronly_virtio_all(void)
1952 {
1953         struct crypto_testsuite_params *ts_params = &testsuite_params;
1954         int status;
1955
1956         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1957                 ts_params->op_mpool,
1958                 ts_params->session_mpool, ts_params->session_priv_mpool,
1959                 ts_params->valid_devs[0],
1960                 rte_cryptodev_driver_id_get(
1961                 RTE_STR(CRYPTODEV_NAME_VIRTIO_PMD)),
1962                 BLKCIPHER_AES_CIPHERONLY_TYPE);
1963
1964         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1965
1966         return TEST_SUCCESS;
1967 }
1968
1969 static int
1970 test_AES_chain_caam_jr_all(void)
1971 {
1972         struct crypto_testsuite_params *ts_params = &testsuite_params;
1973         int status;
1974
1975         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1976                 ts_params->op_mpool,
1977                 ts_params->session_mpool, ts_params->session_priv_mpool,
1978                 ts_params->valid_devs[0],
1979                 rte_cryptodev_driver_id_get(
1980                 RTE_STR(CRYPTODEV_NAME_CAAM_JR_PMD)),
1981                 BLKCIPHER_AES_CHAIN_TYPE);
1982
1983         TEST_ASSERT_EQUAL(status, 0, "Test failed");
1984
1985         return TEST_SUCCESS;
1986 }
1987
1988 static int
1989 test_AES_cipheronly_caam_jr_all(void)
1990 {
1991         struct crypto_testsuite_params *ts_params = &testsuite_params;
1992         int status;
1993
1994         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
1995                 ts_params->op_mpool,
1996                 ts_params->session_mpool, ts_params->session_priv_mpool,
1997                 ts_params->valid_devs[0],
1998                 rte_cryptodev_driver_id_get(
1999                 RTE_STR(CRYPTODEV_NAME_CAAM_JR_PMD)),
2000                 BLKCIPHER_AES_CIPHERONLY_TYPE);
2001
2002         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2003
2004         return TEST_SUCCESS;
2005 }
2006
2007 static int
2008 test_authonly_caam_jr_all(void)
2009 {
2010         struct crypto_testsuite_params *ts_params = &testsuite_params;
2011         int status;
2012
2013         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2014                 ts_params->op_mpool,
2015                 ts_params->session_mpool, ts_params->session_priv_mpool,
2016                 ts_params->valid_devs[0],
2017                 rte_cryptodev_driver_id_get(
2018                 RTE_STR(CRYPTODEV_NAME_CAAM_JR_PMD)),
2019                 BLKCIPHER_AUTHONLY_TYPE);
2020
2021         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2022
2023         return TEST_SUCCESS;
2024 }
2025
2026
2027 static int
2028 test_AES_chain_dpaa_sec_all(void)
2029 {
2030         struct crypto_testsuite_params *ts_params = &testsuite_params;
2031         int status;
2032
2033         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2034                 ts_params->op_mpool,
2035                 ts_params->session_mpool, ts_params->session_priv_mpool,
2036                 ts_params->valid_devs[0],
2037                 rte_cryptodev_driver_id_get(
2038                 RTE_STR(CRYPTODEV_NAME_DPAA_SEC_PMD)),
2039                 BLKCIPHER_AES_CHAIN_TYPE);
2040
2041         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2042
2043         return TEST_SUCCESS;
2044 }
2045
2046 static int
2047 test_AES_cipheronly_dpaa_sec_all(void)
2048 {
2049         struct crypto_testsuite_params *ts_params = &testsuite_params;
2050         int status;
2051
2052         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2053                 ts_params->op_mpool,
2054                 ts_params->session_mpool, ts_params->session_priv_mpool,
2055                 ts_params->valid_devs[0],
2056                 rte_cryptodev_driver_id_get(
2057                 RTE_STR(CRYPTODEV_NAME_DPAA_SEC_PMD)),
2058                 BLKCIPHER_AES_CIPHERONLY_TYPE);
2059
2060         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2061
2062         return TEST_SUCCESS;
2063 }
2064
2065 static int
2066 test_authonly_dpaa_sec_all(void)
2067 {
2068         struct crypto_testsuite_params *ts_params = &testsuite_params;
2069         int status;
2070
2071         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2072                 ts_params->op_mpool,
2073                 ts_params->session_mpool, ts_params->session_priv_mpool,
2074                 ts_params->valid_devs[0],
2075                 rte_cryptodev_driver_id_get(
2076                 RTE_STR(CRYPTODEV_NAME_DPAA_SEC_PMD)),
2077                 BLKCIPHER_AUTHONLY_TYPE);
2078
2079         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2080
2081         return TEST_SUCCESS;
2082 }
2083
2084 static int
2085 test_AES_chain_dpaa2_sec_all(void)
2086 {
2087         struct crypto_testsuite_params *ts_params = &testsuite_params;
2088         int status;
2089
2090         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2091                 ts_params->op_mpool,
2092                 ts_params->session_mpool, ts_params->session_priv_mpool,
2093                 ts_params->valid_devs[0],
2094                 rte_cryptodev_driver_id_get(
2095                 RTE_STR(CRYPTODEV_NAME_DPAA2_SEC_PMD)),
2096                 BLKCIPHER_AES_CHAIN_TYPE);
2097
2098         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2099
2100         return TEST_SUCCESS;
2101 }
2102
2103 static int
2104 test_AES_cipheronly_dpaa2_sec_all(void)
2105 {
2106         struct crypto_testsuite_params *ts_params = &testsuite_params;
2107         int status;
2108
2109         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2110                 ts_params->op_mpool,
2111                 ts_params->session_mpool, ts_params->session_priv_mpool,
2112                 ts_params->valid_devs[0],
2113                 rte_cryptodev_driver_id_get(
2114                 RTE_STR(CRYPTODEV_NAME_DPAA2_SEC_PMD)),
2115                 BLKCIPHER_AES_CIPHERONLY_TYPE);
2116
2117         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2118
2119         return TEST_SUCCESS;
2120 }
2121
2122 static int
2123 test_authonly_dpaa2_sec_all(void)
2124 {
2125         struct crypto_testsuite_params *ts_params = &testsuite_params;
2126         int status;
2127
2128         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2129                 ts_params->op_mpool,
2130                 ts_params->session_mpool, ts_params->session_priv_mpool,
2131                 ts_params->valid_devs[0],
2132                 rte_cryptodev_driver_id_get(
2133                 RTE_STR(CRYPTODEV_NAME_DPAA2_SEC_PMD)),
2134                 BLKCIPHER_AUTHONLY_TYPE);
2135
2136         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2137
2138         return TEST_SUCCESS;
2139 }
2140
2141 static int
2142 test_authonly_openssl_all(void)
2143 {
2144         struct crypto_testsuite_params *ts_params = &testsuite_params;
2145         int status;
2146
2147         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2148                 ts_params->op_mpool,
2149                 ts_params->session_mpool, ts_params->session_priv_mpool,
2150                 ts_params->valid_devs[0],
2151                 rte_cryptodev_driver_id_get(
2152                 RTE_STR(CRYPTODEV_NAME_OPENSSL_PMD)),
2153                 BLKCIPHER_AUTHONLY_TYPE);
2154
2155         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2156
2157         return TEST_SUCCESS;
2158 }
2159
2160 static int
2161 test_authonly_ccp_all(void)
2162 {
2163         struct crypto_testsuite_params *ts_params = &testsuite_params;
2164         int status;
2165
2166         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2167                 ts_params->op_mpool,
2168                 ts_params->session_mpool, ts_params->session_priv_mpool,
2169                 ts_params->valid_devs[0],
2170                 rte_cryptodev_driver_id_get(
2171                 RTE_STR(CRYPTODEV_NAME_CCP_PMD)),
2172                 BLKCIPHER_AUTHONLY_TYPE);
2173
2174         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2175
2176         return TEST_SUCCESS;
2177 }
2178
2179 static int
2180 test_AES_chain_armv8_all(void)
2181 {
2182         struct crypto_testsuite_params *ts_params = &testsuite_params;
2183         int status;
2184
2185         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2186                 ts_params->op_mpool,
2187                 ts_params->session_mpool, ts_params->session_priv_mpool,
2188                 ts_params->valid_devs[0],
2189                 rte_cryptodev_driver_id_get(
2190                 RTE_STR(CRYPTODEV_NAME_ARMV8_PMD)),
2191                 BLKCIPHER_AES_CHAIN_TYPE);
2192
2193         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2194
2195         return TEST_SUCCESS;
2196 }
2197
2198 static int
2199 test_AES_chain_mrvl_all(void)
2200 {
2201         struct crypto_testsuite_params *ts_params = &testsuite_params;
2202         int status;
2203
2204         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2205                 ts_params->op_mpool,
2206                 ts_params->session_mpool, ts_params->session_priv_mpool,
2207                 ts_params->valid_devs[0],
2208                 rte_cryptodev_driver_id_get(
2209                 RTE_STR(CRYPTODEV_NAME_MVSAM_PMD)),
2210                 BLKCIPHER_AES_CHAIN_TYPE);
2211
2212         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2213
2214         return TEST_SUCCESS;
2215 }
2216
2217 static int
2218 test_AES_cipheronly_mrvl_all(void)
2219 {
2220         struct crypto_testsuite_params *ts_params = &testsuite_params;
2221         int status;
2222
2223         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2224                 ts_params->op_mpool,
2225                 ts_params->session_mpool, ts_params->session_priv_mpool,
2226                 ts_params->valid_devs[0],
2227                 rte_cryptodev_driver_id_get(
2228                 RTE_STR(CRYPTODEV_NAME_MVSAM_PMD)),
2229                 BLKCIPHER_AES_CIPHERONLY_TYPE);
2230
2231         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2232
2233         return TEST_SUCCESS;
2234 }
2235
2236 static int
2237 test_authonly_mrvl_all(void)
2238 {
2239         struct crypto_testsuite_params *ts_params = &testsuite_params;
2240         int status;
2241
2242         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2243                 ts_params->op_mpool,
2244                 ts_params->session_mpool, ts_params->session_priv_mpool,
2245                 ts_params->valid_devs[0],
2246                 rte_cryptodev_driver_id_get(
2247                 RTE_STR(CRYPTODEV_NAME_MVSAM_PMD)),
2248                 BLKCIPHER_AUTHONLY_TYPE);
2249
2250         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2251
2252         return TEST_SUCCESS;
2253 }
2254
2255 static int
2256 test_3DES_chain_mrvl_all(void)
2257 {
2258         struct crypto_testsuite_params *ts_params = &testsuite_params;
2259         int status;
2260
2261         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2262                 ts_params->op_mpool,
2263                 ts_params->session_mpool, ts_params->session_priv_mpool,
2264                 ts_params->valid_devs[0],
2265                 rte_cryptodev_driver_id_get(
2266                 RTE_STR(CRYPTODEV_NAME_MVSAM_PMD)),
2267                 BLKCIPHER_3DES_CHAIN_TYPE);
2268
2269         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2270
2271         return TEST_SUCCESS;
2272 }
2273
2274 static int
2275 test_3DES_cipheronly_mrvl_all(void)
2276 {
2277         struct crypto_testsuite_params *ts_params = &testsuite_params;
2278         int status;
2279
2280         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2281                 ts_params->op_mpool,
2282                 ts_params->session_mpool, ts_params->session_priv_mpool,
2283                 ts_params->valid_devs[0],
2284                 rte_cryptodev_driver_id_get(
2285                 RTE_STR(CRYPTODEV_NAME_MVSAM_PMD)),
2286                 BLKCIPHER_3DES_CIPHERONLY_TYPE);
2287
2288         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2289
2290         return TEST_SUCCESS;
2291 }
2292
2293 static int
2294 test_AES_chain_octeontx_all(void)
2295 {
2296         struct crypto_testsuite_params *ts_params = &testsuite_params;
2297         int status;
2298
2299         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2300                 ts_params->op_mpool, ts_params->session_mpool,
2301                 ts_params->session_priv_mpool,
2302                 ts_params->valid_devs[0],
2303                 rte_cryptodev_driver_id_get(
2304                 RTE_STR(CRYPTODEV_NAME_OCTEONTX_SYM_PMD)),
2305                 BLKCIPHER_AES_CHAIN_TYPE);
2306
2307         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2308
2309         return TEST_SUCCESS;
2310 }
2311
2312 static int
2313 test_AES_cipheronly_octeontx_all(void)
2314 {
2315         struct crypto_testsuite_params *ts_params = &testsuite_params;
2316         int status;
2317
2318         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2319                 ts_params->op_mpool, ts_params->session_mpool,
2320                 ts_params->session_priv_mpool,
2321                 ts_params->valid_devs[0],
2322                 rte_cryptodev_driver_id_get(
2323                 RTE_STR(CRYPTODEV_NAME_OCTEONTX_SYM_PMD)),
2324                 BLKCIPHER_AES_CIPHERONLY_TYPE);
2325
2326         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2327
2328         return TEST_SUCCESS;
2329 }
2330
2331 static int
2332 test_3DES_chain_octeontx_all(void)
2333 {
2334         struct crypto_testsuite_params *ts_params = &testsuite_params;
2335         int status;
2336
2337         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2338                 ts_params->op_mpool, ts_params->session_mpool,
2339                 ts_params->session_priv_mpool,
2340                 ts_params->valid_devs[0],
2341                 rte_cryptodev_driver_id_get(
2342                 RTE_STR(CRYPTODEV_NAME_OCTEONTX_SYM_PMD)),
2343                 BLKCIPHER_3DES_CHAIN_TYPE);
2344
2345         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2346
2347         return TEST_SUCCESS;
2348 }
2349
2350 static int
2351 test_3DES_cipheronly_octeontx_all(void)
2352 {
2353         struct crypto_testsuite_params *ts_params = &testsuite_params;
2354         int status;
2355
2356         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2357                 ts_params->op_mpool, ts_params->session_mpool,
2358                 ts_params->session_priv_mpool,
2359                 ts_params->valid_devs[0],
2360                 rte_cryptodev_driver_id_get(
2361                 RTE_STR(CRYPTODEV_NAME_OCTEONTX_SYM_PMD)),
2362                 BLKCIPHER_3DES_CIPHERONLY_TYPE);
2363
2364         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2365
2366         return TEST_SUCCESS;
2367 }
2368
2369 static int
2370 test_authonly_octeontx_all(void)
2371 {
2372         struct crypto_testsuite_params *ts_params = &testsuite_params;
2373         int status;
2374
2375         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
2376                 ts_params->op_mpool, ts_params->session_mpool,
2377                 ts_params->session_priv_mpool,
2378                 ts_params->valid_devs[0],
2379                 rte_cryptodev_driver_id_get(
2380                 RTE_STR(CRYPTODEV_NAME_OCTEONTX_SYM_PMD)),
2381                 BLKCIPHER_AUTHONLY_TYPE);
2382
2383         TEST_ASSERT_EQUAL(status, 0, "Test failed");
2384
2385         return TEST_SUCCESS;
2386 }
2387
2388 /* ***** SNOW 3G Tests ***** */
2389 static int
2390 create_wireless_algo_hash_session(uint8_t dev_id,
2391         const uint8_t *key, const uint8_t key_len,
2392         const uint8_t iv_len, const uint8_t auth_len,
2393         enum rte_crypto_auth_operation op,
2394         enum rte_crypto_auth_algorithm algo)
2395 {
2396         uint8_t hash_key[key_len];
2397         int status;
2398
2399         struct crypto_testsuite_params *ts_params = &testsuite_params;
2400         struct crypto_unittest_params *ut_params = &unittest_params;
2401
2402         memcpy(hash_key, key, key_len);
2403
2404         debug_hexdump(stdout, "key:", key, key_len);
2405
2406         /* Setup Authentication Parameters */
2407         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
2408         ut_params->auth_xform.next = NULL;
2409
2410         ut_params->auth_xform.auth.op = op;
2411         ut_params->auth_xform.auth.algo = algo;
2412         ut_params->auth_xform.auth.key.length = key_len;
2413         ut_params->auth_xform.auth.key.data = hash_key;
2414         ut_params->auth_xform.auth.digest_length = auth_len;
2415         ut_params->auth_xform.auth.iv.offset = IV_OFFSET;
2416         ut_params->auth_xform.auth.iv.length = iv_len;
2417         ut_params->sess = rte_cryptodev_sym_session_create(
2418                         ts_params->session_mpool);
2419
2420         status = rte_cryptodev_sym_session_init(dev_id, ut_params->sess,
2421                         &ut_params->auth_xform,
2422                         ts_params->session_priv_mpool);
2423         TEST_ASSERT_EQUAL(status, 0, "session init failed");
2424         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
2425         return 0;
2426 }
2427
2428 static int
2429 create_wireless_algo_cipher_session(uint8_t dev_id,
2430                         enum rte_crypto_cipher_operation op,
2431                         enum rte_crypto_cipher_algorithm algo,
2432                         const uint8_t *key, const uint8_t key_len,
2433                         uint8_t iv_len)
2434 {
2435         uint8_t cipher_key[key_len];
2436         int status;
2437         struct crypto_testsuite_params *ts_params = &testsuite_params;
2438         struct crypto_unittest_params *ut_params = &unittest_params;
2439
2440         memcpy(cipher_key, key, key_len);
2441
2442         /* Setup Cipher Parameters */
2443         ut_params->cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
2444         ut_params->cipher_xform.next = NULL;
2445
2446         ut_params->cipher_xform.cipher.algo = algo;
2447         ut_params->cipher_xform.cipher.op = op;
2448         ut_params->cipher_xform.cipher.key.data = cipher_key;
2449         ut_params->cipher_xform.cipher.key.length = key_len;
2450         ut_params->cipher_xform.cipher.iv.offset = IV_OFFSET;
2451         ut_params->cipher_xform.cipher.iv.length = iv_len;
2452
2453         debug_hexdump(stdout, "key:", key, key_len);
2454
2455         /* Create Crypto session */
2456         ut_params->sess = rte_cryptodev_sym_session_create(
2457                         ts_params->session_mpool);
2458
2459         status = rte_cryptodev_sym_session_init(dev_id, ut_params->sess,
2460                         &ut_params->cipher_xform,
2461                         ts_params->session_priv_mpool);
2462         TEST_ASSERT_EQUAL(status, 0, "session init failed");
2463         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
2464         return 0;
2465 }
2466
2467 static int
2468 create_wireless_algo_cipher_operation(const uint8_t *iv, uint8_t iv_len,
2469                         unsigned int cipher_len,
2470                         unsigned int cipher_offset)
2471 {
2472         struct crypto_testsuite_params *ts_params = &testsuite_params;
2473         struct crypto_unittest_params *ut_params = &unittest_params;
2474
2475         /* Generate Crypto op data structure */
2476         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
2477                                 RTE_CRYPTO_OP_TYPE_SYMMETRIC);
2478         TEST_ASSERT_NOT_NULL(ut_params->op,
2479                                 "Failed to allocate pktmbuf offload");
2480
2481         /* Set crypto operation data parameters */
2482         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
2483
2484         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
2485
2486         /* set crypto operation source mbuf */
2487         sym_op->m_src = ut_params->ibuf;
2488
2489         /* iv */
2490         rte_memcpy(rte_crypto_op_ctod_offset(ut_params->op, uint8_t *, IV_OFFSET),
2491                         iv, iv_len);
2492         sym_op->cipher.data.length = cipher_len;
2493         sym_op->cipher.data.offset = cipher_offset;
2494         return 0;
2495 }
2496
2497 static int
2498 create_wireless_algo_cipher_operation_oop(const uint8_t *iv, uint8_t iv_len,
2499                         unsigned int cipher_len,
2500                         unsigned int cipher_offset)
2501 {
2502         struct crypto_testsuite_params *ts_params = &testsuite_params;
2503         struct crypto_unittest_params *ut_params = &unittest_params;
2504
2505         /* Generate Crypto op data structure */
2506         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
2507                                 RTE_CRYPTO_OP_TYPE_SYMMETRIC);
2508         TEST_ASSERT_NOT_NULL(ut_params->op,
2509                                 "Failed to allocate pktmbuf offload");
2510
2511         /* Set crypto operation data parameters */
2512         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
2513
2514         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
2515
2516         /* set crypto operation source mbuf */
2517         sym_op->m_src = ut_params->ibuf;
2518         sym_op->m_dst = ut_params->obuf;
2519
2520         /* iv */
2521         rte_memcpy(rte_crypto_op_ctod_offset(ut_params->op, uint8_t *, IV_OFFSET),
2522                         iv, iv_len);
2523         sym_op->cipher.data.length = cipher_len;
2524         sym_op->cipher.data.offset = cipher_offset;
2525         return 0;
2526 }
2527
2528 static int
2529 create_wireless_algo_cipher_auth_session(uint8_t dev_id,
2530                 enum rte_crypto_cipher_operation cipher_op,
2531                 enum rte_crypto_auth_operation auth_op,
2532                 enum rte_crypto_auth_algorithm auth_algo,
2533                 enum rte_crypto_cipher_algorithm cipher_algo,
2534                 const uint8_t *key, uint8_t key_len,
2535                 uint8_t auth_iv_len, uint8_t auth_len,
2536                 uint8_t cipher_iv_len)
2537
2538 {
2539         uint8_t cipher_auth_key[key_len];
2540         int status;
2541
2542         struct crypto_testsuite_params *ts_params = &testsuite_params;
2543         struct crypto_unittest_params *ut_params = &unittest_params;
2544
2545         memcpy(cipher_auth_key, key, key_len);
2546
2547         /* Setup Authentication Parameters */
2548         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
2549         ut_params->auth_xform.next = NULL;
2550
2551         ut_params->auth_xform.auth.op = auth_op;
2552         ut_params->auth_xform.auth.algo = auth_algo;
2553         ut_params->auth_xform.auth.key.length = key_len;
2554         /* Hash key = cipher key */
2555         ut_params->auth_xform.auth.key.data = cipher_auth_key;
2556         ut_params->auth_xform.auth.digest_length = auth_len;
2557         /* Auth IV will be after cipher IV */
2558         ut_params->auth_xform.auth.iv.offset = IV_OFFSET + cipher_iv_len;
2559         ut_params->auth_xform.auth.iv.length = auth_iv_len;
2560
2561         /* Setup Cipher Parameters */
2562         ut_params->cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
2563         ut_params->cipher_xform.next = &ut_params->auth_xform;
2564
2565         ut_params->cipher_xform.cipher.algo = cipher_algo;
2566         ut_params->cipher_xform.cipher.op = cipher_op;
2567         ut_params->cipher_xform.cipher.key.data = cipher_auth_key;
2568         ut_params->cipher_xform.cipher.key.length = key_len;
2569         ut_params->cipher_xform.cipher.iv.offset = IV_OFFSET;
2570         ut_params->cipher_xform.cipher.iv.length = cipher_iv_len;
2571
2572         debug_hexdump(stdout, "key:", key, key_len);
2573
2574         /* Create Crypto session*/
2575         ut_params->sess = rte_cryptodev_sym_session_create(
2576                         ts_params->session_mpool);
2577
2578         status = rte_cryptodev_sym_session_init(dev_id, ut_params->sess,
2579                         &ut_params->cipher_xform,
2580                         ts_params->session_priv_mpool);
2581
2582         TEST_ASSERT_EQUAL(status, 0, "session init failed");
2583         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
2584         return 0;
2585 }
2586
2587 static int
2588 create_wireless_cipher_auth_session(uint8_t dev_id,
2589                 enum rte_crypto_cipher_operation cipher_op,
2590                 enum rte_crypto_auth_operation auth_op,
2591                 enum rte_crypto_auth_algorithm auth_algo,
2592                 enum rte_crypto_cipher_algorithm cipher_algo,
2593                 const struct wireless_test_data *tdata)
2594 {
2595         const uint8_t key_len = tdata->key.len;
2596         uint8_t cipher_auth_key[key_len];
2597         int status;
2598
2599         struct crypto_testsuite_params *ts_params = &testsuite_params;
2600         struct crypto_unittest_params *ut_params = &unittest_params;
2601         const uint8_t *key = tdata->key.data;
2602         const uint8_t auth_len = tdata->digest.len;
2603         uint8_t cipher_iv_len = tdata->cipher_iv.len;
2604         uint8_t auth_iv_len = tdata->auth_iv.len;
2605
2606         memcpy(cipher_auth_key, key, key_len);
2607
2608         /* Setup Authentication Parameters */
2609         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
2610         ut_params->auth_xform.next = NULL;
2611
2612         ut_params->auth_xform.auth.op = auth_op;
2613         ut_params->auth_xform.auth.algo = auth_algo;
2614         ut_params->auth_xform.auth.key.length = key_len;
2615         /* Hash key = cipher key */
2616         ut_params->auth_xform.auth.key.data = cipher_auth_key;
2617         ut_params->auth_xform.auth.digest_length = auth_len;
2618         /* Auth IV will be after cipher IV */
2619         ut_params->auth_xform.auth.iv.offset = IV_OFFSET + cipher_iv_len;
2620         ut_params->auth_xform.auth.iv.length = auth_iv_len;
2621
2622         /* Setup Cipher Parameters */
2623         ut_params->cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
2624         ut_params->cipher_xform.next = &ut_params->auth_xform;
2625
2626         ut_params->cipher_xform.cipher.algo = cipher_algo;
2627         ut_params->cipher_xform.cipher.op = cipher_op;
2628         ut_params->cipher_xform.cipher.key.data = cipher_auth_key;
2629         ut_params->cipher_xform.cipher.key.length = key_len;
2630         ut_params->cipher_xform.cipher.iv.offset = IV_OFFSET;
2631         ut_params->cipher_xform.cipher.iv.length = cipher_iv_len;
2632
2633
2634         debug_hexdump(stdout, "key:", key, key_len);
2635
2636         /* Create Crypto session*/
2637         ut_params->sess = rte_cryptodev_sym_session_create(
2638                         ts_params->session_mpool);
2639
2640         status = rte_cryptodev_sym_session_init(dev_id, ut_params->sess,
2641                         &ut_params->cipher_xform,
2642                         ts_params->session_priv_mpool);
2643
2644         TEST_ASSERT_EQUAL(status, 0, "session init failed");
2645         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
2646         return 0;
2647 }
2648
2649 static int
2650 create_zuc_cipher_auth_encrypt_generate_session(uint8_t dev_id,
2651                 const struct wireless_test_data *tdata)
2652 {
2653         return create_wireless_cipher_auth_session(dev_id,
2654                 RTE_CRYPTO_CIPHER_OP_ENCRYPT,
2655                 RTE_CRYPTO_AUTH_OP_GENERATE, RTE_CRYPTO_AUTH_ZUC_EIA3,
2656                 RTE_CRYPTO_CIPHER_ZUC_EEA3, tdata);
2657 }
2658
2659 static int
2660 create_wireless_algo_auth_cipher_session(uint8_t dev_id,
2661                 enum rte_crypto_cipher_operation cipher_op,
2662                 enum rte_crypto_auth_operation auth_op,
2663                 enum rte_crypto_auth_algorithm auth_algo,
2664                 enum rte_crypto_cipher_algorithm cipher_algo,
2665                 const uint8_t *key, const uint8_t key_len,
2666                 uint8_t auth_iv_len, uint8_t auth_len,
2667                 uint8_t cipher_iv_len)
2668 {
2669         uint8_t auth_cipher_key[key_len];
2670         int status;
2671         struct crypto_testsuite_params *ts_params = &testsuite_params;
2672         struct crypto_unittest_params *ut_params = &unittest_params;
2673
2674         memcpy(auth_cipher_key, key, key_len);
2675
2676         /* Setup Authentication Parameters */
2677         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
2678         ut_params->auth_xform.auth.op = auth_op;
2679         ut_params->auth_xform.next = &ut_params->cipher_xform;
2680         ut_params->auth_xform.auth.algo = auth_algo;
2681         ut_params->auth_xform.auth.key.length = key_len;
2682         ut_params->auth_xform.auth.key.data = auth_cipher_key;
2683         ut_params->auth_xform.auth.digest_length = auth_len;
2684         /* Auth IV will be after cipher IV */
2685         ut_params->auth_xform.auth.iv.offset = IV_OFFSET + cipher_iv_len;
2686         ut_params->auth_xform.auth.iv.length = auth_iv_len;
2687
2688         /* Setup Cipher Parameters */
2689         ut_params->cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
2690         ut_params->cipher_xform.next = NULL;
2691         ut_params->cipher_xform.cipher.algo = cipher_algo;
2692         ut_params->cipher_xform.cipher.op = cipher_op;
2693         ut_params->cipher_xform.cipher.key.data = auth_cipher_key;
2694         ut_params->cipher_xform.cipher.key.length = key_len;
2695         ut_params->cipher_xform.cipher.iv.offset = IV_OFFSET;
2696         ut_params->cipher_xform.cipher.iv.length = cipher_iv_len;
2697
2698         debug_hexdump(stdout, "key:", key, key_len);
2699
2700         /* Create Crypto session*/
2701         ut_params->sess = rte_cryptodev_sym_session_create(
2702                         ts_params->session_mpool);
2703
2704         status = rte_cryptodev_sym_session_init(dev_id, ut_params->sess,
2705                         &ut_params->auth_xform,
2706                         ts_params->session_priv_mpool);
2707         TEST_ASSERT_EQUAL(status, 0, "session init failed");
2708         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
2709
2710         return 0;
2711 }
2712
2713 static int
2714 create_wireless_algo_hash_operation(const uint8_t *auth_tag,
2715                 unsigned int auth_tag_len,
2716                 const uint8_t *iv, unsigned int iv_len,
2717                 unsigned int data_pad_len,
2718                 enum rte_crypto_auth_operation op,
2719                 unsigned int auth_len, unsigned int auth_offset)
2720 {
2721         struct crypto_testsuite_params *ts_params = &testsuite_params;
2722
2723         struct crypto_unittest_params *ut_params = &unittest_params;
2724
2725         /* Generate Crypto op data structure */
2726         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
2727                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
2728         TEST_ASSERT_NOT_NULL(ut_params->op,
2729                 "Failed to allocate pktmbuf offload");
2730
2731         /* Set crypto operation data parameters */
2732         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
2733
2734         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
2735
2736         /* set crypto operation source mbuf */
2737         sym_op->m_src = ut_params->ibuf;
2738
2739         /* iv */
2740         rte_memcpy(rte_crypto_op_ctod_offset(ut_params->op, uint8_t *, IV_OFFSET),
2741                         iv, iv_len);
2742         /* digest */
2743         sym_op->auth.digest.data = (uint8_t *)rte_pktmbuf_append(
2744                                         ut_params->ibuf, auth_tag_len);
2745
2746         TEST_ASSERT_NOT_NULL(sym_op->auth.digest.data,
2747                                 "no room to append auth tag");
2748         ut_params->digest = sym_op->auth.digest.data;
2749         sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(
2750                         ut_params->ibuf, data_pad_len);
2751         if (op == RTE_CRYPTO_AUTH_OP_GENERATE)
2752                 memset(sym_op->auth.digest.data, 0, auth_tag_len);
2753         else
2754                 rte_memcpy(sym_op->auth.digest.data, auth_tag, auth_tag_len);
2755
2756         debug_hexdump(stdout, "digest:",
2757                 sym_op->auth.digest.data,
2758                 auth_tag_len);
2759
2760         sym_op->auth.data.length = auth_len;
2761         sym_op->auth.data.offset = auth_offset;
2762
2763         return 0;
2764 }
2765
2766 static int
2767 create_wireless_cipher_hash_operation(const struct wireless_test_data *tdata,
2768         enum rte_crypto_auth_operation op)
2769 {
2770         struct crypto_testsuite_params *ts_params = &testsuite_params;
2771         struct crypto_unittest_params *ut_params = &unittest_params;
2772
2773         const uint8_t *auth_tag = tdata->digest.data;
2774         const unsigned int auth_tag_len = tdata->digest.len;
2775         unsigned int plaintext_len = ceil_byte_length(tdata->plaintext.len);
2776         unsigned int data_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
2777
2778         const uint8_t *cipher_iv = tdata->cipher_iv.data;
2779         const uint8_t cipher_iv_len = tdata->cipher_iv.len;
2780         const uint8_t *auth_iv = tdata->auth_iv.data;
2781         const uint8_t auth_iv_len = tdata->auth_iv.len;
2782         const unsigned int cipher_len = tdata->validCipherLenInBits.len;
2783         const unsigned int auth_len = tdata->validAuthLenInBits.len;
2784
2785         /* Generate Crypto op data structure */
2786         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
2787                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
2788         TEST_ASSERT_NOT_NULL(ut_params->op,
2789                         "Failed to allocate pktmbuf offload");
2790         /* Set crypto operation data parameters */
2791         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
2792
2793         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
2794
2795         /* set crypto operation source mbuf */
2796         sym_op->m_src = ut_params->ibuf;
2797
2798         /* digest */
2799         sym_op->auth.digest.data = (uint8_t *)rte_pktmbuf_append(
2800                         ut_params->ibuf, auth_tag_len);
2801
2802         TEST_ASSERT_NOT_NULL(sym_op->auth.digest.data,
2803                         "no room to append auth tag");
2804         ut_params->digest = sym_op->auth.digest.data;
2805         sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(
2806                         ut_params->ibuf, data_pad_len);
2807         if (op == RTE_CRYPTO_AUTH_OP_GENERATE)
2808                 memset(sym_op->auth.digest.data, 0, auth_tag_len);
2809         else
2810                 rte_memcpy(sym_op->auth.digest.data, auth_tag, auth_tag_len);
2811
2812         debug_hexdump(stdout, "digest:",
2813                 sym_op->auth.digest.data,
2814                 auth_tag_len);
2815
2816         /* Copy cipher and auth IVs at the end of the crypto operation */
2817         uint8_t *iv_ptr = rte_crypto_op_ctod_offset(ut_params->op, uint8_t *,
2818                                                 IV_OFFSET);
2819         rte_memcpy(iv_ptr, cipher_iv, cipher_iv_len);
2820         iv_ptr += cipher_iv_len;
2821         rte_memcpy(iv_ptr, auth_iv, auth_iv_len);
2822
2823         sym_op->cipher.data.length = cipher_len;
2824         sym_op->cipher.data.offset = 0;
2825         sym_op->auth.data.length = auth_len;
2826         sym_op->auth.data.offset = 0;
2827
2828         return 0;
2829 }
2830
2831 static int
2832 create_zuc_cipher_hash_generate_operation(
2833                 const struct wireless_test_data *tdata)
2834 {
2835         return create_wireless_cipher_hash_operation(tdata,
2836                 RTE_CRYPTO_AUTH_OP_GENERATE);
2837 }
2838
2839 static int
2840 create_wireless_algo_cipher_hash_operation(const uint8_t *auth_tag,
2841                 const unsigned auth_tag_len,
2842                 const uint8_t *auth_iv, uint8_t auth_iv_len,
2843                 unsigned data_pad_len,
2844                 enum rte_crypto_auth_operation op,
2845                 const uint8_t *cipher_iv, uint8_t cipher_iv_len,
2846                 const unsigned cipher_len, const unsigned cipher_offset,
2847                 const unsigned auth_len, const unsigned auth_offset)
2848 {
2849         struct crypto_testsuite_params *ts_params = &testsuite_params;
2850         struct crypto_unittest_params *ut_params = &unittest_params;
2851
2852         /* Generate Crypto op data structure */
2853         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
2854                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
2855         TEST_ASSERT_NOT_NULL(ut_params->op,
2856                         "Failed to allocate pktmbuf offload");
2857         /* Set crypto operation data parameters */
2858         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
2859
2860         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
2861
2862         /* set crypto operation source mbuf */
2863         sym_op->m_src = ut_params->ibuf;
2864
2865         /* digest */
2866         sym_op->auth.digest.data = (uint8_t *)rte_pktmbuf_append(
2867                         ut_params->ibuf, auth_tag_len);
2868
2869         TEST_ASSERT_NOT_NULL(sym_op->auth.digest.data,
2870                         "no room to append auth tag");
2871         ut_params->digest = sym_op->auth.digest.data;
2872         sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(
2873                         ut_params->ibuf, data_pad_len);
2874         if (op == RTE_CRYPTO_AUTH_OP_GENERATE)
2875                 memset(sym_op->auth.digest.data, 0, auth_tag_len);
2876         else
2877                 rte_memcpy(sym_op->auth.digest.data, auth_tag, auth_tag_len);
2878
2879         debug_hexdump(stdout, "digest:",
2880                 sym_op->auth.digest.data,
2881                 auth_tag_len);
2882
2883         /* Copy cipher and auth IVs at the end of the crypto operation */
2884         uint8_t *iv_ptr = rte_crypto_op_ctod_offset(ut_params->op, uint8_t *,
2885                                                 IV_OFFSET);
2886         rte_memcpy(iv_ptr, cipher_iv, cipher_iv_len);
2887         iv_ptr += cipher_iv_len;
2888         rte_memcpy(iv_ptr, auth_iv, auth_iv_len);
2889
2890         sym_op->cipher.data.length = cipher_len;
2891         sym_op->cipher.data.offset = cipher_offset;
2892         sym_op->auth.data.length = auth_len;
2893         sym_op->auth.data.offset = auth_offset;
2894
2895         return 0;
2896 }
2897
2898 static int
2899 create_wireless_algo_auth_cipher_operation(unsigned int auth_tag_len,
2900                 const uint8_t *cipher_iv, uint8_t cipher_iv_len,
2901                 const uint8_t *auth_iv, uint8_t auth_iv_len,
2902                 unsigned int data_pad_len,
2903                 unsigned int cipher_len, unsigned int cipher_offset,
2904                 unsigned int auth_len, unsigned int auth_offset,
2905                 uint8_t op_mode, uint8_t do_sgl)
2906 {
2907         struct crypto_testsuite_params *ts_params = &testsuite_params;
2908         struct crypto_unittest_params *ut_params = &unittest_params;
2909
2910         /* Generate Crypto op data structure */
2911         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
2912                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
2913         TEST_ASSERT_NOT_NULL(ut_params->op,
2914                         "Failed to allocate pktmbuf offload");
2915
2916         /* Set crypto operation data parameters */
2917         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
2918
2919         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
2920
2921         /* set crypto operation mbufs */
2922         sym_op->m_src = ut_params->ibuf;
2923         if (op_mode == OUT_OF_PLACE)
2924                 sym_op->m_dst = ut_params->obuf;
2925
2926         /* digest */
2927         if (!do_sgl) {
2928                 sym_op->auth.digest.data = rte_pktmbuf_mtod_offset(
2929                         (op_mode == IN_PLACE ?
2930                                 ut_params->ibuf : ut_params->obuf),
2931                         uint8_t *, data_pad_len);
2932                 sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(
2933                         (op_mode == IN_PLACE ?
2934                                 ut_params->ibuf : ut_params->obuf),
2935                         data_pad_len);
2936                 memset(sym_op->auth.digest.data, 0, auth_tag_len);
2937         } else {
2938                 uint16_t remaining_off = (auth_offset >> 3) + (auth_len >> 3);
2939                 struct rte_mbuf *sgl_buf = (op_mode == IN_PLACE ?
2940                                 sym_op->m_src : sym_op->m_dst);
2941                 while (remaining_off >= rte_pktmbuf_data_len(sgl_buf)) {
2942                         remaining_off -= rte_pktmbuf_data_len(sgl_buf);
2943                         sgl_buf = sgl_buf->next;
2944                 }
2945                 sym_op->auth.digest.data = rte_pktmbuf_mtod_offset(sgl_buf,
2946                                 uint8_t *, remaining_off);
2947                 sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(sgl_buf,
2948                                 remaining_off);
2949                 memset(sym_op->auth.digest.data, 0, remaining_off);
2950                 while (sgl_buf->next != NULL) {
2951                         memset(rte_pktmbuf_mtod(sgl_buf, uint8_t *),
2952                                 0, rte_pktmbuf_data_len(sgl_buf));
2953                         sgl_buf = sgl_buf->next;
2954                 }
2955         }
2956
2957         /* Copy cipher and auth IVs at the end of the crypto operation */
2958         uint8_t *iv_ptr = rte_crypto_op_ctod_offset(
2959                         ut_params->op, uint8_t *, IV_OFFSET);
2960
2961         rte_memcpy(iv_ptr, cipher_iv, cipher_iv_len);
2962         iv_ptr += cipher_iv_len;
2963         rte_memcpy(iv_ptr, auth_iv, auth_iv_len);
2964
2965         sym_op->cipher.data.length = cipher_len;
2966         sym_op->cipher.data.offset = cipher_offset;
2967
2968         sym_op->auth.data.length = auth_len;
2969         sym_op->auth.data.offset = auth_offset;
2970
2971         return 0;
2972 }
2973
2974 static int
2975 test_snow3g_authentication(const struct snow3g_hash_test_data *tdata)
2976 {
2977         struct crypto_testsuite_params *ts_params = &testsuite_params;
2978         struct crypto_unittest_params *ut_params = &unittest_params;
2979
2980         int retval;
2981         unsigned plaintext_pad_len;
2982         unsigned plaintext_len;
2983         uint8_t *plaintext;
2984
2985         /* Create SNOW 3G session */
2986         retval = create_wireless_algo_hash_session(ts_params->valid_devs[0],
2987                         tdata->key.data, tdata->key.len,
2988                         tdata->auth_iv.len, tdata->digest.len,
2989                         RTE_CRYPTO_AUTH_OP_GENERATE,
2990                         RTE_CRYPTO_AUTH_SNOW3G_UIA2);
2991         if (retval < 0)
2992                 return retval;
2993
2994         /* alloc mbuf and set payload */
2995         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
2996
2997         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
2998         rte_pktmbuf_tailroom(ut_params->ibuf));
2999
3000         plaintext_len = ceil_byte_length(tdata->plaintext.len);
3001         /* Append data which is padded to a multiple of */
3002         /* the algorithms block size */
3003         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
3004         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
3005                                 plaintext_pad_len);
3006         memcpy(plaintext, tdata->plaintext.data, plaintext_len);
3007
3008         /* Create SNOW 3G operation */
3009         retval = create_wireless_algo_hash_operation(NULL, tdata->digest.len,
3010                         tdata->auth_iv.data, tdata->auth_iv.len,
3011                         plaintext_pad_len, RTE_CRYPTO_AUTH_OP_GENERATE,
3012                         tdata->validAuthLenInBits.len,
3013                         0);
3014         if (retval < 0)
3015                 return retval;
3016
3017         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
3018                                 ut_params->op);
3019         ut_params->obuf = ut_params->op->sym->m_src;
3020         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
3021         ut_params->digest = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *)
3022                         + plaintext_pad_len;
3023
3024         /* Validate obuf */
3025         TEST_ASSERT_BUFFERS_ARE_EQUAL(
3026         ut_params->digest,
3027         tdata->digest.data,
3028         DIGEST_BYTE_LENGTH_SNOW3G_UIA2,
3029         "SNOW 3G Generated auth tag not as expected");
3030
3031         return 0;
3032 }
3033
3034 static int
3035 test_snow3g_authentication_verify(const struct snow3g_hash_test_data *tdata)
3036 {
3037         struct crypto_testsuite_params *ts_params = &testsuite_params;
3038         struct crypto_unittest_params *ut_params = &unittest_params;
3039
3040         int retval;
3041         unsigned plaintext_pad_len;
3042         unsigned plaintext_len;
3043         uint8_t *plaintext;
3044
3045         /* Create SNOW 3G session */
3046         retval = create_wireless_algo_hash_session(ts_params->valid_devs[0],
3047                                 tdata->key.data, tdata->key.len,
3048                                 tdata->auth_iv.len, tdata->digest.len,
3049                                 RTE_CRYPTO_AUTH_OP_VERIFY,
3050                                 RTE_CRYPTO_AUTH_SNOW3G_UIA2);
3051         if (retval < 0)
3052                 return retval;
3053         /* alloc mbuf and set payload */
3054         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
3055
3056         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
3057         rte_pktmbuf_tailroom(ut_params->ibuf));
3058
3059         plaintext_len = ceil_byte_length(tdata->plaintext.len);
3060         /* Append data which is padded to a multiple of */
3061         /* the algorithms block size */
3062         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
3063         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
3064                                 plaintext_pad_len);
3065         memcpy(plaintext, tdata->plaintext.data, plaintext_len);
3066
3067         /* Create SNOW 3G operation */
3068         retval = create_wireless_algo_hash_operation(tdata->digest.data,
3069                         tdata->digest.len,
3070                         tdata->auth_iv.data, tdata->auth_iv.len,
3071                         plaintext_pad_len,
3072                         RTE_CRYPTO_AUTH_OP_VERIFY,
3073                         tdata->validAuthLenInBits.len,
3074                         0);
3075         if (retval < 0)
3076                 return retval;
3077
3078         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
3079                                 ut_params->op);
3080         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
3081         ut_params->obuf = ut_params->op->sym->m_src;
3082         ut_params->digest = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *)
3083                                 + plaintext_pad_len;
3084
3085         /* Validate obuf */
3086         if (ut_params->op->status == RTE_CRYPTO_OP_STATUS_SUCCESS)
3087                 return 0;
3088         else
3089                 return -1;
3090
3091         return 0;
3092 }
3093
3094 static int
3095 test_kasumi_authentication(const struct kasumi_hash_test_data *tdata)
3096 {
3097         struct crypto_testsuite_params *ts_params = &testsuite_params;
3098         struct crypto_unittest_params *ut_params = &unittest_params;
3099
3100         int retval;
3101         unsigned plaintext_pad_len;
3102         unsigned plaintext_len;
3103         uint8_t *plaintext;
3104
3105         /* Create KASUMI session */
3106         retval = create_wireless_algo_hash_session(ts_params->valid_devs[0],
3107                         tdata->key.data, tdata->key.len,
3108                         0, tdata->digest.len,
3109                         RTE_CRYPTO_AUTH_OP_GENERATE,
3110                         RTE_CRYPTO_AUTH_KASUMI_F9);
3111         if (retval < 0)
3112                 return retval;
3113
3114         /* alloc mbuf and set payload */
3115         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
3116
3117         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
3118         rte_pktmbuf_tailroom(ut_params->ibuf));
3119
3120         plaintext_len = ceil_byte_length(tdata->plaintext.len);
3121         /* Append data which is padded to a multiple of */
3122         /* the algorithms block size */
3123         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 8);
3124         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
3125                                 plaintext_pad_len);
3126         memcpy(plaintext, tdata->plaintext.data, plaintext_len);
3127
3128         /* Create KASUMI operation */
3129         retval = create_wireless_algo_hash_operation(NULL, tdata->digest.len,
3130                         NULL, 0,
3131                         plaintext_pad_len, RTE_CRYPTO_AUTH_OP_GENERATE,
3132                         tdata->plaintext.len,
3133                         0);
3134         if (retval < 0)
3135                 return retval;
3136
3137         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
3138                                 ut_params->op);
3139         ut_params->obuf = ut_params->op->sym->m_src;
3140         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
3141         ut_params->digest = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *)
3142                         + plaintext_pad_len;
3143
3144         /* Validate obuf */
3145         TEST_ASSERT_BUFFERS_ARE_EQUAL(
3146         ut_params->digest,
3147         tdata->digest.data,
3148         DIGEST_BYTE_LENGTH_KASUMI_F9,
3149         "KASUMI Generated auth tag not as expected");
3150
3151         return 0;
3152 }
3153
3154 static int
3155 test_kasumi_authentication_verify(const struct kasumi_hash_test_data *tdata)
3156 {
3157         struct crypto_testsuite_params *ts_params = &testsuite_params;
3158         struct crypto_unittest_params *ut_params = &unittest_params;
3159
3160         int retval;
3161         unsigned plaintext_pad_len;
3162         unsigned plaintext_len;
3163         uint8_t *plaintext;
3164
3165         /* Create KASUMI session */
3166         retval = create_wireless_algo_hash_session(ts_params->valid_devs[0],
3167                                 tdata->key.data, tdata->key.len,
3168                                 0, tdata->digest.len,
3169                                 RTE_CRYPTO_AUTH_OP_VERIFY,
3170                                 RTE_CRYPTO_AUTH_KASUMI_F9);
3171         if (retval < 0)
3172                 return retval;
3173         /* alloc mbuf and set payload */
3174         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
3175
3176         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
3177         rte_pktmbuf_tailroom(ut_params->ibuf));
3178
3179         plaintext_len = ceil_byte_length(tdata->plaintext.len);
3180         /* Append data which is padded to a multiple */
3181         /* of the algorithms block size */
3182         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 8);
3183         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
3184                                 plaintext_pad_len);
3185         memcpy(plaintext, tdata->plaintext.data, plaintext_len);
3186
3187         /* Create KASUMI operation */
3188         retval = create_wireless_algo_hash_operation(tdata->digest.data,
3189                         tdata->digest.len,
3190                         NULL, 0,
3191                         plaintext_pad_len,
3192                         RTE_CRYPTO_AUTH_OP_VERIFY,
3193                         tdata->plaintext.len,
3194                         0);
3195         if (retval < 0)
3196                 return retval;
3197
3198         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
3199                                 ut_params->op);
3200         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
3201         ut_params->obuf = ut_params->op->sym->m_src;
3202         ut_params->digest = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *)
3203                                 + plaintext_pad_len;
3204
3205         /* Validate obuf */
3206         if (ut_params->op->status == RTE_CRYPTO_OP_STATUS_SUCCESS)
3207                 return 0;
3208         else
3209                 return -1;
3210
3211         return 0;
3212 }
3213
3214 static int
3215 test_snow3g_hash_generate_test_case_1(void)
3216 {
3217         return test_snow3g_authentication(&snow3g_hash_test_case_1);
3218 }
3219
3220 static int
3221 test_snow3g_hash_generate_test_case_2(void)
3222 {
3223         return test_snow3g_authentication(&snow3g_hash_test_case_2);
3224 }
3225
3226 static int
3227 test_snow3g_hash_generate_test_case_3(void)
3228 {
3229         return test_snow3g_authentication(&snow3g_hash_test_case_3);
3230 }
3231
3232 static int
3233 test_snow3g_hash_generate_test_case_4(void)
3234 {
3235         return test_snow3g_authentication(&snow3g_hash_test_case_4);
3236 }
3237
3238 static int
3239 test_snow3g_hash_generate_test_case_5(void)
3240 {
3241         return test_snow3g_authentication(&snow3g_hash_test_case_5);
3242 }
3243
3244 static int
3245 test_snow3g_hash_generate_test_case_6(void)
3246 {
3247         return test_snow3g_authentication(&snow3g_hash_test_case_6);
3248 }
3249
3250 static int
3251 test_snow3g_hash_verify_test_case_1(void)
3252 {
3253         return test_snow3g_authentication_verify(&snow3g_hash_test_case_1);
3254
3255 }
3256
3257 static int
3258 test_snow3g_hash_verify_test_case_2(void)
3259 {
3260         return test_snow3g_authentication_verify(&snow3g_hash_test_case_2);
3261 }
3262
3263 static int
3264 test_snow3g_hash_verify_test_case_3(void)
3265 {
3266         return test_snow3g_authentication_verify(&snow3g_hash_test_case_3);
3267 }
3268
3269 static int
3270 test_snow3g_hash_verify_test_case_4(void)
3271 {
3272         return test_snow3g_authentication_verify(&snow3g_hash_test_case_4);
3273 }
3274
3275 static int
3276 test_snow3g_hash_verify_test_case_5(void)
3277 {
3278         return test_snow3g_authentication_verify(&snow3g_hash_test_case_5);
3279 }
3280
3281 static int
3282 test_snow3g_hash_verify_test_case_6(void)
3283 {
3284         return test_snow3g_authentication_verify(&snow3g_hash_test_case_6);
3285 }
3286
3287 static int
3288 test_kasumi_hash_generate_test_case_1(void)
3289 {
3290         return test_kasumi_authentication(&kasumi_hash_test_case_1);
3291 }
3292
3293 static int
3294 test_kasumi_hash_generate_test_case_2(void)
3295 {
3296         return test_kasumi_authentication(&kasumi_hash_test_case_2);
3297 }
3298
3299 static int
3300 test_kasumi_hash_generate_test_case_3(void)
3301 {
3302         return test_kasumi_authentication(&kasumi_hash_test_case_3);
3303 }
3304
3305 static int
3306 test_kasumi_hash_generate_test_case_4(void)
3307 {
3308         return test_kasumi_authentication(&kasumi_hash_test_case_4);
3309 }
3310
3311 static int
3312 test_kasumi_hash_generate_test_case_5(void)
3313 {
3314         return test_kasumi_authentication(&kasumi_hash_test_case_5);
3315 }
3316
3317 static int
3318 test_kasumi_hash_generate_test_case_6(void)
3319 {
3320         return test_kasumi_authentication(&kasumi_hash_test_case_6);
3321 }
3322
3323 static int
3324 test_kasumi_hash_verify_test_case_1(void)
3325 {
3326         return test_kasumi_authentication_verify(&kasumi_hash_test_case_1);
3327 }
3328
3329 static int
3330 test_kasumi_hash_verify_test_case_2(void)
3331 {
3332         return test_kasumi_authentication_verify(&kasumi_hash_test_case_2);
3333 }
3334
3335 static int
3336 test_kasumi_hash_verify_test_case_3(void)
3337 {
3338         return test_kasumi_authentication_verify(&kasumi_hash_test_case_3);
3339 }
3340
3341 static int
3342 test_kasumi_hash_verify_test_case_4(void)
3343 {
3344         return test_kasumi_authentication_verify(&kasumi_hash_test_case_4);
3345 }
3346
3347 static int
3348 test_kasumi_hash_verify_test_case_5(void)
3349 {
3350         return test_kasumi_authentication_verify(&kasumi_hash_test_case_5);
3351 }
3352
3353 static int
3354 test_kasumi_encryption(const struct kasumi_test_data *tdata)
3355 {
3356         struct crypto_testsuite_params *ts_params = &testsuite_params;
3357         struct crypto_unittest_params *ut_params = &unittest_params;
3358
3359         int retval;
3360         uint8_t *plaintext, *ciphertext;
3361         unsigned plaintext_pad_len;
3362         unsigned plaintext_len;
3363
3364         /* Create KASUMI session */
3365         retval = create_wireless_algo_cipher_session(ts_params->valid_devs[0],
3366                                         RTE_CRYPTO_CIPHER_OP_ENCRYPT,
3367                                         RTE_CRYPTO_CIPHER_KASUMI_F8,
3368                                         tdata->key.data, tdata->key.len,
3369                                         tdata->cipher_iv.len);
3370         if (retval < 0)
3371                 return retval;
3372
3373         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
3374
3375         /* Clear mbuf payload */
3376         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
3377                rte_pktmbuf_tailroom(ut_params->ibuf));
3378
3379         plaintext_len = ceil_byte_length(tdata->plaintext.len);
3380         /* Append data which is padded to a multiple */
3381         /* of the algorithms block size */
3382         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 8);
3383         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
3384                                 plaintext_pad_len);
3385         memcpy(plaintext, tdata->plaintext.data, plaintext_len);
3386
3387         debug_hexdump(stdout, "plaintext:", plaintext, plaintext_len);
3388
3389         /* Create KASUMI operation */
3390         retval = create_wireless_algo_cipher_operation(tdata->cipher_iv.data,
3391                                 tdata->cipher_iv.len,
3392                                 RTE_ALIGN_CEIL(tdata->validCipherLenInBits.len, 8),
3393                                 tdata->validCipherOffsetInBits.len);
3394         if (retval < 0)
3395                 return retval;
3396
3397         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
3398                                                 ut_params->op);
3399         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
3400
3401         ut_params->obuf = ut_params->op->sym->m_dst;
3402         if (ut_params->obuf)
3403                 ciphertext = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *);
3404         else
3405                 ciphertext = plaintext + (tdata->validCipherOffsetInBits.len >> 3);
3406
3407         debug_hexdump(stdout, "ciphertext:", ciphertext, plaintext_len);
3408
3409         const uint8_t *reference_ciphertext = tdata->ciphertext.data +
3410                                 (tdata->validCipherOffsetInBits.len >> 3);
3411         /* Validate obuf */
3412         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
3413                 ciphertext,
3414                 reference_ciphertext,
3415                 tdata->validCipherLenInBits.len,
3416                 "KASUMI Ciphertext data not as expected");
3417         return 0;
3418 }
3419
3420 static int
3421 test_kasumi_encryption_sgl(const struct kasumi_test_data *tdata)
3422 {
3423         struct crypto_testsuite_params *ts_params = &testsuite_params;
3424         struct crypto_unittest_params *ut_params = &unittest_params;
3425
3426         int retval;
3427
3428         unsigned int plaintext_pad_len;
3429         unsigned int plaintext_len;
3430
3431         uint8_t buffer[10000];
3432         const uint8_t *ciphertext;
3433
3434         struct rte_cryptodev_info dev_info;
3435
3436         rte_cryptodev_info_get(ts_params->valid_devs[0], &dev_info);
3437
3438         uint64_t feat_flags = dev_info.feature_flags;
3439
3440         if (!(feat_flags & RTE_CRYPTODEV_FF_IN_PLACE_SGL)) {
3441                 printf("Device doesn't support in-place scatter-gather. "
3442                                 "Test Skipped.\n");
3443                 return -ENOTSUP;
3444         }
3445
3446         /* Create KASUMI session */
3447         retval = create_wireless_algo_cipher_session(ts_params->valid_devs[0],
3448                                         RTE_CRYPTO_CIPHER_OP_ENCRYPT,
3449                                         RTE_CRYPTO_CIPHER_KASUMI_F8,
3450                                         tdata->key.data, tdata->key.len,
3451                                         tdata->cipher_iv.len);
3452         if (retval < 0)
3453                 return retval;
3454
3455         plaintext_len = ceil_byte_length(tdata->plaintext.len);
3456
3457
3458         /* Append data which is padded to a multiple */
3459         /* of the algorithms block size */
3460         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 8);
3461
3462         ut_params->ibuf = create_segmented_mbuf(ts_params->mbuf_pool,
3463                         plaintext_pad_len, 10, 0);
3464
3465         pktmbuf_write(ut_params->ibuf, 0, plaintext_len, tdata->plaintext.data);
3466
3467         /* Create KASUMI operation */
3468         retval = create_wireless_algo_cipher_operation(tdata->cipher_iv.data,
3469                                 tdata->cipher_iv.len,
3470                                 RTE_ALIGN_CEIL(tdata->validCipherLenInBits.len, 8),
3471                                 tdata->validCipherOffsetInBits.len);
3472         if (retval < 0)
3473                 return retval;
3474
3475         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
3476                                                 ut_params->op);
3477         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
3478
3479         ut_params->obuf = ut_params->op->sym->m_dst;
3480
3481         if (ut_params->obuf)
3482                 ciphertext = rte_pktmbuf_read(ut_params->obuf, 0,
3483                                 plaintext_len, buffer);
3484         else
3485                 ciphertext = rte_pktmbuf_read(ut_params->ibuf,
3486                                 tdata->validCipherOffsetInBits.len >> 3,
3487                                 plaintext_len, buffer);
3488
3489         /* Validate obuf */
3490         debug_hexdump(stdout, "ciphertext:", ciphertext, plaintext_len);
3491
3492         const uint8_t *reference_ciphertext = tdata->ciphertext.data +
3493                                 (tdata->validCipherOffsetInBits.len >> 3);
3494         /* Validate obuf */
3495         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
3496                 ciphertext,
3497                 reference_ciphertext,
3498                 tdata->validCipherLenInBits.len,
3499                 "KASUMI Ciphertext data not as expected");
3500         return 0;
3501 }
3502
3503 static int
3504 test_kasumi_encryption_oop(const struct kasumi_test_data *tdata)
3505 {
3506         struct crypto_testsuite_params *ts_params = &testsuite_params;
3507         struct crypto_unittest_params *ut_params = &unittest_params;
3508
3509         int retval;
3510         uint8_t *plaintext, *ciphertext;
3511         unsigned plaintext_pad_len;
3512         unsigned plaintext_len;
3513
3514         /* Create KASUMI session */
3515         retval = create_wireless_algo_cipher_session(ts_params->valid_devs[0],
3516                                         RTE_CRYPTO_CIPHER_OP_ENCRYPT,
3517                                         RTE_CRYPTO_CIPHER_KASUMI_F8,
3518                                         tdata->key.data, tdata->key.len,
3519                                         tdata->cipher_iv.len);
3520         if (retval < 0)
3521                 return retval;
3522
3523         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
3524         ut_params->obuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
3525
3526         /* Clear mbuf payload */
3527         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
3528                rte_pktmbuf_tailroom(ut_params->ibuf));
3529
3530         plaintext_len = ceil_byte_length(tdata->plaintext.len);
3531         /* Append data which is padded to a multiple */
3532         /* of the algorithms block size */
3533         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 8);
3534         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
3535                                 plaintext_pad_len);
3536         rte_pktmbuf_append(ut_params->obuf, plaintext_pad_len);
3537         memcpy(plaintext, tdata->plaintext.data, plaintext_len);
3538
3539         debug_hexdump(stdout, "plaintext:", plaintext, plaintext_len);
3540
3541         /* Create KASUMI operation */
3542         retval = create_wireless_algo_cipher_operation_oop(tdata->cipher_iv.data,
3543                                 tdata->cipher_iv.len,
3544                                 RTE_ALIGN_CEIL(tdata->validCipherLenInBits.len, 8),
3545                                 tdata->validCipherOffsetInBits.len);
3546         if (retval < 0)
3547                 return retval;
3548
3549         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
3550                                                 ut_params->op);
3551         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
3552
3553         ut_params->obuf = ut_params->op->sym->m_dst;
3554         if (ut_params->obuf)
3555                 ciphertext = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *);
3556         else
3557                 ciphertext = plaintext + (tdata->validCipherOffsetInBits.len >> 3);
3558
3559         debug_hexdump(stdout, "ciphertext:", ciphertext, plaintext_len);
3560
3561         const uint8_t *reference_ciphertext = tdata->ciphertext.data +
3562                                 (tdata->validCipherOffsetInBits.len >> 3);
3563         /* Validate obuf */
3564         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
3565                 ciphertext,
3566                 reference_ciphertext,
3567                 tdata->validCipherLenInBits.len,
3568                 "KASUMI Ciphertext data not as expected");
3569         return 0;
3570 }
3571
3572 static int
3573 test_kasumi_encryption_oop_sgl(const struct kasumi_test_data *tdata)
3574 {
3575         struct crypto_testsuite_params *ts_params = &testsuite_params;
3576         struct crypto_unittest_params *ut_params = &unittest_params;
3577
3578         int retval;
3579         unsigned int plaintext_pad_len;
3580         unsigned int plaintext_len;
3581
3582         const uint8_t *ciphertext;
3583         uint8_t buffer[2048];
3584
3585         struct rte_cryptodev_info dev_info;
3586
3587         rte_cryptodev_info_get(ts_params->valid_devs[0], &dev_info);
3588
3589         uint64_t feat_flags = dev_info.feature_flags;
3590         if (!(feat_flags & RTE_CRYPTODEV_FF_OOP_SGL_IN_SGL_OUT)) {
3591                 printf("Device doesn't support out-of-place scatter-gather "
3592                                 "in both input and output mbufs. "
3593                                 "Test Skipped.\n");
3594                 return -ENOTSUP;
3595         }
3596
3597         /* Create KASUMI session */
3598         retval = create_wireless_algo_cipher_session(ts_params->valid_devs[0],
3599                                         RTE_CRYPTO_CIPHER_OP_ENCRYPT,
3600                                         RTE_CRYPTO_CIPHER_KASUMI_F8,
3601                                         tdata->key.data, tdata->key.len,
3602                                         tdata->cipher_iv.len);
3603         if (retval < 0)
3604                 return retval;
3605
3606         plaintext_len = ceil_byte_length(tdata->plaintext.len);
3607         /* Append data which is padded to a multiple */
3608         /* of the algorithms block size */
3609         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 8);
3610
3611         ut_params->ibuf = create_segmented_mbuf(ts_params->mbuf_pool,
3612                         plaintext_pad_len, 10, 0);
3613         ut_params->obuf = create_segmented_mbuf(ts_params->mbuf_pool,
3614                         plaintext_pad_len, 3, 0);
3615
3616         /* Append data which is padded to a multiple */
3617         /* of the algorithms block size */
3618         pktmbuf_write(ut_params->ibuf, 0, plaintext_len, tdata->plaintext.data);
3619
3620         /* Create KASUMI operation */
3621         retval = create_wireless_algo_cipher_operation_oop(tdata->cipher_iv.data,
3622                                 tdata->cipher_iv.len,
3623                                 RTE_ALIGN_CEIL(tdata->validCipherLenInBits.len, 8),
3624                                 tdata->validCipherOffsetInBits.len);
3625         if (retval < 0)
3626                 return retval;
3627
3628         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
3629                                                 ut_params->op);
3630         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
3631
3632         ut_params->obuf = ut_params->op->sym->m_dst;
3633         if (ut_params->obuf)
3634                 ciphertext = rte_pktmbuf_read(ut_params->obuf, 0,
3635                                 plaintext_pad_len, buffer);
3636         else
3637                 ciphertext = rte_pktmbuf_read(ut_params->ibuf,
3638                                 tdata->validCipherOffsetInBits.len >> 3,
3639                                 plaintext_pad_len, buffer);
3640
3641         const uint8_t *reference_ciphertext = tdata->ciphertext.data +
3642                                 (tdata->validCipherOffsetInBits.len >> 3);
3643         /* Validate obuf */
3644         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
3645                 ciphertext,
3646                 reference_ciphertext,
3647                 tdata->validCipherLenInBits.len,
3648                 "KASUMI Ciphertext data not as expected");
3649         return 0;
3650 }
3651
3652
3653 static int
3654 test_kasumi_decryption_oop(const struct kasumi_test_data *tdata)
3655 {
3656         struct crypto_testsuite_params *ts_params = &testsuite_params;
3657         struct crypto_unittest_params *ut_params = &unittest_params;
3658
3659         int retval;
3660         uint8_t *ciphertext, *plaintext;
3661         unsigned ciphertext_pad_len;
3662         unsigned ciphertext_len;
3663
3664         /* Create KASUMI session */
3665         retval = create_wireless_algo_cipher_session(ts_params->valid_devs[0],
3666                                         RTE_CRYPTO_CIPHER_OP_DECRYPT,
3667                                         RTE_CRYPTO_CIPHER_KASUMI_F8,
3668                                         tdata->key.data, tdata->key.len,
3669                                         tdata->cipher_iv.len);
3670         if (retval < 0)
3671                 return retval;
3672
3673         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
3674         ut_params->obuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
3675
3676         /* Clear mbuf payload */
3677         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
3678                rte_pktmbuf_tailroom(ut_params->ibuf));
3679
3680         ciphertext_len = ceil_byte_length(tdata->ciphertext.len);
3681         /* Append data which is padded to a multiple */
3682         /* of the algorithms block size */
3683         ciphertext_pad_len = RTE_ALIGN_CEIL(ciphertext_len, 8);
3684         ciphertext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
3685                                 ciphertext_pad_len);
3686         rte_pktmbuf_append(ut_params->obuf, ciphertext_pad_len);
3687         memcpy(ciphertext, tdata->ciphertext.data, ciphertext_len);
3688
3689         debug_hexdump(stdout, "ciphertext:", ciphertext, ciphertext_len);
3690
3691         /* Create KASUMI operation */
3692         retval = create_wireless_algo_cipher_operation_oop(tdata->cipher_iv.data,
3693                                 tdata->cipher_iv.len,
3694                                 RTE_ALIGN_CEIL(tdata->validCipherLenInBits.len, 8),
3695                                 tdata->validCipherOffsetInBits.len);
3696         if (retval < 0)
3697                 return retval;
3698
3699         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
3700                                                 ut_params->op);
3701         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
3702
3703         ut_params->obuf = ut_params->op->sym->m_dst;
3704         if (ut_params->obuf)
3705                 plaintext = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *);
3706         else
3707                 plaintext = ciphertext + (tdata->validCipherOffsetInBits.len >> 3);
3708
3709         debug_hexdump(stdout, "plaintext:", plaintext, ciphertext_len);
3710
3711         const uint8_t *reference_plaintext = tdata->plaintext.data +
3712                                 (tdata->validCipherOffsetInBits.len >> 3);
3713         /* Validate obuf */
3714         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
3715                 plaintext,
3716                 reference_plaintext,
3717                 tdata->validCipherLenInBits.len,
3718                 "KASUMI Plaintext data not as expected");
3719         return 0;
3720 }
3721
3722 static int
3723 test_kasumi_decryption(const struct kasumi_test_data *tdata)
3724 {
3725         struct crypto_testsuite_params *ts_params = &testsuite_params;
3726         struct crypto_unittest_params *ut_params = &unittest_params;
3727
3728         int retval;
3729         uint8_t *ciphertext, *plaintext;
3730         unsigned ciphertext_pad_len;
3731         unsigned ciphertext_len;
3732
3733         /* Create KASUMI session */
3734         retval = create_wireless_algo_cipher_session(ts_params->valid_devs[0],
3735                                         RTE_CRYPTO_CIPHER_OP_DECRYPT,
3736                                         RTE_CRYPTO_CIPHER_KASUMI_F8,
3737                                         tdata->key.data, tdata->key.len,
3738                                         tdata->cipher_iv.len);
3739         if (retval < 0)
3740                 return retval;
3741
3742         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
3743
3744         /* Clear mbuf payload */
3745         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
3746                rte_pktmbuf_tailroom(ut_params->ibuf));
3747
3748         ciphertext_len = ceil_byte_length(tdata->ciphertext.len);
3749         /* Append data which is padded to a multiple */
3750         /* of the algorithms block size */
3751         ciphertext_pad_len = RTE_ALIGN_CEIL(ciphertext_len, 8);
3752         ciphertext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
3753                                 ciphertext_pad_len);
3754         memcpy(ciphertext, tdata->ciphertext.data, ciphertext_len);
3755
3756         debug_hexdump(stdout, "ciphertext:", ciphertext, ciphertext_len);
3757
3758         /* Create KASUMI operation */
3759         retval = create_wireless_algo_cipher_operation(tdata->cipher_iv.data,
3760                                         tdata->cipher_iv.len,
3761                                         tdata->ciphertext.len,
3762                                         tdata->validCipherOffsetInBits.len);
3763         if (retval < 0)
3764                 return retval;
3765
3766         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
3767                                                 ut_params->op);
3768         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
3769
3770         ut_params->obuf = ut_params->op->sym->m_dst;
3771         if (ut_params->obuf)
3772                 plaintext = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *);
3773         else
3774                 plaintext = ciphertext + (tdata->validCipherOffsetInBits.len >> 3);
3775
3776         debug_hexdump(stdout, "plaintext:", plaintext, ciphertext_len);
3777
3778         const uint8_t *reference_plaintext = tdata->plaintext.data +
3779                                 (tdata->validCipherOffsetInBits.len >> 3);
3780         /* Validate obuf */
3781         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
3782                 plaintext,
3783                 reference_plaintext,
3784                 tdata->validCipherLenInBits.len,
3785                 "KASUMI Plaintext data not as expected");
3786         return 0;
3787 }
3788
3789 static int
3790 test_snow3g_encryption(const struct snow3g_test_data *tdata)
3791 {
3792         struct crypto_testsuite_params *ts_params = &testsuite_params;
3793         struct crypto_unittest_params *ut_params = &unittest_params;
3794
3795         int retval;
3796         uint8_t *plaintext, *ciphertext;
3797         unsigned plaintext_pad_len;
3798         unsigned plaintext_len;
3799
3800         /* Create SNOW 3G session */
3801         retval = create_wireless_algo_cipher_session(ts_params->valid_devs[0],
3802                                         RTE_CRYPTO_CIPHER_OP_ENCRYPT,
3803                                         RTE_CRYPTO_CIPHER_SNOW3G_UEA2,
3804                                         tdata->key.data, tdata->key.len,
3805                                         tdata->cipher_iv.len);
3806         if (retval < 0)
3807                 return retval;
3808
3809         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
3810
3811         /* Clear mbuf payload */
3812         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
3813                rte_pktmbuf_tailroom(ut_params->ibuf));
3814
3815         plaintext_len = ceil_byte_length(tdata->plaintext.len);
3816         /* Append data which is padded to a multiple of */
3817         /* the algorithms block size */
3818         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
3819         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
3820                                 plaintext_pad_len);
3821         memcpy(plaintext, tdata->plaintext.data, plaintext_len);
3822
3823         debug_hexdump(stdout, "plaintext:", plaintext, plaintext_len);
3824
3825         /* Create SNOW 3G operation */
3826         retval = create_wireless_algo_cipher_operation(tdata->cipher_iv.data,
3827                                         tdata->cipher_iv.len,
3828                                         tdata->validCipherLenInBits.len,
3829                                         0);
3830         if (retval < 0)
3831                 return retval;
3832
3833         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
3834                                                 ut_params->op);
3835         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
3836
3837         ut_params->obuf = ut_params->op->sym->m_dst;
3838         if (ut_params->obuf)
3839                 ciphertext = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *);
3840         else
3841                 ciphertext = plaintext;
3842
3843         debug_hexdump(stdout, "ciphertext:", ciphertext, plaintext_len);
3844
3845         /* Validate obuf */
3846         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
3847                 ciphertext,
3848                 tdata->ciphertext.data,
3849                 tdata->validDataLenInBits.len,
3850                 "SNOW 3G Ciphertext data not as expected");
3851         return 0;
3852 }
3853
3854
3855 static int
3856 test_snow3g_encryption_oop(const struct snow3g_test_data *tdata)
3857 {
3858         struct crypto_testsuite_params *ts_params = &testsuite_params;
3859         struct crypto_unittest_params *ut_params = &unittest_params;
3860         uint8_t *plaintext, *ciphertext;
3861
3862         int retval;
3863         unsigned plaintext_pad_len;
3864         unsigned plaintext_len;
3865
3866         /* Create SNOW 3G session */
3867         retval = create_wireless_algo_cipher_session(ts_params->valid_devs[0],
3868                                         RTE_CRYPTO_CIPHER_OP_ENCRYPT,
3869                                         RTE_CRYPTO_CIPHER_SNOW3G_UEA2,
3870                                         tdata->key.data, tdata->key.len,
3871                                         tdata->cipher_iv.len);
3872         if (retval < 0)
3873                 return retval;
3874
3875         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
3876         ut_params->obuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
3877
3878         TEST_ASSERT_NOT_NULL(ut_params->ibuf,
3879                         "Failed to allocate input buffer in mempool");
3880         TEST_ASSERT_NOT_NULL(ut_params->obuf,
3881                         "Failed to allocate output buffer in mempool");
3882
3883         /* Clear mbuf payload */
3884         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
3885                rte_pktmbuf_tailroom(ut_params->ibuf));
3886
3887         plaintext_len = ceil_byte_length(tdata->plaintext.len);
3888         /* Append data which is padded to a multiple of */
3889         /* the algorithms block size */
3890         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
3891         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
3892                                 plaintext_pad_len);
3893         rte_pktmbuf_append(ut_params->obuf, plaintext_pad_len);
3894         memcpy(plaintext, tdata->plaintext.data, plaintext_len);
3895
3896         debug_hexdump(stdout, "plaintext:", plaintext, plaintext_len);
3897
3898         /* Create SNOW 3G operation */
3899         retval = create_wireless_algo_cipher_operation_oop(tdata->cipher_iv.data,
3900                                         tdata->cipher_iv.len,
3901                                         tdata->validCipherLenInBits.len,
3902                                         0);
3903         if (retval < 0)
3904                 return retval;
3905
3906         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
3907                                                 ut_params->op);
3908         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
3909
3910         ut_params->obuf = ut_params->op->sym->m_dst;
3911         if (ut_params->obuf)
3912                 ciphertext = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *);
3913         else
3914                 ciphertext = plaintext;
3915
3916         debug_hexdump(stdout, "ciphertext:", ciphertext, plaintext_len);
3917
3918         /* Validate obuf */
3919         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
3920                 ciphertext,
3921                 tdata->ciphertext.data,
3922                 tdata->validDataLenInBits.len,
3923                 "SNOW 3G Ciphertext data not as expected");
3924         return 0;
3925 }
3926
3927 static int
3928 test_snow3g_encryption_oop_sgl(const struct snow3g_test_data *tdata)
3929 {
3930         struct crypto_testsuite_params *ts_params = &testsuite_params;
3931         struct crypto_unittest_params *ut_params = &unittest_params;
3932
3933         int retval;
3934         unsigned int plaintext_pad_len;
3935         unsigned int plaintext_len;
3936         uint8_t buffer[10000];
3937         const uint8_t *ciphertext;
3938
3939         struct rte_cryptodev_info dev_info;
3940
3941         rte_cryptodev_info_get(ts_params->valid_devs[0], &dev_info);
3942
3943         uint64_t feat_flags = dev_info.feature_flags;
3944
3945         if (!(feat_flags & RTE_CRYPTODEV_FF_OOP_SGL_IN_SGL_OUT)) {
3946                 printf("Device doesn't support out-of-place scatter-gather "
3947                                 "in both input and output mbufs. "
3948                                 "Test Skipped.\n");
3949                 return -ENOTSUP;
3950         }
3951
3952         /* Create SNOW 3G session */
3953         retval = create_wireless_algo_cipher_session(ts_params->valid_devs[0],
3954                                         RTE_CRYPTO_CIPHER_OP_ENCRYPT,
3955                                         RTE_CRYPTO_CIPHER_SNOW3G_UEA2,
3956                                         tdata->key.data, tdata->key.len,
3957                                         tdata->cipher_iv.len);
3958         if (retval < 0)
3959                 return retval;
3960
3961         plaintext_len = ceil_byte_length(tdata->plaintext.len);
3962         /* Append data which is padded to a multiple of */
3963         /* the algorithms block size */
3964         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
3965
3966         ut_params->ibuf = create_segmented_mbuf(ts_params->mbuf_pool,
3967                         plaintext_pad_len, 10, 0);
3968         ut_params->obuf = create_segmented_mbuf(ts_params->mbuf_pool,
3969                         plaintext_pad_len, 3, 0);
3970
3971         TEST_ASSERT_NOT_NULL(ut_params->ibuf,
3972                         "Failed to allocate input buffer in mempool");
3973         TEST_ASSERT_NOT_NULL(ut_params->obuf,
3974                         "Failed to allocate output buffer in mempool");
3975
3976         pktmbuf_write(ut_params->ibuf, 0, plaintext_len, tdata->plaintext.data);
3977
3978         /* Create SNOW 3G operation */
3979         retval = create_wireless_algo_cipher_operation_oop(tdata->cipher_iv.data,
3980                                         tdata->cipher_iv.len,
3981                                         tdata->validCipherLenInBits.len,
3982                                         0);
3983         if (retval < 0)
3984                 return retval;
3985
3986         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
3987                                                 ut_params->op);
3988         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
3989
3990         ut_params->obuf = ut_params->op->sym->m_dst;
3991         if (ut_params->obuf)
3992                 ciphertext = rte_pktmbuf_read(ut_params->obuf, 0,
3993                                 plaintext_len, buffer);
3994         else
3995                 ciphertext = rte_pktmbuf_read(ut_params->ibuf, 0,
3996                                 plaintext_len, buffer);
3997
3998         debug_hexdump(stdout, "ciphertext:", ciphertext, plaintext_len);
3999
4000         /* Validate obuf */
4001         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
4002                 ciphertext,
4003                 tdata->ciphertext.data,
4004                 tdata->validDataLenInBits.len,
4005                 "SNOW 3G Ciphertext data not as expected");
4006
4007         return 0;
4008 }
4009
4010 /* Shift right a buffer by "offset" bits, "offset" < 8 */
4011 static void
4012 buffer_shift_right(uint8_t *buffer, uint32_t length, uint8_t offset)
4013 {
4014         uint8_t curr_byte, prev_byte;
4015         uint32_t length_in_bytes = ceil_byte_length(length + offset);
4016         uint8_t lower_byte_mask = (1 << offset) - 1;
4017         unsigned i;
4018
4019         prev_byte = buffer[0];
4020         buffer[0] >>= offset;
4021
4022         for (i = 1; i < length_in_bytes; i++) {
4023                 curr_byte = buffer[i];
4024                 buffer[i] = ((prev_byte & lower_byte_mask) << (8 - offset)) |
4025                                 (curr_byte >> offset);
4026                 prev_byte = curr_byte;
4027         }
4028 }
4029
4030 static int
4031 test_snow3g_encryption_offset_oop(const struct snow3g_test_data *tdata)
4032 {
4033         struct crypto_testsuite_params *ts_params = &testsuite_params;
4034         struct crypto_unittest_params *ut_params = &unittest_params;
4035         uint8_t *plaintext, *ciphertext;
4036         int retval;
4037         uint32_t plaintext_len;
4038         uint32_t plaintext_pad_len;
4039         uint8_t extra_offset = 4;
4040         uint8_t *expected_ciphertext_shifted;
4041
4042         /* Create SNOW 3G session */
4043         retval = create_wireless_algo_cipher_session(ts_params->valid_devs[0],
4044                                         RTE_CRYPTO_CIPHER_OP_ENCRYPT,
4045                                         RTE_CRYPTO_CIPHER_SNOW3G_UEA2,
4046                                         tdata->key.data, tdata->key.len,
4047                                         tdata->cipher_iv.len);
4048         if (retval < 0)
4049                 return retval;
4050
4051         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
4052         ut_params->obuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
4053
4054         TEST_ASSERT_NOT_NULL(ut_params->ibuf,
4055                         "Failed to allocate input buffer in mempool");
4056         TEST_ASSERT_NOT_NULL(ut_params->obuf,
4057                         "Failed to allocate output buffer in mempool");
4058
4059         /* Clear mbuf payload */
4060         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
4061                rte_pktmbuf_tailroom(ut_params->ibuf));
4062
4063         plaintext_len = ceil_byte_length(tdata->plaintext.len + extra_offset);
4064         /*
4065          * Append data which is padded to a
4066          * multiple of the algorithms block size
4067          */
4068         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
4069
4070         plaintext = (uint8_t *) rte_pktmbuf_append(ut_params->ibuf,
4071                                                 plaintext_pad_len);
4072
4073         rte_pktmbuf_append(ut_params->obuf, plaintext_pad_len);
4074
4075         memcpy(plaintext, tdata->plaintext.data, (tdata->plaintext.len >> 3));
4076         buffer_shift_right(plaintext, tdata->plaintext.len, extra_offset);
4077
4078 #ifdef RTE_APP_TEST_DEBUG
4079         rte_hexdump(stdout, "plaintext:", plaintext, tdata->plaintext.len);
4080 #endif
4081         /* Create SNOW 3G operation */
4082         retval = create_wireless_algo_cipher_operation_oop(tdata->cipher_iv.data,
4083                                         tdata->cipher_iv.len,
4084                                         tdata->validCipherLenInBits.len,
4085                                         extra_offset);
4086         if (retval < 0)
4087                 return retval;
4088
4089         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
4090                                                 ut_params->op);
4091         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
4092
4093         ut_params->obuf = ut_params->op->sym->m_dst;
4094         if (ut_params->obuf)
4095                 ciphertext = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *);
4096         else
4097                 ciphertext = plaintext;
4098
4099 #ifdef RTE_APP_TEST_DEBUG
4100         rte_hexdump(stdout, "ciphertext:", ciphertext, plaintext_len);
4101 #endif
4102
4103         expected_ciphertext_shifted = rte_malloc(NULL, plaintext_len, 8);
4104
4105         TEST_ASSERT_NOT_NULL(expected_ciphertext_shifted,
4106                         "failed to reserve memory for ciphertext shifted\n");
4107
4108         memcpy(expected_ciphertext_shifted, tdata->ciphertext.data,
4109                         ceil_byte_length(tdata->ciphertext.len));
4110         buffer_shift_right(expected_ciphertext_shifted, tdata->ciphertext.len,
4111                         extra_offset);
4112         /* Validate obuf */
4113         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT_OFFSET(
4114                 ciphertext,
4115                 expected_ciphertext_shifted,
4116                 tdata->validDataLenInBits.len,
4117                 extra_offset,
4118                 "SNOW 3G Ciphertext data not as expected");
4119         return 0;
4120 }
4121
4122 static int test_snow3g_decryption(const struct snow3g_test_data *tdata)
4123 {
4124         struct crypto_testsuite_params *ts_params = &testsuite_params;
4125         struct crypto_unittest_params *ut_params = &unittest_params;
4126
4127         int retval;
4128
4129         uint8_t *plaintext, *ciphertext;
4130         unsigned ciphertext_pad_len;
4131         unsigned ciphertext_len;
4132
4133         /* Create SNOW 3G session */
4134         retval = create_wireless_algo_cipher_session(ts_params->valid_devs[0],
4135                                         RTE_CRYPTO_CIPHER_OP_DECRYPT,
4136                                         RTE_CRYPTO_CIPHER_SNOW3G_UEA2,
4137                                         tdata->key.data, tdata->key.len,
4138                                         tdata->cipher_iv.len);
4139         if (retval < 0)
4140                 return retval;
4141
4142         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
4143
4144         /* Clear mbuf payload */
4145         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
4146                rte_pktmbuf_tailroom(ut_params->ibuf));
4147
4148         ciphertext_len = ceil_byte_length(tdata->ciphertext.len);
4149         /* Append data which is padded to a multiple of */
4150         /* the algorithms block size */
4151         ciphertext_pad_len = RTE_ALIGN_CEIL(ciphertext_len, 16);
4152         ciphertext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
4153                                 ciphertext_pad_len);
4154         memcpy(ciphertext, tdata->ciphertext.data, ciphertext_len);
4155
4156         debug_hexdump(stdout, "ciphertext:", ciphertext, ciphertext_len);
4157
4158         /* Create SNOW 3G operation */
4159         retval = create_wireless_algo_cipher_operation(tdata->cipher_iv.data,
4160                                         tdata->cipher_iv.len,
4161                                         tdata->validCipherLenInBits.len,
4162                                         tdata->cipher.offset_bits);
4163         if (retval < 0)
4164                 return retval;
4165
4166         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
4167                                                 ut_params->op);
4168         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
4169         ut_params->obuf = ut_params->op->sym->m_dst;
4170         if (ut_params->obuf)
4171                 plaintext = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *);
4172         else
4173                 plaintext = ciphertext;
4174
4175         debug_hexdump(stdout, "plaintext:", plaintext, ciphertext_len);
4176
4177         /* Validate obuf */
4178         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(plaintext,
4179                                 tdata->plaintext.data,
4180                                 tdata->validDataLenInBits.len,
4181                                 "SNOW 3G Plaintext data not as expected");
4182         return 0;
4183 }
4184
4185 static int test_snow3g_decryption_oop(const struct snow3g_test_data *tdata)
4186 {
4187         struct crypto_testsuite_params *ts_params = &testsuite_params;
4188         struct crypto_unittest_params *ut_params = &unittest_params;
4189
4190         int retval;
4191
4192         uint8_t *plaintext, *ciphertext;
4193         unsigned ciphertext_pad_len;
4194         unsigned ciphertext_len;
4195
4196         /* Create SNOW 3G session */
4197         retval = create_wireless_algo_cipher_session(ts_params->valid_devs[0],
4198                                         RTE_CRYPTO_CIPHER_OP_DECRYPT,
4199                                         RTE_CRYPTO_CIPHER_SNOW3G_UEA2,
4200                                         tdata->key.data, tdata->key.len,
4201                                         tdata->cipher_iv.len);
4202         if (retval < 0)
4203                 return retval;
4204
4205         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
4206         ut_params->obuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
4207
4208         TEST_ASSERT_NOT_NULL(ut_params->ibuf,
4209                         "Failed to allocate input buffer");
4210         TEST_ASSERT_NOT_NULL(ut_params->obuf,
4211                         "Failed to allocate output buffer");
4212
4213         /* Clear mbuf payload */
4214         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
4215                rte_pktmbuf_tailroom(ut_params->ibuf));
4216
4217         memset(rte_pktmbuf_mtod(ut_params->obuf, uint8_t *), 0,
4218                        rte_pktmbuf_tailroom(ut_params->obuf));
4219
4220         ciphertext_len = ceil_byte_length(tdata->ciphertext.len);
4221         /* Append data which is padded to a multiple of */
4222         /* the algorithms block size */
4223         ciphertext_pad_len = RTE_ALIGN_CEIL(ciphertext_len, 16);
4224         ciphertext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
4225                                 ciphertext_pad_len);
4226         rte_pktmbuf_append(ut_params->obuf, ciphertext_pad_len);
4227         memcpy(ciphertext, tdata->ciphertext.data, ciphertext_len);
4228
4229         debug_hexdump(stdout, "ciphertext:", ciphertext, ciphertext_len);
4230
4231         /* Create SNOW 3G operation */
4232         retval = create_wireless_algo_cipher_operation_oop(tdata->cipher_iv.data,
4233                                         tdata->cipher_iv.len,
4234                                         tdata->validCipherLenInBits.len,
4235                                         0);
4236         if (retval < 0)
4237                 return retval;
4238
4239         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
4240                                                 ut_params->op);
4241         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
4242         ut_params->obuf = ut_params->op->sym->m_dst;
4243         if (ut_params->obuf)
4244                 plaintext = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *);
4245         else
4246                 plaintext = ciphertext;
4247
4248         debug_hexdump(stdout, "plaintext:", plaintext, ciphertext_len);
4249
4250         /* Validate obuf */
4251         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(plaintext,
4252                                 tdata->plaintext.data,
4253                                 tdata->validDataLenInBits.len,
4254                                 "SNOW 3G Plaintext data not as expected");
4255         return 0;
4256 }
4257
4258 static int
4259 test_zuc_cipher_auth(const struct wireless_test_data *tdata)
4260 {
4261         struct crypto_testsuite_params *ts_params = &testsuite_params;
4262         struct crypto_unittest_params *ut_params = &unittest_params;
4263
4264         int retval;
4265
4266         uint8_t *plaintext, *ciphertext;
4267         unsigned int plaintext_pad_len;
4268         unsigned int plaintext_len;
4269
4270         struct rte_cryptodev_sym_capability_idx cap_idx;
4271
4272         /* Check if device supports ZUC EEA3 */
4273         cap_idx.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
4274         cap_idx.algo.cipher = RTE_CRYPTO_CIPHER_ZUC_EEA3;
4275
4276         if (rte_cryptodev_sym_capability_get(ts_params->valid_devs[0],
4277                         &cap_idx) == NULL)
4278                 return -ENOTSUP;
4279
4280         /* Check if device supports ZUC EIA3 */
4281         cap_idx.type = RTE_CRYPTO_SYM_XFORM_AUTH;
4282         cap_idx.algo.auth = RTE_CRYPTO_AUTH_ZUC_EIA3;
4283
4284         if (rte_cryptodev_sym_capability_get(ts_params->valid_devs[0],
4285                         &cap_idx) == NULL)
4286                 return -ENOTSUP;
4287
4288         /* Create ZUC session */
4289         retval = create_zuc_cipher_auth_encrypt_generate_session(
4290                         ts_params->valid_devs[0],
4291                         tdata);
4292         if (retval < 0)
4293                 return retval;
4294         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
4295
4296         /* clear mbuf payload */
4297         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
4298                         rte_pktmbuf_tailroom(ut_params->ibuf));
4299
4300         plaintext_len = ceil_byte_length(tdata->plaintext.len);
4301         /* Append data which is padded to a multiple of */
4302         /* the algorithms block size */
4303         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
4304         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
4305                                 plaintext_pad_len);
4306         memcpy(plaintext, tdata->plaintext.data, plaintext_len);
4307
4308         debug_hexdump(stdout, "plaintext:", plaintext, plaintext_len);
4309
4310         /* Create ZUC operation */
4311         retval = create_zuc_cipher_hash_generate_operation(tdata);
4312         if (retval < 0)
4313                 return retval;
4314
4315         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
4316                         ut_params->op);
4317         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
4318         ut_params->obuf = ut_params->op->sym->m_src;
4319         if (ut_params->obuf)
4320                 ciphertext = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *);
4321         else
4322                 ciphertext = plaintext;
4323
4324         debug_hexdump(stdout, "ciphertext:", ciphertext, plaintext_len);
4325         /* Validate obuf */
4326         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
4327                         ciphertext,
4328                         tdata->ciphertext.data,
4329                         tdata->validDataLenInBits.len,
4330                         "ZUC Ciphertext data not as expected");
4331
4332         ut_params->digest = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *)
4333             + plaintext_pad_len;
4334
4335         /* Validate obuf */
4336         TEST_ASSERT_BUFFERS_ARE_EQUAL(
4337                         ut_params->digest,
4338                         tdata->digest.data,
4339                         4,
4340                         "ZUC Generated auth tag not as expected");
4341         return 0;
4342 }
4343
4344 static int
4345 test_snow3g_cipher_auth(const struct snow3g_test_data *tdata)
4346 {
4347         struct crypto_testsuite_params *ts_params = &testsuite_params;
4348         struct crypto_unittest_params *ut_params = &unittest_params;
4349
4350         int retval;
4351
4352         uint8_t *plaintext, *ciphertext;
4353         unsigned plaintext_pad_len;
4354         unsigned plaintext_len;
4355
4356         /* Create SNOW 3G session */
4357         retval = create_wireless_algo_cipher_auth_session(ts_params->valid_devs[0],
4358                         RTE_CRYPTO_CIPHER_OP_ENCRYPT,
4359                         RTE_CRYPTO_AUTH_OP_GENERATE,
4360                         RTE_CRYPTO_AUTH_SNOW3G_UIA2,
4361                         RTE_CRYPTO_CIPHER_SNOW3G_UEA2,
4362                         tdata->key.data, tdata->key.len,
4363                         tdata->auth_iv.len, tdata->digest.len,
4364                         tdata->cipher_iv.len);
4365         if (retval < 0)
4366                 return retval;
4367         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
4368
4369         /* clear mbuf payload */
4370         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
4371                         rte_pktmbuf_tailroom(ut_params->ibuf));
4372
4373         plaintext_len = ceil_byte_length(tdata->plaintext.len);
4374         /* Append data which is padded to a multiple of */
4375         /* the algorithms block size */
4376         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
4377         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
4378                                 plaintext_pad_len);
4379         memcpy(plaintext, tdata->plaintext.data, plaintext_len);
4380
4381         debug_hexdump(stdout, "plaintext:", plaintext, plaintext_len);
4382
4383         /* Create SNOW 3G operation */
4384         retval = create_wireless_algo_cipher_hash_operation(tdata->digest.data,
4385                         tdata->digest.len, tdata->auth_iv.data,
4386                         tdata->auth_iv.len,
4387                         plaintext_pad_len, RTE_CRYPTO_AUTH_OP_GENERATE,
4388                         tdata->cipher_iv.data, tdata->cipher_iv.len,
4389                         tdata->validCipherLenInBits.len,
4390                         0,
4391                         tdata->validAuthLenInBits.len,
4392                         0
4393                         );
4394         if (retval < 0)
4395                 return retval;
4396
4397         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
4398                         ut_params->op);
4399         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
4400         ut_params->obuf = ut_params->op->sym->m_src;
4401         if (ut_params->obuf)
4402                 ciphertext = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *);
4403         else
4404                 ciphertext = plaintext;
4405
4406         debug_hexdump(stdout, "ciphertext:", ciphertext, plaintext_len);
4407         /* Validate obuf */
4408         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
4409                         ciphertext,
4410                         tdata->ciphertext.data,
4411                         tdata->validDataLenInBits.len,
4412                         "SNOW 3G Ciphertext data not as expected");
4413
4414         ut_params->digest = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *)
4415             + plaintext_pad_len;
4416
4417         /* Validate obuf */
4418         TEST_ASSERT_BUFFERS_ARE_EQUAL(
4419                         ut_params->digest,
4420                         tdata->digest.data,
4421                         DIGEST_BYTE_LENGTH_SNOW3G_UIA2,
4422                         "SNOW 3G Generated auth tag not as expected");
4423         return 0;
4424 }
4425
4426 static int
4427 test_snow3g_auth_cipher(const struct snow3g_test_data *tdata,
4428         uint8_t op_mode, uint8_t verify)
4429 {
4430         struct crypto_testsuite_params *ts_params = &testsuite_params;
4431         struct crypto_unittest_params *ut_params = &unittest_params;
4432
4433         int retval;
4434
4435         uint8_t *plaintext = NULL, *ciphertext = NULL;
4436         unsigned int plaintext_pad_len;
4437         unsigned int plaintext_len;
4438         unsigned int ciphertext_pad_len;
4439         unsigned int ciphertext_len;
4440
4441         struct rte_cryptodev_info dev_info;
4442
4443         rte_cryptodev_info_get(ts_params->valid_devs[0], &dev_info);
4444
4445         uint64_t feat_flags = dev_info.feature_flags;
4446
4447         if (op_mode == OUT_OF_PLACE) {
4448                 if (!(feat_flags & RTE_CRYPTODEV_FF_DIGEST_ENCRYPTED)) {
4449                         printf("Device doesn't support digest encrypted.\n");
4450                         return -ENOTSUP;
4451                 }
4452         }
4453
4454         /* Create SNOW 3G session */
4455         retval = create_wireless_algo_auth_cipher_session(
4456                         ts_params->valid_devs[0],
4457                         (verify ? RTE_CRYPTO_CIPHER_OP_DECRYPT
4458                                         : RTE_CRYPTO_CIPHER_OP_ENCRYPT),
4459                         (verify ? RTE_CRYPTO_AUTH_OP_VERIFY
4460                                         : RTE_CRYPTO_AUTH_OP_GENERATE),
4461                         RTE_CRYPTO_AUTH_SNOW3G_UIA2,
4462                         RTE_CRYPTO_CIPHER_SNOW3G_UEA2,
4463                         tdata->key.data, tdata->key.len,
4464                         tdata->auth_iv.len, tdata->digest.len,
4465                         tdata->cipher_iv.len);
4466
4467         if (retval < 0)
4468                 return retval;
4469
4470         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
4471         if (op_mode == OUT_OF_PLACE)
4472                 ut_params->obuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
4473
4474         /* clear mbuf payload */
4475         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
4476                 rte_pktmbuf_tailroom(ut_params->ibuf));
4477         if (op_mode == OUT_OF_PLACE)
4478                 memset(rte_pktmbuf_mtod(ut_params->obuf, uint8_t *), 0,
4479                         rte_pktmbuf_tailroom(ut_params->obuf));
4480
4481         ciphertext_len = ceil_byte_length(tdata->ciphertext.len);
4482         plaintext_len = ceil_byte_length(tdata->plaintext.len);
4483         ciphertext_pad_len = RTE_ALIGN_CEIL(ciphertext_len, 16);
4484         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
4485
4486         if (verify) {
4487                 ciphertext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
4488                                         ciphertext_pad_len);
4489                 memcpy(ciphertext, tdata->ciphertext.data, ciphertext_len);
4490                 if (op_mode == OUT_OF_PLACE)
4491                         rte_pktmbuf_append(ut_params->obuf, ciphertext_pad_len);
4492                 debug_hexdump(stdout, "ciphertext:", ciphertext,
4493                         ciphertext_len);
4494         } else {
4495                 plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
4496                                         plaintext_pad_len);
4497                 memcpy(plaintext, tdata->plaintext.data, plaintext_len);
4498                 if (op_mode == OUT_OF_PLACE)
4499                         rte_pktmbuf_append(ut_params->obuf, plaintext_pad_len);
4500                 debug_hexdump(stdout, "plaintext:", plaintext, plaintext_len);
4501         }
4502
4503         /* Create SNOW 3G operation */
4504         retval = create_wireless_algo_auth_cipher_operation(
4505                 tdata->digest.len,
4506                 tdata->cipher_iv.data, tdata->cipher_iv.len,
4507                 tdata->auth_iv.data, tdata->auth_iv.len,
4508                 (tdata->digest.offset_bytes == 0 ?
4509                 (verify ? ciphertext_pad_len : plaintext_pad_len)
4510                         : tdata->digest.offset_bytes),
4511                 tdata->validCipherLenInBits.len,
4512                 tdata->cipher.offset_bits,
4513                 tdata->validAuthLenInBits.len,
4514                 tdata->auth.offset_bits,
4515                 op_mode, 0);
4516
4517         if (retval < 0)
4518                 return retval;
4519
4520         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
4521                         ut_params->op);
4522
4523         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
4524
4525         ut_params->obuf = (op_mode == IN_PLACE ?
4526                 ut_params->op->sym->m_src : ut_params->op->sym->m_dst);
4527
4528         if (verify) {
4529                 if (ut_params->obuf)
4530                         plaintext = rte_pktmbuf_mtod(ut_params->obuf,
4531                                                         uint8_t *);
4532                 else
4533                         plaintext = ciphertext +
4534                                 (tdata->cipher.offset_bits >> 3);
4535
4536                 debug_hexdump(stdout, "plaintext:", plaintext,
4537                         (tdata->plaintext.len >> 3) - tdata->digest.len);
4538                 debug_hexdump(stdout, "plaintext expected:",
4539                         tdata->plaintext.data,
4540                         (tdata->plaintext.len >> 3) - tdata->digest.len);
4541         } else {
4542                 if (ut_params->obuf)
4543                         ciphertext = rte_pktmbuf_mtod(ut_params->obuf,
4544                                                         uint8_t *);
4545                 else
4546                         ciphertext = plaintext;
4547
4548                 debug_hexdump(stdout, "ciphertext:", ciphertext,
4549                         ciphertext_len);
4550                 debug_hexdump(stdout, "ciphertext expected:",
4551                         tdata->ciphertext.data, tdata->ciphertext.len >> 3);
4552
4553                 ut_params->digest = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *)
4554                         + (tdata->digest.offset_bytes == 0 ?
4555                 plaintext_pad_len : tdata->digest.offset_bytes);
4556
4557                 debug_hexdump(stdout, "digest:", ut_params->digest,
4558                         tdata->digest.len);
4559                 debug_hexdump(stdout, "digest expected:", tdata->digest.data,
4560                                 tdata->digest.len);
4561         }
4562
4563         /* Validate obuf */
4564         if (verify) {
4565                 TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
4566                         plaintext,
4567                         tdata->plaintext.data,
4568                         tdata->plaintext.len >> 3,
4569                         "SNOW 3G Plaintext data not as expected");
4570         } else {
4571                 TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
4572                         ciphertext,
4573                         tdata->ciphertext.data,
4574                         tdata->validDataLenInBits.len,
4575                         "SNOW 3G Ciphertext data not as expected");
4576
4577                 TEST_ASSERT_BUFFERS_ARE_EQUAL(
4578                         ut_params->digest,
4579                         tdata->digest.data,
4580                         DIGEST_BYTE_LENGTH_SNOW3G_UIA2,
4581                         "SNOW 3G Generated auth tag not as expected");
4582         }
4583         return 0;
4584 }
4585
4586 static int
4587 test_snow3g_auth_cipher_sgl(const struct snow3g_test_data *tdata,
4588         uint8_t op_mode, uint8_t verify)
4589 {
4590         struct crypto_testsuite_params *ts_params = &testsuite_params;
4591         struct crypto_unittest_params *ut_params = &unittest_params;
4592
4593         int retval;
4594
4595         const uint8_t *plaintext = NULL;
4596         const uint8_t *ciphertext = NULL;
4597         const uint8_t *digest = NULL;
4598         unsigned int plaintext_pad_len;
4599         unsigned int plaintext_len;
4600         unsigned int ciphertext_pad_len;
4601         unsigned int ciphertext_len;
4602         uint8_t buffer[10000];
4603         uint8_t digest_buffer[10000];
4604
4605         struct rte_cryptodev_info dev_info;
4606
4607         rte_cryptodev_info_get(ts_params->valid_devs[0], &dev_info);
4608
4609         uint64_t feat_flags = dev_info.feature_flags;
4610
4611         if (op_mode == IN_PLACE) {
4612                 if (!(feat_flags & RTE_CRYPTODEV_FF_IN_PLACE_SGL)) {
4613                         printf("Device doesn't support in-place scatter-gather "
4614                                         "in both input and output mbufs.\n");
4615                         return -ENOTSUP;
4616                 }
4617         } else {
4618                 if (!(feat_flags & RTE_CRYPTODEV_FF_OOP_SGL_IN_SGL_OUT)) {
4619                         printf("Device doesn't support out-of-place scatter-gather "
4620                                         "in both input and output mbufs.\n");
4621                         return -ENOTSUP;
4622                 }
4623                 if (!(feat_flags & RTE_CRYPTODEV_FF_DIGEST_ENCRYPTED)) {
4624                         printf("Device doesn't support digest encrypted.\n");
4625                         return -ENOTSUP;
4626                 }
4627         }
4628
4629         /* Create SNOW 3G session */
4630         retval = create_wireless_algo_auth_cipher_session(
4631                         ts_params->valid_devs[0],
4632                         (verify ? RTE_CRYPTO_CIPHER_OP_DECRYPT
4633                                         : RTE_CRYPTO_CIPHER_OP_ENCRYPT),
4634                         (verify ? RTE_CRYPTO_AUTH_OP_VERIFY
4635                                         : RTE_CRYPTO_AUTH_OP_GENERATE),
4636                         RTE_CRYPTO_AUTH_SNOW3G_UIA2,
4637                         RTE_CRYPTO_CIPHER_SNOW3G_UEA2,
4638                         tdata->key.data, tdata->key.len,
4639                         tdata->auth_iv.len, tdata->digest.len,
4640                         tdata->cipher_iv.len);
4641
4642         if (retval < 0)
4643                 return retval;
4644
4645         ciphertext_len = ceil_byte_length(tdata->ciphertext.len);
4646         plaintext_len = ceil_byte_length(tdata->plaintext.len);
4647         ciphertext_pad_len = RTE_ALIGN_CEIL(ciphertext_len, 16);
4648         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
4649
4650         ut_params->ibuf = create_segmented_mbuf(ts_params->mbuf_pool,
4651                         plaintext_pad_len, 15, 0);
4652         TEST_ASSERT_NOT_NULL(ut_params->ibuf,
4653                         "Failed to allocate input buffer in mempool");
4654
4655         if (op_mode == OUT_OF_PLACE) {
4656                 ut_params->obuf = create_segmented_mbuf(ts_params->mbuf_pool,
4657                                 plaintext_pad_len, 15, 0);
4658                 TEST_ASSERT_NOT_NULL(ut_params->obuf,
4659                                 "Failed to allocate output buffer in mempool");
4660         }
4661
4662         if (verify) {
4663                 pktmbuf_write(ut_params->ibuf, 0, ciphertext_len,
4664                         tdata->ciphertext.data);
4665                 ciphertext = rte_pktmbuf_read(ut_params->ibuf, 0,
4666                                         ciphertext_len, buffer);
4667                 debug_hexdump(stdout, "ciphertext:", ciphertext,
4668                         ciphertext_len);
4669         } else {
4670                 pktmbuf_write(ut_params->ibuf, 0, plaintext_len,
4671                         tdata->plaintext.data);
4672                 plaintext = rte_pktmbuf_read(ut_params->ibuf, 0,
4673                                         plaintext_len, buffer);
4674                 debug_hexdump(stdout, "plaintext:", plaintext,
4675                         plaintext_len);
4676         }
4677         memset(buffer, 0, sizeof(buffer));
4678
4679         /* Create SNOW 3G operation */
4680         retval = create_wireless_algo_auth_cipher_operation(
4681                 tdata->digest.len,
4682                 tdata->cipher_iv.data, tdata->cipher_iv.len,
4683                 tdata->auth_iv.data, tdata->auth_iv.len,
4684                 (tdata->digest.offset_bytes == 0 ?
4685                 (verify ? ciphertext_pad_len : plaintext_pad_len)
4686                         : tdata->digest.offset_bytes),
4687                 tdata->validCipherLenInBits.len,
4688                 tdata->cipher.offset_bits,
4689                 tdata->validAuthLenInBits.len,
4690                 tdata->auth.offset_bits,
4691                 op_mode, 1);
4692
4693         if (retval < 0)
4694                 return retval;
4695
4696         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
4697                         ut_params->op);
4698
4699         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
4700
4701         ut_params->obuf = (op_mode == IN_PLACE ?
4702                 ut_params->op->sym->m_src : ut_params->op->sym->m_dst);
4703
4704         if (verify) {
4705                 if (ut_params->obuf)
4706                         plaintext = rte_pktmbuf_read(ut_params->obuf, 0,
4707                                         plaintext_len, buffer);
4708                 else
4709                         plaintext = rte_pktmbuf_read(ut_params->ibuf, 0,
4710                                         plaintext_len, buffer);
4711
4712                 debug_hexdump(stdout, "plaintext:", plaintext,
4713                         (tdata->plaintext.len >> 3) - tdata->digest.len);
4714                 debug_hexdump(stdout, "plaintext expected:",
4715                         tdata->plaintext.data,
4716                         (tdata->plaintext.len >> 3) - tdata->digest.len);
4717         } else {
4718                 if (ut_params->obuf)
4719                         ciphertext = rte_pktmbuf_read(ut_params->obuf, 0,
4720                                         ciphertext_len, buffer);
4721                 else
4722                         ciphertext = rte_pktmbuf_read(ut_params->ibuf, 0,
4723                                         ciphertext_len, buffer);
4724
4725                 debug_hexdump(stdout, "ciphertext:", ciphertext,
4726                         ciphertext_len);
4727                 debug_hexdump(stdout, "ciphertext expected:",
4728                         tdata->ciphertext.data, tdata->ciphertext.len >> 3);
4729
4730                 if (ut_params->obuf)
4731                         digest = rte_pktmbuf_read(ut_params->obuf,
4732                                 (tdata->digest.offset_bytes == 0 ?
4733                                 plaintext_pad_len : tdata->digest.offset_bytes),
4734                                 tdata->digest.len, digest_buffer);
4735                 else
4736                         digest = rte_pktmbuf_read(ut_params->ibuf,
4737                                 (tdata->digest.offset_bytes == 0 ?
4738                                 plaintext_pad_len : tdata->digest.offset_bytes),
4739                                 tdata->digest.len, digest_buffer);
4740
4741                 debug_hexdump(stdout, "digest:", digest,
4742                         tdata->digest.len);
4743                 debug_hexdump(stdout, "digest expected:",
4744                         tdata->digest.data, tdata->digest.len);
4745         }
4746
4747         /* Validate obuf */
4748         if (verify) {
4749                 TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
4750                         plaintext,
4751                         tdata->plaintext.data,
4752                         tdata->plaintext.len >> 3,
4753                         "SNOW 3G Plaintext data not as expected");
4754         } else {
4755                 TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
4756                         ciphertext,
4757                         tdata->ciphertext.data,
4758                         tdata->validDataLenInBits.len,
4759                         "SNOW 3G Ciphertext data not as expected");
4760
4761                 TEST_ASSERT_BUFFERS_ARE_EQUAL(
4762                         digest,
4763                         tdata->digest.data,
4764                         DIGEST_BYTE_LENGTH_SNOW3G_UIA2,
4765                         "SNOW 3G Generated auth tag not as expected");
4766         }
4767         return 0;
4768 }
4769
4770 static int
4771 test_kasumi_auth_cipher(const struct kasumi_test_data *tdata,
4772         uint8_t op_mode, uint8_t verify)
4773 {
4774         struct crypto_testsuite_params *ts_params = &testsuite_params;
4775         struct crypto_unittest_params *ut_params = &unittest_params;
4776
4777         int retval;
4778
4779         uint8_t *plaintext = NULL, *ciphertext = NULL;
4780         unsigned int plaintext_pad_len;
4781         unsigned int plaintext_len;
4782         unsigned int ciphertext_pad_len;
4783         unsigned int ciphertext_len;
4784
4785         struct rte_cryptodev_info dev_info;
4786
4787         rte_cryptodev_info_get(ts_params->valid_devs[0], &dev_info);
4788
4789         uint64_t feat_flags = dev_info.feature_flags;
4790
4791         if (op_mode == OUT_OF_PLACE) {
4792                 if (!(feat_flags & RTE_CRYPTODEV_FF_DIGEST_ENCRYPTED)) {
4793                         printf("Device doesn't support digest encrypted.\n");
4794                         return -ENOTSUP;
4795                 }
4796         }
4797
4798         /* Create KASUMI session */
4799         retval = create_wireless_algo_auth_cipher_session(
4800                         ts_params->valid_devs[0],
4801                         (verify ? RTE_CRYPTO_CIPHER_OP_DECRYPT
4802                                         : RTE_CRYPTO_CIPHER_OP_ENCRYPT),
4803                         (verify ? RTE_CRYPTO_AUTH_OP_VERIFY
4804                                         : RTE_CRYPTO_AUTH_OP_GENERATE),
4805                         RTE_CRYPTO_AUTH_KASUMI_F9,
4806                         RTE_CRYPTO_CIPHER_KASUMI_F8,
4807                         tdata->key.data, tdata->key.len,
4808                         0, tdata->digest.len,
4809                         tdata->cipher_iv.len);
4810
4811         if (retval < 0)
4812                 return retval;
4813
4814         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
4815         if (op_mode == OUT_OF_PLACE)
4816                 ut_params->obuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
4817
4818         /* clear mbuf payload */
4819         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
4820                 rte_pktmbuf_tailroom(ut_params->ibuf));
4821         if (op_mode == OUT_OF_PLACE)
4822                 memset(rte_pktmbuf_mtod(ut_params->obuf, uint8_t *), 0,
4823                         rte_pktmbuf_tailroom(ut_params->obuf));
4824
4825         ciphertext_len = ceil_byte_length(tdata->ciphertext.len);
4826         plaintext_len = ceil_byte_length(tdata->plaintext.len);
4827         ciphertext_pad_len = RTE_ALIGN_CEIL(ciphertext_len, 16);
4828         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
4829
4830         if (verify) {
4831                 ciphertext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
4832                                         ciphertext_pad_len);
4833                 memcpy(ciphertext, tdata->ciphertext.data, ciphertext_len);
4834                 if (op_mode == OUT_OF_PLACE)
4835                         rte_pktmbuf_append(ut_params->obuf, ciphertext_pad_len);
4836                 debug_hexdump(stdout, "ciphertext:", ciphertext,
4837                         ciphertext_len);
4838         } else {
4839                 plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
4840                                         plaintext_pad_len);
4841                 memcpy(plaintext, tdata->plaintext.data, plaintext_len);
4842                 if (op_mode == OUT_OF_PLACE)
4843                         rte_pktmbuf_append(ut_params->obuf, plaintext_pad_len);
4844                 debug_hexdump(stdout, "plaintext:", plaintext,
4845                         plaintext_len);
4846         }
4847
4848         /* Create KASUMI operation */
4849         retval = create_wireless_algo_auth_cipher_operation(
4850                 tdata->digest.len,
4851                 tdata->cipher_iv.data, tdata->cipher_iv.len,
4852                 NULL, 0,
4853                 (tdata->digest.offset_bytes == 0 ?
4854                 (verify ? ciphertext_pad_len : plaintext_pad_len)
4855                         : tdata->digest.offset_bytes),
4856                 tdata->validCipherLenInBits.len,
4857                 tdata->validCipherOffsetInBits.len,
4858                 tdata->validAuthLenInBits.len,
4859                 0,
4860                 op_mode, 0);
4861
4862         if (retval < 0)
4863                 return retval;
4864
4865         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
4866                         ut_params->op);
4867
4868         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
4869
4870         ut_params->obuf = (op_mode == IN_PLACE ?
4871                 ut_params->op->sym->m_src : ut_params->op->sym->m_dst);
4872
4873
4874         if (verify) {
4875                 if (ut_params->obuf)
4876                         plaintext = rte_pktmbuf_mtod(ut_params->obuf,
4877                                                         uint8_t *);
4878                 else
4879                         plaintext = ciphertext;
4880
4881                 debug_hexdump(stdout, "plaintext:", plaintext,
4882                         (tdata->plaintext.len >> 3) - tdata->digest.len);
4883                 debug_hexdump(stdout, "plaintext expected:",
4884                         tdata->plaintext.data,
4885                         (tdata->plaintext.len >> 3) - tdata->digest.len);
4886         } else {
4887                 if (ut_params->obuf)
4888                         ciphertext = rte_pktmbuf_mtod(ut_params->obuf,
4889                                                         uint8_t *);
4890                 else
4891                         ciphertext = plaintext;
4892
4893                 debug_hexdump(stdout, "ciphertext:", ciphertext,
4894                         ciphertext_len);
4895                 debug_hexdump(stdout, "ciphertext expected:",
4896                         tdata->ciphertext.data, tdata->ciphertext.len >> 3);
4897
4898                 ut_params->digest = rte_pktmbuf_mtod(
4899                         ut_params->obuf, uint8_t *) +
4900                         (tdata->digest.offset_bytes == 0 ?
4901                         plaintext_pad_len : tdata->digest.offset_bytes);
4902
4903                 debug_hexdump(stdout, "digest:", ut_params->digest,
4904                         tdata->digest.len);
4905                 debug_hexdump(stdout, "digest expected:",
4906                         tdata->digest.data, tdata->digest.len);
4907         }
4908
4909         /* Validate obuf */
4910         if (verify) {
4911                 TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
4912                         plaintext,
4913                         tdata->plaintext.data,
4914                         tdata->plaintext.len >> 3,
4915                         "KASUMI Plaintext data not as expected");
4916         } else {
4917                 TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
4918                         ciphertext,
4919                         tdata->ciphertext.data,
4920                         tdata->ciphertext.len >> 3,
4921                         "KASUMI Ciphertext data not as expected");
4922
4923                 TEST_ASSERT_BUFFERS_ARE_EQUAL(
4924                         ut_params->digest,
4925                         tdata->digest.data,
4926                         DIGEST_BYTE_LENGTH_KASUMI_F9,
4927                         "KASUMI Generated auth tag not as expected");
4928         }
4929         return 0;
4930 }
4931
4932 static int
4933 test_kasumi_auth_cipher_sgl(const struct kasumi_test_data *tdata,
4934         uint8_t op_mode, uint8_t verify)
4935 {
4936         struct crypto_testsuite_params *ts_params = &testsuite_params;
4937         struct crypto_unittest_params *ut_params = &unittest_params;
4938
4939         int retval;
4940
4941         const uint8_t *plaintext = NULL;
4942         const uint8_t *ciphertext = NULL;
4943         const uint8_t *digest = NULL;
4944         unsigned int plaintext_pad_len;
4945         unsigned int plaintext_len;
4946         unsigned int ciphertext_pad_len;
4947         unsigned int ciphertext_len;
4948         uint8_t buffer[10000];
4949         uint8_t digest_buffer[10000];
4950
4951         struct rte_cryptodev_info dev_info;
4952
4953         rte_cryptodev_info_get(ts_params->valid_devs[0], &dev_info);
4954
4955         uint64_t feat_flags = dev_info.feature_flags;
4956
4957         if (op_mode == IN_PLACE) {
4958                 if (!(feat_flags & RTE_CRYPTODEV_FF_IN_PLACE_SGL)) {
4959                         printf("Device doesn't support in-place scatter-gather "
4960                                         "in both input and output mbufs.\n");
4961                         return -ENOTSUP;
4962                 }
4963         } else {
4964                 if (!(feat_flags & RTE_CRYPTODEV_FF_OOP_SGL_IN_SGL_OUT)) {
4965                         printf("Device doesn't support out-of-place scatter-gather "
4966                                         "in both input and output mbufs.\n");
4967                         return -ENOTSUP;
4968                 }
4969                 if (!(feat_flags & RTE_CRYPTODEV_FF_DIGEST_ENCRYPTED)) {
4970                         printf("Device doesn't support digest encrypted.\n");
4971                         return -ENOTSUP;
4972                 }
4973         }
4974
4975         /* Create KASUMI session */
4976         retval = create_wireless_algo_auth_cipher_session(
4977                         ts_params->valid_devs[0],
4978                         (verify ? RTE_CRYPTO_CIPHER_OP_DECRYPT
4979                                         : RTE_CRYPTO_CIPHER_OP_ENCRYPT),
4980                         (verify ? RTE_CRYPTO_AUTH_OP_VERIFY
4981                                         : RTE_CRYPTO_AUTH_OP_GENERATE),
4982                         RTE_CRYPTO_AUTH_KASUMI_F9,
4983                         RTE_CRYPTO_CIPHER_KASUMI_F8,
4984                         tdata->key.data, tdata->key.len,
4985                         0, tdata->digest.len,
4986                         tdata->cipher_iv.len);
4987
4988         if (retval < 0)
4989                 return retval;
4990
4991         ciphertext_len = ceil_byte_length(tdata->ciphertext.len);
4992         plaintext_len = ceil_byte_length(tdata->plaintext.len);
4993         ciphertext_pad_len = RTE_ALIGN_CEIL(ciphertext_len, 16);
4994         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
4995
4996         ut_params->ibuf = create_segmented_mbuf(ts_params->mbuf_pool,
4997                         plaintext_pad_len, 15, 0);
4998         TEST_ASSERT_NOT_NULL(ut_params->ibuf,
4999                         "Failed to allocate input buffer in mempool");
5000
5001         if (op_mode == OUT_OF_PLACE) {
5002                 ut_params->obuf = create_segmented_mbuf(ts_params->mbuf_pool,
5003                                 plaintext_pad_len, 15, 0);
5004                 TEST_ASSERT_NOT_NULL(ut_params->obuf,
5005                                 "Failed to allocate output buffer in mempool");
5006         }
5007
5008         if (verify) {
5009                 pktmbuf_write(ut_params->ibuf, 0, ciphertext_len,
5010                         tdata->ciphertext.data);
5011                 ciphertext = rte_pktmbuf_read(ut_params->ibuf, 0,
5012                                         ciphertext_len, buffer);
5013                 debug_hexdump(stdout, "ciphertext:", ciphertext,
5014                         ciphertext_len);
5015         } else {
5016                 pktmbuf_write(ut_params->ibuf, 0, plaintext_len,
5017                         tdata->plaintext.data);
5018                 plaintext = rte_pktmbuf_read(ut_params->ibuf, 0,
5019                                         plaintext_len, buffer);
5020                 debug_hexdump(stdout, "plaintext:", plaintext,
5021                         plaintext_len);
5022         }
5023         memset(buffer, 0, sizeof(buffer));
5024
5025         /* Create KASUMI operation */
5026         retval = create_wireless_algo_auth_cipher_operation(
5027                 tdata->digest.len,
5028                 tdata->cipher_iv.data, tdata->cipher_iv.len,
5029                 NULL, 0,
5030                 (tdata->digest.offset_bytes == 0 ?
5031                 (verify ? ciphertext_pad_len : plaintext_pad_len)
5032                         : tdata->digest.offset_bytes),
5033                 tdata->validCipherLenInBits.len,
5034                 tdata->validCipherOffsetInBits.len,
5035                 tdata->validAuthLenInBits.len,
5036                 0,
5037                 op_mode, 1);
5038
5039         if (retval < 0)
5040                 return retval;
5041
5042         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
5043                         ut_params->op);
5044
5045         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
5046
5047         ut_params->obuf = (op_mode == IN_PLACE ?
5048                 ut_params->op->sym->m_src : ut_params->op->sym->m_dst);
5049
5050         if (verify) {
5051                 if (ut_params->obuf)
5052                         plaintext = rte_pktmbuf_read(ut_params->obuf, 0,
5053                                         plaintext_len, buffer);
5054                 else
5055                         plaintext = rte_pktmbuf_read(ut_params->ibuf, 0,
5056                                         plaintext_len, buffer);
5057
5058                 debug_hexdump(stdout, "plaintext:", plaintext,
5059                         (tdata->plaintext.len >> 3) - tdata->digest.len);
5060                 debug_hexdump(stdout, "plaintext expected:",
5061                         tdata->plaintext.data,
5062                         (tdata->plaintext.len >> 3) - tdata->digest.len);
5063         } else {
5064                 if (ut_params->obuf)
5065                         ciphertext = rte_pktmbuf_read(ut_params->obuf, 0,
5066                                         ciphertext_len, buffer);
5067                 else
5068                         ciphertext = rte_pktmbuf_read(ut_params->ibuf, 0,
5069                                         ciphertext_len, buffer);
5070
5071                 debug_hexdump(stdout, "ciphertext:", ciphertext,
5072                         ciphertext_len);
5073                 debug_hexdump(stdout, "ciphertext expected:",
5074                         tdata->ciphertext.data, tdata->ciphertext.len >> 3);
5075
5076                 if (ut_params->obuf)
5077                         digest = rte_pktmbuf_read(ut_params->obuf,
5078                                 (tdata->digest.offset_bytes == 0 ?
5079                                 plaintext_pad_len : tdata->digest.offset_bytes),
5080                                 tdata->digest.len, digest_buffer);
5081                 else
5082                         digest = rte_pktmbuf_read(ut_params->ibuf,
5083                                 (tdata->digest.offset_bytes == 0 ?
5084                                 plaintext_pad_len : tdata->digest.offset_bytes),
5085                                 tdata->digest.len, digest_buffer);
5086
5087                 debug_hexdump(stdout, "digest:", digest,
5088                         tdata->digest.len);
5089                 debug_hexdump(stdout, "digest expected:",
5090                         tdata->digest.data, tdata->digest.len);
5091         }
5092
5093         /* Validate obuf */
5094         if (verify) {
5095                 TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
5096                         plaintext,
5097                         tdata->plaintext.data,
5098                         tdata->plaintext.len >> 3,
5099                         "KASUMI Plaintext data not as expected");
5100         } else {
5101                 TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
5102                         ciphertext,
5103                         tdata->ciphertext.data,
5104                         tdata->validDataLenInBits.len,
5105                         "KASUMI Ciphertext data not as expected");
5106
5107                 TEST_ASSERT_BUFFERS_ARE_EQUAL(
5108                         digest,
5109                         tdata->digest.data,
5110                         DIGEST_BYTE_LENGTH_KASUMI_F9,
5111                         "KASUMI Generated auth tag not as expected");
5112         }
5113         return 0;
5114 }
5115
5116 static int
5117 test_kasumi_cipher_auth(const struct kasumi_test_data *tdata)
5118 {
5119         struct crypto_testsuite_params *ts_params = &testsuite_params;
5120         struct crypto_unittest_params *ut_params = &unittest_params;
5121
5122         int retval;
5123
5124         uint8_t *plaintext, *ciphertext;
5125         unsigned plaintext_pad_len;
5126         unsigned plaintext_len;
5127
5128         /* Create KASUMI session */
5129         retval = create_wireless_algo_cipher_auth_session(
5130                         ts_params->valid_devs[0],
5131                         RTE_CRYPTO_CIPHER_OP_ENCRYPT,
5132                         RTE_CRYPTO_AUTH_OP_GENERATE,
5133                         RTE_CRYPTO_AUTH_KASUMI_F9,
5134                         RTE_CRYPTO_CIPHER_KASUMI_F8,
5135                         tdata->key.data, tdata->key.len,
5136                         0, tdata->digest.len,
5137                         tdata->cipher_iv.len);
5138         if (retval < 0)
5139                 return retval;
5140
5141         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
5142
5143         /* clear mbuf payload */
5144         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
5145                         rte_pktmbuf_tailroom(ut_params->ibuf));
5146
5147         plaintext_len = ceil_byte_length(tdata->plaintext.len);
5148         /* Append data which is padded to a multiple of */
5149         /* the algorithms block size */
5150         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
5151         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
5152                                 plaintext_pad_len);
5153         memcpy(plaintext, tdata->plaintext.data, plaintext_len);
5154
5155         debug_hexdump(stdout, "plaintext:", plaintext, plaintext_len);
5156
5157         /* Create KASUMI operation */
5158         retval = create_wireless_algo_cipher_hash_operation(tdata->digest.data,
5159                                 tdata->digest.len, NULL, 0,
5160                                 plaintext_pad_len, RTE_CRYPTO_AUTH_OP_GENERATE,
5161                                 tdata->cipher_iv.data, tdata->cipher_iv.len,
5162                                 RTE_ALIGN_CEIL(tdata->validCipherLenInBits.len, 8),
5163                                 tdata->validCipherOffsetInBits.len,
5164                                 tdata->validAuthLenInBits.len,
5165                                 0
5166                                 );
5167         if (retval < 0)
5168                 return retval;
5169
5170         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
5171                         ut_params->op);
5172         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
5173
5174         if (ut_params->op->sym->m_dst)
5175                 ut_params->obuf = ut_params->op->sym->m_dst;
5176         else
5177                 ut_params->obuf = ut_params->op->sym->m_src;
5178
5179         ciphertext = rte_pktmbuf_mtod_offset(ut_params->obuf, uint8_t *,
5180                                 tdata->validCipherOffsetInBits.len >> 3);
5181
5182         ut_params->digest = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *)
5183                         + plaintext_pad_len;
5184
5185         const uint8_t *reference_ciphertext = tdata->ciphertext.data +
5186                                 (tdata->validCipherOffsetInBits.len >> 3);
5187         /* Validate obuf */
5188         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
5189                 ciphertext,
5190                 reference_ciphertext,
5191                 tdata->validCipherLenInBits.len,
5192                 "KASUMI Ciphertext data not as expected");
5193
5194         /* Validate obuf */
5195         TEST_ASSERT_BUFFERS_ARE_EQUAL(
5196                 ut_params->digest,
5197                 tdata->digest.data,
5198                 DIGEST_BYTE_LENGTH_SNOW3G_UIA2,
5199                 "KASUMI Generated auth tag not as expected");
5200         return 0;
5201 }
5202
5203 static int
5204 test_zuc_encryption(const struct wireless_test_data *tdata)
5205 {
5206         struct crypto_testsuite_params *ts_params = &testsuite_params;
5207         struct crypto_unittest_params *ut_params = &unittest_params;
5208
5209         int retval;
5210         uint8_t *plaintext, *ciphertext;
5211         unsigned plaintext_pad_len;
5212         unsigned plaintext_len;
5213
5214         struct rte_cryptodev_sym_capability_idx cap_idx;
5215
5216         /* Check if device supports ZUC EEA3 */
5217         cap_idx.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
5218         cap_idx.algo.cipher = RTE_CRYPTO_CIPHER_ZUC_EEA3;
5219
5220         if (rte_cryptodev_sym_capability_get(ts_params->valid_devs[0],
5221                         &cap_idx) == NULL)
5222                 return -ENOTSUP;
5223
5224         /* Create ZUC session */
5225         retval = create_wireless_algo_cipher_session(ts_params->valid_devs[0],
5226                                         RTE_CRYPTO_CIPHER_OP_ENCRYPT,
5227                                         RTE_CRYPTO_CIPHER_ZUC_EEA3,
5228                                         tdata->key.data, tdata->key.len,
5229                                         tdata->cipher_iv.len);
5230         if (retval < 0)
5231                 return retval;
5232
5233         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
5234
5235         /* Clear mbuf payload */
5236         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
5237                rte_pktmbuf_tailroom(ut_params->ibuf));
5238
5239         plaintext_len = ceil_byte_length(tdata->plaintext.len);
5240         /* Append data which is padded to a multiple */
5241         /* of the algorithms block size */
5242         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 8);
5243         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
5244                                 plaintext_pad_len);
5245         memcpy(plaintext, tdata->plaintext.data, plaintext_len);
5246
5247         debug_hexdump(stdout, "plaintext:", plaintext, plaintext_len);
5248
5249         /* Create ZUC operation */
5250         retval = create_wireless_algo_cipher_operation(tdata->cipher_iv.data,
5251                                         tdata->cipher_iv.len,
5252                                         tdata->plaintext.len,
5253                                         0);
5254         if (retval < 0)
5255                 return retval;
5256
5257         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
5258                                                 ut_params->op);
5259         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
5260
5261         ut_params->obuf = ut_params->op->sym->m_dst;
5262         if (ut_params->obuf)
5263                 ciphertext = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *);
5264         else
5265                 ciphertext = plaintext;
5266
5267         debug_hexdump(stdout, "ciphertext:", ciphertext, plaintext_len);
5268
5269         /* Validate obuf */
5270         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
5271                 ciphertext,
5272                 tdata->ciphertext.data,
5273                 tdata->validCipherLenInBits.len,
5274                 "ZUC Ciphertext data not as expected");
5275         return 0;
5276 }
5277
5278 static int
5279 test_zuc_encryption_sgl(const struct wireless_test_data *tdata)
5280 {
5281         struct crypto_testsuite_params *ts_params = &testsuite_params;
5282         struct crypto_unittest_params *ut_params = &unittest_params;
5283
5284         int retval;
5285
5286         unsigned int plaintext_pad_len;
5287         unsigned int plaintext_len;
5288         const uint8_t *ciphertext;
5289         uint8_t ciphertext_buffer[2048];
5290         struct rte_cryptodev_info dev_info;
5291
5292         struct rte_cryptodev_sym_capability_idx cap_idx;
5293
5294         /* Check if device supports ZUC EEA3 */
5295         cap_idx.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
5296         cap_idx.algo.cipher = RTE_CRYPTO_CIPHER_ZUC_EEA3;
5297
5298         if (rte_cryptodev_sym_capability_get(ts_params->valid_devs[0],
5299                         &cap_idx) == NULL)
5300                 return -ENOTSUP;
5301
5302         rte_cryptodev_info_get(ts_params->valid_devs[0], &dev_info);
5303
5304         uint64_t feat_flags = dev_info.feature_flags;
5305
5306         if (!(feat_flags & RTE_CRYPTODEV_FF_IN_PLACE_SGL)) {
5307                 printf("Device doesn't support in-place scatter-gather. "
5308                                 "Test Skipped.\n");
5309                 return -ENOTSUP;
5310         }
5311
5312         plaintext_len = ceil_byte_length(tdata->plaintext.len);
5313
5314         /* Append data which is padded to a multiple */
5315         /* of the algorithms block size */
5316         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 8);
5317
5318         ut_params->ibuf = create_segmented_mbuf(ts_params->mbuf_pool,
5319                         plaintext_pad_len, 10, 0);
5320
5321         pktmbuf_write(ut_params->ibuf, 0, plaintext_len,
5322                         tdata->plaintext.data);
5323
5324         /* Create ZUC session */
5325         retval = create_wireless_algo_cipher_session(ts_params->valid_devs[0],
5326                         RTE_CRYPTO_CIPHER_OP_ENCRYPT,
5327                         RTE_CRYPTO_CIPHER_ZUC_EEA3,
5328                         tdata->key.data, tdata->key.len,
5329                         tdata->cipher_iv.len);
5330         if (retval < 0)
5331                 return retval;
5332
5333         /* Clear mbuf payload */
5334
5335         pktmbuf_write(ut_params->ibuf, 0, plaintext_len, tdata->plaintext.data);
5336
5337         /* Create ZUC operation */
5338         retval = create_wireless_algo_cipher_operation(tdata->cipher_iv.data,
5339                         tdata->cipher_iv.len, tdata->plaintext.len,
5340                         0);
5341         if (retval < 0)
5342                 return retval;
5343
5344         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
5345                                                 ut_params->op);
5346         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
5347
5348         ut_params->obuf = ut_params->op->sym->m_dst;
5349         if (ut_params->obuf)
5350                 ciphertext = rte_pktmbuf_read(ut_params->obuf,
5351                         0, plaintext_len, ciphertext_buffer);
5352         else
5353                 ciphertext = rte_pktmbuf_read(ut_params->ibuf,
5354                         0, plaintext_len, ciphertext_buffer);
5355
5356         /* Validate obuf */
5357         debug_hexdump(stdout, "ciphertext:", ciphertext, plaintext_len);
5358
5359         /* Validate obuf */
5360         TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
5361                 ciphertext,
5362                 tdata->ciphertext.data,
5363                 tdata->validCipherLenInBits.len,
5364                 "ZUC Ciphertext data not as expected");
5365
5366         return 0;
5367 }
5368
5369 static int
5370 test_zuc_authentication(const struct wireless_test_data *tdata)
5371 {
5372         struct crypto_testsuite_params *ts_params = &testsuite_params;
5373         struct crypto_unittest_params *ut_params = &unittest_params;
5374
5375         int retval;
5376         unsigned plaintext_pad_len;
5377         unsigned plaintext_len;
5378         uint8_t *plaintext;
5379
5380         struct rte_cryptodev_sym_capability_idx cap_idx;
5381
5382         /* Check if device supports ZUC EIA3 */
5383         cap_idx.type = RTE_CRYPTO_SYM_XFORM_AUTH;
5384         cap_idx.algo.auth = RTE_CRYPTO_AUTH_ZUC_EIA3;
5385
5386         if (rte_cryptodev_sym_capability_get(ts_params->valid_devs[0],
5387                         &cap_idx) == NULL)
5388                 return -ENOTSUP;
5389
5390         /* Create ZUC session */
5391         retval = create_wireless_algo_hash_session(ts_params->valid_devs[0],
5392                         tdata->key.data, tdata->key.len,
5393                         tdata->auth_iv.len, tdata->digest.len,
5394                         RTE_CRYPTO_AUTH_OP_GENERATE,
5395                         RTE_CRYPTO_AUTH_ZUC_EIA3);
5396         if (retval < 0)
5397                 return retval;
5398
5399         /* alloc mbuf and set payload */
5400         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
5401
5402         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
5403         rte_pktmbuf_tailroom(ut_params->ibuf));
5404
5405         plaintext_len = ceil_byte_length(tdata->plaintext.len);
5406         /* Append data which is padded to a multiple of */
5407         /* the algorithms block size */
5408         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 8);
5409         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
5410                                 plaintext_pad_len);
5411         memcpy(plaintext, tdata->plaintext.data, plaintext_len);
5412
5413         /* Create ZUC operation */
5414         retval = create_wireless_algo_hash_operation(NULL, tdata->digest.len,
5415                         tdata->auth_iv.data, tdata->auth_iv.len,
5416                         plaintext_pad_len, RTE_CRYPTO_AUTH_OP_GENERATE,
5417                         tdata->validAuthLenInBits.len,
5418                         0);
5419         if (retval < 0)
5420                 return retval;
5421
5422         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
5423                                 ut_params->op);
5424         ut_params->obuf = ut_params->op->sym->m_src;
5425         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
5426         ut_params->digest = rte_pktmbuf_mtod(ut_params->obuf, uint8_t *)
5427                         + plaintext_pad_len;
5428
5429         /* Validate obuf */
5430         TEST_ASSERT_BUFFERS_ARE_EQUAL(
5431         ut_params->digest,
5432         tdata->digest.data,
5433         DIGEST_BYTE_LENGTH_KASUMI_F9,
5434         "ZUC Generated auth tag not as expected");
5435
5436         return 0;
5437 }
5438
5439 static int
5440 test_zuc_auth_cipher(const struct wireless_test_data *tdata,
5441         uint8_t op_mode, uint8_t verify)
5442 {
5443         struct crypto_testsuite_params *ts_params = &testsuite_params;
5444         struct crypto_unittest_params *ut_params = &unittest_params;
5445
5446         int retval;
5447
5448         uint8_t *plaintext = NULL, *ciphertext = NULL;
5449         unsigned int plaintext_pad_len;
5450         unsigned int plaintext_len;
5451         unsigned int ciphertext_pad_len;
5452         unsigned int ciphertext_len;
5453
5454         struct rte_cryptodev_info dev_info;
5455         struct rte_cryptodev_sym_capability_idx cap_idx;
5456
5457         /* Check if device supports ZUC EIA3 */
5458         cap_idx.type = RTE_CRYPTO_SYM_XFORM_AUTH;
5459         cap_idx.algo.auth = RTE_CRYPTO_AUTH_ZUC_EIA3;
5460
5461         if (rte_cryptodev_sym_capability_get(ts_params->valid_devs[0],
5462                         &cap_idx) == NULL)
5463                 return -ENOTSUP;
5464
5465         rte_cryptodev_info_get(ts_params->valid_devs[0], &dev_info);
5466
5467         uint64_t feat_flags = dev_info.feature_flags;
5468
5469         if (op_mode == OUT_OF_PLACE) {
5470                 if (!(feat_flags & RTE_CRYPTODEV_FF_DIGEST_ENCRYPTED)) {
5471                         printf("Device doesn't support digest encrypted.\n");
5472                         return -ENOTSUP;
5473                 }
5474         }
5475
5476         /* Create ZUC session */
5477         retval = create_wireless_algo_auth_cipher_session(
5478                         ts_params->valid_devs[0],
5479                         (verify ? RTE_CRYPTO_CIPHER_OP_DECRYPT
5480                                         : RTE_CRYPTO_CIPHER_OP_ENCRYPT),
5481                         (verify ? RTE_CRYPTO_AUTH_OP_VERIFY
5482                                         : RTE_CRYPTO_AUTH_OP_GENERATE),
5483                         RTE_CRYPTO_AUTH_ZUC_EIA3,
5484                         RTE_CRYPTO_CIPHER_ZUC_EEA3,
5485                         tdata->key.data, tdata->key.len,
5486                         tdata->auth_iv.len, tdata->digest.len,
5487                         tdata->cipher_iv.len);
5488
5489         if (retval < 0)
5490                 return retval;
5491
5492         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
5493         if (op_mode == OUT_OF_PLACE)
5494                 ut_params->obuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
5495
5496         /* clear mbuf payload */
5497         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
5498                 rte_pktmbuf_tailroom(ut_params->ibuf));
5499         if (op_mode == OUT_OF_PLACE)
5500                 memset(rte_pktmbuf_mtod(ut_params->obuf, uint8_t *), 0,
5501                         rte_pktmbuf_tailroom(ut_params->obuf));
5502
5503         ciphertext_len = ceil_byte_length(tdata->ciphertext.len);
5504         plaintext_len = ceil_byte_length(tdata->plaintext.len);
5505         ciphertext_pad_len = RTE_ALIGN_CEIL(ciphertext_len, 16);
5506         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
5507
5508         if (verify) {
5509                 ciphertext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
5510                                         ciphertext_pad_len);
5511                 memcpy(ciphertext, tdata->ciphertext.data, ciphertext_len);
5512                 if (op_mode == OUT_OF_PLACE)
5513                         rte_pktmbuf_append(ut_params->obuf, ciphertext_pad_len);
5514                 debug_hexdump(stdout, "ciphertext:", ciphertext,
5515                         ciphertext_len);
5516         } else {
5517                 plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
5518                                         plaintext_pad_len);
5519                 memcpy(plaintext, tdata->plaintext.data, plaintext_len);
5520                 if (op_mode == OUT_OF_PLACE)
5521                         rte_pktmbuf_append(ut_params->obuf, plaintext_pad_len);
5522                 debug_hexdump(stdout, "plaintext:", plaintext,
5523                         plaintext_len);
5524         }
5525
5526         /* Create ZUC operation */
5527         retval = create_wireless_algo_auth_cipher_operation(
5528                 tdata->digest.len,
5529                 tdata->cipher_iv.data, tdata->cipher_iv.len,
5530                 tdata->auth_iv.data, tdata->auth_iv.len,
5531                 (tdata->digest.offset_bytes == 0 ?
5532                 (verify ? ciphertext_pad_len : plaintext_pad_len)
5533                         : tdata->digest.offset_bytes),
5534                 tdata->validCipherLenInBits.len,
5535                 tdata->validCipherOffsetInBits.len,
5536                 tdata->validAuthLenInBits.len,
5537                 0,
5538                 op_mode, 0);
5539
5540         if (retval < 0)
5541                 return retval;
5542
5543         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
5544                         ut_params->op);
5545
5546         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
5547
5548         ut_params->obuf = (op_mode == IN_PLACE ?
5549                 ut_params->op->sym->m_src : ut_params->op->sym->m_dst);
5550
5551
5552         if (verify) {
5553                 if (ut_params->obuf)
5554                         plaintext = rte_pktmbuf_mtod(ut_params->obuf,
5555                                                         uint8_t *);
5556                 else
5557                         plaintext = ciphertext;
5558
5559                 debug_hexdump(stdout, "plaintext:", plaintext,
5560                         (tdata->plaintext.len >> 3) - tdata->digest.len);
5561                 debug_hexdump(stdout, "plaintext expected:",
5562                         tdata->plaintext.data,
5563                         (tdata->plaintext.len >> 3) - tdata->digest.len);
5564         } else {
5565                 if (ut_params->obuf)
5566                         ciphertext = rte_pktmbuf_mtod(ut_params->obuf,
5567                                                         uint8_t *);
5568                 else
5569                         ciphertext = plaintext;
5570
5571                 debug_hexdump(stdout, "ciphertext:", ciphertext,
5572                         ciphertext_len);
5573                 debug_hexdump(stdout, "ciphertext expected:",
5574                         tdata->ciphertext.data, tdata->ciphertext.len >> 3);
5575
5576                 ut_params->digest = rte_pktmbuf_mtod(
5577                         ut_params->obuf, uint8_t *) +
5578                         (tdata->digest.offset_bytes == 0 ?
5579                         plaintext_pad_len : tdata->digest.offset_bytes);
5580
5581                 debug_hexdump(stdout, "digest:", ut_params->digest,
5582                         tdata->digest.len);
5583                 debug_hexdump(stdout, "digest expected:",
5584                         tdata->digest.data, tdata->digest.len);
5585         }
5586
5587         /* Validate obuf */
5588         if (verify) {
5589                 TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
5590                         plaintext,
5591                         tdata->plaintext.data,
5592                         tdata->plaintext.len >> 3,
5593                         "ZUC Plaintext data not as expected");
5594         } else {
5595                 TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
5596                         ciphertext,
5597                         tdata->ciphertext.data,
5598                         tdata->ciphertext.len >> 3,
5599                         "ZUC Ciphertext data not as expected");
5600
5601                 TEST_ASSERT_BUFFERS_ARE_EQUAL(
5602                         ut_params->digest,
5603                         tdata->digest.data,
5604                         DIGEST_BYTE_LENGTH_KASUMI_F9,
5605                         "ZUC Generated auth tag not as expected");
5606         }
5607         return 0;
5608 }
5609
5610 static int
5611 test_zuc_auth_cipher_sgl(const struct wireless_test_data *tdata,
5612         uint8_t op_mode, uint8_t verify)
5613 {
5614         struct crypto_testsuite_params *ts_params = &testsuite_params;
5615         struct crypto_unittest_params *ut_params = &unittest_params;
5616
5617         int retval;
5618
5619         const uint8_t *plaintext = NULL;
5620         const uint8_t *ciphertext = NULL;
5621         const uint8_t *digest = NULL;
5622         unsigned int plaintext_pad_len;
5623         unsigned int plaintext_len;
5624         unsigned int ciphertext_pad_len;
5625         unsigned int ciphertext_len;
5626         uint8_t buffer[10000];
5627         uint8_t digest_buffer[10000];
5628
5629         struct rte_cryptodev_info dev_info;
5630         struct rte_cryptodev_sym_capability_idx cap_idx;
5631
5632         /* Check if device supports ZUC EIA3 */
5633         cap_idx.type = RTE_CRYPTO_SYM_XFORM_AUTH;
5634         cap_idx.algo.auth = RTE_CRYPTO_AUTH_ZUC_EIA3;
5635
5636         if (rte_cryptodev_sym_capability_get(ts_params->valid_devs[0],
5637                         &cap_idx) == NULL)
5638                 return -ENOTSUP;
5639
5640         rte_cryptodev_info_get(ts_params->valid_devs[0], &dev_info);
5641
5642         uint64_t feat_flags = dev_info.feature_flags;
5643
5644         if (op_mode == IN_PLACE) {
5645                 if (!(feat_flags & RTE_CRYPTODEV_FF_IN_PLACE_SGL)) {
5646                         printf("Device doesn't support in-place scatter-gather "
5647                                         "in both input and output mbufs.\n");
5648                         return -ENOTSUP;
5649                 }
5650         } else {
5651                 if (!(feat_flags & RTE_CRYPTODEV_FF_OOP_SGL_IN_SGL_OUT)) {
5652                         printf("Device doesn't support out-of-place scatter-gather "
5653                                         "in both input and output mbufs.\n");
5654                         return -ENOTSUP;
5655                 }
5656                 if (!(feat_flags & RTE_CRYPTODEV_FF_DIGEST_ENCRYPTED)) {
5657                         printf("Device doesn't support digest encrypted.\n");
5658                         return -ENOTSUP;
5659                 }
5660         }
5661
5662         /* Create ZUC session */
5663         retval = create_wireless_algo_auth_cipher_session(
5664                         ts_params->valid_devs[0],
5665                         (verify ? RTE_CRYPTO_CIPHER_OP_DECRYPT
5666                                         : RTE_CRYPTO_CIPHER_OP_ENCRYPT),
5667                         (verify ? RTE_CRYPTO_AUTH_OP_VERIFY
5668                                         : RTE_CRYPTO_AUTH_OP_GENERATE),
5669                         RTE_CRYPTO_AUTH_ZUC_EIA3,
5670                         RTE_CRYPTO_CIPHER_ZUC_EEA3,
5671                         tdata->key.data, tdata->key.len,
5672                         tdata->auth_iv.len, tdata->digest.len,
5673                         tdata->cipher_iv.len);
5674
5675         if (retval < 0)
5676                 return retval;
5677
5678         ciphertext_len = ceil_byte_length(tdata->ciphertext.len);
5679         plaintext_len = ceil_byte_length(tdata->plaintext.len);
5680         ciphertext_pad_len = RTE_ALIGN_CEIL(ciphertext_len, 16);
5681         plaintext_pad_len = RTE_ALIGN_CEIL(plaintext_len, 16);
5682
5683         ut_params->ibuf = create_segmented_mbuf(ts_params->mbuf_pool,
5684                         plaintext_pad_len, 15, 0);
5685         TEST_ASSERT_NOT_NULL(ut_params->ibuf,
5686                         "Failed to allocate input buffer in mempool");
5687
5688         if (op_mode == OUT_OF_PLACE) {
5689                 ut_params->obuf = create_segmented_mbuf(ts_params->mbuf_pool,
5690                                 plaintext_pad_len, 15, 0);
5691                 TEST_ASSERT_NOT_NULL(ut_params->obuf,
5692                                 "Failed to allocate output buffer in mempool");
5693         }
5694
5695         if (verify) {
5696                 pktmbuf_write(ut_params->ibuf, 0, ciphertext_len,
5697                         tdata->ciphertext.data);
5698                 ciphertext = rte_pktmbuf_read(ut_params->ibuf, 0,
5699                                         ciphertext_len, buffer);
5700                 debug_hexdump(stdout, "ciphertext:", ciphertext,
5701                         ciphertext_len);
5702         } else {
5703                 pktmbuf_write(ut_params->ibuf, 0, plaintext_len,
5704                         tdata->plaintext.data);
5705                 plaintext = rte_pktmbuf_read(ut_params->ibuf, 0,
5706                                         plaintext_len, buffer);
5707                 debug_hexdump(stdout, "plaintext:", plaintext,
5708                         plaintext_len);
5709         }
5710         memset(buffer, 0, sizeof(buffer));
5711
5712         /* Create ZUC operation */
5713         retval = create_wireless_algo_auth_cipher_operation(
5714                 tdata->digest.len,
5715                 tdata->cipher_iv.data, tdata->cipher_iv.len,
5716                 NULL, 0,
5717                 (tdata->digest.offset_bytes == 0 ?
5718                 (verify ? ciphertext_pad_len : plaintext_pad_len)
5719                         : tdata->digest.offset_bytes),
5720                 tdata->validCipherLenInBits.len,
5721                 tdata->validCipherOffsetInBits.len,
5722                 tdata->validAuthLenInBits.len,
5723                 0,
5724                 op_mode, 1);
5725
5726         if (retval < 0)
5727                 return retval;
5728
5729         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
5730                         ut_params->op);
5731
5732         TEST_ASSERT_NOT_NULL(ut_params->op, "failed to retrieve obuf");
5733
5734         ut_params->obuf = (op_mode == IN_PLACE ?
5735                 ut_params->op->sym->m_src : ut_params->op->sym->m_dst);
5736
5737         if (verify) {
5738                 if (ut_params->obuf)
5739                         plaintext = rte_pktmbuf_read(ut_params->obuf, 0,
5740                                         plaintext_len, buffer);
5741                 else
5742                         plaintext = rte_pktmbuf_read(ut_params->ibuf, 0,
5743                                         plaintext_len, buffer);
5744
5745                 debug_hexdump(stdout, "plaintext:", plaintext,
5746                         (tdata->plaintext.len >> 3) - tdata->digest.len);
5747                 debug_hexdump(stdout, "plaintext expected:",
5748                         tdata->plaintext.data,
5749                         (tdata->plaintext.len >> 3) - tdata->digest.len);
5750         } else {
5751                 if (ut_params->obuf)
5752                         ciphertext = rte_pktmbuf_read(ut_params->obuf, 0,
5753                                         ciphertext_len, buffer);
5754                 else
5755                         ciphertext = rte_pktmbuf_read(ut_params->ibuf, 0,
5756                                         ciphertext_len, buffer);
5757
5758                 debug_hexdump(stdout, "ciphertext:", ciphertext,
5759                         ciphertext_len);
5760                 debug_hexdump(stdout, "ciphertext expected:",
5761                         tdata->ciphertext.data, tdata->ciphertext.len >> 3);
5762
5763                 if (ut_params->obuf)
5764                         digest = rte_pktmbuf_read(ut_params->obuf,
5765                                 (tdata->digest.offset_bytes == 0 ?
5766                                 plaintext_pad_len : tdata->digest.offset_bytes),
5767                                 tdata->digest.len, digest_buffer);
5768                 else
5769                         digest = rte_pktmbuf_read(ut_params->ibuf,
5770                                 (tdata->digest.offset_bytes == 0 ?
5771                                 plaintext_pad_len : tdata->digest.offset_bytes),
5772                                 tdata->digest.len, digest_buffer);
5773
5774                 debug_hexdump(stdout, "digest:", digest,
5775                         tdata->digest.len);
5776                 debug_hexdump(stdout, "digest expected:",
5777                         tdata->digest.data, tdata->digest.len);
5778         }
5779
5780         /* Validate obuf */
5781         if (verify) {
5782                 TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
5783                         plaintext,
5784                         tdata->plaintext.data,
5785                         tdata->plaintext.len >> 3,
5786                         "ZUC Plaintext data not as expected");
5787         } else {
5788                 TEST_ASSERT_BUFFERS_ARE_EQUAL_BIT(
5789                         ciphertext,
5790                         tdata->ciphertext.data,
5791                         tdata->validDataLenInBits.len,
5792                         "ZUC Ciphertext data not as expected");
5793
5794                 TEST_ASSERT_BUFFERS_ARE_EQUAL(
5795                         digest,
5796                         tdata->digest.data,
5797                         DIGEST_BYTE_LENGTH_KASUMI_F9,
5798                         "ZUC Generated auth tag not as expected");
5799         }
5800         return 0;
5801 }
5802
5803 static int
5804 test_kasumi_encryption_test_case_1(void)
5805 {
5806         return test_kasumi_encryption(&kasumi_test_case_1);
5807 }
5808
5809 static int
5810 test_kasumi_encryption_test_case_1_sgl(void)
5811 {
5812         return test_kasumi_encryption_sgl(&kasumi_test_case_1);
5813 }
5814
5815 static int
5816 test_kasumi_encryption_test_case_1_oop(void)
5817 {
5818         return test_kasumi_encryption_oop(&kasumi_test_case_1);
5819 }
5820
5821 static int
5822 test_kasumi_encryption_test_case_1_oop_sgl(void)
5823 {
5824         return test_kasumi_encryption_oop_sgl(&kasumi_test_case_1);
5825 }
5826
5827 static int
5828 test_kasumi_encryption_test_case_2(void)
5829 {
5830         return test_kasumi_encryption(&kasumi_test_case_2);
5831 }
5832
5833 static int
5834 test_kasumi_encryption_test_case_3(void)
5835 {
5836         return test_kasumi_encryption(&kasumi_test_case_3);
5837 }
5838
5839 static int
5840 test_kasumi_encryption_test_case_4(void)
5841 {
5842         return test_kasumi_encryption(&kasumi_test_case_4);
5843 }
5844
5845 static int
5846 test_kasumi_encryption_test_case_5(void)
5847 {
5848         return test_kasumi_encryption(&kasumi_test_case_5);
5849 }
5850
5851 static int
5852 test_kasumi_decryption_test_case_1(void)
5853 {
5854         return test_kasumi_decryption(&kasumi_test_case_1);
5855 }
5856
5857 static int
5858 test_kasumi_decryption_test_case_1_oop(void)
5859 {
5860         return test_kasumi_decryption_oop(&kasumi_test_case_1);
5861 }
5862
5863 static int
5864 test_kasumi_decryption_test_case_2(void)
5865 {
5866         return test_kasumi_decryption(&kasumi_test_case_2);
5867 }
5868
5869 static int
5870 test_kasumi_decryption_test_case_3(void)
5871 {
5872         return test_kasumi_decryption(&kasumi_test_case_3);
5873 }
5874
5875 static int
5876 test_kasumi_decryption_test_case_4(void)
5877 {
5878         return test_kasumi_decryption(&kasumi_test_case_4);
5879 }
5880
5881 static int
5882 test_kasumi_decryption_test_case_5(void)
5883 {
5884         return test_kasumi_decryption(&kasumi_test_case_5);
5885 }
5886 static int
5887 test_snow3g_encryption_test_case_1(void)
5888 {
5889         return test_snow3g_encryption(&snow3g_test_case_1);
5890 }
5891
5892 static int
5893 test_snow3g_encryption_test_case_1_oop(void)
5894 {
5895         return test_snow3g_encryption_oop(&snow3g_test_case_1);
5896 }
5897
5898 static int
5899 test_snow3g_encryption_test_case_1_oop_sgl(void)
5900 {
5901         return test_snow3g_encryption_oop_sgl(&snow3g_test_case_1);
5902 }
5903
5904
5905 static int
5906 test_snow3g_encryption_test_case_1_offset_oop(void)
5907 {
5908         return test_snow3g_encryption_offset_oop(&snow3g_test_case_1);
5909 }
5910
5911 static int
5912 test_snow3g_encryption_test_case_2(void)
5913 {
5914         return test_snow3g_encryption(&snow3g_test_case_2);
5915 }
5916
5917 static int
5918 test_snow3g_encryption_test_case_3(void)
5919 {
5920         return test_snow3g_encryption(&snow3g_test_case_3);
5921 }
5922
5923 static int
5924 test_snow3g_encryption_test_case_4(void)
5925 {
5926         return test_snow3g_encryption(&snow3g_test_case_4);
5927 }
5928
5929 static int
5930 test_snow3g_encryption_test_case_5(void)
5931 {
5932         return test_snow3g_encryption(&snow3g_test_case_5);
5933 }
5934
5935 static int
5936 test_snow3g_decryption_test_case_1(void)
5937 {
5938         return test_snow3g_decryption(&snow3g_test_case_1);
5939 }
5940
5941 static int
5942 test_snow3g_decryption_test_case_1_oop(void)
5943 {
5944         return test_snow3g_decryption_oop(&snow3g_test_case_1);
5945 }
5946
5947 static int
5948 test_snow3g_decryption_test_case_2(void)
5949 {
5950         return test_snow3g_decryption(&snow3g_test_case_2);
5951 }
5952
5953 static int
5954 test_snow3g_decryption_test_case_3(void)
5955 {
5956         return test_snow3g_decryption(&snow3g_test_case_3);
5957 }
5958
5959 static int
5960 test_snow3g_decryption_test_case_4(void)
5961 {
5962         return test_snow3g_decryption(&snow3g_test_case_4);
5963 }
5964
5965 static int
5966 test_snow3g_decryption_test_case_5(void)
5967 {
5968         return test_snow3g_decryption(&snow3g_test_case_5);
5969 }
5970
5971 /*
5972  * Function prepares snow3g_hash_test_data from snow3g_test_data.
5973  * Pattern digest from snow3g_test_data must be allocated as
5974  * 4 last bytes in plaintext.
5975  */
5976 static void
5977 snow3g_hash_test_vector_setup(const struct snow3g_test_data *pattern,
5978                 struct snow3g_hash_test_data *output)
5979 {
5980         if ((pattern != NULL) && (output != NULL)) {
5981                 output->key.len = pattern->key.len;
5982
5983                 memcpy(output->key.data,
5984                 pattern->key.data, pattern->key.len);
5985
5986                 output->auth_iv.len = pattern->auth_iv.len;
5987
5988                 memcpy(output->auth_iv.data,
5989                 pattern->auth_iv.data, pattern->auth_iv.len);
5990
5991                 output->plaintext.len = pattern->plaintext.len;
5992
5993                 memcpy(output->plaintext.data,
5994                 pattern->plaintext.data, pattern->plaintext.len >> 3);
5995
5996                 output->digest.len = pattern->digest.len;
5997
5998                 memcpy(output->digest.data,
5999                 &pattern->plaintext.data[pattern->digest.offset_bytes],
6000                 pattern->digest.len);
6001
6002                 output->validAuthLenInBits.len =
6003                 pattern->validAuthLenInBits.len;
6004         }
6005 }
6006
6007 /*
6008  * Test case verify computed cipher and digest from snow3g_test_case_7 data.
6009  */
6010 static int
6011 test_snow3g_decryption_with_digest_test_case_1(void)
6012 {
6013         struct snow3g_hash_test_data snow3g_hash_data;
6014
6015         /*
6016          * Function prepare data for hash veryfication test case.
6017          * Digest is allocated in 4 last bytes in plaintext, pattern.
6018          */
6019         snow3g_hash_test_vector_setup(&snow3g_test_case_7, &snow3g_hash_data);
6020
6021         return test_snow3g_decryption(&snow3g_test_case_7) &
6022                         test_snow3g_authentication_verify(&snow3g_hash_data);
6023 }
6024
6025 static int
6026 test_snow3g_cipher_auth_test_case_1(void)
6027 {
6028         return test_snow3g_cipher_auth(&snow3g_test_case_3);
6029 }
6030
6031 static int
6032 test_snow3g_auth_cipher_test_case_1(void)
6033 {
6034         return test_snow3g_auth_cipher(
6035                 &snow3g_auth_cipher_test_case_1, IN_PLACE, 0);
6036 }
6037
6038 static int
6039 test_snow3g_auth_cipher_test_case_2(void)
6040 {
6041         return test_snow3g_auth_cipher(
6042                 &snow3g_auth_cipher_test_case_2, IN_PLACE, 0);
6043 }
6044
6045 static int
6046 test_snow3g_auth_cipher_test_case_2_oop(void)
6047 {
6048         return test_snow3g_auth_cipher(
6049                 &snow3g_auth_cipher_test_case_2, OUT_OF_PLACE, 0);
6050 }
6051
6052 static int
6053 test_snow3g_auth_cipher_part_digest_enc(void)
6054 {
6055         return test_snow3g_auth_cipher(
6056                 &snow3g_auth_cipher_partial_digest_encryption,
6057                         IN_PLACE, 0);
6058 }
6059
6060 static int
6061 test_snow3g_auth_cipher_part_digest_enc_oop(void)
6062 {
6063         return test_snow3g_auth_cipher(
6064                 &snow3g_auth_cipher_partial_digest_encryption,
6065                         OUT_OF_PLACE, 0);
6066 }
6067
6068 static int
6069 test_snow3g_auth_cipher_test_case_3_sgl(void)
6070 {
6071         return test_snow3g_auth_cipher_sgl(
6072                 &snow3g_auth_cipher_test_case_3, IN_PLACE, 0);
6073 }
6074
6075 static int
6076 test_snow3g_auth_cipher_test_case_3_oop_sgl(void)
6077 {
6078         return test_snow3g_auth_cipher_sgl(
6079                 &snow3g_auth_cipher_test_case_3, OUT_OF_PLACE, 0);
6080 }
6081
6082 static int
6083 test_snow3g_auth_cipher_part_digest_enc_sgl(void)
6084 {
6085         return test_snow3g_auth_cipher_sgl(
6086                 &snow3g_auth_cipher_partial_digest_encryption,
6087                         IN_PLACE, 0);
6088 }
6089
6090 static int
6091 test_snow3g_auth_cipher_part_digest_enc_oop_sgl(void)
6092 {
6093         return test_snow3g_auth_cipher_sgl(
6094                 &snow3g_auth_cipher_partial_digest_encryption,
6095                         OUT_OF_PLACE, 0);
6096 }
6097
6098 static int
6099 test_snow3g_auth_cipher_verify_test_case_1(void)
6100 {
6101         return test_snow3g_auth_cipher(
6102                 &snow3g_auth_cipher_test_case_1, IN_PLACE, 1);
6103 }
6104
6105 static int
6106 test_snow3g_auth_cipher_verify_test_case_2(void)
6107 {
6108         return test_snow3g_auth_cipher(
6109                 &snow3g_auth_cipher_test_case_2, IN_PLACE, 1);
6110 }
6111
6112 static int
6113 test_snow3g_auth_cipher_verify_test_case_2_oop(void)
6114 {
6115         return test_snow3g_auth_cipher(
6116                 &snow3g_auth_cipher_test_case_2, OUT_OF_PLACE, 1);
6117 }
6118
6119 static int
6120 test_snow3g_auth_cipher_verify_part_digest_enc(void)
6121 {
6122         return test_snow3g_auth_cipher(
6123                 &snow3g_auth_cipher_partial_digest_encryption,
6124                         IN_PLACE, 1);
6125 }
6126
6127 static int
6128 test_snow3g_auth_cipher_verify_part_digest_enc_oop(void)
6129 {
6130         return test_snow3g_auth_cipher(
6131                 &snow3g_auth_cipher_partial_digest_encryption,
6132                         OUT_OF_PLACE, 1);
6133 }
6134
6135 static int
6136 test_snow3g_auth_cipher_verify_test_case_3_sgl(void)
6137 {
6138         return test_snow3g_auth_cipher_sgl(
6139                 &snow3g_auth_cipher_test_case_3, IN_PLACE, 1);
6140 }
6141
6142 static int
6143 test_snow3g_auth_cipher_verify_test_case_3_oop_sgl(void)
6144 {
6145         return test_snow3g_auth_cipher_sgl(
6146                 &snow3g_auth_cipher_test_case_3, OUT_OF_PLACE, 1);
6147 }
6148
6149 static int
6150 test_snow3g_auth_cipher_verify_part_digest_enc_sgl(void)
6151 {
6152         return test_snow3g_auth_cipher_sgl(
6153                 &snow3g_auth_cipher_partial_digest_encryption,
6154                         IN_PLACE, 1);
6155 }
6156
6157 static int
6158 test_snow3g_auth_cipher_verify_part_digest_enc_oop_sgl(void)
6159 {
6160         return test_snow3g_auth_cipher_sgl(
6161                 &snow3g_auth_cipher_partial_digest_encryption,
6162                         OUT_OF_PLACE, 1);
6163 }
6164
6165 static int
6166 test_snow3g_auth_cipher_with_digest_test_case_1(void)
6167 {
6168         return test_snow3g_auth_cipher(
6169                 &snow3g_test_case_7, IN_PLACE, 0);
6170 }
6171
6172 static int
6173 test_kasumi_auth_cipher_test_case_1(void)
6174 {
6175         return test_kasumi_auth_cipher(
6176                 &kasumi_test_case_3, IN_PLACE, 0);
6177 }
6178
6179 static int
6180 test_kasumi_auth_cipher_test_case_2(void)
6181 {
6182         return test_kasumi_auth_cipher(
6183                 &kasumi_auth_cipher_test_case_2, IN_PLACE, 0);
6184 }
6185
6186 static int
6187 test_kasumi_auth_cipher_test_case_2_oop(void)
6188 {
6189         return test_kasumi_auth_cipher(
6190                 &kasumi_auth_cipher_test_case_2, OUT_OF_PLACE, 0);
6191 }
6192
6193 static int
6194 test_kasumi_auth_cipher_test_case_2_sgl(void)
6195 {
6196         return test_kasumi_auth_cipher_sgl(
6197                 &kasumi_auth_cipher_test_case_2, IN_PLACE, 0);
6198 }
6199
6200 static int
6201 test_kasumi_auth_cipher_test_case_2_oop_sgl(void)
6202 {
6203         return test_kasumi_auth_cipher_sgl(
6204                 &kasumi_auth_cipher_test_case_2, OUT_OF_PLACE, 0);
6205 }
6206
6207 static int
6208 test_kasumi_auth_cipher_verify_test_case_1(void)
6209 {
6210         return test_kasumi_auth_cipher(
6211                 &kasumi_test_case_3, IN_PLACE, 1);
6212 }
6213
6214 static int
6215 test_kasumi_auth_cipher_verify_test_case_2(void)
6216 {
6217         return test_kasumi_auth_cipher(
6218                 &kasumi_auth_cipher_test_case_2, IN_PLACE, 1);
6219 }
6220
6221 static int
6222 test_kasumi_auth_cipher_verify_test_case_2_oop(void)
6223 {
6224         return test_kasumi_auth_cipher(
6225                 &kasumi_auth_cipher_test_case_2, OUT_OF_PLACE, 1);
6226 }
6227
6228 static int
6229 test_kasumi_auth_cipher_verify_test_case_2_sgl(void)
6230 {
6231         return test_kasumi_auth_cipher_sgl(
6232                 &kasumi_auth_cipher_test_case_2, IN_PLACE, 1);
6233 }
6234
6235 static int
6236 test_kasumi_auth_cipher_verify_test_case_2_oop_sgl(void)
6237 {
6238         return test_kasumi_auth_cipher_sgl(
6239                 &kasumi_auth_cipher_test_case_2, OUT_OF_PLACE, 1);
6240 }
6241
6242 static int
6243 test_kasumi_cipher_auth_test_case_1(void)
6244 {
6245         return test_kasumi_cipher_auth(&kasumi_test_case_6);
6246 }
6247
6248 static int
6249 test_zuc_encryption_test_case_1(void)
6250 {
6251         return test_zuc_encryption(&zuc_test_case_cipher_193b);
6252 }
6253
6254 static int
6255 test_zuc_encryption_test_case_2(void)
6256 {
6257         return test_zuc_encryption(&zuc_test_case_cipher_800b);
6258 }
6259
6260 static int
6261 test_zuc_encryption_test_case_3(void)
6262 {
6263         return test_zuc_encryption(&zuc_test_case_cipher_1570b);
6264 }
6265
6266 static int
6267 test_zuc_encryption_test_case_4(void)
6268 {
6269         return test_zuc_encryption(&zuc_test_case_cipher_2798b);
6270 }
6271
6272 static int
6273 test_zuc_encryption_test_case_5(void)
6274 {
6275         return test_zuc_encryption(&zuc_test_case_cipher_4019b);
6276 }
6277
6278 static int
6279 test_zuc_encryption_test_case_6_sgl(void)
6280 {
6281         return test_zuc_encryption_sgl(&zuc_test_case_cipher_193b);
6282 }
6283
6284 static int
6285 test_zuc_hash_generate_test_case_1(void)
6286 {
6287         return test_zuc_authentication(&zuc_test_case_auth_1b);
6288 }
6289
6290 static int
6291 test_zuc_hash_generate_test_case_2(void)
6292 {
6293         return test_zuc_authentication(&zuc_test_case_auth_90b);
6294 }
6295
6296 static int
6297 test_zuc_hash_generate_test_case_3(void)
6298 {
6299         return test_zuc_authentication(&zuc_test_case_auth_577b);
6300 }
6301
6302 static int
6303 test_zuc_hash_generate_test_case_4(void)
6304 {
6305         return test_zuc_authentication(&zuc_test_case_auth_2079b);
6306 }
6307
6308 static int
6309 test_zuc_hash_generate_test_case_5(void)
6310 {
6311         return test_zuc_authentication(&zuc_test_auth_5670b);
6312 }
6313
6314 static int
6315 test_zuc_hash_generate_test_case_6(void)
6316 {
6317         return test_zuc_authentication(&zuc_test_case_auth_128b);
6318 }
6319
6320 static int
6321 test_zuc_hash_generate_test_case_7(void)
6322 {
6323         return test_zuc_authentication(&zuc_test_case_auth_2080b);
6324 }
6325
6326 static int
6327 test_zuc_hash_generate_test_case_8(void)
6328 {
6329         return test_zuc_authentication(&zuc_test_case_auth_584b);
6330 }
6331
6332 static int
6333 test_zuc_cipher_auth_test_case_1(void)
6334 {
6335         return test_zuc_cipher_auth(&zuc_test_case_cipher_200b_auth_200b);
6336 }
6337
6338 static int
6339 test_zuc_cipher_auth_test_case_2(void)
6340 {
6341         return test_zuc_cipher_auth(&zuc_test_case_cipher_800b_auth_120b);
6342 }
6343
6344 static int
6345 test_zuc_auth_cipher_test_case_1(void)
6346 {
6347         return test_zuc_auth_cipher(
6348                 &zuc_auth_cipher_test_case_1, IN_PLACE, 0);
6349 }
6350
6351 static int
6352 test_zuc_auth_cipher_test_case_1_oop(void)
6353 {
6354         return test_zuc_auth_cipher(
6355                 &zuc_auth_cipher_test_case_1, OUT_OF_PLACE, 0);
6356 }
6357
6358 static int
6359 test_zuc_auth_cipher_test_case_1_sgl(void)
6360 {
6361         return test_zuc_auth_cipher_sgl(
6362                 &zuc_auth_cipher_test_case_1, IN_PLACE, 0);
6363 }
6364
6365 static int
6366 test_zuc_auth_cipher_test_case_1_oop_sgl(void)
6367 {
6368         return test_zuc_auth_cipher_sgl(
6369                 &zuc_auth_cipher_test_case_1, OUT_OF_PLACE, 0);
6370 }
6371
6372 static int
6373 test_zuc_auth_cipher_verify_test_case_1(void)
6374 {
6375         return test_zuc_auth_cipher(
6376                 &zuc_auth_cipher_test_case_1, IN_PLACE, 1);
6377 }
6378
6379 static int
6380 test_zuc_auth_cipher_verify_test_case_1_oop(void)
6381 {
6382         return test_zuc_auth_cipher(
6383                 &zuc_auth_cipher_test_case_1, OUT_OF_PLACE, 1);
6384 }
6385
6386 static int
6387 test_zuc_auth_cipher_verify_test_case_1_sgl(void)
6388 {
6389         return test_zuc_auth_cipher_sgl(
6390                 &zuc_auth_cipher_test_case_1, IN_PLACE, 1);
6391 }
6392
6393 static int
6394 test_zuc_auth_cipher_verify_test_case_1_oop_sgl(void)
6395 {
6396         return test_zuc_auth_cipher_sgl(
6397                 &zuc_auth_cipher_test_case_1, OUT_OF_PLACE, 1);
6398 }
6399
6400 static int
6401 test_3DES_chain_qat_all(void)
6402 {
6403         struct crypto_testsuite_params *ts_params = &testsuite_params;
6404         int status;
6405
6406         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6407                 ts_params->op_mpool,
6408                 ts_params->session_mpool, ts_params->session_priv_mpool,
6409                 ts_params->valid_devs[0],
6410                 rte_cryptodev_driver_id_get(
6411                 RTE_STR(CRYPTODEV_NAME_QAT_SYM_PMD)),
6412                 BLKCIPHER_3DES_CHAIN_TYPE);
6413
6414         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6415
6416         return TEST_SUCCESS;
6417 }
6418
6419 static int
6420 test_DES_cipheronly_qat_all(void)
6421 {
6422         struct crypto_testsuite_params *ts_params = &testsuite_params;
6423         int status;
6424
6425         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6426                 ts_params->op_mpool,
6427                 ts_params->session_mpool, ts_params->session_priv_mpool,
6428                 ts_params->valid_devs[0],
6429                 rte_cryptodev_driver_id_get(
6430                 RTE_STR(CRYPTODEV_NAME_QAT_SYM_PMD)),
6431                 BLKCIPHER_DES_CIPHERONLY_TYPE);
6432
6433         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6434
6435         return TEST_SUCCESS;
6436 }
6437
6438 static int
6439 test_DES_cipheronly_openssl_all(void)
6440 {
6441         struct crypto_testsuite_params *ts_params = &testsuite_params;
6442         int status;
6443
6444         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6445                 ts_params->op_mpool,
6446                 ts_params->session_mpool, ts_params->session_priv_mpool,
6447                 ts_params->valid_devs[0],
6448                 rte_cryptodev_driver_id_get(
6449                 RTE_STR(CRYPTODEV_NAME_OPENSSL_PMD)),
6450                 BLKCIPHER_DES_CIPHERONLY_TYPE);
6451
6452         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6453
6454         return TEST_SUCCESS;
6455 }
6456
6457 static int
6458 test_DES_docsis_openssl_all(void)
6459 {
6460         struct crypto_testsuite_params *ts_params = &testsuite_params;
6461         int status;
6462
6463         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6464                 ts_params->op_mpool,
6465                 ts_params->session_mpool, ts_params->session_priv_mpool,
6466                 ts_params->valid_devs[0],
6467                 rte_cryptodev_driver_id_get(
6468                 RTE_STR(CRYPTODEV_NAME_OPENSSL_PMD)),
6469                 BLKCIPHER_DES_DOCSIS_TYPE);
6470
6471         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6472
6473         return TEST_SUCCESS;
6474 }
6475
6476 static int
6477 test_DES_cipheronly_mb_all(void)
6478 {
6479         struct crypto_testsuite_params *ts_params = &testsuite_params;
6480         int status;
6481
6482         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6483                 ts_params->op_mpool,
6484                 ts_params->session_mpool, ts_params->session_priv_mpool,
6485                 ts_params->valid_devs[0],
6486                 rte_cryptodev_driver_id_get(
6487                 RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD)),
6488                 BLKCIPHER_DES_CIPHERONLY_TYPE);
6489
6490         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6491
6492         return TEST_SUCCESS;
6493 }
6494 static int
6495 test_3DES_cipheronly_mb_all(void)
6496 {
6497         struct crypto_testsuite_params *ts_params = &testsuite_params;
6498         int status;
6499
6500         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6501                 ts_params->op_mpool,
6502                 ts_params->session_mpool, ts_params->session_priv_mpool,
6503                 ts_params->valid_devs[0],
6504                 rte_cryptodev_driver_id_get(
6505                 RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD)),
6506                 BLKCIPHER_3DES_CIPHERONLY_TYPE);
6507
6508         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6509
6510         return TEST_SUCCESS;
6511 }
6512
6513 static int
6514 test_DES_docsis_mb_all(void)
6515 {
6516         struct crypto_testsuite_params *ts_params = &testsuite_params;
6517         int status;
6518
6519         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6520                 ts_params->op_mpool,
6521                 ts_params->session_mpool, ts_params->session_priv_mpool,
6522                 ts_params->valid_devs[0],
6523                 rte_cryptodev_driver_id_get(
6524                 RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD)),
6525                 BLKCIPHER_DES_DOCSIS_TYPE);
6526
6527         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6528
6529         return TEST_SUCCESS;
6530 }
6531
6532 static int
6533 test_3DES_chain_caam_jr_all(void)
6534 {
6535         struct crypto_testsuite_params *ts_params = &testsuite_params;
6536         int status;
6537
6538         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6539                 ts_params->op_mpool,
6540                 ts_params->session_mpool, ts_params->session_priv_mpool,
6541                 ts_params->valid_devs[0],
6542                 rte_cryptodev_driver_id_get(
6543                 RTE_STR(CRYPTODEV_NAME_CAAM_JR_PMD)),
6544                 BLKCIPHER_3DES_CHAIN_TYPE);
6545
6546         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6547
6548         return TEST_SUCCESS;
6549 }
6550
6551 static int
6552 test_3DES_cipheronly_caam_jr_all(void)
6553 {
6554         struct crypto_testsuite_params *ts_params = &testsuite_params;
6555         int status;
6556
6557         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6558                 ts_params->op_mpool,
6559                 ts_params->session_mpool, ts_params->session_priv_mpool,
6560                 ts_params->valid_devs[0],
6561                 rte_cryptodev_driver_id_get(
6562                 RTE_STR(CRYPTODEV_NAME_CAAM_JR_PMD)),
6563                 BLKCIPHER_3DES_CIPHERONLY_TYPE);
6564
6565         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6566
6567         return TEST_SUCCESS;
6568 }
6569
6570 static int
6571 test_3DES_chain_dpaa_sec_all(void)
6572 {
6573         struct crypto_testsuite_params *ts_params = &testsuite_params;
6574         int status;
6575
6576         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6577                 ts_params->op_mpool,
6578                 ts_params->session_mpool, ts_params->session_priv_mpool,
6579                 ts_params->valid_devs[0],
6580                 rte_cryptodev_driver_id_get(
6581                 RTE_STR(CRYPTODEV_NAME_DPAA_SEC_PMD)),
6582                 BLKCIPHER_3DES_CHAIN_TYPE);
6583
6584         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6585
6586         return TEST_SUCCESS;
6587 }
6588
6589 static int
6590 test_3DES_cipheronly_dpaa_sec_all(void)
6591 {
6592         struct crypto_testsuite_params *ts_params = &testsuite_params;
6593         int status;
6594
6595         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6596                 ts_params->op_mpool,
6597                 ts_params->session_mpool, ts_params->session_priv_mpool,
6598                 ts_params->valid_devs[0],
6599                 rte_cryptodev_driver_id_get(
6600                 RTE_STR(CRYPTODEV_NAME_DPAA_SEC_PMD)),
6601                 BLKCIPHER_3DES_CIPHERONLY_TYPE);
6602
6603         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6604
6605         return TEST_SUCCESS;
6606 }
6607
6608 static int
6609 test_3DES_chain_dpaa2_sec_all(void)
6610 {
6611         struct crypto_testsuite_params *ts_params = &testsuite_params;
6612         int status;
6613
6614         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6615                 ts_params->op_mpool,
6616                 ts_params->session_mpool, ts_params->session_priv_mpool,
6617                 ts_params->valid_devs[0],
6618                 rte_cryptodev_driver_id_get(
6619                 RTE_STR(CRYPTODEV_NAME_DPAA2_SEC_PMD)),
6620                 BLKCIPHER_3DES_CHAIN_TYPE);
6621
6622         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6623
6624         return TEST_SUCCESS;
6625 }
6626
6627 static int
6628 test_3DES_cipheronly_dpaa2_sec_all(void)
6629 {
6630         struct crypto_testsuite_params *ts_params = &testsuite_params;
6631         int status;
6632
6633         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6634                 ts_params->op_mpool,
6635                 ts_params->session_mpool, ts_params->session_priv_mpool,
6636                 ts_params->valid_devs[0],
6637                 rte_cryptodev_driver_id_get(
6638                 RTE_STR(CRYPTODEV_NAME_DPAA2_SEC_PMD)),
6639                 BLKCIPHER_3DES_CIPHERONLY_TYPE);
6640
6641         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6642
6643         return TEST_SUCCESS;
6644 }
6645
6646 static int
6647 test_3DES_chain_ccp_all(void)
6648 {
6649         struct crypto_testsuite_params *ts_params = &testsuite_params;
6650         int status;
6651
6652         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6653                 ts_params->op_mpool,
6654                 ts_params->session_mpool, ts_params->session_priv_mpool,
6655                 ts_params->valid_devs[0],
6656                 rte_cryptodev_driver_id_get(
6657                 RTE_STR(CRYPTODEV_NAME_CCP_PMD)),
6658                 BLKCIPHER_3DES_CHAIN_TYPE);
6659
6660         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6661
6662         return TEST_SUCCESS;
6663 }
6664
6665 static int
6666 test_3DES_cipheronly_ccp_all(void)
6667 {
6668         struct crypto_testsuite_params *ts_params = &testsuite_params;
6669         int status;
6670
6671         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6672                 ts_params->op_mpool,
6673                 ts_params->session_mpool, ts_params->session_priv_mpool,
6674                 ts_params->valid_devs[0],
6675                 rte_cryptodev_driver_id_get(
6676                 RTE_STR(CRYPTODEV_NAME_CCP_PMD)),
6677                 BLKCIPHER_3DES_CIPHERONLY_TYPE);
6678
6679         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6680
6681         return TEST_SUCCESS;
6682 }
6683
6684 static int
6685 test_3DES_cipheronly_qat_all(void)
6686 {
6687         struct crypto_testsuite_params *ts_params = &testsuite_params;
6688         int status;
6689
6690         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6691                 ts_params->op_mpool,
6692                 ts_params->session_mpool, ts_params->session_priv_mpool,
6693                 ts_params->valid_devs[0],
6694                 rte_cryptodev_driver_id_get(
6695                 RTE_STR(CRYPTODEV_NAME_QAT_SYM_PMD)),
6696                 BLKCIPHER_3DES_CIPHERONLY_TYPE);
6697
6698         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6699
6700         return TEST_SUCCESS;
6701 }
6702
6703 static int
6704 test_3DES_chain_openssl_all(void)
6705 {
6706         struct crypto_testsuite_params *ts_params = &testsuite_params;
6707         int status;
6708
6709         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6710                 ts_params->op_mpool,
6711                 ts_params->session_mpool, ts_params->session_priv_mpool,
6712                 ts_params->valid_devs[0],
6713                 rte_cryptodev_driver_id_get(
6714                 RTE_STR(CRYPTODEV_NAME_OPENSSL_PMD)),
6715                 BLKCIPHER_3DES_CHAIN_TYPE);
6716
6717         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6718
6719         return TEST_SUCCESS;
6720 }
6721
6722 static int
6723 test_3DES_cipheronly_openssl_all(void)
6724 {
6725         struct crypto_testsuite_params *ts_params = &testsuite_params;
6726         int status;
6727
6728         status = test_blockcipher_all_tests(ts_params->mbuf_pool,
6729                 ts_params->op_mpool,
6730                 ts_params->session_mpool, ts_params->session_priv_mpool,
6731                 ts_params->valid_devs[0],
6732                 rte_cryptodev_driver_id_get(
6733                 RTE_STR(CRYPTODEV_NAME_OPENSSL_PMD)),
6734                 BLKCIPHER_3DES_CIPHERONLY_TYPE);
6735
6736         TEST_ASSERT_EQUAL(status, 0, "Test failed");
6737
6738         return TEST_SUCCESS;
6739 }
6740
6741 /* ***** AEAD algorithm Tests ***** */
6742
6743 static int
6744 create_aead_session(uint8_t dev_id, enum rte_crypto_aead_algorithm algo,
6745                 enum rte_crypto_aead_operation op,
6746                 const uint8_t *key, const uint8_t key_len,
6747                 const uint16_t aad_len, const uint8_t auth_len,
6748                 uint8_t iv_len)
6749 {
6750         uint8_t aead_key[key_len];
6751
6752         struct crypto_testsuite_params *ts_params = &testsuite_params;
6753         struct crypto_unittest_params *ut_params = &unittest_params;
6754
6755         memcpy(aead_key, key, key_len);
6756
6757         /* Setup AEAD Parameters */
6758         ut_params->aead_xform.type = RTE_CRYPTO_SYM_XFORM_AEAD;
6759         ut_params->aead_xform.next = NULL;
6760         ut_params->aead_xform.aead.algo = algo;
6761         ut_params->aead_xform.aead.op = op;
6762         ut_params->aead_xform.aead.key.data = aead_key;
6763         ut_params->aead_xform.aead.key.length = key_len;
6764         ut_params->aead_xform.aead.iv.offset = IV_OFFSET;
6765         ut_params->aead_xform.aead.iv.length = iv_len;
6766         ut_params->aead_xform.aead.digest_length = auth_len;
6767         ut_params->aead_xform.aead.aad_length = aad_len;
6768
6769         debug_hexdump(stdout, "key:", key, key_len);
6770
6771         /* Create Crypto session*/
6772         ut_params->sess = rte_cryptodev_sym_session_create(
6773                         ts_params->session_mpool);
6774
6775         rte_cryptodev_sym_session_init(dev_id, ut_params->sess,
6776                         &ut_params->aead_xform,
6777                         ts_params->session_priv_mpool);
6778
6779         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
6780
6781         return 0;
6782 }
6783
6784 static int
6785 create_aead_xform(struct rte_crypto_op *op,
6786                 enum rte_crypto_aead_algorithm algo,
6787                 enum rte_crypto_aead_operation aead_op,
6788                 uint8_t *key, const uint8_t key_len,
6789                 const uint8_t aad_len, const uint8_t auth_len,
6790                 uint8_t iv_len)
6791 {
6792         TEST_ASSERT_NOT_NULL(rte_crypto_op_sym_xforms_alloc(op, 1),
6793                         "failed to allocate space for crypto transform");
6794
6795         struct rte_crypto_sym_op *sym_op = op->sym;
6796
6797         /* Setup AEAD Parameters */
6798         sym_op->xform->type = RTE_CRYPTO_SYM_XFORM_AEAD;
6799         sym_op->xform->next = NULL;
6800         sym_op->xform->aead.algo = algo;
6801         sym_op->xform->aead.op = aead_op;
6802         sym_op->xform->aead.key.data = key;
6803         sym_op->xform->aead.key.length = key_len;
6804         sym_op->xform->aead.iv.offset = IV_OFFSET;
6805         sym_op->xform->aead.iv.length = iv_len;
6806         sym_op->xform->aead.digest_length = auth_len;
6807         sym_op->xform->aead.aad_length = aad_len;
6808
6809         debug_hexdump(stdout, "key:", key, key_len);
6810
6811         return 0;
6812 }
6813
6814 static int
6815 create_aead_operation(enum rte_crypto_aead_operation op,
6816                 const struct aead_test_data *tdata)
6817 {
6818         struct crypto_testsuite_params *ts_params = &testsuite_params;
6819         struct crypto_unittest_params *ut_params = &unittest_params;
6820
6821         uint8_t *plaintext, *ciphertext;
6822         unsigned int aad_pad_len, plaintext_pad_len;
6823
6824         /* Generate Crypto op data structure */
6825         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
6826                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
6827         TEST_ASSERT_NOT_NULL(ut_params->op,
6828                         "Failed to allocate symmetric crypto operation struct");
6829
6830         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
6831
6832         /* Append aad data */
6833         if (tdata->algo == RTE_CRYPTO_AEAD_AES_CCM) {
6834                 aad_pad_len = RTE_ALIGN_CEIL(tdata->aad.len + 18, 16);
6835                 sym_op->aead.aad.data = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
6836                                 aad_pad_len);
6837                 TEST_ASSERT_NOT_NULL(sym_op->aead.aad.data,
6838                                 "no room to append aad");
6839
6840                 sym_op->aead.aad.phys_addr =
6841                                 rte_pktmbuf_iova(ut_params->ibuf);
6842                 /* Copy AAD 18 bytes after the AAD pointer, according to the API */
6843                 memcpy(sym_op->aead.aad.data + 18, tdata->aad.data, tdata->aad.len);
6844                 debug_hexdump(stdout, "aad:", sym_op->aead.aad.data,
6845                         tdata->aad.len);
6846
6847                 /* Append IV at the end of the crypto operation*/
6848                 uint8_t *iv_ptr = rte_crypto_op_ctod_offset(ut_params->op,
6849                                 uint8_t *, IV_OFFSET);
6850
6851                 /* Copy IV 1 byte after the IV pointer, according to the API */
6852                 rte_memcpy(iv_ptr + 1, tdata->iv.data, tdata->iv.len);
6853                 debug_hexdump(stdout, "iv:", iv_ptr,
6854                         tdata->iv.len);
6855         } else {
6856                 aad_pad_len = RTE_ALIGN_CEIL(tdata->aad.len, 16);
6857                 sym_op->aead.aad.data = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
6858                                 aad_pad_len);
6859                 TEST_ASSERT_NOT_NULL(sym_op->aead.aad.data,
6860                                 "no room to append aad");
6861
6862                 sym_op->aead.aad.phys_addr =
6863                                 rte_pktmbuf_iova(ut_params->ibuf);
6864                 memcpy(sym_op->aead.aad.data, tdata->aad.data, tdata->aad.len);
6865                 debug_hexdump(stdout, "aad:", sym_op->aead.aad.data,
6866                         tdata->aad.len);
6867
6868                 /* Append IV at the end of the crypto operation*/
6869                 uint8_t *iv_ptr = rte_crypto_op_ctod_offset(ut_params->op,
6870                                 uint8_t *, IV_OFFSET);
6871
6872                 rte_memcpy(iv_ptr, tdata->iv.data, tdata->iv.len);
6873                 debug_hexdump(stdout, "iv:", iv_ptr,
6874                         tdata->iv.len);
6875         }
6876
6877         /* Append plaintext/ciphertext */
6878         if (op == RTE_CRYPTO_AEAD_OP_ENCRYPT) {
6879                 plaintext_pad_len = RTE_ALIGN_CEIL(tdata->plaintext.len, 16);
6880                 plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
6881                                 plaintext_pad_len);
6882                 TEST_ASSERT_NOT_NULL(plaintext, "no room to append plaintext");
6883
6884                 memcpy(plaintext, tdata->plaintext.data, tdata->plaintext.len);
6885                 debug_hexdump(stdout, "plaintext:", plaintext,
6886                                 tdata->plaintext.len);
6887
6888                 if (ut_params->obuf) {
6889                         ciphertext = (uint8_t *)rte_pktmbuf_append(
6890                                         ut_params->obuf,
6891                                         plaintext_pad_len + aad_pad_len);
6892                         TEST_ASSERT_NOT_NULL(ciphertext,
6893                                         "no room to append ciphertext");
6894
6895                         memset(ciphertext + aad_pad_len, 0,
6896                                         tdata->ciphertext.len);
6897                 }
6898         } else {
6899                 plaintext_pad_len = RTE_ALIGN_CEIL(tdata->ciphertext.len, 16);
6900                 ciphertext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
6901                                 plaintext_pad_len);
6902                 TEST_ASSERT_NOT_NULL(ciphertext,
6903                                 "no room to append ciphertext");
6904
6905                 memcpy(ciphertext, tdata->ciphertext.data,
6906                                 tdata->ciphertext.len);
6907                 debug_hexdump(stdout, "ciphertext:", ciphertext,
6908                                 tdata->ciphertext.len);
6909
6910                 if (ut_params->obuf) {
6911                         plaintext = (uint8_t *)rte_pktmbuf_append(
6912                                         ut_params->obuf,
6913                                         plaintext_pad_len + aad_pad_len);
6914                         TEST_ASSERT_NOT_NULL(plaintext,
6915                                         "no room to append plaintext");
6916
6917                         memset(plaintext + aad_pad_len, 0,
6918                                         tdata->plaintext.len);
6919                 }
6920         }
6921
6922         /* Append digest data */
6923         if (op == RTE_CRYPTO_AEAD_OP_ENCRYPT) {
6924                 sym_op->aead.digest.data = (uint8_t *)rte_pktmbuf_append(
6925                                 ut_params->obuf ? ut_params->obuf :
6926                                                 ut_params->ibuf,
6927                                                 tdata->auth_tag.len);
6928                 TEST_ASSERT_NOT_NULL(sym_op->aead.digest.data,
6929                                 "no room to append digest");
6930                 memset(sym_op->aead.digest.data, 0, tdata->auth_tag.len);
6931                 sym_op->aead.digest.phys_addr = rte_pktmbuf_iova_offset(
6932                                 ut_params->obuf ? ut_params->obuf :
6933                                                 ut_params->ibuf,
6934                                                 plaintext_pad_len +
6935                                                 aad_pad_len);
6936         } else {
6937                 sym_op->aead.digest.data = (uint8_t *)rte_pktmbuf_append(
6938                                 ut_params->ibuf, tdata->auth_tag.len);
6939                 TEST_ASSERT_NOT_NULL(sym_op->aead.digest.data,
6940                                 "no room to append digest");
6941                 sym_op->aead.digest.phys_addr = rte_pktmbuf_iova_offset(
6942                                 ut_params->ibuf,
6943                                 plaintext_pad_len + aad_pad_len);
6944
6945                 rte_memcpy(sym_op->aead.digest.data, tdata->auth_tag.data,
6946                         tdata->auth_tag.len);
6947                 debug_hexdump(stdout, "digest:",
6948                         sym_op->aead.digest.data,
6949                         tdata->auth_tag.len);
6950         }
6951
6952         sym_op->aead.data.length = tdata->plaintext.len;
6953         sym_op->aead.data.offset = aad_pad_len;
6954
6955         return 0;
6956 }
6957
6958 static int
6959 test_authenticated_encryption(const struct aead_test_data *tdata)
6960 {
6961         struct crypto_testsuite_params *ts_params = &testsuite_params;
6962         struct crypto_unittest_params *ut_params = &unittest_params;
6963
6964         int retval;
6965         uint8_t *ciphertext, *auth_tag;
6966         uint16_t plaintext_pad_len;
6967         uint32_t i;
6968
6969         /* Create AEAD session */
6970         retval = create_aead_session(ts_params->valid_devs[0],
6971                         tdata->algo,
6972                         RTE_CRYPTO_AEAD_OP_ENCRYPT,
6973                         tdata->key.data, tdata->key.len,
6974                         tdata->aad.len, tdata->auth_tag.len,
6975                         tdata->iv.len);
6976         if (retval < 0)
6977                 return retval;
6978
6979         if (tdata->aad.len > MBUF_SIZE) {
6980                 ut_params->ibuf = rte_pktmbuf_alloc(ts_params->large_mbuf_pool);
6981                 /* Populate full size of add data */
6982                 for (i = 32; i < MAX_AAD_LENGTH; i += 32)
6983                         memcpy(&tdata->aad.data[i], &tdata->aad.data[0], 32);
6984         } else
6985                 ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
6986
6987         /* clear mbuf payload */
6988         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
6989                         rte_pktmbuf_tailroom(ut_params->ibuf));
6990
6991         /* Create AEAD operation */
6992         retval = create_aead_operation(RTE_CRYPTO_AEAD_OP_ENCRYPT, tdata);
6993         if (retval < 0)
6994                 return retval;
6995
6996         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
6997
6998         ut_params->op->sym->m_src = ut_params->ibuf;
6999
7000         /* Process crypto operation */
7001         TEST_ASSERT_NOT_NULL(process_crypto_request(ts_params->valid_devs[0],
7002                         ut_params->op), "failed to process sym crypto op");
7003
7004         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
7005                         "crypto op processing failed");
7006
7007         plaintext_pad_len = RTE_ALIGN_CEIL(tdata->plaintext.len, 16);
7008
7009         if (ut_params->op->sym->m_dst) {
7010                 ciphertext = rte_pktmbuf_mtod(ut_params->op->sym->m_dst,
7011                                 uint8_t *);
7012                 auth_tag = rte_pktmbuf_mtod_offset(ut_params->op->sym->m_dst,
7013                                 uint8_t *, plaintext_pad_len);
7014         } else {
7015                 ciphertext = rte_pktmbuf_mtod_offset(ut_params->op->sym->m_src,
7016                                 uint8_t *,
7017                                 ut_params->op->sym->cipher.data.offset);
7018                 auth_tag = ciphertext + plaintext_pad_len;
7019         }
7020
7021         debug_hexdump(stdout, "ciphertext:", ciphertext, tdata->ciphertext.len);
7022         debug_hexdump(stdout, "auth tag:", auth_tag, tdata->auth_tag.len);
7023
7024         /* Validate obuf */
7025         TEST_ASSERT_BUFFERS_ARE_EQUAL(
7026                         ciphertext,
7027                         tdata->ciphertext.data,
7028                         tdata->ciphertext.len,
7029                         "Ciphertext data not as expected");
7030
7031         TEST_ASSERT_BUFFERS_ARE_EQUAL(
7032                         auth_tag,
7033                         tdata->auth_tag.data,
7034                         tdata->auth_tag.len,
7035                         "Generated auth tag not as expected");
7036
7037         return 0;
7038
7039 }
7040
7041 #ifdef RTE_LIBRTE_SECURITY
7042 /* Basic algorithm run function for async inplace mode.
7043  * Creates a session from input parameters and runs one operation
7044  * on input_vec. Checks the output of the crypto operation against
7045  * output_vec.
7046  */
7047 static int
7048 test_pdcp_proto(int i, int oop,
7049         enum rte_crypto_cipher_operation opc,
7050         enum rte_crypto_auth_operation opa,
7051         uint8_t *input_vec,
7052         unsigned int input_vec_len,
7053         uint8_t *output_vec,
7054         unsigned int output_vec_len)
7055 {
7056         struct crypto_testsuite_params *ts_params = &testsuite_params;
7057         struct crypto_unittest_params *ut_params = &unittest_params;
7058         uint8_t *plaintext;
7059         int ret = TEST_SUCCESS;
7060
7061         /* Generate test mbuf data */
7062         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
7063
7064         /* clear mbuf payload */
7065         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
7066                         rte_pktmbuf_tailroom(ut_params->ibuf));
7067
7068         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
7069                                                   input_vec_len);
7070         memcpy(plaintext, input_vec, input_vec_len);
7071
7072         /* Out of place support */
7073         if (oop) {
7074                 /*
7075                  * For out-op-place we need to alloc another mbuf
7076                  */
7077                 ut_params->obuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
7078                 rte_pktmbuf_append(ut_params->obuf, output_vec_len);
7079         }
7080
7081         /* Set crypto type as IPSEC */
7082         ut_params->type = RTE_SECURITY_ACTION_TYPE_LOOKASIDE_PROTOCOL;
7083
7084         /* Setup Cipher Parameters */
7085         ut_params->cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
7086         ut_params->cipher_xform.cipher.algo = pdcp_test_params[i].cipher_alg;
7087         ut_params->cipher_xform.cipher.op = opc;
7088         ut_params->cipher_xform.cipher.key.data = pdcp_test_crypto_key[i];
7089         ut_params->cipher_xform.cipher.key.length =
7090                                         pdcp_test_params[i].cipher_key_len;
7091         ut_params->cipher_xform.cipher.iv.length = 0;
7092
7093         /* Setup HMAC Parameters if ICV header is required */
7094         if (pdcp_test_params[i].auth_alg != 0) {
7095                 ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
7096                 ut_params->auth_xform.next = NULL;
7097                 ut_params->auth_xform.auth.algo = pdcp_test_params[i].auth_alg;
7098                 ut_params->auth_xform.auth.op = opa;
7099                 ut_params->auth_xform.auth.key.data = pdcp_test_auth_key[i];
7100                 ut_params->auth_xform.auth.key.length =
7101                                         pdcp_test_params[i].auth_key_len;
7102
7103                 ut_params->cipher_xform.next = &ut_params->auth_xform;
7104         } else {
7105                 ut_params->cipher_xform.next = NULL;
7106         }
7107
7108         struct rte_security_session_conf sess_conf = {
7109                 .action_type = RTE_SECURITY_ACTION_TYPE_LOOKASIDE_PROTOCOL,
7110                 .protocol = RTE_SECURITY_PROTOCOL_PDCP,
7111                 {.pdcp = {
7112                         .bearer = pdcp_test_bearer[i],
7113                         .domain = pdcp_test_params[i].domain,
7114                         .pkt_dir = pdcp_test_packet_direction[i],
7115                         .sn_size = pdcp_test_data_sn_size[i],
7116                         .hfn = pdcp_test_hfn[i],
7117                         .hfn_threshold = pdcp_test_hfn_threshold[i],
7118                 } },
7119                 .crypto_xform = &ut_params->cipher_xform
7120         };
7121
7122         struct rte_security_ctx *ctx = (struct rte_security_ctx *)
7123                                 rte_cryptodev_get_sec_ctx(
7124                                 ts_params->valid_devs[0]);
7125
7126         /* Create security session */
7127         ut_params->sec_session = rte_security_session_create(ctx,
7128                                 &sess_conf, ts_params->session_mpool);
7129
7130         if (!ut_params->sec_session) {
7131                 printf("TestCase %s()-%d line %d failed %s: ",
7132                         __func__, i, __LINE__, "Failed to allocate session");
7133                 ret = TEST_FAILED;
7134                 goto on_err;
7135         }
7136
7137         /* Generate crypto op data structure */
7138         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
7139                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
7140         if (!ut_params->op) {
7141                 printf("TestCase %s()-%d line %d failed %s: ",
7142                         __func__, i, __LINE__,
7143                         "Failed to allocate symmetric crypto operation struct");
7144                 ret = TEST_FAILED;
7145                 goto on_err;
7146         }
7147
7148         rte_security_attach_session(ut_params->op, ut_params->sec_session);
7149
7150         /* set crypto operation source mbuf */
7151         ut_params->op->sym->m_src = ut_params->ibuf;
7152         if (oop)
7153                 ut_params->op->sym->m_dst = ut_params->obuf;
7154
7155         /* Process crypto operation */
7156         if (process_crypto_request(ts_params->valid_devs[0], ut_params->op)
7157                 == NULL) {
7158                 printf("TestCase %s()-%d line %d failed %s: ",
7159                         __func__, i, __LINE__,
7160                         "failed to process sym crypto op");
7161                 ret = TEST_FAILED;
7162                 goto on_err;
7163         }
7164
7165         if (ut_params->op->status != RTE_CRYPTO_OP_STATUS_SUCCESS) {
7166                 printf("TestCase %s()-%d line %d failed %s: ",
7167                         __func__, i, __LINE__, "crypto op processing failed");
7168                 ret = TEST_FAILED;
7169                 goto on_err;
7170         }
7171
7172         /* Validate obuf */
7173         uint8_t *ciphertext = rte_pktmbuf_mtod(ut_params->op->sym->m_src,
7174                         uint8_t *);
7175         if (oop) {
7176                 ciphertext = rte_pktmbuf_mtod(ut_params->op->sym->m_dst,
7177                                 uint8_t *);
7178         }
7179
7180         if (memcmp(ciphertext, output_vec, output_vec_len)) {
7181                 printf("\n=======PDCP TestCase #%d failed: Data Mismatch ", i);
7182                 rte_hexdump(stdout, "encrypted", ciphertext, output_vec_len);
7183                 rte_hexdump(stdout, "reference", output_vec, output_vec_len);
7184                 ret = TEST_FAILED;
7185                 goto on_err;
7186         }
7187
7188 on_err:
7189         rte_crypto_op_free(ut_params->op);
7190         ut_params->op = NULL;
7191
7192         if (ut_params->sec_session)
7193                 rte_security_session_destroy(ctx, ut_params->sec_session);
7194         ut_params->sec_session = NULL;
7195
7196         rte_pktmbuf_free(ut_params->ibuf);
7197         ut_params->ibuf = NULL;
7198         if (oop) {
7199                 rte_pktmbuf_free(ut_params->obuf);
7200                 ut_params->obuf = NULL;
7201         }
7202
7203         return ret;
7204 }
7205
7206 int
7207 test_pdcp_proto_cplane_encap(int i)
7208 {
7209         return test_pdcp_proto(i, 0,
7210                 RTE_CRYPTO_CIPHER_OP_ENCRYPT,
7211                 RTE_CRYPTO_AUTH_OP_GENERATE,
7212                 pdcp_test_data_in[i],
7213                 pdcp_test_data_in_len[i],
7214                 pdcp_test_data_out[i],
7215                 pdcp_test_data_in_len[i]+4);
7216 }
7217
7218 int
7219 test_pdcp_proto_uplane_encap(int i)
7220 {
7221         return test_pdcp_proto(i, 0,
7222                 RTE_CRYPTO_CIPHER_OP_ENCRYPT,
7223                 RTE_CRYPTO_AUTH_OP_GENERATE,
7224                 pdcp_test_data_in[i],
7225                 pdcp_test_data_in_len[i],
7226                 pdcp_test_data_out[i],
7227                 pdcp_test_data_in_len[i]);
7228
7229 }
7230
7231 int
7232 test_pdcp_proto_cplane_decap(int i)
7233 {
7234         return test_pdcp_proto(i, 0,
7235                 RTE_CRYPTO_CIPHER_OP_DECRYPT,
7236                 RTE_CRYPTO_AUTH_OP_VERIFY,
7237                 pdcp_test_data_out[i],
7238                 pdcp_test_data_in_len[i] + 4,
7239                 pdcp_test_data_in[i],
7240                 pdcp_test_data_in_len[i]);
7241 }
7242
7243 #endif
7244
7245 static int
7246 test_AES_GCM_authenticated_encryption_test_case_1(void)
7247 {
7248         return test_authenticated_encryption(&gcm_test_case_1);
7249 }
7250
7251 static int
7252 test_AES_GCM_authenticated_encryption_test_case_2(void)
7253 {
7254         return test_authenticated_encryption(&gcm_test_case_2);
7255 }
7256
7257 static int
7258 test_AES_GCM_authenticated_encryption_test_case_3(void)
7259 {
7260         return test_authenticated_encryption(&gcm_test_case_3);
7261 }
7262
7263 static int
7264 test_AES_GCM_authenticated_encryption_test_case_4(void)
7265 {
7266         return test_authenticated_encryption(&gcm_test_case_4);
7267 }
7268
7269 static int
7270 test_AES_GCM_authenticated_encryption_test_case_5(void)
7271 {
7272         return test_authenticated_encryption(&gcm_test_case_5);
7273 }
7274
7275 static int
7276 test_AES_GCM_authenticated_encryption_test_case_6(void)
7277 {
7278         return test_authenticated_encryption(&gcm_test_case_6);
7279 }
7280
7281 static int
7282 test_AES_GCM_authenticated_encryption_test_case_7(void)
7283 {
7284         return test_authenticated_encryption(&gcm_test_case_7);
7285 }
7286
7287 static int
7288 test_AES_GCM_auth_encryption_test_case_192_1(void)
7289 {
7290         return test_authenticated_encryption(&gcm_test_case_192_1);
7291 }
7292
7293 static int
7294 test_AES_GCM_auth_encryption_test_case_192_2(void)
7295 {
7296         return test_authenticated_encryption(&gcm_test_case_192_2);
7297 }
7298
7299 static int
7300 test_AES_GCM_auth_encryption_test_case_192_3(void)
7301 {
7302         return test_authenticated_encryption(&gcm_test_case_192_3);
7303 }
7304
7305 static int
7306 test_AES_GCM_auth_encryption_test_case_192_4(void)
7307 {
7308         return test_authenticated_encryption(&gcm_test_case_192_4);
7309 }
7310
7311 static int
7312 test_AES_GCM_auth_encryption_test_case_192_5(void)
7313 {
7314         return test_authenticated_encryption(&gcm_test_case_192_5);
7315 }
7316
7317 static int
7318 test_AES_GCM_auth_encryption_test_case_192_6(void)
7319 {
7320         return test_authenticated_encryption(&gcm_test_case_192_6);
7321 }
7322
7323 static int
7324 test_AES_GCM_auth_encryption_test_case_192_7(void)
7325 {
7326         return test_authenticated_encryption(&gcm_test_case_192_7);
7327 }
7328
7329 static int
7330 test_AES_GCM_auth_encryption_test_case_256_1(void)
7331 {
7332         return test_authenticated_encryption(&gcm_test_case_256_1);
7333 }
7334
7335 static int
7336 test_AES_GCM_auth_encryption_test_case_256_2(void)
7337 {
7338         return test_authenticated_encryption(&gcm_test_case_256_2);
7339 }
7340
7341 static int
7342 test_AES_GCM_auth_encryption_test_case_256_3(void)
7343 {
7344         return test_authenticated_encryption(&gcm_test_case_256_3);
7345 }
7346
7347 static int
7348 test_AES_GCM_auth_encryption_test_case_256_4(void)
7349 {
7350         return test_authenticated_encryption(&gcm_test_case_256_4);
7351 }
7352
7353 static int
7354 test_AES_GCM_auth_encryption_test_case_256_5(void)
7355 {
7356         return test_authenticated_encryption(&gcm_test_case_256_5);
7357 }
7358
7359 static int
7360 test_AES_GCM_auth_encryption_test_case_256_6(void)
7361 {
7362         return test_authenticated_encryption(&gcm_test_case_256_6);
7363 }
7364
7365 static int
7366 test_AES_GCM_auth_encryption_test_case_256_7(void)
7367 {
7368         return test_authenticated_encryption(&gcm_test_case_256_7);
7369 }
7370
7371 static int
7372 test_AES_GCM_auth_encryption_test_case_aad_1(void)
7373 {
7374         return test_authenticated_encryption(&gcm_test_case_aad_1);
7375 }
7376
7377 static int
7378 test_AES_GCM_auth_encryption_test_case_aad_2(void)
7379 {
7380         return test_authenticated_encryption(&gcm_test_case_aad_2);
7381 }
7382
7383 static int
7384 test_authenticated_decryption(const struct aead_test_data *tdata)
7385 {
7386         struct crypto_testsuite_params *ts_params = &testsuite_params;
7387         struct crypto_unittest_params *ut_params = &unittest_params;
7388
7389         int retval;
7390         uint8_t *plaintext;
7391         uint32_t i;
7392
7393         /* Create AEAD session */
7394         retval = create_aead_session(ts_params->valid_devs[0],
7395                         tdata->algo,
7396                         RTE_CRYPTO_AEAD_OP_DECRYPT,
7397                         tdata->key.data, tdata->key.len,
7398                         tdata->aad.len, tdata->auth_tag.len,
7399                         tdata->iv.len);
7400         if (retval < 0)
7401                 return retval;
7402
7403         /* alloc mbuf and set payload */
7404         if (tdata->aad.len > MBUF_SIZE) {
7405                 ut_params->ibuf = rte_pktmbuf_alloc(ts_params->large_mbuf_pool);
7406                 /* Populate full size of add data */
7407                 for (i = 32; i < MAX_AAD_LENGTH; i += 32)
7408                         memcpy(&tdata->aad.data[i], &tdata->aad.data[0], 32);
7409         } else
7410                 ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
7411
7412         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
7413                         rte_pktmbuf_tailroom(ut_params->ibuf));
7414
7415         /* Create AEAD operation */
7416         retval = create_aead_operation(RTE_CRYPTO_AEAD_OP_DECRYPT, tdata);
7417         if (retval < 0)
7418                 return retval;
7419
7420         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
7421
7422         ut_params->op->sym->m_src = ut_params->ibuf;
7423
7424         /* Process crypto operation */
7425         TEST_ASSERT_NOT_NULL(process_crypto_request(ts_params->valid_devs[0],
7426                         ut_params->op), "failed to process sym crypto op");
7427
7428         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
7429                         "crypto op processing failed");
7430
7431         if (ut_params->op->sym->m_dst)
7432                 plaintext = rte_pktmbuf_mtod(ut_params->op->sym->m_dst,
7433                                 uint8_t *);
7434         else
7435                 plaintext = rte_pktmbuf_mtod_offset(ut_params->op->sym->m_src,
7436                                 uint8_t *,
7437                                 ut_params->op->sym->cipher.data.offset);
7438
7439         debug_hexdump(stdout, "plaintext:", plaintext, tdata->ciphertext.len);
7440
7441         /* Validate obuf */
7442         TEST_ASSERT_BUFFERS_ARE_EQUAL(
7443                         plaintext,
7444                         tdata->plaintext.data,
7445                         tdata->plaintext.len,
7446                         "Plaintext data not as expected");
7447
7448         TEST_ASSERT_EQUAL(ut_params->op->status,
7449                         RTE_CRYPTO_OP_STATUS_SUCCESS,
7450                         "Authentication failed");
7451         return 0;
7452 }
7453
7454 static int
7455 test_AES_GCM_authenticated_decryption_test_case_1(void)
7456 {
7457         return test_authenticated_decryption(&gcm_test_case_1);
7458 }
7459
7460 static int
7461 test_AES_GCM_authenticated_decryption_test_case_2(void)
7462 {
7463         return test_authenticated_decryption(&gcm_test_case_2);
7464 }
7465
7466 static int
7467 test_AES_GCM_authenticated_decryption_test_case_3(void)
7468 {
7469         return test_authenticated_decryption(&gcm_test_case_3);
7470 }
7471
7472 static int
7473 test_AES_GCM_authenticated_decryption_test_case_4(void)
7474 {
7475         return test_authenticated_decryption(&gcm_test_case_4);
7476 }
7477
7478 static int
7479 test_AES_GCM_authenticated_decryption_test_case_5(void)
7480 {
7481         return test_authenticated_decryption(&gcm_test_case_5);
7482 }
7483
7484 static int
7485 test_AES_GCM_authenticated_decryption_test_case_6(void)
7486 {
7487         return test_authenticated_decryption(&gcm_test_case_6);
7488 }
7489
7490 static int
7491 test_AES_GCM_authenticated_decryption_test_case_7(void)
7492 {
7493         return test_authenticated_decryption(&gcm_test_case_7);
7494 }
7495
7496 static int
7497 test_AES_GCM_auth_decryption_test_case_192_1(void)
7498 {
7499         return test_authenticated_decryption(&gcm_test_case_192_1);
7500 }
7501
7502 static int
7503 test_AES_GCM_auth_decryption_test_case_192_2(void)
7504 {
7505         return test_authenticated_decryption(&gcm_test_case_192_2);
7506 }
7507
7508 static int
7509 test_AES_GCM_auth_decryption_test_case_192_3(void)
7510 {
7511         return test_authenticated_decryption(&gcm_test_case_192_3);
7512 }
7513
7514 static int
7515 test_AES_GCM_auth_decryption_test_case_192_4(void)
7516 {
7517         return test_authenticated_decryption(&gcm_test_case_192_4);
7518 }
7519
7520 static int
7521 test_AES_GCM_auth_decryption_test_case_192_5(void)
7522 {
7523         return test_authenticated_decryption(&gcm_test_case_192_5);
7524 }
7525
7526 static int
7527 test_AES_GCM_auth_decryption_test_case_192_6(void)
7528 {
7529         return test_authenticated_decryption(&gcm_test_case_192_6);
7530 }
7531
7532 static int
7533 test_AES_GCM_auth_decryption_test_case_192_7(void)
7534 {
7535         return test_authenticated_decryption(&gcm_test_case_192_7);
7536 }
7537
7538 static int
7539 test_AES_GCM_auth_decryption_test_case_256_1(void)
7540 {
7541         return test_authenticated_decryption(&gcm_test_case_256_1);
7542 }
7543
7544 static int
7545 test_AES_GCM_auth_decryption_test_case_256_2(void)
7546 {
7547         return test_authenticated_decryption(&gcm_test_case_256_2);
7548 }
7549
7550 static int
7551 test_AES_GCM_auth_decryption_test_case_256_3(void)
7552 {
7553         return test_authenticated_decryption(&gcm_test_case_256_3);
7554 }
7555
7556 static int
7557 test_AES_GCM_auth_decryption_test_case_256_4(void)
7558 {
7559         return test_authenticated_decryption(&gcm_test_case_256_4);
7560 }
7561
7562 static int
7563 test_AES_GCM_auth_decryption_test_case_256_5(void)
7564 {
7565         return test_authenticated_decryption(&gcm_test_case_256_5);
7566 }
7567
7568 static int
7569 test_AES_GCM_auth_decryption_test_case_256_6(void)
7570 {
7571         return test_authenticated_decryption(&gcm_test_case_256_6);
7572 }
7573
7574 static int
7575 test_AES_GCM_auth_decryption_test_case_256_7(void)
7576 {
7577         return test_authenticated_decryption(&gcm_test_case_256_7);
7578 }
7579
7580 static int
7581 test_AES_GCM_auth_decryption_test_case_aad_1(void)
7582 {
7583         return test_authenticated_decryption(&gcm_test_case_aad_1);
7584 }
7585
7586 static int
7587 test_AES_GCM_auth_decryption_test_case_aad_2(void)
7588 {
7589         return test_authenticated_decryption(&gcm_test_case_aad_2);
7590 }
7591
7592 static int
7593 test_authenticated_encryption_oop(const struct aead_test_data *tdata)
7594 {
7595         struct crypto_testsuite_params *ts_params = &testsuite_params;
7596         struct crypto_unittest_params *ut_params = &unittest_params;
7597
7598         int retval;
7599         uint8_t *ciphertext, *auth_tag;
7600         uint16_t plaintext_pad_len;
7601
7602         /* Create AEAD session */
7603         retval = create_aead_session(ts_params->valid_devs[0],
7604                         tdata->algo,
7605                         RTE_CRYPTO_AEAD_OP_ENCRYPT,
7606                         tdata->key.data, tdata->key.len,
7607                         tdata->aad.len, tdata->auth_tag.len,
7608                         tdata->iv.len);
7609         if (retval < 0)
7610                 return retval;
7611
7612         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
7613         ut_params->obuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
7614
7615         /* clear mbuf payload */
7616         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
7617                         rte_pktmbuf_tailroom(ut_params->ibuf));
7618         memset(rte_pktmbuf_mtod(ut_params->obuf, uint8_t *), 0,
7619                         rte_pktmbuf_tailroom(ut_params->obuf));
7620
7621         /* Create AEAD operation */
7622         retval = create_aead_operation(RTE_CRYPTO_AEAD_OP_ENCRYPT, tdata);
7623         if (retval < 0)
7624                 return retval;
7625
7626         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
7627
7628         ut_params->op->sym->m_src = ut_params->ibuf;
7629         ut_params->op->sym->m_dst = ut_params->obuf;
7630
7631         /* Process crypto operation */
7632         TEST_ASSERT_NOT_NULL(process_crypto_request(ts_params->valid_devs[0],
7633                         ut_params->op), "failed to process sym crypto op");
7634
7635         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
7636                         "crypto op processing failed");
7637
7638         plaintext_pad_len = RTE_ALIGN_CEIL(tdata->plaintext.len, 16);
7639
7640         ciphertext = rte_pktmbuf_mtod_offset(ut_params->obuf, uint8_t *,
7641                         ut_params->op->sym->cipher.data.offset);
7642         auth_tag = ciphertext + plaintext_pad_len;
7643
7644         debug_hexdump(stdout, "ciphertext:", ciphertext, tdata->ciphertext.len);
7645         debug_hexdump(stdout, "auth tag:", auth_tag, tdata->auth_tag.len);
7646
7647         /* Validate obuf */
7648         TEST_ASSERT_BUFFERS_ARE_EQUAL(
7649                         ciphertext,
7650                         tdata->ciphertext.data,
7651                         tdata->ciphertext.len,
7652                         "Ciphertext data not as expected");
7653
7654         TEST_ASSERT_BUFFERS_ARE_EQUAL(
7655                         auth_tag,
7656                         tdata->auth_tag.data,
7657                         tdata->auth_tag.len,
7658                         "Generated auth tag not as expected");
7659
7660         return 0;
7661
7662 }
7663
7664 static int
7665 test_AES_GCM_authenticated_encryption_oop_test_case_1(void)
7666 {
7667         return test_authenticated_encryption_oop(&gcm_test_case_5);
7668 }
7669
7670 static int
7671 test_authenticated_decryption_oop(const struct aead_test_data *tdata)
7672 {
7673         struct crypto_testsuite_params *ts_params = &testsuite_params;
7674         struct crypto_unittest_params *ut_params = &unittest_params;
7675
7676         int retval;
7677         uint8_t *plaintext;
7678
7679         /* Create AEAD session */
7680         retval = create_aead_session(ts_params->valid_devs[0],
7681                         tdata->algo,
7682                         RTE_CRYPTO_AEAD_OP_DECRYPT,
7683                         tdata->key.data, tdata->key.len,
7684                         tdata->aad.len, tdata->auth_tag.len,
7685                         tdata->iv.len);
7686         if (retval < 0)
7687                 return retval;
7688
7689         /* alloc mbuf and set payload */
7690         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
7691         ut_params->obuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
7692
7693         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
7694                         rte_pktmbuf_tailroom(ut_params->ibuf));
7695         memset(rte_pktmbuf_mtod(ut_params->obuf, uint8_t *), 0,
7696                         rte_pktmbuf_tailroom(ut_params->obuf));
7697
7698         /* Create AEAD operation */
7699         retval = create_aead_operation(RTE_CRYPTO_AEAD_OP_DECRYPT, tdata);
7700         if (retval < 0)
7701                 return retval;
7702
7703         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
7704
7705         ut_params->op->sym->m_src = ut_params->ibuf;
7706         ut_params->op->sym->m_dst = ut_params->obuf;
7707
7708         /* Process crypto operation */
7709         TEST_ASSERT_NOT_NULL(process_crypto_request(ts_params->valid_devs[0],
7710                         ut_params->op), "failed to process sym crypto op");
7711
7712         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
7713                         "crypto op processing failed");
7714
7715         plaintext = rte_pktmbuf_mtod_offset(ut_params->obuf, uint8_t *,
7716                         ut_params->op->sym->cipher.data.offset);
7717
7718         debug_hexdump(stdout, "plaintext:", plaintext, tdata->ciphertext.len);
7719
7720         /* Validate obuf */
7721         TEST_ASSERT_BUFFERS_ARE_EQUAL(
7722                         plaintext,
7723                         tdata->plaintext.data,
7724                         tdata->plaintext.len,
7725                         "Plaintext data not as expected");
7726
7727         TEST_ASSERT_EQUAL(ut_params->op->status,
7728                         RTE_CRYPTO_OP_STATUS_SUCCESS,
7729                         "Authentication failed");
7730         return 0;
7731 }
7732
7733 static int
7734 test_AES_GCM_authenticated_decryption_oop_test_case_1(void)
7735 {
7736         return test_authenticated_decryption_oop(&gcm_test_case_5);
7737 }
7738
7739 static int
7740 test_authenticated_encryption_sessionless(
7741                 const struct aead_test_data *tdata)
7742 {
7743         struct crypto_testsuite_params *ts_params = &testsuite_params;
7744         struct crypto_unittest_params *ut_params = &unittest_params;
7745
7746         int retval;
7747         uint8_t *ciphertext, *auth_tag;
7748         uint16_t plaintext_pad_len;
7749         uint8_t key[tdata->key.len + 1];
7750
7751         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
7752
7753         /* clear mbuf payload */
7754         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
7755                         rte_pktmbuf_tailroom(ut_params->ibuf));
7756
7757         /* Create AEAD operation */
7758         retval = create_aead_operation(RTE_CRYPTO_AEAD_OP_ENCRYPT, tdata);
7759         if (retval < 0)
7760                 return retval;
7761
7762         /* Create GCM xform */
7763         memcpy(key, tdata->key.data, tdata->key.len);
7764         retval = create_aead_xform(ut_params->op,
7765                         tdata->algo,
7766                         RTE_CRYPTO_AEAD_OP_ENCRYPT,
7767                         key, tdata->key.len,
7768                         tdata->aad.len, tdata->auth_tag.len,
7769                         tdata->iv.len);
7770         if (retval < 0)
7771                 return retval;
7772
7773         ut_params->op->sym->m_src = ut_params->ibuf;
7774
7775         TEST_ASSERT_EQUAL(ut_params->op->sess_type,
7776                         RTE_CRYPTO_OP_SESSIONLESS,
7777                         "crypto op session type not sessionless");
7778
7779         /* Process crypto operation */
7780         TEST_ASSERT_NOT_NULL(process_crypto_request(ts_params->valid_devs[0],
7781                         ut_params->op), "failed to process sym crypto op");
7782
7783         TEST_ASSERT_NOT_NULL(ut_params->op, "failed crypto process");
7784
7785         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
7786                         "crypto op status not success");
7787
7788         plaintext_pad_len = RTE_ALIGN_CEIL(tdata->plaintext.len, 16);
7789
7790         ciphertext = rte_pktmbuf_mtod_offset(ut_params->ibuf, uint8_t *,
7791                         ut_params->op->sym->cipher.data.offset);
7792         auth_tag = ciphertext + plaintext_pad_len;
7793
7794         debug_hexdump(stdout, "ciphertext:", ciphertext, tdata->ciphertext.len);
7795         debug_hexdump(stdout, "auth tag:", auth_tag, tdata->auth_tag.len);
7796
7797         /* Validate obuf */
7798         TEST_ASSERT_BUFFERS_ARE_EQUAL(
7799                         ciphertext,
7800                         tdata->ciphertext.data,
7801                         tdata->ciphertext.len,
7802                         "Ciphertext data not as expected");
7803
7804         TEST_ASSERT_BUFFERS_ARE_EQUAL(
7805                         auth_tag,
7806                         tdata->auth_tag.data,
7807                         tdata->auth_tag.len,
7808                         "Generated auth tag not as expected");
7809
7810         return 0;
7811
7812 }
7813
7814 static int
7815 test_AES_GCM_authenticated_encryption_sessionless_test_case_1(void)
7816 {
7817         return test_authenticated_encryption_sessionless(
7818                         &gcm_test_case_5);
7819 }
7820
7821 static int
7822 test_authenticated_decryption_sessionless(
7823                 const struct aead_test_data *tdata)
7824 {
7825         struct crypto_testsuite_params *ts_params = &testsuite_params;
7826         struct crypto_unittest_params *ut_params = &unittest_params;
7827
7828         int retval;
7829         uint8_t *plaintext;
7830         uint8_t key[tdata->key.len + 1];
7831
7832         /* alloc mbuf and set payload */
7833         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
7834
7835         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
7836                         rte_pktmbuf_tailroom(ut_params->ibuf));
7837
7838         /* Create AEAD operation */
7839         retval = create_aead_operation(RTE_CRYPTO_AEAD_OP_DECRYPT, tdata);
7840         if (retval < 0)
7841                 return retval;
7842
7843         /* Create AEAD xform */
7844         memcpy(key, tdata->key.data, tdata->key.len);
7845         retval = create_aead_xform(ut_params->op,
7846                         tdata->algo,
7847                         RTE_CRYPTO_AEAD_OP_DECRYPT,
7848                         key, tdata->key.len,
7849                         tdata->aad.len, tdata->auth_tag.len,
7850                         tdata->iv.len);
7851         if (retval < 0)
7852                 return retval;
7853
7854         ut_params->op->sym->m_src = ut_params->ibuf;
7855
7856         TEST_ASSERT_EQUAL(ut_params->op->sess_type,
7857                         RTE_CRYPTO_OP_SESSIONLESS,
7858                         "crypto op session type not sessionless");
7859
7860         /* Process crypto operation */
7861         TEST_ASSERT_NOT_NULL(process_crypto_request(ts_params->valid_devs[0],
7862                         ut_params->op), "failed to process sym crypto op");
7863
7864         TEST_ASSERT_NOT_NULL(ut_params->op, "failed crypto process");
7865
7866         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
7867                         "crypto op status not success");
7868
7869         plaintext = rte_pktmbuf_mtod_offset(ut_params->ibuf, uint8_t *,
7870                         ut_params->op->sym->cipher.data.offset);
7871
7872         debug_hexdump(stdout, "plaintext:", plaintext, tdata->ciphertext.len);
7873
7874         /* Validate obuf */
7875         TEST_ASSERT_BUFFERS_ARE_EQUAL(
7876                         plaintext,
7877                         tdata->plaintext.data,
7878                         tdata->plaintext.len,
7879                         "Plaintext data not as expected");
7880
7881         TEST_ASSERT_EQUAL(ut_params->op->status,
7882                         RTE_CRYPTO_OP_STATUS_SUCCESS,
7883                         "Authentication failed");
7884         return 0;
7885 }
7886
7887 static int
7888 test_AES_GCM_authenticated_decryption_sessionless_test_case_1(void)
7889 {
7890         return test_authenticated_decryption_sessionless(
7891                         &gcm_test_case_5);
7892 }
7893
7894 static int
7895 test_AES_CCM_authenticated_encryption_test_case_128_1(void)
7896 {
7897         return test_authenticated_encryption(&ccm_test_case_128_1);
7898 }
7899
7900 static int
7901 test_AES_CCM_authenticated_encryption_test_case_128_2(void)
7902 {
7903         return test_authenticated_encryption(&ccm_test_case_128_2);
7904 }
7905
7906 static int
7907 test_AES_CCM_authenticated_encryption_test_case_128_3(void)
7908 {
7909         return test_authenticated_encryption(&ccm_test_case_128_3);
7910 }
7911
7912 static int
7913 test_AES_CCM_authenticated_decryption_test_case_128_1(void)
7914 {
7915         return test_authenticated_decryption(&ccm_test_case_128_1);
7916 }
7917
7918 static int
7919 test_AES_CCM_authenticated_decryption_test_case_128_2(void)
7920 {
7921         return test_authenticated_decryption(&ccm_test_case_128_2);
7922 }
7923
7924 static int
7925 test_AES_CCM_authenticated_decryption_test_case_128_3(void)
7926 {
7927         return test_authenticated_decryption(&ccm_test_case_128_3);
7928 }
7929
7930 static int
7931 test_AES_CCM_authenticated_encryption_test_case_192_1(void)
7932 {
7933         return test_authenticated_encryption(&ccm_test_case_192_1);
7934 }
7935
7936 static int
7937 test_AES_CCM_authenticated_encryption_test_case_192_2(void)
7938 {
7939         return test_authenticated_encryption(&ccm_test_case_192_2);
7940 }
7941
7942 static int
7943 test_AES_CCM_authenticated_encryption_test_case_192_3(void)
7944 {
7945         return test_authenticated_encryption(&ccm_test_case_192_3);
7946 }
7947
7948 static int
7949 test_AES_CCM_authenticated_decryption_test_case_192_1(void)
7950 {
7951         return test_authenticated_decryption(&ccm_test_case_192_1);
7952 }
7953
7954 static int
7955 test_AES_CCM_authenticated_decryption_test_case_192_2(void)
7956 {
7957         return test_authenticated_decryption(&ccm_test_case_192_2);
7958 }
7959
7960 static int
7961 test_AES_CCM_authenticated_decryption_test_case_192_3(void)
7962 {
7963         return test_authenticated_decryption(&ccm_test_case_192_3);
7964 }
7965
7966 static int
7967 test_AES_CCM_authenticated_encryption_test_case_256_1(void)
7968 {
7969         return test_authenticated_encryption(&ccm_test_case_256_1);
7970 }
7971
7972 static int
7973 test_AES_CCM_authenticated_encryption_test_case_256_2(void)
7974 {
7975         return test_authenticated_encryption(&ccm_test_case_256_2);
7976 }
7977
7978 static int
7979 test_AES_CCM_authenticated_encryption_test_case_256_3(void)
7980 {
7981         return test_authenticated_encryption(&ccm_test_case_256_3);
7982 }
7983
7984 static int
7985 test_AES_CCM_authenticated_decryption_test_case_256_1(void)
7986 {
7987         return test_authenticated_decryption(&ccm_test_case_256_1);
7988 }
7989
7990 static int
7991 test_AES_CCM_authenticated_decryption_test_case_256_2(void)
7992 {
7993         return test_authenticated_decryption(&ccm_test_case_256_2);
7994 }
7995
7996 static int
7997 test_AES_CCM_authenticated_decryption_test_case_256_3(void)
7998 {
7999         return test_authenticated_decryption(&ccm_test_case_256_3);
8000 }
8001
8002 static int
8003 test_stats(void)
8004 {
8005         struct crypto_testsuite_params *ts_params = &testsuite_params;
8006         struct rte_cryptodev_stats stats;
8007         struct rte_cryptodev *dev;
8008         cryptodev_stats_get_t temp_pfn;
8009
8010         rte_cryptodev_stats_reset(ts_params->valid_devs[0]);
8011         TEST_ASSERT((rte_cryptodev_stats_get(ts_params->valid_devs[0] + 600,
8012                         &stats) == -ENODEV),
8013                 "rte_cryptodev_stats_get invalid dev failed");
8014         TEST_ASSERT((rte_cryptodev_stats_get(ts_params->valid_devs[0], 0) != 0),
8015                 "rte_cryptodev_stats_get invalid Param failed");
8016         dev = &rte_cryptodevs[ts_params->valid_devs[0]];
8017         temp_pfn = dev->dev_ops->stats_get;
8018         dev->dev_ops->stats_get = (cryptodev_stats_get_t)0;
8019         TEST_ASSERT((rte_cryptodev_stats_get(ts_params->valid_devs[0], &stats)
8020                         == -ENOTSUP),
8021                 "rte_cryptodev_stats_get invalid Param failed");
8022         dev->dev_ops->stats_get = temp_pfn;
8023
8024         /* Test expected values */
8025         ut_setup();
8026         test_AES_CBC_HMAC_SHA1_encrypt_digest();
8027         ut_teardown();
8028         TEST_ASSERT_SUCCESS(rte_cryptodev_stats_get(ts_params->valid_devs[0],
8029                         &stats),
8030                 "rte_cryptodev_stats_get failed");
8031         TEST_ASSERT((stats.enqueued_count == 1),
8032                 "rte_cryptodev_stats_get returned unexpected enqueued stat");
8033         TEST_ASSERT((stats.dequeued_count == 1),
8034                 "rte_cryptodev_stats_get returned unexpected enqueued stat");
8035         TEST_ASSERT((stats.enqueue_err_count == 0),
8036                 "rte_cryptodev_stats_get returned unexpected enqueued stat");
8037         TEST_ASSERT((stats.dequeue_err_count == 0),
8038                 "rte_cryptodev_stats_get returned unexpected enqueued stat");
8039
8040         /* invalid device but should ignore and not reset device stats*/
8041         rte_cryptodev_stats_reset(ts_params->valid_devs[0] + 300);
8042         TEST_ASSERT_SUCCESS(rte_cryptodev_stats_get(ts_params->valid_devs[0],
8043                         &stats),
8044                 "rte_cryptodev_stats_get failed");
8045         TEST_ASSERT((stats.enqueued_count == 1),
8046                 "rte_cryptodev_stats_get returned unexpected enqueued stat");
8047
8048         /* check that a valid reset clears stats */
8049         rte_cryptodev_stats_reset(ts_params->valid_devs[0]);
8050         TEST_ASSERT_SUCCESS(rte_cryptodev_stats_get(ts_params->valid_devs[0],
8051                         &stats),
8052                                           "rte_cryptodev_stats_get failed");
8053         TEST_ASSERT((stats.enqueued_count == 0),
8054                 "rte_cryptodev_stats_get returned unexpected enqueued stat");
8055         TEST_ASSERT((stats.dequeued_count == 0),
8056                 "rte_cryptodev_stats_get returned unexpected enqueued stat");
8057
8058         return TEST_SUCCESS;
8059 }
8060
8061 static int MD5_HMAC_create_session(struct crypto_testsuite_params *ts_params,
8062                                    struct crypto_unittest_params *ut_params,
8063                                    enum rte_crypto_auth_operation op,
8064                                    const struct HMAC_MD5_vector *test_case)
8065 {
8066         uint8_t key[64];
8067
8068         memcpy(key, test_case->key.data, test_case->key.len);
8069
8070         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
8071         ut_params->auth_xform.next = NULL;
8072         ut_params->auth_xform.auth.op = op;
8073
8074         ut_params->auth_xform.auth.algo = RTE_CRYPTO_AUTH_MD5_HMAC;
8075
8076         ut_params->auth_xform.auth.digest_length = MD5_DIGEST_LEN;
8077         ut_params->auth_xform.auth.key.length = test_case->key.len;
8078         ut_params->auth_xform.auth.key.data = key;
8079
8080         ut_params->sess = rte_cryptodev_sym_session_create(
8081                         ts_params->session_mpool);
8082
8083         rte_cryptodev_sym_session_init(ts_params->valid_devs[0],
8084                         ut_params->sess, &ut_params->auth_xform,
8085                         ts_params->session_priv_mpool);
8086
8087         if (ut_params->sess == NULL)
8088                 return TEST_FAILED;
8089
8090         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
8091
8092         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
8093                         rte_pktmbuf_tailroom(ut_params->ibuf));
8094
8095         return 0;
8096 }
8097
8098 static int MD5_HMAC_create_op(struct crypto_unittest_params *ut_params,
8099                               const struct HMAC_MD5_vector *test_case,
8100                               uint8_t **plaintext)
8101 {
8102         uint16_t plaintext_pad_len;
8103
8104         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
8105
8106         plaintext_pad_len = RTE_ALIGN_CEIL(test_case->plaintext.len,
8107                                 16);
8108
8109         *plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
8110                         plaintext_pad_len);
8111         memcpy(*plaintext, test_case->plaintext.data,
8112                         test_case->plaintext.len);
8113
8114         sym_op->auth.digest.data = (uint8_t *)rte_pktmbuf_append(
8115                         ut_params->ibuf, MD5_DIGEST_LEN);
8116         TEST_ASSERT_NOT_NULL(sym_op->auth.digest.data,
8117                         "no room to append digest");
8118         sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(
8119                         ut_params->ibuf, plaintext_pad_len);
8120
8121         if (ut_params->auth_xform.auth.op == RTE_CRYPTO_AUTH_OP_VERIFY) {
8122                 rte_memcpy(sym_op->auth.digest.data, test_case->auth_tag.data,
8123                            test_case->auth_tag.len);
8124         }
8125
8126         sym_op->auth.data.offset = 0;
8127         sym_op->auth.data.length = test_case->plaintext.len;
8128
8129         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
8130         ut_params->op->sym->m_src = ut_params->ibuf;
8131
8132         return 0;
8133 }
8134
8135 static int
8136 test_MD5_HMAC_generate(const struct HMAC_MD5_vector *test_case)
8137 {
8138         uint16_t plaintext_pad_len;
8139         uint8_t *plaintext, *auth_tag;
8140
8141         struct crypto_testsuite_params *ts_params = &testsuite_params;
8142         struct crypto_unittest_params *ut_params = &unittest_params;
8143
8144         if (MD5_HMAC_create_session(ts_params, ut_params,
8145                         RTE_CRYPTO_AUTH_OP_GENERATE, test_case))
8146                 return TEST_FAILED;
8147
8148         /* Generate Crypto op data structure */
8149         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
8150                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
8151         TEST_ASSERT_NOT_NULL(ut_params->op,
8152                         "Failed to allocate symmetric crypto operation struct");
8153
8154         plaintext_pad_len = RTE_ALIGN_CEIL(test_case->plaintext.len,
8155                                 16);
8156
8157         if (MD5_HMAC_create_op(ut_params, test_case, &plaintext))
8158                 return TEST_FAILED;
8159
8160         TEST_ASSERT_NOT_NULL(process_crypto_request(ts_params->valid_devs[0],
8161                         ut_params->op), "failed to process sym crypto op");
8162
8163         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
8164                         "crypto op processing failed");
8165
8166         if (ut_params->op->sym->m_dst) {
8167                 auth_tag = rte_pktmbuf_mtod_offset(ut_params->op->sym->m_dst,
8168                                 uint8_t *, plaintext_pad_len);
8169         } else {
8170                 auth_tag = plaintext + plaintext_pad_len;
8171         }
8172
8173         TEST_ASSERT_BUFFERS_ARE_EQUAL(
8174                         auth_tag,
8175                         test_case->auth_tag.data,
8176                         test_case->auth_tag.len,
8177                         "HMAC_MD5 generated tag not as expected");
8178
8179         return TEST_SUCCESS;
8180 }
8181
8182 static int
8183 test_MD5_HMAC_verify(const struct HMAC_MD5_vector *test_case)
8184 {
8185         uint8_t *plaintext;
8186
8187         struct crypto_testsuite_params *ts_params = &testsuite_params;
8188         struct crypto_unittest_params *ut_params = &unittest_params;
8189
8190         if (MD5_HMAC_create_session(ts_params, ut_params,
8191                         RTE_CRYPTO_AUTH_OP_VERIFY, test_case)) {
8192                 return TEST_FAILED;
8193         }
8194
8195         /* Generate Crypto op data structure */
8196         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
8197                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
8198         TEST_ASSERT_NOT_NULL(ut_params->op,
8199                         "Failed to allocate symmetric crypto operation struct");
8200
8201         if (MD5_HMAC_create_op(ut_params, test_case, &plaintext))
8202                 return TEST_FAILED;
8203
8204         TEST_ASSERT_NOT_NULL(process_crypto_request(ts_params->valid_devs[0],
8205                         ut_params->op), "failed to process sym crypto op");
8206
8207         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
8208                         "HMAC_MD5 crypto op processing failed");
8209
8210         return TEST_SUCCESS;
8211 }
8212
8213 static int
8214 test_MD5_HMAC_generate_case_1(void)
8215 {
8216         return test_MD5_HMAC_generate(&HMAC_MD5_test_case_1);
8217 }
8218
8219 static int
8220 test_MD5_HMAC_verify_case_1(void)
8221 {
8222         return test_MD5_HMAC_verify(&HMAC_MD5_test_case_1);
8223 }
8224
8225 static int
8226 test_MD5_HMAC_generate_case_2(void)
8227 {
8228         return test_MD5_HMAC_generate(&HMAC_MD5_test_case_2);
8229 }
8230
8231 static int
8232 test_MD5_HMAC_verify_case_2(void)
8233 {
8234         return test_MD5_HMAC_verify(&HMAC_MD5_test_case_2);
8235 }
8236
8237 static int
8238 test_multi_session(void)
8239 {
8240         struct crypto_testsuite_params *ts_params = &testsuite_params;
8241         struct crypto_unittest_params *ut_params = &unittest_params;
8242
8243         struct rte_cryptodev_info dev_info;
8244         struct rte_cryptodev_sym_session **sessions;
8245
8246         uint16_t i;
8247
8248         test_AES_CBC_HMAC_SHA512_decrypt_create_session_params(ut_params,
8249                         aes_cbc_key, hmac_sha512_key);
8250
8251
8252         rte_cryptodev_info_get(ts_params->valid_devs[0], &dev_info);
8253
8254         sessions = rte_malloc(NULL,
8255                         (sizeof(struct rte_cryptodev_sym_session *) *
8256                         MAX_NB_SESSIONS) + 1, 0);
8257
8258         /* Create multiple crypto sessions*/
8259         for (i = 0; i < MAX_NB_SESSIONS; i++) {
8260
8261                 sessions[i] = rte_cryptodev_sym_session_create(
8262                                 ts_params->session_mpool);
8263
8264                 rte_cryptodev_sym_session_init(ts_params->valid_devs[0],
8265                                 sessions[i], &ut_params->auth_xform,
8266                                 ts_params->session_priv_mpool);
8267                 TEST_ASSERT_NOT_NULL(sessions[i],
8268                                 "Session creation failed at session number %u",
8269                                 i);
8270
8271                 /* Attempt to send a request on each session */
8272                 TEST_ASSERT_SUCCESS( test_AES_CBC_HMAC_SHA512_decrypt_perform(
8273                         sessions[i],
8274                         ut_params,
8275                         ts_params,
8276                         catch_22_quote_2_512_bytes_AES_CBC_ciphertext,
8277                         catch_22_quote_2_512_bytes_AES_CBC_HMAC_SHA512_digest,
8278                         aes_cbc_iv),
8279                         "Failed to perform decrypt on request number %u.", i);
8280                 /* free crypto operation structure */
8281                 if (ut_params->op)
8282                         rte_crypto_op_free(ut_params->op);
8283
8284                 /*
8285                  * free mbuf - both obuf and ibuf are usually the same,
8286                  * so check if they point at the same address is necessary,
8287                  * to avoid freeing the mbuf twice.
8288                  */
8289                 if (ut_params->obuf) {
8290                         rte_pktmbuf_free(ut_params->obuf);
8291                         if (ut_params->ibuf == ut_params->obuf)
8292                                 ut_params->ibuf = 0;
8293                         ut_params->obuf = 0;
8294                 }
8295                 if (ut_params->ibuf) {
8296                         rte_pktmbuf_free(ut_params->ibuf);
8297                         ut_params->ibuf = 0;
8298                 }
8299         }
8300
8301         /* Next session create should fail */
8302         rte_cryptodev_sym_session_init(ts_params->valid_devs[0],
8303                         sessions[i], &ut_params->auth_xform,
8304                         ts_params->session_priv_mpool);
8305         TEST_ASSERT_NULL(sessions[i],
8306                         "Session creation succeeded unexpectedly!");
8307
8308         for (i = 0; i < MAX_NB_SESSIONS; i++) {
8309                 rte_cryptodev_sym_session_clear(ts_params->valid_devs[0],
8310                                 sessions[i]);
8311                 rte_cryptodev_sym_session_free(sessions[i]);
8312         }
8313
8314         rte_free(sessions);
8315
8316         return TEST_SUCCESS;
8317 }
8318
8319 struct multi_session_params {
8320         struct crypto_unittest_params ut_params;
8321         uint8_t *cipher_key;
8322         uint8_t *hmac_key;
8323         const uint8_t *cipher;
8324         const uint8_t *digest;
8325         uint8_t *iv;
8326 };
8327
8328 #define MB_SESSION_NUMBER 3
8329
8330 static int
8331 test_multi_session_random_usage(void)
8332 {
8333         struct crypto_testsuite_params *ts_params = &testsuite_params;
8334         struct rte_cryptodev_info dev_info;
8335         struct rte_cryptodev_sym_session **sessions;
8336         uint32_t i, j;
8337         struct multi_session_params ut_paramz[] = {
8338
8339                 {
8340                         .cipher_key = ms_aes_cbc_key0,
8341                         .hmac_key = ms_hmac_key0,
8342                         .cipher = ms_aes_cbc_cipher0,
8343                         .digest = ms_hmac_digest0,
8344                         .iv = ms_aes_cbc_iv0
8345                 },
8346                 {
8347                         .cipher_key = ms_aes_cbc_key1,
8348                         .hmac_key = ms_hmac_key1,
8349                         .cipher = ms_aes_cbc_cipher1,
8350                         .digest = ms_hmac_digest1,
8351                         .iv = ms_aes_cbc_iv1
8352                 },
8353                 {
8354                         .cipher_key = ms_aes_cbc_key2,
8355                         .hmac_key = ms_hmac_key2,
8356                         .cipher = ms_aes_cbc_cipher2,
8357                         .digest = ms_hmac_digest2,
8358                         .iv = ms_aes_cbc_iv2
8359                 },
8360
8361         };
8362
8363         rte_cryptodev_info_get(ts_params->valid_devs[0], &dev_info);
8364
8365         sessions = rte_malloc(NULL,
8366                         (sizeof(struct rte_cryptodev_sym_session *)
8367                                         * MAX_NB_SESSIONS) + 1, 0);
8368
8369         for (i = 0; i < MB_SESSION_NUMBER; i++) {
8370                 sessions[i] = rte_cryptodev_sym_session_create(
8371                                 ts_params->session_mpool);
8372
8373                 rte_memcpy(&ut_paramz[i].ut_params, &unittest_params,
8374                                 sizeof(struct crypto_unittest_params));
8375
8376                 test_AES_CBC_HMAC_SHA512_decrypt_create_session_params(
8377                                 &ut_paramz[i].ut_params,
8378                                 ut_paramz[i].cipher_key, ut_paramz[i].hmac_key);
8379
8380                 /* Create multiple crypto sessions*/
8381                 rte_cryptodev_sym_session_init(
8382                                 ts_params->valid_devs[0],
8383                                 sessions[i],
8384                                 &ut_paramz[i].ut_params.auth_xform,
8385                                 ts_params->session_priv_mpool);
8386
8387                 TEST_ASSERT_NOT_NULL(sessions[i],
8388                                 "Session creation failed at session number %u",
8389                                 i);
8390
8391         }
8392
8393         srand(time(NULL));
8394         for (i = 0; i < 40000; i++) {
8395
8396                 j = rand() % MB_SESSION_NUMBER;
8397
8398                 TEST_ASSERT_SUCCESS(
8399                         test_AES_CBC_HMAC_SHA512_decrypt_perform(
8400                                         sessions[j],
8401                                         &ut_paramz[j].ut_params,
8402                                         ts_params, ut_paramz[j].cipher,
8403                                         ut_paramz[j].digest,
8404                                         ut_paramz[j].iv),
8405                         "Failed to perform decrypt on request number %u.", i);
8406
8407                 if (ut_paramz[j].ut_params.op)
8408                         rte_crypto_op_free(ut_paramz[j].ut_params.op);
8409
8410                 /*
8411                  * free mbuf - both obuf and ibuf are usually the same,
8412                  * so check if they point at the same address is necessary,
8413                  * to avoid freeing the mbuf twice.
8414                  */
8415                 if (ut_paramz[j].ut_params.obuf) {
8416                         rte_pktmbuf_free(ut_paramz[j].ut_params.obuf);
8417                         if (ut_paramz[j].ut_params.ibuf
8418                                         == ut_paramz[j].ut_params.obuf)
8419                                 ut_paramz[j].ut_params.ibuf = 0;
8420                         ut_paramz[j].ut_params.obuf = 0;
8421                 }
8422                 if (ut_paramz[j].ut_params.ibuf) {
8423                         rte_pktmbuf_free(ut_paramz[j].ut_params.ibuf);
8424                         ut_paramz[j].ut_params.ibuf = 0;
8425                 }
8426         }
8427
8428         for (i = 0; i < MB_SESSION_NUMBER; i++) {
8429                 rte_cryptodev_sym_session_clear(ts_params->valid_devs[0],
8430                                 sessions[i]);
8431                 rte_cryptodev_sym_session_free(sessions[i]);
8432         }
8433
8434         rte_free(sessions);
8435
8436         return TEST_SUCCESS;
8437 }
8438
8439 static int
8440 test_null_cipher_only_operation(void)
8441 {
8442         struct crypto_testsuite_params *ts_params = &testsuite_params;
8443         struct crypto_unittest_params *ut_params = &unittest_params;
8444
8445         /* Generate test mbuf data and space for digest */
8446         ut_params->ibuf = setup_test_string(ts_params->mbuf_pool,
8447                         catch_22_quote, QUOTE_512_BYTES, 0);
8448
8449         /* Setup Cipher Parameters */
8450         ut_params->cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
8451         ut_params->cipher_xform.next = NULL;
8452
8453         ut_params->cipher_xform.cipher.algo = RTE_CRYPTO_CIPHER_NULL;
8454         ut_params->cipher_xform.cipher.op = RTE_CRYPTO_CIPHER_OP_ENCRYPT;
8455
8456         ut_params->sess = rte_cryptodev_sym_session_create(
8457                         ts_params->session_mpool);
8458
8459         /* Create Crypto session*/
8460         rte_cryptodev_sym_session_init(ts_params->valid_devs[0],
8461                                 ut_params->sess,
8462                                 &ut_params->cipher_xform,
8463                                 ts_params->session_priv_mpool);
8464         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
8465
8466         /* Generate Crypto op data structure */
8467         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
8468                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
8469         TEST_ASSERT_NOT_NULL(ut_params->op,
8470                         "Failed to allocate symmetric crypto operation struct");
8471
8472         /* Set crypto operation data parameters */
8473         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
8474
8475         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
8476
8477         /* set crypto operation source mbuf */
8478         sym_op->m_src = ut_params->ibuf;
8479
8480         sym_op->cipher.data.offset = 0;
8481         sym_op->cipher.data.length = QUOTE_512_BYTES;
8482
8483         /* Process crypto operation */
8484         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
8485                         ut_params->op);
8486         TEST_ASSERT_NOT_NULL(ut_params->op, "no crypto operation returned");
8487
8488         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
8489                         "crypto operation processing failed");
8490
8491         /* Validate obuf */
8492         TEST_ASSERT_BUFFERS_ARE_EQUAL(
8493                         rte_pktmbuf_mtod(ut_params->op->sym->m_src, uint8_t *),
8494                         catch_22_quote,
8495                         QUOTE_512_BYTES,
8496                         "Ciphertext data not as expected");
8497
8498         return TEST_SUCCESS;
8499 }
8500 uint8_t orig_data[] = {0xab, 0xab, 0xab, 0xab,
8501                         0xab, 0xab, 0xab, 0xab,
8502                         0xab, 0xab, 0xab, 0xab,
8503                         0xab, 0xab, 0xab, 0xab};
8504 static int
8505 test_null_auth_only_operation(void)
8506 {
8507         struct crypto_testsuite_params *ts_params = &testsuite_params;
8508         struct crypto_unittest_params *ut_params = &unittest_params;
8509         uint8_t *digest;
8510
8511         /* Generate test mbuf data and space for digest */
8512         ut_params->ibuf = setup_test_string(ts_params->mbuf_pool,
8513                         catch_22_quote, QUOTE_512_BYTES, 0);
8514
8515         /* create a pointer for digest, but don't expect anything to be written
8516          * here in a NULL auth algo so no mbuf append done.
8517          */
8518         digest = rte_pktmbuf_mtod_offset(ut_params->ibuf, uint8_t *,
8519                         QUOTE_512_BYTES);
8520         /* prefill the memory pointed to by digest */
8521         memcpy(digest, orig_data, sizeof(orig_data));
8522
8523         /* Setup HMAC Parameters */
8524         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
8525         ut_params->auth_xform.next = NULL;
8526
8527         ut_params->auth_xform.auth.algo = RTE_CRYPTO_AUTH_NULL;
8528         ut_params->auth_xform.auth.op = RTE_CRYPTO_AUTH_OP_GENERATE;
8529
8530         ut_params->sess = rte_cryptodev_sym_session_create(
8531                         ts_params->session_mpool);
8532
8533         /* Create Crypto session*/
8534         rte_cryptodev_sym_session_init(ts_params->valid_devs[0],
8535                         ut_params->sess, &ut_params->auth_xform,
8536                         ts_params->session_priv_mpool);
8537         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
8538
8539         /* Generate Crypto op data structure */
8540         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
8541                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
8542         TEST_ASSERT_NOT_NULL(ut_params->op,
8543                         "Failed to allocate symmetric crypto operation struct");
8544
8545         /* Set crypto operation data parameters */
8546         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
8547
8548         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
8549
8550         sym_op->m_src = ut_params->ibuf;
8551
8552         sym_op->auth.data.offset = 0;
8553         sym_op->auth.data.length = QUOTE_512_BYTES;
8554         sym_op->auth.digest.data = digest;
8555         sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(ut_params->ibuf,
8556                         QUOTE_512_BYTES);
8557
8558         /* Process crypto operation */
8559         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
8560                         ut_params->op);
8561         TEST_ASSERT_NOT_NULL(ut_params->op, "no crypto operation returned");
8562
8563         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
8564                         "crypto operation processing failed");
8565         /* Make sure memory pointed to by digest hasn't been overwritten */
8566         TEST_ASSERT_BUFFERS_ARE_EQUAL(
8567                         orig_data,
8568                         digest,
8569                         sizeof(orig_data),
8570                         "Memory at digest ptr overwritten unexpectedly");
8571
8572         return TEST_SUCCESS;
8573 }
8574
8575
8576 static int
8577 test_null_cipher_auth_operation(void)
8578 {
8579         struct crypto_testsuite_params *ts_params = &testsuite_params;
8580         struct crypto_unittest_params *ut_params = &unittest_params;
8581         uint8_t *digest;
8582
8583         /* Generate test mbuf data and space for digest */
8584         ut_params->ibuf = setup_test_string(ts_params->mbuf_pool,
8585                         catch_22_quote, QUOTE_512_BYTES, 0);
8586
8587         /* create a pointer for digest, but don't expect anything to be written
8588          * here in a NULL auth algo so no mbuf append done.
8589          */
8590         digest = rte_pktmbuf_mtod_offset(ut_params->ibuf, uint8_t *,
8591                         QUOTE_512_BYTES);
8592         /* prefill the memory pointed to by digest */
8593         memcpy(digest, orig_data, sizeof(orig_data));
8594
8595         /* Setup Cipher Parameters */
8596         ut_params->cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
8597         ut_params->cipher_xform.next = &ut_params->auth_xform;
8598
8599         ut_params->cipher_xform.cipher.algo = RTE_CRYPTO_CIPHER_NULL;
8600         ut_params->cipher_xform.cipher.op = RTE_CRYPTO_CIPHER_OP_ENCRYPT;
8601
8602         /* Setup HMAC Parameters */
8603         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
8604         ut_params->auth_xform.next = NULL;
8605
8606         ut_params->auth_xform.auth.algo = RTE_CRYPTO_AUTH_NULL;
8607         ut_params->auth_xform.auth.op = RTE_CRYPTO_AUTH_OP_GENERATE;
8608
8609         ut_params->sess = rte_cryptodev_sym_session_create(
8610                         ts_params->session_mpool);
8611
8612         /* Create Crypto session*/
8613         rte_cryptodev_sym_session_init(ts_params->valid_devs[0],
8614                         ut_params->sess, &ut_params->cipher_xform,
8615                         ts_params->session_priv_mpool);
8616         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
8617
8618         /* Generate Crypto op data structure */
8619         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
8620                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
8621         TEST_ASSERT_NOT_NULL(ut_params->op,
8622                         "Failed to allocate symmetric crypto operation struct");
8623
8624         /* Set crypto operation data parameters */
8625         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
8626
8627         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
8628
8629         sym_op->m_src = ut_params->ibuf;
8630
8631         sym_op->cipher.data.offset = 0;
8632         sym_op->cipher.data.length = QUOTE_512_BYTES;
8633
8634         sym_op->auth.data.offset = 0;
8635         sym_op->auth.data.length = QUOTE_512_BYTES;
8636         sym_op->auth.digest.data = digest;
8637         sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(ut_params->ibuf,
8638                         QUOTE_512_BYTES);
8639
8640         /* Process crypto operation */
8641         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
8642                         ut_params->op);
8643         TEST_ASSERT_NOT_NULL(ut_params->op, "no crypto operation returned");
8644
8645         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
8646                         "crypto operation processing failed");
8647
8648         /* Validate obuf */
8649         TEST_ASSERT_BUFFERS_ARE_EQUAL(
8650                         rte_pktmbuf_mtod(ut_params->op->sym->m_src, uint8_t *),
8651                         catch_22_quote,
8652                         QUOTE_512_BYTES,
8653                         "Ciphertext data not as expected");
8654         /* Make sure memory pointed to by digest hasn't been overwritten */
8655         TEST_ASSERT_BUFFERS_ARE_EQUAL(
8656                         orig_data,
8657                         digest,
8658                         sizeof(orig_data),
8659                         "Memory at digest ptr overwritten unexpectedly");
8660
8661         return TEST_SUCCESS;
8662 }
8663
8664 static int
8665 test_null_auth_cipher_operation(void)
8666 {
8667         struct crypto_testsuite_params *ts_params = &testsuite_params;
8668         struct crypto_unittest_params *ut_params = &unittest_params;
8669         uint8_t *digest;
8670
8671         /* Generate test mbuf data */
8672         ut_params->ibuf = setup_test_string(ts_params->mbuf_pool,
8673                         catch_22_quote, QUOTE_512_BYTES, 0);
8674
8675         /* create a pointer for digest, but don't expect anything to be written
8676          * here in a NULL auth algo so no mbuf append done.
8677          */
8678         digest = rte_pktmbuf_mtod_offset(ut_params->ibuf, uint8_t *,
8679                                 QUOTE_512_BYTES);
8680         /* prefill the memory pointed to by digest */
8681         memcpy(digest, orig_data, sizeof(orig_data));
8682
8683         /* Setup Cipher Parameters */
8684         ut_params->cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
8685         ut_params->cipher_xform.next = NULL;
8686
8687         ut_params->cipher_xform.cipher.algo = RTE_CRYPTO_CIPHER_NULL;
8688         ut_params->cipher_xform.cipher.op = RTE_CRYPTO_CIPHER_OP_ENCRYPT;
8689
8690         /* Setup HMAC Parameters */
8691         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
8692         ut_params->auth_xform.next = &ut_params->cipher_xform;
8693
8694         ut_params->auth_xform.auth.algo = RTE_CRYPTO_AUTH_NULL;
8695         ut_params->auth_xform.auth.op = RTE_CRYPTO_AUTH_OP_GENERATE;
8696
8697         ut_params->sess = rte_cryptodev_sym_session_create(
8698                         ts_params->session_mpool);
8699
8700         /* Create Crypto session*/
8701         rte_cryptodev_sym_session_init(ts_params->valid_devs[0],
8702                         ut_params->sess, &ut_params->cipher_xform,
8703                         ts_params->session_priv_mpool);
8704         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
8705
8706         /* Generate Crypto op data structure */
8707         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
8708                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
8709         TEST_ASSERT_NOT_NULL(ut_params->op,
8710                         "Failed to allocate symmetric crypto operation struct");
8711
8712         /* Set crypto operation data parameters */
8713         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
8714
8715         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
8716
8717         sym_op->m_src = ut_params->ibuf;
8718
8719         sym_op->cipher.data.offset = 0;
8720         sym_op->cipher.data.length = QUOTE_512_BYTES;
8721
8722         sym_op->auth.data.offset = 0;
8723         sym_op->auth.data.length = QUOTE_512_BYTES;
8724         sym_op->auth.digest.data = digest;
8725         sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(ut_params->ibuf,
8726                                         QUOTE_512_BYTES);
8727
8728         /* Process crypto operation */
8729         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
8730                         ut_params->op);
8731         TEST_ASSERT_NOT_NULL(ut_params->op, "no crypto operation returned");
8732
8733         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
8734                         "crypto operation processing failed");
8735
8736         /* Validate obuf */
8737         TEST_ASSERT_BUFFERS_ARE_EQUAL(
8738                         rte_pktmbuf_mtod(ut_params->op->sym->m_src, uint8_t *),
8739                         catch_22_quote,
8740                         QUOTE_512_BYTES,
8741                         "Ciphertext data not as expected");
8742         /* Make sure memory pointed to by digest hasn't been overwritten */
8743         TEST_ASSERT_BUFFERS_ARE_EQUAL(
8744                         orig_data,
8745                         digest,
8746                         sizeof(orig_data),
8747                         "Memory at digest ptr overwritten unexpectedly");
8748
8749         return TEST_SUCCESS;
8750 }
8751
8752
8753 static int
8754 test_null_invalid_operation(void)
8755 {
8756         struct crypto_testsuite_params *ts_params = &testsuite_params;
8757         struct crypto_unittest_params *ut_params = &unittest_params;
8758         int ret;
8759
8760         /* Setup Cipher Parameters */
8761         ut_params->cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
8762         ut_params->cipher_xform.next = NULL;
8763
8764         ut_params->cipher_xform.cipher.algo = RTE_CRYPTO_CIPHER_AES_CBC;
8765         ut_params->cipher_xform.cipher.op = RTE_CRYPTO_CIPHER_OP_ENCRYPT;
8766
8767         ut_params->sess = rte_cryptodev_sym_session_create(
8768                         ts_params->session_mpool);
8769
8770         /* Create Crypto session*/
8771         ret = rte_cryptodev_sym_session_init(ts_params->valid_devs[0],
8772                         ut_params->sess, &ut_params->cipher_xform,
8773                         ts_params->session_priv_mpool);
8774         TEST_ASSERT(ret < 0,
8775                         "Session creation succeeded unexpectedly");
8776
8777
8778         /* Setup HMAC Parameters */
8779         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
8780         ut_params->auth_xform.next = NULL;
8781
8782         ut_params->auth_xform.auth.algo = RTE_CRYPTO_AUTH_SHA1_HMAC;
8783         ut_params->auth_xform.auth.op = RTE_CRYPTO_AUTH_OP_GENERATE;
8784
8785         ut_params->sess = rte_cryptodev_sym_session_create(
8786                         ts_params->session_mpool);
8787
8788         /* Create Crypto session*/
8789         ret = rte_cryptodev_sym_session_init(ts_params->valid_devs[0],
8790                         ut_params->sess, &ut_params->auth_xform,
8791                         ts_params->session_priv_mpool);
8792         TEST_ASSERT(ret < 0,
8793                         "Session creation succeeded unexpectedly");
8794
8795         return TEST_SUCCESS;
8796 }
8797
8798
8799 #define NULL_BURST_LENGTH (32)
8800
8801 static int
8802 test_null_burst_operation(void)
8803 {
8804         struct crypto_testsuite_params *ts_params = &testsuite_params;
8805         struct crypto_unittest_params *ut_params = &unittest_params;
8806
8807         unsigned i, burst_len = NULL_BURST_LENGTH;
8808
8809         struct rte_crypto_op *burst[NULL_BURST_LENGTH] = { NULL };
8810         struct rte_crypto_op *burst_dequeued[NULL_BURST_LENGTH] = { NULL };
8811
8812         /* Setup Cipher Parameters */
8813         ut_params->cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
8814         ut_params->cipher_xform.next = &ut_params->auth_xform;
8815
8816         ut_params->cipher_xform.cipher.algo = RTE_CRYPTO_CIPHER_NULL;
8817         ut_params->cipher_xform.cipher.op = RTE_CRYPTO_CIPHER_OP_ENCRYPT;
8818
8819         /* Setup HMAC Parameters */
8820         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
8821         ut_params->auth_xform.next = NULL;
8822
8823         ut_params->auth_xform.auth.algo = RTE_CRYPTO_AUTH_NULL;
8824         ut_params->auth_xform.auth.op = RTE_CRYPTO_AUTH_OP_GENERATE;
8825
8826         ut_params->sess = rte_cryptodev_sym_session_create(
8827                         ts_params->session_mpool);
8828
8829         /* Create Crypto session*/
8830         rte_cryptodev_sym_session_init(ts_params->valid_devs[0],
8831                         ut_params->sess, &ut_params->cipher_xform,
8832                         ts_params->session_priv_mpool);
8833         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
8834
8835         TEST_ASSERT_EQUAL(rte_crypto_op_bulk_alloc(ts_params->op_mpool,
8836                         RTE_CRYPTO_OP_TYPE_SYMMETRIC, burst, burst_len),
8837                         burst_len, "failed to generate burst of crypto ops");
8838
8839         /* Generate an operation for each mbuf in burst */
8840         for (i = 0; i < burst_len; i++) {
8841                 struct rte_mbuf *m = rte_pktmbuf_alloc(ts_params->mbuf_pool);
8842
8843                 TEST_ASSERT_NOT_NULL(m, "Failed to allocate mbuf");
8844
8845                 unsigned *data = (unsigned *)rte_pktmbuf_append(m,
8846                                 sizeof(unsigned));
8847                 *data = i;
8848
8849                 rte_crypto_op_attach_sym_session(burst[i], ut_params->sess);
8850
8851                 burst[i]->sym->m_src = m;
8852         }
8853
8854         /* Process crypto operation */
8855         TEST_ASSERT_EQUAL(rte_cryptodev_enqueue_burst(ts_params->valid_devs[0],
8856                         0, burst, burst_len),
8857                         burst_len,
8858                         "Error enqueuing burst");
8859
8860         TEST_ASSERT_EQUAL(rte_cryptodev_dequeue_burst(ts_params->valid_devs[0],
8861                         0, burst_dequeued, burst_len),
8862                         burst_len,
8863                         "Error dequeuing burst");
8864
8865
8866         for (i = 0; i < burst_len; i++) {
8867                 TEST_ASSERT_EQUAL(
8868                         *rte_pktmbuf_mtod(burst[i]->sym->m_src, uint32_t *),
8869                         *rte_pktmbuf_mtod(burst_dequeued[i]->sym->m_src,
8870                                         uint32_t *),
8871                         "data not as expected");
8872
8873                 rte_pktmbuf_free(burst[i]->sym->m_src);
8874                 rte_crypto_op_free(burst[i]);
8875         }
8876
8877         return TEST_SUCCESS;
8878 }
8879
8880 static void
8881 generate_gmac_large_plaintext(uint8_t *data)
8882 {
8883         uint16_t i;
8884
8885         for (i = 32; i < GMAC_LARGE_PLAINTEXT_LENGTH; i += 32)
8886                 memcpy(&data[i], &data[0], 32);
8887 }
8888
8889 static int
8890 create_gmac_operation(enum rte_crypto_auth_operation op,
8891                 const struct gmac_test_data *tdata)
8892 {
8893         struct crypto_testsuite_params *ts_params = &testsuite_params;
8894         struct crypto_unittest_params *ut_params = &unittest_params;
8895         struct rte_crypto_sym_op *sym_op;
8896
8897         uint32_t plaintext_pad_len = RTE_ALIGN_CEIL(tdata->plaintext.len, 16);
8898
8899         /* Generate Crypto op data structure */
8900         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
8901                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
8902         TEST_ASSERT_NOT_NULL(ut_params->op,
8903                         "Failed to allocate symmetric crypto operation struct");
8904
8905         sym_op = ut_params->op->sym;
8906
8907         sym_op->auth.digest.data = (uint8_t *)rte_pktmbuf_append(
8908                         ut_params->ibuf, tdata->gmac_tag.len);
8909         TEST_ASSERT_NOT_NULL(sym_op->auth.digest.data,
8910                         "no room to append digest");
8911
8912         sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(
8913                         ut_params->ibuf, plaintext_pad_len);
8914
8915         if (op == RTE_CRYPTO_AUTH_OP_VERIFY) {
8916                 rte_memcpy(sym_op->auth.digest.data, tdata->gmac_tag.data,
8917                                 tdata->gmac_tag.len);
8918                 debug_hexdump(stdout, "digest:",
8919                                 sym_op->auth.digest.data,
8920                                 tdata->gmac_tag.len);
8921         }
8922
8923         uint8_t *iv_ptr = rte_crypto_op_ctod_offset(ut_params->op,
8924                         uint8_t *, IV_OFFSET);
8925
8926         rte_memcpy(iv_ptr, tdata->iv.data, tdata->iv.len);
8927
8928         debug_hexdump(stdout, "iv:", iv_ptr, tdata->iv.len);
8929
8930         sym_op->cipher.data.length = 0;
8931         sym_op->cipher.data.offset = 0;
8932
8933         sym_op->auth.data.offset = 0;
8934         sym_op->auth.data.length = tdata->plaintext.len;
8935
8936         return 0;
8937 }
8938
8939 static int create_gmac_session(uint8_t dev_id,
8940                 const struct gmac_test_data *tdata,
8941                 enum rte_crypto_auth_operation auth_op)
8942 {
8943         uint8_t auth_key[tdata->key.len];
8944
8945         struct crypto_testsuite_params *ts_params = &testsuite_params;
8946         struct crypto_unittest_params *ut_params = &unittest_params;
8947
8948         memcpy(auth_key, tdata->key.data, tdata->key.len);
8949
8950         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
8951         ut_params->auth_xform.next = NULL;
8952
8953         ut_params->auth_xform.auth.algo = RTE_CRYPTO_AUTH_AES_GMAC;
8954         ut_params->auth_xform.auth.op = auth_op;
8955         ut_params->auth_xform.auth.digest_length = tdata->gmac_tag.len;
8956         ut_params->auth_xform.auth.key.length = tdata->key.len;
8957         ut_params->auth_xform.auth.key.data = auth_key;
8958         ut_params->auth_xform.auth.iv.offset = IV_OFFSET;
8959         ut_params->auth_xform.auth.iv.length = tdata->iv.len;
8960
8961
8962         ut_params->sess = rte_cryptodev_sym_session_create(
8963                         ts_params->session_mpool);
8964
8965         rte_cryptodev_sym_session_init(dev_id, ut_params->sess,
8966                         &ut_params->auth_xform,
8967                         ts_params->session_priv_mpool);
8968
8969         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
8970
8971         return 0;
8972 }
8973
8974 static int
8975 test_AES_GMAC_authentication(const struct gmac_test_data *tdata)
8976 {
8977         struct crypto_testsuite_params *ts_params = &testsuite_params;
8978         struct crypto_unittest_params *ut_params = &unittest_params;
8979
8980         int retval;
8981
8982         uint8_t *auth_tag, *plaintext;
8983         uint16_t plaintext_pad_len;
8984
8985         TEST_ASSERT_NOT_EQUAL(tdata->gmac_tag.len, 0,
8986                               "No GMAC length in the source data");
8987
8988         retval = create_gmac_session(ts_params->valid_devs[0],
8989                         tdata, RTE_CRYPTO_AUTH_OP_GENERATE);
8990
8991         if (retval < 0)
8992                 return retval;
8993
8994         if (tdata->plaintext.len > MBUF_SIZE)
8995                 ut_params->ibuf = rte_pktmbuf_alloc(ts_params->large_mbuf_pool);
8996         else
8997                 ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
8998         TEST_ASSERT_NOT_NULL(ut_params->ibuf,
8999                         "Failed to allocate input buffer in mempool");
9000
9001         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
9002                         rte_pktmbuf_tailroom(ut_params->ibuf));
9003
9004         plaintext_pad_len = RTE_ALIGN_CEIL(tdata->plaintext.len, 16);
9005         /*
9006          * Runtime generate the large plain text instead of use hard code
9007          * plain text vector. It is done to avoid create huge source file
9008          * with the test vector.
9009          */
9010         if (tdata->plaintext.len == GMAC_LARGE_PLAINTEXT_LENGTH)
9011                 generate_gmac_large_plaintext(tdata->plaintext.data);
9012
9013         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
9014                                 plaintext_pad_len);
9015         TEST_ASSERT_NOT_NULL(plaintext, "no room to append plaintext");
9016
9017         memcpy(plaintext, tdata->plaintext.data, tdata->plaintext.len);
9018         debug_hexdump(stdout, "plaintext:", plaintext,
9019                         tdata->plaintext.len);
9020
9021         retval = create_gmac_operation(RTE_CRYPTO_AUTH_OP_GENERATE,
9022                         tdata);
9023
9024         if (retval < 0)
9025                 return retval;
9026
9027         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
9028
9029         ut_params->op->sym->m_src = ut_params->ibuf;
9030
9031         TEST_ASSERT_NOT_NULL(process_crypto_request(ts_params->valid_devs[0],
9032                         ut_params->op), "failed to process sym crypto op");
9033
9034         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
9035                         "crypto op processing failed");
9036
9037         if (ut_params->op->sym->m_dst) {
9038                 auth_tag = rte_pktmbuf_mtod_offset(ut_params->op->sym->m_dst,
9039                                 uint8_t *, plaintext_pad_len);
9040         } else {
9041                 auth_tag = plaintext + plaintext_pad_len;
9042         }
9043
9044         debug_hexdump(stdout, "auth tag:", auth_tag, tdata->gmac_tag.len);
9045
9046         TEST_ASSERT_BUFFERS_ARE_EQUAL(
9047                         auth_tag,
9048                         tdata->gmac_tag.data,
9049                         tdata->gmac_tag.len,
9050                         "GMAC Generated auth tag not as expected");
9051
9052         return 0;
9053 }
9054
9055 static int
9056 test_AES_GMAC_authentication_test_case_1(void)
9057 {
9058         return test_AES_GMAC_authentication(&gmac_test_case_1);
9059 }
9060
9061 static int
9062 test_AES_GMAC_authentication_test_case_2(void)
9063 {
9064         return test_AES_GMAC_authentication(&gmac_test_case_2);
9065 }
9066
9067 static int
9068 test_AES_GMAC_authentication_test_case_3(void)
9069 {
9070         return test_AES_GMAC_authentication(&gmac_test_case_3);
9071 }
9072
9073 static int
9074 test_AES_GMAC_authentication_test_case_4(void)
9075 {
9076         return test_AES_GMAC_authentication(&gmac_test_case_4);
9077 }
9078
9079 static int
9080 test_AES_GMAC_authentication_verify(const struct gmac_test_data *tdata)
9081 {
9082         struct crypto_testsuite_params *ts_params = &testsuite_params;
9083         struct crypto_unittest_params *ut_params = &unittest_params;
9084         int retval;
9085         uint32_t plaintext_pad_len;
9086         uint8_t *plaintext;
9087
9088         TEST_ASSERT_NOT_EQUAL(tdata->gmac_tag.len, 0,
9089                               "No GMAC length in the source data");
9090
9091         retval = create_gmac_session(ts_params->valid_devs[0],
9092                         tdata, RTE_CRYPTO_AUTH_OP_VERIFY);
9093
9094         if (retval < 0)
9095                 return retval;
9096
9097         if (tdata->plaintext.len > MBUF_SIZE)
9098                 ut_params->ibuf = rte_pktmbuf_alloc(ts_params->large_mbuf_pool);
9099         else
9100                 ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
9101         TEST_ASSERT_NOT_NULL(ut_params->ibuf,
9102                         "Failed to allocate input buffer in mempool");
9103
9104         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
9105                         rte_pktmbuf_tailroom(ut_params->ibuf));
9106
9107         plaintext_pad_len = RTE_ALIGN_CEIL(tdata->plaintext.len, 16);
9108
9109         /*
9110          * Runtime generate the large plain text instead of use hard code
9111          * plain text vector. It is done to avoid create huge source file
9112          * with the test vector.
9113          */
9114         if (tdata->plaintext.len == GMAC_LARGE_PLAINTEXT_LENGTH)
9115                 generate_gmac_large_plaintext(tdata->plaintext.data);
9116
9117         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
9118                                 plaintext_pad_len);
9119         TEST_ASSERT_NOT_NULL(plaintext, "no room to append plaintext");
9120
9121         memcpy(plaintext, tdata->plaintext.data, tdata->plaintext.len);
9122         debug_hexdump(stdout, "plaintext:", plaintext,
9123                         tdata->plaintext.len);
9124
9125         retval = create_gmac_operation(RTE_CRYPTO_AUTH_OP_VERIFY,
9126                         tdata);
9127
9128         if (retval < 0)
9129                 return retval;
9130
9131         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
9132
9133         ut_params->op->sym->m_src = ut_params->ibuf;
9134
9135         TEST_ASSERT_NOT_NULL(process_crypto_request(ts_params->valid_devs[0],
9136                         ut_params->op), "failed to process sym crypto op");
9137
9138         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
9139                         "crypto op processing failed");
9140
9141         return 0;
9142
9143 }
9144
9145 static int
9146 test_AES_GMAC_authentication_verify_test_case_1(void)
9147 {
9148         return test_AES_GMAC_authentication_verify(&gmac_test_case_1);
9149 }
9150
9151 static int
9152 test_AES_GMAC_authentication_verify_test_case_2(void)
9153 {
9154         return test_AES_GMAC_authentication_verify(&gmac_test_case_2);
9155 }
9156
9157 static int
9158 test_AES_GMAC_authentication_verify_test_case_3(void)
9159 {
9160         return test_AES_GMAC_authentication_verify(&gmac_test_case_3);
9161 }
9162
9163 static int
9164 test_AES_GMAC_authentication_verify_test_case_4(void)
9165 {
9166         return test_AES_GMAC_authentication_verify(&gmac_test_case_4);
9167 }
9168
9169 struct test_crypto_vector {
9170         enum rte_crypto_cipher_algorithm crypto_algo;
9171
9172         struct {
9173                 uint8_t data[64];
9174                 unsigned int len;
9175         } cipher_key;
9176
9177         struct {
9178                 uint8_t data[64];
9179                 unsigned int len;
9180         } iv;
9181
9182         struct {
9183                 const uint8_t *data;
9184                 unsigned int len;
9185         } plaintext;
9186
9187         struct {
9188                 const uint8_t *data;
9189                 unsigned int len;
9190         } ciphertext;
9191
9192         enum rte_crypto_auth_algorithm auth_algo;
9193
9194         struct {
9195                 uint8_t data[128];
9196                 unsigned int len;
9197         } auth_key;
9198
9199         struct {
9200                 const uint8_t *data;
9201                 unsigned int len;
9202         } aad;
9203
9204         struct {
9205                 uint8_t data[128];
9206                 unsigned int len;
9207         } digest;
9208 };
9209
9210 static const struct test_crypto_vector
9211 hmac_sha1_test_crypto_vector = {
9212         .auth_algo = RTE_CRYPTO_AUTH_SHA1_HMAC,
9213         .plaintext = {
9214                 .data = plaintext_hash,
9215                 .len = 512
9216         },
9217         .auth_key = {
9218                 .data = {
9219                         0xF8, 0x2A, 0xC7, 0x54, 0xDB, 0x96, 0x18, 0xAA,
9220                         0xC3, 0xA1, 0x53, 0xF6, 0x1F, 0x17, 0x60, 0xBD,
9221                         0xDE, 0xF4, 0xDE, 0xAD
9222                 },
9223                 .len = 20
9224         },
9225         .digest = {
9226                 .data = {
9227                         0xC4, 0xB7, 0x0E, 0x6B, 0xDE, 0xD1, 0xE7, 0x77,
9228                         0x7E, 0x2E, 0x8F, 0xFC, 0x48, 0x39, 0x46, 0x17,
9229                         0x3F, 0x91, 0x64, 0x59
9230                 },
9231                 .len = 20
9232         }
9233 };
9234
9235 static const struct test_crypto_vector
9236 aes128_gmac_test_vector = {
9237         .auth_algo = RTE_CRYPTO_AUTH_AES_GMAC,
9238         .plaintext = {
9239                 .data = plaintext_hash,
9240                 .len = 512
9241         },
9242         .iv = {
9243                 .data = {
9244                         0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
9245                         0x08, 0x09, 0x0A, 0x0B
9246                 },
9247                 .len = 12
9248         },
9249         .auth_key = {
9250                 .data = {
9251                         0x42, 0x1A, 0x7D, 0x3D, 0xF5, 0x82, 0x80, 0xF1,
9252                         0xF1, 0x35, 0x5C, 0x3B, 0xDD, 0x9A, 0x65, 0xBA
9253                 },
9254                 .len = 16
9255         },
9256         .digest = {
9257                 .data = {
9258                         0xCA, 0x00, 0x99, 0x8B, 0x30, 0x7E, 0x74, 0x56,
9259                         0x32, 0xA7, 0x87, 0xB5, 0xE9, 0xB2, 0x34, 0x5A
9260                 },
9261                 .len = 16
9262         }
9263 };
9264
9265 static const struct test_crypto_vector
9266 aes128cbc_hmac_sha1_test_vector = {
9267         .crypto_algo = RTE_CRYPTO_CIPHER_AES_CBC,
9268         .cipher_key = {
9269                 .data = {
9270                         0xE4, 0x23, 0x33, 0x8A, 0x35, 0x64, 0x61, 0xE2,
9271                         0x49, 0x03, 0xDD, 0xC6, 0xB8, 0xCA, 0x55, 0x7A
9272                 },
9273                 .len = 16
9274         },
9275         .iv = {
9276                 .data = {
9277                         0x00, 0x01, 0x02, 0x03, 0x04, 0x05, 0x06, 0x07,
9278                         0x08, 0x09, 0x0A, 0x0B, 0x0C, 0x0D, 0x0E, 0x0F
9279                 },
9280                 .len = 16
9281         },
9282         .plaintext = {
9283                 .data = plaintext_hash,
9284                 .len = 512
9285         },
9286         .ciphertext = {
9287                 .data = ciphertext512_aes128cbc,
9288                 .len = 512
9289         },
9290         .auth_algo = RTE_CRYPTO_AUTH_SHA1_HMAC,
9291         .auth_key = {
9292                 .data = {
9293                         0xF8, 0x2A, 0xC7, 0x54, 0xDB, 0x96, 0x18, 0xAA,
9294                         0xC3, 0xA1, 0x53, 0xF6, 0x1F, 0x17, 0x60, 0xBD,
9295                         0xDE, 0xF4, 0xDE, 0xAD
9296                 },
9297                 .len = 20
9298         },
9299         .digest = {
9300                 .data = {
9301                         0x9A, 0x4F, 0x88, 0x1B, 0xB6, 0x8F, 0xD8, 0x60,
9302                         0x42, 0x1A, 0x7D, 0x3D, 0xF5, 0x82, 0x80, 0xF1,
9303                         0x18, 0x8C, 0x1D, 0x32
9304                 },
9305                 .len = 20
9306         }
9307 };
9308
9309 static void
9310 data_corruption(uint8_t *data)
9311 {
9312         data[0] += 1;
9313 }
9314
9315 static void
9316 tag_corruption(uint8_t *data, unsigned int tag_offset)
9317 {
9318         data[tag_offset] += 1;
9319 }
9320
9321 static int
9322 create_auth_session(struct crypto_unittest_params *ut_params,
9323                 uint8_t dev_id,
9324                 const struct test_crypto_vector *reference,
9325                 enum rte_crypto_auth_operation auth_op)
9326 {
9327         struct crypto_testsuite_params *ts_params = &testsuite_params;
9328         uint8_t auth_key[reference->auth_key.len + 1];
9329
9330         memcpy(auth_key, reference->auth_key.data, reference->auth_key.len);
9331
9332         /* Setup Authentication Parameters */
9333         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
9334         ut_params->auth_xform.auth.op = auth_op;
9335         ut_params->auth_xform.next = NULL;
9336         ut_params->auth_xform.auth.algo = reference->auth_algo;
9337         ut_params->auth_xform.auth.key.length = reference->auth_key.len;
9338         ut_params->auth_xform.auth.key.data = auth_key;
9339         ut_params->auth_xform.auth.digest_length = reference->digest.len;
9340
9341         /* Create Crypto session*/
9342         ut_params->sess = rte_cryptodev_sym_session_create(
9343                         ts_params->session_mpool);
9344
9345         rte_cryptodev_sym_session_init(dev_id, ut_params->sess,
9346                                 &ut_params->auth_xform,
9347                                 ts_params->session_priv_mpool);
9348
9349         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
9350
9351         return 0;
9352 }
9353
9354 static int
9355 create_auth_cipher_session(struct crypto_unittest_params *ut_params,
9356                 uint8_t dev_id,
9357                 const struct test_crypto_vector *reference,
9358                 enum rte_crypto_auth_operation auth_op,
9359                 enum rte_crypto_cipher_operation cipher_op)
9360 {
9361         struct crypto_testsuite_params *ts_params = &testsuite_params;
9362         uint8_t cipher_key[reference->cipher_key.len + 1];
9363         uint8_t auth_key[reference->auth_key.len + 1];
9364
9365         memcpy(cipher_key, reference->cipher_key.data,
9366                         reference->cipher_key.len);
9367         memcpy(auth_key, reference->auth_key.data, reference->auth_key.len);
9368
9369         /* Setup Authentication Parameters */
9370         ut_params->auth_xform.type = RTE_CRYPTO_SYM_XFORM_AUTH;
9371         ut_params->auth_xform.auth.op = auth_op;
9372         ut_params->auth_xform.auth.algo = reference->auth_algo;
9373         ut_params->auth_xform.auth.key.length = reference->auth_key.len;
9374         ut_params->auth_xform.auth.key.data = auth_key;
9375         ut_params->auth_xform.auth.digest_length = reference->digest.len;
9376
9377         if (reference->auth_algo == RTE_CRYPTO_AUTH_AES_GMAC) {
9378                 ut_params->auth_xform.auth.iv.offset = IV_OFFSET;
9379                 ut_params->auth_xform.auth.iv.length = reference->iv.len;
9380         } else {
9381                 ut_params->auth_xform.next = &ut_params->cipher_xform;
9382
9383                 /* Setup Cipher Parameters */
9384                 ut_params->cipher_xform.type = RTE_CRYPTO_SYM_XFORM_CIPHER;
9385                 ut_params->cipher_xform.next = NULL;
9386                 ut_params->cipher_xform.cipher.algo = reference->crypto_algo;
9387                 ut_params->cipher_xform.cipher.op = cipher_op;
9388                 ut_params->cipher_xform.cipher.key.data = cipher_key;
9389                 ut_params->cipher_xform.cipher.key.length = reference->cipher_key.len;
9390                 ut_params->cipher_xform.cipher.iv.offset = IV_OFFSET;
9391                 ut_params->cipher_xform.cipher.iv.length = reference->iv.len;
9392         }
9393
9394         /* Create Crypto session*/
9395         ut_params->sess = rte_cryptodev_sym_session_create(
9396                         ts_params->session_mpool);
9397
9398         rte_cryptodev_sym_session_init(dev_id, ut_params->sess,
9399                                 &ut_params->auth_xform,
9400                                 ts_params->session_priv_mpool);
9401
9402         TEST_ASSERT_NOT_NULL(ut_params->sess, "Session creation failed");
9403
9404         return 0;
9405 }
9406
9407 static int
9408 create_auth_operation(struct crypto_testsuite_params *ts_params,
9409                 struct crypto_unittest_params *ut_params,
9410                 const struct test_crypto_vector *reference,
9411                 unsigned int auth_generate)
9412 {
9413         /* Generate Crypto op data structure */
9414         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
9415                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
9416         TEST_ASSERT_NOT_NULL(ut_params->op,
9417                         "Failed to allocate pktmbuf offload");
9418
9419         /* Set crypto operation data parameters */
9420         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
9421
9422         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
9423
9424         /* set crypto operation source mbuf */
9425         sym_op->m_src = ut_params->ibuf;
9426
9427         /* digest */
9428         sym_op->auth.digest.data = (uint8_t *)rte_pktmbuf_append(
9429                         ut_params->ibuf, reference->digest.len);
9430
9431         TEST_ASSERT_NOT_NULL(sym_op->auth.digest.data,
9432                         "no room to append auth tag");
9433
9434         sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(
9435                         ut_params->ibuf, reference->plaintext.len);
9436
9437         if (auth_generate)
9438                 memset(sym_op->auth.digest.data, 0, reference->digest.len);
9439         else
9440                 memcpy(sym_op->auth.digest.data,
9441                                 reference->digest.data,
9442                                 reference->digest.len);
9443
9444         debug_hexdump(stdout, "digest:",
9445                         sym_op->auth.digest.data,
9446                         reference->digest.len);
9447
9448         sym_op->auth.data.length = reference->plaintext.len;
9449         sym_op->auth.data.offset = 0;
9450
9451         return 0;
9452 }
9453
9454 static int
9455 create_auth_GMAC_operation(struct crypto_testsuite_params *ts_params,
9456                 struct crypto_unittest_params *ut_params,
9457                 const struct test_crypto_vector *reference,
9458                 unsigned int auth_generate)
9459 {
9460         /* Generate Crypto op data structure */
9461         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
9462                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
9463         TEST_ASSERT_NOT_NULL(ut_params->op,
9464                         "Failed to allocate pktmbuf offload");
9465
9466         /* Set crypto operation data parameters */
9467         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
9468
9469         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
9470
9471         /* set crypto operation source mbuf */
9472         sym_op->m_src = ut_params->ibuf;
9473
9474         /* digest */
9475         sym_op->auth.digest.data = (uint8_t *)rte_pktmbuf_append(
9476                         ut_params->ibuf, reference->digest.len);
9477
9478         TEST_ASSERT_NOT_NULL(sym_op->auth.digest.data,
9479                         "no room to append auth tag");
9480
9481         sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(
9482                         ut_params->ibuf, reference->ciphertext.len);
9483
9484         if (auth_generate)
9485                 memset(sym_op->auth.digest.data, 0, reference->digest.len);
9486         else
9487                 memcpy(sym_op->auth.digest.data,
9488                                 reference->digest.data,
9489                                 reference->digest.len);
9490
9491         debug_hexdump(stdout, "digest:",
9492                         sym_op->auth.digest.data,
9493                         reference->digest.len);
9494
9495         rte_memcpy(rte_crypto_op_ctod_offset(ut_params->op, uint8_t *, IV_OFFSET),
9496                         reference->iv.data, reference->iv.len);
9497
9498         sym_op->cipher.data.length = 0;
9499         sym_op->cipher.data.offset = 0;
9500
9501         sym_op->auth.data.length = reference->plaintext.len;
9502         sym_op->auth.data.offset = 0;
9503
9504         return 0;
9505 }
9506
9507 static int
9508 create_cipher_auth_operation(struct crypto_testsuite_params *ts_params,
9509                 struct crypto_unittest_params *ut_params,
9510                 const struct test_crypto_vector *reference,
9511                 unsigned int auth_generate)
9512 {
9513         /* Generate Crypto op data structure */
9514         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
9515                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
9516         TEST_ASSERT_NOT_NULL(ut_params->op,
9517                         "Failed to allocate pktmbuf offload");
9518
9519         /* Set crypto operation data parameters */
9520         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
9521
9522         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
9523
9524         /* set crypto operation source mbuf */
9525         sym_op->m_src = ut_params->ibuf;
9526
9527         /* digest */
9528         sym_op->auth.digest.data = (uint8_t *)rte_pktmbuf_append(
9529                         ut_params->ibuf, reference->digest.len);
9530
9531         TEST_ASSERT_NOT_NULL(sym_op->auth.digest.data,
9532                         "no room to append auth tag");
9533
9534         sym_op->auth.digest.phys_addr = rte_pktmbuf_iova_offset(
9535                         ut_params->ibuf, reference->ciphertext.len);
9536
9537         if (auth_generate)
9538                 memset(sym_op->auth.digest.data, 0, reference->digest.len);
9539         else
9540                 memcpy(sym_op->auth.digest.data,
9541                                 reference->digest.data,
9542                                 reference->digest.len);
9543
9544         debug_hexdump(stdout, "digest:",
9545                         sym_op->auth.digest.data,
9546                         reference->digest.len);
9547
9548         rte_memcpy(rte_crypto_op_ctod_offset(ut_params->op, uint8_t *, IV_OFFSET),
9549                         reference->iv.data, reference->iv.len);
9550
9551         sym_op->cipher.data.length = reference->ciphertext.len;
9552         sym_op->cipher.data.offset = 0;
9553
9554         sym_op->auth.data.length = reference->ciphertext.len;
9555         sym_op->auth.data.offset = 0;
9556
9557         return 0;
9558 }
9559
9560 static int
9561 create_auth_verify_operation(struct crypto_testsuite_params *ts_params,
9562                 struct crypto_unittest_params *ut_params,
9563                 const struct test_crypto_vector *reference)
9564 {
9565         return create_auth_operation(ts_params, ut_params, reference, 0);
9566 }
9567
9568 static int
9569 create_auth_verify_GMAC_operation(
9570                 struct crypto_testsuite_params *ts_params,
9571                 struct crypto_unittest_params *ut_params,
9572                 const struct test_crypto_vector *reference)
9573 {
9574         return create_auth_GMAC_operation(ts_params, ut_params, reference, 0);
9575 }
9576
9577 static int
9578 create_cipher_auth_verify_operation(struct crypto_testsuite_params *ts_params,
9579                 struct crypto_unittest_params *ut_params,
9580                 const struct test_crypto_vector *reference)
9581 {
9582         return create_cipher_auth_operation(ts_params, ut_params, reference, 0);
9583 }
9584
9585 static int
9586 test_authentication_verify_fail_when_data_corruption(
9587                 struct crypto_testsuite_params *ts_params,
9588                 struct crypto_unittest_params *ut_params,
9589                 const struct test_crypto_vector *reference,
9590                 unsigned int data_corrupted)
9591 {
9592         int retval;
9593
9594         uint8_t *plaintext;
9595
9596         /* Create session */
9597         retval = create_auth_session(ut_params,
9598                         ts_params->valid_devs[0],
9599                         reference,
9600                         RTE_CRYPTO_AUTH_OP_VERIFY);
9601         if (retval < 0)
9602                 return retval;
9603
9604         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
9605         TEST_ASSERT_NOT_NULL(ut_params->ibuf,
9606                         "Failed to allocate input buffer in mempool");
9607
9608         /* clear mbuf payload */
9609         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
9610                         rte_pktmbuf_tailroom(ut_params->ibuf));
9611
9612         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
9613                         reference->plaintext.len);
9614         TEST_ASSERT_NOT_NULL(plaintext, "no room to append plaintext");
9615         memcpy(plaintext, reference->plaintext.data, reference->plaintext.len);
9616
9617         debug_hexdump(stdout, "plaintext:", plaintext,
9618                 reference->plaintext.len);
9619
9620         /* Create operation */
9621         retval = create_auth_verify_operation(ts_params, ut_params, reference);
9622
9623         if (retval < 0)
9624                 return retval;
9625
9626         if (data_corrupted)
9627                 data_corruption(plaintext);
9628         else
9629                 tag_corruption(plaintext, reference->plaintext.len);
9630
9631         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
9632                         ut_params->op);
9633         TEST_ASSERT_NOT_NULL(ut_params->op, "failed crypto process");
9634         TEST_ASSERT_EQUAL(ut_params->op->status,
9635                         RTE_CRYPTO_OP_STATUS_AUTH_FAILED,
9636                         "authentication not failed");
9637
9638         ut_params->obuf = ut_params->op->sym->m_src;
9639         TEST_ASSERT_NOT_NULL(ut_params->obuf, "failed to retrieve obuf");
9640
9641         return 0;
9642 }
9643
9644 static int
9645 test_authentication_verify_GMAC_fail_when_corruption(
9646                 struct crypto_testsuite_params *ts_params,
9647                 struct crypto_unittest_params *ut_params,
9648                 const struct test_crypto_vector *reference,
9649                 unsigned int data_corrupted)
9650 {
9651         int retval;
9652         uint8_t *plaintext;
9653
9654         /* Create session */
9655         retval = create_auth_cipher_session(ut_params,
9656                         ts_params->valid_devs[0],
9657                         reference,
9658                         RTE_CRYPTO_AUTH_OP_VERIFY,
9659                         RTE_CRYPTO_CIPHER_OP_DECRYPT);
9660         if (retval < 0)
9661                 return retval;
9662
9663         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
9664         TEST_ASSERT_NOT_NULL(ut_params->ibuf,
9665                         "Failed to allocate input buffer in mempool");
9666
9667         /* clear mbuf payload */
9668         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
9669                         rte_pktmbuf_tailroom(ut_params->ibuf));
9670
9671         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
9672                         reference->plaintext.len);
9673         TEST_ASSERT_NOT_NULL(plaintext, "no room to append plaintext");
9674         memcpy(plaintext, reference->plaintext.data, reference->plaintext.len);
9675
9676         debug_hexdump(stdout, "plaintext:", plaintext,
9677                 reference->plaintext.len);
9678
9679         /* Create operation */
9680         retval = create_auth_verify_GMAC_operation(ts_params,
9681                         ut_params,
9682                         reference);
9683
9684         if (retval < 0)
9685                 return retval;
9686
9687         if (data_corrupted)
9688                 data_corruption(plaintext);
9689         else
9690                 tag_corruption(plaintext, reference->aad.len);
9691
9692         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
9693                         ut_params->op);
9694         TEST_ASSERT_NOT_NULL(ut_params->op, "failed crypto process");
9695         TEST_ASSERT_EQUAL(ut_params->op->status,
9696                         RTE_CRYPTO_OP_STATUS_AUTH_FAILED,
9697                         "authentication not failed");
9698
9699         ut_params->obuf = ut_params->op->sym->m_src;
9700         TEST_ASSERT_NOT_NULL(ut_params->obuf, "failed to retrieve obuf");
9701
9702         return 0;
9703 }
9704
9705 static int
9706 test_authenticated_decryption_fail_when_corruption(
9707                 struct crypto_testsuite_params *ts_params,
9708                 struct crypto_unittest_params *ut_params,
9709                 const struct test_crypto_vector *reference,
9710                 unsigned int data_corrupted)
9711 {
9712         int retval;
9713
9714         uint8_t *ciphertext;
9715
9716         /* Create session */
9717         retval = create_auth_cipher_session(ut_params,
9718                         ts_params->valid_devs[0],
9719                         reference,
9720                         RTE_CRYPTO_AUTH_OP_VERIFY,
9721                         RTE_CRYPTO_CIPHER_OP_DECRYPT);
9722         if (retval < 0)
9723                 return retval;
9724
9725         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
9726         TEST_ASSERT_NOT_NULL(ut_params->ibuf,
9727                         "Failed to allocate input buffer in mempool");
9728
9729         /* clear mbuf payload */
9730         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
9731                         rte_pktmbuf_tailroom(ut_params->ibuf));
9732
9733         ciphertext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
9734                         reference->ciphertext.len);
9735         TEST_ASSERT_NOT_NULL(ciphertext, "no room to append ciphertext");
9736         memcpy(ciphertext, reference->ciphertext.data,
9737                         reference->ciphertext.len);
9738
9739         /* Create operation */
9740         retval = create_cipher_auth_verify_operation(ts_params,
9741                         ut_params,
9742                         reference);
9743
9744         if (retval < 0)
9745                 return retval;
9746
9747         if (data_corrupted)
9748                 data_corruption(ciphertext);
9749         else
9750                 tag_corruption(ciphertext, reference->ciphertext.len);
9751
9752         ut_params->op = process_crypto_request(ts_params->valid_devs[0],
9753                         ut_params->op);
9754
9755         TEST_ASSERT_NOT_NULL(ut_params->op, "failed crypto process");
9756         TEST_ASSERT_EQUAL(ut_params->op->status,
9757                         RTE_CRYPTO_OP_STATUS_AUTH_FAILED,
9758                         "authentication not failed");
9759
9760         ut_params->obuf = ut_params->op->sym->m_src;
9761         TEST_ASSERT_NOT_NULL(ut_params->obuf, "failed to retrieve obuf");
9762
9763         return 0;
9764 }
9765
9766 static int
9767 create_aead_operation_SGL(enum rte_crypto_aead_operation op,
9768                 const struct aead_test_data *tdata,
9769                 void *digest_mem, uint64_t digest_phys)
9770 {
9771         struct crypto_testsuite_params *ts_params = &testsuite_params;
9772         struct crypto_unittest_params *ut_params = &unittest_params;
9773
9774         const unsigned int auth_tag_len = tdata->auth_tag.len;
9775         const unsigned int iv_len = tdata->iv.len;
9776         unsigned int aad_len = tdata->aad.len;
9777
9778         /* Generate Crypto op data structure */
9779         ut_params->op = rte_crypto_op_alloc(ts_params->op_mpool,
9780                         RTE_CRYPTO_OP_TYPE_SYMMETRIC);
9781         TEST_ASSERT_NOT_NULL(ut_params->op,
9782                 "Failed to allocate symmetric crypto operation struct");
9783
9784         struct rte_crypto_sym_op *sym_op = ut_params->op->sym;
9785
9786         sym_op->aead.digest.data = digest_mem;
9787
9788         TEST_ASSERT_NOT_NULL(sym_op->aead.digest.data,
9789                         "no room to append digest");
9790
9791         sym_op->aead.digest.phys_addr = digest_phys;
9792
9793         if (op == RTE_CRYPTO_AEAD_OP_DECRYPT) {
9794                 rte_memcpy(sym_op->aead.digest.data, tdata->auth_tag.data,
9795                                 auth_tag_len);
9796                 debug_hexdump(stdout, "digest:",
9797                                 sym_op->aead.digest.data,
9798                                 auth_tag_len);
9799         }
9800
9801         /* Append aad data */
9802         if (tdata->algo == RTE_CRYPTO_AEAD_AES_CCM) {
9803                 uint8_t *iv_ptr = rte_crypto_op_ctod_offset(ut_params->op,
9804                                 uint8_t *, IV_OFFSET);
9805
9806                 /* Copy IV 1 byte after the IV pointer, according to the API */
9807                 rte_memcpy(iv_ptr + 1, tdata->iv.data, iv_len);
9808
9809                 aad_len = RTE_ALIGN_CEIL(aad_len + 18, 16);
9810
9811                 sym_op->aead.aad.data = (uint8_t *)rte_pktmbuf_prepend(
9812                                 ut_params->ibuf, aad_len);
9813                 TEST_ASSERT_NOT_NULL(sym_op->aead.aad.data,
9814                                 "no room to prepend aad");
9815                 sym_op->aead.aad.phys_addr = rte_pktmbuf_iova(
9816                                 ut_params->ibuf);
9817
9818                 memset(sym_op->aead.aad.data, 0, aad_len);
9819                 /* Copy AAD 18 bytes after the AAD pointer, according to the API */
9820                 rte_memcpy(sym_op->aead.aad.data, tdata->aad.data, aad_len);
9821
9822                 debug_hexdump(stdout, "iv:", iv_ptr, iv_len);
9823                 debug_hexdump(stdout, "aad:",
9824                                 sym_op->aead.aad.data, aad_len);
9825         } else {
9826                 uint8_t *iv_ptr = rte_crypto_op_ctod_offset(ut_params->op,
9827                                 uint8_t *, IV_OFFSET);
9828
9829                 rte_memcpy(iv_ptr, tdata->iv.data, iv_len);
9830
9831                 sym_op->aead.aad.data = (uint8_t *)rte_pktmbuf_prepend(
9832                                 ut_params->ibuf, aad_len);
9833                 TEST_ASSERT_NOT_NULL(sym_op->aead.aad.data,
9834                                 "no room to prepend aad");
9835                 sym_op->aead.aad.phys_addr = rte_pktmbuf_iova(
9836                                 ut_params->ibuf);
9837
9838                 memset(sym_op->aead.aad.data, 0, aad_len);
9839                 rte_memcpy(sym_op->aead.aad.data, tdata->aad.data, aad_len);
9840
9841                 debug_hexdump(stdout, "iv:", iv_ptr, iv_len);
9842                 debug_hexdump(stdout, "aad:",
9843                                 sym_op->aead.aad.data, aad_len);
9844         }
9845
9846         sym_op->aead.data.length = tdata->plaintext.len;
9847         sym_op->aead.data.offset = aad_len;
9848
9849         return 0;
9850 }
9851
9852 #define SGL_MAX_NO      16
9853
9854 static int
9855 test_authenticated_encryption_SGL(const struct aead_test_data *tdata,
9856                 const int oop, uint32_t fragsz, uint32_t fragsz_oop)
9857 {
9858         struct crypto_testsuite_params *ts_params = &testsuite_params;
9859         struct crypto_unittest_params *ut_params = &unittest_params;
9860         struct rte_mbuf *buf, *buf_oop = NULL, *buf_last_oop = NULL;
9861         int retval;
9862         int to_trn = 0;
9863         int to_trn_tbl[SGL_MAX_NO];
9864         int segs = 1;
9865         unsigned int trn_data = 0;
9866         uint8_t *plaintext, *ciphertext, *auth_tag;
9867
9868         if (fragsz > tdata->plaintext.len)
9869                 fragsz = tdata->plaintext.len;
9870
9871         uint16_t plaintext_len = fragsz;
9872         uint16_t frag_size_oop = fragsz_oop ? fragsz_oop : fragsz;
9873
9874         if (fragsz_oop > tdata->plaintext.len)
9875                 frag_size_oop = tdata->plaintext.len;
9876
9877         int ecx = 0;
9878         void *digest_mem = NULL;
9879
9880         uint32_t prepend_len = tdata->aad.len;
9881
9882         if (tdata->plaintext.len % fragsz != 0) {
9883                 if (tdata->plaintext.len / fragsz + 1 > SGL_MAX_NO)
9884                         return 1;
9885         }       else {
9886                 if (tdata->plaintext.len / fragsz > SGL_MAX_NO)
9887                         return 1;
9888         }
9889
9890         /*
9891          * For out-op-place we need to alloc another mbuf
9892          */
9893         if (oop) {
9894                 ut_params->obuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
9895                 rte_pktmbuf_append(ut_params->obuf,
9896                                 frag_size_oop + prepend_len);
9897                 buf_oop = ut_params->obuf;
9898         }
9899
9900         /* Create AEAD session */
9901         retval = create_aead_session(ts_params->valid_devs[0],
9902                         tdata->algo,
9903                         RTE_CRYPTO_AEAD_OP_ENCRYPT,
9904                         tdata->key.data, tdata->key.len,
9905                         tdata->aad.len, tdata->auth_tag.len,
9906                         tdata->iv.len);
9907         if (retval < 0)
9908                 return retval;
9909
9910         ut_params->ibuf = rte_pktmbuf_alloc(ts_params->mbuf_pool);
9911
9912         /* clear mbuf payload */
9913         memset(rte_pktmbuf_mtod(ut_params->ibuf, uint8_t *), 0,
9914                         rte_pktmbuf_tailroom(ut_params->ibuf));
9915
9916         plaintext = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
9917                         plaintext_len);
9918
9919         memcpy(plaintext, tdata->plaintext.data, plaintext_len);
9920
9921         trn_data += plaintext_len;
9922
9923         buf = ut_params->ibuf;
9924
9925         /*
9926          * Loop until no more fragments
9927          */
9928
9929         while (trn_data < tdata->plaintext.len) {
9930                 ++segs;
9931                 to_trn = (tdata->plaintext.len - trn_data < fragsz) ?
9932                                 (tdata->plaintext.len - trn_data) : fragsz;
9933
9934                 to_trn_tbl[ecx++] = to_trn;
9935
9936                 buf->next = rte_pktmbuf_alloc(ts_params->mbuf_pool);
9937                 buf = buf->next;
9938
9939                 memset(rte_pktmbuf_mtod(buf, uint8_t *), 0,
9940                                 rte_pktmbuf_tailroom(buf));
9941
9942                 /* OOP */
9943                 if (oop && !fragsz_oop) {
9944                         buf_last_oop = buf_oop->next =
9945                                         rte_pktmbuf_alloc(ts_params->mbuf_pool);
9946                         buf_oop = buf_oop->next;
9947                         memset(rte_pktmbuf_mtod(buf_oop, uint8_t *),
9948                                         0, rte_pktmbuf_tailroom(buf_oop));
9949                         rte_pktmbuf_append(buf_oop, to_trn);
9950                 }
9951
9952                 plaintext = (uint8_t *)rte_pktmbuf_append(buf,
9953                                 to_trn);
9954
9955                 memcpy(plaintext, tdata->plaintext.data + trn_data,
9956                                 to_trn);
9957                 trn_data += to_trn;
9958                 if (trn_data  == tdata->plaintext.len) {
9959                         if (oop) {
9960                                 if (!fragsz_oop)
9961                                         digest_mem = rte_pktmbuf_append(buf_oop,
9962                                                 tdata->auth_tag.len);
9963                         } else
9964                                 digest_mem = (uint8_t *)rte_pktmbuf_append(buf,
9965                                         tdata->auth_tag.len);
9966                 }
9967         }
9968
9969         uint64_t digest_phys = 0;
9970
9971         ut_params->ibuf->nb_segs = segs;
9972
9973         segs = 1;
9974         if (fragsz_oop && oop) {
9975                 to_trn = 0;
9976                 ecx = 0;
9977
9978                 if (frag_size_oop == tdata->plaintext.len) {
9979                         digest_mem = rte_pktmbuf_append(ut_params->obuf,
9980                                 tdata->auth_tag.len);
9981
9982                         digest_phys = rte_pktmbuf_iova_offset(
9983                                         ut_params->obuf,
9984                                         tdata->plaintext.len + prepend_len);
9985                 }
9986
9987                 trn_data = frag_size_oop;
9988                 while (trn_data < tdata->plaintext.len) {
9989                         ++segs;
9990                         to_trn =
9991                                 (tdata->plaintext.len - trn_data <
9992                                                 frag_size_oop) ?
9993                                 (tdata->plaintext.len - trn_data) :
9994                                                 frag_size_oop;
9995
9996                         to_trn_tbl[ecx++] = to_trn;
9997
9998                         buf_last_oop = buf_oop->next =
9999                                         rte_pktmbuf_alloc(ts_params->mbuf_pool);
10000                         buf_oop = buf_oop->next;
10001                         memset(rte_pktmbuf_mtod(buf_oop, uint8_t *),
10002                                         0, rte_pktmbuf_tailroom(buf_oop));
10003                         rte_pktmbuf_append(buf_oop, to_trn);
10004
10005                         trn_data += to_trn;
10006
10007                         if (trn_data  == tdata->plaintext.len) {
10008                                 digest_mem = rte_pktmbuf_append(buf_oop,
10009                                         tdata->auth_tag.len);
10010                         }
10011                 }
10012
10013                 ut_params->obuf->nb_segs = segs;
10014         }
10015
10016         /*
10017          * Place digest at the end of the last buffer
10018          */
10019         if (!digest_phys)
10020                 digest_phys = rte_pktmbuf_iova(buf) + to_trn;
10021         if (oop && buf_last_oop)
10022                 digest_phys = rte_pktmbuf_iova(buf_last_oop) + to_trn;
10023
10024         if (!digest_mem && !oop) {
10025                 digest_mem = (uint8_t *)rte_pktmbuf_append(ut_params->ibuf,
10026                                 + tdata->auth_tag.len);
10027                 digest_phys = rte_pktmbuf_iova_offset(ut_params->ibuf,
10028                                 tdata->plaintext.len);
10029         }
10030
10031         /* Create AEAD operation */
10032         retval = create_aead_operation_SGL(RTE_CRYPTO_AEAD_OP_ENCRYPT,
10033                         tdata, digest_mem, digest_phys);
10034
10035         if (retval < 0)
10036                 return retval;
10037
10038         rte_crypto_op_attach_sym_session(ut_params->op, ut_params->sess);
10039
10040         ut_params->op->sym->m_src = ut_params->ibuf;
10041         if (oop)
10042                 ut_params->op->sym->m_dst = ut_params->obuf;
10043
10044         /* Process crypto operation */
10045         TEST_ASSERT_NOT_NULL(process_crypto_request(ts_params->valid_devs[0],
10046                         ut_params->op), "failed to process sym crypto op");
10047
10048         TEST_ASSERT_EQUAL(ut_params->op->status, RTE_CRYPTO_OP_STATUS_SUCCESS,
10049                         "crypto op processing failed");
10050
10051
10052         ciphertext = rte_pktmbuf_mtod_offset(ut_params->op->sym->m_src,
10053                         uint8_t *, prepend_len);
10054         if (oop) {
10055                 ciphertext = rte_pktmbuf_mtod_offset(ut_params->op->sym->m_dst,
10056                                 uint8_t *, prepend_len);
10057         }
10058
10059         if (fragsz_oop)
10060                 fragsz = fragsz_oop;
10061
10062         TEST_ASSERT_BUFFERS_ARE_EQUAL(
10063                         ciphertext,
10064                         tdata->ciphertext.data,
10065                         fragsz,
10066                         "Ciphertext data not as expected");
10067
10068         buf = ut_params->op->sym->m_src->next;
10069         if (oop)
10070                 buf = ut_params->op->sym->m_dst->next;
10071
10072         unsigned int off = fragsz;
10073
10074         ecx = 0;
10075         while (buf) {
10076                 ciphertext = rte_pktmbuf_mtod(buf,
10077                                 uint8_t *);
10078
10079                 TEST_ASSERT_BUFFERS_ARE_EQUAL(
10080                                 ciphertext,
10081                                 tdata->ciphertext.data + off,
10082                                 to_trn_tbl[ecx],
10083                                 "Ciphertext data not as expected");
10084
10085                 off += to_trn_tbl[ecx++];
10086                 buf = buf->next;
10087         }
10088
10089         auth_tag = digest_mem;
10090         TEST_ASSERT_BUFFERS_ARE_EQUAL(
10091                         auth_tag,
10092                         tdata->auth_tag.data,
10093                         tdata->auth_tag.len,
10094                         "Generated auth tag not as expected");
10095
10096         return 0;
10097 }
10098
10099 static int
10100 test_AES_GCM_auth_encrypt_SGL_out_of_place_400B_400B(void)
10101 {
10102         return test_authenticated_encryption_SGL(
10103                         &gcm_test_case_SGL_1, OUT_OF_PLACE, 400, 400);
10104 }
10105
10106 static int
10107 test_AES_GCM_auth_encrypt_SGL_out_of_place_1500B_2000B(void)
10108 {
10109         return test_authenticated_encryption_SGL(
10110                         &gcm_test_case_SGL_1, OUT_OF_PLACE, 1500, 2000);
10111 }
10112
10113 static int
10114 test_AES_GCM_auth_encrypt_SGL_out_of_place_400B_1seg(void)
10115 {
10116         return test_authenticated_encryption_SGL(
10117                         &gcm_test_case_8, OUT_OF_PLACE, 400,
10118                         gcm_test_case_8.plaintext.len);
10119 }
10120
10121 static int
10122 test_AES_GCM_auth_encrypt_SGL_in_place_1500B(void)
10123 {
10124
10125         return test_authenticated_encryption_SGL(
10126                         &gcm_test_case_SGL_1, IN_PLACE, 1500, 0);
10127 }
10128
10129 static int
10130 test_authentication_verify_fail_when_data_corrupted(
10131                 struct crypto_testsuite_params *ts_params,
10132                 struct crypto_unittest_params *ut_params,
10133                 const struct test_crypto_vector *reference)
10134 {
10135         return test_authentication_verify_fail_when_data_corruption(
10136                         ts_params, ut_params, reference, 1);
10137 }
10138
10139 static int
10140 test_authentication_verify_fail_when_tag_corrupted(
10141                 struct crypto_testsuite_params *ts_params,
10142                 struct crypto_unittest_params *ut_params,
10143                 const struct test_crypto_vector *reference)
10144 {
10145         return test_authentication_verify_fail_when_data_corruption(
10146                         ts_params, ut_params, reference, 0);
10147 }
10148
10149 static int
10150 test_authentication_verify_GMAC_fail_when_data_corrupted(
10151                 struct crypto_testsuite_params *ts_params,
10152                 struct crypto_unittest_params *ut_params,
10153                 const struct test_crypto_vector *reference)
10154 {
10155         return test_authentication_verify_GMAC_fail_when_corruption(
10156                         ts_params, ut_params, reference, 1);
10157 }
10158
10159 static int
10160 test_authentication_verify_GMAC_fail_when_tag_corrupted(
10161                 struct crypto_testsuite_params *ts_params,
10162                 struct crypto_unittest_params *ut_params,
10163                 const struct test_crypto_vector *reference)
10164 {
10165         return test_authentication_verify_GMAC_fail_when_corruption(
10166                         ts_params, ut_params, reference, 0);
10167 }
10168
10169 static int
10170 test_authenticated_decryption_fail_when_data_corrupted(
10171                 struct crypto_testsuite_params *ts_params,
10172                 struct crypto_unittest_params *ut_params,
10173                 const struct test_crypto_vector *reference)
10174 {
10175         return test_authenticated_decryption_fail_when_corruption(
10176                         ts_params, ut_params, reference, 1);
10177 }
10178
10179 static int
10180 test_authenticated_decryption_fail_when_tag_corrupted(
10181                 struct crypto_testsuite_params *ts_params,
10182                 struct crypto_unittest_params *ut_params,
10183                 const struct test_crypto_vector *reference)
10184 {
10185         return test_authenticated_decryption_fail_when_corruption(
10186                         ts_params, ut_params, reference, 0);
10187 }
10188
10189 static int
10190 authentication_verify_HMAC_SHA1_fail_data_corrupt(void)
10191 {
10192         return test_authentication_verify_fail_when_data_corrupted(
10193                         &testsuite_params, &unittest_params,
10194                         &hmac_sha1_test_crypto_vector);
10195 }
10196
10197 static int
10198 authentication_verify_HMAC_SHA1_fail_tag_corrupt(void)
10199 {
10200         return test_authentication_verify_fail_when_tag_corrupted(
10201                         &testsuite_params, &unittest_params,
10202                         &hmac_sha1_test_crypto_vector);
10203 }
10204
10205 static int
10206 authentication_verify_AES128_GMAC_fail_data_corrupt(void)
10207 {
10208         return test_authentication_verify_GMAC_fail_when_data_corrupted(
10209                         &testsuite_params, &unittest_params,
10210                         &aes128_gmac_test_vector);
10211 }
10212
10213 static int
10214 authentication_verify_AES128_GMAC_fail_tag_corrupt(void)
10215 {
10216         return test_authentication_verify_GMAC_fail_when_tag_corrupted(
10217                         &testsuite_params, &unittest_params,
10218                         &aes128_gmac_test_vector);
10219 }
10220
10221 static int
10222 auth_decryption_AES128CBC_HMAC_SHA1_fail_data_corrupt(void)
10223 {
10224         return test_authenticated_decryption_fail_when_data_corrupted(
10225                         &testsuite_params,
10226                         &unittest_params,
10227                         &aes128cbc_hmac_sha1_test_vector);
10228 }
10229
10230 static int
10231 auth_decryption_AES128CBC_HMAC_SHA1_fail_tag_corrupt(void)
10232 {
10233         return test_authenticated_decryption_fail_when_tag_corrupted(
10234                         &testsuite_params,
10235                         &unittest_params,
10236                         &aes128cbc_hmac_sha1_test_vector);
10237 }
10238
10239 #ifdef RTE_LIBRTE_PMD_CRYPTO_SCHEDULER
10240
10241 /* global AESNI slave IDs for the scheduler test */
10242 uint8_t aesni_ids[2];
10243
10244 static int
10245 test_scheduler_attach_slave_op(void)
10246 {
10247         struct crypto_testsuite_params *ts_params = &testsuite_params;
10248         uint8_t sched_id = ts_params->valid_devs[0];
10249         uint32_t nb_devs, i, nb_devs_attached = 0;
10250         int ret;
10251         char vdev_name[32];
10252
10253         /* create 2 AESNI_MB if necessary */
10254         nb_devs = rte_cryptodev_device_count_by_driver(
10255                         rte_cryptodev_driver_id_get(
10256                         RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD)));
10257         if (nb_devs < 2) {
10258                 for (i = nb_devs; i < 2; i++) {
10259                         snprintf(vdev_name, sizeof(vdev_name), "%s_%u",
10260                                         RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD),
10261                                         i);
10262                         ret = rte_vdev_init(vdev_name, NULL);
10263
10264                         TEST_ASSERT(ret == 0,
10265                                 "Failed to create instance %u of"
10266                                 " pmd : %s",
10267                                 i, RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD));
10268                 }
10269         }
10270
10271         /* attach 2 AESNI_MB cdevs */
10272         for (i = 0; i < rte_cryptodev_count() && nb_devs_attached < 2;
10273                         i++) {
10274                 struct rte_cryptodev_info info;
10275                 unsigned int session_size;
10276
10277                 rte_cryptodev_info_get(i, &info);
10278                 if (info.driver_id != rte_cryptodev_driver_id_get(
10279                                 RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD)))
10280                         continue;
10281
10282                 session_size = rte_cryptodev_sym_get_private_session_size(i);
10283                 /*
10284                  * Create the session mempool again, since now there are new devices
10285                  * to use the mempool.
10286                  */
10287                 if (ts_params->session_mpool) {
10288                         rte_mempool_free(ts_params->session_mpool);
10289                         ts_params->session_mpool = NULL;
10290                 }
10291                 if (ts_params->session_priv_mpool) {
10292                         rte_mempool_free(ts_params->session_priv_mpool);
10293                         ts_params->session_priv_mpool = NULL;
10294                 }
10295
10296                 if (info.sym.max_nb_sessions != 0 &&
10297                                 info.sym.max_nb_sessions < MAX_NB_SESSIONS) {
10298                         RTE_LOG(ERR, USER1,
10299                                         "Device does not support "
10300                                         "at least %u sessions\n",
10301                                         MAX_NB_SESSIONS);
10302                         return TEST_FAILED;
10303                 }
10304                 /*
10305                  * Create mempool with maximum number of sessions,
10306                  * to include the session headers
10307                  */
10308                 if (ts_params->session_mpool == NULL) {
10309                         ts_params->session_mpool =
10310                                 rte_cryptodev_sym_session_pool_create(
10311                                                 "test_sess_mp",
10312                                                 MAX_NB_SESSIONS, 0, 0, 0,
10313                                                 SOCKET_ID_ANY);
10314                         TEST_ASSERT_NOT_NULL(ts_params->session_mpool,
10315                                         "session mempool allocation failed");
10316                 }
10317
10318                 /*
10319                  * Create mempool with maximum number of sessions,
10320                  * to include device specific session private data
10321                  */
10322                 if (ts_params->session_priv_mpool == NULL) {
10323                         ts_params->session_priv_mpool = rte_mempool_create(
10324                                         "test_sess_mp_priv",
10325                                         MAX_NB_SESSIONS,
10326                                         session_size,
10327                                         0, 0, NULL, NULL, NULL,
10328                                         NULL, SOCKET_ID_ANY,
10329                                         0);
10330
10331                         TEST_ASSERT_NOT_NULL(ts_params->session_priv_mpool,
10332                                         "session mempool allocation failed");
10333                 }
10334
10335                 ts_params->qp_conf.mp_session = ts_params->session_mpool;
10336                 ts_params->qp_conf.mp_session_private =
10337                                 ts_params->session_priv_mpool;
10338
10339                 ret = rte_cryptodev_scheduler_slave_attach(sched_id,
10340                                 (uint8_t)i);
10341
10342                 TEST_ASSERT(ret == 0,
10343                         "Failed to attach device %u of pmd : %s", i,
10344                         RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD));
10345
10346                 aesni_ids[nb_devs_attached] = (uint8_t)i;
10347
10348                 nb_devs_attached++;
10349         }
10350
10351         return 0;
10352 }
10353
10354 static int
10355 test_scheduler_detach_slave_op(void)
10356 {
10357         struct crypto_testsuite_params *ts_params = &testsuite_params;
10358         uint8_t sched_id = ts_params->valid_devs[0];
10359         uint32_t i;
10360         int ret;
10361
10362         for (i = 0; i < 2; i++) {
10363                 ret = rte_cryptodev_scheduler_slave_detach(sched_id,
10364                                 aesni_ids[i]);
10365                 TEST_ASSERT(ret == 0,
10366                         "Failed to detach device %u", aesni_ids[i]);
10367         }
10368
10369         return 0;
10370 }
10371
10372 static int
10373 test_scheduler_mode_op(enum rte_cryptodev_scheduler_mode scheduler_mode)
10374 {
10375         struct crypto_testsuite_params *ts_params = &testsuite_params;
10376         uint8_t sched_id = ts_params->valid_devs[0];
10377         /* set mode */
10378         return rte_cryptodev_scheduler_mode_set(sched_id,
10379                 scheduler_mode);
10380 }
10381
10382 static int
10383 test_scheduler_mode_roundrobin_op(void)
10384 {
10385         TEST_ASSERT(test_scheduler_mode_op(CDEV_SCHED_MODE_ROUNDROBIN) ==
10386                         0, "Failed to set roundrobin mode");
10387         return 0;
10388
10389 }
10390
10391 static int
10392 test_scheduler_mode_multicore_op(void)
10393 {
10394         TEST_ASSERT(test_scheduler_mode_op(CDEV_SCHED_MODE_MULTICORE) ==
10395                         0, "Failed to set multicore mode");
10396
10397         return 0;
10398 }
10399
10400 static int
10401 test_scheduler_mode_failover_op(void)
10402 {
10403         TEST_ASSERT(test_scheduler_mode_op(CDEV_SCHED_MODE_FAILOVER) ==
10404                         0, "Failed to set failover mode");
10405
10406         return 0;
10407 }
10408
10409 static int
10410 test_scheduler_mode_pkt_size_distr_op(void)
10411 {
10412         TEST_ASSERT(test_scheduler_mode_op(CDEV_SCHED_MODE_PKT_SIZE_DISTR) ==
10413                         0, "Failed to set pktsize mode");
10414
10415         return 0;
10416 }
10417
10418 static struct unit_test_suite cryptodev_scheduler_testsuite  = {
10419         .suite_name = "Crypto Device Scheduler Unit Test Suite",
10420         .setup = testsuite_setup,
10421         .teardown = testsuite_teardown,
10422         .unit_test_cases = {
10423                 /* Multi Core */
10424                 TEST_CASE_ST(NULL, NULL, test_scheduler_attach_slave_op),
10425                 TEST_CASE_ST(NULL, NULL, test_scheduler_mode_multicore_op),
10426                 TEST_CASE_ST(ut_setup, ut_teardown,
10427                                         test_AES_chain_scheduler_all),
10428                 TEST_CASE_ST(ut_setup, ut_teardown,
10429                                         test_AES_cipheronly_scheduler_all),
10430                 TEST_CASE_ST(ut_setup, ut_teardown,
10431                                         test_authonly_scheduler_all),
10432                 TEST_CASE_ST(NULL, NULL, test_scheduler_detach_slave_op),
10433
10434                 /* Round Robin */
10435                 TEST_CASE_ST(NULL, NULL, test_scheduler_attach_slave_op),
10436                 TEST_CASE_ST(NULL, NULL, test_scheduler_mode_roundrobin_op),
10437                 TEST_CASE_ST(ut_setup, ut_teardown,
10438                                 test_AES_chain_scheduler_all),
10439                 TEST_CASE_ST(ut_setup, ut_teardown,
10440                                 test_AES_cipheronly_scheduler_all),
10441                 TEST_CASE_ST(ut_setup, ut_teardown,
10442                                 test_authonly_scheduler_all),
10443                 TEST_CASE_ST(NULL, NULL, test_scheduler_detach_slave_op),
10444
10445                 /* Fail over */
10446                 TEST_CASE_ST(NULL, NULL, test_scheduler_attach_slave_op),
10447                 TEST_CASE_ST(NULL, NULL, test_scheduler_mode_failover_op),
10448                 TEST_CASE_ST(ut_setup, ut_teardown,
10449                                         test_AES_chain_scheduler_all),
10450                 TEST_CASE_ST(ut_setup, ut_teardown,
10451                                         test_AES_cipheronly_scheduler_all),
10452                 TEST_CASE_ST(ut_setup, ut_teardown,
10453                                         test_authonly_scheduler_all),
10454                 TEST_CASE_ST(NULL, NULL, test_scheduler_detach_slave_op),
10455
10456                 /* PKT SIZE */
10457                 TEST_CASE_ST(NULL, NULL, test_scheduler_attach_slave_op),
10458                 TEST_CASE_ST(NULL, NULL, test_scheduler_mode_pkt_size_distr_op),
10459                 TEST_CASE_ST(ut_setup, ut_teardown,
10460                                         test_AES_chain_scheduler_all),
10461                 TEST_CASE_ST(ut_setup, ut_teardown,
10462                                         test_AES_cipheronly_scheduler_all),
10463                 TEST_CASE_ST(ut_setup, ut_teardown,
10464                                         test_authonly_scheduler_all),
10465                 TEST_CASE_ST(NULL, NULL, test_scheduler_detach_slave_op),
10466
10467                 TEST_CASES_END() /**< NULL terminate unit test array */
10468         }
10469 };
10470
10471 #endif /* RTE_LIBRTE_PMD_CRYPTO_SCHEDULER */
10472
10473 static struct unit_test_suite cryptodev_qat_testsuite  = {
10474         .suite_name = "Crypto QAT Unit Test Suite",
10475         .setup = testsuite_setup,
10476         .teardown = testsuite_teardown,
10477         .unit_test_cases = {
10478                 TEST_CASE_ST(ut_setup, ut_teardown,
10479                                 test_device_configure_invalid_dev_id),
10480                 TEST_CASE_ST(ut_setup, ut_teardown,
10481                                 test_device_configure_invalid_queue_pair_ids),
10482                 TEST_CASE_ST(ut_setup, ut_teardown,
10483                                 test_queue_pair_descriptor_setup),
10484                 TEST_CASE_ST(ut_setup, ut_teardown,
10485                                 test_multi_session),
10486
10487                 TEST_CASE_ST(ut_setup, ut_teardown, test_AES_chain_qat_all),
10488                 TEST_CASE_ST(ut_setup, ut_teardown,
10489                                                 test_AES_cipheronly_qat_all),
10490                 TEST_CASE_ST(ut_setup, ut_teardown, test_3DES_chain_qat_all),
10491                 TEST_CASE_ST(ut_setup, ut_teardown,
10492                                                 test_3DES_cipheronly_qat_all),
10493                 TEST_CASE_ST(ut_setup, ut_teardown,
10494                                                 test_DES_cipheronly_qat_all),
10495                 TEST_CASE_ST(ut_setup, ut_teardown,
10496                                                 test_AES_docsis_qat_all),
10497                 TEST_CASE_ST(ut_setup, ut_teardown,
10498                                                 test_DES_docsis_qat_all),
10499                 TEST_CASE_ST(ut_setup, ut_teardown, test_authonly_qat_all),
10500                 TEST_CASE_ST(ut_setup, ut_teardown, test_stats),
10501
10502                 /** AES CCM Authenticated Encryption 128 bits key */
10503                 TEST_CASE_ST(ut_setup, ut_teardown,
10504                         test_AES_CCM_authenticated_encryption_test_case_128_1),
10505                 TEST_CASE_ST(ut_setup, ut_teardown,
10506                         test_AES_CCM_authenticated_encryption_test_case_128_2),
10507                 TEST_CASE_ST(ut_setup, ut_teardown,
10508                         test_AES_CCM_authenticated_encryption_test_case_128_3),
10509
10510                 /** AES CCM Authenticated Decryption 128 bits key*/
10511                 TEST_CASE_ST(ut_setup, ut_teardown,
10512                         test_AES_CCM_authenticated_decryption_test_case_128_1),
10513                 TEST_CASE_ST(ut_setup, ut_teardown,
10514                         test_AES_CCM_authenticated_decryption_test_case_128_2),
10515                 TEST_CASE_ST(ut_setup, ut_teardown,
10516                         test_AES_CCM_authenticated_decryption_test_case_128_3),
10517
10518                 /** AES GCM Authenticated Encryption */
10519                 TEST_CASE_ST(ut_setup, ut_teardown,
10520                         test_AES_GCM_auth_encrypt_SGL_in_place_1500B),
10521                 TEST_CASE_ST(ut_setup, ut_teardown,
10522                         test_AES_GCM_auth_encrypt_SGL_out_of_place_400B_400B),
10523                 TEST_CASE_ST(ut_setup, ut_teardown,
10524                         test_AES_GCM_auth_encrypt_SGL_out_of_place_1500B_2000B),
10525                 TEST_CASE_ST(ut_setup, ut_teardown,
10526                         test_AES_GCM_authenticated_encryption_test_case_1),
10527                 TEST_CASE_ST(ut_setup, ut_teardown,
10528                         test_AES_GCM_authenticated_encryption_test_case_2),
10529                 TEST_CASE_ST(ut_setup, ut_teardown,
10530                         test_AES_GCM_authenticated_encryption_test_case_3),
10531                 TEST_CASE_ST(ut_setup, ut_teardown,
10532                         test_AES_GCM_authenticated_encryption_test_case_4),
10533                 TEST_CASE_ST(ut_setup, ut_teardown,
10534                         test_AES_GCM_authenticated_encryption_test_case_5),
10535                 TEST_CASE_ST(ut_setup, ut_teardown,
10536                         test_AES_GCM_authenticated_encryption_test_case_6),
10537                 TEST_CASE_ST(ut_setup, ut_teardown,
10538                         test_AES_GCM_authenticated_encryption_test_case_7),
10539
10540                 /** AES GCM Authenticated Decryption */
10541                 TEST_CASE_ST(ut_setup, ut_teardown,
10542                         test_AES_GCM_authenticated_decryption_test_case_1),
10543                 TEST_CASE_ST(ut_setup, ut_teardown,
10544                         test_AES_GCM_authenticated_decryption_test_case_2),
10545                 TEST_CASE_ST(ut_setup, ut_teardown,
10546                         test_AES_GCM_authenticated_decryption_test_case_3),
10547                 TEST_CASE_ST(ut_setup, ut_teardown,
10548                         test_AES_GCM_authenticated_decryption_test_case_4),
10549                 TEST_CASE_ST(ut_setup, ut_teardown,
10550                         test_AES_GCM_authenticated_decryption_test_case_5),
10551                 TEST_CASE_ST(ut_setup, ut_teardown,
10552                         test_AES_GCM_authenticated_decryption_test_case_6),
10553                 TEST_CASE_ST(ut_setup, ut_teardown,
10554                         test_AES_GCM_authenticated_decryption_test_case_7),
10555
10556                 /** AES GCM Authenticated Encryption 192 bits key */
10557                 TEST_CASE_ST(ut_setup, ut_teardown,
10558                         test_AES_GCM_auth_encryption_test_case_192_1),
10559                 TEST_CASE_ST(ut_setup, ut_teardown,
10560                         test_AES_GCM_auth_encryption_test_case_192_2),
10561                 TEST_CASE_ST(ut_setup, ut_teardown,
10562                         test_AES_GCM_auth_encryption_test_case_192_3),
10563                 TEST_CASE_ST(ut_setup, ut_teardown,
10564                         test_AES_GCM_auth_encryption_test_case_192_4),
10565                 TEST_CASE_ST(ut_setup, ut_teardown,
10566                         test_AES_GCM_auth_encryption_test_case_192_5),
10567                 TEST_CASE_ST(ut_setup, ut_teardown,
10568                         test_AES_GCM_auth_encryption_test_case_192_6),
10569                 TEST_CASE_ST(ut_setup, ut_teardown,
10570                         test_AES_GCM_auth_encryption_test_case_192_7),
10571
10572                 /** AES GCM Authenticated Decryption 192 bits key */
10573                 TEST_CASE_ST(ut_setup, ut_teardown,
10574                         test_AES_GCM_auth_decryption_test_case_192_1),
10575                 TEST_CASE_ST(ut_setup, ut_teardown,
10576                         test_AES_GCM_auth_decryption_test_case_192_2),
10577                 TEST_CASE_ST(ut_setup, ut_teardown,
10578                         test_AES_GCM_auth_decryption_test_case_192_3),
10579                 TEST_CASE_ST(ut_setup, ut_teardown,
10580                         test_AES_GCM_auth_decryption_test_case_192_4),
10581                 TEST_CASE_ST(ut_setup, ut_teardown,
10582                         test_AES_GCM_auth_decryption_test_case_192_5),
10583                 TEST_CASE_ST(ut_setup, ut_teardown,
10584                         test_AES_GCM_auth_decryption_test_case_192_6),
10585                 TEST_CASE_ST(ut_setup, ut_teardown,
10586                         test_AES_GCM_auth_decryption_test_case_192_7),
10587
10588                 /** AES GCM Authenticated Encryption 256 bits key */
10589                 TEST_CASE_ST(ut_setup, ut_teardown,
10590                         test_AES_GCM_auth_encryption_test_case_256_1),
10591                 TEST_CASE_ST(ut_setup, ut_teardown,
10592                         test_AES_GCM_auth_encryption_test_case_256_2),
10593                 TEST_CASE_ST(ut_setup, ut_teardown,
10594                         test_AES_GCM_auth_encryption_test_case_256_3),
10595                 TEST_CASE_ST(ut_setup, ut_teardown,
10596                         test_AES_GCM_auth_encryption_test_case_256_4),
10597                 TEST_CASE_ST(ut_setup, ut_teardown,
10598                         test_AES_GCM_auth_encryption_test_case_256_5),
10599                 TEST_CASE_ST(ut_setup, ut_teardown,
10600                         test_AES_GCM_auth_encryption_test_case_256_6),
10601                 TEST_CASE_ST(ut_setup, ut_teardown,
10602                         test_AES_GCM_auth_encryption_test_case_256_7),
10603
10604                 /** AES GMAC Authentication */
10605                 TEST_CASE_ST(ut_setup, ut_teardown,
10606                         test_AES_GMAC_authentication_test_case_1),
10607                 TEST_CASE_ST(ut_setup, ut_teardown,
10608                         test_AES_GMAC_authentication_verify_test_case_1),
10609                 TEST_CASE_ST(ut_setup, ut_teardown,
10610                         test_AES_GMAC_authentication_test_case_2),
10611                 TEST_CASE_ST(ut_setup, ut_teardown,
10612                         test_AES_GMAC_authentication_verify_test_case_2),
10613                 TEST_CASE_ST(ut_setup, ut_teardown,
10614                         test_AES_GMAC_authentication_test_case_3),
10615                 TEST_CASE_ST(ut_setup, ut_teardown,
10616                         test_AES_GMAC_authentication_verify_test_case_3),
10617
10618                 /** SNOW 3G encrypt only (UEA2) */
10619                 TEST_CASE_ST(ut_setup, ut_teardown,
10620                         test_snow3g_encryption_test_case_1),
10621                 TEST_CASE_ST(ut_setup, ut_teardown,
10622                         test_snow3g_encryption_test_case_2),
10623                 TEST_CASE_ST(ut_setup, ut_teardown,
10624                         test_snow3g_encryption_test_case_3),
10625                 TEST_CASE_ST(ut_setup, ut_teardown,
10626                         test_snow3g_encryption_test_case_4),
10627                 TEST_CASE_ST(ut_setup, ut_teardown,
10628                         test_snow3g_encryption_test_case_5),
10629
10630                 TEST_CASE_ST(ut_setup, ut_teardown,
10631                         test_snow3g_encryption_test_case_1_oop),
10632                 TEST_CASE_ST(ut_setup, ut_teardown,
10633                         test_snow3g_decryption_test_case_1_oop),
10634
10635                 /** SNOW 3G generate auth, then encrypt (UEA2) */
10636                 TEST_CASE_ST(ut_setup, ut_teardown,
10637                         test_snow3g_auth_cipher_test_case_1),
10638                 TEST_CASE_ST(ut_setup, ut_teardown,
10639                         test_snow3g_auth_cipher_test_case_2),
10640                 TEST_CASE_ST(ut_setup, ut_teardown,
10641                         test_snow3g_auth_cipher_test_case_2_oop),
10642                 TEST_CASE_ST(ut_setup, ut_teardown,
10643                         test_snow3g_auth_cipher_part_digest_enc),
10644                 TEST_CASE_ST(ut_setup, ut_teardown,
10645                         test_snow3g_auth_cipher_part_digest_enc_oop),
10646                 TEST_CASE_ST(ut_setup, ut_teardown,
10647                         test_snow3g_auth_cipher_test_case_3_sgl),
10648                 TEST_CASE_ST(ut_setup, ut_teardown,
10649                         test_snow3g_auth_cipher_test_case_3_oop_sgl),
10650                 TEST_CASE_ST(ut_setup, ut_teardown,
10651                         test_snow3g_auth_cipher_part_digest_enc_sgl),
10652                 TEST_CASE_ST(ut_setup, ut_teardown,
10653                         test_snow3g_auth_cipher_part_digest_enc_oop_sgl),
10654
10655                 /** SNOW 3G decrypt (UEA2), then verify auth */
10656                 TEST_CASE_ST(ut_setup, ut_teardown,
10657                         test_snow3g_auth_cipher_verify_test_case_1),
10658                 TEST_CASE_ST(ut_setup, ut_teardown,
10659                         test_snow3g_auth_cipher_verify_test_case_2),
10660                 TEST_CASE_ST(ut_setup, ut_teardown,
10661                         test_snow3g_auth_cipher_verify_test_case_2_oop),
10662                 TEST_CASE_ST(ut_setup, ut_teardown,
10663                         test_snow3g_auth_cipher_verify_part_digest_enc),
10664                 TEST_CASE_ST(ut_setup, ut_teardown,
10665                         test_snow3g_auth_cipher_verify_part_digest_enc_oop),
10666                 TEST_CASE_ST(ut_setup, ut_teardown,
10667                         test_snow3g_auth_cipher_verify_test_case_3_sgl),
10668                 TEST_CASE_ST(ut_setup, ut_teardown,
10669                         test_snow3g_auth_cipher_verify_test_case_3_oop_sgl),
10670                 TEST_CASE_ST(ut_setup, ut_teardown,
10671                         test_snow3g_auth_cipher_verify_part_digest_enc_sgl),
10672                 TEST_CASE_ST(ut_setup, ut_teardown,
10673                         test_snow3g_auth_cipher_verify_part_digest_enc_oop_sgl),
10674
10675                 /** SNOW 3G decrypt only (UEA2) */
10676                 TEST_CASE_ST(ut_setup, ut_teardown,
10677                         test_snow3g_decryption_test_case_1),
10678                 TEST_CASE_ST(ut_setup, ut_teardown,
10679                         test_snow3g_decryption_test_case_2),
10680                 TEST_CASE_ST(ut_setup, ut_teardown,
10681                         test_snow3g_decryption_test_case_3),
10682                 TEST_CASE_ST(ut_setup, ut_teardown,
10683                         test_snow3g_decryption_test_case_4),
10684                 TEST_CASE_ST(ut_setup, ut_teardown,
10685                         test_snow3g_decryption_test_case_5),
10686                 TEST_CASE_ST(ut_setup, ut_teardown,
10687                         test_snow3g_decryption_with_digest_test_case_1),
10688                 TEST_CASE_ST(ut_setup, ut_teardown,
10689                         test_snow3g_hash_generate_test_case_1),
10690                 TEST_CASE_ST(ut_setup, ut_teardown,
10691                         test_snow3g_hash_generate_test_case_2),
10692                 TEST_CASE_ST(ut_setup, ut_teardown,
10693                         test_snow3g_hash_generate_test_case_3),
10694                 TEST_CASE_ST(ut_setup, ut_teardown,
10695                         test_snow3g_hash_verify_test_case_1),
10696                 TEST_CASE_ST(ut_setup, ut_teardown,
10697                         test_snow3g_hash_verify_test_case_2),
10698                 TEST_CASE_ST(ut_setup, ut_teardown,
10699                         test_snow3g_hash_verify_test_case_3),
10700                 TEST_CASE_ST(ut_setup, ut_teardown,
10701                         test_snow3g_cipher_auth_test_case_1),
10702                 TEST_CASE_ST(ut_setup, ut_teardown,
10703                         test_snow3g_auth_cipher_with_digest_test_case_1),
10704
10705                 /** ZUC encrypt only (EEA3) */
10706                 TEST_CASE_ST(ut_setup, ut_teardown,
10707                         test_zuc_encryption_test_case_1),
10708                 TEST_CASE_ST(ut_setup, ut_teardown,
10709                         test_zuc_encryption_test_case_2),
10710                 TEST_CASE_ST(ut_setup, ut_teardown,
10711                         test_zuc_encryption_test_case_3),
10712                 TEST_CASE_ST(ut_setup, ut_teardown,
10713                         test_zuc_encryption_test_case_4),
10714                 TEST_CASE_ST(ut_setup, ut_teardown,
10715                         test_zuc_encryption_test_case_5),
10716
10717                 /** ZUC authenticate (EIA3) */
10718                 TEST_CASE_ST(ut_setup, ut_teardown,
10719                         test_zuc_hash_generate_test_case_6),
10720                 TEST_CASE_ST(ut_setup, ut_teardown,
10721                         test_zuc_hash_generate_test_case_7),
10722                 TEST_CASE_ST(ut_setup, ut_teardown,
10723                         test_zuc_hash_generate_test_case_8),
10724
10725                 /** ZUC alg-chain (EEA3/EIA3) */
10726                 TEST_CASE_ST(ut_setup, ut_teardown,
10727                         test_zuc_cipher_auth_test_case_1),
10728                 TEST_CASE_ST(ut_setup, ut_teardown,
10729                         test_zuc_cipher_auth_test_case_2),
10730
10731                 /** ZUC generate auth, then encrypt (EEA3) */
10732                 TEST_CASE_ST(ut_setup, ut_teardown,
10733                         test_zuc_auth_cipher_test_case_1),
10734                 TEST_CASE_ST(ut_setup, ut_teardown,
10735                         test_zuc_auth_cipher_test_case_1_oop),
10736                 TEST_CASE_ST(ut_setup, ut_teardown,
10737                         test_zuc_auth_cipher_test_case_1_sgl),
10738                 TEST_CASE_ST(ut_setup, ut_teardown,
10739                         test_zuc_auth_cipher_test_case_1_oop_sgl),
10740
10741                 /** ZUC decrypt (EEA3), then verify auth */
10742                 TEST_CASE_ST(ut_setup, ut_teardown,
10743                         test_zuc_auth_cipher_verify_test_case_1),
10744                 TEST_CASE_ST(ut_setup, ut_teardown,
10745                         test_zuc_auth_cipher_verify_test_case_1_oop),
10746                 TEST_CASE_ST(ut_setup, ut_teardown,
10747                         test_zuc_auth_cipher_verify_test_case_1_sgl),
10748                 TEST_CASE_ST(ut_setup, ut_teardown,
10749                         test_zuc_auth_cipher_verify_test_case_1_oop_sgl),
10750
10751                 /** HMAC_MD5 Authentication */
10752                 TEST_CASE_ST(ut_setup, ut_teardown,
10753                         test_MD5_HMAC_generate_case_1),
10754                 TEST_CASE_ST(ut_setup, ut_teardown,
10755                         test_MD5_HMAC_verify_case_1),
10756                 TEST_CASE_ST(ut_setup, ut_teardown,
10757                         test_MD5_HMAC_generate_case_2),
10758                 TEST_CASE_ST(ut_setup, ut_teardown,
10759                         test_MD5_HMAC_verify_case_2),
10760
10761                 /** NULL algo tests done in chain_all,
10762                  * cipheronly and authonly suites
10763                  */
10764
10765                 /** KASUMI tests */
10766                 TEST_CASE_ST(ut_setup, ut_teardown,
10767                         test_kasumi_hash_generate_test_case_1),
10768                 TEST_CASE_ST(ut_setup, ut_teardown,
10769                         test_kasumi_hash_generate_test_case_2),
10770                 TEST_CASE_ST(ut_setup, ut_teardown,
10771                         test_kasumi_hash_generate_test_case_3),
10772                 TEST_CASE_ST(ut_setup, ut_teardown,
10773                         test_kasumi_hash_generate_test_case_4),
10774                 TEST_CASE_ST(ut_setup, ut_teardown,
10775                         test_kasumi_hash_generate_test_case_5),
10776                 TEST_CASE_ST(ut_setup, ut_teardown,
10777                         test_kasumi_hash_generate_test_case_6),
10778
10779                 TEST_CASE_ST(ut_setup, ut_teardown,
10780                         test_kasumi_hash_verify_test_case_1),
10781                 TEST_CASE_ST(ut_setup, ut_teardown,
10782                         test_kasumi_hash_verify_test_case_2),
10783                 TEST_CASE_ST(ut_setup, ut_teardown,
10784                         test_kasumi_hash_verify_test_case_3),
10785                 TEST_CASE_ST(ut_setup, ut_teardown,
10786                         test_kasumi_hash_verify_test_case_4),
10787                 TEST_CASE_ST(ut_setup, ut_teardown,
10788                         test_kasumi_hash_verify_test_case_5),
10789
10790                 TEST_CASE_ST(ut_setup, ut_teardown,
10791                         test_kasumi_encryption_test_case_1),
10792                 TEST_CASE_ST(ut_setup, ut_teardown,
10793                         test_kasumi_encryption_test_case_3),
10794                 TEST_CASE_ST(ut_setup, ut_teardown,
10795                         test_kasumi_cipher_auth_test_case_1),
10796
10797                 /** KASUMI generate auth, then encrypt (F8) */
10798                 TEST_CASE_ST(ut_setup, ut_teardown,
10799                         test_kasumi_auth_cipher_test_case_1),
10800                 TEST_CASE_ST(ut_setup, ut_teardown,
10801                         test_kasumi_auth_cipher_test_case_2),
10802                 TEST_CASE_ST(ut_setup, ut_teardown,
10803                         test_kasumi_auth_cipher_test_case_2_oop),
10804                 TEST_CASE_ST(ut_setup, ut_teardown,
10805                         test_kasumi_auth_cipher_test_case_2_sgl),
10806                 TEST_CASE_ST(ut_setup, ut_teardown,
10807                         test_kasumi_auth_cipher_test_case_2_oop_sgl),
10808
10809                 /** KASUMI decrypt (F8), then verify auth */
10810                 TEST_CASE_ST(ut_setup, ut_teardown,
10811                         test_kasumi_auth_cipher_verify_test_case_1),
10812                 TEST_CASE_ST(ut_setup, ut_teardown,
10813                         test_kasumi_auth_cipher_verify_test_case_2),
10814                 TEST_CASE_ST(ut_setup, ut_teardown,
10815                         test_kasumi_auth_cipher_verify_test_case_2_oop),
10816                 TEST_CASE_ST(ut_setup, ut_teardown,
10817                         test_kasumi_auth_cipher_verify_test_case_2_sgl),
10818                 TEST_CASE_ST(ut_setup, ut_teardown,
10819                         test_kasumi_auth_cipher_verify_test_case_2_oop_sgl),
10820
10821                 /** Negative tests */
10822                 TEST_CASE_ST(ut_setup, ut_teardown,
10823                         authentication_verify_HMAC_SHA1_fail_data_corrupt),
10824                 TEST_CASE_ST(ut_setup, ut_teardown,
10825                         authentication_verify_HMAC_SHA1_fail_tag_corrupt),
10826                 TEST_CASE_ST(ut_setup, ut_teardown,
10827                         authentication_verify_AES128_GMAC_fail_data_corrupt),
10828                 TEST_CASE_ST(ut_setup, ut_teardown,
10829                         authentication_verify_AES128_GMAC_fail_tag_corrupt),
10830                 TEST_CASE_ST(ut_setup, ut_teardown,
10831                         auth_decryption_AES128CBC_HMAC_SHA1_fail_data_corrupt),
10832                 TEST_CASE_ST(ut_setup, ut_teardown,
10833                         auth_decryption_AES128CBC_HMAC_SHA1_fail_tag_corrupt),
10834
10835                 TEST_CASES_END() /**< NULL terminate unit test array */
10836         }
10837 };
10838
10839 static struct unit_test_suite cryptodev_virtio_testsuite = {
10840         .suite_name = "Crypto VIRTIO Unit Test Suite",
10841         .setup = testsuite_setup,
10842         .teardown = testsuite_teardown,
10843         .unit_test_cases = {
10844                 TEST_CASE_ST(ut_setup, ut_teardown,
10845                                 test_AES_cipheronly_virtio_all),
10846
10847                 TEST_CASES_END() /**< NULL terminate unit test array */
10848         }
10849 };
10850
10851 static struct unit_test_suite cryptodev_aesni_mb_testsuite  = {
10852         .suite_name = "Crypto Device AESNI MB Unit Test Suite",
10853         .setup = testsuite_setup,
10854         .teardown = testsuite_teardown,
10855         .unit_test_cases = {
10856 #if IMB_VERSION_NUM >= IMB_VERSION(0, 51, 0)
10857                 TEST_CASE_ST(ut_setup, ut_teardown,
10858                         test_AES_GCM_authenticated_encryption_test_case_1),
10859                 TEST_CASE_ST(ut_setup, ut_teardown,
10860                         test_AES_GCM_authenticated_encryption_test_case_2),
10861                 TEST_CASE_ST(ut_setup, ut_teardown,
10862                         test_AES_GCM_authenticated_encryption_test_case_3),
10863                 TEST_CASE_ST(ut_setup, ut_teardown,
10864                         test_AES_GCM_authenticated_encryption_test_case_4),
10865                 TEST_CASE_ST(ut_setup, ut_teardown,
10866                         test_AES_GCM_authenticated_encryption_test_case_5),
10867                 TEST_CASE_ST(ut_setup, ut_teardown,
10868                         test_AES_GCM_authenticated_encryption_test_case_6),
10869                 TEST_CASE_ST(ut_setup, ut_teardown,
10870                         test_AES_GCM_authenticated_encryption_test_case_7),
10871
10872                 /** AES GCM Authenticated Decryption */
10873                 TEST_CASE_ST(ut_setup, ut_teardown,
10874                         test_AES_GCM_authenticated_decryption_test_case_1),
10875                 TEST_CASE_ST(ut_setup, ut_teardown,
10876                         test_AES_GCM_authenticated_decryption_test_case_2),
10877                 TEST_CASE_ST(ut_setup, ut_teardown,
10878                         test_AES_GCM_authenticated_decryption_test_case_3),
10879                 TEST_CASE_ST(ut_setup, ut_teardown,
10880                         test_AES_GCM_authenticated_decryption_test_case_4),
10881                 TEST_CASE_ST(ut_setup, ut_teardown,
10882                         test_AES_GCM_authenticated_decryption_test_case_5),
10883                 TEST_CASE_ST(ut_setup, ut_teardown,
10884                         test_AES_GCM_authenticated_decryption_test_case_6),
10885                 TEST_CASE_ST(ut_setup, ut_teardown,
10886                         test_AES_GCM_authenticated_decryption_test_case_7),
10887
10888                 /** AES GCM Authenticated Encryption 192 bits key */
10889                 TEST_CASE_ST(ut_setup, ut_teardown,
10890                         test_AES_GCM_auth_encryption_test_case_192_1),
10891                 TEST_CASE_ST(ut_setup, ut_teardown,
10892                         test_AES_GCM_auth_encryption_test_case_192_2),
10893                 TEST_CASE_ST(ut_setup, ut_teardown,
10894                         test_AES_GCM_auth_encryption_test_case_192_3),
10895                 TEST_CASE_ST(ut_setup, ut_teardown,
10896                         test_AES_GCM_auth_encryption_test_case_192_4),
10897                 TEST_CASE_ST(ut_setup, ut_teardown,
10898                         test_AES_GCM_auth_encryption_test_case_192_5),
10899                 TEST_CASE_ST(ut_setup, ut_teardown,
10900                         test_AES_GCM_auth_encryption_test_case_192_6),
10901                 TEST_CASE_ST(ut_setup, ut_teardown,
10902                         test_AES_GCM_auth_encryption_test_case_192_7),
10903
10904                 /** AES GCM Authenticated Decryption 192 bits key */
10905                 TEST_CASE_ST(ut_setup, ut_teardown,
10906                         test_AES_GCM_auth_decryption_test_case_192_1),
10907                 TEST_CASE_ST(ut_setup, ut_teardown,
10908                         test_AES_GCM_auth_decryption_test_case_192_2),
10909                 TEST_CASE_ST(ut_setup, ut_teardown,
10910                         test_AES_GCM_auth_decryption_test_case_192_3),
10911                 TEST_CASE_ST(ut_setup, ut_teardown,
10912                         test_AES_GCM_auth_decryption_test_case_192_4),
10913                 TEST_CASE_ST(ut_setup, ut_teardown,
10914                         test_AES_GCM_auth_decryption_test_case_192_5),
10915                 TEST_CASE_ST(ut_setup, ut_teardown,
10916                         test_AES_GCM_auth_decryption_test_case_192_6),
10917                 TEST_CASE_ST(ut_setup, ut_teardown,
10918                         test_AES_GCM_auth_decryption_test_case_192_7),
10919
10920                 /** AES GCM Authenticated Encryption 256 bits key */
10921                 TEST_CASE_ST(ut_setup, ut_teardown,
10922                         test_AES_GCM_auth_encryption_test_case_256_1),
10923                 TEST_CASE_ST(ut_setup, ut_teardown,
10924                         test_AES_GCM_auth_encryption_test_case_256_2),
10925                 TEST_CASE_ST(ut_setup, ut_teardown,
10926                         test_AES_GCM_auth_encryption_test_case_256_3),
10927                 TEST_CASE_ST(ut_setup, ut_teardown,
10928                         test_AES_GCM_auth_encryption_test_case_256_4),
10929                 TEST_CASE_ST(ut_setup, ut_teardown,
10930                         test_AES_GCM_auth_encryption_test_case_256_5),
10931                 TEST_CASE_ST(ut_setup, ut_teardown,
10932                         test_AES_GCM_auth_encryption_test_case_256_6),
10933                 TEST_CASE_ST(ut_setup, ut_teardown,
10934                         test_AES_GCM_auth_encryption_test_case_256_7),
10935
10936                 /** AES GCM Authenticated Decryption 256 bits key */
10937                 TEST_CASE_ST(ut_setup, ut_teardown,
10938                         test_AES_GCM_auth_decryption_test_case_256_1),
10939                 TEST_CASE_ST(ut_setup, ut_teardown,
10940                         test_AES_GCM_auth_decryption_test_case_256_2),
10941                 TEST_CASE_ST(ut_setup, ut_teardown,
10942                         test_AES_GCM_auth_decryption_test_case_256_3),
10943                 TEST_CASE_ST(ut_setup, ut_teardown,
10944                         test_AES_GCM_auth_decryption_test_case_256_4),
10945                 TEST_CASE_ST(ut_setup, ut_teardown,
10946                         test_AES_GCM_auth_decryption_test_case_256_5),
10947                 TEST_CASE_ST(ut_setup, ut_teardown,
10948                         test_AES_GCM_auth_decryption_test_case_256_6),
10949                 TEST_CASE_ST(ut_setup, ut_teardown,
10950                         test_AES_GCM_auth_decryption_test_case_256_7),
10951
10952                 /** AES GCM Authenticated Encryption big aad size */
10953                 TEST_CASE_ST(ut_setup, ut_teardown,
10954                         test_AES_GCM_auth_encryption_test_case_aad_1),
10955                 TEST_CASE_ST(ut_setup, ut_teardown,
10956                         test_AES_GCM_auth_encryption_test_case_aad_2),
10957
10958                 /** AES GCM Authenticated Decryption big aad size */
10959                 TEST_CASE_ST(ut_setup, ut_teardown,
10960                         test_AES_GCM_auth_decryption_test_case_aad_1),
10961                 TEST_CASE_ST(ut_setup, ut_teardown,
10962                         test_AES_GCM_auth_decryption_test_case_aad_2),
10963
10964                 /** Session-less tests */
10965                 TEST_CASE_ST(ut_setup, ut_teardown,
10966                         test_AES_GCM_authenticated_encryption_sessionless_test_case_1),
10967                 TEST_CASE_ST(ut_setup, ut_teardown,
10968                         test_AES_GCM_authenticated_decryption_sessionless_test_case_1),
10969
10970                 /** AES GMAC Authentication */
10971                 TEST_CASE_ST(ut_setup, ut_teardown,
10972                         test_AES_GMAC_authentication_test_case_1),
10973                 TEST_CASE_ST(ut_setup, ut_teardown,
10974                         test_AES_GMAC_authentication_verify_test_case_1),
10975                 TEST_CASE_ST(ut_setup, ut_teardown,
10976                         test_AES_GMAC_authentication_test_case_2),
10977                 TEST_CASE_ST(ut_setup, ut_teardown,
10978                         test_AES_GMAC_authentication_verify_test_case_2),
10979                 TEST_CASE_ST(ut_setup, ut_teardown,
10980                         test_AES_GMAC_authentication_test_case_3),
10981                 TEST_CASE_ST(ut_setup, ut_teardown,
10982                         test_AES_GMAC_authentication_verify_test_case_3),
10983 #endif /* IMB_VERSION_NUM >= IMB_VERSION(0, 51, 0) */
10984
10985                 TEST_CASE_ST(ut_setup, ut_teardown, test_AES_chain_mb_all),
10986                 TEST_CASE_ST(ut_setup, ut_teardown, test_AES_cipheronly_mb_all),
10987                 TEST_CASE_ST(ut_setup, ut_teardown, test_AES_docsis_mb_all),
10988                 TEST_CASE_ST(ut_setup, ut_teardown, test_authonly_mb_all),
10989                 TEST_CASE_ST(ut_setup, ut_teardown,
10990                                                 test_DES_cipheronly_mb_all),
10991                 TEST_CASE_ST(ut_setup, ut_teardown,
10992                                                 test_DES_docsis_mb_all),
10993                 TEST_CASE_ST(ut_setup, ut_teardown,
10994                                                 test_3DES_cipheronly_mb_all),
10995                 TEST_CASE_ST(ut_setup, ut_teardown,
10996                         test_AES_CCM_authenticated_encryption_test_case_128_1),
10997                 TEST_CASE_ST(ut_setup, ut_teardown,
10998                         test_AES_CCM_authenticated_decryption_test_case_128_1),
10999                 TEST_CASE_ST(ut_setup, ut_teardown,
11000                         test_AES_CCM_authenticated_encryption_test_case_128_2),
11001                 TEST_CASE_ST(ut_setup, ut_teardown,
11002                         test_AES_CCM_authenticated_decryption_test_case_128_2),
11003                 TEST_CASE_ST(ut_setup, ut_teardown,
11004                         test_AES_CCM_authenticated_encryption_test_case_128_3),
11005                 TEST_CASE_ST(ut_setup, ut_teardown,
11006                         test_AES_CCM_authenticated_decryption_test_case_128_3),
11007
11008                 TEST_CASES_END() /**< NULL terminate unit test array */
11009         }
11010 };
11011
11012 static struct unit_test_suite cryptodev_openssl_testsuite  = {
11013         .suite_name = "Crypto Device OPENSSL Unit Test Suite",
11014         .setup = testsuite_setup,
11015         .teardown = testsuite_teardown,
11016         .unit_test_cases = {
11017                 TEST_CASE_ST(ut_setup, ut_teardown, test_multi_session),
11018                 TEST_CASE_ST(ut_setup, ut_teardown,
11019                                 test_multi_session_random_usage),
11020                 TEST_CASE_ST(ut_setup, ut_teardown,
11021                                 test_AES_chain_openssl_all),
11022                 TEST_CASE_ST(ut_setup, ut_teardown,
11023                                 test_AES_cipheronly_openssl_all),
11024                 TEST_CASE_ST(ut_setup, ut_teardown,
11025                                 test_3DES_chain_openssl_all),
11026                 TEST_CASE_ST(ut_setup, ut_teardown,
11027                                 test_3DES_cipheronly_openssl_all),
11028                 TEST_CASE_ST(ut_setup, ut_teardown,
11029                                 test_DES_cipheronly_openssl_all),
11030                 TEST_CASE_ST(ut_setup, ut_teardown,
11031                                 test_DES_docsis_openssl_all),
11032                 TEST_CASE_ST(ut_setup, ut_teardown,
11033                                 test_authonly_openssl_all),
11034
11035                 /** AES GCM Authenticated Encryption */
11036                 TEST_CASE_ST(ut_setup, ut_teardown,
11037                         test_AES_GCM_authenticated_encryption_test_case_1),
11038                 TEST_CASE_ST(ut_setup, ut_teardown,
11039                         test_AES_GCM_authenticated_encryption_test_case_2),
11040                 TEST_CASE_ST(ut_setup, ut_teardown,
11041                         test_AES_GCM_authenticated_encryption_test_case_3),
11042                 TEST_CASE_ST(ut_setup, ut_teardown,
11043                         test_AES_GCM_authenticated_encryption_test_case_4),
11044                 TEST_CASE_ST(ut_setup, ut_teardown,
11045                         test_AES_GCM_authenticated_encryption_test_case_5),
11046                 TEST_CASE_ST(ut_setup, ut_teardown,
11047                         test_AES_GCM_authenticated_encryption_test_case_6),
11048                 TEST_CASE_ST(ut_setup, ut_teardown,
11049                         test_AES_GCM_authenticated_encryption_test_case_7),
11050
11051                 /** AES GCM Authenticated Decryption */
11052                 TEST_CASE_ST(ut_setup, ut_teardown,
11053                         test_AES_GCM_authenticated_decryption_test_case_1),
11054                 TEST_CASE_ST(ut_setup, ut_teardown,
11055                         test_AES_GCM_authenticated_decryption_test_case_2),
11056                 TEST_CASE_ST(ut_setup, ut_teardown,
11057                         test_AES_GCM_authenticated_decryption_test_case_3),
11058                 TEST_CASE_ST(ut_setup, ut_teardown,
11059                         test_AES_GCM_authenticated_decryption_test_case_4),
11060                 TEST_CASE_ST(ut_setup, ut_teardown,
11061                         test_AES_GCM_authenticated_decryption_test_case_5),
11062                 TEST_CASE_ST(ut_setup, ut_teardown,
11063                         test_AES_GCM_authenticated_decryption_test_case_6),
11064                 TEST_CASE_ST(ut_setup, ut_teardown,
11065                         test_AES_GCM_authenticated_decryption_test_case_7),
11066
11067
11068                 /** AES GCM Authenticated Encryption 192 bits key */
11069                 TEST_CASE_ST(ut_setup, ut_teardown,
11070                         test_AES_GCM_auth_encryption_test_case_192_1),
11071                 TEST_CASE_ST(ut_setup, ut_teardown,
11072                         test_AES_GCM_auth_encryption_test_case_192_2),
11073                 TEST_CASE_ST(ut_setup, ut_teardown,
11074                         test_AES_GCM_auth_encryption_test_case_192_3),
11075                 TEST_CASE_ST(ut_setup, ut_teardown,
11076                         test_AES_GCM_auth_encryption_test_case_192_4),
11077                 TEST_CASE_ST(ut_setup, ut_teardown,
11078                         test_AES_GCM_auth_encryption_test_case_192_5),
11079                 TEST_CASE_ST(ut_setup, ut_teardown,
11080                         test_AES_GCM_auth_encryption_test_case_192_6),
11081                 TEST_CASE_ST(ut_setup, ut_teardown,
11082                         test_AES_GCM_auth_encryption_test_case_192_7),
11083
11084                 /** AES GCM Authenticated Decryption 192 bits key */
11085                 TEST_CASE_ST(ut_setup, ut_teardown,
11086                         test_AES_GCM_auth_decryption_test_case_192_1),
11087                 TEST_CASE_ST(ut_setup, ut_teardown,
11088                         test_AES_GCM_auth_decryption_test_case_192_2),
11089                 TEST_CASE_ST(ut_setup, ut_teardown,
11090                         test_AES_GCM_auth_decryption_test_case_192_3),
11091                 TEST_CASE_ST(ut_setup, ut_teardown,
11092                         test_AES_GCM_auth_decryption_test_case_192_4),
11093                 TEST_CASE_ST(ut_setup, ut_teardown,
11094                         test_AES_GCM_auth_decryption_test_case_192_5),
11095                 TEST_CASE_ST(ut_setup, ut_teardown,
11096                         test_AES_GCM_auth_decryption_test_case_192_6),
11097                 TEST_CASE_ST(ut_setup, ut_teardown,
11098                         test_AES_GCM_auth_decryption_test_case_192_7),
11099
11100                 /** AES GCM Authenticated Encryption 256 bits key */
11101                 TEST_CASE_ST(ut_setup, ut_teardown,
11102                         test_AES_GCM_auth_encryption_test_case_256_1),
11103                 TEST_CASE_ST(ut_setup, ut_teardown,
11104                         test_AES_GCM_auth_encryption_test_case_256_2),
11105                 TEST_CASE_ST(ut_setup, ut_teardown,
11106                         test_AES_GCM_auth_encryption_test_case_256_3),
11107                 TEST_CASE_ST(ut_setup, ut_teardown,
11108                         test_AES_GCM_auth_encryption_test_case_256_4),
11109                 TEST_CASE_ST(ut_setup, ut_teardown,
11110                         test_AES_GCM_auth_encryption_test_case_256_5),
11111                 TEST_CASE_ST(ut_setup, ut_teardown,
11112                         test_AES_GCM_auth_encryption_test_case_256_6),
11113                 TEST_CASE_ST(ut_setup, ut_teardown,
11114                         test_AES_GCM_auth_encryption_test_case_256_7),
11115
11116                 /** AES GCM Authenticated Decryption 256 bits key */
11117                 TEST_CASE_ST(ut_setup, ut_teardown,
11118                         test_AES_GCM_auth_decryption_test_case_256_1),
11119                 TEST_CASE_ST(ut_setup, ut_teardown,
11120                         test_AES_GCM_auth_decryption_test_case_256_2),
11121                 TEST_CASE_ST(ut_setup, ut_teardown,
11122                         test_AES_GCM_auth_decryption_test_case_256_3),
11123                 TEST_CASE_ST(ut_setup, ut_teardown,
11124                         test_AES_GCM_auth_decryption_test_case_256_4),
11125                 TEST_CASE_ST(ut_setup, ut_teardown,
11126                         test_AES_GCM_auth_decryption_test_case_256_5),
11127                 TEST_CASE_ST(ut_setup, ut_teardown,
11128                         test_AES_GCM_auth_decryption_test_case_256_6),
11129                 TEST_CASE_ST(ut_setup, ut_teardown,
11130                         test_AES_GCM_auth_decryption_test_case_256_7),
11131
11132                 /** AES GMAC Authentication */
11133                 TEST_CASE_ST(ut_setup, ut_teardown,
11134                         test_AES_GMAC_authentication_test_case_1),
11135                 TEST_CASE_ST(ut_setup, ut_teardown,
11136                         test_AES_GMAC_authentication_verify_test_case_1),
11137                 TEST_CASE_ST(ut_setup, ut_teardown,
11138                         test_AES_GMAC_authentication_test_case_2),
11139                 TEST_CASE_ST(ut_setup, ut_teardown,
11140                         test_AES_GMAC_authentication_verify_test_case_2),
11141                 TEST_CASE_ST(ut_setup, ut_teardown,
11142                         test_AES_GMAC_authentication_test_case_3),
11143                 TEST_CASE_ST(ut_setup, ut_teardown,
11144                         test_AES_GMAC_authentication_verify_test_case_3),
11145                 TEST_CASE_ST(ut_setup, ut_teardown,
11146                         test_AES_GMAC_authentication_test_case_4),
11147                 TEST_CASE_ST(ut_setup, ut_teardown,
11148                         test_AES_GMAC_authentication_verify_test_case_4),
11149
11150                 /** AES CCM Authenticated Encryption 128 bits key */
11151                 TEST_CASE_ST(ut_setup, ut_teardown,
11152                         test_AES_CCM_authenticated_encryption_test_case_128_1),
11153                 TEST_CASE_ST(ut_setup, ut_teardown,
11154                         test_AES_CCM_authenticated_encryption_test_case_128_2),
11155                 TEST_CASE_ST(ut_setup, ut_teardown,
11156                         test_AES_CCM_authenticated_encryption_test_case_128_3),
11157
11158                 /** AES CCM Authenticated Decryption 128 bits key*/
11159                 TEST_CASE_ST(ut_setup, ut_teardown,
11160                         test_AES_CCM_authenticated_decryption_test_case_128_1),
11161                 TEST_CASE_ST(ut_setup, ut_teardown,
11162                         test_AES_CCM_authenticated_decryption_test_case_128_2),
11163                 TEST_CASE_ST(ut_setup, ut_teardown,
11164                         test_AES_CCM_authenticated_decryption_test_case_128_3),
11165
11166                 /** AES CCM Authenticated Encryption 192 bits key */
11167                 TEST_CASE_ST(ut_setup, ut_teardown,
11168                         test_AES_CCM_authenticated_encryption_test_case_192_1),
11169                 TEST_CASE_ST(ut_setup, ut_teardown,
11170                         test_AES_CCM_authenticated_encryption_test_case_192_2),
11171                 TEST_CASE_ST(ut_setup, ut_teardown,
11172                         test_AES_CCM_authenticated_encryption_test_case_192_3),
11173
11174                 /** AES CCM Authenticated Decryption 192 bits key*/
11175                 TEST_CASE_ST(ut_setup, ut_teardown,
11176                         test_AES_CCM_authenticated_decryption_test_case_192_1),
11177                 TEST_CASE_ST(ut_setup, ut_teardown,
11178                         test_AES_CCM_authenticated_decryption_test_case_192_2),
11179                 TEST_CASE_ST(ut_setup, ut_teardown,
11180                         test_AES_CCM_authenticated_decryption_test_case_192_3),
11181
11182                 /** AES CCM Authenticated Encryption 256 bits key */
11183                 TEST_CASE_ST(ut_setup, ut_teardown,
11184                         test_AES_CCM_authenticated_encryption_test_case_256_1),
11185                 TEST_CASE_ST(ut_setup, ut_teardown,
11186                         test_AES_CCM_authenticated_encryption_test_case_256_2),
11187                 TEST_CASE_ST(ut_setup, ut_teardown,
11188                         test_AES_CCM_authenticated_encryption_test_case_256_3),
11189
11190                 /** AES CCM Authenticated Decryption 256 bits key*/
11191                 TEST_CASE_ST(ut_setup, ut_teardown,
11192                         test_AES_CCM_authenticated_decryption_test_case_256_1),
11193                 TEST_CASE_ST(ut_setup, ut_teardown,
11194                         test_AES_CCM_authenticated_decryption_test_case_256_2),
11195                 TEST_CASE_ST(ut_setup, ut_teardown,
11196                         test_AES_CCM_authenticated_decryption_test_case_256_3),
11197
11198                 /** Scatter-Gather */
11199                 TEST_CASE_ST(ut_setup, ut_teardown,
11200                         test_AES_GCM_auth_encrypt_SGL_out_of_place_400B_1seg),
11201
11202                 /** Negative tests */
11203                 TEST_CASE_ST(ut_setup, ut_teardown,
11204                         authentication_verify_HMAC_SHA1_fail_data_corrupt),
11205                 TEST_CASE_ST(ut_setup, ut_teardown,
11206                         authentication_verify_HMAC_SHA1_fail_tag_corrupt),
11207                 TEST_CASE_ST(ut_setup, ut_teardown,
11208                         authentication_verify_AES128_GMAC_fail_data_corrupt),
11209                 TEST_CASE_ST(ut_setup, ut_teardown,
11210                         authentication_verify_AES128_GMAC_fail_tag_corrupt),
11211                 TEST_CASE_ST(ut_setup, ut_teardown,
11212                         auth_decryption_AES128CBC_HMAC_SHA1_fail_data_corrupt),
11213                 TEST_CASE_ST(ut_setup, ut_teardown,
11214                         auth_decryption_AES128CBC_HMAC_SHA1_fail_tag_corrupt),
11215
11216                 TEST_CASES_END() /**< NULL terminate unit test array */
11217         }
11218 };
11219
11220 static struct unit_test_suite cryptodev_aesni_gcm_testsuite  = {
11221         .suite_name = "Crypto Device AESNI GCM Unit Test Suite",
11222         .setup = testsuite_setup,
11223         .teardown = testsuite_teardown,
11224         .unit_test_cases = {
11225                 /** AES GCM Authenticated Encryption */
11226                 TEST_CASE_ST(ut_setup, ut_teardown,
11227                         test_AES_GCM_authenticated_encryption_test_case_1),
11228                 TEST_CASE_ST(ut_setup, ut_teardown,
11229                         test_AES_GCM_authenticated_encryption_test_case_2),
11230                 TEST_CASE_ST(ut_setup, ut_teardown,
11231                         test_AES_GCM_authenticated_encryption_test_case_3),
11232                 TEST_CASE_ST(ut_setup, ut_teardown,
11233                         test_AES_GCM_authenticated_encryption_test_case_4),
11234                 TEST_CASE_ST(ut_setup, ut_teardown,
11235                         test_AES_GCM_authenticated_encryption_test_case_5),
11236                 TEST_CASE_ST(ut_setup, ut_teardown,
11237                         test_AES_GCM_authenticated_encryption_test_case_6),
11238                 TEST_CASE_ST(ut_setup, ut_teardown,
11239                         test_AES_GCM_authenticated_encryption_test_case_7),
11240
11241                 /** AES GCM Authenticated Decryption */
11242                 TEST_CASE_ST(ut_setup, ut_teardown,
11243                         test_AES_GCM_authenticated_decryption_test_case_1),
11244                 TEST_CASE_ST(ut_setup, ut_teardown,
11245                         test_AES_GCM_authenticated_decryption_test_case_2),
11246                 TEST_CASE_ST(ut_setup, ut_teardown,
11247                         test_AES_GCM_authenticated_decryption_test_case_3),
11248                 TEST_CASE_ST(ut_setup, ut_teardown,
11249                         test_AES_GCM_authenticated_decryption_test_case_4),
11250                 TEST_CASE_ST(ut_setup, ut_teardown,
11251                         test_AES_GCM_authenticated_decryption_test_case_5),
11252                 TEST_CASE_ST(ut_setup, ut_teardown,
11253                         test_AES_GCM_authenticated_decryption_test_case_6),
11254                 TEST_CASE_ST(ut_setup, ut_teardown,
11255                         test_AES_GCM_authenticated_decryption_test_case_7),
11256
11257                 /** AES GCM Authenticated Encryption 192 bits key */
11258                 TEST_CASE_ST(ut_setup, ut_teardown,
11259                         test_AES_GCM_auth_encryption_test_case_192_1),
11260                 TEST_CASE_ST(ut_setup, ut_teardown,
11261                         test_AES_GCM_auth_encryption_test_case_192_2),
11262                 TEST_CASE_ST(ut_setup, ut_teardown,
11263                         test_AES_GCM_auth_encryption_test_case_192_3),
11264                 TEST_CASE_ST(ut_setup, ut_teardown,
11265                         test_AES_GCM_auth_encryption_test_case_192_4),
11266                 TEST_CASE_ST(ut_setup, ut_teardown,
11267                         test_AES_GCM_auth_encryption_test_case_192_5),
11268                 TEST_CASE_ST(ut_setup, ut_teardown,
11269                         test_AES_GCM_auth_encryption_test_case_192_6),
11270                 TEST_CASE_ST(ut_setup, ut_teardown,
11271                         test_AES_GCM_auth_encryption_test_case_192_7),
11272
11273                 /** AES GCM Authenticated Decryption 192 bits key */
11274                 TEST_CASE_ST(ut_setup, ut_teardown,
11275                         test_AES_GCM_auth_decryption_test_case_192_1),
11276                 TEST_CASE_ST(ut_setup, ut_teardown,
11277                         test_AES_GCM_auth_decryption_test_case_192_2),
11278                 TEST_CASE_ST(ut_setup, ut_teardown,
11279                         test_AES_GCM_auth_decryption_test_case_192_3),
11280                 TEST_CASE_ST(ut_setup, ut_teardown,
11281                         test_AES_GCM_auth_decryption_test_case_192_4),
11282                 TEST_CASE_ST(ut_setup, ut_teardown,
11283                         test_AES_GCM_auth_decryption_test_case_192_5),
11284                 TEST_CASE_ST(ut_setup, ut_teardown,
11285                         test_AES_GCM_auth_decryption_test_case_192_6),
11286                 TEST_CASE_ST(ut_setup, ut_teardown,
11287                         test_AES_GCM_auth_decryption_test_case_192_7),
11288
11289                 /** AES GCM Authenticated Encryption 256 bits key */
11290                 TEST_CASE_ST(ut_setup, ut_teardown,
11291                         test_AES_GCM_auth_encryption_test_case_256_1),
11292                 TEST_CASE_ST(ut_setup, ut_teardown,
11293                         test_AES_GCM_auth_encryption_test_case_256_2),
11294                 TEST_CASE_ST(ut_setup, ut_teardown,
11295                         test_AES_GCM_auth_encryption_test_case_256_3),
11296                 TEST_CASE_ST(ut_setup, ut_teardown,
11297                         test_AES_GCM_auth_encryption_test_case_256_4),
11298                 TEST_CASE_ST(ut_setup, ut_teardown,
11299                         test_AES_GCM_auth_encryption_test_case_256_5),
11300                 TEST_CASE_ST(ut_setup, ut_teardown,
11301                         test_AES_GCM_auth_encryption_test_case_256_6),
11302                 TEST_CASE_ST(ut_setup, ut_teardown,
11303                         test_AES_GCM_auth_encryption_test_case_256_7),
11304
11305                 /** AES GCM Authenticated Decryption 256 bits key */
11306                 TEST_CASE_ST(ut_setup, ut_teardown,
11307                         test_AES_GCM_auth_decryption_test_case_256_1),
11308                 TEST_CASE_ST(ut_setup, ut_teardown,
11309                         test_AES_GCM_auth_decryption_test_case_256_2),
11310                 TEST_CASE_ST(ut_setup, ut_teardown,
11311                         test_AES_GCM_auth_decryption_test_case_256_3),
11312                 TEST_CASE_ST(ut_setup, ut_teardown,
11313                         test_AES_GCM_auth_decryption_test_case_256_4),
11314                 TEST_CASE_ST(ut_setup, ut_teardown,
11315                         test_AES_GCM_auth_decryption_test_case_256_5),
11316                 TEST_CASE_ST(ut_setup, ut_teardown,
11317                         test_AES_GCM_auth_decryption_test_case_256_6),
11318                 TEST_CASE_ST(ut_setup, ut_teardown,
11319                         test_AES_GCM_auth_decryption_test_case_256_7),
11320
11321                 /** AES GCM Authenticated Encryption big aad size */
11322                 TEST_CASE_ST(ut_setup, ut_teardown,
11323                         test_AES_GCM_auth_encryption_test_case_aad_1),
11324                 TEST_CASE_ST(ut_setup, ut_teardown,
11325                         test_AES_GCM_auth_encryption_test_case_aad_2),
11326
11327                 /** AES GCM Authenticated Decryption big aad size */
11328                 TEST_CASE_ST(ut_setup, ut_teardown,
11329                         test_AES_GCM_auth_decryption_test_case_aad_1),
11330                 TEST_CASE_ST(ut_setup, ut_teardown,
11331                         test_AES_GCM_auth_decryption_test_case_aad_2),
11332
11333                 /** AES GMAC Authentication */
11334                 TEST_CASE_ST(ut_setup, ut_teardown,
11335                         test_AES_GMAC_authentication_test_case_1),
11336                 TEST_CASE_ST(ut_setup, ut_teardown,
11337                         test_AES_GMAC_authentication_verify_test_case_1),
11338                 TEST_CASE_ST(ut_setup, ut_teardown,
11339                         test_AES_GMAC_authentication_test_case_3),
11340                 TEST_CASE_ST(ut_setup, ut_teardown,
11341                         test_AES_GMAC_authentication_verify_test_case_3),
11342                 TEST_CASE_ST(ut_setup, ut_teardown,
11343                         test_AES_GMAC_authentication_test_case_4),
11344                 TEST_CASE_ST(ut_setup, ut_teardown,
11345                         test_AES_GMAC_authentication_verify_test_case_4),
11346
11347                 /** Negative tests */
11348                 TEST_CASE_ST(ut_setup, ut_teardown,
11349                         authentication_verify_AES128_GMAC_fail_data_corrupt),
11350                 TEST_CASE_ST(ut_setup, ut_teardown,
11351                         authentication_verify_AES128_GMAC_fail_tag_corrupt),
11352
11353                 /** Out of place tests */
11354                 TEST_CASE_ST(ut_setup, ut_teardown,
11355                         test_AES_GCM_authenticated_encryption_oop_test_case_1),
11356                 TEST_CASE_ST(ut_setup, ut_teardown,
11357                         test_AES_GCM_authenticated_decryption_oop_test_case_1),
11358
11359                 /** Session-less tests */
11360                 TEST_CASE_ST(ut_setup, ut_teardown,
11361                         test_AES_GCM_authenticated_encryption_sessionless_test_case_1),
11362                 TEST_CASE_ST(ut_setup, ut_teardown,
11363                         test_AES_GCM_authenticated_decryption_sessionless_test_case_1),
11364
11365                 /** Scatter-Gather */
11366                 TEST_CASE_ST(ut_setup, ut_teardown,
11367                         test_AES_GCM_auth_encrypt_SGL_out_of_place_400B_1seg),
11368
11369                 TEST_CASES_END() /**< NULL terminate unit test array */
11370         }
11371 };
11372
11373 static struct unit_test_suite cryptodev_sw_kasumi_testsuite  = {
11374         .suite_name = "Crypto Device SW KASUMI Unit Test Suite",
11375         .setup = testsuite_setup,
11376         .teardown = testsuite_teardown,
11377         .unit_test_cases = {
11378                 /** KASUMI encrypt only (UEA1) */
11379                 TEST_CASE_ST(ut_setup, ut_teardown,
11380                         test_kasumi_encryption_test_case_1),
11381                 TEST_CASE_ST(ut_setup, ut_teardown,
11382                         test_kasumi_encryption_test_case_1_sgl),
11383                 TEST_CASE_ST(ut_setup, ut_teardown,
11384                         test_kasumi_encryption_test_case_2),
11385                 TEST_CASE_ST(ut_setup, ut_teardown,
11386                         test_kasumi_encryption_test_case_3),
11387                 TEST_CASE_ST(ut_setup, ut_teardown,
11388                         test_kasumi_encryption_test_case_4),
11389                 TEST_CASE_ST(ut_setup, ut_teardown,
11390                         test_kasumi_encryption_test_case_5),
11391                 /** KASUMI decrypt only (UEA1) */
11392                 TEST_CASE_ST(ut_setup, ut_teardown,
11393                         test_kasumi_decryption_test_case_1),
11394                 TEST_CASE_ST(ut_setup, ut_teardown,
11395                         test_kasumi_decryption_test_case_2),
11396                 TEST_CASE_ST(ut_setup, ut_teardown,
11397                         test_kasumi_decryption_test_case_3),
11398                 TEST_CASE_ST(ut_setup, ut_teardown,
11399                         test_kasumi_decryption_test_case_4),
11400                 TEST_CASE_ST(ut_setup, ut_teardown,
11401                         test_kasumi_decryption_test_case_5),
11402
11403                 TEST_CASE_ST(ut_setup, ut_teardown,
11404                         test_kasumi_encryption_test_case_1_oop),
11405                 TEST_CASE_ST(ut_setup, ut_teardown,
11406                         test_kasumi_encryption_test_case_1_oop_sgl),
11407
11408
11409                 TEST_CASE_ST(ut_setup, ut_teardown,
11410                         test_kasumi_decryption_test_case_1_oop),
11411
11412                 /** KASUMI hash only (UIA1) */
11413                 TEST_CASE_ST(ut_setup, ut_teardown,
11414                         test_kasumi_hash_generate_test_case_1),
11415                 TEST_CASE_ST(ut_setup, ut_teardown,
11416                         test_kasumi_hash_generate_test_case_2),
11417                 TEST_CASE_ST(ut_setup, ut_teardown,
11418                         test_kasumi_hash_generate_test_case_3),
11419                 TEST_CASE_ST(ut_setup, ut_teardown,
11420                         test_kasumi_hash_generate_test_case_4),
11421                 TEST_CASE_ST(ut_setup, ut_teardown,
11422                         test_kasumi_hash_generate_test_case_5),
11423                 TEST_CASE_ST(ut_setup, ut_teardown,
11424                         test_kasumi_hash_generate_test_case_6),
11425                 TEST_CASE_ST(ut_setup, ut_teardown,
11426                         test_kasumi_hash_verify_test_case_1),
11427                 TEST_CASE_ST(ut_setup, ut_teardown,
11428                         test_kasumi_hash_verify_test_case_2),
11429                 TEST_CASE_ST(ut_setup, ut_teardown,
11430                         test_kasumi_hash_verify_test_case_3),
11431                 TEST_CASE_ST(ut_setup, ut_teardown,
11432                         test_kasumi_hash_verify_test_case_4),
11433                 TEST_CASE_ST(ut_setup, ut_teardown,
11434                         test_kasumi_hash_verify_test_case_5),
11435                 TEST_CASE_ST(ut_setup, ut_teardown,
11436                         test_kasumi_cipher_auth_test_case_1),
11437
11438                 /** KASUMI generate auth, then encrypt (F8) */
11439                 TEST_CASE_ST(ut_setup, ut_teardown,
11440                         test_kasumi_auth_cipher_test_case_1),
11441                 TEST_CASE_ST(ut_setup, ut_teardown,
11442                         test_kasumi_auth_cipher_test_case_2),
11443                 TEST_CASE_ST(ut_setup, ut_teardown,
11444                         test_kasumi_auth_cipher_test_case_2_oop),
11445                 TEST_CASE_ST(ut_setup, ut_teardown,
11446                         test_kasumi_auth_cipher_test_case_2_sgl),
11447                 TEST_CASE_ST(ut_setup, ut_teardown,
11448                         test_kasumi_auth_cipher_test_case_2_oop_sgl),
11449
11450                 /** KASUMI decrypt (F8), then verify auth */
11451                 TEST_CASE_ST(ut_setup, ut_teardown,
11452                         test_kasumi_auth_cipher_verify_test_case_1),
11453                 TEST_CASE_ST(ut_setup, ut_teardown,
11454                         test_kasumi_auth_cipher_verify_test_case_2),
11455                 TEST_CASE_ST(ut_setup, ut_teardown,
11456                         test_kasumi_auth_cipher_verify_test_case_2_oop),
11457                 TEST_CASE_ST(ut_setup, ut_teardown,
11458                         test_kasumi_auth_cipher_verify_test_case_2_sgl),
11459                 TEST_CASE_ST(ut_setup, ut_teardown,
11460                         test_kasumi_auth_cipher_verify_test_case_2_oop_sgl),
11461                 TEST_CASES_END() /**< NULL terminate unit test array */
11462         }
11463 };
11464 static struct unit_test_suite cryptodev_sw_snow3g_testsuite  = {
11465         .suite_name = "Crypto Device SW SNOW 3G Unit Test Suite",
11466         .setup = testsuite_setup,
11467         .teardown = testsuite_teardown,
11468         .unit_test_cases = {
11469                 /** SNOW 3G encrypt only (UEA2) */
11470                 TEST_CASE_ST(ut_setup, ut_teardown,
11471                         test_snow3g_encryption_test_case_1),
11472                 TEST_CASE_ST(ut_setup, ut_teardown,
11473                         test_snow3g_encryption_test_case_2),
11474                 TEST_CASE_ST(ut_setup, ut_teardown,
11475                         test_snow3g_encryption_test_case_3),
11476                 TEST_CASE_ST(ut_setup, ut_teardown,
11477                         test_snow3g_encryption_test_case_4),
11478                 TEST_CASE_ST(ut_setup, ut_teardown,
11479                         test_snow3g_encryption_test_case_5),
11480                 TEST_CASE_ST(ut_setup, ut_teardown,
11481                         test_snow3g_auth_cipher_with_digest_test_case_1),
11482
11483                 TEST_CASE_ST(ut_setup, ut_teardown,
11484                         test_snow3g_encryption_test_case_1_oop),
11485                 TEST_CASE_ST(ut_setup, ut_teardown,
11486                                 test_snow3g_encryption_test_case_1_oop_sgl),
11487                 TEST_CASE_ST(ut_setup, ut_teardown,
11488                         test_snow3g_decryption_test_case_1_oop),
11489
11490                 TEST_CASE_ST(ut_setup, ut_teardown,
11491                         test_snow3g_encryption_test_case_1_offset_oop),
11492
11493                 /** SNOW 3G decrypt only (UEA2) */
11494                 TEST_CASE_ST(ut_setup, ut_teardown,
11495                         test_snow3g_decryption_test_case_1),
11496                 TEST_CASE_ST(ut_setup, ut_teardown,
11497                         test_snow3g_decryption_test_case_2),
11498                 TEST_CASE_ST(ut_setup, ut_teardown,
11499                         test_snow3g_decryption_test_case_3),
11500                 TEST_CASE_ST(ut_setup, ut_teardown,
11501                         test_snow3g_decryption_test_case_4),
11502                 TEST_CASE_ST(ut_setup, ut_teardown,
11503                         test_snow3g_decryption_test_case_5),
11504                 TEST_CASE_ST(ut_setup, ut_teardown,
11505                         test_snow3g_decryption_with_digest_test_case_1),
11506                 TEST_CASE_ST(ut_setup, ut_teardown,
11507                         test_snow3g_hash_generate_test_case_1),
11508                 TEST_CASE_ST(ut_setup, ut_teardown,
11509                         test_snow3g_hash_generate_test_case_2),
11510                 TEST_CASE_ST(ut_setup, ut_teardown,
11511                         test_snow3g_hash_generate_test_case_3),
11512                 /* Tests with buffers which length is not byte-aligned */
11513                 TEST_CASE_ST(ut_setup, ut_teardown,
11514                         test_snow3g_hash_generate_test_case_4),
11515                 TEST_CASE_ST(ut_setup, ut_teardown,
11516                         test_snow3g_hash_generate_test_case_5),
11517                 TEST_CASE_ST(ut_setup, ut_teardown,
11518                         test_snow3g_hash_generate_test_case_6),
11519                 TEST_CASE_ST(ut_setup, ut_teardown,
11520                         test_snow3g_hash_verify_test_case_1),
11521                 TEST_CASE_ST(ut_setup, ut_teardown,
11522                         test_snow3g_hash_verify_test_case_2),
11523                 TEST_CASE_ST(ut_setup, ut_teardown,
11524                         test_snow3g_hash_verify_test_case_3),
11525                 /* Tests with buffers which length is not byte-aligned */
11526                 TEST_CASE_ST(ut_setup, ut_teardown,
11527                         test_snow3g_hash_verify_test_case_4),
11528                 TEST_CASE_ST(ut_setup, ut_teardown,
11529                         test_snow3g_hash_verify_test_case_5),
11530                 TEST_CASE_ST(ut_setup, ut_teardown,
11531                         test_snow3g_hash_verify_test_case_6),
11532                 TEST_CASE_ST(ut_setup, ut_teardown,
11533                         test_snow3g_cipher_auth_test_case_1),
11534
11535                 /** SNOW 3G generate auth, then encrypt (UEA2) */
11536                 TEST_CASE_ST(ut_setup, ut_teardown,
11537                         test_snow3g_auth_cipher_test_case_1),
11538                 TEST_CASE_ST(ut_setup, ut_teardown,
11539                         test_snow3g_auth_cipher_test_case_2),
11540                 TEST_CASE_ST(ut_setup, ut_teardown,
11541                         test_snow3g_auth_cipher_test_case_2_oop),
11542                 TEST_CASE_ST(ut_setup, ut_teardown,
11543                         test_snow3g_auth_cipher_part_digest_enc),
11544                 TEST_CASE_ST(ut_setup, ut_teardown,
11545                         test_snow3g_auth_cipher_part_digest_enc_oop),
11546                 TEST_CASE_ST(ut_setup, ut_teardown,
11547                         test_snow3g_auth_cipher_test_case_3_sgl),
11548                 TEST_CASE_ST(ut_setup, ut_teardown,
11549                         test_snow3g_auth_cipher_test_case_3_oop_sgl),
11550                 TEST_CASE_ST(ut_setup, ut_teardown,
11551                         test_snow3g_auth_cipher_part_digest_enc_sgl),
11552                 TEST_CASE_ST(ut_setup, ut_teardown,
11553                         test_snow3g_auth_cipher_part_digest_enc_oop_sgl),
11554
11555                 /** SNOW 3G decrypt (UEA2), then verify auth */
11556                 TEST_CASE_ST(ut_setup, ut_teardown,
11557                         test_snow3g_auth_cipher_verify_test_case_1),
11558                 TEST_CASE_ST(ut_setup, ut_teardown,
11559                         test_snow3g_auth_cipher_verify_test_case_2),
11560                 TEST_CASE_ST(ut_setup, ut_teardown,
11561                         test_snow3g_auth_cipher_verify_test_case_2_oop),
11562                 TEST_CASE_ST(ut_setup, ut_teardown,
11563                         test_snow3g_auth_cipher_verify_part_digest_enc),
11564                 TEST_CASE_ST(ut_setup, ut_teardown,
11565                         test_snow3g_auth_cipher_verify_part_digest_enc_oop),
11566                 TEST_CASE_ST(ut_setup, ut_teardown,
11567                         test_snow3g_auth_cipher_verify_test_case_3_sgl),
11568                 TEST_CASE_ST(ut_setup, ut_teardown,
11569                         test_snow3g_auth_cipher_verify_test_case_3_oop_sgl),
11570                 TEST_CASE_ST(ut_setup, ut_teardown,
11571                         test_snow3g_auth_cipher_verify_part_digest_enc_sgl),
11572                 TEST_CASE_ST(ut_setup, ut_teardown,
11573                         test_snow3g_auth_cipher_verify_part_digest_enc_oop_sgl),
11574
11575                 TEST_CASES_END() /**< NULL terminate unit test array */
11576         }
11577 };
11578
11579 static struct unit_test_suite cryptodev_sw_zuc_testsuite  = {
11580         .suite_name = "Crypto Device SW ZUC Unit Test Suite",
11581         .setup = testsuite_setup,
11582         .teardown = testsuite_teardown,
11583         .unit_test_cases = {
11584                 /** ZUC encrypt only (EEA3) */
11585                 TEST_CASE_ST(ut_setup, ut_teardown,
11586                         test_zuc_encryption_test_case_1),
11587                 TEST_CASE_ST(ut_setup, ut_teardown,
11588                         test_zuc_encryption_test_case_2),
11589                 TEST_CASE_ST(ut_setup, ut_teardown,
11590                         test_zuc_encryption_test_case_3),
11591                 TEST_CASE_ST(ut_setup, ut_teardown,
11592                         test_zuc_encryption_test_case_4),
11593                 TEST_CASE_ST(ut_setup, ut_teardown,
11594                         test_zuc_encryption_test_case_5),
11595                 TEST_CASE_ST(ut_setup, ut_teardown,
11596                         test_zuc_hash_generate_test_case_1),
11597                 TEST_CASE_ST(ut_setup, ut_teardown,
11598                         test_zuc_hash_generate_test_case_2),
11599                 TEST_CASE_ST(ut_setup, ut_teardown,
11600                         test_zuc_hash_generate_test_case_3),
11601                 TEST_CASE_ST(ut_setup, ut_teardown,
11602                         test_zuc_hash_generate_test_case_4),
11603                 TEST_CASE_ST(ut_setup, ut_teardown,
11604                         test_zuc_hash_generate_test_case_5),
11605                 TEST_CASE_ST(ut_setup, ut_teardown,
11606                         test_zuc_encryption_test_case_6_sgl),
11607                 TEST_CASES_END() /**< NULL terminate unit test array */
11608         }
11609 };
11610
11611 static struct unit_test_suite cryptodev_caam_jr_testsuite  = {
11612         .suite_name = "Crypto CAAM JR Unit Test Suite",
11613         .setup = testsuite_setup,
11614         .teardown = testsuite_teardown,
11615         .unit_test_cases = {
11616                 TEST_CASE_ST(ut_setup, ut_teardown,
11617                              test_device_configure_invalid_dev_id),
11618                 TEST_CASE_ST(ut_setup, ut_teardown,
11619                              test_multi_session),
11620
11621                 TEST_CASE_ST(ut_setup, ut_teardown,
11622                              test_AES_chain_caam_jr_all),
11623                 TEST_CASE_ST(ut_setup, ut_teardown,
11624                              test_3DES_chain_caam_jr_all),
11625                 TEST_CASE_ST(ut_setup, ut_teardown,
11626                              test_AES_cipheronly_caam_jr_all),
11627                 TEST_CASE_ST(ut_setup, ut_teardown,
11628                              test_3DES_cipheronly_caam_jr_all),
11629                 TEST_CASE_ST(ut_setup, ut_teardown,
11630                              test_authonly_caam_jr_all),
11631
11632                 TEST_CASES_END() /**< NULL terminate unit test array */
11633         }
11634 };
11635
11636 static struct unit_test_suite cryptodev_dpaa_sec_testsuite  = {
11637         .suite_name = "Crypto DPAA_SEC Unit Test Suite",
11638         .setup = testsuite_setup,
11639         .teardown = testsuite_teardown,
11640         .unit_test_cases = {
11641                 TEST_CASE_ST(ut_setup, ut_teardown,
11642                              test_device_configure_invalid_dev_id),
11643                 TEST_CASE_ST(ut_setup, ut_teardown,
11644                              test_multi_session),
11645
11646                 TEST_CASE_ST(ut_setup, ut_teardown,
11647                              test_AES_chain_dpaa_sec_all),
11648                 TEST_CASE_ST(ut_setup, ut_teardown,
11649                              test_3DES_chain_dpaa_sec_all),
11650                 TEST_CASE_ST(ut_setup, ut_teardown,
11651                              test_AES_cipheronly_dpaa_sec_all),
11652                 TEST_CASE_ST(ut_setup, ut_teardown,
11653                              test_3DES_cipheronly_dpaa_sec_all),
11654                 TEST_CASE_ST(ut_setup, ut_teardown,
11655                              test_authonly_dpaa_sec_all),
11656
11657 #ifdef RTE_LIBRTE_SECURITY
11658                 TEST_CASE_ST(ut_setup, ut_teardown,
11659                         test_PDCP_PROTO_cplane_encap_all),
11660
11661                 TEST_CASE_ST(ut_setup, ut_teardown,
11662                         test_PDCP_PROTO_cplane_decap_all),
11663
11664                 TEST_CASE_ST(ut_setup, ut_teardown,
11665                         test_PDCP_PROTO_uplane_encap_all),
11666 #endif
11667                 /** AES GCM Authenticated Encryption */
11668                 TEST_CASE_ST(ut_setup, ut_teardown,
11669                         test_AES_GCM_authenticated_encryption_test_case_1),
11670                 TEST_CASE_ST(ut_setup, ut_teardown,
11671                         test_AES_GCM_authenticated_encryption_test_case_2),
11672                 TEST_CASE_ST(ut_setup, ut_teardown,
11673                         test_AES_GCM_authenticated_encryption_test_case_3),
11674                 TEST_CASE_ST(ut_setup, ut_teardown,
11675                         test_AES_GCM_authenticated_encryption_test_case_4),
11676                 TEST_CASE_ST(ut_setup, ut_teardown,
11677                         test_AES_GCM_authenticated_encryption_test_case_5),
11678                 TEST_CASE_ST(ut_setup, ut_teardown,
11679                         test_AES_GCM_authenticated_encryption_test_case_6),
11680                 TEST_CASE_ST(ut_setup, ut_teardown,
11681                         test_AES_GCM_authenticated_encryption_test_case_7),
11682
11683                 /** AES GCM Authenticated Decryption */
11684                 TEST_CASE_ST(ut_setup, ut_teardown,
11685                         test_AES_GCM_authenticated_decryption_test_case_1),
11686                 TEST_CASE_ST(ut_setup, ut_teardown,
11687                         test_AES_GCM_authenticated_decryption_test_case_2),
11688                 TEST_CASE_ST(ut_setup, ut_teardown,
11689                         test_AES_GCM_authenticated_decryption_test_case_3),
11690                 TEST_CASE_ST(ut_setup, ut_teardown,
11691                         test_AES_GCM_authenticated_decryption_test_case_4),
11692                 TEST_CASE_ST(ut_setup, ut_teardown,
11693                         test_AES_GCM_authenticated_decryption_test_case_5),
11694                 TEST_CASE_ST(ut_setup, ut_teardown,
11695                         test_AES_GCM_authenticated_decryption_test_case_6),
11696                 TEST_CASE_ST(ut_setup, ut_teardown,
11697                         test_AES_GCM_authenticated_decryption_test_case_7),
11698
11699                 /** AES GCM Authenticated Encryption 256 bits key */
11700                 TEST_CASE_ST(ut_setup, ut_teardown,
11701                         test_AES_GCM_auth_encryption_test_case_256_1),
11702                 TEST_CASE_ST(ut_setup, ut_teardown,
11703                         test_AES_GCM_auth_encryption_test_case_256_2),
11704                 TEST_CASE_ST(ut_setup, ut_teardown,
11705                         test_AES_GCM_auth_encryption_test_case_256_3),
11706                 TEST_CASE_ST(ut_setup, ut_teardown,
11707                         test_AES_GCM_auth_encryption_test_case_256_4),
11708                 TEST_CASE_ST(ut_setup, ut_teardown,
11709                         test_AES_GCM_auth_encryption_test_case_256_5),
11710                 TEST_CASE_ST(ut_setup, ut_teardown,
11711                         test_AES_GCM_auth_encryption_test_case_256_6),
11712                 TEST_CASE_ST(ut_setup, ut_teardown,
11713                         test_AES_GCM_auth_encryption_test_case_256_7),
11714
11715                 /** AES GCM Authenticated Decryption 256 bits key */
11716                 TEST_CASE_ST(ut_setup, ut_teardown,
11717                         test_AES_GCM_auth_decryption_test_case_256_1),
11718                 TEST_CASE_ST(ut_setup, ut_teardown,
11719                         test_AES_GCM_auth_decryption_test_case_256_2),
11720                 TEST_CASE_ST(ut_setup, ut_teardown,
11721                         test_AES_GCM_auth_decryption_test_case_256_3),
11722                 TEST_CASE_ST(ut_setup, ut_teardown,
11723                         test_AES_GCM_auth_decryption_test_case_256_4),
11724                 TEST_CASE_ST(ut_setup, ut_teardown,
11725                         test_AES_GCM_auth_decryption_test_case_256_5),
11726                 TEST_CASE_ST(ut_setup, ut_teardown,
11727                         test_AES_GCM_auth_decryption_test_case_256_6),
11728                 TEST_CASE_ST(ut_setup, ut_teardown,
11729                         test_AES_GCM_auth_decryption_test_case_256_7),
11730
11731                 /** Out of place tests */
11732                 TEST_CASE_ST(ut_setup, ut_teardown,
11733                         test_AES_GCM_authenticated_encryption_oop_test_case_1),
11734                 TEST_CASE_ST(ut_setup, ut_teardown,
11735                         test_AES_GCM_authenticated_decryption_oop_test_case_1),
11736
11737                 /** Scatter-Gather */
11738                 TEST_CASE_ST(ut_setup, ut_teardown,
11739                         test_AES_GCM_auth_encrypt_SGL_in_place_1500B),
11740                 TEST_CASE_ST(ut_setup, ut_teardown,
11741                         test_AES_GCM_auth_encrypt_SGL_out_of_place_400B_400B),
11742                 TEST_CASE_ST(ut_setup, ut_teardown,
11743                         test_AES_GCM_auth_encrypt_SGL_out_of_place_400B_1seg),
11744                 TEST_CASE_ST(ut_setup, ut_teardown,
11745                         test_AES_GCM_auth_encrypt_SGL_out_of_place_1500B_2000B),
11746
11747                 TEST_CASES_END() /**< NULL terminate unit test array */
11748         }
11749 };
11750
11751 static struct unit_test_suite cryptodev_dpaa2_sec_testsuite  = {
11752         .suite_name = "Crypto DPAA2_SEC Unit Test Suite",
11753         .setup = testsuite_setup,
11754         .teardown = testsuite_teardown,
11755         .unit_test_cases = {
11756                 TEST_CASE_ST(ut_setup, ut_teardown,
11757                         test_device_configure_invalid_dev_id),
11758                 TEST_CASE_ST(ut_setup, ut_teardown,
11759                         test_multi_session),
11760
11761                 TEST_CASE_ST(ut_setup, ut_teardown,
11762                         test_AES_chain_dpaa2_sec_all),
11763                 TEST_CASE_ST(ut_setup, ut_teardown,
11764                         test_3DES_chain_dpaa2_sec_all),
11765                 TEST_CASE_ST(ut_setup, ut_teardown,
11766                         test_AES_cipheronly_dpaa2_sec_all),
11767                 TEST_CASE_ST(ut_setup, ut_teardown,
11768                         test_3DES_cipheronly_dpaa2_sec_all),
11769                 TEST_CASE_ST(ut_setup, ut_teardown,
11770                         test_authonly_dpaa2_sec_all),
11771
11772 #ifdef RTE_LIBRTE_SECURITY
11773                 TEST_CASE_ST(ut_setup, ut_teardown,
11774                         test_PDCP_PROTO_cplane_encap_all),
11775
11776                 TEST_CASE_ST(ut_setup, ut_teardown,
11777                         test_PDCP_PROTO_cplane_decap_all),
11778
11779                 TEST_CASE_ST(ut_setup, ut_teardown,
11780                         test_PDCP_PROTO_uplane_encap_all),
11781 #endif
11782                 /** AES GCM Authenticated Encryption */
11783                 TEST_CASE_ST(ut_setup, ut_teardown,
11784                         test_AES_GCM_authenticated_encryption_test_case_1),
11785                 TEST_CASE_ST(ut_setup, ut_teardown,
11786                         test_AES_GCM_authenticated_encryption_test_case_2),
11787                 TEST_CASE_ST(ut_setup, ut_teardown,
11788                         test_AES_GCM_authenticated_encryption_test_case_3),
11789                 TEST_CASE_ST(ut_setup, ut_teardown,
11790                         test_AES_GCM_authenticated_encryption_test_case_4),
11791                 TEST_CASE_ST(ut_setup, ut_teardown,
11792                         test_AES_GCM_authenticated_encryption_test_case_5),
11793                 TEST_CASE_ST(ut_setup, ut_teardown,
11794                         test_AES_GCM_authenticated_encryption_test_case_6),
11795                 TEST_CASE_ST(ut_setup, ut_teardown,
11796                         test_AES_GCM_authenticated_encryption_test_case_7),
11797
11798                 /** AES GCM Authenticated Decryption */
11799                 TEST_CASE_ST(ut_setup, ut_teardown,
11800                         test_AES_GCM_authenticated_decryption_test_case_1),
11801                 TEST_CASE_ST(ut_setup, ut_teardown,
11802                         test_AES_GCM_authenticated_decryption_test_case_2),
11803                 TEST_CASE_ST(ut_setup, ut_teardown,
11804                         test_AES_GCM_authenticated_decryption_test_case_3),
11805                 TEST_CASE_ST(ut_setup, ut_teardown,
11806                         test_AES_GCM_authenticated_decryption_test_case_4),
11807                 TEST_CASE_ST(ut_setup, ut_teardown,
11808                         test_AES_GCM_authenticated_decryption_test_case_5),
11809                 TEST_CASE_ST(ut_setup, ut_teardown,
11810                         test_AES_GCM_authenticated_decryption_test_case_6),
11811                 TEST_CASE_ST(ut_setup, ut_teardown,
11812                         test_AES_GCM_authenticated_decryption_test_case_7),
11813
11814                 /** AES GCM Authenticated Encryption 192 bits key */
11815                 TEST_CASE_ST(ut_setup, ut_teardown,
11816                         test_AES_GCM_auth_encryption_test_case_192_1),
11817                 TEST_CASE_ST(ut_setup, ut_teardown,
11818                         test_AES_GCM_auth_encryption_test_case_192_2),
11819                 TEST_CASE_ST(ut_setup, ut_teardown,
11820                         test_AES_GCM_auth_encryption_test_case_192_3),
11821                 TEST_CASE_ST(ut_setup, ut_teardown,
11822                         test_AES_GCM_auth_encryption_test_case_192_4),
11823                 TEST_CASE_ST(ut_setup, ut_teardown,
11824                         test_AES_GCM_auth_encryption_test_case_192_5),
11825                 TEST_CASE_ST(ut_setup, ut_teardown,
11826                         test_AES_GCM_auth_encryption_test_case_192_6),
11827                 TEST_CASE_ST(ut_setup, ut_teardown,
11828                         test_AES_GCM_auth_encryption_test_case_192_7),
11829
11830                 /** AES GCM Authenticated Decryption 192 bits key */
11831                 TEST_CASE_ST(ut_setup, ut_teardown,
11832                         test_AES_GCM_auth_decryption_test_case_192_1),
11833                 TEST_CASE_ST(ut_setup, ut_teardown,
11834                         test_AES_GCM_auth_decryption_test_case_192_2),
11835                 TEST_CASE_ST(ut_setup, ut_teardown,
11836                         test_AES_GCM_auth_decryption_test_case_192_3),
11837                 TEST_CASE_ST(ut_setup, ut_teardown,
11838                         test_AES_GCM_auth_decryption_test_case_192_4),
11839                 TEST_CASE_ST(ut_setup, ut_teardown,
11840                         test_AES_GCM_auth_decryption_test_case_192_5),
11841                 TEST_CASE_ST(ut_setup, ut_teardown,
11842                         test_AES_GCM_auth_decryption_test_case_192_6),
11843                 TEST_CASE_ST(ut_setup, ut_teardown,
11844                         test_AES_GCM_auth_decryption_test_case_192_7),
11845
11846                 /** AES GCM Authenticated Encryption 256 bits key */
11847                 TEST_CASE_ST(ut_setup, ut_teardown,
11848                         test_AES_GCM_auth_encryption_test_case_256_1),
11849                 TEST_CASE_ST(ut_setup, ut_teardown,
11850                         test_AES_GCM_auth_encryption_test_case_256_2),
11851                 TEST_CASE_ST(ut_setup, ut_teardown,
11852                         test_AES_GCM_auth_encryption_test_case_256_3),
11853                 TEST_CASE_ST(ut_setup, ut_teardown,
11854                         test_AES_GCM_auth_encryption_test_case_256_4),
11855                 TEST_CASE_ST(ut_setup, ut_teardown,
11856                         test_AES_GCM_auth_encryption_test_case_256_5),
11857                 TEST_CASE_ST(ut_setup, ut_teardown,
11858                         test_AES_GCM_auth_encryption_test_case_256_6),
11859                 TEST_CASE_ST(ut_setup, ut_teardown,
11860                         test_AES_GCM_auth_encryption_test_case_256_7),
11861
11862                 /** AES GCM Authenticated Decryption 256 bits key */
11863                 TEST_CASE_ST(ut_setup, ut_teardown,
11864                         test_AES_GCM_auth_decryption_test_case_256_1),
11865                 TEST_CASE_ST(ut_setup, ut_teardown,
11866                         test_AES_GCM_auth_decryption_test_case_256_2),
11867                 TEST_CASE_ST(ut_setup, ut_teardown,
11868                         test_AES_GCM_auth_decryption_test_case_256_3),
11869                 TEST_CASE_ST(ut_setup, ut_teardown,
11870                         test_AES_GCM_auth_decryption_test_case_256_4),
11871                 TEST_CASE_ST(ut_setup, ut_teardown,
11872                         test_AES_GCM_auth_decryption_test_case_256_5),
11873                 TEST_CASE_ST(ut_setup, ut_teardown,
11874                         test_AES_GCM_auth_decryption_test_case_256_6),
11875                 TEST_CASE_ST(ut_setup, ut_teardown,
11876                         test_AES_GCM_auth_decryption_test_case_256_7),
11877
11878                 /** Out of place tests */
11879                 TEST_CASE_ST(ut_setup, ut_teardown,
11880                         test_AES_GCM_authenticated_encryption_oop_test_case_1),
11881                 TEST_CASE_ST(ut_setup, ut_teardown,
11882                         test_AES_GCM_authenticated_decryption_oop_test_case_1),
11883
11884                 /** Scatter-Gather */
11885                 TEST_CASE_ST(ut_setup, ut_teardown,
11886                         test_AES_GCM_auth_encrypt_SGL_in_place_1500B),
11887                 TEST_CASE_ST(ut_setup, ut_teardown,
11888                         test_AES_GCM_auth_encrypt_SGL_out_of_place_400B_400B),
11889                 TEST_CASE_ST(ut_setup, ut_teardown,
11890                         test_AES_GCM_auth_encrypt_SGL_out_of_place_400B_1seg),
11891                 TEST_CASE_ST(ut_setup, ut_teardown,
11892                         test_AES_GCM_auth_encrypt_SGL_out_of_place_1500B_2000B),
11893
11894                 TEST_CASES_END() /**< NULL terminate unit test array */
11895         }
11896 };
11897
11898 static struct unit_test_suite cryptodev_null_testsuite  = {
11899         .suite_name = "Crypto Device NULL Unit Test Suite",
11900         .setup = testsuite_setup,
11901         .teardown = testsuite_teardown,
11902         .unit_test_cases = {
11903                 TEST_CASE_ST(ut_setup, ut_teardown,
11904                         test_null_invalid_operation),
11905                 TEST_CASE_ST(ut_setup, ut_teardown,
11906                         test_null_burst_operation),
11907                 TEST_CASE_ST(ut_setup, ut_teardown,
11908                         test_AES_chain_null_all),
11909                 TEST_CASE_ST(ut_setup, ut_teardown,
11910                         test_AES_cipheronly_null_all),
11911                 TEST_CASE_ST(ut_setup, ut_teardown,
11912                                 test_authonly_null_all),
11913
11914                 TEST_CASES_END() /**< NULL terminate unit test array */
11915         }
11916 };
11917
11918 static struct unit_test_suite cryptodev_armv8_testsuite  = {
11919         .suite_name = "Crypto Device ARMv8 Unit Test Suite",
11920         .setup = testsuite_setup,
11921         .teardown = testsuite_teardown,
11922         .unit_test_cases = {
11923                 TEST_CASE_ST(ut_setup, ut_teardown, test_AES_chain_armv8_all),
11924
11925                 /** Negative tests */
11926                 TEST_CASE_ST(ut_setup, ut_teardown,
11927                         auth_decryption_AES128CBC_HMAC_SHA1_fail_data_corrupt),
11928                 TEST_CASE_ST(ut_setup, ut_teardown,
11929                         auth_decryption_AES128CBC_HMAC_SHA1_fail_tag_corrupt),
11930
11931                 TEST_CASES_END() /**< NULL terminate unit test array */
11932         }
11933 };
11934
11935 static struct unit_test_suite cryptodev_mrvl_testsuite  = {
11936         .suite_name = "Crypto Device Marvell Component Test Suite",
11937         .setup = testsuite_setup,
11938         .teardown = testsuite_teardown,
11939         .unit_test_cases = {
11940                 TEST_CASE_ST(ut_setup, ut_teardown, test_multi_session),
11941                 TEST_CASE_ST(ut_setup, ut_teardown,
11942                                 test_multi_session_random_usage),
11943                 TEST_CASE_ST(ut_setup, ut_teardown,
11944                                 test_AES_chain_mrvl_all),
11945                 TEST_CASE_ST(ut_setup, ut_teardown,
11946                                 test_AES_cipheronly_mrvl_all),
11947                 TEST_CASE_ST(ut_setup, ut_teardown,
11948                                 test_authonly_mrvl_all),
11949                 TEST_CASE_ST(ut_setup, ut_teardown,
11950                                 test_3DES_chain_mrvl_all),
11951                 TEST_CASE_ST(ut_setup, ut_teardown,
11952                                 test_3DES_cipheronly_mrvl_all),
11953
11954                 /** Negative tests */
11955                 TEST_CASE_ST(ut_setup, ut_teardown,
11956                         authentication_verify_HMAC_SHA1_fail_data_corrupt),
11957                 TEST_CASE_ST(ut_setup, ut_teardown,
11958                         authentication_verify_HMAC_SHA1_fail_tag_corrupt),
11959                 TEST_CASE_ST(ut_setup, ut_teardown,
11960                         auth_decryption_AES128CBC_HMAC_SHA1_fail_data_corrupt),
11961                 TEST_CASE_ST(ut_setup, ut_teardown,
11962                         auth_decryption_AES128CBC_HMAC_SHA1_fail_tag_corrupt),
11963
11964                 TEST_CASES_END() /**< NULL terminate unit test array */
11965         }
11966 };
11967
11968 static struct unit_test_suite cryptodev_ccp_testsuite  = {
11969         .suite_name = "Crypto Device CCP Unit Test Suite",
11970         .setup = testsuite_setup,
11971         .teardown = testsuite_teardown,
11972         .unit_test_cases = {
11973                 TEST_CASE_ST(ut_setup, ut_teardown, test_multi_session),
11974                 TEST_CASE_ST(ut_setup, ut_teardown,
11975                                 test_multi_session_random_usage),
11976                 TEST_CASE_ST(ut_setup, ut_teardown,
11977                                 test_AES_chain_ccp_all),
11978                 TEST_CASE_ST(ut_setup, ut_teardown,
11979                                 test_AES_cipheronly_ccp_all),
11980                 TEST_CASE_ST(ut_setup, ut_teardown,
11981                                 test_3DES_chain_ccp_all),
11982                 TEST_CASE_ST(ut_setup, ut_teardown,
11983                                 test_3DES_cipheronly_ccp_all),
11984                 TEST_CASE_ST(ut_setup, ut_teardown,
11985                                 test_authonly_ccp_all),
11986
11987                 /** Negative tests */
11988                 TEST_CASE_ST(ut_setup, ut_teardown,
11989                         authentication_verify_HMAC_SHA1_fail_data_corrupt),
11990                 TEST_CASE_ST(ut_setup, ut_teardown,
11991                         authentication_verify_HMAC_SHA1_fail_tag_corrupt),
11992                 TEST_CASE_ST(ut_setup, ut_teardown,
11993                         auth_decryption_AES128CBC_HMAC_SHA1_fail_data_corrupt),
11994                 TEST_CASE_ST(ut_setup, ut_teardown,
11995                         auth_decryption_AES128CBC_HMAC_SHA1_fail_tag_corrupt),
11996
11997                 TEST_CASES_END() /**< NULL terminate unit test array */
11998         }
11999 };
12000
12001 static struct unit_test_suite cryptodev_octeontx_testsuite  = {
12002         .suite_name = "Crypto Device OCTEONTX Unit Test Suite",
12003         .setup = testsuite_setup,
12004         .teardown = testsuite_teardown,
12005         .unit_test_cases = {
12006                 TEST_CASE_ST(ut_setup, ut_teardown,
12007                         test_AES_chain_octeontx_all),
12008                 TEST_CASE_ST(ut_setup, ut_teardown,
12009                         test_AES_cipheronly_octeontx_all),
12010                 TEST_CASE_ST(ut_setup, ut_teardown,
12011                         test_3DES_chain_octeontx_all),
12012                 TEST_CASE_ST(ut_setup, ut_teardown,
12013                         test_3DES_cipheronly_octeontx_all),
12014                 TEST_CASE_ST(ut_setup, ut_teardown,
12015                         test_authonly_octeontx_all),
12016
12017                 /** AES GCM Authenticated Encryption */
12018                 TEST_CASE_ST(ut_setup, ut_teardown,
12019                         test_AES_GCM_authenticated_encryption_test_case_1),
12020                 TEST_CASE_ST(ut_setup, ut_teardown,
12021                         test_AES_GCM_authenticated_encryption_test_case_2),
12022                 TEST_CASE_ST(ut_setup, ut_teardown,
12023                         test_AES_GCM_authenticated_encryption_test_case_3),
12024                 TEST_CASE_ST(ut_setup, ut_teardown,
12025                         test_AES_GCM_authenticated_encryption_test_case_4),
12026                 TEST_CASE_ST(ut_setup, ut_teardown,
12027                         test_AES_GCM_authenticated_encryption_test_case_5),
12028                 TEST_CASE_ST(ut_setup, ut_teardown,
12029                         test_AES_GCM_authenticated_encryption_test_case_6),
12030                 TEST_CASE_ST(ut_setup, ut_teardown,
12031                         test_AES_GCM_authenticated_encryption_test_case_7),
12032
12033                 /** AES GCM Authenticated Decryption */
12034                 TEST_CASE_ST(ut_setup, ut_teardown,
12035                         test_AES_GCM_authenticated_decryption_test_case_1),
12036                 TEST_CASE_ST(ut_setup, ut_teardown,
12037                         test_AES_GCM_authenticated_decryption_test_case_2),
12038                 TEST_CASE_ST(ut_setup, ut_teardown,
12039                         test_AES_GCM_authenticated_decryption_test_case_3),
12040                 TEST_CASE_ST(ut_setup, ut_teardown,
12041                         test_AES_GCM_authenticated_decryption_test_case_4),
12042                 TEST_CASE_ST(ut_setup, ut_teardown,
12043                         test_AES_GCM_authenticated_decryption_test_case_5),
12044                 TEST_CASE_ST(ut_setup, ut_teardown,
12045                         test_AES_GCM_authenticated_decryption_test_case_6),
12046                 TEST_CASE_ST(ut_setup, ut_teardown,
12047                         test_AES_GCM_authenticated_decryption_test_case_7),
12048                 /** AES GMAC Authentication */
12049                 TEST_CASE_ST(ut_setup, ut_teardown,
12050                         test_AES_GMAC_authentication_test_case_1),
12051                 TEST_CASE_ST(ut_setup, ut_teardown,
12052                         test_AES_GMAC_authentication_verify_test_case_1),
12053                 TEST_CASE_ST(ut_setup, ut_teardown,
12054                         test_AES_GMAC_authentication_test_case_2),
12055                 TEST_CASE_ST(ut_setup, ut_teardown,
12056                         test_AES_GMAC_authentication_verify_test_case_2),
12057                 TEST_CASE_ST(ut_setup, ut_teardown,
12058                         test_AES_GMAC_authentication_test_case_3),
12059                 TEST_CASE_ST(ut_setup, ut_teardown,
12060                         test_AES_GMAC_authentication_verify_test_case_3),
12061
12062                 /** SNOW 3G encrypt only (UEA2) */
12063                 TEST_CASE_ST(ut_setup, ut_teardown,
12064                         test_snow3g_encryption_test_case_1),
12065                 TEST_CASE_ST(ut_setup, ut_teardown,
12066                         test_snow3g_encryption_test_case_2),
12067                 TEST_CASE_ST(ut_setup, ut_teardown,
12068                         test_snow3g_encryption_test_case_3),
12069                 TEST_CASE_ST(ut_setup, ut_teardown,
12070                         test_snow3g_encryption_test_case_4),
12071                 TEST_CASE_ST(ut_setup, ut_teardown,
12072                         test_snow3g_encryption_test_case_5),
12073
12074                 TEST_CASE_ST(ut_setup, ut_teardown,
12075                         test_snow3g_encryption_test_case_1_oop),
12076                 TEST_CASE_ST(ut_setup, ut_teardown,
12077                         test_snow3g_decryption_test_case_1_oop),
12078                 TEST_CASE_ST(ut_setup, ut_teardown,
12079                         test_snow3g_encryption_test_case_1_oop_sgl),
12080
12081                 /** SNOW 3G decrypt only (UEA2) */
12082                 TEST_CASE_ST(ut_setup, ut_teardown,
12083                         test_snow3g_decryption_test_case_1),
12084                 TEST_CASE_ST(ut_setup, ut_teardown,
12085                         test_snow3g_decryption_test_case_2),
12086                 TEST_CASE_ST(ut_setup, ut_teardown,
12087                         test_snow3g_decryption_test_case_3),
12088                 TEST_CASE_ST(ut_setup, ut_teardown,
12089                         test_snow3g_decryption_test_case_4),
12090                 TEST_CASE_ST(ut_setup, ut_teardown,
12091                         test_snow3g_decryption_test_case_5),
12092
12093                 TEST_CASE_ST(ut_setup, ut_teardown,
12094                         test_snow3g_hash_generate_test_case_1),
12095                 TEST_CASE_ST(ut_setup, ut_teardown,
12096                         test_snow3g_hash_generate_test_case_2),
12097                 TEST_CASE_ST(ut_setup, ut_teardown,
12098                         test_snow3g_hash_generate_test_case_3),
12099                 TEST_CASE_ST(ut_setup, ut_teardown,
12100                         test_snow3g_hash_verify_test_case_1),
12101                 TEST_CASE_ST(ut_setup, ut_teardown,
12102                         test_snow3g_hash_verify_test_case_2),
12103                 TEST_CASE_ST(ut_setup, ut_teardown,
12104                         test_snow3g_hash_verify_test_case_3),
12105
12106                 /** ZUC encrypt only (EEA3) */
12107                 TEST_CASE_ST(ut_setup, ut_teardown,
12108                         test_zuc_encryption_test_case_1),
12109                 TEST_CASE_ST(ut_setup, ut_teardown,
12110                         test_zuc_encryption_test_case_2),
12111                 TEST_CASE_ST(ut_setup, ut_teardown,
12112                         test_zuc_encryption_test_case_3),
12113                 TEST_CASE_ST(ut_setup, ut_teardown,
12114                         test_zuc_encryption_test_case_4),
12115                 TEST_CASE_ST(ut_setup, ut_teardown,
12116                         test_zuc_encryption_test_case_5),
12117                 TEST_CASE_ST(ut_setup, ut_teardown,
12118                         test_zuc_hash_generate_test_case_1),
12119                 TEST_CASE_ST(ut_setup, ut_teardown,
12120                         test_zuc_hash_generate_test_case_2),
12121                 TEST_CASE_ST(ut_setup, ut_teardown,
12122                         test_zuc_hash_generate_test_case_3),
12123                 TEST_CASE_ST(ut_setup, ut_teardown,
12124                         test_zuc_hash_generate_test_case_4),
12125                 TEST_CASE_ST(ut_setup, ut_teardown,
12126                         test_zuc_hash_generate_test_case_5),
12127                 TEST_CASE_ST(ut_setup, ut_teardown,
12128                         test_zuc_encryption_test_case_6_sgl),
12129
12130                 /** KASUMI encrypt only (UEA1) */
12131                 TEST_CASE_ST(ut_setup, ut_teardown,
12132                         test_kasumi_encryption_test_case_1),
12133                 TEST_CASE_ST(ut_setup, ut_teardown,
12134                         test_kasumi_encryption_test_case_2),
12135                 TEST_CASE_ST(ut_setup, ut_teardown,
12136                         test_kasumi_encryption_test_case_3),
12137                 TEST_CASE_ST(ut_setup, ut_teardown,
12138                         test_kasumi_encryption_test_case_4),
12139                 TEST_CASE_ST(ut_setup, ut_teardown,
12140                         test_kasumi_encryption_test_case_5),
12141                 TEST_CASE_ST(ut_setup, ut_teardown,
12142                         test_kasumi_encryption_test_case_1_sgl),
12143                 TEST_CASE_ST(ut_setup, ut_teardown,
12144                         test_kasumi_encryption_test_case_1_oop_sgl),
12145                 /** KASUMI decrypt only (UEA1) */
12146                 TEST_CASE_ST(ut_setup, ut_teardown,
12147                         test_kasumi_decryption_test_case_1),
12148                 TEST_CASE_ST(ut_setup, ut_teardown,
12149                         test_kasumi_decryption_test_case_2),
12150                 TEST_CASE_ST(ut_setup, ut_teardown,
12151                         test_kasumi_decryption_test_case_3),
12152                 TEST_CASE_ST(ut_setup, ut_teardown,
12153                         test_kasumi_decryption_test_case_4),
12154                 TEST_CASE_ST(ut_setup, ut_teardown,
12155                         test_kasumi_decryption_test_case_5),
12156
12157                 TEST_CASE_ST(ut_setup, ut_teardown,
12158                         test_kasumi_encryption_test_case_1_oop),
12159                 TEST_CASE_ST(ut_setup, ut_teardown,
12160                         test_kasumi_decryption_test_case_1_oop),
12161
12162                 /** KASUMI hash only (UIA1) */
12163                 TEST_CASE_ST(ut_setup, ut_teardown,
12164                         test_kasumi_hash_generate_test_case_1),
12165                 TEST_CASE_ST(ut_setup, ut_teardown,
12166                         test_kasumi_hash_generate_test_case_2),
12167                 TEST_CASE_ST(ut_setup, ut_teardown,
12168                         test_kasumi_hash_generate_test_case_3),
12169                 TEST_CASE_ST(ut_setup, ut_teardown,
12170                         test_kasumi_hash_generate_test_case_4),
12171                 TEST_CASE_ST(ut_setup, ut_teardown,
12172                         test_kasumi_hash_generate_test_case_5),
12173                 TEST_CASE_ST(ut_setup, ut_teardown,
12174                         test_kasumi_hash_generate_test_case_6),
12175                 TEST_CASE_ST(ut_setup, ut_teardown,
12176                         test_kasumi_hash_verify_test_case_1),
12177                 TEST_CASE_ST(ut_setup, ut_teardown,
12178                         test_kasumi_hash_verify_test_case_2),
12179                 TEST_CASE_ST(ut_setup, ut_teardown,
12180                         test_kasumi_hash_verify_test_case_3),
12181                 TEST_CASE_ST(ut_setup, ut_teardown,
12182                         test_kasumi_hash_verify_test_case_4),
12183                 TEST_CASE_ST(ut_setup, ut_teardown,
12184                         test_kasumi_hash_verify_test_case_5),
12185
12186                 /** NULL tests */
12187                 TEST_CASE_ST(ut_setup, ut_teardown,
12188                         test_null_cipher_only_operation),
12189                 TEST_CASE_ST(ut_setup, ut_teardown,
12190                         test_null_auth_only_operation),
12191                 TEST_CASE_ST(ut_setup, ut_teardown,
12192                         test_null_cipher_auth_operation),
12193                 TEST_CASE_ST(ut_setup, ut_teardown,
12194                         test_null_auth_cipher_operation),
12195
12196                 /** Negative tests */
12197                 TEST_CASE_ST(ut_setup, ut_teardown,
12198                         authentication_verify_HMAC_SHA1_fail_data_corrupt),
12199                 TEST_CASE_ST(ut_setup, ut_teardown,
12200                         authentication_verify_HMAC_SHA1_fail_tag_corrupt),
12201                 TEST_CASE_ST(ut_setup, ut_teardown,
12202                         authentication_verify_AES128_GMAC_fail_data_corrupt),
12203                 TEST_CASE_ST(ut_setup, ut_teardown,
12204                         authentication_verify_AES128_GMAC_fail_tag_corrupt),
12205                 TEST_CASE_ST(ut_setup, ut_teardown,
12206                         auth_decryption_AES128CBC_HMAC_SHA1_fail_data_corrupt),
12207                 TEST_CASE_ST(ut_setup, ut_teardown,
12208                         auth_decryption_AES128CBC_HMAC_SHA1_fail_tag_corrupt),
12209                 TEST_CASES_END() /**< NULL terminate unit test array */
12210         }
12211 };
12212
12213 static int
12214 test_cryptodev_qat(void /*argv __rte_unused, int argc __rte_unused*/)
12215 {
12216         gbl_driver_id = rte_cryptodev_driver_id_get(
12217                         RTE_STR(CRYPTODEV_NAME_QAT_SYM_PMD));
12218
12219         if (gbl_driver_id == -1) {
12220                 RTE_LOG(ERR, USER1, "QAT PMD must be loaded. Check that both "
12221                 "CONFIG_RTE_LIBRTE_PMD_QAT and CONFIG_RTE_LIBRTE_PMD_QAT_SYM "
12222                 "are enabled in config file to run this testsuite.\n");
12223                 return TEST_SKIPPED;
12224         }
12225
12226         return unit_test_suite_runner(&cryptodev_qat_testsuite);
12227 }
12228
12229 static int
12230 test_cryptodev_virtio(void /*argv __rte_unused, int argc __rte_unused*/)
12231 {
12232         gbl_driver_id = rte_cryptodev_driver_id_get(
12233                         RTE_STR(CRYPTODEV_NAME_VIRTIO_PMD));
12234
12235         if (gbl_driver_id == -1) {
12236                 RTE_LOG(ERR, USER1, "VIRTIO PMD must be loaded. Check if "
12237                                 "CONFIG_RTE_LIBRTE_PMD_VIRTIO_CRYPTO is enabled "
12238                                 "in config file to run this testsuite.\n");
12239                 return TEST_FAILED;
12240         }
12241
12242         return unit_test_suite_runner(&cryptodev_virtio_testsuite);
12243 }
12244
12245 static int
12246 test_cryptodev_aesni_mb(void /*argv __rte_unused, int argc __rte_unused*/)
12247 {
12248         gbl_driver_id = rte_cryptodev_driver_id_get(
12249                         RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD));
12250
12251         if (gbl_driver_id == -1) {
12252                 RTE_LOG(ERR, USER1, "AESNI MB PMD must be loaded. Check if "
12253                                 "CONFIG_RTE_LIBRTE_PMD_AESNI_MB is enabled "
12254                                 "in config file to run this testsuite.\n");
12255                 return TEST_SKIPPED;
12256         }
12257
12258         return unit_test_suite_runner(&cryptodev_aesni_mb_testsuite);
12259 }
12260
12261 static int
12262 test_cryptodev_openssl(void)
12263 {
12264         gbl_driver_id = rte_cryptodev_driver_id_get(
12265                         RTE_STR(CRYPTODEV_NAME_OPENSSL_PMD));
12266
12267         if (gbl_driver_id == -1) {
12268                 RTE_LOG(ERR, USER1, "OPENSSL PMD must be loaded. Check if "
12269                                 "CONFIG_RTE_LIBRTE_PMD_OPENSSL is enabled "
12270                                 "in config file to run this testsuite.\n");
12271                 return TEST_SKIPPED;
12272         }
12273
12274         return unit_test_suite_runner(&cryptodev_openssl_testsuite);
12275 }
12276
12277 static int
12278 test_cryptodev_aesni_gcm(void)
12279 {
12280         gbl_driver_id = rte_cryptodev_driver_id_get(
12281                         RTE_STR(CRYPTODEV_NAME_AESNI_GCM_PMD));
12282
12283         if (gbl_driver_id == -1) {
12284                 RTE_LOG(ERR, USER1, "AESNI GCM PMD must be loaded. Check if "
12285                                 "CONFIG_RTE_LIBRTE_PMD_AESNI_GCM is enabled "
12286                                 "in config file to run this testsuite.\n");
12287                 return TEST_SKIPPED;
12288         }
12289
12290         return unit_test_suite_runner(&cryptodev_aesni_gcm_testsuite);
12291 }
12292
12293 static int
12294 test_cryptodev_null(void)
12295 {
12296         gbl_driver_id = rte_cryptodev_driver_id_get(
12297                         RTE_STR(CRYPTODEV_NAME_NULL_PMD));
12298
12299         if (gbl_driver_id == -1) {
12300                 RTE_LOG(ERR, USER1, "NULL PMD must be loaded. Check if "
12301                                 "CONFIG_RTE_LIBRTE_PMD_NULL is enabled "
12302                                 "in config file to run this testsuite.\n");
12303                 return TEST_SKIPPED;
12304         }
12305
12306         return unit_test_suite_runner(&cryptodev_null_testsuite);
12307 }
12308
12309 static int
12310 test_cryptodev_sw_snow3g(void /*argv __rte_unused, int argc __rte_unused*/)
12311 {
12312         gbl_driver_id = rte_cryptodev_driver_id_get(
12313                         RTE_STR(CRYPTODEV_NAME_SNOW3G_PMD));
12314
12315         if (gbl_driver_id == -1) {
12316                 RTE_LOG(ERR, USER1, "SNOW3G PMD must be loaded. Check if "
12317                                 "CONFIG_RTE_LIBRTE_PMD_SNOW3G is enabled "
12318                                 "in config file to run this testsuite.\n");
12319                 return TEST_SKIPPED;
12320         }
12321
12322         return unit_test_suite_runner(&cryptodev_sw_snow3g_testsuite);
12323 }
12324
12325 static int
12326 test_cryptodev_sw_kasumi(void /*argv __rte_unused, int argc __rte_unused*/)
12327 {
12328         gbl_driver_id = rte_cryptodev_driver_id_get(
12329                         RTE_STR(CRYPTODEV_NAME_KASUMI_PMD));
12330
12331         if (gbl_driver_id == -1) {
12332                 RTE_LOG(ERR, USER1, "ZUC PMD must be loaded. Check if "
12333                                 "CONFIG_RTE_LIBRTE_PMD_KASUMI is enabled "
12334                                 "in config file to run this testsuite.\n");
12335                 return TEST_SKIPPED;
12336         }
12337
12338         return unit_test_suite_runner(&cryptodev_sw_kasumi_testsuite);
12339 }
12340
12341 static int
12342 test_cryptodev_sw_zuc(void /*argv __rte_unused, int argc __rte_unused*/)
12343 {
12344         gbl_driver_id = rte_cryptodev_driver_id_get(
12345                         RTE_STR(CRYPTODEV_NAME_ZUC_PMD));
12346
12347         if (gbl_driver_id == -1) {
12348                 RTE_LOG(ERR, USER1, "ZUC PMD must be loaded. Check if "
12349                                 "CONFIG_RTE_LIBRTE_PMD_ZUC is enabled "
12350                                 "in config file to run this testsuite.\n");
12351                 return TEST_SKIPPED;
12352         }
12353
12354         return unit_test_suite_runner(&cryptodev_sw_zuc_testsuite);
12355 }
12356
12357 static int
12358 test_cryptodev_armv8(void)
12359 {
12360         gbl_driver_id = rte_cryptodev_driver_id_get(
12361                         RTE_STR(CRYPTODEV_NAME_ARMV8_PMD));
12362
12363         if (gbl_driver_id == -1) {
12364                 RTE_LOG(ERR, USER1, "ARMV8 PMD must be loaded. Check if "
12365                                 "CONFIG_RTE_LIBRTE_PMD_ARMV8 is enabled "
12366                                 "in config file to run this testsuite.\n");
12367                 return TEST_SKIPPED;
12368         }
12369
12370         return unit_test_suite_runner(&cryptodev_armv8_testsuite);
12371 }
12372
12373 static int
12374 test_cryptodev_mrvl(void)
12375 {
12376         gbl_driver_id = rte_cryptodev_driver_id_get(
12377                         RTE_STR(CRYPTODEV_NAME_MVSAM_PMD));
12378
12379         if (gbl_driver_id == -1) {
12380                 RTE_LOG(ERR, USER1, "MVSAM PMD must be loaded. Check if "
12381                                 "CONFIG_RTE_LIBRTE_PMD_MVSAM_CRYPTO is enabled "
12382                                 "in config file to run this testsuite.\n");
12383                 return TEST_SKIPPED;
12384         }
12385
12386         return unit_test_suite_runner(&cryptodev_mrvl_testsuite);
12387 }
12388
12389 #ifdef RTE_LIBRTE_PMD_CRYPTO_SCHEDULER
12390
12391 static int
12392 test_cryptodev_scheduler(void /*argv __rte_unused, int argc __rte_unused*/)
12393 {
12394         gbl_driver_id = rte_cryptodev_driver_id_get(
12395                         RTE_STR(CRYPTODEV_NAME_SCHEDULER_PMD));
12396
12397         if (gbl_driver_id == -1) {
12398                 RTE_LOG(ERR, USER1, "SCHEDULER PMD must be loaded. Check if "
12399                                 "CONFIG_RTE_LIBRTE_PMD_SCHEDULER is enabled "
12400                                 "in config file to run this testsuite.\n");
12401                 return TEST_SKIPPED;
12402         }
12403
12404         if (rte_cryptodev_driver_id_get(
12405                                 RTE_STR(CRYPTODEV_NAME_AESNI_MB_PMD)) == -1) {
12406                 RTE_LOG(ERR, USER1, "CONFIG_RTE_LIBRTE_PMD_AESNI_MB must be"
12407                         " enabled in config file to run this testsuite.\n");
12408                 return TEST_SKIPPED;
12409 }
12410         return unit_test_suite_runner(&cryptodev_scheduler_testsuite);
12411 }
12412
12413 REGISTER_TEST_COMMAND(cryptodev_scheduler_autotest, test_cryptodev_scheduler);
12414
12415 #endif
12416
12417 static int
12418 test_cryptodev_dpaa2_sec(void /*argv __rte_unused, int argc __rte_unused*/)
12419 {
12420         gbl_driver_id = rte_cryptodev_driver_id_get(
12421                         RTE_STR(CRYPTODEV_NAME_DPAA2_SEC_PMD));
12422
12423         if (gbl_driver_id == -1) {
12424                 RTE_LOG(ERR, USER1, "DPAA2 SEC PMD must be loaded. Check if "
12425                                 "CONFIG_RTE_LIBRTE_PMD_DPAA2_SEC is enabled "
12426                                 "in config file to run this testsuite.\n");
12427                 return TEST_SKIPPED;
12428         }
12429
12430         return unit_test_suite_runner(&cryptodev_dpaa2_sec_testsuite);
12431 }
12432
12433 static int
12434 test_cryptodev_dpaa_sec(void /*argv __rte_unused, int argc __rte_unused*/)
12435 {
12436         gbl_driver_id = rte_cryptodev_driver_id_get(
12437                         RTE_STR(CRYPTODEV_NAME_DPAA_SEC_PMD));
12438
12439         if (gbl_driver_id == -1) {
12440                 RTE_LOG(ERR, USER1, "DPAA SEC PMD must be loaded. Check if "
12441                                 "CONFIG_RTE_LIBRTE_PMD_DPAA_SEC is enabled "
12442                                 "in config file to run this testsuite.\n");
12443                 return TEST_SKIPPED;
12444         }
12445
12446         return unit_test_suite_runner(&cryptodev_dpaa_sec_testsuite);
12447 }
12448
12449 static int
12450 test_cryptodev_ccp(void)
12451 {
12452         gbl_driver_id = rte_cryptodev_driver_id_get(
12453                         RTE_STR(CRYPTODEV_NAME_CCP_PMD));
12454
12455         if (gbl_driver_id == -1) {
12456                 RTE_LOG(ERR, USER1, "CCP PMD must be loaded. Check if "
12457                                 "CONFIG_RTE_LIBRTE_PMD_CCP is enabled "
12458                                 "in config file to run this testsuite.\n");
12459                 return TEST_FAILED;
12460         }
12461
12462         return unit_test_suite_runner(&cryptodev_ccp_testsuite);
12463 }
12464
12465 static int
12466 test_cryptodev_octeontx(void)
12467 {
12468         gbl_driver_id = rte_cryptodev_driver_id_get(
12469                         RTE_STR(CRYPTODEV_NAME_OCTEONTX_SYM_PMD));
12470         if (gbl_driver_id == -1) {
12471                 RTE_LOG(ERR, USER1, "OCTEONTX PMD must be loaded. Check if "
12472                                 "CONFIG_RTE_LIBRTE_PMD_OCTEONTX_CRYPTO is "
12473                                 "enabled in config file to run this "
12474                                 "testsuite.\n");
12475                 return TEST_FAILED;
12476         }
12477         return unit_test_suite_runner(&cryptodev_octeontx_testsuite);
12478 }
12479
12480 static int
12481 test_cryptodev_caam_jr(void /*argv __rte_unused, int argc __rte_unused*/)
12482 {
12483         gbl_driver_id = rte_cryptodev_driver_id_get(
12484                         RTE_STR(CRYPTODEV_NAME_CAAM_JR_PMD));
12485
12486         if (gbl_driver_id == -1) {
12487                 RTE_LOG(ERR, USER1, "CAAM_JR PMD must be loaded. Check if "
12488                                 "CONFIG_RTE_LIBRTE_PMD_CAAM_JR is enabled "
12489                                 "in config file to run this testsuite.\n");
12490                 return TEST_FAILED;
12491         }
12492
12493         return unit_test_suite_runner(&cryptodev_caam_jr_testsuite);
12494 }
12495
12496 REGISTER_TEST_COMMAND(cryptodev_qat_autotest, test_cryptodev_qat);
12497 REGISTER_TEST_COMMAND(cryptodev_aesni_mb_autotest, test_cryptodev_aesni_mb);
12498 REGISTER_TEST_COMMAND(cryptodev_openssl_autotest, test_cryptodev_openssl);
12499 REGISTER_TEST_COMMAND(cryptodev_aesni_gcm_autotest, test_cryptodev_aesni_gcm);
12500 REGISTER_TEST_COMMAND(cryptodev_null_autotest, test_cryptodev_null);
12501 REGISTER_TEST_COMMAND(cryptodev_sw_snow3g_autotest, test_cryptodev_sw_snow3g);
12502 REGISTER_TEST_COMMAND(cryptodev_sw_kasumi_autotest, test_cryptodev_sw_kasumi);
12503 REGISTER_TEST_COMMAND(cryptodev_sw_zuc_autotest, test_cryptodev_sw_zuc);
12504 REGISTER_TEST_COMMAND(cryptodev_sw_armv8_autotest, test_cryptodev_armv8);
12505 REGISTER_TEST_COMMAND(cryptodev_sw_mvsam_autotest, test_cryptodev_mrvl);
12506 REGISTER_TEST_COMMAND(cryptodev_dpaa2_sec_autotest, test_cryptodev_dpaa2_sec);
12507 REGISTER_TEST_COMMAND(cryptodev_dpaa_sec_autotest, test_cryptodev_dpaa_sec);
12508 REGISTER_TEST_COMMAND(cryptodev_ccp_autotest, test_cryptodev_ccp);
12509 REGISTER_TEST_COMMAND(cryptodev_virtio_autotest, test_cryptodev_virtio);
12510 REGISTER_TEST_COMMAND(cryptodev_octeontx_autotest, test_cryptodev_octeontx);
12511 REGISTER_TEST_COMMAND(cryptodev_caam_jr_autotest, test_cryptodev_caam_jr);